ويكاموس arwiktionary https://ar.wiktionary.org/wiki/%D9%88%D9%8A%D9%83%D8%A7%D9%85%D9%88%D8%B3:%D8%A7%D9%84%D8%B5%D9%81%D8%AD%D8%A9_%D8%A7%D9%84%D8%B1%D8%A6%D9%8A%D8%B3%D9%8A%D8%A9 MediaWiki 1.47.0-wmf.13 case-sensitive ميديا خاص نقاش مستخدم نقاش المستخدم ويكاموس نقاش ويكاموس ملف نقاش الملف ميدياويكي نقاش ميدياويكي قالب نقاش القالب مساعدة نقاش المساعدة تصنيف نقاش التصنيف ملحق نقاش الملحق مكنز نقاش المكنز نص زمني نقاش النص الزمني وحدة نقاش الوحدة فعالية نقاش فعالية نقاش المستخدم:Revi C. 3 155222 1097862 981269 2026-08-01T23:23:51Z Pathoschild 571 global user pages ([[m:Synchbot|requested by Revi C.]]) 1097862 wikitext text/x-wiki __NOINDEX__<div class="mw-content-ltr" lang="en" dir="ltr">[[File:Revi logo (pink).png|thumb|center|<span style="color:red">PLEASE DO NOT LEAVE MESSAGE HERE!</span>]] ''' <span style="color:red"> BEFORE YOU BLOCK MY ACCOUNT: IF MY EDIT SUMMARY INCLUDE PREFIX </span>''(Script)''<span style="color:red">, DON'T BLOCK ME, JUST TELL ME TO SLOW DOWN AT COMMONS' TALK PAGE. IT IS AN AUTOMATED SCRIPT BEING USED ON COMMONS TO MOVE FILES.</span> Instead, please leave your message following site: <br /> [[File:Wikidata-logo-en.svg|45px|link=d:User talk:Revi C.]] [[d:User talk:Revi C.]] for Wikidata (Interwiki links) stuff <!--(I am {{int:Group-sysop}} there)--> <br /> [[File:Commons-logo.svg|45px|link=commons:User talk:Revi C.]] [[commons:User talk:Revi C.]] for renaming stuff or [[User:CommonsDelinker|CommonsDelinker]] action (I am {{int:Group-sysop}} there) <br /> [[File:Wikimedia Community Logo optimized.svg|45px|link=m:User talk:Revi C.]] [[meta:User talk:Revi C.]] for other stuff (User right notification, revert message, etc...) Messages left on this page may be reverted or moved without any response.</div> esxe13mcstpjlux1bt2hqwxr2v8t8mn مستخدم:Revi C. 2 155514 1097863 981270 2026-08-02T00:03:55Z Pathoschild 571 global user pages ([[m:Synchbot|requested by Revi C.]]) 1097863 wikitext text/x-wiki __NOINDEX__<div class="mw-content-ltr" lang="en" dir="ltr">{{#babel:ko|en-3|ar-0}} [[File:Revi wikimedia image.jpg|thumb|center|middle|If you are here to talk about CommonsDelinker removing a deleted image, please [[:c:User talk:Revi C.|go here]].]] Hello! I am [[:m:User:Revi C.|revi]]. I edit to [[m:SWMT|revert vandals]], do Wikidata stuff<!--(I am a Wikidata Admin! <small>([{{fullurl:wikidata:Special:ListUsers/Revi C.|limit=1}} Verify])</small>)-->, or do [[:c:COM:FR|Commons Filemoving stuff]] (I am Commons Admin too! <small>([{{fullurl:c:Special:ListUsers/Revi C.|limit=1}} Verify])</small>). Come to [[:m:User:Revi C.|my Meta userpage]] or [[:c:User:Revi C.|my Commons userpage]] for more information. Thank you.</div> 0q2qh4d18ardgq6hef6zv7a8wygwqln مستخدم:Hym411 2 157361 1097864 981400 2026-08-02T00:40:20Z Pathoschild 571 global user pages ([[m:Synchbot|requested by Hym411]]) 1097864 wikitext text/x-wiki #REDIRECT [[User:Revi C.]] 88g0cv17whfgb1wkeh281mptujwtlut نقاش المستخدم:Hym411 3 157362 1097865 981401 2026-08-02T01:09:44Z Pathoschild 571 global user pages ([[m:Synchbot|requested by Hym411]]) 1097865 wikitext text/x-wiki #REDIRECT [[User talk:Revi C.]] o9z79lcc9a9pfmqmrod5w3eyk4q9i0o وحدة:ar-verb 828 188226 1097807 1097563 2026-08-01T13:44:20Z ForzaGreen 28665 صفحات صيغ الأفعال: إضافة الوسيط «بؤرة» لإبراز خانة الجدول، وتصدير verb_info، مع إصلاح رسالة الخطأ في معدّلات الخانات 1097807 Scribunto text/plain local export = {} --[=[ This module implements {{ar-conj}} and provides the underlying conjugation functions for {{ar-verb}} (whose actual formatting is done in [[Module:ar-headword]]). Author: User:Benwing, from an early version (2013-2014) by User:Atitarev, User:ZxxZxxZ. ]=] --[=[ TERMINOLOGY: -- "slot" = A particular combination of tense/mood/person/number/etc. Example slot names for verbs are "past_1s" (past tense first-person singular), "juss_pass_3fp" (non-past jussive passive third-person feminine plural) "ap" (active participle). Each slot is filled with zero or more forms. -- "form" = The conjugated Arabic form representing the value of a given slot. -- "lemma" = The dictionary form of a given Arabic term. For Arabic, normally the third person masculine singular past, although other forms may be used if this form is missing (e.g. in passive-only verbs or verbs lacking the past). ]=] --[=[ FIXME: 1. Finish unimplemented conjugation types. Only IX-final-weak left (extremely rare, possibly only one verb اِعْمَايَ (according to Haywood and Nahmad p. 244, who are very specific about the irregular occurrence of alif + yā instead of expected اِعْمَيَّ with doubled yā). Not in Hans Wehr. NOTE: Not true about this, cf. form IX اِرْعَوَى "to desist, to repent, to see the light". Also note form XII اِخْضَوْضَرَ = form IX اِخْضَرَّ "to be or become green". [DONE except for اِعْمَايَ] 2. Implement irregular verbs as special cases and recognize them, e.g. -- laysa "to not be"; only exists in the past tense, no non-past, no imperative, no participles, no passive, no verbal noun. Irregular alternation las-/lays-. [IMPLEMENTABLE USING OVERRIDES] -- istaḥā yastaḥī "be ashamed of" -- this is complex according to Hans Wehr because there are two verbs, regular istaḥyā yastaḥyī "to spare (someone)'s life" and irregular istaḥyā yastaḥyī "to be ashamed to face (someone)", which is irregular because it has the alternate irregular form istaḥā yastaḥī which only applies to this meaning. Currently we follow Haywood and Nahmad in saying that both varieties can be spelled istaḥyā/istaḥā/istaḥḥā, but we should instead use a variant= param similar to حَيَّ to distinguish the two possibilities, and maybe not include istaḥḥā. -- ʿayya/ʿayiya yaʿayyu/yaʿyā "to not find the right way, be incapable of, stammer, falter, fall ill". This appears to be a mixture of a geminate and final-weak verb. Unclear what the whole paradigm looks like. Do the consonant-ending parts in the past follow the final-weak paradigm? Is it the same in the non-past? Or can you conjugate the non-past fully as either geminate or final-weak? -- اِنْمَحَى inmaḥā or يمَّحَى immaḥā "to be effaced, obliterated; to disappear, vanish" has irregular assimilation of inm- to imm- as an alternative. inmalasa "to become smooth; to glide; to slip away; to escape" also has immalasa as an alternative. The only other form VII verbs in Hans Wehr beginning with -m- are inmalaḵa "to be pulled out, torn out, wrenched" and inmāʿa "to be melted, to melt, to dissolve", which are not listed with imm- alternatives, but might have them; if so, we should handle this generally. [DONE] -- يَرَعَ yaraʕa yariʕu "to be a coward, to be chickenhearted" as an alternative form of يَرِعَ yariʕa yayraʕu (as given in Wehr). [IMPLEMENTABLE USING OVERRIDES] 3. Implement individual override parameters for each paradigm part. See Module:fro-verb for an example of how to do this generally. Note that {{temp|ar-conj-I}} and other of the older templates already had such individual override params. [DONE] Irregular verbs already implemented: -- [ḥayya/ḥayiya yaḥyā "live" -- behaves like a normal final-weak verb (e.g. past first singular ḥayītu) except in the past-tense parts with vowel-initial endings (all the third person except for the third feminine plural). The normal singular and dual endings have -yiya- in them, which compresses to -yya-, with the normal endings the less preferred ones. In masculine third plural, expected ḥayū is replaced by ḥayyū by analogy to the -yy- parts, and the regular form is not given as an alternant in John Mace. Barron's 201 verbs appears to have the regular ḥayū as the part, however. Note also that final -yā appears with tall alif. This appears to be a spelling convention of Arabic, also applying in ḥayyā (form II, "to keep (someone) alive") and 'aḥyā (form IV, "to animate, revive, give birth to, give new life to").] -- implemented -- [ittaxadha yattaxidhu "take"] -- implemented -- [sa'ala yas'alu "ask" with alternative jussive/imperative yasal/sal] -- implemented -- [ra'ā yarā "see"] -- implemented -- ['arā yurī "show"] -- implemented -- ['akala ya'kulu "eat" with imperative kul] -- implemented -- ['axadha ya'xudhu "take" with imperative xudh] -- implemented -- ['amara ya'muru "order" with imperative mur] -- implemented --]=] local force_cat = false -- set to true for debugging -- if true, always maintain manual translit during processing, and compare against full translit at the end local debug_translit = false local lang = require("Module:languages").getByCode("ar") local m_links = require("Module:links") local m_string_utilities = require("Module:string utilities") local m_table = require("Module:table") local ar_utilities = require("Module:ar-utilities") local iut = require("Module:inflection utilities") local put = require("Module:parse utilities") local list_to_text = mw.text.listToText local rfind = m_string_utilities.find local rsubn = m_string_utilities.gsub local rmatch = m_string_utilities.match local rsplit = m_string_utilities.split local usub = m_string_utilities.sub local ulen = m_string_utilities.len local u = m_string_utilities.char local unpack = unpack or table.unpack -- Lua 5.2 compatibility local dump = mw.dumpObject -- Within this module, conjugations are the functions that do the actual -- conjugating by creating the parts of a basic verb. -- They are defined further down. local conjugations = {} -- hamza variants local HAMZA = u(0x0621) -- hamza on the line (stand-alone hamza) = ء local HAMZA_ON_ALIF = u(0x0623) local HAMZA_ON_W = u(0x0624) local HAMZA_UNDER_ALIF = u(0x0625) local HAMZA_ON_Y = u(0x0626) local HAMZA_ANY = "[" .. HAMZA .. HAMZA_ON_ALIF .. HAMZA_UNDER_ALIF .. HAMZA_ON_W .. HAMZA_ON_Y .. "]" local HAMZA_PH = u(0xFFF0) -- hamza placeholder local BAD = u(0xFFF1) local BORDER = u(0xFFF2) -- diacritics local A = u(0x064E) -- fatḥa local AN = u(0x064B) -- fatḥatān (fatḥa tanwīn) local U = u(0x064F) -- ḍamma local UN = u(0x064C) -- ḍammatān (ḍamma tanwīn) local I = u(0x0650) -- kasra local IN = u(0x064D) -- kasratān (kasra tanwīn) local SK = u(0x0652) -- sukūn = no vowel local SH = u(0x0651) -- šadda = gemination of consonants local DAGGER_ALIF = u(0x0670) local DIACRITIC_ANY_BUT_SH = "[" .. A .. I .. U .. AN .. IN .. UN .. SK .. DAGGER_ALIF .. "]" -- Pattern matching short vowels local AIU = "[" .. A .. I .. U .. "]" -- Pattern matching short vowels or sukūn local AIUSK = "[" .. A .. I .. U .. SK .. "]" -- Pattern matching any diacritics that may be on a consonant local DIACRITIC = SH .. "?" .. DIACRITIC_ANY_BUT_SH -- translit_patterns local vowels = "aeiouāēīōū" local NV = "[^" .. vowels .. "]" local dia = {a = A, i = I, u = U} local undia = {[A] = "a", [I] = "i", [U] = "u", ["-"] = "-"} -- various letters and signs local ALIF = u(0x0627) -- ʾalif = ا local AMAQ = u(0x0649) -- ʾalif maqṣūra = ى local AMAD = u(0x0622) -- ʾalif madda = آ local TAM = u(0x0629) -- tāʾ marbūṭa = ة local T = u(0x062A) -- tāʾ = ت local HYPHEN = u(0x0640) local N = u(0x0646) -- nūn = ن local W = u(0x0648) -- wāw = و local Y = u(0x064A) -- yāʾ = ي local S = "س" local M = "م" local LRM = u(0x200e) -- left-to-right mark -- common combinations local AH = A .. TAM local AT = A .. T local AA = A .. ALIF local AAMAQ = A .. AMAQ local AAH = AA .. TAM local AAT = AA .. T local II = I .. Y local UU = U .. W local AY = A .. Y local AW = A .. W local AYSK = AY .. SK local AWSK = AW .. SK local NA = N .. A local NI = N .. I local AAN = AA .. N local AANI = AA .. NI local AYNI = AYSK .. NI local AWNA = AWSK .. NA local AYNA = AYSK .. NA local AYAAT = AY .. AAT local UNU = "[" .. UN .. U .. "]" local MA = M .. A local MU = M .. U local TA = T .. A local TU = T .. U local _I = ALIF .. I local _U = ALIF .. U --W: Morphological pattern (الوزن الصرفي) to verb form mapping local MORPHOLOGICAL_PATTERN_TO_FORM = { ["فعَل يفعُل"] = "I/a~u", ["فعَل يفعِل"] = "I/a~i", ["فعَل يفعَل"] = "I/a~a", ["فعُل يفعُل"] = "I/u~u", ["فعِل يفعَل"] = "I/i~a", ["فعِل يفعِل"] = "I/i~i", ["فعّل"] = "II", ["فاعل"] = "III", ["أفعل"] = "IV", ["تفعّل"] = "V", ["تفاعل"] = "VI", ["انفعل"] = "VII", ["افتعل"] = "VIII", ["افعلّ"] = "IX", ["استفعل"] = "X", ["افعالّ"] = "XI", ["افعوعل"] = "XII", ["افعوّل"] = "XIII", ["فعلل"] = "Iq", ["تفعلل"] = "IIq", ["افعنلل"] = "IIIq", -- "XIV" should not be used ["افعللّ"] = "IVq", } --W: Create reverse mapping from form to morphological pattern local FORM_TO_MORPHOLOGICAL_PATTERN = {} for pattern, form in pairs(MORPHOLOGICAL_PATTERN_TO_FORM) do FORM_TO_MORPHOLOGICAL_PATTERN[form] = pattern end --W: local MORPHOLOGICAL_PATTERN_TO_BASIC_DERIV = { ["فعَل يفعُل"] = "مُجرَّد", ["فعَل يفعِل"] = "مُجرَّد", ["فعَل يفعَل"] = "مُجرَّد", ["فعُل يفعُل"] = "مُجرَّد", ["فعِل يفعَل"] = "مُجرَّد", ["فعِل يفعِل"] = "مُجرَّد", ["فعّل"] = "مزيد بحرف", ["فاعل"] = "مزيد بحرف", ["أفعل"] = "مزيد بحرف", ["تفعّل"] = "مزيد بحرفين", ["تفاعل"] = "مزيد بحرفين", ["انفعل"] = "مزيد بحرفين", ["افتعل"] = "مزيد بحرفين", ["افعلّ"] = "مزيد بحرفين", ["استفعل"] = "مزيد بثلاثة أحرف", ["افعالّ"] = "مزيد بثلاثة أحرف", ["افعوعل"] = "مزيد بثلاثة أحرف", ["افعوّل"] = "مزيد بثلاثة أحرف", ["فعلل"] = "مُجرَّد", ["تفعلل"] = "مزيد بحرف", ["افعنلل"] = "مزيد بحرفين", ["افعللّ"] = "مزيد بحرفين", } local translit_cache = { -- hamza variants [HAMZA] = "ʔ", [HAMZA_ON_ALIF] = "ʔ", [HAMZA_ON_W] = "ʔ", [HAMZA_UNDER_ALIF] = "ʔ", [HAMZA_ON_Y] = "ʔ", [HAMZA_PH] = "ʔ", -- diacritics [A] = "a", [AN] = "an", [U] = "u", [UN] = "un", [I] = "i", [IN] = "in", [SK] = "", [SH] = "*", -- handled specially [DAGGER_ALIF] = "ā", -- various letters and signs [""] = "", [ALIF] = BAD, -- we should never be transliterating ALIF by itself, as its translit in isolation is ambiguous [AMAQ] = BAD, [AMAD] = "ʔā", [TAM] = "", [T] = "t", [N] = "n", [W] = "w", [Y] = "y", [S] = "s", [M] = "m", [LRM] = "", -- common combinations [AH] = "a", [AT] = "at", [AA] = "ā", [AAMAQ] = "ā", [AAH] = "āh", [AAT] = "āt", [II] = "ī", [UU] = "ū", [AY] = "ay", [AW] = "aw", [AYSK] = "ay", [AWSK] = "aw", [NA] = "na", [NI] = "ni", [AAN] = "ān", [AANI] = "āni", [AYNI] = "ayni", [AWNA] = "awna", [AYNA] = "ayna", [AYAAT] = "ayāt", [MA] = "ma", [MU] = "mu", [TA] = "ta", [TU] = "tu", [_I] = "i", [_U] = "u", } local function transliterate(text) local cached = translit_cache[text] if cached then if cached == BAD then error(("Internal error: Unable to transliterate %s because explicitly marked as BAD"):format(text)) end return cached end local tr = (lang:transliterate(text)) if not tr then error(("Internal error: Unable to transliterate: %s"):format(text)) end translit_cache[text] = tr return tr end local all_person_number_list = { "1s", "2ms", "2fs", "3ms", "3fs", "2d", "3md", "3fd", "1p", "2mp", "2fp", "3mp", "3fp" } local function make_person_number_slot_accel_list(list) local slot_accel_list = {} return slot_accel_list end local imp_person_number_list = {} for _, pn in ipairs(all_person_number_list) do if pn:find("^2") then table.insert(imp_person_number_list, pn) end end local passive_types = m_table.listToSet { "pass", -- verb has both active and passive "ipass", -- verb is active with impersonal passive "nopass", -- verb is active-only "onlypass", -- verb is passive-only "onlypass-impers", -- verb itself is impersonal, meaning passive-only with impersonal passive } local indicator_flags = m_table.listToSet { "nopast", "no_nonpast", "noimp", "nocat", -- don't categorize or include annotations about this; useful in suppletive parts of verbs "reduced", -- verb has assimilation/reduction of initial coronals "altgem", -- form X with alternative past geminate forms with final-weak endings } export.potential_lemma_slots = {"past_3ms", "past_pass_3ms", "ind_3ms", "ind_pass_3ms", "imp_2ms"} export.unsettable_slots = {} for _, potential_lemma_slot in ipairs(export.potential_lemma_slots) do table.insert(export.unsettable_slots, potential_lemma_slot .. "_linked") end -- We don't set the active participle directly for form I because we don't want stative verbs (with past vowel i or u) -- to default to فَاعِل. Instead we set the special slot 'ap1' and later copy it to 'ap' for non-stative verbs. The user -- meanwhile can explicitly request the فَاعِل form for active participles for stative verbs using `ap:+`. table.insert(export.unsettable_slots, "ap1") -- primary default فَاعِل for form I active participles table.insert(export.unsettable_slots, "ap2") -- secondary default فَعِيل for form I active participles (stative I) table.insert(export.unsettable_slots, "ap3") -- secondary default فَعِل for form I active participles (stative II) table.insert(export.unsettable_slots, "apcd") -- secondary default أَفْعَل for form I active participles (color/defect) table.insert(export.unsettable_slots, "apan") -- secondary default فَعْلَان for form I active participles (in -ān) table.insert(export.unsettable_slots, "pp2") -- secondary default فَعِيل for form I passive participles (same as ap2) table.insert(export.unsettable_slots, "vn2") -- secondary default فِعَال for form III verbal nouns export.unsettable_slots_set = m_table.listToSet(export.unsettable_slots) local default_indicator_to_active_participle_slot = { ["+"] = "ap1", ["++"] = "ap2", ["+++"] = "ap3", ["+cd"] = "apcd", ["+an"] = "apan", } local slots_that_may_be_uncertain = { vn = "verbal noun", ap = "active participle", } -- Initialize all the slots for which we generate forms. local function add_slots(alternant_multiword_spec) alternant_multiword_spec.verb_slots = { {"ap", "act|part"}, {"pp", "pass|part"}, {"vn", "vnoun"}, } for _, unsettable_slot in ipairs(export.unsettable_slots) do table.insert(alternant_multiword_spec.verb_slots, {unsettable_slot, "-"}) end -- Add entries for a slot with person/number variants. -- `slot_prefix` is the prefix of the slot, typically specifying the tense/aspect. -- `tag_suffix` is a string listing the set of inflection tags to add after the person/number tags. -- `person_number_list` is a list of the person/number slot suffixes to add to `slot_prefix`. local function add_personal_slot(slot_prefix, tag_suffix, person_number_list) for _, persnum in ipairs(person_number_list) do local slot = slot_prefix .. "_" .. persnum local accel = persnum:gsub("(.)", "%1|") .. tag_suffix table.insert(alternant_multiword_spec.verb_slots, {slot, accel}) end end local tenses = { {"past", "past|%s"}, {"ind", "non-past|%s|ind"}, {"sub", "non-past|%s|sub"}, {"juss", "non-past|%s|juss"}, } for _, slot_accel in ipairs(tenses) do local slot, accel = unpack(slot_accel) for _, voice in ipairs {"act", "pass"} do add_personal_slot(voice == "act" and slot or slot .. "_pass", accel:format(voice), all_person_number_list) end end add_personal_slot("imp", "imp", imp_person_number_list) alternant_multiword_spec.verb_slots_map = {} for _, slot_accel in ipairs(alternant_multiword_spec.verb_slots) do local slot, accel = unpack(slot_accel) alternant_multiword_spec.verb_slots_map[slot] = accel end end local overridable_stems = {} local slot_override_param_mods = { footnote = { item_dest = "footnotes", store = "insert", }, alt = {}, t = { -- [[Module:links]] expects the gloss in "gloss". item_dest = "gloss", }, gloss = {}, g = { -- [[Module:links]] expects the genders in "g". `sublist = true` automatically splits on comma (optionally -- with surrounding whitespace). item_dest = "genders", sublist = true, }, pos = {}, lit = {}, id = {}, --W: The q/qq/l/ll (qualifier and label) modifiers were removed: rendering them -- needs [[Module:pron qualifier]], which does not exist on ar.wiktionary, so any -- use of them raised a script error. Accepting them here again requires importing -- that module first and restoring the block in generate_link() below. } local function generate_obj(formval, parse_err, prefix, is_slot_override) local val, uncertain = formval:match("^(.*)(%?)$") val = val or formval uncertain = not not uncertain local ar, translit = val:match("^(.*)//(.*)$") if not ar then ar = val end if ar == "" then if uncertain then ar = "?" else error(("Can't specify blank value for override for %s override '%s'"):format( is_slot_override and "slot" or "stem", prefix)) end end return {form = ar, translit = translit, uncertain = uncertain} end local function parse_inline_modifiers(comma_separated_group, parse_err, prefix, is_slot_override) local function this_generate_obj(formval, parse_err) return generate_obj(formval, parse_err, prefix, is_slot_override) end return put.parse_inline_modifiers_from_segments { group = comma_separated_group, props = { param_mods = slot_override_param_mods, parse_err = parse_err, generate_obj = this_generate_obj, pre_normalize_modifiers = function(data) local modtext = data.modtext modtext = modtext:match("^(%[.*%])$") if modtext then return ("<footnote:%s>"):format(modtext) end return data.modtext end, }, } end local function allow_multiple_values_for_override(comma_separated_groups, data, is_slot_override) local retvals = {} for _, comma_separated_group in ipairs(comma_separated_groups) do local retval if is_slot_override then --W: pass `prefix` and `is_slot_override` through; without them the error -- raised for a blank override value formatted a nil prefix, which is a -- crash on Lua 5.1 rather than the intended message. Reachable from e.g. -- <I/a~u.vn:[[كتابة]]>, where the [[...]] is consumed as a footnote and -- leaves the value empty. retval = parse_inline_modifiers(comma_separated_group, data.parse_err, data.prefix, is_slot_override) else retval = generate_obj(comma_separated_group[1], data.parse_err, data.prefix, is_slot_override) retval.footnotes = data.fetch_footnotes(comma_separated_group) end table.insert(retvals, retval) end for _, form in ipairs(retvals) do if form.form == "+" or default_indicator_to_active_participle_slot[form.form] then if form.form ~= "+" and default_indicator_to_active_participle_slot[form.form] and not is_slot_override then error(("Stem override '%s' cannot use %s to request a secondary default"):format( data.prefix, form.form)) end data.base.slot_override_uses_default[data.prefix] = true end end for _, form in ipairs(retvals) do if form.form == "-" then data.base.slot_explicitly_missing[data.prefix] = true break end end if data.base.slot_explicitly_missing[data.prefix] then for _, form in ipairs(retvals) do if form.form ~= "-" then data.parse_err(("For slot or stem '%s', saw both - and a value other than -, which isn't allowed"): format(data.prefix)) end end return nil end return retvals end local function simple_choice(choices) return function(separated_groups, data) if #separated_groups > 1 then data.parse_err("For spec '" .. data.prefix .. ":', only one value currently allowed") end if #separated_groups[1] > 1 then data.parse_err("For spec '" .. data.prefix .. ":', no footnotes currently allowed") end local choice = separated_groups[1][1] if not m_table.contains(choices, choice) then data.parse_err("For spec '" .. data.prefix .. ":', saw value '" .. choice .. "' but expected one of '" .. table.concat(choices, "،") .. "'") end return choice end end for _, overridable_stem in ipairs { "past", "past_v", "past_c", "past_pass", "past_pass_v", "past_pass_c", "nonpast", "nonpast_v", "nonpast_c", "nonpast_pass", "nonpast_pass_v", "nonpast_pass_c", "imp", "imp_v", "imp_c", } do overridable_stems[overridable_stem] = allow_multiple_values_for_override end overridable_stems.past_final_weak_vowel = simple_choice { "ay", "aw", "ī", "ū" } overridable_stems.past_pass_final_weak_vowel = simple_choice { "ay", "aw", "ī", "ū" } overridable_stems.nonpast_final_weak_vowel = simple_choice { "ā", "ī", "ū" } overridable_stems.nonpast_pass_final_weak_vowel = simple_choice { "ā", "ī", "ū" } ------------------------------------------------------------------------------- -- Utility functions -- ------------------------------------------------------------------------------- -- version of rsubn() that discards all but the first return value local function rsub(term, foo, bar) return (rsubn(term, foo, bar)) end -- version of rsubn() that returns a 2nd argument boolean indicating whether a substitution was made. local function rsubb(term, foo, bar) local retval, nsubs = rsubn(term, foo, bar) return retval, nsubs > 0 end -- Concatenate one or more strings or form objects. local function q(...) local not_all_strings = debug_translit local has_manual_translit = debug_translit for i = 1, select("#", ...) do local argt = select(i, ...) if not argt then error(("Internal error: Saw nil at index %s: %s"):format(i, dump({...}))) end if type(argt) ~= "string" then not_all_strings = true if argt.translit then has_manual_translit = true break end end end if not not_all_strings then -- just strings, concatenate directly return table.concat({...}) end local formvals = {} local translit = has_manual_translit and {} or nil local footnotes for i = 1, select("#", ...) do local argt = select(i, ...) if type(argt) == "string" then formvals[i] = argt if has_manual_translit then translit[i] = transliterate(argt) end else formvals[i] = argt.form if has_manual_translit then translit[i] = argt.translit or transliterate(argt.form) end footnotes = iut.combine_footnotes(footnotes, argt.footnotes) end end -- FIXME: Do we want to support other properties? return { form = table.concat(formvals), translit = has_manual_translit and table.concat(translit) or nil, footnotes = footnotes, } end -- Return the formval associated with `rad` (a radical or past/non-past vowel, either a string or form object). local function rget(rad) if type(rad) == "string" then return rad elseif type(rad) == "table" then return rad.form else error(("Internal error: Unexpected type for radical or past/non-past vowel: %s"):format(dump(rad))) end end export.rget = rget -- for use in [[Module:ar-headword]] -- Return the footnotes associated with `rad` (a radical or past/non-past vowel, either a string or form object). local function rget_footnotes(rad) if type(rad) == "string" then return nil elseif type(rad) == "table" then return rad.footnotes else error(("Internal error: Unexpected type for radical or past/non-past vowel: %s"):format(dump(rad))) end end -- Return true if the formval associated with `rad` (a radical or past/non-past vowel, either a string or form object) -- is `val`. local function req(rad, val) return rget(rad) == val end -- Map `vow` (a past/non-past vowel, either a string or form object without translit) by passing the formval through -- `fn`. Don't call this on radicals because they may have manual translit and it isn't clear how to handle that. local function map_vowel(vow, fn) if type(vow) == "string" then return fn(vow) elseif type(vow) == "table" then return {form = fn(vow.form), footnotes = vow.footnotes} else error(("Internal error: Unexpected type for past/non-past vowel: %s"):format(dump(vow))) end end local function get_radicals_3(vowel_spec) return vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3, vowel_spec.past, vowel_spec.nonpast end local function get_radicals_4(vowel_spec) return vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3, vowel_spec.rad4 end local function is_final_weak(base, vowel_spec) return vowel_spec.weakness == "final-weak" or base.form == "XV" end --W: Create a simple link local function link_term_simple(text) return "[[" .. text .. "]]" end local function link_term(text, face, id) return m_links.full_link({lang = lang, term = text, tr = "-", id = id}, face) end local function tag_text(text, tag, class) return m_links.full_link({lang = lang, alt = text, tr = "-"}) end local function track(page) require("Module:debug/track")("ar-verb/" .. page) return true end local function track_if_ar_conj(base, page) if base.alternant_multiword_spec.source_template == "ar-conj" then require("Module:debug/track")("ar-verb/" .. page) end return true end local function reorder_shadda(word) -- shadda+short-vowel (including tanwīn vowels, i.e. -an -in -un) gets -- replaced with short-vowel+shadda during NFC normalisation, which -- MediaWiki does for all Unicode strings; however, it makes various -- processes inconvenient, so undo it. word = rsub(word, "(" .. DIACRITIC_ANY_BUT_SH .. ")" .. SH, SH .. "%1") return word end local function apply_nfc_shadda(word) -- Apply NFC-style normalization: reorder shadda+vowel to vowel+shadda -- to match MediaWiki's automatic NFC normalization. This reverses the -- internal shadda+vowel format used during processing. word = rsub(word, SH .. "(" .. DIACRITIC_ANY_BUT_SH .. ")", "%1" .. SH) return word end ------------------------------------------------------------------------------- -- Basic functions to inflect tenses -- ------------------------------------------------------------------------------- local function skip_slot(base, slot, allow_overrides) if base.slot_explicitly_missing[slot] then return true end if not allow_overrides and base.slot_overrides[slot] and not base.slot_override_uses_default[slot] then -- Skip any slots for which there are overrides, except those that request the default value using +, ++, etc. return true end if base.passive == "nopass" and (slot == "pp" or slot:find("_pass")) then return true elseif base.passive == "onlypass" and slot ~= "pp" and slot ~= "vn" and not slot:find("_pass") then return true elseif base.passive == "ipass" and slot:find("_pass") and not slot:find("3ms") then return true elseif base.passive == "onlypass-impers" and slot ~= "pp" and slot ~= "vn" and (not slot:find("_pass") or slot:find("_pass") and not slot:find("3ms")) then return true end if base.nopast and slot:find("^past_") then return true end if base.noimp and slot:find("^imp_") then return true end if base.no_nonpast and (slot:find("^ind_") or slot:find("^sub_") or slot:find("^juss")) then return true end return false end local function basic_combine_stem_ending(stem, ending) return stem .. ending end local function basic_combine_stem_ending_tr(stem, ending) return stem .. ending end -- Concatenate `prefixes`, `stems` and `endings` (any of which may be an abbreviate form list, i.e. strings, form -- objects or lists of strings or form objects) and store into `slot`. If a user-supplied override exists for the slot, -- nothing will happen unless `allow_overrides` is provided. local function add3(base, slot, prefixes, stems, endings, allow_overrides) if skip_slot(base, slot, allow_overrides) then return end -- Optimization since the prefixes are almost always single strings. if type(prefixes) == "string" then local function do_combine_stem_ending(stem, ending) return prefixes .. stem .. ending end local function do_combine_stem_ending_tr(stem, ending) return transliterate(prefixes) .. stem .. ending end iut.add_forms(base.forms, slot, stems, endings, do_combine_stem_ending, transliterate, do_combine_stem_ending_tr, base.form_footnotes) else iut.add_multiple_forms(base.forms, slot, {prefixes, stems, endings}, basic_combine_stem_ending, transliterate, basic_combine_stem_ending_tr, base.form_footnotes) end end -- Insert one or more forms in `form_or_forms` into `slot`. `form_or_forms` is an abbreviated form list (see comment at -- top of [[Module:inflection utilities]]). If a user-supplied override exists for the slot, nothing will happen unless -- `allow_overrides` is provided. BEWARE: One form object should never occur in two different slots, or twice in a given -- slot; if taking a form object from an existing slot, make sure to shallowCopy() it. local function insert_form_or_forms(base, slot, form_or_forms, allow_overrides, uncertain) if not skip_slot(base, slot, allow_overrides) then -- Some optimizations of the most common case of inserting a single string. if type(form_or_forms) == "string" and not base.form_footnotes then form_or_forms = {form = form_or_forms, uncertain = uncertain} iut.insert_form(base.forms, slot, form_or_forms) else local list = iut.convert_to_general_list_form(form_or_forms, base.form_footnotes) if uncertain then for _, formobj in ipairs(list) do formobj.uncertain = true end end iut.insert_forms(base.forms, slot, list) end end end -- Insert `string_or_form` into both the ap2 and pp2 slots, shallowCopying a form object to make sure no form objects -- occur in two slots. local function insert_ap2_pp2(base, string_or_form) insert_form_or_forms(base, "ap2", string_or_form) if type(string_or_form) == "table" then string_or_form = m_table.shallowCopy(string_or_form) end insert_form_or_forms(base, "pp2", string_or_form) end -- Convert `stemforms` (a string, a form object, or a list of strings and/or form objects) into "general form" (a list -- of form objects) and map `fn` over the list of objects. `fn` is passed two arguments (form value and translit) and -- should likewise return the new form value and translit. Footnotes will be preserved. FIXME: Preserve other metadata. local function map_general(stemforms, fn) return iut.map_forms(iut.convert_to_general_list_form(stemforms), fn) end -- Similar to map_general() except that `fn` should return a single value (one or more strings or form objects), instead -- of two values (form value and translit), and the resulting value(s) from all calls to `fn` will be flattened to -- construct the overall return value. Footnotes will be preserved. FIXME: Preserve other metadata. local function flatmap_general(stemforms, fn) return iut.flatmap_forms(iut.convert_to_general_list_form(stemforms), fn) end -- Given user-supplied stem overrides in `base`, construct any derived stem overrides (e.g. vowel-specific or -- consonant-specific variants), and truncate initial y-/ي- in any non-past overrides. local function construct_stems(base) local stems = base.stem_overrides stems.past_v = stems.past_v or stems.past stems.past_c = stems.past_c or stems.past stems.past_pass_v = stems.past_pass_v or stems.past_pass stems.past_pass_c = stems.past_pass_c or stems.past_pass stems.nonpast_v = stems.nonpast_v or stems.nonpast stems.nonpast_c = stems.nonpast_c or stems.nonpast stems.nonpast_pass_v = stems.nonpast_pass_v or stems.nonpast_pass stems.nonpast_pass_c = stems.nonpast_pass_c or stems.nonpast_pass stems.imp_v = stems.imp_v or stems.imp stems.imp_c = stems.imp_c or stems.imp local function truncate_nonpast_initial_cons(stem_type, form, translit) if form == "+" then return form, translit end if not form:find("^" .. Y) then error(("Form value %s for stem type '%s' should begin with ي"):format(form, stem_type)) end form = form:gsub("^" .. Y, "") if translit then if not translit:find("^y") then error(("Translit value %s for stem type '%s' should begin with y"):format(translit, stem_type)) end translit = translit:gsub("^y", "") end return form, translit end for _, nonpast_stem_type in ipairs { "nonpast_v", "nonpast_c", "nonpast_pass_v", "nonpast_pass_c" } do if stems[nonpast_stem_type] then stems[nonpast_stem_type] = map_general(stems[nonpast_stem_type], function(form, translit) return truncate_nonpast_initial_cons(nonpast_stem_type, form, translit) end) end end end -- Given user-specified overrides for stem `stemname`, return overrides with occurrences of + replaced by -- `default_stem`. If no overrides, return `default_stem`, or {} if no default. local function override_stem_if_needed(base, stemname, default_stem) local overrides = base.stem_overrides[stemname] if not overrides then return default_stem or {} end return map_general(overrides, function(form, translit) if form ~= "+" and default_indicator_to_active_participle_slot[form] then error(("Stem overrides cannot use secondary default indicators but saw %s in stem override '%s'"):format( form, stemname)) end if form == "+" then if translit then error(("Cannot supply manual translit along with + for stem override '%s'"):format(stemname)) end if not default_stem then error(("Cannot use + for stem override '%s' because no default is available"):format(stemname)) end if type(default_stem) ~= "string" then error(("Internal error: Default stem for '%s' is not a string: %s"):format(stemname, dump(default_stem))) end return default_stem end return form, translit end) end ------------------------------------------------------------------------------- -- Properties of different verbal forms -- ------------------------------------------------------------------------------- local allowed_vforms = {"I", "II", "III", "IV", "V", "VI", "VII", "VIII", "IX", "X", "XI", "XII", "XIII", "XIV", "XV", "Iq", "IIq", "IIIq", "IVq"} local allowed_vforms_set = m_table.listToSet(allowed_vforms) local allowed_vforms_with_weakness = m_table.shallowCopy(allowed_vforms) -- The user needs to be able to explicitly specify that a form-I verb (specifically one whose initial radical is و) is -- sound. Cf. wajiʕa yawjaʕu (not #yajaʕu) "to ache, to hurt". In general, i~a and u~u verbs whose initial radical is و -- seem to not assimilate the first radical; cf. وقح "to be shameless", variously waqaḥa~yaqiḥu, waquḥa~yawquḥu and -- waqiḥa~yawqaḥu, whereas a~i verbs (wafaḍa~yafiḍu "to rush"), i~i verbs (wafiqa~yafiqu "to be proper, to be suitable") -- and a~a verbs (waḍaʕa~yaḍaʕu "to set down, to place") do assimilate. But there are naturally exceptions, e.g. -- waṭiʔa~yaṭaʔu "to tread, to trample"; wasiʕa~yasaʕu "to be spacious; to be well-off"; waṯiʔa~yaṯaʔu "to get bruised, -- to be sprained". Also beware of waniya~yawnā "to be faint; to languish", which is sound in the first radical and -- final-weak in the last radical. Nonetheless, the regularity of the patterns mentioned above suggest we should provide -- them as defaults. -- Note that there are other cases of unexpectedly sound verbs, e.g. izdawaja~yazdawiju "to be in pairs", layisa~yalyasu -- "to be valiant, to be brave", ʔaḥwaja~yuḥwiju "to need", istahwana~yastahwinu "to consider easy", sawisa~yaswasu "to -- be or become moth-eaten or worm-eaten" (vs. sāsa~yasūsu "to govern, to rule" from the same radicals), ʕawira~yaʕwaru -- "to be one-eyed", istajwaba~yastajwibu "to interrogate", etc. But in these cases there is no need for explicit user -- specification as the lemma itself specifies the unexpected soundness. for _, form_with_weakness in ipairs { "I-sound", "I-assimilated", "none-sound", "none-hollow", "none-geminate", "none-final-weak" } do table.insert(allowed_vforms_with_weakness, form_with_weakness) end local allowed_vforms_with_weakness_set = m_table.listToSet(allowed_vforms_with_weakness) local function vform_supports_final_weak(vform) return vform ~= "XI" and vform ~= "XV" and vform ~= "IVq" end local function vform_supports_geminate(vform) return vform == "I" or vform == "III" or vform == "IV" or vform == "VI" or vform == "VII" or vform == "VIII" or vform == "X" end local function vform_supports_hollow(vform) return vform == "I" or vform == "IV" or vform == "VII" or vform == "VIII" or vform == "X" end local function vform_probably_impersonal_passive(vform, weakness, past_vowel, nonpast_vowel) return vform == "I" and req(past_vowel, I) or vform == "V" or vform == "VI" or vform == "X" or vform == "IIq" end local function vform_probably_full_passive(vform) return vform == "II" or vform == "III" or vform == "IV" or vform == "Iq" end local function vform_probably_no_passive(vform, weakness, past_vowel, nonpast_vowel) return vform == "I" and req(past_vowel, U) or vform == "VII" or vform == "IX" or vform == "XI" or vform == "XII" or vform == "XIII" or vform == "XIV" or vform == "XV" or vform == "IIIq" or vform == "IVq" end -- Active vforms II, III, IV, Iq use non-past prefixes in -u- instead of -a-. local function prefix_vowel_from_vform(vform) if vform == "II" or vform == "III" or vform == "IV" or vform == "Iq" then return "u" else return "a" end end -- True if the active non-past takes a-vocalization rather than i-vocalization in its last syllable. local function vform_nonpast_a_vowel(vform) return vform == "V" or vform == "VI" or vform == "XV" or vform == "IIq" end -- True if the `passive` spec indicates a passive-only verb. local function is_passive_only(passive) return passive == "onlypass" or passive == "onlypass-impers" end export.is_passive_only = is_passive_only -- for use in [[Module:ar-headword]] ------------------------------------------------------------------------------- -- Properties of specific sounds -- ------------------------------------------------------------------------------- -- Is radical wāw (و) or yāʾ (ي)? local function is_waw_ya(rad) return req(rad, W) or req(rad, Y) end -- Check that radical is wāw (و) or yāʾ (ي), error if not local function check_waw_ya(rad) if not is_waw_ya(rad) then error("Expecting weak radical: '" .. rget(rad) .. "' should be " .. W .. " or " .. Y) end end -- Form-I verb حيّ or حيي and form-X verb استحيا or استحى local function hayy_radicals(rad1, rad2, rad3) return req(rad1, "ح") and req(rad2, Y) and is_waw_ya(rad3) end -- FUCK ME HARD. "Lua error at line 1514: main function has more than 200 local variables". local function create_conjugations() ------------------------------------------------------------------------------- -- Radicals associated with various irregular verbs -- ------------------------------------------------------------------------------- -- Form-I verb أخذ or form-VIII verb اتخذ local function axadh_radicals(rad1, rad2, rad3) return req(rad1, HAMZA) and req(rad2, "خ") and req(rad3, "ذ") end -- Form-I verb whose imperative has a reduced form: أكل and أخذ and أمر. Return "shortonly" if only -- short-form imperatives exist (أكل and أخذ) or "shortlong" if long-form imperatives also exist (أمر); -- they are used after a clitic like فَ and وَ. local function reduced_imperative_verb(rad1, rad2, rad3) return axadh_radicals(rad1, rad2, rad3) and "shortonly" or req(rad1, HAMZA) and req(rad2, "ك") and req(rad3, "ل") and "shortonly" or req(rad1, HAMZA) and req(rad2, "م") and req(rad3, "ر") and "shortlong" end -- Form-I verb رأى and form-IV verb أرى local function raa_radicals(rad1, rad2, rad3) return req(rad1, "ر") and req(rad2, HAMZA) and is_waw_ya(rad3) end -- Form-I verb سأل local function saal_radicals(rad1, rad2, rad3) return req(rad1, "س") and req(rad2, HAMZA) and req(rad3, "ل") end -- Form-I verb كان local function kaan_radicals(rad1, rad2, rad3) return req(rad1, "ك") and req(rad2, W) and req(rad3, N) end ------------------------------------------------------------------------------- -- Sets of past endings -- ------------------------------------------------------------------------------- -- The 13 endings of the sound/hollow/geminate past tense. local past_endings = { -- singular SK .. TU, SK .. TA, SK .. "تِ", A, A .. "تْ", --dual SK .. "تُمَا", AA, A .. "تَا", -- plural SK .. "نَا", SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this SK .. "تُن" .. SH .. A, UU .. ALIF, SK .. "نَ" } -- Make endings for final-weak past in -aytu or -awtu. AYAW is AY or AW as appropriate. Note that AA and AW are -- global variables. local function make_past_endings_ay_aw(ayaw, third_sg_masc) return { -- singular ayaw .. SK .. TU, ayaw .. SK .. TA, ayaw .. SK .. "تِ", third_sg_masc, A .. "تْ", --dual ayaw .. SK .. "تُمَا", ayaw .. AA, A .. "تَا", -- plural ayaw .. SK .. "نَا", ayaw .. SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this ayaw .. SK .. "تُن" .. SH .. A, AW .. SK .. ALIF, ayaw .. SK .. "نَ" } end -- past final-weak -aytu endings local past_endings_ay = make_past_endings_ay_aw(AY, AAMAQ) -- past final-weak -awtu endings local past_endings_aw = make_past_endings_ay_aw(AW, AA) -- used for alternative endings for form-X geminate verbs like اِسْتَمَرَّ local past_endings_ay_12_person_only = { -- singular AY .. SK .. TU, AY .. SK .. TA, AY .. SK .. "تِ", {}, {}, --dual AY .. SK .. "تُمَا", {}, {}, -- plural AY .. SK .. "نَا", AY .. SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this AY .. SK .. "تُن" .. SH .. A, {}, {}, } -- Make endings for final-weak past in -ītu or -ūtu. IIUU is ī or ū as appropriate. Note that AA and UU are global -- variables. local function make_past_endings_ii_uu(iiuu) return { -- singular iiuu .. TU, iiuu .. TA, iiuu .. "تِ", iiuu .. A, iiuu .. A .. "تْ", --dual iiuu .. "تُمَا", iiuu .. AA, iiuu .. A .. "تَا", -- plural iiuu .. "نَا", iiuu .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this iiuu .. "تُن" .. SH .. A, UU .. ALIF, iiuu .. "نَ" } end -- past final-weak -ītu endings local past_endings_ii = make_past_endings_ii_uu(II) -- past final-weak -ūtu endings local past_endings_uu = make_past_endings_ii_uu(UU) ------------------------------------------------------------------------------- -- Sets of non-past prefixes and endings -- ------------------------------------------------------------------------------- local nonpast_prefix_consonants = { -- singular HAMZA, T, T, Y, T, -- dual T, Y, T, -- plural N, T, T, Y, Y } -- There are only five distinct endings in all non-past verbs. Make any set of non-past endings given these five -- distinct endings. local function make_nonpast_endings(null, fem, dual, pl, fempl) return { -- singular null, null, fem, null, null, -- dual dual, dual, dual, -- plural null, pl, fempl, pl, fempl } end -- endings for non-past indicative local ind_endings = make_nonpast_endings( U, II .. NA, AANI, UU .. NA, SK .. NA ) -- Make the endings for non-past subjunctive/jussive, given the vowel diacritic used in "null" endings -- (1s/2ms/3ms/3fs/1p). local function make_sub_juss_endings(dia_null) return make_nonpast_endings( dia_null, II, AA, UU .. ALIF, SK .. NA ) end -- endings for non-past subjunctive local sub_endings = make_sub_juss_endings(A) -- endings for non-past jussive local juss_endings = make_sub_juss_endings(SK) -- endings for alternative geminate non-past jussive in -a; same as subjunctive local juss_endings_alt_a = sub_endings -- endings for alternative geminate non-past jussive in -i local juss_endings_alt_i = make_sub_juss_endings(I) -- Endings for final-weak non-past indicative in -ā. Note that AY, AW and AAMAQ are global variables. local ind_endings_aa = make_nonpast_endings( AAMAQ, AYSK .. NA, AY .. AANI, AWSK .. NA, AYSK .. NA ) -- Make endings for final-weak non-past indicative in -ī or -ū; IIUU is ī or ū as appropriate. Note that II and UU -- are global variables. local function make_ind_endings_ii_uu(iiuu) return make_nonpast_endings( iiuu, II .. NA, iiuu .. AANI, UU .. NA, iiuu .. NA ) end -- endings for final-weak non-past indicative in -ī local ind_endings_ii = make_ind_endings_ii_uu(II) -- endings for final-weak non-past indicative in -ū local ind_endings_uu = make_ind_endings_ii_uu(UU) -- Endings for final-weak non-past subjunctive in -ā. Note that AY, AW, ALIF, AAMAQ are global variables. local sub_endings_aa = make_nonpast_endings( AAMAQ, AYSK, AY .. AA, AWSK .. ALIF, AYSK .. NA ) -- Make endings for final-weak non-past subjunctive in -ī or -ū. IIUU is ī or ū as appropriate. Note that AA, II, -- UU, ALIF are global variables. local function make_sub_endings_ii_uu(iiuu) return make_nonpast_endings( iiuu .. A, II, iiuu .. AA, UU .. ALIF, iiuu .. NA ) end -- endings for final-weak non-past subjunctive in -ī local sub_endings_ii = make_sub_endings_ii_uu(II) -- endings for final-weak non-past subjunctive in -ū local sub_endings_uu = make_sub_endings_ii_uu(UU) -- endings for final-weak non-past jussive in -ā local juss_endings_aa = make_nonpast_endings( A, AYSK, AY .. AA, AWSK .. ALIF, AYSK .. NA ) -- Make endings for final-weak non-past jussive in -ī or -ū. IU is short i or u, IIUU is long ī or ū as appropriate. -- Note that AA, II, UU, ALIF are global variables. local function make_juss_endings_ii_uu(iu, iiuu) return make_nonpast_endings( iu, II, iiuu .. AA, UU .. ALIF, iiuu .. NA ) end -- endings for final-weak non-past jussive in -ī local juss_endings_ii = make_juss_endings_ii_uu(I, II) -- endings for final-weak non-past jussive in -ū local juss_endings_uu = make_juss_endings_ii_uu(U, UU) ------------------------------------------------------------------------------- -- Sets of imperative endings -- ------------------------------------------------------------------------------- -- Extract the second person jussive endings to get corresponding imperative endings. local function imperative_endings_from_jussive(endings) return {endings[2], endings[3], endings[6], endings[10], endings[11]} end -- normal imperative endings local imp_endings = imperative_endings_from_jussive(juss_endings) -- alternative geminate imperative endings in -a local imp_endings_alt_a = imperative_endings_from_jussive(juss_endings_alt_a) -- alternative geminate imperative endings in -i local imp_endings_alt_i = imperative_endings_from_jussive(juss_endings_alt_i) -- final-weak imperative endings in -ā local imp_endings_aa = imperative_endings_from_jussive(juss_endings_aa) -- final-weak imperative endings in -ī local imp_endings_ii = imperative_endings_from_jussive(juss_endings_ii) -- final-weak imperative endings in -ū local imp_endings_uu = imperative_endings_from_jussive(juss_endings_uu) ------------------------------------------------------------------------------- -- Basic functions to inflect tenses -- ------------------------------------------------------------------------------- -- Add to `base` the inflections for the tense indicated by `tense` (the prefix in the slot names, e.g. 'past' -- or 'juss_pass'), formed by combining the `prefixes`, `stems` and `endings`. Each of `prefixes`, `stems` and -- `endings` is either a sequence of 5 (for the imperative) or 13 (for other tenses) abbreviated form lists (each of -- which is either a string, a form object, or a list of strings and/or form objects; see -- [[Module:inflection utilities]] for more info). Alternatively, any of `prefixes`, `stems` or `endings` can be a -- single-element list containing an abbreviated form list, with an additional key `all_same` set to true, or (as a -- special case) a single string; in the latter cases, the same value is used for all 5 or 13 slots. If existing -- inflections already exist, they will be added to, not overridden. `pnums` is the list of person/number slot name -- suffixes, which must match up with the elements in `prefixes`, `stems` and `endings` (i.e. 5 for imperative, 13 -- otherwise). local function inflect_tense_1(base, tense, prefixes, stems, endings, pnums) if not prefixes or not stems or not endings then return end local function verify_affixes(affixname, affixes) local function interr(msg) error(("Internal error: For tense '%s', '%s' %s: %s"):format(tense, affixname, msg, dump(affixes))) end if type(affixes) == "string" then -- do nothing elseif type(affixes) ~= "table" then interr("is not a table or string") elseif affixes.all_same then if #affixes ~= 1 then interr(("with all_same = true should have length 1 but has length %s"):format(#affixes)) end else if #affixes ~= #pnums then interr(("should have length %s but has length %s"):format(#pnums, #affixes)) end end end verify_affixes("prefixes", prefixes) verify_affixes("stems", stems) verify_affixes("endings", endings) local function get_affix(affixes, i) if type(affixes) == "string" then return affixes elseif affixes.all_same then return affixes[1] else return affixes[i] end end for i, pnum in ipairs(pnums) do local prefix = get_affix(prefixes, i) local stem = get_affix(stems, i) local ending = get_affix(endings, i) local slot = tense .. "_" .. pnum add3(base, slot, prefix, stem, ending) end end -- Add to `base` the inflections for the tense indicated by `tense` (the prefix in the slot names, e.g. 'past' -- or 'juss_pass'), formed by combining the `prefixes`, `stems` and `endings`. This is a simple wrapper around -- inflect_tense_1() that applies to all tenses other than the imperative; see inflect_tense_1() for more -- information about the parameters. local function inflect_tense(base, tense, prefixes, stems, endings) inflect_tense_1(base, tense, prefixes, stems, endings, all_person_number_list) end -- Like inflect_tense() but for the imperative, which has only five parts instead of 13 and no prefixes. local function inflect_tense_imp(base, stems, endings) inflect_tense_1(base, "imp", "", stems, endings, imp_person_number_list) end ------------------------------------------------------------------------------- -- Functions to inflect the past tense -- ------------------------------------------------------------------------------- -- Generate past verbs using specified vowel and consonant stems; works for sound, assimilated, hollow, and geminate -- verbs, active and passive. local function past_2stem_conj(base, tense, v_stem, c_stem, footnote_12) local passive = tense:find("_pass") and "_pass" or "" -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "past" .. passive .. "_v", v_stem) local c_stem_12 = c_stem if footnote_12 then c_stem_12 = iut.combine_form_and_footnotes(c_stem_12, footnote_12) end c_stem_12 = override_stem_if_needed(base, "past" .. passive .. "_c", c_stem_12) local c_stem_3 = override_stem_if_needed(base, "past" .. passive .. "_c", c_stem) inflect_tense(base, tense, "", { -- singular c_stem_12, c_stem_12, c_stem_12, v_stem, v_stem, --dual c_stem_12, v_stem, v_stem, -- plural c_stem_12, c_stem_12, c_stem_12, v_stem, c_stem_3 }, past_endings) end -- Generate past verbs using single specified stem; works for sound and assimilated verbs, active and passive. local function past_1stem_conj(base, tense, stem) past_2stem_conj(base, tense, stem, stem) end ------------------------------------------------------------------------------- -- Functions to inflect non-past tenses -- ------------------------------------------------------------------------------- -- Generate non-past conjugation, with two stems, for vowel-initial and consonant-initial endings, respectively. -- Useful for active and passive; for all forms; for all weaknesses (sound, assimilated, hollow, final-weak and -- geminate) and for all types of non-past (indicative, subjunctive, jussive) except for the imperative. (There is a -- separate wrapper function below for geminate jussives because they have three alternants.) Both stems may be the -- same, e.g. for sound verbs. -- `prefix_vowel` will be either "a" or "u". `endings` should be an array of 13 items. If `endings` is nil or -- omitted, infer the endings from the tense. If `jussive` is true, or `endings` is nil and `tense` indicatives -- jussive, use the jussive pattern of vowel/consonant stems (different from the normal ones). local function nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, endings, jussive) local passive = tense:find("_pass") and "_pass" or "" -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "nonpast" .. passive .. "_v", v_stem and q(dia[prefix_vowel], v_stem) or nil) c_stem = override_stem_if_needed(base, "nonpast" .. passive .. "_c", c_stem and q(dia[prefix_vowel], c_stem) or nil) if not endings then if tense:find("^ind") then endings = ind_endings elseif tense:find("^sub") then endings = sub_endings elseif tense:find("^juss") then jussive = true endings = juss_endings else error("Internal error: Unrecognized tense '" .. tense .."'") end end if not jussive then inflect_tense(base, tense, nonpast_prefix_consonants, { -- singular v_stem, v_stem, v_stem, v_stem, v_stem, --dual v_stem, v_stem, v_stem, -- plural v_stem, v_stem, c_stem, v_stem, c_stem }, endings) else inflect_tense(base, tense, nonpast_prefix_consonants, { -- singular -- 'adlul, tadlul, tadullī, yadlul, tadlul c_stem, c_stem, v_stem, c_stem, c_stem, --dual -- tadullā, yadullā, tadullā v_stem, v_stem, v_stem, -- plural -- nadlul, tadullū, tadlulna, yadullū, yadlulna c_stem, v_stem, c_stem, v_stem, c_stem }, endings) end end -- Generate non-past conjugation with one stem (no distinct stems for vowel-initial and consonant-initial endings). -- See nonpast_2stem_conj(). local function nonpast_1stem_conj(base, tense, prefix_vowel, stem, endings, jussive) nonpast_2stem_conj(base, tense, prefix_vowel, stem, stem, endings, jussive) end -- Generate active/passive jussive geminative. There are three alternants, two with terminations -a and -i and one -- in a null termination with a distinct pattern of vowel/consonant stem usage. See nonpast_2stem_conj() for a -- description of the arguments. local function jussive_gem_conj(base, tense, prefix_vowel, v_stem, c_stem) -- alternative in -a nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings_alt_a) -- alternative in -i nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings_alt_i) -- alternative in -null; requires different combination of v_stem and -- c_stem since the null endings require the c_stem (e.g. "tadlul" here) -- whereas the corresponding endings above in -a or -i require the v_stem -- (e.g. "tadulla, tadulli" above) nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings, "jussive") end ------------------------------------------------------------------------------- -- Functions to inflect the imperative -- ------------------------------------------------------------------------------- -- Generate imperative conjugation, with two stems, for vowel-initial and consonant-initial endings, respectively. -- Useful for all forms, and for all weaknesses other than final-weak. Note that the two stems may be the same -- (specifically for sound and assimilated verbs). If `endings` is nil or omitted, use `imp_endings`. If `alt_gem` -- is specified, use the pattern of vowel and consonant stems appropriate for the alternative geminate imperatives -- that use a null ending of -a or -i instead of an empty ending. local function make_2stem_imperative(base, v_stem, c_stem, endings, alt_gem) endings = endings or imp_endings -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "imp_v", v_stem) c_stem = override_stem_if_needed(base, "imp_c", c_stem) if alt_gem then inflect_tense_imp(base, {v_stem, v_stem, v_stem, v_stem, c_stem}, endings) else inflect_tense_imp(base, {c_stem, v_stem, v_stem, v_stem, c_stem}, endings) end end -- Generate imperative parts for sound or assimilated verbs. local function make_1stem_imperative(base, stem) make_2stem_imperative(base, stem, stem) end -- Generate imperative parts for geminate verbs form I (also IV, VII, VIII, X). local function make_gem_imperative(base, v_stem, c_stem) make_2stem_imperative(base, v_stem, c_stem, imp_endings_alt_a, "alt gem") make_2stem_imperative(base, v_stem, c_stem, imp_endings_alt_i, "alt gem") make_2stem_imperative(base, v_stem, c_stem) end ------------------------------------------------------------------------------- -- Functions to inflect entire verbs -- ------------------------------------------------------------------------------- -- Generate finite parts of a sound verb (also works for assimilated verbs) from five stems (past and non-past, -- active and passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u"). local function make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel) past_1stem_conj(base, "past", past_stem) past_1stem_conj(base, "past_pass", past_pass_stem) nonpast_1stem_conj(base, "ind", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "sub", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "juss", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem) make_1stem_imperative(base, imp_stem) end local function past_final_weak_endings_from_vowel(vowel) if vowel == "ay" then return past_endings_ay elseif vowel == "aw" then return past_endings_aw elseif vowel == "ī" then return past_endings_ii elseif vowel == "ū" then return past_endings_uu elseif not vowel then return nil else error(("Internal error: Unrecognized past final-weak vowel spec '%s'"):format(vowel)) end end local function nonpast_final_weak_endings_from_vowel(vowel) if vowel == "ā" then return ind_endings_aa, sub_endings_aa, juss_endings_aa, imp_endings_aa elseif vowel == "ī" then return ind_endings_ii, sub_endings_ii, juss_endings_ii, imp_endings_ii elseif vowel == "ū" then return ind_endings_uu, sub_endings_uu, juss_endings_uu, imp_endings_uu elseif not vowel then return nil else error(("Internal error: Unrecognized non-past final-weak vowel spec '%s'"):format(vowel)) end end -- Generate finite parts of a final-weak verb from five stems (past and non-past, active and passive, plus -- imperative), the past active ending vowel (ay, aw, ī or ū), the non-past active ending vowel (ā, ī or ū) and the -- prefix vowel in the active non-past (a or u). local function make_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, past_ending_vowel, nonpast_ending_vowel, prefix_vowel) past_stem = override_stem_if_needed(base, "past", past_stem) past_pass_stem = override_stem_if_needed(base, "past_pass", past_pass_stem) -- Don't call override_stem_if_needed() here for non-past stems; it's called in nonpast_2stem_conj(). imp_stem = override_stem_if_needed(base, "imp", imp_stem) -- + not supported for ending vowel overrides past_ending_vowel = base.stem_overrides.past_final_weak_vowel or past_ending_vowel local past_pass_ending_vowel = base.stem_overrides.past_pass_final_weak_vowel or "ī" nonpast_ending_vowel = base.stem_overrides.nonpast_final_weak_vowel or nonpast_ending_vowel local nonpast_pass_ending_vowel = base.stem_overrides.nonpast_pass_final_weak_vowel or "ā" local past_endings = past_final_weak_endings_from_vowel(past_ending_vowel) local past_pass_endings = past_final_weak_endings_from_vowel(past_pass_ending_vowel) local ind_endings, sub_endings, juss_endings, imp_endings = nonpast_final_weak_endings_from_vowel(nonpast_ending_vowel) local ind_pass_endings, sub_pass_endings, juss_pass_endings = nonpast_final_weak_endings_from_vowel(nonpast_pass_ending_vowel) inflect_tense(base, "past", "", {past_stem, all_same = 1}, past_endings) inflect_tense(base, "past_pass", "", {past_pass_stem, all_same = 1}, past_pass_endings) nonpast_1stem_conj(base, "ind", prefix_vowel, nonpast_stem, ind_endings) nonpast_1stem_conj(base, "sub", prefix_vowel, nonpast_stem, sub_endings) nonpast_1stem_conj(base, "juss", prefix_vowel, nonpast_stem, juss_endings) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem, ind_pass_endings) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem, sub_pass_endings) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem, juss_pass_endings) inflect_tense_imp(base, {imp_stem, all_same = 1}, imp_endings) end -- Generate finite parts of an augmented (form II+) final-weak verb from five stems (past and non-past, active and -- passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u") and a flag indicating if it -- behaves like a form V/VI verb in taking non-past endings in -ā instead of -ī. local function make_augmented_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel, form56) make_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, "ay", form56 and "ā" or "ī", prefix_vowel) end -- Generate finite parts of an augmented (form II+) sound or final-weak verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (active past stem minus last syllable (= -al or -ā)); -- * `nonpast_stem_base` (non-past stem minus last syllable (= -al/-il or -ā/-ī); -- * `past_pass_stem_base` (passive past stem minus last syllable (= -il or -ī)); -- * `vn` (verbal noun). local function make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) insert_form_or_forms(base, "vn", vn) local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local final_weak = is_final_weak(base, vowel_spec) local prefix_vowel = prefix_vowel_from_vform(base.verb_form) local form56 = vform_nonpast_a_vowel(base.verb_form) local a_base_suffix = final_weak and "" or q(A, lastrad) local i_base_suffix = final_weak and "" or q(I, lastrad) -- past and non-past stems, active and passive local past_stem = q(past_stem_base, a_base_suffix) -- In forms 5 and 6, non-past has /a/ as last stem vowel in the non-past -- in both active and passive, but /i/ in the active participle and /a/ -- in the passive participle. Elsewhere, consistent /i/ in active non-past -- and participle, consistent /a/ in passive non-past and participle. -- Hence, forms 5 and 6 differ only in the non-past active (but not -- active participle), so we have to split the finite non-past stem and -- active participle stem. local nonpast_stem = q(nonpast_stem_base, form56 and a_base_suffix or i_base_suffix) local ap_stem = q(nonpast_stem_base, i_base_suffix) local past_pass_stem = q(past_pass_stem_base, i_base_suffix) local nonpast_pass_stem = q(nonpast_stem_base, a_base_suffix) -- imperative stem local imp_stem = q(past_stem_base, form56 and a_base_suffix or i_base_suffix) -- make parts if final_weak then make_augmented_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel, form56) else make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel) end -- active and passive participle if final_weak then insert_form_or_forms(base, "ap", q(MU, ap_stem, IN)) insert_form_or_forms(base, "pp", q(MU, nonpast_pass_stem, AN, AMAQ)) else insert_form_or_forms(base, "ap", q(MU, ap_stem)) insert_form_or_forms(base, "pp", q(MU, nonpast_pass_stem)) end end -- Generate finite parts of a hollow or geminate verb from ten stems (vowel and consonant stems for each of past and -- non-past, active and passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u"), plus a -- flag indicating if we are a geminate verb. local function make_hollow_geminate_verb(base, geminate, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel, altgem_note) past_2stem_conj(base, "past", past_v_stem, past_c_stem, altgem_note) past_2stem_conj(base, "past_pass", past_pass_v_stem, past_pass_c_stem) nonpast_2stem_conj(base, "ind", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "sub", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "ind_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) nonpast_2stem_conj(base, "sub_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) if geminate then jussive_gem_conj(base, "juss", prefix_vowel, nonpast_v_stem, nonpast_c_stem) jussive_gem_conj(base, "juss_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) make_gem_imperative(base, imp_v_stem, imp_c_stem) else nonpast_2stem_conj(base, "juss", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "juss_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) make_2stem_imperative(base, imp_v_stem, imp_c_stem) end end -- Generate finite parts of an augmented (form II+) hollow verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (invariable part of active past stem); -- * `nonpast_stem_base` (invariable part of nonpast stem); -- * `past_pass_stem_base` (invariable part of passive past stem); -- * `vn` (verbal noun). local function make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) insert_form_or_forms(base, "vn", vn) local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local form410 = base.verb_form == "IV" or base.verb_form == "X" local prefix_vowel = prefix_vowel_from_vform(base.verb_form) local a_base_suffix_v, a_base_suffix_c local i_base_suffix_v, i_base_suffix_c a_base_suffix_v = q(AA, lastrad) -- 'af-āl-a, inf-āl-a a_base_suffix_c = q(A, lastrad) -- 'af-al-tu, inf-al-tu i_base_suffix_v = q(II, lastrad) -- 'uf-īl-a, unf-īl-a i_base_suffix_c = q(I, lastrad) -- 'uf-il-tu, unf-il-tu -- past and non-past stems, active and passive, for vowel-initial and -- consonant-initial endings local past_v_stem = q(past_stem_base, a_base_suffix_v) local past_c_stem = q(past_stem_base, a_base_suffix_c) -- yu-f-īl-u, ya-staf-īl-u but yanf-āl-u, yaft-āl-u local nonpast_v_stem = q(nonpast_stem_base, form410 and i_base_suffix_v or a_base_suffix_v) local nonpast_c_stem = q(nonpast_stem_base, form410 and i_base_suffix_c or a_base_suffix_c) local past_pass_v_stem = q(past_pass_stem_base, i_base_suffix_v) local past_pass_c_stem = q(past_pass_stem_base, i_base_suffix_c) local nonpast_pass_v_stem = q(nonpast_stem_base, a_base_suffix_v) local nonpast_pass_c_stem = q(nonpast_stem_base, a_base_suffix_c) -- imperative stem local imp_v_stem = q(past_stem_base, form410 and i_base_suffix_v or a_base_suffix_v) local imp_c_stem = q(past_stem_base, form410 and i_base_suffix_c or a_base_suffix_c) -- make parts make_hollow_geminate_verb(base, false, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel) -- active participle insert_form_or_forms(base, "ap", q(MU, nonpast_v_stem)) -- passive participle insert_form_or_forms(base, "pp", q(MU, nonpast_pass_v_stem)) end -- Generate finite parts of an augmented (form II+) geminate verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (invariable part of active past stem; this and the stem bases below will end with a consonant -- for forms IV, X, IVq, and a short vowel for the others); -- * `nonpast_stem_base` (invariable part of nonpast stem); -- * `past_pass_stem_base` (invariable part of passive past stem); -- * `vn` (verbal noun); -- * `altgem_note` (footnote to add to active past 1/2-person forms, when alternative forms are supplied [form X]). local function make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn, altgem_note) insert_form_or_forms(base, "vn", vn) local vform = base.verb_form local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local prefix_vowel = prefix_vowel_from_vform(vform) local a_base_suffix_v, a_base_suffix_c local i_base_suffix_v, i_base_suffix_c if vform == "IV" or vform == "X" or vform == "IVq" then a_base_suffix_v = q(A, lastrad, SH) -- 'af-all a_base_suffix_c = q(SK, lastrad, A, lastrad) -- 'af-lal i_base_suffix_v = q(I, lastrad, SH) -- yuf-ill i_base_suffix_c = q(SK, lastrad, I, lastrad) -- yuf-lil else a_base_suffix_v = q(lastrad, SH) -- fā-ll, infa-ll a_base_suffix_c = q(lastrad, A, lastrad) -- fā-lal, infa-lal i_base_suffix_v = q(lastrad, SH) -- yufā-ll, yanfa-ll i_base_suffix_c = q(lastrad, I, lastrad) -- yufā-lil, yanfa-lil end -- past and non-past stems, active and passive, for vowel-initial and -- consonant-initial endings local past_v_stem = q(past_stem_base, a_base_suffix_v) local past_c_stem = q(past_stem_base, a_base_suffix_c) local nonpast_v_stem = q(nonpast_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_v or i_base_suffix_v) local nonpast_c_stem = q(nonpast_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_c or i_base_suffix_c) -- NOTE: Formerly had a comment that "vform III and VI passive past do not have contracted parts, only -- uncontracted parts, which are added separately by those functions". This is based on Mace -- "Arabic Verbs and Essential Grammar" (1999) entry 63 (continued), which shows passive ḥūjija but no ḥūjja; -- but that is apparently a mistake, as (1) verb tables in other books do show contracted passive parts for -- these forms; (2) there is no mention of such an exception on p. 99, which explains how geminate ("doubled") -- verbs work (on the contrary, it says "The contracted and uncontracted pairs (see above) are found all -- over Forms III and VI of the doubled verbs"). local past_pass_v_stem = q(past_pass_stem_base, i_base_suffix_v) local past_pass_c_stem = q(past_pass_stem_base, i_base_suffix_c) local nonpast_pass_v_stem = q(nonpast_stem_base, a_base_suffix_v) local nonpast_pass_c_stem = q(nonpast_stem_base, a_base_suffix_c) -- imperative stem local imp_v_stem = q(past_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_v or i_base_suffix_v) local imp_c_stem = q(past_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_c or i_base_suffix_c) -- make parts make_hollow_geminate_verb(base, "geminate", past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel, altgem_note) -- active participle insert_form_or_forms(base, "ap", q(MU, nonpast_v_stem)) -- passive participle insert_form_or_forms(base, "pp", q(MU, nonpast_pass_v_stem)) end ------------------------------------------------------------------------------- -- Conjugation functions for specific conjugation types -- ------------------------------------------------------------------------------- local function form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1) local imp_vowel = map_vowel(nonpast_vowel, function(vow) if vow == A or vow == I then return I elseif vow == U then return U elseif not skip_slot(base, "imp_2ms") then error(("Internal error: Non-past vowel %s isn't a, i, or u, should have been caught earlier"):format( dump(nonpast_vowel))) else -- Passive-only; imperative won't ever be displayed so it doesn't matter. return I end end) -- Mace ("Arabic Verbs and Essentials of Grammar" p. 63: [https://archive.org/details/arabicverbsessen00john/page/62/mode/2up]) -- claims that initial hamza is assimilated/elided into a long vowel in the form-I imperative, but apparently -- this isn't corrrect. local vowel_on_alif = map_vowel(imp_vowel, function(vow) return ALIF .. vow end) return q(vowel_on_alif, rad1, SK) end -- Implement form-I sound or assimilated verb. ASSIMILATED is true for assimilated verbs. local function make_form_i_sound_assimilated_verb(base, vowel_spec, assimilated) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied -- past and non-past stems, active and passive local past_stem = q(rad1, A, rad2, past_vowel, rad3) local nonpast_stem = assimilated and q(rad2, nonpast_vowel, rad3) or q(rad1, SK, rad2, nonpast_vowel, rad3) local past_pass_stem = q(rad1, U, rad2, I, rad3) local nonpast_pass_stem = q(rad1, SK, rad2, A, rad3) -- imperative stem -- check for irregular verb with reduced imperative (أَخَذَ or أَكَلَ or أَمَرَ) local reducedimp = reduced_imperative_verb(rad1, rad2, rad3) if reducedimp then base.irregular = true end local imp_stem_suffix = q(rad2, nonpast_vowel, rad3) local long_imp_stem_base = form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1) local short_imp_stem_base = "" local imp_stem = q((assimilated or reducedimp) and "" or long_imp_stem_base, imp_stem_suffix) -- make parts make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, "a") if reducedimp == "shortlong" then make_1stem_imperative(base, iut.combine_form_and_footnotes(q(long_imp_stem_base, imp_stem_suffix), mw.getCurrentFrame():preprocess("[used especially with a clitic such as {{m|ar|فَ}} or {{m|ar|وَ}}]"))) end -- Check for irregular verb سَأَلَ with alternative jussive and imperative. Calling this after make_sound_verb() -- adds additional entries to the paradigm parts. if saal_radicals(rad1, rad2, rad3) then base.irregular = true nonpast_1stem_conj(base, "juss", "a", "سَل") nonpast_1stem_conj(base, "juss_pass", "u", "سَل") make_1stem_imperative(base, "سَل") end -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, I, rad3)) -- Insert alternative active participle (stative type I) فَعِيل. Since not all verbs have this, we require that -- verbs that do have it specify it explicitly; a shortcut ++ is provided to make this easier (e.g. <ap:++> to -- indicate that the alternative form should be used for the active participle, <ap:+,++> to indicate that both -- forms can be used, and <ap:-> to indicate that there is no active participle). The same form is used for -- secondary default passive participle. insert_ap2_pp2(base, q(rad1, A, rad2, II, rad3)) -- Active participle, stative type II فَعِل (+++). insert_form_or_forms(base, "ap3", q(rad1, A, rad2, I, rad3)) -- Active participle, color/defect أَفْعَل (+cd). insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, A, rad3)) -- Active participle, -ān فَعْلَان (+an). insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, UU, rad3)) end conjugations["I-sound"] = function(base, vowel_spec) make_form_i_sound_assimilated_verb(base, vowel_spec, false) end conjugations["none-sound"] = function(base, vowel_spec) -- All default stems are nil. make_sound_verb(base) end conjugations["none-hollow"] = function(base, vowel_spec) -- All default stems are nil. make_hollow_geminate_verb(base, false) end conjugations["none-geminate"] = function(base, vowel_spec) -- All default stems are nil. make_hollow_geminate_verb(base, "geminate") end conjugations["none-final-weak"] = function(base, vowel_spec) -- All default stems are nil. make_final_weak_verb(base) end conjugations["I-assimilated"] = function(base, vowel_spec) make_form_i_sound_assimilated_verb(base, vowel_spec, "assimilated") end local function make_form_i_hayy_verb(base, vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied base.irregular = true -- past and non-past stems, active and passive, and imperative stem local past_c_stem = "حَيِي" local past_v_stem_long = past_c_stem local past_v_stem_short = "حَيّ" local past_pass_c_stem = "حُيِي" local past_pass_v_stem_long = past_pass_c_stem local past_pass_v_stem_short = "حُيّ" local nonpast_stem = "حْي" local nonpast_pass_stem = nonpast_stem local imp_stem = _I .. nonpast_stem -- make parts past_2stem_conj(base, "past", {}, past_c_stem) past_2stem_conj(base, "past_pass", {}, past_pass_c_stem) local variant = vowel_spec.variant or "both" if variant == "short" or variant == "both" then past_2stem_conj(base, "past", past_v_stem_short, {}) past_2stem_conj(base, "past_pass", past_pass_v_stem_short, {}) end function inflect_long_variant(tense, long_stem, short_stem) inflect_tense_1(base, tense, "", {long_stem, long_stem, long_stem, long_stem, short_stem}, {past_endings[4], past_endings[5], past_endings[7], past_endings[8], past_endings[12]}, {"3ms", "3fs", "3md", "3fd", "3mp"}) end if variant == "long" or variant == "both" then inflect_long_variant("past", past_v_stem_long, past_v_stem_short) inflect_long_variant("past_pass", past_pass_v_stem_long, past_pass_v_stem_short) end nonpast_1stem_conj(base, "ind", "a", nonpast_stem, ind_endings_aa) nonpast_1stem_conj(base, "sub", "a", nonpast_stem, sub_endings_aa) nonpast_1stem_conj(base, "juss", "a", nonpast_stem, juss_endings_aa) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem, ind_endings_aa) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem, sub_endings_aa) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem, juss_endings_aa) inflect_tense_imp(base, {imp_stem, all_same = 1}, imp_endings_aa) -- active and passive participles apparently do not exist for this verb end -- Implement form-I final-weak assimilated+final-weak verb. ASSIMILATED is true for assimilated verbs. local function make_form_i_final_weak_verb(base, vowel_spec, assimilated) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- حَيَّ or حَيِيَ is weird enough that we handle it as a separate function. if hayy_radicals(rad1, rad2, rad3) then make_form_i_hayy_verb(base, vowel_spec) return end -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- Past and non-past stems, active and passive, and imperative stem. local past_stem = q(rad1, A, rad2) local past_pass_stem = q(rad1, U, rad2) local nonpast_stem, nonpast_pass_stem, imp_stem if raa_radicals(rad1, rad2, rad3) then base.irregular = true nonpast_stem = rad1 nonpast_pass_stem = rad1 imp_stem = rad1 else nonpast_pass_stem = q(rad1, SK, rad2) if assimilated then nonpast_stem = rad2 imp_stem = rad2 else nonpast_stem = nonpast_pass_stem imp_stem = q(form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1), rad2) end end -- Make parts. local past_ending_vowel = req(rad3, Y) and req(past_vowel, A) and "ay" or req(rad3, W) and req(past_vowel, A) and "aw" or req(past_vowel, I) and "ī" or "ū" -- Try to preserve footnotes attached to the third radical and/or past and/or non-past vowels. local past_footnotes = iut.combine_footnotes(rget_footnotes(rad3), rget_footnotes(past_vowel)) local nonpast_ending_vowel = req(nonpast_vowel, A) and "ā" or req(nonpast_vowel, I) and "ī" or "ū" local nonpast_footnotes = iut.combine_footnotes(rget_footnotes(rad3), rget_footnotes(nonpast_vowel)) make_final_weak_verb(base, iut.combine_form_and_footnotes(past_stem, past_footnotes), iut.combine_form_and_footnotes(past_pass_stem, past_footnotes), iut.combine_form_and_footnotes(nonpast_stem, nonpast_footnotes), iut.combine_form_and_footnotes(nonpast_pass_stem, nonpast_footnotes), iut.combine_form_and_footnotes(imp_stem, nonpast_footnotes), past_ending_vowel, nonpast_ending_vowel, "a") -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, IN)) -- Active participle, stative type I فَعِيّ (++). FIXME: Is this correct when rad3 is W? insert_ap2_pp2(base, q(rad1, A, rad2, II, SH)) -- Active participle, stative type II فَعٍ (+++). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "ap3", q(rad1, A, rad2, IN)) -- Active participle, color/defect أَفْعَى (+cd). insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, AAMAQ)) -- Active participle, -ān فَعْيَان or فَعْوَان (+an). -- FIXME: Any examples of this for both rad3 = W and y to verify it's correct? insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, req(rad3, Y) and II or UU, SH)) end conjugations["I-final-weak"] = function(base, vowel_spec) make_form_i_final_weak_verb(base, vowel_spec, false) end conjugations["I-assimilated+final-weak"] = function(base, vowel_spec) make_form_i_final_weak_verb(base, vowel_spec, "assimilated") end conjugations["I-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- In some sense, hollow vowels i~i and u~u are more "correct" than a~i and a~u, but the latter follow the -- pattern of other form-I verbs, so we map i~i to a~i and u~u to a~u in infer_radicals(). Now however we have -- to undo this to get the actual past vowel based on the non-past vowel. if req(past_vowel, A) then past_vowel = map_vowel(past_vowel, function(vow) return req(nonpast_vowel, A) and I or rget(nonpast_vowel) end) end local lengthened_nonpast = map_vowel(nonpast_vowel, function(vow) return vow == U and UU or vow == I and II or AA end) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- active past stems - vowel (v) and consonant (c) local past_v_stem = q(rad1, AA, rad3) local past_c_stem = q(rad1, past_vowel, rad3) -- active non-past stems - vowel (v) and consonant (c) local nonpast_v_stem = q(rad1, lengthened_nonpast, rad3) local nonpast_c_stem = q(rad1, nonpast_vowel, rad3) -- passive past stems - vowel (v) and consonant (c) -- 'ufīla, 'ufiltu local past_pass_v_stem = q(rad1, II, rad3) local past_pass_c_stem = q(rad1, I, rad3) -- passive non-past stems - vowel (v) and consonant (c) -- yufāla/yufalna -- stem is built differently but conjugation is identical to sound verbs local nonpast_pass_v_stem = q(rad1, AA, rad3) local nonpast_pass_c_stem = q(rad1, A, rad3) -- imperative stem local imp_v_stem = nonpast_v_stem local imp_c_stem = nonpast_c_stem -- make parts make_hollow_geminate_verb(base, false, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, "a") if kaan_radicals(rad1, rad2, rad3) then local endings = make_nonpast_endings(U, {}, {}, {}, {}) inflect_tense(base, "juss", nonpast_prefix_consonants, q(A, rad1), endings) base.irregular = true end -- Active participle. insert_form_or_forms(base, "ap1", req(rad3, HAMZA) and q(rad1, AA, HAMZA, IN) or q(rad1, AA, HAMZA, I, rad3)) -- Active participle, stative type I فَيِّد (++). FIXME: Any examples of this to verify it's correct? insert_ap2_pp2(base, q(rad1, A, Y, SH, I, rad3)) -- Active participle, stative type II فَيِد (+++). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "ap3", q(rad1, A, Y, I, rad3)) -- Active participle, color/defect أَفّيَد or أَفّوَد (+cd). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, A, rad3)) -- Active participle, -ān فَيْدَان or فَوْدَان (+an). Example: جَاعَ "to be hungry", act part جَوْعَان insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, req(rad2, Y) and II or UU, rad3)) end conjugations["I-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- active past stems - vowel (v) and consonant (c) local past_v_stem = q(rad1, A, rad2, SH) local past_c_stem = q(rad1, A, rad2, past_vowel, rad2) -- active non-past stems - vowel (v) and consonant (c) local nonpast_v_stem = q(rad1, nonpast_vowel, rad2, SH) local nonpast_c_stem = q(rad1, SK, rad2, nonpast_vowel, rad2) -- passive past stems - vowel (v) and consonant (c) -- dulla/dulilta local past_pass_v_stem = q(rad1, U, rad2, SH) local past_pass_c_stem = q(rad1, U, rad2, I, rad2) -- passive non-past stems - vowel (v) and consonant (c) --yudallu/yudlalna -- stem is built differently but conjugation is identical to sound verbs local nonpast_pass_v_stem = q(rad1, A, rad2, SH) local nonpast_pass_c_stem = q(rad1, SK, rad2, A, rad2) -- imperative stem local imp_v_stem = q(rad1, nonpast_vowel, rad2, SH) local imp_c_stem = q(form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1), rad2, nonpast_vowel, rad2) -- make parts make_hollow_geminate_verb(base, "geminate", past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, "a") -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, SH)) -- Active participle, stative type I فَعِيع (++). FIXME: Any examples of this to verify it's correct? insert_ap2_pp2(base, q(rad1, A, rad2, II, rad2)) -- Active participle, stative type II فَعّ (+++). Example: بَرَّ "to be pious", active participle بَرّ insert_form_or_forms(base, "ap3", q(rad1, A, rad2, SH)) -- Active participle, color/defect أَفَعّ (+cd). -- Example: لَصَّ "to be thievish, to steal repeatedly", active participle أَلَصّ. insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, A, rad2, SH)) -- Active participle, -ān فَعَّان (+an). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "apan", q(rad1, A, rad2, SH, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, UU, rad2)) end -- Return the ta- (active, past and non-past) and tu- (passive past) prefixes for a form II/III/V/VI verb. -- Form V and VI verbs normally use ta- and tu-, but reduced (base.reduced) verbs use different prefixes. Form II -- and III verbs have no prefix. local function form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vform = base.verb_form if vform == "V" or vform == "VI" then if base.reduced then -- To simplify the code, we generate two rad1's with a sukūn between them, which is cleaned up in -- postprocessing. return q(_I, rad1, SK), q(rad1, SK), q(_U, rad1, SK) else return TA, TA, TU end else return "", "", "" end end -- Make form II or V sound or final-weak verb. local function make_form_ii_v_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vn = vform == "V" and q(ta_past_prefix, rad1, A, rad2, SH, final_weak and IN or q(U, rad3)) or q(TA, rad1, SK, rad2, II, final_weak and AH or rad3) -- various stem bases local past_stem_base = q(ta_past_prefix, rad1, A, rad2, SH) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, A, rad2, SH) local past_pass_stem_base = q(tu_past_prefix, rad1, U, rad2, SH) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["II-sound"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["II-final-weak"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end local function make_form_iii_alt_vn(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) -- Insert alternative verbal noun فِعَال. Since not all verbs have this, we require that verbs that do have it -- specify it explicitly; a shortcut ++ is provided to make this easier (e.g. <vn:+,++> to indicate that -- both the normal verbal noun مُفَاعَلَة and secondary verbal noun فِعَال are available). insert_form_or_forms(base, "vn2", q(rad1, I, rad2, AA, final_weak and HAMZA or rad3)) end -- Make form III or VI sound or final-weak verb. local function make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vn = vform == "VI" and q(ta_past_prefix, rad1, AA, rad2, final_weak and IN or q(U, rad3)) or q(MU, rad1, AA, rad2, final_weak and AAH or q(A, rad3, AH)) -- various stem bases local past_stem_base = q(ta_past_prefix, rad1, AA, rad2) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, AA, rad2) local past_pass_stem_base = q(tu_past_prefix, rad1, UU, rad2) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) if vform == "III" then make_form_iii_alt_vn(base, vowel_spec) end end conjugations["III-sound"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["III-final-weak"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end -- Make form III or VI geminate verb. local function make_form_iii_vi_geminate_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) -- Alternative verbal noun فِعَال will be inserted when we add sound parts below. local vn = vform == "VI" and q(ta_past_prefix, rad1, AA, rad2, SH) or q(MU, rad1, AA, rad2, SH, AH) -- Various stem bases. local past_stem_base = q(ta_past_prefix, rad1, AA) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, AA) local past_pass_stem_base = q(tu_past_prefix, rad1, UU) -- Make parts. local variant = vowel_spec.variant or "short" if variant == "short" or variant == "both" then make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Also add alternative sound (non-compressed) parts. This will lead to some duplicate entries, but they are -- removed during addition. if variant == "long" or variant == "both" then make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) elseif vform == "III" then -- Still need to add the alternative form-III verbal noun. make_form_iii_alt_vn(base, vowel_spec) end end conjugations["III-geminate"] = function(base, vowel_spec) make_form_iii_vi_geminate_verb(base, vowel_spec) end -- Make form IV sound or final-weak verb. local function make_form_iv_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) -- core of stem base, minus stem prefixes local stem_core -- check for irregular verb أَرَى local is_raa = raa_radicals(rad1, rad2, rad3) if is_raa then base.irregular = true stem_core = rad1 else stem_core = q(rad1, SK, rad2) end -- verbal noun local vn = is_raa and q(HAMZA, I, stem_core, AA, HAMZA, AH) or q(HAMZA, I, stem_core, AA, final_weak and HAMZA or rad3) -- various stem bases local past_stem_base = q(HAMZA, A, stem_core) local nonpast_stem_base = stem_core local past_pass_stem_base = q(HAMZA, U, stem_core) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IV-sound"] = function(base, vowel_spec) make_form_iv_sound_final_weak_verb(base, vowel_spec) end conjugations["IV-final-weak"] = function(base, vowel_spec) make_form_iv_sound_final_weak_verb(base, vowel_spec) end conjugations["IV-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- verbal noun local vn = q(HAMZA, I, rad1, AA, rad3, AH) -- various stem bases local past_stem_base = q(HAMZA, A, rad1) local nonpast_stem_base = rad1 local past_pass_stem_base = q(HAMZA, U, rad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IV-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(HAMZA, I, rad1, SK, rad2, AA, rad2) -- various stem bases local past_stem_base = q(HAMZA, A, rad1) local nonpast_stem_base = rad1 local past_pass_stem_base = q(HAMZA, U, rad1) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["V-sound"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["V-final-weak"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-sound"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-final-weak"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-geminate"] = function(base, vowel_spec) make_form_iii_vi_geminate_verb(base, vowel_spec) end -- Make a verbal noun of the general form that applies to forms VII and above. RAD12 is the first consonant cluster -- (after initial اِ) and RAD34 is the second consonant cluster. RAD5 is the final consonant. local function high_form_verbal_noun(rad12, rad34, rad5) return q(_I, rad12, I, rad34, AA, rad5) end -- Populate a sound or final-weak verb for any of the various high-numbered augmented forms (form VII and up) that -- have up to 5 consonants in two clusters in the stem and the same pattern of vowels between. Some of these -- consonants in certain verb parts are w's, which leads to apparent anomalies in certain stems of these parts, but -- these anomalies are handled automatically in postprocessing, where we resolve sequences of iwC -> īC, uwC -> ūC, -- w + sukūn + w -> w + shadda. -- RAD12 is the first consonant cluster (after initial اِ) and RAD34 is the second consonant cluster. RAD5 is the -- final consonant. local function make_high_form_sound_final_weak_verb(base, vowel_spec, rad12, rad34, rad5) local final_weak = is_final_weak(base, vowel_spec) local vn = high_form_verbal_noun(rad12, rad34, final_weak and HAMZA or rad5) -- various stem bases local nonpast_stem_base = q(rad12, A, rad34) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad12, U, rad34) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end local function form_vii_nrad1(base, rad1) if base.reduced then if not req(rad1, M) then error(("Internal error: Form VII first radical %s is not م but .reduced specified; should have been caught earlier"): format(rget(rad1))) end return M .. SH else return q("نْ", rad1) end end -- Make form VII sound or final-weak verb. local function make_form_vii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high_form_sound_final_weak_verb(base, vowel_spec, form_vii_nrad1(base, rad1), rad2, rad3) end conjugations["VII-sound"] = function(base, vowel_spec) make_form_vii_sound_final_weak_verb(base, vowel_spec) end conjugations["VII-final-weak"] = function(base, vowel_spec) make_form_vii_sound_final_weak_verb(base, vowel_spec) end conjugations["VII-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local nrad1 = form_vii_nrad1(base, rad1) local vn = high_form_verbal_noun(nrad1, Y, rad3) -- various stem bases local nonpast_stem_base = nrad1 local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nrad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["VII-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local nrad1 = form_vii_nrad1(base, rad1) local vn = high_form_verbal_noun(nrad1, rad2, rad2) -- various stem bases local nonpast_stem_base = q(nrad1, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nrad1, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Return Form VIII verbal noun. local function form_viii_verbal_noun(base, vowel_spec, rad1, rad2, rad3) local final_weak = is_final_weak(base, vowel_spec) rad3 = final_weak and HAMZA or rad3 return {high_form_verbal_noun(vowel_spec.form_viii_assim, rad2, rad3)} end -- Make form VIII sound or final-weak verb. local function make_form_viii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- check for irregular verb اِتَّخَذَ if axadh_radicals(rad1, rad2, rad3) then base.irregular = true rad1 = T end make_high_form_sound_final_weak_verb(base, vowel_spec, vowel_spec.form_viii_assim, rad2, rad3) end conjugations["VIII-sound"] = function(base, vowel_spec) make_form_viii_sound_final_weak_verb(base, vowel_spec) end conjugations["VIII-final-weak"] = function(base, vowel_spec) make_form_viii_sound_final_weak_verb(base, vowel_spec) end conjugations["VIII-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = form_viii_verbal_noun(base, vowel_spec, rad1, Y, rad3) -- various stem bases local nonpast_stem_base = vowel_spec.form_viii_assim local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nonpast_stem_base) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["VIII-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = form_viii_verbal_noun(base, vowel_spec, rad1, rad2, rad2) -- various stem bases local nonpast_stem_base = q(vowel_spec.form_viii_assim, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, vowel_spec.form_viii_assim, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IX-sound"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(_I, rad1, SK, rad2, I, rad3, AA, rad3) -- various stem bases local nonpast_stem_base = q(rad1, SK, rad2, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad1, SK, rad2, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IX-final-weak"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high_form_sound_final_weak_verb(base, vowel_spec, q(rad1, SK, rad2), rad3, rad3) end -- Populate a sound or final-weak verb for any of the various high-numbered -- augmented forms that have 5 consonants in the stem and the same pattern of -- vowels. Some of these consonants in certain verb parts are w's, which leads to -- apparent anomalies in certain stems of these parts, but these anomalies -- are handled automatically in postprocessing, where we resolve sequences of -- iwC -> īC, uwC -> ūC, w + sukūn + w -> w + shadda. local function make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, rad3, rad4, rad5) make_high_form_sound_final_weak_verb(base, vowel_spec, q(rad1, SK, rad2), q(rad3, SK, rad4), rad5) end -- Make form X sound or final-weak verb. local function make_form_x_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- check for irregular verb اِسْتَحْيَا (also اِسْتَحَى) local is_hayy = hayy_radicals(rad1, rad2, rad3) local variant = vowel_spec.variant or "both" if not is_hayy or variant == "long" or variant == "both" then make_high5_form_sound_final_weak_verb(base, vowel_spec, S, T, rad1, rad2, rad3) end if is_hayy and (variant == "short" or variant == "both") then base.irregular = true -- Add alternative entries to the verbal paradigms. Any duplicates are removed during addition. make_high_form_sound_final_weak_verb(base, vowel_spec, S .. SK .. T, rad1, rad3) end end conjugations["X-sound"] = function(base, vowel_spec) make_form_x_sound_final_weak_verb(base, vowel_spec) end conjugations["X-final-weak"] = function(base, vowel_spec) make_form_x_sound_final_weak_verb(base, vowel_spec) end conjugations["X-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(base.reduced and "اِسْ" or "اِسْتِ", rad1, AA, rad3, AH) -- various stem bases local past_stem_base = q(base.reduced and "اِسْ" or "اِسْتَ", rad1) local nonpast_stem_base = q(base.reduced and "سْ" or "سْتَ", rad1) local past_pass_stem_base = q(base.reduced and "اُسْ" or "اُسْتُ", rad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["X-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q("اِسْتِ", rad1, SK, rad2, AA, rad2) -- various stem bases local past_stem_base = q("اِسْتَ", rad1) local nonpast_stem_base = q("سْتَ", rad1) local past_pass_stem_base = q("اُسْتُ", rad1) -- make parts if base.altgem then inflect_tense(base, "past", "", {q(past_stem_base, A, rad2, SH), all_same = 1}, past_endings_ay_12_person_only) end make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn, base.altgem and "[uncommon]" or nil) end conjugations["XI-sound"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(_I, rad1, SK, rad2, II, rad3, AA, rad3) -- various stem bases local nonpast_stem_base = q(rad1, SK, rad2, AA) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad1, SK, rad2, UU) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Probably no form XI final-weak, since already geminate in form; would behave as XI-sound. -- Make form XII sound or final-weak verb. local function make_form_xii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, W, rad2, rad3) end conjugations["XII-sound"] = function(base, vowel_spec) make_form_xii_sound_final_weak_verb(base, vowel_spec) end conjugations["XII-final-weak"] = function(base, vowel_spec) make_form_xii_sound_final_weak_verb(base, vowel_spec) end -- Make form XIII sound or final-weak verb. local function make_form_xiii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, W, W, rad3) end conjugations["XIII-sound"] = function(base, vowel_spec) make_form_xiii_sound_final_weak_verb(base, vowel_spec) end conjugations["XIII-final-weak"] = function(base, vowel_spec) make_form_xiii_sound_final_weak_verb(base, vowel_spec) end -- Make a form XIV or XV sound or final-weak verb. Last radical appears twice (if`anlala / yaf`anlilu) so if it were -- w or y you'd get if`anwā / yaf`anwī or if`anyā / yaf`anyī, i.e. unlike for most augmented verbs, the identity of -- the radical matters. local function make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local lastrad = base.verb_form == "XV" and Y or rad3 make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, N, rad3, lastrad) end conjugations["XIV-sound"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end conjugations["XIV-final-weak"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end conjugations["XV-sound"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end -- Probably no form XV final-weak, since already final-weak in form; would behave as XV-sound. -- Make form Iq or IIq sound or final-weak verb. local function make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local vn = vform == "IIq" and q(TA, rad1, A, rad2, SK, rad3, (final_weak and IN or q(U, rad4))) or q(rad1, A, rad2, SK, rad3, (final_weak and AAH or q(A, rad4, AH))) local ta_pref = vform == "IIq" and TA or "" local tu_pref = vform == "IIq" and TU or "" -- various stem bases local past_stem_base = q(ta_pref, rad1, A, rad2, SK, rad3) local nonpast_stem_base = past_stem_base local past_pass_stem_base = q(tu_pref, rad1, U, rad2, SK, rad3) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["Iq-sound"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["Iq-final-weak"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIq-sound"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIq-final-weak"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end -- Make form IIIq sound or final-weak verb. local function make_form_iiiq_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, N, rad3, rad4) end conjugations["IIIq-sound"] = function(base, vowel_spec) make_form_iiiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIIq-final-weak"] = function(base, vowel_spec) make_form_iiiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IVq-sound"] = function(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local vn = q(_I, rad1, SK, rad2, I, rad3, SK, rad4, AA, rad4) -- various stem bases local past_stem_base = q(_I, rad1, SK, rad2, A, rad3) local nonpast_stem_base = q(rad1, SK, rad2, A, rad3) local past_pass_stem_base = q(_U, rad1, SK, rad2, U, rad3) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Probably no form IVq final-weak, since already geminate in form; would behave as IVq-sound. end create_conjugations() ------------------------------------------------------------------------------- -- Guts of main conjugation function -- ------------------------------------------------------------------------------- -- Given form, weakness and radicals, check to make sure the radicals present are allowable for the weakness. Hamzas on -- alif/wāw/yāʾ seats are never allowed (should always appear as hamza-on-the-line), and various weaknesses have various -- strictures on allowable consonants. local function check_radicals(form, weakness, rad1, rad2, rad3, rad4) local function hamza_check(index, rad) if rad == HAMZA_ON_ALIF or rad == HAMZA_UNDER_ALIF or rad == HAMZA_ON_W or rad == HAMZA_ON_Y then error("Radical " .. index .. " is " .. rad .. " but should be ء (hamza on the line)") end end local function check_waw_ya(index, rad) if not is_waw_ya(rad) then error("Radical " .. index .. " is " .. rad .. " but should be و or ي") end end local function check_not_waw_ya(index, rad) if is_waw_ya(rad) then error("In a sound verb, radical " .. index .. " should not be و or ي") end end hamza_check(rad1) hamza_check(rad2) hamza_check(rad3) hamza_check(rad4) if weakness == "assimilated" or weakness == "assimilated+final-weak" then if rad1 ~= W then error("Radical 1 is " .. rad1 .. " but should be و") end -- don't check that non-assimilated form I verbs don't have wāw as their -- first radical because some form-I verbs exist where a first-radical wāw -- behaves as sound, e.g. wajuha yawjuhu "to be distinguished". end if weakness == "final-weak" or weakness == "assimilated+final-weak" then if rad4 then check_waw_ya(4, rad4) else check_waw_ya(3, rad3) end elseif vform_supports_final_weak(form) then -- non-final-weak verbs cannot have weak final radical if there's a corresponding -- final-weak verb category. I think this is safe. We may have problems with -- ḥayya/ḥayiya yaḥyā if we treat it as a geminate verb. if rad4 then check_not_waw_ya(4, rad4) else check_not_waw_ya(3, rad3) end end if weakness == "hollow" then check_waw_ya(2, rad2) -- don't check that non-hollow verbs in forms that support hollow verbs -- don't have wāw or yāʾ as their second radical because some verbs exist -- where a middle-radical wāw/yāʾ behaves as sound, e.g. form-VIII izdawaja -- "to be in pairs". end if weakness == "geminate" then if rad4 then error("Internal error: No geminate quadrilaterals, should not be seen") end if rad2 ~= rad3 then error("Weakness is geminate; radical 3 is " .. rad3 .. " but should be same as radical 2 " .. rad2) end elseif vform_supports_geminate(form) then -- non-geminate verbs cannot have second and third radical same if there's -- a corresponding geminate verb category. I think this is safe. We -- don't fuss over double wāw or double yāʾ because this could legitimately -- be a final-weak verb with middle wāw/yāʾ, treated as sound. if rad4 then error("Internal error: No quadrilaterals should support geminate verbs") end if rad2 == rad3 and not is_waw_ya(rad2) then error("Weakness is '" .. weakness .. "'; radical 2 and 3 are same at " .. rad2 .. " but should not be; consider making weakness 'geminate'") end end end -- array of substitutions; each element is a 2-entry array FROM, TO; do it -- this way so the concatenations only get evaluated once local postprocess_subs = { -- reorder short-vowel + shadda -> shadda + short-vowel for easier processing {"(" .. AIU .. ")" .. SH, SH .. "%1"}, ----------same letter separated by sukūn should instead use shadda--------- ------------happens e.g. in kun-nā "we were".----------------- {"(.)" .. SK .. "%1", "%1" .. SH}, ---------------------------- assimilated verbs ---------------------------- -- iw, iy -> ī (assimilated verbs) {I .. W .. SK, II}, {I .. Y .. SK, II}, -- uw, uy -> ū (assimilated verbs) {U .. W .. SK, UU}, {U .. Y .. SK, UU}, -------------- final -yā uses tall alif not alif maqṣūra ------------------ {"(" .. Y .. SH .. "?" .. A .. ")" .. AMAQ, "%1" .. ALIF}, ----------------------- handle hamza assimilation ------------------------- -- initial hamza + short-vowel + hamza + sukūn -> hamza + long vowel {HAMZA .. A .. HAMZA .. SK, HAMZA .. A .. ALIF}, {HAMZA .. I .. HAMZA .. SK, HAMZA .. I .. Y}, {HAMZA .. U .. HAMZA .. SK, HAMZA .. U .. W} } local postprocess_tr_subs = { {"ī([" .. vowels .. "y*])", "iy%1"}, {"ū([" .. vowels .. "w*])", "uw%1"}, {"(.)%*", "%1%1"}, -- implement shadda ---------------------------- assimilated verbs ---------------------------- -- iw, iy -> ī (assimilated verbs) {"iw([^" .. vowels .. "w])", "ī%1"}, {"iy([^" .. vowels .. "y])", "ī%1"}, -- uw, uy -> ū (assimilated verbs) {"uw([^" .. vowels .. "w])", "ū%1"}, {"uy([^" .. vowels .. "y])", "ū%1"}, ----------------------- handle hamza assimilation ------------------------- -- initial hamza + short-vowel + hamza + sukūn -> hamza + long vowel {"ʔaʔ(" .. NV .. ")", "ʔā%1"}, {"ʔiʔ(" .. NV .. ")", "ʔī%1"}, {"ʔuʔ(" .. NV .. ")", "ʔū%1"}, } -- Post-process verb parts to eliminate phonological anomalies. Many of the changes, particularly the tricky ones, -- involve converting hamza to have the proper seat. The rules for this are complicated and are documented on the -- [[w:Hamza]] Wikipedia page. In some cases there are alternatives allowed, and we handle them below by returning -- multiple possibilities. local function postprocess_term(term) if term == "?" then return "?" end -- Add BORDER at text boundaries. term = BORDER .. term .. BORDER -- Do the main post-processing, based on the pattern substitutions in postprocess_subs. for _, sub in ipairs(postprocess_subs) do term = rsub(term, sub[1], sub[2]) end term = term:gsub(BORDER, "") if not rfind(term, HAMZA) then return term end term = term:gsub(HAMZA, HAMZA_PH) term = ar_utilities.process_hamza(term) if #term == 1 then term = term[1] end return term end local function postprocess_translit(translit) if translit == "?" then return "?" end -- Add BORDER at text boundaries. translit = BORDER .. translit .. BORDER -- Do the main post-processing, based on the pattern substitutions in postprocess_tr_subs. for _, sub in ipairs(postprocess_tr_subs) do translit = rsub(translit, sub[1], sub[2]) end translit = translit:gsub(BORDER, "") return translit end local function postprocess_forms(base) local converted_values = {} for slot, forms in pairs(base.forms) do local need_dedup = false for i, form in ipairs(forms) do local term = postprocess_term(form.form) local translit = form.translit and postprocess_translit(form.translit) or nil if term ~= form.form or translit ~= form.translit then need_dedup = true end converted_values[i] = {term, translit} end if need_dedup then local temp_dedup = {} for i = 1, #forms do local new_term, new_translit = unpack(converted_values[i]) if type(new_term) == "table" then for _, nt in ipairs(new_term) do local new_formobj = { form = nt, translit = new_translit, footnotes = forms[i].footnotes, } iut.insert_form(temp_dedup, "temp", new_formobj) end else local new_formobj = { form = new_term, translit = new_translit, footnotes = forms[i].footnotes, } iut.insert_form(temp_dedup, "temp", new_formobj) end end base.forms[slot] = temp_dedup.temp end end end local function process_slot_overrides(base) for slot, forms in pairs(base.slot_overrides) do local existing_values = base.forms[slot] base.forms[slot] = nil for _, form in ipairs(forms) do -- + in active participle for form I requests slot ap1 if form.form == "+" and (base.verb_form ~= "I" or slot ~= "ap") then if not existing_values then error(("Slot '%s' requested the default value but no such value available"):format(slot)) end -- We maintain an invariant that no two slots share a form object (although they may share the footnote -- lists inside the form objects). However, there is no need to copy the form objects here because there -- is a one-to-one correspondence between slots and slot overrides, i.e. you can't have a default value -- go into two slots. insert_form_or_forms(base, slot, existing_values, "allow overrides", form.uncertain) elseif default_indicator_to_active_participle_slot[form.form] then if form.form == "++" then if slot ~= "vn" and slot ~= "ap" and slot ~= "pp" then error(("Secondary default value request '++' only applicable to verbal nouns and pariciples, but found in slot '%s'"): format(slot)) end else if slot ~= "ap" then error(("Secondary default value request '%s' only applicable to active pariciples, but found in slot '%s'"): format(form.form, slot)) end end local secondary_default_slot = slot == "vn" and "vn2" or slot == "pp" and "pp2" or default_indicator_to_active_participle_slot[form.form] local existing_values = base.forms[secondary_default_slot] if not existing_values then error(("Slot '%s' requested a secondary default value using '%s' but no such value available"): format(slot, form.form)) end -- See comment above about the lack of need to copy the form objects. insert_form_or_forms(base, slot, existing_values, "allow overrides", form.uncertain) -- To make sure there aren't shared form objects. base.forms[secondary_default_slot] = nil else insert_form_or_forms(base, slot, form, "allow overrides", form.uncertain) end end end -- Now, for non-stative form-I verbs, fill the active participle slot from ap1 unless it should be missing (e.g. -- passive-only or user specified 'ap:-'). if base.verb_form == "I" and not base.forms.ap and base.forms.ap1 and not skip_slot(base, "ap") then local saw_non_stative = false for _, vowel_spec in ipairs(base.conj_vowels) do if req(vowel_spec.past, A) then saw_non_stative = true break end end if saw_non_stative then base.forms.ap = base.forms.ap1 -- To make sure there aren't shared form objects. base.forms.ap1 = nil end end end local function handle_lemma_linked(base) -- Compute linked versions of potential lemma slots, for use in {{ar-verb}}. We substitute the original lemma -- (before removing links) for forms that are the same as the lemma, if the original lemma has links. for _, slot in ipairs(export.potential_lemma_slots) do if base.forms[slot] then insert_form_or_forms(base, slot .. "_linked", iut.map_forms(base.forms[slot], function(form) if form == base.lemma and rfind(base.linked_lemma, "%[%[") then return base.linked_lemma else return form end end)) end end end -- Process specs given by the user using 'addnote[SLOTSPEC][FOOTNOTE][FOOTNOTE][...]'. local function process_addnote_specs(base) for _, spec in ipairs(base.addnote_specs) do for _, slot_spec in ipairs(spec.slot_specs) do slot_spec = "^" .. slot_spec .. "$" for slot, forms in pairs(base.forms) do if rfind(slot, slot_spec) then -- To save on memory, side-effect the existing forms. for _, form in ipairs(forms) do form.footnotes = iut.combine_footnotes(form.footnotes, spec.footnotes) end end end end end end local function add_missing_links_to_forms(base) -- Any forms without links should get them now. Redundant ones will be stripped later. for slot, forms in pairs(base.forms) do for _, form in ipairs(forms) do if not form.form:find("%[%[") then form.form = "[[" .. form.form .. "]]" end end end end local function conjugate_verb(base) construct_stems(base) for _, vowel_spec in ipairs(base.conj_vowels) do -- Reconstruct conjugation type from verb form and (possibly inferred) weakness. conj_type = base.verb_form .. "-" .. vowel_spec.weakness -- Check that the conjugation type is recognized. if not conjugations[conj_type] then error("Unknown conjugation type '" .. conj_type .. "'") end -- The way the conjugation functions work is they always add entries to the appropriate parts of the paradigm -- (each of which is an array), rather than setting the values. This makes it possible to call more than one -- conjugation function and essentially get a paradigm of the "either A or B" kind. Doing this may insert -- duplicate entries into a particular paradigm part, but this is not a problem because we check for duplicate -- entries when adding them, and don't insert in that case. conjugations[conj_type](base, vowel_spec) end postprocess_forms(base) process_slot_overrides(base) -- This should happen before add_missing_links_to_forms() so that the comparison `form == base.lemma` in -- handle_lemma_linked() works correctly and compares unlinked forms to unlinked forms. handle_lemma_linked(base) process_addnote_specs(base) if not base.alternant_multiword_spec.args.noautolinkverb then add_missing_links_to_forms(base) end end local function parse_indicator_spec(angle_bracket_spec) -- Store the original angle bracket spec so we can reconstruct the overall conj spec with the lemma(s) in them. local base = { angle_bracket_spec = angle_bracket_spec, conj_vowels = {}, root_consonants = {}, user_stem_overrides = {}, user_slot_overrides = {}, slot_explicitly_missing = {}, slot_uncertain = {}, slot_override_uses_default = {}, addnote_specs = {}, } local function parse_err(msg) error(msg .. ": " .. angle_bracket_spec) end local function fetch_footnotes(separated_group) local footnotes for j = 2, #separated_group - 1, 2 do if separated_group[j + 1] ~= "" then parse_err("Extraneous text after bracketed footnotes: '" .. table.concat(separated_group) .. "'") end if not footnotes then footnotes = {} end table.insert(footnotes, separated_group[j]) end return footnotes end local inside = angle_bracket_spec:match("^<(.*)>$") assert(inside) local segments = put.parse_multi_delimiter_balanced_segment_run(inside, {{"[", "]"}, {"<", ">"}}) local dot_separated_groups = put.split_alternating_runs_and_strip_spaces(segments, "%.") -- The first dot-separated element must specify the verb form, e.g. IV or IIq. If the form is I, it needs to include -- the the past and non-past vowels, e.g. I/a~u for kataba ~ yaktubu. More than one vowel can be given, -- comma-separated, and more than one past~non-past pair can be given, slash-separated, e.g. I/a,u~u/i~a for form I -- كمل, which can be conjugated as kamala/kamula ~ yakmulu or kamila ~ yakmalu. An individual vowel spec must be one -- of a, i or u and in general (a) at least one past~non-past pair most be given, and (b) both past and non-past -- vowels must be given even though sometimes the vowel can be determined from the unvocalized form. An exception is -- passive-only verbs, where the vowels can't in general be determined (except indirectly in some cases by looking -- at an associated non-passive verb); in that case, the vowel~vowel spec can left out. local slash_separated_groups = put.split_alternating_runs_and_strip_spaces(dot_separated_groups[1], "/") local form_spec = slash_separated_groups[1] base.form_footnotes = fetch_footnotes(form_spec) if form_spec[1] == "" then parse_err("Missing verb form") end if not allowed_vforms_with_weakness_set[form_spec[1]] then parse_err(("Unrecognized verb form '%s', should be one of %s"):format( form_spec[1], list_to_text(allowed_vforms, nil, " or "))) end if form_spec[1]:find("%-") then base.verb_form, base.explicit_weakness = form_spec[1]:match("^(.-)%-(.*)$") else base.verb_form = form_spec[1] end if #slash_separated_groups > 1 then if base.verb_form ~= "I" then parse_err(("Past~non-past vowels can only be specified when verb form is I, but saw form '%s'"):format( base.verb_form)) end for i = 2, #slash_separated_groups do local slash_separated_group = slash_separated_groups[i] local tilde_separated_groups = put.split_alternating_runs_and_strip_spaces(slash_separated_group, "~") if #tilde_separated_groups ~= 2 then parse_err(("Expected two tilde-separated vowel specs: %s"):format(table.concat(slash_separated_group))) end local function parse_conj_vowels(tilde_separated_group, vtype) local conj_vowel_objects = {} local comma_separated_groups = put.split_alternating_runs_and_strip_spaces(tilde_separated_group, ",") for _, comma_separated_group in ipairs(comma_separated_groups) do local conj_vowel = comma_separated_group[1] if conj_vowel ~= "a" and conj_vowel ~= "i" and conj_vowel ~= "u" then parse_err(("Expected %s conjugation vowel '%s' to be one of a, i or u in %s"):format( vtype, conj_vowel, table.concat(slash_separated_group))) end conj_vowel = dia[conj_vowel] local conj_vowel_footnotes = fetch_footnotes(comma_separated_group) -- Try to use strings when possible as it makes q() significantly more efficient. if conj_vowel_footnotes then table.insert(conj_vowel_objects, {form = conj_vowel, footnotes = conj_vowel_footnotes}) else table.insert(conj_vowel_objects, conj_vowel) end end return conj_vowel_objects end local conj_vowel_spec = { past = parse_conj_vowels(tilde_separated_groups[1], "past"), nonpast = parse_conj_vowels(tilde_separated_groups[2], "non-past"), } table.insert(base.conj_vowels, conj_vowel_spec) end end for i = 2, #dot_separated_groups do local dot_separated_group = dot_separated_groups[i] local first_element = dot_separated_group[1] if first_element == "addnote" then local spec_and_footnotes = fetch_footnotes(dot_separated_group) if #spec_and_footnotes < 2 then parse_err("Spec with 'addnote' should be of the form 'addnote[SLOTSPEC][FOOTNOTE][FOOTNOTE][...]'") end local slot_spec = table.remove(spec_and_footnotes, 1) local slot_spec_inside = rmatch(slot_spec, "^%[(.*)%]$") if not slot_spec_inside then parse_err("Internal error: slot_spec " .. slot_spec .. " should be surrounded with brackets") end local slot_specs = rsplit(slot_spec_inside, ",") -- FIXME: Here, [[Module:it-verb]] called strip_spaces(). Generally we don't do this. Should we? table.insert(base.addnote_specs, {slot_specs = slot_specs, footnotes = spec_and_footnotes}) elseif first_element:find("^var:") then if #dot_separated_group > 1 then parse_err(("Can't attach footnotes to 'var:' spec '%s'"):format(first_element)) end base.variant = first_element:match("^var:(.*)$") elseif first_element:find("^I+V?:") then local root_cons, root_cons_value = first_element:match("^(I+V?):(.*)$") local root_index if root_cons == "I" then root_index = 1 elseif root_cons == "II" then root_index = 2 elseif root_cons == "III" then root_index = 3 elseif root_cons == "IV" then root_index = 4 if not base.verb_form:find("q$") then parse_err(("Can't specify root consonant IV for non-quadriliteral verb form '%s': %s"):format( base.verb_form, first_element)) end end local cons, translit = root_cons_value:match("^(.*)//(.*)$") if not cons then cons = root_cons_value end local root_footnotes = fetch_footnotes(dot_separated_group) if not translit and not root_footnotes then base.root_consonants[root_index] = cons else base.root_consonants[root_index] = {form = cons, translit = translit, footnotes = root_footnotes} end elseif first_element:find("^[a-z][a-z0-9_]*:") then local slot_or_stem, remainder = first_element:match("^(.-):(.*)$") dot_separated_group[1] = remainder local comma_separated_groups = put.split_alternating_runs_and_strip_spaces(dot_separated_group, "[,،]") if overridable_stems[slot_or_stem] then if base.user_stem_overrides[slot_or_stem] then parse_err("Overridable stem '" .. slot_or_stem .. "' specified twice") end base.user_stem_overrides[slot_or_stem] = overridable_stems[slot_or_stem](comma_separated_groups, {prefix = slot_or_stem, base = base, parse_err = parse_err, fetch_footnotes = fetch_footnotes}) else -- assume a form override; we validate further later when the possible slots are available if base.user_slot_overrides[slot_or_stem] then parse_err("Form override '" .. slot_or_stem .. "' specified twice") end base.user_slot_overrides[slot_or_stem] = allow_multiple_values_for_override(comma_separated_groups, {prefix = slot_or_stem, base = base, parse_err = parse_err, fetch_footnotes = fetch_footnotes}, "is form override") end elseif indicator_flags[first_element] then if #dot_separated_group > 1 then parse_err("No footnotes allowed with '" .. first_element .. "' spec") end if base[first_element] then parse_err("Spec '" .. first_element .. "' specified twice") end base[first_element] = true else local passive, uncertain = first_element:match("^(.*)(%?)$") passive = passive or first_element uncertain = not not uncertain if passive_types[passive] then if #dot_separated_group > 1 then parse_err("No footnotes allowed with '" .. passive .. "' spec") end if base.passive then parse_err("Value for passive type specified twice") end base.passive = passive base.passive_uncertain = uncertain else parse_err("Unrecognized spec '" .. first_element .. "'") end end end return base end -- Normalize all lemmas, substituting the pagename for blank lemmas and adding links to multiword lemmas. local function normalize_all_lemmas(alternant_multiword_spec, head) -- (1) Add links to all before and after text. Remember the original text so we can reconstruct the verb spec later. if not alternant_multiword_spec.args.noautolinktext then iut.add_links_to_before_and_after_text(alternant_multiword_spec, "remember original") end -- (2) Remove any links from the lemma, but remember the original form so we can use it below in the 'lemma_linked' -- form. iut.map_word_specs(alternant_multiword_spec, function(base) if base.lemma == "" then base.lemma = head end base.user_specified_lemma = base.lemma base.lemma = m_links.remove_links(base.lemma) base.user_specified_verb = base.lemma base.verb = base.user_specified_verb local linked_lemma if alternant_multiword_spec.args.noautolinkverb or base.user_specified_lemma:find("%[%[") then linked_lemma = base.user_specified_lemma else -- Add links to the lemma so the user doesn't specifically need to, since we preserve -- links in multiword lemmas and include links in non-lemma forms rather than allowing -- the entire form to be a link. linked_lemma = iut.add_links(base.user_specified_lemma) end base.linked_lemma = linked_lemma end) end --W: Lexical exceptions — yāʾ-middle roots whose Form IV (أفعل) keeps the yāʾ SOUND -- instead of undergoing the regular إعلال to a hollow verb (أَفْيَلَ, not أَفَالَ). -- These are attested verbs (not the صفة مشبهة like أَخْيَف/خَيْفاء); each is sourced below. -- Only Form IV is affected; forms VII/VIII/X of these roots remain hollow. -- Keyed by rad1..rad2..rad3. local SOUND_FORM_IV_ROOTS = { ["خيل"] = true, -- أَخْيَلَ: أخيلت السماءُ تهيأت للمطر — المعجم الوسيط ج1 ص266 (وبه أَخالت أيضًا) ["غيل"] = true, -- أَغْيَلَ: أغيلته فهي مُغْيِل، سقته الغَيْل — لسان العرب ج11 ص111 (وبه أغالت أيضًا) ["حيج"] = true, -- أَحْيَجَ: أحيجت الأرضُ، على خلاف القياس — تاج العروس ج5 ص500 ["حين"] = true, -- أَحْيَنَ: أحين القومُ آن لهم أن يبلغوا ما أملوه — المعجم الوسيط ج1 ص212 ["خيف"] = true, -- أَخْيَفَ: أخيف الحاجُّ نزلوا خيف منى — كتاب الأفعال لابن القوطية ص35 ["ريف"] = true, -- أَرْيَفَ: أريفت الأرضُ إريافًا (خصبت) — المحيط في اللغة ج10 ص256 ["زين"] = true, -- أَزْيَنَ: أزينت الأرضُ، حسّنها عشبها — مقاييس اللغة ج3 ص41 } -- Determine weakness from radicals. Used when root given in place of lemma (e.g. for {{ar-verb forms}}). local function weakness_from_radicals(form, rad1, rad2, rad3, rad4) local weakness = nil local quadlit = form:find("q$") -- If weakness unspecified, derive from radicals. if not quadlit then if is_waw_ya(rad3) and rad1 == W and form == "I" then weakness = "assimilated+final-weak" elseif is_waw_ya(rad3) and vform_supports_final_weak(form) then weakness = "final-weak" elseif rad2 == rad3 and vform_supports_geminate(form) then weakness = "geminate" elseif is_waw_ya(rad2) and vform_supports_hollow(form) then --W: Both wāw (و) and yāʾ (ي) in the middle position create hollow verbs, in form I -- (قَالَ from ق-و-ل, بَاعَ from ب-ي-ع) and in the augmented forms IV, VII, VIII, X -- (أَتَاسَ from ت-ي-س, أَبَانَ from ب-ي-ن, أَطَاحَ from ط-ي-ح — معجم متن اللغة). if form == "IV" and rad2 == Y and SOUND_FORM_IV_ROOTS[rad1 .. rad2 .. rad3] then -- Lexical exceptions whose Form IV keeps the yāʾ sound (أَفْيَلَ); see SOUND_FORM_IV_ROOTS. weakness = "sound" else weakness = "hollow" end elseif rad1 == W and form == "I" then weakness = "assimilated" else weakness = "sound" end else if is_waw_ya(rad4) then weakness = "final-weak" else weakness = "sound" end end return weakness end -- Join the infixed tāʔ (ت) to the first radical in form VIII verbs. This may cause assimilation of the tāʔ to the -- radical or in some cases the radical to the tāʔ. Used when a root is supplied instead of a lemma (which already has -- the appropriate assimilation in it). local function form_viii_join_ta(rad) if rad == W or rad == Y or rad == "ت" then return "تّ" elseif rad == "د" then return "دّ" elseif rad == "ث" then return "ثّ" elseif rad == "ذ" then return "ذّ" elseif rad == "ز" then return "زْد" elseif rad == "ص" then return "صْط" elseif rad == "ض" then return "ضْط" elseif rad == "ط" then return "طّ" elseif rad == "ظ" then return "ظّ" else return rad .. SK .. "ت" end end local function detect_indicator_spec(base) base.forms = {} base.stem_overrides = {} base.slot_overrides = {} if not base.conj_vowels[1] then -- These may be converted to inferred vowels. If not, we throw an error if form I and not passive-only. base.conj_vowels = {{ past = "-", nonpast = "-", }} else -- If multiple vowels specified for a given vowel type (e.g. a,u~u), expand so that each spec in local expansion = {} for _, spec in ipairs(base.conj_vowels) do for _, past in ipairs(spec.past) do for _, nonpast in ipairs(spec.nonpast) do table.insert(expansion, {past = past, nonpast = nonpast}) end end end base.conj_vowels = expansion end local vform = base.verb_form -- check for quadriliteral form (Iq, IIq, IIIq, IVq) base.quadlit = not not vform:find("q$") -- Infer radicals as necessary. We infer a separate set of radicals for each past~non-past vowel combination because -- they may be different (particularly with form-I hollow verbs). for _, vowel_spec in ipairs(base.conj_vowels) do -- NOTE: rad1, rad2, etc. refer to user-specified radicals, which are formobj tables that optionally specify an -- explicit manual translit, whereas ir1, ir2, etc. refer to inferred radicals, which are either strings or -- lists of possible radicals. local rads = base.root_consonants local rad1, rad2, rad3, rad4 = rads[1], rads[2], rads[3], rads[4] -- Default any unspecified radicals to radicals determined from the headword. The returned radicals may be -- lists of possible radicals, where the first radical should be chosen if the user didn't explicitly specify a -- radical but all are allowed. If `ambig = true` is set in the table, the radical is considered ambiguous and -- categories won't be created for weak radicals. local weakness, ir1, ir2, ir3, ir4 if vform ~= "none" then ir1, ir2, ir3 = rmatch(base.lemma, "^([^_])_([^_])_([^_])$") if not ir1 then ir1, ir2, ir3, ir4 = rmatch(base.lemma, "^([^_])_([^_])_([^_])_([^_])$") end if ir1 then -- root given instead of lemma weakness = weakness_from_radicals(vform, ir1, ir2, ir3, ir4) if vform == "VIII" then vowel_spec.form_viii_assim = form_viii_join_ta(ir1) end else local ret = export.infer_radicals { headword = base.lemma, vform = vform, passive = base.passive, past_vowel = vowel_spec.past, nonpast_vowel = vowel_spec.nonpast, is_reduced = base.reduced, } weakness, ir1, ir2, ir3, ir4 = ret.weakness, ret.rad1, ret.rad2, ret.rad3, ret.rad4 vowel_spec.form_viii_assim = ret.form_viii_assim vowel_spec.past = ret.past_vowel vowel_spec.nonpast = ret.nonpast_vowel vowel_spec.variant = base.variant or ret.variant end end -- For most ambiguous radicals, the choice of radical doesn't matter because it doesn't affect the conjugation -- one way or another. For form I hollow verbs, however, it definitely does. In fact, the choice of radical is -- critical even beyond the past and non-past vowels because it affects the form of the passive participle. So, -- check for this and signal an error if the radical could not be inferred and is not given explicitly. if vform == "I" and type(ir2) == "table" and ir2.need_radical and not rad2 then error("Unable to guess middle radical of hollow form I verb; need to specify radical explicitly") end if vform == "I" and not is_passive_only(base.passive) and ( rget(vowel_spec.past) == "-" or rget(vowel_spec.nonpast) == "-") then error("Form I verb that isn't passive-only or final-weak must have past~non-past vowels specified") end -- Convert ambiguous radicals. local function regularize_inferred_radical(rad) if type(rad) == "table" then if rad.ambig then return {form = rad[1], ambig = true} else return rad[1] end else return rad end end -- Return the appropriate radical at index `index` (1 through 4), based either on the user-specified radical -- `user_radical` or (if unspecified) `inferred_radical`, inferred from the unvocalized lemma. Two values are -- returned, the "regularized" version of the radical (where ambiguous inferred radicals are converted to their -- most likely actual radical) and the non-regularized version. The returned values are form objects rather than -- strings. local function fetch_radical(user_radical, inferred_radical, index) if not user_radical then return regularize_inferred_radical(inferred_radical), inferred_radical else local rad_formval = rget(user_radical) if type(inferred_radical) == "table" then local allowed_radical_set = m_table.listToSet(inferred_radical) if not allowed_radical_set[rad_formval] then error(("For lemma %s, radical %s ambiguously inferred as %s but user radical incompatibly given as %s"): format(base.lemma, index, list_to_text(inferred_radical, nil, " or "), rad_formval)) end elseif rad_formval ~= inferred_radical then error(("For lemma %s, radical %s inferred as %s but user radical incompatibly given as %s"): format(base.lemma, index, inferred_radical, rad_formval)) end return user_radical, user_radical end end if vform ~= "none" then vowel_spec.rad1, vowel_spec.unreg_rad1 = fetch_radical(rad1, ir1, 1) vowel_spec.rad2, vowel_spec.unreg_rad2 = fetch_radical(rad2, ir2, 2) vowel_spec.rad3, vowel_spec.unreg_rad3 = fetch_radical(rad3, ir3, 3) if base.quadlit then vowel_spec.rad4, vowel_spec.unreg_rad4 = fetch_radical(rad4, ir4, 4) end end if vform == "I" then -- If explicit weakness given using 'I-sound' or 'I-assimilated', we may need to adjust the inferred weakness. if base.explicit_weakness == "sound" then if weakness == "assimilated" then weakness = "sound" elseif weakness == "assimilated+final-weak" then -- Verbs like waniya~yawnā "to be faint; to languish" (although the defaults should handle this -- correctly) weakness = "final-weak" else error(("Can't specify form 'I-sound' when inferred weakness is '%s' for lemma %s"):format( weakness, base.lemma)) end elseif base.explicit_weakness == "assimilated" then if weakness == "sound" then -- i~a verbs like waṭiʔa~yaṭaʔu "to tread, to trample"; wasiʕa~yasaʕu "to be spacious; to be well-off"; -- waṯiʔa~yaṯaʔu "to get bruised, to be sprained", which would default to sound. weakness = "assimilated" elseif weakness == "final-weak" then -- For completeness; not clear if any verbs occur where this is needed. (There are plenty of -- assimilated+final-weak verbs but the defaults should take care of them.) weakness = "assimilated+final-weak" else error(("Can't specify form 'I-assimilated' when inferred weakness is '%s' for lemma %s"):format( weakness, base.lemma)) end elseif base.explicit_weakness then error(("Internal error: Unrecognized value '%s' for base.explicit_weakness"):format(base.explicit_weakness)) end elseif vform == "none" then weakness = base.explicit_weakness elseif base.explicit_weakness then error(("Internal error: Explicit weakness should not be specifiable except with forms I and none, but saw explicit weakness '%s' with verb form '%s'"): format(base.explicit_weakness, vform)) end vowel_spec.weakness = weakness if vform ~= "none" then -- Error if radicals are wrong given the weakness. More likely to happen if the weakness is explicitly given -- rather than inferred. Will also happen if certain incorrect letters are included as radicals e.g. hamza on -- top of various letters, alif maqṣūra, tā' marbūṭa. check_radicals(vform, weakness, rget(vowel_spec.rad1), rget(vowel_spec.rad2), rget(vowel_spec.rad3), base.quadlit and rget(vowel_spec.rad4) or nil) end -- Check the variant value. local form_iii_vi_geminate = (vform == "III" or vform == "VI") and rget(vowel_spec.rad2) == rget(vowel_spec.rad3) and not req(vowel_spec.rad2, Y) local hayy_i_x = hayy_radicals(vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3) and (vform == "I" or vform == "X") if form_iii_vi_geminate or hayy_i_x then if vowel_spec.variant and vowel_spec.variant ~= "long" and vowel_spec.variant ~= "short" and vowel_spec.variant ~= "both" then error(("For form-III/VI geminate verb or form-I/X verb with ح-ي-ي radicals, saw unrecognized 'var:%s' value; should be 'var:long', 'var:short' or 'var:both'"):format( vowel_spec.variant)) end elseif vowel_spec.variant then error(("Variant value 'var:%s' not allowed in this context"):format(vowel_spec.variant)) end end -- If form I, regroup expanded vowels for display purposes. if vform == "I" then local group_by_past = {} for _, vowel_spec in ipairs(base.conj_vowels) do m_table.insertIfNot(group_by_past, { past = undia[rget(vowel_spec.past)], nonpasts = {undia[rget(vowel_spec.nonpast)]}, }, { key = function(obj) return obj.past end, combine = function(obj1, obj2) for _, nonpast in ipairs(obj2.nonpasts) do m_table.insertIfNot(obj1.nonpasts, nonpast) end end, }) end local group_by_nonpast = {} for _, vowel_spec in ipairs(group_by_past) do m_table.insertIfNot(group_by_nonpast, { pasts = {vowel_spec.past}, nonpasts = vowel_spec.nonpasts, }, { key = function(obj) return obj.nonpasts end, combine = function(obj1, obj2) for _, past in ipairs(obj2.pasts) do m_table.insertIfNot(obj1.pasts, past) end end, }) end base.grouped_conj_vowels = group_by_nonpast end -- Set value of passive. If not specified, default is yes for forms II, III, IV and Iq; no but uncertainly for -- forms VII, IX, XI - XV and IIIq - IVq, as well as form I with past vowel u; impersonal but uncertainly for form -- V, VI, X and IIq, as well as form I with past vowel i; and yes but uncertainly for the remainder (form I with -- past vowel only a and form VIII). if not base.passive then base.passive_defaulted = true -- Temporary tracking for defaulted passives by verb form, weakness and (for form I) past/non-past vowels. track_if_ar_conj(base, "passive-defaulted/" .. vform) for _, vowel_spec in ipairs(base.conj_vowels) do track_if_ar_conj(base, "passive-defaulted/" .. vform.. "/" .. vowel_spec.weakness) if vform == "I" then --W: use rget(); the vowel is a form object when the user attached a footnote -- (e.g. <I/a[نادر]~u>), and undia[<table>] is nil, which crashes format() on Lua 5.1. local past_nonpast = ("%s~%s"):format(undia[rget(vowel_spec.past)], undia[rget(vowel_spec.nonpast)]) track_if_ar_conj(base, "passive-defaulted/I/" .. past_nonpast) track_if_ar_conj(base, "passive-defaulted/I/" .. vowel_spec.weakness .. "/" .. past_nonpast) end end if vform_probably_full_passive(vform) then base.passive = "pass" else base.passive_uncertain = true for _, vowel_spec in ipairs(base.conj_vowels) do if vform_probably_no_passive(vform, vowel_spec.weakness, vowel_spec.past, vowel_spec.nonpast) then base.passive = "nopass" break elseif vform_probably_impersonal_passive(vform, vowel_spec.weakness, vowel_spec.past, vowel_spec.nonpast) then base.passive = "ipass" break end end base.passive = base.passive or "pass" end end -- NOTE: Currently there are no built-in stems or form overrides for Arabic; this code is inherited from -- [[Module:ca-verb]], where such things do exist, and is kept for generality in case we decide in the future to -- implement such things. -- Override built-in verb stems and overrides with user-specified ones. for stem, values in pairs(base.user_stem_overrides) do base.stem_overrides[stem] = values end for slot, values in pairs(base.user_slot_overrides) do if not base.alternant_multiword_spec.verb_slots_map[slot] then error("Unrecognized override slot '" .. slot .. "': " .. base.angle_bracket_spec) end if export.unsettable_slots_set[slot] then error("Slot '" .. slot .. "' cannot be set using an override: " .. base.angle_bracket_spec) end if skip_slot(base, slot, "allow overrides") then error("Override slot '" .. slot .. "' would be skipped based on the passive, 'noimp' and/or 'no_nonpast' settings: " .. base.angle_bracket_spec) end base.slot_overrides[slot] = values end if base.verb_form == "none-final-weak" then for _, stem_type in ipairs { "past", "past_pass", "nonpast", "nonpast_pass" } do if base.stem_overrides[stem_type .. "_c"] or base.stem_overrides[stem_type .. "_v"] then error(("Specify past stem for verb type 'none-final-weak' using '%s:...' not '%s_c:...' or '%s_v:...'"): format(stem_type, stem_type, stem_type)) end end for _, stem_type in ipairs { "past", "nonpast" } do if base.stem_overrides[stem_type] or not base.stem_overrides[stem_type .. "_final_weak_vowel"] then error(("For verb type 'none-final-weak', if '%s:...' specified, so must '%s_final_weak_vowel:...'"): format(stem_type, stem_type)) end end end end local function detect_all_indicator_specs(alternant_multiword_spec) add_slots(alternant_multiword_spec) alternant_multiword_spec.verb_forms = {} -- This means at least one individual base had the slot marked as explicitly missing. Another base (e.g. when -- there are multiple alternants) might have a value for the slot. In practice, we only respect this when there are -- no overall values in the slot and `slot_uncertain` isn't set; in this case, we display "no ..." for the slot -- instead of simply not displaying anything for the slot. alternant_multiword_spec.slot_explicitly_missing = {} -- This means at least one individual base had no values for the slot and the slot marked as explicitly uncertain. -- Note that this is different from a value being present but marked as uncertain (e.g. if an override was given -- with a ? after it); this causes the form object for the value to have `uncertain = true` set. If there are no -- overall values in the slot and `slot_uncertain` is set, we display this in the headword. alternant_multiword_spec.slot_uncertain = {} iut.map_word_specs(alternant_multiword_spec, function(base) -- So arguments, etc. can be accessed. WARNING: Creates circular reference. base.alternant_multiword_spec = alternant_multiword_spec detect_indicator_spec(base) if not base.nocat then m_table.insertIfNot(alternant_multiword_spec.verb_forms, base.verb_form) end if base.passive then alternant_multiword_spec.passive = base.passive end if base.passive_uncertain then alternant_multiword_spec.passive_uncertain = true end for slot, _ in pairs(base.slot_explicitly_missing) do alternant_multiword_spec.slot_explicitly_missing[slot] = true end end) end local function determine_slot_uncertainty_from_forms(alternant_multiword_spec) iut.map_word_specs(alternant_multiword_spec, function(base) -- If no verbal noun and verb form is not 'none' (manually-specified stems) — which currently only happens for -- form I — and the verbal noun wasn't explicitly indicated as missing using <vn:->, we assume it's just -- unknown/unspecified rather than missing. Same with active participles. for uncertain_slot, _ in pairs(slots_that_may_be_uncertain) do if not base.forms[uncertain_slot] and vform ~= "none" and not skip_slot(base, uncertain_slot) then base.slot_uncertain[uncertain_slot] = true end end -- Propagate slot uncertainty up. Currently only the verbal noun can have this set but we write the code -- generally. for slot, _ in pairs(base.slot_uncertain) do alternant_multiword_spec.slot_uncertain[slot] = true end end) -- If slot is uncertain and has no value, explicitly set its value to "?". for uncertain_slot, _ in pairs(slots_that_may_be_uncertain) do if not alternant_multiword_spec.forms[uncertain_slot] and alternant_multiword_spec.slot_uncertain[uncertain_slot] then alternant_multiword_spec.forms[uncertain_slot] = {{form = "?"}} end end end -- Determine certain properties of the verb from the overall forms, such as whether the verb is active-only or -- passive-only, is impersonal, lacks an imperative, etc. local function determine_verb_properties_from_forms(alternant_multiword_spec) alternant_multiword_spec.has_active = false alternant_multiword_spec.has_passive = false alternant_multiword_spec.has_non_impers_active = false alternant_multiword_spec.has_non_impers_passive = false alternant_multiword_spec.has_imp = false alternant_multiword_spec.has_past = false alternant_multiword_spec.has_nonpast = false for slot, _ in pairs(alternant_multiword_spec.forms) do if slot == "ap" or slot:find("[123]") and not slot:find("_pass") then alternant_multiword_spec.has_active = true end if slot == "pp" or slot:find("[123]") and slot:find("_pass") then alternant_multiword_spec.has_passive = true end if slot:find("[123]") and not slot:find("pass_[123]") and not slot:find("3ms") then alternant_multiword_spec.has_non_impers_active = true end if slot:find("pass_[123]") and not slot:find("3ms") then alternant_multiword_spec.has_non_impers_passive = true end if slot:find("^imp_") then alternant_multiword_spec.has_imp = true end if slot:find("^past_") then alternant_multiword_spec.has_past = true end if slot:find("^ind_") or slot:find("^sub_") or slot:find("^juss_") then alternant_multiword_spec.has_nonpast = true end end end local function add_categories_and_annotation(alternant_multiword_spec, base, multiword_lemma, insert_ann, insert_cat) -- Useful e.g. in constructing suppletive verbs out of parts. For a verb like جاء or أتى whose imperative comes -- from the unrelated verb تعالى, we don't want the latter verb showing up in categories or annotations. if base.nocat then return end local vform = base.verb_form if vform ~= "none" then insert_ann("form", vform) insert_cat("form-" .. vform .. " verbs") --W: Add morphological pattern corresponding to the form local morph_pattern = FORM_TO_MORPHOLOGICAL_PATTERN[vform] if morph_pattern then insert_ann("morph_pattern", morph_pattern) end end if base.reduced then insert_ann("reduced", "reduced") if vform ~= "none" then insert_cat("form-" .. vform .. " reduced verbs") end end if base.quadlit then insert_cat("verbs with quadriliteral roots") end if base.passive_defaulted then insert_cat("verbs with defaulted passive") end for _, vowel_spec in ipairs(base.conj_vowels) do local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local weakness = vowel_spec.weakness -- We have to distinguish weakness by form and weakness by conjugation. Weakness by form merely indicates the -- presence of weak letters in certain positions in the radicals. Weakness by conjugation is related to how the -- verbs are conjugated. For example, form-II verbs that are "hollow by form" (middle radical is wāw or yāʾ) are -- conjugated as sound verbs. Another example: form-I verbs with initial wāw are "assimilated by form" and most -- are assimilated by conjugation as well, but a few are sound by conjugation, e.g. wajuha yawjuhu "to be -- distinguished" (rather than wajuha yajuhu); similarly for some hollow-by-form verbs in various forms, e.g. -- form VIII izdawaja yazdawiju "to be in pairs" (rather than izdāja yazdāju). Categories referring to weakness -- always refer to weakness by conjugation; weakness by form is distinguished only by categories such as -- [[:Category:Arabic form-III verbs with و as second radical]]. insert_ann("weakness", weakness) if vform ~= "none" then insert_cat(("%s form-%s verbs"):format(weakness, vform)) end local function radical_is_ambiguous(rad) return type(rad) == "table" and rad.ambig end local function radical_is_unambiguous_weak(rad) return not radical_is_ambiguous(rad) and (is_waw_ya(rad) or req(rad, HAMZA)) end if vform ~= "none" then local ur1, ur2, ur3, ur4 = vowel_spec.unreg_rad1, vowel_spec.unreg_rad2, vowel_spec.unreg_rad3, vowel_spec.unreg_rad4 -- Create headword categories based on the radicals. Do the following before -- converting the Latin radicals into Arabic ones so we distinguish -- between ambiguous and non-ambiguous radicals. if radical_is_ambiguous(ur1) or radical_is_ambiguous(ur2) or radical_is_ambiguous(ur3) or ur4 and radical_is_ambiguous(ur4) then insert_cat("verbs with ambiguous radicals") end if radical_is_unambiguous_weak(ur1) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur1) .. " as first radical") end if radical_is_unambiguous_weak(ur2) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur2) .. " as second radical") end if radical_is_unambiguous_weak(ur3) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur3) .. " as third radical") end if ur4 and radical_is_unambiguous_weak(ur4) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur4) .. " as fourth radical") end end end if vform == "I" and not is_passive_only(base.passive) then for _, vowel_spec in ipairs(base.grouped_conj_vowels) do insert_ann("vowels", ("%s ~ %s"):format(table.concat(vowel_spec.pasts, "/"), table.concat(vowel_spec.nonpasts, "/"))) for _, past in ipairs(vowel_spec.pasts) do for _, nonpast in ipairs(vowel_spec.nonpasts) do if past == "-" or nonpast == "-" then error("Internal error: Saw form I past vowel %s and non-past vowel %s but - in place of vowel should have triggered an error earlier") end insert_cat(("form-I verbs with past vowel %s and non-past vowel %s"):format(past, nonpast)) --W: Add morphological pattern for form I based on vowels local form_i_with_vowels = ("I/%s~%s"):format(past, nonpast) local morph_pattern = FORM_TO_MORPHOLOGICAL_PATTERN[form_i_with_vowels] if morph_pattern then insert_ann("morph_pattern", morph_pattern) end end end end end for slot, name in pairs(slots_that_may_be_uncertain) do if base.slot_uncertain[slot] then -- An unspecified and non-defaulted verbal noun (form I) is considered uncertain rather than explicitly -- missing. Use <vn:-> to explicitly indicate the lack of verbal noun. Same for form-I stative active -- participles. insert_cat(("verbs with unknown or uncertain %ss"):format(name)) end end if base.irregular then insert_ann("irreg", "irregular") insert_cat("irregular verbs") end end -- Compute the categories to add the verb to, as well as the annotation to display in the conjugation title bar. We -- combine the code to do these functions as both categories and title bar contain similar information. local function compute_categories_and_annotation(alternant_multiword_spec) alternant_multiword_spec.categories = {} local ann = {} alternant_multiword_spec.annotation = ann ann.form = {} ann.morph_pattern = {} --W: arabic morphological pattern corresponding to the form ann.weakness = {} ann.vowels = {} ann.passive = nil ann.reduced = {} ann.irreg = {} ann.defective = {} local multiword_lemma = false for _, slot in ipairs(export.potential_lemma_slots) do if alternant_multiword_spec.forms[slot] then for _, formobj in ipairs(alternant_multiword_spec.forms[slot]) do if formobj.form:find(" ") then multiword_lemma = true break end end break end end local function insert_ann(anntype, value) m_table.insertIfNot(alternant_multiword_spec.annotation[anntype], value) end local function insert_cat(cat, also_when_multiword) -- Don't place multiword terms in categories like 'Arabic form-II verbs' to avoid spamming the categories with -- such terms. if also_when_multiword or not multiword_lemma then m_table.insertIfNot(alternant_multiword_spec.categories, "Arabic " .. cat) end end iut.map_word_specs(alternant_multiword_spec, function(base) add_categories_and_annotation(alternant_multiword_spec, base, multiword_lemma, insert_ann, insert_cat) end) for slot, name in pairs(slots_that_may_be_uncertain) do if alternant_multiword_spec.forms[slot] then for _, form in ipairs(alternant_multiword_spec.forms[slot]) do if form.uncertain then if form.form == "?" then insert_cat(("verbs with explicitly unknown %ss"):format(name)) else insert_cat(("verbs needing %s checked"):format(name)) end break end end end end if alternant_multiword_spec.has_active then if alternant_multiword_spec.has_passive and alternant_multiword_spec.has_non_impers_passive then insert_cat("verbs with full passive") ann.passive = "full passive" elseif alternant_multiword_spec.has_passive then insert_cat("verbs with impersonal passive") ann.passive = "impersonal passive" else insert_cat("verbs lacking passive forms") ann.passive = "no passive" end else if alternant_multiword_spec.has_non_impers_passive then insert_cat("passive verbs") insert_cat("verbs with full passive") ann.passive = "passive-only" else insert_cat("passive verbs") insert_cat("impersonal verbs") insert_cat("verbs with impersonal passive") ann.passive = "impersonal (passive-only)" end end if alternant_multiword_spec.passive_uncertain then insert_cat("verbs needing passive checked") ann.passive = ann.passive .. ' <abbr title="passive status uncertain">(?)</abbr>' end if alternant_multiword_spec.has_active and not alternant_multiword_spec.has_imp then insert_ann("defective", "no imperative") insert_cat("verbs lacking imperative forms") end if not alternant_multiword_spec.has_past then insert_ann("defective", "no past") insert_cat("verbs lacking past forms") end if not alternant_multiword_spec.has_nonpast then insert_ann("defective", "no non-past") insert_cat("verbs lacking non-past forms") end local ann_parts = {} local function insert_ann_part(part, conj) local val = table.concat(ann[part], conj or " or ") if val ~= "" and val ~= "regular" then table.insert(ann_parts, val) end end insert_ann_part("form") insert_ann_part("weakness") insert_ann_part("reduced") insert_ann_part("vowels") if ann.passive then table.insert(ann_parts, ann.passive) end insert_ann_part("irreg") insert_ann_part("defective", "، ") --W: Save morph_pattern before overwriting annotation with string alternant_multiword_spec.morph_pattern = ann.morph_pattern alternant_multiword_spec.annotation = table.concat(ann_parts, "، ") end local function show_forms(alternant_multiword_spec) local lemmas = {} for _, slot in ipairs(export.potential_lemma_slots) do if alternant_multiword_spec.forms[slot] then for _, formobj in ipairs(alternant_multiword_spec.forms[slot]) do table.insert(lemmas, formobj) end break end end alternant_multiword_spec.lemmas = lemmas -- save for later use in make_table() alternant_multiword_spec.vn = alternant_multiword_spec.forms.vn -- save for later use in make_table() -- Reconstruct the original verb spec without overrides for verbal nouns and participles, since those specific slots -- are ignored by {{ar-verb form}}. Compute this once beforehand; `transform_accel_obj` is called repeatedly on each -- form and we don't want to compute this repeatedly. local reconstructed_verb_spec = iut.reconstruct_original_spec(alternant_multiword_spec, { preprocess_angle_bracket_spec = function(spec) spec = spec:match("^<(.*)>$") assert(spec) local segments = put.parse_multi_delimiter_balanced_segment_run(spec, {{"[", "]"}, {"<", ">"}}) local dot_separated_groups = put.split_alternating_runs_and_strip_spaces(segments, "%.") -- Rejoin each dot-separated group into a single string, since we aren't actually going to do any parsing -- of bracket-bounded textual runs; then filter out overrides for verbal nouns and participles. local filtered_indicators = {} for _, dot_separated_group in ipairs(dot_separated_groups) do local indicator = table.concat(dot_separated_group) -- FIXME: Do we want to filter out any other indicators? if not (indicator:find("^vn:") or indicator:find("^[ap]p:")) then table.insert(filtered_indicators, indicator) end end return ("<%s>"):format(table.concat(filtered_indicators, ".")) end, }) -- If we're dealing with a single word, no alternants and a single verb form, use the auto-conjugation-fetching -- variant. local reconstructed_lemma, inside = reconstructed_verb_spec:match("^([^ <>()]+)(%b<>)$") if inside and alternant_multiword_spec.verb_forms[1] and not alternant_multiword_spec.verb_forms[2] then reconstructed_verb_spec = ("+%s<%s>"):format(reconstructed_lemma, alternant_multiword_spec.verb_forms[1]) end local function transform_accel_obj(slot, formobj, accel_obj) if not accel_obj then return accel_obj end if slot == "ap" or slot == "pp" or slot == "vn" then -- FIXME: [[Module:accel]] can't correctly handle more than one verb form for participles and verbal nouns accel_obj.form = slot .. "-" .. table.concat(alternant_multiword_spec.verb_forms, "،") else accel_obj.form = "verb-form-" .. reconstructed_verb_spec end return accel_obj end local function generate_link(data) local form = data.form local term = form.formval_for_link local alt = form.alt if term == "?" then term = nil alt = "?" end --W: Create simple link for verb forms without #Arabic anchor local display = alt or term local link if display then link = link_term_simple(display) else link = "" end link = link .. iut.get_footnote_text(form.footnotes, data.footnote_obj) --W: qualifier/label rendering removed along with the q/qq/l/ll modifiers; -- it required [[Module:pron qualifier]], absent on ar.wiktionary. return link end local props = { lang = lang, lemmas = lemmas, transform_accel_obj = transform_accel_obj, generate_link = generate_link, slot_list = alternant_multiword_spec.verb_slots, include_translit = false, } iut.show_forms(alternant_multiword_spec.forms, props) end --W: Tatweel and the invisible direction/joining marks survive copy-paste and -- MediaWiki keeps them in page titles, so strip them from both sides before -- comparing a |بؤرة= value against a generated form. local FOCUS_IGNORE = "[" .. u(0x0640) .. u(0x061C) .. u(0x200B) .. "-" .. u(0x200F) .. u(0x202A) .. "-" .. u(0x202E) .. u(0xFEFF) .. "]" local function normalize_for_focus(s) return (rsub(s, FOCUS_IGNORE, "")) end --W: Which slots hold `focus`? Must run before show_forms() turns the form -- lists into rendered wikitext. local function find_focus_slots(alternant_multiword_spec, focus) if not focus or focus == "" then return nil end local target = normalize_for_focus(focus) local slots = {} for slot, forms in pairs(alternant_multiword_spec.forms) do if type(forms) == "table" then for _, formobj in ipairs(forms) do if type(formobj) == "table" and formobj.form and normalize_for_focus(formobj.form) == target then slots[slot] = true break end end end end return slots end --W: Wrap those slots' rendered wikitext so the stylesheet can mark them. -- Styled by [[Template:ar-verb-form/style.css]] (.ar-conj .avf-focus). local function apply_focus(alternant_multiword_spec, focus_slots) if not focus_slots then return end for slot in pairs(focus_slots) do local rendered = alternant_multiword_spec.forms[slot] if type(rendered) == "string" and rendered ~= "" then alternant_multiword_spec.forms[slot] = '<span class="avf-focus">' .. rendered .. "</span>" end end end ------------------------------------------------------------------------------- -- Functions to create inflection tables -- ------------------------------------------------------------------------------- -- Make the conjugation table. Called from export.show(). local function make_table(alternant_multiword_spec) local text = mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-top', args = { title = 'تصريف {title}', tall = 'yes', palette = 'green', category = 'conjugation', class = 'tr-alongside', -- temp hack to prevent extra line break } } text = text .. [=[ ! colspan="6" | <<الْمَصْدَر>> | colspan="7" | {vn} ]=] if alternant_multiword_spec.has_active then text = text .. [=[ |- ! colspan="6" | <<اِسْم الْفَاعِل>> | colspan="7" | {ap} ]=] end if alternant_multiword_spec.has_passive then text = text .. [=[ |- ! colspan="6" | <<اِسْم الْمَفْعُول>> | colspan="7" | {pp} ]=] end text = text .. [=[ |- ! colspan="999" class="separator" | ]=] if alternant_multiword_spec.has_active then text = text .. [=[ |- ! colspan="12" class="outer" | <<الْفِعْل الْمَعْلُوم>> |- ! colspan="2" | ! colspan="3" | <<الْمُفْرَد>> ! rowspan="12" class="separator" | ! colspan="2" | <<الْمُثَنَّى>> ! rowspan="12" class="separator" | ! colspan="3"| <<الْجَمْع>> |- ! colspan="2"| ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> |- ! rowspan="2" | <<الْمَاضِي>> ! class="secondary" | المذكر | rowspan="2" | {past_1s} | {past_2ms} | {past_3ms} | rowspan="2" | {past_2d} | {past_3md} | rowspan="2" | {past_1p} | {past_2mp} | {past_3mp} |- ! class="secondary" | المؤنث | {past_2fs} | {past_3fs} | {past_3fd} | {past_2fp} | {past_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَرْفُوع>> ! class="secondary" | المذكر | rowspan="2" | {ind_1s} | {ind_2ms} | {ind_3ms} | rowspan="2" | {ind_2d} | {ind_3md} | rowspan="2" | {ind_1p} | {ind_2mp} | {ind_3mp} |- ! class="secondary" | المؤنث | {ind_2fs} | {ind_3fs} | {ind_3fd} | {ind_2fp} | {ind_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَنْصُوب>> ! class="secondary" | المذكر | rowspan="2" | {sub_1s} | {sub_2ms} | {sub_3ms} | rowspan="2" | {sub_2d} | {sub_3md} | rowspan="2" | {sub_1p} | {sub_2mp} | {sub_3mp} |- ! class="secondary" | المؤنث | {sub_2fs} | {sub_3fs} | {sub_3fd} | {sub_2fp} | {sub_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَجْزُوم>> ! class="secondary" | المذكر | rowspan="2" | {juss_1s} | {juss_2ms} | {juss_3ms} | rowspan="2" | {juss_2d} | {juss_3md} | rowspan="2" | {juss_1p} | {juss_2mp} | {juss_3mp} |- ! class="secondary" | المؤنث | {juss_2fs} | {juss_3fs} | {juss_3fd} | {juss_2fp} | {juss_3fp} |- ! rowspan="2" | <<الْأَمْر>> ! class="secondary" | المذكر | rowspan="2" | | {imp_2ms} | rowspan="2" | | rowspan="2" | {imp_2d} | rowspan="2" | | rowspan="2" | | {imp_2mp} | rowspan="2" | |- ! class="secondary" | المؤنث | {imp_2fs} | {imp_2fp} ]=] end if alternant_multiword_spec.has_passive then text = text .. [=[ |- ! colspan="999" class="separator" | |- ! colspan="12" class="outer" | <<الْفِعْل الْمَجْهُول>> |- ! colspan="2" | ! colspan="3" | <<الْمُفْرَد>> ! rowspan="10" class="separator" | ! colspan="2" | <<الْمُثَنَّى>> ! rowspan="10" class="separator" | ! colspan="3" | <<الْجَمْع>> |- ! colspan="2" | ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> |- ! rowspan="2" | <<الْمَاضِي>> ! class="secondary" | المذكر | rowspan="2" | {past_pass_1s} | {past_pass_2ms} | {past_pass_3ms} | rowspan="2" | {past_pass_2d} | {past_pass_3md} | rowspan="2" | {past_pass_1p} | {past_pass_2mp} | {past_pass_3mp} |- ! class="secondary" | المؤنث | {past_pass_2fs} | {past_pass_3fs} | {past_pass_3fd} | {past_pass_2fp} | {past_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَرْفُوع>> ! class="secondary" | المذكر | rowspan="2" | {ind_pass_1s} | {ind_pass_2ms} | {ind_pass_3ms} | rowspan="2" | {ind_pass_2d} | {ind_pass_3md} | rowspan="2" | {ind_pass_1p} | {ind_pass_2mp} | {ind_pass_3mp} |- ! class="secondary" | المؤنث | {ind_pass_2fs} | {ind_pass_3fs} | {ind_pass_3fd} | {ind_pass_2fp} | {ind_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَنْصُوب>> ! class="secondary" | المذكر | rowspan="2" | {sub_pass_1s} | {sub_pass_2ms} | {sub_pass_3ms} | rowspan="2" | {sub_pass_2d} | {sub_pass_3md} | rowspan="2" | {sub_pass_1p} | {sub_pass_2mp} | {sub_pass_3mp} |- ! class="secondary" | المؤنث | {sub_pass_2fs} | {sub_pass_3fs} | {sub_pass_3fd} | {sub_pass_2fp} | {sub_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَجْزُوم>> ! class="secondary" | المذكر | rowspan="2" | {juss_pass_1s} | {juss_pass_2ms} | {juss_pass_3ms} | rowspan="2" | {juss_pass_2d} | {juss_pass_3md} | rowspan="2" | {juss_pass_1p} | {juss_pass_2mp} | {juss_pass_3mp} |- ! class="secondary" | المؤنث | {juss_pass_2fs} | {juss_pass_3fs} | {juss_pass_3fd} | {juss_pass_2fp} | {juss_pass_3fp} ]=] end text = text .. mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-bottom', args = { notes = '{footnote}', } } local forms = alternant_multiword_spec.forms if not alternant_multiword_spec.lemmas then forms.title = "—" else local linked_lemmas = {} for _, form in ipairs(alternant_multiword_spec.lemmas) do --W: Create simple link for lemmas without #Arabic anchor -- table.insert(linked_lemmas, link_term(form.form, "term")) table.insert(linked_lemmas, link_term_simple(form.form)) end forms.title = table.concat(linked_lemmas, "، ") end local ann_parts = {} if alternant_multiword_spec.annotation ~= "" then table.insert(ann_parts, alternant_multiword_spec.annotation) end if alternant_multiword_spec.vn then local linked_vns = {} for _, form in ipairs(alternant_multiword_spec.vn) do table.insert(linked_vns, link_term(form.form, "term")) end table.insert(ann_parts, (#linked_vns > 1 and "verbal nouns" or "verbal noun") .. " " .. table.concat(linked_vns, "، ")) end local annotation = table.concat(ann_parts, "، ") --W: use only arabic morphological pattern in title annotation local morph_patterns = alternant_multiword_spec.morph_pattern if morph_patterns and #morph_patterns > 0 then annotation = table.concat(morph_patterns, "، ") forms.title = forms.title .. " (" .. annotation .. ")" end -- Format the table. local tagged_table = rsub(text, "<<(.-)>>", tag_text) return m_string_utilities.format(tagged_table, forms) end -- Helper function to get root letters and verb classification for simplified table header -- Returns: root_display (e.g., "ح س ب"), verb_type (e.g., "فعل ثلاثي صحيح سالم") local function get_verb_info(alternant_multiword_spec) local root_display = "" local verb_type = "فعل" local rad1, rad2, rad3, rad4 -- Extract radicals from the base word spec using iut.map_word_specs -- This accesses the radicals directly from the parsed verb specification iut.map_word_specs(alternant_multiword_spec, function(base) -- Get radicals from the first conjugation vowel spec if base.conj_vowels and #base.conj_vowels > 0 then local vowel_spec = base.conj_vowels[1] -- Extract radicals, handling both table and string types local function extract_radical(rad) if type(rad) == "table" then -- If it's a table, get the first element or the string representation return rad[1] or rget(rad) else return rad end end rad1 = extract_radical(vowel_spec.rad1) rad2 = extract_radical(vowel_spec.rad2) rad3 = extract_radical(vowel_spec.rad3) rad4 = vowel_spec.rad4 and extract_radical(vowel_spec.rad4) end end) -- Get basic/derived classification from morphological pattern local basic_deriv if alternant_multiword_spec.morph_pattern and #alternant_multiword_spec.morph_pattern > 0 then local morph_pattern = alternant_multiword_spec.morph_pattern[1] basic_deriv = MORPHOLOGICAL_PATTERN_TO_BASIC_DERIV[morph_pattern] end -- Format root display with spaces between letters if rad1 and rad2 and rad3 then if rad4 then -- Quadrilateral root_display = rad1 .. " " .. rad2 .. " " .. rad3 .. " " .. rad4 verb_type = "فعل رباعي" if basic_deriv then verb_type = verb_type .. " " .. basic_deriv end else -- triliteral root_display = rad1 .. " " .. rad2 .. " " .. rad3 verb_type = "فعل ثلاثي" if basic_deriv then verb_type = verb_type .. " " .. basic_deriv if basic_deriv == "مُجرَّد" then --W: the classification concerns only triliteral basic verbs (الثلاثي المُجرَّد) local classification = export.classify_triliteral_verb(rad1, rad2, rad3) verb_type = verb_type .. " " .. classification end end end end return root_display, verb_type end --W: Expose the same root display and classification the table header shows, so -- [[Module:ar-verb-form]] can label a non-lemma page without conjugating twice. export.verb_info = get_verb_info -- Make simplified conjugation table for ar.wiktionary. Called from export.show(). -- This table shows only past, present indicative, and imperative forms. -- No passive voice, no participles, no verbal nouns. local function make_table_ar(alternant_multiword_spec) local text = mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-top', args = { title = 'تصريف {title}', tall = 'yes', palette = 'green', category = 'conjugation', class = 'tr-alongside', -- temp hack to prevent extra line break } } -- Get verb root and classification local root_display, verb_type = get_verb_info(alternant_multiword_spec) -- First row: Root and verb type spanning all columns text = text .. "! colspan=\"2\" | <<الجذر>>: " .. root_display .. "\n" text = text .. "| colspan=\"3\" | <<'''" .. verb_type .. "'''>>\n" text = text .. [=[ |- ! colspan="2" | <<الضمائر>> ! <<الماضي>> ! <<المضارع>> ! <<الأمر>> |- ! rowspan="2" | <<المتكلّم>> | <<أنا>> | {past_1s} | {ind_1s} | |- | <<نحن>> | {past_1p} | {ind_1p} | |- ! rowspan="5" | <<المخاطب>> | <<أنتَ>> | {past_2ms} | {ind_2ms} | {imp_2ms} |- | <<أنتِ>> | {past_2fs} | {ind_2fs} | {imp_2fs} |- | <<أنتما>> | {past_2d} | {ind_2d} | {imp_2d} |- | <<أنتم>> | {past_2mp} | {ind_2mp} | {imp_2mp} |- | <<أنتنّ>> | {past_2fp} | {ind_2fp} | {imp_2fp} |- ! rowspan="6" | <<الغائب>> | <<هو>> | {past_3ms} | {ind_3ms} | |- | <<هي>> | {past_3fs} | {ind_3fs} | |- | <<هما>> | {past_3md} | {ind_3md} | |- | <<هما>> | {past_3fd} | {ind_3fd} | |- | <<هم>> | {past_3mp} | {ind_3mp} | |- | <<هنّ>> | {past_3fp} | {ind_3fp} | ]=] text = text .. mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-bottom', args = { notes = '{footnote}', } } local forms = alternant_multiword_spec.forms if not alternant_multiword_spec.lemmas then forms.title = "—" else local linked_lemmas = {} for _, form in ipairs(alternant_multiword_spec.lemmas) do --W: Create simple link for lemmas without #Arabic anchor -- table.insert(linked_lemmas, link_term(form.form, "term")) table.insert(linked_lemmas, link_term_simple(form.form)) end forms.title = table.concat(linked_lemmas, "، ") end local ann_parts = {} if alternant_multiword_spec.annotation ~= "" then table.insert(ann_parts, alternant_multiword_spec.annotation) end local annotation = table.concat(ann_parts, "، ") --W: use only arabic morphological pattern in title annotation local morph_patterns = alternant_multiword_spec.morph_pattern if morph_patterns and #morph_patterns > 0 then annotation = table.concat(morph_patterns, "، ") forms.title = forms.title .. " (" .. annotation .. ")" end -- Format the table. local tagged_table = rsub(text, "<<(.-)>>", tag_text) return m_string_utilities.format(tagged_table, forms) end ------------------------------------------------------------------------------- -- Verb classification functions -- ------------------------------------------------------------------------------- --[=[ تصنيف الفعل الثلاثي المُجرَّد حسب نوعه Classify an Arabic triliteral basic verb root based on its three letters. @param r1 الحرف الأول (first root letter - الفاء) @param r2 الحرف الثاني (second root letter - العين) @param r3 الحرف الثالث (third root letter - اللام) @return str: نوع الفعل (verb type classification in Arabic) Examples: classify_triliteral_verb('ك', 'ت', 'ب') --> 'صحيح سالم' classify_triliteral_verb('أ', 'ت', 'ي') --> 'معتل ناقص يائي مهموز الفاء' classify_triliteral_verb('ق', 'ل', 'و') --> 'معتل ناقص واوي' ]=] function export.classify_triliteral_verb(r1, r2, r3) -- تعريف أحرف العلة والهمزة -- الحروف الضعيفة (أحرف العلة): واو وياء فقط local weak_letters = {[W] = true, [Y] = true} -- الهمزة: جميع أشكال الهمزة (ء، أ، إ، ؤ، ئ) local hamza_letters = { [HAMZA] = true, -- ء [HAMZA_ON_ALIF] = true, -- أ [HAMZA_UNDER_ALIF] = true, -- إ [HAMZA_ON_W] = true, -- ؤ [HAMZA_ON_Y] = true -- ئ } -- فحص كل حرف local is_hamza = {hamza_letters[r1] or false, hamza_letters[r2] or false, hamza_letters[r3] or false} local is_weak = {weak_letters[r1] or false, weak_letters[r2] or false, weak_letters[r3] or false} -- عدد أحرف العلة local weak_count = (is_weak[1] and 1 or 0) + (is_weak[2] and 1 or 0) + (is_weak[3] and 1 or 0) -- فحص التضعيف (الحرف الثاني = الثالث) local is_doubled = (r2 == r3) -- ═══════════════════════════════════════════════════════════ -- المُعتل: الفعل الذي يحتوي على حرف أو أكثر من أحرف العلة -- ═══════════════════════════════════════════════════════════ if weak_count > 0 then -- ───────────────────────────────────────────────────── -- لفيف: يحتوي على حرفين أو أكثر من أحرف العلة -- ───────────────────────────────────────────────────── if weak_count >= 2 then -- مقرون: حرفا العلة متجاوران if is_weak[2] and is_weak[3] then -- الثاني والثالث if is_hamza[1] then return "معتل لفيف مقرون مهموز الفاء" end return "معتل لفيف مقرون" elseif is_weak[1] and is_weak[2] then -- الأول والثاني return "معتل لفيف مقرون" -- مفروق: الأول والثالث حرفا علة elseif is_weak[1] and is_weak[3] then if is_hamza[2] then return "معتل لفيف مفروق مهموز العين" end return "معتل لفيف مفروق" end -- ───────────────────────────────────────────────────── -- مثال: الحرف الأول حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[1] then if r1 == W then -- واوي if is_hamza[3] then return "معتل مثال واوي مهموز اللام" elseif is_doubled then return "معتل مثال واوي مُضعَّف" elseif is_hamza[2] then return "معتل مثال واوي مهموز العين" end return "معتل مثال واوي" else -- يائي (ي) if is_doubled then return "معتل مثال يائي مُضعَّف" elseif is_hamza[2] then return "معتل مثال يائي مهموز العين" end return "معتل مثال يائي" end -- ───────────────────────────────────────────────────── -- أجوف: الحرف الثاني حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[2] then if r2 == W then -- واوي if is_hamza[3] then return "معتل أجوف واوي مهموز اللام" elseif is_hamza[1] then return "معتل أجوف واوي مهموز الفاء" end return "معتل أجوف واوي" else -- يائي (ي) if is_hamza[3] then return "معتل أجوف يائي مهموز اللام" elseif is_hamza[1] then return "معتل أجوف يائي مهموز الفاء" end return "معتل أجوف يائي" end -- ───────────────────────────────────────────────────── -- ناقص: الحرف الثالث حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[3] then if r3 == W then -- واوي if is_hamza[1] then return "معتل ناقص واوي مهموز الفاء" elseif is_hamza[2] then return "معتل ناقص واوي مهموز العين" end return "معتل ناقص واوي" else -- يائي (ي) if is_hamza[1] then return "معتل ناقص يائي مهموز الفاء" elseif is_hamza[2] then return "معتل ناقص يائي مهموز العين" end return "معتل ناقص يائي" end end -- ═══════════════════════════════════════════════════════════ -- الصحيح: الفعل الذي لا يحتوي على أحرف العلة -- ═══════════════════════════════════════════════════════════ else -- ───────────────────────────────────────────────────── -- مهموز: يحتوي على همزة -- ───────────────────────────────────────────────────── if is_hamza[1] or is_hamza[2] or is_hamza[3] then -- مهموز الفاء واللام: الأول والثالث همزة if is_hamza[1] and is_hamza[3] then return "صحيح مهموز الفاء واللام" -- مهموز الفاء elseif is_hamza[1] then if is_doubled then return "صحيح مُضعَّف مهموز الفاء" end return "صحيح مهموز الفاء" -- مهموز العين elseif is_hamza[2] then return "صحيح مهموز العين" -- مهموز اللام elseif is_hamza[3] then return "صحيح مهموز اللام" end -- ───────────────────────────────────────────────────── -- مُضعَّف: الحرف الثاني = الثالث -- ───────────────────────────────────────────────────── elseif is_doubled then return "صحيح مُضعَّف" -- ───────────────────────────────────────────────────── -- سالم: لا همزة، لا حرف علة، لا تضعيف -- ───────────────────────────────────────────────────── else return "صحيح سالم" end end return "غير معروف" end ------------------------------------------------------------------------------- -- External entry points -- ------------------------------------------------------------------------------- --W: Normalize root to use underscores as separators -- Accepts: "كتب", "ك_ت_ب", or "ك ت ب" -- Returns: "ك_ت_ب" local function normalize_root(root) if not root then return nil end -- Helper function to normalize a single character/radical local function normalize_char(char) -- Convert all hamza variants to canonical bare hamza if char == HAMZA_ON_ALIF or char == HAMZA_UNDER_ALIF or char == HAMZA_ON_W or char == HAMZA_ON_Y then return HAMZA -- Convert alif maqṣūra to yaa (ى → ي) elseif char == AMAQ then return Y -- Reject alif - it's not a root radical elseif char == ALIF then error("Root contains alif (ا) which is not a valid root radical. For weak verbs, use و (waw) or ي (yaa) instead.") end return char end -- Convert alif madda to hamza + alif for processing (will be caught as error below) root = root:gsub(AMAD, HAMZA .. ALIF) -- Replace spaces with underscores root = root:gsub(" ", "_") -- If no underscores yet, insert them between each character if not root:find("_") then -- Extract only Arabic letters (excluding diacritics) -- Arabic letter range: U+0621 to U+064A (basic letters) local chars = {} for char in mw.ustring.gmatch(root, "[ء-ي]") do table.insert(chars, normalize_char(char)) end root = table.concat(chars, "_") else -- Root already has underscores (e.g., "أ_م_ن"), normalize each radical local parts = mw.text.split(root, "_") for i, part in ipairs(parts) do parts[i] = normalize_char(part) end root = table.concat(parts, "_") end return root end --W: Construct the [1] parameter from root (جذر) and morphological pattern (وزن) -- Example: -- input: root="كتب", pattern="فعَل يفعُل" -- output: "ك_ت_ب<I/a~u>" local function construct_verb_spec(root, pattern) if not root or not pattern then return nil end local normalized_root = normalize_root(root) local form_code = MORPHOLOGICAL_PATTERN_TO_FORM[pattern] if not form_code then error("Unknown morphological pattern (وزن صرفي): " .. pattern) end return normalized_root .. "<" .. form_code .. ">" end -- Wrapper function that accepts جذر (root) and وزن (pattern) as parameters -- Returns: verb_type (e.g., "فعل ثلاثي مُجرَّد صحيح سالم") -- Example: export.get_verb_type({["جذر"] = "كتب", ["وزن"] = "فعَل يفعُل"}) function export.get_verb_type(args) local verb_spec if args["جذر"] and args["وزن"] then verb_spec = construct_verb_spec(args["جذر"], args["وزن"]) elseif args[1] then verb_spec = args[1] else error("Must provide either جذر and وزن, or a verb specification in args[1]") end local alternant_multiword_spec = export.do_generate_forms({[1] = verb_spec}) local _, verb_type = get_verb_info(alternant_multiword_spec) return verb_type end -- Append two lists `l1` and `l2`, removing duplicates. If either is {nil}, just return the other. local function combine_lists(l1, l2) -- combine_footnotes() does exactly what we want. return iut.combine_footnotes(l1, l2) end local function combine_metadata(data) local src1 = data.form1 local src2 = data.form2 local dest = data.dest_form dest.uncertain = src1.uncertain or src2.uncertain if src1.genders and src2.genders and not m_table.deepEquals(src1.genders, src2.genders) then -- do nothing else dest.genders = src1.genders or src2.genders end if src1.pos and src2.pos and src1.pos ~= src2.pos then -- do nothing else dest.pos = src1.pos or src2.pos end -- Don't copy .alt, .gloss, .lit, .id, which describe a single term and don't extend to multiword terms. dest.q = combine_lists(src1.q, src2.q) dest.qq = combine_lists(src1.qq, src2.qq) dest.l = combine_lists(src1.l, src2.l) dest.ll = combine_lists(src1.ll, src2.ll) end -- Externally callable function to parse and conjugate a verb given user-specified arguments. -- Return value is WORD_SPEC, an object where the conjugated forms are in `WORD_SPEC.forms` -- for each slot. If there are no values for a slot, the slot key will be missing. The value -- for a given slot is a list of objects {form=FORM, footnotes=FOOTNOTES}. function export.do_generate_forms(args, source_template, headword_head) local PAGENAME = mw.loadData("Module:headword/data").pagename local function in_template_space() local nsText = mw.title.getCurrentTitle().nsText return nsText == "Template" or nsText == "قالب" end -- Determine the verb spec we're being asked to generate the conjugation of. This may be taken from the current page -- title or the value of |pagename=; but not when called from {{ar-verb form}}, where the page title is a -- non-lemma form. Note that the verb spec may omit the lemma; e.g. it may be "<II>". For this reason, we use the -- value of `pagename` computed here down below, when calling normalize_all_lemmas(). local pagename = source_template ~= "ar-verb form" and args.pagename or PAGENAME local head = headword_head or pagename --W: If both root (جذر) and morphological pattern (وزن) are provided, construct [1] if args["جذر"] and args["جذر"] ~= "" and args["وزن"] and args["وزن"] ~= "" then local constructed = construct_verb_spec(args["جذر"], args["وزن"]) if constructed and constructed ~= "" then args[1] = constructed end end local arg1 = args[1] if not arg1 then if (pagename == "ar-conj" or pagename == "ar-verb" or pagename == "ar-verb form" or pagename == "تصريف") and in_template_space() then arg1 = "كتب<I/a~u.pass>" else arg1 = "<>" end end -- When called from {{ar-verb form}}, determine the non-lemma form whose inflections we're being asked to -- determine. This normally comes from the page title or the value of |pagename=. local verb_form_of_form if source_template == "ar-verb form" then verb_form_of_form = args.pagename if not verb_form_of_form then if PAGENAME == "ar-verb form" and in_template_space() then verb_form_of_form = "كتبت" else verb_form_of_form = PAGENAME end end end local incorporated_headword_head_into_lemma = false if arg1:find("^<.*>$") then -- missing lemma if head:find(" ") then -- If multiword lemma, try to add arg spec after the first word. -- Try to preserve the brackets in the part after the verb, but don't do it -- if there aren't the same number of left and right brackets in the verb -- (which means the verb was linked as part of a larger expression). local first_word, post = rmatch(head, "^(.-)( .*)$") local left_brackets = rsub(first_word, "[^%[]", "") local right_brackets = rsub(first_word, "[^%]]", "") if #left_brackets == #right_brackets then arg1 = iut.remove_redundant_links(first_word) .. arg1 .. post incorporated_headword_head_into_lemma = true else -- Try again using the form without links. local linkless_head = m_links.remove_links(head) if linkless_head:find(" ") then first_word, post = rmatch(linkless_head, "^(.-)( .*)$") arg1 = first_word .. arg1 .. post else error("Unable to incorporate <...> spec into explicit head due to a multiword linked verb or " .. "unbalanced brackets; please include <> explicitly: " .. arg1) end end else -- Will be incorporated through `head` below in the call to normalize_all_lemmas(). incorporated_headword_head_into_lemma = true end end local parse_props = { parse_indicator_spec = parse_indicator_spec, angle_brackets_omittable = true, allow_blank_lemma = true, } local alternant_multiword_spec = iut.parse_inflected_text(arg1, parse_props) alternant_multiword_spec.pos = pos or "verbs" alternant_multiword_spec.args = args alternant_multiword_spec.source_template = source_template alternant_multiword_spec.verb_form_of_form = verb_form_of_form alternant_multiword_spec.incorporated_headword_head_into_lemma = incorporated_headword_head_into_lemma normalize_all_lemmas(alternant_multiword_spec, head) detect_all_indicator_specs(alternant_multiword_spec) local inflect_props = { lang = lang, slot_list = alternant_multiword_spec.verb_slots, inflect_word_spec = conjugate_verb, combine_metadata = combine_metadata, -- We add links around the generated verbal forms rather than allow the entire multiword -- expression to be a link, so ensure that user-specified links get included as well. include_user_specified_links = true, } iut.inflect_multiword_or_alternant_multiword_spec(alternant_multiword_spec, inflect_props) if debug_translit then for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do if form.translit then local full_form_translit = (lang:transliterate(m_links.remove_links(form.form))) if full_form_translit ~= form.translit then error(("Internal error: For slot '%s', form '%s' incremental translit '%s' not same as full translit '%s'"): format(slot, form.form, form.translit, full_form_translit)) end end form.form = iut.remove_redundant_links(form.form) end end end -- Remove redundant brackets around entire forms. for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do form.form = iut.remove_redundant_links(form.form) end end -- Apply NFC-style normalization: reorder shadda+vowel to vowel+shadda -- to match MediaWiki's automatic NFC normalization (which is applied on enwiktionary -- but not in local Lua environments). This reverses the postprocessing step. for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do form.form = apply_nfc_shadda(form.form) end end determine_slot_uncertainty_from_forms(alternant_multiword_spec) determine_verb_properties_from_forms(alternant_multiword_spec) compute_categories_and_annotation(alternant_multiword_spec) if args.json and source_template == "ar-conj" then -- There is a circular reference in `base.alternant_multiword_spec`, which points back to top level. iut.map_word_specs(alternant_multiword_spec, function(base) base.alternant_multiword_spec = nil end) return require("Module:JSON").toJSON(alternant_multiword_spec) end return alternant_multiword_spec end -- Entry point for {{ar-conj}}. Template-callable function to parse and conjugate a verb given -- user-specified arguments and generate a displayable table of the conjugated forms. function export.show(frame) local parent_args = frame:getParent() and frame:getParent().args or frame.args --W local params = { [1] = {}, ["noautolinktext"] = {type = "boolean"}, ["noautolinkverb"] = {type = "boolean"}, ["t"] = {}, -- for use by {{ar-verb form}}; otherwise ignored ["id"] = {}, -- for use by {{ar-verb form}}; otherwise ignored ["pagename"] = {}, -- for testing/documentation pages ["json"] = {type = "boolean"}, -- for bot use --W: additional parameters for ar.wiktionary.org ["جذر"] = {type = "string"}, --W: الجذر اللغوي, root ["وزن"] = {type = "string"}, --W: الوزن الصرفي, morphological pattern ["كامل"] = {type = "boolean"}, --W: show full table (default is simplified table) ["بؤرة"] = {type = "string"}, --W: highlight the cells holding this form } local args = require("Module:parameters").process(parent_args, params) --W: If both root (جذر) and morphological pattern (وزن) are provided, construct [1] if args["جذر"] and args["جذر"] ~= "" and args["وزن"] and args["وزن"] ~= "" then local constructed = construct_verb_spec(args["جذر"], args["وزن"]) if constructed and constructed ~= "" then args[1] = constructed end end local alternant_multiword_spec = export.do_generate_forms(args, "ar-conj") if type(alternant_multiword_spec) == "string" then -- JSON return value return alternant_multiword_spec end --W: |بؤرة= marks the cells holding a given form, so that a conjugated-form -- page ([[Module:ar-verb-form]]) can show the reader where in the paradigm -- the word they looked up actually sits. The slots have to be found before -- show_forms(), which replaces each form list with rendered wikitext. local focus_slots = find_focus_slots(alternant_multiword_spec, args["بؤرة"]) show_forms(alternant_multiword_spec) apply_focus(alternant_multiword_spec, focus_slots) --W: Choose table type: simplified (default) or full (comprehensive) local table_html if args["كامل"] then table_html = make_table(alternant_multiword_spec) else table_html = make_table_ar(alternant_multiword_spec) end --W: don't add categories --W: TODO: all lines with insert_cat() are to be removed. -- return table_html .. -- require("Module:utilities").format_categories(alternant_multiword_spec.categories, lang, nil, nil, force_cat) return table_html end function export.verb_forms(frame) local parargs = frame:getParent().args local params = { [1] = {}, [2] = {}, [3] = {}, [4] = {}, [5] = {}, pagename = {}, } for _, form in ipairs(allowed_vforms) do -- FIXME: We go up to 5 here. The code supports unlimited variants but it's unlikely we will ever see more than -- 2. for index = 1, 5 do local prefix = index == 1 and form or form .. index params[prefix .. "-pv"] = {} for _, extn in ipairs { "", "-vn", "-ap", "-pp" } do params[prefix .. extn] = {} params[prefix .. extn .. "-head"] = {} -- FIXME: No -tr? params[prefix .. extn .. "-gloss"] = {} end end end local args = require("Module:parameters").process(parargs, params) local i = 1 local past_vowel_re = "^[aui,]*$" local combined_root = nil if not args[i] or rfind(args[i], past_vowel_re) then combined_root = args.pagename or mw.loadData("Module:headword/data").pagename if not rfind(combined_root, "^([^ ]) ([^ ]) ([^ ])$") and not rfind(combined_root, "^([^ ]) ([^ ]) ([^ ]) ([^ ])$") then error("When inferring roots from page title, need three or four space-separated radicals: " .. combined_root) end elseif rfind(args[i], " ") then combined_root = args[i] i = i + 1 else local separate_roots = {} while args[i] and not rfind(args[i], past_vowel_re) do table.insert(separate_roots, args[i]) i = i + 1 end combined_root = table.concat(separate_roots, " ") end local past_vowel = args[i] i = i + 1 if past_vowel and not rfind(past_vowel, past_vowel_re) then error("Unrecognized past vowel, should be 'a', 'i', 'u', 'a,u', etc. or empty: " .. past_vowel) end -- Spaces interfere with parsing as a unit in [[Module:inflection utilities]], so replace with underscore. combined_root = combined_root:gsub(" ", "_") local split_root = rsplit(combined_root, "_") -- Map from verb forms (I, II, etc.) to a table of verb properties, -- which has entries e.g. for "verb" (either true to autogenerate the verb -- head, or an explicitly specified verb head using e.g. argument "I-head"), -- and for "verb-gloss" (which comes from e.g. the argument "I" or "I-gloss"), -- and for "vn" and "vn-gloss", "ap" and "ap-gloss", "pp" and "pp-gloss". local verb_properties = {} for _, form in ipairs(allowed_vforms) do local formpropslist = {} local derivs = {{"verb", ""}, {"vn", "-vn"}, {"ap", "-ap"}, {"pp", "-pp"}} local index = 1 while true do local formprops = {} local prefix = index == 1 and form or form .. index if prefix == "I" then formprops.pv = past_vowel end if args[prefix .. "-pv"] then formprops.pv = args[prefix .. "-pv"] end for _, deriv in ipairs(derivs) do local prop = deriv[1] local extn = deriv[2] if args[prefix .. extn] == "+" then formprops[prop] = true elseif args[prefix .. extn] == "-" then formprops[prop] = false elseif args[prefix .. extn] then formprops[prop] = true formprops[prop .. "-gloss"] = args[prefix .. extn] end if args[prefix .. extn .. "-head"] then if formprops[prop] == nil then formprops[prop] = true end formprops[prop] = args[prefix .. extn .. "-head"] end if args[prefix .. extn .. "-gloss"] then if formprops[prop] == nil then formprops[prop] = true end formprops[prop .. "-gloss"] = args[prefix .. extn .. "-gloss"] end end if formprops.verb then -- If a verb form specified, also turn on vn (unless form I, with -- unpredictable vn) and ap, and maybe pp, according to form, -- weakness and past vowel. But don't turn these on if there's -- an explicit on/off specification for them (e.g. I-pp=-). if form ~= "I" and formprops.vn == nil then formprops.vn = true end if formprops.ap == nil then formprops.ap = true end local weakness = weakness_from_radicals(form, split_root[1], split_root[2], split_root[3], split_root[4]) if formprops.pp == nil and not vform_probably_no_passive(form, weakness, rsplit(formprops.pv or "", ","), {}) then formprops.pp = true end if formprops.verb == true or formprops.vn == true or formprops.ap == true or formprops.pp == true then formprops.need_autogen = true end table.insert(formpropslist, formprops) index = index + 1 else break end end table.insert(verb_properties, {form, formpropslist}) end -- Go through and create the verb form derivations as necessary, when they haven't been explicitly given. for _, vplist in ipairs(verb_properties) do local vform = vplist[1] for _, props in ipairs(vplist[2]) do if props.need_autogen then local form_with_vowels if vform == "I" then local pv = props.pv if not pv then -- Make up likely past vowels based on weakness and actual radical. if split_root[3] == W then -- final-weak form_with_vowels = "I/a~u" elseif split_root[3] == Y then form_with_vowels = "I/a~i" elseif split_root[2] == W then --hollow form_with_vowels = "I/u~u" elseif split_root[2] == Y then form_with_vowels = "I/i~i" else -- most common; doesn't matter so much since we're not displaying the non-past form_with_vowels = "I/a~u" end else local pvs = rsplit(pv, ",") local vowel_sufs = {} for _, pv in ipairs(pvs) do local vowel_spec if pv == "a" then -- Make up likely past vowels based on weakness and actual radical. if split_root[3] == W then -- final-weak vowel_spec = "a~u" elseif split_root[3] == Y then vowel_spec = "a~i" elseif split_root[2] == W then --hollow vowel_spec = "a~u" elseif split_root[2] == Y then vowel_spec = "a~i" else -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "a~u" end elseif pv == "i" then -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "i~a" elseif pv == "u" then -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "u~u" else error(("Internal error: Bad past vowel '%s' in {{ar-verb forms}}"):format(pv)) end table.insert(vowel_sufs, vowel_spec) end form_with_vowels = "I/" .. table.concat(vowel_sufs, "/") end else form_with_vowels = vform end local angle_bracket_spec = ("%s<%s.pass>"):format(combined_root, form_with_vowels) local alternant_multiword_spec = export.do_generate_forms({angle_bracket_spec}, "ar-verb forms") local function format_forms(forms) if not forms then return "-" -- FIXME: Throw an error? end local formatted = {} for _, form in ipairs(forms) do if form.translit then table.insert(formatted, ("%s//%s"):format(form.form, form.translit)) else table.insert(formatted, form.form) end end return table.concat(formatted, "،") end if props.verb == true then props.verb = format_forms(alternant_multiword_spec.forms.past_3ms) end for _, deriv in ipairs({"vn", "ap", "pp"}) do if props[deriv] == true then props[deriv] = format_forms(alternant_multiword_spec.forms[deriv]) end end end end end -- Go through and output the result local formtextarr = {} for _, vplist in ipairs(verb_properties) do local form = vplist[1] for _, props in ipairs(vplist[2]) do local textarr = {} if props.verb then local text = "* '''[[Appendix:Arabic verbs#Form " .. form .. "|Form " .. form .. "]]''': " local linktext = {} local splitheads = rsplit(props.verb, "[,،]") for _, head in ipairs(splitheads) do table.insert(linktext, m_links.full_link({lang = lang, term = head, gloss = props["verb-gloss"]})) end text = text .. table.concat(linktext, "، ") table.insert(textarr, text) for _, derivengl in ipairs({{"vn", "Verbal noun"}, {"ap", "Active participle"}, {"pp", "Passive participle"}}) do local deriv = derivengl[1] local engl = derivengl[2] if props[deriv] then local text = "** " .. engl .. ": " local linktext = {} local splitheads = rsplit(props[deriv], "[,،]") for _, head in ipairs(splitheads) do local ar, translit = head:match("^(.*)//(.-)$") if not ar then ar = head end table.insert(linktext, m_links.full_link {lang = lang, term = ar, tr = translit, gloss = props[deriv .. "-gloss"]} ) end text = text .. table.concat(linktext, "، ") table.insert(textarr, text) end end table.insert(formtextarr, table.concat(textarr, "\n")) end end end return table.concat(formtextarr, "\n") end -- Infer radicals from lemma headword (i.e. 3rd masculine singular past) and verb form (I, II, etc.). Throw an error if -- headword is malformed. A given returned radical may be actually be a list of possible radicals, where the first one -- should be used if the user didn't explicitly give the radical. If the list contains a field `ambig = true`, the -- radical is considered ambiguous and should not be categorized. `is_reduced` indicates that the user specified -- `.reduced` to indicate that the verb form is reduced by assimilation and/or haplology (typically archaic Koranic -- forms such as اِدَّارَأَ instead of تَدَارَأَ; or اِسْطَاعَ instead of اِسْتِطَاعَ; etc. function export.infer_radicals(data) local headword, vform, passive, past_vowel, nonpast_vowel, is_reduced = data.headword, data.vform, data.passive, data.past_vowel, data.nonpast_vowel, data.is_reduced past_vowel = past_vowel or "-" nonpast_vowel = nonpast_vowel or "-" local function verify_vowel(vowel, param) --W: A past/non-past vowel may legitimately be a form object {form=..., footnotes=...} -- when the user attaches a footnote, e.g. <I/a[نادر]~u>, so compare the formval. -- Comparing the raw value crashed on Lua 5.1 ("bad argument #2 to 'format'"). local formval = rget(vowel) if formval ~= A and formval ~= I and formval ~= U and formval ~= "-" then error(("Internal error: Bad value for %s: %s (should be Arabic diacritic vowel or '-')"):format( param, dump(vowel))) end end verify_vowel(past_vowel, "past_vowel") verify_vowel(nonpast_vowel, "nonpast_vowel") local ch = {} local form_viii_assim, variant -- sub out alif-madda for easier processing headword = rsub(headword, AMAD, HAMZA .. ALIF) local function infer_err(msg, noann) local anns = {} local nohead, novform if noann == "nohead" then nohead = true elseif noann == "novform" then novform = true elseif noann == "nohead-vform" then nohead = true novform = true elseif noann then error(("Internal error: Unrecognized value for 'noann': %s"):format(dump(noann))) end if not nohead then table.insert(anns, ("headword=%s"):format(data.headword)) end if not novform then table.insert(anns, ("verb form=%s"):format(data.vform)) end anns = table.concat(anns, "، ") if anns ~= "" then anns = ": " .. anns end error(msg .. anns) end local len = ulen(headword) local expected_length -- extract the headword letters into an array for i = 1, len do table.insert(ch, usub(headword, i, i)) end -- check that the letter at the given index is the given string, or -- is one of the members of the given array local function check(index, must) local letter = ch[index] if type(must) == "string" then if not letter then infer_err("Letter " .. index .. " is nil") end if letter ~= must then infer_err(("For verb form %s, letter %s must be %s, not %s"):format(vform, index, must, letter), "novform") end elseif not m_table.contains(must, letter) then infer_err("For verb form " .. vform .. ", radical " .. index .. " must be one of " .. table.concat(must, " ") .. ", not " .. letter, "novform") end end -- Check that length of headword is within [min, max] local function check_len(min, max) if min and len < min then infer_err(("Not enough letters for verb form %s, expected at least %s"):format(vform, min), "novform") end if max and len > max then infer_err(("Too many letters for verb form %s, expected at most %s"):format(vform, max), "novform") end end -- If the vowels are i~a or u~u, a form I verb beginning with w- normally keeps the w in the non-past. Otherwise it -- loses it (i.e. it is "assimilated"). local function form_I_w_non_assimilated() return req(past_vowel, I) and req(nonpast_vowel, A) or req(past_vowel, U) and req(nonpast_vowel, U) end -- Convert radicals to canonical form (handle various hamza varieties and check for misplaced alif or alif maqṣūra; -- legitimate cases of these letters are handled above). local function convert(rad, index) if type(rad) == "table" then for i, r in ipairs(rad) do rad[i] = convert(r, index) end return rad elseif rad == HAMZA_ON_ALIF or rad == HAMZA_UNDER_ALIF or rad == HAMZA_ON_W or rad == HAMZA_ON_Y then return HAMZA elseif rad == AMAQ then infer_err("Radical " .. index .. " must not be alif maqṣūra") elseif rad == ALIF then infer_err("Radical " .. index .. " must not be alif") else return rad end end local quadlit = vform:find("q$") -- find first radical, start of second/third radicals, check for -- required letters local radstart, rad1, rad2, rad3, rad4 local weakness if vform == "I" or vform == "II" then rad1 = ch[1] radstart = 2 elseif vform == "III" then rad1 = ch[1] check(2, {ALIF, W}) -- W occurs in passive-only verbs radstart = 3 elseif vform == "IV" then -- this would be alif-madda but we replaced it with hamza-alif above. if ch[1] == HAMZA and ch[2] == ALIF then rad1 = HAMZA else check(1, HAMZA_ON_ALIF) rad1 = ch[2] end radstart = 3 elseif vform == "V" then check(1, is_reduced and ALIF or T) rad1 = ch[2] radstart = 3 elseif vform == "VI" then check(1, is_reduced and ALIF or T) if ch[2] == AMAD then rad1 = HAMZA radstart = 3 else rad1 = ch[2] check(3, {ALIF, W}) -- W occurs in passive-only verbs radstart = 4 end elseif vform == "VII" then check(1, ALIF) if is_reduced then check(2, M) rad1 = M radstart = 3 else check(2, N) rad1 = ch[3] radstart = 4 end elseif vform == "VIII" then check(1, ALIF) rad1 = ch[2] if rad1 == "د" then rad1 = {"د", "ذ"} -- not considered ambiguous since it's usually د radstart = 3 form_viii_assim = "دّ" elseif rad1 == "ظ" and ch[3] == "ط" and len >= 5 then -- [[اظطلم]], variant of [[اظلم]] radstart = 4 form_viii_assim = "ظْط" elseif rad1 == "ذ" and ch[3] == "د" and len >= 5 then -- [[اذدكر]], variant of [[اذكر]] radstart = 4 form_viii_assim = "ذْد" elseif rad1 == T or rad1 == "ث" or rad1 == "ذ" or rad1 == "ط" or rad1 == "ظ" then radstart = 3 form_viii_assim = rad1 .. SH elseif rad1 == "ز" then check(3, "د") radstart = 4 form_viii_assim = "زْد" elseif rad1 == "ص" or rad1 == "ض" then check(3, "ط") radstart = 4 form_viii_assim = rad1 .. SK .. "ط" else check(3, T) radstart = 4 rad1 = convert(rad1, 1) form_viii_assim = rad1 .. SK .. "ت" end if rad1 == T then -- Radical is ambiguous, might be ت or و or ي but doesn't affect conjugation. Note that there are no -- form-VIII verbs with initial radical ي given in Hans Wehr but Lane mentions at least: -- - (page 2973) اِتَّأَسَ, with assimilation of the ي to ت, from root ي ء س; -- - (page 2975) اِتَّبَسَ non-past يَتَّبِسُ and alternative اِيتَبَسَ non-past يَاتَبِسُ from the root ي ب س; -- - (page 2976) اِتَّسَرَ non-past يَتَّسِرُ or alternatively يَأْتَسِرُ with hamza preserved from the root ي س ر. -- These alternative forms seem very rare and probably not worth worrying about, but if we want to handle -- them, we can do it when the time comes. rad1 = {T, W, Y, ambig = true} -- اِتَّخَذَ irregularly has hamza as the radical but assimilates like و if ch[3] == "خ" and ch[4] == "ذ" then rad1[4] = HAMZA end end elseif vform == "IX" then check(1, ALIF) rad1 = ch[2] radstart = 3 elseif vform == "X" then check(1, ALIF) check(2, S) if is_reduced then rad1 = ch[3] radstart = 4 else check(3, T) rad1 = ch[4] radstart = 5 end elseif vform == "Iq" then rad1 = ch[1] rad2 = ch[2] radstart = 3 elseif vform == "IIq" then check(1, T) rad1 = ch[2] rad2 = ch[3] radstart = 4 elseif vform == "IIIq" then check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) radstart = 5 elseif vform == "IVq" then check(1, ALIF) rad1 = ch[2] rad2 = ch[3] radstart = 4 elseif vform == "XI" then check_len(5, 5) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, ALIF) rad3 = ch[5] weakness = "sound" elseif vform == "XII" then check(1, ALIF) rad1 = ch[2] if ch[3] ~= ch[5] then infer_err("For verb form XII, letters 3 and 5 should be the same", "novform") end check(4, W) radstart = 5 elseif vform == "XIII" then check_len(5, 5) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, W) rad3 = ch[5] if rad3 == AMAQ then weakness = "final-weak" else weakness = "sound" end elseif vform == "XIV" then check_len(6, 6) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) rad3 = ch[5] if ch[6] == AMAQ then check_waw_ya(rad3) weakness = "final-weak" else if ch[5] ~= ch[6] then infer_err("For verb form XIV, letters 5 and 6 should be the same", "novform") end weakness = "sound" end elseif vform == "XV" then check_len(6, 6) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) rad3 = ch[5] if rad3 == Y then check(6, ALIF) else check(6, AMAQ) end weakness = "sound" else error("Internal error: Unrecognized verb form " .. vform) end -- Process the last two radicals. RADSTART is the index of the first of the two. If it's nil then all radicals have -- already been processed above, and we don't do anything. if radstart then -- There must (normally) be one or two letters left. if len == radstart then if vform == "I" and ch[len] == Y then -- short form حَيَّ weakness = "final-weak" rad2 = Y rad3 = Y variant = "short" elseif vform == "IV" and rad1 == "ر" and ch[len] == AMAQ then -- irregular verb أَرَى weakness = "final-weak" rad2 = HAMZA rad3 = Y elseif vform == "X" and rad1 == "ح" and ch[len] == AMAQ then -- irregular verb اِسْتَحَى weakness = "final-weak" rad2 = Y rad3 = Y variant = "short" else -- If one letter left, then it's a geminate verb. If the letter is alif or alif maqṣūra, it will trigger -- an error down the line. if vform_supports_geminate(vform) then weakness = "geminate" rad2 = ch[len] rad3 = ch[len] if vform == "III" or vform == "VI" then variant = "short" end else infer_err("Apparent geminate verb, but geminate verbs not allowed for this verb form") end end elseif quadlit then -- Process last two radicals of a quadriliteral verb form. rad3 = ch[radstart] rad4 = ch[radstart + 1] expected_length = radstart + 1 check_len(expected_length) if rad4 == AMAQ or rad4 == ALIF and rad3 == Y or rad4 == Y then -- rad4 can be Y in passive-only verbs. if vform_supports_final_weak(vform) then weakness = "final-weak" -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws in a row); it could be wāw or -- yāʾ, but doesn't affect the conjugation. rad4 = rad3 == W and {Y, W, ambig = true} or {W, Y, ambig = true} else infer_err("Last radical is " .. rad4 .. " but verb form " .. vform .. " doesn't support final-weak verbs", "novform") end else weakness = "sound" end else -- Process last two radicals of a triliteral verb form. rad2 = ch[radstart] rad3 = ch[radstart + 1] expected_length = radstart + 1 check_len(expected_length) if vform == "I" and (is_waw_ya(rad3) or rad3 == ALIF or rad3 == AMAQ) then local inferred_past_vowel, inferred_nonpast_vowel -- Check for final-weak form I verb. It can end in tall alif (rad3 = wāw) or alif maqṣūra (rad3 = yāʾ) -- or a wāw or yāʾ (with a past vowel of i or u, e.g. nasiya/yansā "forget" or with a passive-only -- verb). if rad1 == W and not form_I_w_non_assimilated() then weakness = "assimilated+final-weak" else weakness = "final-weak" end if rad3 == ALIF then rad3 = W inferred_past_vowel = A inferred_nonpast_vowel = U if is_passive_only(passive) then infer_err("Final-weak form-I passive verbs should end in yāʔ (ي), not tall alif (ا)", "novform") end elseif rad3 == AMAQ then rad3 = Y inferred_past_vowel = A inferred_nonpast_vowel = I if is_passive_only(passive) then infer_err("Final-weak form-I passive verbs should end in yāʔ (ي), not alif maqṣūra (ى)", "novform") end elseif rad1 == "ح" and rad2 == Y and rad3 == Y then -- Long variant حَيِيَ. inferred_past_vowel = I inferred_nonpast_vowel = A variant = "long" else if not is_passive_only(passive) then -- does a non-passive final-weak verb in -uwa ever happen? (YES: e.g. [[رجو]] "to be slack") inferred_past_vowel = rad3 == Y and I or U inferred_nonpast_vowel = A end -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws); it could be wāw or yāʾ, but -- doesn't affect the conjugation. rad3 = (rad1 == W or rad2 == W) and {Y, W, ambig = true} or {W, Y, ambig = true} -- ambiguous end if inferred_past_vowel then local raw_past_vowel = rget(past_vowel) local raw_nonpast_vowel = rget(nonpast_vowel) if raw_past_vowel ~= "-" then if raw_past_vowel ~= inferred_past_vowel then infer_err(("Final-weak form-I verb inferred past vowel %s, which disagrees with " .. "explicitly specified %s"):format(undia[inferred_past_vowel], undia[raw_past_vowel]), "novform") else -- in case of footnote in past_vowel inferred_past_vowel = past_vowel end end if raw_nonpast_vowel ~= "-" and raw_nonpast_vowel ~= A and inferred_nonpast_vowel == U then -- if inferred as I or A, the reality can be the reverse; form-I final-weak verbs with a~a and -- i~i exist, e.g. سَعَى/يَسْعَى, وَلِيَ/يَلِي. Weird verb [[صها]] (also written [[صهى]]) has non-past -- يصهى so we can't throw an error in this situation. if raw_nonpast_vowel ~= inferred_nonpast_vowel then infer_err(("Final-weak form-I verb inferred non-past vowel %s, which disagrees with " .. "explicitly specified %s"):format(undia[inferred_nonpast_vowel], undia[raw_nonpast_vowel]), "novform") else -- in case of footnote in nonpast_vowel inferred_nonpast_vowel = nonpast_vowel end end end if not is_passive_only(passive) then if rget(past_vowel) == "-" then past_vowel = inferred_past_vowel end if rget(nonpast_vowel) == "-" then nonpast_vowel = inferred_nonpast_vowel end end elseif vform == "IX" and is_waw_ya(rad3) and len == radstart + 2 and ch[len] == AMAQ then -- Final-weak form IX verbs like اِرْعَوَى "to desist, to repent, to see the light". weakness = "final-weak" expected_length = radstart + 2 elseif vform == "X" and rad1 == "ح" and rad2 == Y and rad3 == ALIF then -- Long variant اِسْتَحْيَا. weakness = "final-weak" rad3 = Y variant = "long" elseif rad3 == AMAQ or rad2 == Y and rad3 == ALIF or rad3 == Y then -- rad3 == Y happens in passive-only verbs. if vform_supports_final_weak(vform) then weakness = "final-weak" else infer_err("Last radical is " .. rad3 .. " but verb form doesn't support final-weak verbs") end -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws); it could be wāw or yāʾ, but -- doesn't affect the conjugation. rad3 = (rad1 == W or rad2 == W) and {Y, W, ambig = true} or {W, Y, ambig = true} elseif rad2 == ALIF then if vform_supports_hollow(vform) then weakness = "hollow" local function set_past_to_a() if req(past_vowel, A) then -- already set elseif req(past_vowel, "-") or req(past_vowel, rget(nonpast_vowel)) then past_vowel = A else infer_err(("Form I hollow verb with nonpast vowel set to '%s' must have past vowel set to 'a' or the same value, not %s"): format(undia[rget(nonpast_vowel)], undia[rget(past_vowel)]), "novform") end end if vform == "I" and req(nonpast_vowel, U) then rad2 = W set_past_to_a() elseif vform == "I" and req(nonpast_vowel, I) then rad2 = Y set_past_to_a() else if req(nonpast_vowel, A) and not req(past_vowel, I) then infer_err(("Form I hollow verb with nonpast vowel set to 'a' must have past vowel set to 'i', not %s"): format(undia[rget(past_vowel)]), "novform") end -- Ambiguous radical; could be wāw or yāʾ; if verb form I, it's critical to get this right, and -- the caller checks for this situation and throws an error if non-past vowel is "a" and second -- radical isn't explicitly given. rad2 = {W, Y, ambig = true, need_radical = true} end else infer_err("Second radical is alif but verb form doesn't support hollow verbs") end elseif vform == "I" and rad1 == W and not form_I_w_non_assimilated() then weakness = "assimilated" elseif rad2 == rad3 and (vform == "III" or vform == "VI") then weakness = "geminate" variant = "long" else weakness = "sound" end end if expected_length then check_len(expected_length, expected_length) end end rad1 = convert(rad1, 1) rad2 = convert(rad2, 2) rad3 = convert(rad3, 3) rad4 = convert(rad4, 4) if not weakness then error("Internal error: Returned weakness from infer_radicals() is nil") end return { weakness = weakness, rad1 = rad1, rad2 = rad2, rad3 = rad3, rad4 = rad4, past_vowel = past_vowel, nonpast_vowel = nonpast_vowel, form_viii_assim = form_viii_assim, variant = variant, } end -- bot interface to infer_radicals() function export.infer_radicals_json(frame) local iparams = { headword = {}, vform = {}, passive = {}, past_vowel = {}, nonpast_vowel = {}, is_reduced = {type = "boolean"}, } local iargs = require("Module:parameters").process(frame.args, iparams) return require("Module:JSON").toJSON(export.infer_radicals(iargs)) end -- Infer vocalization from participle headword (active or passive), verb form (I, II, etc.) and whether the headword is -- active or passive. Throw an error if headword is malformed. Returned radicals may contain Latin letters "t", "w" or "y" -- indicating ambiguous radicals guessed to be tāʾ, wāw or yāʾ respectively. function export.infer_participle_vocalization(headword, vform, weakness, is_active) local chars = {} local orig_headword = headword -- Sub out alif-madda for easier processing. headword = rsub(headword, AMAD, HAMZA .. ALIF) local len = ulen(headword) -- Extract the headword letters into an array. for i = 1, len do table.insert(chars, usub(headword, i, i)) end local function form_intro_error_msg() return ("For verb form %s %s%s participle %s, "):format(vform, orig_headword ~= headword and "normalized " or "", is_active and "active" or "passive", headword) end local function err(msg) error(form_intro_error_msg() .. msg, 1) end -- Check that length of headword is within [min, max]. local function check_len(min, max) if min and len < min then err(("expected at least %s letters but saw %s"):format(min, len)) elseif max and len > max then err(("expected at most %s letters but saw %s"):format(max, len)) end end -- Get the character at `ind`, making sure it exists. local function c(ind) check_len(ind) return chars[ind] end -- Check that the letter at the given index is the given string, or is one of the members of the given array local function check(index, must) local letter = chars[index] local function make_possible_values() if type(must) == "string" then return must else return list_to_text(must, nil, " or ") end end if not letter then err(("expected a letter (specifically %s) at position %s, but participle is too short"):format( make_possible_values(), index)) end local matches if type(must) == "string" then matches = letter == must else matches = m_table.contains(must, letter) end if not matches then err(("letter %s at index %s must be %s"):format(letter, index, make_possible_values())) end end local function check_weakness(values, allow_missing, invert_condition) local function make_possible_weaknesses() for i, val in ipairs(values) do values[i] = "'" .. val .. "'" end return list_to_text(values, nil, " or ") end if allow_missing and invert_condition then error("Internal error: Can't specify both allow_missing and invert_condition") end if not weakness then if allow_missing or invert_condition then return else err(("weakness is unspecified but must be %s"):format(make_possible_weaknesses())) end else local matches = m_table.contains(values, weakness) if invert_condition and matches then err(("weakness '%s' must not be %s"):format(weakness, make_possible_weaknesses())) elseif not invert_condition and not matches then err(("weakness '%s' must be %s"):format(weakness, make_possible_weaknesses())) end end end local vocalized local function handle_possibly_final_weak(sound_prefix, expected_length) check_len(expected_length, expected_length) if c(expected_length) == AMAQ then -- passive final-weak if is_active then err("participle in -ِى only allowed for passive participles") end check_weakness({"final-weak", "assimilated+final-weak"}, "allow missing") vocalized = sound_prefix .. AN .. AMAQ else -- all others behave as if sound check_weakness({"final-weak", "assimilated+final-weak"}, nil, "invert condition") vocalized = sound_prefix .. (is_active and I or A) .. c(expected_length) end end if not (vform == "I" and is_active) then -- all participles except verb form I active begin in م-. check(1, M) end if vform == "I" then if is_active then check(2, ALIF) local sound_prefix = c(1) .. AA .. c(3) if len == 3 then if c(3) == HAMZA then -- Either hollow with hamzated third radical, e.g. [[شاء]] active participle 'شَاءٍ', or final-weak -- with hamzated second radical, e.g. [[رأى]] active participle 'رَاءٍ'. Theoretically (?), also -- geminate with hamzated second/third radical, but I don't know if any such verbs exist. if weakness == "geminate" then vocalized = sound_prefix .. SH else check_weakness({"hollow", "final-weak"}, "allow missing") vocalized = sound_prefix .. IN end else check_weakness({"final-weak", "geminate"}) if weakness == "geminate" then vocalized = sound_prefix .. SH else vocalized = sound_prefix .. IN end end else check_len(4, 4) -- we will convert back to alif maqṣūra below as needed vocalized = sound_prefix .. I .. c(4) end else -- assimilated verbs: regular, e.g. مَوْزُون "weighed" -- geminate verbs: regular, e.g. مَبْلُول "moistened" -- third-hamzated verbs: مَبْرُوء -- hollow verbs: مَقُود "led, driven"; مَزِيد "added, increased" -- hollow first-hamzated verbs: مَئِيض "returned, reverted"; مَأْيُوس "despaired" (NOTE: formation is sound); -- مَأُود or مَؤُود "bent; depleted" -- hollow third-hamzated verbs: مَشِيء "willed, intended", مَضُوء "glittered?" -- final-weak: مَلْقِيّ "found, encountered"; مَصْغُوّ "inclined" -- hollow + final-weak: مَشْوِيّ "fried, grilled", مَهْوِيّ "loved" -- first-hamzated + hollow + final-weak: مَأْوِيّ "received hospitably" local sound_prefix = MA .. c(2) .. SK .. c(3) if len == 5 then -- sound, assimilated or geminate check(4, W) vocalized = sound_prefix .. UU .. c(5) else check_len(4, 4) if c(4) == W then -- final-weak third-wāw vocalized = sound_prefix .. U .. W .. SH elseif c(4) == Y then -- final-weak third-yāʾ vocalized = sound_prefix .. I .. Y .. SH else -- hollow check(3, {W, Y}) if c(3) == W then vocalized = MA .. c(2) .. UU .. c(4) else vocalized = MA .. c(2) .. II .. c(4) end end end end elseif vform == "II" or vform == "V" or vform == "XII" or vform == "XIII" or vform == "Iq" or vform == "IIq" or vform == "IIIq" then local sound_prefix, expected_length if vform == "II" then sound_prefix = MU .. c(2) .. A .. c(3) .. SH expected_length = 4 elseif vform == "V" then check(2, T) sound_prefix = MU .. T .. A .. c(3) .. A .. c(4) .. SH expected_length = 5 elseif vform == "XII" then -- e.g. [[احدودب]] "to be or become convex or humpbacked", مُحْدَوْدِب (active); -- [[اثنونى]] "to be bent; to be doubled up", مُثْنَوْنٍ (active) check(4, W) if c(3) ~= c(5) then err(("third letter %s should be the same as the fifth letter %s"):format(c(3), c(5))) end sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. W .. SK .. c(5) expected_length = 6 elseif vform == "XIII" then -- e.g. [[اخروط]] "to get entangled; to extend", مُخْرَوِّط (active), مُخْرَوَّط (passive) check(4, W) sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. W .. SH expected_length = 5 elseif vform == "Iq" then sound_prefix = MU .. c(2) .. A .. c(3) .. SK .. c(4) expected_length = 5 elseif vform == "IIq" then check(2, T) sound_prefix = MU .. T .. A .. c(3) .. A .. c(4) .. SK .. c(5) expected_length = 6 elseif vform == "IIIq" then -- e.g. [[اخرنطم]] "to be proud and angry" check(4, T) sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. N .. SK .. c(5) expected_length = 6 else error("Internal error: Unhandled verb form " .. vform) end if len == expected_length - 1 then -- active final-weak if not is_active then err(("length-%s participle only allowed for active participles"):format(len)) end check_weakness({"final-weak", "assimilated+final-weak"}, "allow missing") vocalized = sound_prefix .. IN else handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "III" or vform == "VI" then local sound_prefix, expected_length if vform == "VI" then check(2, T) check(4, ALIF) sound_prefix = MU .. T .. A .. c(3) .. AA .. c(5) expected_length = 6 else sound_prefix = MU .. c(2) .. AA .. c(4) expected_length = 5 end if len == expected_length - 1 then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. SH else vocalized = sound_prefix .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. SH end else handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "IV" or vform == "X" then -- form IV: -- sound: مُرْسِخ (active, "entrenching"), مُرْسَخ (passive, "entrenched") -- first-hamzated (like sound): مُؤْيِس (active, "causing to despair"), مُؤْيَس (passive, "caused to despair") -- final-weak: مُكْرٍ (active, "renting out"), مُكْرًى (passive, "rented out") -- assimilated: مُورِد (active, "transferring"), مُورَد (passive, "transferred"); same when first-Y, e.g. -- أَيْقَنَ "to be certain of": مُوقِن (active), مُوقَن (passive) -- assimilated + final-weak: مُورٍ (active, "setting fire, kindling"), مُورًى (passive, "set fire, kindled") -- geminate: مُمِدّ (active, "granting, helping"), مُمَدّ (passive, "granted, helped") -- hollow: مُزِيل (active, "eliminating"), مُزَال (passive, "eliminated") -- hollow + final-weak: مُعْيٍ (active, "tiring"), مُعْيًى (passive, "tired") local sound_prefix, expected_length if vform == "X" then check(2, S) check(3, T) sound_prefix = MU .. S .. SK .. T .. A .. c(4) expected_length = 6 else sound_prefix = MU .. c(2) expected_length = 4 end if len == expected_length and c(len - 1) == Y and c(len) ~= AMAQ then -- active hollow if not is_active then err("this shape only allowed for active participles") end check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. II .. c(len) elseif len == expected_length and c(len - 1) == ALIF then -- passive hollow if is_active then err("this shape only allowed for passive participles") end check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. AA .. c(len) elseif len == expected_length - 1 then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. I .. c(len) .. SH elseif vform == "IV" and c(2) == W then -- assimilated final-weak vocalized = sound_prefix .. c(len) .. IN else vocalized = sound_prefix .. SK .. c(len) .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. A .. c(len) .. SH end else if vform == "IV" and c(2) == W then -- assimilated, possibly final-weak sound_prefix = sound_prefix .. c(expected_length - 1) else sound_prefix = sound_prefix .. SK .. c(expected_length - 1) end handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "VII" or vform == "VIII" then -- form VII (passive participles are fairly rare but do exist): -- sound: مُنْكَتِب (active "subscribing"), مُنْكَتَب (passive "subscribed") -- geminate: مُنْضَمّ (both active "joining, containing" and passive "joined, contained") -- final-weak: مُنْطَلٍ (active "fooling (someone)"), مُنْطَلًى (passive "fooled") -- final-weak with medial wāw: مُنْطَوٍ (active "involving"), مُنْطَوًى (passive "involved") -- hollow: مُنْقَاد (both active "complying with" and passive "complied with") -- -- for form VIII, the same variants exist but things are complicated by assimilations involving the template T. -- sound third-hamzated no assimilation: مُبْتَدِئ (active "beginning"), مُبْتَدَأ (passive "begun") -- geminate no assimilation: مُبْتَزّ (both active "robbing" and passive "robbed") -- final-weak no assimilation: مُبْتَنٍ (active "building"), مُبْتَنًى (passive "built") -- final-weak with medial wāw no assimilation: مُحْتَوٍ (active "containing"), مُحْتَوًى (passive "contained") -- hollow no assimilation: مُخْتَار (both active "choosing" and passive "chosen") -- -- sound with total assimilation: مُتَّبِع (active "following"), مُتَّبَع (passive "followed") -- sound with total assimilation, assimilating wāw: مُتَّعِد (active "threatening"), مُتَّعَد (passive "threatened") -- sound with total assimilation, irregularly assimilating hamza: مُتَّخِذ (active "taking"), مُتَّخَذ (passive "taken") -- sound with total assimilation (to ḏāl, producing dāl): مُدَّخِر (active "reserving"), مُدَّخَر (passive "reserved") -- sound with total assimilation (to ḏāl): مُذَّكِر (active "remembering"), مُذَّكَر (passive "remembered") -- sound with total assimilation (to ṭāʔ): مُطَّرِح (active "discarding"), مُطَّرَح (passive "discarded") -- sound with total assimilation (to ẓāʔ): مُظَّلِم (active "tolerating"), مُظَّلَم (passive "tolerated") -- final-weak with total assimilation, assimilating wāw: مُتَّقٍ (active "guarding against"), مُتَّقًى (passive "guarded against") -- final-weak with total assimilation (to ṯāʔ): مُثَّنٍ (active "undulating"), مُثَّنًى (passive "undulated") -- final-weak with total assimilation (to dāl): مُدَّعٍ (active "claiming"), مُدَّعًى (passive "claimed") -- sound with partial assimilation (to zayn): مُزْدَهِر (active "thriving"), مُزْدَهَر (passive "thrived") -- sound with medial wāw with partial assimilation (to zayn): مُزْدَوِج (active "appearing twice") -- sound with partial assimilation (to ṣād): مُصْطَبِح (active "illuminating"), مُصْطَبَح (passive, "illuminated") -- sound with partial assimilation (to ḍād): مُضْطَرِب (active "to be disturbed"; no passive) -- geminate with partial assimilation (to ṣād): مُصْطَبّ (both active "effusing" and passive "effused") -- geminate with partial assimilation (to ḍād): مُضْطَرّ (both active "forcing" and passive "forced") -- final-weak with partial assimilation (to ṣād): مُصْطَلٍ (active "warming"), مُصْطَلًى (passive "warmed") -- hollow with partial assimilation (to zayn): مُزْدَاد (both active "increasing" and passive "increased") -- hollow with partial assimilation (to ṣad): مُصْطَاد (both active "hunting" and passive "hunted") local sound_prefix, sufind if vform == "VII" then check(2, N) sound_prefix = MU .. N .. SK .. c(3) sufind = 4 else local c2 = c(2) if c2 == T or c2 == "د" or c2 == "ث" or c2 == "ذ" or c2 == "ط" or c2 == "ظ" then -- full assimilation sound_prefix = MU .. c2 .. SH sufind = 3 else -- partial or no assimilation if c2 == "ز" then check(3, "د") elseif c2 == "ص" or c2 == "ض" then check(3, "ط") else check(3, T) end sound_prefix = MU .. c2 .. SK .. c(3) sufind = 4 end end if c(sufind) == ALIF then -- hollow, active or passive check_len(sufind + 1, sufind + 1) check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. AA .. c(sufind + 1) elseif len == sufind then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. A .. c(len) .. SH else vocalized = sound_prefix .. A .. c(len) .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. A .. c(len) .. SH end else sound_prefix = sound_prefix .. A .. c(sufind) handle_possibly_final_weak(sound_prefix, sufind + 1) end elseif vform == "IX" then check_len(4, 4) vocalized = MU .. c(2) .. SK .. c(3) .. A .. c(4) .. SH elseif vform == "IVq" then -- e.g. [[اذلعب]] "to scamper away", مُذْلَعِبّ (active), مُذْلَعَبّ (passive); -- [[اطمأن]] "to remain quietly; to be certain", مُطْمَئِنّ (active), مُطْمَأَنّ (passive) check_len(5, 5) local sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. c(4) if is_active then vocalized = sound_prefix .. I .. c(5) .. SH else vocalized = sound_prefix .. A .. c(5) .. SH end elseif vform == "XI" then check_len(5, 5) check(4, ALIF) vocalized = MU .. c(2) .. SK .. c(3) .. AA .. c(5) .. SH -- e.g. [[احمار]] "to turn red, to blush", مُحْمَارّ (active) elseif vform == "XIV" or vform == "XV" then -- FIXME: Implement. No examples in Wiktionary currently; need to look up in a grammar. error("Support for verb form " .. vform .. " not implemented yet") else error("Don't recognize verb form " .. vform) end vocalized = rsub(vocalized, HAMZA .. AA, AMAD) local reconstructed_headword = lang:makeEntryName(vocalized) if reconstructed_headword ~= orig_headword then error(("Internal error: Vocalized participle %s doesn't match original participle %s"):format( vocalized, orig_headword)) end -- Apply NFC-style normalization to match MediaWiki's automatic normalization return apply_nfc_shadda(vocalized) end function export.infer_participle_vocalization_json(frame) local iparams = { [1] = {required = true}, [2] = {required = true}, ["weakness"] = {}, ["passive"] = {type = "boolean"} } local iargs = require("Module:parameters").process(frame.args, iparams) return export.infer_participle_vocalization(iargs[1], iargs[2], iargs.weakness, not iargs.passive) end return export 3pnk73efn3gpebc00syocvwo376mdjq 1097866 1097807 2026-08-02T05:42:40Z ForzaGreen 28665 إضافة الوسيط موسع= لعرض جدول التصريف مبسوطًا (الافتراضي مطويّ كما هو)، وحذف verb_info غير المستعملة 1097866 Scribunto text/plain local export = {} --[=[ This module implements {{ar-conj}} and provides the underlying conjugation functions for {{ar-verb}} (whose actual formatting is done in [[Module:ar-headword]]). Author: User:Benwing, from an early version (2013-2014) by User:Atitarev, User:ZxxZxxZ. ]=] --[=[ TERMINOLOGY: -- "slot" = A particular combination of tense/mood/person/number/etc. Example slot names for verbs are "past_1s" (past tense first-person singular), "juss_pass_3fp" (non-past jussive passive third-person feminine plural) "ap" (active participle). Each slot is filled with zero or more forms. -- "form" = The conjugated Arabic form representing the value of a given slot. -- "lemma" = The dictionary form of a given Arabic term. For Arabic, normally the third person masculine singular past, although other forms may be used if this form is missing (e.g. in passive-only verbs or verbs lacking the past). ]=] --[=[ FIXME: 1. Finish unimplemented conjugation types. Only IX-final-weak left (extremely rare, possibly only one verb اِعْمَايَ (according to Haywood and Nahmad p. 244, who are very specific about the irregular occurrence of alif + yā instead of expected اِعْمَيَّ with doubled yā). Not in Hans Wehr. NOTE: Not true about this, cf. form IX اِرْعَوَى "to desist, to repent, to see the light". Also note form XII اِخْضَوْضَرَ = form IX اِخْضَرَّ "to be or become green". [DONE except for اِعْمَايَ] 2. Implement irregular verbs as special cases and recognize them, e.g. -- laysa "to not be"; only exists in the past tense, no non-past, no imperative, no participles, no passive, no verbal noun. Irregular alternation las-/lays-. [IMPLEMENTABLE USING OVERRIDES] -- istaḥā yastaḥī "be ashamed of" -- this is complex according to Hans Wehr because there are two verbs, regular istaḥyā yastaḥyī "to spare (someone)'s life" and irregular istaḥyā yastaḥyī "to be ashamed to face (someone)", which is irregular because it has the alternate irregular form istaḥā yastaḥī which only applies to this meaning. Currently we follow Haywood and Nahmad in saying that both varieties can be spelled istaḥyā/istaḥā/istaḥḥā, but we should instead use a variant= param similar to حَيَّ to distinguish the two possibilities, and maybe not include istaḥḥā. -- ʿayya/ʿayiya yaʿayyu/yaʿyā "to not find the right way, be incapable of, stammer, falter, fall ill". This appears to be a mixture of a geminate and final-weak verb. Unclear what the whole paradigm looks like. Do the consonant-ending parts in the past follow the final-weak paradigm? Is it the same in the non-past? Or can you conjugate the non-past fully as either geminate or final-weak? -- اِنْمَحَى inmaḥā or يمَّحَى immaḥā "to be effaced, obliterated; to disappear, vanish" has irregular assimilation of inm- to imm- as an alternative. inmalasa "to become smooth; to glide; to slip away; to escape" also has immalasa as an alternative. The only other form VII verbs in Hans Wehr beginning with -m- are inmalaḵa "to be pulled out, torn out, wrenched" and inmāʿa "to be melted, to melt, to dissolve", which are not listed with imm- alternatives, but might have them; if so, we should handle this generally. [DONE] -- يَرَعَ yaraʕa yariʕu "to be a coward, to be chickenhearted" as an alternative form of يَرِعَ yariʕa yayraʕu (as given in Wehr). [IMPLEMENTABLE USING OVERRIDES] 3. Implement individual override parameters for each paradigm part. See Module:fro-verb for an example of how to do this generally. Note that {{temp|ar-conj-I}} and other of the older templates already had such individual override params. [DONE] Irregular verbs already implemented: -- [ḥayya/ḥayiya yaḥyā "live" -- behaves like a normal final-weak verb (e.g. past first singular ḥayītu) except in the past-tense parts with vowel-initial endings (all the third person except for the third feminine plural). The normal singular and dual endings have -yiya- in them, which compresses to -yya-, with the normal endings the less preferred ones. In masculine third plural, expected ḥayū is replaced by ḥayyū by analogy to the -yy- parts, and the regular form is not given as an alternant in John Mace. Barron's 201 verbs appears to have the regular ḥayū as the part, however. Note also that final -yā appears with tall alif. This appears to be a spelling convention of Arabic, also applying in ḥayyā (form II, "to keep (someone) alive") and 'aḥyā (form IV, "to animate, revive, give birth to, give new life to").] -- implemented -- [ittaxadha yattaxidhu "take"] -- implemented -- [sa'ala yas'alu "ask" with alternative jussive/imperative yasal/sal] -- implemented -- [ra'ā yarā "see"] -- implemented -- ['arā yurī "show"] -- implemented -- ['akala ya'kulu "eat" with imperative kul] -- implemented -- ['axadha ya'xudhu "take" with imperative xudh] -- implemented -- ['amara ya'muru "order" with imperative mur] -- implemented --]=] local force_cat = false -- set to true for debugging -- if true, always maintain manual translit during processing, and compare against full translit at the end local debug_translit = false local lang = require("Module:languages").getByCode("ar") local m_links = require("Module:links") local m_string_utilities = require("Module:string utilities") local m_table = require("Module:table") local ar_utilities = require("Module:ar-utilities") local iut = require("Module:inflection utilities") local put = require("Module:parse utilities") local list_to_text = mw.text.listToText local rfind = m_string_utilities.find local rsubn = m_string_utilities.gsub local rmatch = m_string_utilities.match local rsplit = m_string_utilities.split local usub = m_string_utilities.sub local ulen = m_string_utilities.len local u = m_string_utilities.char local unpack = unpack or table.unpack -- Lua 5.2 compatibility local dump = mw.dumpObject -- Within this module, conjugations are the functions that do the actual -- conjugating by creating the parts of a basic verb. -- They are defined further down. local conjugations = {} -- hamza variants local HAMZA = u(0x0621) -- hamza on the line (stand-alone hamza) = ء local HAMZA_ON_ALIF = u(0x0623) local HAMZA_ON_W = u(0x0624) local HAMZA_UNDER_ALIF = u(0x0625) local HAMZA_ON_Y = u(0x0626) local HAMZA_ANY = "[" .. HAMZA .. HAMZA_ON_ALIF .. HAMZA_UNDER_ALIF .. HAMZA_ON_W .. HAMZA_ON_Y .. "]" local HAMZA_PH = u(0xFFF0) -- hamza placeholder local BAD = u(0xFFF1) local BORDER = u(0xFFF2) -- diacritics local A = u(0x064E) -- fatḥa local AN = u(0x064B) -- fatḥatān (fatḥa tanwīn) local U = u(0x064F) -- ḍamma local UN = u(0x064C) -- ḍammatān (ḍamma tanwīn) local I = u(0x0650) -- kasra local IN = u(0x064D) -- kasratān (kasra tanwīn) local SK = u(0x0652) -- sukūn = no vowel local SH = u(0x0651) -- šadda = gemination of consonants local DAGGER_ALIF = u(0x0670) local DIACRITIC_ANY_BUT_SH = "[" .. A .. I .. U .. AN .. IN .. UN .. SK .. DAGGER_ALIF .. "]" -- Pattern matching short vowels local AIU = "[" .. A .. I .. U .. "]" -- Pattern matching short vowels or sukūn local AIUSK = "[" .. A .. I .. U .. SK .. "]" -- Pattern matching any diacritics that may be on a consonant local DIACRITIC = SH .. "?" .. DIACRITIC_ANY_BUT_SH -- translit_patterns local vowels = "aeiouāēīōū" local NV = "[^" .. vowels .. "]" local dia = {a = A, i = I, u = U} local undia = {[A] = "a", [I] = "i", [U] = "u", ["-"] = "-"} -- various letters and signs local ALIF = u(0x0627) -- ʾalif = ا local AMAQ = u(0x0649) -- ʾalif maqṣūra = ى local AMAD = u(0x0622) -- ʾalif madda = آ local TAM = u(0x0629) -- tāʾ marbūṭa = ة local T = u(0x062A) -- tāʾ = ت local HYPHEN = u(0x0640) local N = u(0x0646) -- nūn = ن local W = u(0x0648) -- wāw = و local Y = u(0x064A) -- yāʾ = ي local S = "س" local M = "م" local LRM = u(0x200e) -- left-to-right mark -- common combinations local AH = A .. TAM local AT = A .. T local AA = A .. ALIF local AAMAQ = A .. AMAQ local AAH = AA .. TAM local AAT = AA .. T local II = I .. Y local UU = U .. W local AY = A .. Y local AW = A .. W local AYSK = AY .. SK local AWSK = AW .. SK local NA = N .. A local NI = N .. I local AAN = AA .. N local AANI = AA .. NI local AYNI = AYSK .. NI local AWNA = AWSK .. NA local AYNA = AYSK .. NA local AYAAT = AY .. AAT local UNU = "[" .. UN .. U .. "]" local MA = M .. A local MU = M .. U local TA = T .. A local TU = T .. U local _I = ALIF .. I local _U = ALIF .. U --W: Morphological pattern (الوزن الصرفي) to verb form mapping local MORPHOLOGICAL_PATTERN_TO_FORM = { ["فعَل يفعُل"] = "I/a~u", ["فعَل يفعِل"] = "I/a~i", ["فعَل يفعَل"] = "I/a~a", ["فعُل يفعُل"] = "I/u~u", ["فعِل يفعَل"] = "I/i~a", ["فعِل يفعِل"] = "I/i~i", ["فعّل"] = "II", ["فاعل"] = "III", ["أفعل"] = "IV", ["تفعّل"] = "V", ["تفاعل"] = "VI", ["انفعل"] = "VII", ["افتعل"] = "VIII", ["افعلّ"] = "IX", ["استفعل"] = "X", ["افعالّ"] = "XI", ["افعوعل"] = "XII", ["افعوّل"] = "XIII", ["فعلل"] = "Iq", ["تفعلل"] = "IIq", ["افعنلل"] = "IIIq", -- "XIV" should not be used ["افعللّ"] = "IVq", } --W: Create reverse mapping from form to morphological pattern local FORM_TO_MORPHOLOGICAL_PATTERN = {} for pattern, form in pairs(MORPHOLOGICAL_PATTERN_TO_FORM) do FORM_TO_MORPHOLOGICAL_PATTERN[form] = pattern end --W: local MORPHOLOGICAL_PATTERN_TO_BASIC_DERIV = { ["فعَل يفعُل"] = "مُجرَّد", ["فعَل يفعِل"] = "مُجرَّد", ["فعَل يفعَل"] = "مُجرَّد", ["فعُل يفعُل"] = "مُجرَّد", ["فعِل يفعَل"] = "مُجرَّد", ["فعِل يفعِل"] = "مُجرَّد", ["فعّل"] = "مزيد بحرف", ["فاعل"] = "مزيد بحرف", ["أفعل"] = "مزيد بحرف", ["تفعّل"] = "مزيد بحرفين", ["تفاعل"] = "مزيد بحرفين", ["انفعل"] = "مزيد بحرفين", ["افتعل"] = "مزيد بحرفين", ["افعلّ"] = "مزيد بحرفين", ["استفعل"] = "مزيد بثلاثة أحرف", ["افعالّ"] = "مزيد بثلاثة أحرف", ["افعوعل"] = "مزيد بثلاثة أحرف", ["افعوّل"] = "مزيد بثلاثة أحرف", ["فعلل"] = "مُجرَّد", ["تفعلل"] = "مزيد بحرف", ["افعنلل"] = "مزيد بحرفين", ["افعللّ"] = "مزيد بحرفين", } local translit_cache = { -- hamza variants [HAMZA] = "ʔ", [HAMZA_ON_ALIF] = "ʔ", [HAMZA_ON_W] = "ʔ", [HAMZA_UNDER_ALIF] = "ʔ", [HAMZA_ON_Y] = "ʔ", [HAMZA_PH] = "ʔ", -- diacritics [A] = "a", [AN] = "an", [U] = "u", [UN] = "un", [I] = "i", [IN] = "in", [SK] = "", [SH] = "*", -- handled specially [DAGGER_ALIF] = "ā", -- various letters and signs [""] = "", [ALIF] = BAD, -- we should never be transliterating ALIF by itself, as its translit in isolation is ambiguous [AMAQ] = BAD, [AMAD] = "ʔā", [TAM] = "", [T] = "t", [N] = "n", [W] = "w", [Y] = "y", [S] = "s", [M] = "m", [LRM] = "", -- common combinations [AH] = "a", [AT] = "at", [AA] = "ā", [AAMAQ] = "ā", [AAH] = "āh", [AAT] = "āt", [II] = "ī", [UU] = "ū", [AY] = "ay", [AW] = "aw", [AYSK] = "ay", [AWSK] = "aw", [NA] = "na", [NI] = "ni", [AAN] = "ān", [AANI] = "āni", [AYNI] = "ayni", [AWNA] = "awna", [AYNA] = "ayna", [AYAAT] = "ayāt", [MA] = "ma", [MU] = "mu", [TA] = "ta", [TU] = "tu", [_I] = "i", [_U] = "u", } local function transliterate(text) local cached = translit_cache[text] if cached then if cached == BAD then error(("Internal error: Unable to transliterate %s because explicitly marked as BAD"):format(text)) end return cached end local tr = (lang:transliterate(text)) if not tr then error(("Internal error: Unable to transliterate: %s"):format(text)) end translit_cache[text] = tr return tr end local all_person_number_list = { "1s", "2ms", "2fs", "3ms", "3fs", "2d", "3md", "3fd", "1p", "2mp", "2fp", "3mp", "3fp" } local function make_person_number_slot_accel_list(list) local slot_accel_list = {} return slot_accel_list end local imp_person_number_list = {} for _, pn in ipairs(all_person_number_list) do if pn:find("^2") then table.insert(imp_person_number_list, pn) end end local passive_types = m_table.listToSet { "pass", -- verb has both active and passive "ipass", -- verb is active with impersonal passive "nopass", -- verb is active-only "onlypass", -- verb is passive-only "onlypass-impers", -- verb itself is impersonal, meaning passive-only with impersonal passive } local indicator_flags = m_table.listToSet { "nopast", "no_nonpast", "noimp", "nocat", -- don't categorize or include annotations about this; useful in suppletive parts of verbs "reduced", -- verb has assimilation/reduction of initial coronals "altgem", -- form X with alternative past geminate forms with final-weak endings } export.potential_lemma_slots = {"past_3ms", "past_pass_3ms", "ind_3ms", "ind_pass_3ms", "imp_2ms"} export.unsettable_slots = {} for _, potential_lemma_slot in ipairs(export.potential_lemma_slots) do table.insert(export.unsettable_slots, potential_lemma_slot .. "_linked") end -- We don't set the active participle directly for form I because we don't want stative verbs (with past vowel i or u) -- to default to فَاعِل. Instead we set the special slot 'ap1' and later copy it to 'ap' for non-stative verbs. The user -- meanwhile can explicitly request the فَاعِل form for active participles for stative verbs using `ap:+`. table.insert(export.unsettable_slots, "ap1") -- primary default فَاعِل for form I active participles table.insert(export.unsettable_slots, "ap2") -- secondary default فَعِيل for form I active participles (stative I) table.insert(export.unsettable_slots, "ap3") -- secondary default فَعِل for form I active participles (stative II) table.insert(export.unsettable_slots, "apcd") -- secondary default أَفْعَل for form I active participles (color/defect) table.insert(export.unsettable_slots, "apan") -- secondary default فَعْلَان for form I active participles (in -ān) table.insert(export.unsettable_slots, "pp2") -- secondary default فَعِيل for form I passive participles (same as ap2) table.insert(export.unsettable_slots, "vn2") -- secondary default فِعَال for form III verbal nouns export.unsettable_slots_set = m_table.listToSet(export.unsettable_slots) local default_indicator_to_active_participle_slot = { ["+"] = "ap1", ["++"] = "ap2", ["+++"] = "ap3", ["+cd"] = "apcd", ["+an"] = "apan", } local slots_that_may_be_uncertain = { vn = "verbal noun", ap = "active participle", } -- Initialize all the slots for which we generate forms. local function add_slots(alternant_multiword_spec) alternant_multiword_spec.verb_slots = { {"ap", "act|part"}, {"pp", "pass|part"}, {"vn", "vnoun"}, } for _, unsettable_slot in ipairs(export.unsettable_slots) do table.insert(alternant_multiword_spec.verb_slots, {unsettable_slot, "-"}) end -- Add entries for a slot with person/number variants. -- `slot_prefix` is the prefix of the slot, typically specifying the tense/aspect. -- `tag_suffix` is a string listing the set of inflection tags to add after the person/number tags. -- `person_number_list` is a list of the person/number slot suffixes to add to `slot_prefix`. local function add_personal_slot(slot_prefix, tag_suffix, person_number_list) for _, persnum in ipairs(person_number_list) do local slot = slot_prefix .. "_" .. persnum local accel = persnum:gsub("(.)", "%1|") .. tag_suffix table.insert(alternant_multiword_spec.verb_slots, {slot, accel}) end end local tenses = { {"past", "past|%s"}, {"ind", "non-past|%s|ind"}, {"sub", "non-past|%s|sub"}, {"juss", "non-past|%s|juss"}, } for _, slot_accel in ipairs(tenses) do local slot, accel = unpack(slot_accel) for _, voice in ipairs {"act", "pass"} do add_personal_slot(voice == "act" and slot or slot .. "_pass", accel:format(voice), all_person_number_list) end end add_personal_slot("imp", "imp", imp_person_number_list) alternant_multiword_spec.verb_slots_map = {} for _, slot_accel in ipairs(alternant_multiword_spec.verb_slots) do local slot, accel = unpack(slot_accel) alternant_multiword_spec.verb_slots_map[slot] = accel end end local overridable_stems = {} local slot_override_param_mods = { footnote = { item_dest = "footnotes", store = "insert", }, alt = {}, t = { -- [[Module:links]] expects the gloss in "gloss". item_dest = "gloss", }, gloss = {}, g = { -- [[Module:links]] expects the genders in "g". `sublist = true` automatically splits on comma (optionally -- with surrounding whitespace). item_dest = "genders", sublist = true, }, pos = {}, lit = {}, id = {}, --W: The q/qq/l/ll (qualifier and label) modifiers were removed: rendering them -- needs [[Module:pron qualifier]], which does not exist on ar.wiktionary, so any -- use of them raised a script error. Accepting them here again requires importing -- that module first and restoring the block in generate_link() below. } local function generate_obj(formval, parse_err, prefix, is_slot_override) local val, uncertain = formval:match("^(.*)(%?)$") val = val or formval uncertain = not not uncertain local ar, translit = val:match("^(.*)//(.*)$") if not ar then ar = val end if ar == "" then if uncertain then ar = "?" else error(("Can't specify blank value for override for %s override '%s'"):format( is_slot_override and "slot" or "stem", prefix)) end end return {form = ar, translit = translit, uncertain = uncertain} end local function parse_inline_modifiers(comma_separated_group, parse_err, prefix, is_slot_override) local function this_generate_obj(formval, parse_err) return generate_obj(formval, parse_err, prefix, is_slot_override) end return put.parse_inline_modifiers_from_segments { group = comma_separated_group, props = { param_mods = slot_override_param_mods, parse_err = parse_err, generate_obj = this_generate_obj, pre_normalize_modifiers = function(data) local modtext = data.modtext modtext = modtext:match("^(%[.*%])$") if modtext then return ("<footnote:%s>"):format(modtext) end return data.modtext end, }, } end local function allow_multiple_values_for_override(comma_separated_groups, data, is_slot_override) local retvals = {} for _, comma_separated_group in ipairs(comma_separated_groups) do local retval if is_slot_override then --W: pass `prefix` and `is_slot_override` through; without them the error -- raised for a blank override value formatted a nil prefix, which is a -- crash on Lua 5.1 rather than the intended message. Reachable from e.g. -- <I/a~u.vn:[[كتابة]]>, where the [[...]] is consumed as a footnote and -- leaves the value empty. retval = parse_inline_modifiers(comma_separated_group, data.parse_err, data.prefix, is_slot_override) else retval = generate_obj(comma_separated_group[1], data.parse_err, data.prefix, is_slot_override) retval.footnotes = data.fetch_footnotes(comma_separated_group) end table.insert(retvals, retval) end for _, form in ipairs(retvals) do if form.form == "+" or default_indicator_to_active_participle_slot[form.form] then if form.form ~= "+" and default_indicator_to_active_participle_slot[form.form] and not is_slot_override then error(("Stem override '%s' cannot use %s to request a secondary default"):format( data.prefix, form.form)) end data.base.slot_override_uses_default[data.prefix] = true end end for _, form in ipairs(retvals) do if form.form == "-" then data.base.slot_explicitly_missing[data.prefix] = true break end end if data.base.slot_explicitly_missing[data.prefix] then for _, form in ipairs(retvals) do if form.form ~= "-" then data.parse_err(("For slot or stem '%s', saw both - and a value other than -, which isn't allowed"): format(data.prefix)) end end return nil end return retvals end local function simple_choice(choices) return function(separated_groups, data) if #separated_groups > 1 then data.parse_err("For spec '" .. data.prefix .. ":', only one value currently allowed") end if #separated_groups[1] > 1 then data.parse_err("For spec '" .. data.prefix .. ":', no footnotes currently allowed") end local choice = separated_groups[1][1] if not m_table.contains(choices, choice) then data.parse_err("For spec '" .. data.prefix .. ":', saw value '" .. choice .. "' but expected one of '" .. table.concat(choices, "،") .. "'") end return choice end end for _, overridable_stem in ipairs { "past", "past_v", "past_c", "past_pass", "past_pass_v", "past_pass_c", "nonpast", "nonpast_v", "nonpast_c", "nonpast_pass", "nonpast_pass_v", "nonpast_pass_c", "imp", "imp_v", "imp_c", } do overridable_stems[overridable_stem] = allow_multiple_values_for_override end overridable_stems.past_final_weak_vowel = simple_choice { "ay", "aw", "ī", "ū" } overridable_stems.past_pass_final_weak_vowel = simple_choice { "ay", "aw", "ī", "ū" } overridable_stems.nonpast_final_weak_vowel = simple_choice { "ā", "ī", "ū" } overridable_stems.nonpast_pass_final_weak_vowel = simple_choice { "ā", "ī", "ū" } ------------------------------------------------------------------------------- -- Utility functions -- ------------------------------------------------------------------------------- -- version of rsubn() that discards all but the first return value local function rsub(term, foo, bar) return (rsubn(term, foo, bar)) end -- version of rsubn() that returns a 2nd argument boolean indicating whether a substitution was made. local function rsubb(term, foo, bar) local retval, nsubs = rsubn(term, foo, bar) return retval, nsubs > 0 end -- Concatenate one or more strings or form objects. local function q(...) local not_all_strings = debug_translit local has_manual_translit = debug_translit for i = 1, select("#", ...) do local argt = select(i, ...) if not argt then error(("Internal error: Saw nil at index %s: %s"):format(i, dump({...}))) end if type(argt) ~= "string" then not_all_strings = true if argt.translit then has_manual_translit = true break end end end if not not_all_strings then -- just strings, concatenate directly return table.concat({...}) end local formvals = {} local translit = has_manual_translit and {} or nil local footnotes for i = 1, select("#", ...) do local argt = select(i, ...) if type(argt) == "string" then formvals[i] = argt if has_manual_translit then translit[i] = transliterate(argt) end else formvals[i] = argt.form if has_manual_translit then translit[i] = argt.translit or transliterate(argt.form) end footnotes = iut.combine_footnotes(footnotes, argt.footnotes) end end -- FIXME: Do we want to support other properties? return { form = table.concat(formvals), translit = has_manual_translit and table.concat(translit) or nil, footnotes = footnotes, } end -- Return the formval associated with `rad` (a radical or past/non-past vowel, either a string or form object). local function rget(rad) if type(rad) == "string" then return rad elseif type(rad) == "table" then return rad.form else error(("Internal error: Unexpected type for radical or past/non-past vowel: %s"):format(dump(rad))) end end export.rget = rget -- for use in [[Module:ar-headword]] -- Return the footnotes associated with `rad` (a radical or past/non-past vowel, either a string or form object). local function rget_footnotes(rad) if type(rad) == "string" then return nil elseif type(rad) == "table" then return rad.footnotes else error(("Internal error: Unexpected type for radical or past/non-past vowel: %s"):format(dump(rad))) end end -- Return true if the formval associated with `rad` (a radical or past/non-past vowel, either a string or form object) -- is `val`. local function req(rad, val) return rget(rad) == val end -- Map `vow` (a past/non-past vowel, either a string or form object without translit) by passing the formval through -- `fn`. Don't call this on radicals because they may have manual translit and it isn't clear how to handle that. local function map_vowel(vow, fn) if type(vow) == "string" then return fn(vow) elseif type(vow) == "table" then return {form = fn(vow.form), footnotes = vow.footnotes} else error(("Internal error: Unexpected type for past/non-past vowel: %s"):format(dump(vow))) end end local function get_radicals_3(vowel_spec) return vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3, vowel_spec.past, vowel_spec.nonpast end local function get_radicals_4(vowel_spec) return vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3, vowel_spec.rad4 end local function is_final_weak(base, vowel_spec) return vowel_spec.weakness == "final-weak" or base.form == "XV" end --W: Create a simple link local function link_term_simple(text) return "[[" .. text .. "]]" end local function link_term(text, face, id) return m_links.full_link({lang = lang, term = text, tr = "-", id = id}, face) end local function tag_text(text, tag, class) return m_links.full_link({lang = lang, alt = text, tr = "-"}) end local function track(page) require("Module:debug/track")("ar-verb/" .. page) return true end local function track_if_ar_conj(base, page) if base.alternant_multiword_spec.source_template == "ar-conj" then require("Module:debug/track")("ar-verb/" .. page) end return true end local function reorder_shadda(word) -- shadda+short-vowel (including tanwīn vowels, i.e. -an -in -un) gets -- replaced with short-vowel+shadda during NFC normalisation, which -- MediaWiki does for all Unicode strings; however, it makes various -- processes inconvenient, so undo it. word = rsub(word, "(" .. DIACRITIC_ANY_BUT_SH .. ")" .. SH, SH .. "%1") return word end local function apply_nfc_shadda(word) -- Apply NFC-style normalization: reorder shadda+vowel to vowel+shadda -- to match MediaWiki's automatic NFC normalization. This reverses the -- internal shadda+vowel format used during processing. word = rsub(word, SH .. "(" .. DIACRITIC_ANY_BUT_SH .. ")", "%1" .. SH) return word end ------------------------------------------------------------------------------- -- Basic functions to inflect tenses -- ------------------------------------------------------------------------------- local function skip_slot(base, slot, allow_overrides) if base.slot_explicitly_missing[slot] then return true end if not allow_overrides and base.slot_overrides[slot] and not base.slot_override_uses_default[slot] then -- Skip any slots for which there are overrides, except those that request the default value using +, ++, etc. return true end if base.passive == "nopass" and (slot == "pp" or slot:find("_pass")) then return true elseif base.passive == "onlypass" and slot ~= "pp" and slot ~= "vn" and not slot:find("_pass") then return true elseif base.passive == "ipass" and slot:find("_pass") and not slot:find("3ms") then return true elseif base.passive == "onlypass-impers" and slot ~= "pp" and slot ~= "vn" and (not slot:find("_pass") or slot:find("_pass") and not slot:find("3ms")) then return true end if base.nopast and slot:find("^past_") then return true end if base.noimp and slot:find("^imp_") then return true end if base.no_nonpast and (slot:find("^ind_") or slot:find("^sub_") or slot:find("^juss")) then return true end return false end local function basic_combine_stem_ending(stem, ending) return stem .. ending end local function basic_combine_stem_ending_tr(stem, ending) return stem .. ending end -- Concatenate `prefixes`, `stems` and `endings` (any of which may be an abbreviate form list, i.e. strings, form -- objects or lists of strings or form objects) and store into `slot`. If a user-supplied override exists for the slot, -- nothing will happen unless `allow_overrides` is provided. local function add3(base, slot, prefixes, stems, endings, allow_overrides) if skip_slot(base, slot, allow_overrides) then return end -- Optimization since the prefixes are almost always single strings. if type(prefixes) == "string" then local function do_combine_stem_ending(stem, ending) return prefixes .. stem .. ending end local function do_combine_stem_ending_tr(stem, ending) return transliterate(prefixes) .. stem .. ending end iut.add_forms(base.forms, slot, stems, endings, do_combine_stem_ending, transliterate, do_combine_stem_ending_tr, base.form_footnotes) else iut.add_multiple_forms(base.forms, slot, {prefixes, stems, endings}, basic_combine_stem_ending, transliterate, basic_combine_stem_ending_tr, base.form_footnotes) end end -- Insert one or more forms in `form_or_forms` into `slot`. `form_or_forms` is an abbreviated form list (see comment at -- top of [[Module:inflection utilities]]). If a user-supplied override exists for the slot, nothing will happen unless -- `allow_overrides` is provided. BEWARE: One form object should never occur in two different slots, or twice in a given -- slot; if taking a form object from an existing slot, make sure to shallowCopy() it. local function insert_form_or_forms(base, slot, form_or_forms, allow_overrides, uncertain) if not skip_slot(base, slot, allow_overrides) then -- Some optimizations of the most common case of inserting a single string. if type(form_or_forms) == "string" and not base.form_footnotes then form_or_forms = {form = form_or_forms, uncertain = uncertain} iut.insert_form(base.forms, slot, form_or_forms) else local list = iut.convert_to_general_list_form(form_or_forms, base.form_footnotes) if uncertain then for _, formobj in ipairs(list) do formobj.uncertain = true end end iut.insert_forms(base.forms, slot, list) end end end -- Insert `string_or_form` into both the ap2 and pp2 slots, shallowCopying a form object to make sure no form objects -- occur in two slots. local function insert_ap2_pp2(base, string_or_form) insert_form_or_forms(base, "ap2", string_or_form) if type(string_or_form) == "table" then string_or_form = m_table.shallowCopy(string_or_form) end insert_form_or_forms(base, "pp2", string_or_form) end -- Convert `stemforms` (a string, a form object, or a list of strings and/or form objects) into "general form" (a list -- of form objects) and map `fn` over the list of objects. `fn` is passed two arguments (form value and translit) and -- should likewise return the new form value and translit. Footnotes will be preserved. FIXME: Preserve other metadata. local function map_general(stemforms, fn) return iut.map_forms(iut.convert_to_general_list_form(stemforms), fn) end -- Similar to map_general() except that `fn` should return a single value (one or more strings or form objects), instead -- of two values (form value and translit), and the resulting value(s) from all calls to `fn` will be flattened to -- construct the overall return value. Footnotes will be preserved. FIXME: Preserve other metadata. local function flatmap_general(stemforms, fn) return iut.flatmap_forms(iut.convert_to_general_list_form(stemforms), fn) end -- Given user-supplied stem overrides in `base`, construct any derived stem overrides (e.g. vowel-specific or -- consonant-specific variants), and truncate initial y-/ي- in any non-past overrides. local function construct_stems(base) local stems = base.stem_overrides stems.past_v = stems.past_v or stems.past stems.past_c = stems.past_c or stems.past stems.past_pass_v = stems.past_pass_v or stems.past_pass stems.past_pass_c = stems.past_pass_c or stems.past_pass stems.nonpast_v = stems.nonpast_v or stems.nonpast stems.nonpast_c = stems.nonpast_c or stems.nonpast stems.nonpast_pass_v = stems.nonpast_pass_v or stems.nonpast_pass stems.nonpast_pass_c = stems.nonpast_pass_c or stems.nonpast_pass stems.imp_v = stems.imp_v or stems.imp stems.imp_c = stems.imp_c or stems.imp local function truncate_nonpast_initial_cons(stem_type, form, translit) if form == "+" then return form, translit end if not form:find("^" .. Y) then error(("Form value %s for stem type '%s' should begin with ي"):format(form, stem_type)) end form = form:gsub("^" .. Y, "") if translit then if not translit:find("^y") then error(("Translit value %s for stem type '%s' should begin with y"):format(translit, stem_type)) end translit = translit:gsub("^y", "") end return form, translit end for _, nonpast_stem_type in ipairs { "nonpast_v", "nonpast_c", "nonpast_pass_v", "nonpast_pass_c" } do if stems[nonpast_stem_type] then stems[nonpast_stem_type] = map_general(stems[nonpast_stem_type], function(form, translit) return truncate_nonpast_initial_cons(nonpast_stem_type, form, translit) end) end end end -- Given user-specified overrides for stem `stemname`, return overrides with occurrences of + replaced by -- `default_stem`. If no overrides, return `default_stem`, or {} if no default. local function override_stem_if_needed(base, stemname, default_stem) local overrides = base.stem_overrides[stemname] if not overrides then return default_stem or {} end return map_general(overrides, function(form, translit) if form ~= "+" and default_indicator_to_active_participle_slot[form] then error(("Stem overrides cannot use secondary default indicators but saw %s in stem override '%s'"):format( form, stemname)) end if form == "+" then if translit then error(("Cannot supply manual translit along with + for stem override '%s'"):format(stemname)) end if not default_stem then error(("Cannot use + for stem override '%s' because no default is available"):format(stemname)) end if type(default_stem) ~= "string" then error(("Internal error: Default stem for '%s' is not a string: %s"):format(stemname, dump(default_stem))) end return default_stem end return form, translit end) end ------------------------------------------------------------------------------- -- Properties of different verbal forms -- ------------------------------------------------------------------------------- local allowed_vforms = {"I", "II", "III", "IV", "V", "VI", "VII", "VIII", "IX", "X", "XI", "XII", "XIII", "XIV", "XV", "Iq", "IIq", "IIIq", "IVq"} local allowed_vforms_set = m_table.listToSet(allowed_vforms) local allowed_vforms_with_weakness = m_table.shallowCopy(allowed_vforms) -- The user needs to be able to explicitly specify that a form-I verb (specifically one whose initial radical is و) is -- sound. Cf. wajiʕa yawjaʕu (not #yajaʕu) "to ache, to hurt". In general, i~a and u~u verbs whose initial radical is و -- seem to not assimilate the first radical; cf. وقح "to be shameless", variously waqaḥa~yaqiḥu, waquḥa~yawquḥu and -- waqiḥa~yawqaḥu, whereas a~i verbs (wafaḍa~yafiḍu "to rush"), i~i verbs (wafiqa~yafiqu "to be proper, to be suitable") -- and a~a verbs (waḍaʕa~yaḍaʕu "to set down, to place") do assimilate. But there are naturally exceptions, e.g. -- waṭiʔa~yaṭaʔu "to tread, to trample"; wasiʕa~yasaʕu "to be spacious; to be well-off"; waṯiʔa~yaṯaʔu "to get bruised, -- to be sprained". Also beware of waniya~yawnā "to be faint; to languish", which is sound in the first radical and -- final-weak in the last radical. Nonetheless, the regularity of the patterns mentioned above suggest we should provide -- them as defaults. -- Note that there are other cases of unexpectedly sound verbs, e.g. izdawaja~yazdawiju "to be in pairs", layisa~yalyasu -- "to be valiant, to be brave", ʔaḥwaja~yuḥwiju "to need", istahwana~yastahwinu "to consider easy", sawisa~yaswasu "to -- be or become moth-eaten or worm-eaten" (vs. sāsa~yasūsu "to govern, to rule" from the same radicals), ʕawira~yaʕwaru -- "to be one-eyed", istajwaba~yastajwibu "to interrogate", etc. But in these cases there is no need for explicit user -- specification as the lemma itself specifies the unexpected soundness. for _, form_with_weakness in ipairs { "I-sound", "I-assimilated", "none-sound", "none-hollow", "none-geminate", "none-final-weak" } do table.insert(allowed_vforms_with_weakness, form_with_weakness) end local allowed_vforms_with_weakness_set = m_table.listToSet(allowed_vforms_with_weakness) local function vform_supports_final_weak(vform) return vform ~= "XI" and vform ~= "XV" and vform ~= "IVq" end local function vform_supports_geminate(vform) return vform == "I" or vform == "III" or vform == "IV" or vform == "VI" or vform == "VII" or vform == "VIII" or vform == "X" end local function vform_supports_hollow(vform) return vform == "I" or vform == "IV" or vform == "VII" or vform == "VIII" or vform == "X" end local function vform_probably_impersonal_passive(vform, weakness, past_vowel, nonpast_vowel) return vform == "I" and req(past_vowel, I) or vform == "V" or vform == "VI" or vform == "X" or vform == "IIq" end local function vform_probably_full_passive(vform) return vform == "II" or vform == "III" or vform == "IV" or vform == "Iq" end local function vform_probably_no_passive(vform, weakness, past_vowel, nonpast_vowel) return vform == "I" and req(past_vowel, U) or vform == "VII" or vform == "IX" or vform == "XI" or vform == "XII" or vform == "XIII" or vform == "XIV" or vform == "XV" or vform == "IIIq" or vform == "IVq" end -- Active vforms II, III, IV, Iq use non-past prefixes in -u- instead of -a-. local function prefix_vowel_from_vform(vform) if vform == "II" or vform == "III" or vform == "IV" or vform == "Iq" then return "u" else return "a" end end -- True if the active non-past takes a-vocalization rather than i-vocalization in its last syllable. local function vform_nonpast_a_vowel(vform) return vform == "V" or vform == "VI" or vform == "XV" or vform == "IIq" end -- True if the `passive` spec indicates a passive-only verb. local function is_passive_only(passive) return passive == "onlypass" or passive == "onlypass-impers" end export.is_passive_only = is_passive_only -- for use in [[Module:ar-headword]] ------------------------------------------------------------------------------- -- Properties of specific sounds -- ------------------------------------------------------------------------------- -- Is radical wāw (و) or yāʾ (ي)? local function is_waw_ya(rad) return req(rad, W) or req(rad, Y) end -- Check that radical is wāw (و) or yāʾ (ي), error if not local function check_waw_ya(rad) if not is_waw_ya(rad) then error("Expecting weak radical: '" .. rget(rad) .. "' should be " .. W .. " or " .. Y) end end -- Form-I verb حيّ or حيي and form-X verb استحيا or استحى local function hayy_radicals(rad1, rad2, rad3) return req(rad1, "ح") and req(rad2, Y) and is_waw_ya(rad3) end -- FUCK ME HARD. "Lua error at line 1514: main function has more than 200 local variables". local function create_conjugations() ------------------------------------------------------------------------------- -- Radicals associated with various irregular verbs -- ------------------------------------------------------------------------------- -- Form-I verb أخذ or form-VIII verb اتخذ local function axadh_radicals(rad1, rad2, rad3) return req(rad1, HAMZA) and req(rad2, "خ") and req(rad3, "ذ") end -- Form-I verb whose imperative has a reduced form: أكل and أخذ and أمر. Return "shortonly" if only -- short-form imperatives exist (أكل and أخذ) or "shortlong" if long-form imperatives also exist (أمر); -- they are used after a clitic like فَ and وَ. local function reduced_imperative_verb(rad1, rad2, rad3) return axadh_radicals(rad1, rad2, rad3) and "shortonly" or req(rad1, HAMZA) and req(rad2, "ك") and req(rad3, "ل") and "shortonly" or req(rad1, HAMZA) and req(rad2, "م") and req(rad3, "ر") and "shortlong" end -- Form-I verb رأى and form-IV verb أرى local function raa_radicals(rad1, rad2, rad3) return req(rad1, "ر") and req(rad2, HAMZA) and is_waw_ya(rad3) end -- Form-I verb سأل local function saal_radicals(rad1, rad2, rad3) return req(rad1, "س") and req(rad2, HAMZA) and req(rad3, "ل") end -- Form-I verb كان local function kaan_radicals(rad1, rad2, rad3) return req(rad1, "ك") and req(rad2, W) and req(rad3, N) end ------------------------------------------------------------------------------- -- Sets of past endings -- ------------------------------------------------------------------------------- -- The 13 endings of the sound/hollow/geminate past tense. local past_endings = { -- singular SK .. TU, SK .. TA, SK .. "تِ", A, A .. "تْ", --dual SK .. "تُمَا", AA, A .. "تَا", -- plural SK .. "نَا", SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this SK .. "تُن" .. SH .. A, UU .. ALIF, SK .. "نَ" } -- Make endings for final-weak past in -aytu or -awtu. AYAW is AY or AW as appropriate. Note that AA and AW are -- global variables. local function make_past_endings_ay_aw(ayaw, third_sg_masc) return { -- singular ayaw .. SK .. TU, ayaw .. SK .. TA, ayaw .. SK .. "تِ", third_sg_masc, A .. "تْ", --dual ayaw .. SK .. "تُمَا", ayaw .. AA, A .. "تَا", -- plural ayaw .. SK .. "نَا", ayaw .. SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this ayaw .. SK .. "تُن" .. SH .. A, AW .. SK .. ALIF, ayaw .. SK .. "نَ" } end -- past final-weak -aytu endings local past_endings_ay = make_past_endings_ay_aw(AY, AAMAQ) -- past final-weak -awtu endings local past_endings_aw = make_past_endings_ay_aw(AW, AA) -- used for alternative endings for form-X geminate verbs like اِسْتَمَرَّ local past_endings_ay_12_person_only = { -- singular AY .. SK .. TU, AY .. SK .. TA, AY .. SK .. "تِ", {}, {}, --dual AY .. SK .. "تُمَا", {}, {}, -- plural AY .. SK .. "نَا", AY .. SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this AY .. SK .. "تُن" .. SH .. A, {}, {}, } -- Make endings for final-weak past in -ītu or -ūtu. IIUU is ī or ū as appropriate. Note that AA and UU are global -- variables. local function make_past_endings_ii_uu(iiuu) return { -- singular iiuu .. TU, iiuu .. TA, iiuu .. "تِ", iiuu .. A, iiuu .. A .. "تْ", --dual iiuu .. "تُمَا", iiuu .. AA, iiuu .. A .. "تَا", -- plural iiuu .. "نَا", iiuu .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this iiuu .. "تُن" .. SH .. A, UU .. ALIF, iiuu .. "نَ" } end -- past final-weak -ītu endings local past_endings_ii = make_past_endings_ii_uu(II) -- past final-weak -ūtu endings local past_endings_uu = make_past_endings_ii_uu(UU) ------------------------------------------------------------------------------- -- Sets of non-past prefixes and endings -- ------------------------------------------------------------------------------- local nonpast_prefix_consonants = { -- singular HAMZA, T, T, Y, T, -- dual T, Y, T, -- plural N, T, T, Y, Y } -- There are only five distinct endings in all non-past verbs. Make any set of non-past endings given these five -- distinct endings. local function make_nonpast_endings(null, fem, dual, pl, fempl) return { -- singular null, null, fem, null, null, -- dual dual, dual, dual, -- plural null, pl, fempl, pl, fempl } end -- endings for non-past indicative local ind_endings = make_nonpast_endings( U, II .. NA, AANI, UU .. NA, SK .. NA ) -- Make the endings for non-past subjunctive/jussive, given the vowel diacritic used in "null" endings -- (1s/2ms/3ms/3fs/1p). local function make_sub_juss_endings(dia_null) return make_nonpast_endings( dia_null, II, AA, UU .. ALIF, SK .. NA ) end -- endings for non-past subjunctive local sub_endings = make_sub_juss_endings(A) -- endings for non-past jussive local juss_endings = make_sub_juss_endings(SK) -- endings for alternative geminate non-past jussive in -a; same as subjunctive local juss_endings_alt_a = sub_endings -- endings for alternative geminate non-past jussive in -i local juss_endings_alt_i = make_sub_juss_endings(I) -- Endings for final-weak non-past indicative in -ā. Note that AY, AW and AAMAQ are global variables. local ind_endings_aa = make_nonpast_endings( AAMAQ, AYSK .. NA, AY .. AANI, AWSK .. NA, AYSK .. NA ) -- Make endings for final-weak non-past indicative in -ī or -ū; IIUU is ī or ū as appropriate. Note that II and UU -- are global variables. local function make_ind_endings_ii_uu(iiuu) return make_nonpast_endings( iiuu, II .. NA, iiuu .. AANI, UU .. NA, iiuu .. NA ) end -- endings for final-weak non-past indicative in -ī local ind_endings_ii = make_ind_endings_ii_uu(II) -- endings for final-weak non-past indicative in -ū local ind_endings_uu = make_ind_endings_ii_uu(UU) -- Endings for final-weak non-past subjunctive in -ā. Note that AY, AW, ALIF, AAMAQ are global variables. local sub_endings_aa = make_nonpast_endings( AAMAQ, AYSK, AY .. AA, AWSK .. ALIF, AYSK .. NA ) -- Make endings for final-weak non-past subjunctive in -ī or -ū. IIUU is ī or ū as appropriate. Note that AA, II, -- UU, ALIF are global variables. local function make_sub_endings_ii_uu(iiuu) return make_nonpast_endings( iiuu .. A, II, iiuu .. AA, UU .. ALIF, iiuu .. NA ) end -- endings for final-weak non-past subjunctive in -ī local sub_endings_ii = make_sub_endings_ii_uu(II) -- endings for final-weak non-past subjunctive in -ū local sub_endings_uu = make_sub_endings_ii_uu(UU) -- endings for final-weak non-past jussive in -ā local juss_endings_aa = make_nonpast_endings( A, AYSK, AY .. AA, AWSK .. ALIF, AYSK .. NA ) -- Make endings for final-weak non-past jussive in -ī or -ū. IU is short i or u, IIUU is long ī or ū as appropriate. -- Note that AA, II, UU, ALIF are global variables. local function make_juss_endings_ii_uu(iu, iiuu) return make_nonpast_endings( iu, II, iiuu .. AA, UU .. ALIF, iiuu .. NA ) end -- endings for final-weak non-past jussive in -ī local juss_endings_ii = make_juss_endings_ii_uu(I, II) -- endings for final-weak non-past jussive in -ū local juss_endings_uu = make_juss_endings_ii_uu(U, UU) ------------------------------------------------------------------------------- -- Sets of imperative endings -- ------------------------------------------------------------------------------- -- Extract the second person jussive endings to get corresponding imperative endings. local function imperative_endings_from_jussive(endings) return {endings[2], endings[3], endings[6], endings[10], endings[11]} end -- normal imperative endings local imp_endings = imperative_endings_from_jussive(juss_endings) -- alternative geminate imperative endings in -a local imp_endings_alt_a = imperative_endings_from_jussive(juss_endings_alt_a) -- alternative geminate imperative endings in -i local imp_endings_alt_i = imperative_endings_from_jussive(juss_endings_alt_i) -- final-weak imperative endings in -ā local imp_endings_aa = imperative_endings_from_jussive(juss_endings_aa) -- final-weak imperative endings in -ī local imp_endings_ii = imperative_endings_from_jussive(juss_endings_ii) -- final-weak imperative endings in -ū local imp_endings_uu = imperative_endings_from_jussive(juss_endings_uu) ------------------------------------------------------------------------------- -- Basic functions to inflect tenses -- ------------------------------------------------------------------------------- -- Add to `base` the inflections for the tense indicated by `tense` (the prefix in the slot names, e.g. 'past' -- or 'juss_pass'), formed by combining the `prefixes`, `stems` and `endings`. Each of `prefixes`, `stems` and -- `endings` is either a sequence of 5 (for the imperative) or 13 (for other tenses) abbreviated form lists (each of -- which is either a string, a form object, or a list of strings and/or form objects; see -- [[Module:inflection utilities]] for more info). Alternatively, any of `prefixes`, `stems` or `endings` can be a -- single-element list containing an abbreviated form list, with an additional key `all_same` set to true, or (as a -- special case) a single string; in the latter cases, the same value is used for all 5 or 13 slots. If existing -- inflections already exist, they will be added to, not overridden. `pnums` is the list of person/number slot name -- suffixes, which must match up with the elements in `prefixes`, `stems` and `endings` (i.e. 5 for imperative, 13 -- otherwise). local function inflect_tense_1(base, tense, prefixes, stems, endings, pnums) if not prefixes or not stems or not endings then return end local function verify_affixes(affixname, affixes) local function interr(msg) error(("Internal error: For tense '%s', '%s' %s: %s"):format(tense, affixname, msg, dump(affixes))) end if type(affixes) == "string" then -- do nothing elseif type(affixes) ~= "table" then interr("is not a table or string") elseif affixes.all_same then if #affixes ~= 1 then interr(("with all_same = true should have length 1 but has length %s"):format(#affixes)) end else if #affixes ~= #pnums then interr(("should have length %s but has length %s"):format(#pnums, #affixes)) end end end verify_affixes("prefixes", prefixes) verify_affixes("stems", stems) verify_affixes("endings", endings) local function get_affix(affixes, i) if type(affixes) == "string" then return affixes elseif affixes.all_same then return affixes[1] else return affixes[i] end end for i, pnum in ipairs(pnums) do local prefix = get_affix(prefixes, i) local stem = get_affix(stems, i) local ending = get_affix(endings, i) local slot = tense .. "_" .. pnum add3(base, slot, prefix, stem, ending) end end -- Add to `base` the inflections for the tense indicated by `tense` (the prefix in the slot names, e.g. 'past' -- or 'juss_pass'), formed by combining the `prefixes`, `stems` and `endings`. This is a simple wrapper around -- inflect_tense_1() that applies to all tenses other than the imperative; see inflect_tense_1() for more -- information about the parameters. local function inflect_tense(base, tense, prefixes, stems, endings) inflect_tense_1(base, tense, prefixes, stems, endings, all_person_number_list) end -- Like inflect_tense() but for the imperative, which has only five parts instead of 13 and no prefixes. local function inflect_tense_imp(base, stems, endings) inflect_tense_1(base, "imp", "", stems, endings, imp_person_number_list) end ------------------------------------------------------------------------------- -- Functions to inflect the past tense -- ------------------------------------------------------------------------------- -- Generate past verbs using specified vowel and consonant stems; works for sound, assimilated, hollow, and geminate -- verbs, active and passive. local function past_2stem_conj(base, tense, v_stem, c_stem, footnote_12) local passive = tense:find("_pass") and "_pass" or "" -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "past" .. passive .. "_v", v_stem) local c_stem_12 = c_stem if footnote_12 then c_stem_12 = iut.combine_form_and_footnotes(c_stem_12, footnote_12) end c_stem_12 = override_stem_if_needed(base, "past" .. passive .. "_c", c_stem_12) local c_stem_3 = override_stem_if_needed(base, "past" .. passive .. "_c", c_stem) inflect_tense(base, tense, "", { -- singular c_stem_12, c_stem_12, c_stem_12, v_stem, v_stem, --dual c_stem_12, v_stem, v_stem, -- plural c_stem_12, c_stem_12, c_stem_12, v_stem, c_stem_3 }, past_endings) end -- Generate past verbs using single specified stem; works for sound and assimilated verbs, active and passive. local function past_1stem_conj(base, tense, stem) past_2stem_conj(base, tense, stem, stem) end ------------------------------------------------------------------------------- -- Functions to inflect non-past tenses -- ------------------------------------------------------------------------------- -- Generate non-past conjugation, with two stems, for vowel-initial and consonant-initial endings, respectively. -- Useful for active and passive; for all forms; for all weaknesses (sound, assimilated, hollow, final-weak and -- geminate) and for all types of non-past (indicative, subjunctive, jussive) except for the imperative. (There is a -- separate wrapper function below for geminate jussives because they have three alternants.) Both stems may be the -- same, e.g. for sound verbs. -- `prefix_vowel` will be either "a" or "u". `endings` should be an array of 13 items. If `endings` is nil or -- omitted, infer the endings from the tense. If `jussive` is true, or `endings` is nil and `tense` indicatives -- jussive, use the jussive pattern of vowel/consonant stems (different from the normal ones). local function nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, endings, jussive) local passive = tense:find("_pass") and "_pass" or "" -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "nonpast" .. passive .. "_v", v_stem and q(dia[prefix_vowel], v_stem) or nil) c_stem = override_stem_if_needed(base, "nonpast" .. passive .. "_c", c_stem and q(dia[prefix_vowel], c_stem) or nil) if not endings then if tense:find("^ind") then endings = ind_endings elseif tense:find("^sub") then endings = sub_endings elseif tense:find("^juss") then jussive = true endings = juss_endings else error("Internal error: Unrecognized tense '" .. tense .."'") end end if not jussive then inflect_tense(base, tense, nonpast_prefix_consonants, { -- singular v_stem, v_stem, v_stem, v_stem, v_stem, --dual v_stem, v_stem, v_stem, -- plural v_stem, v_stem, c_stem, v_stem, c_stem }, endings) else inflect_tense(base, tense, nonpast_prefix_consonants, { -- singular -- 'adlul, tadlul, tadullī, yadlul, tadlul c_stem, c_stem, v_stem, c_stem, c_stem, --dual -- tadullā, yadullā, tadullā v_stem, v_stem, v_stem, -- plural -- nadlul, tadullū, tadlulna, yadullū, yadlulna c_stem, v_stem, c_stem, v_stem, c_stem }, endings) end end -- Generate non-past conjugation with one stem (no distinct stems for vowel-initial and consonant-initial endings). -- See nonpast_2stem_conj(). local function nonpast_1stem_conj(base, tense, prefix_vowel, stem, endings, jussive) nonpast_2stem_conj(base, tense, prefix_vowel, stem, stem, endings, jussive) end -- Generate active/passive jussive geminative. There are three alternants, two with terminations -a and -i and one -- in a null termination with a distinct pattern of vowel/consonant stem usage. See nonpast_2stem_conj() for a -- description of the arguments. local function jussive_gem_conj(base, tense, prefix_vowel, v_stem, c_stem) -- alternative in -a nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings_alt_a) -- alternative in -i nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings_alt_i) -- alternative in -null; requires different combination of v_stem and -- c_stem since the null endings require the c_stem (e.g. "tadlul" here) -- whereas the corresponding endings above in -a or -i require the v_stem -- (e.g. "tadulla, tadulli" above) nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings, "jussive") end ------------------------------------------------------------------------------- -- Functions to inflect the imperative -- ------------------------------------------------------------------------------- -- Generate imperative conjugation, with two stems, for vowel-initial and consonant-initial endings, respectively. -- Useful for all forms, and for all weaknesses other than final-weak. Note that the two stems may be the same -- (specifically for sound and assimilated verbs). If `endings` is nil or omitted, use `imp_endings`. If `alt_gem` -- is specified, use the pattern of vowel and consonant stems appropriate for the alternative geminate imperatives -- that use a null ending of -a or -i instead of an empty ending. local function make_2stem_imperative(base, v_stem, c_stem, endings, alt_gem) endings = endings or imp_endings -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "imp_v", v_stem) c_stem = override_stem_if_needed(base, "imp_c", c_stem) if alt_gem then inflect_tense_imp(base, {v_stem, v_stem, v_stem, v_stem, c_stem}, endings) else inflect_tense_imp(base, {c_stem, v_stem, v_stem, v_stem, c_stem}, endings) end end -- Generate imperative parts for sound or assimilated verbs. local function make_1stem_imperative(base, stem) make_2stem_imperative(base, stem, stem) end -- Generate imperative parts for geminate verbs form I (also IV, VII, VIII, X). local function make_gem_imperative(base, v_stem, c_stem) make_2stem_imperative(base, v_stem, c_stem, imp_endings_alt_a, "alt gem") make_2stem_imperative(base, v_stem, c_stem, imp_endings_alt_i, "alt gem") make_2stem_imperative(base, v_stem, c_stem) end ------------------------------------------------------------------------------- -- Functions to inflect entire verbs -- ------------------------------------------------------------------------------- -- Generate finite parts of a sound verb (also works for assimilated verbs) from five stems (past and non-past, -- active and passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u"). local function make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel) past_1stem_conj(base, "past", past_stem) past_1stem_conj(base, "past_pass", past_pass_stem) nonpast_1stem_conj(base, "ind", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "sub", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "juss", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem) make_1stem_imperative(base, imp_stem) end local function past_final_weak_endings_from_vowel(vowel) if vowel == "ay" then return past_endings_ay elseif vowel == "aw" then return past_endings_aw elseif vowel == "ī" then return past_endings_ii elseif vowel == "ū" then return past_endings_uu elseif not vowel then return nil else error(("Internal error: Unrecognized past final-weak vowel spec '%s'"):format(vowel)) end end local function nonpast_final_weak_endings_from_vowel(vowel) if vowel == "ā" then return ind_endings_aa, sub_endings_aa, juss_endings_aa, imp_endings_aa elseif vowel == "ī" then return ind_endings_ii, sub_endings_ii, juss_endings_ii, imp_endings_ii elseif vowel == "ū" then return ind_endings_uu, sub_endings_uu, juss_endings_uu, imp_endings_uu elseif not vowel then return nil else error(("Internal error: Unrecognized non-past final-weak vowel spec '%s'"):format(vowel)) end end -- Generate finite parts of a final-weak verb from five stems (past and non-past, active and passive, plus -- imperative), the past active ending vowel (ay, aw, ī or ū), the non-past active ending vowel (ā, ī or ū) and the -- prefix vowel in the active non-past (a or u). local function make_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, past_ending_vowel, nonpast_ending_vowel, prefix_vowel) past_stem = override_stem_if_needed(base, "past", past_stem) past_pass_stem = override_stem_if_needed(base, "past_pass", past_pass_stem) -- Don't call override_stem_if_needed() here for non-past stems; it's called in nonpast_2stem_conj(). imp_stem = override_stem_if_needed(base, "imp", imp_stem) -- + not supported for ending vowel overrides past_ending_vowel = base.stem_overrides.past_final_weak_vowel or past_ending_vowel local past_pass_ending_vowel = base.stem_overrides.past_pass_final_weak_vowel or "ī" nonpast_ending_vowel = base.stem_overrides.nonpast_final_weak_vowel or nonpast_ending_vowel local nonpast_pass_ending_vowel = base.stem_overrides.nonpast_pass_final_weak_vowel or "ā" local past_endings = past_final_weak_endings_from_vowel(past_ending_vowel) local past_pass_endings = past_final_weak_endings_from_vowel(past_pass_ending_vowel) local ind_endings, sub_endings, juss_endings, imp_endings = nonpast_final_weak_endings_from_vowel(nonpast_ending_vowel) local ind_pass_endings, sub_pass_endings, juss_pass_endings = nonpast_final_weak_endings_from_vowel(nonpast_pass_ending_vowel) inflect_tense(base, "past", "", {past_stem, all_same = 1}, past_endings) inflect_tense(base, "past_pass", "", {past_pass_stem, all_same = 1}, past_pass_endings) nonpast_1stem_conj(base, "ind", prefix_vowel, nonpast_stem, ind_endings) nonpast_1stem_conj(base, "sub", prefix_vowel, nonpast_stem, sub_endings) nonpast_1stem_conj(base, "juss", prefix_vowel, nonpast_stem, juss_endings) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem, ind_pass_endings) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem, sub_pass_endings) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem, juss_pass_endings) inflect_tense_imp(base, {imp_stem, all_same = 1}, imp_endings) end -- Generate finite parts of an augmented (form II+) final-weak verb from five stems (past and non-past, active and -- passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u") and a flag indicating if it -- behaves like a form V/VI verb in taking non-past endings in -ā instead of -ī. local function make_augmented_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel, form56) make_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, "ay", form56 and "ā" or "ī", prefix_vowel) end -- Generate finite parts of an augmented (form II+) sound or final-weak verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (active past stem minus last syllable (= -al or -ā)); -- * `nonpast_stem_base` (non-past stem minus last syllable (= -al/-il or -ā/-ī); -- * `past_pass_stem_base` (passive past stem minus last syllable (= -il or -ī)); -- * `vn` (verbal noun). local function make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) insert_form_or_forms(base, "vn", vn) local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local final_weak = is_final_weak(base, vowel_spec) local prefix_vowel = prefix_vowel_from_vform(base.verb_form) local form56 = vform_nonpast_a_vowel(base.verb_form) local a_base_suffix = final_weak and "" or q(A, lastrad) local i_base_suffix = final_weak and "" or q(I, lastrad) -- past and non-past stems, active and passive local past_stem = q(past_stem_base, a_base_suffix) -- In forms 5 and 6, non-past has /a/ as last stem vowel in the non-past -- in both active and passive, but /i/ in the active participle and /a/ -- in the passive participle. Elsewhere, consistent /i/ in active non-past -- and participle, consistent /a/ in passive non-past and participle. -- Hence, forms 5 and 6 differ only in the non-past active (but not -- active participle), so we have to split the finite non-past stem and -- active participle stem. local nonpast_stem = q(nonpast_stem_base, form56 and a_base_suffix or i_base_suffix) local ap_stem = q(nonpast_stem_base, i_base_suffix) local past_pass_stem = q(past_pass_stem_base, i_base_suffix) local nonpast_pass_stem = q(nonpast_stem_base, a_base_suffix) -- imperative stem local imp_stem = q(past_stem_base, form56 and a_base_suffix or i_base_suffix) -- make parts if final_weak then make_augmented_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel, form56) else make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel) end -- active and passive participle if final_weak then insert_form_or_forms(base, "ap", q(MU, ap_stem, IN)) insert_form_or_forms(base, "pp", q(MU, nonpast_pass_stem, AN, AMAQ)) else insert_form_or_forms(base, "ap", q(MU, ap_stem)) insert_form_or_forms(base, "pp", q(MU, nonpast_pass_stem)) end end -- Generate finite parts of a hollow or geminate verb from ten stems (vowel and consonant stems for each of past and -- non-past, active and passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u"), plus a -- flag indicating if we are a geminate verb. local function make_hollow_geminate_verb(base, geminate, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel, altgem_note) past_2stem_conj(base, "past", past_v_stem, past_c_stem, altgem_note) past_2stem_conj(base, "past_pass", past_pass_v_stem, past_pass_c_stem) nonpast_2stem_conj(base, "ind", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "sub", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "ind_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) nonpast_2stem_conj(base, "sub_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) if geminate then jussive_gem_conj(base, "juss", prefix_vowel, nonpast_v_stem, nonpast_c_stem) jussive_gem_conj(base, "juss_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) make_gem_imperative(base, imp_v_stem, imp_c_stem) else nonpast_2stem_conj(base, "juss", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "juss_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) make_2stem_imperative(base, imp_v_stem, imp_c_stem) end end -- Generate finite parts of an augmented (form II+) hollow verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (invariable part of active past stem); -- * `nonpast_stem_base` (invariable part of nonpast stem); -- * `past_pass_stem_base` (invariable part of passive past stem); -- * `vn` (verbal noun). local function make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) insert_form_or_forms(base, "vn", vn) local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local form410 = base.verb_form == "IV" or base.verb_form == "X" local prefix_vowel = prefix_vowel_from_vform(base.verb_form) local a_base_suffix_v, a_base_suffix_c local i_base_suffix_v, i_base_suffix_c a_base_suffix_v = q(AA, lastrad) -- 'af-āl-a, inf-āl-a a_base_suffix_c = q(A, lastrad) -- 'af-al-tu, inf-al-tu i_base_suffix_v = q(II, lastrad) -- 'uf-īl-a, unf-īl-a i_base_suffix_c = q(I, lastrad) -- 'uf-il-tu, unf-il-tu -- past and non-past stems, active and passive, for vowel-initial and -- consonant-initial endings local past_v_stem = q(past_stem_base, a_base_suffix_v) local past_c_stem = q(past_stem_base, a_base_suffix_c) -- yu-f-īl-u, ya-staf-īl-u but yanf-āl-u, yaft-āl-u local nonpast_v_stem = q(nonpast_stem_base, form410 and i_base_suffix_v or a_base_suffix_v) local nonpast_c_stem = q(nonpast_stem_base, form410 and i_base_suffix_c or a_base_suffix_c) local past_pass_v_stem = q(past_pass_stem_base, i_base_suffix_v) local past_pass_c_stem = q(past_pass_stem_base, i_base_suffix_c) local nonpast_pass_v_stem = q(nonpast_stem_base, a_base_suffix_v) local nonpast_pass_c_stem = q(nonpast_stem_base, a_base_suffix_c) -- imperative stem local imp_v_stem = q(past_stem_base, form410 and i_base_suffix_v or a_base_suffix_v) local imp_c_stem = q(past_stem_base, form410 and i_base_suffix_c or a_base_suffix_c) -- make parts make_hollow_geminate_verb(base, false, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel) -- active participle insert_form_or_forms(base, "ap", q(MU, nonpast_v_stem)) -- passive participle insert_form_or_forms(base, "pp", q(MU, nonpast_pass_v_stem)) end -- Generate finite parts of an augmented (form II+) geminate verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (invariable part of active past stem; this and the stem bases below will end with a consonant -- for forms IV, X, IVq, and a short vowel for the others); -- * `nonpast_stem_base` (invariable part of nonpast stem); -- * `past_pass_stem_base` (invariable part of passive past stem); -- * `vn` (verbal noun); -- * `altgem_note` (footnote to add to active past 1/2-person forms, when alternative forms are supplied [form X]). local function make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn, altgem_note) insert_form_or_forms(base, "vn", vn) local vform = base.verb_form local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local prefix_vowel = prefix_vowel_from_vform(vform) local a_base_suffix_v, a_base_suffix_c local i_base_suffix_v, i_base_suffix_c if vform == "IV" or vform == "X" or vform == "IVq" then a_base_suffix_v = q(A, lastrad, SH) -- 'af-all a_base_suffix_c = q(SK, lastrad, A, lastrad) -- 'af-lal i_base_suffix_v = q(I, lastrad, SH) -- yuf-ill i_base_suffix_c = q(SK, lastrad, I, lastrad) -- yuf-lil else a_base_suffix_v = q(lastrad, SH) -- fā-ll, infa-ll a_base_suffix_c = q(lastrad, A, lastrad) -- fā-lal, infa-lal i_base_suffix_v = q(lastrad, SH) -- yufā-ll, yanfa-ll i_base_suffix_c = q(lastrad, I, lastrad) -- yufā-lil, yanfa-lil end -- past and non-past stems, active and passive, for vowel-initial and -- consonant-initial endings local past_v_stem = q(past_stem_base, a_base_suffix_v) local past_c_stem = q(past_stem_base, a_base_suffix_c) local nonpast_v_stem = q(nonpast_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_v or i_base_suffix_v) local nonpast_c_stem = q(nonpast_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_c or i_base_suffix_c) -- NOTE: Formerly had a comment that "vform III and VI passive past do not have contracted parts, only -- uncontracted parts, which are added separately by those functions". This is based on Mace -- "Arabic Verbs and Essential Grammar" (1999) entry 63 (continued), which shows passive ḥūjija but no ḥūjja; -- but that is apparently a mistake, as (1) verb tables in other books do show contracted passive parts for -- these forms; (2) there is no mention of such an exception on p. 99, which explains how geminate ("doubled") -- verbs work (on the contrary, it says "The contracted and uncontracted pairs (see above) are found all -- over Forms III and VI of the doubled verbs"). local past_pass_v_stem = q(past_pass_stem_base, i_base_suffix_v) local past_pass_c_stem = q(past_pass_stem_base, i_base_suffix_c) local nonpast_pass_v_stem = q(nonpast_stem_base, a_base_suffix_v) local nonpast_pass_c_stem = q(nonpast_stem_base, a_base_suffix_c) -- imperative stem local imp_v_stem = q(past_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_v or i_base_suffix_v) local imp_c_stem = q(past_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_c or i_base_suffix_c) -- make parts make_hollow_geminate_verb(base, "geminate", past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel, altgem_note) -- active participle insert_form_or_forms(base, "ap", q(MU, nonpast_v_stem)) -- passive participle insert_form_or_forms(base, "pp", q(MU, nonpast_pass_v_stem)) end ------------------------------------------------------------------------------- -- Conjugation functions for specific conjugation types -- ------------------------------------------------------------------------------- local function form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1) local imp_vowel = map_vowel(nonpast_vowel, function(vow) if vow == A or vow == I then return I elseif vow == U then return U elseif not skip_slot(base, "imp_2ms") then error(("Internal error: Non-past vowel %s isn't a, i, or u, should have been caught earlier"):format( dump(nonpast_vowel))) else -- Passive-only; imperative won't ever be displayed so it doesn't matter. return I end end) -- Mace ("Arabic Verbs and Essentials of Grammar" p. 63: [https://archive.org/details/arabicverbsessen00john/page/62/mode/2up]) -- claims that initial hamza is assimilated/elided into a long vowel in the form-I imperative, but apparently -- this isn't corrrect. local vowel_on_alif = map_vowel(imp_vowel, function(vow) return ALIF .. vow end) return q(vowel_on_alif, rad1, SK) end -- Implement form-I sound or assimilated verb. ASSIMILATED is true for assimilated verbs. local function make_form_i_sound_assimilated_verb(base, vowel_spec, assimilated) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied -- past and non-past stems, active and passive local past_stem = q(rad1, A, rad2, past_vowel, rad3) local nonpast_stem = assimilated and q(rad2, nonpast_vowel, rad3) or q(rad1, SK, rad2, nonpast_vowel, rad3) local past_pass_stem = q(rad1, U, rad2, I, rad3) local nonpast_pass_stem = q(rad1, SK, rad2, A, rad3) -- imperative stem -- check for irregular verb with reduced imperative (أَخَذَ or أَكَلَ or أَمَرَ) local reducedimp = reduced_imperative_verb(rad1, rad2, rad3) if reducedimp then base.irregular = true end local imp_stem_suffix = q(rad2, nonpast_vowel, rad3) local long_imp_stem_base = form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1) local short_imp_stem_base = "" local imp_stem = q((assimilated or reducedimp) and "" or long_imp_stem_base, imp_stem_suffix) -- make parts make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, "a") if reducedimp == "shortlong" then make_1stem_imperative(base, iut.combine_form_and_footnotes(q(long_imp_stem_base, imp_stem_suffix), mw.getCurrentFrame():preprocess("[used especially with a clitic such as {{m|ar|فَ}} or {{m|ar|وَ}}]"))) end -- Check for irregular verb سَأَلَ with alternative jussive and imperative. Calling this after make_sound_verb() -- adds additional entries to the paradigm parts. if saal_radicals(rad1, rad2, rad3) then base.irregular = true nonpast_1stem_conj(base, "juss", "a", "سَل") nonpast_1stem_conj(base, "juss_pass", "u", "سَل") make_1stem_imperative(base, "سَل") end -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, I, rad3)) -- Insert alternative active participle (stative type I) فَعِيل. Since not all verbs have this, we require that -- verbs that do have it specify it explicitly; a shortcut ++ is provided to make this easier (e.g. <ap:++> to -- indicate that the alternative form should be used for the active participle, <ap:+,++> to indicate that both -- forms can be used, and <ap:-> to indicate that there is no active participle). The same form is used for -- secondary default passive participle. insert_ap2_pp2(base, q(rad1, A, rad2, II, rad3)) -- Active participle, stative type II فَعِل (+++). insert_form_or_forms(base, "ap3", q(rad1, A, rad2, I, rad3)) -- Active participle, color/defect أَفْعَل (+cd). insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, A, rad3)) -- Active participle, -ān فَعْلَان (+an). insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, UU, rad3)) end conjugations["I-sound"] = function(base, vowel_spec) make_form_i_sound_assimilated_verb(base, vowel_spec, false) end conjugations["none-sound"] = function(base, vowel_spec) -- All default stems are nil. make_sound_verb(base) end conjugations["none-hollow"] = function(base, vowel_spec) -- All default stems are nil. make_hollow_geminate_verb(base, false) end conjugations["none-geminate"] = function(base, vowel_spec) -- All default stems are nil. make_hollow_geminate_verb(base, "geminate") end conjugations["none-final-weak"] = function(base, vowel_spec) -- All default stems are nil. make_final_weak_verb(base) end conjugations["I-assimilated"] = function(base, vowel_spec) make_form_i_sound_assimilated_verb(base, vowel_spec, "assimilated") end local function make_form_i_hayy_verb(base, vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied base.irregular = true -- past and non-past stems, active and passive, and imperative stem local past_c_stem = "حَيِي" local past_v_stem_long = past_c_stem local past_v_stem_short = "حَيّ" local past_pass_c_stem = "حُيِي" local past_pass_v_stem_long = past_pass_c_stem local past_pass_v_stem_short = "حُيّ" local nonpast_stem = "حْي" local nonpast_pass_stem = nonpast_stem local imp_stem = _I .. nonpast_stem -- make parts past_2stem_conj(base, "past", {}, past_c_stem) past_2stem_conj(base, "past_pass", {}, past_pass_c_stem) local variant = vowel_spec.variant or "both" if variant == "short" or variant == "both" then past_2stem_conj(base, "past", past_v_stem_short, {}) past_2stem_conj(base, "past_pass", past_pass_v_stem_short, {}) end function inflect_long_variant(tense, long_stem, short_stem) inflect_tense_1(base, tense, "", {long_stem, long_stem, long_stem, long_stem, short_stem}, {past_endings[4], past_endings[5], past_endings[7], past_endings[8], past_endings[12]}, {"3ms", "3fs", "3md", "3fd", "3mp"}) end if variant == "long" or variant == "both" then inflect_long_variant("past", past_v_stem_long, past_v_stem_short) inflect_long_variant("past_pass", past_pass_v_stem_long, past_pass_v_stem_short) end nonpast_1stem_conj(base, "ind", "a", nonpast_stem, ind_endings_aa) nonpast_1stem_conj(base, "sub", "a", nonpast_stem, sub_endings_aa) nonpast_1stem_conj(base, "juss", "a", nonpast_stem, juss_endings_aa) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem, ind_endings_aa) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem, sub_endings_aa) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem, juss_endings_aa) inflect_tense_imp(base, {imp_stem, all_same = 1}, imp_endings_aa) -- active and passive participles apparently do not exist for this verb end -- Implement form-I final-weak assimilated+final-weak verb. ASSIMILATED is true for assimilated verbs. local function make_form_i_final_weak_verb(base, vowel_spec, assimilated) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- حَيَّ or حَيِيَ is weird enough that we handle it as a separate function. if hayy_radicals(rad1, rad2, rad3) then make_form_i_hayy_verb(base, vowel_spec) return end -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- Past and non-past stems, active and passive, and imperative stem. local past_stem = q(rad1, A, rad2) local past_pass_stem = q(rad1, U, rad2) local nonpast_stem, nonpast_pass_stem, imp_stem if raa_radicals(rad1, rad2, rad3) then base.irregular = true nonpast_stem = rad1 nonpast_pass_stem = rad1 imp_stem = rad1 else nonpast_pass_stem = q(rad1, SK, rad2) if assimilated then nonpast_stem = rad2 imp_stem = rad2 else nonpast_stem = nonpast_pass_stem imp_stem = q(form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1), rad2) end end -- Make parts. local past_ending_vowel = req(rad3, Y) and req(past_vowel, A) and "ay" or req(rad3, W) and req(past_vowel, A) and "aw" or req(past_vowel, I) and "ī" or "ū" -- Try to preserve footnotes attached to the third radical and/or past and/or non-past vowels. local past_footnotes = iut.combine_footnotes(rget_footnotes(rad3), rget_footnotes(past_vowel)) local nonpast_ending_vowel = req(nonpast_vowel, A) and "ā" or req(nonpast_vowel, I) and "ī" or "ū" local nonpast_footnotes = iut.combine_footnotes(rget_footnotes(rad3), rget_footnotes(nonpast_vowel)) make_final_weak_verb(base, iut.combine_form_and_footnotes(past_stem, past_footnotes), iut.combine_form_and_footnotes(past_pass_stem, past_footnotes), iut.combine_form_and_footnotes(nonpast_stem, nonpast_footnotes), iut.combine_form_and_footnotes(nonpast_pass_stem, nonpast_footnotes), iut.combine_form_and_footnotes(imp_stem, nonpast_footnotes), past_ending_vowel, nonpast_ending_vowel, "a") -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, IN)) -- Active participle, stative type I فَعِيّ (++). FIXME: Is this correct when rad3 is W? insert_ap2_pp2(base, q(rad1, A, rad2, II, SH)) -- Active participle, stative type II فَعٍ (+++). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "ap3", q(rad1, A, rad2, IN)) -- Active participle, color/defect أَفْعَى (+cd). insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, AAMAQ)) -- Active participle, -ān فَعْيَان or فَعْوَان (+an). -- FIXME: Any examples of this for both rad3 = W and y to verify it's correct? insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, req(rad3, Y) and II or UU, SH)) end conjugations["I-final-weak"] = function(base, vowel_spec) make_form_i_final_weak_verb(base, vowel_spec, false) end conjugations["I-assimilated+final-weak"] = function(base, vowel_spec) make_form_i_final_weak_verb(base, vowel_spec, "assimilated") end conjugations["I-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- In some sense, hollow vowels i~i and u~u are more "correct" than a~i and a~u, but the latter follow the -- pattern of other form-I verbs, so we map i~i to a~i and u~u to a~u in infer_radicals(). Now however we have -- to undo this to get the actual past vowel based on the non-past vowel. if req(past_vowel, A) then past_vowel = map_vowel(past_vowel, function(vow) return req(nonpast_vowel, A) and I or rget(nonpast_vowel) end) end local lengthened_nonpast = map_vowel(nonpast_vowel, function(vow) return vow == U and UU or vow == I and II or AA end) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- active past stems - vowel (v) and consonant (c) local past_v_stem = q(rad1, AA, rad3) local past_c_stem = q(rad1, past_vowel, rad3) -- active non-past stems - vowel (v) and consonant (c) local nonpast_v_stem = q(rad1, lengthened_nonpast, rad3) local nonpast_c_stem = q(rad1, nonpast_vowel, rad3) -- passive past stems - vowel (v) and consonant (c) -- 'ufīla, 'ufiltu local past_pass_v_stem = q(rad1, II, rad3) local past_pass_c_stem = q(rad1, I, rad3) -- passive non-past stems - vowel (v) and consonant (c) -- yufāla/yufalna -- stem is built differently but conjugation is identical to sound verbs local nonpast_pass_v_stem = q(rad1, AA, rad3) local nonpast_pass_c_stem = q(rad1, A, rad3) -- imperative stem local imp_v_stem = nonpast_v_stem local imp_c_stem = nonpast_c_stem -- make parts make_hollow_geminate_verb(base, false, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, "a") if kaan_radicals(rad1, rad2, rad3) then local endings = make_nonpast_endings(U, {}, {}, {}, {}) inflect_tense(base, "juss", nonpast_prefix_consonants, q(A, rad1), endings) base.irregular = true end -- Active participle. insert_form_or_forms(base, "ap1", req(rad3, HAMZA) and q(rad1, AA, HAMZA, IN) or q(rad1, AA, HAMZA, I, rad3)) -- Active participle, stative type I فَيِّد (++). FIXME: Any examples of this to verify it's correct? insert_ap2_pp2(base, q(rad1, A, Y, SH, I, rad3)) -- Active participle, stative type II فَيِد (+++). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "ap3", q(rad1, A, Y, I, rad3)) -- Active participle, color/defect أَفّيَد or أَفّوَد (+cd). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, A, rad3)) -- Active participle, -ān فَيْدَان or فَوْدَان (+an). Example: جَاعَ "to be hungry", act part جَوْعَان insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, req(rad2, Y) and II or UU, rad3)) end conjugations["I-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- active past stems - vowel (v) and consonant (c) local past_v_stem = q(rad1, A, rad2, SH) local past_c_stem = q(rad1, A, rad2, past_vowel, rad2) -- active non-past stems - vowel (v) and consonant (c) local nonpast_v_stem = q(rad1, nonpast_vowel, rad2, SH) local nonpast_c_stem = q(rad1, SK, rad2, nonpast_vowel, rad2) -- passive past stems - vowel (v) and consonant (c) -- dulla/dulilta local past_pass_v_stem = q(rad1, U, rad2, SH) local past_pass_c_stem = q(rad1, U, rad2, I, rad2) -- passive non-past stems - vowel (v) and consonant (c) --yudallu/yudlalna -- stem is built differently but conjugation is identical to sound verbs local nonpast_pass_v_stem = q(rad1, A, rad2, SH) local nonpast_pass_c_stem = q(rad1, SK, rad2, A, rad2) -- imperative stem local imp_v_stem = q(rad1, nonpast_vowel, rad2, SH) local imp_c_stem = q(form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1), rad2, nonpast_vowel, rad2) -- make parts make_hollow_geminate_verb(base, "geminate", past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, "a") -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, SH)) -- Active participle, stative type I فَعِيع (++). FIXME: Any examples of this to verify it's correct? insert_ap2_pp2(base, q(rad1, A, rad2, II, rad2)) -- Active participle, stative type II فَعّ (+++). Example: بَرَّ "to be pious", active participle بَرّ insert_form_or_forms(base, "ap3", q(rad1, A, rad2, SH)) -- Active participle, color/defect أَفَعّ (+cd). -- Example: لَصَّ "to be thievish, to steal repeatedly", active participle أَلَصّ. insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, A, rad2, SH)) -- Active participle, -ān فَعَّان (+an). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "apan", q(rad1, A, rad2, SH, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, UU, rad2)) end -- Return the ta- (active, past and non-past) and tu- (passive past) prefixes for a form II/III/V/VI verb. -- Form V and VI verbs normally use ta- and tu-, but reduced (base.reduced) verbs use different prefixes. Form II -- and III verbs have no prefix. local function form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vform = base.verb_form if vform == "V" or vform == "VI" then if base.reduced then -- To simplify the code, we generate two rad1's with a sukūn between them, which is cleaned up in -- postprocessing. return q(_I, rad1, SK), q(rad1, SK), q(_U, rad1, SK) else return TA, TA, TU end else return "", "", "" end end -- Make form II or V sound or final-weak verb. local function make_form_ii_v_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vn = vform == "V" and q(ta_past_prefix, rad1, A, rad2, SH, final_weak and IN or q(U, rad3)) or q(TA, rad1, SK, rad2, II, final_weak and AH or rad3) -- various stem bases local past_stem_base = q(ta_past_prefix, rad1, A, rad2, SH) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, A, rad2, SH) local past_pass_stem_base = q(tu_past_prefix, rad1, U, rad2, SH) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["II-sound"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["II-final-weak"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end local function make_form_iii_alt_vn(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) -- Insert alternative verbal noun فِعَال. Since not all verbs have this, we require that verbs that do have it -- specify it explicitly; a shortcut ++ is provided to make this easier (e.g. <vn:+,++> to indicate that -- both the normal verbal noun مُفَاعَلَة and secondary verbal noun فِعَال are available). insert_form_or_forms(base, "vn2", q(rad1, I, rad2, AA, final_weak and HAMZA or rad3)) end -- Make form III or VI sound or final-weak verb. local function make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vn = vform == "VI" and q(ta_past_prefix, rad1, AA, rad2, final_weak and IN or q(U, rad3)) or q(MU, rad1, AA, rad2, final_weak and AAH or q(A, rad3, AH)) -- various stem bases local past_stem_base = q(ta_past_prefix, rad1, AA, rad2) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, AA, rad2) local past_pass_stem_base = q(tu_past_prefix, rad1, UU, rad2) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) if vform == "III" then make_form_iii_alt_vn(base, vowel_spec) end end conjugations["III-sound"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["III-final-weak"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end -- Make form III or VI geminate verb. local function make_form_iii_vi_geminate_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) -- Alternative verbal noun فِعَال will be inserted when we add sound parts below. local vn = vform == "VI" and q(ta_past_prefix, rad1, AA, rad2, SH) or q(MU, rad1, AA, rad2, SH, AH) -- Various stem bases. local past_stem_base = q(ta_past_prefix, rad1, AA) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, AA) local past_pass_stem_base = q(tu_past_prefix, rad1, UU) -- Make parts. local variant = vowel_spec.variant or "short" if variant == "short" or variant == "both" then make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Also add alternative sound (non-compressed) parts. This will lead to some duplicate entries, but they are -- removed during addition. if variant == "long" or variant == "both" then make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) elseif vform == "III" then -- Still need to add the alternative form-III verbal noun. make_form_iii_alt_vn(base, vowel_spec) end end conjugations["III-geminate"] = function(base, vowel_spec) make_form_iii_vi_geminate_verb(base, vowel_spec) end -- Make form IV sound or final-weak verb. local function make_form_iv_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) -- core of stem base, minus stem prefixes local stem_core -- check for irregular verb أَرَى local is_raa = raa_radicals(rad1, rad2, rad3) if is_raa then base.irregular = true stem_core = rad1 else stem_core = q(rad1, SK, rad2) end -- verbal noun local vn = is_raa and q(HAMZA, I, stem_core, AA, HAMZA, AH) or q(HAMZA, I, stem_core, AA, final_weak and HAMZA or rad3) -- various stem bases local past_stem_base = q(HAMZA, A, stem_core) local nonpast_stem_base = stem_core local past_pass_stem_base = q(HAMZA, U, stem_core) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IV-sound"] = function(base, vowel_spec) make_form_iv_sound_final_weak_verb(base, vowel_spec) end conjugations["IV-final-weak"] = function(base, vowel_spec) make_form_iv_sound_final_weak_verb(base, vowel_spec) end conjugations["IV-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- verbal noun local vn = q(HAMZA, I, rad1, AA, rad3, AH) -- various stem bases local past_stem_base = q(HAMZA, A, rad1) local nonpast_stem_base = rad1 local past_pass_stem_base = q(HAMZA, U, rad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IV-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(HAMZA, I, rad1, SK, rad2, AA, rad2) -- various stem bases local past_stem_base = q(HAMZA, A, rad1) local nonpast_stem_base = rad1 local past_pass_stem_base = q(HAMZA, U, rad1) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["V-sound"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["V-final-weak"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-sound"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-final-weak"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-geminate"] = function(base, vowel_spec) make_form_iii_vi_geminate_verb(base, vowel_spec) end -- Make a verbal noun of the general form that applies to forms VII and above. RAD12 is the first consonant cluster -- (after initial اِ) and RAD34 is the second consonant cluster. RAD5 is the final consonant. local function high_form_verbal_noun(rad12, rad34, rad5) return q(_I, rad12, I, rad34, AA, rad5) end -- Populate a sound or final-weak verb for any of the various high-numbered augmented forms (form VII and up) that -- have up to 5 consonants in two clusters in the stem and the same pattern of vowels between. Some of these -- consonants in certain verb parts are w's, which leads to apparent anomalies in certain stems of these parts, but -- these anomalies are handled automatically in postprocessing, where we resolve sequences of iwC -> īC, uwC -> ūC, -- w + sukūn + w -> w + shadda. -- RAD12 is the first consonant cluster (after initial اِ) and RAD34 is the second consonant cluster. RAD5 is the -- final consonant. local function make_high_form_sound_final_weak_verb(base, vowel_spec, rad12, rad34, rad5) local final_weak = is_final_weak(base, vowel_spec) local vn = high_form_verbal_noun(rad12, rad34, final_weak and HAMZA or rad5) -- various stem bases local nonpast_stem_base = q(rad12, A, rad34) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad12, U, rad34) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end local function form_vii_nrad1(base, rad1) if base.reduced then if not req(rad1, M) then error(("Internal error: Form VII first radical %s is not م but .reduced specified; should have been caught earlier"): format(rget(rad1))) end return M .. SH else return q("نْ", rad1) end end -- Make form VII sound or final-weak verb. local function make_form_vii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high_form_sound_final_weak_verb(base, vowel_spec, form_vii_nrad1(base, rad1), rad2, rad3) end conjugations["VII-sound"] = function(base, vowel_spec) make_form_vii_sound_final_weak_verb(base, vowel_spec) end conjugations["VII-final-weak"] = function(base, vowel_spec) make_form_vii_sound_final_weak_verb(base, vowel_spec) end conjugations["VII-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local nrad1 = form_vii_nrad1(base, rad1) local vn = high_form_verbal_noun(nrad1, Y, rad3) -- various stem bases local nonpast_stem_base = nrad1 local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nrad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["VII-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local nrad1 = form_vii_nrad1(base, rad1) local vn = high_form_verbal_noun(nrad1, rad2, rad2) -- various stem bases local nonpast_stem_base = q(nrad1, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nrad1, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Return Form VIII verbal noun. local function form_viii_verbal_noun(base, vowel_spec, rad1, rad2, rad3) local final_weak = is_final_weak(base, vowel_spec) rad3 = final_weak and HAMZA or rad3 return {high_form_verbal_noun(vowel_spec.form_viii_assim, rad2, rad3)} end -- Make form VIII sound or final-weak verb. local function make_form_viii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- check for irregular verb اِتَّخَذَ if axadh_radicals(rad1, rad2, rad3) then base.irregular = true rad1 = T end make_high_form_sound_final_weak_verb(base, vowel_spec, vowel_spec.form_viii_assim, rad2, rad3) end conjugations["VIII-sound"] = function(base, vowel_spec) make_form_viii_sound_final_weak_verb(base, vowel_spec) end conjugations["VIII-final-weak"] = function(base, vowel_spec) make_form_viii_sound_final_weak_verb(base, vowel_spec) end conjugations["VIII-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = form_viii_verbal_noun(base, vowel_spec, rad1, Y, rad3) -- various stem bases local nonpast_stem_base = vowel_spec.form_viii_assim local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nonpast_stem_base) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["VIII-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = form_viii_verbal_noun(base, vowel_spec, rad1, rad2, rad2) -- various stem bases local nonpast_stem_base = q(vowel_spec.form_viii_assim, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, vowel_spec.form_viii_assim, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IX-sound"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(_I, rad1, SK, rad2, I, rad3, AA, rad3) -- various stem bases local nonpast_stem_base = q(rad1, SK, rad2, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad1, SK, rad2, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IX-final-weak"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high_form_sound_final_weak_verb(base, vowel_spec, q(rad1, SK, rad2), rad3, rad3) end -- Populate a sound or final-weak verb for any of the various high-numbered -- augmented forms that have 5 consonants in the stem and the same pattern of -- vowels. Some of these consonants in certain verb parts are w's, which leads to -- apparent anomalies in certain stems of these parts, but these anomalies -- are handled automatically in postprocessing, where we resolve sequences of -- iwC -> īC, uwC -> ūC, w + sukūn + w -> w + shadda. local function make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, rad3, rad4, rad5) make_high_form_sound_final_weak_verb(base, vowel_spec, q(rad1, SK, rad2), q(rad3, SK, rad4), rad5) end -- Make form X sound or final-weak verb. local function make_form_x_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- check for irregular verb اِسْتَحْيَا (also اِسْتَحَى) local is_hayy = hayy_radicals(rad1, rad2, rad3) local variant = vowel_spec.variant or "both" if not is_hayy or variant == "long" or variant == "both" then make_high5_form_sound_final_weak_verb(base, vowel_spec, S, T, rad1, rad2, rad3) end if is_hayy and (variant == "short" or variant == "both") then base.irregular = true -- Add alternative entries to the verbal paradigms. Any duplicates are removed during addition. make_high_form_sound_final_weak_verb(base, vowel_spec, S .. SK .. T, rad1, rad3) end end conjugations["X-sound"] = function(base, vowel_spec) make_form_x_sound_final_weak_verb(base, vowel_spec) end conjugations["X-final-weak"] = function(base, vowel_spec) make_form_x_sound_final_weak_verb(base, vowel_spec) end conjugations["X-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(base.reduced and "اِسْ" or "اِسْتِ", rad1, AA, rad3, AH) -- various stem bases local past_stem_base = q(base.reduced and "اِسْ" or "اِسْتَ", rad1) local nonpast_stem_base = q(base.reduced and "سْ" or "سْتَ", rad1) local past_pass_stem_base = q(base.reduced and "اُسْ" or "اُسْتُ", rad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["X-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q("اِسْتِ", rad1, SK, rad2, AA, rad2) -- various stem bases local past_stem_base = q("اِسْتَ", rad1) local nonpast_stem_base = q("سْتَ", rad1) local past_pass_stem_base = q("اُسْتُ", rad1) -- make parts if base.altgem then inflect_tense(base, "past", "", {q(past_stem_base, A, rad2, SH), all_same = 1}, past_endings_ay_12_person_only) end make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn, base.altgem and "[uncommon]" or nil) end conjugations["XI-sound"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(_I, rad1, SK, rad2, II, rad3, AA, rad3) -- various stem bases local nonpast_stem_base = q(rad1, SK, rad2, AA) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad1, SK, rad2, UU) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Probably no form XI final-weak, since already geminate in form; would behave as XI-sound. -- Make form XII sound or final-weak verb. local function make_form_xii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, W, rad2, rad3) end conjugations["XII-sound"] = function(base, vowel_spec) make_form_xii_sound_final_weak_verb(base, vowel_spec) end conjugations["XII-final-weak"] = function(base, vowel_spec) make_form_xii_sound_final_weak_verb(base, vowel_spec) end -- Make form XIII sound or final-weak verb. local function make_form_xiii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, W, W, rad3) end conjugations["XIII-sound"] = function(base, vowel_spec) make_form_xiii_sound_final_weak_verb(base, vowel_spec) end conjugations["XIII-final-weak"] = function(base, vowel_spec) make_form_xiii_sound_final_weak_verb(base, vowel_spec) end -- Make a form XIV or XV sound or final-weak verb. Last radical appears twice (if`anlala / yaf`anlilu) so if it were -- w or y you'd get if`anwā / yaf`anwī or if`anyā / yaf`anyī, i.e. unlike for most augmented verbs, the identity of -- the radical matters. local function make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local lastrad = base.verb_form == "XV" and Y or rad3 make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, N, rad3, lastrad) end conjugations["XIV-sound"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end conjugations["XIV-final-weak"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end conjugations["XV-sound"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end -- Probably no form XV final-weak, since already final-weak in form; would behave as XV-sound. -- Make form Iq or IIq sound or final-weak verb. local function make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local vn = vform == "IIq" and q(TA, rad1, A, rad2, SK, rad3, (final_weak and IN or q(U, rad4))) or q(rad1, A, rad2, SK, rad3, (final_weak and AAH or q(A, rad4, AH))) local ta_pref = vform == "IIq" and TA or "" local tu_pref = vform == "IIq" and TU or "" -- various stem bases local past_stem_base = q(ta_pref, rad1, A, rad2, SK, rad3) local nonpast_stem_base = past_stem_base local past_pass_stem_base = q(tu_pref, rad1, U, rad2, SK, rad3) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["Iq-sound"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["Iq-final-weak"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIq-sound"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIq-final-weak"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end -- Make form IIIq sound or final-weak verb. local function make_form_iiiq_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, N, rad3, rad4) end conjugations["IIIq-sound"] = function(base, vowel_spec) make_form_iiiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIIq-final-weak"] = function(base, vowel_spec) make_form_iiiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IVq-sound"] = function(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local vn = q(_I, rad1, SK, rad2, I, rad3, SK, rad4, AA, rad4) -- various stem bases local past_stem_base = q(_I, rad1, SK, rad2, A, rad3) local nonpast_stem_base = q(rad1, SK, rad2, A, rad3) local past_pass_stem_base = q(_U, rad1, SK, rad2, U, rad3) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Probably no form IVq final-weak, since already geminate in form; would behave as IVq-sound. end create_conjugations() ------------------------------------------------------------------------------- -- Guts of main conjugation function -- ------------------------------------------------------------------------------- -- Given form, weakness and radicals, check to make sure the radicals present are allowable for the weakness. Hamzas on -- alif/wāw/yāʾ seats are never allowed (should always appear as hamza-on-the-line), and various weaknesses have various -- strictures on allowable consonants. local function check_radicals(form, weakness, rad1, rad2, rad3, rad4) local function hamza_check(index, rad) if rad == HAMZA_ON_ALIF or rad == HAMZA_UNDER_ALIF or rad == HAMZA_ON_W or rad == HAMZA_ON_Y then error("Radical " .. index .. " is " .. rad .. " but should be ء (hamza on the line)") end end local function check_waw_ya(index, rad) if not is_waw_ya(rad) then error("Radical " .. index .. " is " .. rad .. " but should be و or ي") end end local function check_not_waw_ya(index, rad) if is_waw_ya(rad) then error("In a sound verb, radical " .. index .. " should not be و or ي") end end hamza_check(rad1) hamza_check(rad2) hamza_check(rad3) hamza_check(rad4) if weakness == "assimilated" or weakness == "assimilated+final-weak" then if rad1 ~= W then error("Radical 1 is " .. rad1 .. " but should be و") end -- don't check that non-assimilated form I verbs don't have wāw as their -- first radical because some form-I verbs exist where a first-radical wāw -- behaves as sound, e.g. wajuha yawjuhu "to be distinguished". end if weakness == "final-weak" or weakness == "assimilated+final-weak" then if rad4 then check_waw_ya(4, rad4) else check_waw_ya(3, rad3) end elseif vform_supports_final_weak(form) then -- non-final-weak verbs cannot have weak final radical if there's a corresponding -- final-weak verb category. I think this is safe. We may have problems with -- ḥayya/ḥayiya yaḥyā if we treat it as a geminate verb. if rad4 then check_not_waw_ya(4, rad4) else check_not_waw_ya(3, rad3) end end if weakness == "hollow" then check_waw_ya(2, rad2) -- don't check that non-hollow verbs in forms that support hollow verbs -- don't have wāw or yāʾ as their second radical because some verbs exist -- where a middle-radical wāw/yāʾ behaves as sound, e.g. form-VIII izdawaja -- "to be in pairs". end if weakness == "geminate" then if rad4 then error("Internal error: No geminate quadrilaterals, should not be seen") end if rad2 ~= rad3 then error("Weakness is geminate; radical 3 is " .. rad3 .. " but should be same as radical 2 " .. rad2) end elseif vform_supports_geminate(form) then -- non-geminate verbs cannot have second and third radical same if there's -- a corresponding geminate verb category. I think this is safe. We -- don't fuss over double wāw or double yāʾ because this could legitimately -- be a final-weak verb with middle wāw/yāʾ, treated as sound. if rad4 then error("Internal error: No quadrilaterals should support geminate verbs") end if rad2 == rad3 and not is_waw_ya(rad2) then error("Weakness is '" .. weakness .. "'; radical 2 and 3 are same at " .. rad2 .. " but should not be; consider making weakness 'geminate'") end end end -- array of substitutions; each element is a 2-entry array FROM, TO; do it -- this way so the concatenations only get evaluated once local postprocess_subs = { -- reorder short-vowel + shadda -> shadda + short-vowel for easier processing {"(" .. AIU .. ")" .. SH, SH .. "%1"}, ----------same letter separated by sukūn should instead use shadda--------- ------------happens e.g. in kun-nā "we were".----------------- {"(.)" .. SK .. "%1", "%1" .. SH}, ---------------------------- assimilated verbs ---------------------------- -- iw, iy -> ī (assimilated verbs) {I .. W .. SK, II}, {I .. Y .. SK, II}, -- uw, uy -> ū (assimilated verbs) {U .. W .. SK, UU}, {U .. Y .. SK, UU}, -------------- final -yā uses tall alif not alif maqṣūra ------------------ {"(" .. Y .. SH .. "?" .. A .. ")" .. AMAQ, "%1" .. ALIF}, ----------------------- handle hamza assimilation ------------------------- -- initial hamza + short-vowel + hamza + sukūn -> hamza + long vowel {HAMZA .. A .. HAMZA .. SK, HAMZA .. A .. ALIF}, {HAMZA .. I .. HAMZA .. SK, HAMZA .. I .. Y}, {HAMZA .. U .. HAMZA .. SK, HAMZA .. U .. W} } local postprocess_tr_subs = { {"ī([" .. vowels .. "y*])", "iy%1"}, {"ū([" .. vowels .. "w*])", "uw%1"}, {"(.)%*", "%1%1"}, -- implement shadda ---------------------------- assimilated verbs ---------------------------- -- iw, iy -> ī (assimilated verbs) {"iw([^" .. vowels .. "w])", "ī%1"}, {"iy([^" .. vowels .. "y])", "ī%1"}, -- uw, uy -> ū (assimilated verbs) {"uw([^" .. vowels .. "w])", "ū%1"}, {"uy([^" .. vowels .. "y])", "ū%1"}, ----------------------- handle hamza assimilation ------------------------- -- initial hamza + short-vowel + hamza + sukūn -> hamza + long vowel {"ʔaʔ(" .. NV .. ")", "ʔā%1"}, {"ʔiʔ(" .. NV .. ")", "ʔī%1"}, {"ʔuʔ(" .. NV .. ")", "ʔū%1"}, } -- Post-process verb parts to eliminate phonological anomalies. Many of the changes, particularly the tricky ones, -- involve converting hamza to have the proper seat. The rules for this are complicated and are documented on the -- [[w:Hamza]] Wikipedia page. In some cases there are alternatives allowed, and we handle them below by returning -- multiple possibilities. local function postprocess_term(term) if term == "?" then return "?" end -- Add BORDER at text boundaries. term = BORDER .. term .. BORDER -- Do the main post-processing, based on the pattern substitutions in postprocess_subs. for _, sub in ipairs(postprocess_subs) do term = rsub(term, sub[1], sub[2]) end term = term:gsub(BORDER, "") if not rfind(term, HAMZA) then return term end term = term:gsub(HAMZA, HAMZA_PH) term = ar_utilities.process_hamza(term) if #term == 1 then term = term[1] end return term end local function postprocess_translit(translit) if translit == "?" then return "?" end -- Add BORDER at text boundaries. translit = BORDER .. translit .. BORDER -- Do the main post-processing, based on the pattern substitutions in postprocess_tr_subs. for _, sub in ipairs(postprocess_tr_subs) do translit = rsub(translit, sub[1], sub[2]) end translit = translit:gsub(BORDER, "") return translit end local function postprocess_forms(base) local converted_values = {} for slot, forms in pairs(base.forms) do local need_dedup = false for i, form in ipairs(forms) do local term = postprocess_term(form.form) local translit = form.translit and postprocess_translit(form.translit) or nil if term ~= form.form or translit ~= form.translit then need_dedup = true end converted_values[i] = {term, translit} end if need_dedup then local temp_dedup = {} for i = 1, #forms do local new_term, new_translit = unpack(converted_values[i]) if type(new_term) == "table" then for _, nt in ipairs(new_term) do local new_formobj = { form = nt, translit = new_translit, footnotes = forms[i].footnotes, } iut.insert_form(temp_dedup, "temp", new_formobj) end else local new_formobj = { form = new_term, translit = new_translit, footnotes = forms[i].footnotes, } iut.insert_form(temp_dedup, "temp", new_formobj) end end base.forms[slot] = temp_dedup.temp end end end local function process_slot_overrides(base) for slot, forms in pairs(base.slot_overrides) do local existing_values = base.forms[slot] base.forms[slot] = nil for _, form in ipairs(forms) do -- + in active participle for form I requests slot ap1 if form.form == "+" and (base.verb_form ~= "I" or slot ~= "ap") then if not existing_values then error(("Slot '%s' requested the default value but no such value available"):format(slot)) end -- We maintain an invariant that no two slots share a form object (although they may share the footnote -- lists inside the form objects). However, there is no need to copy the form objects here because there -- is a one-to-one correspondence between slots and slot overrides, i.e. you can't have a default value -- go into two slots. insert_form_or_forms(base, slot, existing_values, "allow overrides", form.uncertain) elseif default_indicator_to_active_participle_slot[form.form] then if form.form == "++" then if slot ~= "vn" and slot ~= "ap" and slot ~= "pp" then error(("Secondary default value request '++' only applicable to verbal nouns and pariciples, but found in slot '%s'"): format(slot)) end else if slot ~= "ap" then error(("Secondary default value request '%s' only applicable to active pariciples, but found in slot '%s'"): format(form.form, slot)) end end local secondary_default_slot = slot == "vn" and "vn2" or slot == "pp" and "pp2" or default_indicator_to_active_participle_slot[form.form] local existing_values = base.forms[secondary_default_slot] if not existing_values then error(("Slot '%s' requested a secondary default value using '%s' but no such value available"): format(slot, form.form)) end -- See comment above about the lack of need to copy the form objects. insert_form_or_forms(base, slot, existing_values, "allow overrides", form.uncertain) -- To make sure there aren't shared form objects. base.forms[secondary_default_slot] = nil else insert_form_or_forms(base, slot, form, "allow overrides", form.uncertain) end end end -- Now, for non-stative form-I verbs, fill the active participle slot from ap1 unless it should be missing (e.g. -- passive-only or user specified 'ap:-'). if base.verb_form == "I" and not base.forms.ap and base.forms.ap1 and not skip_slot(base, "ap") then local saw_non_stative = false for _, vowel_spec in ipairs(base.conj_vowels) do if req(vowel_spec.past, A) then saw_non_stative = true break end end if saw_non_stative then base.forms.ap = base.forms.ap1 -- To make sure there aren't shared form objects. base.forms.ap1 = nil end end end local function handle_lemma_linked(base) -- Compute linked versions of potential lemma slots, for use in {{ar-verb}}. We substitute the original lemma -- (before removing links) for forms that are the same as the lemma, if the original lemma has links. for _, slot in ipairs(export.potential_lemma_slots) do if base.forms[slot] then insert_form_or_forms(base, slot .. "_linked", iut.map_forms(base.forms[slot], function(form) if form == base.lemma and rfind(base.linked_lemma, "%[%[") then return base.linked_lemma else return form end end)) end end end -- Process specs given by the user using 'addnote[SLOTSPEC][FOOTNOTE][FOOTNOTE][...]'. local function process_addnote_specs(base) for _, spec in ipairs(base.addnote_specs) do for _, slot_spec in ipairs(spec.slot_specs) do slot_spec = "^" .. slot_spec .. "$" for slot, forms in pairs(base.forms) do if rfind(slot, slot_spec) then -- To save on memory, side-effect the existing forms. for _, form in ipairs(forms) do form.footnotes = iut.combine_footnotes(form.footnotes, spec.footnotes) end end end end end end local function add_missing_links_to_forms(base) -- Any forms without links should get them now. Redundant ones will be stripped later. for slot, forms in pairs(base.forms) do for _, form in ipairs(forms) do if not form.form:find("%[%[") then form.form = "[[" .. form.form .. "]]" end end end end local function conjugate_verb(base) construct_stems(base) for _, vowel_spec in ipairs(base.conj_vowels) do -- Reconstruct conjugation type from verb form and (possibly inferred) weakness. conj_type = base.verb_form .. "-" .. vowel_spec.weakness -- Check that the conjugation type is recognized. if not conjugations[conj_type] then error("Unknown conjugation type '" .. conj_type .. "'") end -- The way the conjugation functions work is they always add entries to the appropriate parts of the paradigm -- (each of which is an array), rather than setting the values. This makes it possible to call more than one -- conjugation function and essentially get a paradigm of the "either A or B" kind. Doing this may insert -- duplicate entries into a particular paradigm part, but this is not a problem because we check for duplicate -- entries when adding them, and don't insert in that case. conjugations[conj_type](base, vowel_spec) end postprocess_forms(base) process_slot_overrides(base) -- This should happen before add_missing_links_to_forms() so that the comparison `form == base.lemma` in -- handle_lemma_linked() works correctly and compares unlinked forms to unlinked forms. handle_lemma_linked(base) process_addnote_specs(base) if not base.alternant_multiword_spec.args.noautolinkverb then add_missing_links_to_forms(base) end end local function parse_indicator_spec(angle_bracket_spec) -- Store the original angle bracket spec so we can reconstruct the overall conj spec with the lemma(s) in them. local base = { angle_bracket_spec = angle_bracket_spec, conj_vowels = {}, root_consonants = {}, user_stem_overrides = {}, user_slot_overrides = {}, slot_explicitly_missing = {}, slot_uncertain = {}, slot_override_uses_default = {}, addnote_specs = {}, } local function parse_err(msg) error(msg .. ": " .. angle_bracket_spec) end local function fetch_footnotes(separated_group) local footnotes for j = 2, #separated_group - 1, 2 do if separated_group[j + 1] ~= "" then parse_err("Extraneous text after bracketed footnotes: '" .. table.concat(separated_group) .. "'") end if not footnotes then footnotes = {} end table.insert(footnotes, separated_group[j]) end return footnotes end local inside = angle_bracket_spec:match("^<(.*)>$") assert(inside) local segments = put.parse_multi_delimiter_balanced_segment_run(inside, {{"[", "]"}, {"<", ">"}}) local dot_separated_groups = put.split_alternating_runs_and_strip_spaces(segments, "%.") -- The first dot-separated element must specify the verb form, e.g. IV or IIq. If the form is I, it needs to include -- the the past and non-past vowels, e.g. I/a~u for kataba ~ yaktubu. More than one vowel can be given, -- comma-separated, and more than one past~non-past pair can be given, slash-separated, e.g. I/a,u~u/i~a for form I -- كمل, which can be conjugated as kamala/kamula ~ yakmulu or kamila ~ yakmalu. An individual vowel spec must be one -- of a, i or u and in general (a) at least one past~non-past pair most be given, and (b) both past and non-past -- vowels must be given even though sometimes the vowel can be determined from the unvocalized form. An exception is -- passive-only verbs, where the vowels can't in general be determined (except indirectly in some cases by looking -- at an associated non-passive verb); in that case, the vowel~vowel spec can left out. local slash_separated_groups = put.split_alternating_runs_and_strip_spaces(dot_separated_groups[1], "/") local form_spec = slash_separated_groups[1] base.form_footnotes = fetch_footnotes(form_spec) if form_spec[1] == "" then parse_err("Missing verb form") end if not allowed_vforms_with_weakness_set[form_spec[1]] then parse_err(("Unrecognized verb form '%s', should be one of %s"):format( form_spec[1], list_to_text(allowed_vforms, nil, " or "))) end if form_spec[1]:find("%-") then base.verb_form, base.explicit_weakness = form_spec[1]:match("^(.-)%-(.*)$") else base.verb_form = form_spec[1] end if #slash_separated_groups > 1 then if base.verb_form ~= "I" then parse_err(("Past~non-past vowels can only be specified when verb form is I, but saw form '%s'"):format( base.verb_form)) end for i = 2, #slash_separated_groups do local slash_separated_group = slash_separated_groups[i] local tilde_separated_groups = put.split_alternating_runs_and_strip_spaces(slash_separated_group, "~") if #tilde_separated_groups ~= 2 then parse_err(("Expected two tilde-separated vowel specs: %s"):format(table.concat(slash_separated_group))) end local function parse_conj_vowels(tilde_separated_group, vtype) local conj_vowel_objects = {} local comma_separated_groups = put.split_alternating_runs_and_strip_spaces(tilde_separated_group, ",") for _, comma_separated_group in ipairs(comma_separated_groups) do local conj_vowel = comma_separated_group[1] if conj_vowel ~= "a" and conj_vowel ~= "i" and conj_vowel ~= "u" then parse_err(("Expected %s conjugation vowel '%s' to be one of a, i or u in %s"):format( vtype, conj_vowel, table.concat(slash_separated_group))) end conj_vowel = dia[conj_vowel] local conj_vowel_footnotes = fetch_footnotes(comma_separated_group) -- Try to use strings when possible as it makes q() significantly more efficient. if conj_vowel_footnotes then table.insert(conj_vowel_objects, {form = conj_vowel, footnotes = conj_vowel_footnotes}) else table.insert(conj_vowel_objects, conj_vowel) end end return conj_vowel_objects end local conj_vowel_spec = { past = parse_conj_vowels(tilde_separated_groups[1], "past"), nonpast = parse_conj_vowels(tilde_separated_groups[2], "non-past"), } table.insert(base.conj_vowels, conj_vowel_spec) end end for i = 2, #dot_separated_groups do local dot_separated_group = dot_separated_groups[i] local first_element = dot_separated_group[1] if first_element == "addnote" then local spec_and_footnotes = fetch_footnotes(dot_separated_group) if #spec_and_footnotes < 2 then parse_err("Spec with 'addnote' should be of the form 'addnote[SLOTSPEC][FOOTNOTE][FOOTNOTE][...]'") end local slot_spec = table.remove(spec_and_footnotes, 1) local slot_spec_inside = rmatch(slot_spec, "^%[(.*)%]$") if not slot_spec_inside then parse_err("Internal error: slot_spec " .. slot_spec .. " should be surrounded with brackets") end local slot_specs = rsplit(slot_spec_inside, ",") -- FIXME: Here, [[Module:it-verb]] called strip_spaces(). Generally we don't do this. Should we? table.insert(base.addnote_specs, {slot_specs = slot_specs, footnotes = spec_and_footnotes}) elseif first_element:find("^var:") then if #dot_separated_group > 1 then parse_err(("Can't attach footnotes to 'var:' spec '%s'"):format(first_element)) end base.variant = first_element:match("^var:(.*)$") elseif first_element:find("^I+V?:") then local root_cons, root_cons_value = first_element:match("^(I+V?):(.*)$") local root_index if root_cons == "I" then root_index = 1 elseif root_cons == "II" then root_index = 2 elseif root_cons == "III" then root_index = 3 elseif root_cons == "IV" then root_index = 4 if not base.verb_form:find("q$") then parse_err(("Can't specify root consonant IV for non-quadriliteral verb form '%s': %s"):format( base.verb_form, first_element)) end end local cons, translit = root_cons_value:match("^(.*)//(.*)$") if not cons then cons = root_cons_value end local root_footnotes = fetch_footnotes(dot_separated_group) if not translit and not root_footnotes then base.root_consonants[root_index] = cons else base.root_consonants[root_index] = {form = cons, translit = translit, footnotes = root_footnotes} end elseif first_element:find("^[a-z][a-z0-9_]*:") then local slot_or_stem, remainder = first_element:match("^(.-):(.*)$") dot_separated_group[1] = remainder local comma_separated_groups = put.split_alternating_runs_and_strip_spaces(dot_separated_group, "[,،]") if overridable_stems[slot_or_stem] then if base.user_stem_overrides[slot_or_stem] then parse_err("Overridable stem '" .. slot_or_stem .. "' specified twice") end base.user_stem_overrides[slot_or_stem] = overridable_stems[slot_or_stem](comma_separated_groups, {prefix = slot_or_stem, base = base, parse_err = parse_err, fetch_footnotes = fetch_footnotes}) else -- assume a form override; we validate further later when the possible slots are available if base.user_slot_overrides[slot_or_stem] then parse_err("Form override '" .. slot_or_stem .. "' specified twice") end base.user_slot_overrides[slot_or_stem] = allow_multiple_values_for_override(comma_separated_groups, {prefix = slot_or_stem, base = base, parse_err = parse_err, fetch_footnotes = fetch_footnotes}, "is form override") end elseif indicator_flags[first_element] then if #dot_separated_group > 1 then parse_err("No footnotes allowed with '" .. first_element .. "' spec") end if base[first_element] then parse_err("Spec '" .. first_element .. "' specified twice") end base[first_element] = true else local passive, uncertain = first_element:match("^(.*)(%?)$") passive = passive or first_element uncertain = not not uncertain if passive_types[passive] then if #dot_separated_group > 1 then parse_err("No footnotes allowed with '" .. passive .. "' spec") end if base.passive then parse_err("Value for passive type specified twice") end base.passive = passive base.passive_uncertain = uncertain else parse_err("Unrecognized spec '" .. first_element .. "'") end end end return base end -- Normalize all lemmas, substituting the pagename for blank lemmas and adding links to multiword lemmas. local function normalize_all_lemmas(alternant_multiword_spec, head) -- (1) Add links to all before and after text. Remember the original text so we can reconstruct the verb spec later. if not alternant_multiword_spec.args.noautolinktext then iut.add_links_to_before_and_after_text(alternant_multiword_spec, "remember original") end -- (2) Remove any links from the lemma, but remember the original form so we can use it below in the 'lemma_linked' -- form. iut.map_word_specs(alternant_multiword_spec, function(base) if base.lemma == "" then base.lemma = head end base.user_specified_lemma = base.lemma base.lemma = m_links.remove_links(base.lemma) base.user_specified_verb = base.lemma base.verb = base.user_specified_verb local linked_lemma if alternant_multiword_spec.args.noautolinkverb or base.user_specified_lemma:find("%[%[") then linked_lemma = base.user_specified_lemma else -- Add links to the lemma so the user doesn't specifically need to, since we preserve -- links in multiword lemmas and include links in non-lemma forms rather than allowing -- the entire form to be a link. linked_lemma = iut.add_links(base.user_specified_lemma) end base.linked_lemma = linked_lemma end) end --W: Lexical exceptions — yāʾ-middle roots whose Form IV (أفعل) keeps the yāʾ SOUND -- instead of undergoing the regular إعلال to a hollow verb (أَفْيَلَ, not أَفَالَ). -- These are attested verbs (not the صفة مشبهة like أَخْيَف/خَيْفاء); each is sourced below. -- Only Form IV is affected; forms VII/VIII/X of these roots remain hollow. -- Keyed by rad1..rad2..rad3. local SOUND_FORM_IV_ROOTS = { ["خيل"] = true, -- أَخْيَلَ: أخيلت السماءُ تهيأت للمطر — المعجم الوسيط ج1 ص266 (وبه أَخالت أيضًا) ["غيل"] = true, -- أَغْيَلَ: أغيلته فهي مُغْيِل، سقته الغَيْل — لسان العرب ج11 ص111 (وبه أغالت أيضًا) ["حيج"] = true, -- أَحْيَجَ: أحيجت الأرضُ، على خلاف القياس — تاج العروس ج5 ص500 ["حين"] = true, -- أَحْيَنَ: أحين القومُ آن لهم أن يبلغوا ما أملوه — المعجم الوسيط ج1 ص212 ["خيف"] = true, -- أَخْيَفَ: أخيف الحاجُّ نزلوا خيف منى — كتاب الأفعال لابن القوطية ص35 ["ريف"] = true, -- أَرْيَفَ: أريفت الأرضُ إريافًا (خصبت) — المحيط في اللغة ج10 ص256 ["زين"] = true, -- أَزْيَنَ: أزينت الأرضُ، حسّنها عشبها — مقاييس اللغة ج3 ص41 } -- Determine weakness from radicals. Used when root given in place of lemma (e.g. for {{ar-verb forms}}). local function weakness_from_radicals(form, rad1, rad2, rad3, rad4) local weakness = nil local quadlit = form:find("q$") -- If weakness unspecified, derive from radicals. if not quadlit then if is_waw_ya(rad3) and rad1 == W and form == "I" then weakness = "assimilated+final-weak" elseif is_waw_ya(rad3) and vform_supports_final_weak(form) then weakness = "final-weak" elseif rad2 == rad3 and vform_supports_geminate(form) then weakness = "geminate" elseif is_waw_ya(rad2) and vform_supports_hollow(form) then --W: Both wāw (و) and yāʾ (ي) in the middle position create hollow verbs, in form I -- (قَالَ from ق-و-ل, بَاعَ from ب-ي-ع) and in the augmented forms IV, VII, VIII, X -- (أَتَاسَ from ت-ي-س, أَبَانَ from ب-ي-ن, أَطَاحَ from ط-ي-ح — معجم متن اللغة). if form == "IV" and rad2 == Y and SOUND_FORM_IV_ROOTS[rad1 .. rad2 .. rad3] then -- Lexical exceptions whose Form IV keeps the yāʾ sound (أَفْيَلَ); see SOUND_FORM_IV_ROOTS. weakness = "sound" else weakness = "hollow" end elseif rad1 == W and form == "I" then weakness = "assimilated" else weakness = "sound" end else if is_waw_ya(rad4) then weakness = "final-weak" else weakness = "sound" end end return weakness end -- Join the infixed tāʔ (ت) to the first radical in form VIII verbs. This may cause assimilation of the tāʔ to the -- radical or in some cases the radical to the tāʔ. Used when a root is supplied instead of a lemma (which already has -- the appropriate assimilation in it). local function form_viii_join_ta(rad) if rad == W or rad == Y or rad == "ت" then return "تّ" elseif rad == "د" then return "دّ" elseif rad == "ث" then return "ثّ" elseif rad == "ذ" then return "ذّ" elseif rad == "ز" then return "زْد" elseif rad == "ص" then return "صْط" elseif rad == "ض" then return "ضْط" elseif rad == "ط" then return "طّ" elseif rad == "ظ" then return "ظّ" else return rad .. SK .. "ت" end end local function detect_indicator_spec(base) base.forms = {} base.stem_overrides = {} base.slot_overrides = {} if not base.conj_vowels[1] then -- These may be converted to inferred vowels. If not, we throw an error if form I and not passive-only. base.conj_vowels = {{ past = "-", nonpast = "-", }} else -- If multiple vowels specified for a given vowel type (e.g. a,u~u), expand so that each spec in local expansion = {} for _, spec in ipairs(base.conj_vowels) do for _, past in ipairs(spec.past) do for _, nonpast in ipairs(spec.nonpast) do table.insert(expansion, {past = past, nonpast = nonpast}) end end end base.conj_vowels = expansion end local vform = base.verb_form -- check for quadriliteral form (Iq, IIq, IIIq, IVq) base.quadlit = not not vform:find("q$") -- Infer radicals as necessary. We infer a separate set of radicals for each past~non-past vowel combination because -- they may be different (particularly with form-I hollow verbs). for _, vowel_spec in ipairs(base.conj_vowels) do -- NOTE: rad1, rad2, etc. refer to user-specified radicals, which are formobj tables that optionally specify an -- explicit manual translit, whereas ir1, ir2, etc. refer to inferred radicals, which are either strings or -- lists of possible radicals. local rads = base.root_consonants local rad1, rad2, rad3, rad4 = rads[1], rads[2], rads[3], rads[4] -- Default any unspecified radicals to radicals determined from the headword. The returned radicals may be -- lists of possible radicals, where the first radical should be chosen if the user didn't explicitly specify a -- radical but all are allowed. If `ambig = true` is set in the table, the radical is considered ambiguous and -- categories won't be created for weak radicals. local weakness, ir1, ir2, ir3, ir4 if vform ~= "none" then ir1, ir2, ir3 = rmatch(base.lemma, "^([^_])_([^_])_([^_])$") if not ir1 then ir1, ir2, ir3, ir4 = rmatch(base.lemma, "^([^_])_([^_])_([^_])_([^_])$") end if ir1 then -- root given instead of lemma weakness = weakness_from_radicals(vform, ir1, ir2, ir3, ir4) if vform == "VIII" then vowel_spec.form_viii_assim = form_viii_join_ta(ir1) end else local ret = export.infer_radicals { headword = base.lemma, vform = vform, passive = base.passive, past_vowel = vowel_spec.past, nonpast_vowel = vowel_spec.nonpast, is_reduced = base.reduced, } weakness, ir1, ir2, ir3, ir4 = ret.weakness, ret.rad1, ret.rad2, ret.rad3, ret.rad4 vowel_spec.form_viii_assim = ret.form_viii_assim vowel_spec.past = ret.past_vowel vowel_spec.nonpast = ret.nonpast_vowel vowel_spec.variant = base.variant or ret.variant end end -- For most ambiguous radicals, the choice of radical doesn't matter because it doesn't affect the conjugation -- one way or another. For form I hollow verbs, however, it definitely does. In fact, the choice of radical is -- critical even beyond the past and non-past vowels because it affects the form of the passive participle. So, -- check for this and signal an error if the radical could not be inferred and is not given explicitly. if vform == "I" and type(ir2) == "table" and ir2.need_radical and not rad2 then error("Unable to guess middle radical of hollow form I verb; need to specify radical explicitly") end if vform == "I" and not is_passive_only(base.passive) and ( rget(vowel_spec.past) == "-" or rget(vowel_spec.nonpast) == "-") then error("Form I verb that isn't passive-only or final-weak must have past~non-past vowels specified") end -- Convert ambiguous radicals. local function regularize_inferred_radical(rad) if type(rad) == "table" then if rad.ambig then return {form = rad[1], ambig = true} else return rad[1] end else return rad end end -- Return the appropriate radical at index `index` (1 through 4), based either on the user-specified radical -- `user_radical` or (if unspecified) `inferred_radical`, inferred from the unvocalized lemma. Two values are -- returned, the "regularized" version of the radical (where ambiguous inferred radicals are converted to their -- most likely actual radical) and the non-regularized version. The returned values are form objects rather than -- strings. local function fetch_radical(user_radical, inferred_radical, index) if not user_radical then return regularize_inferred_radical(inferred_radical), inferred_radical else local rad_formval = rget(user_radical) if type(inferred_radical) == "table" then local allowed_radical_set = m_table.listToSet(inferred_radical) if not allowed_radical_set[rad_formval] then error(("For lemma %s, radical %s ambiguously inferred as %s but user radical incompatibly given as %s"): format(base.lemma, index, list_to_text(inferred_radical, nil, " or "), rad_formval)) end elseif rad_formval ~= inferred_radical then error(("For lemma %s, radical %s inferred as %s but user radical incompatibly given as %s"): format(base.lemma, index, inferred_radical, rad_formval)) end return user_radical, user_radical end end if vform ~= "none" then vowel_spec.rad1, vowel_spec.unreg_rad1 = fetch_radical(rad1, ir1, 1) vowel_spec.rad2, vowel_spec.unreg_rad2 = fetch_radical(rad2, ir2, 2) vowel_spec.rad3, vowel_spec.unreg_rad3 = fetch_radical(rad3, ir3, 3) if base.quadlit then vowel_spec.rad4, vowel_spec.unreg_rad4 = fetch_radical(rad4, ir4, 4) end end if vform == "I" then -- If explicit weakness given using 'I-sound' or 'I-assimilated', we may need to adjust the inferred weakness. if base.explicit_weakness == "sound" then if weakness == "assimilated" then weakness = "sound" elseif weakness == "assimilated+final-weak" then -- Verbs like waniya~yawnā "to be faint; to languish" (although the defaults should handle this -- correctly) weakness = "final-weak" else error(("Can't specify form 'I-sound' when inferred weakness is '%s' for lemma %s"):format( weakness, base.lemma)) end elseif base.explicit_weakness == "assimilated" then if weakness == "sound" then -- i~a verbs like waṭiʔa~yaṭaʔu "to tread, to trample"; wasiʕa~yasaʕu "to be spacious; to be well-off"; -- waṯiʔa~yaṯaʔu "to get bruised, to be sprained", which would default to sound. weakness = "assimilated" elseif weakness == "final-weak" then -- For completeness; not clear if any verbs occur where this is needed. (There are plenty of -- assimilated+final-weak verbs but the defaults should take care of them.) weakness = "assimilated+final-weak" else error(("Can't specify form 'I-assimilated' when inferred weakness is '%s' for lemma %s"):format( weakness, base.lemma)) end elseif base.explicit_weakness then error(("Internal error: Unrecognized value '%s' for base.explicit_weakness"):format(base.explicit_weakness)) end elseif vform == "none" then weakness = base.explicit_weakness elseif base.explicit_weakness then error(("Internal error: Explicit weakness should not be specifiable except with forms I and none, but saw explicit weakness '%s' with verb form '%s'"): format(base.explicit_weakness, vform)) end vowel_spec.weakness = weakness if vform ~= "none" then -- Error if radicals are wrong given the weakness. More likely to happen if the weakness is explicitly given -- rather than inferred. Will also happen if certain incorrect letters are included as radicals e.g. hamza on -- top of various letters, alif maqṣūra, tā' marbūṭa. check_radicals(vform, weakness, rget(vowel_spec.rad1), rget(vowel_spec.rad2), rget(vowel_spec.rad3), base.quadlit and rget(vowel_spec.rad4) or nil) end -- Check the variant value. local form_iii_vi_geminate = (vform == "III" or vform == "VI") and rget(vowel_spec.rad2) == rget(vowel_spec.rad3) and not req(vowel_spec.rad2, Y) local hayy_i_x = hayy_radicals(vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3) and (vform == "I" or vform == "X") if form_iii_vi_geminate or hayy_i_x then if vowel_spec.variant and vowel_spec.variant ~= "long" and vowel_spec.variant ~= "short" and vowel_spec.variant ~= "both" then error(("For form-III/VI geminate verb or form-I/X verb with ح-ي-ي radicals, saw unrecognized 'var:%s' value; should be 'var:long', 'var:short' or 'var:both'"):format( vowel_spec.variant)) end elseif vowel_spec.variant then error(("Variant value 'var:%s' not allowed in this context"):format(vowel_spec.variant)) end end -- If form I, regroup expanded vowels for display purposes. if vform == "I" then local group_by_past = {} for _, vowel_spec in ipairs(base.conj_vowels) do m_table.insertIfNot(group_by_past, { past = undia[rget(vowel_spec.past)], nonpasts = {undia[rget(vowel_spec.nonpast)]}, }, { key = function(obj) return obj.past end, combine = function(obj1, obj2) for _, nonpast in ipairs(obj2.nonpasts) do m_table.insertIfNot(obj1.nonpasts, nonpast) end end, }) end local group_by_nonpast = {} for _, vowel_spec in ipairs(group_by_past) do m_table.insertIfNot(group_by_nonpast, { pasts = {vowel_spec.past}, nonpasts = vowel_spec.nonpasts, }, { key = function(obj) return obj.nonpasts end, combine = function(obj1, obj2) for _, past in ipairs(obj2.pasts) do m_table.insertIfNot(obj1.pasts, past) end end, }) end base.grouped_conj_vowels = group_by_nonpast end -- Set value of passive. If not specified, default is yes for forms II, III, IV and Iq; no but uncertainly for -- forms VII, IX, XI - XV and IIIq - IVq, as well as form I with past vowel u; impersonal but uncertainly for form -- V, VI, X and IIq, as well as form I with past vowel i; and yes but uncertainly for the remainder (form I with -- past vowel only a and form VIII). if not base.passive then base.passive_defaulted = true -- Temporary tracking for defaulted passives by verb form, weakness and (for form I) past/non-past vowels. track_if_ar_conj(base, "passive-defaulted/" .. vform) for _, vowel_spec in ipairs(base.conj_vowels) do track_if_ar_conj(base, "passive-defaulted/" .. vform.. "/" .. vowel_spec.weakness) if vform == "I" then --W: use rget(); the vowel is a form object when the user attached a footnote -- (e.g. <I/a[نادر]~u>), and undia[<table>] is nil, which crashes format() on Lua 5.1. local past_nonpast = ("%s~%s"):format(undia[rget(vowel_spec.past)], undia[rget(vowel_spec.nonpast)]) track_if_ar_conj(base, "passive-defaulted/I/" .. past_nonpast) track_if_ar_conj(base, "passive-defaulted/I/" .. vowel_spec.weakness .. "/" .. past_nonpast) end end if vform_probably_full_passive(vform) then base.passive = "pass" else base.passive_uncertain = true for _, vowel_spec in ipairs(base.conj_vowels) do if vform_probably_no_passive(vform, vowel_spec.weakness, vowel_spec.past, vowel_spec.nonpast) then base.passive = "nopass" break elseif vform_probably_impersonal_passive(vform, vowel_spec.weakness, vowel_spec.past, vowel_spec.nonpast) then base.passive = "ipass" break end end base.passive = base.passive or "pass" end end -- NOTE: Currently there are no built-in stems or form overrides for Arabic; this code is inherited from -- [[Module:ca-verb]], where such things do exist, and is kept for generality in case we decide in the future to -- implement such things. -- Override built-in verb stems and overrides with user-specified ones. for stem, values in pairs(base.user_stem_overrides) do base.stem_overrides[stem] = values end for slot, values in pairs(base.user_slot_overrides) do if not base.alternant_multiword_spec.verb_slots_map[slot] then error("Unrecognized override slot '" .. slot .. "': " .. base.angle_bracket_spec) end if export.unsettable_slots_set[slot] then error("Slot '" .. slot .. "' cannot be set using an override: " .. base.angle_bracket_spec) end if skip_slot(base, slot, "allow overrides") then error("Override slot '" .. slot .. "' would be skipped based on the passive, 'noimp' and/or 'no_nonpast' settings: " .. base.angle_bracket_spec) end base.slot_overrides[slot] = values end if base.verb_form == "none-final-weak" then for _, stem_type in ipairs { "past", "past_pass", "nonpast", "nonpast_pass" } do if base.stem_overrides[stem_type .. "_c"] or base.stem_overrides[stem_type .. "_v"] then error(("Specify past stem for verb type 'none-final-weak' using '%s:...' not '%s_c:...' or '%s_v:...'"): format(stem_type, stem_type, stem_type)) end end for _, stem_type in ipairs { "past", "nonpast" } do if base.stem_overrides[stem_type] or not base.stem_overrides[stem_type .. "_final_weak_vowel"] then error(("For verb type 'none-final-weak', if '%s:...' specified, so must '%s_final_weak_vowel:...'"): format(stem_type, stem_type)) end end end end local function detect_all_indicator_specs(alternant_multiword_spec) add_slots(alternant_multiword_spec) alternant_multiword_spec.verb_forms = {} -- This means at least one individual base had the slot marked as explicitly missing. Another base (e.g. when -- there are multiple alternants) might have a value for the slot. In practice, we only respect this when there are -- no overall values in the slot and `slot_uncertain` isn't set; in this case, we display "no ..." for the slot -- instead of simply not displaying anything for the slot. alternant_multiword_spec.slot_explicitly_missing = {} -- This means at least one individual base had no values for the slot and the slot marked as explicitly uncertain. -- Note that this is different from a value being present but marked as uncertain (e.g. if an override was given -- with a ? after it); this causes the form object for the value to have `uncertain = true` set. If there are no -- overall values in the slot and `slot_uncertain` is set, we display this in the headword. alternant_multiword_spec.slot_uncertain = {} iut.map_word_specs(alternant_multiword_spec, function(base) -- So arguments, etc. can be accessed. WARNING: Creates circular reference. base.alternant_multiword_spec = alternant_multiword_spec detect_indicator_spec(base) if not base.nocat then m_table.insertIfNot(alternant_multiword_spec.verb_forms, base.verb_form) end if base.passive then alternant_multiword_spec.passive = base.passive end if base.passive_uncertain then alternant_multiword_spec.passive_uncertain = true end for slot, _ in pairs(base.slot_explicitly_missing) do alternant_multiword_spec.slot_explicitly_missing[slot] = true end end) end local function determine_slot_uncertainty_from_forms(alternant_multiword_spec) iut.map_word_specs(alternant_multiword_spec, function(base) -- If no verbal noun and verb form is not 'none' (manually-specified stems) — which currently only happens for -- form I — and the verbal noun wasn't explicitly indicated as missing using <vn:->, we assume it's just -- unknown/unspecified rather than missing. Same with active participles. for uncertain_slot, _ in pairs(slots_that_may_be_uncertain) do if not base.forms[uncertain_slot] and vform ~= "none" and not skip_slot(base, uncertain_slot) then base.slot_uncertain[uncertain_slot] = true end end -- Propagate slot uncertainty up. Currently only the verbal noun can have this set but we write the code -- generally. for slot, _ in pairs(base.slot_uncertain) do alternant_multiword_spec.slot_uncertain[slot] = true end end) -- If slot is uncertain and has no value, explicitly set its value to "?". for uncertain_slot, _ in pairs(slots_that_may_be_uncertain) do if not alternant_multiword_spec.forms[uncertain_slot] and alternant_multiword_spec.slot_uncertain[uncertain_slot] then alternant_multiword_spec.forms[uncertain_slot] = {{form = "?"}} end end end -- Determine certain properties of the verb from the overall forms, such as whether the verb is active-only or -- passive-only, is impersonal, lacks an imperative, etc. local function determine_verb_properties_from_forms(alternant_multiword_spec) alternant_multiword_spec.has_active = false alternant_multiword_spec.has_passive = false alternant_multiword_spec.has_non_impers_active = false alternant_multiword_spec.has_non_impers_passive = false alternant_multiword_spec.has_imp = false alternant_multiword_spec.has_past = false alternant_multiword_spec.has_nonpast = false for slot, _ in pairs(alternant_multiword_spec.forms) do if slot == "ap" or slot:find("[123]") and not slot:find("_pass") then alternant_multiword_spec.has_active = true end if slot == "pp" or slot:find("[123]") and slot:find("_pass") then alternant_multiword_spec.has_passive = true end if slot:find("[123]") and not slot:find("pass_[123]") and not slot:find("3ms") then alternant_multiword_spec.has_non_impers_active = true end if slot:find("pass_[123]") and not slot:find("3ms") then alternant_multiword_spec.has_non_impers_passive = true end if slot:find("^imp_") then alternant_multiword_spec.has_imp = true end if slot:find("^past_") then alternant_multiword_spec.has_past = true end if slot:find("^ind_") or slot:find("^sub_") or slot:find("^juss_") then alternant_multiword_spec.has_nonpast = true end end end local function add_categories_and_annotation(alternant_multiword_spec, base, multiword_lemma, insert_ann, insert_cat) -- Useful e.g. in constructing suppletive verbs out of parts. For a verb like جاء or أتى whose imperative comes -- from the unrelated verb تعالى, we don't want the latter verb showing up in categories or annotations. if base.nocat then return end local vform = base.verb_form if vform ~= "none" then insert_ann("form", vform) insert_cat("form-" .. vform .. " verbs") --W: Add morphological pattern corresponding to the form local morph_pattern = FORM_TO_MORPHOLOGICAL_PATTERN[vform] if morph_pattern then insert_ann("morph_pattern", morph_pattern) end end if base.reduced then insert_ann("reduced", "reduced") if vform ~= "none" then insert_cat("form-" .. vform .. " reduced verbs") end end if base.quadlit then insert_cat("verbs with quadriliteral roots") end if base.passive_defaulted then insert_cat("verbs with defaulted passive") end for _, vowel_spec in ipairs(base.conj_vowels) do local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local weakness = vowel_spec.weakness -- We have to distinguish weakness by form and weakness by conjugation. Weakness by form merely indicates the -- presence of weak letters in certain positions in the radicals. Weakness by conjugation is related to how the -- verbs are conjugated. For example, form-II verbs that are "hollow by form" (middle radical is wāw or yāʾ) are -- conjugated as sound verbs. Another example: form-I verbs with initial wāw are "assimilated by form" and most -- are assimilated by conjugation as well, but a few are sound by conjugation, e.g. wajuha yawjuhu "to be -- distinguished" (rather than wajuha yajuhu); similarly for some hollow-by-form verbs in various forms, e.g. -- form VIII izdawaja yazdawiju "to be in pairs" (rather than izdāja yazdāju). Categories referring to weakness -- always refer to weakness by conjugation; weakness by form is distinguished only by categories such as -- [[:Category:Arabic form-III verbs with و as second radical]]. insert_ann("weakness", weakness) if vform ~= "none" then insert_cat(("%s form-%s verbs"):format(weakness, vform)) end local function radical_is_ambiguous(rad) return type(rad) == "table" and rad.ambig end local function radical_is_unambiguous_weak(rad) return not radical_is_ambiguous(rad) and (is_waw_ya(rad) or req(rad, HAMZA)) end if vform ~= "none" then local ur1, ur2, ur3, ur4 = vowel_spec.unreg_rad1, vowel_spec.unreg_rad2, vowel_spec.unreg_rad3, vowel_spec.unreg_rad4 -- Create headword categories based on the radicals. Do the following before -- converting the Latin radicals into Arabic ones so we distinguish -- between ambiguous and non-ambiguous radicals. if radical_is_ambiguous(ur1) or radical_is_ambiguous(ur2) or radical_is_ambiguous(ur3) or ur4 and radical_is_ambiguous(ur4) then insert_cat("verbs with ambiguous radicals") end if radical_is_unambiguous_weak(ur1) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur1) .. " as first radical") end if radical_is_unambiguous_weak(ur2) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur2) .. " as second radical") end if radical_is_unambiguous_weak(ur3) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur3) .. " as third radical") end if ur4 and radical_is_unambiguous_weak(ur4) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur4) .. " as fourth radical") end end end if vform == "I" and not is_passive_only(base.passive) then for _, vowel_spec in ipairs(base.grouped_conj_vowels) do insert_ann("vowels", ("%s ~ %s"):format(table.concat(vowel_spec.pasts, "/"), table.concat(vowel_spec.nonpasts, "/"))) for _, past in ipairs(vowel_spec.pasts) do for _, nonpast in ipairs(vowel_spec.nonpasts) do if past == "-" or nonpast == "-" then error("Internal error: Saw form I past vowel %s and non-past vowel %s but - in place of vowel should have triggered an error earlier") end insert_cat(("form-I verbs with past vowel %s and non-past vowel %s"):format(past, nonpast)) --W: Add morphological pattern for form I based on vowels local form_i_with_vowels = ("I/%s~%s"):format(past, nonpast) local morph_pattern = FORM_TO_MORPHOLOGICAL_PATTERN[form_i_with_vowels] if morph_pattern then insert_ann("morph_pattern", morph_pattern) end end end end end for slot, name in pairs(slots_that_may_be_uncertain) do if base.slot_uncertain[slot] then -- An unspecified and non-defaulted verbal noun (form I) is considered uncertain rather than explicitly -- missing. Use <vn:-> to explicitly indicate the lack of verbal noun. Same for form-I stative active -- participles. insert_cat(("verbs with unknown or uncertain %ss"):format(name)) end end if base.irregular then insert_ann("irreg", "irregular") insert_cat("irregular verbs") end end -- Compute the categories to add the verb to, as well as the annotation to display in the conjugation title bar. We -- combine the code to do these functions as both categories and title bar contain similar information. local function compute_categories_and_annotation(alternant_multiword_spec) alternant_multiword_spec.categories = {} local ann = {} alternant_multiword_spec.annotation = ann ann.form = {} ann.morph_pattern = {} --W: arabic morphological pattern corresponding to the form ann.weakness = {} ann.vowels = {} ann.passive = nil ann.reduced = {} ann.irreg = {} ann.defective = {} local multiword_lemma = false for _, slot in ipairs(export.potential_lemma_slots) do if alternant_multiword_spec.forms[slot] then for _, formobj in ipairs(alternant_multiword_spec.forms[slot]) do if formobj.form:find(" ") then multiword_lemma = true break end end break end end local function insert_ann(anntype, value) m_table.insertIfNot(alternant_multiword_spec.annotation[anntype], value) end local function insert_cat(cat, also_when_multiword) -- Don't place multiword terms in categories like 'Arabic form-II verbs' to avoid spamming the categories with -- such terms. if also_when_multiword or not multiword_lemma then m_table.insertIfNot(alternant_multiword_spec.categories, "Arabic " .. cat) end end iut.map_word_specs(alternant_multiword_spec, function(base) add_categories_and_annotation(alternant_multiword_spec, base, multiword_lemma, insert_ann, insert_cat) end) for slot, name in pairs(slots_that_may_be_uncertain) do if alternant_multiword_spec.forms[slot] then for _, form in ipairs(alternant_multiword_spec.forms[slot]) do if form.uncertain then if form.form == "?" then insert_cat(("verbs with explicitly unknown %ss"):format(name)) else insert_cat(("verbs needing %s checked"):format(name)) end break end end end end if alternant_multiword_spec.has_active then if alternant_multiword_spec.has_passive and alternant_multiword_spec.has_non_impers_passive then insert_cat("verbs with full passive") ann.passive = "full passive" elseif alternant_multiword_spec.has_passive then insert_cat("verbs with impersonal passive") ann.passive = "impersonal passive" else insert_cat("verbs lacking passive forms") ann.passive = "no passive" end else if alternant_multiword_spec.has_non_impers_passive then insert_cat("passive verbs") insert_cat("verbs with full passive") ann.passive = "passive-only" else insert_cat("passive verbs") insert_cat("impersonal verbs") insert_cat("verbs with impersonal passive") ann.passive = "impersonal (passive-only)" end end if alternant_multiword_spec.passive_uncertain then insert_cat("verbs needing passive checked") ann.passive = ann.passive .. ' <abbr title="passive status uncertain">(?)</abbr>' end if alternant_multiword_spec.has_active and not alternant_multiword_spec.has_imp then insert_ann("defective", "no imperative") insert_cat("verbs lacking imperative forms") end if not alternant_multiword_spec.has_past then insert_ann("defective", "no past") insert_cat("verbs lacking past forms") end if not alternant_multiword_spec.has_nonpast then insert_ann("defective", "no non-past") insert_cat("verbs lacking non-past forms") end local ann_parts = {} local function insert_ann_part(part, conj) local val = table.concat(ann[part], conj or " or ") if val ~= "" and val ~= "regular" then table.insert(ann_parts, val) end end insert_ann_part("form") insert_ann_part("weakness") insert_ann_part("reduced") insert_ann_part("vowels") if ann.passive then table.insert(ann_parts, ann.passive) end insert_ann_part("irreg") insert_ann_part("defective", "، ") --W: Save morph_pattern before overwriting annotation with string alternant_multiword_spec.morph_pattern = ann.morph_pattern alternant_multiword_spec.annotation = table.concat(ann_parts, "، ") end local function show_forms(alternant_multiword_spec) local lemmas = {} for _, slot in ipairs(export.potential_lemma_slots) do if alternant_multiword_spec.forms[slot] then for _, formobj in ipairs(alternant_multiword_spec.forms[slot]) do table.insert(lemmas, formobj) end break end end alternant_multiword_spec.lemmas = lemmas -- save for later use in make_table() alternant_multiword_spec.vn = alternant_multiword_spec.forms.vn -- save for later use in make_table() -- Reconstruct the original verb spec without overrides for verbal nouns and participles, since those specific slots -- are ignored by {{ar-verb form}}. Compute this once beforehand; `transform_accel_obj` is called repeatedly on each -- form and we don't want to compute this repeatedly. local reconstructed_verb_spec = iut.reconstruct_original_spec(alternant_multiword_spec, { preprocess_angle_bracket_spec = function(spec) spec = spec:match("^<(.*)>$") assert(spec) local segments = put.parse_multi_delimiter_balanced_segment_run(spec, {{"[", "]"}, {"<", ">"}}) local dot_separated_groups = put.split_alternating_runs_and_strip_spaces(segments, "%.") -- Rejoin each dot-separated group into a single string, since we aren't actually going to do any parsing -- of bracket-bounded textual runs; then filter out overrides for verbal nouns and participles. local filtered_indicators = {} for _, dot_separated_group in ipairs(dot_separated_groups) do local indicator = table.concat(dot_separated_group) -- FIXME: Do we want to filter out any other indicators? if not (indicator:find("^vn:") or indicator:find("^[ap]p:")) then table.insert(filtered_indicators, indicator) end end return ("<%s>"):format(table.concat(filtered_indicators, ".")) end, }) -- If we're dealing with a single word, no alternants and a single verb form, use the auto-conjugation-fetching -- variant. local reconstructed_lemma, inside = reconstructed_verb_spec:match("^([^ <>()]+)(%b<>)$") if inside and alternant_multiword_spec.verb_forms[1] and not alternant_multiword_spec.verb_forms[2] then reconstructed_verb_spec = ("+%s<%s>"):format(reconstructed_lemma, alternant_multiword_spec.verb_forms[1]) end local function transform_accel_obj(slot, formobj, accel_obj) if not accel_obj then return accel_obj end if slot == "ap" or slot == "pp" or slot == "vn" then -- FIXME: [[Module:accel]] can't correctly handle more than one verb form for participles and verbal nouns accel_obj.form = slot .. "-" .. table.concat(alternant_multiword_spec.verb_forms, "،") else accel_obj.form = "verb-form-" .. reconstructed_verb_spec end return accel_obj end local function generate_link(data) local form = data.form local term = form.formval_for_link local alt = form.alt if term == "?" then term = nil alt = "?" end --W: Create simple link for verb forms without #Arabic anchor local display = alt or term local link if display then link = link_term_simple(display) else link = "" end link = link .. iut.get_footnote_text(form.footnotes, data.footnote_obj) --W: qualifier/label rendering removed along with the q/qq/l/ll modifiers; -- it required [[Module:pron qualifier]], absent on ar.wiktionary. return link end local props = { lang = lang, lemmas = lemmas, transform_accel_obj = transform_accel_obj, generate_link = generate_link, slot_list = alternant_multiword_spec.verb_slots, include_translit = false, } iut.show_forms(alternant_multiword_spec.forms, props) end --W: Tatweel and the invisible direction/joining marks survive copy-paste and -- MediaWiki keeps them in page titles, so strip them from both sides before -- comparing a |بؤرة= value against a generated form. local FOCUS_IGNORE = "[" .. u(0x0640) .. u(0x061C) .. u(0x200B) .. "-" .. u(0x200F) .. u(0x202A) .. "-" .. u(0x202E) .. u(0xFEFF) .. "]" local function normalize_for_focus(s) return (rsub(s, FOCUS_IGNORE, "")) end --W: Which slots hold `focus`? Must run before show_forms() turns the form -- lists into rendered wikitext. local function find_focus_slots(alternant_multiword_spec, focus) if not focus or focus == "" then return nil end local target = normalize_for_focus(focus) local slots = {} for slot, forms in pairs(alternant_multiword_spec.forms) do if type(forms) == "table" then for _, formobj in ipairs(forms) do if type(formobj) == "table" and formobj.form and normalize_for_focus(formobj.form) == target then slots[slot] = true break end end end end return slots end --W: Wrap those slots' rendered wikitext so the stylesheet can mark them. -- Styled by [[Template:ar-verb-form/style.css]] (.ar-conj .avf-focus). local function apply_focus(alternant_multiword_spec, focus_slots) if not focus_slots then return end for slot in pairs(focus_slots) do local rendered = alternant_multiword_spec.forms[slot] if type(rendered) == "string" and rendered ~= "" then alternant_multiword_spec.forms[slot] = '<span class="avf-focus">' .. rendered .. "</span>" end end end ------------------------------------------------------------------------------- -- Functions to create inflection tables -- ------------------------------------------------------------------------------- -- Make the conjugation table. Called from export.show(). local function make_table(alternant_multiword_spec) local text = mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-top', args = { title = 'تصريف {title}', --W: |tall= is what puts mw-collapsed on the wrapper. |موسع= drops it. tall = alternant_multiword_spec.expanded and nil or 'yes', palette = 'green', category = 'conjugation', class = 'tr-alongside', -- temp hack to prevent extra line break } } text = text .. [=[ ! colspan="6" | <<الْمَصْدَر>> | colspan="7" | {vn} ]=] if alternant_multiword_spec.has_active then text = text .. [=[ |- ! colspan="6" | <<اِسْم الْفَاعِل>> | colspan="7" | {ap} ]=] end if alternant_multiword_spec.has_passive then text = text .. [=[ |- ! colspan="6" | <<اِسْم الْمَفْعُول>> | colspan="7" | {pp} ]=] end text = text .. [=[ |- ! colspan="999" class="separator" | ]=] if alternant_multiword_spec.has_active then text = text .. [=[ |- ! colspan="12" class="outer" | <<الْفِعْل الْمَعْلُوم>> |- ! colspan="2" | ! colspan="3" | <<الْمُفْرَد>> ! rowspan="12" class="separator" | ! colspan="2" | <<الْمُثَنَّى>> ! rowspan="12" class="separator" | ! colspan="3"| <<الْجَمْع>> |- ! colspan="2"| ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> |- ! rowspan="2" | <<الْمَاضِي>> ! class="secondary" | المذكر | rowspan="2" | {past_1s} | {past_2ms} | {past_3ms} | rowspan="2" | {past_2d} | {past_3md} | rowspan="2" | {past_1p} | {past_2mp} | {past_3mp} |- ! class="secondary" | المؤنث | {past_2fs} | {past_3fs} | {past_3fd} | {past_2fp} | {past_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَرْفُوع>> ! class="secondary" | المذكر | rowspan="2" | {ind_1s} | {ind_2ms} | {ind_3ms} | rowspan="2" | {ind_2d} | {ind_3md} | rowspan="2" | {ind_1p} | {ind_2mp} | {ind_3mp} |- ! class="secondary" | المؤنث | {ind_2fs} | {ind_3fs} | {ind_3fd} | {ind_2fp} | {ind_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَنْصُوب>> ! class="secondary" | المذكر | rowspan="2" | {sub_1s} | {sub_2ms} | {sub_3ms} | rowspan="2" | {sub_2d} | {sub_3md} | rowspan="2" | {sub_1p} | {sub_2mp} | {sub_3mp} |- ! class="secondary" | المؤنث | {sub_2fs} | {sub_3fs} | {sub_3fd} | {sub_2fp} | {sub_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَجْزُوم>> ! class="secondary" | المذكر | rowspan="2" | {juss_1s} | {juss_2ms} | {juss_3ms} | rowspan="2" | {juss_2d} | {juss_3md} | rowspan="2" | {juss_1p} | {juss_2mp} | {juss_3mp} |- ! class="secondary" | المؤنث | {juss_2fs} | {juss_3fs} | {juss_3fd} | {juss_2fp} | {juss_3fp} |- ! rowspan="2" | <<الْأَمْر>> ! class="secondary" | المذكر | rowspan="2" | | {imp_2ms} | rowspan="2" | | rowspan="2" | {imp_2d} | rowspan="2" | | rowspan="2" | | {imp_2mp} | rowspan="2" | |- ! class="secondary" | المؤنث | {imp_2fs} | {imp_2fp} ]=] end if alternant_multiword_spec.has_passive then text = text .. [=[ |- ! colspan="999" class="separator" | |- ! colspan="12" class="outer" | <<الْفِعْل الْمَجْهُول>> |- ! colspan="2" | ! colspan="3" | <<الْمُفْرَد>> ! rowspan="10" class="separator" | ! colspan="2" | <<الْمُثَنَّى>> ! rowspan="10" class="separator" | ! colspan="3" | <<الْجَمْع>> |- ! colspan="2" | ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> |- ! rowspan="2" | <<الْمَاضِي>> ! class="secondary" | المذكر | rowspan="2" | {past_pass_1s} | {past_pass_2ms} | {past_pass_3ms} | rowspan="2" | {past_pass_2d} | {past_pass_3md} | rowspan="2" | {past_pass_1p} | {past_pass_2mp} | {past_pass_3mp} |- ! class="secondary" | المؤنث | {past_pass_2fs} | {past_pass_3fs} | {past_pass_3fd} | {past_pass_2fp} | {past_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَرْفُوع>> ! class="secondary" | المذكر | rowspan="2" | {ind_pass_1s} | {ind_pass_2ms} | {ind_pass_3ms} | rowspan="2" | {ind_pass_2d} | {ind_pass_3md} | rowspan="2" | {ind_pass_1p} | {ind_pass_2mp} | {ind_pass_3mp} |- ! class="secondary" | المؤنث | {ind_pass_2fs} | {ind_pass_3fs} | {ind_pass_3fd} | {ind_pass_2fp} | {ind_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَنْصُوب>> ! class="secondary" | المذكر | rowspan="2" | {sub_pass_1s} | {sub_pass_2ms} | {sub_pass_3ms} | rowspan="2" | {sub_pass_2d} | {sub_pass_3md} | rowspan="2" | {sub_pass_1p} | {sub_pass_2mp} | {sub_pass_3mp} |- ! class="secondary" | المؤنث | {sub_pass_2fs} | {sub_pass_3fs} | {sub_pass_3fd} | {sub_pass_2fp} | {sub_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَجْزُوم>> ! class="secondary" | المذكر | rowspan="2" | {juss_pass_1s} | {juss_pass_2ms} | {juss_pass_3ms} | rowspan="2" | {juss_pass_2d} | {juss_pass_3md} | rowspan="2" | {juss_pass_1p} | {juss_pass_2mp} | {juss_pass_3mp} |- ! class="secondary" | المؤنث | {juss_pass_2fs} | {juss_pass_3fs} | {juss_pass_3fd} | {juss_pass_2fp} | {juss_pass_3fp} ]=] end text = text .. mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-bottom', args = { notes = '{footnote}', } } local forms = alternant_multiword_spec.forms if not alternant_multiword_spec.lemmas then forms.title = "—" else local linked_lemmas = {} for _, form in ipairs(alternant_multiword_spec.lemmas) do --W: Create simple link for lemmas without #Arabic anchor -- table.insert(linked_lemmas, link_term(form.form, "term")) table.insert(linked_lemmas, link_term_simple(form.form)) end forms.title = table.concat(linked_lemmas, "، ") end local ann_parts = {} if alternant_multiword_spec.annotation ~= "" then table.insert(ann_parts, alternant_multiword_spec.annotation) end if alternant_multiword_spec.vn then local linked_vns = {} for _, form in ipairs(alternant_multiword_spec.vn) do table.insert(linked_vns, link_term(form.form, "term")) end table.insert(ann_parts, (#linked_vns > 1 and "verbal nouns" or "verbal noun") .. " " .. table.concat(linked_vns, "، ")) end local annotation = table.concat(ann_parts, "، ") --W: use only arabic morphological pattern in title annotation local morph_patterns = alternant_multiword_spec.morph_pattern if morph_patterns and #morph_patterns > 0 then annotation = table.concat(morph_patterns, "، ") forms.title = forms.title .. " (" .. annotation .. ")" end -- Format the table. local tagged_table = rsub(text, "<<(.-)>>", tag_text) return m_string_utilities.format(tagged_table, forms) end -- Helper function to get root letters and verb classification for simplified table header -- Returns: root_display (e.g., "ح س ب"), verb_type (e.g., "فعل ثلاثي صحيح سالم") local function get_verb_info(alternant_multiword_spec) local root_display = "" local verb_type = "فعل" local rad1, rad2, rad3, rad4 -- Extract radicals from the base word spec using iut.map_word_specs -- This accesses the radicals directly from the parsed verb specification iut.map_word_specs(alternant_multiword_spec, function(base) -- Get radicals from the first conjugation vowel spec if base.conj_vowels and #base.conj_vowels > 0 then local vowel_spec = base.conj_vowels[1] -- Extract radicals, handling both table and string types local function extract_radical(rad) if type(rad) == "table" then -- If it's a table, get the first element or the string representation return rad[1] or rget(rad) else return rad end end rad1 = extract_radical(vowel_spec.rad1) rad2 = extract_radical(vowel_spec.rad2) rad3 = extract_radical(vowel_spec.rad3) rad4 = vowel_spec.rad4 and extract_radical(vowel_spec.rad4) end end) -- Get basic/derived classification from morphological pattern local basic_deriv if alternant_multiword_spec.morph_pattern and #alternant_multiword_spec.morph_pattern > 0 then local morph_pattern = alternant_multiword_spec.morph_pattern[1] basic_deriv = MORPHOLOGICAL_PATTERN_TO_BASIC_DERIV[morph_pattern] end -- Format root display with spaces between letters if rad1 and rad2 and rad3 then if rad4 then -- Quadrilateral root_display = rad1 .. " " .. rad2 .. " " .. rad3 .. " " .. rad4 verb_type = "فعل رباعي" if basic_deriv then verb_type = verb_type .. " " .. basic_deriv end else -- triliteral root_display = rad1 .. " " .. rad2 .. " " .. rad3 verb_type = "فعل ثلاثي" if basic_deriv then verb_type = verb_type .. " " .. basic_deriv if basic_deriv == "مُجرَّد" then --W: the classification concerns only triliteral basic verbs (الثلاثي المُجرَّد) local classification = export.classify_triliteral_verb(rad1, rad2, rad3) verb_type = verb_type .. " " .. classification end end end end return root_display, verb_type end -- Make simplified conjugation table for ar.wiktionary. Called from export.show(). -- This table shows only past, present indicative, and imperative forms. -- No passive voice, no participles, no verbal nouns. local function make_table_ar(alternant_multiword_spec) local text = mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-top', args = { title = 'تصريف {title}', --W: |tall= is what puts mw-collapsed on the wrapper. |موسع= drops it. tall = alternant_multiword_spec.expanded and nil or 'yes', palette = 'green', category = 'conjugation', class = 'tr-alongside', -- temp hack to prevent extra line break } } -- Get verb root and classification local root_display, verb_type = get_verb_info(alternant_multiword_spec) -- First row: Root and verb type spanning all columns text = text .. "! colspan=\"2\" | <<الجذر>>: " .. root_display .. "\n" text = text .. "| colspan=\"3\" | <<'''" .. verb_type .. "'''>>\n" text = text .. [=[ |- ! colspan="2" | <<الضمائر>> ! <<الماضي>> ! <<المضارع>> ! <<الأمر>> |- ! rowspan="2" | <<المتكلّم>> | <<أنا>> | {past_1s} | {ind_1s} | |- | <<نحن>> | {past_1p} | {ind_1p} | |- ! rowspan="5" | <<المخاطب>> | <<أنتَ>> | {past_2ms} | {ind_2ms} | {imp_2ms} |- | <<أنتِ>> | {past_2fs} | {ind_2fs} | {imp_2fs} |- | <<أنتما>> | {past_2d} | {ind_2d} | {imp_2d} |- | <<أنتم>> | {past_2mp} | {ind_2mp} | {imp_2mp} |- | <<أنتنّ>> | {past_2fp} | {ind_2fp} | {imp_2fp} |- ! rowspan="6" | <<الغائب>> | <<هو>> | {past_3ms} | {ind_3ms} | |- | <<هي>> | {past_3fs} | {ind_3fs} | |- | <<هما>> | {past_3md} | {ind_3md} | |- | <<هما>> | {past_3fd} | {ind_3fd} | |- | <<هم>> | {past_3mp} | {ind_3mp} | |- | <<هنّ>> | {past_3fp} | {ind_3fp} | ]=] text = text .. mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-bottom', args = { notes = '{footnote}', } } local forms = alternant_multiword_spec.forms if not alternant_multiword_spec.lemmas then forms.title = "—" else local linked_lemmas = {} for _, form in ipairs(alternant_multiword_spec.lemmas) do --W: Create simple link for lemmas without #Arabic anchor -- table.insert(linked_lemmas, link_term(form.form, "term")) table.insert(linked_lemmas, link_term_simple(form.form)) end forms.title = table.concat(linked_lemmas, "، ") end local ann_parts = {} if alternant_multiword_spec.annotation ~= "" then table.insert(ann_parts, alternant_multiword_spec.annotation) end local annotation = table.concat(ann_parts, "، ") --W: use only arabic morphological pattern in title annotation local morph_patterns = alternant_multiword_spec.morph_pattern if morph_patterns and #morph_patterns > 0 then annotation = table.concat(morph_patterns, "، ") forms.title = forms.title .. " (" .. annotation .. ")" end -- Format the table. local tagged_table = rsub(text, "<<(.-)>>", tag_text) return m_string_utilities.format(tagged_table, forms) end ------------------------------------------------------------------------------- -- Verb classification functions -- ------------------------------------------------------------------------------- --[=[ تصنيف الفعل الثلاثي المُجرَّد حسب نوعه Classify an Arabic triliteral basic verb root based on its three letters. @param r1 الحرف الأول (first root letter - الفاء) @param r2 الحرف الثاني (second root letter - العين) @param r3 الحرف الثالث (third root letter - اللام) @return str: نوع الفعل (verb type classification in Arabic) Examples: classify_triliteral_verb('ك', 'ت', 'ب') --> 'صحيح سالم' classify_triliteral_verb('أ', 'ت', 'ي') --> 'معتل ناقص يائي مهموز الفاء' classify_triliteral_verb('ق', 'ل', 'و') --> 'معتل ناقص واوي' ]=] function export.classify_triliteral_verb(r1, r2, r3) -- تعريف أحرف العلة والهمزة -- الحروف الضعيفة (أحرف العلة): واو وياء فقط local weak_letters = {[W] = true, [Y] = true} -- الهمزة: جميع أشكال الهمزة (ء، أ، إ، ؤ، ئ) local hamza_letters = { [HAMZA] = true, -- ء [HAMZA_ON_ALIF] = true, -- أ [HAMZA_UNDER_ALIF] = true, -- إ [HAMZA_ON_W] = true, -- ؤ [HAMZA_ON_Y] = true -- ئ } -- فحص كل حرف local is_hamza = {hamza_letters[r1] or false, hamza_letters[r2] or false, hamza_letters[r3] or false} local is_weak = {weak_letters[r1] or false, weak_letters[r2] or false, weak_letters[r3] or false} -- عدد أحرف العلة local weak_count = (is_weak[1] and 1 or 0) + (is_weak[2] and 1 or 0) + (is_weak[3] and 1 or 0) -- فحص التضعيف (الحرف الثاني = الثالث) local is_doubled = (r2 == r3) -- ═══════════════════════════════════════════════════════════ -- المُعتل: الفعل الذي يحتوي على حرف أو أكثر من أحرف العلة -- ═══════════════════════════════════════════════════════════ if weak_count > 0 then -- ───────────────────────────────────────────────────── -- لفيف: يحتوي على حرفين أو أكثر من أحرف العلة -- ───────────────────────────────────────────────────── if weak_count >= 2 then -- مقرون: حرفا العلة متجاوران if is_weak[2] and is_weak[3] then -- الثاني والثالث if is_hamza[1] then return "معتل لفيف مقرون مهموز الفاء" end return "معتل لفيف مقرون" elseif is_weak[1] and is_weak[2] then -- الأول والثاني return "معتل لفيف مقرون" -- مفروق: الأول والثالث حرفا علة elseif is_weak[1] and is_weak[3] then if is_hamza[2] then return "معتل لفيف مفروق مهموز العين" end return "معتل لفيف مفروق" end -- ───────────────────────────────────────────────────── -- مثال: الحرف الأول حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[1] then if r1 == W then -- واوي if is_hamza[3] then return "معتل مثال واوي مهموز اللام" elseif is_doubled then return "معتل مثال واوي مُضعَّف" elseif is_hamza[2] then return "معتل مثال واوي مهموز العين" end return "معتل مثال واوي" else -- يائي (ي) if is_doubled then return "معتل مثال يائي مُضعَّف" elseif is_hamza[2] then return "معتل مثال يائي مهموز العين" end return "معتل مثال يائي" end -- ───────────────────────────────────────────────────── -- أجوف: الحرف الثاني حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[2] then if r2 == W then -- واوي if is_hamza[3] then return "معتل أجوف واوي مهموز اللام" elseif is_hamza[1] then return "معتل أجوف واوي مهموز الفاء" end return "معتل أجوف واوي" else -- يائي (ي) if is_hamza[3] then return "معتل أجوف يائي مهموز اللام" elseif is_hamza[1] then return "معتل أجوف يائي مهموز الفاء" end return "معتل أجوف يائي" end -- ───────────────────────────────────────────────────── -- ناقص: الحرف الثالث حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[3] then if r3 == W then -- واوي if is_hamza[1] then return "معتل ناقص واوي مهموز الفاء" elseif is_hamza[2] then return "معتل ناقص واوي مهموز العين" end return "معتل ناقص واوي" else -- يائي (ي) if is_hamza[1] then return "معتل ناقص يائي مهموز الفاء" elseif is_hamza[2] then return "معتل ناقص يائي مهموز العين" end return "معتل ناقص يائي" end end -- ═══════════════════════════════════════════════════════════ -- الصحيح: الفعل الذي لا يحتوي على أحرف العلة -- ═══════════════════════════════════════════════════════════ else -- ───────────────────────────────────────────────────── -- مهموز: يحتوي على همزة -- ───────────────────────────────────────────────────── if is_hamza[1] or is_hamza[2] or is_hamza[3] then -- مهموز الفاء واللام: الأول والثالث همزة if is_hamza[1] and is_hamza[3] then return "صحيح مهموز الفاء واللام" -- مهموز الفاء elseif is_hamza[1] then if is_doubled then return "صحيح مُضعَّف مهموز الفاء" end return "صحيح مهموز الفاء" -- مهموز العين elseif is_hamza[2] then return "صحيح مهموز العين" -- مهموز اللام elseif is_hamza[3] then return "صحيح مهموز اللام" end -- ───────────────────────────────────────────────────── -- مُضعَّف: الحرف الثاني = الثالث -- ───────────────────────────────────────────────────── elseif is_doubled then return "صحيح مُضعَّف" -- ───────────────────────────────────────────────────── -- سالم: لا همزة، لا حرف علة، لا تضعيف -- ───────────────────────────────────────────────────── else return "صحيح سالم" end end return "غير معروف" end ------------------------------------------------------------------------------- -- External entry points -- ------------------------------------------------------------------------------- --W: Normalize root to use underscores as separators -- Accepts: "كتب", "ك_ت_ب", or "ك ت ب" -- Returns: "ك_ت_ب" local function normalize_root(root) if not root then return nil end -- Helper function to normalize a single character/radical local function normalize_char(char) -- Convert all hamza variants to canonical bare hamza if char == HAMZA_ON_ALIF or char == HAMZA_UNDER_ALIF or char == HAMZA_ON_W or char == HAMZA_ON_Y then return HAMZA -- Convert alif maqṣūra to yaa (ى → ي) elseif char == AMAQ then return Y -- Reject alif - it's not a root radical elseif char == ALIF then error("Root contains alif (ا) which is not a valid root radical. For weak verbs, use و (waw) or ي (yaa) instead.") end return char end -- Convert alif madda to hamza + alif for processing (will be caught as error below) root = root:gsub(AMAD, HAMZA .. ALIF) -- Replace spaces with underscores root = root:gsub(" ", "_") -- If no underscores yet, insert them between each character if not root:find("_") then -- Extract only Arabic letters (excluding diacritics) -- Arabic letter range: U+0621 to U+064A (basic letters) local chars = {} for char in mw.ustring.gmatch(root, "[ء-ي]") do table.insert(chars, normalize_char(char)) end root = table.concat(chars, "_") else -- Root already has underscores (e.g., "أ_م_ن"), normalize each radical local parts = mw.text.split(root, "_") for i, part in ipairs(parts) do parts[i] = normalize_char(part) end root = table.concat(parts, "_") end return root end --W: Construct the [1] parameter from root (جذر) and morphological pattern (وزن) -- Example: -- input: root="كتب", pattern="فعَل يفعُل" -- output: "ك_ت_ب<I/a~u>" local function construct_verb_spec(root, pattern) if not root or not pattern then return nil end local normalized_root = normalize_root(root) local form_code = MORPHOLOGICAL_PATTERN_TO_FORM[pattern] if not form_code then error("Unknown morphological pattern (وزن صرفي): " .. pattern) end return normalized_root .. "<" .. form_code .. ">" end -- Wrapper function that accepts جذر (root) and وزن (pattern) as parameters -- Returns: verb_type (e.g., "فعل ثلاثي مُجرَّد صحيح سالم") -- Example: export.get_verb_type({["جذر"] = "كتب", ["وزن"] = "فعَل يفعُل"}) function export.get_verb_type(args) local verb_spec if args["جذر"] and args["وزن"] then verb_spec = construct_verb_spec(args["جذر"], args["وزن"]) elseif args[1] then verb_spec = args[1] else error("Must provide either جذر and وزن, or a verb specification in args[1]") end local alternant_multiword_spec = export.do_generate_forms({[1] = verb_spec}) local _, verb_type = get_verb_info(alternant_multiword_spec) return verb_type end -- Append two lists `l1` and `l2`, removing duplicates. If either is {nil}, just return the other. local function combine_lists(l1, l2) -- combine_footnotes() does exactly what we want. return iut.combine_footnotes(l1, l2) end local function combine_metadata(data) local src1 = data.form1 local src2 = data.form2 local dest = data.dest_form dest.uncertain = src1.uncertain or src2.uncertain if src1.genders and src2.genders and not m_table.deepEquals(src1.genders, src2.genders) then -- do nothing else dest.genders = src1.genders or src2.genders end if src1.pos and src2.pos and src1.pos ~= src2.pos then -- do nothing else dest.pos = src1.pos or src2.pos end -- Don't copy .alt, .gloss, .lit, .id, which describe a single term and don't extend to multiword terms. dest.q = combine_lists(src1.q, src2.q) dest.qq = combine_lists(src1.qq, src2.qq) dest.l = combine_lists(src1.l, src2.l) dest.ll = combine_lists(src1.ll, src2.ll) end -- Externally callable function to parse and conjugate a verb given user-specified arguments. -- Return value is WORD_SPEC, an object where the conjugated forms are in `WORD_SPEC.forms` -- for each slot. If there are no values for a slot, the slot key will be missing. The value -- for a given slot is a list of objects {form=FORM, footnotes=FOOTNOTES}. function export.do_generate_forms(args, source_template, headword_head) local PAGENAME = mw.loadData("Module:headword/data").pagename local function in_template_space() local nsText = mw.title.getCurrentTitle().nsText return nsText == "Template" or nsText == "قالب" end -- Determine the verb spec we're being asked to generate the conjugation of. This may be taken from the current page -- title or the value of |pagename=; but not when called from {{ar-verb form}}, where the page title is a -- non-lemma form. Note that the verb spec may omit the lemma; e.g. it may be "<II>". For this reason, we use the -- value of `pagename` computed here down below, when calling normalize_all_lemmas(). local pagename = source_template ~= "ar-verb form" and args.pagename or PAGENAME local head = headword_head or pagename --W: If both root (جذر) and morphological pattern (وزن) are provided, construct [1] if args["جذر"] and args["جذر"] ~= "" and args["وزن"] and args["وزن"] ~= "" then local constructed = construct_verb_spec(args["جذر"], args["وزن"]) if constructed and constructed ~= "" then args[1] = constructed end end local arg1 = args[1] if not arg1 then if (pagename == "ar-conj" or pagename == "ar-verb" or pagename == "ar-verb form" or pagename == "تصريف") and in_template_space() then arg1 = "كتب<I/a~u.pass>" else arg1 = "<>" end end -- When called from {{ar-verb form}}, determine the non-lemma form whose inflections we're being asked to -- determine. This normally comes from the page title or the value of |pagename=. local verb_form_of_form if source_template == "ar-verb form" then verb_form_of_form = args.pagename if not verb_form_of_form then if PAGENAME == "ar-verb form" and in_template_space() then verb_form_of_form = "كتبت" else verb_form_of_form = PAGENAME end end end local incorporated_headword_head_into_lemma = false if arg1:find("^<.*>$") then -- missing lemma if head:find(" ") then -- If multiword lemma, try to add arg spec after the first word. -- Try to preserve the brackets in the part after the verb, but don't do it -- if there aren't the same number of left and right brackets in the verb -- (which means the verb was linked as part of a larger expression). local first_word, post = rmatch(head, "^(.-)( .*)$") local left_brackets = rsub(first_word, "[^%[]", "") local right_brackets = rsub(first_word, "[^%]]", "") if #left_brackets == #right_brackets then arg1 = iut.remove_redundant_links(first_word) .. arg1 .. post incorporated_headword_head_into_lemma = true else -- Try again using the form without links. local linkless_head = m_links.remove_links(head) if linkless_head:find(" ") then first_word, post = rmatch(linkless_head, "^(.-)( .*)$") arg1 = first_word .. arg1 .. post else error("Unable to incorporate <...> spec into explicit head due to a multiword linked verb or " .. "unbalanced brackets; please include <> explicitly: " .. arg1) end end else -- Will be incorporated through `head` below in the call to normalize_all_lemmas(). incorporated_headword_head_into_lemma = true end end local parse_props = { parse_indicator_spec = parse_indicator_spec, angle_brackets_omittable = true, allow_blank_lemma = true, } local alternant_multiword_spec = iut.parse_inflected_text(arg1, parse_props) alternant_multiword_spec.pos = pos or "verbs" alternant_multiword_spec.args = args alternant_multiword_spec.source_template = source_template alternant_multiword_spec.verb_form_of_form = verb_form_of_form alternant_multiword_spec.incorporated_headword_head_into_lemma = incorporated_headword_head_into_lemma normalize_all_lemmas(alternant_multiword_spec, head) detect_all_indicator_specs(alternant_multiword_spec) local inflect_props = { lang = lang, slot_list = alternant_multiword_spec.verb_slots, inflect_word_spec = conjugate_verb, combine_metadata = combine_metadata, -- We add links around the generated verbal forms rather than allow the entire multiword -- expression to be a link, so ensure that user-specified links get included as well. include_user_specified_links = true, } iut.inflect_multiword_or_alternant_multiword_spec(alternant_multiword_spec, inflect_props) if debug_translit then for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do if form.translit then local full_form_translit = (lang:transliterate(m_links.remove_links(form.form))) if full_form_translit ~= form.translit then error(("Internal error: For slot '%s', form '%s' incremental translit '%s' not same as full translit '%s'"): format(slot, form.form, form.translit, full_form_translit)) end end form.form = iut.remove_redundant_links(form.form) end end end -- Remove redundant brackets around entire forms. for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do form.form = iut.remove_redundant_links(form.form) end end -- Apply NFC-style normalization: reorder shadda+vowel to vowel+shadda -- to match MediaWiki's automatic NFC normalization (which is applied on enwiktionary -- but not in local Lua environments). This reverses the postprocessing step. for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do form.form = apply_nfc_shadda(form.form) end end determine_slot_uncertainty_from_forms(alternant_multiword_spec) determine_verb_properties_from_forms(alternant_multiword_spec) compute_categories_and_annotation(alternant_multiword_spec) if args.json and source_template == "ar-conj" then -- There is a circular reference in `base.alternant_multiword_spec`, which points back to top level. iut.map_word_specs(alternant_multiword_spec, function(base) base.alternant_multiword_spec = nil end) return require("Module:JSON").toJSON(alternant_multiword_spec) end return alternant_multiword_spec end -- Entry point for {{ar-conj}}. Template-callable function to parse and conjugate a verb given -- user-specified arguments and generate a displayable table of the conjugated forms. function export.show(frame) local parent_args = frame:getParent() and frame:getParent().args or frame.args --W local params = { [1] = {}, ["noautolinktext"] = {type = "boolean"}, ["noautolinkverb"] = {type = "boolean"}, ["t"] = {}, -- for use by {{ar-verb form}}; otherwise ignored ["id"] = {}, -- for use by {{ar-verb form}}; otherwise ignored ["pagename"] = {}, -- for testing/documentation pages ["json"] = {type = "boolean"}, -- for bot use --W: additional parameters for ar.wiktionary.org ["جذر"] = {type = "string"}, --W: الجذر اللغوي, root ["وزن"] = {type = "string"}, --W: الوزن الصرفي, morphological pattern ["كامل"] = {type = "boolean"}, --W: show full table (default is simplified table) ["بؤرة"] = {type = "string"}, --W: highlight the cells holding this form ["موسع"] = {type = "boolean"}, --W: show the table expanded (default: collapsed) } local args = require("Module:parameters").process(parent_args, params) --W: If both root (جذر) and morphological pattern (وزن) are provided, construct [1] if args["جذر"] and args["جذر"] ~= "" and args["وزن"] and args["وزن"] ~= "" then local constructed = construct_verb_spec(args["جذر"], args["وزن"]) if constructed and constructed ~= "" then args[1] = constructed end end local alternant_multiword_spec = export.do_generate_forms(args, "ar-conj") if type(alternant_multiword_spec) == "string" then -- JSON return value return alternant_multiword_spec end --W: |بؤرة= marks the cells holding a given form, so that a conjugated-form -- page ([[Module:ar-verb-form]]) can show the reader where in the paradigm -- the word they looked up actually sits. The slots have to be found before -- show_forms(), which replaces each form list with rendered wikitext. local focus_slots = find_focus_slots(alternant_multiword_spec, args["بؤرة"]) --W: A table whose one relevant cell is highlighted is no use folded away, so -- [[Module:ar-verb-form]] asks for it open. Lemma pages keep it collapsed. alternant_multiword_spec.expanded = args["موسع"] or false show_forms(alternant_multiword_spec) apply_focus(alternant_multiword_spec, focus_slots) --W: Choose table type: simplified (default) or full (comprehensive) local table_html if args["كامل"] then table_html = make_table(alternant_multiword_spec) else table_html = make_table_ar(alternant_multiword_spec) end --W: don't add categories --W: TODO: all lines with insert_cat() are to be removed. -- return table_html .. -- require("Module:utilities").format_categories(alternant_multiword_spec.categories, lang, nil, nil, force_cat) return table_html end function export.verb_forms(frame) local parargs = frame:getParent().args local params = { [1] = {}, [2] = {}, [3] = {}, [4] = {}, [5] = {}, pagename = {}, } for _, form in ipairs(allowed_vforms) do -- FIXME: We go up to 5 here. The code supports unlimited variants but it's unlikely we will ever see more than -- 2. for index = 1, 5 do local prefix = index == 1 and form or form .. index params[prefix .. "-pv"] = {} for _, extn in ipairs { "", "-vn", "-ap", "-pp" } do params[prefix .. extn] = {} params[prefix .. extn .. "-head"] = {} -- FIXME: No -tr? params[prefix .. extn .. "-gloss"] = {} end end end local args = require("Module:parameters").process(parargs, params) local i = 1 local past_vowel_re = "^[aui,]*$" local combined_root = nil if not args[i] or rfind(args[i], past_vowel_re) then combined_root = args.pagename or mw.loadData("Module:headword/data").pagename if not rfind(combined_root, "^([^ ]) ([^ ]) ([^ ])$") and not rfind(combined_root, "^([^ ]) ([^ ]) ([^ ]) ([^ ])$") then error("When inferring roots from page title, need three or four space-separated radicals: " .. combined_root) end elseif rfind(args[i], " ") then combined_root = args[i] i = i + 1 else local separate_roots = {} while args[i] and not rfind(args[i], past_vowel_re) do table.insert(separate_roots, args[i]) i = i + 1 end combined_root = table.concat(separate_roots, " ") end local past_vowel = args[i] i = i + 1 if past_vowel and not rfind(past_vowel, past_vowel_re) then error("Unrecognized past vowel, should be 'a', 'i', 'u', 'a,u', etc. or empty: " .. past_vowel) end -- Spaces interfere with parsing as a unit in [[Module:inflection utilities]], so replace with underscore. combined_root = combined_root:gsub(" ", "_") local split_root = rsplit(combined_root, "_") -- Map from verb forms (I, II, etc.) to a table of verb properties, -- which has entries e.g. for "verb" (either true to autogenerate the verb -- head, or an explicitly specified verb head using e.g. argument "I-head"), -- and for "verb-gloss" (which comes from e.g. the argument "I" or "I-gloss"), -- and for "vn" and "vn-gloss", "ap" and "ap-gloss", "pp" and "pp-gloss". local verb_properties = {} for _, form in ipairs(allowed_vforms) do local formpropslist = {} local derivs = {{"verb", ""}, {"vn", "-vn"}, {"ap", "-ap"}, {"pp", "-pp"}} local index = 1 while true do local formprops = {} local prefix = index == 1 and form or form .. index if prefix == "I" then formprops.pv = past_vowel end if args[prefix .. "-pv"] then formprops.pv = args[prefix .. "-pv"] end for _, deriv in ipairs(derivs) do local prop = deriv[1] local extn = deriv[2] if args[prefix .. extn] == "+" then formprops[prop] = true elseif args[prefix .. extn] == "-" then formprops[prop] = false elseif args[prefix .. extn] then formprops[prop] = true formprops[prop .. "-gloss"] = args[prefix .. extn] end if args[prefix .. extn .. "-head"] then if formprops[prop] == nil then formprops[prop] = true end formprops[prop] = args[prefix .. extn .. "-head"] end if args[prefix .. extn .. "-gloss"] then if formprops[prop] == nil then formprops[prop] = true end formprops[prop .. "-gloss"] = args[prefix .. extn .. "-gloss"] end end if formprops.verb then -- If a verb form specified, also turn on vn (unless form I, with -- unpredictable vn) and ap, and maybe pp, according to form, -- weakness and past vowel. But don't turn these on if there's -- an explicit on/off specification for them (e.g. I-pp=-). if form ~= "I" and formprops.vn == nil then formprops.vn = true end if formprops.ap == nil then formprops.ap = true end local weakness = weakness_from_radicals(form, split_root[1], split_root[2], split_root[3], split_root[4]) if formprops.pp == nil and not vform_probably_no_passive(form, weakness, rsplit(formprops.pv or "", ","), {}) then formprops.pp = true end if formprops.verb == true or formprops.vn == true or formprops.ap == true or formprops.pp == true then formprops.need_autogen = true end table.insert(formpropslist, formprops) index = index + 1 else break end end table.insert(verb_properties, {form, formpropslist}) end -- Go through and create the verb form derivations as necessary, when they haven't been explicitly given. for _, vplist in ipairs(verb_properties) do local vform = vplist[1] for _, props in ipairs(vplist[2]) do if props.need_autogen then local form_with_vowels if vform == "I" then local pv = props.pv if not pv then -- Make up likely past vowels based on weakness and actual radical. if split_root[3] == W then -- final-weak form_with_vowels = "I/a~u" elseif split_root[3] == Y then form_with_vowels = "I/a~i" elseif split_root[2] == W then --hollow form_with_vowels = "I/u~u" elseif split_root[2] == Y then form_with_vowels = "I/i~i" else -- most common; doesn't matter so much since we're not displaying the non-past form_with_vowels = "I/a~u" end else local pvs = rsplit(pv, ",") local vowel_sufs = {} for _, pv in ipairs(pvs) do local vowel_spec if pv == "a" then -- Make up likely past vowels based on weakness and actual radical. if split_root[3] == W then -- final-weak vowel_spec = "a~u" elseif split_root[3] == Y then vowel_spec = "a~i" elseif split_root[2] == W then --hollow vowel_spec = "a~u" elseif split_root[2] == Y then vowel_spec = "a~i" else -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "a~u" end elseif pv == "i" then -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "i~a" elseif pv == "u" then -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "u~u" else error(("Internal error: Bad past vowel '%s' in {{ar-verb forms}}"):format(pv)) end table.insert(vowel_sufs, vowel_spec) end form_with_vowels = "I/" .. table.concat(vowel_sufs, "/") end else form_with_vowels = vform end local angle_bracket_spec = ("%s<%s.pass>"):format(combined_root, form_with_vowels) local alternant_multiword_spec = export.do_generate_forms({angle_bracket_spec}, "ar-verb forms") local function format_forms(forms) if not forms then return "-" -- FIXME: Throw an error? end local formatted = {} for _, form in ipairs(forms) do if form.translit then table.insert(formatted, ("%s//%s"):format(form.form, form.translit)) else table.insert(formatted, form.form) end end return table.concat(formatted, "،") end if props.verb == true then props.verb = format_forms(alternant_multiword_spec.forms.past_3ms) end for _, deriv in ipairs({"vn", "ap", "pp"}) do if props[deriv] == true then props[deriv] = format_forms(alternant_multiword_spec.forms[deriv]) end end end end end -- Go through and output the result local formtextarr = {} for _, vplist in ipairs(verb_properties) do local form = vplist[1] for _, props in ipairs(vplist[2]) do local textarr = {} if props.verb then local text = "* '''[[Appendix:Arabic verbs#Form " .. form .. "|Form " .. form .. "]]''': " local linktext = {} local splitheads = rsplit(props.verb, "[,،]") for _, head in ipairs(splitheads) do table.insert(linktext, m_links.full_link({lang = lang, term = head, gloss = props["verb-gloss"]})) end text = text .. table.concat(linktext, "، ") table.insert(textarr, text) for _, derivengl in ipairs({{"vn", "Verbal noun"}, {"ap", "Active participle"}, {"pp", "Passive participle"}}) do local deriv = derivengl[1] local engl = derivengl[2] if props[deriv] then local text = "** " .. engl .. ": " local linktext = {} local splitheads = rsplit(props[deriv], "[,،]") for _, head in ipairs(splitheads) do local ar, translit = head:match("^(.*)//(.-)$") if not ar then ar = head end table.insert(linktext, m_links.full_link {lang = lang, term = ar, tr = translit, gloss = props[deriv .. "-gloss"]} ) end text = text .. table.concat(linktext, "، ") table.insert(textarr, text) end end table.insert(formtextarr, table.concat(textarr, "\n")) end end end return table.concat(formtextarr, "\n") end -- Infer radicals from lemma headword (i.e. 3rd masculine singular past) and verb form (I, II, etc.). Throw an error if -- headword is malformed. A given returned radical may be actually be a list of possible radicals, where the first one -- should be used if the user didn't explicitly give the radical. If the list contains a field `ambig = true`, the -- radical is considered ambiguous and should not be categorized. `is_reduced` indicates that the user specified -- `.reduced` to indicate that the verb form is reduced by assimilation and/or haplology (typically archaic Koranic -- forms such as اِدَّارَأَ instead of تَدَارَأَ; or اِسْطَاعَ instead of اِسْتِطَاعَ; etc. function export.infer_radicals(data) local headword, vform, passive, past_vowel, nonpast_vowel, is_reduced = data.headword, data.vform, data.passive, data.past_vowel, data.nonpast_vowel, data.is_reduced past_vowel = past_vowel or "-" nonpast_vowel = nonpast_vowel or "-" local function verify_vowel(vowel, param) --W: A past/non-past vowel may legitimately be a form object {form=..., footnotes=...} -- when the user attaches a footnote, e.g. <I/a[نادر]~u>, so compare the formval. -- Comparing the raw value crashed on Lua 5.1 ("bad argument #2 to 'format'"). local formval = rget(vowel) if formval ~= A and formval ~= I and formval ~= U and formval ~= "-" then error(("Internal error: Bad value for %s: %s (should be Arabic diacritic vowel or '-')"):format( param, dump(vowel))) end end verify_vowel(past_vowel, "past_vowel") verify_vowel(nonpast_vowel, "nonpast_vowel") local ch = {} local form_viii_assim, variant -- sub out alif-madda for easier processing headword = rsub(headword, AMAD, HAMZA .. ALIF) local function infer_err(msg, noann) local anns = {} local nohead, novform if noann == "nohead" then nohead = true elseif noann == "novform" then novform = true elseif noann == "nohead-vform" then nohead = true novform = true elseif noann then error(("Internal error: Unrecognized value for 'noann': %s"):format(dump(noann))) end if not nohead then table.insert(anns, ("headword=%s"):format(data.headword)) end if not novform then table.insert(anns, ("verb form=%s"):format(data.vform)) end anns = table.concat(anns, "، ") if anns ~= "" then anns = ": " .. anns end error(msg .. anns) end local len = ulen(headword) local expected_length -- extract the headword letters into an array for i = 1, len do table.insert(ch, usub(headword, i, i)) end -- check that the letter at the given index is the given string, or -- is one of the members of the given array local function check(index, must) local letter = ch[index] if type(must) == "string" then if not letter then infer_err("Letter " .. index .. " is nil") end if letter ~= must then infer_err(("For verb form %s, letter %s must be %s, not %s"):format(vform, index, must, letter), "novform") end elseif not m_table.contains(must, letter) then infer_err("For verb form " .. vform .. ", radical " .. index .. " must be one of " .. table.concat(must, " ") .. ", not " .. letter, "novform") end end -- Check that length of headword is within [min, max] local function check_len(min, max) if min and len < min then infer_err(("Not enough letters for verb form %s, expected at least %s"):format(vform, min), "novform") end if max and len > max then infer_err(("Too many letters for verb form %s, expected at most %s"):format(vform, max), "novform") end end -- If the vowels are i~a or u~u, a form I verb beginning with w- normally keeps the w in the non-past. Otherwise it -- loses it (i.e. it is "assimilated"). local function form_I_w_non_assimilated() return req(past_vowel, I) and req(nonpast_vowel, A) or req(past_vowel, U) and req(nonpast_vowel, U) end -- Convert radicals to canonical form (handle various hamza varieties and check for misplaced alif or alif maqṣūra; -- legitimate cases of these letters are handled above). local function convert(rad, index) if type(rad) == "table" then for i, r in ipairs(rad) do rad[i] = convert(r, index) end return rad elseif rad == HAMZA_ON_ALIF or rad == HAMZA_UNDER_ALIF or rad == HAMZA_ON_W or rad == HAMZA_ON_Y then return HAMZA elseif rad == AMAQ then infer_err("Radical " .. index .. " must not be alif maqṣūra") elseif rad == ALIF then infer_err("Radical " .. index .. " must not be alif") else return rad end end local quadlit = vform:find("q$") -- find first radical, start of second/third radicals, check for -- required letters local radstart, rad1, rad2, rad3, rad4 local weakness if vform == "I" or vform == "II" then rad1 = ch[1] radstart = 2 elseif vform == "III" then rad1 = ch[1] check(2, {ALIF, W}) -- W occurs in passive-only verbs radstart = 3 elseif vform == "IV" then -- this would be alif-madda but we replaced it with hamza-alif above. if ch[1] == HAMZA and ch[2] == ALIF then rad1 = HAMZA else check(1, HAMZA_ON_ALIF) rad1 = ch[2] end radstart = 3 elseif vform == "V" then check(1, is_reduced and ALIF or T) rad1 = ch[2] radstart = 3 elseif vform == "VI" then check(1, is_reduced and ALIF or T) if ch[2] == AMAD then rad1 = HAMZA radstart = 3 else rad1 = ch[2] check(3, {ALIF, W}) -- W occurs in passive-only verbs radstart = 4 end elseif vform == "VII" then check(1, ALIF) if is_reduced then check(2, M) rad1 = M radstart = 3 else check(2, N) rad1 = ch[3] radstart = 4 end elseif vform == "VIII" then check(1, ALIF) rad1 = ch[2] if rad1 == "د" then rad1 = {"د", "ذ"} -- not considered ambiguous since it's usually د radstart = 3 form_viii_assim = "دّ" elseif rad1 == "ظ" and ch[3] == "ط" and len >= 5 then -- [[اظطلم]], variant of [[اظلم]] radstart = 4 form_viii_assim = "ظْط" elseif rad1 == "ذ" and ch[3] == "د" and len >= 5 then -- [[اذدكر]], variant of [[اذكر]] radstart = 4 form_viii_assim = "ذْد" elseif rad1 == T or rad1 == "ث" or rad1 == "ذ" or rad1 == "ط" or rad1 == "ظ" then radstart = 3 form_viii_assim = rad1 .. SH elseif rad1 == "ز" then check(3, "د") radstart = 4 form_viii_assim = "زْد" elseif rad1 == "ص" or rad1 == "ض" then check(3, "ط") radstart = 4 form_viii_assim = rad1 .. SK .. "ط" else check(3, T) radstart = 4 rad1 = convert(rad1, 1) form_viii_assim = rad1 .. SK .. "ت" end if rad1 == T then -- Radical is ambiguous, might be ت or و or ي but doesn't affect conjugation. Note that there are no -- form-VIII verbs with initial radical ي given in Hans Wehr but Lane mentions at least: -- - (page 2973) اِتَّأَسَ, with assimilation of the ي to ت, from root ي ء س; -- - (page 2975) اِتَّبَسَ non-past يَتَّبِسُ and alternative اِيتَبَسَ non-past يَاتَبِسُ from the root ي ب س; -- - (page 2976) اِتَّسَرَ non-past يَتَّسِرُ or alternatively يَأْتَسِرُ with hamza preserved from the root ي س ر. -- These alternative forms seem very rare and probably not worth worrying about, but if we want to handle -- them, we can do it when the time comes. rad1 = {T, W, Y, ambig = true} -- اِتَّخَذَ irregularly has hamza as the radical but assimilates like و if ch[3] == "خ" and ch[4] == "ذ" then rad1[4] = HAMZA end end elseif vform == "IX" then check(1, ALIF) rad1 = ch[2] radstart = 3 elseif vform == "X" then check(1, ALIF) check(2, S) if is_reduced then rad1 = ch[3] radstart = 4 else check(3, T) rad1 = ch[4] radstart = 5 end elseif vform == "Iq" then rad1 = ch[1] rad2 = ch[2] radstart = 3 elseif vform == "IIq" then check(1, T) rad1 = ch[2] rad2 = ch[3] radstart = 4 elseif vform == "IIIq" then check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) radstart = 5 elseif vform == "IVq" then check(1, ALIF) rad1 = ch[2] rad2 = ch[3] radstart = 4 elseif vform == "XI" then check_len(5, 5) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, ALIF) rad3 = ch[5] weakness = "sound" elseif vform == "XII" then check(1, ALIF) rad1 = ch[2] if ch[3] ~= ch[5] then infer_err("For verb form XII, letters 3 and 5 should be the same", "novform") end check(4, W) radstart = 5 elseif vform == "XIII" then check_len(5, 5) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, W) rad3 = ch[5] if rad3 == AMAQ then weakness = "final-weak" else weakness = "sound" end elseif vform == "XIV" then check_len(6, 6) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) rad3 = ch[5] if ch[6] == AMAQ then check_waw_ya(rad3) weakness = "final-weak" else if ch[5] ~= ch[6] then infer_err("For verb form XIV, letters 5 and 6 should be the same", "novform") end weakness = "sound" end elseif vform == "XV" then check_len(6, 6) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) rad3 = ch[5] if rad3 == Y then check(6, ALIF) else check(6, AMAQ) end weakness = "sound" else error("Internal error: Unrecognized verb form " .. vform) end -- Process the last two radicals. RADSTART is the index of the first of the two. If it's nil then all radicals have -- already been processed above, and we don't do anything. if radstart then -- There must (normally) be one or two letters left. if len == radstart then if vform == "I" and ch[len] == Y then -- short form حَيَّ weakness = "final-weak" rad2 = Y rad3 = Y variant = "short" elseif vform == "IV" and rad1 == "ر" and ch[len] == AMAQ then -- irregular verb أَرَى weakness = "final-weak" rad2 = HAMZA rad3 = Y elseif vform == "X" and rad1 == "ح" and ch[len] == AMAQ then -- irregular verb اِسْتَحَى weakness = "final-weak" rad2 = Y rad3 = Y variant = "short" else -- If one letter left, then it's a geminate verb. If the letter is alif or alif maqṣūra, it will trigger -- an error down the line. if vform_supports_geminate(vform) then weakness = "geminate" rad2 = ch[len] rad3 = ch[len] if vform == "III" or vform == "VI" then variant = "short" end else infer_err("Apparent geminate verb, but geminate verbs not allowed for this verb form") end end elseif quadlit then -- Process last two radicals of a quadriliteral verb form. rad3 = ch[radstart] rad4 = ch[radstart + 1] expected_length = radstart + 1 check_len(expected_length) if rad4 == AMAQ or rad4 == ALIF and rad3 == Y or rad4 == Y then -- rad4 can be Y in passive-only verbs. if vform_supports_final_weak(vform) then weakness = "final-weak" -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws in a row); it could be wāw or -- yāʾ, but doesn't affect the conjugation. rad4 = rad3 == W and {Y, W, ambig = true} or {W, Y, ambig = true} else infer_err("Last radical is " .. rad4 .. " but verb form " .. vform .. " doesn't support final-weak verbs", "novform") end else weakness = "sound" end else -- Process last two radicals of a triliteral verb form. rad2 = ch[radstart] rad3 = ch[radstart + 1] expected_length = radstart + 1 check_len(expected_length) if vform == "I" and (is_waw_ya(rad3) or rad3 == ALIF or rad3 == AMAQ) then local inferred_past_vowel, inferred_nonpast_vowel -- Check for final-weak form I verb. It can end in tall alif (rad3 = wāw) or alif maqṣūra (rad3 = yāʾ) -- or a wāw or yāʾ (with a past vowel of i or u, e.g. nasiya/yansā "forget" or with a passive-only -- verb). if rad1 == W and not form_I_w_non_assimilated() then weakness = "assimilated+final-weak" else weakness = "final-weak" end if rad3 == ALIF then rad3 = W inferred_past_vowel = A inferred_nonpast_vowel = U if is_passive_only(passive) then infer_err("Final-weak form-I passive verbs should end in yāʔ (ي), not tall alif (ا)", "novform") end elseif rad3 == AMAQ then rad3 = Y inferred_past_vowel = A inferred_nonpast_vowel = I if is_passive_only(passive) then infer_err("Final-weak form-I passive verbs should end in yāʔ (ي), not alif maqṣūra (ى)", "novform") end elseif rad1 == "ح" and rad2 == Y and rad3 == Y then -- Long variant حَيِيَ. inferred_past_vowel = I inferred_nonpast_vowel = A variant = "long" else if not is_passive_only(passive) then -- does a non-passive final-weak verb in -uwa ever happen? (YES: e.g. [[رجو]] "to be slack") inferred_past_vowel = rad3 == Y and I or U inferred_nonpast_vowel = A end -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws); it could be wāw or yāʾ, but -- doesn't affect the conjugation. rad3 = (rad1 == W or rad2 == W) and {Y, W, ambig = true} or {W, Y, ambig = true} -- ambiguous end if inferred_past_vowel then local raw_past_vowel = rget(past_vowel) local raw_nonpast_vowel = rget(nonpast_vowel) if raw_past_vowel ~= "-" then if raw_past_vowel ~= inferred_past_vowel then infer_err(("Final-weak form-I verb inferred past vowel %s, which disagrees with " .. "explicitly specified %s"):format(undia[inferred_past_vowel], undia[raw_past_vowel]), "novform") else -- in case of footnote in past_vowel inferred_past_vowel = past_vowel end end if raw_nonpast_vowel ~= "-" and raw_nonpast_vowel ~= A and inferred_nonpast_vowel == U then -- if inferred as I or A, the reality can be the reverse; form-I final-weak verbs with a~a and -- i~i exist, e.g. سَعَى/يَسْعَى, وَلِيَ/يَلِي. Weird verb [[صها]] (also written [[صهى]]) has non-past -- يصهى so we can't throw an error in this situation. if raw_nonpast_vowel ~= inferred_nonpast_vowel then infer_err(("Final-weak form-I verb inferred non-past vowel %s, which disagrees with " .. "explicitly specified %s"):format(undia[inferred_nonpast_vowel], undia[raw_nonpast_vowel]), "novform") else -- in case of footnote in nonpast_vowel inferred_nonpast_vowel = nonpast_vowel end end end if not is_passive_only(passive) then if rget(past_vowel) == "-" then past_vowel = inferred_past_vowel end if rget(nonpast_vowel) == "-" then nonpast_vowel = inferred_nonpast_vowel end end elseif vform == "IX" and is_waw_ya(rad3) and len == radstart + 2 and ch[len] == AMAQ then -- Final-weak form IX verbs like اِرْعَوَى "to desist, to repent, to see the light". weakness = "final-weak" expected_length = radstart + 2 elseif vform == "X" and rad1 == "ح" and rad2 == Y and rad3 == ALIF then -- Long variant اِسْتَحْيَا. weakness = "final-weak" rad3 = Y variant = "long" elseif rad3 == AMAQ or rad2 == Y and rad3 == ALIF or rad3 == Y then -- rad3 == Y happens in passive-only verbs. if vform_supports_final_weak(vform) then weakness = "final-weak" else infer_err("Last radical is " .. rad3 .. " but verb form doesn't support final-weak verbs") end -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws); it could be wāw or yāʾ, but -- doesn't affect the conjugation. rad3 = (rad1 == W or rad2 == W) and {Y, W, ambig = true} or {W, Y, ambig = true} elseif rad2 == ALIF then if vform_supports_hollow(vform) then weakness = "hollow" local function set_past_to_a() if req(past_vowel, A) then -- already set elseif req(past_vowel, "-") or req(past_vowel, rget(nonpast_vowel)) then past_vowel = A else infer_err(("Form I hollow verb with nonpast vowel set to '%s' must have past vowel set to 'a' or the same value, not %s"): format(undia[rget(nonpast_vowel)], undia[rget(past_vowel)]), "novform") end end if vform == "I" and req(nonpast_vowel, U) then rad2 = W set_past_to_a() elseif vform == "I" and req(nonpast_vowel, I) then rad2 = Y set_past_to_a() else if req(nonpast_vowel, A) and not req(past_vowel, I) then infer_err(("Form I hollow verb with nonpast vowel set to 'a' must have past vowel set to 'i', not %s"): format(undia[rget(past_vowel)]), "novform") end -- Ambiguous radical; could be wāw or yāʾ; if verb form I, it's critical to get this right, and -- the caller checks for this situation and throws an error if non-past vowel is "a" and second -- radical isn't explicitly given. rad2 = {W, Y, ambig = true, need_radical = true} end else infer_err("Second radical is alif but verb form doesn't support hollow verbs") end elseif vform == "I" and rad1 == W and not form_I_w_non_assimilated() then weakness = "assimilated" elseif rad2 == rad3 and (vform == "III" or vform == "VI") then weakness = "geminate" variant = "long" else weakness = "sound" end end if expected_length then check_len(expected_length, expected_length) end end rad1 = convert(rad1, 1) rad2 = convert(rad2, 2) rad3 = convert(rad3, 3) rad4 = convert(rad4, 4) if not weakness then error("Internal error: Returned weakness from infer_radicals() is nil") end return { weakness = weakness, rad1 = rad1, rad2 = rad2, rad3 = rad3, rad4 = rad4, past_vowel = past_vowel, nonpast_vowel = nonpast_vowel, form_viii_assim = form_viii_assim, variant = variant, } end -- bot interface to infer_radicals() function export.infer_radicals_json(frame) local iparams = { headword = {}, vform = {}, passive = {}, past_vowel = {}, nonpast_vowel = {}, is_reduced = {type = "boolean"}, } local iargs = require("Module:parameters").process(frame.args, iparams) return require("Module:JSON").toJSON(export.infer_radicals(iargs)) end -- Infer vocalization from participle headword (active or passive), verb form (I, II, etc.) and whether the headword is -- active or passive. Throw an error if headword is malformed. Returned radicals may contain Latin letters "t", "w" or "y" -- indicating ambiguous radicals guessed to be tāʾ, wāw or yāʾ respectively. function export.infer_participle_vocalization(headword, vform, weakness, is_active) local chars = {} local orig_headword = headword -- Sub out alif-madda for easier processing. headword = rsub(headword, AMAD, HAMZA .. ALIF) local len = ulen(headword) -- Extract the headword letters into an array. for i = 1, len do table.insert(chars, usub(headword, i, i)) end local function form_intro_error_msg() return ("For verb form %s %s%s participle %s, "):format(vform, orig_headword ~= headword and "normalized " or "", is_active and "active" or "passive", headword) end local function err(msg) error(form_intro_error_msg() .. msg, 1) end -- Check that length of headword is within [min, max]. local function check_len(min, max) if min and len < min then err(("expected at least %s letters but saw %s"):format(min, len)) elseif max and len > max then err(("expected at most %s letters but saw %s"):format(max, len)) end end -- Get the character at `ind`, making sure it exists. local function c(ind) check_len(ind) return chars[ind] end -- Check that the letter at the given index is the given string, or is one of the members of the given array local function check(index, must) local letter = chars[index] local function make_possible_values() if type(must) == "string" then return must else return list_to_text(must, nil, " or ") end end if not letter then err(("expected a letter (specifically %s) at position %s, but participle is too short"):format( make_possible_values(), index)) end local matches if type(must) == "string" then matches = letter == must else matches = m_table.contains(must, letter) end if not matches then err(("letter %s at index %s must be %s"):format(letter, index, make_possible_values())) end end local function check_weakness(values, allow_missing, invert_condition) local function make_possible_weaknesses() for i, val in ipairs(values) do values[i] = "'" .. val .. "'" end return list_to_text(values, nil, " or ") end if allow_missing and invert_condition then error("Internal error: Can't specify both allow_missing and invert_condition") end if not weakness then if allow_missing or invert_condition then return else err(("weakness is unspecified but must be %s"):format(make_possible_weaknesses())) end else local matches = m_table.contains(values, weakness) if invert_condition and matches then err(("weakness '%s' must not be %s"):format(weakness, make_possible_weaknesses())) elseif not invert_condition and not matches then err(("weakness '%s' must be %s"):format(weakness, make_possible_weaknesses())) end end end local vocalized local function handle_possibly_final_weak(sound_prefix, expected_length) check_len(expected_length, expected_length) if c(expected_length) == AMAQ then -- passive final-weak if is_active then err("participle in -ِى only allowed for passive participles") end check_weakness({"final-weak", "assimilated+final-weak"}, "allow missing") vocalized = sound_prefix .. AN .. AMAQ else -- all others behave as if sound check_weakness({"final-weak", "assimilated+final-weak"}, nil, "invert condition") vocalized = sound_prefix .. (is_active and I or A) .. c(expected_length) end end if not (vform == "I" and is_active) then -- all participles except verb form I active begin in م-. check(1, M) end if vform == "I" then if is_active then check(2, ALIF) local sound_prefix = c(1) .. AA .. c(3) if len == 3 then if c(3) == HAMZA then -- Either hollow with hamzated third radical, e.g. [[شاء]] active participle 'شَاءٍ', or final-weak -- with hamzated second radical, e.g. [[رأى]] active participle 'رَاءٍ'. Theoretically (?), also -- geminate with hamzated second/third radical, but I don't know if any such verbs exist. if weakness == "geminate" then vocalized = sound_prefix .. SH else check_weakness({"hollow", "final-weak"}, "allow missing") vocalized = sound_prefix .. IN end else check_weakness({"final-weak", "geminate"}) if weakness == "geminate" then vocalized = sound_prefix .. SH else vocalized = sound_prefix .. IN end end else check_len(4, 4) -- we will convert back to alif maqṣūra below as needed vocalized = sound_prefix .. I .. c(4) end else -- assimilated verbs: regular, e.g. مَوْزُون "weighed" -- geminate verbs: regular, e.g. مَبْلُول "moistened" -- third-hamzated verbs: مَبْرُوء -- hollow verbs: مَقُود "led, driven"; مَزِيد "added, increased" -- hollow first-hamzated verbs: مَئِيض "returned, reverted"; مَأْيُوس "despaired" (NOTE: formation is sound); -- مَأُود or مَؤُود "bent; depleted" -- hollow third-hamzated verbs: مَشِيء "willed, intended", مَضُوء "glittered?" -- final-weak: مَلْقِيّ "found, encountered"; مَصْغُوّ "inclined" -- hollow + final-weak: مَشْوِيّ "fried, grilled", مَهْوِيّ "loved" -- first-hamzated + hollow + final-weak: مَأْوِيّ "received hospitably" local sound_prefix = MA .. c(2) .. SK .. c(3) if len == 5 then -- sound, assimilated or geminate check(4, W) vocalized = sound_prefix .. UU .. c(5) else check_len(4, 4) if c(4) == W then -- final-weak third-wāw vocalized = sound_prefix .. U .. W .. SH elseif c(4) == Y then -- final-weak third-yāʾ vocalized = sound_prefix .. I .. Y .. SH else -- hollow check(3, {W, Y}) if c(3) == W then vocalized = MA .. c(2) .. UU .. c(4) else vocalized = MA .. c(2) .. II .. c(4) end end end end elseif vform == "II" or vform == "V" or vform == "XII" or vform == "XIII" or vform == "Iq" or vform == "IIq" or vform == "IIIq" then local sound_prefix, expected_length if vform == "II" then sound_prefix = MU .. c(2) .. A .. c(3) .. SH expected_length = 4 elseif vform == "V" then check(2, T) sound_prefix = MU .. T .. A .. c(3) .. A .. c(4) .. SH expected_length = 5 elseif vform == "XII" then -- e.g. [[احدودب]] "to be or become convex or humpbacked", مُحْدَوْدِب (active); -- [[اثنونى]] "to be bent; to be doubled up", مُثْنَوْنٍ (active) check(4, W) if c(3) ~= c(5) then err(("third letter %s should be the same as the fifth letter %s"):format(c(3), c(5))) end sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. W .. SK .. c(5) expected_length = 6 elseif vform == "XIII" then -- e.g. [[اخروط]] "to get entangled; to extend", مُخْرَوِّط (active), مُخْرَوَّط (passive) check(4, W) sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. W .. SH expected_length = 5 elseif vform == "Iq" then sound_prefix = MU .. c(2) .. A .. c(3) .. SK .. c(4) expected_length = 5 elseif vform == "IIq" then check(2, T) sound_prefix = MU .. T .. A .. c(3) .. A .. c(4) .. SK .. c(5) expected_length = 6 elseif vform == "IIIq" then -- e.g. [[اخرنطم]] "to be proud and angry" check(4, T) sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. N .. SK .. c(5) expected_length = 6 else error("Internal error: Unhandled verb form " .. vform) end if len == expected_length - 1 then -- active final-weak if not is_active then err(("length-%s participle only allowed for active participles"):format(len)) end check_weakness({"final-weak", "assimilated+final-weak"}, "allow missing") vocalized = sound_prefix .. IN else handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "III" or vform == "VI" then local sound_prefix, expected_length if vform == "VI" then check(2, T) check(4, ALIF) sound_prefix = MU .. T .. A .. c(3) .. AA .. c(5) expected_length = 6 else sound_prefix = MU .. c(2) .. AA .. c(4) expected_length = 5 end if len == expected_length - 1 then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. SH else vocalized = sound_prefix .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. SH end else handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "IV" or vform == "X" then -- form IV: -- sound: مُرْسِخ (active, "entrenching"), مُرْسَخ (passive, "entrenched") -- first-hamzated (like sound): مُؤْيِس (active, "causing to despair"), مُؤْيَس (passive, "caused to despair") -- final-weak: مُكْرٍ (active, "renting out"), مُكْرًى (passive, "rented out") -- assimilated: مُورِد (active, "transferring"), مُورَد (passive, "transferred"); same when first-Y, e.g. -- أَيْقَنَ "to be certain of": مُوقِن (active), مُوقَن (passive) -- assimilated + final-weak: مُورٍ (active, "setting fire, kindling"), مُورًى (passive, "set fire, kindled") -- geminate: مُمِدّ (active, "granting, helping"), مُمَدّ (passive, "granted, helped") -- hollow: مُزِيل (active, "eliminating"), مُزَال (passive, "eliminated") -- hollow + final-weak: مُعْيٍ (active, "tiring"), مُعْيًى (passive, "tired") local sound_prefix, expected_length if vform == "X" then check(2, S) check(3, T) sound_prefix = MU .. S .. SK .. T .. A .. c(4) expected_length = 6 else sound_prefix = MU .. c(2) expected_length = 4 end if len == expected_length and c(len - 1) == Y and c(len) ~= AMAQ then -- active hollow if not is_active then err("this shape only allowed for active participles") end check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. II .. c(len) elseif len == expected_length and c(len - 1) == ALIF then -- passive hollow if is_active then err("this shape only allowed for passive participles") end check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. AA .. c(len) elseif len == expected_length - 1 then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. I .. c(len) .. SH elseif vform == "IV" and c(2) == W then -- assimilated final-weak vocalized = sound_prefix .. c(len) .. IN else vocalized = sound_prefix .. SK .. c(len) .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. A .. c(len) .. SH end else if vform == "IV" and c(2) == W then -- assimilated, possibly final-weak sound_prefix = sound_prefix .. c(expected_length - 1) else sound_prefix = sound_prefix .. SK .. c(expected_length - 1) end handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "VII" or vform == "VIII" then -- form VII (passive participles are fairly rare but do exist): -- sound: مُنْكَتِب (active "subscribing"), مُنْكَتَب (passive "subscribed") -- geminate: مُنْضَمّ (both active "joining, containing" and passive "joined, contained") -- final-weak: مُنْطَلٍ (active "fooling (someone)"), مُنْطَلًى (passive "fooled") -- final-weak with medial wāw: مُنْطَوٍ (active "involving"), مُنْطَوًى (passive "involved") -- hollow: مُنْقَاد (both active "complying with" and passive "complied with") -- -- for form VIII, the same variants exist but things are complicated by assimilations involving the template T. -- sound third-hamzated no assimilation: مُبْتَدِئ (active "beginning"), مُبْتَدَأ (passive "begun") -- geminate no assimilation: مُبْتَزّ (both active "robbing" and passive "robbed") -- final-weak no assimilation: مُبْتَنٍ (active "building"), مُبْتَنًى (passive "built") -- final-weak with medial wāw no assimilation: مُحْتَوٍ (active "containing"), مُحْتَوًى (passive "contained") -- hollow no assimilation: مُخْتَار (both active "choosing" and passive "chosen") -- -- sound with total assimilation: مُتَّبِع (active "following"), مُتَّبَع (passive "followed") -- sound with total assimilation, assimilating wāw: مُتَّعِد (active "threatening"), مُتَّعَد (passive "threatened") -- sound with total assimilation, irregularly assimilating hamza: مُتَّخِذ (active "taking"), مُتَّخَذ (passive "taken") -- sound with total assimilation (to ḏāl, producing dāl): مُدَّخِر (active "reserving"), مُدَّخَر (passive "reserved") -- sound with total assimilation (to ḏāl): مُذَّكِر (active "remembering"), مُذَّكَر (passive "remembered") -- sound with total assimilation (to ṭāʔ): مُطَّرِح (active "discarding"), مُطَّرَح (passive "discarded") -- sound with total assimilation (to ẓāʔ): مُظَّلِم (active "tolerating"), مُظَّلَم (passive "tolerated") -- final-weak with total assimilation, assimilating wāw: مُتَّقٍ (active "guarding against"), مُتَّقًى (passive "guarded against") -- final-weak with total assimilation (to ṯāʔ): مُثَّنٍ (active "undulating"), مُثَّنًى (passive "undulated") -- final-weak with total assimilation (to dāl): مُدَّعٍ (active "claiming"), مُدَّعًى (passive "claimed") -- sound with partial assimilation (to zayn): مُزْدَهِر (active "thriving"), مُزْدَهَر (passive "thrived") -- sound with medial wāw with partial assimilation (to zayn): مُزْدَوِج (active "appearing twice") -- sound with partial assimilation (to ṣād): مُصْطَبِح (active "illuminating"), مُصْطَبَح (passive, "illuminated") -- sound with partial assimilation (to ḍād): مُضْطَرِب (active "to be disturbed"; no passive) -- geminate with partial assimilation (to ṣād): مُصْطَبّ (both active "effusing" and passive "effused") -- geminate with partial assimilation (to ḍād): مُضْطَرّ (both active "forcing" and passive "forced") -- final-weak with partial assimilation (to ṣād): مُصْطَلٍ (active "warming"), مُصْطَلًى (passive "warmed") -- hollow with partial assimilation (to zayn): مُزْدَاد (both active "increasing" and passive "increased") -- hollow with partial assimilation (to ṣad): مُصْطَاد (both active "hunting" and passive "hunted") local sound_prefix, sufind if vform == "VII" then check(2, N) sound_prefix = MU .. N .. SK .. c(3) sufind = 4 else local c2 = c(2) if c2 == T or c2 == "د" or c2 == "ث" or c2 == "ذ" or c2 == "ط" or c2 == "ظ" then -- full assimilation sound_prefix = MU .. c2 .. SH sufind = 3 else -- partial or no assimilation if c2 == "ز" then check(3, "د") elseif c2 == "ص" or c2 == "ض" then check(3, "ط") else check(3, T) end sound_prefix = MU .. c2 .. SK .. c(3) sufind = 4 end end if c(sufind) == ALIF then -- hollow, active or passive check_len(sufind + 1, sufind + 1) check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. AA .. c(sufind + 1) elseif len == sufind then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. A .. c(len) .. SH else vocalized = sound_prefix .. A .. c(len) .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. A .. c(len) .. SH end else sound_prefix = sound_prefix .. A .. c(sufind) handle_possibly_final_weak(sound_prefix, sufind + 1) end elseif vform == "IX" then check_len(4, 4) vocalized = MU .. c(2) .. SK .. c(3) .. A .. c(4) .. SH elseif vform == "IVq" then -- e.g. [[اذلعب]] "to scamper away", مُذْلَعِبّ (active), مُذْلَعَبّ (passive); -- [[اطمأن]] "to remain quietly; to be certain", مُطْمَئِنّ (active), مُطْمَأَنّ (passive) check_len(5, 5) local sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. c(4) if is_active then vocalized = sound_prefix .. I .. c(5) .. SH else vocalized = sound_prefix .. A .. c(5) .. SH end elseif vform == "XI" then check_len(5, 5) check(4, ALIF) vocalized = MU .. c(2) .. SK .. c(3) .. AA .. c(5) .. SH -- e.g. [[احمار]] "to turn red, to blush", مُحْمَارّ (active) elseif vform == "XIV" or vform == "XV" then -- FIXME: Implement. No examples in Wiktionary currently; need to look up in a grammar. error("Support for verb form " .. vform .. " not implemented yet") else error("Don't recognize verb form " .. vform) end vocalized = rsub(vocalized, HAMZA .. AA, AMAD) local reconstructed_headword = lang:makeEntryName(vocalized) if reconstructed_headword ~= orig_headword then error(("Internal error: Vocalized participle %s doesn't match original participle %s"):format( vocalized, orig_headword)) end -- Apply NFC-style normalization to match MediaWiki's automatic normalization return apply_nfc_shadda(vocalized) end function export.infer_participle_vocalization_json(frame) local iparams = { [1] = {required = true}, [2] = {required = true}, ["weakness"] = {}, ["passive"] = {type = "boolean"} } local iargs = require("Module:parameters").process(frame.args, iparams) return export.infer_participle_vocalization(iargs[1], iargs[2], iargs.weakness, not iargs.passive) end return export 13xvb4sd5aqh5l7usiup9b8ge8rck3l 1097877 1097866 2026-08-02T05:46:23Z ForzaGreen 28665 إصلاح موسع=: tall لم يكن يُحذف (a and nil or b في لوا) 1097877 Scribunto text/plain local export = {} --[=[ This module implements {{ar-conj}} and provides the underlying conjugation functions for {{ar-verb}} (whose actual formatting is done in [[Module:ar-headword]]). Author: User:Benwing, from an early version (2013-2014) by User:Atitarev, User:ZxxZxxZ. ]=] --[=[ TERMINOLOGY: -- "slot" = A particular combination of tense/mood/person/number/etc. Example slot names for verbs are "past_1s" (past tense first-person singular), "juss_pass_3fp" (non-past jussive passive third-person feminine plural) "ap" (active participle). Each slot is filled with zero or more forms. -- "form" = The conjugated Arabic form representing the value of a given slot. -- "lemma" = The dictionary form of a given Arabic term. For Arabic, normally the third person masculine singular past, although other forms may be used if this form is missing (e.g. in passive-only verbs or verbs lacking the past). ]=] --[=[ FIXME: 1. Finish unimplemented conjugation types. Only IX-final-weak left (extremely rare, possibly only one verb اِعْمَايَ (according to Haywood and Nahmad p. 244, who are very specific about the irregular occurrence of alif + yā instead of expected اِعْمَيَّ with doubled yā). Not in Hans Wehr. NOTE: Not true about this, cf. form IX اِرْعَوَى "to desist, to repent, to see the light". Also note form XII اِخْضَوْضَرَ = form IX اِخْضَرَّ "to be or become green". [DONE except for اِعْمَايَ] 2. Implement irregular verbs as special cases and recognize them, e.g. -- laysa "to not be"; only exists in the past tense, no non-past, no imperative, no participles, no passive, no verbal noun. Irregular alternation las-/lays-. [IMPLEMENTABLE USING OVERRIDES] -- istaḥā yastaḥī "be ashamed of" -- this is complex according to Hans Wehr because there are two verbs, regular istaḥyā yastaḥyī "to spare (someone)'s life" and irregular istaḥyā yastaḥyī "to be ashamed to face (someone)", which is irregular because it has the alternate irregular form istaḥā yastaḥī which only applies to this meaning. Currently we follow Haywood and Nahmad in saying that both varieties can be spelled istaḥyā/istaḥā/istaḥḥā, but we should instead use a variant= param similar to حَيَّ to distinguish the two possibilities, and maybe not include istaḥḥā. -- ʿayya/ʿayiya yaʿayyu/yaʿyā "to not find the right way, be incapable of, stammer, falter, fall ill". This appears to be a mixture of a geminate and final-weak verb. Unclear what the whole paradigm looks like. Do the consonant-ending parts in the past follow the final-weak paradigm? Is it the same in the non-past? Or can you conjugate the non-past fully as either geminate or final-weak? -- اِنْمَحَى inmaḥā or يمَّحَى immaḥā "to be effaced, obliterated; to disappear, vanish" has irregular assimilation of inm- to imm- as an alternative. inmalasa "to become smooth; to glide; to slip away; to escape" also has immalasa as an alternative. The only other form VII verbs in Hans Wehr beginning with -m- are inmalaḵa "to be pulled out, torn out, wrenched" and inmāʿa "to be melted, to melt, to dissolve", which are not listed with imm- alternatives, but might have them; if so, we should handle this generally. [DONE] -- يَرَعَ yaraʕa yariʕu "to be a coward, to be chickenhearted" as an alternative form of يَرِعَ yariʕa yayraʕu (as given in Wehr). [IMPLEMENTABLE USING OVERRIDES] 3. Implement individual override parameters for each paradigm part. See Module:fro-verb for an example of how to do this generally. Note that {{temp|ar-conj-I}} and other of the older templates already had such individual override params. [DONE] Irregular verbs already implemented: -- [ḥayya/ḥayiya yaḥyā "live" -- behaves like a normal final-weak verb (e.g. past first singular ḥayītu) except in the past-tense parts with vowel-initial endings (all the third person except for the third feminine plural). The normal singular and dual endings have -yiya- in them, which compresses to -yya-, with the normal endings the less preferred ones. In masculine third plural, expected ḥayū is replaced by ḥayyū by analogy to the -yy- parts, and the regular form is not given as an alternant in John Mace. Barron's 201 verbs appears to have the regular ḥayū as the part, however. Note also that final -yā appears with tall alif. This appears to be a spelling convention of Arabic, also applying in ḥayyā (form II, "to keep (someone) alive") and 'aḥyā (form IV, "to animate, revive, give birth to, give new life to").] -- implemented -- [ittaxadha yattaxidhu "take"] -- implemented -- [sa'ala yas'alu "ask" with alternative jussive/imperative yasal/sal] -- implemented -- [ra'ā yarā "see"] -- implemented -- ['arā yurī "show"] -- implemented -- ['akala ya'kulu "eat" with imperative kul] -- implemented -- ['axadha ya'xudhu "take" with imperative xudh] -- implemented -- ['amara ya'muru "order" with imperative mur] -- implemented --]=] local force_cat = false -- set to true for debugging -- if true, always maintain manual translit during processing, and compare against full translit at the end local debug_translit = false local lang = require("Module:languages").getByCode("ar") local m_links = require("Module:links") local m_string_utilities = require("Module:string utilities") local m_table = require("Module:table") local ar_utilities = require("Module:ar-utilities") local iut = require("Module:inflection utilities") local put = require("Module:parse utilities") local list_to_text = mw.text.listToText local rfind = m_string_utilities.find local rsubn = m_string_utilities.gsub local rmatch = m_string_utilities.match local rsplit = m_string_utilities.split local usub = m_string_utilities.sub local ulen = m_string_utilities.len local u = m_string_utilities.char local unpack = unpack or table.unpack -- Lua 5.2 compatibility local dump = mw.dumpObject -- Within this module, conjugations are the functions that do the actual -- conjugating by creating the parts of a basic verb. -- They are defined further down. local conjugations = {} -- hamza variants local HAMZA = u(0x0621) -- hamza on the line (stand-alone hamza) = ء local HAMZA_ON_ALIF = u(0x0623) local HAMZA_ON_W = u(0x0624) local HAMZA_UNDER_ALIF = u(0x0625) local HAMZA_ON_Y = u(0x0626) local HAMZA_ANY = "[" .. HAMZA .. HAMZA_ON_ALIF .. HAMZA_UNDER_ALIF .. HAMZA_ON_W .. HAMZA_ON_Y .. "]" local HAMZA_PH = u(0xFFF0) -- hamza placeholder local BAD = u(0xFFF1) local BORDER = u(0xFFF2) -- diacritics local A = u(0x064E) -- fatḥa local AN = u(0x064B) -- fatḥatān (fatḥa tanwīn) local U = u(0x064F) -- ḍamma local UN = u(0x064C) -- ḍammatān (ḍamma tanwīn) local I = u(0x0650) -- kasra local IN = u(0x064D) -- kasratān (kasra tanwīn) local SK = u(0x0652) -- sukūn = no vowel local SH = u(0x0651) -- šadda = gemination of consonants local DAGGER_ALIF = u(0x0670) local DIACRITIC_ANY_BUT_SH = "[" .. A .. I .. U .. AN .. IN .. UN .. SK .. DAGGER_ALIF .. "]" -- Pattern matching short vowels local AIU = "[" .. A .. I .. U .. "]" -- Pattern matching short vowels or sukūn local AIUSK = "[" .. A .. I .. U .. SK .. "]" -- Pattern matching any diacritics that may be on a consonant local DIACRITIC = SH .. "?" .. DIACRITIC_ANY_BUT_SH -- translit_patterns local vowels = "aeiouāēīōū" local NV = "[^" .. vowels .. "]" local dia = {a = A, i = I, u = U} local undia = {[A] = "a", [I] = "i", [U] = "u", ["-"] = "-"} -- various letters and signs local ALIF = u(0x0627) -- ʾalif = ا local AMAQ = u(0x0649) -- ʾalif maqṣūra = ى local AMAD = u(0x0622) -- ʾalif madda = آ local TAM = u(0x0629) -- tāʾ marbūṭa = ة local T = u(0x062A) -- tāʾ = ت local HYPHEN = u(0x0640) local N = u(0x0646) -- nūn = ن local W = u(0x0648) -- wāw = و local Y = u(0x064A) -- yāʾ = ي local S = "س" local M = "م" local LRM = u(0x200e) -- left-to-right mark -- common combinations local AH = A .. TAM local AT = A .. T local AA = A .. ALIF local AAMAQ = A .. AMAQ local AAH = AA .. TAM local AAT = AA .. T local II = I .. Y local UU = U .. W local AY = A .. Y local AW = A .. W local AYSK = AY .. SK local AWSK = AW .. SK local NA = N .. A local NI = N .. I local AAN = AA .. N local AANI = AA .. NI local AYNI = AYSK .. NI local AWNA = AWSK .. NA local AYNA = AYSK .. NA local AYAAT = AY .. AAT local UNU = "[" .. UN .. U .. "]" local MA = M .. A local MU = M .. U local TA = T .. A local TU = T .. U local _I = ALIF .. I local _U = ALIF .. U --W: Morphological pattern (الوزن الصرفي) to verb form mapping local MORPHOLOGICAL_PATTERN_TO_FORM = { ["فعَل يفعُل"] = "I/a~u", ["فعَل يفعِل"] = "I/a~i", ["فعَل يفعَل"] = "I/a~a", ["فعُل يفعُل"] = "I/u~u", ["فعِل يفعَل"] = "I/i~a", ["فعِل يفعِل"] = "I/i~i", ["فعّل"] = "II", ["فاعل"] = "III", ["أفعل"] = "IV", ["تفعّل"] = "V", ["تفاعل"] = "VI", ["انفعل"] = "VII", ["افتعل"] = "VIII", ["افعلّ"] = "IX", ["استفعل"] = "X", ["افعالّ"] = "XI", ["افعوعل"] = "XII", ["افعوّل"] = "XIII", ["فعلل"] = "Iq", ["تفعلل"] = "IIq", ["افعنلل"] = "IIIq", -- "XIV" should not be used ["افعللّ"] = "IVq", } --W: Create reverse mapping from form to morphological pattern local FORM_TO_MORPHOLOGICAL_PATTERN = {} for pattern, form in pairs(MORPHOLOGICAL_PATTERN_TO_FORM) do FORM_TO_MORPHOLOGICAL_PATTERN[form] = pattern end --W: local MORPHOLOGICAL_PATTERN_TO_BASIC_DERIV = { ["فعَل يفعُل"] = "مُجرَّد", ["فعَل يفعِل"] = "مُجرَّد", ["فعَل يفعَل"] = "مُجرَّد", ["فعُل يفعُل"] = "مُجرَّد", ["فعِل يفعَل"] = "مُجرَّد", ["فعِل يفعِل"] = "مُجرَّد", ["فعّل"] = "مزيد بحرف", ["فاعل"] = "مزيد بحرف", ["أفعل"] = "مزيد بحرف", ["تفعّل"] = "مزيد بحرفين", ["تفاعل"] = "مزيد بحرفين", ["انفعل"] = "مزيد بحرفين", ["افتعل"] = "مزيد بحرفين", ["افعلّ"] = "مزيد بحرفين", ["استفعل"] = "مزيد بثلاثة أحرف", ["افعالّ"] = "مزيد بثلاثة أحرف", ["افعوعل"] = "مزيد بثلاثة أحرف", ["افعوّل"] = "مزيد بثلاثة أحرف", ["فعلل"] = "مُجرَّد", ["تفعلل"] = "مزيد بحرف", ["افعنلل"] = "مزيد بحرفين", ["افعللّ"] = "مزيد بحرفين", } local translit_cache = { -- hamza variants [HAMZA] = "ʔ", [HAMZA_ON_ALIF] = "ʔ", [HAMZA_ON_W] = "ʔ", [HAMZA_UNDER_ALIF] = "ʔ", [HAMZA_ON_Y] = "ʔ", [HAMZA_PH] = "ʔ", -- diacritics [A] = "a", [AN] = "an", [U] = "u", [UN] = "un", [I] = "i", [IN] = "in", [SK] = "", [SH] = "*", -- handled specially [DAGGER_ALIF] = "ā", -- various letters and signs [""] = "", [ALIF] = BAD, -- we should never be transliterating ALIF by itself, as its translit in isolation is ambiguous [AMAQ] = BAD, [AMAD] = "ʔā", [TAM] = "", [T] = "t", [N] = "n", [W] = "w", [Y] = "y", [S] = "s", [M] = "m", [LRM] = "", -- common combinations [AH] = "a", [AT] = "at", [AA] = "ā", [AAMAQ] = "ā", [AAH] = "āh", [AAT] = "āt", [II] = "ī", [UU] = "ū", [AY] = "ay", [AW] = "aw", [AYSK] = "ay", [AWSK] = "aw", [NA] = "na", [NI] = "ni", [AAN] = "ān", [AANI] = "āni", [AYNI] = "ayni", [AWNA] = "awna", [AYNA] = "ayna", [AYAAT] = "ayāt", [MA] = "ma", [MU] = "mu", [TA] = "ta", [TU] = "tu", [_I] = "i", [_U] = "u", } local function transliterate(text) local cached = translit_cache[text] if cached then if cached == BAD then error(("Internal error: Unable to transliterate %s because explicitly marked as BAD"):format(text)) end return cached end local tr = (lang:transliterate(text)) if not tr then error(("Internal error: Unable to transliterate: %s"):format(text)) end translit_cache[text] = tr return tr end local all_person_number_list = { "1s", "2ms", "2fs", "3ms", "3fs", "2d", "3md", "3fd", "1p", "2mp", "2fp", "3mp", "3fp" } local function make_person_number_slot_accel_list(list) local slot_accel_list = {} return slot_accel_list end local imp_person_number_list = {} for _, pn in ipairs(all_person_number_list) do if pn:find("^2") then table.insert(imp_person_number_list, pn) end end local passive_types = m_table.listToSet { "pass", -- verb has both active and passive "ipass", -- verb is active with impersonal passive "nopass", -- verb is active-only "onlypass", -- verb is passive-only "onlypass-impers", -- verb itself is impersonal, meaning passive-only with impersonal passive } local indicator_flags = m_table.listToSet { "nopast", "no_nonpast", "noimp", "nocat", -- don't categorize or include annotations about this; useful in suppletive parts of verbs "reduced", -- verb has assimilation/reduction of initial coronals "altgem", -- form X with alternative past geminate forms with final-weak endings } export.potential_lemma_slots = {"past_3ms", "past_pass_3ms", "ind_3ms", "ind_pass_3ms", "imp_2ms"} export.unsettable_slots = {} for _, potential_lemma_slot in ipairs(export.potential_lemma_slots) do table.insert(export.unsettable_slots, potential_lemma_slot .. "_linked") end -- We don't set the active participle directly for form I because we don't want stative verbs (with past vowel i or u) -- to default to فَاعِل. Instead we set the special slot 'ap1' and later copy it to 'ap' for non-stative verbs. The user -- meanwhile can explicitly request the فَاعِل form for active participles for stative verbs using `ap:+`. table.insert(export.unsettable_slots, "ap1") -- primary default فَاعِل for form I active participles table.insert(export.unsettable_slots, "ap2") -- secondary default فَعِيل for form I active participles (stative I) table.insert(export.unsettable_slots, "ap3") -- secondary default فَعِل for form I active participles (stative II) table.insert(export.unsettable_slots, "apcd") -- secondary default أَفْعَل for form I active participles (color/defect) table.insert(export.unsettable_slots, "apan") -- secondary default فَعْلَان for form I active participles (in -ān) table.insert(export.unsettable_slots, "pp2") -- secondary default فَعِيل for form I passive participles (same as ap2) table.insert(export.unsettable_slots, "vn2") -- secondary default فِعَال for form III verbal nouns export.unsettable_slots_set = m_table.listToSet(export.unsettable_slots) local default_indicator_to_active_participle_slot = { ["+"] = "ap1", ["++"] = "ap2", ["+++"] = "ap3", ["+cd"] = "apcd", ["+an"] = "apan", } local slots_that_may_be_uncertain = { vn = "verbal noun", ap = "active participle", } -- Initialize all the slots for which we generate forms. local function add_slots(alternant_multiword_spec) alternant_multiword_spec.verb_slots = { {"ap", "act|part"}, {"pp", "pass|part"}, {"vn", "vnoun"}, } for _, unsettable_slot in ipairs(export.unsettable_slots) do table.insert(alternant_multiword_spec.verb_slots, {unsettable_slot, "-"}) end -- Add entries for a slot with person/number variants. -- `slot_prefix` is the prefix of the slot, typically specifying the tense/aspect. -- `tag_suffix` is a string listing the set of inflection tags to add after the person/number tags. -- `person_number_list` is a list of the person/number slot suffixes to add to `slot_prefix`. local function add_personal_slot(slot_prefix, tag_suffix, person_number_list) for _, persnum in ipairs(person_number_list) do local slot = slot_prefix .. "_" .. persnum local accel = persnum:gsub("(.)", "%1|") .. tag_suffix table.insert(alternant_multiword_spec.verb_slots, {slot, accel}) end end local tenses = { {"past", "past|%s"}, {"ind", "non-past|%s|ind"}, {"sub", "non-past|%s|sub"}, {"juss", "non-past|%s|juss"}, } for _, slot_accel in ipairs(tenses) do local slot, accel = unpack(slot_accel) for _, voice in ipairs {"act", "pass"} do add_personal_slot(voice == "act" and slot or slot .. "_pass", accel:format(voice), all_person_number_list) end end add_personal_slot("imp", "imp", imp_person_number_list) alternant_multiword_spec.verb_slots_map = {} for _, slot_accel in ipairs(alternant_multiword_spec.verb_slots) do local slot, accel = unpack(slot_accel) alternant_multiword_spec.verb_slots_map[slot] = accel end end local overridable_stems = {} local slot_override_param_mods = { footnote = { item_dest = "footnotes", store = "insert", }, alt = {}, t = { -- [[Module:links]] expects the gloss in "gloss". item_dest = "gloss", }, gloss = {}, g = { -- [[Module:links]] expects the genders in "g". `sublist = true` automatically splits on comma (optionally -- with surrounding whitespace). item_dest = "genders", sublist = true, }, pos = {}, lit = {}, id = {}, --W: The q/qq/l/ll (qualifier and label) modifiers were removed: rendering them -- needs [[Module:pron qualifier]], which does not exist on ar.wiktionary, so any -- use of them raised a script error. Accepting them here again requires importing -- that module first and restoring the block in generate_link() below. } local function generate_obj(formval, parse_err, prefix, is_slot_override) local val, uncertain = formval:match("^(.*)(%?)$") val = val or formval uncertain = not not uncertain local ar, translit = val:match("^(.*)//(.*)$") if not ar then ar = val end if ar == "" then if uncertain then ar = "?" else error(("Can't specify blank value for override for %s override '%s'"):format( is_slot_override and "slot" or "stem", prefix)) end end return {form = ar, translit = translit, uncertain = uncertain} end local function parse_inline_modifiers(comma_separated_group, parse_err, prefix, is_slot_override) local function this_generate_obj(formval, parse_err) return generate_obj(formval, parse_err, prefix, is_slot_override) end return put.parse_inline_modifiers_from_segments { group = comma_separated_group, props = { param_mods = slot_override_param_mods, parse_err = parse_err, generate_obj = this_generate_obj, pre_normalize_modifiers = function(data) local modtext = data.modtext modtext = modtext:match("^(%[.*%])$") if modtext then return ("<footnote:%s>"):format(modtext) end return data.modtext end, }, } end local function allow_multiple_values_for_override(comma_separated_groups, data, is_slot_override) local retvals = {} for _, comma_separated_group in ipairs(comma_separated_groups) do local retval if is_slot_override then --W: pass `prefix` and `is_slot_override` through; without them the error -- raised for a blank override value formatted a nil prefix, which is a -- crash on Lua 5.1 rather than the intended message. Reachable from e.g. -- <I/a~u.vn:[[كتابة]]>, where the [[...]] is consumed as a footnote and -- leaves the value empty. retval = parse_inline_modifiers(comma_separated_group, data.parse_err, data.prefix, is_slot_override) else retval = generate_obj(comma_separated_group[1], data.parse_err, data.prefix, is_slot_override) retval.footnotes = data.fetch_footnotes(comma_separated_group) end table.insert(retvals, retval) end for _, form in ipairs(retvals) do if form.form == "+" or default_indicator_to_active_participle_slot[form.form] then if form.form ~= "+" and default_indicator_to_active_participle_slot[form.form] and not is_slot_override then error(("Stem override '%s' cannot use %s to request a secondary default"):format( data.prefix, form.form)) end data.base.slot_override_uses_default[data.prefix] = true end end for _, form in ipairs(retvals) do if form.form == "-" then data.base.slot_explicitly_missing[data.prefix] = true break end end if data.base.slot_explicitly_missing[data.prefix] then for _, form in ipairs(retvals) do if form.form ~= "-" then data.parse_err(("For slot or stem '%s', saw both - and a value other than -, which isn't allowed"): format(data.prefix)) end end return nil end return retvals end local function simple_choice(choices) return function(separated_groups, data) if #separated_groups > 1 then data.parse_err("For spec '" .. data.prefix .. ":', only one value currently allowed") end if #separated_groups[1] > 1 then data.parse_err("For spec '" .. data.prefix .. ":', no footnotes currently allowed") end local choice = separated_groups[1][1] if not m_table.contains(choices, choice) then data.parse_err("For spec '" .. data.prefix .. ":', saw value '" .. choice .. "' but expected one of '" .. table.concat(choices, "،") .. "'") end return choice end end for _, overridable_stem in ipairs { "past", "past_v", "past_c", "past_pass", "past_pass_v", "past_pass_c", "nonpast", "nonpast_v", "nonpast_c", "nonpast_pass", "nonpast_pass_v", "nonpast_pass_c", "imp", "imp_v", "imp_c", } do overridable_stems[overridable_stem] = allow_multiple_values_for_override end overridable_stems.past_final_weak_vowel = simple_choice { "ay", "aw", "ī", "ū" } overridable_stems.past_pass_final_weak_vowel = simple_choice { "ay", "aw", "ī", "ū" } overridable_stems.nonpast_final_weak_vowel = simple_choice { "ā", "ī", "ū" } overridable_stems.nonpast_pass_final_weak_vowel = simple_choice { "ā", "ī", "ū" } ------------------------------------------------------------------------------- -- Utility functions -- ------------------------------------------------------------------------------- -- version of rsubn() that discards all but the first return value local function rsub(term, foo, bar) return (rsubn(term, foo, bar)) end -- version of rsubn() that returns a 2nd argument boolean indicating whether a substitution was made. local function rsubb(term, foo, bar) local retval, nsubs = rsubn(term, foo, bar) return retval, nsubs > 0 end -- Concatenate one or more strings or form objects. local function q(...) local not_all_strings = debug_translit local has_manual_translit = debug_translit for i = 1, select("#", ...) do local argt = select(i, ...) if not argt then error(("Internal error: Saw nil at index %s: %s"):format(i, dump({...}))) end if type(argt) ~= "string" then not_all_strings = true if argt.translit then has_manual_translit = true break end end end if not not_all_strings then -- just strings, concatenate directly return table.concat({...}) end local formvals = {} local translit = has_manual_translit and {} or nil local footnotes for i = 1, select("#", ...) do local argt = select(i, ...) if type(argt) == "string" then formvals[i] = argt if has_manual_translit then translit[i] = transliterate(argt) end else formvals[i] = argt.form if has_manual_translit then translit[i] = argt.translit or transliterate(argt.form) end footnotes = iut.combine_footnotes(footnotes, argt.footnotes) end end -- FIXME: Do we want to support other properties? return { form = table.concat(formvals), translit = has_manual_translit and table.concat(translit) or nil, footnotes = footnotes, } end -- Return the formval associated with `rad` (a radical or past/non-past vowel, either a string or form object). local function rget(rad) if type(rad) == "string" then return rad elseif type(rad) == "table" then return rad.form else error(("Internal error: Unexpected type for radical or past/non-past vowel: %s"):format(dump(rad))) end end export.rget = rget -- for use in [[Module:ar-headword]] -- Return the footnotes associated with `rad` (a radical or past/non-past vowel, either a string or form object). local function rget_footnotes(rad) if type(rad) == "string" then return nil elseif type(rad) == "table" then return rad.footnotes else error(("Internal error: Unexpected type for radical or past/non-past vowel: %s"):format(dump(rad))) end end -- Return true if the formval associated with `rad` (a radical or past/non-past vowel, either a string or form object) -- is `val`. local function req(rad, val) return rget(rad) == val end -- Map `vow` (a past/non-past vowel, either a string or form object without translit) by passing the formval through -- `fn`. Don't call this on radicals because they may have manual translit and it isn't clear how to handle that. local function map_vowel(vow, fn) if type(vow) == "string" then return fn(vow) elseif type(vow) == "table" then return {form = fn(vow.form), footnotes = vow.footnotes} else error(("Internal error: Unexpected type for past/non-past vowel: %s"):format(dump(vow))) end end local function get_radicals_3(vowel_spec) return vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3, vowel_spec.past, vowel_spec.nonpast end local function get_radicals_4(vowel_spec) return vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3, vowel_spec.rad4 end local function is_final_weak(base, vowel_spec) return vowel_spec.weakness == "final-weak" or base.form == "XV" end --W: Create a simple link local function link_term_simple(text) return "[[" .. text .. "]]" end local function link_term(text, face, id) return m_links.full_link({lang = lang, term = text, tr = "-", id = id}, face) end local function tag_text(text, tag, class) return m_links.full_link({lang = lang, alt = text, tr = "-"}) end local function track(page) require("Module:debug/track")("ar-verb/" .. page) return true end local function track_if_ar_conj(base, page) if base.alternant_multiword_spec.source_template == "ar-conj" then require("Module:debug/track")("ar-verb/" .. page) end return true end local function reorder_shadda(word) -- shadda+short-vowel (including tanwīn vowels, i.e. -an -in -un) gets -- replaced with short-vowel+shadda during NFC normalisation, which -- MediaWiki does for all Unicode strings; however, it makes various -- processes inconvenient, so undo it. word = rsub(word, "(" .. DIACRITIC_ANY_BUT_SH .. ")" .. SH, SH .. "%1") return word end local function apply_nfc_shadda(word) -- Apply NFC-style normalization: reorder shadda+vowel to vowel+shadda -- to match MediaWiki's automatic NFC normalization. This reverses the -- internal shadda+vowel format used during processing. word = rsub(word, SH .. "(" .. DIACRITIC_ANY_BUT_SH .. ")", "%1" .. SH) return word end ------------------------------------------------------------------------------- -- Basic functions to inflect tenses -- ------------------------------------------------------------------------------- local function skip_slot(base, slot, allow_overrides) if base.slot_explicitly_missing[slot] then return true end if not allow_overrides and base.slot_overrides[slot] and not base.slot_override_uses_default[slot] then -- Skip any slots for which there are overrides, except those that request the default value using +, ++, etc. return true end if base.passive == "nopass" and (slot == "pp" or slot:find("_pass")) then return true elseif base.passive == "onlypass" and slot ~= "pp" and slot ~= "vn" and not slot:find("_pass") then return true elseif base.passive == "ipass" and slot:find("_pass") and not slot:find("3ms") then return true elseif base.passive == "onlypass-impers" and slot ~= "pp" and slot ~= "vn" and (not slot:find("_pass") or slot:find("_pass") and not slot:find("3ms")) then return true end if base.nopast and slot:find("^past_") then return true end if base.noimp and slot:find("^imp_") then return true end if base.no_nonpast and (slot:find("^ind_") or slot:find("^sub_") or slot:find("^juss")) then return true end return false end local function basic_combine_stem_ending(stem, ending) return stem .. ending end local function basic_combine_stem_ending_tr(stem, ending) return stem .. ending end -- Concatenate `prefixes`, `stems` and `endings` (any of which may be an abbreviate form list, i.e. strings, form -- objects or lists of strings or form objects) and store into `slot`. If a user-supplied override exists for the slot, -- nothing will happen unless `allow_overrides` is provided. local function add3(base, slot, prefixes, stems, endings, allow_overrides) if skip_slot(base, slot, allow_overrides) then return end -- Optimization since the prefixes are almost always single strings. if type(prefixes) == "string" then local function do_combine_stem_ending(stem, ending) return prefixes .. stem .. ending end local function do_combine_stem_ending_tr(stem, ending) return transliterate(prefixes) .. stem .. ending end iut.add_forms(base.forms, slot, stems, endings, do_combine_stem_ending, transliterate, do_combine_stem_ending_tr, base.form_footnotes) else iut.add_multiple_forms(base.forms, slot, {prefixes, stems, endings}, basic_combine_stem_ending, transliterate, basic_combine_stem_ending_tr, base.form_footnotes) end end -- Insert one or more forms in `form_or_forms` into `slot`. `form_or_forms` is an abbreviated form list (see comment at -- top of [[Module:inflection utilities]]). If a user-supplied override exists for the slot, nothing will happen unless -- `allow_overrides` is provided. BEWARE: One form object should never occur in two different slots, or twice in a given -- slot; if taking a form object from an existing slot, make sure to shallowCopy() it. local function insert_form_or_forms(base, slot, form_or_forms, allow_overrides, uncertain) if not skip_slot(base, slot, allow_overrides) then -- Some optimizations of the most common case of inserting a single string. if type(form_or_forms) == "string" and not base.form_footnotes then form_or_forms = {form = form_or_forms, uncertain = uncertain} iut.insert_form(base.forms, slot, form_or_forms) else local list = iut.convert_to_general_list_form(form_or_forms, base.form_footnotes) if uncertain then for _, formobj in ipairs(list) do formobj.uncertain = true end end iut.insert_forms(base.forms, slot, list) end end end -- Insert `string_or_form` into both the ap2 and pp2 slots, shallowCopying a form object to make sure no form objects -- occur in two slots. local function insert_ap2_pp2(base, string_or_form) insert_form_or_forms(base, "ap2", string_or_form) if type(string_or_form) == "table" then string_or_form = m_table.shallowCopy(string_or_form) end insert_form_or_forms(base, "pp2", string_or_form) end -- Convert `stemforms` (a string, a form object, or a list of strings and/or form objects) into "general form" (a list -- of form objects) and map `fn` over the list of objects. `fn` is passed two arguments (form value and translit) and -- should likewise return the new form value and translit. Footnotes will be preserved. FIXME: Preserve other metadata. local function map_general(stemforms, fn) return iut.map_forms(iut.convert_to_general_list_form(stemforms), fn) end -- Similar to map_general() except that `fn` should return a single value (one or more strings or form objects), instead -- of two values (form value and translit), and the resulting value(s) from all calls to `fn` will be flattened to -- construct the overall return value. Footnotes will be preserved. FIXME: Preserve other metadata. local function flatmap_general(stemforms, fn) return iut.flatmap_forms(iut.convert_to_general_list_form(stemforms), fn) end -- Given user-supplied stem overrides in `base`, construct any derived stem overrides (e.g. vowel-specific or -- consonant-specific variants), and truncate initial y-/ي- in any non-past overrides. local function construct_stems(base) local stems = base.stem_overrides stems.past_v = stems.past_v or stems.past stems.past_c = stems.past_c or stems.past stems.past_pass_v = stems.past_pass_v or stems.past_pass stems.past_pass_c = stems.past_pass_c or stems.past_pass stems.nonpast_v = stems.nonpast_v or stems.nonpast stems.nonpast_c = stems.nonpast_c or stems.nonpast stems.nonpast_pass_v = stems.nonpast_pass_v or stems.nonpast_pass stems.nonpast_pass_c = stems.nonpast_pass_c or stems.nonpast_pass stems.imp_v = stems.imp_v or stems.imp stems.imp_c = stems.imp_c or stems.imp local function truncate_nonpast_initial_cons(stem_type, form, translit) if form == "+" then return form, translit end if not form:find("^" .. Y) then error(("Form value %s for stem type '%s' should begin with ي"):format(form, stem_type)) end form = form:gsub("^" .. Y, "") if translit then if not translit:find("^y") then error(("Translit value %s for stem type '%s' should begin with y"):format(translit, stem_type)) end translit = translit:gsub("^y", "") end return form, translit end for _, nonpast_stem_type in ipairs { "nonpast_v", "nonpast_c", "nonpast_pass_v", "nonpast_pass_c" } do if stems[nonpast_stem_type] then stems[nonpast_stem_type] = map_general(stems[nonpast_stem_type], function(form, translit) return truncate_nonpast_initial_cons(nonpast_stem_type, form, translit) end) end end end -- Given user-specified overrides for stem `stemname`, return overrides with occurrences of + replaced by -- `default_stem`. If no overrides, return `default_stem`, or {} if no default. local function override_stem_if_needed(base, stemname, default_stem) local overrides = base.stem_overrides[stemname] if not overrides then return default_stem or {} end return map_general(overrides, function(form, translit) if form ~= "+" and default_indicator_to_active_participle_slot[form] then error(("Stem overrides cannot use secondary default indicators but saw %s in stem override '%s'"):format( form, stemname)) end if form == "+" then if translit then error(("Cannot supply manual translit along with + for stem override '%s'"):format(stemname)) end if not default_stem then error(("Cannot use + for stem override '%s' because no default is available"):format(stemname)) end if type(default_stem) ~= "string" then error(("Internal error: Default stem for '%s' is not a string: %s"):format(stemname, dump(default_stem))) end return default_stem end return form, translit end) end ------------------------------------------------------------------------------- -- Properties of different verbal forms -- ------------------------------------------------------------------------------- local allowed_vforms = {"I", "II", "III", "IV", "V", "VI", "VII", "VIII", "IX", "X", "XI", "XII", "XIII", "XIV", "XV", "Iq", "IIq", "IIIq", "IVq"} local allowed_vforms_set = m_table.listToSet(allowed_vforms) local allowed_vforms_with_weakness = m_table.shallowCopy(allowed_vforms) -- The user needs to be able to explicitly specify that a form-I verb (specifically one whose initial radical is و) is -- sound. Cf. wajiʕa yawjaʕu (not #yajaʕu) "to ache, to hurt". In general, i~a and u~u verbs whose initial radical is و -- seem to not assimilate the first radical; cf. وقح "to be shameless", variously waqaḥa~yaqiḥu, waquḥa~yawquḥu and -- waqiḥa~yawqaḥu, whereas a~i verbs (wafaḍa~yafiḍu "to rush"), i~i verbs (wafiqa~yafiqu "to be proper, to be suitable") -- and a~a verbs (waḍaʕa~yaḍaʕu "to set down, to place") do assimilate. But there are naturally exceptions, e.g. -- waṭiʔa~yaṭaʔu "to tread, to trample"; wasiʕa~yasaʕu "to be spacious; to be well-off"; waṯiʔa~yaṯaʔu "to get bruised, -- to be sprained". Also beware of waniya~yawnā "to be faint; to languish", which is sound in the first radical and -- final-weak in the last radical. Nonetheless, the regularity of the patterns mentioned above suggest we should provide -- them as defaults. -- Note that there are other cases of unexpectedly sound verbs, e.g. izdawaja~yazdawiju "to be in pairs", layisa~yalyasu -- "to be valiant, to be brave", ʔaḥwaja~yuḥwiju "to need", istahwana~yastahwinu "to consider easy", sawisa~yaswasu "to -- be or become moth-eaten or worm-eaten" (vs. sāsa~yasūsu "to govern, to rule" from the same radicals), ʕawira~yaʕwaru -- "to be one-eyed", istajwaba~yastajwibu "to interrogate", etc. But in these cases there is no need for explicit user -- specification as the lemma itself specifies the unexpected soundness. for _, form_with_weakness in ipairs { "I-sound", "I-assimilated", "none-sound", "none-hollow", "none-geminate", "none-final-weak" } do table.insert(allowed_vforms_with_weakness, form_with_weakness) end local allowed_vforms_with_weakness_set = m_table.listToSet(allowed_vforms_with_weakness) local function vform_supports_final_weak(vform) return vform ~= "XI" and vform ~= "XV" and vform ~= "IVq" end local function vform_supports_geminate(vform) return vform == "I" or vform == "III" or vform == "IV" or vform == "VI" or vform == "VII" or vform == "VIII" or vform == "X" end local function vform_supports_hollow(vform) return vform == "I" or vform == "IV" or vform == "VII" or vform == "VIII" or vform == "X" end local function vform_probably_impersonal_passive(vform, weakness, past_vowel, nonpast_vowel) return vform == "I" and req(past_vowel, I) or vform == "V" or vform == "VI" or vform == "X" or vform == "IIq" end local function vform_probably_full_passive(vform) return vform == "II" or vform == "III" or vform == "IV" or vform == "Iq" end local function vform_probably_no_passive(vform, weakness, past_vowel, nonpast_vowel) return vform == "I" and req(past_vowel, U) or vform == "VII" or vform == "IX" or vform == "XI" or vform == "XII" or vform == "XIII" or vform == "XIV" or vform == "XV" or vform == "IIIq" or vform == "IVq" end -- Active vforms II, III, IV, Iq use non-past prefixes in -u- instead of -a-. local function prefix_vowel_from_vform(vform) if vform == "II" or vform == "III" or vform == "IV" or vform == "Iq" then return "u" else return "a" end end -- True if the active non-past takes a-vocalization rather than i-vocalization in its last syllable. local function vform_nonpast_a_vowel(vform) return vform == "V" or vform == "VI" or vform == "XV" or vform == "IIq" end -- True if the `passive` spec indicates a passive-only verb. local function is_passive_only(passive) return passive == "onlypass" or passive == "onlypass-impers" end export.is_passive_only = is_passive_only -- for use in [[Module:ar-headword]] ------------------------------------------------------------------------------- -- Properties of specific sounds -- ------------------------------------------------------------------------------- -- Is radical wāw (و) or yāʾ (ي)? local function is_waw_ya(rad) return req(rad, W) or req(rad, Y) end -- Check that radical is wāw (و) or yāʾ (ي), error if not local function check_waw_ya(rad) if not is_waw_ya(rad) then error("Expecting weak radical: '" .. rget(rad) .. "' should be " .. W .. " or " .. Y) end end -- Form-I verb حيّ or حيي and form-X verb استحيا or استحى local function hayy_radicals(rad1, rad2, rad3) return req(rad1, "ح") and req(rad2, Y) and is_waw_ya(rad3) end -- FUCK ME HARD. "Lua error at line 1514: main function has more than 200 local variables". local function create_conjugations() ------------------------------------------------------------------------------- -- Radicals associated with various irregular verbs -- ------------------------------------------------------------------------------- -- Form-I verb أخذ or form-VIII verb اتخذ local function axadh_radicals(rad1, rad2, rad3) return req(rad1, HAMZA) and req(rad2, "خ") and req(rad3, "ذ") end -- Form-I verb whose imperative has a reduced form: أكل and أخذ and أمر. Return "shortonly" if only -- short-form imperatives exist (أكل and أخذ) or "shortlong" if long-form imperatives also exist (أمر); -- they are used after a clitic like فَ and وَ. local function reduced_imperative_verb(rad1, rad2, rad3) return axadh_radicals(rad1, rad2, rad3) and "shortonly" or req(rad1, HAMZA) and req(rad2, "ك") and req(rad3, "ل") and "shortonly" or req(rad1, HAMZA) and req(rad2, "م") and req(rad3, "ر") and "shortlong" end -- Form-I verb رأى and form-IV verb أرى local function raa_radicals(rad1, rad2, rad3) return req(rad1, "ر") and req(rad2, HAMZA) and is_waw_ya(rad3) end -- Form-I verb سأل local function saal_radicals(rad1, rad2, rad3) return req(rad1, "س") and req(rad2, HAMZA) and req(rad3, "ل") end -- Form-I verb كان local function kaan_radicals(rad1, rad2, rad3) return req(rad1, "ك") and req(rad2, W) and req(rad3, N) end ------------------------------------------------------------------------------- -- Sets of past endings -- ------------------------------------------------------------------------------- -- The 13 endings of the sound/hollow/geminate past tense. local past_endings = { -- singular SK .. TU, SK .. TA, SK .. "تِ", A, A .. "تْ", --dual SK .. "تُمَا", AA, A .. "تَا", -- plural SK .. "نَا", SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this SK .. "تُن" .. SH .. A, UU .. ALIF, SK .. "نَ" } -- Make endings for final-weak past in -aytu or -awtu. AYAW is AY or AW as appropriate. Note that AA and AW are -- global variables. local function make_past_endings_ay_aw(ayaw, third_sg_masc) return { -- singular ayaw .. SK .. TU, ayaw .. SK .. TA, ayaw .. SK .. "تِ", third_sg_masc, A .. "تْ", --dual ayaw .. SK .. "تُمَا", ayaw .. AA, A .. "تَا", -- plural ayaw .. SK .. "نَا", ayaw .. SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this ayaw .. SK .. "تُن" .. SH .. A, AW .. SK .. ALIF, ayaw .. SK .. "نَ" } end -- past final-weak -aytu endings local past_endings_ay = make_past_endings_ay_aw(AY, AAMAQ) -- past final-weak -awtu endings local past_endings_aw = make_past_endings_ay_aw(AW, AA) -- used for alternative endings for form-X geminate verbs like اِسْتَمَرَّ local past_endings_ay_12_person_only = { -- singular AY .. SK .. TU, AY .. SK .. TA, AY .. SK .. "تِ", {}, {}, --dual AY .. SK .. "تُمَا", {}, {}, -- plural AY .. SK .. "نَا", AY .. SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this AY .. SK .. "تُن" .. SH .. A, {}, {}, } -- Make endings for final-weak past in -ītu or -ūtu. IIUU is ī or ū as appropriate. Note that AA and UU are global -- variables. local function make_past_endings_ii_uu(iiuu) return { -- singular iiuu .. TU, iiuu .. TA, iiuu .. "تِ", iiuu .. A, iiuu .. A .. "تْ", --dual iiuu .. "تُمَا", iiuu .. AA, iiuu .. A .. "تَا", -- plural iiuu .. "نَا", iiuu .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this iiuu .. "تُن" .. SH .. A, UU .. ALIF, iiuu .. "نَ" } end -- past final-weak -ītu endings local past_endings_ii = make_past_endings_ii_uu(II) -- past final-weak -ūtu endings local past_endings_uu = make_past_endings_ii_uu(UU) ------------------------------------------------------------------------------- -- Sets of non-past prefixes and endings -- ------------------------------------------------------------------------------- local nonpast_prefix_consonants = { -- singular HAMZA, T, T, Y, T, -- dual T, Y, T, -- plural N, T, T, Y, Y } -- There are only five distinct endings in all non-past verbs. Make any set of non-past endings given these five -- distinct endings. local function make_nonpast_endings(null, fem, dual, pl, fempl) return { -- singular null, null, fem, null, null, -- dual dual, dual, dual, -- plural null, pl, fempl, pl, fempl } end -- endings for non-past indicative local ind_endings = make_nonpast_endings( U, II .. NA, AANI, UU .. NA, SK .. NA ) -- Make the endings for non-past subjunctive/jussive, given the vowel diacritic used in "null" endings -- (1s/2ms/3ms/3fs/1p). local function make_sub_juss_endings(dia_null) return make_nonpast_endings( dia_null, II, AA, UU .. ALIF, SK .. NA ) end -- endings for non-past subjunctive local sub_endings = make_sub_juss_endings(A) -- endings for non-past jussive local juss_endings = make_sub_juss_endings(SK) -- endings for alternative geminate non-past jussive in -a; same as subjunctive local juss_endings_alt_a = sub_endings -- endings for alternative geminate non-past jussive in -i local juss_endings_alt_i = make_sub_juss_endings(I) -- Endings for final-weak non-past indicative in -ā. Note that AY, AW and AAMAQ are global variables. local ind_endings_aa = make_nonpast_endings( AAMAQ, AYSK .. NA, AY .. AANI, AWSK .. NA, AYSK .. NA ) -- Make endings for final-weak non-past indicative in -ī or -ū; IIUU is ī or ū as appropriate. Note that II and UU -- are global variables. local function make_ind_endings_ii_uu(iiuu) return make_nonpast_endings( iiuu, II .. NA, iiuu .. AANI, UU .. NA, iiuu .. NA ) end -- endings for final-weak non-past indicative in -ī local ind_endings_ii = make_ind_endings_ii_uu(II) -- endings for final-weak non-past indicative in -ū local ind_endings_uu = make_ind_endings_ii_uu(UU) -- Endings for final-weak non-past subjunctive in -ā. Note that AY, AW, ALIF, AAMAQ are global variables. local sub_endings_aa = make_nonpast_endings( AAMAQ, AYSK, AY .. AA, AWSK .. ALIF, AYSK .. NA ) -- Make endings for final-weak non-past subjunctive in -ī or -ū. IIUU is ī or ū as appropriate. Note that AA, II, -- UU, ALIF are global variables. local function make_sub_endings_ii_uu(iiuu) return make_nonpast_endings( iiuu .. A, II, iiuu .. AA, UU .. ALIF, iiuu .. NA ) end -- endings for final-weak non-past subjunctive in -ī local sub_endings_ii = make_sub_endings_ii_uu(II) -- endings for final-weak non-past subjunctive in -ū local sub_endings_uu = make_sub_endings_ii_uu(UU) -- endings for final-weak non-past jussive in -ā local juss_endings_aa = make_nonpast_endings( A, AYSK, AY .. AA, AWSK .. ALIF, AYSK .. NA ) -- Make endings for final-weak non-past jussive in -ī or -ū. IU is short i or u, IIUU is long ī or ū as appropriate. -- Note that AA, II, UU, ALIF are global variables. local function make_juss_endings_ii_uu(iu, iiuu) return make_nonpast_endings( iu, II, iiuu .. AA, UU .. ALIF, iiuu .. NA ) end -- endings for final-weak non-past jussive in -ī local juss_endings_ii = make_juss_endings_ii_uu(I, II) -- endings for final-weak non-past jussive in -ū local juss_endings_uu = make_juss_endings_ii_uu(U, UU) ------------------------------------------------------------------------------- -- Sets of imperative endings -- ------------------------------------------------------------------------------- -- Extract the second person jussive endings to get corresponding imperative endings. local function imperative_endings_from_jussive(endings) return {endings[2], endings[3], endings[6], endings[10], endings[11]} end -- normal imperative endings local imp_endings = imperative_endings_from_jussive(juss_endings) -- alternative geminate imperative endings in -a local imp_endings_alt_a = imperative_endings_from_jussive(juss_endings_alt_a) -- alternative geminate imperative endings in -i local imp_endings_alt_i = imperative_endings_from_jussive(juss_endings_alt_i) -- final-weak imperative endings in -ā local imp_endings_aa = imperative_endings_from_jussive(juss_endings_aa) -- final-weak imperative endings in -ī local imp_endings_ii = imperative_endings_from_jussive(juss_endings_ii) -- final-weak imperative endings in -ū local imp_endings_uu = imperative_endings_from_jussive(juss_endings_uu) ------------------------------------------------------------------------------- -- Basic functions to inflect tenses -- ------------------------------------------------------------------------------- -- Add to `base` the inflections for the tense indicated by `tense` (the prefix in the slot names, e.g. 'past' -- or 'juss_pass'), formed by combining the `prefixes`, `stems` and `endings`. Each of `prefixes`, `stems` and -- `endings` is either a sequence of 5 (for the imperative) or 13 (for other tenses) abbreviated form lists (each of -- which is either a string, a form object, or a list of strings and/or form objects; see -- [[Module:inflection utilities]] for more info). Alternatively, any of `prefixes`, `stems` or `endings` can be a -- single-element list containing an abbreviated form list, with an additional key `all_same` set to true, or (as a -- special case) a single string; in the latter cases, the same value is used for all 5 or 13 slots. If existing -- inflections already exist, they will be added to, not overridden. `pnums` is the list of person/number slot name -- suffixes, which must match up with the elements in `prefixes`, `stems` and `endings` (i.e. 5 for imperative, 13 -- otherwise). local function inflect_tense_1(base, tense, prefixes, stems, endings, pnums) if not prefixes or not stems or not endings then return end local function verify_affixes(affixname, affixes) local function interr(msg) error(("Internal error: For tense '%s', '%s' %s: %s"):format(tense, affixname, msg, dump(affixes))) end if type(affixes) == "string" then -- do nothing elseif type(affixes) ~= "table" then interr("is not a table or string") elseif affixes.all_same then if #affixes ~= 1 then interr(("with all_same = true should have length 1 but has length %s"):format(#affixes)) end else if #affixes ~= #pnums then interr(("should have length %s but has length %s"):format(#pnums, #affixes)) end end end verify_affixes("prefixes", prefixes) verify_affixes("stems", stems) verify_affixes("endings", endings) local function get_affix(affixes, i) if type(affixes) == "string" then return affixes elseif affixes.all_same then return affixes[1] else return affixes[i] end end for i, pnum in ipairs(pnums) do local prefix = get_affix(prefixes, i) local stem = get_affix(stems, i) local ending = get_affix(endings, i) local slot = tense .. "_" .. pnum add3(base, slot, prefix, stem, ending) end end -- Add to `base` the inflections for the tense indicated by `tense` (the prefix in the slot names, e.g. 'past' -- or 'juss_pass'), formed by combining the `prefixes`, `stems` and `endings`. This is a simple wrapper around -- inflect_tense_1() that applies to all tenses other than the imperative; see inflect_tense_1() for more -- information about the parameters. local function inflect_tense(base, tense, prefixes, stems, endings) inflect_tense_1(base, tense, prefixes, stems, endings, all_person_number_list) end -- Like inflect_tense() but for the imperative, which has only five parts instead of 13 and no prefixes. local function inflect_tense_imp(base, stems, endings) inflect_tense_1(base, "imp", "", stems, endings, imp_person_number_list) end ------------------------------------------------------------------------------- -- Functions to inflect the past tense -- ------------------------------------------------------------------------------- -- Generate past verbs using specified vowel and consonant stems; works for sound, assimilated, hollow, and geminate -- verbs, active and passive. local function past_2stem_conj(base, tense, v_stem, c_stem, footnote_12) local passive = tense:find("_pass") and "_pass" or "" -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "past" .. passive .. "_v", v_stem) local c_stem_12 = c_stem if footnote_12 then c_stem_12 = iut.combine_form_and_footnotes(c_stem_12, footnote_12) end c_stem_12 = override_stem_if_needed(base, "past" .. passive .. "_c", c_stem_12) local c_stem_3 = override_stem_if_needed(base, "past" .. passive .. "_c", c_stem) inflect_tense(base, tense, "", { -- singular c_stem_12, c_stem_12, c_stem_12, v_stem, v_stem, --dual c_stem_12, v_stem, v_stem, -- plural c_stem_12, c_stem_12, c_stem_12, v_stem, c_stem_3 }, past_endings) end -- Generate past verbs using single specified stem; works for sound and assimilated verbs, active and passive. local function past_1stem_conj(base, tense, stem) past_2stem_conj(base, tense, stem, stem) end ------------------------------------------------------------------------------- -- Functions to inflect non-past tenses -- ------------------------------------------------------------------------------- -- Generate non-past conjugation, with two stems, for vowel-initial and consonant-initial endings, respectively. -- Useful for active and passive; for all forms; for all weaknesses (sound, assimilated, hollow, final-weak and -- geminate) and for all types of non-past (indicative, subjunctive, jussive) except for the imperative. (There is a -- separate wrapper function below for geminate jussives because they have three alternants.) Both stems may be the -- same, e.g. for sound verbs. -- `prefix_vowel` will be either "a" or "u". `endings` should be an array of 13 items. If `endings` is nil or -- omitted, infer the endings from the tense. If `jussive` is true, or `endings` is nil and `tense` indicatives -- jussive, use the jussive pattern of vowel/consonant stems (different from the normal ones). local function nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, endings, jussive) local passive = tense:find("_pass") and "_pass" or "" -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "nonpast" .. passive .. "_v", v_stem and q(dia[prefix_vowel], v_stem) or nil) c_stem = override_stem_if_needed(base, "nonpast" .. passive .. "_c", c_stem and q(dia[prefix_vowel], c_stem) or nil) if not endings then if tense:find("^ind") then endings = ind_endings elseif tense:find("^sub") then endings = sub_endings elseif tense:find("^juss") then jussive = true endings = juss_endings else error("Internal error: Unrecognized tense '" .. tense .."'") end end if not jussive then inflect_tense(base, tense, nonpast_prefix_consonants, { -- singular v_stem, v_stem, v_stem, v_stem, v_stem, --dual v_stem, v_stem, v_stem, -- plural v_stem, v_stem, c_stem, v_stem, c_stem }, endings) else inflect_tense(base, tense, nonpast_prefix_consonants, { -- singular -- 'adlul, tadlul, tadullī, yadlul, tadlul c_stem, c_stem, v_stem, c_stem, c_stem, --dual -- tadullā, yadullā, tadullā v_stem, v_stem, v_stem, -- plural -- nadlul, tadullū, tadlulna, yadullū, yadlulna c_stem, v_stem, c_stem, v_stem, c_stem }, endings) end end -- Generate non-past conjugation with one stem (no distinct stems for vowel-initial and consonant-initial endings). -- See nonpast_2stem_conj(). local function nonpast_1stem_conj(base, tense, prefix_vowel, stem, endings, jussive) nonpast_2stem_conj(base, tense, prefix_vowel, stem, stem, endings, jussive) end -- Generate active/passive jussive geminative. There are three alternants, two with terminations -a and -i and one -- in a null termination with a distinct pattern of vowel/consonant stem usage. See nonpast_2stem_conj() for a -- description of the arguments. local function jussive_gem_conj(base, tense, prefix_vowel, v_stem, c_stem) -- alternative in -a nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings_alt_a) -- alternative in -i nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings_alt_i) -- alternative in -null; requires different combination of v_stem and -- c_stem since the null endings require the c_stem (e.g. "tadlul" here) -- whereas the corresponding endings above in -a or -i require the v_stem -- (e.g. "tadulla, tadulli" above) nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings, "jussive") end ------------------------------------------------------------------------------- -- Functions to inflect the imperative -- ------------------------------------------------------------------------------- -- Generate imperative conjugation, with two stems, for vowel-initial and consonant-initial endings, respectively. -- Useful for all forms, and for all weaknesses other than final-weak. Note that the two stems may be the same -- (specifically for sound and assimilated verbs). If `endings` is nil or omitted, use `imp_endings`. If `alt_gem` -- is specified, use the pattern of vowel and consonant stems appropriate for the alternative geminate imperatives -- that use a null ending of -a or -i instead of an empty ending. local function make_2stem_imperative(base, v_stem, c_stem, endings, alt_gem) endings = endings or imp_endings -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "imp_v", v_stem) c_stem = override_stem_if_needed(base, "imp_c", c_stem) if alt_gem then inflect_tense_imp(base, {v_stem, v_stem, v_stem, v_stem, c_stem}, endings) else inflect_tense_imp(base, {c_stem, v_stem, v_stem, v_stem, c_stem}, endings) end end -- Generate imperative parts for sound or assimilated verbs. local function make_1stem_imperative(base, stem) make_2stem_imperative(base, stem, stem) end -- Generate imperative parts for geminate verbs form I (also IV, VII, VIII, X). local function make_gem_imperative(base, v_stem, c_stem) make_2stem_imperative(base, v_stem, c_stem, imp_endings_alt_a, "alt gem") make_2stem_imperative(base, v_stem, c_stem, imp_endings_alt_i, "alt gem") make_2stem_imperative(base, v_stem, c_stem) end ------------------------------------------------------------------------------- -- Functions to inflect entire verbs -- ------------------------------------------------------------------------------- -- Generate finite parts of a sound verb (also works for assimilated verbs) from five stems (past and non-past, -- active and passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u"). local function make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel) past_1stem_conj(base, "past", past_stem) past_1stem_conj(base, "past_pass", past_pass_stem) nonpast_1stem_conj(base, "ind", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "sub", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "juss", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem) make_1stem_imperative(base, imp_stem) end local function past_final_weak_endings_from_vowel(vowel) if vowel == "ay" then return past_endings_ay elseif vowel == "aw" then return past_endings_aw elseif vowel == "ī" then return past_endings_ii elseif vowel == "ū" then return past_endings_uu elseif not vowel then return nil else error(("Internal error: Unrecognized past final-weak vowel spec '%s'"):format(vowel)) end end local function nonpast_final_weak_endings_from_vowel(vowel) if vowel == "ā" then return ind_endings_aa, sub_endings_aa, juss_endings_aa, imp_endings_aa elseif vowel == "ī" then return ind_endings_ii, sub_endings_ii, juss_endings_ii, imp_endings_ii elseif vowel == "ū" then return ind_endings_uu, sub_endings_uu, juss_endings_uu, imp_endings_uu elseif not vowel then return nil else error(("Internal error: Unrecognized non-past final-weak vowel spec '%s'"):format(vowel)) end end -- Generate finite parts of a final-weak verb from five stems (past and non-past, active and passive, plus -- imperative), the past active ending vowel (ay, aw, ī or ū), the non-past active ending vowel (ā, ī or ū) and the -- prefix vowel in the active non-past (a or u). local function make_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, past_ending_vowel, nonpast_ending_vowel, prefix_vowel) past_stem = override_stem_if_needed(base, "past", past_stem) past_pass_stem = override_stem_if_needed(base, "past_pass", past_pass_stem) -- Don't call override_stem_if_needed() here for non-past stems; it's called in nonpast_2stem_conj(). imp_stem = override_stem_if_needed(base, "imp", imp_stem) -- + not supported for ending vowel overrides past_ending_vowel = base.stem_overrides.past_final_weak_vowel or past_ending_vowel local past_pass_ending_vowel = base.stem_overrides.past_pass_final_weak_vowel or "ī" nonpast_ending_vowel = base.stem_overrides.nonpast_final_weak_vowel or nonpast_ending_vowel local nonpast_pass_ending_vowel = base.stem_overrides.nonpast_pass_final_weak_vowel or "ā" local past_endings = past_final_weak_endings_from_vowel(past_ending_vowel) local past_pass_endings = past_final_weak_endings_from_vowel(past_pass_ending_vowel) local ind_endings, sub_endings, juss_endings, imp_endings = nonpast_final_weak_endings_from_vowel(nonpast_ending_vowel) local ind_pass_endings, sub_pass_endings, juss_pass_endings = nonpast_final_weak_endings_from_vowel(nonpast_pass_ending_vowel) inflect_tense(base, "past", "", {past_stem, all_same = 1}, past_endings) inflect_tense(base, "past_pass", "", {past_pass_stem, all_same = 1}, past_pass_endings) nonpast_1stem_conj(base, "ind", prefix_vowel, nonpast_stem, ind_endings) nonpast_1stem_conj(base, "sub", prefix_vowel, nonpast_stem, sub_endings) nonpast_1stem_conj(base, "juss", prefix_vowel, nonpast_stem, juss_endings) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem, ind_pass_endings) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem, sub_pass_endings) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem, juss_pass_endings) inflect_tense_imp(base, {imp_stem, all_same = 1}, imp_endings) end -- Generate finite parts of an augmented (form II+) final-weak verb from five stems (past and non-past, active and -- passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u") and a flag indicating if it -- behaves like a form V/VI verb in taking non-past endings in -ā instead of -ī. local function make_augmented_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel, form56) make_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, "ay", form56 and "ā" or "ī", prefix_vowel) end -- Generate finite parts of an augmented (form II+) sound or final-weak verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (active past stem minus last syllable (= -al or -ā)); -- * `nonpast_stem_base` (non-past stem minus last syllable (= -al/-il or -ā/-ī); -- * `past_pass_stem_base` (passive past stem minus last syllable (= -il or -ī)); -- * `vn` (verbal noun). local function make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) insert_form_or_forms(base, "vn", vn) local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local final_weak = is_final_weak(base, vowel_spec) local prefix_vowel = prefix_vowel_from_vform(base.verb_form) local form56 = vform_nonpast_a_vowel(base.verb_form) local a_base_suffix = final_weak and "" or q(A, lastrad) local i_base_suffix = final_weak and "" or q(I, lastrad) -- past and non-past stems, active and passive local past_stem = q(past_stem_base, a_base_suffix) -- In forms 5 and 6, non-past has /a/ as last stem vowel in the non-past -- in both active and passive, but /i/ in the active participle and /a/ -- in the passive participle. Elsewhere, consistent /i/ in active non-past -- and participle, consistent /a/ in passive non-past and participle. -- Hence, forms 5 and 6 differ only in the non-past active (but not -- active participle), so we have to split the finite non-past stem and -- active participle stem. local nonpast_stem = q(nonpast_stem_base, form56 and a_base_suffix or i_base_suffix) local ap_stem = q(nonpast_stem_base, i_base_suffix) local past_pass_stem = q(past_pass_stem_base, i_base_suffix) local nonpast_pass_stem = q(nonpast_stem_base, a_base_suffix) -- imperative stem local imp_stem = q(past_stem_base, form56 and a_base_suffix or i_base_suffix) -- make parts if final_weak then make_augmented_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel, form56) else make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel) end -- active and passive participle if final_weak then insert_form_or_forms(base, "ap", q(MU, ap_stem, IN)) insert_form_or_forms(base, "pp", q(MU, nonpast_pass_stem, AN, AMAQ)) else insert_form_or_forms(base, "ap", q(MU, ap_stem)) insert_form_or_forms(base, "pp", q(MU, nonpast_pass_stem)) end end -- Generate finite parts of a hollow or geminate verb from ten stems (vowel and consonant stems for each of past and -- non-past, active and passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u"), plus a -- flag indicating if we are a geminate verb. local function make_hollow_geminate_verb(base, geminate, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel, altgem_note) past_2stem_conj(base, "past", past_v_stem, past_c_stem, altgem_note) past_2stem_conj(base, "past_pass", past_pass_v_stem, past_pass_c_stem) nonpast_2stem_conj(base, "ind", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "sub", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "ind_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) nonpast_2stem_conj(base, "sub_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) if geminate then jussive_gem_conj(base, "juss", prefix_vowel, nonpast_v_stem, nonpast_c_stem) jussive_gem_conj(base, "juss_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) make_gem_imperative(base, imp_v_stem, imp_c_stem) else nonpast_2stem_conj(base, "juss", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "juss_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) make_2stem_imperative(base, imp_v_stem, imp_c_stem) end end -- Generate finite parts of an augmented (form II+) hollow verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (invariable part of active past stem); -- * `nonpast_stem_base` (invariable part of nonpast stem); -- * `past_pass_stem_base` (invariable part of passive past stem); -- * `vn` (verbal noun). local function make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) insert_form_or_forms(base, "vn", vn) local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local form410 = base.verb_form == "IV" or base.verb_form == "X" local prefix_vowel = prefix_vowel_from_vform(base.verb_form) local a_base_suffix_v, a_base_suffix_c local i_base_suffix_v, i_base_suffix_c a_base_suffix_v = q(AA, lastrad) -- 'af-āl-a, inf-āl-a a_base_suffix_c = q(A, lastrad) -- 'af-al-tu, inf-al-tu i_base_suffix_v = q(II, lastrad) -- 'uf-īl-a, unf-īl-a i_base_suffix_c = q(I, lastrad) -- 'uf-il-tu, unf-il-tu -- past and non-past stems, active and passive, for vowel-initial and -- consonant-initial endings local past_v_stem = q(past_stem_base, a_base_suffix_v) local past_c_stem = q(past_stem_base, a_base_suffix_c) -- yu-f-īl-u, ya-staf-īl-u but yanf-āl-u, yaft-āl-u local nonpast_v_stem = q(nonpast_stem_base, form410 and i_base_suffix_v or a_base_suffix_v) local nonpast_c_stem = q(nonpast_stem_base, form410 and i_base_suffix_c or a_base_suffix_c) local past_pass_v_stem = q(past_pass_stem_base, i_base_suffix_v) local past_pass_c_stem = q(past_pass_stem_base, i_base_suffix_c) local nonpast_pass_v_stem = q(nonpast_stem_base, a_base_suffix_v) local nonpast_pass_c_stem = q(nonpast_stem_base, a_base_suffix_c) -- imperative stem local imp_v_stem = q(past_stem_base, form410 and i_base_suffix_v or a_base_suffix_v) local imp_c_stem = q(past_stem_base, form410 and i_base_suffix_c or a_base_suffix_c) -- make parts make_hollow_geminate_verb(base, false, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel) -- active participle insert_form_or_forms(base, "ap", q(MU, nonpast_v_stem)) -- passive participle insert_form_or_forms(base, "pp", q(MU, nonpast_pass_v_stem)) end -- Generate finite parts of an augmented (form II+) geminate verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (invariable part of active past stem; this and the stem bases below will end with a consonant -- for forms IV, X, IVq, and a short vowel for the others); -- * `nonpast_stem_base` (invariable part of nonpast stem); -- * `past_pass_stem_base` (invariable part of passive past stem); -- * `vn` (verbal noun); -- * `altgem_note` (footnote to add to active past 1/2-person forms, when alternative forms are supplied [form X]). local function make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn, altgem_note) insert_form_or_forms(base, "vn", vn) local vform = base.verb_form local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local prefix_vowel = prefix_vowel_from_vform(vform) local a_base_suffix_v, a_base_suffix_c local i_base_suffix_v, i_base_suffix_c if vform == "IV" or vform == "X" or vform == "IVq" then a_base_suffix_v = q(A, lastrad, SH) -- 'af-all a_base_suffix_c = q(SK, lastrad, A, lastrad) -- 'af-lal i_base_suffix_v = q(I, lastrad, SH) -- yuf-ill i_base_suffix_c = q(SK, lastrad, I, lastrad) -- yuf-lil else a_base_suffix_v = q(lastrad, SH) -- fā-ll, infa-ll a_base_suffix_c = q(lastrad, A, lastrad) -- fā-lal, infa-lal i_base_suffix_v = q(lastrad, SH) -- yufā-ll, yanfa-ll i_base_suffix_c = q(lastrad, I, lastrad) -- yufā-lil, yanfa-lil end -- past and non-past stems, active and passive, for vowel-initial and -- consonant-initial endings local past_v_stem = q(past_stem_base, a_base_suffix_v) local past_c_stem = q(past_stem_base, a_base_suffix_c) local nonpast_v_stem = q(nonpast_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_v or i_base_suffix_v) local nonpast_c_stem = q(nonpast_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_c or i_base_suffix_c) -- NOTE: Formerly had a comment that "vform III and VI passive past do not have contracted parts, only -- uncontracted parts, which are added separately by those functions". This is based on Mace -- "Arabic Verbs and Essential Grammar" (1999) entry 63 (continued), which shows passive ḥūjija but no ḥūjja; -- but that is apparently a mistake, as (1) verb tables in other books do show contracted passive parts for -- these forms; (2) there is no mention of such an exception on p. 99, which explains how geminate ("doubled") -- verbs work (on the contrary, it says "The contracted and uncontracted pairs (see above) are found all -- over Forms III and VI of the doubled verbs"). local past_pass_v_stem = q(past_pass_stem_base, i_base_suffix_v) local past_pass_c_stem = q(past_pass_stem_base, i_base_suffix_c) local nonpast_pass_v_stem = q(nonpast_stem_base, a_base_suffix_v) local nonpast_pass_c_stem = q(nonpast_stem_base, a_base_suffix_c) -- imperative stem local imp_v_stem = q(past_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_v or i_base_suffix_v) local imp_c_stem = q(past_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_c or i_base_suffix_c) -- make parts make_hollow_geminate_verb(base, "geminate", past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel, altgem_note) -- active participle insert_form_or_forms(base, "ap", q(MU, nonpast_v_stem)) -- passive participle insert_form_or_forms(base, "pp", q(MU, nonpast_pass_v_stem)) end ------------------------------------------------------------------------------- -- Conjugation functions for specific conjugation types -- ------------------------------------------------------------------------------- local function form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1) local imp_vowel = map_vowel(nonpast_vowel, function(vow) if vow == A or vow == I then return I elseif vow == U then return U elseif not skip_slot(base, "imp_2ms") then error(("Internal error: Non-past vowel %s isn't a, i, or u, should have been caught earlier"):format( dump(nonpast_vowel))) else -- Passive-only; imperative won't ever be displayed so it doesn't matter. return I end end) -- Mace ("Arabic Verbs and Essentials of Grammar" p. 63: [https://archive.org/details/arabicverbsessen00john/page/62/mode/2up]) -- claims that initial hamza is assimilated/elided into a long vowel in the form-I imperative, but apparently -- this isn't corrrect. local vowel_on_alif = map_vowel(imp_vowel, function(vow) return ALIF .. vow end) return q(vowel_on_alif, rad1, SK) end -- Implement form-I sound or assimilated verb. ASSIMILATED is true for assimilated verbs. local function make_form_i_sound_assimilated_verb(base, vowel_spec, assimilated) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied -- past and non-past stems, active and passive local past_stem = q(rad1, A, rad2, past_vowel, rad3) local nonpast_stem = assimilated and q(rad2, nonpast_vowel, rad3) or q(rad1, SK, rad2, nonpast_vowel, rad3) local past_pass_stem = q(rad1, U, rad2, I, rad3) local nonpast_pass_stem = q(rad1, SK, rad2, A, rad3) -- imperative stem -- check for irregular verb with reduced imperative (أَخَذَ or أَكَلَ or أَمَرَ) local reducedimp = reduced_imperative_verb(rad1, rad2, rad3) if reducedimp then base.irregular = true end local imp_stem_suffix = q(rad2, nonpast_vowel, rad3) local long_imp_stem_base = form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1) local short_imp_stem_base = "" local imp_stem = q((assimilated or reducedimp) and "" or long_imp_stem_base, imp_stem_suffix) -- make parts make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, "a") if reducedimp == "shortlong" then make_1stem_imperative(base, iut.combine_form_and_footnotes(q(long_imp_stem_base, imp_stem_suffix), mw.getCurrentFrame():preprocess("[used especially with a clitic such as {{m|ar|فَ}} or {{m|ar|وَ}}]"))) end -- Check for irregular verb سَأَلَ with alternative jussive and imperative. Calling this after make_sound_verb() -- adds additional entries to the paradigm parts. if saal_radicals(rad1, rad2, rad3) then base.irregular = true nonpast_1stem_conj(base, "juss", "a", "سَل") nonpast_1stem_conj(base, "juss_pass", "u", "سَل") make_1stem_imperative(base, "سَل") end -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, I, rad3)) -- Insert alternative active participle (stative type I) فَعِيل. Since not all verbs have this, we require that -- verbs that do have it specify it explicitly; a shortcut ++ is provided to make this easier (e.g. <ap:++> to -- indicate that the alternative form should be used for the active participle, <ap:+,++> to indicate that both -- forms can be used, and <ap:-> to indicate that there is no active participle). The same form is used for -- secondary default passive participle. insert_ap2_pp2(base, q(rad1, A, rad2, II, rad3)) -- Active participle, stative type II فَعِل (+++). insert_form_or_forms(base, "ap3", q(rad1, A, rad2, I, rad3)) -- Active participle, color/defect أَفْعَل (+cd). insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, A, rad3)) -- Active participle, -ān فَعْلَان (+an). insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, UU, rad3)) end conjugations["I-sound"] = function(base, vowel_spec) make_form_i_sound_assimilated_verb(base, vowel_spec, false) end conjugations["none-sound"] = function(base, vowel_spec) -- All default stems are nil. make_sound_verb(base) end conjugations["none-hollow"] = function(base, vowel_spec) -- All default stems are nil. make_hollow_geminate_verb(base, false) end conjugations["none-geminate"] = function(base, vowel_spec) -- All default stems are nil. make_hollow_geminate_verb(base, "geminate") end conjugations["none-final-weak"] = function(base, vowel_spec) -- All default stems are nil. make_final_weak_verb(base) end conjugations["I-assimilated"] = function(base, vowel_spec) make_form_i_sound_assimilated_verb(base, vowel_spec, "assimilated") end local function make_form_i_hayy_verb(base, vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied base.irregular = true -- past and non-past stems, active and passive, and imperative stem local past_c_stem = "حَيِي" local past_v_stem_long = past_c_stem local past_v_stem_short = "حَيّ" local past_pass_c_stem = "حُيِي" local past_pass_v_stem_long = past_pass_c_stem local past_pass_v_stem_short = "حُيّ" local nonpast_stem = "حْي" local nonpast_pass_stem = nonpast_stem local imp_stem = _I .. nonpast_stem -- make parts past_2stem_conj(base, "past", {}, past_c_stem) past_2stem_conj(base, "past_pass", {}, past_pass_c_stem) local variant = vowel_spec.variant or "both" if variant == "short" or variant == "both" then past_2stem_conj(base, "past", past_v_stem_short, {}) past_2stem_conj(base, "past_pass", past_pass_v_stem_short, {}) end function inflect_long_variant(tense, long_stem, short_stem) inflect_tense_1(base, tense, "", {long_stem, long_stem, long_stem, long_stem, short_stem}, {past_endings[4], past_endings[5], past_endings[7], past_endings[8], past_endings[12]}, {"3ms", "3fs", "3md", "3fd", "3mp"}) end if variant == "long" or variant == "both" then inflect_long_variant("past", past_v_stem_long, past_v_stem_short) inflect_long_variant("past_pass", past_pass_v_stem_long, past_pass_v_stem_short) end nonpast_1stem_conj(base, "ind", "a", nonpast_stem, ind_endings_aa) nonpast_1stem_conj(base, "sub", "a", nonpast_stem, sub_endings_aa) nonpast_1stem_conj(base, "juss", "a", nonpast_stem, juss_endings_aa) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem, ind_endings_aa) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem, sub_endings_aa) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem, juss_endings_aa) inflect_tense_imp(base, {imp_stem, all_same = 1}, imp_endings_aa) -- active and passive participles apparently do not exist for this verb end -- Implement form-I final-weak assimilated+final-weak verb. ASSIMILATED is true for assimilated verbs. local function make_form_i_final_weak_verb(base, vowel_spec, assimilated) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- حَيَّ or حَيِيَ is weird enough that we handle it as a separate function. if hayy_radicals(rad1, rad2, rad3) then make_form_i_hayy_verb(base, vowel_spec) return end -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- Past and non-past stems, active and passive, and imperative stem. local past_stem = q(rad1, A, rad2) local past_pass_stem = q(rad1, U, rad2) local nonpast_stem, nonpast_pass_stem, imp_stem if raa_radicals(rad1, rad2, rad3) then base.irregular = true nonpast_stem = rad1 nonpast_pass_stem = rad1 imp_stem = rad1 else nonpast_pass_stem = q(rad1, SK, rad2) if assimilated then nonpast_stem = rad2 imp_stem = rad2 else nonpast_stem = nonpast_pass_stem imp_stem = q(form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1), rad2) end end -- Make parts. local past_ending_vowel = req(rad3, Y) and req(past_vowel, A) and "ay" or req(rad3, W) and req(past_vowel, A) and "aw" or req(past_vowel, I) and "ī" or "ū" -- Try to preserve footnotes attached to the third radical and/or past and/or non-past vowels. local past_footnotes = iut.combine_footnotes(rget_footnotes(rad3), rget_footnotes(past_vowel)) local nonpast_ending_vowel = req(nonpast_vowel, A) and "ā" or req(nonpast_vowel, I) and "ī" or "ū" local nonpast_footnotes = iut.combine_footnotes(rget_footnotes(rad3), rget_footnotes(nonpast_vowel)) make_final_weak_verb(base, iut.combine_form_and_footnotes(past_stem, past_footnotes), iut.combine_form_and_footnotes(past_pass_stem, past_footnotes), iut.combine_form_and_footnotes(nonpast_stem, nonpast_footnotes), iut.combine_form_and_footnotes(nonpast_pass_stem, nonpast_footnotes), iut.combine_form_and_footnotes(imp_stem, nonpast_footnotes), past_ending_vowel, nonpast_ending_vowel, "a") -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, IN)) -- Active participle, stative type I فَعِيّ (++). FIXME: Is this correct when rad3 is W? insert_ap2_pp2(base, q(rad1, A, rad2, II, SH)) -- Active participle, stative type II فَعٍ (+++). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "ap3", q(rad1, A, rad2, IN)) -- Active participle, color/defect أَفْعَى (+cd). insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, AAMAQ)) -- Active participle, -ān فَعْيَان or فَعْوَان (+an). -- FIXME: Any examples of this for both rad3 = W and y to verify it's correct? insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, req(rad3, Y) and II or UU, SH)) end conjugations["I-final-weak"] = function(base, vowel_spec) make_form_i_final_weak_verb(base, vowel_spec, false) end conjugations["I-assimilated+final-weak"] = function(base, vowel_spec) make_form_i_final_weak_verb(base, vowel_spec, "assimilated") end conjugations["I-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- In some sense, hollow vowels i~i and u~u are more "correct" than a~i and a~u, but the latter follow the -- pattern of other form-I verbs, so we map i~i to a~i and u~u to a~u in infer_radicals(). Now however we have -- to undo this to get the actual past vowel based on the non-past vowel. if req(past_vowel, A) then past_vowel = map_vowel(past_vowel, function(vow) return req(nonpast_vowel, A) and I or rget(nonpast_vowel) end) end local lengthened_nonpast = map_vowel(nonpast_vowel, function(vow) return vow == U and UU or vow == I and II or AA end) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- active past stems - vowel (v) and consonant (c) local past_v_stem = q(rad1, AA, rad3) local past_c_stem = q(rad1, past_vowel, rad3) -- active non-past stems - vowel (v) and consonant (c) local nonpast_v_stem = q(rad1, lengthened_nonpast, rad3) local nonpast_c_stem = q(rad1, nonpast_vowel, rad3) -- passive past stems - vowel (v) and consonant (c) -- 'ufīla, 'ufiltu local past_pass_v_stem = q(rad1, II, rad3) local past_pass_c_stem = q(rad1, I, rad3) -- passive non-past stems - vowel (v) and consonant (c) -- yufāla/yufalna -- stem is built differently but conjugation is identical to sound verbs local nonpast_pass_v_stem = q(rad1, AA, rad3) local nonpast_pass_c_stem = q(rad1, A, rad3) -- imperative stem local imp_v_stem = nonpast_v_stem local imp_c_stem = nonpast_c_stem -- make parts make_hollow_geminate_verb(base, false, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, "a") if kaan_radicals(rad1, rad2, rad3) then local endings = make_nonpast_endings(U, {}, {}, {}, {}) inflect_tense(base, "juss", nonpast_prefix_consonants, q(A, rad1), endings) base.irregular = true end -- Active participle. insert_form_or_forms(base, "ap1", req(rad3, HAMZA) and q(rad1, AA, HAMZA, IN) or q(rad1, AA, HAMZA, I, rad3)) -- Active participle, stative type I فَيِّد (++). FIXME: Any examples of this to verify it's correct? insert_ap2_pp2(base, q(rad1, A, Y, SH, I, rad3)) -- Active participle, stative type II فَيِد (+++). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "ap3", q(rad1, A, Y, I, rad3)) -- Active participle, color/defect أَفّيَد or أَفّوَد (+cd). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, A, rad3)) -- Active participle, -ān فَيْدَان or فَوْدَان (+an). Example: جَاعَ "to be hungry", act part جَوْعَان insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, req(rad2, Y) and II or UU, rad3)) end conjugations["I-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- active past stems - vowel (v) and consonant (c) local past_v_stem = q(rad1, A, rad2, SH) local past_c_stem = q(rad1, A, rad2, past_vowel, rad2) -- active non-past stems - vowel (v) and consonant (c) local nonpast_v_stem = q(rad1, nonpast_vowel, rad2, SH) local nonpast_c_stem = q(rad1, SK, rad2, nonpast_vowel, rad2) -- passive past stems - vowel (v) and consonant (c) -- dulla/dulilta local past_pass_v_stem = q(rad1, U, rad2, SH) local past_pass_c_stem = q(rad1, U, rad2, I, rad2) -- passive non-past stems - vowel (v) and consonant (c) --yudallu/yudlalna -- stem is built differently but conjugation is identical to sound verbs local nonpast_pass_v_stem = q(rad1, A, rad2, SH) local nonpast_pass_c_stem = q(rad1, SK, rad2, A, rad2) -- imperative stem local imp_v_stem = q(rad1, nonpast_vowel, rad2, SH) local imp_c_stem = q(form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1), rad2, nonpast_vowel, rad2) -- make parts make_hollow_geminate_verb(base, "geminate", past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, "a") -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, SH)) -- Active participle, stative type I فَعِيع (++). FIXME: Any examples of this to verify it's correct? insert_ap2_pp2(base, q(rad1, A, rad2, II, rad2)) -- Active participle, stative type II فَعّ (+++). Example: بَرَّ "to be pious", active participle بَرّ insert_form_or_forms(base, "ap3", q(rad1, A, rad2, SH)) -- Active participle, color/defect أَفَعّ (+cd). -- Example: لَصَّ "to be thievish, to steal repeatedly", active participle أَلَصّ. insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, A, rad2, SH)) -- Active participle, -ān فَعَّان (+an). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "apan", q(rad1, A, rad2, SH, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, UU, rad2)) end -- Return the ta- (active, past and non-past) and tu- (passive past) prefixes for a form II/III/V/VI verb. -- Form V and VI verbs normally use ta- and tu-, but reduced (base.reduced) verbs use different prefixes. Form II -- and III verbs have no prefix. local function form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vform = base.verb_form if vform == "V" or vform == "VI" then if base.reduced then -- To simplify the code, we generate two rad1's with a sukūn between them, which is cleaned up in -- postprocessing. return q(_I, rad1, SK), q(rad1, SK), q(_U, rad1, SK) else return TA, TA, TU end else return "", "", "" end end -- Make form II or V sound or final-weak verb. local function make_form_ii_v_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vn = vform == "V" and q(ta_past_prefix, rad1, A, rad2, SH, final_weak and IN or q(U, rad3)) or q(TA, rad1, SK, rad2, II, final_weak and AH or rad3) -- various stem bases local past_stem_base = q(ta_past_prefix, rad1, A, rad2, SH) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, A, rad2, SH) local past_pass_stem_base = q(tu_past_prefix, rad1, U, rad2, SH) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["II-sound"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["II-final-weak"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end local function make_form_iii_alt_vn(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) -- Insert alternative verbal noun فِعَال. Since not all verbs have this, we require that verbs that do have it -- specify it explicitly; a shortcut ++ is provided to make this easier (e.g. <vn:+,++> to indicate that -- both the normal verbal noun مُفَاعَلَة and secondary verbal noun فِعَال are available). insert_form_or_forms(base, "vn2", q(rad1, I, rad2, AA, final_weak and HAMZA or rad3)) end -- Make form III or VI sound or final-weak verb. local function make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vn = vform == "VI" and q(ta_past_prefix, rad1, AA, rad2, final_weak and IN or q(U, rad3)) or q(MU, rad1, AA, rad2, final_weak and AAH or q(A, rad3, AH)) -- various stem bases local past_stem_base = q(ta_past_prefix, rad1, AA, rad2) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, AA, rad2) local past_pass_stem_base = q(tu_past_prefix, rad1, UU, rad2) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) if vform == "III" then make_form_iii_alt_vn(base, vowel_spec) end end conjugations["III-sound"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["III-final-weak"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end -- Make form III or VI geminate verb. local function make_form_iii_vi_geminate_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) -- Alternative verbal noun فِعَال will be inserted when we add sound parts below. local vn = vform == "VI" and q(ta_past_prefix, rad1, AA, rad2, SH) or q(MU, rad1, AA, rad2, SH, AH) -- Various stem bases. local past_stem_base = q(ta_past_prefix, rad1, AA) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, AA) local past_pass_stem_base = q(tu_past_prefix, rad1, UU) -- Make parts. local variant = vowel_spec.variant or "short" if variant == "short" or variant == "both" then make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Also add alternative sound (non-compressed) parts. This will lead to some duplicate entries, but they are -- removed during addition. if variant == "long" or variant == "both" then make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) elseif vform == "III" then -- Still need to add the alternative form-III verbal noun. make_form_iii_alt_vn(base, vowel_spec) end end conjugations["III-geminate"] = function(base, vowel_spec) make_form_iii_vi_geminate_verb(base, vowel_spec) end -- Make form IV sound or final-weak verb. local function make_form_iv_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) -- core of stem base, minus stem prefixes local stem_core -- check for irregular verb أَرَى local is_raa = raa_radicals(rad1, rad2, rad3) if is_raa then base.irregular = true stem_core = rad1 else stem_core = q(rad1, SK, rad2) end -- verbal noun local vn = is_raa and q(HAMZA, I, stem_core, AA, HAMZA, AH) or q(HAMZA, I, stem_core, AA, final_weak and HAMZA or rad3) -- various stem bases local past_stem_base = q(HAMZA, A, stem_core) local nonpast_stem_base = stem_core local past_pass_stem_base = q(HAMZA, U, stem_core) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IV-sound"] = function(base, vowel_spec) make_form_iv_sound_final_weak_verb(base, vowel_spec) end conjugations["IV-final-weak"] = function(base, vowel_spec) make_form_iv_sound_final_weak_verb(base, vowel_spec) end conjugations["IV-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- verbal noun local vn = q(HAMZA, I, rad1, AA, rad3, AH) -- various stem bases local past_stem_base = q(HAMZA, A, rad1) local nonpast_stem_base = rad1 local past_pass_stem_base = q(HAMZA, U, rad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IV-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(HAMZA, I, rad1, SK, rad2, AA, rad2) -- various stem bases local past_stem_base = q(HAMZA, A, rad1) local nonpast_stem_base = rad1 local past_pass_stem_base = q(HAMZA, U, rad1) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["V-sound"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["V-final-weak"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-sound"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-final-weak"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-geminate"] = function(base, vowel_spec) make_form_iii_vi_geminate_verb(base, vowel_spec) end -- Make a verbal noun of the general form that applies to forms VII and above. RAD12 is the first consonant cluster -- (after initial اِ) and RAD34 is the second consonant cluster. RAD5 is the final consonant. local function high_form_verbal_noun(rad12, rad34, rad5) return q(_I, rad12, I, rad34, AA, rad5) end -- Populate a sound or final-weak verb for any of the various high-numbered augmented forms (form VII and up) that -- have up to 5 consonants in two clusters in the stem and the same pattern of vowels between. Some of these -- consonants in certain verb parts are w's, which leads to apparent anomalies in certain stems of these parts, but -- these anomalies are handled automatically in postprocessing, where we resolve sequences of iwC -> īC, uwC -> ūC, -- w + sukūn + w -> w + shadda. -- RAD12 is the first consonant cluster (after initial اِ) and RAD34 is the second consonant cluster. RAD5 is the -- final consonant. local function make_high_form_sound_final_weak_verb(base, vowel_spec, rad12, rad34, rad5) local final_weak = is_final_weak(base, vowel_spec) local vn = high_form_verbal_noun(rad12, rad34, final_weak and HAMZA or rad5) -- various stem bases local nonpast_stem_base = q(rad12, A, rad34) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad12, U, rad34) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end local function form_vii_nrad1(base, rad1) if base.reduced then if not req(rad1, M) then error(("Internal error: Form VII first radical %s is not م but .reduced specified; should have been caught earlier"): format(rget(rad1))) end return M .. SH else return q("نْ", rad1) end end -- Make form VII sound or final-weak verb. local function make_form_vii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high_form_sound_final_weak_verb(base, vowel_spec, form_vii_nrad1(base, rad1), rad2, rad3) end conjugations["VII-sound"] = function(base, vowel_spec) make_form_vii_sound_final_weak_verb(base, vowel_spec) end conjugations["VII-final-weak"] = function(base, vowel_spec) make_form_vii_sound_final_weak_verb(base, vowel_spec) end conjugations["VII-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local nrad1 = form_vii_nrad1(base, rad1) local vn = high_form_verbal_noun(nrad1, Y, rad3) -- various stem bases local nonpast_stem_base = nrad1 local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nrad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["VII-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local nrad1 = form_vii_nrad1(base, rad1) local vn = high_form_verbal_noun(nrad1, rad2, rad2) -- various stem bases local nonpast_stem_base = q(nrad1, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nrad1, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Return Form VIII verbal noun. local function form_viii_verbal_noun(base, vowel_spec, rad1, rad2, rad3) local final_weak = is_final_weak(base, vowel_spec) rad3 = final_weak and HAMZA or rad3 return {high_form_verbal_noun(vowel_spec.form_viii_assim, rad2, rad3)} end -- Make form VIII sound or final-weak verb. local function make_form_viii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- check for irregular verb اِتَّخَذَ if axadh_radicals(rad1, rad2, rad3) then base.irregular = true rad1 = T end make_high_form_sound_final_weak_verb(base, vowel_spec, vowel_spec.form_viii_assim, rad2, rad3) end conjugations["VIII-sound"] = function(base, vowel_spec) make_form_viii_sound_final_weak_verb(base, vowel_spec) end conjugations["VIII-final-weak"] = function(base, vowel_spec) make_form_viii_sound_final_weak_verb(base, vowel_spec) end conjugations["VIII-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = form_viii_verbal_noun(base, vowel_spec, rad1, Y, rad3) -- various stem bases local nonpast_stem_base = vowel_spec.form_viii_assim local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nonpast_stem_base) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["VIII-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = form_viii_verbal_noun(base, vowel_spec, rad1, rad2, rad2) -- various stem bases local nonpast_stem_base = q(vowel_spec.form_viii_assim, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, vowel_spec.form_viii_assim, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IX-sound"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(_I, rad1, SK, rad2, I, rad3, AA, rad3) -- various stem bases local nonpast_stem_base = q(rad1, SK, rad2, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad1, SK, rad2, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IX-final-weak"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high_form_sound_final_weak_verb(base, vowel_spec, q(rad1, SK, rad2), rad3, rad3) end -- Populate a sound or final-weak verb for any of the various high-numbered -- augmented forms that have 5 consonants in the stem and the same pattern of -- vowels. Some of these consonants in certain verb parts are w's, which leads to -- apparent anomalies in certain stems of these parts, but these anomalies -- are handled automatically in postprocessing, where we resolve sequences of -- iwC -> īC, uwC -> ūC, w + sukūn + w -> w + shadda. local function make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, rad3, rad4, rad5) make_high_form_sound_final_weak_verb(base, vowel_spec, q(rad1, SK, rad2), q(rad3, SK, rad4), rad5) end -- Make form X sound or final-weak verb. local function make_form_x_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- check for irregular verb اِسْتَحْيَا (also اِسْتَحَى) local is_hayy = hayy_radicals(rad1, rad2, rad3) local variant = vowel_spec.variant or "both" if not is_hayy or variant == "long" or variant == "both" then make_high5_form_sound_final_weak_verb(base, vowel_spec, S, T, rad1, rad2, rad3) end if is_hayy and (variant == "short" or variant == "both") then base.irregular = true -- Add alternative entries to the verbal paradigms. Any duplicates are removed during addition. make_high_form_sound_final_weak_verb(base, vowel_spec, S .. SK .. T, rad1, rad3) end end conjugations["X-sound"] = function(base, vowel_spec) make_form_x_sound_final_weak_verb(base, vowel_spec) end conjugations["X-final-weak"] = function(base, vowel_spec) make_form_x_sound_final_weak_verb(base, vowel_spec) end conjugations["X-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(base.reduced and "اِسْ" or "اِسْتِ", rad1, AA, rad3, AH) -- various stem bases local past_stem_base = q(base.reduced and "اِسْ" or "اِسْتَ", rad1) local nonpast_stem_base = q(base.reduced and "سْ" or "سْتَ", rad1) local past_pass_stem_base = q(base.reduced and "اُسْ" or "اُسْتُ", rad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["X-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q("اِسْتِ", rad1, SK, rad2, AA, rad2) -- various stem bases local past_stem_base = q("اِسْتَ", rad1) local nonpast_stem_base = q("سْتَ", rad1) local past_pass_stem_base = q("اُسْتُ", rad1) -- make parts if base.altgem then inflect_tense(base, "past", "", {q(past_stem_base, A, rad2, SH), all_same = 1}, past_endings_ay_12_person_only) end make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn, base.altgem and "[uncommon]" or nil) end conjugations["XI-sound"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(_I, rad1, SK, rad2, II, rad3, AA, rad3) -- various stem bases local nonpast_stem_base = q(rad1, SK, rad2, AA) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad1, SK, rad2, UU) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Probably no form XI final-weak, since already geminate in form; would behave as XI-sound. -- Make form XII sound or final-weak verb. local function make_form_xii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, W, rad2, rad3) end conjugations["XII-sound"] = function(base, vowel_spec) make_form_xii_sound_final_weak_verb(base, vowel_spec) end conjugations["XII-final-weak"] = function(base, vowel_spec) make_form_xii_sound_final_weak_verb(base, vowel_spec) end -- Make form XIII sound or final-weak verb. local function make_form_xiii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, W, W, rad3) end conjugations["XIII-sound"] = function(base, vowel_spec) make_form_xiii_sound_final_weak_verb(base, vowel_spec) end conjugations["XIII-final-weak"] = function(base, vowel_spec) make_form_xiii_sound_final_weak_verb(base, vowel_spec) end -- Make a form XIV or XV sound or final-weak verb. Last radical appears twice (if`anlala / yaf`anlilu) so if it were -- w or y you'd get if`anwā / yaf`anwī or if`anyā / yaf`anyī, i.e. unlike for most augmented verbs, the identity of -- the radical matters. local function make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local lastrad = base.verb_form == "XV" and Y or rad3 make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, N, rad3, lastrad) end conjugations["XIV-sound"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end conjugations["XIV-final-weak"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end conjugations["XV-sound"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end -- Probably no form XV final-weak, since already final-weak in form; would behave as XV-sound. -- Make form Iq or IIq sound or final-weak verb. local function make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local vn = vform == "IIq" and q(TA, rad1, A, rad2, SK, rad3, (final_weak and IN or q(U, rad4))) or q(rad1, A, rad2, SK, rad3, (final_weak and AAH or q(A, rad4, AH))) local ta_pref = vform == "IIq" and TA or "" local tu_pref = vform == "IIq" and TU or "" -- various stem bases local past_stem_base = q(ta_pref, rad1, A, rad2, SK, rad3) local nonpast_stem_base = past_stem_base local past_pass_stem_base = q(tu_pref, rad1, U, rad2, SK, rad3) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["Iq-sound"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["Iq-final-weak"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIq-sound"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIq-final-weak"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end -- Make form IIIq sound or final-weak verb. local function make_form_iiiq_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, N, rad3, rad4) end conjugations["IIIq-sound"] = function(base, vowel_spec) make_form_iiiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIIq-final-weak"] = function(base, vowel_spec) make_form_iiiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IVq-sound"] = function(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local vn = q(_I, rad1, SK, rad2, I, rad3, SK, rad4, AA, rad4) -- various stem bases local past_stem_base = q(_I, rad1, SK, rad2, A, rad3) local nonpast_stem_base = q(rad1, SK, rad2, A, rad3) local past_pass_stem_base = q(_U, rad1, SK, rad2, U, rad3) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Probably no form IVq final-weak, since already geminate in form; would behave as IVq-sound. end create_conjugations() ------------------------------------------------------------------------------- -- Guts of main conjugation function -- ------------------------------------------------------------------------------- -- Given form, weakness and radicals, check to make sure the radicals present are allowable for the weakness. Hamzas on -- alif/wāw/yāʾ seats are never allowed (should always appear as hamza-on-the-line), and various weaknesses have various -- strictures on allowable consonants. local function check_radicals(form, weakness, rad1, rad2, rad3, rad4) local function hamza_check(index, rad) if rad == HAMZA_ON_ALIF or rad == HAMZA_UNDER_ALIF or rad == HAMZA_ON_W or rad == HAMZA_ON_Y then error("Radical " .. index .. " is " .. rad .. " but should be ء (hamza on the line)") end end local function check_waw_ya(index, rad) if not is_waw_ya(rad) then error("Radical " .. index .. " is " .. rad .. " but should be و or ي") end end local function check_not_waw_ya(index, rad) if is_waw_ya(rad) then error("In a sound verb, radical " .. index .. " should not be و or ي") end end hamza_check(rad1) hamza_check(rad2) hamza_check(rad3) hamza_check(rad4) if weakness == "assimilated" or weakness == "assimilated+final-weak" then if rad1 ~= W then error("Radical 1 is " .. rad1 .. " but should be و") end -- don't check that non-assimilated form I verbs don't have wāw as their -- first radical because some form-I verbs exist where a first-radical wāw -- behaves as sound, e.g. wajuha yawjuhu "to be distinguished". end if weakness == "final-weak" or weakness == "assimilated+final-weak" then if rad4 then check_waw_ya(4, rad4) else check_waw_ya(3, rad3) end elseif vform_supports_final_weak(form) then -- non-final-weak verbs cannot have weak final radical if there's a corresponding -- final-weak verb category. I think this is safe. We may have problems with -- ḥayya/ḥayiya yaḥyā if we treat it as a geminate verb. if rad4 then check_not_waw_ya(4, rad4) else check_not_waw_ya(3, rad3) end end if weakness == "hollow" then check_waw_ya(2, rad2) -- don't check that non-hollow verbs in forms that support hollow verbs -- don't have wāw or yāʾ as their second radical because some verbs exist -- where a middle-radical wāw/yāʾ behaves as sound, e.g. form-VIII izdawaja -- "to be in pairs". end if weakness == "geminate" then if rad4 then error("Internal error: No geminate quadrilaterals, should not be seen") end if rad2 ~= rad3 then error("Weakness is geminate; radical 3 is " .. rad3 .. " but should be same as radical 2 " .. rad2) end elseif vform_supports_geminate(form) then -- non-geminate verbs cannot have second and third radical same if there's -- a corresponding geminate verb category. I think this is safe. We -- don't fuss over double wāw or double yāʾ because this could legitimately -- be a final-weak verb with middle wāw/yāʾ, treated as sound. if rad4 then error("Internal error: No quadrilaterals should support geminate verbs") end if rad2 == rad3 and not is_waw_ya(rad2) then error("Weakness is '" .. weakness .. "'; radical 2 and 3 are same at " .. rad2 .. " but should not be; consider making weakness 'geminate'") end end end -- array of substitutions; each element is a 2-entry array FROM, TO; do it -- this way so the concatenations only get evaluated once local postprocess_subs = { -- reorder short-vowel + shadda -> shadda + short-vowel for easier processing {"(" .. AIU .. ")" .. SH, SH .. "%1"}, ----------same letter separated by sukūn should instead use shadda--------- ------------happens e.g. in kun-nā "we were".----------------- {"(.)" .. SK .. "%1", "%1" .. SH}, ---------------------------- assimilated verbs ---------------------------- -- iw, iy -> ī (assimilated verbs) {I .. W .. SK, II}, {I .. Y .. SK, II}, -- uw, uy -> ū (assimilated verbs) {U .. W .. SK, UU}, {U .. Y .. SK, UU}, -------------- final -yā uses tall alif not alif maqṣūra ------------------ {"(" .. Y .. SH .. "?" .. A .. ")" .. AMAQ, "%1" .. ALIF}, ----------------------- handle hamza assimilation ------------------------- -- initial hamza + short-vowel + hamza + sukūn -> hamza + long vowel {HAMZA .. A .. HAMZA .. SK, HAMZA .. A .. ALIF}, {HAMZA .. I .. HAMZA .. SK, HAMZA .. I .. Y}, {HAMZA .. U .. HAMZA .. SK, HAMZA .. U .. W} } local postprocess_tr_subs = { {"ī([" .. vowels .. "y*])", "iy%1"}, {"ū([" .. vowels .. "w*])", "uw%1"}, {"(.)%*", "%1%1"}, -- implement shadda ---------------------------- assimilated verbs ---------------------------- -- iw, iy -> ī (assimilated verbs) {"iw([^" .. vowels .. "w])", "ī%1"}, {"iy([^" .. vowels .. "y])", "ī%1"}, -- uw, uy -> ū (assimilated verbs) {"uw([^" .. vowels .. "w])", "ū%1"}, {"uy([^" .. vowels .. "y])", "ū%1"}, ----------------------- handle hamza assimilation ------------------------- -- initial hamza + short-vowel + hamza + sukūn -> hamza + long vowel {"ʔaʔ(" .. NV .. ")", "ʔā%1"}, {"ʔiʔ(" .. NV .. ")", "ʔī%1"}, {"ʔuʔ(" .. NV .. ")", "ʔū%1"}, } -- Post-process verb parts to eliminate phonological anomalies. Many of the changes, particularly the tricky ones, -- involve converting hamza to have the proper seat. The rules for this are complicated and are documented on the -- [[w:Hamza]] Wikipedia page. In some cases there are alternatives allowed, and we handle them below by returning -- multiple possibilities. local function postprocess_term(term) if term == "?" then return "?" end -- Add BORDER at text boundaries. term = BORDER .. term .. BORDER -- Do the main post-processing, based on the pattern substitutions in postprocess_subs. for _, sub in ipairs(postprocess_subs) do term = rsub(term, sub[1], sub[2]) end term = term:gsub(BORDER, "") if not rfind(term, HAMZA) then return term end term = term:gsub(HAMZA, HAMZA_PH) term = ar_utilities.process_hamza(term) if #term == 1 then term = term[1] end return term end local function postprocess_translit(translit) if translit == "?" then return "?" end -- Add BORDER at text boundaries. translit = BORDER .. translit .. BORDER -- Do the main post-processing, based on the pattern substitutions in postprocess_tr_subs. for _, sub in ipairs(postprocess_tr_subs) do translit = rsub(translit, sub[1], sub[2]) end translit = translit:gsub(BORDER, "") return translit end local function postprocess_forms(base) local converted_values = {} for slot, forms in pairs(base.forms) do local need_dedup = false for i, form in ipairs(forms) do local term = postprocess_term(form.form) local translit = form.translit and postprocess_translit(form.translit) or nil if term ~= form.form or translit ~= form.translit then need_dedup = true end converted_values[i] = {term, translit} end if need_dedup then local temp_dedup = {} for i = 1, #forms do local new_term, new_translit = unpack(converted_values[i]) if type(new_term) == "table" then for _, nt in ipairs(new_term) do local new_formobj = { form = nt, translit = new_translit, footnotes = forms[i].footnotes, } iut.insert_form(temp_dedup, "temp", new_formobj) end else local new_formobj = { form = new_term, translit = new_translit, footnotes = forms[i].footnotes, } iut.insert_form(temp_dedup, "temp", new_formobj) end end base.forms[slot] = temp_dedup.temp end end end local function process_slot_overrides(base) for slot, forms in pairs(base.slot_overrides) do local existing_values = base.forms[slot] base.forms[slot] = nil for _, form in ipairs(forms) do -- + in active participle for form I requests slot ap1 if form.form == "+" and (base.verb_form ~= "I" or slot ~= "ap") then if not existing_values then error(("Slot '%s' requested the default value but no such value available"):format(slot)) end -- We maintain an invariant that no two slots share a form object (although they may share the footnote -- lists inside the form objects). However, there is no need to copy the form objects here because there -- is a one-to-one correspondence between slots and slot overrides, i.e. you can't have a default value -- go into two slots. insert_form_or_forms(base, slot, existing_values, "allow overrides", form.uncertain) elseif default_indicator_to_active_participle_slot[form.form] then if form.form == "++" then if slot ~= "vn" and slot ~= "ap" and slot ~= "pp" then error(("Secondary default value request '++' only applicable to verbal nouns and pariciples, but found in slot '%s'"): format(slot)) end else if slot ~= "ap" then error(("Secondary default value request '%s' only applicable to active pariciples, but found in slot '%s'"): format(form.form, slot)) end end local secondary_default_slot = slot == "vn" and "vn2" or slot == "pp" and "pp2" or default_indicator_to_active_participle_slot[form.form] local existing_values = base.forms[secondary_default_slot] if not existing_values then error(("Slot '%s' requested a secondary default value using '%s' but no such value available"): format(slot, form.form)) end -- See comment above about the lack of need to copy the form objects. insert_form_or_forms(base, slot, existing_values, "allow overrides", form.uncertain) -- To make sure there aren't shared form objects. base.forms[secondary_default_slot] = nil else insert_form_or_forms(base, slot, form, "allow overrides", form.uncertain) end end end -- Now, for non-stative form-I verbs, fill the active participle slot from ap1 unless it should be missing (e.g. -- passive-only or user specified 'ap:-'). if base.verb_form == "I" and not base.forms.ap and base.forms.ap1 and not skip_slot(base, "ap") then local saw_non_stative = false for _, vowel_spec in ipairs(base.conj_vowels) do if req(vowel_spec.past, A) then saw_non_stative = true break end end if saw_non_stative then base.forms.ap = base.forms.ap1 -- To make sure there aren't shared form objects. base.forms.ap1 = nil end end end local function handle_lemma_linked(base) -- Compute linked versions of potential lemma slots, for use in {{ar-verb}}. We substitute the original lemma -- (before removing links) for forms that are the same as the lemma, if the original lemma has links. for _, slot in ipairs(export.potential_lemma_slots) do if base.forms[slot] then insert_form_or_forms(base, slot .. "_linked", iut.map_forms(base.forms[slot], function(form) if form == base.lemma and rfind(base.linked_lemma, "%[%[") then return base.linked_lemma else return form end end)) end end end -- Process specs given by the user using 'addnote[SLOTSPEC][FOOTNOTE][FOOTNOTE][...]'. local function process_addnote_specs(base) for _, spec in ipairs(base.addnote_specs) do for _, slot_spec in ipairs(spec.slot_specs) do slot_spec = "^" .. slot_spec .. "$" for slot, forms in pairs(base.forms) do if rfind(slot, slot_spec) then -- To save on memory, side-effect the existing forms. for _, form in ipairs(forms) do form.footnotes = iut.combine_footnotes(form.footnotes, spec.footnotes) end end end end end end local function add_missing_links_to_forms(base) -- Any forms without links should get them now. Redundant ones will be stripped later. for slot, forms in pairs(base.forms) do for _, form in ipairs(forms) do if not form.form:find("%[%[") then form.form = "[[" .. form.form .. "]]" end end end end local function conjugate_verb(base) construct_stems(base) for _, vowel_spec in ipairs(base.conj_vowels) do -- Reconstruct conjugation type from verb form and (possibly inferred) weakness. conj_type = base.verb_form .. "-" .. vowel_spec.weakness -- Check that the conjugation type is recognized. if not conjugations[conj_type] then error("Unknown conjugation type '" .. conj_type .. "'") end -- The way the conjugation functions work is they always add entries to the appropriate parts of the paradigm -- (each of which is an array), rather than setting the values. This makes it possible to call more than one -- conjugation function and essentially get a paradigm of the "either A or B" kind. Doing this may insert -- duplicate entries into a particular paradigm part, but this is not a problem because we check for duplicate -- entries when adding them, and don't insert in that case. conjugations[conj_type](base, vowel_spec) end postprocess_forms(base) process_slot_overrides(base) -- This should happen before add_missing_links_to_forms() so that the comparison `form == base.lemma` in -- handle_lemma_linked() works correctly and compares unlinked forms to unlinked forms. handle_lemma_linked(base) process_addnote_specs(base) if not base.alternant_multiword_spec.args.noautolinkverb then add_missing_links_to_forms(base) end end local function parse_indicator_spec(angle_bracket_spec) -- Store the original angle bracket spec so we can reconstruct the overall conj spec with the lemma(s) in them. local base = { angle_bracket_spec = angle_bracket_spec, conj_vowels = {}, root_consonants = {}, user_stem_overrides = {}, user_slot_overrides = {}, slot_explicitly_missing = {}, slot_uncertain = {}, slot_override_uses_default = {}, addnote_specs = {}, } local function parse_err(msg) error(msg .. ": " .. angle_bracket_spec) end local function fetch_footnotes(separated_group) local footnotes for j = 2, #separated_group - 1, 2 do if separated_group[j + 1] ~= "" then parse_err("Extraneous text after bracketed footnotes: '" .. table.concat(separated_group) .. "'") end if not footnotes then footnotes = {} end table.insert(footnotes, separated_group[j]) end return footnotes end local inside = angle_bracket_spec:match("^<(.*)>$") assert(inside) local segments = put.parse_multi_delimiter_balanced_segment_run(inside, {{"[", "]"}, {"<", ">"}}) local dot_separated_groups = put.split_alternating_runs_and_strip_spaces(segments, "%.") -- The first dot-separated element must specify the verb form, e.g. IV or IIq. If the form is I, it needs to include -- the the past and non-past vowels, e.g. I/a~u for kataba ~ yaktubu. More than one vowel can be given, -- comma-separated, and more than one past~non-past pair can be given, slash-separated, e.g. I/a,u~u/i~a for form I -- كمل, which can be conjugated as kamala/kamula ~ yakmulu or kamila ~ yakmalu. An individual vowel spec must be one -- of a, i or u and in general (a) at least one past~non-past pair most be given, and (b) both past and non-past -- vowels must be given even though sometimes the vowel can be determined from the unvocalized form. An exception is -- passive-only verbs, where the vowels can't in general be determined (except indirectly in some cases by looking -- at an associated non-passive verb); in that case, the vowel~vowel spec can left out. local slash_separated_groups = put.split_alternating_runs_and_strip_spaces(dot_separated_groups[1], "/") local form_spec = slash_separated_groups[1] base.form_footnotes = fetch_footnotes(form_spec) if form_spec[1] == "" then parse_err("Missing verb form") end if not allowed_vforms_with_weakness_set[form_spec[1]] then parse_err(("Unrecognized verb form '%s', should be one of %s"):format( form_spec[1], list_to_text(allowed_vforms, nil, " or "))) end if form_spec[1]:find("%-") then base.verb_form, base.explicit_weakness = form_spec[1]:match("^(.-)%-(.*)$") else base.verb_form = form_spec[1] end if #slash_separated_groups > 1 then if base.verb_form ~= "I" then parse_err(("Past~non-past vowels can only be specified when verb form is I, but saw form '%s'"):format( base.verb_form)) end for i = 2, #slash_separated_groups do local slash_separated_group = slash_separated_groups[i] local tilde_separated_groups = put.split_alternating_runs_and_strip_spaces(slash_separated_group, "~") if #tilde_separated_groups ~= 2 then parse_err(("Expected two tilde-separated vowel specs: %s"):format(table.concat(slash_separated_group))) end local function parse_conj_vowels(tilde_separated_group, vtype) local conj_vowel_objects = {} local comma_separated_groups = put.split_alternating_runs_and_strip_spaces(tilde_separated_group, ",") for _, comma_separated_group in ipairs(comma_separated_groups) do local conj_vowel = comma_separated_group[1] if conj_vowel ~= "a" and conj_vowel ~= "i" and conj_vowel ~= "u" then parse_err(("Expected %s conjugation vowel '%s' to be one of a, i or u in %s"):format( vtype, conj_vowel, table.concat(slash_separated_group))) end conj_vowel = dia[conj_vowel] local conj_vowel_footnotes = fetch_footnotes(comma_separated_group) -- Try to use strings when possible as it makes q() significantly more efficient. if conj_vowel_footnotes then table.insert(conj_vowel_objects, {form = conj_vowel, footnotes = conj_vowel_footnotes}) else table.insert(conj_vowel_objects, conj_vowel) end end return conj_vowel_objects end local conj_vowel_spec = { past = parse_conj_vowels(tilde_separated_groups[1], "past"), nonpast = parse_conj_vowels(tilde_separated_groups[2], "non-past"), } table.insert(base.conj_vowels, conj_vowel_spec) end end for i = 2, #dot_separated_groups do local dot_separated_group = dot_separated_groups[i] local first_element = dot_separated_group[1] if first_element == "addnote" then local spec_and_footnotes = fetch_footnotes(dot_separated_group) if #spec_and_footnotes < 2 then parse_err("Spec with 'addnote' should be of the form 'addnote[SLOTSPEC][FOOTNOTE][FOOTNOTE][...]'") end local slot_spec = table.remove(spec_and_footnotes, 1) local slot_spec_inside = rmatch(slot_spec, "^%[(.*)%]$") if not slot_spec_inside then parse_err("Internal error: slot_spec " .. slot_spec .. " should be surrounded with brackets") end local slot_specs = rsplit(slot_spec_inside, ",") -- FIXME: Here, [[Module:it-verb]] called strip_spaces(). Generally we don't do this. Should we? table.insert(base.addnote_specs, {slot_specs = slot_specs, footnotes = spec_and_footnotes}) elseif first_element:find("^var:") then if #dot_separated_group > 1 then parse_err(("Can't attach footnotes to 'var:' spec '%s'"):format(first_element)) end base.variant = first_element:match("^var:(.*)$") elseif first_element:find("^I+V?:") then local root_cons, root_cons_value = first_element:match("^(I+V?):(.*)$") local root_index if root_cons == "I" then root_index = 1 elseif root_cons == "II" then root_index = 2 elseif root_cons == "III" then root_index = 3 elseif root_cons == "IV" then root_index = 4 if not base.verb_form:find("q$") then parse_err(("Can't specify root consonant IV for non-quadriliteral verb form '%s': %s"):format( base.verb_form, first_element)) end end local cons, translit = root_cons_value:match("^(.*)//(.*)$") if not cons then cons = root_cons_value end local root_footnotes = fetch_footnotes(dot_separated_group) if not translit and not root_footnotes then base.root_consonants[root_index] = cons else base.root_consonants[root_index] = {form = cons, translit = translit, footnotes = root_footnotes} end elseif first_element:find("^[a-z][a-z0-9_]*:") then local slot_or_stem, remainder = first_element:match("^(.-):(.*)$") dot_separated_group[1] = remainder local comma_separated_groups = put.split_alternating_runs_and_strip_spaces(dot_separated_group, "[,،]") if overridable_stems[slot_or_stem] then if base.user_stem_overrides[slot_or_stem] then parse_err("Overridable stem '" .. slot_or_stem .. "' specified twice") end base.user_stem_overrides[slot_or_stem] = overridable_stems[slot_or_stem](comma_separated_groups, {prefix = slot_or_stem, base = base, parse_err = parse_err, fetch_footnotes = fetch_footnotes}) else -- assume a form override; we validate further later when the possible slots are available if base.user_slot_overrides[slot_or_stem] then parse_err("Form override '" .. slot_or_stem .. "' specified twice") end base.user_slot_overrides[slot_or_stem] = allow_multiple_values_for_override(comma_separated_groups, {prefix = slot_or_stem, base = base, parse_err = parse_err, fetch_footnotes = fetch_footnotes}, "is form override") end elseif indicator_flags[first_element] then if #dot_separated_group > 1 then parse_err("No footnotes allowed with '" .. first_element .. "' spec") end if base[first_element] then parse_err("Spec '" .. first_element .. "' specified twice") end base[first_element] = true else local passive, uncertain = first_element:match("^(.*)(%?)$") passive = passive or first_element uncertain = not not uncertain if passive_types[passive] then if #dot_separated_group > 1 then parse_err("No footnotes allowed with '" .. passive .. "' spec") end if base.passive then parse_err("Value for passive type specified twice") end base.passive = passive base.passive_uncertain = uncertain else parse_err("Unrecognized spec '" .. first_element .. "'") end end end return base end -- Normalize all lemmas, substituting the pagename for blank lemmas and adding links to multiword lemmas. local function normalize_all_lemmas(alternant_multiword_spec, head) -- (1) Add links to all before and after text. Remember the original text so we can reconstruct the verb spec later. if not alternant_multiword_spec.args.noautolinktext then iut.add_links_to_before_and_after_text(alternant_multiword_spec, "remember original") end -- (2) Remove any links from the lemma, but remember the original form so we can use it below in the 'lemma_linked' -- form. iut.map_word_specs(alternant_multiword_spec, function(base) if base.lemma == "" then base.lemma = head end base.user_specified_lemma = base.lemma base.lemma = m_links.remove_links(base.lemma) base.user_specified_verb = base.lemma base.verb = base.user_specified_verb local linked_lemma if alternant_multiword_spec.args.noautolinkverb or base.user_specified_lemma:find("%[%[") then linked_lemma = base.user_specified_lemma else -- Add links to the lemma so the user doesn't specifically need to, since we preserve -- links in multiword lemmas and include links in non-lemma forms rather than allowing -- the entire form to be a link. linked_lemma = iut.add_links(base.user_specified_lemma) end base.linked_lemma = linked_lemma end) end --W: Lexical exceptions — yāʾ-middle roots whose Form IV (أفعل) keeps the yāʾ SOUND -- instead of undergoing the regular إعلال to a hollow verb (أَفْيَلَ, not أَفَالَ). -- These are attested verbs (not the صفة مشبهة like أَخْيَف/خَيْفاء); each is sourced below. -- Only Form IV is affected; forms VII/VIII/X of these roots remain hollow. -- Keyed by rad1..rad2..rad3. local SOUND_FORM_IV_ROOTS = { ["خيل"] = true, -- أَخْيَلَ: أخيلت السماءُ تهيأت للمطر — المعجم الوسيط ج1 ص266 (وبه أَخالت أيضًا) ["غيل"] = true, -- أَغْيَلَ: أغيلته فهي مُغْيِل، سقته الغَيْل — لسان العرب ج11 ص111 (وبه أغالت أيضًا) ["حيج"] = true, -- أَحْيَجَ: أحيجت الأرضُ، على خلاف القياس — تاج العروس ج5 ص500 ["حين"] = true, -- أَحْيَنَ: أحين القومُ آن لهم أن يبلغوا ما أملوه — المعجم الوسيط ج1 ص212 ["خيف"] = true, -- أَخْيَفَ: أخيف الحاجُّ نزلوا خيف منى — كتاب الأفعال لابن القوطية ص35 ["ريف"] = true, -- أَرْيَفَ: أريفت الأرضُ إريافًا (خصبت) — المحيط في اللغة ج10 ص256 ["زين"] = true, -- أَزْيَنَ: أزينت الأرضُ، حسّنها عشبها — مقاييس اللغة ج3 ص41 } -- Determine weakness from radicals. Used when root given in place of lemma (e.g. for {{ar-verb forms}}). local function weakness_from_radicals(form, rad1, rad2, rad3, rad4) local weakness = nil local quadlit = form:find("q$") -- If weakness unspecified, derive from radicals. if not quadlit then if is_waw_ya(rad3) and rad1 == W and form == "I" then weakness = "assimilated+final-weak" elseif is_waw_ya(rad3) and vform_supports_final_weak(form) then weakness = "final-weak" elseif rad2 == rad3 and vform_supports_geminate(form) then weakness = "geminate" elseif is_waw_ya(rad2) and vform_supports_hollow(form) then --W: Both wāw (و) and yāʾ (ي) in the middle position create hollow verbs, in form I -- (قَالَ from ق-و-ل, بَاعَ from ب-ي-ع) and in the augmented forms IV, VII, VIII, X -- (أَتَاسَ from ت-ي-س, أَبَانَ from ب-ي-ن, أَطَاحَ from ط-ي-ح — معجم متن اللغة). if form == "IV" and rad2 == Y and SOUND_FORM_IV_ROOTS[rad1 .. rad2 .. rad3] then -- Lexical exceptions whose Form IV keeps the yāʾ sound (أَفْيَلَ); see SOUND_FORM_IV_ROOTS. weakness = "sound" else weakness = "hollow" end elseif rad1 == W and form == "I" then weakness = "assimilated" else weakness = "sound" end else if is_waw_ya(rad4) then weakness = "final-weak" else weakness = "sound" end end return weakness end -- Join the infixed tāʔ (ت) to the first radical in form VIII verbs. This may cause assimilation of the tāʔ to the -- radical or in some cases the radical to the tāʔ. Used when a root is supplied instead of a lemma (which already has -- the appropriate assimilation in it). local function form_viii_join_ta(rad) if rad == W or rad == Y or rad == "ت" then return "تّ" elseif rad == "د" then return "دّ" elseif rad == "ث" then return "ثّ" elseif rad == "ذ" then return "ذّ" elseif rad == "ز" then return "زْد" elseif rad == "ص" then return "صْط" elseif rad == "ض" then return "ضْط" elseif rad == "ط" then return "طّ" elseif rad == "ظ" then return "ظّ" else return rad .. SK .. "ت" end end local function detect_indicator_spec(base) base.forms = {} base.stem_overrides = {} base.slot_overrides = {} if not base.conj_vowels[1] then -- These may be converted to inferred vowels. If not, we throw an error if form I and not passive-only. base.conj_vowels = {{ past = "-", nonpast = "-", }} else -- If multiple vowels specified for a given vowel type (e.g. a,u~u), expand so that each spec in local expansion = {} for _, spec in ipairs(base.conj_vowels) do for _, past in ipairs(spec.past) do for _, nonpast in ipairs(spec.nonpast) do table.insert(expansion, {past = past, nonpast = nonpast}) end end end base.conj_vowels = expansion end local vform = base.verb_form -- check for quadriliteral form (Iq, IIq, IIIq, IVq) base.quadlit = not not vform:find("q$") -- Infer radicals as necessary. We infer a separate set of radicals for each past~non-past vowel combination because -- they may be different (particularly with form-I hollow verbs). for _, vowel_spec in ipairs(base.conj_vowels) do -- NOTE: rad1, rad2, etc. refer to user-specified radicals, which are formobj tables that optionally specify an -- explicit manual translit, whereas ir1, ir2, etc. refer to inferred radicals, which are either strings or -- lists of possible radicals. local rads = base.root_consonants local rad1, rad2, rad3, rad4 = rads[1], rads[2], rads[3], rads[4] -- Default any unspecified radicals to radicals determined from the headword. The returned radicals may be -- lists of possible radicals, where the first radical should be chosen if the user didn't explicitly specify a -- radical but all are allowed. If `ambig = true` is set in the table, the radical is considered ambiguous and -- categories won't be created for weak radicals. local weakness, ir1, ir2, ir3, ir4 if vform ~= "none" then ir1, ir2, ir3 = rmatch(base.lemma, "^([^_])_([^_])_([^_])$") if not ir1 then ir1, ir2, ir3, ir4 = rmatch(base.lemma, "^([^_])_([^_])_([^_])_([^_])$") end if ir1 then -- root given instead of lemma weakness = weakness_from_radicals(vform, ir1, ir2, ir3, ir4) if vform == "VIII" then vowel_spec.form_viii_assim = form_viii_join_ta(ir1) end else local ret = export.infer_radicals { headword = base.lemma, vform = vform, passive = base.passive, past_vowel = vowel_spec.past, nonpast_vowel = vowel_spec.nonpast, is_reduced = base.reduced, } weakness, ir1, ir2, ir3, ir4 = ret.weakness, ret.rad1, ret.rad2, ret.rad3, ret.rad4 vowel_spec.form_viii_assim = ret.form_viii_assim vowel_spec.past = ret.past_vowel vowel_spec.nonpast = ret.nonpast_vowel vowel_spec.variant = base.variant or ret.variant end end -- For most ambiguous radicals, the choice of radical doesn't matter because it doesn't affect the conjugation -- one way or another. For form I hollow verbs, however, it definitely does. In fact, the choice of radical is -- critical even beyond the past and non-past vowels because it affects the form of the passive participle. So, -- check for this and signal an error if the radical could not be inferred and is not given explicitly. if vform == "I" and type(ir2) == "table" and ir2.need_radical and not rad2 then error("Unable to guess middle radical of hollow form I verb; need to specify radical explicitly") end if vform == "I" and not is_passive_only(base.passive) and ( rget(vowel_spec.past) == "-" or rget(vowel_spec.nonpast) == "-") then error("Form I verb that isn't passive-only or final-weak must have past~non-past vowels specified") end -- Convert ambiguous radicals. local function regularize_inferred_radical(rad) if type(rad) == "table" then if rad.ambig then return {form = rad[1], ambig = true} else return rad[1] end else return rad end end -- Return the appropriate radical at index `index` (1 through 4), based either on the user-specified radical -- `user_radical` or (if unspecified) `inferred_radical`, inferred from the unvocalized lemma. Two values are -- returned, the "regularized" version of the radical (where ambiguous inferred radicals are converted to their -- most likely actual radical) and the non-regularized version. The returned values are form objects rather than -- strings. local function fetch_radical(user_radical, inferred_radical, index) if not user_radical then return regularize_inferred_radical(inferred_radical), inferred_radical else local rad_formval = rget(user_radical) if type(inferred_radical) == "table" then local allowed_radical_set = m_table.listToSet(inferred_radical) if not allowed_radical_set[rad_formval] then error(("For lemma %s, radical %s ambiguously inferred as %s but user radical incompatibly given as %s"): format(base.lemma, index, list_to_text(inferred_radical, nil, " or "), rad_formval)) end elseif rad_formval ~= inferred_radical then error(("For lemma %s, radical %s inferred as %s but user radical incompatibly given as %s"): format(base.lemma, index, inferred_radical, rad_formval)) end return user_radical, user_radical end end if vform ~= "none" then vowel_spec.rad1, vowel_spec.unreg_rad1 = fetch_radical(rad1, ir1, 1) vowel_spec.rad2, vowel_spec.unreg_rad2 = fetch_radical(rad2, ir2, 2) vowel_spec.rad3, vowel_spec.unreg_rad3 = fetch_radical(rad3, ir3, 3) if base.quadlit then vowel_spec.rad4, vowel_spec.unreg_rad4 = fetch_radical(rad4, ir4, 4) end end if vform == "I" then -- If explicit weakness given using 'I-sound' or 'I-assimilated', we may need to adjust the inferred weakness. if base.explicit_weakness == "sound" then if weakness == "assimilated" then weakness = "sound" elseif weakness == "assimilated+final-weak" then -- Verbs like waniya~yawnā "to be faint; to languish" (although the defaults should handle this -- correctly) weakness = "final-weak" else error(("Can't specify form 'I-sound' when inferred weakness is '%s' for lemma %s"):format( weakness, base.lemma)) end elseif base.explicit_weakness == "assimilated" then if weakness == "sound" then -- i~a verbs like waṭiʔa~yaṭaʔu "to tread, to trample"; wasiʕa~yasaʕu "to be spacious; to be well-off"; -- waṯiʔa~yaṯaʔu "to get bruised, to be sprained", which would default to sound. weakness = "assimilated" elseif weakness == "final-weak" then -- For completeness; not clear if any verbs occur where this is needed. (There are plenty of -- assimilated+final-weak verbs but the defaults should take care of them.) weakness = "assimilated+final-weak" else error(("Can't specify form 'I-assimilated' when inferred weakness is '%s' for lemma %s"):format( weakness, base.lemma)) end elseif base.explicit_weakness then error(("Internal error: Unrecognized value '%s' for base.explicit_weakness"):format(base.explicit_weakness)) end elseif vform == "none" then weakness = base.explicit_weakness elseif base.explicit_weakness then error(("Internal error: Explicit weakness should not be specifiable except with forms I and none, but saw explicit weakness '%s' with verb form '%s'"): format(base.explicit_weakness, vform)) end vowel_spec.weakness = weakness if vform ~= "none" then -- Error if radicals are wrong given the weakness. More likely to happen if the weakness is explicitly given -- rather than inferred. Will also happen if certain incorrect letters are included as radicals e.g. hamza on -- top of various letters, alif maqṣūra, tā' marbūṭa. check_radicals(vform, weakness, rget(vowel_spec.rad1), rget(vowel_spec.rad2), rget(vowel_spec.rad3), base.quadlit and rget(vowel_spec.rad4) or nil) end -- Check the variant value. local form_iii_vi_geminate = (vform == "III" or vform == "VI") and rget(vowel_spec.rad2) == rget(vowel_spec.rad3) and not req(vowel_spec.rad2, Y) local hayy_i_x = hayy_radicals(vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3) and (vform == "I" or vform == "X") if form_iii_vi_geminate or hayy_i_x then if vowel_spec.variant and vowel_spec.variant ~= "long" and vowel_spec.variant ~= "short" and vowel_spec.variant ~= "both" then error(("For form-III/VI geminate verb or form-I/X verb with ح-ي-ي radicals, saw unrecognized 'var:%s' value; should be 'var:long', 'var:short' or 'var:both'"):format( vowel_spec.variant)) end elseif vowel_spec.variant then error(("Variant value 'var:%s' not allowed in this context"):format(vowel_spec.variant)) end end -- If form I, regroup expanded vowels for display purposes. if vform == "I" then local group_by_past = {} for _, vowel_spec in ipairs(base.conj_vowels) do m_table.insertIfNot(group_by_past, { past = undia[rget(vowel_spec.past)], nonpasts = {undia[rget(vowel_spec.nonpast)]}, }, { key = function(obj) return obj.past end, combine = function(obj1, obj2) for _, nonpast in ipairs(obj2.nonpasts) do m_table.insertIfNot(obj1.nonpasts, nonpast) end end, }) end local group_by_nonpast = {} for _, vowel_spec in ipairs(group_by_past) do m_table.insertIfNot(group_by_nonpast, { pasts = {vowel_spec.past}, nonpasts = vowel_spec.nonpasts, }, { key = function(obj) return obj.nonpasts end, combine = function(obj1, obj2) for _, past in ipairs(obj2.pasts) do m_table.insertIfNot(obj1.pasts, past) end end, }) end base.grouped_conj_vowels = group_by_nonpast end -- Set value of passive. If not specified, default is yes for forms II, III, IV and Iq; no but uncertainly for -- forms VII, IX, XI - XV and IIIq - IVq, as well as form I with past vowel u; impersonal but uncertainly for form -- V, VI, X and IIq, as well as form I with past vowel i; and yes but uncertainly for the remainder (form I with -- past vowel only a and form VIII). if not base.passive then base.passive_defaulted = true -- Temporary tracking for defaulted passives by verb form, weakness and (for form I) past/non-past vowels. track_if_ar_conj(base, "passive-defaulted/" .. vform) for _, vowel_spec in ipairs(base.conj_vowels) do track_if_ar_conj(base, "passive-defaulted/" .. vform.. "/" .. vowel_spec.weakness) if vform == "I" then --W: use rget(); the vowel is a form object when the user attached a footnote -- (e.g. <I/a[نادر]~u>), and undia[<table>] is nil, which crashes format() on Lua 5.1. local past_nonpast = ("%s~%s"):format(undia[rget(vowel_spec.past)], undia[rget(vowel_spec.nonpast)]) track_if_ar_conj(base, "passive-defaulted/I/" .. past_nonpast) track_if_ar_conj(base, "passive-defaulted/I/" .. vowel_spec.weakness .. "/" .. past_nonpast) end end if vform_probably_full_passive(vform) then base.passive = "pass" else base.passive_uncertain = true for _, vowel_spec in ipairs(base.conj_vowels) do if vform_probably_no_passive(vform, vowel_spec.weakness, vowel_spec.past, vowel_spec.nonpast) then base.passive = "nopass" break elseif vform_probably_impersonal_passive(vform, vowel_spec.weakness, vowel_spec.past, vowel_spec.nonpast) then base.passive = "ipass" break end end base.passive = base.passive or "pass" end end -- NOTE: Currently there are no built-in stems or form overrides for Arabic; this code is inherited from -- [[Module:ca-verb]], where such things do exist, and is kept for generality in case we decide in the future to -- implement such things. -- Override built-in verb stems and overrides with user-specified ones. for stem, values in pairs(base.user_stem_overrides) do base.stem_overrides[stem] = values end for slot, values in pairs(base.user_slot_overrides) do if not base.alternant_multiword_spec.verb_slots_map[slot] then error("Unrecognized override slot '" .. slot .. "': " .. base.angle_bracket_spec) end if export.unsettable_slots_set[slot] then error("Slot '" .. slot .. "' cannot be set using an override: " .. base.angle_bracket_spec) end if skip_slot(base, slot, "allow overrides") then error("Override slot '" .. slot .. "' would be skipped based on the passive, 'noimp' and/or 'no_nonpast' settings: " .. base.angle_bracket_spec) end base.slot_overrides[slot] = values end if base.verb_form == "none-final-weak" then for _, stem_type in ipairs { "past", "past_pass", "nonpast", "nonpast_pass" } do if base.stem_overrides[stem_type .. "_c"] or base.stem_overrides[stem_type .. "_v"] then error(("Specify past stem for verb type 'none-final-weak' using '%s:...' not '%s_c:...' or '%s_v:...'"): format(stem_type, stem_type, stem_type)) end end for _, stem_type in ipairs { "past", "nonpast" } do if base.stem_overrides[stem_type] or not base.stem_overrides[stem_type .. "_final_weak_vowel"] then error(("For verb type 'none-final-weak', if '%s:...' specified, so must '%s_final_weak_vowel:...'"): format(stem_type, stem_type)) end end end end local function detect_all_indicator_specs(alternant_multiword_spec) add_slots(alternant_multiword_spec) alternant_multiword_spec.verb_forms = {} -- This means at least one individual base had the slot marked as explicitly missing. Another base (e.g. when -- there are multiple alternants) might have a value for the slot. In practice, we only respect this when there are -- no overall values in the slot and `slot_uncertain` isn't set; in this case, we display "no ..." for the slot -- instead of simply not displaying anything for the slot. alternant_multiword_spec.slot_explicitly_missing = {} -- This means at least one individual base had no values for the slot and the slot marked as explicitly uncertain. -- Note that this is different from a value being present but marked as uncertain (e.g. if an override was given -- with a ? after it); this causes the form object for the value to have `uncertain = true` set. If there are no -- overall values in the slot and `slot_uncertain` is set, we display this in the headword. alternant_multiword_spec.slot_uncertain = {} iut.map_word_specs(alternant_multiword_spec, function(base) -- So arguments, etc. can be accessed. WARNING: Creates circular reference. base.alternant_multiword_spec = alternant_multiword_spec detect_indicator_spec(base) if not base.nocat then m_table.insertIfNot(alternant_multiword_spec.verb_forms, base.verb_form) end if base.passive then alternant_multiword_spec.passive = base.passive end if base.passive_uncertain then alternant_multiword_spec.passive_uncertain = true end for slot, _ in pairs(base.slot_explicitly_missing) do alternant_multiword_spec.slot_explicitly_missing[slot] = true end end) end local function determine_slot_uncertainty_from_forms(alternant_multiword_spec) iut.map_word_specs(alternant_multiword_spec, function(base) -- If no verbal noun and verb form is not 'none' (manually-specified stems) — which currently only happens for -- form I — and the verbal noun wasn't explicitly indicated as missing using <vn:->, we assume it's just -- unknown/unspecified rather than missing. Same with active participles. for uncertain_slot, _ in pairs(slots_that_may_be_uncertain) do if not base.forms[uncertain_slot] and vform ~= "none" and not skip_slot(base, uncertain_slot) then base.slot_uncertain[uncertain_slot] = true end end -- Propagate slot uncertainty up. Currently only the verbal noun can have this set but we write the code -- generally. for slot, _ in pairs(base.slot_uncertain) do alternant_multiword_spec.slot_uncertain[slot] = true end end) -- If slot is uncertain and has no value, explicitly set its value to "?". for uncertain_slot, _ in pairs(slots_that_may_be_uncertain) do if not alternant_multiword_spec.forms[uncertain_slot] and alternant_multiword_spec.slot_uncertain[uncertain_slot] then alternant_multiword_spec.forms[uncertain_slot] = {{form = "?"}} end end end -- Determine certain properties of the verb from the overall forms, such as whether the verb is active-only or -- passive-only, is impersonal, lacks an imperative, etc. local function determine_verb_properties_from_forms(alternant_multiword_spec) alternant_multiword_spec.has_active = false alternant_multiword_spec.has_passive = false alternant_multiword_spec.has_non_impers_active = false alternant_multiword_spec.has_non_impers_passive = false alternant_multiword_spec.has_imp = false alternant_multiword_spec.has_past = false alternant_multiword_spec.has_nonpast = false for slot, _ in pairs(alternant_multiword_spec.forms) do if slot == "ap" or slot:find("[123]") and not slot:find("_pass") then alternant_multiword_spec.has_active = true end if slot == "pp" or slot:find("[123]") and slot:find("_pass") then alternant_multiword_spec.has_passive = true end if slot:find("[123]") and not slot:find("pass_[123]") and not slot:find("3ms") then alternant_multiword_spec.has_non_impers_active = true end if slot:find("pass_[123]") and not slot:find("3ms") then alternant_multiword_spec.has_non_impers_passive = true end if slot:find("^imp_") then alternant_multiword_spec.has_imp = true end if slot:find("^past_") then alternant_multiword_spec.has_past = true end if slot:find("^ind_") or slot:find("^sub_") or slot:find("^juss_") then alternant_multiword_spec.has_nonpast = true end end end local function add_categories_and_annotation(alternant_multiword_spec, base, multiword_lemma, insert_ann, insert_cat) -- Useful e.g. in constructing suppletive verbs out of parts. For a verb like جاء or أتى whose imperative comes -- from the unrelated verb تعالى, we don't want the latter verb showing up in categories or annotations. if base.nocat then return end local vform = base.verb_form if vform ~= "none" then insert_ann("form", vform) insert_cat("form-" .. vform .. " verbs") --W: Add morphological pattern corresponding to the form local morph_pattern = FORM_TO_MORPHOLOGICAL_PATTERN[vform] if morph_pattern then insert_ann("morph_pattern", morph_pattern) end end if base.reduced then insert_ann("reduced", "reduced") if vform ~= "none" then insert_cat("form-" .. vform .. " reduced verbs") end end if base.quadlit then insert_cat("verbs with quadriliteral roots") end if base.passive_defaulted then insert_cat("verbs with defaulted passive") end for _, vowel_spec in ipairs(base.conj_vowels) do local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local weakness = vowel_spec.weakness -- We have to distinguish weakness by form and weakness by conjugation. Weakness by form merely indicates the -- presence of weak letters in certain positions in the radicals. Weakness by conjugation is related to how the -- verbs are conjugated. For example, form-II verbs that are "hollow by form" (middle radical is wāw or yāʾ) are -- conjugated as sound verbs. Another example: form-I verbs with initial wāw are "assimilated by form" and most -- are assimilated by conjugation as well, but a few are sound by conjugation, e.g. wajuha yawjuhu "to be -- distinguished" (rather than wajuha yajuhu); similarly for some hollow-by-form verbs in various forms, e.g. -- form VIII izdawaja yazdawiju "to be in pairs" (rather than izdāja yazdāju). Categories referring to weakness -- always refer to weakness by conjugation; weakness by form is distinguished only by categories such as -- [[:Category:Arabic form-III verbs with و as second radical]]. insert_ann("weakness", weakness) if vform ~= "none" then insert_cat(("%s form-%s verbs"):format(weakness, vform)) end local function radical_is_ambiguous(rad) return type(rad) == "table" and rad.ambig end local function radical_is_unambiguous_weak(rad) return not radical_is_ambiguous(rad) and (is_waw_ya(rad) or req(rad, HAMZA)) end if vform ~= "none" then local ur1, ur2, ur3, ur4 = vowel_spec.unreg_rad1, vowel_spec.unreg_rad2, vowel_spec.unreg_rad3, vowel_spec.unreg_rad4 -- Create headword categories based on the radicals. Do the following before -- converting the Latin radicals into Arabic ones so we distinguish -- between ambiguous and non-ambiguous radicals. if radical_is_ambiguous(ur1) or radical_is_ambiguous(ur2) or radical_is_ambiguous(ur3) or ur4 and radical_is_ambiguous(ur4) then insert_cat("verbs with ambiguous radicals") end if radical_is_unambiguous_weak(ur1) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur1) .. " as first radical") end if radical_is_unambiguous_weak(ur2) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur2) .. " as second radical") end if radical_is_unambiguous_weak(ur3) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur3) .. " as third radical") end if ur4 and radical_is_unambiguous_weak(ur4) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur4) .. " as fourth radical") end end end if vform == "I" and not is_passive_only(base.passive) then for _, vowel_spec in ipairs(base.grouped_conj_vowels) do insert_ann("vowels", ("%s ~ %s"):format(table.concat(vowel_spec.pasts, "/"), table.concat(vowel_spec.nonpasts, "/"))) for _, past in ipairs(vowel_spec.pasts) do for _, nonpast in ipairs(vowel_spec.nonpasts) do if past == "-" or nonpast == "-" then error("Internal error: Saw form I past vowel %s and non-past vowel %s but - in place of vowel should have triggered an error earlier") end insert_cat(("form-I verbs with past vowel %s and non-past vowel %s"):format(past, nonpast)) --W: Add morphological pattern for form I based on vowels local form_i_with_vowels = ("I/%s~%s"):format(past, nonpast) local morph_pattern = FORM_TO_MORPHOLOGICAL_PATTERN[form_i_with_vowels] if morph_pattern then insert_ann("morph_pattern", morph_pattern) end end end end end for slot, name in pairs(slots_that_may_be_uncertain) do if base.slot_uncertain[slot] then -- An unspecified and non-defaulted verbal noun (form I) is considered uncertain rather than explicitly -- missing. Use <vn:-> to explicitly indicate the lack of verbal noun. Same for form-I stative active -- participles. insert_cat(("verbs with unknown or uncertain %ss"):format(name)) end end if base.irregular then insert_ann("irreg", "irregular") insert_cat("irregular verbs") end end -- Compute the categories to add the verb to, as well as the annotation to display in the conjugation title bar. We -- combine the code to do these functions as both categories and title bar contain similar information. local function compute_categories_and_annotation(alternant_multiword_spec) alternant_multiword_spec.categories = {} local ann = {} alternant_multiword_spec.annotation = ann ann.form = {} ann.morph_pattern = {} --W: arabic morphological pattern corresponding to the form ann.weakness = {} ann.vowels = {} ann.passive = nil ann.reduced = {} ann.irreg = {} ann.defective = {} local multiword_lemma = false for _, slot in ipairs(export.potential_lemma_slots) do if alternant_multiword_spec.forms[slot] then for _, formobj in ipairs(alternant_multiword_spec.forms[slot]) do if formobj.form:find(" ") then multiword_lemma = true break end end break end end local function insert_ann(anntype, value) m_table.insertIfNot(alternant_multiword_spec.annotation[anntype], value) end local function insert_cat(cat, also_when_multiword) -- Don't place multiword terms in categories like 'Arabic form-II verbs' to avoid spamming the categories with -- such terms. if also_when_multiword or not multiword_lemma then m_table.insertIfNot(alternant_multiword_spec.categories, "Arabic " .. cat) end end iut.map_word_specs(alternant_multiword_spec, function(base) add_categories_and_annotation(alternant_multiword_spec, base, multiword_lemma, insert_ann, insert_cat) end) for slot, name in pairs(slots_that_may_be_uncertain) do if alternant_multiword_spec.forms[slot] then for _, form in ipairs(alternant_multiword_spec.forms[slot]) do if form.uncertain then if form.form == "?" then insert_cat(("verbs with explicitly unknown %ss"):format(name)) else insert_cat(("verbs needing %s checked"):format(name)) end break end end end end if alternant_multiword_spec.has_active then if alternant_multiword_spec.has_passive and alternant_multiword_spec.has_non_impers_passive then insert_cat("verbs with full passive") ann.passive = "full passive" elseif alternant_multiword_spec.has_passive then insert_cat("verbs with impersonal passive") ann.passive = "impersonal passive" else insert_cat("verbs lacking passive forms") ann.passive = "no passive" end else if alternant_multiword_spec.has_non_impers_passive then insert_cat("passive verbs") insert_cat("verbs with full passive") ann.passive = "passive-only" else insert_cat("passive verbs") insert_cat("impersonal verbs") insert_cat("verbs with impersonal passive") ann.passive = "impersonal (passive-only)" end end if alternant_multiword_spec.passive_uncertain then insert_cat("verbs needing passive checked") ann.passive = ann.passive .. ' <abbr title="passive status uncertain">(?)</abbr>' end if alternant_multiword_spec.has_active and not alternant_multiword_spec.has_imp then insert_ann("defective", "no imperative") insert_cat("verbs lacking imperative forms") end if not alternant_multiword_spec.has_past then insert_ann("defective", "no past") insert_cat("verbs lacking past forms") end if not alternant_multiword_spec.has_nonpast then insert_ann("defective", "no non-past") insert_cat("verbs lacking non-past forms") end local ann_parts = {} local function insert_ann_part(part, conj) local val = table.concat(ann[part], conj or " or ") if val ~= "" and val ~= "regular" then table.insert(ann_parts, val) end end insert_ann_part("form") insert_ann_part("weakness") insert_ann_part("reduced") insert_ann_part("vowels") if ann.passive then table.insert(ann_parts, ann.passive) end insert_ann_part("irreg") insert_ann_part("defective", "، ") --W: Save morph_pattern before overwriting annotation with string alternant_multiword_spec.morph_pattern = ann.morph_pattern alternant_multiword_spec.annotation = table.concat(ann_parts, "، ") end local function show_forms(alternant_multiword_spec) local lemmas = {} for _, slot in ipairs(export.potential_lemma_slots) do if alternant_multiword_spec.forms[slot] then for _, formobj in ipairs(alternant_multiword_spec.forms[slot]) do table.insert(lemmas, formobj) end break end end alternant_multiword_spec.lemmas = lemmas -- save for later use in make_table() alternant_multiword_spec.vn = alternant_multiword_spec.forms.vn -- save for later use in make_table() -- Reconstruct the original verb spec without overrides for verbal nouns and participles, since those specific slots -- are ignored by {{ar-verb form}}. Compute this once beforehand; `transform_accel_obj` is called repeatedly on each -- form and we don't want to compute this repeatedly. local reconstructed_verb_spec = iut.reconstruct_original_spec(alternant_multiword_spec, { preprocess_angle_bracket_spec = function(spec) spec = spec:match("^<(.*)>$") assert(spec) local segments = put.parse_multi_delimiter_balanced_segment_run(spec, {{"[", "]"}, {"<", ">"}}) local dot_separated_groups = put.split_alternating_runs_and_strip_spaces(segments, "%.") -- Rejoin each dot-separated group into a single string, since we aren't actually going to do any parsing -- of bracket-bounded textual runs; then filter out overrides for verbal nouns and participles. local filtered_indicators = {} for _, dot_separated_group in ipairs(dot_separated_groups) do local indicator = table.concat(dot_separated_group) -- FIXME: Do we want to filter out any other indicators? if not (indicator:find("^vn:") or indicator:find("^[ap]p:")) then table.insert(filtered_indicators, indicator) end end return ("<%s>"):format(table.concat(filtered_indicators, ".")) end, }) -- If we're dealing with a single word, no alternants and a single verb form, use the auto-conjugation-fetching -- variant. local reconstructed_lemma, inside = reconstructed_verb_spec:match("^([^ <>()]+)(%b<>)$") if inside and alternant_multiword_spec.verb_forms[1] and not alternant_multiword_spec.verb_forms[2] then reconstructed_verb_spec = ("+%s<%s>"):format(reconstructed_lemma, alternant_multiword_spec.verb_forms[1]) end local function transform_accel_obj(slot, formobj, accel_obj) if not accel_obj then return accel_obj end if slot == "ap" or slot == "pp" or slot == "vn" then -- FIXME: [[Module:accel]] can't correctly handle more than one verb form for participles and verbal nouns accel_obj.form = slot .. "-" .. table.concat(alternant_multiword_spec.verb_forms, "،") else accel_obj.form = "verb-form-" .. reconstructed_verb_spec end return accel_obj end local function generate_link(data) local form = data.form local term = form.formval_for_link local alt = form.alt if term == "?" then term = nil alt = "?" end --W: Create simple link for verb forms without #Arabic anchor local display = alt or term local link if display then link = link_term_simple(display) else link = "" end link = link .. iut.get_footnote_text(form.footnotes, data.footnote_obj) --W: qualifier/label rendering removed along with the q/qq/l/ll modifiers; -- it required [[Module:pron qualifier]], absent on ar.wiktionary. return link end local props = { lang = lang, lemmas = lemmas, transform_accel_obj = transform_accel_obj, generate_link = generate_link, slot_list = alternant_multiword_spec.verb_slots, include_translit = false, } iut.show_forms(alternant_multiword_spec.forms, props) end --W: Tatweel and the invisible direction/joining marks survive copy-paste and -- MediaWiki keeps them in page titles, so strip them from both sides before -- comparing a |بؤرة= value against a generated form. local FOCUS_IGNORE = "[" .. u(0x0640) .. u(0x061C) .. u(0x200B) .. "-" .. u(0x200F) .. u(0x202A) .. "-" .. u(0x202E) .. u(0xFEFF) .. "]" local function normalize_for_focus(s) return (rsub(s, FOCUS_IGNORE, "")) end --W: Which slots hold `focus`? Must run before show_forms() turns the form -- lists into rendered wikitext. local function find_focus_slots(alternant_multiword_spec, focus) if not focus or focus == "" then return nil end local target = normalize_for_focus(focus) local slots = {} for slot, forms in pairs(alternant_multiword_spec.forms) do if type(forms) == "table" then for _, formobj in ipairs(forms) do if type(formobj) == "table" and formobj.form and normalize_for_focus(formobj.form) == target then slots[slot] = true break end end end end return slots end --W: 'yes' unless |موسع= asked for the table open. [[Template:inflection-table-top]] -- turns any non-empty |tall= into the mw-collapsed class. local function collapsed_arg(alternant_multiword_spec) if alternant_multiword_spec.expanded then return nil end return 'yes' end --W: Wrap those slots' rendered wikitext so the stylesheet can mark them. -- Styled by [[Template:ar-verb-form/style.css]] (.ar-conj .avf-focus). local function apply_focus(alternant_multiword_spec, focus_slots) if not focus_slots then return end for slot in pairs(focus_slots) do local rendered = alternant_multiword_spec.forms[slot] if type(rendered) == "string" and rendered ~= "" then alternant_multiword_spec.forms[slot] = '<span class="avf-focus">' .. rendered .. "</span>" end end end ------------------------------------------------------------------------------- -- Functions to create inflection tables -- ------------------------------------------------------------------------------- -- Make the conjugation table. Called from export.show(). local function make_table(alternant_multiword_spec) local text = mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-top', args = { title = 'تصريف {title}', --W: |tall= is what puts mw-collapsed on the wrapper. |موسع= drops it. -- (Not `expanded and nil or 'yes'` — in Lua that is always 'yes'.) tall = collapsed_arg(alternant_multiword_spec), palette = 'green', category = 'conjugation', class = 'tr-alongside', -- temp hack to prevent extra line break } } text = text .. [=[ ! colspan="6" | <<الْمَصْدَر>> | colspan="7" | {vn} ]=] if alternant_multiword_spec.has_active then text = text .. [=[ |- ! colspan="6" | <<اِسْم الْفَاعِل>> | colspan="7" | {ap} ]=] end if alternant_multiword_spec.has_passive then text = text .. [=[ |- ! colspan="6" | <<اِسْم الْمَفْعُول>> | colspan="7" | {pp} ]=] end text = text .. [=[ |- ! colspan="999" class="separator" | ]=] if alternant_multiword_spec.has_active then text = text .. [=[ |- ! colspan="12" class="outer" | <<الْفِعْل الْمَعْلُوم>> |- ! colspan="2" | ! colspan="3" | <<الْمُفْرَد>> ! rowspan="12" class="separator" | ! colspan="2" | <<الْمُثَنَّى>> ! rowspan="12" class="separator" | ! colspan="3"| <<الْجَمْع>> |- ! colspan="2"| ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> |- ! rowspan="2" | <<الْمَاضِي>> ! class="secondary" | المذكر | rowspan="2" | {past_1s} | {past_2ms} | {past_3ms} | rowspan="2" | {past_2d} | {past_3md} | rowspan="2" | {past_1p} | {past_2mp} | {past_3mp} |- ! class="secondary" | المؤنث | {past_2fs} | {past_3fs} | {past_3fd} | {past_2fp} | {past_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَرْفُوع>> ! class="secondary" | المذكر | rowspan="2" | {ind_1s} | {ind_2ms} | {ind_3ms} | rowspan="2" | {ind_2d} | {ind_3md} | rowspan="2" | {ind_1p} | {ind_2mp} | {ind_3mp} |- ! class="secondary" | المؤنث | {ind_2fs} | {ind_3fs} | {ind_3fd} | {ind_2fp} | {ind_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَنْصُوب>> ! class="secondary" | المذكر | rowspan="2" | {sub_1s} | {sub_2ms} | {sub_3ms} | rowspan="2" | {sub_2d} | {sub_3md} | rowspan="2" | {sub_1p} | {sub_2mp} | {sub_3mp} |- ! class="secondary" | المؤنث | {sub_2fs} | {sub_3fs} | {sub_3fd} | {sub_2fp} | {sub_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَجْزُوم>> ! class="secondary" | المذكر | rowspan="2" | {juss_1s} | {juss_2ms} | {juss_3ms} | rowspan="2" | {juss_2d} | {juss_3md} | rowspan="2" | {juss_1p} | {juss_2mp} | {juss_3mp} |- ! class="secondary" | المؤنث | {juss_2fs} | {juss_3fs} | {juss_3fd} | {juss_2fp} | {juss_3fp} |- ! rowspan="2" | <<الْأَمْر>> ! class="secondary" | المذكر | rowspan="2" | | {imp_2ms} | rowspan="2" | | rowspan="2" | {imp_2d} | rowspan="2" | | rowspan="2" | | {imp_2mp} | rowspan="2" | |- ! class="secondary" | المؤنث | {imp_2fs} | {imp_2fp} ]=] end if alternant_multiword_spec.has_passive then text = text .. [=[ |- ! colspan="999" class="separator" | |- ! colspan="12" class="outer" | <<الْفِعْل الْمَجْهُول>> |- ! colspan="2" | ! colspan="3" | <<الْمُفْرَد>> ! rowspan="10" class="separator" | ! colspan="2" | <<الْمُثَنَّى>> ! rowspan="10" class="separator" | ! colspan="3" | <<الْجَمْع>> |- ! colspan="2" | ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> |- ! rowspan="2" | <<الْمَاضِي>> ! class="secondary" | المذكر | rowspan="2" | {past_pass_1s} | {past_pass_2ms} | {past_pass_3ms} | rowspan="2" | {past_pass_2d} | {past_pass_3md} | rowspan="2" | {past_pass_1p} | {past_pass_2mp} | {past_pass_3mp} |- ! class="secondary" | المؤنث | {past_pass_2fs} | {past_pass_3fs} | {past_pass_3fd} | {past_pass_2fp} | {past_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَرْفُوع>> ! class="secondary" | المذكر | rowspan="2" | {ind_pass_1s} | {ind_pass_2ms} | {ind_pass_3ms} | rowspan="2" | {ind_pass_2d} | {ind_pass_3md} | rowspan="2" | {ind_pass_1p} | {ind_pass_2mp} | {ind_pass_3mp} |- ! class="secondary" | المؤنث | {ind_pass_2fs} | {ind_pass_3fs} | {ind_pass_3fd} | {ind_pass_2fp} | {ind_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَنْصُوب>> ! class="secondary" | المذكر | rowspan="2" | {sub_pass_1s} | {sub_pass_2ms} | {sub_pass_3ms} | rowspan="2" | {sub_pass_2d} | {sub_pass_3md} | rowspan="2" | {sub_pass_1p} | {sub_pass_2mp} | {sub_pass_3mp} |- ! class="secondary" | المؤنث | {sub_pass_2fs} | {sub_pass_3fs} | {sub_pass_3fd} | {sub_pass_2fp} | {sub_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَجْزُوم>> ! class="secondary" | المذكر | rowspan="2" | {juss_pass_1s} | {juss_pass_2ms} | {juss_pass_3ms} | rowspan="2" | {juss_pass_2d} | {juss_pass_3md} | rowspan="2" | {juss_pass_1p} | {juss_pass_2mp} | {juss_pass_3mp} |- ! class="secondary" | المؤنث | {juss_pass_2fs} | {juss_pass_3fs} | {juss_pass_3fd} | {juss_pass_2fp} | {juss_pass_3fp} ]=] end text = text .. mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-bottom', args = { notes = '{footnote}', } } local forms = alternant_multiword_spec.forms if not alternant_multiword_spec.lemmas then forms.title = "—" else local linked_lemmas = {} for _, form in ipairs(alternant_multiword_spec.lemmas) do --W: Create simple link for lemmas without #Arabic anchor -- table.insert(linked_lemmas, link_term(form.form, "term")) table.insert(linked_lemmas, link_term_simple(form.form)) end forms.title = table.concat(linked_lemmas, "، ") end local ann_parts = {} if alternant_multiword_spec.annotation ~= "" then table.insert(ann_parts, alternant_multiword_spec.annotation) end if alternant_multiword_spec.vn then local linked_vns = {} for _, form in ipairs(alternant_multiword_spec.vn) do table.insert(linked_vns, link_term(form.form, "term")) end table.insert(ann_parts, (#linked_vns > 1 and "verbal nouns" or "verbal noun") .. " " .. table.concat(linked_vns, "، ")) end local annotation = table.concat(ann_parts, "، ") --W: use only arabic morphological pattern in title annotation local morph_patterns = alternant_multiword_spec.morph_pattern if morph_patterns and #morph_patterns > 0 then annotation = table.concat(morph_patterns, "، ") forms.title = forms.title .. " (" .. annotation .. ")" end -- Format the table. local tagged_table = rsub(text, "<<(.-)>>", tag_text) return m_string_utilities.format(tagged_table, forms) end -- Helper function to get root letters and verb classification for simplified table header -- Returns: root_display (e.g., "ح س ب"), verb_type (e.g., "فعل ثلاثي صحيح سالم") local function get_verb_info(alternant_multiword_spec) local root_display = "" local verb_type = "فعل" local rad1, rad2, rad3, rad4 -- Extract radicals from the base word spec using iut.map_word_specs -- This accesses the radicals directly from the parsed verb specification iut.map_word_specs(alternant_multiword_spec, function(base) -- Get radicals from the first conjugation vowel spec if base.conj_vowels and #base.conj_vowels > 0 then local vowel_spec = base.conj_vowels[1] -- Extract radicals, handling both table and string types local function extract_radical(rad) if type(rad) == "table" then -- If it's a table, get the first element or the string representation return rad[1] or rget(rad) else return rad end end rad1 = extract_radical(vowel_spec.rad1) rad2 = extract_radical(vowel_spec.rad2) rad3 = extract_radical(vowel_spec.rad3) rad4 = vowel_spec.rad4 and extract_radical(vowel_spec.rad4) end end) -- Get basic/derived classification from morphological pattern local basic_deriv if alternant_multiword_spec.morph_pattern and #alternant_multiword_spec.morph_pattern > 0 then local morph_pattern = alternant_multiword_spec.morph_pattern[1] basic_deriv = MORPHOLOGICAL_PATTERN_TO_BASIC_DERIV[morph_pattern] end -- Format root display with spaces between letters if rad1 and rad2 and rad3 then if rad4 then -- Quadrilateral root_display = rad1 .. " " .. rad2 .. " " .. rad3 .. " " .. rad4 verb_type = "فعل رباعي" if basic_deriv then verb_type = verb_type .. " " .. basic_deriv end else -- triliteral root_display = rad1 .. " " .. rad2 .. " " .. rad3 verb_type = "فعل ثلاثي" if basic_deriv then verb_type = verb_type .. " " .. basic_deriv if basic_deriv == "مُجرَّد" then --W: the classification concerns only triliteral basic verbs (الثلاثي المُجرَّد) local classification = export.classify_triliteral_verb(rad1, rad2, rad3) verb_type = verb_type .. " " .. classification end end end end return root_display, verb_type end -- Make simplified conjugation table for ar.wiktionary. Called from export.show(). -- This table shows only past, present indicative, and imperative forms. -- No passive voice, no participles, no verbal nouns. local function make_table_ar(alternant_multiword_spec) local text = mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-top', args = { title = 'تصريف {title}', --W: |tall= is what puts mw-collapsed on the wrapper. |موسع= drops it. -- (Not `expanded and nil or 'yes'` — in Lua that is always 'yes'.) tall = collapsed_arg(alternant_multiword_spec), palette = 'green', category = 'conjugation', class = 'tr-alongside', -- temp hack to prevent extra line break } } -- Get verb root and classification local root_display, verb_type = get_verb_info(alternant_multiword_spec) -- First row: Root and verb type spanning all columns text = text .. "! colspan=\"2\" | <<الجذر>>: " .. root_display .. "\n" text = text .. "| colspan=\"3\" | <<'''" .. verb_type .. "'''>>\n" text = text .. [=[ |- ! colspan="2" | <<الضمائر>> ! <<الماضي>> ! <<المضارع>> ! <<الأمر>> |- ! rowspan="2" | <<المتكلّم>> | <<أنا>> | {past_1s} | {ind_1s} | |- | <<نحن>> | {past_1p} | {ind_1p} | |- ! rowspan="5" | <<المخاطب>> | <<أنتَ>> | {past_2ms} | {ind_2ms} | {imp_2ms} |- | <<أنتِ>> | {past_2fs} | {ind_2fs} | {imp_2fs} |- | <<أنتما>> | {past_2d} | {ind_2d} | {imp_2d} |- | <<أنتم>> | {past_2mp} | {ind_2mp} | {imp_2mp} |- | <<أنتنّ>> | {past_2fp} | {ind_2fp} | {imp_2fp} |- ! rowspan="6" | <<الغائب>> | <<هو>> | {past_3ms} | {ind_3ms} | |- | <<هي>> | {past_3fs} | {ind_3fs} | |- | <<هما>> | {past_3md} | {ind_3md} | |- | <<هما>> | {past_3fd} | {ind_3fd} | |- | <<هم>> | {past_3mp} | {ind_3mp} | |- | <<هنّ>> | {past_3fp} | {ind_3fp} | ]=] text = text .. mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-bottom', args = { notes = '{footnote}', } } local forms = alternant_multiword_spec.forms if not alternant_multiword_spec.lemmas then forms.title = "—" else local linked_lemmas = {} for _, form in ipairs(alternant_multiword_spec.lemmas) do --W: Create simple link for lemmas without #Arabic anchor -- table.insert(linked_lemmas, link_term(form.form, "term")) table.insert(linked_lemmas, link_term_simple(form.form)) end forms.title = table.concat(linked_lemmas, "، ") end local ann_parts = {} if alternant_multiword_spec.annotation ~= "" then table.insert(ann_parts, alternant_multiword_spec.annotation) end local annotation = table.concat(ann_parts, "، ") --W: use only arabic morphological pattern in title annotation local morph_patterns = alternant_multiword_spec.morph_pattern if morph_patterns and #morph_patterns > 0 then annotation = table.concat(morph_patterns, "، ") forms.title = forms.title .. " (" .. annotation .. ")" end -- Format the table. local tagged_table = rsub(text, "<<(.-)>>", tag_text) return m_string_utilities.format(tagged_table, forms) end ------------------------------------------------------------------------------- -- Verb classification functions -- ------------------------------------------------------------------------------- --[=[ تصنيف الفعل الثلاثي المُجرَّد حسب نوعه Classify an Arabic triliteral basic verb root based on its three letters. @param r1 الحرف الأول (first root letter - الفاء) @param r2 الحرف الثاني (second root letter - العين) @param r3 الحرف الثالث (third root letter - اللام) @return str: نوع الفعل (verb type classification in Arabic) Examples: classify_triliteral_verb('ك', 'ت', 'ب') --> 'صحيح سالم' classify_triliteral_verb('أ', 'ت', 'ي') --> 'معتل ناقص يائي مهموز الفاء' classify_triliteral_verb('ق', 'ل', 'و') --> 'معتل ناقص واوي' ]=] function export.classify_triliteral_verb(r1, r2, r3) -- تعريف أحرف العلة والهمزة -- الحروف الضعيفة (أحرف العلة): واو وياء فقط local weak_letters = {[W] = true, [Y] = true} -- الهمزة: جميع أشكال الهمزة (ء، أ، إ، ؤ، ئ) local hamza_letters = { [HAMZA] = true, -- ء [HAMZA_ON_ALIF] = true, -- أ [HAMZA_UNDER_ALIF] = true, -- إ [HAMZA_ON_W] = true, -- ؤ [HAMZA_ON_Y] = true -- ئ } -- فحص كل حرف local is_hamza = {hamza_letters[r1] or false, hamza_letters[r2] or false, hamza_letters[r3] or false} local is_weak = {weak_letters[r1] or false, weak_letters[r2] or false, weak_letters[r3] or false} -- عدد أحرف العلة local weak_count = (is_weak[1] and 1 or 0) + (is_weak[2] and 1 or 0) + (is_weak[3] and 1 or 0) -- فحص التضعيف (الحرف الثاني = الثالث) local is_doubled = (r2 == r3) -- ═══════════════════════════════════════════════════════════ -- المُعتل: الفعل الذي يحتوي على حرف أو أكثر من أحرف العلة -- ═══════════════════════════════════════════════════════════ if weak_count > 0 then -- ───────────────────────────────────────────────────── -- لفيف: يحتوي على حرفين أو أكثر من أحرف العلة -- ───────────────────────────────────────────────────── if weak_count >= 2 then -- مقرون: حرفا العلة متجاوران if is_weak[2] and is_weak[3] then -- الثاني والثالث if is_hamza[1] then return "معتل لفيف مقرون مهموز الفاء" end return "معتل لفيف مقرون" elseif is_weak[1] and is_weak[2] then -- الأول والثاني return "معتل لفيف مقرون" -- مفروق: الأول والثالث حرفا علة elseif is_weak[1] and is_weak[3] then if is_hamza[2] then return "معتل لفيف مفروق مهموز العين" end return "معتل لفيف مفروق" end -- ───────────────────────────────────────────────────── -- مثال: الحرف الأول حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[1] then if r1 == W then -- واوي if is_hamza[3] then return "معتل مثال واوي مهموز اللام" elseif is_doubled then return "معتل مثال واوي مُضعَّف" elseif is_hamza[2] then return "معتل مثال واوي مهموز العين" end return "معتل مثال واوي" else -- يائي (ي) if is_doubled then return "معتل مثال يائي مُضعَّف" elseif is_hamza[2] then return "معتل مثال يائي مهموز العين" end return "معتل مثال يائي" end -- ───────────────────────────────────────────────────── -- أجوف: الحرف الثاني حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[2] then if r2 == W then -- واوي if is_hamza[3] then return "معتل أجوف واوي مهموز اللام" elseif is_hamza[1] then return "معتل أجوف واوي مهموز الفاء" end return "معتل أجوف واوي" else -- يائي (ي) if is_hamza[3] then return "معتل أجوف يائي مهموز اللام" elseif is_hamza[1] then return "معتل أجوف يائي مهموز الفاء" end return "معتل أجوف يائي" end -- ───────────────────────────────────────────────────── -- ناقص: الحرف الثالث حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[3] then if r3 == W then -- واوي if is_hamza[1] then return "معتل ناقص واوي مهموز الفاء" elseif is_hamza[2] then return "معتل ناقص واوي مهموز العين" end return "معتل ناقص واوي" else -- يائي (ي) if is_hamza[1] then return "معتل ناقص يائي مهموز الفاء" elseif is_hamza[2] then return "معتل ناقص يائي مهموز العين" end return "معتل ناقص يائي" end end -- ═══════════════════════════════════════════════════════════ -- الصحيح: الفعل الذي لا يحتوي على أحرف العلة -- ═══════════════════════════════════════════════════════════ else -- ───────────────────────────────────────────────────── -- مهموز: يحتوي على همزة -- ───────────────────────────────────────────────────── if is_hamza[1] or is_hamza[2] or is_hamza[3] then -- مهموز الفاء واللام: الأول والثالث همزة if is_hamza[1] and is_hamza[3] then return "صحيح مهموز الفاء واللام" -- مهموز الفاء elseif is_hamza[1] then if is_doubled then return "صحيح مُضعَّف مهموز الفاء" end return "صحيح مهموز الفاء" -- مهموز العين elseif is_hamza[2] then return "صحيح مهموز العين" -- مهموز اللام elseif is_hamza[3] then return "صحيح مهموز اللام" end -- ───────────────────────────────────────────────────── -- مُضعَّف: الحرف الثاني = الثالث -- ───────────────────────────────────────────────────── elseif is_doubled then return "صحيح مُضعَّف" -- ───────────────────────────────────────────────────── -- سالم: لا همزة، لا حرف علة، لا تضعيف -- ───────────────────────────────────────────────────── else return "صحيح سالم" end end return "غير معروف" end ------------------------------------------------------------------------------- -- External entry points -- ------------------------------------------------------------------------------- --W: Normalize root to use underscores as separators -- Accepts: "كتب", "ك_ت_ب", or "ك ت ب" -- Returns: "ك_ت_ب" local function normalize_root(root) if not root then return nil end -- Helper function to normalize a single character/radical local function normalize_char(char) -- Convert all hamza variants to canonical bare hamza if char == HAMZA_ON_ALIF or char == HAMZA_UNDER_ALIF or char == HAMZA_ON_W or char == HAMZA_ON_Y then return HAMZA -- Convert alif maqṣūra to yaa (ى → ي) elseif char == AMAQ then return Y -- Reject alif - it's not a root radical elseif char == ALIF then error("Root contains alif (ا) which is not a valid root radical. For weak verbs, use و (waw) or ي (yaa) instead.") end return char end -- Convert alif madda to hamza + alif for processing (will be caught as error below) root = root:gsub(AMAD, HAMZA .. ALIF) -- Replace spaces with underscores root = root:gsub(" ", "_") -- If no underscores yet, insert them between each character if not root:find("_") then -- Extract only Arabic letters (excluding diacritics) -- Arabic letter range: U+0621 to U+064A (basic letters) local chars = {} for char in mw.ustring.gmatch(root, "[ء-ي]") do table.insert(chars, normalize_char(char)) end root = table.concat(chars, "_") else -- Root already has underscores (e.g., "أ_م_ن"), normalize each radical local parts = mw.text.split(root, "_") for i, part in ipairs(parts) do parts[i] = normalize_char(part) end root = table.concat(parts, "_") end return root end --W: Construct the [1] parameter from root (جذر) and morphological pattern (وزن) -- Example: -- input: root="كتب", pattern="فعَل يفعُل" -- output: "ك_ت_ب<I/a~u>" local function construct_verb_spec(root, pattern) if not root or not pattern then return nil end local normalized_root = normalize_root(root) local form_code = MORPHOLOGICAL_PATTERN_TO_FORM[pattern] if not form_code then error("Unknown morphological pattern (وزن صرفي): " .. pattern) end return normalized_root .. "<" .. form_code .. ">" end -- Wrapper function that accepts جذر (root) and وزن (pattern) as parameters -- Returns: verb_type (e.g., "فعل ثلاثي مُجرَّد صحيح سالم") -- Example: export.get_verb_type({["جذر"] = "كتب", ["وزن"] = "فعَل يفعُل"}) function export.get_verb_type(args) local verb_spec if args["جذر"] and args["وزن"] then verb_spec = construct_verb_spec(args["جذر"], args["وزن"]) elseif args[1] then verb_spec = args[1] else error("Must provide either جذر and وزن, or a verb specification in args[1]") end local alternant_multiword_spec = export.do_generate_forms({[1] = verb_spec}) local _, verb_type = get_verb_info(alternant_multiword_spec) return verb_type end -- Append two lists `l1` and `l2`, removing duplicates. If either is {nil}, just return the other. local function combine_lists(l1, l2) -- combine_footnotes() does exactly what we want. return iut.combine_footnotes(l1, l2) end local function combine_metadata(data) local src1 = data.form1 local src2 = data.form2 local dest = data.dest_form dest.uncertain = src1.uncertain or src2.uncertain if src1.genders and src2.genders and not m_table.deepEquals(src1.genders, src2.genders) then -- do nothing else dest.genders = src1.genders or src2.genders end if src1.pos and src2.pos and src1.pos ~= src2.pos then -- do nothing else dest.pos = src1.pos or src2.pos end -- Don't copy .alt, .gloss, .lit, .id, which describe a single term and don't extend to multiword terms. dest.q = combine_lists(src1.q, src2.q) dest.qq = combine_lists(src1.qq, src2.qq) dest.l = combine_lists(src1.l, src2.l) dest.ll = combine_lists(src1.ll, src2.ll) end -- Externally callable function to parse and conjugate a verb given user-specified arguments. -- Return value is WORD_SPEC, an object where the conjugated forms are in `WORD_SPEC.forms` -- for each slot. If there are no values for a slot, the slot key will be missing. The value -- for a given slot is a list of objects {form=FORM, footnotes=FOOTNOTES}. function export.do_generate_forms(args, source_template, headword_head) local PAGENAME = mw.loadData("Module:headword/data").pagename local function in_template_space() local nsText = mw.title.getCurrentTitle().nsText return nsText == "Template" or nsText == "قالب" end -- Determine the verb spec we're being asked to generate the conjugation of. This may be taken from the current page -- title or the value of |pagename=; but not when called from {{ar-verb form}}, where the page title is a -- non-lemma form. Note that the verb spec may omit the lemma; e.g. it may be "<II>". For this reason, we use the -- value of `pagename` computed here down below, when calling normalize_all_lemmas(). local pagename = source_template ~= "ar-verb form" and args.pagename or PAGENAME local head = headword_head or pagename --W: If both root (جذر) and morphological pattern (وزن) are provided, construct [1] if args["جذر"] and args["جذر"] ~= "" and args["وزن"] and args["وزن"] ~= "" then local constructed = construct_verb_spec(args["جذر"], args["وزن"]) if constructed and constructed ~= "" then args[1] = constructed end end local arg1 = args[1] if not arg1 then if (pagename == "ar-conj" or pagename == "ar-verb" or pagename == "ar-verb form" or pagename == "تصريف") and in_template_space() then arg1 = "كتب<I/a~u.pass>" else arg1 = "<>" end end -- When called from {{ar-verb form}}, determine the non-lemma form whose inflections we're being asked to -- determine. This normally comes from the page title or the value of |pagename=. local verb_form_of_form if source_template == "ar-verb form" then verb_form_of_form = args.pagename if not verb_form_of_form then if PAGENAME == "ar-verb form" and in_template_space() then verb_form_of_form = "كتبت" else verb_form_of_form = PAGENAME end end end local incorporated_headword_head_into_lemma = false if arg1:find("^<.*>$") then -- missing lemma if head:find(" ") then -- If multiword lemma, try to add arg spec after the first word. -- Try to preserve the brackets in the part after the verb, but don't do it -- if there aren't the same number of left and right brackets in the verb -- (which means the verb was linked as part of a larger expression). local first_word, post = rmatch(head, "^(.-)( .*)$") local left_brackets = rsub(first_word, "[^%[]", "") local right_brackets = rsub(first_word, "[^%]]", "") if #left_brackets == #right_brackets then arg1 = iut.remove_redundant_links(first_word) .. arg1 .. post incorporated_headword_head_into_lemma = true else -- Try again using the form without links. local linkless_head = m_links.remove_links(head) if linkless_head:find(" ") then first_word, post = rmatch(linkless_head, "^(.-)( .*)$") arg1 = first_word .. arg1 .. post else error("Unable to incorporate <...> spec into explicit head due to a multiword linked verb or " .. "unbalanced brackets; please include <> explicitly: " .. arg1) end end else -- Will be incorporated through `head` below in the call to normalize_all_lemmas(). incorporated_headword_head_into_lemma = true end end local parse_props = { parse_indicator_spec = parse_indicator_spec, angle_brackets_omittable = true, allow_blank_lemma = true, } local alternant_multiword_spec = iut.parse_inflected_text(arg1, parse_props) alternant_multiword_spec.pos = pos or "verbs" alternant_multiword_spec.args = args alternant_multiword_spec.source_template = source_template alternant_multiword_spec.verb_form_of_form = verb_form_of_form alternant_multiword_spec.incorporated_headword_head_into_lemma = incorporated_headword_head_into_lemma normalize_all_lemmas(alternant_multiword_spec, head) detect_all_indicator_specs(alternant_multiword_spec) local inflect_props = { lang = lang, slot_list = alternant_multiword_spec.verb_slots, inflect_word_spec = conjugate_verb, combine_metadata = combine_metadata, -- We add links around the generated verbal forms rather than allow the entire multiword -- expression to be a link, so ensure that user-specified links get included as well. include_user_specified_links = true, } iut.inflect_multiword_or_alternant_multiword_spec(alternant_multiword_spec, inflect_props) if debug_translit then for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do if form.translit then local full_form_translit = (lang:transliterate(m_links.remove_links(form.form))) if full_form_translit ~= form.translit then error(("Internal error: For slot '%s', form '%s' incremental translit '%s' not same as full translit '%s'"): format(slot, form.form, form.translit, full_form_translit)) end end form.form = iut.remove_redundant_links(form.form) end end end -- Remove redundant brackets around entire forms. for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do form.form = iut.remove_redundant_links(form.form) end end -- Apply NFC-style normalization: reorder shadda+vowel to vowel+shadda -- to match MediaWiki's automatic NFC normalization (which is applied on enwiktionary -- but not in local Lua environments). This reverses the postprocessing step. for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do form.form = apply_nfc_shadda(form.form) end end determine_slot_uncertainty_from_forms(alternant_multiword_spec) determine_verb_properties_from_forms(alternant_multiword_spec) compute_categories_and_annotation(alternant_multiword_spec) if args.json and source_template == "ar-conj" then -- There is a circular reference in `base.alternant_multiword_spec`, which points back to top level. iut.map_word_specs(alternant_multiword_spec, function(base) base.alternant_multiword_spec = nil end) return require("Module:JSON").toJSON(alternant_multiword_spec) end return alternant_multiword_spec end -- Entry point for {{ar-conj}}. Template-callable function to parse and conjugate a verb given -- user-specified arguments and generate a displayable table of the conjugated forms. function export.show(frame) local parent_args = frame:getParent() and frame:getParent().args or frame.args --W local params = { [1] = {}, ["noautolinktext"] = {type = "boolean"}, ["noautolinkverb"] = {type = "boolean"}, ["t"] = {}, -- for use by {{ar-verb form}}; otherwise ignored ["id"] = {}, -- for use by {{ar-verb form}}; otherwise ignored ["pagename"] = {}, -- for testing/documentation pages ["json"] = {type = "boolean"}, -- for bot use --W: additional parameters for ar.wiktionary.org ["جذر"] = {type = "string"}, --W: الجذر اللغوي, root ["وزن"] = {type = "string"}, --W: الوزن الصرفي, morphological pattern ["كامل"] = {type = "boolean"}, --W: show full table (default is simplified table) ["بؤرة"] = {type = "string"}, --W: highlight the cells holding this form ["موسع"] = {type = "boolean"}, --W: show the table expanded (default: collapsed) } local args = require("Module:parameters").process(parent_args, params) --W: If both root (جذر) and morphological pattern (وزن) are provided, construct [1] if args["جذر"] and args["جذر"] ~= "" and args["وزن"] and args["وزن"] ~= "" then local constructed = construct_verb_spec(args["جذر"], args["وزن"]) if constructed and constructed ~= "" then args[1] = constructed end end local alternant_multiword_spec = export.do_generate_forms(args, "ar-conj") if type(alternant_multiword_spec) == "string" then -- JSON return value return alternant_multiword_spec end --W: |بؤرة= marks the cells holding a given form, so that a conjugated-form -- page ([[Module:ar-verb-form]]) can show the reader where in the paradigm -- the word they looked up actually sits. The slots have to be found before -- show_forms(), which replaces each form list with rendered wikitext. local focus_slots = find_focus_slots(alternant_multiword_spec, args["بؤرة"]) --W: A table whose one relevant cell is highlighted is no use folded away, so -- [[Module:ar-verb-form]] asks for it open. Lemma pages keep it collapsed. alternant_multiword_spec.expanded = args["موسع"] or false show_forms(alternant_multiword_spec) apply_focus(alternant_multiword_spec, focus_slots) --W: Choose table type: simplified (default) or full (comprehensive) local table_html if args["كامل"] then table_html = make_table(alternant_multiword_spec) else table_html = make_table_ar(alternant_multiword_spec) end --W: don't add categories --W: TODO: all lines with insert_cat() are to be removed. -- return table_html .. -- require("Module:utilities").format_categories(alternant_multiword_spec.categories, lang, nil, nil, force_cat) return table_html end function export.verb_forms(frame) local parargs = frame:getParent().args local params = { [1] = {}, [2] = {}, [3] = {}, [4] = {}, [5] = {}, pagename = {}, } for _, form in ipairs(allowed_vforms) do -- FIXME: We go up to 5 here. The code supports unlimited variants but it's unlikely we will ever see more than -- 2. for index = 1, 5 do local prefix = index == 1 and form or form .. index params[prefix .. "-pv"] = {} for _, extn in ipairs { "", "-vn", "-ap", "-pp" } do params[prefix .. extn] = {} params[prefix .. extn .. "-head"] = {} -- FIXME: No -tr? params[prefix .. extn .. "-gloss"] = {} end end end local args = require("Module:parameters").process(parargs, params) local i = 1 local past_vowel_re = "^[aui,]*$" local combined_root = nil if not args[i] or rfind(args[i], past_vowel_re) then combined_root = args.pagename or mw.loadData("Module:headword/data").pagename if not rfind(combined_root, "^([^ ]) ([^ ]) ([^ ])$") and not rfind(combined_root, "^([^ ]) ([^ ]) ([^ ]) ([^ ])$") then error("When inferring roots from page title, need three or four space-separated radicals: " .. combined_root) end elseif rfind(args[i], " ") then combined_root = args[i] i = i + 1 else local separate_roots = {} while args[i] and not rfind(args[i], past_vowel_re) do table.insert(separate_roots, args[i]) i = i + 1 end combined_root = table.concat(separate_roots, " ") end local past_vowel = args[i] i = i + 1 if past_vowel and not rfind(past_vowel, past_vowel_re) then error("Unrecognized past vowel, should be 'a', 'i', 'u', 'a,u', etc. or empty: " .. past_vowel) end -- Spaces interfere with parsing as a unit in [[Module:inflection utilities]], so replace with underscore. combined_root = combined_root:gsub(" ", "_") local split_root = rsplit(combined_root, "_") -- Map from verb forms (I, II, etc.) to a table of verb properties, -- which has entries e.g. for "verb" (either true to autogenerate the verb -- head, or an explicitly specified verb head using e.g. argument "I-head"), -- and for "verb-gloss" (which comes from e.g. the argument "I" or "I-gloss"), -- and for "vn" and "vn-gloss", "ap" and "ap-gloss", "pp" and "pp-gloss". local verb_properties = {} for _, form in ipairs(allowed_vforms) do local formpropslist = {} local derivs = {{"verb", ""}, {"vn", "-vn"}, {"ap", "-ap"}, {"pp", "-pp"}} local index = 1 while true do local formprops = {} local prefix = index == 1 and form or form .. index if prefix == "I" then formprops.pv = past_vowel end if args[prefix .. "-pv"] then formprops.pv = args[prefix .. "-pv"] end for _, deriv in ipairs(derivs) do local prop = deriv[1] local extn = deriv[2] if args[prefix .. extn] == "+" then formprops[prop] = true elseif args[prefix .. extn] == "-" then formprops[prop] = false elseif args[prefix .. extn] then formprops[prop] = true formprops[prop .. "-gloss"] = args[prefix .. extn] end if args[prefix .. extn .. "-head"] then if formprops[prop] == nil then formprops[prop] = true end formprops[prop] = args[prefix .. extn .. "-head"] end if args[prefix .. extn .. "-gloss"] then if formprops[prop] == nil then formprops[prop] = true end formprops[prop .. "-gloss"] = args[prefix .. extn .. "-gloss"] end end if formprops.verb then -- If a verb form specified, also turn on vn (unless form I, with -- unpredictable vn) and ap, and maybe pp, according to form, -- weakness and past vowel. But don't turn these on if there's -- an explicit on/off specification for them (e.g. I-pp=-). if form ~= "I" and formprops.vn == nil then formprops.vn = true end if formprops.ap == nil then formprops.ap = true end local weakness = weakness_from_radicals(form, split_root[1], split_root[2], split_root[3], split_root[4]) if formprops.pp == nil and not vform_probably_no_passive(form, weakness, rsplit(formprops.pv or "", ","), {}) then formprops.pp = true end if formprops.verb == true or formprops.vn == true or formprops.ap == true or formprops.pp == true then formprops.need_autogen = true end table.insert(formpropslist, formprops) index = index + 1 else break end end table.insert(verb_properties, {form, formpropslist}) end -- Go through and create the verb form derivations as necessary, when they haven't been explicitly given. for _, vplist in ipairs(verb_properties) do local vform = vplist[1] for _, props in ipairs(vplist[2]) do if props.need_autogen then local form_with_vowels if vform == "I" then local pv = props.pv if not pv then -- Make up likely past vowels based on weakness and actual radical. if split_root[3] == W then -- final-weak form_with_vowels = "I/a~u" elseif split_root[3] == Y then form_with_vowels = "I/a~i" elseif split_root[2] == W then --hollow form_with_vowels = "I/u~u" elseif split_root[2] == Y then form_with_vowels = "I/i~i" else -- most common; doesn't matter so much since we're not displaying the non-past form_with_vowels = "I/a~u" end else local pvs = rsplit(pv, ",") local vowel_sufs = {} for _, pv in ipairs(pvs) do local vowel_spec if pv == "a" then -- Make up likely past vowels based on weakness and actual radical. if split_root[3] == W then -- final-weak vowel_spec = "a~u" elseif split_root[3] == Y then vowel_spec = "a~i" elseif split_root[2] == W then --hollow vowel_spec = "a~u" elseif split_root[2] == Y then vowel_spec = "a~i" else -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "a~u" end elseif pv == "i" then -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "i~a" elseif pv == "u" then -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "u~u" else error(("Internal error: Bad past vowel '%s' in {{ar-verb forms}}"):format(pv)) end table.insert(vowel_sufs, vowel_spec) end form_with_vowels = "I/" .. table.concat(vowel_sufs, "/") end else form_with_vowels = vform end local angle_bracket_spec = ("%s<%s.pass>"):format(combined_root, form_with_vowels) local alternant_multiword_spec = export.do_generate_forms({angle_bracket_spec}, "ar-verb forms") local function format_forms(forms) if not forms then return "-" -- FIXME: Throw an error? end local formatted = {} for _, form in ipairs(forms) do if form.translit then table.insert(formatted, ("%s//%s"):format(form.form, form.translit)) else table.insert(formatted, form.form) end end return table.concat(formatted, "،") end if props.verb == true then props.verb = format_forms(alternant_multiword_spec.forms.past_3ms) end for _, deriv in ipairs({"vn", "ap", "pp"}) do if props[deriv] == true then props[deriv] = format_forms(alternant_multiword_spec.forms[deriv]) end end end end end -- Go through and output the result local formtextarr = {} for _, vplist in ipairs(verb_properties) do local form = vplist[1] for _, props in ipairs(vplist[2]) do local textarr = {} if props.verb then local text = "* '''[[Appendix:Arabic verbs#Form " .. form .. "|Form " .. form .. "]]''': " local linktext = {} local splitheads = rsplit(props.verb, "[,،]") for _, head in ipairs(splitheads) do table.insert(linktext, m_links.full_link({lang = lang, term = head, gloss = props["verb-gloss"]})) end text = text .. table.concat(linktext, "، ") table.insert(textarr, text) for _, derivengl in ipairs({{"vn", "Verbal noun"}, {"ap", "Active participle"}, {"pp", "Passive participle"}}) do local deriv = derivengl[1] local engl = derivengl[2] if props[deriv] then local text = "** " .. engl .. ": " local linktext = {} local splitheads = rsplit(props[deriv], "[,،]") for _, head in ipairs(splitheads) do local ar, translit = head:match("^(.*)//(.-)$") if not ar then ar = head end table.insert(linktext, m_links.full_link {lang = lang, term = ar, tr = translit, gloss = props[deriv .. "-gloss"]} ) end text = text .. table.concat(linktext, "، ") table.insert(textarr, text) end end table.insert(formtextarr, table.concat(textarr, "\n")) end end end return table.concat(formtextarr, "\n") end -- Infer radicals from lemma headword (i.e. 3rd masculine singular past) and verb form (I, II, etc.). Throw an error if -- headword is malformed. A given returned radical may be actually be a list of possible radicals, where the first one -- should be used if the user didn't explicitly give the radical. If the list contains a field `ambig = true`, the -- radical is considered ambiguous and should not be categorized. `is_reduced` indicates that the user specified -- `.reduced` to indicate that the verb form is reduced by assimilation and/or haplology (typically archaic Koranic -- forms such as اِدَّارَأَ instead of تَدَارَأَ; or اِسْطَاعَ instead of اِسْتِطَاعَ; etc. function export.infer_radicals(data) local headword, vform, passive, past_vowel, nonpast_vowel, is_reduced = data.headword, data.vform, data.passive, data.past_vowel, data.nonpast_vowel, data.is_reduced past_vowel = past_vowel or "-" nonpast_vowel = nonpast_vowel or "-" local function verify_vowel(vowel, param) --W: A past/non-past vowel may legitimately be a form object {form=..., footnotes=...} -- when the user attaches a footnote, e.g. <I/a[نادر]~u>, so compare the formval. -- Comparing the raw value crashed on Lua 5.1 ("bad argument #2 to 'format'"). local formval = rget(vowel) if formval ~= A and formval ~= I and formval ~= U and formval ~= "-" then error(("Internal error: Bad value for %s: %s (should be Arabic diacritic vowel or '-')"):format( param, dump(vowel))) end end verify_vowel(past_vowel, "past_vowel") verify_vowel(nonpast_vowel, "nonpast_vowel") local ch = {} local form_viii_assim, variant -- sub out alif-madda for easier processing headword = rsub(headword, AMAD, HAMZA .. ALIF) local function infer_err(msg, noann) local anns = {} local nohead, novform if noann == "nohead" then nohead = true elseif noann == "novform" then novform = true elseif noann == "nohead-vform" then nohead = true novform = true elseif noann then error(("Internal error: Unrecognized value for 'noann': %s"):format(dump(noann))) end if not nohead then table.insert(anns, ("headword=%s"):format(data.headword)) end if not novform then table.insert(anns, ("verb form=%s"):format(data.vform)) end anns = table.concat(anns, "، ") if anns ~= "" then anns = ": " .. anns end error(msg .. anns) end local len = ulen(headword) local expected_length -- extract the headword letters into an array for i = 1, len do table.insert(ch, usub(headword, i, i)) end -- check that the letter at the given index is the given string, or -- is one of the members of the given array local function check(index, must) local letter = ch[index] if type(must) == "string" then if not letter then infer_err("Letter " .. index .. " is nil") end if letter ~= must then infer_err(("For verb form %s, letter %s must be %s, not %s"):format(vform, index, must, letter), "novform") end elseif not m_table.contains(must, letter) then infer_err("For verb form " .. vform .. ", radical " .. index .. " must be one of " .. table.concat(must, " ") .. ", not " .. letter, "novform") end end -- Check that length of headword is within [min, max] local function check_len(min, max) if min and len < min then infer_err(("Not enough letters for verb form %s, expected at least %s"):format(vform, min), "novform") end if max and len > max then infer_err(("Too many letters for verb form %s, expected at most %s"):format(vform, max), "novform") end end -- If the vowels are i~a or u~u, a form I verb beginning with w- normally keeps the w in the non-past. Otherwise it -- loses it (i.e. it is "assimilated"). local function form_I_w_non_assimilated() return req(past_vowel, I) and req(nonpast_vowel, A) or req(past_vowel, U) and req(nonpast_vowel, U) end -- Convert radicals to canonical form (handle various hamza varieties and check for misplaced alif or alif maqṣūra; -- legitimate cases of these letters are handled above). local function convert(rad, index) if type(rad) == "table" then for i, r in ipairs(rad) do rad[i] = convert(r, index) end return rad elseif rad == HAMZA_ON_ALIF or rad == HAMZA_UNDER_ALIF or rad == HAMZA_ON_W or rad == HAMZA_ON_Y then return HAMZA elseif rad == AMAQ then infer_err("Radical " .. index .. " must not be alif maqṣūra") elseif rad == ALIF then infer_err("Radical " .. index .. " must not be alif") else return rad end end local quadlit = vform:find("q$") -- find first radical, start of second/third radicals, check for -- required letters local radstart, rad1, rad2, rad3, rad4 local weakness if vform == "I" or vform == "II" then rad1 = ch[1] radstart = 2 elseif vform == "III" then rad1 = ch[1] check(2, {ALIF, W}) -- W occurs in passive-only verbs radstart = 3 elseif vform == "IV" then -- this would be alif-madda but we replaced it with hamza-alif above. if ch[1] == HAMZA and ch[2] == ALIF then rad1 = HAMZA else check(1, HAMZA_ON_ALIF) rad1 = ch[2] end radstart = 3 elseif vform == "V" then check(1, is_reduced and ALIF or T) rad1 = ch[2] radstart = 3 elseif vform == "VI" then check(1, is_reduced and ALIF or T) if ch[2] == AMAD then rad1 = HAMZA radstart = 3 else rad1 = ch[2] check(3, {ALIF, W}) -- W occurs in passive-only verbs radstart = 4 end elseif vform == "VII" then check(1, ALIF) if is_reduced then check(2, M) rad1 = M radstart = 3 else check(2, N) rad1 = ch[3] radstart = 4 end elseif vform == "VIII" then check(1, ALIF) rad1 = ch[2] if rad1 == "د" then rad1 = {"د", "ذ"} -- not considered ambiguous since it's usually د radstart = 3 form_viii_assim = "دّ" elseif rad1 == "ظ" and ch[3] == "ط" and len >= 5 then -- [[اظطلم]], variant of [[اظلم]] radstart = 4 form_viii_assim = "ظْط" elseif rad1 == "ذ" and ch[3] == "د" and len >= 5 then -- [[اذدكر]], variant of [[اذكر]] radstart = 4 form_viii_assim = "ذْد" elseif rad1 == T or rad1 == "ث" or rad1 == "ذ" or rad1 == "ط" or rad1 == "ظ" then radstart = 3 form_viii_assim = rad1 .. SH elseif rad1 == "ز" then check(3, "د") radstart = 4 form_viii_assim = "زْد" elseif rad1 == "ص" or rad1 == "ض" then check(3, "ط") radstart = 4 form_viii_assim = rad1 .. SK .. "ط" else check(3, T) radstart = 4 rad1 = convert(rad1, 1) form_viii_assim = rad1 .. SK .. "ت" end if rad1 == T then -- Radical is ambiguous, might be ت or و or ي but doesn't affect conjugation. Note that there are no -- form-VIII verbs with initial radical ي given in Hans Wehr but Lane mentions at least: -- - (page 2973) اِتَّأَسَ, with assimilation of the ي to ت, from root ي ء س; -- - (page 2975) اِتَّبَسَ non-past يَتَّبِسُ and alternative اِيتَبَسَ non-past يَاتَبِسُ from the root ي ب س; -- - (page 2976) اِتَّسَرَ non-past يَتَّسِرُ or alternatively يَأْتَسِرُ with hamza preserved from the root ي س ر. -- These alternative forms seem very rare and probably not worth worrying about, but if we want to handle -- them, we can do it when the time comes. rad1 = {T, W, Y, ambig = true} -- اِتَّخَذَ irregularly has hamza as the radical but assimilates like و if ch[3] == "خ" and ch[4] == "ذ" then rad1[4] = HAMZA end end elseif vform == "IX" then check(1, ALIF) rad1 = ch[2] radstart = 3 elseif vform == "X" then check(1, ALIF) check(2, S) if is_reduced then rad1 = ch[3] radstart = 4 else check(3, T) rad1 = ch[4] radstart = 5 end elseif vform == "Iq" then rad1 = ch[1] rad2 = ch[2] radstart = 3 elseif vform == "IIq" then check(1, T) rad1 = ch[2] rad2 = ch[3] radstart = 4 elseif vform == "IIIq" then check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) radstart = 5 elseif vform == "IVq" then check(1, ALIF) rad1 = ch[2] rad2 = ch[3] radstart = 4 elseif vform == "XI" then check_len(5, 5) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, ALIF) rad3 = ch[5] weakness = "sound" elseif vform == "XII" then check(1, ALIF) rad1 = ch[2] if ch[3] ~= ch[5] then infer_err("For verb form XII, letters 3 and 5 should be the same", "novform") end check(4, W) radstart = 5 elseif vform == "XIII" then check_len(5, 5) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, W) rad3 = ch[5] if rad3 == AMAQ then weakness = "final-weak" else weakness = "sound" end elseif vform == "XIV" then check_len(6, 6) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) rad3 = ch[5] if ch[6] == AMAQ then check_waw_ya(rad3) weakness = "final-weak" else if ch[5] ~= ch[6] then infer_err("For verb form XIV, letters 5 and 6 should be the same", "novform") end weakness = "sound" end elseif vform == "XV" then check_len(6, 6) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) rad3 = ch[5] if rad3 == Y then check(6, ALIF) else check(6, AMAQ) end weakness = "sound" else error("Internal error: Unrecognized verb form " .. vform) end -- Process the last two radicals. RADSTART is the index of the first of the two. If it's nil then all radicals have -- already been processed above, and we don't do anything. if radstart then -- There must (normally) be one or two letters left. if len == radstart then if vform == "I" and ch[len] == Y then -- short form حَيَّ weakness = "final-weak" rad2 = Y rad3 = Y variant = "short" elseif vform == "IV" and rad1 == "ر" and ch[len] == AMAQ then -- irregular verb أَرَى weakness = "final-weak" rad2 = HAMZA rad3 = Y elseif vform == "X" and rad1 == "ح" and ch[len] == AMAQ then -- irregular verb اِسْتَحَى weakness = "final-weak" rad2 = Y rad3 = Y variant = "short" else -- If one letter left, then it's a geminate verb. If the letter is alif or alif maqṣūra, it will trigger -- an error down the line. if vform_supports_geminate(vform) then weakness = "geminate" rad2 = ch[len] rad3 = ch[len] if vform == "III" or vform == "VI" then variant = "short" end else infer_err("Apparent geminate verb, but geminate verbs not allowed for this verb form") end end elseif quadlit then -- Process last two radicals of a quadriliteral verb form. rad3 = ch[radstart] rad4 = ch[radstart + 1] expected_length = radstart + 1 check_len(expected_length) if rad4 == AMAQ or rad4 == ALIF and rad3 == Y or rad4 == Y then -- rad4 can be Y in passive-only verbs. if vform_supports_final_weak(vform) then weakness = "final-weak" -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws in a row); it could be wāw or -- yāʾ, but doesn't affect the conjugation. rad4 = rad3 == W and {Y, W, ambig = true} or {W, Y, ambig = true} else infer_err("Last radical is " .. rad4 .. " but verb form " .. vform .. " doesn't support final-weak verbs", "novform") end else weakness = "sound" end else -- Process last two radicals of a triliteral verb form. rad2 = ch[radstart] rad3 = ch[radstart + 1] expected_length = radstart + 1 check_len(expected_length) if vform == "I" and (is_waw_ya(rad3) or rad3 == ALIF or rad3 == AMAQ) then local inferred_past_vowel, inferred_nonpast_vowel -- Check for final-weak form I verb. It can end in tall alif (rad3 = wāw) or alif maqṣūra (rad3 = yāʾ) -- or a wāw or yāʾ (with a past vowel of i or u, e.g. nasiya/yansā "forget" or with a passive-only -- verb). if rad1 == W and not form_I_w_non_assimilated() then weakness = "assimilated+final-weak" else weakness = "final-weak" end if rad3 == ALIF then rad3 = W inferred_past_vowel = A inferred_nonpast_vowel = U if is_passive_only(passive) then infer_err("Final-weak form-I passive verbs should end in yāʔ (ي), not tall alif (ا)", "novform") end elseif rad3 == AMAQ then rad3 = Y inferred_past_vowel = A inferred_nonpast_vowel = I if is_passive_only(passive) then infer_err("Final-weak form-I passive verbs should end in yāʔ (ي), not alif maqṣūra (ى)", "novform") end elseif rad1 == "ح" and rad2 == Y and rad3 == Y then -- Long variant حَيِيَ. inferred_past_vowel = I inferred_nonpast_vowel = A variant = "long" else if not is_passive_only(passive) then -- does a non-passive final-weak verb in -uwa ever happen? (YES: e.g. [[رجو]] "to be slack") inferred_past_vowel = rad3 == Y and I or U inferred_nonpast_vowel = A end -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws); it could be wāw or yāʾ, but -- doesn't affect the conjugation. rad3 = (rad1 == W or rad2 == W) and {Y, W, ambig = true} or {W, Y, ambig = true} -- ambiguous end if inferred_past_vowel then local raw_past_vowel = rget(past_vowel) local raw_nonpast_vowel = rget(nonpast_vowel) if raw_past_vowel ~= "-" then if raw_past_vowel ~= inferred_past_vowel then infer_err(("Final-weak form-I verb inferred past vowel %s, which disagrees with " .. "explicitly specified %s"):format(undia[inferred_past_vowel], undia[raw_past_vowel]), "novform") else -- in case of footnote in past_vowel inferred_past_vowel = past_vowel end end if raw_nonpast_vowel ~= "-" and raw_nonpast_vowel ~= A and inferred_nonpast_vowel == U then -- if inferred as I or A, the reality can be the reverse; form-I final-weak verbs with a~a and -- i~i exist, e.g. سَعَى/يَسْعَى, وَلِيَ/يَلِي. Weird verb [[صها]] (also written [[صهى]]) has non-past -- يصهى so we can't throw an error in this situation. if raw_nonpast_vowel ~= inferred_nonpast_vowel then infer_err(("Final-weak form-I verb inferred non-past vowel %s, which disagrees with " .. "explicitly specified %s"):format(undia[inferred_nonpast_vowel], undia[raw_nonpast_vowel]), "novform") else -- in case of footnote in nonpast_vowel inferred_nonpast_vowel = nonpast_vowel end end end if not is_passive_only(passive) then if rget(past_vowel) == "-" then past_vowel = inferred_past_vowel end if rget(nonpast_vowel) == "-" then nonpast_vowel = inferred_nonpast_vowel end end elseif vform == "IX" and is_waw_ya(rad3) and len == radstart + 2 and ch[len] == AMAQ then -- Final-weak form IX verbs like اِرْعَوَى "to desist, to repent, to see the light". weakness = "final-weak" expected_length = radstart + 2 elseif vform == "X" and rad1 == "ح" and rad2 == Y and rad3 == ALIF then -- Long variant اِسْتَحْيَا. weakness = "final-weak" rad3 = Y variant = "long" elseif rad3 == AMAQ or rad2 == Y and rad3 == ALIF or rad3 == Y then -- rad3 == Y happens in passive-only verbs. if vform_supports_final_weak(vform) then weakness = "final-weak" else infer_err("Last radical is " .. rad3 .. " but verb form doesn't support final-weak verbs") end -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws); it could be wāw or yāʾ, but -- doesn't affect the conjugation. rad3 = (rad1 == W or rad2 == W) and {Y, W, ambig = true} or {W, Y, ambig = true} elseif rad2 == ALIF then if vform_supports_hollow(vform) then weakness = "hollow" local function set_past_to_a() if req(past_vowel, A) then -- already set elseif req(past_vowel, "-") or req(past_vowel, rget(nonpast_vowel)) then past_vowel = A else infer_err(("Form I hollow verb with nonpast vowel set to '%s' must have past vowel set to 'a' or the same value, not %s"): format(undia[rget(nonpast_vowel)], undia[rget(past_vowel)]), "novform") end end if vform == "I" and req(nonpast_vowel, U) then rad2 = W set_past_to_a() elseif vform == "I" and req(nonpast_vowel, I) then rad2 = Y set_past_to_a() else if req(nonpast_vowel, A) and not req(past_vowel, I) then infer_err(("Form I hollow verb with nonpast vowel set to 'a' must have past vowel set to 'i', not %s"): format(undia[rget(past_vowel)]), "novform") end -- Ambiguous radical; could be wāw or yāʾ; if verb form I, it's critical to get this right, and -- the caller checks for this situation and throws an error if non-past vowel is "a" and second -- radical isn't explicitly given. rad2 = {W, Y, ambig = true, need_radical = true} end else infer_err("Second radical is alif but verb form doesn't support hollow verbs") end elseif vform == "I" and rad1 == W and not form_I_w_non_assimilated() then weakness = "assimilated" elseif rad2 == rad3 and (vform == "III" or vform == "VI") then weakness = "geminate" variant = "long" else weakness = "sound" end end if expected_length then check_len(expected_length, expected_length) end end rad1 = convert(rad1, 1) rad2 = convert(rad2, 2) rad3 = convert(rad3, 3) rad4 = convert(rad4, 4) if not weakness then error("Internal error: Returned weakness from infer_radicals() is nil") end return { weakness = weakness, rad1 = rad1, rad2 = rad2, rad3 = rad3, rad4 = rad4, past_vowel = past_vowel, nonpast_vowel = nonpast_vowel, form_viii_assim = form_viii_assim, variant = variant, } end -- bot interface to infer_radicals() function export.infer_radicals_json(frame) local iparams = { headword = {}, vform = {}, passive = {}, past_vowel = {}, nonpast_vowel = {}, is_reduced = {type = "boolean"}, } local iargs = require("Module:parameters").process(frame.args, iparams) return require("Module:JSON").toJSON(export.infer_radicals(iargs)) end -- Infer vocalization from participle headword (active or passive), verb form (I, II, etc.) and whether the headword is -- active or passive. Throw an error if headword is malformed. Returned radicals may contain Latin letters "t", "w" or "y" -- indicating ambiguous radicals guessed to be tāʾ, wāw or yāʾ respectively. function export.infer_participle_vocalization(headword, vform, weakness, is_active) local chars = {} local orig_headword = headword -- Sub out alif-madda for easier processing. headword = rsub(headword, AMAD, HAMZA .. ALIF) local len = ulen(headword) -- Extract the headword letters into an array. for i = 1, len do table.insert(chars, usub(headword, i, i)) end local function form_intro_error_msg() return ("For verb form %s %s%s participle %s, "):format(vform, orig_headword ~= headword and "normalized " or "", is_active and "active" or "passive", headword) end local function err(msg) error(form_intro_error_msg() .. msg, 1) end -- Check that length of headword is within [min, max]. local function check_len(min, max) if min and len < min then err(("expected at least %s letters but saw %s"):format(min, len)) elseif max and len > max then err(("expected at most %s letters but saw %s"):format(max, len)) end end -- Get the character at `ind`, making sure it exists. local function c(ind) check_len(ind) return chars[ind] end -- Check that the letter at the given index is the given string, or is one of the members of the given array local function check(index, must) local letter = chars[index] local function make_possible_values() if type(must) == "string" then return must else return list_to_text(must, nil, " or ") end end if not letter then err(("expected a letter (specifically %s) at position %s, but participle is too short"):format( make_possible_values(), index)) end local matches if type(must) == "string" then matches = letter == must else matches = m_table.contains(must, letter) end if not matches then err(("letter %s at index %s must be %s"):format(letter, index, make_possible_values())) end end local function check_weakness(values, allow_missing, invert_condition) local function make_possible_weaknesses() for i, val in ipairs(values) do values[i] = "'" .. val .. "'" end return list_to_text(values, nil, " or ") end if allow_missing and invert_condition then error("Internal error: Can't specify both allow_missing and invert_condition") end if not weakness then if allow_missing or invert_condition then return else err(("weakness is unspecified but must be %s"):format(make_possible_weaknesses())) end else local matches = m_table.contains(values, weakness) if invert_condition and matches then err(("weakness '%s' must not be %s"):format(weakness, make_possible_weaknesses())) elseif not invert_condition and not matches then err(("weakness '%s' must be %s"):format(weakness, make_possible_weaknesses())) end end end local vocalized local function handle_possibly_final_weak(sound_prefix, expected_length) check_len(expected_length, expected_length) if c(expected_length) == AMAQ then -- passive final-weak if is_active then err("participle in -ِى only allowed for passive participles") end check_weakness({"final-weak", "assimilated+final-weak"}, "allow missing") vocalized = sound_prefix .. AN .. AMAQ else -- all others behave as if sound check_weakness({"final-weak", "assimilated+final-weak"}, nil, "invert condition") vocalized = sound_prefix .. (is_active and I or A) .. c(expected_length) end end if not (vform == "I" and is_active) then -- all participles except verb form I active begin in م-. check(1, M) end if vform == "I" then if is_active then check(2, ALIF) local sound_prefix = c(1) .. AA .. c(3) if len == 3 then if c(3) == HAMZA then -- Either hollow with hamzated third radical, e.g. [[شاء]] active participle 'شَاءٍ', or final-weak -- with hamzated second radical, e.g. [[رأى]] active participle 'رَاءٍ'. Theoretically (?), also -- geminate with hamzated second/third radical, but I don't know if any such verbs exist. if weakness == "geminate" then vocalized = sound_prefix .. SH else check_weakness({"hollow", "final-weak"}, "allow missing") vocalized = sound_prefix .. IN end else check_weakness({"final-weak", "geminate"}) if weakness == "geminate" then vocalized = sound_prefix .. SH else vocalized = sound_prefix .. IN end end else check_len(4, 4) -- we will convert back to alif maqṣūra below as needed vocalized = sound_prefix .. I .. c(4) end else -- assimilated verbs: regular, e.g. مَوْزُون "weighed" -- geminate verbs: regular, e.g. مَبْلُول "moistened" -- third-hamzated verbs: مَبْرُوء -- hollow verbs: مَقُود "led, driven"; مَزِيد "added, increased" -- hollow first-hamzated verbs: مَئِيض "returned, reverted"; مَأْيُوس "despaired" (NOTE: formation is sound); -- مَأُود or مَؤُود "bent; depleted" -- hollow third-hamzated verbs: مَشِيء "willed, intended", مَضُوء "glittered?" -- final-weak: مَلْقِيّ "found, encountered"; مَصْغُوّ "inclined" -- hollow + final-weak: مَشْوِيّ "fried, grilled", مَهْوِيّ "loved" -- first-hamzated + hollow + final-weak: مَأْوِيّ "received hospitably" local sound_prefix = MA .. c(2) .. SK .. c(3) if len == 5 then -- sound, assimilated or geminate check(4, W) vocalized = sound_prefix .. UU .. c(5) else check_len(4, 4) if c(4) == W then -- final-weak third-wāw vocalized = sound_prefix .. U .. W .. SH elseif c(4) == Y then -- final-weak third-yāʾ vocalized = sound_prefix .. I .. Y .. SH else -- hollow check(3, {W, Y}) if c(3) == W then vocalized = MA .. c(2) .. UU .. c(4) else vocalized = MA .. c(2) .. II .. c(4) end end end end elseif vform == "II" or vform == "V" or vform == "XII" or vform == "XIII" or vform == "Iq" or vform == "IIq" or vform == "IIIq" then local sound_prefix, expected_length if vform == "II" then sound_prefix = MU .. c(2) .. A .. c(3) .. SH expected_length = 4 elseif vform == "V" then check(2, T) sound_prefix = MU .. T .. A .. c(3) .. A .. c(4) .. SH expected_length = 5 elseif vform == "XII" then -- e.g. [[احدودب]] "to be or become convex or humpbacked", مُحْدَوْدِب (active); -- [[اثنونى]] "to be bent; to be doubled up", مُثْنَوْنٍ (active) check(4, W) if c(3) ~= c(5) then err(("third letter %s should be the same as the fifth letter %s"):format(c(3), c(5))) end sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. W .. SK .. c(5) expected_length = 6 elseif vform == "XIII" then -- e.g. [[اخروط]] "to get entangled; to extend", مُخْرَوِّط (active), مُخْرَوَّط (passive) check(4, W) sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. W .. SH expected_length = 5 elseif vform == "Iq" then sound_prefix = MU .. c(2) .. A .. c(3) .. SK .. c(4) expected_length = 5 elseif vform == "IIq" then check(2, T) sound_prefix = MU .. T .. A .. c(3) .. A .. c(4) .. SK .. c(5) expected_length = 6 elseif vform == "IIIq" then -- e.g. [[اخرنطم]] "to be proud and angry" check(4, T) sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. N .. SK .. c(5) expected_length = 6 else error("Internal error: Unhandled verb form " .. vform) end if len == expected_length - 1 then -- active final-weak if not is_active then err(("length-%s participle only allowed for active participles"):format(len)) end check_weakness({"final-weak", "assimilated+final-weak"}, "allow missing") vocalized = sound_prefix .. IN else handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "III" or vform == "VI" then local sound_prefix, expected_length if vform == "VI" then check(2, T) check(4, ALIF) sound_prefix = MU .. T .. A .. c(3) .. AA .. c(5) expected_length = 6 else sound_prefix = MU .. c(2) .. AA .. c(4) expected_length = 5 end if len == expected_length - 1 then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. SH else vocalized = sound_prefix .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. SH end else handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "IV" or vform == "X" then -- form IV: -- sound: مُرْسِخ (active, "entrenching"), مُرْسَخ (passive, "entrenched") -- first-hamzated (like sound): مُؤْيِس (active, "causing to despair"), مُؤْيَس (passive, "caused to despair") -- final-weak: مُكْرٍ (active, "renting out"), مُكْرًى (passive, "rented out") -- assimilated: مُورِد (active, "transferring"), مُورَد (passive, "transferred"); same when first-Y, e.g. -- أَيْقَنَ "to be certain of": مُوقِن (active), مُوقَن (passive) -- assimilated + final-weak: مُورٍ (active, "setting fire, kindling"), مُورًى (passive, "set fire, kindled") -- geminate: مُمِدّ (active, "granting, helping"), مُمَدّ (passive, "granted, helped") -- hollow: مُزِيل (active, "eliminating"), مُزَال (passive, "eliminated") -- hollow + final-weak: مُعْيٍ (active, "tiring"), مُعْيًى (passive, "tired") local sound_prefix, expected_length if vform == "X" then check(2, S) check(3, T) sound_prefix = MU .. S .. SK .. T .. A .. c(4) expected_length = 6 else sound_prefix = MU .. c(2) expected_length = 4 end if len == expected_length and c(len - 1) == Y and c(len) ~= AMAQ then -- active hollow if not is_active then err("this shape only allowed for active participles") end check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. II .. c(len) elseif len == expected_length and c(len - 1) == ALIF then -- passive hollow if is_active then err("this shape only allowed for passive participles") end check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. AA .. c(len) elseif len == expected_length - 1 then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. I .. c(len) .. SH elseif vform == "IV" and c(2) == W then -- assimilated final-weak vocalized = sound_prefix .. c(len) .. IN else vocalized = sound_prefix .. SK .. c(len) .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. A .. c(len) .. SH end else if vform == "IV" and c(2) == W then -- assimilated, possibly final-weak sound_prefix = sound_prefix .. c(expected_length - 1) else sound_prefix = sound_prefix .. SK .. c(expected_length - 1) end handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "VII" or vform == "VIII" then -- form VII (passive participles are fairly rare but do exist): -- sound: مُنْكَتِب (active "subscribing"), مُنْكَتَب (passive "subscribed") -- geminate: مُنْضَمّ (both active "joining, containing" and passive "joined, contained") -- final-weak: مُنْطَلٍ (active "fooling (someone)"), مُنْطَلًى (passive "fooled") -- final-weak with medial wāw: مُنْطَوٍ (active "involving"), مُنْطَوًى (passive "involved") -- hollow: مُنْقَاد (both active "complying with" and passive "complied with") -- -- for form VIII, the same variants exist but things are complicated by assimilations involving the template T. -- sound third-hamzated no assimilation: مُبْتَدِئ (active "beginning"), مُبْتَدَأ (passive "begun") -- geminate no assimilation: مُبْتَزّ (both active "robbing" and passive "robbed") -- final-weak no assimilation: مُبْتَنٍ (active "building"), مُبْتَنًى (passive "built") -- final-weak with medial wāw no assimilation: مُحْتَوٍ (active "containing"), مُحْتَوًى (passive "contained") -- hollow no assimilation: مُخْتَار (both active "choosing" and passive "chosen") -- -- sound with total assimilation: مُتَّبِع (active "following"), مُتَّبَع (passive "followed") -- sound with total assimilation, assimilating wāw: مُتَّعِد (active "threatening"), مُتَّعَد (passive "threatened") -- sound with total assimilation, irregularly assimilating hamza: مُتَّخِذ (active "taking"), مُتَّخَذ (passive "taken") -- sound with total assimilation (to ḏāl, producing dāl): مُدَّخِر (active "reserving"), مُدَّخَر (passive "reserved") -- sound with total assimilation (to ḏāl): مُذَّكِر (active "remembering"), مُذَّكَر (passive "remembered") -- sound with total assimilation (to ṭāʔ): مُطَّرِح (active "discarding"), مُطَّرَح (passive "discarded") -- sound with total assimilation (to ẓāʔ): مُظَّلِم (active "tolerating"), مُظَّلَم (passive "tolerated") -- final-weak with total assimilation, assimilating wāw: مُتَّقٍ (active "guarding against"), مُتَّقًى (passive "guarded against") -- final-weak with total assimilation (to ṯāʔ): مُثَّنٍ (active "undulating"), مُثَّنًى (passive "undulated") -- final-weak with total assimilation (to dāl): مُدَّعٍ (active "claiming"), مُدَّعًى (passive "claimed") -- sound with partial assimilation (to zayn): مُزْدَهِر (active "thriving"), مُزْدَهَر (passive "thrived") -- sound with medial wāw with partial assimilation (to zayn): مُزْدَوِج (active "appearing twice") -- sound with partial assimilation (to ṣād): مُصْطَبِح (active "illuminating"), مُصْطَبَح (passive, "illuminated") -- sound with partial assimilation (to ḍād): مُضْطَرِب (active "to be disturbed"; no passive) -- geminate with partial assimilation (to ṣād): مُصْطَبّ (both active "effusing" and passive "effused") -- geminate with partial assimilation (to ḍād): مُضْطَرّ (both active "forcing" and passive "forced") -- final-weak with partial assimilation (to ṣād): مُصْطَلٍ (active "warming"), مُصْطَلًى (passive "warmed") -- hollow with partial assimilation (to zayn): مُزْدَاد (both active "increasing" and passive "increased") -- hollow with partial assimilation (to ṣad): مُصْطَاد (both active "hunting" and passive "hunted") local sound_prefix, sufind if vform == "VII" then check(2, N) sound_prefix = MU .. N .. SK .. c(3) sufind = 4 else local c2 = c(2) if c2 == T or c2 == "د" or c2 == "ث" or c2 == "ذ" or c2 == "ط" or c2 == "ظ" then -- full assimilation sound_prefix = MU .. c2 .. SH sufind = 3 else -- partial or no assimilation if c2 == "ز" then check(3, "د") elseif c2 == "ص" or c2 == "ض" then check(3, "ط") else check(3, T) end sound_prefix = MU .. c2 .. SK .. c(3) sufind = 4 end end if c(sufind) == ALIF then -- hollow, active or passive check_len(sufind + 1, sufind + 1) check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. AA .. c(sufind + 1) elseif len == sufind then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. A .. c(len) .. SH else vocalized = sound_prefix .. A .. c(len) .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. A .. c(len) .. SH end else sound_prefix = sound_prefix .. A .. c(sufind) handle_possibly_final_weak(sound_prefix, sufind + 1) end elseif vform == "IX" then check_len(4, 4) vocalized = MU .. c(2) .. SK .. c(3) .. A .. c(4) .. SH elseif vform == "IVq" then -- e.g. [[اذلعب]] "to scamper away", مُذْلَعِبّ (active), مُذْلَعَبّ (passive); -- [[اطمأن]] "to remain quietly; to be certain", مُطْمَئِنّ (active), مُطْمَأَنّ (passive) check_len(5, 5) local sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. c(4) if is_active then vocalized = sound_prefix .. I .. c(5) .. SH else vocalized = sound_prefix .. A .. c(5) .. SH end elseif vform == "XI" then check_len(5, 5) check(4, ALIF) vocalized = MU .. c(2) .. SK .. c(3) .. AA .. c(5) .. SH -- e.g. [[احمار]] "to turn red, to blush", مُحْمَارّ (active) elseif vform == "XIV" or vform == "XV" then -- FIXME: Implement. No examples in Wiktionary currently; need to look up in a grammar. error("Support for verb form " .. vform .. " not implemented yet") else error("Don't recognize verb form " .. vform) end vocalized = rsub(vocalized, HAMZA .. AA, AMAD) local reconstructed_headword = lang:makeEntryName(vocalized) if reconstructed_headword ~= orig_headword then error(("Internal error: Vocalized participle %s doesn't match original participle %s"):format( vocalized, orig_headword)) end -- Apply NFC-style normalization to match MediaWiki's automatic normalization return apply_nfc_shadda(vocalized) end function export.infer_participle_vocalization_json(frame) local iparams = { [1] = {required = true}, [2] = {required = true}, ["weakness"] = {}, ["passive"] = {type = "boolean"} } local iargs = require("Module:parameters").process(frame.args, iparams) return export.infer_participle_vocalization(iargs[1], iargs[2], iargs.weakness, not iargs.passive) end return export 58yil2tcxhx7rqm1f42rjjy70tl621m 1097879 1097877 2026-08-02T08:45:08Z ForzaGreen 28665 بؤرة=: تظليل الخانة كاملة بدل الكلمة وحدها (class على الخلية لا على span داخلها) 1097879 Scribunto text/plain local export = {} --[=[ This module implements {{ar-conj}} and provides the underlying conjugation functions for {{ar-verb}} (whose actual formatting is done in [[Module:ar-headword]]). Author: User:Benwing, from an early version (2013-2014) by User:Atitarev, User:ZxxZxxZ. ]=] --[=[ TERMINOLOGY: -- "slot" = A particular combination of tense/mood/person/number/etc. Example slot names for verbs are "past_1s" (past tense first-person singular), "juss_pass_3fp" (non-past jussive passive third-person feminine plural) "ap" (active participle). Each slot is filled with zero or more forms. -- "form" = The conjugated Arabic form representing the value of a given slot. -- "lemma" = The dictionary form of a given Arabic term. For Arabic, normally the third person masculine singular past, although other forms may be used if this form is missing (e.g. in passive-only verbs or verbs lacking the past). ]=] --[=[ FIXME: 1. Finish unimplemented conjugation types. Only IX-final-weak left (extremely rare, possibly only one verb اِعْمَايَ (according to Haywood and Nahmad p. 244, who are very specific about the irregular occurrence of alif + yā instead of expected اِعْمَيَّ with doubled yā). Not in Hans Wehr. NOTE: Not true about this, cf. form IX اِرْعَوَى "to desist, to repent, to see the light". Also note form XII اِخْضَوْضَرَ = form IX اِخْضَرَّ "to be or become green". [DONE except for اِعْمَايَ] 2. Implement irregular verbs as special cases and recognize them, e.g. -- laysa "to not be"; only exists in the past tense, no non-past, no imperative, no participles, no passive, no verbal noun. Irregular alternation las-/lays-. [IMPLEMENTABLE USING OVERRIDES] -- istaḥā yastaḥī "be ashamed of" -- this is complex according to Hans Wehr because there are two verbs, regular istaḥyā yastaḥyī "to spare (someone)'s life" and irregular istaḥyā yastaḥyī "to be ashamed to face (someone)", which is irregular because it has the alternate irregular form istaḥā yastaḥī which only applies to this meaning. Currently we follow Haywood and Nahmad in saying that both varieties can be spelled istaḥyā/istaḥā/istaḥḥā, but we should instead use a variant= param similar to حَيَّ to distinguish the two possibilities, and maybe not include istaḥḥā. -- ʿayya/ʿayiya yaʿayyu/yaʿyā "to not find the right way, be incapable of, stammer, falter, fall ill". This appears to be a mixture of a geminate and final-weak verb. Unclear what the whole paradigm looks like. Do the consonant-ending parts in the past follow the final-weak paradigm? Is it the same in the non-past? Or can you conjugate the non-past fully as either geminate or final-weak? -- اِنْمَحَى inmaḥā or يمَّحَى immaḥā "to be effaced, obliterated; to disappear, vanish" has irregular assimilation of inm- to imm- as an alternative. inmalasa "to become smooth; to glide; to slip away; to escape" also has immalasa as an alternative. The only other form VII verbs in Hans Wehr beginning with -m- are inmalaḵa "to be pulled out, torn out, wrenched" and inmāʿa "to be melted, to melt, to dissolve", which are not listed with imm- alternatives, but might have them; if so, we should handle this generally. [DONE] -- يَرَعَ yaraʕa yariʕu "to be a coward, to be chickenhearted" as an alternative form of يَرِعَ yariʕa yayraʕu (as given in Wehr). [IMPLEMENTABLE USING OVERRIDES] 3. Implement individual override parameters for each paradigm part. See Module:fro-verb for an example of how to do this generally. Note that {{temp|ar-conj-I}} and other of the older templates already had such individual override params. [DONE] Irregular verbs already implemented: -- [ḥayya/ḥayiya yaḥyā "live" -- behaves like a normal final-weak verb (e.g. past first singular ḥayītu) except in the past-tense parts with vowel-initial endings (all the third person except for the third feminine plural). The normal singular and dual endings have -yiya- in them, which compresses to -yya-, with the normal endings the less preferred ones. In masculine third plural, expected ḥayū is replaced by ḥayyū by analogy to the -yy- parts, and the regular form is not given as an alternant in John Mace. Barron's 201 verbs appears to have the regular ḥayū as the part, however. Note also that final -yā appears with tall alif. This appears to be a spelling convention of Arabic, also applying in ḥayyā (form II, "to keep (someone) alive") and 'aḥyā (form IV, "to animate, revive, give birth to, give new life to").] -- implemented -- [ittaxadha yattaxidhu "take"] -- implemented -- [sa'ala yas'alu "ask" with alternative jussive/imperative yasal/sal] -- implemented -- [ra'ā yarā "see"] -- implemented -- ['arā yurī "show"] -- implemented -- ['akala ya'kulu "eat" with imperative kul] -- implemented -- ['axadha ya'xudhu "take" with imperative xudh] -- implemented -- ['amara ya'muru "order" with imperative mur] -- implemented --]=] local force_cat = false -- set to true for debugging -- if true, always maintain manual translit during processing, and compare against full translit at the end local debug_translit = false local lang = require("Module:languages").getByCode("ar") local m_links = require("Module:links") local m_string_utilities = require("Module:string utilities") local m_table = require("Module:table") local ar_utilities = require("Module:ar-utilities") local iut = require("Module:inflection utilities") local put = require("Module:parse utilities") local list_to_text = mw.text.listToText local rfind = m_string_utilities.find local rsubn = m_string_utilities.gsub local rmatch = m_string_utilities.match local rsplit = m_string_utilities.split local usub = m_string_utilities.sub local ulen = m_string_utilities.len local u = m_string_utilities.char local unpack = unpack or table.unpack -- Lua 5.2 compatibility local dump = mw.dumpObject -- Within this module, conjugations are the functions that do the actual -- conjugating by creating the parts of a basic verb. -- They are defined further down. local conjugations = {} -- hamza variants local HAMZA = u(0x0621) -- hamza on the line (stand-alone hamza) = ء local HAMZA_ON_ALIF = u(0x0623) local HAMZA_ON_W = u(0x0624) local HAMZA_UNDER_ALIF = u(0x0625) local HAMZA_ON_Y = u(0x0626) local HAMZA_ANY = "[" .. HAMZA .. HAMZA_ON_ALIF .. HAMZA_UNDER_ALIF .. HAMZA_ON_W .. HAMZA_ON_Y .. "]" local HAMZA_PH = u(0xFFF0) -- hamza placeholder local BAD = u(0xFFF1) local BORDER = u(0xFFF2) -- diacritics local A = u(0x064E) -- fatḥa local AN = u(0x064B) -- fatḥatān (fatḥa tanwīn) local U = u(0x064F) -- ḍamma local UN = u(0x064C) -- ḍammatān (ḍamma tanwīn) local I = u(0x0650) -- kasra local IN = u(0x064D) -- kasratān (kasra tanwīn) local SK = u(0x0652) -- sukūn = no vowel local SH = u(0x0651) -- šadda = gemination of consonants local DAGGER_ALIF = u(0x0670) local DIACRITIC_ANY_BUT_SH = "[" .. A .. I .. U .. AN .. IN .. UN .. SK .. DAGGER_ALIF .. "]" -- Pattern matching short vowels local AIU = "[" .. A .. I .. U .. "]" -- Pattern matching short vowels or sukūn local AIUSK = "[" .. A .. I .. U .. SK .. "]" -- Pattern matching any diacritics that may be on a consonant local DIACRITIC = SH .. "?" .. DIACRITIC_ANY_BUT_SH -- translit_patterns local vowels = "aeiouāēīōū" local NV = "[^" .. vowels .. "]" local dia = {a = A, i = I, u = U} local undia = {[A] = "a", [I] = "i", [U] = "u", ["-"] = "-"} -- various letters and signs local ALIF = u(0x0627) -- ʾalif = ا local AMAQ = u(0x0649) -- ʾalif maqṣūra = ى local AMAD = u(0x0622) -- ʾalif madda = آ local TAM = u(0x0629) -- tāʾ marbūṭa = ة local T = u(0x062A) -- tāʾ = ت local HYPHEN = u(0x0640) local N = u(0x0646) -- nūn = ن local W = u(0x0648) -- wāw = و local Y = u(0x064A) -- yāʾ = ي local S = "س" local M = "م" local LRM = u(0x200e) -- left-to-right mark -- common combinations local AH = A .. TAM local AT = A .. T local AA = A .. ALIF local AAMAQ = A .. AMAQ local AAH = AA .. TAM local AAT = AA .. T local II = I .. Y local UU = U .. W local AY = A .. Y local AW = A .. W local AYSK = AY .. SK local AWSK = AW .. SK local NA = N .. A local NI = N .. I local AAN = AA .. N local AANI = AA .. NI local AYNI = AYSK .. NI local AWNA = AWSK .. NA local AYNA = AYSK .. NA local AYAAT = AY .. AAT local UNU = "[" .. UN .. U .. "]" local MA = M .. A local MU = M .. U local TA = T .. A local TU = T .. U local _I = ALIF .. I local _U = ALIF .. U --W: Morphological pattern (الوزن الصرفي) to verb form mapping local MORPHOLOGICAL_PATTERN_TO_FORM = { ["فعَل يفعُل"] = "I/a~u", ["فعَل يفعِل"] = "I/a~i", ["فعَل يفعَل"] = "I/a~a", ["فعُل يفعُل"] = "I/u~u", ["فعِل يفعَل"] = "I/i~a", ["فعِل يفعِل"] = "I/i~i", ["فعّل"] = "II", ["فاعل"] = "III", ["أفعل"] = "IV", ["تفعّل"] = "V", ["تفاعل"] = "VI", ["انفعل"] = "VII", ["افتعل"] = "VIII", ["افعلّ"] = "IX", ["استفعل"] = "X", ["افعالّ"] = "XI", ["افعوعل"] = "XII", ["افعوّل"] = "XIII", ["فعلل"] = "Iq", ["تفعلل"] = "IIq", ["افعنلل"] = "IIIq", -- "XIV" should not be used ["افعللّ"] = "IVq", } --W: Create reverse mapping from form to morphological pattern local FORM_TO_MORPHOLOGICAL_PATTERN = {} for pattern, form in pairs(MORPHOLOGICAL_PATTERN_TO_FORM) do FORM_TO_MORPHOLOGICAL_PATTERN[form] = pattern end --W: local MORPHOLOGICAL_PATTERN_TO_BASIC_DERIV = { ["فعَل يفعُل"] = "مُجرَّد", ["فعَل يفعِل"] = "مُجرَّد", ["فعَل يفعَل"] = "مُجرَّد", ["فعُل يفعُل"] = "مُجرَّد", ["فعِل يفعَل"] = "مُجرَّد", ["فعِل يفعِل"] = "مُجرَّد", ["فعّل"] = "مزيد بحرف", ["فاعل"] = "مزيد بحرف", ["أفعل"] = "مزيد بحرف", ["تفعّل"] = "مزيد بحرفين", ["تفاعل"] = "مزيد بحرفين", ["انفعل"] = "مزيد بحرفين", ["افتعل"] = "مزيد بحرفين", ["افعلّ"] = "مزيد بحرفين", ["استفعل"] = "مزيد بثلاثة أحرف", ["افعالّ"] = "مزيد بثلاثة أحرف", ["افعوعل"] = "مزيد بثلاثة أحرف", ["افعوّل"] = "مزيد بثلاثة أحرف", ["فعلل"] = "مُجرَّد", ["تفعلل"] = "مزيد بحرف", ["افعنلل"] = "مزيد بحرفين", ["افعللّ"] = "مزيد بحرفين", } local translit_cache = { -- hamza variants [HAMZA] = "ʔ", [HAMZA_ON_ALIF] = "ʔ", [HAMZA_ON_W] = "ʔ", [HAMZA_UNDER_ALIF] = "ʔ", [HAMZA_ON_Y] = "ʔ", [HAMZA_PH] = "ʔ", -- diacritics [A] = "a", [AN] = "an", [U] = "u", [UN] = "un", [I] = "i", [IN] = "in", [SK] = "", [SH] = "*", -- handled specially [DAGGER_ALIF] = "ā", -- various letters and signs [""] = "", [ALIF] = BAD, -- we should never be transliterating ALIF by itself, as its translit in isolation is ambiguous [AMAQ] = BAD, [AMAD] = "ʔā", [TAM] = "", [T] = "t", [N] = "n", [W] = "w", [Y] = "y", [S] = "s", [M] = "m", [LRM] = "", -- common combinations [AH] = "a", [AT] = "at", [AA] = "ā", [AAMAQ] = "ā", [AAH] = "āh", [AAT] = "āt", [II] = "ī", [UU] = "ū", [AY] = "ay", [AW] = "aw", [AYSK] = "ay", [AWSK] = "aw", [NA] = "na", [NI] = "ni", [AAN] = "ān", [AANI] = "āni", [AYNI] = "ayni", [AWNA] = "awna", [AYNA] = "ayna", [AYAAT] = "ayāt", [MA] = "ma", [MU] = "mu", [TA] = "ta", [TU] = "tu", [_I] = "i", [_U] = "u", } local function transliterate(text) local cached = translit_cache[text] if cached then if cached == BAD then error(("Internal error: Unable to transliterate %s because explicitly marked as BAD"):format(text)) end return cached end local tr = (lang:transliterate(text)) if not tr then error(("Internal error: Unable to transliterate: %s"):format(text)) end translit_cache[text] = tr return tr end local all_person_number_list = { "1s", "2ms", "2fs", "3ms", "3fs", "2d", "3md", "3fd", "1p", "2mp", "2fp", "3mp", "3fp" } local function make_person_number_slot_accel_list(list) local slot_accel_list = {} return slot_accel_list end local imp_person_number_list = {} for _, pn in ipairs(all_person_number_list) do if pn:find("^2") then table.insert(imp_person_number_list, pn) end end local passive_types = m_table.listToSet { "pass", -- verb has both active and passive "ipass", -- verb is active with impersonal passive "nopass", -- verb is active-only "onlypass", -- verb is passive-only "onlypass-impers", -- verb itself is impersonal, meaning passive-only with impersonal passive } local indicator_flags = m_table.listToSet { "nopast", "no_nonpast", "noimp", "nocat", -- don't categorize or include annotations about this; useful in suppletive parts of verbs "reduced", -- verb has assimilation/reduction of initial coronals "altgem", -- form X with alternative past geminate forms with final-weak endings } export.potential_lemma_slots = {"past_3ms", "past_pass_3ms", "ind_3ms", "ind_pass_3ms", "imp_2ms"} export.unsettable_slots = {} for _, potential_lemma_slot in ipairs(export.potential_lemma_slots) do table.insert(export.unsettable_slots, potential_lemma_slot .. "_linked") end -- We don't set the active participle directly for form I because we don't want stative verbs (with past vowel i or u) -- to default to فَاعِل. Instead we set the special slot 'ap1' and later copy it to 'ap' for non-stative verbs. The user -- meanwhile can explicitly request the فَاعِل form for active participles for stative verbs using `ap:+`. table.insert(export.unsettable_slots, "ap1") -- primary default فَاعِل for form I active participles table.insert(export.unsettable_slots, "ap2") -- secondary default فَعِيل for form I active participles (stative I) table.insert(export.unsettable_slots, "ap3") -- secondary default فَعِل for form I active participles (stative II) table.insert(export.unsettable_slots, "apcd") -- secondary default أَفْعَل for form I active participles (color/defect) table.insert(export.unsettable_slots, "apan") -- secondary default فَعْلَان for form I active participles (in -ān) table.insert(export.unsettable_slots, "pp2") -- secondary default فَعِيل for form I passive participles (same as ap2) table.insert(export.unsettable_slots, "vn2") -- secondary default فِعَال for form III verbal nouns export.unsettable_slots_set = m_table.listToSet(export.unsettable_slots) local default_indicator_to_active_participle_slot = { ["+"] = "ap1", ["++"] = "ap2", ["+++"] = "ap3", ["+cd"] = "apcd", ["+an"] = "apan", } local slots_that_may_be_uncertain = { vn = "verbal noun", ap = "active participle", } -- Initialize all the slots for which we generate forms. local function add_slots(alternant_multiword_spec) alternant_multiword_spec.verb_slots = { {"ap", "act|part"}, {"pp", "pass|part"}, {"vn", "vnoun"}, } for _, unsettable_slot in ipairs(export.unsettable_slots) do table.insert(alternant_multiword_spec.verb_slots, {unsettable_slot, "-"}) end -- Add entries for a slot with person/number variants. -- `slot_prefix` is the prefix of the slot, typically specifying the tense/aspect. -- `tag_suffix` is a string listing the set of inflection tags to add after the person/number tags. -- `person_number_list` is a list of the person/number slot suffixes to add to `slot_prefix`. local function add_personal_slot(slot_prefix, tag_suffix, person_number_list) for _, persnum in ipairs(person_number_list) do local slot = slot_prefix .. "_" .. persnum local accel = persnum:gsub("(.)", "%1|") .. tag_suffix table.insert(alternant_multiword_spec.verb_slots, {slot, accel}) end end local tenses = { {"past", "past|%s"}, {"ind", "non-past|%s|ind"}, {"sub", "non-past|%s|sub"}, {"juss", "non-past|%s|juss"}, } for _, slot_accel in ipairs(tenses) do local slot, accel = unpack(slot_accel) for _, voice in ipairs {"act", "pass"} do add_personal_slot(voice == "act" and slot or slot .. "_pass", accel:format(voice), all_person_number_list) end end add_personal_slot("imp", "imp", imp_person_number_list) alternant_multiword_spec.verb_slots_map = {} for _, slot_accel in ipairs(alternant_multiword_spec.verb_slots) do local slot, accel = unpack(slot_accel) alternant_multiword_spec.verb_slots_map[slot] = accel end end local overridable_stems = {} local slot_override_param_mods = { footnote = { item_dest = "footnotes", store = "insert", }, alt = {}, t = { -- [[Module:links]] expects the gloss in "gloss". item_dest = "gloss", }, gloss = {}, g = { -- [[Module:links]] expects the genders in "g". `sublist = true` automatically splits on comma (optionally -- with surrounding whitespace). item_dest = "genders", sublist = true, }, pos = {}, lit = {}, id = {}, --W: The q/qq/l/ll (qualifier and label) modifiers were removed: rendering them -- needs [[Module:pron qualifier]], which does not exist on ar.wiktionary, so any -- use of them raised a script error. Accepting them here again requires importing -- that module first and restoring the block in generate_link() below. } local function generate_obj(formval, parse_err, prefix, is_slot_override) local val, uncertain = formval:match("^(.*)(%?)$") val = val or formval uncertain = not not uncertain local ar, translit = val:match("^(.*)//(.*)$") if not ar then ar = val end if ar == "" then if uncertain then ar = "?" else error(("Can't specify blank value for override for %s override '%s'"):format( is_slot_override and "slot" or "stem", prefix)) end end return {form = ar, translit = translit, uncertain = uncertain} end local function parse_inline_modifiers(comma_separated_group, parse_err, prefix, is_slot_override) local function this_generate_obj(formval, parse_err) return generate_obj(formval, parse_err, prefix, is_slot_override) end return put.parse_inline_modifiers_from_segments { group = comma_separated_group, props = { param_mods = slot_override_param_mods, parse_err = parse_err, generate_obj = this_generate_obj, pre_normalize_modifiers = function(data) local modtext = data.modtext modtext = modtext:match("^(%[.*%])$") if modtext then return ("<footnote:%s>"):format(modtext) end return data.modtext end, }, } end local function allow_multiple_values_for_override(comma_separated_groups, data, is_slot_override) local retvals = {} for _, comma_separated_group in ipairs(comma_separated_groups) do local retval if is_slot_override then --W: pass `prefix` and `is_slot_override` through; without them the error -- raised for a blank override value formatted a nil prefix, which is a -- crash on Lua 5.1 rather than the intended message. Reachable from e.g. -- <I/a~u.vn:[[كتابة]]>, where the [[...]] is consumed as a footnote and -- leaves the value empty. retval = parse_inline_modifiers(comma_separated_group, data.parse_err, data.prefix, is_slot_override) else retval = generate_obj(comma_separated_group[1], data.parse_err, data.prefix, is_slot_override) retval.footnotes = data.fetch_footnotes(comma_separated_group) end table.insert(retvals, retval) end for _, form in ipairs(retvals) do if form.form == "+" or default_indicator_to_active_participle_slot[form.form] then if form.form ~= "+" and default_indicator_to_active_participle_slot[form.form] and not is_slot_override then error(("Stem override '%s' cannot use %s to request a secondary default"):format( data.prefix, form.form)) end data.base.slot_override_uses_default[data.prefix] = true end end for _, form in ipairs(retvals) do if form.form == "-" then data.base.slot_explicitly_missing[data.prefix] = true break end end if data.base.slot_explicitly_missing[data.prefix] then for _, form in ipairs(retvals) do if form.form ~= "-" then data.parse_err(("For slot or stem '%s', saw both - and a value other than -, which isn't allowed"): format(data.prefix)) end end return nil end return retvals end local function simple_choice(choices) return function(separated_groups, data) if #separated_groups > 1 then data.parse_err("For spec '" .. data.prefix .. ":', only one value currently allowed") end if #separated_groups[1] > 1 then data.parse_err("For spec '" .. data.prefix .. ":', no footnotes currently allowed") end local choice = separated_groups[1][1] if not m_table.contains(choices, choice) then data.parse_err("For spec '" .. data.prefix .. ":', saw value '" .. choice .. "' but expected one of '" .. table.concat(choices, "،") .. "'") end return choice end end for _, overridable_stem in ipairs { "past", "past_v", "past_c", "past_pass", "past_pass_v", "past_pass_c", "nonpast", "nonpast_v", "nonpast_c", "nonpast_pass", "nonpast_pass_v", "nonpast_pass_c", "imp", "imp_v", "imp_c", } do overridable_stems[overridable_stem] = allow_multiple_values_for_override end overridable_stems.past_final_weak_vowel = simple_choice { "ay", "aw", "ī", "ū" } overridable_stems.past_pass_final_weak_vowel = simple_choice { "ay", "aw", "ī", "ū" } overridable_stems.nonpast_final_weak_vowel = simple_choice { "ā", "ī", "ū" } overridable_stems.nonpast_pass_final_weak_vowel = simple_choice { "ā", "ī", "ū" } ------------------------------------------------------------------------------- -- Utility functions -- ------------------------------------------------------------------------------- -- version of rsubn() that discards all but the first return value local function rsub(term, foo, bar) return (rsubn(term, foo, bar)) end -- version of rsubn() that returns a 2nd argument boolean indicating whether a substitution was made. local function rsubb(term, foo, bar) local retval, nsubs = rsubn(term, foo, bar) return retval, nsubs > 0 end -- Concatenate one or more strings or form objects. local function q(...) local not_all_strings = debug_translit local has_manual_translit = debug_translit for i = 1, select("#", ...) do local argt = select(i, ...) if not argt then error(("Internal error: Saw nil at index %s: %s"):format(i, dump({...}))) end if type(argt) ~= "string" then not_all_strings = true if argt.translit then has_manual_translit = true break end end end if not not_all_strings then -- just strings, concatenate directly return table.concat({...}) end local formvals = {} local translit = has_manual_translit and {} or nil local footnotes for i = 1, select("#", ...) do local argt = select(i, ...) if type(argt) == "string" then formvals[i] = argt if has_manual_translit then translit[i] = transliterate(argt) end else formvals[i] = argt.form if has_manual_translit then translit[i] = argt.translit or transliterate(argt.form) end footnotes = iut.combine_footnotes(footnotes, argt.footnotes) end end -- FIXME: Do we want to support other properties? return { form = table.concat(formvals), translit = has_manual_translit and table.concat(translit) or nil, footnotes = footnotes, } end -- Return the formval associated with `rad` (a radical or past/non-past vowel, either a string or form object). local function rget(rad) if type(rad) == "string" then return rad elseif type(rad) == "table" then return rad.form else error(("Internal error: Unexpected type for radical or past/non-past vowel: %s"):format(dump(rad))) end end export.rget = rget -- for use in [[Module:ar-headword]] -- Return the footnotes associated with `rad` (a radical or past/non-past vowel, either a string or form object). local function rget_footnotes(rad) if type(rad) == "string" then return nil elseif type(rad) == "table" then return rad.footnotes else error(("Internal error: Unexpected type for radical or past/non-past vowel: %s"):format(dump(rad))) end end -- Return true if the formval associated with `rad` (a radical or past/non-past vowel, either a string or form object) -- is `val`. local function req(rad, val) return rget(rad) == val end -- Map `vow` (a past/non-past vowel, either a string or form object without translit) by passing the formval through -- `fn`. Don't call this on radicals because they may have manual translit and it isn't clear how to handle that. local function map_vowel(vow, fn) if type(vow) == "string" then return fn(vow) elseif type(vow) == "table" then return {form = fn(vow.form), footnotes = vow.footnotes} else error(("Internal error: Unexpected type for past/non-past vowel: %s"):format(dump(vow))) end end local function get_radicals_3(vowel_spec) return vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3, vowel_spec.past, vowel_spec.nonpast end local function get_radicals_4(vowel_spec) return vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3, vowel_spec.rad4 end local function is_final_weak(base, vowel_spec) return vowel_spec.weakness == "final-weak" or base.form == "XV" end --W: Create a simple link local function link_term_simple(text) return "[[" .. text .. "]]" end local function link_term(text, face, id) return m_links.full_link({lang = lang, term = text, tr = "-", id = id}, face) end local function tag_text(text, tag, class) return m_links.full_link({lang = lang, alt = text, tr = "-"}) end local function track(page) require("Module:debug/track")("ar-verb/" .. page) return true end local function track_if_ar_conj(base, page) if base.alternant_multiword_spec.source_template == "ar-conj" then require("Module:debug/track")("ar-verb/" .. page) end return true end local function reorder_shadda(word) -- shadda+short-vowel (including tanwīn vowels, i.e. -an -in -un) gets -- replaced with short-vowel+shadda during NFC normalisation, which -- MediaWiki does for all Unicode strings; however, it makes various -- processes inconvenient, so undo it. word = rsub(word, "(" .. DIACRITIC_ANY_BUT_SH .. ")" .. SH, SH .. "%1") return word end local function apply_nfc_shadda(word) -- Apply NFC-style normalization: reorder shadda+vowel to vowel+shadda -- to match MediaWiki's automatic NFC normalization. This reverses the -- internal shadda+vowel format used during processing. word = rsub(word, SH .. "(" .. DIACRITIC_ANY_BUT_SH .. ")", "%1" .. SH) return word end ------------------------------------------------------------------------------- -- Basic functions to inflect tenses -- ------------------------------------------------------------------------------- local function skip_slot(base, slot, allow_overrides) if base.slot_explicitly_missing[slot] then return true end if not allow_overrides and base.slot_overrides[slot] and not base.slot_override_uses_default[slot] then -- Skip any slots for which there are overrides, except those that request the default value using +, ++, etc. return true end if base.passive == "nopass" and (slot == "pp" or slot:find("_pass")) then return true elseif base.passive == "onlypass" and slot ~= "pp" and slot ~= "vn" and not slot:find("_pass") then return true elseif base.passive == "ipass" and slot:find("_pass") and not slot:find("3ms") then return true elseif base.passive == "onlypass-impers" and slot ~= "pp" and slot ~= "vn" and (not slot:find("_pass") or slot:find("_pass") and not slot:find("3ms")) then return true end if base.nopast and slot:find("^past_") then return true end if base.noimp and slot:find("^imp_") then return true end if base.no_nonpast and (slot:find("^ind_") or slot:find("^sub_") or slot:find("^juss")) then return true end return false end local function basic_combine_stem_ending(stem, ending) return stem .. ending end local function basic_combine_stem_ending_tr(stem, ending) return stem .. ending end -- Concatenate `prefixes`, `stems` and `endings` (any of which may be an abbreviate form list, i.e. strings, form -- objects or lists of strings or form objects) and store into `slot`. If a user-supplied override exists for the slot, -- nothing will happen unless `allow_overrides` is provided. local function add3(base, slot, prefixes, stems, endings, allow_overrides) if skip_slot(base, slot, allow_overrides) then return end -- Optimization since the prefixes are almost always single strings. if type(prefixes) == "string" then local function do_combine_stem_ending(stem, ending) return prefixes .. stem .. ending end local function do_combine_stem_ending_tr(stem, ending) return transliterate(prefixes) .. stem .. ending end iut.add_forms(base.forms, slot, stems, endings, do_combine_stem_ending, transliterate, do_combine_stem_ending_tr, base.form_footnotes) else iut.add_multiple_forms(base.forms, slot, {prefixes, stems, endings}, basic_combine_stem_ending, transliterate, basic_combine_stem_ending_tr, base.form_footnotes) end end -- Insert one or more forms in `form_or_forms` into `slot`. `form_or_forms` is an abbreviated form list (see comment at -- top of [[Module:inflection utilities]]). If a user-supplied override exists for the slot, nothing will happen unless -- `allow_overrides` is provided. BEWARE: One form object should never occur in two different slots, or twice in a given -- slot; if taking a form object from an existing slot, make sure to shallowCopy() it. local function insert_form_or_forms(base, slot, form_or_forms, allow_overrides, uncertain) if not skip_slot(base, slot, allow_overrides) then -- Some optimizations of the most common case of inserting a single string. if type(form_or_forms) == "string" and not base.form_footnotes then form_or_forms = {form = form_or_forms, uncertain = uncertain} iut.insert_form(base.forms, slot, form_or_forms) else local list = iut.convert_to_general_list_form(form_or_forms, base.form_footnotes) if uncertain then for _, formobj in ipairs(list) do formobj.uncertain = true end end iut.insert_forms(base.forms, slot, list) end end end -- Insert `string_or_form` into both the ap2 and pp2 slots, shallowCopying a form object to make sure no form objects -- occur in two slots. local function insert_ap2_pp2(base, string_or_form) insert_form_or_forms(base, "ap2", string_or_form) if type(string_or_form) == "table" then string_or_form = m_table.shallowCopy(string_or_form) end insert_form_or_forms(base, "pp2", string_or_form) end -- Convert `stemforms` (a string, a form object, or a list of strings and/or form objects) into "general form" (a list -- of form objects) and map `fn` over the list of objects. `fn` is passed two arguments (form value and translit) and -- should likewise return the new form value and translit. Footnotes will be preserved. FIXME: Preserve other metadata. local function map_general(stemforms, fn) return iut.map_forms(iut.convert_to_general_list_form(stemforms), fn) end -- Similar to map_general() except that `fn` should return a single value (one or more strings or form objects), instead -- of two values (form value and translit), and the resulting value(s) from all calls to `fn` will be flattened to -- construct the overall return value. Footnotes will be preserved. FIXME: Preserve other metadata. local function flatmap_general(stemforms, fn) return iut.flatmap_forms(iut.convert_to_general_list_form(stemforms), fn) end -- Given user-supplied stem overrides in `base`, construct any derived stem overrides (e.g. vowel-specific or -- consonant-specific variants), and truncate initial y-/ي- in any non-past overrides. local function construct_stems(base) local stems = base.stem_overrides stems.past_v = stems.past_v or stems.past stems.past_c = stems.past_c or stems.past stems.past_pass_v = stems.past_pass_v or stems.past_pass stems.past_pass_c = stems.past_pass_c or stems.past_pass stems.nonpast_v = stems.nonpast_v or stems.nonpast stems.nonpast_c = stems.nonpast_c or stems.nonpast stems.nonpast_pass_v = stems.nonpast_pass_v or stems.nonpast_pass stems.nonpast_pass_c = stems.nonpast_pass_c or stems.nonpast_pass stems.imp_v = stems.imp_v or stems.imp stems.imp_c = stems.imp_c or stems.imp local function truncate_nonpast_initial_cons(stem_type, form, translit) if form == "+" then return form, translit end if not form:find("^" .. Y) then error(("Form value %s for stem type '%s' should begin with ي"):format(form, stem_type)) end form = form:gsub("^" .. Y, "") if translit then if not translit:find("^y") then error(("Translit value %s for stem type '%s' should begin with y"):format(translit, stem_type)) end translit = translit:gsub("^y", "") end return form, translit end for _, nonpast_stem_type in ipairs { "nonpast_v", "nonpast_c", "nonpast_pass_v", "nonpast_pass_c" } do if stems[nonpast_stem_type] then stems[nonpast_stem_type] = map_general(stems[nonpast_stem_type], function(form, translit) return truncate_nonpast_initial_cons(nonpast_stem_type, form, translit) end) end end end -- Given user-specified overrides for stem `stemname`, return overrides with occurrences of + replaced by -- `default_stem`. If no overrides, return `default_stem`, or {} if no default. local function override_stem_if_needed(base, stemname, default_stem) local overrides = base.stem_overrides[stemname] if not overrides then return default_stem or {} end return map_general(overrides, function(form, translit) if form ~= "+" and default_indicator_to_active_participle_slot[form] then error(("Stem overrides cannot use secondary default indicators but saw %s in stem override '%s'"):format( form, stemname)) end if form == "+" then if translit then error(("Cannot supply manual translit along with + for stem override '%s'"):format(stemname)) end if not default_stem then error(("Cannot use + for stem override '%s' because no default is available"):format(stemname)) end if type(default_stem) ~= "string" then error(("Internal error: Default stem for '%s' is not a string: %s"):format(stemname, dump(default_stem))) end return default_stem end return form, translit end) end ------------------------------------------------------------------------------- -- Properties of different verbal forms -- ------------------------------------------------------------------------------- local allowed_vforms = {"I", "II", "III", "IV", "V", "VI", "VII", "VIII", "IX", "X", "XI", "XII", "XIII", "XIV", "XV", "Iq", "IIq", "IIIq", "IVq"} local allowed_vforms_set = m_table.listToSet(allowed_vforms) local allowed_vforms_with_weakness = m_table.shallowCopy(allowed_vforms) -- The user needs to be able to explicitly specify that a form-I verb (specifically one whose initial radical is و) is -- sound. Cf. wajiʕa yawjaʕu (not #yajaʕu) "to ache, to hurt". In general, i~a and u~u verbs whose initial radical is و -- seem to not assimilate the first radical; cf. وقح "to be shameless", variously waqaḥa~yaqiḥu, waquḥa~yawquḥu and -- waqiḥa~yawqaḥu, whereas a~i verbs (wafaḍa~yafiḍu "to rush"), i~i verbs (wafiqa~yafiqu "to be proper, to be suitable") -- and a~a verbs (waḍaʕa~yaḍaʕu "to set down, to place") do assimilate. But there are naturally exceptions, e.g. -- waṭiʔa~yaṭaʔu "to tread, to trample"; wasiʕa~yasaʕu "to be spacious; to be well-off"; waṯiʔa~yaṯaʔu "to get bruised, -- to be sprained". Also beware of waniya~yawnā "to be faint; to languish", which is sound in the first radical and -- final-weak in the last radical. Nonetheless, the regularity of the patterns mentioned above suggest we should provide -- them as defaults. -- Note that there are other cases of unexpectedly sound verbs, e.g. izdawaja~yazdawiju "to be in pairs", layisa~yalyasu -- "to be valiant, to be brave", ʔaḥwaja~yuḥwiju "to need", istahwana~yastahwinu "to consider easy", sawisa~yaswasu "to -- be or become moth-eaten or worm-eaten" (vs. sāsa~yasūsu "to govern, to rule" from the same radicals), ʕawira~yaʕwaru -- "to be one-eyed", istajwaba~yastajwibu "to interrogate", etc. But in these cases there is no need for explicit user -- specification as the lemma itself specifies the unexpected soundness. for _, form_with_weakness in ipairs { "I-sound", "I-assimilated", "none-sound", "none-hollow", "none-geminate", "none-final-weak" } do table.insert(allowed_vforms_with_weakness, form_with_weakness) end local allowed_vforms_with_weakness_set = m_table.listToSet(allowed_vforms_with_weakness) local function vform_supports_final_weak(vform) return vform ~= "XI" and vform ~= "XV" and vform ~= "IVq" end local function vform_supports_geminate(vform) return vform == "I" or vform == "III" or vform == "IV" or vform == "VI" or vform == "VII" or vform == "VIII" or vform == "X" end local function vform_supports_hollow(vform) return vform == "I" or vform == "IV" or vform == "VII" or vform == "VIII" or vform == "X" end local function vform_probably_impersonal_passive(vform, weakness, past_vowel, nonpast_vowel) return vform == "I" and req(past_vowel, I) or vform == "V" or vform == "VI" or vform == "X" or vform == "IIq" end local function vform_probably_full_passive(vform) return vform == "II" or vform == "III" or vform == "IV" or vform == "Iq" end local function vform_probably_no_passive(vform, weakness, past_vowel, nonpast_vowel) return vform == "I" and req(past_vowel, U) or vform == "VII" or vform == "IX" or vform == "XI" or vform == "XII" or vform == "XIII" or vform == "XIV" or vform == "XV" or vform == "IIIq" or vform == "IVq" end -- Active vforms II, III, IV, Iq use non-past prefixes in -u- instead of -a-. local function prefix_vowel_from_vform(vform) if vform == "II" or vform == "III" or vform == "IV" or vform == "Iq" then return "u" else return "a" end end -- True if the active non-past takes a-vocalization rather than i-vocalization in its last syllable. local function vform_nonpast_a_vowel(vform) return vform == "V" or vform == "VI" or vform == "XV" or vform == "IIq" end -- True if the `passive` spec indicates a passive-only verb. local function is_passive_only(passive) return passive == "onlypass" or passive == "onlypass-impers" end export.is_passive_only = is_passive_only -- for use in [[Module:ar-headword]] ------------------------------------------------------------------------------- -- Properties of specific sounds -- ------------------------------------------------------------------------------- -- Is radical wāw (و) or yāʾ (ي)? local function is_waw_ya(rad) return req(rad, W) or req(rad, Y) end -- Check that radical is wāw (و) or yāʾ (ي), error if not local function check_waw_ya(rad) if not is_waw_ya(rad) then error("Expecting weak radical: '" .. rget(rad) .. "' should be " .. W .. " or " .. Y) end end -- Form-I verb حيّ or حيي and form-X verb استحيا or استحى local function hayy_radicals(rad1, rad2, rad3) return req(rad1, "ح") and req(rad2, Y) and is_waw_ya(rad3) end -- FUCK ME HARD. "Lua error at line 1514: main function has more than 200 local variables". local function create_conjugations() ------------------------------------------------------------------------------- -- Radicals associated with various irregular verbs -- ------------------------------------------------------------------------------- -- Form-I verb أخذ or form-VIII verb اتخذ local function axadh_radicals(rad1, rad2, rad3) return req(rad1, HAMZA) and req(rad2, "خ") and req(rad3, "ذ") end -- Form-I verb whose imperative has a reduced form: أكل and أخذ and أمر. Return "shortonly" if only -- short-form imperatives exist (أكل and أخذ) or "shortlong" if long-form imperatives also exist (أمر); -- they are used after a clitic like فَ and وَ. local function reduced_imperative_verb(rad1, rad2, rad3) return axadh_radicals(rad1, rad2, rad3) and "shortonly" or req(rad1, HAMZA) and req(rad2, "ك") and req(rad3, "ل") and "shortonly" or req(rad1, HAMZA) and req(rad2, "م") and req(rad3, "ر") and "shortlong" end -- Form-I verb رأى and form-IV verb أرى local function raa_radicals(rad1, rad2, rad3) return req(rad1, "ر") and req(rad2, HAMZA) and is_waw_ya(rad3) end -- Form-I verb سأل local function saal_radicals(rad1, rad2, rad3) return req(rad1, "س") and req(rad2, HAMZA) and req(rad3, "ل") end -- Form-I verb كان local function kaan_radicals(rad1, rad2, rad3) return req(rad1, "ك") and req(rad2, W) and req(rad3, N) end ------------------------------------------------------------------------------- -- Sets of past endings -- ------------------------------------------------------------------------------- -- The 13 endings of the sound/hollow/geminate past tense. local past_endings = { -- singular SK .. TU, SK .. TA, SK .. "تِ", A, A .. "تْ", --dual SK .. "تُمَا", AA, A .. "تَا", -- plural SK .. "نَا", SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this SK .. "تُن" .. SH .. A, UU .. ALIF, SK .. "نَ" } -- Make endings for final-weak past in -aytu or -awtu. AYAW is AY or AW as appropriate. Note that AA and AW are -- global variables. local function make_past_endings_ay_aw(ayaw, third_sg_masc) return { -- singular ayaw .. SK .. TU, ayaw .. SK .. TA, ayaw .. SK .. "تِ", third_sg_masc, A .. "تْ", --dual ayaw .. SK .. "تُمَا", ayaw .. AA, A .. "تَا", -- plural ayaw .. SK .. "نَا", ayaw .. SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this ayaw .. SK .. "تُن" .. SH .. A, AW .. SK .. ALIF, ayaw .. SK .. "نَ" } end -- past final-weak -aytu endings local past_endings_ay = make_past_endings_ay_aw(AY, AAMAQ) -- past final-weak -awtu endings local past_endings_aw = make_past_endings_ay_aw(AW, AA) -- used for alternative endings for form-X geminate verbs like اِسْتَمَرَّ local past_endings_ay_12_person_only = { -- singular AY .. SK .. TU, AY .. SK .. TA, AY .. SK .. "تِ", {}, {}, --dual AY .. SK .. "تُمَا", {}, {}, -- plural AY .. SK .. "نَا", AY .. SK .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this AY .. SK .. "تُن" .. SH .. A, {}, {}, } -- Make endings for final-weak past in -ītu or -ūtu. IIUU is ī or ū as appropriate. Note that AA and UU are global -- variables. local function make_past_endings_ii_uu(iiuu) return { -- singular iiuu .. TU, iiuu .. TA, iiuu .. "تِ", iiuu .. A, iiuu .. A .. "تْ", --dual iiuu .. "تُمَا", iiuu .. AA, iiuu .. A .. "تَا", -- plural iiuu .. "نَا", iiuu .. "تُمْ", -- shadda + vowel diacritic ends up in the wrong order due to Unicode -- bug, so keep them separate to avoid this iiuu .. "تُن" .. SH .. A, UU .. ALIF, iiuu .. "نَ" } end -- past final-weak -ītu endings local past_endings_ii = make_past_endings_ii_uu(II) -- past final-weak -ūtu endings local past_endings_uu = make_past_endings_ii_uu(UU) ------------------------------------------------------------------------------- -- Sets of non-past prefixes and endings -- ------------------------------------------------------------------------------- local nonpast_prefix_consonants = { -- singular HAMZA, T, T, Y, T, -- dual T, Y, T, -- plural N, T, T, Y, Y } -- There are only five distinct endings in all non-past verbs. Make any set of non-past endings given these five -- distinct endings. local function make_nonpast_endings(null, fem, dual, pl, fempl) return { -- singular null, null, fem, null, null, -- dual dual, dual, dual, -- plural null, pl, fempl, pl, fempl } end -- endings for non-past indicative local ind_endings = make_nonpast_endings( U, II .. NA, AANI, UU .. NA, SK .. NA ) -- Make the endings for non-past subjunctive/jussive, given the vowel diacritic used in "null" endings -- (1s/2ms/3ms/3fs/1p). local function make_sub_juss_endings(dia_null) return make_nonpast_endings( dia_null, II, AA, UU .. ALIF, SK .. NA ) end -- endings for non-past subjunctive local sub_endings = make_sub_juss_endings(A) -- endings for non-past jussive local juss_endings = make_sub_juss_endings(SK) -- endings for alternative geminate non-past jussive in -a; same as subjunctive local juss_endings_alt_a = sub_endings -- endings for alternative geminate non-past jussive in -i local juss_endings_alt_i = make_sub_juss_endings(I) -- Endings for final-weak non-past indicative in -ā. Note that AY, AW and AAMAQ are global variables. local ind_endings_aa = make_nonpast_endings( AAMAQ, AYSK .. NA, AY .. AANI, AWSK .. NA, AYSK .. NA ) -- Make endings for final-weak non-past indicative in -ī or -ū; IIUU is ī or ū as appropriate. Note that II and UU -- are global variables. local function make_ind_endings_ii_uu(iiuu) return make_nonpast_endings( iiuu, II .. NA, iiuu .. AANI, UU .. NA, iiuu .. NA ) end -- endings for final-weak non-past indicative in -ī local ind_endings_ii = make_ind_endings_ii_uu(II) -- endings for final-weak non-past indicative in -ū local ind_endings_uu = make_ind_endings_ii_uu(UU) -- Endings for final-weak non-past subjunctive in -ā. Note that AY, AW, ALIF, AAMAQ are global variables. local sub_endings_aa = make_nonpast_endings( AAMAQ, AYSK, AY .. AA, AWSK .. ALIF, AYSK .. NA ) -- Make endings for final-weak non-past subjunctive in -ī or -ū. IIUU is ī or ū as appropriate. Note that AA, II, -- UU, ALIF are global variables. local function make_sub_endings_ii_uu(iiuu) return make_nonpast_endings( iiuu .. A, II, iiuu .. AA, UU .. ALIF, iiuu .. NA ) end -- endings for final-weak non-past subjunctive in -ī local sub_endings_ii = make_sub_endings_ii_uu(II) -- endings for final-weak non-past subjunctive in -ū local sub_endings_uu = make_sub_endings_ii_uu(UU) -- endings for final-weak non-past jussive in -ā local juss_endings_aa = make_nonpast_endings( A, AYSK, AY .. AA, AWSK .. ALIF, AYSK .. NA ) -- Make endings for final-weak non-past jussive in -ī or -ū. IU is short i or u, IIUU is long ī or ū as appropriate. -- Note that AA, II, UU, ALIF are global variables. local function make_juss_endings_ii_uu(iu, iiuu) return make_nonpast_endings( iu, II, iiuu .. AA, UU .. ALIF, iiuu .. NA ) end -- endings for final-weak non-past jussive in -ī local juss_endings_ii = make_juss_endings_ii_uu(I, II) -- endings for final-weak non-past jussive in -ū local juss_endings_uu = make_juss_endings_ii_uu(U, UU) ------------------------------------------------------------------------------- -- Sets of imperative endings -- ------------------------------------------------------------------------------- -- Extract the second person jussive endings to get corresponding imperative endings. local function imperative_endings_from_jussive(endings) return {endings[2], endings[3], endings[6], endings[10], endings[11]} end -- normal imperative endings local imp_endings = imperative_endings_from_jussive(juss_endings) -- alternative geminate imperative endings in -a local imp_endings_alt_a = imperative_endings_from_jussive(juss_endings_alt_a) -- alternative geminate imperative endings in -i local imp_endings_alt_i = imperative_endings_from_jussive(juss_endings_alt_i) -- final-weak imperative endings in -ā local imp_endings_aa = imperative_endings_from_jussive(juss_endings_aa) -- final-weak imperative endings in -ī local imp_endings_ii = imperative_endings_from_jussive(juss_endings_ii) -- final-weak imperative endings in -ū local imp_endings_uu = imperative_endings_from_jussive(juss_endings_uu) ------------------------------------------------------------------------------- -- Basic functions to inflect tenses -- ------------------------------------------------------------------------------- -- Add to `base` the inflections for the tense indicated by `tense` (the prefix in the slot names, e.g. 'past' -- or 'juss_pass'), formed by combining the `prefixes`, `stems` and `endings`. Each of `prefixes`, `stems` and -- `endings` is either a sequence of 5 (for the imperative) or 13 (for other tenses) abbreviated form lists (each of -- which is either a string, a form object, or a list of strings and/or form objects; see -- [[Module:inflection utilities]] for more info). Alternatively, any of `prefixes`, `stems` or `endings` can be a -- single-element list containing an abbreviated form list, with an additional key `all_same` set to true, or (as a -- special case) a single string; in the latter cases, the same value is used for all 5 or 13 slots. If existing -- inflections already exist, they will be added to, not overridden. `pnums` is the list of person/number slot name -- suffixes, which must match up with the elements in `prefixes`, `stems` and `endings` (i.e. 5 for imperative, 13 -- otherwise). local function inflect_tense_1(base, tense, prefixes, stems, endings, pnums) if not prefixes or not stems or not endings then return end local function verify_affixes(affixname, affixes) local function interr(msg) error(("Internal error: For tense '%s', '%s' %s: %s"):format(tense, affixname, msg, dump(affixes))) end if type(affixes) == "string" then -- do nothing elseif type(affixes) ~= "table" then interr("is not a table or string") elseif affixes.all_same then if #affixes ~= 1 then interr(("with all_same = true should have length 1 but has length %s"):format(#affixes)) end else if #affixes ~= #pnums then interr(("should have length %s but has length %s"):format(#pnums, #affixes)) end end end verify_affixes("prefixes", prefixes) verify_affixes("stems", stems) verify_affixes("endings", endings) local function get_affix(affixes, i) if type(affixes) == "string" then return affixes elseif affixes.all_same then return affixes[1] else return affixes[i] end end for i, pnum in ipairs(pnums) do local prefix = get_affix(prefixes, i) local stem = get_affix(stems, i) local ending = get_affix(endings, i) local slot = tense .. "_" .. pnum add3(base, slot, prefix, stem, ending) end end -- Add to `base` the inflections for the tense indicated by `tense` (the prefix in the slot names, e.g. 'past' -- or 'juss_pass'), formed by combining the `prefixes`, `stems` and `endings`. This is a simple wrapper around -- inflect_tense_1() that applies to all tenses other than the imperative; see inflect_tense_1() for more -- information about the parameters. local function inflect_tense(base, tense, prefixes, stems, endings) inflect_tense_1(base, tense, prefixes, stems, endings, all_person_number_list) end -- Like inflect_tense() but for the imperative, which has only five parts instead of 13 and no prefixes. local function inflect_tense_imp(base, stems, endings) inflect_tense_1(base, "imp", "", stems, endings, imp_person_number_list) end ------------------------------------------------------------------------------- -- Functions to inflect the past tense -- ------------------------------------------------------------------------------- -- Generate past verbs using specified vowel and consonant stems; works for sound, assimilated, hollow, and geminate -- verbs, active and passive. local function past_2stem_conj(base, tense, v_stem, c_stem, footnote_12) local passive = tense:find("_pass") and "_pass" or "" -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "past" .. passive .. "_v", v_stem) local c_stem_12 = c_stem if footnote_12 then c_stem_12 = iut.combine_form_and_footnotes(c_stem_12, footnote_12) end c_stem_12 = override_stem_if_needed(base, "past" .. passive .. "_c", c_stem_12) local c_stem_3 = override_stem_if_needed(base, "past" .. passive .. "_c", c_stem) inflect_tense(base, tense, "", { -- singular c_stem_12, c_stem_12, c_stem_12, v_stem, v_stem, --dual c_stem_12, v_stem, v_stem, -- plural c_stem_12, c_stem_12, c_stem_12, v_stem, c_stem_3 }, past_endings) end -- Generate past verbs using single specified stem; works for sound and assimilated verbs, active and passive. local function past_1stem_conj(base, tense, stem) past_2stem_conj(base, tense, stem, stem) end ------------------------------------------------------------------------------- -- Functions to inflect non-past tenses -- ------------------------------------------------------------------------------- -- Generate non-past conjugation, with two stems, for vowel-initial and consonant-initial endings, respectively. -- Useful for active and passive; for all forms; for all weaknesses (sound, assimilated, hollow, final-weak and -- geminate) and for all types of non-past (indicative, subjunctive, jussive) except for the imperative. (There is a -- separate wrapper function below for geminate jussives because they have three alternants.) Both stems may be the -- same, e.g. for sound verbs. -- `prefix_vowel` will be either "a" or "u". `endings` should be an array of 13 items. If `endings` is nil or -- omitted, infer the endings from the tense. If `jussive` is true, or `endings` is nil and `tense` indicatives -- jussive, use the jussive pattern of vowel/consonant stems (different from the normal ones). local function nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, endings, jussive) local passive = tense:find("_pass") and "_pass" or "" -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "nonpast" .. passive .. "_v", v_stem and q(dia[prefix_vowel], v_stem) or nil) c_stem = override_stem_if_needed(base, "nonpast" .. passive .. "_c", c_stem and q(dia[prefix_vowel], c_stem) or nil) if not endings then if tense:find("^ind") then endings = ind_endings elseif tense:find("^sub") then endings = sub_endings elseif tense:find("^juss") then jussive = true endings = juss_endings else error("Internal error: Unrecognized tense '" .. tense .."'") end end if not jussive then inflect_tense(base, tense, nonpast_prefix_consonants, { -- singular v_stem, v_stem, v_stem, v_stem, v_stem, --dual v_stem, v_stem, v_stem, -- plural v_stem, v_stem, c_stem, v_stem, c_stem }, endings) else inflect_tense(base, tense, nonpast_prefix_consonants, { -- singular -- 'adlul, tadlul, tadullī, yadlul, tadlul c_stem, c_stem, v_stem, c_stem, c_stem, --dual -- tadullā, yadullā, tadullā v_stem, v_stem, v_stem, -- plural -- nadlul, tadullū, tadlulna, yadullū, yadlulna c_stem, v_stem, c_stem, v_stem, c_stem }, endings) end end -- Generate non-past conjugation with one stem (no distinct stems for vowel-initial and consonant-initial endings). -- See nonpast_2stem_conj(). local function nonpast_1stem_conj(base, tense, prefix_vowel, stem, endings, jussive) nonpast_2stem_conj(base, tense, prefix_vowel, stem, stem, endings, jussive) end -- Generate active/passive jussive geminative. There are three alternants, two with terminations -a and -i and one -- in a null termination with a distinct pattern of vowel/consonant stem usage. See nonpast_2stem_conj() for a -- description of the arguments. local function jussive_gem_conj(base, tense, prefix_vowel, v_stem, c_stem) -- alternative in -a nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings_alt_a) -- alternative in -i nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings_alt_i) -- alternative in -null; requires different combination of v_stem and -- c_stem since the null endings require the c_stem (e.g. "tadlul" here) -- whereas the corresponding endings above in -a or -i require the v_stem -- (e.g. "tadulla, tadulli" above) nonpast_2stem_conj(base, tense, prefix_vowel, v_stem, c_stem, juss_endings, "jussive") end ------------------------------------------------------------------------------- -- Functions to inflect the imperative -- ------------------------------------------------------------------------------- -- Generate imperative conjugation, with two stems, for vowel-initial and consonant-initial endings, respectively. -- Useful for all forms, and for all weaknesses other than final-weak. Note that the two stems may be the same -- (specifically for sound and assimilated verbs). If `endings` is nil or omitted, use `imp_endings`. If `alt_gem` -- is specified, use the pattern of vowel and consonant stems appropriate for the alternative geminate imperatives -- that use a null ending of -a or -i instead of an empty ending. local function make_2stem_imperative(base, v_stem, c_stem, endings, alt_gem) endings = endings or imp_endings -- Override stems with user-specified stems if available. v_stem = override_stem_if_needed(base, "imp_v", v_stem) c_stem = override_stem_if_needed(base, "imp_c", c_stem) if alt_gem then inflect_tense_imp(base, {v_stem, v_stem, v_stem, v_stem, c_stem}, endings) else inflect_tense_imp(base, {c_stem, v_stem, v_stem, v_stem, c_stem}, endings) end end -- Generate imperative parts for sound or assimilated verbs. local function make_1stem_imperative(base, stem) make_2stem_imperative(base, stem, stem) end -- Generate imperative parts for geminate verbs form I (also IV, VII, VIII, X). local function make_gem_imperative(base, v_stem, c_stem) make_2stem_imperative(base, v_stem, c_stem, imp_endings_alt_a, "alt gem") make_2stem_imperative(base, v_stem, c_stem, imp_endings_alt_i, "alt gem") make_2stem_imperative(base, v_stem, c_stem) end ------------------------------------------------------------------------------- -- Functions to inflect entire verbs -- ------------------------------------------------------------------------------- -- Generate finite parts of a sound verb (also works for assimilated verbs) from five stems (past and non-past, -- active and passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u"). local function make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel) past_1stem_conj(base, "past", past_stem) past_1stem_conj(base, "past_pass", past_pass_stem) nonpast_1stem_conj(base, "ind", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "sub", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "juss", prefix_vowel, nonpast_stem) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem) make_1stem_imperative(base, imp_stem) end local function past_final_weak_endings_from_vowel(vowel) if vowel == "ay" then return past_endings_ay elseif vowel == "aw" then return past_endings_aw elseif vowel == "ī" then return past_endings_ii elseif vowel == "ū" then return past_endings_uu elseif not vowel then return nil else error(("Internal error: Unrecognized past final-weak vowel spec '%s'"):format(vowel)) end end local function nonpast_final_weak_endings_from_vowel(vowel) if vowel == "ā" then return ind_endings_aa, sub_endings_aa, juss_endings_aa, imp_endings_aa elseif vowel == "ī" then return ind_endings_ii, sub_endings_ii, juss_endings_ii, imp_endings_ii elseif vowel == "ū" then return ind_endings_uu, sub_endings_uu, juss_endings_uu, imp_endings_uu elseif not vowel then return nil else error(("Internal error: Unrecognized non-past final-weak vowel spec '%s'"):format(vowel)) end end -- Generate finite parts of a final-weak verb from five stems (past and non-past, active and passive, plus -- imperative), the past active ending vowel (ay, aw, ī or ū), the non-past active ending vowel (ā, ī or ū) and the -- prefix vowel in the active non-past (a or u). local function make_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, past_ending_vowel, nonpast_ending_vowel, prefix_vowel) past_stem = override_stem_if_needed(base, "past", past_stem) past_pass_stem = override_stem_if_needed(base, "past_pass", past_pass_stem) -- Don't call override_stem_if_needed() here for non-past stems; it's called in nonpast_2stem_conj(). imp_stem = override_stem_if_needed(base, "imp", imp_stem) -- + not supported for ending vowel overrides past_ending_vowel = base.stem_overrides.past_final_weak_vowel or past_ending_vowel local past_pass_ending_vowel = base.stem_overrides.past_pass_final_weak_vowel or "ī" nonpast_ending_vowel = base.stem_overrides.nonpast_final_weak_vowel or nonpast_ending_vowel local nonpast_pass_ending_vowel = base.stem_overrides.nonpast_pass_final_weak_vowel or "ā" local past_endings = past_final_weak_endings_from_vowel(past_ending_vowel) local past_pass_endings = past_final_weak_endings_from_vowel(past_pass_ending_vowel) local ind_endings, sub_endings, juss_endings, imp_endings = nonpast_final_weak_endings_from_vowel(nonpast_ending_vowel) local ind_pass_endings, sub_pass_endings, juss_pass_endings = nonpast_final_weak_endings_from_vowel(nonpast_pass_ending_vowel) inflect_tense(base, "past", "", {past_stem, all_same = 1}, past_endings) inflect_tense(base, "past_pass", "", {past_pass_stem, all_same = 1}, past_pass_endings) nonpast_1stem_conj(base, "ind", prefix_vowel, nonpast_stem, ind_endings) nonpast_1stem_conj(base, "sub", prefix_vowel, nonpast_stem, sub_endings) nonpast_1stem_conj(base, "juss", prefix_vowel, nonpast_stem, juss_endings) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem, ind_pass_endings) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem, sub_pass_endings) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem, juss_pass_endings) inflect_tense_imp(base, {imp_stem, all_same = 1}, imp_endings) end -- Generate finite parts of an augmented (form II+) final-weak verb from five stems (past and non-past, active and -- passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u") and a flag indicating if it -- behaves like a form V/VI verb in taking non-past endings in -ā instead of -ī. local function make_augmented_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel, form56) make_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, "ay", form56 and "ā" or "ī", prefix_vowel) end -- Generate finite parts of an augmented (form II+) sound or final-weak verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (active past stem minus last syllable (= -al or -ā)); -- * `nonpast_stem_base` (non-past stem minus last syllable (= -al/-il or -ā/-ī); -- * `past_pass_stem_base` (passive past stem minus last syllable (= -il or -ī)); -- * `vn` (verbal noun). local function make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) insert_form_or_forms(base, "vn", vn) local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local final_weak = is_final_weak(base, vowel_spec) local prefix_vowel = prefix_vowel_from_vform(base.verb_form) local form56 = vform_nonpast_a_vowel(base.verb_form) local a_base_suffix = final_weak and "" or q(A, lastrad) local i_base_suffix = final_weak and "" or q(I, lastrad) -- past and non-past stems, active and passive local past_stem = q(past_stem_base, a_base_suffix) -- In forms 5 and 6, non-past has /a/ as last stem vowel in the non-past -- in both active and passive, but /i/ in the active participle and /a/ -- in the passive participle. Elsewhere, consistent /i/ in active non-past -- and participle, consistent /a/ in passive non-past and participle. -- Hence, forms 5 and 6 differ only in the non-past active (but not -- active participle), so we have to split the finite non-past stem and -- active participle stem. local nonpast_stem = q(nonpast_stem_base, form56 and a_base_suffix or i_base_suffix) local ap_stem = q(nonpast_stem_base, i_base_suffix) local past_pass_stem = q(past_pass_stem_base, i_base_suffix) local nonpast_pass_stem = q(nonpast_stem_base, a_base_suffix) -- imperative stem local imp_stem = q(past_stem_base, form56 and a_base_suffix or i_base_suffix) -- make parts if final_weak then make_augmented_final_weak_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel, form56) else make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, prefix_vowel) end -- active and passive participle if final_weak then insert_form_or_forms(base, "ap", q(MU, ap_stem, IN)) insert_form_or_forms(base, "pp", q(MU, nonpast_pass_stem, AN, AMAQ)) else insert_form_or_forms(base, "ap", q(MU, ap_stem)) insert_form_or_forms(base, "pp", q(MU, nonpast_pass_stem)) end end -- Generate finite parts of a hollow or geminate verb from ten stems (vowel and consonant stems for each of past and -- non-past, active and passive, plus imperative) plus the prefix vowel in the active non-past ("a" or "u"), plus a -- flag indicating if we are a geminate verb. local function make_hollow_geminate_verb(base, geminate, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel, altgem_note) past_2stem_conj(base, "past", past_v_stem, past_c_stem, altgem_note) past_2stem_conj(base, "past_pass", past_pass_v_stem, past_pass_c_stem) nonpast_2stem_conj(base, "ind", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "sub", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "ind_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) nonpast_2stem_conj(base, "sub_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) if geminate then jussive_gem_conj(base, "juss", prefix_vowel, nonpast_v_stem, nonpast_c_stem) jussive_gem_conj(base, "juss_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) make_gem_imperative(base, imp_v_stem, imp_c_stem) else nonpast_2stem_conj(base, "juss", prefix_vowel, nonpast_v_stem, nonpast_c_stem) nonpast_2stem_conj(base, "juss_pass", "u", nonpast_pass_v_stem, nonpast_pass_c_stem) make_2stem_imperative(base, imp_v_stem, imp_c_stem) end end -- Generate finite parts of an augmented (form II+) hollow verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (invariable part of active past stem); -- * `nonpast_stem_base` (invariable part of nonpast stem); -- * `past_pass_stem_base` (invariable part of passive past stem); -- * `vn` (verbal noun). local function make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) insert_form_or_forms(base, "vn", vn) local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local form410 = base.verb_form == "IV" or base.verb_form == "X" local prefix_vowel = prefix_vowel_from_vform(base.verb_form) local a_base_suffix_v, a_base_suffix_c local i_base_suffix_v, i_base_suffix_c a_base_suffix_v = q(AA, lastrad) -- 'af-āl-a, inf-āl-a a_base_suffix_c = q(A, lastrad) -- 'af-al-tu, inf-al-tu i_base_suffix_v = q(II, lastrad) -- 'uf-īl-a, unf-īl-a i_base_suffix_c = q(I, lastrad) -- 'uf-il-tu, unf-il-tu -- past and non-past stems, active and passive, for vowel-initial and -- consonant-initial endings local past_v_stem = q(past_stem_base, a_base_suffix_v) local past_c_stem = q(past_stem_base, a_base_suffix_c) -- yu-f-īl-u, ya-staf-īl-u but yanf-āl-u, yaft-āl-u local nonpast_v_stem = q(nonpast_stem_base, form410 and i_base_suffix_v or a_base_suffix_v) local nonpast_c_stem = q(nonpast_stem_base, form410 and i_base_suffix_c or a_base_suffix_c) local past_pass_v_stem = q(past_pass_stem_base, i_base_suffix_v) local past_pass_c_stem = q(past_pass_stem_base, i_base_suffix_c) local nonpast_pass_v_stem = q(nonpast_stem_base, a_base_suffix_v) local nonpast_pass_c_stem = q(nonpast_stem_base, a_base_suffix_c) -- imperative stem local imp_v_stem = q(past_stem_base, form410 and i_base_suffix_v or a_base_suffix_v) local imp_c_stem = q(past_stem_base, form410 and i_base_suffix_c or a_base_suffix_c) -- make parts make_hollow_geminate_verb(base, false, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel) -- active participle insert_form_or_forms(base, "ap", q(MU, nonpast_v_stem)) -- passive participle insert_form_or_forms(base, "pp", q(MU, nonpast_pass_v_stem)) end -- Generate finite parts of an augmented (form II+) geminate verb, given: -- * `base` (conjugation data structure); -- * `vowel_spec` (radicals, weakness); -- * `past_stem_base` (invariable part of active past stem; this and the stem bases below will end with a consonant -- for forms IV, X, IVq, and a short vowel for the others); -- * `nonpast_stem_base` (invariable part of nonpast stem); -- * `past_pass_stem_base` (invariable part of passive past stem); -- * `vn` (verbal noun); -- * `altgem_note` (footnote to add to active past 1/2-person forms, when alternative forms are supplied [form X]). local function make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn, altgem_note) insert_form_or_forms(base, "vn", vn) local vform = base.verb_form local lastrad = base.quadlit and vowel_spec.rad4 or vowel_spec.rad3 local prefix_vowel = prefix_vowel_from_vform(vform) local a_base_suffix_v, a_base_suffix_c local i_base_suffix_v, i_base_suffix_c if vform == "IV" or vform == "X" or vform == "IVq" then a_base_suffix_v = q(A, lastrad, SH) -- 'af-all a_base_suffix_c = q(SK, lastrad, A, lastrad) -- 'af-lal i_base_suffix_v = q(I, lastrad, SH) -- yuf-ill i_base_suffix_c = q(SK, lastrad, I, lastrad) -- yuf-lil else a_base_suffix_v = q(lastrad, SH) -- fā-ll, infa-ll a_base_suffix_c = q(lastrad, A, lastrad) -- fā-lal, infa-lal i_base_suffix_v = q(lastrad, SH) -- yufā-ll, yanfa-ll i_base_suffix_c = q(lastrad, I, lastrad) -- yufā-lil, yanfa-lil end -- past and non-past stems, active and passive, for vowel-initial and -- consonant-initial endings local past_v_stem = q(past_stem_base, a_base_suffix_v) local past_c_stem = q(past_stem_base, a_base_suffix_c) local nonpast_v_stem = q(nonpast_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_v or i_base_suffix_v) local nonpast_c_stem = q(nonpast_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_c or i_base_suffix_c) -- NOTE: Formerly had a comment that "vform III and VI passive past do not have contracted parts, only -- uncontracted parts, which are added separately by those functions". This is based on Mace -- "Arabic Verbs and Essential Grammar" (1999) entry 63 (continued), which shows passive ḥūjija but no ḥūjja; -- but that is apparently a mistake, as (1) verb tables in other books do show contracted passive parts for -- these forms; (2) there is no mention of such an exception on p. 99, which explains how geminate ("doubled") -- verbs work (on the contrary, it says "The contracted and uncontracted pairs (see above) are found all -- over Forms III and VI of the doubled verbs"). local past_pass_v_stem = q(past_pass_stem_base, i_base_suffix_v) local past_pass_c_stem = q(past_pass_stem_base, i_base_suffix_c) local nonpast_pass_v_stem = q(nonpast_stem_base, a_base_suffix_v) local nonpast_pass_c_stem = q(nonpast_stem_base, a_base_suffix_c) -- imperative stem local imp_v_stem = q(past_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_v or i_base_suffix_v) local imp_c_stem = q(past_stem_base, vform_nonpast_a_vowel(vform) and a_base_suffix_c or i_base_suffix_c) -- make parts make_hollow_geminate_verb(base, "geminate", past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, prefix_vowel, altgem_note) -- active participle insert_form_or_forms(base, "ap", q(MU, nonpast_v_stem)) -- passive participle insert_form_or_forms(base, "pp", q(MU, nonpast_pass_v_stem)) end ------------------------------------------------------------------------------- -- Conjugation functions for specific conjugation types -- ------------------------------------------------------------------------------- local function form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1) local imp_vowel = map_vowel(nonpast_vowel, function(vow) if vow == A or vow == I then return I elseif vow == U then return U elseif not skip_slot(base, "imp_2ms") then error(("Internal error: Non-past vowel %s isn't a, i, or u, should have been caught earlier"):format( dump(nonpast_vowel))) else -- Passive-only; imperative won't ever be displayed so it doesn't matter. return I end end) -- Mace ("Arabic Verbs and Essentials of Grammar" p. 63: [https://archive.org/details/arabicverbsessen00john/page/62/mode/2up]) -- claims that initial hamza is assimilated/elided into a long vowel in the form-I imperative, but apparently -- this isn't corrrect. local vowel_on_alif = map_vowel(imp_vowel, function(vow) return ALIF .. vow end) return q(vowel_on_alif, rad1, SK) end -- Implement form-I sound or assimilated verb. ASSIMILATED is true for assimilated verbs. local function make_form_i_sound_assimilated_verb(base, vowel_spec, assimilated) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied -- past and non-past stems, active and passive local past_stem = q(rad1, A, rad2, past_vowel, rad3) local nonpast_stem = assimilated and q(rad2, nonpast_vowel, rad3) or q(rad1, SK, rad2, nonpast_vowel, rad3) local past_pass_stem = q(rad1, U, rad2, I, rad3) local nonpast_pass_stem = q(rad1, SK, rad2, A, rad3) -- imperative stem -- check for irregular verb with reduced imperative (أَخَذَ or أَكَلَ or أَمَرَ) local reducedimp = reduced_imperative_verb(rad1, rad2, rad3) if reducedimp then base.irregular = true end local imp_stem_suffix = q(rad2, nonpast_vowel, rad3) local long_imp_stem_base = form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1) local short_imp_stem_base = "" local imp_stem = q((assimilated or reducedimp) and "" or long_imp_stem_base, imp_stem_suffix) -- make parts make_sound_verb(base, past_stem, past_pass_stem, nonpast_stem, nonpast_pass_stem, imp_stem, "a") if reducedimp == "shortlong" then make_1stem_imperative(base, iut.combine_form_and_footnotes(q(long_imp_stem_base, imp_stem_suffix), mw.getCurrentFrame():preprocess("[used especially with a clitic such as {{m|ar|فَ}} or {{m|ar|وَ}}]"))) end -- Check for irregular verb سَأَلَ with alternative jussive and imperative. Calling this after make_sound_verb() -- adds additional entries to the paradigm parts. if saal_radicals(rad1, rad2, rad3) then base.irregular = true nonpast_1stem_conj(base, "juss", "a", "سَل") nonpast_1stem_conj(base, "juss_pass", "u", "سَل") make_1stem_imperative(base, "سَل") end -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, I, rad3)) -- Insert alternative active participle (stative type I) فَعِيل. Since not all verbs have this, we require that -- verbs that do have it specify it explicitly; a shortcut ++ is provided to make this easier (e.g. <ap:++> to -- indicate that the alternative form should be used for the active participle, <ap:+,++> to indicate that both -- forms can be used, and <ap:-> to indicate that there is no active participle). The same form is used for -- secondary default passive participle. insert_ap2_pp2(base, q(rad1, A, rad2, II, rad3)) -- Active participle, stative type II فَعِل (+++). insert_form_or_forms(base, "ap3", q(rad1, A, rad2, I, rad3)) -- Active participle, color/defect أَفْعَل (+cd). insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, A, rad3)) -- Active participle, -ān فَعْلَان (+an). insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, UU, rad3)) end conjugations["I-sound"] = function(base, vowel_spec) make_form_i_sound_assimilated_verb(base, vowel_spec, false) end conjugations["none-sound"] = function(base, vowel_spec) -- All default stems are nil. make_sound_verb(base) end conjugations["none-hollow"] = function(base, vowel_spec) -- All default stems are nil. make_hollow_geminate_verb(base, false) end conjugations["none-geminate"] = function(base, vowel_spec) -- All default stems are nil. make_hollow_geminate_verb(base, "geminate") end conjugations["none-final-weak"] = function(base, vowel_spec) -- All default stems are nil. make_final_weak_verb(base) end conjugations["I-assimilated"] = function(base, vowel_spec) make_form_i_sound_assimilated_verb(base, vowel_spec, "assimilated") end local function make_form_i_hayy_verb(base, vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied base.irregular = true -- past and non-past stems, active and passive, and imperative stem local past_c_stem = "حَيِي" local past_v_stem_long = past_c_stem local past_v_stem_short = "حَيّ" local past_pass_c_stem = "حُيِي" local past_pass_v_stem_long = past_pass_c_stem local past_pass_v_stem_short = "حُيّ" local nonpast_stem = "حْي" local nonpast_pass_stem = nonpast_stem local imp_stem = _I .. nonpast_stem -- make parts past_2stem_conj(base, "past", {}, past_c_stem) past_2stem_conj(base, "past_pass", {}, past_pass_c_stem) local variant = vowel_spec.variant or "both" if variant == "short" or variant == "both" then past_2stem_conj(base, "past", past_v_stem_short, {}) past_2stem_conj(base, "past_pass", past_pass_v_stem_short, {}) end function inflect_long_variant(tense, long_stem, short_stem) inflect_tense_1(base, tense, "", {long_stem, long_stem, long_stem, long_stem, short_stem}, {past_endings[4], past_endings[5], past_endings[7], past_endings[8], past_endings[12]}, {"3ms", "3fs", "3md", "3fd", "3mp"}) end if variant == "long" or variant == "both" then inflect_long_variant("past", past_v_stem_long, past_v_stem_short) inflect_long_variant("past_pass", past_pass_v_stem_long, past_pass_v_stem_short) end nonpast_1stem_conj(base, "ind", "a", nonpast_stem, ind_endings_aa) nonpast_1stem_conj(base, "sub", "a", nonpast_stem, sub_endings_aa) nonpast_1stem_conj(base, "juss", "a", nonpast_stem, juss_endings_aa) nonpast_1stem_conj(base, "ind_pass", "u", nonpast_pass_stem, ind_endings_aa) nonpast_1stem_conj(base, "sub_pass", "u", nonpast_pass_stem, sub_endings_aa) nonpast_1stem_conj(base, "juss_pass", "u", nonpast_pass_stem, juss_endings_aa) inflect_tense_imp(base, {imp_stem, all_same = 1}, imp_endings_aa) -- active and passive participles apparently do not exist for this verb end -- Implement form-I final-weak assimilated+final-weak verb. ASSIMILATED is true for assimilated verbs. local function make_form_i_final_weak_verb(base, vowel_spec, assimilated) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- حَيَّ or حَيِيَ is weird enough that we handle it as a separate function. if hayy_radicals(rad1, rad2, rad3) then make_form_i_hayy_verb(base, vowel_spec) return end -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- Past and non-past stems, active and passive, and imperative stem. local past_stem = q(rad1, A, rad2) local past_pass_stem = q(rad1, U, rad2) local nonpast_stem, nonpast_pass_stem, imp_stem if raa_radicals(rad1, rad2, rad3) then base.irregular = true nonpast_stem = rad1 nonpast_pass_stem = rad1 imp_stem = rad1 else nonpast_pass_stem = q(rad1, SK, rad2) if assimilated then nonpast_stem = rad2 imp_stem = rad2 else nonpast_stem = nonpast_pass_stem imp_stem = q(form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1), rad2) end end -- Make parts. local past_ending_vowel = req(rad3, Y) and req(past_vowel, A) and "ay" or req(rad3, W) and req(past_vowel, A) and "aw" or req(past_vowel, I) and "ī" or "ū" -- Try to preserve footnotes attached to the third radical and/or past and/or non-past vowels. local past_footnotes = iut.combine_footnotes(rget_footnotes(rad3), rget_footnotes(past_vowel)) local nonpast_ending_vowel = req(nonpast_vowel, A) and "ā" or req(nonpast_vowel, I) and "ī" or "ū" local nonpast_footnotes = iut.combine_footnotes(rget_footnotes(rad3), rget_footnotes(nonpast_vowel)) make_final_weak_verb(base, iut.combine_form_and_footnotes(past_stem, past_footnotes), iut.combine_form_and_footnotes(past_pass_stem, past_footnotes), iut.combine_form_and_footnotes(nonpast_stem, nonpast_footnotes), iut.combine_form_and_footnotes(nonpast_pass_stem, nonpast_footnotes), iut.combine_form_and_footnotes(imp_stem, nonpast_footnotes), past_ending_vowel, nonpast_ending_vowel, "a") -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, IN)) -- Active participle, stative type I فَعِيّ (++). FIXME: Is this correct when rad3 is W? insert_ap2_pp2(base, q(rad1, A, rad2, II, SH)) -- Active participle, stative type II فَعٍ (+++). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "ap3", q(rad1, A, rad2, IN)) -- Active participle, color/defect أَفْعَى (+cd). insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, AAMAQ)) -- Active participle, -ān فَعْيَان or فَعْوَان (+an). -- FIXME: Any examples of this for both rad3 = W and y to verify it's correct? insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, req(rad3, Y) and II or UU, SH)) end conjugations["I-final-weak"] = function(base, vowel_spec) make_form_i_final_weak_verb(base, vowel_spec, false) end conjugations["I-assimilated+final-weak"] = function(base, vowel_spec) make_form_i_final_weak_verb(base, vowel_spec, "assimilated") end conjugations["I-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- In some sense, hollow vowels i~i and u~u are more "correct" than a~i and a~u, but the latter follow the -- pattern of other form-I verbs, so we map i~i to a~i and u~u to a~u in infer_radicals(). Now however we have -- to undo this to get the actual past vowel based on the non-past vowel. if req(past_vowel, A) then past_vowel = map_vowel(past_vowel, function(vow) return req(nonpast_vowel, A) and I or rget(nonpast_vowel) end) end local lengthened_nonpast = map_vowel(nonpast_vowel, function(vow) return vow == U and UU or vow == I and II or AA end) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- active past stems - vowel (v) and consonant (c) local past_v_stem = q(rad1, AA, rad3) local past_c_stem = q(rad1, past_vowel, rad3) -- active non-past stems - vowel (v) and consonant (c) local nonpast_v_stem = q(rad1, lengthened_nonpast, rad3) local nonpast_c_stem = q(rad1, nonpast_vowel, rad3) -- passive past stems - vowel (v) and consonant (c) -- 'ufīla, 'ufiltu local past_pass_v_stem = q(rad1, II, rad3) local past_pass_c_stem = q(rad1, I, rad3) -- passive non-past stems - vowel (v) and consonant (c) -- yufāla/yufalna -- stem is built differently but conjugation is identical to sound verbs local nonpast_pass_v_stem = q(rad1, AA, rad3) local nonpast_pass_c_stem = q(rad1, A, rad3) -- imperative stem local imp_v_stem = nonpast_v_stem local imp_c_stem = nonpast_c_stem -- make parts make_hollow_geminate_verb(base, false, past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, "a") if kaan_radicals(rad1, rad2, rad3) then local endings = make_nonpast_endings(U, {}, {}, {}, {}) inflect_tense(base, "juss", nonpast_prefix_consonants, q(A, rad1), endings) base.irregular = true end -- Active participle. insert_form_or_forms(base, "ap1", req(rad3, HAMZA) and q(rad1, AA, HAMZA, IN) or q(rad1, AA, HAMZA, I, rad3)) -- Active participle, stative type I فَيِّد (++). FIXME: Any examples of this to verify it's correct? insert_ap2_pp2(base, q(rad1, A, Y, SH, I, rad3)) -- Active participle, stative type II فَيِد (+++). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "ap3", q(rad1, A, Y, I, rad3)) -- Active participle, color/defect أَفّيَد or أَفّوَد (+cd). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, SK, rad2, A, rad3)) -- Active participle, -ān فَيْدَان or فَوْدَان (+an). Example: جَاعَ "to be hungry", act part جَوْعَان insert_form_or_forms(base, "apan", q(rad1, A, rad2, SK, rad3, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, req(rad2, Y) and II or UU, rad3)) end conjugations["I-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3, past_vowel, nonpast_vowel = get_radicals_3(vowel_spec) -- Verbal nouns (maṣādir) for form I are unpredictable and have to be supplied. -- active past stems - vowel (v) and consonant (c) local past_v_stem = q(rad1, A, rad2, SH) local past_c_stem = q(rad1, A, rad2, past_vowel, rad2) -- active non-past stems - vowel (v) and consonant (c) local nonpast_v_stem = q(rad1, nonpast_vowel, rad2, SH) local nonpast_c_stem = q(rad1, SK, rad2, nonpast_vowel, rad2) -- passive past stems - vowel (v) and consonant (c) -- dulla/dulilta local past_pass_v_stem = q(rad1, U, rad2, SH) local past_pass_c_stem = q(rad1, U, rad2, I, rad2) -- passive non-past stems - vowel (v) and consonant (c) --yudallu/yudlalna -- stem is built differently but conjugation is identical to sound verbs local nonpast_pass_v_stem = q(rad1, A, rad2, SH) local nonpast_pass_c_stem = q(rad1, SK, rad2, A, rad2) -- imperative stem local imp_v_stem = q(rad1, nonpast_vowel, rad2, SH) local imp_c_stem = q(form_i_imp_stem_through_rad1(base, nonpast_vowel, rad1), rad2, nonpast_vowel, rad2) -- make parts make_hollow_geminate_verb(base, "geminate", past_v_stem, past_c_stem, past_pass_v_stem, past_pass_c_stem, nonpast_v_stem, nonpast_c_stem, nonpast_pass_v_stem, nonpast_pass_c_stem, imp_v_stem, imp_c_stem, "a") -- Active participle. insert_form_or_forms(base, "ap1", q(rad1, AA, rad2, SH)) -- Active participle, stative type I فَعِيع (++). FIXME: Any examples of this to verify it's correct? insert_ap2_pp2(base, q(rad1, A, rad2, II, rad2)) -- Active participle, stative type II فَعّ (+++). Example: بَرَّ "to be pious", active participle بَرّ insert_form_or_forms(base, "ap3", q(rad1, A, rad2, SH)) -- Active participle, color/defect أَفَعّ (+cd). -- Example: لَصَّ "to be thievish, to steal repeatedly", active participle أَلَصّ. insert_form_or_forms(base, "apcd", q(HAMZA, A, rad1, A, rad2, SH)) -- Active participle, -ān فَعَّان (+an). FIXME: Any examples of this to verify it's correct? insert_form_or_forms(base, "apan", q(rad1, A, rad2, SH, AAN)) -- Passive participle. insert_form_or_forms(base, "pp", q(MA, rad1, SK, rad2, UU, rad2)) end -- Return the ta- (active, past and non-past) and tu- (passive past) prefixes for a form II/III/V/VI verb. -- Form V and VI verbs normally use ta- and tu-, but reduced (base.reduced) verbs use different prefixes. Form II -- and III verbs have no prefix. local function form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vform = base.verb_form if vform == "V" or vform == "VI" then if base.reduced then -- To simplify the code, we generate two rad1's with a sukūn between them, which is cleaned up in -- postprocessing. return q(_I, rad1, SK), q(rad1, SK), q(_U, rad1, SK) else return TA, TA, TU end else return "", "", "" end end -- Make form II or V sound or final-weak verb. local function make_form_ii_v_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vn = vform == "V" and q(ta_past_prefix, rad1, A, rad2, SH, final_weak and IN or q(U, rad3)) or q(TA, rad1, SK, rad2, II, final_weak and AH or rad3) -- various stem bases local past_stem_base = q(ta_past_prefix, rad1, A, rad2, SH) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, A, rad2, SH) local past_pass_stem_base = q(tu_past_prefix, rad1, U, rad2, SH) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["II-sound"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["II-final-weak"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end local function make_form_iii_alt_vn(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) -- Insert alternative verbal noun فِعَال. Since not all verbs have this, we require that verbs that do have it -- specify it explicitly; a shortcut ++ is provided to make this easier (e.g. <vn:+,++> to indicate that -- both the normal verbal noun مُفَاعَلَة and secondary verbal noun فِعَال are available). insert_form_or_forms(base, "vn2", q(rad1, I, rad2, AA, final_weak and HAMZA or rad3)) end -- Make form III or VI sound or final-weak verb. local function make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) local vn = vform == "VI" and q(ta_past_prefix, rad1, AA, rad2, final_weak and IN or q(U, rad3)) or q(MU, rad1, AA, rad2, final_weak and AAH or q(A, rad3, AH)) -- various stem bases local past_stem_base = q(ta_past_prefix, rad1, AA, rad2) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, AA, rad2) local past_pass_stem_base = q(tu_past_prefix, rad1, UU, rad2) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) if vform == "III" then make_form_iii_alt_vn(base, vowel_spec) end end conjugations["III-sound"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["III-final-weak"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end -- Make form III or VI geminate verb. local function make_form_iii_vi_geminate_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vform = base.verb_form local ta_past_prefix, ta_nonpast_prefix, tu_past_prefix = form_ii_iii_v_vi_ta_tu_prefix(base, rad1) -- Alternative verbal noun فِعَال will be inserted when we add sound parts below. local vn = vform == "VI" and q(ta_past_prefix, rad1, AA, rad2, SH) or q(MU, rad1, AA, rad2, SH, AH) -- Various stem bases. local past_stem_base = q(ta_past_prefix, rad1, AA) local nonpast_stem_base = q(ta_nonpast_prefix, rad1, AA) local past_pass_stem_base = q(tu_past_prefix, rad1, UU) -- Make parts. local variant = vowel_spec.variant or "short" if variant == "short" or variant == "both" then make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Also add alternative sound (non-compressed) parts. This will lead to some duplicate entries, but they are -- removed during addition. if variant == "long" or variant == "both" then make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) elseif vform == "III" then -- Still need to add the alternative form-III verbal noun. make_form_iii_alt_vn(base, vowel_spec) end end conjugations["III-geminate"] = function(base, vowel_spec) make_form_iii_vi_geminate_verb(base, vowel_spec) end -- Make form IV sound or final-weak verb. local function make_form_iv_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) -- core of stem base, minus stem prefixes local stem_core -- check for irregular verb أَرَى local is_raa = raa_radicals(rad1, rad2, rad3) if is_raa then base.irregular = true stem_core = rad1 else stem_core = q(rad1, SK, rad2) end -- verbal noun local vn = is_raa and q(HAMZA, I, stem_core, AA, HAMZA, AH) or q(HAMZA, I, stem_core, AA, final_weak and HAMZA or rad3) -- various stem bases local past_stem_base = q(HAMZA, A, stem_core) local nonpast_stem_base = stem_core local past_pass_stem_base = q(HAMZA, U, stem_core) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IV-sound"] = function(base, vowel_spec) make_form_iv_sound_final_weak_verb(base, vowel_spec) end conjugations["IV-final-weak"] = function(base, vowel_spec) make_form_iv_sound_final_weak_verb(base, vowel_spec) end conjugations["IV-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- verbal noun local vn = q(HAMZA, I, rad1, AA, rad3, AH) -- various stem bases local past_stem_base = q(HAMZA, A, rad1) local nonpast_stem_base = rad1 local past_pass_stem_base = q(HAMZA, U, rad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IV-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(HAMZA, I, rad1, SK, rad2, AA, rad2) -- various stem bases local past_stem_base = q(HAMZA, A, rad1) local nonpast_stem_base = rad1 local past_pass_stem_base = q(HAMZA, U, rad1) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["V-sound"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["V-final-weak"] = function(base, vowel_spec) make_form_ii_v_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-sound"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-final-weak"] = function(base, vowel_spec) make_form_iii_vi_sound_final_weak_verb(base, vowel_spec) end conjugations["VI-geminate"] = function(base, vowel_spec) make_form_iii_vi_geminate_verb(base, vowel_spec) end -- Make a verbal noun of the general form that applies to forms VII and above. RAD12 is the first consonant cluster -- (after initial اِ) and RAD34 is the second consonant cluster. RAD5 is the final consonant. local function high_form_verbal_noun(rad12, rad34, rad5) return q(_I, rad12, I, rad34, AA, rad5) end -- Populate a sound or final-weak verb for any of the various high-numbered augmented forms (form VII and up) that -- have up to 5 consonants in two clusters in the stem and the same pattern of vowels between. Some of these -- consonants in certain verb parts are w's, which leads to apparent anomalies in certain stems of these parts, but -- these anomalies are handled automatically in postprocessing, where we resolve sequences of iwC -> īC, uwC -> ūC, -- w + sukūn + w -> w + shadda. -- RAD12 is the first consonant cluster (after initial اِ) and RAD34 is the second consonant cluster. RAD5 is the -- final consonant. local function make_high_form_sound_final_weak_verb(base, vowel_spec, rad12, rad34, rad5) local final_weak = is_final_weak(base, vowel_spec) local vn = high_form_verbal_noun(rad12, rad34, final_weak and HAMZA or rad5) -- various stem bases local nonpast_stem_base = q(rad12, A, rad34) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad12, U, rad34) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end local function form_vii_nrad1(base, rad1) if base.reduced then if not req(rad1, M) then error(("Internal error: Form VII first radical %s is not م but .reduced specified; should have been caught earlier"): format(rget(rad1))) end return M .. SH else return q("نْ", rad1) end end -- Make form VII sound or final-weak verb. local function make_form_vii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high_form_sound_final_weak_verb(base, vowel_spec, form_vii_nrad1(base, rad1), rad2, rad3) end conjugations["VII-sound"] = function(base, vowel_spec) make_form_vii_sound_final_weak_verb(base, vowel_spec) end conjugations["VII-final-weak"] = function(base, vowel_spec) make_form_vii_sound_final_weak_verb(base, vowel_spec) end conjugations["VII-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local nrad1 = form_vii_nrad1(base, rad1) local vn = high_form_verbal_noun(nrad1, Y, rad3) -- various stem bases local nonpast_stem_base = nrad1 local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nrad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["VII-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local nrad1 = form_vii_nrad1(base, rad1) local vn = high_form_verbal_noun(nrad1, rad2, rad2) -- various stem bases local nonpast_stem_base = q(nrad1, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nrad1, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Return Form VIII verbal noun. local function form_viii_verbal_noun(base, vowel_spec, rad1, rad2, rad3) local final_weak = is_final_weak(base, vowel_spec) rad3 = final_weak and HAMZA or rad3 return {high_form_verbal_noun(vowel_spec.form_viii_assim, rad2, rad3)} end -- Make form VIII sound or final-weak verb. local function make_form_viii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- check for irregular verb اِتَّخَذَ if axadh_radicals(rad1, rad2, rad3) then base.irregular = true rad1 = T end make_high_form_sound_final_weak_verb(base, vowel_spec, vowel_spec.form_viii_assim, rad2, rad3) end conjugations["VIII-sound"] = function(base, vowel_spec) make_form_viii_sound_final_weak_verb(base, vowel_spec) end conjugations["VIII-final-weak"] = function(base, vowel_spec) make_form_viii_sound_final_weak_verb(base, vowel_spec) end conjugations["VIII-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = form_viii_verbal_noun(base, vowel_spec, rad1, Y, rad3) -- various stem bases local nonpast_stem_base = vowel_spec.form_viii_assim local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, nonpast_stem_base) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["VIII-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = form_viii_verbal_noun(base, vowel_spec, rad1, rad2, rad2) -- various stem bases local nonpast_stem_base = q(vowel_spec.form_viii_assim, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, vowel_spec.form_viii_assim, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IX-sound"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(_I, rad1, SK, rad2, I, rad3, AA, rad3) -- various stem bases local nonpast_stem_base = q(rad1, SK, rad2, A) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad1, SK, rad2, U) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["IX-final-weak"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high_form_sound_final_weak_verb(base, vowel_spec, q(rad1, SK, rad2), rad3, rad3) end -- Populate a sound or final-weak verb for any of the various high-numbered -- augmented forms that have 5 consonants in the stem and the same pattern of -- vowels. Some of these consonants in certain verb parts are w's, which leads to -- apparent anomalies in certain stems of these parts, but these anomalies -- are handled automatically in postprocessing, where we resolve sequences of -- iwC -> īC, uwC -> ūC, w + sukūn + w -> w + shadda. local function make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, rad3, rad4, rad5) make_high_form_sound_final_weak_verb(base, vowel_spec, q(rad1, SK, rad2), q(rad3, SK, rad4), rad5) end -- Make form X sound or final-weak verb. local function make_form_x_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) -- check for irregular verb اِسْتَحْيَا (also اِسْتَحَى) local is_hayy = hayy_radicals(rad1, rad2, rad3) local variant = vowel_spec.variant or "both" if not is_hayy or variant == "long" or variant == "both" then make_high5_form_sound_final_weak_verb(base, vowel_spec, S, T, rad1, rad2, rad3) end if is_hayy and (variant == "short" or variant == "both") then base.irregular = true -- Add alternative entries to the verbal paradigms. Any duplicates are removed during addition. make_high_form_sound_final_weak_verb(base, vowel_spec, S .. SK .. T, rad1, rad3) end end conjugations["X-sound"] = function(base, vowel_spec) make_form_x_sound_final_weak_verb(base, vowel_spec) end conjugations["X-final-weak"] = function(base, vowel_spec) make_form_x_sound_final_weak_verb(base, vowel_spec) end conjugations["X-hollow"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(base.reduced and "اِسْ" or "اِسْتِ", rad1, AA, rad3, AH) -- various stem bases local past_stem_base = q(base.reduced and "اِسْ" or "اِسْتَ", rad1) local nonpast_stem_base = q(base.reduced and "سْ" or "سْتَ", rad1) local past_pass_stem_base = q(base.reduced and "اُسْ" or "اُسْتُ", rad1) -- make parts make_augmented_hollow_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["X-geminate"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q("اِسْتِ", rad1, SK, rad2, AA, rad2) -- various stem bases local past_stem_base = q("اِسْتَ", rad1) local nonpast_stem_base = q("سْتَ", rad1) local past_pass_stem_base = q("اُسْتُ", rad1) -- make parts if base.altgem then inflect_tense(base, "past", "", {q(past_stem_base, A, rad2, SH), all_same = 1}, past_endings_ay_12_person_only) end make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn, base.altgem and "[uncommon]" or nil) end conjugations["XI-sound"] = function(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local vn = q(_I, rad1, SK, rad2, II, rad3, AA, rad3) -- various stem bases local nonpast_stem_base = q(rad1, SK, rad2, AA) local past_stem_base = q(_I, nonpast_stem_base) local past_pass_stem_base = q(_U, rad1, SK, rad2, UU) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Probably no form XI final-weak, since already geminate in form; would behave as XI-sound. -- Make form XII sound or final-weak verb. local function make_form_xii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, W, rad2, rad3) end conjugations["XII-sound"] = function(base, vowel_spec) make_form_xii_sound_final_weak_verb(base, vowel_spec) end conjugations["XII-final-weak"] = function(base, vowel_spec) make_form_xii_sound_final_weak_verb(base, vowel_spec) end -- Make form XIII sound or final-weak verb. local function make_form_xiii_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, W, W, rad3) end conjugations["XIII-sound"] = function(base, vowel_spec) make_form_xiii_sound_final_weak_verb(base, vowel_spec) end conjugations["XIII-final-weak"] = function(base, vowel_spec) make_form_xiii_sound_final_weak_verb(base, vowel_spec) end -- Make a form XIV or XV sound or final-weak verb. Last radical appears twice (if`anlala / yaf`anlilu) so if it were -- w or y you'd get if`anwā / yaf`anwī or if`anyā / yaf`anyī, i.e. unlike for most augmented verbs, the identity of -- the radical matters. local function make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3 = get_radicals_3(vowel_spec) local lastrad = base.verb_form == "XV" and Y or rad3 make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, N, rad3, lastrad) end conjugations["XIV-sound"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end conjugations["XIV-final-weak"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end conjugations["XV-sound"] = function(base, vowel_spec) make_form_xiv_xv_sound_final_weak_verb(base, vowel_spec) end -- Probably no form XV final-weak, since already final-weak in form; would behave as XV-sound. -- Make form Iq or IIq sound or final-weak verb. local function make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local vform = base.verb_form local vn = vform == "IIq" and q(TA, rad1, A, rad2, SK, rad3, (final_weak and IN or q(U, rad4))) or q(rad1, A, rad2, SK, rad3, (final_weak and AAH or q(A, rad4, AH))) local ta_pref = vform == "IIq" and TA or "" local tu_pref = vform == "IIq" and TU or "" -- various stem bases local past_stem_base = q(ta_pref, rad1, A, rad2, SK, rad3) local nonpast_stem_base = past_stem_base local past_pass_stem_base = q(tu_pref, rad1, U, rad2, SK, rad3) -- make parts make_augmented_sound_final_weak_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end conjugations["Iq-sound"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["Iq-final-weak"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIq-sound"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIq-final-weak"] = function(base, vowel_spec) make_form_iq_iiq_sound_final_weak_verb(base, vowel_spec) end -- Make form IIIq sound or final-weak verb. local function make_form_iiiq_sound_final_weak_verb(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) make_high5_form_sound_final_weak_verb(base, vowel_spec, rad1, rad2, N, rad3, rad4) end conjugations["IIIq-sound"] = function(base, vowel_spec) make_form_iiiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IIIq-final-weak"] = function(base, vowel_spec) make_form_iiiq_sound_final_weak_verb(base, vowel_spec) end conjugations["IVq-sound"] = function(base, vowel_spec) local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local vn = q(_I, rad1, SK, rad2, I, rad3, SK, rad4, AA, rad4) -- various stem bases local past_stem_base = q(_I, rad1, SK, rad2, A, rad3) local nonpast_stem_base = q(rad1, SK, rad2, A, rad3) local past_pass_stem_base = q(_U, rad1, SK, rad2, U, rad3) -- make parts make_augmented_geminate_verb(base, vowel_spec, past_stem_base, nonpast_stem_base, past_pass_stem_base, vn) end -- Probably no form IVq final-weak, since already geminate in form; would behave as IVq-sound. end create_conjugations() ------------------------------------------------------------------------------- -- Guts of main conjugation function -- ------------------------------------------------------------------------------- -- Given form, weakness and radicals, check to make sure the radicals present are allowable for the weakness. Hamzas on -- alif/wāw/yāʾ seats are never allowed (should always appear as hamza-on-the-line), and various weaknesses have various -- strictures on allowable consonants. local function check_radicals(form, weakness, rad1, rad2, rad3, rad4) local function hamza_check(index, rad) if rad == HAMZA_ON_ALIF or rad == HAMZA_UNDER_ALIF or rad == HAMZA_ON_W or rad == HAMZA_ON_Y then error("Radical " .. index .. " is " .. rad .. " but should be ء (hamza on the line)") end end local function check_waw_ya(index, rad) if not is_waw_ya(rad) then error("Radical " .. index .. " is " .. rad .. " but should be و or ي") end end local function check_not_waw_ya(index, rad) if is_waw_ya(rad) then error("In a sound verb, radical " .. index .. " should not be و or ي") end end hamza_check(rad1) hamza_check(rad2) hamza_check(rad3) hamza_check(rad4) if weakness == "assimilated" or weakness == "assimilated+final-weak" then if rad1 ~= W then error("Radical 1 is " .. rad1 .. " but should be و") end -- don't check that non-assimilated form I verbs don't have wāw as their -- first radical because some form-I verbs exist where a first-radical wāw -- behaves as sound, e.g. wajuha yawjuhu "to be distinguished". end if weakness == "final-weak" or weakness == "assimilated+final-weak" then if rad4 then check_waw_ya(4, rad4) else check_waw_ya(3, rad3) end elseif vform_supports_final_weak(form) then -- non-final-weak verbs cannot have weak final radical if there's a corresponding -- final-weak verb category. I think this is safe. We may have problems with -- ḥayya/ḥayiya yaḥyā if we treat it as a geminate verb. if rad4 then check_not_waw_ya(4, rad4) else check_not_waw_ya(3, rad3) end end if weakness == "hollow" then check_waw_ya(2, rad2) -- don't check that non-hollow verbs in forms that support hollow verbs -- don't have wāw or yāʾ as their second radical because some verbs exist -- where a middle-radical wāw/yāʾ behaves as sound, e.g. form-VIII izdawaja -- "to be in pairs". end if weakness == "geminate" then if rad4 then error("Internal error: No geminate quadrilaterals, should not be seen") end if rad2 ~= rad3 then error("Weakness is geminate; radical 3 is " .. rad3 .. " but should be same as radical 2 " .. rad2) end elseif vform_supports_geminate(form) then -- non-geminate verbs cannot have second and third radical same if there's -- a corresponding geminate verb category. I think this is safe. We -- don't fuss over double wāw or double yāʾ because this could legitimately -- be a final-weak verb with middle wāw/yāʾ, treated as sound. if rad4 then error("Internal error: No quadrilaterals should support geminate verbs") end if rad2 == rad3 and not is_waw_ya(rad2) then error("Weakness is '" .. weakness .. "'; radical 2 and 3 are same at " .. rad2 .. " but should not be; consider making weakness 'geminate'") end end end -- array of substitutions; each element is a 2-entry array FROM, TO; do it -- this way so the concatenations only get evaluated once local postprocess_subs = { -- reorder short-vowel + shadda -> shadda + short-vowel for easier processing {"(" .. AIU .. ")" .. SH, SH .. "%1"}, ----------same letter separated by sukūn should instead use shadda--------- ------------happens e.g. in kun-nā "we were".----------------- {"(.)" .. SK .. "%1", "%1" .. SH}, ---------------------------- assimilated verbs ---------------------------- -- iw, iy -> ī (assimilated verbs) {I .. W .. SK, II}, {I .. Y .. SK, II}, -- uw, uy -> ū (assimilated verbs) {U .. W .. SK, UU}, {U .. Y .. SK, UU}, -------------- final -yā uses tall alif not alif maqṣūra ------------------ {"(" .. Y .. SH .. "?" .. A .. ")" .. AMAQ, "%1" .. ALIF}, ----------------------- handle hamza assimilation ------------------------- -- initial hamza + short-vowel + hamza + sukūn -> hamza + long vowel {HAMZA .. A .. HAMZA .. SK, HAMZA .. A .. ALIF}, {HAMZA .. I .. HAMZA .. SK, HAMZA .. I .. Y}, {HAMZA .. U .. HAMZA .. SK, HAMZA .. U .. W} } local postprocess_tr_subs = { {"ī([" .. vowels .. "y*])", "iy%1"}, {"ū([" .. vowels .. "w*])", "uw%1"}, {"(.)%*", "%1%1"}, -- implement shadda ---------------------------- assimilated verbs ---------------------------- -- iw, iy -> ī (assimilated verbs) {"iw([^" .. vowels .. "w])", "ī%1"}, {"iy([^" .. vowels .. "y])", "ī%1"}, -- uw, uy -> ū (assimilated verbs) {"uw([^" .. vowels .. "w])", "ū%1"}, {"uy([^" .. vowels .. "y])", "ū%1"}, ----------------------- handle hamza assimilation ------------------------- -- initial hamza + short-vowel + hamza + sukūn -> hamza + long vowel {"ʔaʔ(" .. NV .. ")", "ʔā%1"}, {"ʔiʔ(" .. NV .. ")", "ʔī%1"}, {"ʔuʔ(" .. NV .. ")", "ʔū%1"}, } -- Post-process verb parts to eliminate phonological anomalies. Many of the changes, particularly the tricky ones, -- involve converting hamza to have the proper seat. The rules for this are complicated and are documented on the -- [[w:Hamza]] Wikipedia page. In some cases there are alternatives allowed, and we handle them below by returning -- multiple possibilities. local function postprocess_term(term) if term == "?" then return "?" end -- Add BORDER at text boundaries. term = BORDER .. term .. BORDER -- Do the main post-processing, based on the pattern substitutions in postprocess_subs. for _, sub in ipairs(postprocess_subs) do term = rsub(term, sub[1], sub[2]) end term = term:gsub(BORDER, "") if not rfind(term, HAMZA) then return term end term = term:gsub(HAMZA, HAMZA_PH) term = ar_utilities.process_hamza(term) if #term == 1 then term = term[1] end return term end local function postprocess_translit(translit) if translit == "?" then return "?" end -- Add BORDER at text boundaries. translit = BORDER .. translit .. BORDER -- Do the main post-processing, based on the pattern substitutions in postprocess_tr_subs. for _, sub in ipairs(postprocess_tr_subs) do translit = rsub(translit, sub[1], sub[2]) end translit = translit:gsub(BORDER, "") return translit end local function postprocess_forms(base) local converted_values = {} for slot, forms in pairs(base.forms) do local need_dedup = false for i, form in ipairs(forms) do local term = postprocess_term(form.form) local translit = form.translit and postprocess_translit(form.translit) or nil if term ~= form.form or translit ~= form.translit then need_dedup = true end converted_values[i] = {term, translit} end if need_dedup then local temp_dedup = {} for i = 1, #forms do local new_term, new_translit = unpack(converted_values[i]) if type(new_term) == "table" then for _, nt in ipairs(new_term) do local new_formobj = { form = nt, translit = new_translit, footnotes = forms[i].footnotes, } iut.insert_form(temp_dedup, "temp", new_formobj) end else local new_formobj = { form = new_term, translit = new_translit, footnotes = forms[i].footnotes, } iut.insert_form(temp_dedup, "temp", new_formobj) end end base.forms[slot] = temp_dedup.temp end end end local function process_slot_overrides(base) for slot, forms in pairs(base.slot_overrides) do local existing_values = base.forms[slot] base.forms[slot] = nil for _, form in ipairs(forms) do -- + in active participle for form I requests slot ap1 if form.form == "+" and (base.verb_form ~= "I" or slot ~= "ap") then if not existing_values then error(("Slot '%s' requested the default value but no such value available"):format(slot)) end -- We maintain an invariant that no two slots share a form object (although they may share the footnote -- lists inside the form objects). However, there is no need to copy the form objects here because there -- is a one-to-one correspondence between slots and slot overrides, i.e. you can't have a default value -- go into two slots. insert_form_or_forms(base, slot, existing_values, "allow overrides", form.uncertain) elseif default_indicator_to_active_participle_slot[form.form] then if form.form == "++" then if slot ~= "vn" and slot ~= "ap" and slot ~= "pp" then error(("Secondary default value request '++' only applicable to verbal nouns and pariciples, but found in slot '%s'"): format(slot)) end else if slot ~= "ap" then error(("Secondary default value request '%s' only applicable to active pariciples, but found in slot '%s'"): format(form.form, slot)) end end local secondary_default_slot = slot == "vn" and "vn2" or slot == "pp" and "pp2" or default_indicator_to_active_participle_slot[form.form] local existing_values = base.forms[secondary_default_slot] if not existing_values then error(("Slot '%s' requested a secondary default value using '%s' but no such value available"): format(slot, form.form)) end -- See comment above about the lack of need to copy the form objects. insert_form_or_forms(base, slot, existing_values, "allow overrides", form.uncertain) -- To make sure there aren't shared form objects. base.forms[secondary_default_slot] = nil else insert_form_or_forms(base, slot, form, "allow overrides", form.uncertain) end end end -- Now, for non-stative form-I verbs, fill the active participle slot from ap1 unless it should be missing (e.g. -- passive-only or user specified 'ap:-'). if base.verb_form == "I" and not base.forms.ap and base.forms.ap1 and not skip_slot(base, "ap") then local saw_non_stative = false for _, vowel_spec in ipairs(base.conj_vowels) do if req(vowel_spec.past, A) then saw_non_stative = true break end end if saw_non_stative then base.forms.ap = base.forms.ap1 -- To make sure there aren't shared form objects. base.forms.ap1 = nil end end end local function handle_lemma_linked(base) -- Compute linked versions of potential lemma slots, for use in {{ar-verb}}. We substitute the original lemma -- (before removing links) for forms that are the same as the lemma, if the original lemma has links. for _, slot in ipairs(export.potential_lemma_slots) do if base.forms[slot] then insert_form_or_forms(base, slot .. "_linked", iut.map_forms(base.forms[slot], function(form) if form == base.lemma and rfind(base.linked_lemma, "%[%[") then return base.linked_lemma else return form end end)) end end end -- Process specs given by the user using 'addnote[SLOTSPEC][FOOTNOTE][FOOTNOTE][...]'. local function process_addnote_specs(base) for _, spec in ipairs(base.addnote_specs) do for _, slot_spec in ipairs(spec.slot_specs) do slot_spec = "^" .. slot_spec .. "$" for slot, forms in pairs(base.forms) do if rfind(slot, slot_spec) then -- To save on memory, side-effect the existing forms. for _, form in ipairs(forms) do form.footnotes = iut.combine_footnotes(form.footnotes, spec.footnotes) end end end end end end local function add_missing_links_to_forms(base) -- Any forms without links should get them now. Redundant ones will be stripped later. for slot, forms in pairs(base.forms) do for _, form in ipairs(forms) do if not form.form:find("%[%[") then form.form = "[[" .. form.form .. "]]" end end end end local function conjugate_verb(base) construct_stems(base) for _, vowel_spec in ipairs(base.conj_vowels) do -- Reconstruct conjugation type from verb form and (possibly inferred) weakness. conj_type = base.verb_form .. "-" .. vowel_spec.weakness -- Check that the conjugation type is recognized. if not conjugations[conj_type] then error("Unknown conjugation type '" .. conj_type .. "'") end -- The way the conjugation functions work is they always add entries to the appropriate parts of the paradigm -- (each of which is an array), rather than setting the values. This makes it possible to call more than one -- conjugation function and essentially get a paradigm of the "either A or B" kind. Doing this may insert -- duplicate entries into a particular paradigm part, but this is not a problem because we check for duplicate -- entries when adding them, and don't insert in that case. conjugations[conj_type](base, vowel_spec) end postprocess_forms(base) process_slot_overrides(base) -- This should happen before add_missing_links_to_forms() so that the comparison `form == base.lemma` in -- handle_lemma_linked() works correctly and compares unlinked forms to unlinked forms. handle_lemma_linked(base) process_addnote_specs(base) if not base.alternant_multiword_spec.args.noautolinkverb then add_missing_links_to_forms(base) end end local function parse_indicator_spec(angle_bracket_spec) -- Store the original angle bracket spec so we can reconstruct the overall conj spec with the lemma(s) in them. local base = { angle_bracket_spec = angle_bracket_spec, conj_vowels = {}, root_consonants = {}, user_stem_overrides = {}, user_slot_overrides = {}, slot_explicitly_missing = {}, slot_uncertain = {}, slot_override_uses_default = {}, addnote_specs = {}, } local function parse_err(msg) error(msg .. ": " .. angle_bracket_spec) end local function fetch_footnotes(separated_group) local footnotes for j = 2, #separated_group - 1, 2 do if separated_group[j + 1] ~= "" then parse_err("Extraneous text after bracketed footnotes: '" .. table.concat(separated_group) .. "'") end if not footnotes then footnotes = {} end table.insert(footnotes, separated_group[j]) end return footnotes end local inside = angle_bracket_spec:match("^<(.*)>$") assert(inside) local segments = put.parse_multi_delimiter_balanced_segment_run(inside, {{"[", "]"}, {"<", ">"}}) local dot_separated_groups = put.split_alternating_runs_and_strip_spaces(segments, "%.") -- The first dot-separated element must specify the verb form, e.g. IV or IIq. If the form is I, it needs to include -- the the past and non-past vowels, e.g. I/a~u for kataba ~ yaktubu. More than one vowel can be given, -- comma-separated, and more than one past~non-past pair can be given, slash-separated, e.g. I/a,u~u/i~a for form I -- كمل, which can be conjugated as kamala/kamula ~ yakmulu or kamila ~ yakmalu. An individual vowel spec must be one -- of a, i or u and in general (a) at least one past~non-past pair most be given, and (b) both past and non-past -- vowels must be given even though sometimes the vowel can be determined from the unvocalized form. An exception is -- passive-only verbs, where the vowels can't in general be determined (except indirectly in some cases by looking -- at an associated non-passive verb); in that case, the vowel~vowel spec can left out. local slash_separated_groups = put.split_alternating_runs_and_strip_spaces(dot_separated_groups[1], "/") local form_spec = slash_separated_groups[1] base.form_footnotes = fetch_footnotes(form_spec) if form_spec[1] == "" then parse_err("Missing verb form") end if not allowed_vforms_with_weakness_set[form_spec[1]] then parse_err(("Unrecognized verb form '%s', should be one of %s"):format( form_spec[1], list_to_text(allowed_vforms, nil, " or "))) end if form_spec[1]:find("%-") then base.verb_form, base.explicit_weakness = form_spec[1]:match("^(.-)%-(.*)$") else base.verb_form = form_spec[1] end if #slash_separated_groups > 1 then if base.verb_form ~= "I" then parse_err(("Past~non-past vowels can only be specified when verb form is I, but saw form '%s'"):format( base.verb_form)) end for i = 2, #slash_separated_groups do local slash_separated_group = slash_separated_groups[i] local tilde_separated_groups = put.split_alternating_runs_and_strip_spaces(slash_separated_group, "~") if #tilde_separated_groups ~= 2 then parse_err(("Expected two tilde-separated vowel specs: %s"):format(table.concat(slash_separated_group))) end local function parse_conj_vowels(tilde_separated_group, vtype) local conj_vowel_objects = {} local comma_separated_groups = put.split_alternating_runs_and_strip_spaces(tilde_separated_group, ",") for _, comma_separated_group in ipairs(comma_separated_groups) do local conj_vowel = comma_separated_group[1] if conj_vowel ~= "a" and conj_vowel ~= "i" and conj_vowel ~= "u" then parse_err(("Expected %s conjugation vowel '%s' to be one of a, i or u in %s"):format( vtype, conj_vowel, table.concat(slash_separated_group))) end conj_vowel = dia[conj_vowel] local conj_vowel_footnotes = fetch_footnotes(comma_separated_group) -- Try to use strings when possible as it makes q() significantly more efficient. if conj_vowel_footnotes then table.insert(conj_vowel_objects, {form = conj_vowel, footnotes = conj_vowel_footnotes}) else table.insert(conj_vowel_objects, conj_vowel) end end return conj_vowel_objects end local conj_vowel_spec = { past = parse_conj_vowels(tilde_separated_groups[1], "past"), nonpast = parse_conj_vowels(tilde_separated_groups[2], "non-past"), } table.insert(base.conj_vowels, conj_vowel_spec) end end for i = 2, #dot_separated_groups do local dot_separated_group = dot_separated_groups[i] local first_element = dot_separated_group[1] if first_element == "addnote" then local spec_and_footnotes = fetch_footnotes(dot_separated_group) if #spec_and_footnotes < 2 then parse_err("Spec with 'addnote' should be of the form 'addnote[SLOTSPEC][FOOTNOTE][FOOTNOTE][...]'") end local slot_spec = table.remove(spec_and_footnotes, 1) local slot_spec_inside = rmatch(slot_spec, "^%[(.*)%]$") if not slot_spec_inside then parse_err("Internal error: slot_spec " .. slot_spec .. " should be surrounded with brackets") end local slot_specs = rsplit(slot_spec_inside, ",") -- FIXME: Here, [[Module:it-verb]] called strip_spaces(). Generally we don't do this. Should we? table.insert(base.addnote_specs, {slot_specs = slot_specs, footnotes = spec_and_footnotes}) elseif first_element:find("^var:") then if #dot_separated_group > 1 then parse_err(("Can't attach footnotes to 'var:' spec '%s'"):format(first_element)) end base.variant = first_element:match("^var:(.*)$") elseif first_element:find("^I+V?:") then local root_cons, root_cons_value = first_element:match("^(I+V?):(.*)$") local root_index if root_cons == "I" then root_index = 1 elseif root_cons == "II" then root_index = 2 elseif root_cons == "III" then root_index = 3 elseif root_cons == "IV" then root_index = 4 if not base.verb_form:find("q$") then parse_err(("Can't specify root consonant IV for non-quadriliteral verb form '%s': %s"):format( base.verb_form, first_element)) end end local cons, translit = root_cons_value:match("^(.*)//(.*)$") if not cons then cons = root_cons_value end local root_footnotes = fetch_footnotes(dot_separated_group) if not translit and not root_footnotes then base.root_consonants[root_index] = cons else base.root_consonants[root_index] = {form = cons, translit = translit, footnotes = root_footnotes} end elseif first_element:find("^[a-z][a-z0-9_]*:") then local slot_or_stem, remainder = first_element:match("^(.-):(.*)$") dot_separated_group[1] = remainder local comma_separated_groups = put.split_alternating_runs_and_strip_spaces(dot_separated_group, "[,،]") if overridable_stems[slot_or_stem] then if base.user_stem_overrides[slot_or_stem] then parse_err("Overridable stem '" .. slot_or_stem .. "' specified twice") end base.user_stem_overrides[slot_or_stem] = overridable_stems[slot_or_stem](comma_separated_groups, {prefix = slot_or_stem, base = base, parse_err = parse_err, fetch_footnotes = fetch_footnotes}) else -- assume a form override; we validate further later when the possible slots are available if base.user_slot_overrides[slot_or_stem] then parse_err("Form override '" .. slot_or_stem .. "' specified twice") end base.user_slot_overrides[slot_or_stem] = allow_multiple_values_for_override(comma_separated_groups, {prefix = slot_or_stem, base = base, parse_err = parse_err, fetch_footnotes = fetch_footnotes}, "is form override") end elseif indicator_flags[first_element] then if #dot_separated_group > 1 then parse_err("No footnotes allowed with '" .. first_element .. "' spec") end if base[first_element] then parse_err("Spec '" .. first_element .. "' specified twice") end base[first_element] = true else local passive, uncertain = first_element:match("^(.*)(%?)$") passive = passive or first_element uncertain = not not uncertain if passive_types[passive] then if #dot_separated_group > 1 then parse_err("No footnotes allowed with '" .. passive .. "' spec") end if base.passive then parse_err("Value for passive type specified twice") end base.passive = passive base.passive_uncertain = uncertain else parse_err("Unrecognized spec '" .. first_element .. "'") end end end return base end -- Normalize all lemmas, substituting the pagename for blank lemmas and adding links to multiword lemmas. local function normalize_all_lemmas(alternant_multiword_spec, head) -- (1) Add links to all before and after text. Remember the original text so we can reconstruct the verb spec later. if not alternant_multiword_spec.args.noautolinktext then iut.add_links_to_before_and_after_text(alternant_multiword_spec, "remember original") end -- (2) Remove any links from the lemma, but remember the original form so we can use it below in the 'lemma_linked' -- form. iut.map_word_specs(alternant_multiword_spec, function(base) if base.lemma == "" then base.lemma = head end base.user_specified_lemma = base.lemma base.lemma = m_links.remove_links(base.lemma) base.user_specified_verb = base.lemma base.verb = base.user_specified_verb local linked_lemma if alternant_multiword_spec.args.noautolinkverb or base.user_specified_lemma:find("%[%[") then linked_lemma = base.user_specified_lemma else -- Add links to the lemma so the user doesn't specifically need to, since we preserve -- links in multiword lemmas and include links in non-lemma forms rather than allowing -- the entire form to be a link. linked_lemma = iut.add_links(base.user_specified_lemma) end base.linked_lemma = linked_lemma end) end --W: Lexical exceptions — yāʾ-middle roots whose Form IV (أفعل) keeps the yāʾ SOUND -- instead of undergoing the regular إعلال to a hollow verb (أَفْيَلَ, not أَفَالَ). -- These are attested verbs (not the صفة مشبهة like أَخْيَف/خَيْفاء); each is sourced below. -- Only Form IV is affected; forms VII/VIII/X of these roots remain hollow. -- Keyed by rad1..rad2..rad3. local SOUND_FORM_IV_ROOTS = { ["خيل"] = true, -- أَخْيَلَ: أخيلت السماءُ تهيأت للمطر — المعجم الوسيط ج1 ص266 (وبه أَخالت أيضًا) ["غيل"] = true, -- أَغْيَلَ: أغيلته فهي مُغْيِل، سقته الغَيْل — لسان العرب ج11 ص111 (وبه أغالت أيضًا) ["حيج"] = true, -- أَحْيَجَ: أحيجت الأرضُ، على خلاف القياس — تاج العروس ج5 ص500 ["حين"] = true, -- أَحْيَنَ: أحين القومُ آن لهم أن يبلغوا ما أملوه — المعجم الوسيط ج1 ص212 ["خيف"] = true, -- أَخْيَفَ: أخيف الحاجُّ نزلوا خيف منى — كتاب الأفعال لابن القوطية ص35 ["ريف"] = true, -- أَرْيَفَ: أريفت الأرضُ إريافًا (خصبت) — المحيط في اللغة ج10 ص256 ["زين"] = true, -- أَزْيَنَ: أزينت الأرضُ، حسّنها عشبها — مقاييس اللغة ج3 ص41 } -- Determine weakness from radicals. Used when root given in place of lemma (e.g. for {{ar-verb forms}}). local function weakness_from_radicals(form, rad1, rad2, rad3, rad4) local weakness = nil local quadlit = form:find("q$") -- If weakness unspecified, derive from radicals. if not quadlit then if is_waw_ya(rad3) and rad1 == W and form == "I" then weakness = "assimilated+final-weak" elseif is_waw_ya(rad3) and vform_supports_final_weak(form) then weakness = "final-weak" elseif rad2 == rad3 and vform_supports_geminate(form) then weakness = "geminate" elseif is_waw_ya(rad2) and vform_supports_hollow(form) then --W: Both wāw (و) and yāʾ (ي) in the middle position create hollow verbs, in form I -- (قَالَ from ق-و-ل, بَاعَ from ب-ي-ع) and in the augmented forms IV, VII, VIII, X -- (أَتَاسَ from ت-ي-س, أَبَانَ from ب-ي-ن, أَطَاحَ from ط-ي-ح — معجم متن اللغة). if form == "IV" and rad2 == Y and SOUND_FORM_IV_ROOTS[rad1 .. rad2 .. rad3] then -- Lexical exceptions whose Form IV keeps the yāʾ sound (أَفْيَلَ); see SOUND_FORM_IV_ROOTS. weakness = "sound" else weakness = "hollow" end elseif rad1 == W and form == "I" then weakness = "assimilated" else weakness = "sound" end else if is_waw_ya(rad4) then weakness = "final-weak" else weakness = "sound" end end return weakness end -- Join the infixed tāʔ (ت) to the first radical in form VIII verbs. This may cause assimilation of the tāʔ to the -- radical or in some cases the radical to the tāʔ. Used when a root is supplied instead of a lemma (which already has -- the appropriate assimilation in it). local function form_viii_join_ta(rad) if rad == W or rad == Y or rad == "ت" then return "تّ" elseif rad == "د" then return "دّ" elseif rad == "ث" then return "ثّ" elseif rad == "ذ" then return "ذّ" elseif rad == "ز" then return "زْد" elseif rad == "ص" then return "صْط" elseif rad == "ض" then return "ضْط" elseif rad == "ط" then return "طّ" elseif rad == "ظ" then return "ظّ" else return rad .. SK .. "ت" end end local function detect_indicator_spec(base) base.forms = {} base.stem_overrides = {} base.slot_overrides = {} if not base.conj_vowels[1] then -- These may be converted to inferred vowels. If not, we throw an error if form I and not passive-only. base.conj_vowels = {{ past = "-", nonpast = "-", }} else -- If multiple vowels specified for a given vowel type (e.g. a,u~u), expand so that each spec in local expansion = {} for _, spec in ipairs(base.conj_vowels) do for _, past in ipairs(spec.past) do for _, nonpast in ipairs(spec.nonpast) do table.insert(expansion, {past = past, nonpast = nonpast}) end end end base.conj_vowels = expansion end local vform = base.verb_form -- check for quadriliteral form (Iq, IIq, IIIq, IVq) base.quadlit = not not vform:find("q$") -- Infer radicals as necessary. We infer a separate set of radicals for each past~non-past vowel combination because -- they may be different (particularly with form-I hollow verbs). for _, vowel_spec in ipairs(base.conj_vowels) do -- NOTE: rad1, rad2, etc. refer to user-specified radicals, which are formobj tables that optionally specify an -- explicit manual translit, whereas ir1, ir2, etc. refer to inferred radicals, which are either strings or -- lists of possible radicals. local rads = base.root_consonants local rad1, rad2, rad3, rad4 = rads[1], rads[2], rads[3], rads[4] -- Default any unspecified radicals to radicals determined from the headword. The returned radicals may be -- lists of possible radicals, where the first radical should be chosen if the user didn't explicitly specify a -- radical but all are allowed. If `ambig = true` is set in the table, the radical is considered ambiguous and -- categories won't be created for weak radicals. local weakness, ir1, ir2, ir3, ir4 if vform ~= "none" then ir1, ir2, ir3 = rmatch(base.lemma, "^([^_])_([^_])_([^_])$") if not ir1 then ir1, ir2, ir3, ir4 = rmatch(base.lemma, "^([^_])_([^_])_([^_])_([^_])$") end if ir1 then -- root given instead of lemma weakness = weakness_from_radicals(vform, ir1, ir2, ir3, ir4) if vform == "VIII" then vowel_spec.form_viii_assim = form_viii_join_ta(ir1) end else local ret = export.infer_radicals { headword = base.lemma, vform = vform, passive = base.passive, past_vowel = vowel_spec.past, nonpast_vowel = vowel_spec.nonpast, is_reduced = base.reduced, } weakness, ir1, ir2, ir3, ir4 = ret.weakness, ret.rad1, ret.rad2, ret.rad3, ret.rad4 vowel_spec.form_viii_assim = ret.form_viii_assim vowel_spec.past = ret.past_vowel vowel_spec.nonpast = ret.nonpast_vowel vowel_spec.variant = base.variant or ret.variant end end -- For most ambiguous radicals, the choice of radical doesn't matter because it doesn't affect the conjugation -- one way or another. For form I hollow verbs, however, it definitely does. In fact, the choice of radical is -- critical even beyond the past and non-past vowels because it affects the form of the passive participle. So, -- check for this and signal an error if the radical could not be inferred and is not given explicitly. if vform == "I" and type(ir2) == "table" and ir2.need_radical and not rad2 then error("Unable to guess middle radical of hollow form I verb; need to specify radical explicitly") end if vform == "I" and not is_passive_only(base.passive) and ( rget(vowel_spec.past) == "-" or rget(vowel_spec.nonpast) == "-") then error("Form I verb that isn't passive-only or final-weak must have past~non-past vowels specified") end -- Convert ambiguous radicals. local function regularize_inferred_radical(rad) if type(rad) == "table" then if rad.ambig then return {form = rad[1], ambig = true} else return rad[1] end else return rad end end -- Return the appropriate radical at index `index` (1 through 4), based either on the user-specified radical -- `user_radical` or (if unspecified) `inferred_radical`, inferred from the unvocalized lemma. Two values are -- returned, the "regularized" version of the radical (where ambiguous inferred radicals are converted to their -- most likely actual radical) and the non-regularized version. The returned values are form objects rather than -- strings. local function fetch_radical(user_radical, inferred_radical, index) if not user_radical then return regularize_inferred_radical(inferred_radical), inferred_radical else local rad_formval = rget(user_radical) if type(inferred_radical) == "table" then local allowed_radical_set = m_table.listToSet(inferred_radical) if not allowed_radical_set[rad_formval] then error(("For lemma %s, radical %s ambiguously inferred as %s but user radical incompatibly given as %s"): format(base.lemma, index, list_to_text(inferred_radical, nil, " or "), rad_formval)) end elseif rad_formval ~= inferred_radical then error(("For lemma %s, radical %s inferred as %s but user radical incompatibly given as %s"): format(base.lemma, index, inferred_radical, rad_formval)) end return user_radical, user_radical end end if vform ~= "none" then vowel_spec.rad1, vowel_spec.unreg_rad1 = fetch_radical(rad1, ir1, 1) vowel_spec.rad2, vowel_spec.unreg_rad2 = fetch_radical(rad2, ir2, 2) vowel_spec.rad3, vowel_spec.unreg_rad3 = fetch_radical(rad3, ir3, 3) if base.quadlit then vowel_spec.rad4, vowel_spec.unreg_rad4 = fetch_radical(rad4, ir4, 4) end end if vform == "I" then -- If explicit weakness given using 'I-sound' or 'I-assimilated', we may need to adjust the inferred weakness. if base.explicit_weakness == "sound" then if weakness == "assimilated" then weakness = "sound" elseif weakness == "assimilated+final-weak" then -- Verbs like waniya~yawnā "to be faint; to languish" (although the defaults should handle this -- correctly) weakness = "final-weak" else error(("Can't specify form 'I-sound' when inferred weakness is '%s' for lemma %s"):format( weakness, base.lemma)) end elseif base.explicit_weakness == "assimilated" then if weakness == "sound" then -- i~a verbs like waṭiʔa~yaṭaʔu "to tread, to trample"; wasiʕa~yasaʕu "to be spacious; to be well-off"; -- waṯiʔa~yaṯaʔu "to get bruised, to be sprained", which would default to sound. weakness = "assimilated" elseif weakness == "final-weak" then -- For completeness; not clear if any verbs occur where this is needed. (There are plenty of -- assimilated+final-weak verbs but the defaults should take care of them.) weakness = "assimilated+final-weak" else error(("Can't specify form 'I-assimilated' when inferred weakness is '%s' for lemma %s"):format( weakness, base.lemma)) end elseif base.explicit_weakness then error(("Internal error: Unrecognized value '%s' for base.explicit_weakness"):format(base.explicit_weakness)) end elseif vform == "none" then weakness = base.explicit_weakness elseif base.explicit_weakness then error(("Internal error: Explicit weakness should not be specifiable except with forms I and none, but saw explicit weakness '%s' with verb form '%s'"): format(base.explicit_weakness, vform)) end vowel_spec.weakness = weakness if vform ~= "none" then -- Error if radicals are wrong given the weakness. More likely to happen if the weakness is explicitly given -- rather than inferred. Will also happen if certain incorrect letters are included as radicals e.g. hamza on -- top of various letters, alif maqṣūra, tā' marbūṭa. check_radicals(vform, weakness, rget(vowel_spec.rad1), rget(vowel_spec.rad2), rget(vowel_spec.rad3), base.quadlit and rget(vowel_spec.rad4) or nil) end -- Check the variant value. local form_iii_vi_geminate = (vform == "III" or vform == "VI") and rget(vowel_spec.rad2) == rget(vowel_spec.rad3) and not req(vowel_spec.rad2, Y) local hayy_i_x = hayy_radicals(vowel_spec.rad1, vowel_spec.rad2, vowel_spec.rad3) and (vform == "I" or vform == "X") if form_iii_vi_geminate or hayy_i_x then if vowel_spec.variant and vowel_spec.variant ~= "long" and vowel_spec.variant ~= "short" and vowel_spec.variant ~= "both" then error(("For form-III/VI geminate verb or form-I/X verb with ح-ي-ي radicals, saw unrecognized 'var:%s' value; should be 'var:long', 'var:short' or 'var:both'"):format( vowel_spec.variant)) end elseif vowel_spec.variant then error(("Variant value 'var:%s' not allowed in this context"):format(vowel_spec.variant)) end end -- If form I, regroup expanded vowels for display purposes. if vform == "I" then local group_by_past = {} for _, vowel_spec in ipairs(base.conj_vowels) do m_table.insertIfNot(group_by_past, { past = undia[rget(vowel_spec.past)], nonpasts = {undia[rget(vowel_spec.nonpast)]}, }, { key = function(obj) return obj.past end, combine = function(obj1, obj2) for _, nonpast in ipairs(obj2.nonpasts) do m_table.insertIfNot(obj1.nonpasts, nonpast) end end, }) end local group_by_nonpast = {} for _, vowel_spec in ipairs(group_by_past) do m_table.insertIfNot(group_by_nonpast, { pasts = {vowel_spec.past}, nonpasts = vowel_spec.nonpasts, }, { key = function(obj) return obj.nonpasts end, combine = function(obj1, obj2) for _, past in ipairs(obj2.pasts) do m_table.insertIfNot(obj1.pasts, past) end end, }) end base.grouped_conj_vowels = group_by_nonpast end -- Set value of passive. If not specified, default is yes for forms II, III, IV and Iq; no but uncertainly for -- forms VII, IX, XI - XV and IIIq - IVq, as well as form I with past vowel u; impersonal but uncertainly for form -- V, VI, X and IIq, as well as form I with past vowel i; and yes but uncertainly for the remainder (form I with -- past vowel only a and form VIII). if not base.passive then base.passive_defaulted = true -- Temporary tracking for defaulted passives by verb form, weakness and (for form I) past/non-past vowels. track_if_ar_conj(base, "passive-defaulted/" .. vform) for _, vowel_spec in ipairs(base.conj_vowels) do track_if_ar_conj(base, "passive-defaulted/" .. vform.. "/" .. vowel_spec.weakness) if vform == "I" then --W: use rget(); the vowel is a form object when the user attached a footnote -- (e.g. <I/a[نادر]~u>), and undia[<table>] is nil, which crashes format() on Lua 5.1. local past_nonpast = ("%s~%s"):format(undia[rget(vowel_spec.past)], undia[rget(vowel_spec.nonpast)]) track_if_ar_conj(base, "passive-defaulted/I/" .. past_nonpast) track_if_ar_conj(base, "passive-defaulted/I/" .. vowel_spec.weakness .. "/" .. past_nonpast) end end if vform_probably_full_passive(vform) then base.passive = "pass" else base.passive_uncertain = true for _, vowel_spec in ipairs(base.conj_vowels) do if vform_probably_no_passive(vform, vowel_spec.weakness, vowel_spec.past, vowel_spec.nonpast) then base.passive = "nopass" break elseif vform_probably_impersonal_passive(vform, vowel_spec.weakness, vowel_spec.past, vowel_spec.nonpast) then base.passive = "ipass" break end end base.passive = base.passive or "pass" end end -- NOTE: Currently there are no built-in stems or form overrides for Arabic; this code is inherited from -- [[Module:ca-verb]], where such things do exist, and is kept for generality in case we decide in the future to -- implement such things. -- Override built-in verb stems and overrides with user-specified ones. for stem, values in pairs(base.user_stem_overrides) do base.stem_overrides[stem] = values end for slot, values in pairs(base.user_slot_overrides) do if not base.alternant_multiword_spec.verb_slots_map[slot] then error("Unrecognized override slot '" .. slot .. "': " .. base.angle_bracket_spec) end if export.unsettable_slots_set[slot] then error("Slot '" .. slot .. "' cannot be set using an override: " .. base.angle_bracket_spec) end if skip_slot(base, slot, "allow overrides") then error("Override slot '" .. slot .. "' would be skipped based on the passive, 'noimp' and/or 'no_nonpast' settings: " .. base.angle_bracket_spec) end base.slot_overrides[slot] = values end if base.verb_form == "none-final-weak" then for _, stem_type in ipairs { "past", "past_pass", "nonpast", "nonpast_pass" } do if base.stem_overrides[stem_type .. "_c"] or base.stem_overrides[stem_type .. "_v"] then error(("Specify past stem for verb type 'none-final-weak' using '%s:...' not '%s_c:...' or '%s_v:...'"): format(stem_type, stem_type, stem_type)) end end for _, stem_type in ipairs { "past", "nonpast" } do if base.stem_overrides[stem_type] or not base.stem_overrides[stem_type .. "_final_weak_vowel"] then error(("For verb type 'none-final-weak', if '%s:...' specified, so must '%s_final_weak_vowel:...'"): format(stem_type, stem_type)) end end end end local function detect_all_indicator_specs(alternant_multiword_spec) add_slots(alternant_multiword_spec) alternant_multiword_spec.verb_forms = {} -- This means at least one individual base had the slot marked as explicitly missing. Another base (e.g. when -- there are multiple alternants) might have a value for the slot. In practice, we only respect this when there are -- no overall values in the slot and `slot_uncertain` isn't set; in this case, we display "no ..." for the slot -- instead of simply not displaying anything for the slot. alternant_multiword_spec.slot_explicitly_missing = {} -- This means at least one individual base had no values for the slot and the slot marked as explicitly uncertain. -- Note that this is different from a value being present but marked as uncertain (e.g. if an override was given -- with a ? after it); this causes the form object for the value to have `uncertain = true` set. If there are no -- overall values in the slot and `slot_uncertain` is set, we display this in the headword. alternant_multiword_spec.slot_uncertain = {} iut.map_word_specs(alternant_multiword_spec, function(base) -- So arguments, etc. can be accessed. WARNING: Creates circular reference. base.alternant_multiword_spec = alternant_multiword_spec detect_indicator_spec(base) if not base.nocat then m_table.insertIfNot(alternant_multiword_spec.verb_forms, base.verb_form) end if base.passive then alternant_multiword_spec.passive = base.passive end if base.passive_uncertain then alternant_multiword_spec.passive_uncertain = true end for slot, _ in pairs(base.slot_explicitly_missing) do alternant_multiword_spec.slot_explicitly_missing[slot] = true end end) end local function determine_slot_uncertainty_from_forms(alternant_multiword_spec) iut.map_word_specs(alternant_multiword_spec, function(base) -- If no verbal noun and verb form is not 'none' (manually-specified stems) — which currently only happens for -- form I — and the verbal noun wasn't explicitly indicated as missing using <vn:->, we assume it's just -- unknown/unspecified rather than missing. Same with active participles. for uncertain_slot, _ in pairs(slots_that_may_be_uncertain) do if not base.forms[uncertain_slot] and vform ~= "none" and not skip_slot(base, uncertain_slot) then base.slot_uncertain[uncertain_slot] = true end end -- Propagate slot uncertainty up. Currently only the verbal noun can have this set but we write the code -- generally. for slot, _ in pairs(base.slot_uncertain) do alternant_multiword_spec.slot_uncertain[slot] = true end end) -- If slot is uncertain and has no value, explicitly set its value to "?". for uncertain_slot, _ in pairs(slots_that_may_be_uncertain) do if not alternant_multiword_spec.forms[uncertain_slot] and alternant_multiword_spec.slot_uncertain[uncertain_slot] then alternant_multiword_spec.forms[uncertain_slot] = {{form = "?"}} end end end -- Determine certain properties of the verb from the overall forms, such as whether the verb is active-only or -- passive-only, is impersonal, lacks an imperative, etc. local function determine_verb_properties_from_forms(alternant_multiword_spec) alternant_multiword_spec.has_active = false alternant_multiword_spec.has_passive = false alternant_multiword_spec.has_non_impers_active = false alternant_multiword_spec.has_non_impers_passive = false alternant_multiword_spec.has_imp = false alternant_multiword_spec.has_past = false alternant_multiword_spec.has_nonpast = false for slot, _ in pairs(alternant_multiword_spec.forms) do if slot == "ap" or slot:find("[123]") and not slot:find("_pass") then alternant_multiword_spec.has_active = true end if slot == "pp" or slot:find("[123]") and slot:find("_pass") then alternant_multiword_spec.has_passive = true end if slot:find("[123]") and not slot:find("pass_[123]") and not slot:find("3ms") then alternant_multiword_spec.has_non_impers_active = true end if slot:find("pass_[123]") and not slot:find("3ms") then alternant_multiword_spec.has_non_impers_passive = true end if slot:find("^imp_") then alternant_multiword_spec.has_imp = true end if slot:find("^past_") then alternant_multiword_spec.has_past = true end if slot:find("^ind_") or slot:find("^sub_") or slot:find("^juss_") then alternant_multiword_spec.has_nonpast = true end end end local function add_categories_and_annotation(alternant_multiword_spec, base, multiword_lemma, insert_ann, insert_cat) -- Useful e.g. in constructing suppletive verbs out of parts. For a verb like جاء or أتى whose imperative comes -- from the unrelated verb تعالى, we don't want the latter verb showing up in categories or annotations. if base.nocat then return end local vform = base.verb_form if vform ~= "none" then insert_ann("form", vform) insert_cat("form-" .. vform .. " verbs") --W: Add morphological pattern corresponding to the form local morph_pattern = FORM_TO_MORPHOLOGICAL_PATTERN[vform] if morph_pattern then insert_ann("morph_pattern", morph_pattern) end end if base.reduced then insert_ann("reduced", "reduced") if vform ~= "none" then insert_cat("form-" .. vform .. " reduced verbs") end end if base.quadlit then insert_cat("verbs with quadriliteral roots") end if base.passive_defaulted then insert_cat("verbs with defaulted passive") end for _, vowel_spec in ipairs(base.conj_vowels) do local rad1, rad2, rad3, rad4 = get_radicals_4(vowel_spec) local final_weak = is_final_weak(base, vowel_spec) local weakness = vowel_spec.weakness -- We have to distinguish weakness by form and weakness by conjugation. Weakness by form merely indicates the -- presence of weak letters in certain positions in the radicals. Weakness by conjugation is related to how the -- verbs are conjugated. For example, form-II verbs that are "hollow by form" (middle radical is wāw or yāʾ) are -- conjugated as sound verbs. Another example: form-I verbs with initial wāw are "assimilated by form" and most -- are assimilated by conjugation as well, but a few are sound by conjugation, e.g. wajuha yawjuhu "to be -- distinguished" (rather than wajuha yajuhu); similarly for some hollow-by-form verbs in various forms, e.g. -- form VIII izdawaja yazdawiju "to be in pairs" (rather than izdāja yazdāju). Categories referring to weakness -- always refer to weakness by conjugation; weakness by form is distinguished only by categories such as -- [[:Category:Arabic form-III verbs with و as second radical]]. insert_ann("weakness", weakness) if vform ~= "none" then insert_cat(("%s form-%s verbs"):format(weakness, vform)) end local function radical_is_ambiguous(rad) return type(rad) == "table" and rad.ambig end local function radical_is_unambiguous_weak(rad) return not radical_is_ambiguous(rad) and (is_waw_ya(rad) or req(rad, HAMZA)) end if vform ~= "none" then local ur1, ur2, ur3, ur4 = vowel_spec.unreg_rad1, vowel_spec.unreg_rad2, vowel_spec.unreg_rad3, vowel_spec.unreg_rad4 -- Create headword categories based on the radicals. Do the following before -- converting the Latin radicals into Arabic ones so we distinguish -- between ambiguous and non-ambiguous radicals. if radical_is_ambiguous(ur1) or radical_is_ambiguous(ur2) or radical_is_ambiguous(ur3) or ur4 and radical_is_ambiguous(ur4) then insert_cat("verbs with ambiguous radicals") end if radical_is_unambiguous_weak(ur1) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur1) .. " as first radical") end if radical_is_unambiguous_weak(ur2) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur2) .. " as second radical") end if radical_is_unambiguous_weak(ur3) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur3) .. " as third radical") end if ur4 and radical_is_unambiguous_weak(ur4) then insert_cat("form-" .. vform .. " verbs with " .. rget(ur4) .. " as fourth radical") end end end if vform == "I" and not is_passive_only(base.passive) then for _, vowel_spec in ipairs(base.grouped_conj_vowels) do insert_ann("vowels", ("%s ~ %s"):format(table.concat(vowel_spec.pasts, "/"), table.concat(vowel_spec.nonpasts, "/"))) for _, past in ipairs(vowel_spec.pasts) do for _, nonpast in ipairs(vowel_spec.nonpasts) do if past == "-" or nonpast == "-" then error("Internal error: Saw form I past vowel %s and non-past vowel %s but - in place of vowel should have triggered an error earlier") end insert_cat(("form-I verbs with past vowel %s and non-past vowel %s"):format(past, nonpast)) --W: Add morphological pattern for form I based on vowels local form_i_with_vowels = ("I/%s~%s"):format(past, nonpast) local morph_pattern = FORM_TO_MORPHOLOGICAL_PATTERN[form_i_with_vowels] if morph_pattern then insert_ann("morph_pattern", morph_pattern) end end end end end for slot, name in pairs(slots_that_may_be_uncertain) do if base.slot_uncertain[slot] then -- An unspecified and non-defaulted verbal noun (form I) is considered uncertain rather than explicitly -- missing. Use <vn:-> to explicitly indicate the lack of verbal noun. Same for form-I stative active -- participles. insert_cat(("verbs with unknown or uncertain %ss"):format(name)) end end if base.irregular then insert_ann("irreg", "irregular") insert_cat("irregular verbs") end end -- Compute the categories to add the verb to, as well as the annotation to display in the conjugation title bar. We -- combine the code to do these functions as both categories and title bar contain similar information. local function compute_categories_and_annotation(alternant_multiword_spec) alternant_multiword_spec.categories = {} local ann = {} alternant_multiword_spec.annotation = ann ann.form = {} ann.morph_pattern = {} --W: arabic morphological pattern corresponding to the form ann.weakness = {} ann.vowels = {} ann.passive = nil ann.reduced = {} ann.irreg = {} ann.defective = {} local multiword_lemma = false for _, slot in ipairs(export.potential_lemma_slots) do if alternant_multiword_spec.forms[slot] then for _, formobj in ipairs(alternant_multiword_spec.forms[slot]) do if formobj.form:find(" ") then multiword_lemma = true break end end break end end local function insert_ann(anntype, value) m_table.insertIfNot(alternant_multiword_spec.annotation[anntype], value) end local function insert_cat(cat, also_when_multiword) -- Don't place multiword terms in categories like 'Arabic form-II verbs' to avoid spamming the categories with -- such terms. if also_when_multiword or not multiword_lemma then m_table.insertIfNot(alternant_multiword_spec.categories, "Arabic " .. cat) end end iut.map_word_specs(alternant_multiword_spec, function(base) add_categories_and_annotation(alternant_multiword_spec, base, multiword_lemma, insert_ann, insert_cat) end) for slot, name in pairs(slots_that_may_be_uncertain) do if alternant_multiword_spec.forms[slot] then for _, form in ipairs(alternant_multiword_spec.forms[slot]) do if form.uncertain then if form.form == "?" then insert_cat(("verbs with explicitly unknown %ss"):format(name)) else insert_cat(("verbs needing %s checked"):format(name)) end break end end end end if alternant_multiword_spec.has_active then if alternant_multiword_spec.has_passive and alternant_multiword_spec.has_non_impers_passive then insert_cat("verbs with full passive") ann.passive = "full passive" elseif alternant_multiword_spec.has_passive then insert_cat("verbs with impersonal passive") ann.passive = "impersonal passive" else insert_cat("verbs lacking passive forms") ann.passive = "no passive" end else if alternant_multiword_spec.has_non_impers_passive then insert_cat("passive verbs") insert_cat("verbs with full passive") ann.passive = "passive-only" else insert_cat("passive verbs") insert_cat("impersonal verbs") insert_cat("verbs with impersonal passive") ann.passive = "impersonal (passive-only)" end end if alternant_multiword_spec.passive_uncertain then insert_cat("verbs needing passive checked") ann.passive = ann.passive .. ' <abbr title="passive status uncertain">(?)</abbr>' end if alternant_multiword_spec.has_active and not alternant_multiword_spec.has_imp then insert_ann("defective", "no imperative") insert_cat("verbs lacking imperative forms") end if not alternant_multiword_spec.has_past then insert_ann("defective", "no past") insert_cat("verbs lacking past forms") end if not alternant_multiword_spec.has_nonpast then insert_ann("defective", "no non-past") insert_cat("verbs lacking non-past forms") end local ann_parts = {} local function insert_ann_part(part, conj) local val = table.concat(ann[part], conj or " or ") if val ~= "" and val ~= "regular" then table.insert(ann_parts, val) end end insert_ann_part("form") insert_ann_part("weakness") insert_ann_part("reduced") insert_ann_part("vowels") if ann.passive then table.insert(ann_parts, ann.passive) end insert_ann_part("irreg") insert_ann_part("defective", "، ") --W: Save morph_pattern before overwriting annotation with string alternant_multiword_spec.morph_pattern = ann.morph_pattern alternant_multiword_spec.annotation = table.concat(ann_parts, "، ") end local function show_forms(alternant_multiword_spec) local lemmas = {} for _, slot in ipairs(export.potential_lemma_slots) do if alternant_multiword_spec.forms[slot] then for _, formobj in ipairs(alternant_multiword_spec.forms[slot]) do table.insert(lemmas, formobj) end break end end alternant_multiword_spec.lemmas = lemmas -- save for later use in make_table() alternant_multiword_spec.vn = alternant_multiword_spec.forms.vn -- save for later use in make_table() -- Reconstruct the original verb spec without overrides for verbal nouns and participles, since those specific slots -- are ignored by {{ar-verb form}}. Compute this once beforehand; `transform_accel_obj` is called repeatedly on each -- form and we don't want to compute this repeatedly. local reconstructed_verb_spec = iut.reconstruct_original_spec(alternant_multiword_spec, { preprocess_angle_bracket_spec = function(spec) spec = spec:match("^<(.*)>$") assert(spec) local segments = put.parse_multi_delimiter_balanced_segment_run(spec, {{"[", "]"}, {"<", ">"}}) local dot_separated_groups = put.split_alternating_runs_and_strip_spaces(segments, "%.") -- Rejoin each dot-separated group into a single string, since we aren't actually going to do any parsing -- of bracket-bounded textual runs; then filter out overrides for verbal nouns and participles. local filtered_indicators = {} for _, dot_separated_group in ipairs(dot_separated_groups) do local indicator = table.concat(dot_separated_group) -- FIXME: Do we want to filter out any other indicators? if not (indicator:find("^vn:") or indicator:find("^[ap]p:")) then table.insert(filtered_indicators, indicator) end end return ("<%s>"):format(table.concat(filtered_indicators, ".")) end, }) -- If we're dealing with a single word, no alternants and a single verb form, use the auto-conjugation-fetching -- variant. local reconstructed_lemma, inside = reconstructed_verb_spec:match("^([^ <>()]+)(%b<>)$") if inside and alternant_multiword_spec.verb_forms[1] and not alternant_multiword_spec.verb_forms[2] then reconstructed_verb_spec = ("+%s<%s>"):format(reconstructed_lemma, alternant_multiword_spec.verb_forms[1]) end local function transform_accel_obj(slot, formobj, accel_obj) if not accel_obj then return accel_obj end if slot == "ap" or slot == "pp" or slot == "vn" then -- FIXME: [[Module:accel]] can't correctly handle more than one verb form for participles and verbal nouns accel_obj.form = slot .. "-" .. table.concat(alternant_multiword_spec.verb_forms, "،") else accel_obj.form = "verb-form-" .. reconstructed_verb_spec end return accel_obj end local function generate_link(data) local form = data.form local term = form.formval_for_link local alt = form.alt if term == "?" then term = nil alt = "?" end --W: Create simple link for verb forms without #Arabic anchor local display = alt or term local link if display then link = link_term_simple(display) else link = "" end link = link .. iut.get_footnote_text(form.footnotes, data.footnote_obj) --W: qualifier/label rendering removed along with the q/qq/l/ll modifiers; -- it required [[Module:pron qualifier]], absent on ar.wiktionary. return link end local props = { lang = lang, lemmas = lemmas, transform_accel_obj = transform_accel_obj, generate_link = generate_link, slot_list = alternant_multiword_spec.verb_slots, include_translit = false, } iut.show_forms(alternant_multiword_spec.forms, props) end --W: Tatweel and the invisible direction/joining marks survive copy-paste and -- MediaWiki keeps them in page titles, so strip them from both sides before -- comparing a |بؤرة= value against a generated form. local FOCUS_IGNORE = "[" .. u(0x0640) .. u(0x061C) .. u(0x200B) .. "-" .. u(0x200F) .. u(0x202A) .. "-" .. u(0x202E) .. u(0xFEFF) .. "]" local function normalize_for_focus(s) return (rsub(s, FOCUS_IGNORE, "")) end --W: Which slots hold `focus`? Must run before show_forms() turns the form -- lists into rendered wikitext. local function find_focus_slots(alternant_multiword_spec, focus) if not focus or focus == "" then return nil end local target = normalize_for_focus(focus) local slots = {} for slot, forms in pairs(alternant_multiword_spec.forms) do if type(forms) == "table" then for _, formobj in ipairs(forms) do if type(formobj) == "table" and formobj.form and normalize_for_focus(formobj.form) == target then slots[slot] = true break end end end end return slots end --W: 'yes' unless |موسع= asked for the table open. [[Template:inflection-table-top]] -- turns any non-empty |tall= into the mw-collapsed class. local function collapsed_arg(alternant_multiword_spec) if alternant_multiword_spec.expanded then return nil end return 'yes' end --W: Put the marker class on the cell itself rather than on a span around its -- contents, so the highlight covers the whole cell instead of hugging the word. -- Runs on the table wikitext below, before m_string_utilities.format() fills the -- {slot} placeholders in. Every form cell in either table has one of two shapes: -- -- | {past_1s} -> | class="avf-focus" | {past_1s} -- | rowspan="2" | {past_1s} -> | rowspan="2" class="avf-focus" | {past_1s} -- -- Styled by [[Template:ar-verb-form/style.css]] (.inflection-table td.avf-focus). local function mark_focus_cells(text, focus_slots) if not focus_slots then return text end return (rsub(text, "\n(|[^\n]*)", function(cell) local slot = rmatch(cell, "^|%s*{([%w_]+)}%s*$") if slot then if focus_slots[slot] then return '\n| class="avf-focus" | {' .. slot .. "}" end return nil end local attrs attrs, slot = rmatch(cell, "^|%s*(.-)%s*|%s*{([%w_]+)}%s*$") if slot and focus_slots[slot] then return "\n| " .. attrs .. ' class="avf-focus" | {' .. slot .. "}" end return nil end)) end ------------------------------------------------------------------------------- -- Functions to create inflection tables -- ------------------------------------------------------------------------------- -- Make the conjugation table. Called from export.show(). local function make_table(alternant_multiword_spec) local text = mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-top', args = { title = 'تصريف {title}', --W: |tall= is what puts mw-collapsed on the wrapper. |موسع= drops it. -- (Not `expanded and nil or 'yes'` — in Lua that is always 'yes'.) tall = collapsed_arg(alternant_multiword_spec), palette = 'green', category = 'conjugation', class = 'tr-alongside', -- temp hack to prevent extra line break } } text = text .. [=[ ! colspan="6" | <<الْمَصْدَر>> | colspan="7" | {vn} ]=] if alternant_multiword_spec.has_active then text = text .. [=[ |- ! colspan="6" | <<اِسْم الْفَاعِل>> | colspan="7" | {ap} ]=] end if alternant_multiword_spec.has_passive then text = text .. [=[ |- ! colspan="6" | <<اِسْم الْمَفْعُول>> | colspan="7" | {pp} ]=] end text = text .. [=[ |- ! colspan="999" class="separator" | ]=] if alternant_multiword_spec.has_active then text = text .. [=[ |- ! colspan="12" class="outer" | <<الْفِعْل الْمَعْلُوم>> |- ! colspan="2" | ! colspan="3" | <<الْمُفْرَد>> ! rowspan="12" class="separator" | ! colspan="2" | <<الْمُثَنَّى>> ! rowspan="12" class="separator" | ! colspan="3"| <<الْجَمْع>> |- ! colspan="2"| ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> |- ! rowspan="2" | <<الْمَاضِي>> ! class="secondary" | المذكر | rowspan="2" | {past_1s} | {past_2ms} | {past_3ms} | rowspan="2" | {past_2d} | {past_3md} | rowspan="2" | {past_1p} | {past_2mp} | {past_3mp} |- ! class="secondary" | المؤنث | {past_2fs} | {past_3fs} | {past_3fd} | {past_2fp} | {past_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَرْفُوع>> ! class="secondary" | المذكر | rowspan="2" | {ind_1s} | {ind_2ms} | {ind_3ms} | rowspan="2" | {ind_2d} | {ind_3md} | rowspan="2" | {ind_1p} | {ind_2mp} | {ind_3mp} |- ! class="secondary" | المؤنث | {ind_2fs} | {ind_3fs} | {ind_3fd} | {ind_2fp} | {ind_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَنْصُوب>> ! class="secondary" | المذكر | rowspan="2" | {sub_1s} | {sub_2ms} | {sub_3ms} | rowspan="2" | {sub_2d} | {sub_3md} | rowspan="2" | {sub_1p} | {sub_2mp} | {sub_3mp} |- ! class="secondary" | المؤنث | {sub_2fs} | {sub_3fs} | {sub_3fd} | {sub_2fp} | {sub_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَجْزُوم>> ! class="secondary" | المذكر | rowspan="2" | {juss_1s} | {juss_2ms} | {juss_3ms} | rowspan="2" | {juss_2d} | {juss_3md} | rowspan="2" | {juss_1p} | {juss_2mp} | {juss_3mp} |- ! class="secondary" | المؤنث | {juss_2fs} | {juss_3fs} | {juss_3fd} | {juss_2fp} | {juss_3fp} |- ! rowspan="2" | <<الْأَمْر>> ! class="secondary" | المذكر | rowspan="2" | | {imp_2ms} | rowspan="2" | | rowspan="2" | {imp_2d} | rowspan="2" | | rowspan="2" | | {imp_2mp} | rowspan="2" | |- ! class="secondary" | المؤنث | {imp_2fs} | {imp_2fp} ]=] end if alternant_multiword_spec.has_passive then text = text .. [=[ |- ! colspan="999" class="separator" | |- ! colspan="12" class="outer" | <<الْفِعْل الْمَجْهُول>> |- ! colspan="2" | ! colspan="3" | <<الْمُفْرَد>> ! rowspan="10" class="separator" | ! colspan="2" | <<الْمُثَنَّى>> ! rowspan="10" class="separator" | ! colspan="3" | <<الْجَمْع>> |- ! colspan="2" | ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> ! <<الْمُتَكَلِّم>> ! <<الْمُخَاطَب>> ! <<الْغَائِب>> |- ! rowspan="2" | <<الْمَاضِي>> ! class="secondary" | المذكر | rowspan="2" | {past_pass_1s} | {past_pass_2ms} | {past_pass_3ms} | rowspan="2" | {past_pass_2d} | {past_pass_3md} | rowspan="2" | {past_pass_1p} | {past_pass_2mp} | {past_pass_3mp} |- ! class="secondary" | المؤنث | {past_pass_2fs} | {past_pass_3fs} | {past_pass_3fd} | {past_pass_2fp} | {past_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَرْفُوع>> ! class="secondary" | المذكر | rowspan="2" | {ind_pass_1s} | {ind_pass_2ms} | {ind_pass_3ms} | rowspan="2" | {ind_pass_2d} | {ind_pass_3md} | rowspan="2" | {ind_pass_1p} | {ind_pass_2mp} | {ind_pass_3mp} |- ! class="secondary" | المؤنث | {ind_pass_2fs} | {ind_pass_3fs} | {ind_pass_3fd} | {ind_pass_2fp} | {ind_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَنْصُوب>> ! class="secondary" | المذكر | rowspan="2" | {sub_pass_1s} | {sub_pass_2ms} | {sub_pass_3ms} | rowspan="2" | {sub_pass_2d} | {sub_pass_3md} | rowspan="2" | {sub_pass_1p} | {sub_pass_2mp} | {sub_pass_3mp} |- ! class="secondary" | المؤنث | {sub_pass_2fs} | {sub_pass_3fs} | {sub_pass_3fd} | {sub_pass_2fp} | {sub_pass_3fp} |- ! rowspan="2" | <<الْمُضَارِع الْمَجْزُوم>> ! class="secondary" | المذكر | rowspan="2" | {juss_pass_1s} | {juss_pass_2ms} | {juss_pass_3ms} | rowspan="2" | {juss_pass_2d} | {juss_pass_3md} | rowspan="2" | {juss_pass_1p} | {juss_pass_2mp} | {juss_pass_3mp} |- ! class="secondary" | المؤنث | {juss_pass_2fs} | {juss_pass_3fs} | {juss_pass_3fd} | {juss_pass_2fp} | {juss_pass_3fp} ]=] end text = text .. mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-bottom', args = { notes = '{footnote}', } } local forms = alternant_multiword_spec.forms if not alternant_multiword_spec.lemmas then forms.title = "—" else local linked_lemmas = {} for _, form in ipairs(alternant_multiword_spec.lemmas) do --W: Create simple link for lemmas without #Arabic anchor -- table.insert(linked_lemmas, link_term(form.form, "term")) table.insert(linked_lemmas, link_term_simple(form.form)) end forms.title = table.concat(linked_lemmas, "، ") end local ann_parts = {} if alternant_multiword_spec.annotation ~= "" then table.insert(ann_parts, alternant_multiword_spec.annotation) end if alternant_multiword_spec.vn then local linked_vns = {} for _, form in ipairs(alternant_multiword_spec.vn) do table.insert(linked_vns, link_term(form.form, "term")) end table.insert(ann_parts, (#linked_vns > 1 and "verbal nouns" or "verbal noun") .. " " .. table.concat(linked_vns, "، ")) end local annotation = table.concat(ann_parts, "، ") --W: use only arabic morphological pattern in title annotation local morph_patterns = alternant_multiword_spec.morph_pattern if morph_patterns and #morph_patterns > 0 then annotation = table.concat(morph_patterns, "، ") forms.title = forms.title .. " (" .. annotation .. ")" end -- Format the table. text = mark_focus_cells(text, alternant_multiword_spec.focus_slots) local tagged_table = rsub(text, "<<(.-)>>", tag_text) return m_string_utilities.format(tagged_table, forms) end -- Helper function to get root letters and verb classification for simplified table header -- Returns: root_display (e.g., "ح س ب"), verb_type (e.g., "فعل ثلاثي صحيح سالم") local function get_verb_info(alternant_multiword_spec) local root_display = "" local verb_type = "فعل" local rad1, rad2, rad3, rad4 -- Extract radicals from the base word spec using iut.map_word_specs -- This accesses the radicals directly from the parsed verb specification iut.map_word_specs(alternant_multiword_spec, function(base) -- Get radicals from the first conjugation vowel spec if base.conj_vowels and #base.conj_vowels > 0 then local vowel_spec = base.conj_vowels[1] -- Extract radicals, handling both table and string types local function extract_radical(rad) if type(rad) == "table" then -- If it's a table, get the first element or the string representation return rad[1] or rget(rad) else return rad end end rad1 = extract_radical(vowel_spec.rad1) rad2 = extract_radical(vowel_spec.rad2) rad3 = extract_radical(vowel_spec.rad3) rad4 = vowel_spec.rad4 and extract_radical(vowel_spec.rad4) end end) -- Get basic/derived classification from morphological pattern local basic_deriv if alternant_multiword_spec.morph_pattern and #alternant_multiword_spec.morph_pattern > 0 then local morph_pattern = alternant_multiword_spec.morph_pattern[1] basic_deriv = MORPHOLOGICAL_PATTERN_TO_BASIC_DERIV[morph_pattern] end -- Format root display with spaces between letters if rad1 and rad2 and rad3 then if rad4 then -- Quadrilateral root_display = rad1 .. " " .. rad2 .. " " .. rad3 .. " " .. rad4 verb_type = "فعل رباعي" if basic_deriv then verb_type = verb_type .. " " .. basic_deriv end else -- triliteral root_display = rad1 .. " " .. rad2 .. " " .. rad3 verb_type = "فعل ثلاثي" if basic_deriv then verb_type = verb_type .. " " .. basic_deriv if basic_deriv == "مُجرَّد" then --W: the classification concerns only triliteral basic verbs (الثلاثي المُجرَّد) local classification = export.classify_triliteral_verb(rad1, rad2, rad3) verb_type = verb_type .. " " .. classification end end end end return root_display, verb_type end -- Make simplified conjugation table for ar.wiktionary. Called from export.show(). -- This table shows only past, present indicative, and imperative forms. -- No passive voice, no participles, no verbal nouns. local function make_table_ar(alternant_multiword_spec) local text = mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-top', args = { title = 'تصريف {title}', --W: |tall= is what puts mw-collapsed on the wrapper. |موسع= drops it. -- (Not `expanded and nil or 'yes'` — in Lua that is always 'yes'.) tall = collapsed_arg(alternant_multiword_spec), palette = 'green', category = 'conjugation', class = 'tr-alongside', -- temp hack to prevent extra line break } } -- Get verb root and classification local root_display, verb_type = get_verb_info(alternant_multiword_spec) -- First row: Root and verb type spanning all columns text = text .. "! colspan=\"2\" | <<الجذر>>: " .. root_display .. "\n" text = text .. "| colspan=\"3\" | <<'''" .. verb_type .. "'''>>\n" text = text .. [=[ |- ! colspan="2" | <<الضمائر>> ! <<الماضي>> ! <<المضارع>> ! <<الأمر>> |- ! rowspan="2" | <<المتكلّم>> | <<أنا>> | {past_1s} | {ind_1s} | |- | <<نحن>> | {past_1p} | {ind_1p} | |- ! rowspan="5" | <<المخاطب>> | <<أنتَ>> | {past_2ms} | {ind_2ms} | {imp_2ms} |- | <<أنتِ>> | {past_2fs} | {ind_2fs} | {imp_2fs} |- | <<أنتما>> | {past_2d} | {ind_2d} | {imp_2d} |- | <<أنتم>> | {past_2mp} | {ind_2mp} | {imp_2mp} |- | <<أنتنّ>> | {past_2fp} | {ind_2fp} | {imp_2fp} |- ! rowspan="6" | <<الغائب>> | <<هو>> | {past_3ms} | {ind_3ms} | |- | <<هي>> | {past_3fs} | {ind_3fs} | |- | <<هما>> | {past_3md} | {ind_3md} | |- | <<هما>> | {past_3fd} | {ind_3fd} | |- | <<هم>> | {past_3mp} | {ind_3mp} | |- | <<هنّ>> | {past_3fp} | {ind_3fp} | ]=] text = text .. mw.getCurrentFrame():expandTemplate{ title = 'inflection-table-bottom', args = { notes = '{footnote}', } } local forms = alternant_multiword_spec.forms if not alternant_multiword_spec.lemmas then forms.title = "—" else local linked_lemmas = {} for _, form in ipairs(alternant_multiword_spec.lemmas) do --W: Create simple link for lemmas without #Arabic anchor -- table.insert(linked_lemmas, link_term(form.form, "term")) table.insert(linked_lemmas, link_term_simple(form.form)) end forms.title = table.concat(linked_lemmas, "، ") end local ann_parts = {} if alternant_multiword_spec.annotation ~= "" then table.insert(ann_parts, alternant_multiword_spec.annotation) end local annotation = table.concat(ann_parts, "، ") --W: use only arabic morphological pattern in title annotation local morph_patterns = alternant_multiword_spec.morph_pattern if morph_patterns and #morph_patterns > 0 then annotation = table.concat(morph_patterns, "، ") forms.title = forms.title .. " (" .. annotation .. ")" end -- Format the table. text = mark_focus_cells(text, alternant_multiword_spec.focus_slots) local tagged_table = rsub(text, "<<(.-)>>", tag_text) return m_string_utilities.format(tagged_table, forms) end ------------------------------------------------------------------------------- -- Verb classification functions -- ------------------------------------------------------------------------------- --[=[ تصنيف الفعل الثلاثي المُجرَّد حسب نوعه Classify an Arabic triliteral basic verb root based on its three letters. @param r1 الحرف الأول (first root letter - الفاء) @param r2 الحرف الثاني (second root letter - العين) @param r3 الحرف الثالث (third root letter - اللام) @return str: نوع الفعل (verb type classification in Arabic) Examples: classify_triliteral_verb('ك', 'ت', 'ب') --> 'صحيح سالم' classify_triliteral_verb('أ', 'ت', 'ي') --> 'معتل ناقص يائي مهموز الفاء' classify_triliteral_verb('ق', 'ل', 'و') --> 'معتل ناقص واوي' ]=] function export.classify_triliteral_verb(r1, r2, r3) -- تعريف أحرف العلة والهمزة -- الحروف الضعيفة (أحرف العلة): واو وياء فقط local weak_letters = {[W] = true, [Y] = true} -- الهمزة: جميع أشكال الهمزة (ء، أ، إ، ؤ، ئ) local hamza_letters = { [HAMZA] = true, -- ء [HAMZA_ON_ALIF] = true, -- أ [HAMZA_UNDER_ALIF] = true, -- إ [HAMZA_ON_W] = true, -- ؤ [HAMZA_ON_Y] = true -- ئ } -- فحص كل حرف local is_hamza = {hamza_letters[r1] or false, hamza_letters[r2] or false, hamza_letters[r3] or false} local is_weak = {weak_letters[r1] or false, weak_letters[r2] or false, weak_letters[r3] or false} -- عدد أحرف العلة local weak_count = (is_weak[1] and 1 or 0) + (is_weak[2] and 1 or 0) + (is_weak[3] and 1 or 0) -- فحص التضعيف (الحرف الثاني = الثالث) local is_doubled = (r2 == r3) -- ═══════════════════════════════════════════════════════════ -- المُعتل: الفعل الذي يحتوي على حرف أو أكثر من أحرف العلة -- ═══════════════════════════════════════════════════════════ if weak_count > 0 then -- ───────────────────────────────────────────────────── -- لفيف: يحتوي على حرفين أو أكثر من أحرف العلة -- ───────────────────────────────────────────────────── if weak_count >= 2 then -- مقرون: حرفا العلة متجاوران if is_weak[2] and is_weak[3] then -- الثاني والثالث if is_hamza[1] then return "معتل لفيف مقرون مهموز الفاء" end return "معتل لفيف مقرون" elseif is_weak[1] and is_weak[2] then -- الأول والثاني return "معتل لفيف مقرون" -- مفروق: الأول والثالث حرفا علة elseif is_weak[1] and is_weak[3] then if is_hamza[2] then return "معتل لفيف مفروق مهموز العين" end return "معتل لفيف مفروق" end -- ───────────────────────────────────────────────────── -- مثال: الحرف الأول حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[1] then if r1 == W then -- واوي if is_hamza[3] then return "معتل مثال واوي مهموز اللام" elseif is_doubled then return "معتل مثال واوي مُضعَّف" elseif is_hamza[2] then return "معتل مثال واوي مهموز العين" end return "معتل مثال واوي" else -- يائي (ي) if is_doubled then return "معتل مثال يائي مُضعَّف" elseif is_hamza[2] then return "معتل مثال يائي مهموز العين" end return "معتل مثال يائي" end -- ───────────────────────────────────────────────────── -- أجوف: الحرف الثاني حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[2] then if r2 == W then -- واوي if is_hamza[3] then return "معتل أجوف واوي مهموز اللام" elseif is_hamza[1] then return "معتل أجوف واوي مهموز الفاء" end return "معتل أجوف واوي" else -- يائي (ي) if is_hamza[3] then return "معتل أجوف يائي مهموز اللام" elseif is_hamza[1] then return "معتل أجوف يائي مهموز الفاء" end return "معتل أجوف يائي" end -- ───────────────────────────────────────────────────── -- ناقص: الحرف الثالث حرف علة -- ───────────────────────────────────────────────────── elseif is_weak[3] then if r3 == W then -- واوي if is_hamza[1] then return "معتل ناقص واوي مهموز الفاء" elseif is_hamza[2] then return "معتل ناقص واوي مهموز العين" end return "معتل ناقص واوي" else -- يائي (ي) if is_hamza[1] then return "معتل ناقص يائي مهموز الفاء" elseif is_hamza[2] then return "معتل ناقص يائي مهموز العين" end return "معتل ناقص يائي" end end -- ═══════════════════════════════════════════════════════════ -- الصحيح: الفعل الذي لا يحتوي على أحرف العلة -- ═══════════════════════════════════════════════════════════ else -- ───────────────────────────────────────────────────── -- مهموز: يحتوي على همزة -- ───────────────────────────────────────────────────── if is_hamza[1] or is_hamza[2] or is_hamza[3] then -- مهموز الفاء واللام: الأول والثالث همزة if is_hamza[1] and is_hamza[3] then return "صحيح مهموز الفاء واللام" -- مهموز الفاء elseif is_hamza[1] then if is_doubled then return "صحيح مُضعَّف مهموز الفاء" end return "صحيح مهموز الفاء" -- مهموز العين elseif is_hamza[2] then return "صحيح مهموز العين" -- مهموز اللام elseif is_hamza[3] then return "صحيح مهموز اللام" end -- ───────────────────────────────────────────────────── -- مُضعَّف: الحرف الثاني = الثالث -- ───────────────────────────────────────────────────── elseif is_doubled then return "صحيح مُضعَّف" -- ───────────────────────────────────────────────────── -- سالم: لا همزة، لا حرف علة، لا تضعيف -- ───────────────────────────────────────────────────── else return "صحيح سالم" end end return "غير معروف" end ------------------------------------------------------------------------------- -- External entry points -- ------------------------------------------------------------------------------- --W: Normalize root to use underscores as separators -- Accepts: "كتب", "ك_ت_ب", or "ك ت ب" -- Returns: "ك_ت_ب" local function normalize_root(root) if not root then return nil end -- Helper function to normalize a single character/radical local function normalize_char(char) -- Convert all hamza variants to canonical bare hamza if char == HAMZA_ON_ALIF or char == HAMZA_UNDER_ALIF or char == HAMZA_ON_W or char == HAMZA_ON_Y then return HAMZA -- Convert alif maqṣūra to yaa (ى → ي) elseif char == AMAQ then return Y -- Reject alif - it's not a root radical elseif char == ALIF then error("Root contains alif (ا) which is not a valid root radical. For weak verbs, use و (waw) or ي (yaa) instead.") end return char end -- Convert alif madda to hamza + alif for processing (will be caught as error below) root = root:gsub(AMAD, HAMZA .. ALIF) -- Replace spaces with underscores root = root:gsub(" ", "_") -- If no underscores yet, insert them between each character if not root:find("_") then -- Extract only Arabic letters (excluding diacritics) -- Arabic letter range: U+0621 to U+064A (basic letters) local chars = {} for char in mw.ustring.gmatch(root, "[ء-ي]") do table.insert(chars, normalize_char(char)) end root = table.concat(chars, "_") else -- Root already has underscores (e.g., "أ_م_ن"), normalize each radical local parts = mw.text.split(root, "_") for i, part in ipairs(parts) do parts[i] = normalize_char(part) end root = table.concat(parts, "_") end return root end --W: Construct the [1] parameter from root (جذر) and morphological pattern (وزن) -- Example: -- input: root="كتب", pattern="فعَل يفعُل" -- output: "ك_ت_ب<I/a~u>" local function construct_verb_spec(root, pattern) if not root or not pattern then return nil end local normalized_root = normalize_root(root) local form_code = MORPHOLOGICAL_PATTERN_TO_FORM[pattern] if not form_code then error("Unknown morphological pattern (وزن صرفي): " .. pattern) end return normalized_root .. "<" .. form_code .. ">" end -- Wrapper function that accepts جذر (root) and وزن (pattern) as parameters -- Returns: verb_type (e.g., "فعل ثلاثي مُجرَّد صحيح سالم") -- Example: export.get_verb_type({["جذر"] = "كتب", ["وزن"] = "فعَل يفعُل"}) function export.get_verb_type(args) local verb_spec if args["جذر"] and args["وزن"] then verb_spec = construct_verb_spec(args["جذر"], args["وزن"]) elseif args[1] then verb_spec = args[1] else error("Must provide either جذر and وزن, or a verb specification in args[1]") end local alternant_multiword_spec = export.do_generate_forms({[1] = verb_spec}) local _, verb_type = get_verb_info(alternant_multiword_spec) return verb_type end -- Append two lists `l1` and `l2`, removing duplicates. If either is {nil}, just return the other. local function combine_lists(l1, l2) -- combine_footnotes() does exactly what we want. return iut.combine_footnotes(l1, l2) end local function combine_metadata(data) local src1 = data.form1 local src2 = data.form2 local dest = data.dest_form dest.uncertain = src1.uncertain or src2.uncertain if src1.genders and src2.genders and not m_table.deepEquals(src1.genders, src2.genders) then -- do nothing else dest.genders = src1.genders or src2.genders end if src1.pos and src2.pos and src1.pos ~= src2.pos then -- do nothing else dest.pos = src1.pos or src2.pos end -- Don't copy .alt, .gloss, .lit, .id, which describe a single term and don't extend to multiword terms. dest.q = combine_lists(src1.q, src2.q) dest.qq = combine_lists(src1.qq, src2.qq) dest.l = combine_lists(src1.l, src2.l) dest.ll = combine_lists(src1.ll, src2.ll) end -- Externally callable function to parse and conjugate a verb given user-specified arguments. -- Return value is WORD_SPEC, an object where the conjugated forms are in `WORD_SPEC.forms` -- for each slot. If there are no values for a slot, the slot key will be missing. The value -- for a given slot is a list of objects {form=FORM, footnotes=FOOTNOTES}. function export.do_generate_forms(args, source_template, headword_head) local PAGENAME = mw.loadData("Module:headword/data").pagename local function in_template_space() local nsText = mw.title.getCurrentTitle().nsText return nsText == "Template" or nsText == "قالب" end -- Determine the verb spec we're being asked to generate the conjugation of. This may be taken from the current page -- title or the value of |pagename=; but not when called from {{ar-verb form}}, where the page title is a -- non-lemma form. Note that the verb spec may omit the lemma; e.g. it may be "<II>". For this reason, we use the -- value of `pagename` computed here down below, when calling normalize_all_lemmas(). local pagename = source_template ~= "ar-verb form" and args.pagename or PAGENAME local head = headword_head or pagename --W: If both root (جذر) and morphological pattern (وزن) are provided, construct [1] if args["جذر"] and args["جذر"] ~= "" and args["وزن"] and args["وزن"] ~= "" then local constructed = construct_verb_spec(args["جذر"], args["وزن"]) if constructed and constructed ~= "" then args[1] = constructed end end local arg1 = args[1] if not arg1 then if (pagename == "ar-conj" or pagename == "ar-verb" or pagename == "ar-verb form" or pagename == "تصريف") and in_template_space() then arg1 = "كتب<I/a~u.pass>" else arg1 = "<>" end end -- When called from {{ar-verb form}}, determine the non-lemma form whose inflections we're being asked to -- determine. This normally comes from the page title or the value of |pagename=. local verb_form_of_form if source_template == "ar-verb form" then verb_form_of_form = args.pagename if not verb_form_of_form then if PAGENAME == "ar-verb form" and in_template_space() then verb_form_of_form = "كتبت" else verb_form_of_form = PAGENAME end end end local incorporated_headword_head_into_lemma = false if arg1:find("^<.*>$") then -- missing lemma if head:find(" ") then -- If multiword lemma, try to add arg spec after the first word. -- Try to preserve the brackets in the part after the verb, but don't do it -- if there aren't the same number of left and right brackets in the verb -- (which means the verb was linked as part of a larger expression). local first_word, post = rmatch(head, "^(.-)( .*)$") local left_brackets = rsub(first_word, "[^%[]", "") local right_brackets = rsub(first_word, "[^%]]", "") if #left_brackets == #right_brackets then arg1 = iut.remove_redundant_links(first_word) .. arg1 .. post incorporated_headword_head_into_lemma = true else -- Try again using the form without links. local linkless_head = m_links.remove_links(head) if linkless_head:find(" ") then first_word, post = rmatch(linkless_head, "^(.-)( .*)$") arg1 = first_word .. arg1 .. post else error("Unable to incorporate <...> spec into explicit head due to a multiword linked verb or " .. "unbalanced brackets; please include <> explicitly: " .. arg1) end end else -- Will be incorporated through `head` below in the call to normalize_all_lemmas(). incorporated_headword_head_into_lemma = true end end local parse_props = { parse_indicator_spec = parse_indicator_spec, angle_brackets_omittable = true, allow_blank_lemma = true, } local alternant_multiword_spec = iut.parse_inflected_text(arg1, parse_props) alternant_multiword_spec.pos = pos or "verbs" alternant_multiword_spec.args = args alternant_multiword_spec.source_template = source_template alternant_multiword_spec.verb_form_of_form = verb_form_of_form alternant_multiword_spec.incorporated_headword_head_into_lemma = incorporated_headword_head_into_lemma normalize_all_lemmas(alternant_multiword_spec, head) detect_all_indicator_specs(alternant_multiword_spec) local inflect_props = { lang = lang, slot_list = alternant_multiword_spec.verb_slots, inflect_word_spec = conjugate_verb, combine_metadata = combine_metadata, -- We add links around the generated verbal forms rather than allow the entire multiword -- expression to be a link, so ensure that user-specified links get included as well. include_user_specified_links = true, } iut.inflect_multiword_or_alternant_multiword_spec(alternant_multiword_spec, inflect_props) if debug_translit then for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do if form.translit then local full_form_translit = (lang:transliterate(m_links.remove_links(form.form))) if full_form_translit ~= form.translit then error(("Internal error: For slot '%s', form '%s' incremental translit '%s' not same as full translit '%s'"): format(slot, form.form, form.translit, full_form_translit)) end end form.form = iut.remove_redundant_links(form.form) end end end -- Remove redundant brackets around entire forms. for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do form.form = iut.remove_redundant_links(form.form) end end -- Apply NFC-style normalization: reorder shadda+vowel to vowel+shadda -- to match MediaWiki's automatic NFC normalization (which is applied on enwiktionary -- but not in local Lua environments). This reverses the postprocessing step. for slot, forms in pairs(alternant_multiword_spec.forms) do for _, form in ipairs(forms) do form.form = apply_nfc_shadda(form.form) end end determine_slot_uncertainty_from_forms(alternant_multiword_spec) determine_verb_properties_from_forms(alternant_multiword_spec) compute_categories_and_annotation(alternant_multiword_spec) if args.json and source_template == "ar-conj" then -- There is a circular reference in `base.alternant_multiword_spec`, which points back to top level. iut.map_word_specs(alternant_multiword_spec, function(base) base.alternant_multiword_spec = nil end) return require("Module:JSON").toJSON(alternant_multiword_spec) end return alternant_multiword_spec end -- Entry point for {{ar-conj}}. Template-callable function to parse and conjugate a verb given -- user-specified arguments and generate a displayable table of the conjugated forms. function export.show(frame) local parent_args = frame:getParent() and frame:getParent().args or frame.args --W local params = { [1] = {}, ["noautolinktext"] = {type = "boolean"}, ["noautolinkverb"] = {type = "boolean"}, ["t"] = {}, -- for use by {{ar-verb form}}; otherwise ignored ["id"] = {}, -- for use by {{ar-verb form}}; otherwise ignored ["pagename"] = {}, -- for testing/documentation pages ["json"] = {type = "boolean"}, -- for bot use --W: additional parameters for ar.wiktionary.org ["جذر"] = {type = "string"}, --W: الجذر اللغوي, root ["وزن"] = {type = "string"}, --W: الوزن الصرفي, morphological pattern ["كامل"] = {type = "boolean"}, --W: show full table (default is simplified table) ["بؤرة"] = {type = "string"}, --W: highlight the cells holding this form ["موسع"] = {type = "boolean"}, --W: show the table expanded (default: collapsed) } local args = require("Module:parameters").process(parent_args, params) --W: If both root (جذر) and morphological pattern (وزن) are provided, construct [1] if args["جذر"] and args["جذر"] ~= "" and args["وزن"] and args["وزن"] ~= "" then local constructed = construct_verb_spec(args["جذر"], args["وزن"]) if constructed and constructed ~= "" then args[1] = constructed end end local alternant_multiword_spec = export.do_generate_forms(args, "ar-conj") if type(alternant_multiword_spec) == "string" then -- JSON return value return alternant_multiword_spec end --W: |بؤرة= marks the cells holding a given form, so that a conjugated-form -- page ([[Module:ar-verb-form]]) can show the reader where in the paradigm -- the word they looked up actually sits. The slots have to be found before -- show_forms(), which replaces each form list with rendered wikitext. alternant_multiword_spec.focus_slots = find_focus_slots(alternant_multiword_spec, args["بؤرة"]) --W: A table whose one relevant cell is highlighted is no use folded away, so -- [[Module:ar-verb-form]] asks for it open. Lemma pages keep it collapsed. alternant_multiword_spec.expanded = args["موسع"] or false show_forms(alternant_multiword_spec) --W: Choose table type: simplified (default) or full (comprehensive) local table_html if args["كامل"] then table_html = make_table(alternant_multiword_spec) else table_html = make_table_ar(alternant_multiword_spec) end --W: don't add categories --W: TODO: all lines with insert_cat() are to be removed. -- return table_html .. -- require("Module:utilities").format_categories(alternant_multiword_spec.categories, lang, nil, nil, force_cat) return table_html end function export.verb_forms(frame) local parargs = frame:getParent().args local params = { [1] = {}, [2] = {}, [3] = {}, [4] = {}, [5] = {}, pagename = {}, } for _, form in ipairs(allowed_vforms) do -- FIXME: We go up to 5 here. The code supports unlimited variants but it's unlikely we will ever see more than -- 2. for index = 1, 5 do local prefix = index == 1 and form or form .. index params[prefix .. "-pv"] = {} for _, extn in ipairs { "", "-vn", "-ap", "-pp" } do params[prefix .. extn] = {} params[prefix .. extn .. "-head"] = {} -- FIXME: No -tr? params[prefix .. extn .. "-gloss"] = {} end end end local args = require("Module:parameters").process(parargs, params) local i = 1 local past_vowel_re = "^[aui,]*$" local combined_root = nil if not args[i] or rfind(args[i], past_vowel_re) then combined_root = args.pagename or mw.loadData("Module:headword/data").pagename if not rfind(combined_root, "^([^ ]) ([^ ]) ([^ ])$") and not rfind(combined_root, "^([^ ]) ([^ ]) ([^ ]) ([^ ])$") then error("When inferring roots from page title, need three or four space-separated radicals: " .. combined_root) end elseif rfind(args[i], " ") then combined_root = args[i] i = i + 1 else local separate_roots = {} while args[i] and not rfind(args[i], past_vowel_re) do table.insert(separate_roots, args[i]) i = i + 1 end combined_root = table.concat(separate_roots, " ") end local past_vowel = args[i] i = i + 1 if past_vowel and not rfind(past_vowel, past_vowel_re) then error("Unrecognized past vowel, should be 'a', 'i', 'u', 'a,u', etc. or empty: " .. past_vowel) end -- Spaces interfere with parsing as a unit in [[Module:inflection utilities]], so replace with underscore. combined_root = combined_root:gsub(" ", "_") local split_root = rsplit(combined_root, "_") -- Map from verb forms (I, II, etc.) to a table of verb properties, -- which has entries e.g. for "verb" (either true to autogenerate the verb -- head, or an explicitly specified verb head using e.g. argument "I-head"), -- and for "verb-gloss" (which comes from e.g. the argument "I" or "I-gloss"), -- and for "vn" and "vn-gloss", "ap" and "ap-gloss", "pp" and "pp-gloss". local verb_properties = {} for _, form in ipairs(allowed_vforms) do local formpropslist = {} local derivs = {{"verb", ""}, {"vn", "-vn"}, {"ap", "-ap"}, {"pp", "-pp"}} local index = 1 while true do local formprops = {} local prefix = index == 1 and form or form .. index if prefix == "I" then formprops.pv = past_vowel end if args[prefix .. "-pv"] then formprops.pv = args[prefix .. "-pv"] end for _, deriv in ipairs(derivs) do local prop = deriv[1] local extn = deriv[2] if args[prefix .. extn] == "+" then formprops[prop] = true elseif args[prefix .. extn] == "-" then formprops[prop] = false elseif args[prefix .. extn] then formprops[prop] = true formprops[prop .. "-gloss"] = args[prefix .. extn] end if args[prefix .. extn .. "-head"] then if formprops[prop] == nil then formprops[prop] = true end formprops[prop] = args[prefix .. extn .. "-head"] end if args[prefix .. extn .. "-gloss"] then if formprops[prop] == nil then formprops[prop] = true end formprops[prop .. "-gloss"] = args[prefix .. extn .. "-gloss"] end end if formprops.verb then -- If a verb form specified, also turn on vn (unless form I, with -- unpredictable vn) and ap, and maybe pp, according to form, -- weakness and past vowel. But don't turn these on if there's -- an explicit on/off specification for them (e.g. I-pp=-). if form ~= "I" and formprops.vn == nil then formprops.vn = true end if formprops.ap == nil then formprops.ap = true end local weakness = weakness_from_radicals(form, split_root[1], split_root[2], split_root[3], split_root[4]) if formprops.pp == nil and not vform_probably_no_passive(form, weakness, rsplit(formprops.pv or "", ","), {}) then formprops.pp = true end if formprops.verb == true or formprops.vn == true or formprops.ap == true or formprops.pp == true then formprops.need_autogen = true end table.insert(formpropslist, formprops) index = index + 1 else break end end table.insert(verb_properties, {form, formpropslist}) end -- Go through and create the verb form derivations as necessary, when they haven't been explicitly given. for _, vplist in ipairs(verb_properties) do local vform = vplist[1] for _, props in ipairs(vplist[2]) do if props.need_autogen then local form_with_vowels if vform == "I" then local pv = props.pv if not pv then -- Make up likely past vowels based on weakness and actual radical. if split_root[3] == W then -- final-weak form_with_vowels = "I/a~u" elseif split_root[3] == Y then form_with_vowels = "I/a~i" elseif split_root[2] == W then --hollow form_with_vowels = "I/u~u" elseif split_root[2] == Y then form_with_vowels = "I/i~i" else -- most common; doesn't matter so much since we're not displaying the non-past form_with_vowels = "I/a~u" end else local pvs = rsplit(pv, ",") local vowel_sufs = {} for _, pv in ipairs(pvs) do local vowel_spec if pv == "a" then -- Make up likely past vowels based on weakness and actual radical. if split_root[3] == W then -- final-weak vowel_spec = "a~u" elseif split_root[3] == Y then vowel_spec = "a~i" elseif split_root[2] == W then --hollow vowel_spec = "a~u" elseif split_root[2] == Y then vowel_spec = "a~i" else -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "a~u" end elseif pv == "i" then -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "i~a" elseif pv == "u" then -- most common; doesn't matter so much since we're not displaying the non-past vowel_spec = "u~u" else error(("Internal error: Bad past vowel '%s' in {{ar-verb forms}}"):format(pv)) end table.insert(vowel_sufs, vowel_spec) end form_with_vowels = "I/" .. table.concat(vowel_sufs, "/") end else form_with_vowels = vform end local angle_bracket_spec = ("%s<%s.pass>"):format(combined_root, form_with_vowels) local alternant_multiword_spec = export.do_generate_forms({angle_bracket_spec}, "ar-verb forms") local function format_forms(forms) if not forms then return "-" -- FIXME: Throw an error? end local formatted = {} for _, form in ipairs(forms) do if form.translit then table.insert(formatted, ("%s//%s"):format(form.form, form.translit)) else table.insert(formatted, form.form) end end return table.concat(formatted, "،") end if props.verb == true then props.verb = format_forms(alternant_multiword_spec.forms.past_3ms) end for _, deriv in ipairs({"vn", "ap", "pp"}) do if props[deriv] == true then props[deriv] = format_forms(alternant_multiword_spec.forms[deriv]) end end end end end -- Go through and output the result local formtextarr = {} for _, vplist in ipairs(verb_properties) do local form = vplist[1] for _, props in ipairs(vplist[2]) do local textarr = {} if props.verb then local text = "* '''[[Appendix:Arabic verbs#Form " .. form .. "|Form " .. form .. "]]''': " local linktext = {} local splitheads = rsplit(props.verb, "[,،]") for _, head in ipairs(splitheads) do table.insert(linktext, m_links.full_link({lang = lang, term = head, gloss = props["verb-gloss"]})) end text = text .. table.concat(linktext, "، ") table.insert(textarr, text) for _, derivengl in ipairs({{"vn", "Verbal noun"}, {"ap", "Active participle"}, {"pp", "Passive participle"}}) do local deriv = derivengl[1] local engl = derivengl[2] if props[deriv] then local text = "** " .. engl .. ": " local linktext = {} local splitheads = rsplit(props[deriv], "[,،]") for _, head in ipairs(splitheads) do local ar, translit = head:match("^(.*)//(.-)$") if not ar then ar = head end table.insert(linktext, m_links.full_link {lang = lang, term = ar, tr = translit, gloss = props[deriv .. "-gloss"]} ) end text = text .. table.concat(linktext, "، ") table.insert(textarr, text) end end table.insert(formtextarr, table.concat(textarr, "\n")) end end end return table.concat(formtextarr, "\n") end -- Infer radicals from lemma headword (i.e. 3rd masculine singular past) and verb form (I, II, etc.). Throw an error if -- headword is malformed. A given returned radical may be actually be a list of possible radicals, where the first one -- should be used if the user didn't explicitly give the radical. If the list contains a field `ambig = true`, the -- radical is considered ambiguous and should not be categorized. `is_reduced` indicates that the user specified -- `.reduced` to indicate that the verb form is reduced by assimilation and/or haplology (typically archaic Koranic -- forms such as اِدَّارَأَ instead of تَدَارَأَ; or اِسْطَاعَ instead of اِسْتِطَاعَ; etc. function export.infer_radicals(data) local headword, vform, passive, past_vowel, nonpast_vowel, is_reduced = data.headword, data.vform, data.passive, data.past_vowel, data.nonpast_vowel, data.is_reduced past_vowel = past_vowel or "-" nonpast_vowel = nonpast_vowel or "-" local function verify_vowel(vowel, param) --W: A past/non-past vowel may legitimately be a form object {form=..., footnotes=...} -- when the user attaches a footnote, e.g. <I/a[نادر]~u>, so compare the formval. -- Comparing the raw value crashed on Lua 5.1 ("bad argument #2 to 'format'"). local formval = rget(vowel) if formval ~= A and formval ~= I and formval ~= U and formval ~= "-" then error(("Internal error: Bad value for %s: %s (should be Arabic diacritic vowel or '-')"):format( param, dump(vowel))) end end verify_vowel(past_vowel, "past_vowel") verify_vowel(nonpast_vowel, "nonpast_vowel") local ch = {} local form_viii_assim, variant -- sub out alif-madda for easier processing headword = rsub(headword, AMAD, HAMZA .. ALIF) local function infer_err(msg, noann) local anns = {} local nohead, novform if noann == "nohead" then nohead = true elseif noann == "novform" then novform = true elseif noann == "nohead-vform" then nohead = true novform = true elseif noann then error(("Internal error: Unrecognized value for 'noann': %s"):format(dump(noann))) end if not nohead then table.insert(anns, ("headword=%s"):format(data.headword)) end if not novform then table.insert(anns, ("verb form=%s"):format(data.vform)) end anns = table.concat(anns, "، ") if anns ~= "" then anns = ": " .. anns end error(msg .. anns) end local len = ulen(headword) local expected_length -- extract the headword letters into an array for i = 1, len do table.insert(ch, usub(headword, i, i)) end -- check that the letter at the given index is the given string, or -- is one of the members of the given array local function check(index, must) local letter = ch[index] if type(must) == "string" then if not letter then infer_err("Letter " .. index .. " is nil") end if letter ~= must then infer_err(("For verb form %s, letter %s must be %s, not %s"):format(vform, index, must, letter), "novform") end elseif not m_table.contains(must, letter) then infer_err("For verb form " .. vform .. ", radical " .. index .. " must be one of " .. table.concat(must, " ") .. ", not " .. letter, "novform") end end -- Check that length of headword is within [min, max] local function check_len(min, max) if min and len < min then infer_err(("Not enough letters for verb form %s, expected at least %s"):format(vform, min), "novform") end if max and len > max then infer_err(("Too many letters for verb form %s, expected at most %s"):format(vform, max), "novform") end end -- If the vowels are i~a or u~u, a form I verb beginning with w- normally keeps the w in the non-past. Otherwise it -- loses it (i.e. it is "assimilated"). local function form_I_w_non_assimilated() return req(past_vowel, I) and req(nonpast_vowel, A) or req(past_vowel, U) and req(nonpast_vowel, U) end -- Convert radicals to canonical form (handle various hamza varieties and check for misplaced alif or alif maqṣūra; -- legitimate cases of these letters are handled above). local function convert(rad, index) if type(rad) == "table" then for i, r in ipairs(rad) do rad[i] = convert(r, index) end return rad elseif rad == HAMZA_ON_ALIF or rad == HAMZA_UNDER_ALIF or rad == HAMZA_ON_W or rad == HAMZA_ON_Y then return HAMZA elseif rad == AMAQ then infer_err("Radical " .. index .. " must not be alif maqṣūra") elseif rad == ALIF then infer_err("Radical " .. index .. " must not be alif") else return rad end end local quadlit = vform:find("q$") -- find first radical, start of second/third radicals, check for -- required letters local radstart, rad1, rad2, rad3, rad4 local weakness if vform == "I" or vform == "II" then rad1 = ch[1] radstart = 2 elseif vform == "III" then rad1 = ch[1] check(2, {ALIF, W}) -- W occurs in passive-only verbs radstart = 3 elseif vform == "IV" then -- this would be alif-madda but we replaced it with hamza-alif above. if ch[1] == HAMZA and ch[2] == ALIF then rad1 = HAMZA else check(1, HAMZA_ON_ALIF) rad1 = ch[2] end radstart = 3 elseif vform == "V" then check(1, is_reduced and ALIF or T) rad1 = ch[2] radstart = 3 elseif vform == "VI" then check(1, is_reduced and ALIF or T) if ch[2] == AMAD then rad1 = HAMZA radstart = 3 else rad1 = ch[2] check(3, {ALIF, W}) -- W occurs in passive-only verbs radstart = 4 end elseif vform == "VII" then check(1, ALIF) if is_reduced then check(2, M) rad1 = M radstart = 3 else check(2, N) rad1 = ch[3] radstart = 4 end elseif vform == "VIII" then check(1, ALIF) rad1 = ch[2] if rad1 == "د" then rad1 = {"د", "ذ"} -- not considered ambiguous since it's usually د radstart = 3 form_viii_assim = "دّ" elseif rad1 == "ظ" and ch[3] == "ط" and len >= 5 then -- [[اظطلم]], variant of [[اظلم]] radstart = 4 form_viii_assim = "ظْط" elseif rad1 == "ذ" and ch[3] == "د" and len >= 5 then -- [[اذدكر]], variant of [[اذكر]] radstart = 4 form_viii_assim = "ذْد" elseif rad1 == T or rad1 == "ث" or rad1 == "ذ" or rad1 == "ط" or rad1 == "ظ" then radstart = 3 form_viii_assim = rad1 .. SH elseif rad1 == "ز" then check(3, "د") radstart = 4 form_viii_assim = "زْد" elseif rad1 == "ص" or rad1 == "ض" then check(3, "ط") radstart = 4 form_viii_assim = rad1 .. SK .. "ط" else check(3, T) radstart = 4 rad1 = convert(rad1, 1) form_viii_assim = rad1 .. SK .. "ت" end if rad1 == T then -- Radical is ambiguous, might be ت or و or ي but doesn't affect conjugation. Note that there are no -- form-VIII verbs with initial radical ي given in Hans Wehr but Lane mentions at least: -- - (page 2973) اِتَّأَسَ, with assimilation of the ي to ت, from root ي ء س; -- - (page 2975) اِتَّبَسَ non-past يَتَّبِسُ and alternative اِيتَبَسَ non-past يَاتَبِسُ from the root ي ب س; -- - (page 2976) اِتَّسَرَ non-past يَتَّسِرُ or alternatively يَأْتَسِرُ with hamza preserved from the root ي س ر. -- These alternative forms seem very rare and probably not worth worrying about, but if we want to handle -- them, we can do it when the time comes. rad1 = {T, W, Y, ambig = true} -- اِتَّخَذَ irregularly has hamza as the radical but assimilates like و if ch[3] == "خ" and ch[4] == "ذ" then rad1[4] = HAMZA end end elseif vform == "IX" then check(1, ALIF) rad1 = ch[2] radstart = 3 elseif vform == "X" then check(1, ALIF) check(2, S) if is_reduced then rad1 = ch[3] radstart = 4 else check(3, T) rad1 = ch[4] radstart = 5 end elseif vform == "Iq" then rad1 = ch[1] rad2 = ch[2] radstart = 3 elseif vform == "IIq" then check(1, T) rad1 = ch[2] rad2 = ch[3] radstart = 4 elseif vform == "IIIq" then check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) radstart = 5 elseif vform == "IVq" then check(1, ALIF) rad1 = ch[2] rad2 = ch[3] radstart = 4 elseif vform == "XI" then check_len(5, 5) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, ALIF) rad3 = ch[5] weakness = "sound" elseif vform == "XII" then check(1, ALIF) rad1 = ch[2] if ch[3] ~= ch[5] then infer_err("For verb form XII, letters 3 and 5 should be the same", "novform") end check(4, W) radstart = 5 elseif vform == "XIII" then check_len(5, 5) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, W) rad3 = ch[5] if rad3 == AMAQ then weakness = "final-weak" else weakness = "sound" end elseif vform == "XIV" then check_len(6, 6) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) rad3 = ch[5] if ch[6] == AMAQ then check_waw_ya(rad3) weakness = "final-weak" else if ch[5] ~= ch[6] then infer_err("For verb form XIV, letters 5 and 6 should be the same", "novform") end weakness = "sound" end elseif vform == "XV" then check_len(6, 6) check(1, ALIF) rad1 = ch[2] rad2 = ch[3] check(4, N) rad3 = ch[5] if rad3 == Y then check(6, ALIF) else check(6, AMAQ) end weakness = "sound" else error("Internal error: Unrecognized verb form " .. vform) end -- Process the last two radicals. RADSTART is the index of the first of the two. If it's nil then all radicals have -- already been processed above, and we don't do anything. if radstart then -- There must (normally) be one or two letters left. if len == radstart then if vform == "I" and ch[len] == Y then -- short form حَيَّ weakness = "final-weak" rad2 = Y rad3 = Y variant = "short" elseif vform == "IV" and rad1 == "ر" and ch[len] == AMAQ then -- irregular verb أَرَى weakness = "final-weak" rad2 = HAMZA rad3 = Y elseif vform == "X" and rad1 == "ح" and ch[len] == AMAQ then -- irregular verb اِسْتَحَى weakness = "final-weak" rad2 = Y rad3 = Y variant = "short" else -- If one letter left, then it's a geminate verb. If the letter is alif or alif maqṣūra, it will trigger -- an error down the line. if vform_supports_geminate(vform) then weakness = "geminate" rad2 = ch[len] rad3 = ch[len] if vform == "III" or vform == "VI" then variant = "short" end else infer_err("Apparent geminate verb, but geminate verbs not allowed for this verb form") end end elseif quadlit then -- Process last two radicals of a quadriliteral verb form. rad3 = ch[radstart] rad4 = ch[radstart + 1] expected_length = radstart + 1 check_len(expected_length) if rad4 == AMAQ or rad4 == ALIF and rad3 == Y or rad4 == Y then -- rad4 can be Y in passive-only verbs. if vform_supports_final_weak(vform) then weakness = "final-weak" -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws in a row); it could be wāw or -- yāʾ, but doesn't affect the conjugation. rad4 = rad3 == W and {Y, W, ambig = true} or {W, Y, ambig = true} else infer_err("Last radical is " .. rad4 .. " but verb form " .. vform .. " doesn't support final-weak verbs", "novform") end else weakness = "sound" end else -- Process last two radicals of a triliteral verb form. rad2 = ch[radstart] rad3 = ch[radstart + 1] expected_length = radstart + 1 check_len(expected_length) if vform == "I" and (is_waw_ya(rad3) or rad3 == ALIF or rad3 == AMAQ) then local inferred_past_vowel, inferred_nonpast_vowel -- Check for final-weak form I verb. It can end in tall alif (rad3 = wāw) or alif maqṣūra (rad3 = yāʾ) -- or a wāw or yāʾ (with a past vowel of i or u, e.g. nasiya/yansā "forget" or with a passive-only -- verb). if rad1 == W and not form_I_w_non_assimilated() then weakness = "assimilated+final-weak" else weakness = "final-weak" end if rad3 == ALIF then rad3 = W inferred_past_vowel = A inferred_nonpast_vowel = U if is_passive_only(passive) then infer_err("Final-weak form-I passive verbs should end in yāʔ (ي), not tall alif (ا)", "novform") end elseif rad3 == AMAQ then rad3 = Y inferred_past_vowel = A inferred_nonpast_vowel = I if is_passive_only(passive) then infer_err("Final-weak form-I passive verbs should end in yāʔ (ي), not alif maqṣūra (ى)", "novform") end elseif rad1 == "ح" and rad2 == Y and rad3 == Y then -- Long variant حَيِيَ. inferred_past_vowel = I inferred_nonpast_vowel = A variant = "long" else if not is_passive_only(passive) then -- does a non-passive final-weak verb in -uwa ever happen? (YES: e.g. [[رجو]] "to be slack") inferred_past_vowel = rad3 == Y and I or U inferred_nonpast_vowel = A end -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws); it could be wāw or yāʾ, but -- doesn't affect the conjugation. rad3 = (rad1 == W or rad2 == W) and {Y, W, ambig = true} or {W, Y, ambig = true} -- ambiguous end if inferred_past_vowel then local raw_past_vowel = rget(past_vowel) local raw_nonpast_vowel = rget(nonpast_vowel) if raw_past_vowel ~= "-" then if raw_past_vowel ~= inferred_past_vowel then infer_err(("Final-weak form-I verb inferred past vowel %s, which disagrees with " .. "explicitly specified %s"):format(undia[inferred_past_vowel], undia[raw_past_vowel]), "novform") else -- in case of footnote in past_vowel inferred_past_vowel = past_vowel end end if raw_nonpast_vowel ~= "-" and raw_nonpast_vowel ~= A and inferred_nonpast_vowel == U then -- if inferred as I or A, the reality can be the reverse; form-I final-weak verbs with a~a and -- i~i exist, e.g. سَعَى/يَسْعَى, وَلِيَ/يَلِي. Weird verb [[صها]] (also written [[صهى]]) has non-past -- يصهى so we can't throw an error in this situation. if raw_nonpast_vowel ~= inferred_nonpast_vowel then infer_err(("Final-weak form-I verb inferred non-past vowel %s, which disagrees with " .. "explicitly specified %s"):format(undia[inferred_nonpast_vowel], undia[raw_nonpast_vowel]), "novform") else -- in case of footnote in nonpast_vowel inferred_nonpast_vowel = nonpast_vowel end end end if not is_passive_only(passive) then if rget(past_vowel) == "-" then past_vowel = inferred_past_vowel end if rget(nonpast_vowel) == "-" then nonpast_vowel = inferred_nonpast_vowel end end elseif vform == "IX" and is_waw_ya(rad3) and len == radstart + 2 and ch[len] == AMAQ then -- Final-weak form IX verbs like اِرْعَوَى "to desist, to repent, to see the light". weakness = "final-weak" expected_length = radstart + 2 elseif vform == "X" and rad1 == "ح" and rad2 == Y and rad3 == ALIF then -- Long variant اِسْتَحْيَا. weakness = "final-weak" rad3 = Y variant = "long" elseif rad3 == AMAQ or rad2 == Y and rad3 == ALIF or rad3 == Y then -- rad3 == Y happens in passive-only verbs. if vform_supports_final_weak(vform) then weakness = "final-weak" else infer_err("Last radical is " .. rad3 .. " but verb form doesn't support final-weak verbs") end -- Ambiguous radical; randomly pick wāw as radical (but avoid two wāws); it could be wāw or yāʾ, but -- doesn't affect the conjugation. rad3 = (rad1 == W or rad2 == W) and {Y, W, ambig = true} or {W, Y, ambig = true} elseif rad2 == ALIF then if vform_supports_hollow(vform) then weakness = "hollow" local function set_past_to_a() if req(past_vowel, A) then -- already set elseif req(past_vowel, "-") or req(past_vowel, rget(nonpast_vowel)) then past_vowel = A else infer_err(("Form I hollow verb with nonpast vowel set to '%s' must have past vowel set to 'a' or the same value, not %s"): format(undia[rget(nonpast_vowel)], undia[rget(past_vowel)]), "novform") end end if vform == "I" and req(nonpast_vowel, U) then rad2 = W set_past_to_a() elseif vform == "I" and req(nonpast_vowel, I) then rad2 = Y set_past_to_a() else if req(nonpast_vowel, A) and not req(past_vowel, I) then infer_err(("Form I hollow verb with nonpast vowel set to 'a' must have past vowel set to 'i', not %s"): format(undia[rget(past_vowel)]), "novform") end -- Ambiguous radical; could be wāw or yāʾ; if verb form I, it's critical to get this right, and -- the caller checks for this situation and throws an error if non-past vowel is "a" and second -- radical isn't explicitly given. rad2 = {W, Y, ambig = true, need_radical = true} end else infer_err("Second radical is alif but verb form doesn't support hollow verbs") end elseif vform == "I" and rad1 == W and not form_I_w_non_assimilated() then weakness = "assimilated" elseif rad2 == rad3 and (vform == "III" or vform == "VI") then weakness = "geminate" variant = "long" else weakness = "sound" end end if expected_length then check_len(expected_length, expected_length) end end rad1 = convert(rad1, 1) rad2 = convert(rad2, 2) rad3 = convert(rad3, 3) rad4 = convert(rad4, 4) if not weakness then error("Internal error: Returned weakness from infer_radicals() is nil") end return { weakness = weakness, rad1 = rad1, rad2 = rad2, rad3 = rad3, rad4 = rad4, past_vowel = past_vowel, nonpast_vowel = nonpast_vowel, form_viii_assim = form_viii_assim, variant = variant, } end -- bot interface to infer_radicals() function export.infer_radicals_json(frame) local iparams = { headword = {}, vform = {}, passive = {}, past_vowel = {}, nonpast_vowel = {}, is_reduced = {type = "boolean"}, } local iargs = require("Module:parameters").process(frame.args, iparams) return require("Module:JSON").toJSON(export.infer_radicals(iargs)) end -- Infer vocalization from participle headword (active or passive), verb form (I, II, etc.) and whether the headword is -- active or passive. Throw an error if headword is malformed. Returned radicals may contain Latin letters "t", "w" or "y" -- indicating ambiguous radicals guessed to be tāʾ, wāw or yāʾ respectively. function export.infer_participle_vocalization(headword, vform, weakness, is_active) local chars = {} local orig_headword = headword -- Sub out alif-madda for easier processing. headword = rsub(headword, AMAD, HAMZA .. ALIF) local len = ulen(headword) -- Extract the headword letters into an array. for i = 1, len do table.insert(chars, usub(headword, i, i)) end local function form_intro_error_msg() return ("For verb form %s %s%s participle %s, "):format(vform, orig_headword ~= headword and "normalized " or "", is_active and "active" or "passive", headword) end local function err(msg) error(form_intro_error_msg() .. msg, 1) end -- Check that length of headword is within [min, max]. local function check_len(min, max) if min and len < min then err(("expected at least %s letters but saw %s"):format(min, len)) elseif max and len > max then err(("expected at most %s letters but saw %s"):format(max, len)) end end -- Get the character at `ind`, making sure it exists. local function c(ind) check_len(ind) return chars[ind] end -- Check that the letter at the given index is the given string, or is one of the members of the given array local function check(index, must) local letter = chars[index] local function make_possible_values() if type(must) == "string" then return must else return list_to_text(must, nil, " or ") end end if not letter then err(("expected a letter (specifically %s) at position %s, but participle is too short"):format( make_possible_values(), index)) end local matches if type(must) == "string" then matches = letter == must else matches = m_table.contains(must, letter) end if not matches then err(("letter %s at index %s must be %s"):format(letter, index, make_possible_values())) end end local function check_weakness(values, allow_missing, invert_condition) local function make_possible_weaknesses() for i, val in ipairs(values) do values[i] = "'" .. val .. "'" end return list_to_text(values, nil, " or ") end if allow_missing and invert_condition then error("Internal error: Can't specify both allow_missing and invert_condition") end if not weakness then if allow_missing or invert_condition then return else err(("weakness is unspecified but must be %s"):format(make_possible_weaknesses())) end else local matches = m_table.contains(values, weakness) if invert_condition and matches then err(("weakness '%s' must not be %s"):format(weakness, make_possible_weaknesses())) elseif not invert_condition and not matches then err(("weakness '%s' must be %s"):format(weakness, make_possible_weaknesses())) end end end local vocalized local function handle_possibly_final_weak(sound_prefix, expected_length) check_len(expected_length, expected_length) if c(expected_length) == AMAQ then -- passive final-weak if is_active then err("participle in -ِى only allowed for passive participles") end check_weakness({"final-weak", "assimilated+final-weak"}, "allow missing") vocalized = sound_prefix .. AN .. AMAQ else -- all others behave as if sound check_weakness({"final-weak", "assimilated+final-weak"}, nil, "invert condition") vocalized = sound_prefix .. (is_active and I or A) .. c(expected_length) end end if not (vform == "I" and is_active) then -- all participles except verb form I active begin in م-. check(1, M) end if vform == "I" then if is_active then check(2, ALIF) local sound_prefix = c(1) .. AA .. c(3) if len == 3 then if c(3) == HAMZA then -- Either hollow with hamzated third radical, e.g. [[شاء]] active participle 'شَاءٍ', or final-weak -- with hamzated second radical, e.g. [[رأى]] active participle 'رَاءٍ'. Theoretically (?), also -- geminate with hamzated second/third radical, but I don't know if any such verbs exist. if weakness == "geminate" then vocalized = sound_prefix .. SH else check_weakness({"hollow", "final-weak"}, "allow missing") vocalized = sound_prefix .. IN end else check_weakness({"final-weak", "geminate"}) if weakness == "geminate" then vocalized = sound_prefix .. SH else vocalized = sound_prefix .. IN end end else check_len(4, 4) -- we will convert back to alif maqṣūra below as needed vocalized = sound_prefix .. I .. c(4) end else -- assimilated verbs: regular, e.g. مَوْزُون "weighed" -- geminate verbs: regular, e.g. مَبْلُول "moistened" -- third-hamzated verbs: مَبْرُوء -- hollow verbs: مَقُود "led, driven"; مَزِيد "added, increased" -- hollow first-hamzated verbs: مَئِيض "returned, reverted"; مَأْيُوس "despaired" (NOTE: formation is sound); -- مَأُود or مَؤُود "bent; depleted" -- hollow third-hamzated verbs: مَشِيء "willed, intended", مَضُوء "glittered?" -- final-weak: مَلْقِيّ "found, encountered"; مَصْغُوّ "inclined" -- hollow + final-weak: مَشْوِيّ "fried, grilled", مَهْوِيّ "loved" -- first-hamzated + hollow + final-weak: مَأْوِيّ "received hospitably" local sound_prefix = MA .. c(2) .. SK .. c(3) if len == 5 then -- sound, assimilated or geminate check(4, W) vocalized = sound_prefix .. UU .. c(5) else check_len(4, 4) if c(4) == W then -- final-weak third-wāw vocalized = sound_prefix .. U .. W .. SH elseif c(4) == Y then -- final-weak third-yāʾ vocalized = sound_prefix .. I .. Y .. SH else -- hollow check(3, {W, Y}) if c(3) == W then vocalized = MA .. c(2) .. UU .. c(4) else vocalized = MA .. c(2) .. II .. c(4) end end end end elseif vform == "II" or vform == "V" or vform == "XII" or vform == "XIII" or vform == "Iq" or vform == "IIq" or vform == "IIIq" then local sound_prefix, expected_length if vform == "II" then sound_prefix = MU .. c(2) .. A .. c(3) .. SH expected_length = 4 elseif vform == "V" then check(2, T) sound_prefix = MU .. T .. A .. c(3) .. A .. c(4) .. SH expected_length = 5 elseif vform == "XII" then -- e.g. [[احدودب]] "to be or become convex or humpbacked", مُحْدَوْدِب (active); -- [[اثنونى]] "to be bent; to be doubled up", مُثْنَوْنٍ (active) check(4, W) if c(3) ~= c(5) then err(("third letter %s should be the same as the fifth letter %s"):format(c(3), c(5))) end sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. W .. SK .. c(5) expected_length = 6 elseif vform == "XIII" then -- e.g. [[اخروط]] "to get entangled; to extend", مُخْرَوِّط (active), مُخْرَوَّط (passive) check(4, W) sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. W .. SH expected_length = 5 elseif vform == "Iq" then sound_prefix = MU .. c(2) .. A .. c(3) .. SK .. c(4) expected_length = 5 elseif vform == "IIq" then check(2, T) sound_prefix = MU .. T .. A .. c(3) .. A .. c(4) .. SK .. c(5) expected_length = 6 elseif vform == "IIIq" then -- e.g. [[اخرنطم]] "to be proud and angry" check(4, T) sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. N .. SK .. c(5) expected_length = 6 else error("Internal error: Unhandled verb form " .. vform) end if len == expected_length - 1 then -- active final-weak if not is_active then err(("length-%s participle only allowed for active participles"):format(len)) end check_weakness({"final-weak", "assimilated+final-weak"}, "allow missing") vocalized = sound_prefix .. IN else handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "III" or vform == "VI" then local sound_prefix, expected_length if vform == "VI" then check(2, T) check(4, ALIF) sound_prefix = MU .. T .. A .. c(3) .. AA .. c(5) expected_length = 6 else sound_prefix = MU .. c(2) .. AA .. c(4) expected_length = 5 end if len == expected_length - 1 then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. SH else vocalized = sound_prefix .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. SH end else handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "IV" or vform == "X" then -- form IV: -- sound: مُرْسِخ (active, "entrenching"), مُرْسَخ (passive, "entrenched") -- first-hamzated (like sound): مُؤْيِس (active, "causing to despair"), مُؤْيَس (passive, "caused to despair") -- final-weak: مُكْرٍ (active, "renting out"), مُكْرًى (passive, "rented out") -- assimilated: مُورِد (active, "transferring"), مُورَد (passive, "transferred"); same when first-Y, e.g. -- أَيْقَنَ "to be certain of": مُوقِن (active), مُوقَن (passive) -- assimilated + final-weak: مُورٍ (active, "setting fire, kindling"), مُورًى (passive, "set fire, kindled") -- geminate: مُمِدّ (active, "granting, helping"), مُمَدّ (passive, "granted, helped") -- hollow: مُزِيل (active, "eliminating"), مُزَال (passive, "eliminated") -- hollow + final-weak: مُعْيٍ (active, "tiring"), مُعْيًى (passive, "tired") local sound_prefix, expected_length if vform == "X" then check(2, S) check(3, T) sound_prefix = MU .. S .. SK .. T .. A .. c(4) expected_length = 6 else sound_prefix = MU .. c(2) expected_length = 4 end if len == expected_length and c(len - 1) == Y and c(len) ~= AMAQ then -- active hollow if not is_active then err("this shape only allowed for active participles") end check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. II .. c(len) elseif len == expected_length and c(len - 1) == ALIF then -- passive hollow if is_active then err("this shape only allowed for passive participles") end check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. AA .. c(len) elseif len == expected_length - 1 then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. I .. c(len) .. SH elseif vform == "IV" and c(2) == W then -- assimilated final-weak vocalized = sound_prefix .. c(len) .. IN else vocalized = sound_prefix .. SK .. c(len) .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. A .. c(len) .. SH end else if vform == "IV" and c(2) == W then -- assimilated, possibly final-weak sound_prefix = sound_prefix .. c(expected_length - 1) else sound_prefix = sound_prefix .. SK .. c(expected_length - 1) end handle_possibly_final_weak(sound_prefix, expected_length) end elseif vform == "VII" or vform == "VIII" then -- form VII (passive participles are fairly rare but do exist): -- sound: مُنْكَتِب (active "subscribing"), مُنْكَتَب (passive "subscribed") -- geminate: مُنْضَمّ (both active "joining, containing" and passive "joined, contained") -- final-weak: مُنْطَلٍ (active "fooling (someone)"), مُنْطَلًى (passive "fooled") -- final-weak with medial wāw: مُنْطَوٍ (active "involving"), مُنْطَوًى (passive "involved") -- hollow: مُنْقَاد (both active "complying with" and passive "complied with") -- -- for form VIII, the same variants exist but things are complicated by assimilations involving the template T. -- sound third-hamzated no assimilation: مُبْتَدِئ (active "beginning"), مُبْتَدَأ (passive "begun") -- geminate no assimilation: مُبْتَزّ (both active "robbing" and passive "robbed") -- final-weak no assimilation: مُبْتَنٍ (active "building"), مُبْتَنًى (passive "built") -- final-weak with medial wāw no assimilation: مُحْتَوٍ (active "containing"), مُحْتَوًى (passive "contained") -- hollow no assimilation: مُخْتَار (both active "choosing" and passive "chosen") -- -- sound with total assimilation: مُتَّبِع (active "following"), مُتَّبَع (passive "followed") -- sound with total assimilation, assimilating wāw: مُتَّعِد (active "threatening"), مُتَّعَد (passive "threatened") -- sound with total assimilation, irregularly assimilating hamza: مُتَّخِذ (active "taking"), مُتَّخَذ (passive "taken") -- sound with total assimilation (to ḏāl, producing dāl): مُدَّخِر (active "reserving"), مُدَّخَر (passive "reserved") -- sound with total assimilation (to ḏāl): مُذَّكِر (active "remembering"), مُذَّكَر (passive "remembered") -- sound with total assimilation (to ṭāʔ): مُطَّرِح (active "discarding"), مُطَّرَح (passive "discarded") -- sound with total assimilation (to ẓāʔ): مُظَّلِم (active "tolerating"), مُظَّلَم (passive "tolerated") -- final-weak with total assimilation, assimilating wāw: مُتَّقٍ (active "guarding against"), مُتَّقًى (passive "guarded against") -- final-weak with total assimilation (to ṯāʔ): مُثَّنٍ (active "undulating"), مُثَّنًى (passive "undulated") -- final-weak with total assimilation (to dāl): مُدَّعٍ (active "claiming"), مُدَّعًى (passive "claimed") -- sound with partial assimilation (to zayn): مُزْدَهِر (active "thriving"), مُزْدَهَر (passive "thrived") -- sound with medial wāw with partial assimilation (to zayn): مُزْدَوِج (active "appearing twice") -- sound with partial assimilation (to ṣād): مُصْطَبِح (active "illuminating"), مُصْطَبَح (passive, "illuminated") -- sound with partial assimilation (to ḍād): مُضْطَرِب (active "to be disturbed"; no passive) -- geminate with partial assimilation (to ṣād): مُصْطَبّ (both active "effusing" and passive "effused") -- geminate with partial assimilation (to ḍād): مُضْطَرّ (both active "forcing" and passive "forced") -- final-weak with partial assimilation (to ṣād): مُصْطَلٍ (active "warming"), مُصْطَلًى (passive "warmed") -- hollow with partial assimilation (to zayn): مُزْدَاد (both active "increasing" and passive "increased") -- hollow with partial assimilation (to ṣad): مُصْطَاد (both active "hunting" and passive "hunted") local sound_prefix, sufind if vform == "VII" then check(2, N) sound_prefix = MU .. N .. SK .. c(3) sufind = 4 else local c2 = c(2) if c2 == T or c2 == "د" or c2 == "ث" or c2 == "ذ" or c2 == "ط" or c2 == "ظ" then -- full assimilation sound_prefix = MU .. c2 .. SH sufind = 3 else -- partial or no assimilation if c2 == "ز" then check(3, "د") elseif c2 == "ص" or c2 == "ض" then check(3, "ط") else check(3, T) end sound_prefix = MU .. c2 .. SK .. c(3) sufind = 4 end end if c(sufind) == ALIF then -- hollow, active or passive check_len(sufind + 1, sufind + 1) check_weakness({"hollow"}, "allow missing") vocalized = sound_prefix .. AA .. c(sufind + 1) elseif len == sufind then -- active final-weak or active or passive geminate if is_active then check_weakness({"geminate", "final-weak", "assimilated+final-weak"}) if weakness == "geminate" then vocalized = sound_prefix .. A .. c(len) .. SH else vocalized = sound_prefix .. A .. c(len) .. IN end else check_weakness({"geminate"}, "allow missing") vocalized = sound_prefix .. A .. c(len) .. SH end else sound_prefix = sound_prefix .. A .. c(sufind) handle_possibly_final_weak(sound_prefix, sufind + 1) end elseif vform == "IX" then check_len(4, 4) vocalized = MU .. c(2) .. SK .. c(3) .. A .. c(4) .. SH elseif vform == "IVq" then -- e.g. [[اذلعب]] "to scamper away", مُذْلَعِبّ (active), مُذْلَعَبّ (passive); -- [[اطمأن]] "to remain quietly; to be certain", مُطْمَئِنّ (active), مُطْمَأَنّ (passive) check_len(5, 5) local sound_prefix = MU .. c(2) .. SK .. c(3) .. A .. c(4) if is_active then vocalized = sound_prefix .. I .. c(5) .. SH else vocalized = sound_prefix .. A .. c(5) .. SH end elseif vform == "XI" then check_len(5, 5) check(4, ALIF) vocalized = MU .. c(2) .. SK .. c(3) .. AA .. c(5) .. SH -- e.g. [[احمار]] "to turn red, to blush", مُحْمَارّ (active) elseif vform == "XIV" or vform == "XV" then -- FIXME: Implement. No examples in Wiktionary currently; need to look up in a grammar. error("Support for verb form " .. vform .. " not implemented yet") else error("Don't recognize verb form " .. vform) end vocalized = rsub(vocalized, HAMZA .. AA, AMAD) local reconstructed_headword = lang:makeEntryName(vocalized) if reconstructed_headword ~= orig_headword then error(("Internal error: Vocalized participle %s doesn't match original participle %s"):format( vocalized, orig_headword)) end -- Apply NFC-style normalization to match MediaWiki's automatic normalization return apply_nfc_shadda(vocalized) end function export.infer_participle_vocalization_json(frame) local iparams = { [1] = {required = true}, [2] = {required = true}, ["weakness"] = {}, ["passive"] = {type = "boolean"} } local iargs = require("Module:parameters").process(frame.args, iparams) return export.infer_participle_vocalization(iargs[1], iargs[2], iargs.weakness, not iargs.passive) end return export 7k9vx6ala1rkvkjw2h6lap7o40vlle5 وحدة:معجمية ويكي بيانات 828 236469 1097808 1090003 2026-08-01T13:44:30Z ForzaGreen 28665 إضافة form_examples_for: شواهد الاستعمال المطابقة لصيغة بعينها (تستعملها وحدة:ar-verb-form) 1097808 Scribunto text/plain -- وحدة:معجمية ويكي بيانات -- 🚧 Work in progress 🚧 -- By: Wael (User:ForzaGreen) -- Imports data from Wikidata lexemes for Arabic entries in Wiktionary. -- TODOs: -- - ✅ Handle missing senses. Edit icon to wikidata lexeme's senses + page link to Wiktionary:Wikidata -- - ✅ Categories: add categories for pages with/without senses -- - ✅ References: group references when they are identical -- - ✅ References: use references from "usage example" -- - ✅ Create "ويكاموس:ويكي بيانات" page -- - ✅ Template for wikidata meanings: قالب:معجمية, and docs -- - Test Etymology -- - Test Pronunciation -- - Test External links -- - (later) Add module/template for "Wikidata has a lexeme related to 'word' (Lxxxx)" -- - (later) Display "quotations" (issue: different from "gloss quote"), "synonyms", ... local p = {} -- Inline i18n configuration for Arabic local i18n = { -- Templates template_anchor = 'مرساة', -- anchor template template_wikipedia = 'ويكيبيديا', -- Wikipedia link template template_audio = 'نطق', -- Audio/pronunciation template template_lexeme = 'مدخل معجمي', -- Lexeme template -- Headings heading_meanings = 'المعاني', -- Meanings section heading_etymology = 'أصل الكلمة', -- Etymology section heading_pronunciation = 'النطق', -- Pronunciation section heading_references = 'المراجع', -- References section heading_external_links = 'وصلات خارجية', -- External links -- UI text edit_wikidata = 'عدل في ويكي بيانات', -- Missing senses text text_missing_senses = 'هذه الكلمة لا تحتوي على معانٍ في ويكي بيانات. ساهم بإضافة المعاني في', text_more_info = 'للمزيد من المعلومات راجع', help_page = 'ويكاموس:ويكي بيانات', -- Categories for Wikidata usage category_uses_wikidata = 'صفحات تستخدم ويكي بيانات', category_has_senses = 'معاني من ويكي بيانات', category_missing_senses = 'معاني فارغة من ويكي بيانات', -- Categories (Q13955 = Modern Standard Arabic) categories = { ['Q13955'] = { ['Q1084'] = 'أسماء عربية', -- Nouns ['Q24905'] = 'أفعال عربية', -- Verbs ['Q34698'] = 'صفات عربية', -- Adjectives ['Q380057'] = 'ظروف عربية', -- Adverbs ['_'] = 'كلمات عربية', -- Fallback for any other lexical category } }, -- Manual note keys (empty for now) manual_category = {}, manual_etymology = {}, manual_pronunciation = {}, manual_meaning = {}, manual_reference = {}, manual_external_link = {}, } -- Inline getArgs replacement local function getArgs(frame) local args = {} local parent_args = frame:getParent() and frame:getParent().args or {} -- Merge frame.args and parent_args for k, v in pairs(frame.args) do if v ~= '' then args[k] = v end end for k, v in pairs(parent_args) do if v ~= '' and args[k] == nil then args[k] = v end end return args end base_lang_code_labels = 'ar' -- Item labels/descriptions/aliases, sense descriptions base_lang_code_forms = 'ar' -- Lexeme lemmas, form spellings base_lang_wiki = 'arwiki' -- Wikipedia link formatter_urls = { -- https://w.wiki/ELuT -- Multilingual ['P11512'] = 'https://ids.clld.org/units/$1', ['P11055'] = 'https://diacl.uni-frankfurt.de/Lexeme/Details/$1', ['P13258'] = 'https://www.termania.net/slovarji/presisov-vecjezicni-slovar/$1/_', ['P5912'] = 'https://oqaasileriffik.gl/dict/?lex=$1', -- Q11051 ['P11350'] = 'http://udb.gov.pk/result_details.php?word=$1', ['P13175'] = 'https://www.cfilt.iitb.ac.in/hindishabdamitra/class/CBSE/1/1/$1/?page=1', -- Q56356571 ['P11328'] = 'https://dehkhoda.ut.ac.ir/fa/dictionary/detail/$1', ['P12326'] = 'https://vazhaju.tj/word/_/$1', ['P12519'] = 'https://qamosona.com/G3/index.php/term/57,$1.xhtml', ['P12845'] = 'https://farhang.ru/lexeme/$1.html', -- Q13955 (Arabic) ['P11038'] = 'https://ontology.birzeit.edu/lemma/$1', ['P11757'] = 'https://ontology.birzeit.edu/wordform/$1', ['P11761'] = 'https://corpus.quran.com/qurandictionary.jsp?q=$1', ['P12451'] = ' https://ontology.birzeit.edu/lexicalconcept/$1', ['P12901'] = 'http://arabiclexicon.hawramani.com/?p=$1', -- Q9072 ['P11138'] = 'https://sonaveeb.ee/worddetails/unif/$1', ['P13190'] = 'https://www.letonika.lv/groups/default.aspx?cid=$1&r=10611062', -- Q150 (French) ['P11118'] = 'https://www.larousse.fr/dictionnaires/francais/_/$1', ['P11284'] = 'https://www.dictionnaire-academie.fr/article/A1$1', ['P11285'] = 'https://www.dictionnaire-academie.fr/article/A2$1', ['P11286'] = 'https://www.dictionnaire-academie.fr/article/A3$1', ['P11287'] = 'https://www.dictionnaire-academie.fr/article/A4$1', ['P11288'] = 'https://www.dictionnaire-academie.fr/article/A5$1', ['P11289'] = 'https://www.dictionnaire-academie.fr/article/A6$1', ['P11290'] = 'https://www.dictionnaire-academie.fr/article/A7$1', ['P11291'] = 'https://www.dictionnaire-academie.fr/article/A8$1', ['P7732'] = 'https://www.dictionnaire-academie.fr/article/A9$1', -- Q58635 ['P7820'] = 'https://wikidata-externalid-url.toolforge.org/?url=https%3A%2F%2Fpunjabipedia.org%2Ftopic.aspx%3Ftxt%3D%251&exp=%28.%2A%29&id=$1', ['P7575'] = 'https://wikidata-externalid-url.toolforge.org/?url=https%3A%2F%2Fwww.srigranth.org%2Fservlet%2Fgurbani.dictionary%3FParam%3D%251&exp=%28.%2A%29&id=$1', -- Q1860 (English) ['P5275'] = 'http://www.oed.com/view/Entry/$1', ['P12510'] = 'https://doi.org/10.1093/OED/$1', ['P12739'] = 'https://www.oxfordreference.com/display/10.1093/acref/9780199571123.001.0001/m_en_gb$1', ['P12690'] = 'https://www.oxfordreference.com/display/10.1093/acref/9780195392883.001.0001/m_en_us$1', ['P12726'] = 'https://www.oxfordreference.com/display/10.1093/acref/9780195418163.001.0001/m_en_ca$1', ['P12718'] = 'https://www.oxfordreference.com/display/10.1093/acref/9780195517965.001.0001/m-en_au-msdict-00001-$1', ['P12724'] = 'https://www.oxfordreference.com/display/10.1093/acref/9780195584516.001.0001/m-en_nz-msdict-00001-$1', ['P11481'] = 'https://greensdictofslang.com/entry/$1', ['P12448'] = 'https://www.daredictionary.com/view/dare/$1', ['P11130'] = 'https://wikidata-externalid-url.toolforge.org/?url=https%3A%2F%2Fwww.merriam-webster.com%2Fdictionary%2F%251&exp=%28.%2A%29&id=$1', ['P11263'] = 'https://wikidata-externalid-url.toolforge.org/?url=https%3A%2F%2Fwww.britannica.com%2Fdictionary%2F%251&exp=%28.%2A%29&id=$1', ['P13163'] = 'https://ahdictionary.com/word/search.html?id=$1', -- Q188 (German) ['P11519'] = 'https://www.owid.de/artikel/$1', ['P11520'] = 'https://www.owid.de/artikel/$1', ['P11521'] = 'https://www.owid.de/artikel/$1', ['P11522'] = 'https://www.owid.de/artikel/$1', ['P11523'] = 'https://www.owid.de/artikel/$1', ['P11524'] = 'https://www.owid.de/artikel/$1', ['P8376'] = 'https://www.duden.de/rechtschreibung/$1', ['P9384'] = 'https://www.woerterbuchnetz.de/Adelung?lemid=$1', ['P9385'] = 'https://www.woerterbuchnetz.de/DWB?lemid=$1', ['P9386'] = 'https://www.woerterbuchnetz.de/DWB2?lemid=$1', ['P9387'] = 'https://www.woerterbuchnetz.de/GWB?lemid=$1', ['P9388'] = 'https://www.woerterbuchnetz.de/Meyers?lemid=$1', ['P9389'] = 'https://www.woerterbuchnetz.de/RDWB1?lemid=$1', ['P9390'] = 'https://www.woerterbuchnetz.de/Wander?lemid=$1', ['P9940'] = 'https://www.dwds.de/wb/$1', -- Q9035 (Danish) ['P10830'] = 'https://ordregister.dk/id/$1', ['P10831'] = 'https://ordregister.dk/id/$1', ['P9529'] = 'https://ordnet.dk/ddo/ordbog?query=wd&entry_id=$1', ['P9530'] = 'https://ordnet.dk/ddo/ordbog?query=wd&mselect=$1', ['P12828'] = 'https://iserasuaat.gl/daka/daka?f=lo&l=1&p=$1', ['P9962'] = 'https://ordnet.dk/ods/ordbog?query=wd&entry_id=$1', -- Q25167 (Norwegian Bokmål) ['P10042'] = 'https://ordbøkene.no/bm/$1', ['P9958'] = 'https://naob.no/ordbok/$1', -- Q25164 (Norwegian Nynorsk) ['P10041'] = 'https://ordbøkene.no/nn/$1', -- Q652 (Italian) ['P12826'] = 'https://api.tommaseobellini.it/api/text?delta=0&html=true&id=$1', ['P12825'] = 'http://tlio.ovi.cnr.it/voci/$1.htm', ['P5844'] = 'https://www.treccani.it/vocabolario/$1', ['P12420'] = 'https://dizionario.internazionale.it/parola/', ['P12862'] = 'https://www.dizionario.rai.it/p.aspx?nID=lemma&lID=$1', ['P12885'] = 'https://www.oxfordreference.com/display/10.1093/acref/9780191739569.001.0001/b-it-en-00002-$1', -- Q1321 (Spanish) ['P12529'] = 'https://wikidata-externalid-url.toolforge.org/?p=12529&url_prefix=https://dle.rae.es/?id=&id=$1', ['P12821'] = 'https://www.oxfordreference.com/display/10.1093/acref/9780191739538.001.0001/b-es-en-00008-$1', ['P12630'] = 'https://aragonario.aragon.es/words/$1', -- Q9027 (Swedish) ['P8478'] = 'https://www.saob.se/artikel/?unik=$1', ['P9837'] = 'https://svenska.se/so/?id=$1', ['P11838'] = 'https://svenska.se/saol/?id=$1', -- Q9072 (Finnish) ['P12032'] = 'https://kaino.kotus.fi/fo/?p=article&fo_id=FO_$1', -- Q8752 (Basque) ['P6838'] = 'https://hiztegiak.elhuyar.eus/eu/$1', } -- Return the first form of the lexeme which has exactly the given grammatical feature. local function formWithSingleGrammaticalFeature( lexeme, item_id ) for i, form in pairs( lexeme:getForms() ) do local grammaticalFeatures = form:getGrammaticalFeatures() if #grammaticalFeatures == 1 and grammaticalFeatures[1] == item_id then return form end end return nil end -- Return the representation of the form in the given language code, -- or the first representation otherwise. local function representationInLanguage( form, language_code ) for i, representation in pairs( form:getRepresentations() ) do if representation[2] == language_code then return representation end end return form:getRepresentations()[1] end local function getArticleLinkTemplate(frame, stmt_value) template = '' stmt_item = mw.wikibase.getEntity(stmt_value) if stmt_item:getSitelink(base_lang_wiki) ~= nil then template = frame:expandTemplate{ title=i18n['template_wikipedia'], args={stmt_item:getSitelink(base_lang_wiki)} } end return template end local function getArticleLinks ( frame, sense ) article_links = '' for i, stmt in pairs(sense:getAllStatements('P5137')) do -- Item for this sense stmt_value = stmt.mainsnak.datavalue.value.id article_links = article_links .. getArticleLinkTemplate(frame, stmt_value) end for i, stmt in pairs(sense:getAllStatements('P9970')) do -- Predicate for this sense stmt_value = stmt.mainsnak.datavalue.value.id article_links = article_links .. getArticleLinkTemplate(frame, stmt_value) end return article_links end local function getExternalLinks ( lexeme ) local external_links = {} for property_id, formatter_url in pairs(formatter_urls) do for i, stmt in ipairs(lexeme:getAllStatements(property_id)) do property_source = mw.wikibase.getBestStatements(property_id, 'P9073') -- Applicable 'stated in' value if next(property_source) ~= nil then source_name = mw.wikibase.getLabel(property_source[1].mainsnak.datavalue.value.id) if source_name == nil then source_name = property_source[1].mainsnak.datavalue.value.id end else source_name = mw.wikibase.getLabel(property_id) if source_name == nil then source_name = property_id end end -- Encode spaces in URLs as + signs for better URL compatibility formatted_link = mw.ustring.gsub(mw.ustring.gsub(formatter_url, '$1', stmt.mainsnak.datavalue.value), ' ', '+') new_link = '* [' .. formatted_link .. ' ' .. source_name .. ']' table.insert(external_links, new_link) end end return table.concat(external_links, '\n') end local function termSpan( term ) local text = term[1] local lang = term[2] local dir = mw.language.new( lang ):getDir() local span = mw.html.create( 'span' ) span:attr( 'lang', lang ) :attr( 'dir', dir ) :wikitext( text ) return tostring( span ) end local function termLink( term ) local text = term[1] local lang = term[2] local dir = mw.language.new( lang ):getDir() local span = mw.html.create( 'span' ) span:attr( 'lang', lang ) :attr( 'dir', dir ) :wikitext( '[[' .. text .. ']]' ) return tostring( span ) end local function getLemmata( current_lexeme ) lemma_string = '' for i, rep in pairs(current_lexeme:getLemmas()) do if lemma_string == '' then lemma_string = termSpan(rep) else lemma_string = lemma_string .. '/' .. termSpan(rep) end end return lemma_string end local function getLinkedLemmata( current_lexeme ) lemma_string = '' for i, rep in pairs(current_lexeme:getLemmas()) do if lemma_string == '' then lemma_string = termLink(rep) else lemma_string = lemma_string .. '/' .. termLink(rep) end end return lemma_string end -- Helper function to generate a unique reference ID based on source and qualifiers local function generateReferenceId(source_id, qualifiers) local id_parts = {source_id} if qualifiers then -- Include volume (P478) in ID if qualifiers['P478'] then table.insert(id_parts, 'v' .. qualifiers['P478'][1].datavalue.value) end -- Include page(s) (P304) in ID if qualifiers['P304'] then table.insert(id_parts, 'p' .. qualifiers['P304'][1].datavalue.value) end end return table.concat(id_parts, '-') end -- Helper function to format a Wikidata reference using استشهاد بويكي بيانات template -- Can accept either a statement (for P1343) or a reference object (for P8394 references) local function formatWikidataReference(frame, source_id, qualifiers) local ref_args = {source_id} -- Add qualifiers if present if qualifiers then -- P478 = volume (ج) if qualifiers['P478'] then ref_args['ج'] = qualifiers['P478'][1].datavalue.value end -- P304 = page(s) (ص) if qualifiers['P304'] then ref_args['ص'] = qualifiers['P304'][1].datavalue.value end end return frame:expandTemplate{ title='استشهاد بويكي بيانات', args=ref_args } end local function getExamples( current_lexeme, sense_id, frame, references_seen ) examples = mw.html.create('dl') for i, stmt in pairs(current_lexeme:getAllStatements('P5831')) do -- Usage example if stmt.qualifiers and stmt.qualifiers['P6072'] and stmt.qualifiers['P6072'][1].datavalue.value.id == sense_id then -- Lexeme sense for this example -- Support multi-line examples by converting ' / ' to line breaks example_text = mw.ustring.gsub(stmt.mainsnak.datavalue.value.text, ' / ','<br/>') example_lang = stmt.mainsnak.datavalue.value.language -- Highlight the form if P5830 (subject lexeme form) is present if stmt.qualifiers['P5830'] and stmt.qualifiers['P5830'][1] then example_form = mw.wikibase.getEntity(stmt.qualifiers['P5830'][1].datavalue.value.id) -- Lexeme form for this example -- Try P1810 qualifier first (title/name qualifier as string), then representation local example_form_str = nil if stmt.qualifiers['P1810'] ~= nil then example_form_str = stmt.qualifiers['P1810'][1].datavalue.value end if example_form_str == nil then example_form_str = example_form:getRepresentation(base_lang_code_forms) end if example_form_str == nil then example_form_str = example_form:getRepresentations()[1][1] end example_text = mw.ustring.gsub(example_text, example_form_str, "'''" .. example_form_str .. "'''") end example_str = termSpan({example_text, example_lang}) -- Add references if present local example_refs = '' if frame and references_seen and stmt.references and stmt.references[1] ~= nil then local ref = stmt.references[1] -- Try to find P248 (stated in) in the reference snaks if ref.snaks and ref.snaks['P248'] and ref.snaks['P248'][1] then local source_id = ref.snaks['P248'][1].datavalue.value.id local ref_id = generateReferenceId(source_id, ref.snaks) local citation = formatWikidataReference(frame, source_id, ref.snaks) if references_seen[ref_id] then -- Reference already exists, use named reference without content example_refs = frame:extensionTag('ref', '', {name = ref_id}) else -- First occurrence, create named reference with content references_seen[ref_id] = true example_refs = frame:extensionTag('ref', citation, {name = ref_id}) end end end examples:tag('dd'):wikitext("''" .. example_str .. "''" .. example_refs):done() end end for i, stmt in pairs(mw.wikibase.getAllStatements(sense_id, 'P5831')) do -- Usage example -- Support multi-line examples by converting ' / ' to line breaks example_text = mw.ustring.gsub(stmt.mainsnak.datavalue.value.text, ' / ','<br/>') example_lang = stmt.mainsnak.datavalue.value.language -- Highlight the form if P5830 (subject lexeme form) is present if stmt.qualifiers and stmt.qualifiers['P5830'] and stmt.qualifiers['P5830'][1] then example_form = mw.wikibase.getEntity(stmt.qualifiers['P5830'][1].datavalue.value.id) -- Lexeme form for this example -- Try P1810 qualifier first (title/name qualifier as string), then representation local example_form_str = nil if stmt.qualifiers['P1810'] ~= nil then example_form_str = stmt.qualifiers['P1810'][1].datavalue.value end if example_form_str == nil then example_form_str = example_form:getRepresentation(base_lang_code_forms) end if example_form_str == nil then example_form_str = example_form:getRepresentations()[1][1] end example_text = mw.ustring.gsub(example_text, example_form_str, "'''" .. example_form_str .. "'''") end example_str = termSpan({example_text, example_lang}) -- Add references if present local example_refs = '' if frame and references_seen and stmt.references and stmt.references[1] ~= nil then local ref = stmt.references[1] -- Try to find P248 (stated in) in the reference snaks if ref.snaks and ref.snaks['P248'] and ref.snaks['P248'][1] then local source_id = ref.snaks['P248'][1].datavalue.value.id local ref_id = generateReferenceId(source_id, ref.snaks) local citation = formatWikidataReference(frame, source_id, ref.snaks) if references_seen[ref_id] then -- Reference already exists, use named reference without content example_refs = frame:extensionTag('ref', '', {name = ref_id}) else -- First occurrence, create named reference with content references_seen[ref_id] = true example_refs = frame:extensionTag('ref', citation, {name = ref_id}) end end end examples:tag('dd'):wikitext("''" .. example_str .. "''" .. example_refs):done() end return tostring(examples) end local function getLanguageForCategories ( frame, lang_id ) -- No special handling needed for Arabic return lang_id end local function getCategory ( frame, current_lexeme ) local lang_id = current_lexeme:getLanguage() local cat_id = current_lexeme:getLexicalCategory() local cat_text = mw.wikibase.getLabelByLang( cat_id, base_lang_code_labels ) lang_id = getLanguageForCategories(frame , lang_id) if i18n['categories'][lang_id] ~= nil then if i18n['categories'][lang_id][cat_id] ~= nil then cat_text = cat_text .. '[[Category:' .. i18n['categories'][lang_id][cat_id] .. ']]' elseif i18n['categories'][lang_id]['_'] ~= nil then -- Fallback category if specific category not found cat_text = cat_text .. '[[Category:' .. i18n['categories'][lang_id]['_'] .. ']]' end end return cat_text end -- Add category for pages using Wikidata local function addWikidataUsageCategory() return '[[Category:' .. i18n['category_uses_wikidata'] .. ']]' end local createicon = function(langcode, entityID, propertyID) langcode = langcode or "" propertyID = propertyID or "" local icon = "&nbsp;<span class='penicon autoconfirmed-show'>[[" -- "&nbsp;<span data-bridge-edit-flow='overwrite' class='penicon'>[[" -> enable Wikidata Bridge .. "File:OOjs UI icon edit-ltr-progressive.svg |frameless |text-top |10px |alt=" .. i18n['edit_wikidata'] .. "|link=https://www.wikidata.org/entity/" .. entityID if langcode ~= "" then icon = icon .. "?uselang=" .. langcode end if propertyID ~= "" then icon = icon .. "#" .. propertyID end icon = icon .. "|" .. i18n['edit_wikidata'] .. "]]</span>" return icon end local function getMeanings ( frame, args, current_lexeme, references_seen ) if #current_lexeme:getSenses() == 0 then local lexeme_id = current_lexeme:getId() -- Build Wikidata logo icon (similar to ar-verb-infobox.lua footer) local wikidata_logo = '[[ملف:Wikidata-logo.svg|15px|class=skin-invert|ويكي بيانات|link=]]' -- Build edit icon that links directly to the senses section local edit_icon = '&nbsp;<span class="penicon autoconfirmed-show">[[' .. 'File:OOjs UI icon edit-ltr-progressive.svg |frameless |text-top |10px |alt=' .. i18n['edit_wikidata'] .. '|link=https://www.wikidata.org/wiki/Lexeme:' .. lexeme_id .. '?uselang=ar#senses' .. '|' .. i18n['edit_wikidata'] .. ']]</span>' -- Build external link to Wikidata senses section (same as edit icon) local wikidata_senses_url = 'https://www.wikidata.org/wiki/Lexeme:' .. lexeme_id .. '?uselang=ar#senses' local missing_senses_html = mw.html.create('div') :addClass('wikidata-missing-senses') :css('font-style', 'italic') :wikitext(i18n['text_missing_senses'] .. ' ') :wikitext(wikidata_logo .. ' ') :wikitext('[' .. wikidata_senses_url .. ' ' .. lexeme_id .. ']') :wikitext(edit_icon .. '. ') :wikitext(i18n['text_more_info'] .. ' ') :wikitext('[[' .. i18n['help_page'] .. ']].') :wikitext('[[Category:' .. i18n['category_missing_senses'] .. ']]') return tostring(missing_senses_html) end meanings = mw.html.create( 'ol' ) for i, sense in pairs(current_lexeme:getSenses()) do local gloss_text_parts = {} local main_gloss_text = frame:expandTemplate{ title=i18n['template_anchor'], args={sense:getId()} } local specifiers = {} for k, property_id in ipairs({'P6084', 'P6191', 'P9488'}) do -- Location where sense is used, register in which sense is used, field of usage for i, stmt in pairs(sense:getAllStatements(property_id)) do stmt_value = stmt.mainsnak.datavalue.value.id table.insert(specifiers, mw.wikibase.getLabel(stmt_value)) end end if #specifiers > 0 then main_gloss_text = main_gloss_text .. "(''" .. table.concat(specifiers, "'', ''") .. "'') " end if sense:getGloss( base_lang_code_labels ) ~= nil then main_gloss_text = main_gloss_text .. sense:getGloss( base_lang_code_labels) else local other_gloss_text = nil local other_gloss_lang = nil -- First try to get labels from P5137 (item for this sense) local item_label_gloss_parts = {} for k, stmt in pairs(sense:getAllStatements('P5137')) do stmt_value = stmt.mainsnak.datavalue.value.id local stmt_label = mw.wikibase.getLabelByLang(stmt_value, base_lang_code_labels) if stmt_label ~= nil then table.insert(item_label_gloss_parts, '[[:d:' .. stmt_value .. '|' .. stmt_label .. ']]') end end if #item_label_gloss_parts > 0 then other_gloss_text = table.concat(item_label_gloss_parts, '; ') end -- If no item labels found, try fallback languages if other_gloss_text == nil then for i, fallback_lang in ipairs(mw.language.getFallbacksFor( base_lang_code_labels )) do if sense:getGloss( fallback_lang ) ~= nil then other_gloss_text, other_gloss_lang = sense:getGloss( fallback_lang ) end end if other_gloss_lang == nil then local glosses = sense:getGlosses() for j, gloss in pairs(glosses) do other_gloss_text = gloss[1] other_gloss_lang = gloss[2] break end end main_gloss_text = main_gloss_text .. other_gloss_text .. "<sup><em>" .. mw.language.fetchLanguageName(other_gloss_lang, base_lang_code_labels) .. "</em></sup>" else main_gloss_text = main_gloss_text .. "''" .. other_gloss_text .. "''" end end table.insert(gloss_text_parts, main_gloss_text .. createicon(base_lang_code_labels, sense:getId())) for i, stmt in pairs(sense:getAllStatements('P8394')) do -- P8394 = gloss quote local quote_text = termSpan({stmt.mainsnak.datavalue.value.text, stmt.mainsnak.datavalue.value.language}) table.insert(gloss_text_parts, '"' .. quote_text .. '"') -- Format citation using استشهاد بويكي بيانات template if references exist if stmt.references and stmt.references[1] ~= nil then local ref = stmt.references[1] -- Try to find P248 (stated in) in the reference snaks if ref.snaks and ref.snaks['P248'] and ref.snaks['P248'][1] then local source_id = ref.snaks['P248'][1].datavalue.value.id local ref_id = generateReferenceId(source_id, ref.snaks) local citation = formatWikidataReference(frame, source_id, ref.snaks) -- Track and group references if references_seen then if references_seen[ref_id] then -- Reference already exists, use named reference without content table.insert(gloss_text_parts, frame:extensionTag('ref', '', {name = ref_id})) else -- First occurrence, create named reference with content references_seen[ref_id] = true table.insert(gloss_text_parts, frame:extensionTag('ref', citation, {name = ref_id})) end else -- No tracking, just add the reference table.insert(gloss_text_parts, frame:extensionTag('ref', citation)) end end end end for i, stmt in pairs(sense:getAllStatements('P1343')) do -- P1343 = described by source local source_id = stmt.mainsnak.datavalue.value.id local citation = formatWikidataReference(frame, source_id, stmt.qualifiers) local ref_id = generateReferenceId(source_id, stmt.qualifiers) -- Track and group references if references_seen then if references_seen[ref_id] then -- Reference already exists, use named reference without content table.insert(gloss_text_parts, frame:extensionTag('ref', '', {name = ref_id})) else -- First occurrence, create named reference with content references_seen[ref_id] = true table.insert(gloss_text_parts, frame:extensionTag('ref', citation, {name = ref_id})) end else -- No tracking, just add the reference table.insert(gloss_text_parts, frame:extensionTag('ref', citation)) end end first_sense_image = '' sense_images = sense:getAllStatements('P18') if next(sense_images) ~= nil then first_sense_image = sense_images[1].mainsnak.datavalue.value end if first_sense_image ~= '' then table.insert(gloss_text_parts, '[[File:' .. first_sense_image .. "|thumb|'''" .. getLemmata(current_lexeme) .. "'''—" .. main_gloss_text .. ']]') end externallinks = getArticleLinks(frame, sense) if externallinks ~= '' then table.insert(gloss_text_parts, '— ' .. externallinks) end local new_notes = {} sense_keys = { sense:getId(), string.sub(sense:getId(), string.find(sense:getId(), '-')+1) } for i, v in ipairs(sense_keys) do if args[v] ~= nil then table.insert(new_notes, args[v]) end end if #new_notes > 0 then for i, v in ipairs(new_notes) do if i == 1 then table.insert(gloss_text_parts, '<br/>' .. v) else table.insert(gloss_text_parts, v) end end end examples = getExamples ( current_lexeme, sense:getId(), frame, references_seen ) -- Join gloss parts with spaces for inline elements like refs, newlines for block elements local gloss_text = '' for idx, part in ipairs(gloss_text_parts) do if idx == 1 then gloss_text = part elseif part:match('^<br/>') or part:match('^%[%[File:') then -- Block-level elements get newlines gloss_text = gloss_text .. '\n' .. part elseif part:match('^\127') or part:match('^<ref') then -- Strip markers starting with \127 or explicit <ref> tags gloss_text = gloss_text .. part else -- Inline elements (refs, quotes) get spaces gloss_text = gloss_text .. ' ' .. part end end meanings:tag('li'):wikitext(gloss_text):wikitext(examples) end -- Add category for lexemes with senses meanings:wikitext('[[Category:' .. i18n['category_has_senses'] .. ']]') return meanings end local function get_pronunciation_base_form( current_lexeme ) base_form = nil -- (!) Words in other languages with different base forms can be added here with new if statements. -- For Arabic, use the first available form if base_form == nil then for i, form in pairs(current_lexeme:getForms()) do base_form = form break end end return base_form end local function getCombines ( current_lexeme ) local combines = '' local index_mappings = {} for i, stmt in pairs(current_lexeme:getAllStatements('P5238')) do if stmt.qualifiers and stmt.qualifiers['P1545'] ~= nil then -- Series ordinal local current_index = tonumber(stmt.qualifiers['P1545'][1].datavalue.value) index_mappings[current_index] = stmt end end if #index_mappings ~= 0 then for i, stmt in ipairs(index_mappings) do local part_lexeme_id = stmt.mainsnak.datavalue.value.id local part_lexeme = mw.wikibase.getEntity(part_lexeme_id) local current_substring = getLinkedLemmata(part_lexeme) -- Add recursive etymology for compound parts local part_etymology = getEtymology(part_lexeme) if part_etymology ~= '' then current_substring = current_substring .. ' (← ' .. part_etymology .. ')' end if combines == '' then combines = current_substring else combines = combines .. ' + ' .. current_substring end end end return combines end local function getEtymology ( current_lexeme ) -- Recursive etymology support (no depth limit) local etymology = '' local current_combines = getCombines(current_lexeme) if #current_lexeme:getAllStatements('P5191') == 0 then return current_combines end for i, stmt in pairs(current_lexeme:getAllStatements('P5191')) do local origin_lexeme = mw.wikibase.getEntity(stmt.mainsnak.datavalue.value.id) local origin_lexeme_lang = origin_lexeme:getLanguage() local origin_origin = getEtymology(origin_lexeme) -- Recursive call local new_etymology_string = '' if origin_origin ~= '' then new_etymology_string = getLinkedLemmata(origin_lexeme) .. ' (' .. mw.wikibase.getLabel(origin_lexeme_lang) .. ') ← ' .. origin_origin else new_etymology_string = getLinkedLemmata(origin_lexeme) .. ' (' .. mw.wikibase.getLabel(origin_lexeme_lang) .. ')' end if etymology == '' then etymology = new_etymology_string else etymology = etymology .. ' ' .. getLinkedLemmata(origin_lexeme) .. ' (' .. mw.wikibase.getLabel(origin_lexeme_lang) .. ')' end end if current_combines ~= '' then etymology = etymology .. '<br/>(' .. current_combines .. ')' end return etymology end local function getPronunciation ( frame, current_lexeme ) local pronunciations = {} base_form = get_pronunciation_base_form(current_lexeme) if base_form ~= nil then -- P443 = Audio pronunciation for i, stmt in pairs(base_form:getAllStatements('P443')) do local pronunciation_file = stmt.mainsnak.datavalue.value local specifier_text = '' local specifiers = {} if stmt.qualifiers ~= nil then for k, property_id in ipairs({'P5237'}) do -- P5237 = Pronunciation manner if stmt.qualifiers[property_id] then for l, qual in pairs(stmt.qualifiers[property_id]) do stmt_value = qual.datavalue.value.id table.insert(specifiers, mw.wikibase.getLabel(stmt_value)) end end end end if #specifiers > 0 then specifier_text = "(''" .. table.concat(specifiers, "'', ''") .. "'') " end pronunciation = table.insert(pronunciations, '* ' .. specifier_text .. frame:expandTemplate{ title= i18n['template_audio'], args = {current_lexeme:getLemmas()[1][2], pronunciation_file } -- TODO: find situations where the proper category is not added }) end -- P898 = IPA transcription for i, stmt in pairs(base_form:getAllStatements('P898')) do local ipa_text = stmt.mainsnak.datavalue.value local specifier_text = '' local specifiers = {} if stmt.qualifiers ~= nil then for k, property_id in ipairs({'P5237'}) do -- P5237 = Pronunciation manner if stmt.qualifiers[property_id] then for l, qual in pairs(stmt.qualifiers[property_id]) do stmt_value = qual.datavalue.value.id table.insert(specifiers, mw.wikibase.getLabel(stmt_value)) end end end end if #specifiers > 0 then specifier_text = "(''" .. table.concat(specifiers, "'', ''") .. "'') " end -- Use IPA template if available, otherwise just format as IPA pronunciation = table.insert(pronunciations, '* ' .. specifier_text .. '{{آيبا|ar|' .. ipa_text .. '}}') end end return table.concat(pronunciations, '\n') end local function heading_level(text, level) local heading_delimiter = string.rep('=', level) return heading_delimiter .. ' ' .. text .. ' ' .. heading_delimiter end local function get_any_notes(sections, args, keys) local notes = {} for i, v in ipairs(keys) do if args[v] ~= nil then table.insert(notes, args[v]) end end return notes end local function add_specific_notes(sections, notes) for i, v in ipairs(notes) do table.insert(sections, v) end end local function add_any_notes(sections, args, keys) for i, v in ipairs(keys) do if args[v] ~= nil then table.insert(sections, args[v]) end end end -- Public function: Display meanings/senses only -- Usage: {{#invoke:معجمية ويكي بيانات|meanings|L12345}} function p.meanings(frame) local args = getArgs(frame) local lexeme_id = args[1] if not lexeme_id or lexeme_id == '' then return '<span class="error">خطأ: يجب تحديد معرف المدخل المعجمي من ويكي بيانات (مثال: L12345)</span>' end local current_lexeme = mw.wikibase.getEntity(lexeme_id) if not current_lexeme then return '<span class="error">خطأ: لم يتم العثور على المدخل المعجمي ' .. lexeme_id .. ' في ويكي بيانات</span>' end -- Check if it's Arabic (Q13955) local lang_id = current_lexeme:getLanguage() if lang_id ~= 'Q13955' then local lang_name = mw.wikibase.getLabel(lang_id) or lang_id return '<span class="error">تحذير: هذا المدخل للغة ' .. lang_name .. ' وليس العربية (Q13955)</span>' end local sections = {} local references_seen = {} -- Add meanings section local meanings = getMeanings(frame, args, current_lexeme, references_seen) table.insert(sections, tostring(meanings)) -- -- Only show references section if there are references -- W: don't show references. It's to be added outside with {{مراجع}} -- if next(references_seen) ~= nil then -- table.insert(sections, frame:extensionTag('references')) -- end -- Add Wikidata usage category table.insert(sections, addWikidataUsageCategory()) return table.concat(sections, '\n\n') end -- Escape the Lua pattern magic characters so an arbitrary form can be searched -- for literally. Arabic script contains none of them, but a stray one in the -- page title should not turn into a wildcard. local function escape_pattern(s) return (mw.ustring.gsub(s, '[%^%$%(%)%%%.%[%]%*%+%-%?]', '%%%0')) end -- Usage examples (P5831) on this lexeme, or on any of its senses, whose text -- contains `form` verbatim. -- -- Called from [[Module:ar-verb-form]] so that a conjugated-form page can show -- the attestations of that exact form — and only those; the meanings, and the -- examples belonging to other forms, stay on the lemma page. -- -- P5830 «الشكل المستخدم» would name the form directly, but no Arabic verb sense -- uses that qualifier, so the match is on the text. It is still unambiguous: -- these page titles carry every diacritic, so كَتَبْتُ cannot match كَتَبْتَ. -- -- Returns '' when nothing matches, which is the common case. function p.form_examples_for(lexeme_id, form) if not lexeme_id or lexeme_id == '' or not form or form == '' then return '' end local current_lexeme = mw.wikibase.getEntity(lexeme_id) if not current_lexeme then return '' end local seen, matches = {}, {} local function consider(stmt) if not (stmt.mainsnak and stmt.mainsnak.datavalue) then return end local value = stmt.mainsnak.datavalue.value local text = value and value.text if not text or seen[text] then return end if not mw.ustring.find(text, form, 1, true) then return end seen[text] = true table.insert(matches, {text = text, lang = value.language or base_lang_code_forms}) end for i, stmt in pairs(current_lexeme:getAllStatements('P5831')) do consider(stmt) end for i, sense in pairs(current_lexeme:getSenses() or {}) do for j, stmt in pairs(sense:getAllStatements('P5831')) do consider(stmt) end end if #matches == 0 then return '' end local pattern = escape_pattern(form) local list = mw.html.create('dl') for i, match in ipairs(matches) do local text = mw.ustring.gsub(match.text, pattern, "'''" .. form .. "'''") list:tag('dd'):wikitext("''" .. termSpan({text, match.lang}) .. "''"):done() end return tostring(list) end -- Public function: Debug information -- Usage: {{#invoke:معجمية ويكي بيانات|debug|L12345}} function p.debug(frame) local args = getArgs(frame) local lexeme_id = args[1] if not lexeme_id or lexeme_id == '' then return 'Error: No lexeme ID provided' end local current_lexeme = mw.wikibase.getEntity(lexeme_id) if not current_lexeme then return 'Error: Lexeme ' .. lexeme_id .. ' not found' end local debug_info = {} table.insert(debug_info, '=== Debug Info for ' .. lexeme_id .. ' ===') table.insert(debug_info, 'Language: ' .. (mw.wikibase.getLabel(current_lexeme:getLanguage()) or current_lexeme:getLanguage())) table.insert(debug_info, 'Lexical Category: ' .. (mw.wikibase.getLabel(current_lexeme:getLexicalCategory()) or current_lexeme:getLexicalCategory())) table.insert(debug_info, 'Lemmas: ' .. getLemmata(current_lexeme)) table.insert(debug_info, 'Number of senses: ' .. #current_lexeme:getSenses()) table.insert(debug_info, 'Number of forms: ' .. #current_lexeme:getForms()) return '<pre>' .. table.concat(debug_info, '\n') .. '</pre>' end function p.all( frame ) local args = getArgs(frame, { parentOnly = true }) lexeme_id = args[1] current_lexeme = mw.wikibase.getEntity(lexeme_id) current_language = current_lexeme:getLanguage() current_category = current_lexeme:getLexicalCategory() references_seen = {} sections = {} cat_text = '===' .. getCategory ( frame, current_lexeme ) .. frame:expandTemplate{ title=i18n['template_anchor'], args={lexeme_id} } .. '===' table.insert(sections, cat_text) table.insert(sections, frame:expandTemplate{ title= i18n['template_lexeme'], args = {lexeme_id} }) add_any_notes(sections, args, i18n['manual_category']) etymology = getEtymology ( current_lexeme ) combines = getCombines ( current_lexeme ) if etymology ~= '' or combines ~= '' then table.insert(sections, heading_level(i18n['heading_etymology'], 4)) if etymology ~= '' then table.insert(sections, tostring(etymology)) end if combines ~= '' then table.insert(sections, tostring(combines)) end end add_any_notes(sections, args, i18n['manual_etymology']) pronunciation = getPronunciation ( frame, current_lexeme ) if pronunciation ~= '' then table.insert(sections, heading_level(i18n['heading_pronunciation'], 4)) table.insert(sections, tostring(pronunciation)) end add_any_notes(sections, args, i18n['manual_pronunciation']) meanings, sense_sources = getMeanings ( frame, args, current_lexeme, references_seen ) table.insert(sections, heading_level(i18n['heading_meanings'], 4)) table.insert(sections, tostring(meanings)) add_any_notes(sections, args, i18n['manual_meaning']) -- Only show references section if there are references or manual reference notes local reference_notes = get_any_notes(sections, args, i18n['manual_reference']) local has_references = next(references_seen) ~= nil if has_references or #reference_notes > 0 then table.insert(sections, heading_level(i18n['heading_references'], 4)) table.insert(sections, frame:extensionTag('references')) add_specific_notes(sections, reference_notes) end external_links = getExternalLinks ( current_lexeme ) if external_links ~= '' then table.insert(sections, heading_level(i18n['heading_external_links'], 4)) table.insert(sections, external_links) end add_any_notes(sections, args, i18n['manual_external_link']) -- Add Wikidata usage category table.insert(sections, addWikidataUsageCategory()) return table.concat(sections,"\n\n") end -- Arabic wrapper functions for template interface p['معاني'] = function(frame) return p.meanings(frame) end return p -- Debug usage examples: -- =p.meanings(mw.getCurrentFrame():newChild{args={'L12100'}}) -- =p.meanings(mw.getCurrentFrame():newChild{args={'L1478139'}}) -- =p['معاني'](mw.getCurrentFrame():newChild{args={'L12100'}}) 7v00urjab8bijehvu6w4ej5n4byqozb وحدة:ar-verb-form 828 240795 1097809 2026-08-01T13:45:16Z ForzaGreen 28665 وحدة جديدة: عرض صفحات صيغ تصريف الأفعال 1097809 Scribunto text/plain -- Module:ar-verb-form -- By: Wael (User:ForzaGreen) -- -- Renders a conjugated-form (non-lemma) page for an Arabic verb, e.g. أَكَلْتُ. -- -- The page passes only the verb's root and morphological pattern. This module -- re-conjugates the verb through Module:ar-verb and works out for itself which -- slots the page title represents, so the wikitext never states the grammar and -- therefore can never state it wrongly. When Module:ar-verb is corrected, every -- form page re-renders; a title that no longer matches any slot lands in -- [[تصنيف:صفحات صيغ أفعال بلا مطابقة]] instead of silently showing stale grammar. -- -- {{صيغة فعل|جذر=أكل|وزن=فعَل يفعُل|معجم=L12100}} -- -- A form belonging to several verbs repeats the triple: |جذر2=|وزن2=|معجم2= -- -- Parameters: -- جذر, وزن required; معجم optional (Wikidata lexeme id) -- جذر2 … up to MAX_VERBS additional verbs -- صفحة override the page title (documentation and tests) -- أقسام=لا render only the box and the definition lines local p = {} local ar_verb = require("Module:ar-verb") local u = mw.ustring.char local MAX_VERBS = 6 ------------------------------------------------------------------------------- -- Labels ------------------------------------------------------------------------------- -- Wording follows the conjugation-table headers in Module:ar-verb (make_table) -- and the pronoun labels of its simplified ar.wiktionary table (make_table_ar). local TENSE = { past = "الماضي", ind = "المضارع المرفوع", sub = "المضارع المنصوب", juss = "المضارع المجزوم", imp = "الأمر", } local VOICE = { act = "المبني للمعلوم", pass = "المبني للمجهول", } local PERSON = {["1"] = "المتكلم", ["2"] = "المخاطب", ["3"] = "الغائب"} local NUMBER = {s = "المفرد", d = "المثنى", p = "الجمع"} local GENDER = {m = "المذكر", f = "المؤنث"} -- The same vocabulary without the article, for category names. ar.wiktionary -- already names these categories this way — تصنيف:فعل مبني للمعلوم ماضي مفرد مذكر متكلم -- has 133 pages — so the composed name lands on the existing category rather -- than forking the taxonomy. local PERSON_BARE = {["1"] = "متكلم", ["2"] = "مخاطب", ["3"] = "غائب"} local NUMBER_BARE = {s = "مفرد", d = "مثنى", p = "جمع"} local GENDER_BARE = {m = "مذكر", f = "مؤنث"} local TENSE_BARE = {past = "ماضي", ind = "مضارع", sub = "مضارع", juss = "مضارع", imp = "أمر"} local VOICE_BARE = {act = "مبني للمعلوم", pass = "مبني للمجهول"} local PRONOUN = { ["1s"] = "أَنَا", ["1p"] = "نَحْنُ", ["2ms"] = "أَنْتَ", ["2fs"] = "أَنْتِ", ["2d"] = "أَنْتُمَا", ["2mp"] = "أَنْتُمْ", ["2fp"] = "أَنْتُنَّ", ["3ms"] = "هُوَ", ["3fs"] = "هِيَ", ["3md"] = "هُمَا", ["3fd"] = "هُمَا", ["3mp"] = "هُمْ", ["3fp"] = "هُنَّ", } -- Slots that carry no conjugated form of their own: the five *_linked duplicates -- and the staging slots Module:ar-verb uses while picking a default. local SKIP_SLOTS = { ap1 = true, ap2 = true, ap3 = true, apcd = true, apan = true, pp2 = true, vn2 = true, } -- Derived nominals. They are lemmas in their own right (اسم فاعل / اسم مفعول / -- مصدر), not conjugated forms, so this module does not claim them. local NOMINAL_SLOTS = {ap = true, pp = true, vn = true} local QUADRILITERAL = { ["فعلل"] = true, ["تفعلل"] = true, ["افعنلل"] = true, ["افعللّ"] = true, } local MAINTENANCE_CATEGORY = "صفحات صيغ أفعال بلا مطابقة" ------------------------------------------------------------------------------- -- Text helpers ------------------------------------------------------------------------------- -- Tatweel and the invisible direction/joining marks. These survive copy-paste -- and round-trips through external tools, and MediaWiki keeps them in page -- titles, so both sides of every comparison are cleaned of them first. local INVISIBLE = "[" .. u(0x0640) .. u(0x061C) .. u(0x200B) .. "-" .. u(0x200F) .. u(0x202A) .. "-" .. u(0x202E) .. u(0xFEFF) .. "]" -- The diacritics that are not typed when searching: the harakat proper, shadda, -- sukun and the dagger alif. Hamza carriers (أ إ آ ؤ ئ) are distinct letters and -- are deliberately left alone. local DIACRITIC = "[" .. u(0x064B) .. "-" .. u(0x0652) .. u(0x0670) .. "]" local function clean(s) if not s or s == "" then return "" end return (mw.ustring.gsub(s, INVISIBLE, "")) end -- The consonant skeleton (الرسم) a reader would type into the search box. local function rasm(s) return (mw.ustring.gsub(clean(s), DIACRITIC, "")) end local function link(target, display) if not target or target == "" then return "" end if display and display ~= target then return "[[" .. target .. "|" .. display .. "]]" end return "[[" .. target .. "]]" end local function category(name) return "[[تصنيف:" .. name .. "]]" end -- "أكل" -> "أ ك ل". ar.wiktionary spells root categories and navboxes from the -- letters as written (تصنيف:أ ك ل, 15 pages), not from the normalized radicals -- Module:ar-verb reports, which would give ء ك ل and point at nothing. local function space_root(root) local letters = {} for letter in mw.ustring.gmatch(clean(root), ".") do if letter ~= " " and letter ~= "_" then letters[#letters + 1] = letter end end return table.concat(letters, " ") end ------------------------------------------------------------------------------- -- Slots ------------------------------------------------------------------------------- -- "past_pass_3ms" -> tense "past", voice "pass", person/number "3ms" -- "imp_2fs" -> tense "imp", voice "act", person/number "2fs" local function parse_slot(slot) local tense, rest = mw.ustring.match(slot, "^(%a+)_(.+)$") if not tense or not TENSE[tense] then return nil end local voice = "act" local pn = rest local stripped = mw.ustring.match(rest, "^pass_(.+)$") if stripped then voice = "pass" pn = stripped end local person, gender, number = mw.ustring.match(pn, "^(%d)([mf]?)([sdp])$") if not person then return nil end return { slot = slot, tense = tense, voice = voice, pn = pn, person = person, gender = gender, number = number, } end -- Every slot that can name a conjugated form, in the order Module:ar-verb -- declares them. local function each_form_slot(spec, fn) for _, slot_accel in ipairs(spec.verb_slots) do local slot = slot_accel[1] if not SKIP_SLOTS[slot] and not NOMINAL_SLOTS[slot] and not mw.ustring.find(slot, "_linked$") then local forms = spec.forms[slot] if forms then for _, form in ipairs(forms) do if form.form and form.form ~= "" and form.form ~= "?" then fn(slot, form.form) end end end end end end -- The مضارع moods collapse whenever they produce the same string: يَكْتُبْنَ is -- indicative, subjunctive and jussive at once, so it reads "المضارع" rather than -- three separate lines; يَكْتُبُوا is only منصوب and مجزوم. local function tense_phrase(tenses) if tenses.past then return TENSE.past end if tenses.imp then return TENSE.imp end if tenses.ind and tenses.sub and tenses.juss then return "المضارع" end local parts = {} for _, t in ipairs({"ind", "sub", "juss"}) do if tenses[t] then parts[#parts + 1] = TENSE[t] end end if #parts == 0 then return nil end if #parts == 1 then return parts[1] end -- "المضارع المنصوب والمجزوم" — say المضارع once, then the moods. local moods = {} for i, phrase in ipairs(parts) do moods[i] = (mw.ustring.gsub(phrase, "^المضارع ", "")) end return "المضارع " .. table.concat(moods, " و") end -- Group the matched slots into one statement per (voice, person/number). local function group_matches(matches) local order, groups = {}, {} for _, m in ipairs(matches) do local key = m.voice .. "|" .. m.pn if not groups[key] then groups[key] = {voice = m.voice, pn = m.pn, person = m.person, gender = m.gender, number = m.number, tenses = {}} order[#order + 1] = key end groups[key].tenses[m.tense] = true end local out = {} for _, key in ipairs(order) do out[#out + 1] = groups[key] end return out end local function describe(group, lemma) local phrase = tense_phrase(group.tenses) if not phrase then return nil end local parts = {phrase} -- The imperative is active by definition; saying so adds nothing. if not group.tenses.imp then parts[#parts + 1] = VOICE[group.voice] end -- ل + المتكلم contracts to للمتكلم, so the first word carries the merged -- article and the rest keep theirs: "للغائب الجمع المذكر". local who = {"لل" .. PERSON_BARE[group.person], NUMBER[group.number]} if group.gender and group.gender ~= "" then who[#who + 1] = GENDER[group.gender] end local pronoun = PRONOUN[group.pn] local subject = table.concat(who, " ") if pronoun then subject = subject .. " (" .. pronoun .. ")" end return table.concat(parts, " ") .. "، " .. subject .. "، من الفعل " .. link(lemma) .. "." end ------------------------------------------------------------------------------- -- The pattern this form realises (وزن الصيغة) ------------------------------------------------------------------------------- -- Conjugating ف-ع-ل (ف-ع-ل-ل for quadriliterals) through the same وزن and the -- same slot names the shape of the form: past_1s of فعَل يفعُل is فَعَلْتُ. That is the -- category ar.wiktionary already files these pages under, and it is a browse -- axis nothing else offers — every verb's first-person past in one place. local pattern_cache = {} local function pattern_forms(wazn) if pattern_cache[wazn] == nil then local model = QUADRILITERAL[wazn] and "فعلل" or "فعل" local ok, spec = pcall(ar_verb.do_generate_forms, {["جذر"] = model, ["وزن"] = wazn}, "ar-conj") pattern_cache[wazn] = ok and spec.forms or false end return pattern_cache[wazn] or nil end local function pattern_of(wazn, slot) local forms = pattern_forms(wazn) if not forms then return nil end local entry = forms[slot] if not entry or not entry[1] or entry[1].form == "?" then return nil end return entry[1].form end ------------------------------------------------------------------------------- -- Blocks ------------------------------------------------------------------------------- -- One box per verb: the pointer to the lemma, which is the whole point of the -- page, above the morphological coordinates. local function render_box(verb) local box = mw.html.create("table"):addClass("ar-verb-form-box") local head = box:tag("tr"):tag("td"):attr("colspan", 2):addClass("avf-head") head:tag("div"):addClass("avf-kicker"):wikitext("صيغة من الفعل") head:tag("div"):addClass("avf-lemma"):wikitext(link(verb.lemma)) head:tag("div"):addClass("avf-note") :wikitext("المعاني والشواهد والمراجع على صفحة الفعل") local function row(label, value) if not value or value == "" then return end local tr = box:tag("tr") tr:tag("th"):wikitext(label) tr:tag("td"):wikitext(value) end row("الجذر", verb.root_display ~= "" and link("تصنيف:" .. verb.root_display, verb.root_display) or nil) row("الوزن", verb.wazn .. (verb.verb_type ~= "" and " — " .. verb.verb_type or "")) row("وزن الصيغة", verb.pattern_form and link("تصنيف:" .. verb.pattern_form, verb.pattern_form) or nil) -- Same link shape Module:ar-verb-infobox uses on the lemma page. row("ويكي بيانات", verb.lexeme and "[https://www.wikidata.org/wiki/Lexeme:" .. verb.lexeme .. "?uselang=ar " .. verb.lexeme .. "]" or nil) return tostring(box) end -- Where the form sits: the same pronoun across الماضي / المضارع / الأمر, which is -- the question a reader landing here actually has. The full table follows, -- collapsed, with this cell highlighted. local function render_position(verb) local group = verb.groups[1] if not group then return nil end local voice_prefix = group.voice == "pass" and "_pass" or "" -- If the page is itself a منصوب/مجزوم form, show that mood in the مضارع column -- rather than the indicative, so the form the reader is looking at is the one -- highlighted. Otherwise the indicative is the reference form. local mood = (group.tenses.ind and "ind") or (group.tenses.sub and "sub") or (group.tenses.juss and "juss") local columns = { {TENSE.past, "past" .. voice_prefix .. "_" .. group.pn}, {mood and tense_phrase(group.tenses) or "المضارع", (mood or "ind") .. voice_prefix .. "_" .. group.pn}, } if group.voice == "act" then columns[#columns + 1] = {TENSE.imp, "imp_" .. group.pn} end local t = mw.html.create("table"):addClass("ar-verb-form-position") local header = t:tag("tr") header:tag("th"):wikitext(PRONOUN[group.pn] or "") for _, column in ipairs(columns) do header:tag("th"):wikitext(column[1]) end local body = t:tag("tr") body:tag("th"):wikitext(verb.lemma) for _, column in ipairs(columns) do local entry = verb.spec.forms[column[2]] local value = entry and entry[1] and entry[1].form or nil local cell = body:tag("td") if not value or value == "?" then cell:wikitext("—") elseif clean(value) == verb.pagename then cell:addClass("avf-focus"):wikitext("'''" .. value .. "'''") else cell:wikitext(link(value)) end end return tostring(t) end -- Vocalizations of this same verb that share the page's consonant skeleton. -- A reader searching أكلت lands on one of them and needs the others; this is -- also why ar.wiktionary does not need a disambiguation page per skeleton. local function collect_siblings(verbs, pagename) local skeleton = rasm(pagename) local seen, list = {[pagename] = true}, {} for _, verb in ipairs(verbs) do each_form_slot(verb.spec, function(_, form) local cleaned = clean(form) if not seen[cleaned] and rasm(cleaned) == skeleton then seen[cleaned] = true list[#list + 1] = cleaned end end) end table.sort(list) return list, skeleton end local function render_siblings(siblings, skeleton) if #siblings == 0 then return nil end local links = {} for i, form in ipairs(siblings) do links[i] = link(form) end return "=== صيغ تشارك الرسم «" .. skeleton .. "» ===\n" .. table.concat(links, " · ") end -- Usage examples already published on the lemma's Wikidata senses whose text -- contains this exact vocalized form. Wikidata's P5830 «الشكل المستخدم» qualifier -- would say so directly, but no Arabic verb sense uses it, so the fully -- vocalized string is the match — which is unambiguous precisely because the -- page title carries every diacritic. Renders nothing when nothing matches. local function render_examples(verbs, pagename) local out = {} for _, verb in ipairs(verbs) do if verb.lexeme then local ok, result = pcall(function() return require("Module:معجمية ويكي بيانات").form_examples_for( verb.lexeme, pagename) end) if ok and result and result ~= "" then out[#out + 1] = result end end end if #out == 0 then return nil end return "=== شواهد على هذه الصيغة ===\n" .. table.concat(out, "\n") end ------------------------------------------------------------------------------- -- Core ------------------------------------------------------------------------------- -- Work out what the page title is, without producing any wikitext. Kept apart -- from p.render so the offline tests can assert on the grammar the module -- derived rather than on the markup it happened to wrap it in. -- -- args = {verbs = {{root=, wazn=, lexeme=}, ...}, pagename =} -- returns {pagename=, verbs={...}, siblings={...}, skeleton=, categories={...}} function p.analyze(args) local pagename = clean(args.pagename) local verbs = {} for _, entry in ipairs(args.verbs or {}) do local lexeme = entry.lexeme if lexeme == "" then lexeme = nil end local ok, spec = pcall(ar_verb.do_generate_forms, {["جذر"] = entry.root, ["وزن"] = entry.wazn}, "ar-conj") if ok and spec and spec.forms then local matches = {} each_form_slot(spec, function(slot, form) if clean(form) == pagename then local parsed = parse_slot(slot) if parsed then matches[#matches + 1] = parsed end end end) if #matches > 0 then local lemma_entry = spec.forms.past_3ms local _, verb_type = ar_verb.verb_info(spec) local groups = group_matches(matches) local sentences = {} local lemma = lemma_entry and lemma_entry[1] and lemma_entry[1].form or entry.root for i, group in ipairs(groups) do sentences[i] = describe(group, lemma) end verbs[#verbs + 1] = { root = entry.root, wazn = entry.wazn, lexeme = lexeme, lemma = lemma, root_display = space_root(entry.root), verb_type = verb_type or "", pattern_form = pattern_of(entry.wazn, matches[1].slot), spec = spec, pagename = pagename, slots = matches, groups = groups, sentences = sentences, } end end end local siblings, skeleton = collect_siblings(verbs, pagename) -- Categories: the parent, then per statement the grammatical category in the -- order ar.wiktionary already names them (فعل + بناء + زمن + عدد + جنس + شخص), -- the pattern this form realises, and the root. local categories, seen_category = {}, {} local function add_category(name) if name and name ~= "" and not seen_category[name] then seen_category[name] = true categories[#categories + 1] = name end end if #verbs == 0 then add_category(MAINTENANCE_CATEGORY) else add_category("صيغ أفعال عربية") for _, verb in ipairs(verbs) do for _, group in ipairs(verb.groups) do local name = {"فعل"} if group.tenses.imp then -- The imperative categories carry neither voice nor person: -- تصنيف:فعل أمر مفرد مذكر, as {{أ-م-ذ}} files them today. name[#name + 1] = TENSE_BARE.imp name[#name + 1] = NUMBER_BARE[group.number] if group.gender and group.gender ~= "" then name[#name + 1] = GENDER_BARE[group.gender] end else local tense = group.tenses.past and "past" or "ind" name[#name + 1] = VOICE_BARE[group.voice] name[#name + 1] = TENSE_BARE[tense] name[#name + 1] = NUMBER_BARE[group.number] if group.gender and group.gender ~= "" then name[#name + 1] = GENDER_BARE[group.gender] end name[#name + 1] = PERSON_BARE[group.person] end add_category(table.concat(name, " ")) end add_category(verb.pattern_form) add_category(verb.root_display ~= "" and verb.root_display or nil) end end return { pagename = pagename, verbs = verbs, siblings = siblings, skeleton = skeleton, categories = categories, } end -- args = {verbs = {{root=, wazn=, lexeme=}, ...}, pagename =, sections =} function p.render(args) local data = p.analyze(args) local pagename, verbs = data.pagename, data.verbs if #verbs == 0 then return "<span class=\"error\">لم تطابق هذه الصفحة أي صيغة من صيغ الفعل المذكور.</span>" .. category(MAINTENANCE_CATEGORY) end local out = {} out[#out + 1] = "=== صيغة فعل ===" for _, verb in ipairs(verbs) do out[#out + 1] = render_box(verb) for _, sentence in ipairs(verb.sentences) do out[#out + 1] = "# " .. sentence end end if args.sections ~= false then out[#out + 1] = "=== النطق ===" out[#out + 1] = "* {{أصد-عر|" .. pagename .. "}}" local positions = {} for _, verb in ipairs(verbs) do local position = render_position(verb) if position then positions[#positions + 1] = position end end if #positions > 0 then out[#out + 1] = "=== الموضع من التصريف ===" out[#out + 1] = table.concat(positions, "\n") for _, verb in ipairs(verbs) do out[#out + 1] = "{{تصريف|جذر=" .. verb.root .. "|وزن=" .. verb.wazn .. "|بؤرة=" .. pagename .. "}}" end end local examples = render_examples(verbs, pagename) if examples then out[#out + 1] = examples end local siblings = render_siblings(data.siblings, data.skeleton) if siblings then out[#out + 1] = siblings end end local categories = {} for i, name in ipairs(data.categories) do categories[i] = category(name) end return table.concat(out, "\n") .. "\n" .. table.concat(categories, "") end ------------------------------------------------------------------------------- -- Entry point ------------------------------------------------------------------------------- function p.main(frame) local args = frame:getParent() and frame:getParent().args or frame.args local verbs = {} for i = 1, MAX_VERBS do local suffix = i == 1 and "" or tostring(i) local root = args["جذر" .. suffix] local wazn = args["وزن" .. suffix] if root and root ~= "" and wazn and wazn ~= "" then local lexeme = args["معجم" .. suffix] verbs[#verbs + 1] = { root = mw.text.trim(root), wazn = mw.text.trim(wazn), lexeme = lexeme and lexeme ~= "" and mw.text.trim(lexeme) or nil, } end end local pagename = args["صفحة"] if not pagename or pagename == "" then pagename = mw.title.getCurrentTitle().text end return p.render({ verbs = verbs, pagename = pagename, sections = args["أقسام"] ~= "لا", }) end return p 8k4bbsa431zuhqsvdpog7pkv8lpvpla 1097812 1097809 2026-08-01T13:47:15Z ForzaGreen 28665 وحدة جديدة: عرض صفحات صيغ تصريف الأفعال 1097812 Scribunto text/plain -- Module:ar-verb-form -- By: Wael (User:ForzaGreen) -- -- Renders a conjugated-form (non-lemma) page for an Arabic verb, e.g. أَكَلْتُ. -- -- The page passes only the verb's root and morphological pattern. This module -- re-conjugates the verb through Module:ar-verb and works out for itself which -- slots the page title represents, so the wikitext never states the grammar and -- therefore can never state it wrongly. When Module:ar-verb is corrected, every -- form page re-renders; a title that no longer matches any slot lands in -- [[تصنيف:صفحات صيغ أفعال بلا مطابقة]] instead of silently showing stale grammar. -- -- {{صيغة فعل|جذر=أكل|وزن=فعَل يفعُل|معجم=L12100}} -- -- A form belonging to several verbs repeats the triple: |جذر2=|وزن2=|معجم2= -- -- Parameters: -- جذر, وزن required; معجم optional (Wikidata lexeme id) -- جذر2 … up to MAX_VERBS additional verbs -- صفحة override the page title (documentation and tests) -- أقسام=لا render only the box and the definition lines local p = {} local ar_verb = require("Module:ar-verb") local u = mw.ustring.char local MAX_VERBS = 6 ------------------------------------------------------------------------------- -- Labels ------------------------------------------------------------------------------- -- Wording follows the conjugation-table headers in Module:ar-verb (make_table) -- and the pronoun labels of its simplified ar.wiktionary table (make_table_ar). local TENSE = { past = "الماضي", ind = "المضارع المرفوع", sub = "المضارع المنصوب", juss = "المضارع المجزوم", imp = "الأمر", } local VOICE = { act = "المبني للمعلوم", pass = "المبني للمجهول", } local PERSON = {["1"] = "المتكلم", ["2"] = "المخاطب", ["3"] = "الغائب"} local NUMBER = {s = "المفرد", d = "المثنى", p = "الجمع"} local GENDER = {m = "المذكر", f = "المؤنث"} -- The same vocabulary without the article, for category names. ar.wiktionary -- already names these categories this way — تصنيف:فعل مبني للمعلوم ماضي مفرد مذكر متكلم -- has 133 pages — so the composed name lands on the existing category rather -- than forking the taxonomy. local PERSON_BARE = {["1"] = "متكلم", ["2"] = "مخاطب", ["3"] = "غائب"} local NUMBER_BARE = {s = "مفرد", d = "مثنى", p = "جمع"} local GENDER_BARE = {m = "مذكر", f = "مؤنث"} local TENSE_BARE = {past = "ماضي", ind = "مضارع", sub = "مضارع", juss = "مضارع", imp = "أمر"} local VOICE_BARE = {act = "مبني للمعلوم", pass = "مبني للمجهول"} local PRONOUN = { ["1s"] = "أَنَا", ["1p"] = "نَحْنُ", ["2ms"] = "أَنْتَ", ["2fs"] = "أَنْتِ", ["2d"] = "أَنْتُمَا", ["2mp"] = "أَنْتُمْ", ["2fp"] = "أَنْتُنَّ", ["3ms"] = "هُوَ", ["3fs"] = "هِيَ", ["3md"] = "هُمَا", ["3fd"] = "هُمَا", ["3mp"] = "هُمْ", ["3fp"] = "هُنَّ", } -- Slots that carry no conjugated form of their own: the five *_linked duplicates -- and the staging slots Module:ar-verb uses while picking a default. local SKIP_SLOTS = { ap1 = true, ap2 = true, ap3 = true, apcd = true, apan = true, pp2 = true, vn2 = true, } -- Derived nominals. They are lemmas in their own right (اسم فاعل / اسم مفعول / -- مصدر), not conjugated forms, so this module does not claim them. local NOMINAL_SLOTS = {ap = true, pp = true, vn = true} local QUADRILITERAL = { ["فعلل"] = true, ["تفعلل"] = true, ["افعنلل"] = true, ["افعللّ"] = true, } local MAINTENANCE_CATEGORY = "صفحات صيغ أفعال بلا مطابقة" ------------------------------------------------------------------------------- -- Text helpers ------------------------------------------------------------------------------- -- Tatweel and the invisible direction/joining marks. These survive copy-paste -- and round-trips through external tools, and MediaWiki keeps them in page -- titles, so both sides of every comparison are cleaned of them first. local INVISIBLE = "[" .. u(0x0640) .. u(0x061C) .. u(0x200B) .. "-" .. u(0x200F) .. u(0x202A) .. "-" .. u(0x202E) .. u(0xFEFF) .. "]" -- The diacritics that are not typed when searching: the harakat proper, shadda, -- sukun and the dagger alif. Hamza carriers (أ إ آ ؤ ئ) are distinct letters and -- are deliberately left alone. local DIACRITIC = "[" .. u(0x064B) .. "-" .. u(0x0652) .. u(0x0670) .. "]" local function clean(s) if not s or s == "" then return "" end return (mw.ustring.gsub(s, INVISIBLE, "")) end -- The consonant skeleton (الرسم) a reader would type into the search box. local function rasm(s) return (mw.ustring.gsub(clean(s), DIACRITIC, "")) end local function link(target, display) if not target or target == "" then return "" end if display and display ~= target then return "[[" .. target .. "|" .. display .. "]]" end return "[[" .. target .. "]]" end local function category(name) return "[[تصنيف:" .. name .. "]]" end -- A *link to* a category needs the leading colon; without it the page silently -- joins the category instead of pointing at it. local function category_link(name, display) return "[[:تصنيف:" .. name .. "|" .. (display or name) .. "]]" end -- Template calls returned from a module are not expanded — the preprocessor has -- already run by the time Scribunto hands the text back — so they have to go -- through the frame. local function expand(title, args) local frame = mw.getCurrentFrame() if not frame then return "" end local ok, result = pcall(frame.expandTemplate, frame, {title = title, args = args}) return ok and result or "" end -- "أكل" -> "أ ك ل". ar.wiktionary spells root categories and navboxes from the -- letters as written (تصنيف:أ ك ل, 15 pages), not from the normalized radicals -- Module:ar-verb reports, which would give ء ك ل and point at nothing. local function space_root(root) local letters = {} for letter in mw.ustring.gmatch(clean(root), ".") do if letter ~= " " and letter ~= "_" then letters[#letters + 1] = letter end end return table.concat(letters, " ") end ------------------------------------------------------------------------------- -- Slots ------------------------------------------------------------------------------- -- "past_pass_3ms" -> tense "past", voice "pass", person/number "3ms" -- "imp_2fs" -> tense "imp", voice "act", person/number "2fs" local function parse_slot(slot) local tense, rest = mw.ustring.match(slot, "^(%a+)_(.+)$") if not tense or not TENSE[tense] then return nil end local voice = "act" local pn = rest local stripped = mw.ustring.match(rest, "^pass_(.+)$") if stripped then voice = "pass" pn = stripped end local person, gender, number = mw.ustring.match(pn, "^(%d)([mf]?)([sdp])$") if not person then return nil end return { slot = slot, tense = tense, voice = voice, pn = pn, person = person, gender = gender, number = number, } end -- Every slot that can name a conjugated form, in the order Module:ar-verb -- declares them. local function each_form_slot(spec, fn) for _, slot_accel in ipairs(spec.verb_slots) do local slot = slot_accel[1] if not SKIP_SLOTS[slot] and not NOMINAL_SLOTS[slot] and not mw.ustring.find(slot, "_linked$") then local forms = spec.forms[slot] if forms then for _, form in ipairs(forms) do if form.form and form.form ~= "" and form.form ~= "?" then fn(slot, form.form) end end end end end end -- The مضارع moods collapse whenever they produce the same string: يَكْتُبْنَ is -- indicative, subjunctive and jussive at once, so it reads "المضارع" rather than -- three separate lines; يَكْتُبُوا is only منصوب and مجزوم. local function tense_phrase(tenses) if tenses.past then return TENSE.past end if tenses.imp then return TENSE.imp end if tenses.ind and tenses.sub and tenses.juss then return "المضارع" end local parts = {} for _, t in ipairs({"ind", "sub", "juss"}) do if tenses[t] then parts[#parts + 1] = TENSE[t] end end if #parts == 0 then return nil end if #parts == 1 then return parts[1] end -- "المضارع المنصوب والمجزوم" — say المضارع once, then the moods. local moods = {} for i, phrase in ipairs(parts) do moods[i] = (mw.ustring.gsub(phrase, "^المضارع ", "")) end return "المضارع " .. table.concat(moods, " و") end -- Group the matched slots into one statement per (voice, person/number). local function group_matches(matches) local order, groups = {}, {} for _, m in ipairs(matches) do local key = m.voice .. "|" .. m.pn if not groups[key] then groups[key] = {voice = m.voice, pn = m.pn, person = m.person, gender = m.gender, number = m.number, tenses = {}} order[#order + 1] = key end groups[key].tenses[m.tense] = true end local out = {} for _, key in ipairs(order) do out[#out + 1] = groups[key] end return out end local function describe(group, lemma) local phrase = tense_phrase(group.tenses) if not phrase then return nil end local parts = {phrase} -- The imperative is active by definition; saying so adds nothing. if not group.tenses.imp then parts[#parts + 1] = VOICE[group.voice] end -- ل + المتكلم contracts to للمتكلم, so the first word carries the merged -- article and the rest keep theirs: "للغائب الجمع المذكر". local who = {"لل" .. PERSON_BARE[group.person], NUMBER[group.number]} if group.gender and group.gender ~= "" then who[#who + 1] = GENDER[group.gender] end local pronoun = PRONOUN[group.pn] local subject = table.concat(who, " ") if pronoun then subject = subject .. " (" .. pronoun .. ")" end return table.concat(parts, " ") .. "، " .. subject .. "، من الفعل " .. link(lemma) .. "." end ------------------------------------------------------------------------------- -- The pattern this form realises (وزن الصيغة) ------------------------------------------------------------------------------- -- Conjugating ف-ع-ل (ف-ع-ل-ل for quadriliterals) through the same وزن and the -- same slot names the shape of the form: past_1s of فعَل يفعُل is فَعَلْتُ. That is the -- category ar.wiktionary already files these pages under, and it is a browse -- axis nothing else offers — every verb's first-person past in one place. local pattern_cache = {} local function pattern_forms(wazn) if pattern_cache[wazn] == nil then local model = QUADRILITERAL[wazn] and "فعلل" or "فعل" local ok, spec = pcall(ar_verb.do_generate_forms, {["جذر"] = model, ["وزن"] = wazn}, "ar-conj") pattern_cache[wazn] = ok and spec.forms or false end return pattern_cache[wazn] or nil end local function pattern_of(wazn, slot) local forms = pattern_forms(wazn) if not forms then return nil end local entry = forms[slot] if not entry or not entry[1] or entry[1].form == "?" then return nil end return entry[1].form end ------------------------------------------------------------------------------- -- Blocks ------------------------------------------------------------------------------- -- One box per verb: the pointer to the lemma, which is the whole point of the -- page, above the morphological coordinates. local function render_box(verb) local box = mw.html.create("table"):addClass("ar-verb-form-box") local head = box:tag("tr"):tag("td"):attr("colspan", 2):addClass("avf-head") head:tag("div"):addClass("avf-kicker"):wikitext("صيغة من الفعل") head:tag("div"):addClass("avf-lemma"):wikitext(link(verb.lemma)) head:tag("div"):addClass("avf-note") :wikitext("المعاني والشواهد والمراجع على صفحة الفعل") local function row(label, value) if not value or value == "" then return end local tr = box:tag("tr") tr:tag("th"):wikitext(label) tr:tag("td"):wikitext(value) end row("الجذر", verb.root_display ~= "" and category_link(verb.root_display) or nil) row("الوزن", verb.wazn .. (verb.verb_type ~= "" and " — " .. verb.verb_type or "")) row("وزن الصيغة", verb.pattern_form and category_link(verb.pattern_form) or nil) -- Same link shape Module:ar-verb-infobox uses on the lemma page. row("ويكي بيانات", verb.lexeme and "[https://www.wikidata.org/wiki/Lexeme:" .. verb.lexeme .. "?uselang=ar " .. verb.lexeme .. "]" or nil) return tostring(box) end -- Where the form sits: the same pronoun across الماضي / المضارع / الأمر, which is -- the question a reader landing here actually has. The full table follows, -- collapsed, with this cell highlighted. local function render_position(verb) local group = verb.groups[1] if not group then return nil end local voice_prefix = group.voice == "pass" and "_pass" or "" -- If the page is itself a منصوب/مجزوم form, show that mood in the مضارع column -- rather than the indicative, so the form the reader is looking at is the one -- highlighted. Otherwise the indicative is the reference form. local mood = (group.tenses.ind and "ind") or (group.tenses.sub and "sub") or (group.tenses.juss and "juss") local columns = { {TENSE.past, "past" .. voice_prefix .. "_" .. group.pn}, {mood and tense_phrase(group.tenses) or "المضارع", (mood or "ind") .. voice_prefix .. "_" .. group.pn}, } if group.voice == "act" then columns[#columns + 1] = {TENSE.imp, "imp_" .. group.pn} end local t = mw.html.create("table"):addClass("ar-verb-form-position") local header = t:tag("tr") header:tag("th"):wikitext(PRONOUN[group.pn] or "") for _, column in ipairs(columns) do header:tag("th"):wikitext(column[1]) end local body = t:tag("tr") body:tag("th"):wikitext(verb.lemma) for _, column in ipairs(columns) do local entry = verb.spec.forms[column[2]] local value = entry and entry[1] and entry[1].form or nil local cell = body:tag("td") if not value or value == "?" then cell:wikitext("—") elseif clean(value) == verb.pagename then cell:addClass("avf-focus"):wikitext("'''" .. value .. "'''") else cell:wikitext(link(value)) end end return tostring(t) end -- Vocalizations of this same verb that share the page's consonant skeleton. -- A reader searching أكلت lands on one of them and needs the others; this is -- also why ar.wiktionary does not need a disambiguation page per skeleton. local function collect_siblings(verbs, pagename) local skeleton = rasm(pagename) local seen, list = {[pagename] = true}, {} for _, verb in ipairs(verbs) do each_form_slot(verb.spec, function(_, form) local cleaned = clean(form) if not seen[cleaned] and rasm(cleaned) == skeleton then seen[cleaned] = true list[#list + 1] = cleaned end end) end table.sort(list) return list, skeleton end local function render_siblings(siblings, skeleton) if #siblings == 0 then return nil end local links = {} for i, form in ipairs(siblings) do links[i] = link(form) end return "=== صيغ تشارك الرسم «" .. skeleton .. "» ===\n" .. table.concat(links, " · ") end -- Usage examples already published on the lemma's Wikidata senses whose text -- contains this exact vocalized form. Wikidata's P5830 «الشكل المستخدم» qualifier -- would say so directly, but no Arabic verb sense uses it, so the fully -- vocalized string is the match — which is unambiguous precisely because the -- page title carries every diacritic. Renders nothing when nothing matches. local function render_examples(verbs, pagename) local out = {} for _, verb in ipairs(verbs) do if verb.lexeme then local ok, result = pcall(function() return require("Module:معجمية ويكي بيانات").form_examples_for( verb.lexeme, pagename) end) if ok and result and result ~= "" then out[#out + 1] = result end end end if #out == 0 then return nil end return "=== شواهد على هذه الصيغة ===\n" .. table.concat(out, "\n") end ------------------------------------------------------------------------------- -- Core ------------------------------------------------------------------------------- -- Work out what the page title is, without producing any wikitext. Kept apart -- from p.render so the offline tests can assert on the grammar the module -- derived rather than on the markup it happened to wrap it in. -- -- args = {verbs = {{root=, wazn=, lexeme=}, ...}, pagename =} -- returns {pagename=, verbs={...}, siblings={...}, skeleton=, categories={...}} function p.analyze(args) local pagename = clean(args.pagename) local verbs = {} for _, entry in ipairs(args.verbs or {}) do local lexeme = entry.lexeme if lexeme == "" then lexeme = nil end local ok, spec = pcall(ar_verb.do_generate_forms, {["جذر"] = entry.root, ["وزن"] = entry.wazn}, "ar-conj") if ok and spec and spec.forms then local matches = {} each_form_slot(spec, function(slot, form) if clean(form) == pagename then local parsed = parse_slot(slot) if parsed then matches[#matches + 1] = parsed end end end) if #matches > 0 then local lemma_entry = spec.forms.past_3ms local _, verb_type = ar_verb.verb_info(spec) local groups = group_matches(matches) local sentences = {} local lemma = lemma_entry and lemma_entry[1] and lemma_entry[1].form or entry.root for i, group in ipairs(groups) do sentences[i] = describe(group, lemma) end verbs[#verbs + 1] = { root = entry.root, wazn = entry.wazn, lexeme = lexeme, lemma = lemma, root_display = space_root(entry.root), verb_type = verb_type or "", pattern_form = pattern_of(entry.wazn, matches[1].slot), spec = spec, pagename = pagename, slots = matches, groups = groups, sentences = sentences, } end end end local siblings, skeleton = collect_siblings(verbs, pagename) -- Categories: the parent, then per statement the grammatical category in the -- order ar.wiktionary already names them (فعل + بناء + زمن + عدد + جنس + شخص), -- the pattern this form realises, and the root. local categories, seen_category = {}, {} local function add_category(name) if name and name ~= "" and not seen_category[name] then seen_category[name] = true categories[#categories + 1] = name end end if #verbs == 0 then add_category(MAINTENANCE_CATEGORY) else add_category("صيغ أفعال عربية") for _, verb in ipairs(verbs) do for _, group in ipairs(verb.groups) do local name = {"فعل"} if group.tenses.imp then -- The imperative categories carry neither voice nor person: -- تصنيف:فعل أمر مفرد مذكر, as {{أ-م-ذ}} files them today. name[#name + 1] = TENSE_BARE.imp name[#name + 1] = NUMBER_BARE[group.number] if group.gender and group.gender ~= "" then name[#name + 1] = GENDER_BARE[group.gender] end else local tense = group.tenses.past and "past" or "ind" name[#name + 1] = VOICE_BARE[group.voice] name[#name + 1] = TENSE_BARE[tense] name[#name + 1] = NUMBER_BARE[group.number] if group.gender and group.gender ~= "" then name[#name + 1] = GENDER_BARE[group.gender] end name[#name + 1] = PERSON_BARE[group.person] end add_category(table.concat(name, " ")) end add_category(verb.pattern_form) add_category(verb.root_display ~= "" and verb.root_display or nil) end end return { pagename = pagename, verbs = verbs, siblings = siblings, skeleton = skeleton, categories = categories, } end -- args = {verbs = {{root=, wazn=, lexeme=}, ...}, pagename =, sections =} function p.render(args) local data = p.analyze(args) local pagename, verbs = data.pagename, data.verbs if #verbs == 0 then return "<span class=\"error\">لم تطابق هذه الصفحة أي صيغة من صيغ الفعل المذكور.</span>" .. category(MAINTENANCE_CATEGORY) end local out = {} out[#out + 1] = "=== صيغة فعل ===" for _, verb in ipairs(verbs) do out[#out + 1] = render_box(verb) for _, sentence in ipairs(verb.sentences) do out[#out + 1] = "# " .. sentence end end if args.sections ~= false then local ipa = expand("أصد-عر", {pagename}) if ipa ~= "" then out[#out + 1] = "=== النطق ===" out[#out + 1] = "* " .. ipa end local positions = {} for _, verb in ipairs(verbs) do local position = render_position(verb) if position then positions[#positions + 1] = position end end if #positions > 0 then out[#out + 1] = "=== الموضع من التصريف ===" out[#out + 1] = table.concat(positions, "\n") for _, verb in ipairs(verbs) do out[#out + 1] = expand("تصريف", { ["جذر"] = verb.root, ["وزن"] = verb.wazn, ["بؤرة"] = pagename, }) end end local examples = render_examples(verbs, pagename) if examples then out[#out + 1] = examples end local siblings = render_siblings(data.siblings, data.skeleton) if siblings then out[#out + 1] = siblings end end local categories = {} for i, name in ipairs(data.categories) do categories[i] = category(name) end return table.concat(out, "\n") .. "\n" .. table.concat(categories, "") end ------------------------------------------------------------------------------- -- Entry point ------------------------------------------------------------------------------- function p.main(frame) local args = frame:getParent() and frame:getParent().args or frame.args local verbs = {} for i = 1, MAX_VERBS do local suffix = i == 1 and "" or tostring(i) local root = args["جذر" .. suffix] local wazn = args["وزن" .. suffix] if root and root ~= "" and wazn and wazn ~= "" then local lexeme = args["معجم" .. suffix] verbs[#verbs + 1] = { root = mw.text.trim(root), wazn = mw.text.trim(wazn), lexeme = lexeme and lexeme ~= "" and mw.text.trim(lexeme) or nil, } end end local pagename = args["صفحة"] if not pagename or pagename == "" then pagename = mw.title.getCurrentTitle().text end return p.render({ verbs = verbs, pagename = pagename, sections = args["أقسام"] ~= "لا", }) end return p tdofqnsmzfebr75fo6r6hu5rdxwftpl 1097849 1097812 2026-08-01T18:57:32Z ForzaGreen 28665 وحدة جديدة: عرض صفحات صيغ تصريف الأفعال 1097849 Scribunto text/plain -- Module:ar-verb-form -- By: Wael (User:ForzaGreen) -- -- Renders a conjugated-form (non-lemma) page for an Arabic verb, e.g. أَكَلْتُ. -- -- The page passes only the verb's root and morphological pattern. This module -- re-conjugates the verb through Module:ar-verb and works out for itself which -- slots the page title represents, so the wikitext never states the grammar and -- therefore can never state it wrongly. When Module:ar-verb is corrected, every -- form page re-renders; a title that no longer matches any slot lands in -- [[تصنيف:صفحات صيغ أفعال بلا مطابقة]] instead of silently showing stale grammar. -- -- {{صيغة فعل|جذر=أكل|وزن=فعَل يفعُل|معجم=L12100}} -- -- A form belonging to several verbs repeats the triple: |جذر2=|وزن2=|معجم2= -- -- Parameters: -- جذر, وزن required; معجم optional (Wikidata lexeme id) -- جذر2 … up to MAX_VERBS additional verbs -- صفحة override the page title (documentation and tests) -- أقسام=لا render only the box and the definition lines local p = {} local ar_verb = require("Module:ar-verb") local u = mw.ustring.char local MAX_VERBS = 6 ------------------------------------------------------------------------------- -- Labels ------------------------------------------------------------------------------- -- Wording follows the conjugation-table headers in Module:ar-verb (make_table) -- and the pronoun labels of its simplified ar.wiktionary table (make_table_ar). local TENSE = { past = "الماضي", ind = "المضارع المرفوع", sub = "المضارع المنصوب", juss = "المضارع المجزوم", imp = "الأمر", } local VOICE = { act = "المبني للمعلوم", pass = "المبني للمجهول", } local PERSON = {["1"] = "المتكلم", ["2"] = "المخاطب", ["3"] = "الغائب"} local NUMBER = {s = "المفرد", d = "المثنى", p = "الجمع"} local GENDER = {m = "المذكر", f = "المؤنث"} -- The same vocabulary without the article, for category names. ar.wiktionary -- already names these categories this way — تصنيف:فعل مبني للمعلوم ماضي مفرد مذكر متكلم -- has 133 pages — so the composed name lands on the existing category rather -- than forking the taxonomy. local PERSON_BARE = {["1"] = "متكلم", ["2"] = "مخاطب", ["3"] = "غائب"} local NUMBER_BARE = {s = "مفرد", d = "مثنى", p = "جمع"} local GENDER_BARE = {m = "مذكر", f = "مؤنث"} local TENSE_BARE = {past = "ماضي", ind = "مضارع", sub = "مضارع", juss = "مضارع", imp = "أمر"} local VOICE_BARE = {act = "مبني للمعلوم", pass = "مبني للمجهول"} local PRONOUN = { ["1s"] = "أَنَا", ["1p"] = "نَحْنُ", ["2ms"] = "أَنْتَ", ["2fs"] = "أَنْتِ", ["2d"] = "أَنْتُمَا", ["2mp"] = "أَنْتُمْ", ["2fp"] = "أَنْتُنَّ", ["3ms"] = "هُوَ", ["3fs"] = "هِيَ", ["3md"] = "هُمَا", ["3fd"] = "هُمَا", ["3mp"] = "هُمْ", ["3fp"] = "هُنَّ", } -- Slots that carry no conjugated form of their own: the five *_linked duplicates -- and the staging slots Module:ar-verb uses while picking a default. local SKIP_SLOTS = { ap1 = true, ap2 = true, ap3 = true, apcd = true, apan = true, pp2 = true, vn2 = true, } -- Derived nominals. They are lemmas in their own right (اسم فاعل / اسم مفعول / -- مصدر), not conjugated forms, so this module does not claim them. local NOMINAL_SLOTS = {ap = true, pp = true, vn = true} local QUADRILITERAL = { ["فعلل"] = true, ["تفعلل"] = true, ["افعنلل"] = true, ["افعللّ"] = true, } local MAINTENANCE_CATEGORY = "صفحات صيغ أفعال بلا مطابقة" ------------------------------------------------------------------------------- -- Text helpers ------------------------------------------------------------------------------- -- Tatweel and the invisible direction/joining marks. These survive copy-paste -- and round-trips through external tools, and MediaWiki keeps them in page -- titles, so both sides of every comparison are cleaned of them first. local INVISIBLE = "[" .. u(0x0640) .. u(0x061C) .. u(0x200B) .. "-" .. u(0x200F) .. u(0x202A) .. "-" .. u(0x202E) .. u(0xFEFF) .. "]" -- The diacritics that are not typed when searching: the harakat proper, shadda, -- sukun and the dagger alif. Hamza carriers (أ إ آ ؤ ئ) are distinct letters and -- are deliberately left alone. local DIACRITIC = "[" .. u(0x064B) .. "-" .. u(0x0652) .. u(0x0670) .. "]" local function clean(s) if not s or s == "" then return "" end return (mw.ustring.gsub(s, INVISIBLE, "")) end -- The consonant skeleton (الرسم) a reader would type into the search box. local function rasm(s) return (mw.ustring.gsub(clean(s), DIACRITIC, "")) end local function link(target, display) if not target or target == "" then return "" end if display and display ~= target then return "[[" .. target .. "|" .. display .. "]]" end return "[[" .. target .. "]]" end local function category(name) return "[[تصنيف:" .. name .. "]]" end -- A *link to* a category needs the leading colon; without it the page silently -- joins the category instead of pointing at it. local function category_link(name, display) return "[[:تصنيف:" .. name .. "|" .. (display or name) .. "]]" end -- Template calls returned from a module are not expanded — the preprocessor has -- already run by the time Scribunto hands the text back — so they have to go -- through the frame. local function expand(title, args) local frame = mw.getCurrentFrame() if not frame then return "" end local ok, result = pcall(frame.expandTemplate, frame, {title = title, args = args}) return ok and result or "" end -- "أكل" -> "أ ك ل". ar.wiktionary spells root categories and navboxes from the -- letters as written (تصنيف:أ ك ل, 15 pages), not from the normalized radicals -- Module:ar-verb reports, which would give ء ك ل and point at nothing. local function space_root(root) local letters = {} for letter in mw.ustring.gmatch(clean(root), ".") do if letter ~= " " and letter ~= "_" then letters[#letters + 1] = letter end end return table.concat(letters, " ") end ------------------------------------------------------------------------------- -- Slots ------------------------------------------------------------------------------- -- "past_pass_3ms" -> tense "past", voice "pass", person/number "3ms" -- "imp_2fs" -> tense "imp", voice "act", person/number "2fs" local function parse_slot(slot) local tense, rest = mw.ustring.match(slot, "^(%a+)_(.+)$") if not tense or not TENSE[tense] then return nil end local voice = "act" local pn = rest local stripped = mw.ustring.match(rest, "^pass_(.+)$") if stripped then voice = "pass" pn = stripped end local person, gender, number = mw.ustring.match(pn, "^(%d)([mf]?)([sdp])$") if not person then return nil end return { slot = slot, tense = tense, voice = voice, pn = pn, person = person, gender = gender, number = number, } end -- Every slot that can name a conjugated form, in the order Module:ar-verb -- declares them. local function each_form_slot(spec, fn) for _, slot_accel in ipairs(spec.verb_slots) do local slot = slot_accel[1] if not SKIP_SLOTS[slot] and not NOMINAL_SLOTS[slot] and not mw.ustring.find(slot, "_linked$") then local forms = spec.forms[slot] if forms then for _, form in ipairs(forms) do if form.form and form.form ~= "" and form.form ~= "?" then fn(slot, form.form) end end end end end end -- The مضارع moods collapse whenever they produce the same string: يَكْتُبْنَ is -- indicative, subjunctive and jussive at once, so it reads "المضارع" rather than -- three separate lines; يَكْتُبُوا is only منصوب and مجزوم. local function tense_phrase(tenses) if tenses.past then return TENSE.past end if tenses.imp then return TENSE.imp end if tenses.ind and tenses.sub and tenses.juss then return "المضارع" end local parts = {} for _, t in ipairs({"ind", "sub", "juss"}) do if tenses[t] then parts[#parts + 1] = TENSE[t] end end if #parts == 0 then return nil end if #parts == 1 then return parts[1] end -- "المضارع المنصوب والمجزوم" — say المضارع once, then the moods. local moods = {} for i, phrase in ipairs(parts) do moods[i] = (mw.ustring.gsub(phrase, "^المضارع ", "")) end return "المضارع " .. table.concat(moods, " و") end -- Group the matched slots into one statement per (voice, person/number). local function group_matches(matches) local order, groups = {}, {} for _, m in ipairs(matches) do local key = m.voice .. "|" .. m.pn if not groups[key] then groups[key] = {voice = m.voice, pn = m.pn, person = m.person, gender = m.gender, number = m.number, tenses = {}} order[#order + 1] = key end groups[key].tenses[m.tense] = true end local out = {} for _, key in ipairs(order) do out[#out + 1] = groups[key] end return out end local function describe(group, lemma) local phrase = tense_phrase(group.tenses) if not phrase then return nil end local parts = {phrase} -- The imperative is active by definition; saying so adds nothing. if not group.tenses.imp then parts[#parts + 1] = VOICE[group.voice] end -- ل + المتكلم contracts to للمتكلم, so the first word carries the merged -- article and the rest keep theirs: "للغائب الجمع المذكر". local who = {"لل" .. PERSON_BARE[group.person], NUMBER[group.number]} if group.gender and group.gender ~= "" then who[#who + 1] = GENDER[group.gender] end local pronoun = PRONOUN[group.pn] local subject = table.concat(who, " ") if pronoun then subject = subject .. " (" .. pronoun .. ")" end return table.concat(parts, " ") .. "، " .. subject .. "، من الفعل " .. link(lemma) .. "." end ------------------------------------------------------------------------------- -- The pattern this form realises (وزن الصيغة) ------------------------------------------------------------------------------- -- Conjugating ف-ع-ل (ف-ع-ل-ل for quadriliterals) through the same وزن and the -- same slot names the shape of the form: past_1s of فعَل يفعُل is فَعَلْتُ. That is the -- category ar.wiktionary already files these pages under, and it is a browse -- axis nothing else offers — every verb's first-person past in one place. local pattern_cache = {} local function pattern_forms(wazn) if pattern_cache[wazn] == nil then local model = QUADRILITERAL[wazn] and "فعلل" or "فعل" local ok, spec = pcall(ar_verb.do_generate_forms, {["جذر"] = model, ["وزن"] = wazn}, "ar-conj") pattern_cache[wazn] = ok and spec.forms or false end return pattern_cache[wazn] or nil end local function pattern_of(wazn, slot) local forms = pattern_forms(wazn) if not forms then return nil end local entry = forms[slot] if not entry or not entry[1] or entry[1].form == "?" then return nil end return entry[1].form end ------------------------------------------------------------------------------- -- Blocks ------------------------------------------------------------------------------- -- The box: the form itself at the top, then the lemma it belongs to — the whole -- point of the page — then the morphological coordinates. Laid out and floated -- like {{صندوق معلومات فعل}} on the lemma page, so the two read as one family. local function render_box(verb) local box = mw.html.create("table"):addClass("ar-verb-form-box") local head = box:tag("tr"):tag("th"):attr("colspan", 2):addClass("avf-head") head:tag("div"):addClass("avf-form"):wikitext(verb.pagename) head:tag("div"):addClass("avf-kicker") :wikitext("صيغة من الفعل " .. link(verb.lemma)) head:tag("div"):addClass("avf-note") :wikitext("المعاني والشواهد والمراجع على صفحة الفعل") local function row(label, value) if not value or value == "" then return end local tr = box:tag("tr") tr:tag("th"):wikitext(label) tr:tag("td"):wikitext(value) end -- A form can belong to the same verb under more than one root analysis -- (آتَتْ is أ ت و and أ ت ي alike). Only the root differs, so only the root -- row repeats; everything else would be identical. local roots = {} for i, root_display in ipairs(verb.root_displays) do roots[i] = category_link(root_display) end row(#roots > 1 and "الجذور" or "الجذر", table.concat(roots, "، ")) row("الوزن", verb.wazn .. (verb.verb_type ~= "" and " — " .. verb.verb_type or "")) row("وزن الصيغة", verb.pattern_form and category_link(verb.pattern_form) or nil) -- Same link shape Module:ar-verb-infobox uses on the lemma page. row("ويكي بيانات", verb.lexeme and "[https://www.wikidata.org/wiki/Lexeme:" .. verb.lexeme .. "?uselang=ar " .. verb.lexeme .. "]" or nil) return tostring(box) end -- Where the form sits: the same pronoun across الماضي / المضارع / الأمر, which is -- the question a reader landing here actually has. The full table follows, -- collapsed, with this cell highlighted. local function render_position(verb) local group = verb.groups[1] if not group then return nil end local voice_prefix = group.voice == "pass" and "_pass" or "" -- If the page is itself a منصوب/مجزوم form, show that mood in the مضارع column -- rather than the indicative, so the form the reader is looking at is the one -- highlighted. Otherwise the indicative is the reference form. local mood = (group.tenses.ind and "ind") or (group.tenses.sub and "sub") or (group.tenses.juss and "juss") local columns = { {TENSE.past, "past" .. voice_prefix .. "_" .. group.pn}, {mood and tense_phrase(group.tenses) or "المضارع", (mood or "ind") .. voice_prefix .. "_" .. group.pn}, } if group.voice == "act" then columns[#columns + 1] = {TENSE.imp, "imp_" .. group.pn} end -- Corner cell empty, the row labelled by the pronoun — the same geometry the -- conjugation table below uses, so the two line up for the reader. local t = mw.html.create("table"):addClass("ar-verb-form-position") local header = t:tag("tr") header:tag("th"):addClass("avf-corner"):wikitext("") for _, column in ipairs(columns) do header:tag("th"):wikitext(column[1]) end local body = t:tag("tr") body:tag("th"):wikitext(PRONOUN[group.pn] or "") for _, column in ipairs(columns) do local entry = verb.spec.forms[column[2]] local value = entry and entry[1] and entry[1].form or nil local cell = body:tag("td") if not value or value == "?" then cell:wikitext("—") elseif clean(value) == verb.pagename then cell:addClass("avf-focus"):wikitext("'''" .. value .. "'''") else cell:wikitext(link(value)) end end return tostring(t) end -- Vocalizations of this same verb that share the page's consonant skeleton. -- A reader searching أكلت lands on one of them and needs the others; this is -- also why ar.wiktionary does not need a disambiguation page per skeleton. local function collect_siblings(verbs, pagename) local skeleton = rasm(pagename) local seen, list = {[pagename] = true}, {} for _, verb in ipairs(verbs) do each_form_slot(verb.spec, function(_, form) local cleaned = clean(form) if not seen[cleaned] and rasm(cleaned) == skeleton then seen[cleaned] = true list[#list + 1] = cleaned end end) end table.sort(list) return list, skeleton end local function render_siblings(siblings, skeleton) if #siblings == 0 then return nil end local links = {} for i, form in ipairs(siblings) do links[i] = link(form) end return "=== صيغ تشارك الرسم «" .. skeleton .. "» ===\n" .. table.concat(links, " · ") end -- Usage examples already published on the lemma's Wikidata senses whose text -- contains this exact vocalized form. Wikidata's P5830 «الشكل المستخدم» qualifier -- would say so directly, but no Arabic verb sense uses it, so the fully -- vocalized string is the match — which is unambiguous precisely because the -- page title carries every diacritic. Renders nothing when nothing matches. local function render_examples(verbs, pagename) local out = {} for _, verb in ipairs(verbs) do if verb.lexeme then local ok, result = pcall(function() return require("Module:معجمية ويكي بيانات").form_examples_for( verb.lexeme, pagename) end) if ok and result and result ~= "" then out[#out + 1] = result end end end if #out == 0 then return nil end return "=== شواهد على هذه الصيغة ===\n" .. table.concat(out, "\n") end -- The dataset sometimes analyses one verb under two roots — آتَى is both أ ت و and -- أ ت ي on وزن أفعل, and both produce آتَتْ. Left alone that renders two identical -- boxes and two identical statements. Fold them into one entry whose only -- plural field is the root; everything else was the same in both. local function merge_equivalent(verbs) local order, seen = {}, {} for _, verb in ipairs(verbs) do local key = table.concat({verb.lemma, verb.wazn, tostring(verb.lexeme), table.concat(verb.sentences, "\1")}, "\2") local first = seen[key] if first then for _, root in ipairs(verb.roots) do first.roots[#first.roots + 1] = root end for _, display in ipairs(verb.root_displays) do first.root_displays[#first.root_displays + 1] = display end else seen[key] = verb order[#order + 1] = verb end end return order end ------------------------------------------------------------------------------- -- Core ------------------------------------------------------------------------------- -- Work out what the page title is, without producing any wikitext. Kept apart -- from p.render so the offline tests can assert on the grammar the module -- derived rather than on the markup it happened to wrap it in. -- -- args = {verbs = {{root=, wazn=, lexeme=}, ...}, pagename =} -- returns {pagename=, verbs={...}, siblings={...}, skeleton=, categories={...}} function p.analyze(args) local pagename = clean(args.pagename) local verbs = {} for _, entry in ipairs(args.verbs or {}) do local lexeme = entry.lexeme if lexeme == "" then lexeme = nil end local ok, spec = pcall(ar_verb.do_generate_forms, {["جذر"] = entry.root, ["وزن"] = entry.wazn}, "ar-conj") if ok and spec and spec.forms then local matches = {} each_form_slot(spec, function(slot, form) if clean(form) == pagename then local parsed = parse_slot(slot) if parsed then matches[#matches + 1] = parsed end end end) if #matches > 0 then local lemma_entry = spec.forms.past_3ms local _, verb_type = ar_verb.verb_info(spec) local groups = group_matches(matches) local sentences = {} local lemma = lemma_entry and lemma_entry[1] and lemma_entry[1].form or entry.root for i, group in ipairs(groups) do sentences[i] = describe(group, lemma) end verbs[#verbs + 1] = { root = entry.root, roots = {entry.root}, wazn = entry.wazn, lexeme = lexeme, lemma = lemma, root_display = space_root(entry.root), root_displays = {space_root(entry.root)}, verb_type = verb_type or "", pattern_form = pattern_of(entry.wazn, matches[1].slot), spec = spec, pagename = pagename, slots = matches, groups = groups, sentences = sentences, } end end end verbs = merge_equivalent(verbs) local siblings, skeleton = collect_siblings(verbs, pagename) -- Categories: the parent, then per statement the grammatical category in the -- order ar.wiktionary already names them (فعل + بناء + زمن + عدد + جنس + شخص), -- the pattern this form realises, and the root. local categories, seen_category = {}, {} local function add_category(name) if name and name ~= "" and not seen_category[name] then seen_category[name] = true categories[#categories + 1] = name end end if #verbs == 0 then add_category(MAINTENANCE_CATEGORY) else add_category("صيغ أفعال عربية") for _, verb in ipairs(verbs) do for _, group in ipairs(verb.groups) do local name = {"فعل"} if group.tenses.imp then -- The imperative categories carry neither voice nor person: -- تصنيف:فعل أمر مفرد مذكر, as {{أ-م-ذ}} files them today. name[#name + 1] = TENSE_BARE.imp name[#name + 1] = NUMBER_BARE[group.number] if group.gender and group.gender ~= "" then name[#name + 1] = GENDER_BARE[group.gender] end else local tense = group.tenses.past and "past" or "ind" name[#name + 1] = VOICE_BARE[group.voice] name[#name + 1] = TENSE_BARE[tense] name[#name + 1] = NUMBER_BARE[group.number] if group.gender and group.gender ~= "" then name[#name + 1] = GENDER_BARE[group.gender] end name[#name + 1] = PERSON_BARE[group.person] end add_category(table.concat(name, " ")) end add_category(verb.pattern_form) for _, root_display in ipairs(verb.root_displays) do add_category(root_display ~= "" and root_display or nil) end end end return { pagename = pagename, verbs = verbs, siblings = siblings, skeleton = skeleton, categories = categories, } end -- args = {verbs = {{root=, wazn=, lexeme=}, ...}, pagename =, sections =} function p.render(args) local data = p.analyze(args) local pagename, verbs = data.pagename, data.verbs if #verbs == 0 then return "<span class=\"error\">لم تطابق هذه الصفحة أي صيغة من صيغ الفعل المذكور.</span>" .. category(MAINTENANCE_CATEGORY) end local out = {} out[#out + 1] = "=== صيغة فعل ===" for _, verb in ipairs(verbs) do out[#out + 1] = render_box(verb) for _, sentence in ipairs(verb.sentences) do out[#out + 1] = "# " .. sentence end end if args.sections ~= false then local ipa = expand("أصد-عر", {pagename}) if ipa ~= "" then out[#out + 1] = "=== النطق ===" out[#out + 1] = "* " .. ipa end local positions = {} for _, verb in ipairs(verbs) do local position = render_position(verb) if position then positions[#positions + 1] = position end end if #positions > 0 then out[#out + 1] = "=== الموضع من التصريف ===" out[#out + 1] = table.concat(positions, "\n") for _, verb in ipairs(verbs) do out[#out + 1] = expand("تصريف", { ["جذر"] = verb.root, ["وزن"] = verb.wazn, ["بؤرة"] = pagename, }) end end local examples = render_examples(verbs, pagename) if examples then out[#out + 1] = examples end local siblings = render_siblings(data.siblings, data.skeleton) if siblings then out[#out + 1] = siblings end end local categories = {} for i, name in ipairs(data.categories) do categories[i] = category(name) end return table.concat(out, "\n") .. "\n" .. table.concat(categories, "") end ------------------------------------------------------------------------------- -- Entry point ------------------------------------------------------------------------------- function p.main(frame) local args = frame:getParent() and frame:getParent().args or frame.args local verbs = {} for i = 1, MAX_VERBS do local suffix = i == 1 and "" or tostring(i) local root = args["جذر" .. suffix] local wazn = args["وزن" .. suffix] if root and root ~= "" and wazn and wazn ~= "" then local lexeme = args["معجم" .. suffix] verbs[#verbs + 1] = { root = mw.text.trim(root), wazn = mw.text.trim(wazn), lexeme = lexeme and lexeme ~= "" and mw.text.trim(lexeme) or nil, } end end local pagename = args["صفحة"] if not pagename or pagename == "" then pagename = mw.title.getCurrentTitle().text end return p.render({ verbs = verbs, pagename = pagename, sections = args["أقسام"] ~= "لا", }) end return p gbm6reh0xo01obyupy6a55wtobzdn88 1097867 1097849 2026-08-02T05:43:03Z ForzaGreen 28665 صفحات صيغ الأفعال: الاكتفاء بجدول التصريف الكامل مبسوطًا بدل الجدول المصغّر، وتساوي حجم الصيغة والفعل في البطاقة، وإسقاط معرّف ويكي بيانات 1097867 Scribunto text/plain -- Module:ar-verb-form -- By: Wael (User:ForzaGreen) -- -- Renders a conjugated-form (non-lemma) page for an Arabic verb, e.g. أَكَلْتُ. -- -- The page passes only the verb's root and morphological pattern. This module -- re-conjugates the verb through Module:ar-verb and works out for itself which -- slots the page title represents, so the wikitext never states the grammar and -- therefore can never state it wrongly. When Module:ar-verb is corrected, every -- form page re-renders; a title that no longer matches any slot lands in -- [[تصنيف:صفحات صيغ أفعال بلا مطابقة]] instead of silently showing stale grammar. -- -- {{صيغة فعل|جذر=أكل|وزن=فعَل يفعُل}} -- -- A form belonging to several verbs repeats the pair: |جذر2=|وزن2= -- -- Parameters: -- جذر, وزن required -- جذر2 … up to MAX_VERBS additional verbs -- صفحة override the page title (documentation and tests) -- أقسام=لا render only the box and the definition lines local p = {} local ar_verb = require("Module:ar-verb") local u = mw.ustring.char local MAX_VERBS = 6 ------------------------------------------------------------------------------- -- Labels ------------------------------------------------------------------------------- -- Wording follows the conjugation-table headers in Module:ar-verb (make_table) -- and the pronoun labels of its simplified ar.wiktionary table (make_table_ar). local TENSE = { past = "الماضي", ind = "المضارع المرفوع", sub = "المضارع المنصوب", juss = "المضارع المجزوم", imp = "الأمر", } local VOICE = { act = "المبني للمعلوم", pass = "المبني للمجهول", } local PERSON = {["1"] = "المتكلم", ["2"] = "المخاطب", ["3"] = "الغائب"} local NUMBER = {s = "المفرد", d = "المثنى", p = "الجمع"} local GENDER = {m = "المذكر", f = "المؤنث"} -- The same vocabulary without the article, for category names. ar.wiktionary -- already names these categories this way — تصنيف:فعل مبني للمعلوم ماضي مفرد مذكر متكلم -- has 133 pages — so the composed name lands on the existing category rather -- than forking the taxonomy. local PERSON_BARE = {["1"] = "متكلم", ["2"] = "مخاطب", ["3"] = "غائب"} local NUMBER_BARE = {s = "مفرد", d = "مثنى", p = "جمع"} local GENDER_BARE = {m = "مذكر", f = "مؤنث"} local TENSE_BARE = {past = "ماضي", ind = "مضارع", sub = "مضارع", juss = "مضارع", imp = "أمر"} local VOICE_BARE = {act = "مبني للمعلوم", pass = "مبني للمجهول"} local PRONOUN = { ["1s"] = "أَنَا", ["1p"] = "نَحْنُ", ["2ms"] = "أَنْتَ", ["2fs"] = "أَنْتِ", ["2d"] = "أَنْتُمَا", ["2mp"] = "أَنْتُمْ", ["2fp"] = "أَنْتُنَّ", ["3ms"] = "هُوَ", ["3fs"] = "هِيَ", ["3md"] = "هُمَا", ["3fd"] = "هُمَا", ["3mp"] = "هُمْ", ["3fp"] = "هُنَّ", } -- Slots that carry no conjugated form of their own: the five *_linked duplicates -- and the staging slots Module:ar-verb uses while picking a default. local SKIP_SLOTS = { ap1 = true, ap2 = true, ap3 = true, apcd = true, apan = true, pp2 = true, vn2 = true, } -- Derived nominals. They are lemmas in their own right (اسم فاعل / اسم مفعول / -- مصدر), not conjugated forms, so this module does not claim them. local NOMINAL_SLOTS = {ap = true, pp = true, vn = true} local QUADRILITERAL = { ["فعلل"] = true, ["تفعلل"] = true, ["افعنلل"] = true, ["افعللّ"] = true, } local MAINTENANCE_CATEGORY = "صفحات صيغ أفعال بلا مطابقة" -- Ends the float started by the box, so the conjugation table below it starts on -- a clean line rather than wrapping around it. local CLEAR = '<div class="avf-clear"></div>' ------------------------------------------------------------------------------- -- Text helpers ------------------------------------------------------------------------------- -- Tatweel and the invisible direction/joining marks. These survive copy-paste -- and round-trips through external tools, and MediaWiki keeps them in page -- titles, so both sides of every comparison are cleaned of them first. local INVISIBLE = "[" .. u(0x0640) .. u(0x061C) .. u(0x200B) .. "-" .. u(0x200F) .. u(0x202A) .. "-" .. u(0x202E) .. u(0xFEFF) .. "]" -- The diacritics that are not typed when searching: the harakat proper, shadda, -- sukun and the dagger alif. Hamza carriers (أ إ آ ؤ ئ) are distinct letters and -- are deliberately left alone. local DIACRITIC = "[" .. u(0x064B) .. "-" .. u(0x0652) .. u(0x0670) .. "]" local function clean(s) if not s or s == "" then return "" end return (mw.ustring.gsub(s, INVISIBLE, "")) end -- The consonant skeleton (الرسم) a reader would type into the search box. local function rasm(s) return (mw.ustring.gsub(clean(s), DIACRITIC, "")) end local function link(target, display) if not target or target == "" then return "" end if display and display ~= target then return "[[" .. target .. "|" .. display .. "]]" end return "[[" .. target .. "]]" end local function category(name) return "[[تصنيف:" .. name .. "]]" end -- A *link to* a category needs the leading colon; without it the page silently -- joins the category instead of pointing at it. local function category_link(name, display) return "[[:تصنيف:" .. name .. "|" .. (display or name) .. "]]" end -- Template calls returned from a module are not expanded — the preprocessor has -- already run by the time Scribunto hands the text back — so they have to go -- through the frame. local function expand(title, args) local frame = mw.getCurrentFrame() if not frame then return "" end local ok, result = pcall(frame.expandTemplate, frame, {title = title, args = args}) return ok and result or "" end -- "أكل" -> "أ ك ل". ar.wiktionary spells root categories and navboxes from the -- letters as written (تصنيف:أ ك ل, 15 pages), not from the normalized radicals -- Module:ar-verb reports, which would give ء ك ل and point at nothing. local function space_root(root) local letters = {} for letter in mw.ustring.gmatch(clean(root), ".") do if letter ~= " " and letter ~= "_" then letters[#letters + 1] = letter end end return table.concat(letters, " ") end ------------------------------------------------------------------------------- -- Slots ------------------------------------------------------------------------------- -- "past_pass_3ms" -> tense "past", voice "pass", person/number "3ms" -- "imp_2fs" -> tense "imp", voice "act", person/number "2fs" local function parse_slot(slot) local tense, rest = mw.ustring.match(slot, "^(%a+)_(.+)$") if not tense or not TENSE[tense] then return nil end local voice = "act" local pn = rest local stripped = mw.ustring.match(rest, "^pass_(.+)$") if stripped then voice = "pass" pn = stripped end local person, gender, number = mw.ustring.match(pn, "^(%d)([mf]?)([sdp])$") if not person then return nil end return { slot = slot, tense = tense, voice = voice, pn = pn, person = person, gender = gender, number = number, } end -- Every slot that can name a conjugated form, in the order Module:ar-verb -- declares them. local function each_form_slot(spec, fn) for _, slot_accel in ipairs(spec.verb_slots) do local slot = slot_accel[1] if not SKIP_SLOTS[slot] and not NOMINAL_SLOTS[slot] and not mw.ustring.find(slot, "_linked$") then local forms = spec.forms[slot] if forms then for _, form in ipairs(forms) do if form.form and form.form ~= "" and form.form ~= "?" then fn(slot, form.form) end end end end end end -- Name the mood only where the reader would otherwise be misled. -- -- The simplified conjugation table — what {{تصريف}} shows by default — holds the -- active الماضي، المضارع and الأمر and nothing else, and its المضارع column is the -- indicative. A form the reader can find there has nothing on the table to -- contrast with, so spelling out المرفوع is pedantry: تُحْسِبَانِ is simply المضارع. -- -- المرفوع is worth saying in the two cases where it is not: the passive, which -- only the full table (كامل=1) shows, and forms whose moods genuinely part ways — -- يَكْتُبُوا is منصوب ومجزوم, against يَكْتُبُونَ for the indicative. Where all three moods -- produce one string (يَكْتُبْنَ) they collapse back to a bare المضارع. local function tense_phrase(tenses, voice) if tenses.past then return TENSE.past end if tenses.imp then return TENSE.imp end if tenses.ind and (voice == "act" or (tenses.sub and tenses.juss)) then return "المضارع" end local parts = {} for _, t in ipairs({"ind", "sub", "juss"}) do if tenses[t] then parts[#parts + 1] = TENSE[t] end end if #parts == 0 then return nil end if #parts == 1 then return parts[1] end -- "المضارع المنصوب والمجزوم" — say المضارع once, then the moods. local moods = {} for i, phrase in ipairs(parts) do moods[i] = (mw.ustring.gsub(phrase, "^المضارع ", "")) end return "المضارع " .. table.concat(moods, " و") end -- Group the matched slots into one statement per (voice, person/number). local function group_matches(matches) local order, groups = {}, {} for _, m in ipairs(matches) do local key = m.voice .. "|" .. m.pn if not groups[key] then groups[key] = {voice = m.voice, pn = m.pn, person = m.person, gender = m.gender, number = m.number, tenses = {}} order[#order + 1] = key end groups[key].tenses[m.tense] = true end local out = {} for _, key in ipairs(order) do out[#out + 1] = groups[key] end return out end local function describe(group, lemma) local phrase = tense_phrase(group.tenses, group.voice) if not phrase then return nil end local parts = {phrase} -- The imperative is active by definition; saying so adds nothing. if not group.tenses.imp then parts[#parts + 1] = VOICE[group.voice] end -- ل + المتكلم contracts to للمتكلم, so the first word carries the merged -- article and the rest keep theirs: "للغائب الجمع المذكر". local who = {"لل" .. PERSON_BARE[group.person], NUMBER[group.number]} if group.gender and group.gender ~= "" then who[#who + 1] = GENDER[group.gender] end local pronoun = PRONOUN[group.pn] local subject = table.concat(who, " ") if pronoun then subject = subject .. " (" .. pronoun .. ")" end return table.concat(parts, " ") .. "، " .. subject .. "، من الفعل " .. link(lemma) .. "." end ------------------------------------------------------------------------------- -- The pattern this form realises (وزن الصيغة) ------------------------------------------------------------------------------- -- Conjugating ف-ع-ل (ف-ع-ل-ل for quadriliterals) through the same وزن and the -- same slot names the shape of the form: past_1s of فعَل يفعُل is فَعَلْتُ. That is the -- category ar.wiktionary already files these pages under, and it is a browse -- axis nothing else offers — every verb's first-person past in one place. local pattern_cache = {} local function pattern_forms(wazn) if pattern_cache[wazn] == nil then local model = QUADRILITERAL[wazn] and "فعلل" or "فعل" local ok, spec = pcall(ar_verb.do_generate_forms, {["جذر"] = model, ["وزن"] = wazn}, "ar-conj") pattern_cache[wazn] = ok and spec.forms or false end return pattern_cache[wazn] or nil end local function pattern_of(wazn, slot) local forms = pattern_forms(wazn) if not forms then return nil end local entry = forms[slot] if not entry or not entry[1] or entry[1].form == "?" then return nil end return entry[1].form end ------------------------------------------------------------------------------- -- Blocks ------------------------------------------------------------------------------- -- The box: the form, then the lemma it belongs to, then the morphological -- coordinates. Laid out and floated like {{صندوق معلومات فعل}} on the lemma page, -- so the two read as one family. -- -- The form and the lemma are set at the same size. The form names the page, but -- the lemma is where the reader is being sent, and a title twice the size of the -- link under it says the opposite. local function render_box(verb) local box = mw.html.create("table"):addClass("ar-verb-form-box") local head = box:tag("tr"):tag("th"):attr("colspan", 2):addClass("avf-head") head:tag("div"):addClass("avf-form"):wikitext(verb.pagename) head:tag("div"):addClass("avf-of"):wikitext("صيغة من الفعل") head:tag("div"):addClass("avf-lemma"):wikitext(link(verb.lemma)) head:tag("div"):addClass("avf-note") :wikitext("المعاني والشواهد والمراجع على صفحة الفعل") local function row(label, value) if not value or value == "" then return end local tr = box:tag("tr") tr:tag("th"):wikitext(label) tr:tag("td"):wikitext(value) end -- A form can belong to the same verb under more than one root analysis -- (آتَتْ is أ ت و and أ ت ي alike). Only the root differs, so only the root -- row repeats; everything else would be identical. local roots = {} for i, root_display in ipairs(verb.root_displays) do roots[i] = category_link(root_display) end row(#roots > 1 and "الجذور" or "الجذر", table.concat(roots, "، ")) -- The wazn alone. The classification that goes with it (فعل ثلاثي مزيد بحرف) -- is stated in the conjugation table's own header further down the page. row("الوزن", verb.wazn) row("وزن الصيغة", verb.pattern_form and category_link(verb.pattern_form) or nil) return tostring(box) end -- Vocalizations of this same verb that share the page's consonant skeleton. -- A reader searching أكلت lands on one of them and needs the others; this is -- also why ar.wiktionary does not need a disambiguation page per skeleton. local function collect_siblings(verbs, pagename) local skeleton = rasm(pagename) local seen, list = {[pagename] = true}, {} for _, verb in ipairs(verbs) do each_form_slot(verb.spec, function(_, form) local cleaned = clean(form) if not seen[cleaned] and rasm(cleaned) == skeleton then seen[cleaned] = true list[#list + 1] = cleaned end end) end table.sort(list) return list, skeleton end local function render_siblings(siblings, skeleton) if #siblings == 0 then return nil end local links = {} for i, form in ipairs(siblings) do links[i] = link(form) end return "=== صيغ تشارك الرسم «" .. skeleton .. "» ===\n" .. table.concat(links, " · ") end -- The dataset sometimes analyses one verb under two roots — آتَى is both أ ت و and -- أ ت ي on وزن أفعل, and both produce آتَتْ. Left alone that renders two identical -- boxes and two identical statements. Fold them into one entry whose only -- plural field is the root; everything else was the same in both. local function merge_equivalent(verbs) local order, seen = {}, {} for _, verb in ipairs(verbs) do local key = table.concat({verb.lemma, verb.wazn, table.concat(verb.sentences, "\1")}, "\2") local first = seen[key] if first then for _, root in ipairs(verb.roots) do first.roots[#first.roots + 1] = root end for _, display in ipairs(verb.root_displays) do first.root_displays[#first.root_displays + 1] = display end else seen[key] = verb order[#order + 1] = verb end end return order end ------------------------------------------------------------------------------- -- Core ------------------------------------------------------------------------------- -- Work out what the page title is, without producing any wikitext. Kept apart -- from p.render so the offline tests can assert on the grammar the module -- derived rather than on the markup it happened to wrap it in. -- -- args = {verbs = {{root=, wazn=}, ...}, pagename =} -- returns {pagename=, verbs={...}, siblings={...}, skeleton=, categories={...}} function p.analyze(args) local pagename = clean(args.pagename) local verbs = {} for _, entry in ipairs(args.verbs or {}) do local ok, spec = pcall(ar_verb.do_generate_forms, {["جذر"] = entry.root, ["وزن"] = entry.wazn}, "ar-conj") if ok and spec and spec.forms then local matches = {} each_form_slot(spec, function(slot, form) if clean(form) == pagename then local parsed = parse_slot(slot) if parsed then matches[#matches + 1] = parsed end end end) if #matches > 0 then local lemma_entry = spec.forms.past_3ms local groups = group_matches(matches) local sentences = {} local lemma = lemma_entry and lemma_entry[1] and lemma_entry[1].form or entry.root for i, group in ipairs(groups) do sentences[i] = describe(group, lemma) end verbs[#verbs + 1] = { root = entry.root, roots = {entry.root}, wazn = entry.wazn, lemma = lemma, root_display = space_root(entry.root), root_displays = {space_root(entry.root)}, pattern_form = pattern_of(entry.wazn, matches[1].slot), spec = spec, pagename = pagename, slots = matches, groups = groups, sentences = sentences, } end end end verbs = merge_equivalent(verbs) local siblings, skeleton = collect_siblings(verbs, pagename) -- Categories: the parent, then per statement the grammatical category in the -- order ar.wiktionary already names them (فعل + بناء + زمن + عدد + جنس + شخص), -- the pattern this form realises, and the root. local categories, seen_category = {}, {} local function add_category(name) if name and name ~= "" and not seen_category[name] then seen_category[name] = true categories[#categories + 1] = name end end if #verbs == 0 then add_category(MAINTENANCE_CATEGORY) else add_category("صيغ أفعال عربية") for _, verb in ipairs(verbs) do for _, group in ipairs(verb.groups) do local name = {"فعل"} if group.tenses.imp then -- The imperative categories carry neither voice nor person: -- تصنيف:فعل أمر مفرد مذكر, as {{أ-م-ذ}} files them today. name[#name + 1] = TENSE_BARE.imp name[#name + 1] = NUMBER_BARE[group.number] if group.gender and group.gender ~= "" then name[#name + 1] = GENDER_BARE[group.gender] end else local tense = group.tenses.past and "past" or "ind" name[#name + 1] = VOICE_BARE[group.voice] name[#name + 1] = TENSE_BARE[tense] name[#name + 1] = NUMBER_BARE[group.number] if group.gender and group.gender ~= "" then name[#name + 1] = GENDER_BARE[group.gender] end name[#name + 1] = PERSON_BARE[group.person] end add_category(table.concat(name, " ")) end add_category(verb.pattern_form) for _, root_display in ipairs(verb.root_displays) do add_category(root_display ~= "" and root_display or nil) end end end return { pagename = pagename, verbs = verbs, siblings = siblings, skeleton = skeleton, categories = categories, } end -- args = {verbs = {{root=, wazn=}, ...}, pagename =, sections =} function p.render(args) local data = p.analyze(args) local pagename, verbs = data.pagename, data.verbs if #verbs == 0 then return "<span class=\"error\">لم تطابق هذه الصفحة أي صيغة من صيغ الفعل المذكور.</span>" .. category(MAINTENANCE_CATEGORY) end local out = {} out[#out + 1] = "=== صيغة فعل ===" for _, verb in ipairs(verbs) do out[#out + 1] = render_box(verb) for _, sentence in ipairs(verb.sentences) do out[#out + 1] = "# " .. sentence end end if args.sections ~= false then local ipa = expand("أصد-عر", {pagename}) if ipa ~= "" then out[#out + 1] = "=== النطق ===" out[#out + 1] = "* " .. ipa end -- The box floats, so a full-width table has to be told to start below it. -- Lemma pages write {{-}} at this point; same effect, one fewer template. out[#out + 1] = CLEAR out[#out + 1] = "=== التصريفات ===" for _, verb in ipairs(verbs) do -- Full table, open, with the cells holding this page marked. The -- full table is what makes the marking worth anything: it is the only -- one that shows the passive and the moods, and a reader who arrived -- on a passive form needs to see where it sits. out[#out + 1] = expand("تصريف", { ["جذر"] = verb.root, ["وزن"] = verb.wazn, ["كامل"] = "1", ["موسع"] = "1", ["بؤرة"] = pagename, }) end local siblings = render_siblings(data.siblings, data.skeleton) if siblings then out[#out + 1] = siblings end else out[#out + 1] = CLEAR end local categories = {} for i, name in ipairs(data.categories) do categories[i] = category(name) end return table.concat(out, "\n") .. "\n" .. table.concat(categories, "") end ------------------------------------------------------------------------------- -- Entry point ------------------------------------------------------------------------------- function p.main(frame) local args = frame:getParent() and frame:getParent().args or frame.args local verbs = {} for i = 1, MAX_VERBS do local suffix = i == 1 and "" or tostring(i) local root = args["جذر" .. suffix] local wazn = args["وزن" .. suffix] if root and root ~= "" and wazn and wazn ~= "" then verbs[#verbs + 1] = { root = mw.text.trim(root), wazn = mw.text.trim(wazn), } end end local pagename = args["صفحة"] if not pagename or pagename == "" then pagename = mw.title.getCurrentTitle().text end return p.render({ verbs = verbs, pagename = pagename, sections = args["أقسام"] ~= "لا", }) end return p 8pz395z5mdanjhbn2jj44w6bmab6ixm قالب:ar-verb-form/style.css 10 240796 1097810 2026-08-01T13:45:26Z ForzaGreen 28665 تنسيق صفحات صيغ الأفعال 1097810 sanitized-css text/css /* Template:ar-verb-form/style.css * Styling for Arabic verb form (non-lemma) pages — {{صيغة فعل}}. * Follows the patterns of ar-verb-infobox/style.css and ar-conj/style.css. * * The box is a full-width banner rather than a floated infobox: on a form page * the link back to the lemma is the point of the page, not a sidebar detail, so * it gets the width and the type size, and the morphological rows stay quiet. */ /* ── Light mode (default) ───────────────────────────────────────────────── */ .ar-verb-form-box { direction: rtl; text-align: right; font-family: Arial, sans-serif; font-size: 95%; background: #f9f9f9; border: 1px solid #a2a9b1; border-collapse: collapse; width: 100%; max-width: 34em; margin: 0 0 1em 0; } .ar-verb-form-box .avf-head { background: #e8f5e8; color: #000; text-align: center; padding: 0.7em 0.5em; border-bottom: 1px solid #a2a9b1; } .ar-verb-form-box .avf-kicker { font-size: 90%; color: #54595d; letter-spacing: 0.02em; } .ar-verb-form-box .avf-lemma { font-size: 190%; font-weight: bold; line-height: 1.4; margin: 0.1em 0 0.2em 0; } .ar-verb-form-box .avf-note { font-size: 88%; color: #54595d; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.35em 0.6em; vertical-align: middle; border-top: 1px solid #eaecf0; } .ar-verb-form-box th { background: #f1f5f1; color: #000; font-weight: bold; text-align: right; width: 8.5em; white-space: nowrap; } .ar-verb-form-box td { background: #fff; color: #000; } /* ── Where the form sits in the paradigm ────────────────────────────────── */ .ar-verb-form-position { direction: rtl; text-align: center; border-collapse: collapse; font-size: 95%; margin: 0.4em 0 0.8em 0; } .ar-verb-form-position th, .ar-verb-form-position td { border: 1px solid #a2a9b1; padding: 0.4em 0.9em; color: #000; } .ar-verb-form-position th { background: #eaecf0; font-weight: bold; } /* The cell the page is about, here and in the full {{تصريف}} table below it. */ .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fef6d5; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: explicit user preference ────────────────────────────────── */ html.skin-theme-clientpref-night .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-bottom-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-kicker, html.skin-theme-clientpref-night .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-night .ar-verb-form-box th { background: #3a5a3a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-night .ar-verb-form-position th, html.skin-theme-clientpref-night .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-night .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-night .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: system preference ───────────────────────────────────────── */ @media screen and (prefers-color-scheme: dark) { html.skin-theme-clientpref-os .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-bottom-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-kicker, html.skin-theme-clientpref-os .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-os .ar-verb-form-box th { background: #3a5a3a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-os .ar-verb-form-position th, html.skin-theme-clientpref-os .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-os .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-os .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } } /* ── Small screens ──────────────────────────────────────────────────────── */ @media (max-width: 768px) { .ar-verb-form-box { font-size: 90%; max-width: none; } .ar-verb-form-box .avf-lemma { font-size: 160%; } .ar-verb-form-box th { width: 7em; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.3em 0.4em; } /* The paradigm strip is the one thing that must not wrap. */ .ar-verb-form-position { display: block; overflow-x: auto; white-space: nowrap; } } /* ── Print ──────────────────────────────────────────────────────────────── */ @media print { .ar-verb-form-box { border: 1px solid #000; background: #fff; } .ar-verb-form-box .avf-head { background: #e0e0e0; color: #000; } .ar-verb-form-box th { background: #f0f0f0; color: #000; } .ar-verb-form-box td { background: #fff; color: #000; } .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fff; box-shadow: inset 0 0 0 2px #000; } } hshagf9bf1n1i1iweg9lopk55we8nl8 1097831 1097810 2026-08-01T13:56:11Z ForzaGreen 28665 تنسيق صفحات صيغ الأفعال 1097831 sanitized-css text/css /* Template:ar-verb-form/style.css * Styling for Arabic verb form (non-lemma) pages — قالب:صيغة فعل. * Follows the patterns of ar-verb-infobox/style.css and ar-conj/style.css. * * Do not write a template call in these comments. MediaWiki expands templates * on a TemplateStyles page before sanitizing it, so a literal {{…}} here would * transclude the template — which is how this page first landed in * تصنيف:صفحات صيغ أفعال بلا مطابقة. * * The box is a full-width banner rather than a floated infobox: on a form page * the link back to the lemma is the point of the page, not a sidebar detail, so * it gets the width and the type size, and the morphological rows stay quiet. */ /* ── Light mode (default) ───────────────────────────────────────────────── */ .ar-verb-form-box { direction: rtl; text-align: right; font-family: Arial, sans-serif; font-size: 95%; background: #f9f9f9; border: 1px solid #a2a9b1; border-collapse: collapse; width: 100%; max-width: 34em; margin: 0 0 1em 0; } .ar-verb-form-box .avf-head { background: #e8f5e8; color: #000; text-align: center; padding: 0.7em 0.5em; border-bottom: 1px solid #a2a9b1; } .ar-verb-form-box .avf-kicker { font-size: 90%; color: #54595d; letter-spacing: 0.02em; } .ar-verb-form-box .avf-lemma { font-size: 190%; font-weight: bold; line-height: 1.4; margin: 0.1em 0 0.2em 0; } .ar-verb-form-box .avf-note { font-size: 88%; color: #54595d; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.35em 0.6em; vertical-align: middle; border-top: 1px solid #eaecf0; } .ar-verb-form-box th { background: #f1f5f1; color: #000; font-weight: bold; text-align: right; width: 8.5em; white-space: nowrap; } .ar-verb-form-box td { background: #fff; color: #000; } /* ── Where the form sits in the paradigm ────────────────────────────────── */ .ar-verb-form-position { direction: rtl; text-align: center; border-collapse: collapse; font-size: 95%; margin: 0.4em 0 0.8em 0; } .ar-verb-form-position th, .ar-verb-form-position td { border: 1px solid #a2a9b1; padding: 0.4em 0.9em; color: #000; } .ar-verb-form-position th { background: #eaecf0; font-weight: bold; } /* The cell the page is about, here and in the full {{تصريف}} table below it. */ .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fef6d5; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: explicit user preference ────────────────────────────────── */ html.skin-theme-clientpref-night .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-bottom-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-kicker, html.skin-theme-clientpref-night .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-night .ar-verb-form-box th { background: #3a5a3a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-night .ar-verb-form-position th, html.skin-theme-clientpref-night .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-night .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-night .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: system preference ───────────────────────────────────────── */ @media screen and (prefers-color-scheme: dark) { html.skin-theme-clientpref-os .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-bottom-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-kicker, html.skin-theme-clientpref-os .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-os .ar-verb-form-box th { background: #3a5a3a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-os .ar-verb-form-position th, html.skin-theme-clientpref-os .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-os .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-os .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } } /* ── Small screens ──────────────────────────────────────────────────────── */ @media (max-width: 768px) { .ar-verb-form-box { font-size: 90%; max-width: none; } .ar-verb-form-box .avf-lemma { font-size: 160%; } .ar-verb-form-box th { width: 7em; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.3em 0.4em; } /* The paradigm strip is the one thing that must not wrap. */ .ar-verb-form-position { display: block; overflow-x: auto; white-space: nowrap; } } /* ── Print ──────────────────────────────────────────────────────────────── */ @media print { .ar-verb-form-box { border: 1px solid #000; background: #fff; } .ar-verb-form-box .avf-head { background: #e0e0e0; color: #000; } .ar-verb-form-box th { background: #f0f0f0; color: #000; } .ar-verb-form-box td { background: #fff; color: #000; } .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fff; box-shadow: inset 0 0 0 2px #000; } } 72qdbh8p3wgsbqg2cwut8at47x7nldj 1097832 1097831 2026-08-01T13:56:58Z ForzaGreen 28665 تنسيق صفحات صيغ الأفعال 1097832 sanitized-css text/css /* Template:ar-verb-form/style.css * Styling for Arabic verb form (non-lemma) pages — قالب:صيغة فعل. * Follows the patterns of ar-verb-infobox/style.css and ar-conj/style.css. * * Do not write a template call in these comments — not even inside a comment. * MediaWiki expands templates on a TemplateStyles page before sanitizing it, so * a pair of literal braces here transcludes whatever it names, which is how this * page first landed in تصنيف:صفحات صيغ أفعال بلا مطابقة. * * The box is a full-width banner rather than a floated infobox: on a form page * the link back to the lemma is the point of the page, not a sidebar detail, so * it gets the width and the type size, and the morphological rows stay quiet. */ /* ── Light mode (default) ───────────────────────────────────────────────── */ .ar-verb-form-box { direction: rtl; text-align: right; font-family: Arial, sans-serif; font-size: 95%; background: #f9f9f9; border: 1px solid #a2a9b1; border-collapse: collapse; width: 100%; max-width: 34em; margin: 0 0 1em 0; } .ar-verb-form-box .avf-head { background: #e8f5e8; color: #000; text-align: center; padding: 0.7em 0.5em; border-bottom: 1px solid #a2a9b1; } .ar-verb-form-box .avf-kicker { font-size: 90%; color: #54595d; letter-spacing: 0.02em; } .ar-verb-form-box .avf-lemma { font-size: 190%; font-weight: bold; line-height: 1.4; margin: 0.1em 0 0.2em 0; } .ar-verb-form-box .avf-note { font-size: 88%; color: #54595d; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.35em 0.6em; vertical-align: middle; border-top: 1px solid #eaecf0; } .ar-verb-form-box th { background: #f1f5f1; color: #000; font-weight: bold; text-align: right; width: 8.5em; white-space: nowrap; } .ar-verb-form-box td { background: #fff; color: #000; } /* ── Where the form sits in the paradigm ────────────────────────────────── */ .ar-verb-form-position { direction: rtl; text-align: center; border-collapse: collapse; font-size: 95%; margin: 0.4em 0 0.8em 0; } .ar-verb-form-position th, .ar-verb-form-position td { border: 1px solid #a2a9b1; padding: 0.4em 0.9em; color: #000; } .ar-verb-form-position th { background: #eaecf0; font-weight: bold; } /* The cell the page is about, here and in the full {{تصريف}} table below it. */ .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fef6d5; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: explicit user preference ────────────────────────────────── */ html.skin-theme-clientpref-night .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-bottom-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-kicker, html.skin-theme-clientpref-night .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-night .ar-verb-form-box th { background: #3a5a3a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-night .ar-verb-form-position th, html.skin-theme-clientpref-night .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-night .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-night .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: system preference ───────────────────────────────────────── */ @media screen and (prefers-color-scheme: dark) { html.skin-theme-clientpref-os .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-bottom-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-kicker, html.skin-theme-clientpref-os .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-os .ar-verb-form-box th { background: #3a5a3a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-os .ar-verb-form-position th, html.skin-theme-clientpref-os .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-os .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-os .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } } /* ── Small screens ──────────────────────────────────────────────────────── */ @media (max-width: 768px) { .ar-verb-form-box { font-size: 90%; max-width: none; } .ar-verb-form-box .avf-lemma { font-size: 160%; } .ar-verb-form-box th { width: 7em; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.3em 0.4em; } /* The paradigm strip is the one thing that must not wrap. */ .ar-verb-form-position { display: block; overflow-x: auto; white-space: nowrap; } } /* ── Print ──────────────────────────────────────────────────────────────── */ @media print { .ar-verb-form-box { border: 1px solid #000; background: #fff; } .ar-verb-form-box .avf-head { background: #e0e0e0; color: #000; } .ar-verb-form-box th { background: #f0f0f0; color: #000; } .ar-verb-form-box td { background: #fff; color: #000; } .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fff; box-shadow: inset 0 0 0 2px #000; } } 2wco0e11avrsn9ahyt551ocveb9kltw 1097833 1097832 2026-08-01T13:57:45Z ForzaGreen 28665 تنسيق صفحات صيغ الأفعال 1097833 sanitized-css text/css /* Template:ar-verb-form/style.css * Styling for Arabic verb form (non-lemma) pages — قالب:صيغة فعل. * Follows the patterns of ar-verb-infobox/style.css and ar-conj/style.css. * * Do not write a template call in these comments — not even inside a comment. * MediaWiki expands templates on a TemplateStyles page before sanitizing it, so * a pair of literal braces here transcludes whatever it names, which is how this * page first landed in تصنيف:صفحات صيغ أفعال بلا مطابقة. * * The box is a full-width banner rather than a floated infobox: on a form page * the link back to the lemma is the point of the page, not a sidebar detail, so * it gets the width and the type size, and the morphological rows stay quiet. */ /* ── Light mode (default) ───────────────────────────────────────────────── */ .ar-verb-form-box { direction: rtl; text-align: right; font-family: Arial, sans-serif; font-size: 95%; background: #f9f9f9; border: 1px solid #a2a9b1; border-collapse: collapse; width: 100%; max-width: 34em; margin: 0 0 1em 0; } .ar-verb-form-box .avf-head { background: #e8f5e8; color: #000; text-align: center; padding: 0.7em 0.5em; border-bottom: 1px solid #a2a9b1; } .ar-verb-form-box .avf-kicker { font-size: 90%; color: #54595d; letter-spacing: 0.02em; } .ar-verb-form-box .avf-lemma { font-size: 190%; font-weight: bold; line-height: 1.4; margin: 0.1em 0 0.2em 0; } .ar-verb-form-box .avf-note { font-size: 88%; color: #54595d; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.35em 0.6em; vertical-align: middle; border-top: 1px solid #eaecf0; } .ar-verb-form-box th { background: #f1f5f1; color: #000; font-weight: bold; text-align: right; width: 8.5em; white-space: nowrap; } .ar-verb-form-box td { background: #fff; color: #000; } /* ── Where the form sits in the paradigm ────────────────────────────────── */ .ar-verb-form-position { direction: rtl; text-align: center; border-collapse: collapse; font-size: 95%; margin: 0.4em 0 0.8em 0; } .ar-verb-form-position th, .ar-verb-form-position td { border: 1px solid #a2a9b1; padding: 0.4em 0.9em; color: #000; } .ar-verb-form-position th { background: #eaecf0; font-weight: bold; } /* The cell the page is about, here and in the full conjugation table below it. */ .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fef6d5; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: explicit user preference ────────────────────────────────── */ html.skin-theme-clientpref-night .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-bottom-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-kicker, html.skin-theme-clientpref-night .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-night .ar-verb-form-box th { background: #3a5a3a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-night .ar-verb-form-position th, html.skin-theme-clientpref-night .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-night .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-night .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: system preference ───────────────────────────────────────── */ @media screen and (prefers-color-scheme: dark) { html.skin-theme-clientpref-os .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-bottom-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-kicker, html.skin-theme-clientpref-os .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-os .ar-verb-form-box th { background: #3a5a3a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-top-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-os .ar-verb-form-position th, html.skin-theme-clientpref-os .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-os .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-os .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } } /* ── Small screens ──────────────────────────────────────────────────────── */ @media (max-width: 768px) { .ar-verb-form-box { font-size: 90%; max-width: none; } .ar-verb-form-box .avf-lemma { font-size: 160%; } .ar-verb-form-box th { width: 7em; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.3em 0.4em; } /* The paradigm strip is the one thing that must not wrap. */ .ar-verb-form-position { display: block; overflow-x: auto; white-space: nowrap; } } /* ── Print ──────────────────────────────────────────────────────────────── */ @media print { .ar-verb-form-box { border: 1px solid #000; background: #fff; } .ar-verb-form-box .avf-head { background: #e0e0e0; color: #000; } .ar-verb-form-box th { background: #f0f0f0; color: #000; } .ar-verb-form-box td { background: #fff; color: #000; } .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fff; box-shadow: inset 0 0 0 2px #000; } } fpzed10yclfh64l4h1r6dl9tm2aerlh 1097850 1097833 2026-08-01T18:57:42Z ForzaGreen 28665 تنسيق صفحات صيغ الأفعال 1097850 sanitized-css text/css /* Template:ar-verb-form/style.css * Styling for Arabic verb form (non-lemma) pages — قالب:صيغة فعل. * Follows the patterns of ar-verb-infobox/style.css and ar-conj/style.css. * * The box floats left and is 22em wide, matching صندوق معلومات فعل on the lemma * page so that a lemma and one of its forms read as the same family of page. * * Do not write a template call in these comments — not even inside a comment. * MediaWiki expands templates on a TemplateStyles page before sanitizing it, so * a pair of literal braces here transcludes whatever it names, which is how this * page once ended up in تصنيف:صفحات صيغ أفعال بلا مطابقة. */ /* ── Light mode (default) ───────────────────────────────────────────────── */ .ar-verb-form-box { direction: rtl; text-align: right; font-size: 95%; background: #f9f9f9; border: 1px solid #a2a9b1; border-collapse: collapse; width: 22em; max-width: 100%; float: left; clear: left; margin: 0.5em 0 0.5em 1em; } .ar-verb-form-box .avf-head { background: #e8f5e8; color: #000; text-align: center; font-weight: normal; padding: 0.7em 0.5em; /* Explicit on all four sides: with border-collapse the cell border wins over the table's, so relying on the table alone loses the top edge. */ border: 1px solid #a2a9b1; } /* The form this page is about. */ .ar-verb-form-box .avf-form { font-size: 190%; font-weight: bold; line-height: 1.5; } /* Where to go for everything this page deliberately does not carry. */ .ar-verb-form-box .avf-kicker { font-size: 105%; margin-top: 0.15em; } .ar-verb-form-box .avf-note { font-size: 88%; color: #54595d; margin-top: 0.3em; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.35em 0.6em; vertical-align: middle; border: 1px solid #eaecf0; } /* Shrink-to-fit label column: a fixed width leaves a wide empty grey band on a narrow screen, which is what this replaces. */ .ar-verb-form-box > tbody > tr > th { background: #f1f5f1; color: #000; font-weight: bold; text-align: right; width: 1%; white-space: nowrap; } .ar-verb-form-box .avf-head { width: auto; } .ar-verb-form-box td { background: #fff; color: #000; } /* ── Where the form sits in the paradigm ────────────────────────────────── */ .ar-verb-form-position { direction: rtl; text-align: center; border-collapse: collapse; font-size: 95%; margin: 0.4em 0 0.8em 0; } .ar-verb-form-position th, .ar-verb-form-position td { border: 1px solid #a2a9b1; padding: 0.4em 0.9em; color: #000; } .ar-verb-form-position th { background: #eaecf0; font-weight: bold; } .ar-verb-form-position .avf-corner { background: transparent; border-color: transparent; } /* The cell the page is about, here and in the full conjugation table below. */ .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fef6d5; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: explicit user preference ────────────────────────────────── */ html.skin-theme-clientpref-night .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-night .ar-verb-form-box > tbody > tr > th { background: #3a5a3a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-night .ar-verb-form-position th, html.skin-theme-clientpref-night .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-night .ar-verb-form-position .avf-corner { background: transparent; border-color: transparent; } html.skin-theme-clientpref-night .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-night .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } /* ── Dark mode: system preference ───────────────────────────────────────── */ @media screen and (prefers-color-scheme: dark) { html.skin-theme-clientpref-os .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-note { color: #b8b8b8; } html.skin-theme-clientpref-os .ar-verb-form-box > tbody > tr > th { background: #3a5a3a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-position th { background: #333; } html.skin-theme-clientpref-os .ar-verb-form-position th, html.skin-theme-clientpref-os .ar-verb-form-position td { border-color: #555; color: #e0e0e0; } html.skin-theme-clientpref-os .ar-verb-form-position .avf-corner { background: transparent; border-color: transparent; } html.skin-theme-clientpref-os .ar-verb-form-position .avf-focus, html.skin-theme-clientpref-os .ar-conj .avf-focus { background: #4a3d00; box-shadow: inset 0 0 0 2px #edab00; } } /* ── Small screens ──────────────────────────────────────────────────────── */ @media (max-width: 720px) { /* Floating a 22em box next to body text does not work on a phone: it leaves the label column as a tall grey band with the text squeezed beside it. Full width, no float. */ .ar-verb-form-box { float: none; clear: both; width: 100%; margin: 0.5em 0; font-size: 90%; } .ar-verb-form-box .avf-form { font-size: 160%; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.3em 0.45em; } /* The paradigm strip is the one thing that must not wrap. */ .ar-verb-form-position { display: block; overflow-x: auto; white-space: nowrap; max-width: 100%; } } /* ── Print ──────────────────────────────────────────────────────────────── */ @media print { .ar-verb-form-box { border: 1px solid #000; background: #fff; float: none; width: 100%; } .ar-verb-form-box .avf-head { background: #e0e0e0; color: #000; border-color: #000; } .ar-verb-form-box > tbody > tr > th { background: #f0f0f0; color: #000; } .ar-verb-form-box td { background: #fff; color: #000; } .ar-verb-form-position .avf-focus, .ar-conj .avf-focus { background: #fff; box-shadow: inset 0 0 0 2px #000; } } 726m6suwl0vluv6m5tlva6afi0ucc6b 1097869 1097850 2026-08-02T05:43:22Z ForzaGreen 28665 صفحات صيغ الأفعال: الاكتفاء بجدول التصريف الكامل مبسوطًا بدل الجدول المصغّر، وتساوي حجم الصيغة والفعل في البطاقة، وإسقاط معرّف ويكي بيانات 1097869 sanitized-css text/css /* Template:ar-verb-form/style.css * Styling for Arabic verb form (non-lemma) pages — قالب:صيغة فعل. * Follows the patterns of ar-verb-infobox/style.css and ar-conj/style.css. * * The box floats left and is 22em wide, matching صندوق معلومات فعل on the lemma * page so that a lemma and one of its forms read as the same family of page. * * Do not write a template call in these comments — not even inside a comment. * MediaWiki expands templates on a TemplateStyles page before sanitizing it, so * a pair of literal braces here transcludes whatever it names, which is how this * page once ended up in تصنيف:صفحات صيغ أفعال بلا مطابقة. */ /* ── Light mode (default) ───────────────────────────────────────────────── */ .ar-verb-form-box { direction: rtl; text-align: right; font-size: 95%; background: #f9f9f9; border: 1px solid #a2a9b1; border-collapse: collapse; width: 22em; max-width: 100%; float: left; clear: left; margin: 0.5em 0 0.5em 1em; } .ar-verb-form-box .avf-head { background: #e8f5e8; color: #000; text-align: center; font-weight: normal; padding: 0.7em 0.5em; /* Explicit on all four sides: with border-collapse the cell border wins over the table's, so relying on the table alone loses the top edge. */ border: 1px solid #a2a9b1; } /* The form this page is about, and the verb it belongs to, at the same size. The form names the page, but the lemma is where the reader is being sent; setting the title twice as large as the link below it says the opposite. */ .ar-verb-form-box .avf-form, .ar-verb-form-box .avf-lemma { font-size: 150%; font-weight: bold; line-height: 1.4; } .ar-verb-form-box .avf-of { font-size: 85%; color: #54595d; line-height: 1.6; } /* Where to go for everything this page deliberately does not carry. */ .ar-verb-form-box .avf-note { font-size: 85%; color: #54595d; margin-top: 0.4em; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.35em 0.6em; vertical-align: middle; border: 1px solid #eaecf0; } /* Shrink-to-fit label column: a fixed width leaves a wide empty grey band on a narrow screen, which is what this replaces. */ .ar-verb-form-box > tbody > tr > th { background: #f1f5f1; color: #000; font-weight: bold; text-align: right; width: 1%; white-space: nowrap; } .ar-verb-form-box .avf-head { width: auto; } .ar-verb-form-box td { background: #fff; color: #000; } /* Ends the float started by the box, so the conjugation table starts below it instead of wrapping around it — the effect lemma pages get from {{-}}. */ .avf-clear { clear: both; } /* ── The cells this page is about, in the conjugation table ─────────────── */ /* Module:ar-verb wraps the matching cells' contents in this span when it is passed |بؤرة=. The span is inside the cell, not the cell itself, so it has to carry its own padding to read as a highlight rather than as coloured text. Unscoped on purpose: the table is rendered by {{تصريف}}, which knows nothing about this stylesheet, and the class name is unique enough to stand alone. */ .avf-focus { display: inline-block; padding: 0.1em 0.4em; border-radius: 2px; background: #fef6d5; box-shadow: 0 0 0 2px #edab00; } /* ── Dark mode: explicit user preference ────────────────────────────────── */ html.skin-theme-clientpref-night .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-note, html.skin-theme-clientpref-night .ar-verb-form-box .avf-of { color: #b8b8b8; } html.skin-theme-clientpref-night .ar-verb-form-box > tbody > tr > th { background: #3a5a3a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .avf-focus { background: #4a3d00; color: #f8f9fa; box-shadow: 0 0 0 2px #edab00; } /* ── Dark mode: system preference ───────────────────────────────────────── */ @media screen and (prefers-color-scheme: dark) { html.skin-theme-clientpref-os .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-note, html.skin-theme-clientpref-os .ar-verb-form-box .avf-of { color: #b8b8b8; } html.skin-theme-clientpref-os .ar-verb-form-box > tbody > tr > th { background: #3a5a3a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .avf-focus { background: #4a3d00; color: #f8f9fa; box-shadow: 0 0 0 2px #edab00; } } /* ── Small screens ──────────────────────────────────────────────────────── */ @media (max-width: 720px) { /* Floating a 22em box next to body text does not work on a phone: it leaves the label column as a tall grey band with the text squeezed beside it. Full width, no float. */ .ar-verb-form-box { float: none; clear: both; width: 100%; margin: 0.5em 0; font-size: 90%; } .ar-verb-form-box .avf-form, .ar-verb-form-box .avf-lemma { font-size: 135%; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.3em 0.45em; } } /* ── Print ──────────────────────────────────────────────────────────────── */ @media print { .ar-verb-form-box { border: 1px solid #000; background: #fff; float: none; width: 100%; } .ar-verb-form-box .avf-head { background: #e0e0e0; color: #000; border-color: #000; } .ar-verb-form-box > tbody > tr > th { background: #f0f0f0; color: #000; } .ar-verb-form-box td { background: #fff; color: #000; } .avf-focus { background: #fff; box-shadow: 0 0 0 2px #000; } } j1t7jw9c9krcjh33qs5l8ta4f3n28yc 1097880 1097869 2026-08-02T08:45:23Z ForzaGreen 28665 تظليل خانة التصريف كاملة بدل الكلمة وحدها 1097880 sanitized-css text/css /* Template:ar-verb-form/style.css * Styling for Arabic verb form (non-lemma) pages — قالب:صيغة فعل. * Follows the patterns of ar-verb-infobox/style.css and ar-conj/style.css. * * The box floats left and is 22em wide, matching صندوق معلومات فعل on the lemma * page so that a lemma and one of its forms read as the same family of page. * * Do not write a template call in these comments — not even inside a comment. * MediaWiki expands templates on a TemplateStyles page before sanitizing it, so * a pair of literal braces here transcludes whatever it names, which is how this * page once ended up in تصنيف:صفحات صيغ أفعال بلا مطابقة. */ /* ── Light mode (default) ───────────────────────────────────────────────── */ .ar-verb-form-box { direction: rtl; text-align: right; font-size: 95%; background: #f9f9f9; border: 1px solid #a2a9b1; border-collapse: collapse; width: 22em; max-width: 100%; float: left; clear: left; margin: 0.5em 0 0.5em 1em; } .ar-verb-form-box .avf-head { background: #e8f5e8; color: #000; text-align: center; font-weight: normal; padding: 0.7em 0.5em; /* Explicit on all four sides: with border-collapse the cell border wins over the table's, so relying on the table alone loses the top edge. */ border: 1px solid #a2a9b1; } /* The form this page is about, and the verb it belongs to, at the same size. The form names the page, but the lemma is where the reader is being sent; setting the title twice as large as the link below it says the opposite. */ .ar-verb-form-box .avf-form, .ar-verb-form-box .avf-lemma { font-size: 150%; font-weight: bold; line-height: 1.4; } .ar-verb-form-box .avf-of { font-size: 85%; color: #54595d; line-height: 1.6; } /* Where to go for everything this page deliberately does not carry. */ .ar-verb-form-box .avf-note { font-size: 85%; color: #54595d; margin-top: 0.4em; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.35em 0.6em; vertical-align: middle; border: 1px solid #eaecf0; } /* Shrink-to-fit label column: a fixed width leaves a wide empty grey band on a narrow screen, which is what this replaces. */ .ar-verb-form-box > tbody > tr > th { background: #f1f5f1; color: #000; font-weight: bold; text-align: right; width: 1%; white-space: nowrap; } .ar-verb-form-box .avf-head { width: auto; } .ar-verb-form-box td { background: #fff; color: #000; } /* Ends the float started by the box, so the conjugation table starts below it instead of wrapping around it — the effect lemma pages get from the clear template. Naming that template here in braces is what the warning above is about: it put this page in تصنيف:صفحات بها أخطاء في البرنامج النصي. */ .avf-clear { clear: both; } /* ── The cells this page is about, in the conjugation table ─────────────── */ /* Module:ar-verb puts this class on the matching cells themselves when it is passed the focus parameter, so the highlight is the whole cell rather than a patch around the word. The table is rendered by the conjugation template, which knows nothing about this stylesheet, hence the inflection-table selector rather than a local one. It also has to out-specify that table's own td rule, which sets a white background — a bare .avf-focus loses to it and the cell stays white. The table sets border-collapse, so the 2px border wins the shared edge against the neighbours' 1px and draws a closed rectangle round the cell. */ .inflection-table td.avf-focus { background: #fef6d5; border: 2px solid #edab00; } /* ── Dark mode: explicit user preference ────────────────────────────────── */ html.skin-theme-clientpref-night .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box .avf-note, html.skin-theme-clientpref-night .ar-verb-form-box .avf-of { color: #b8b8b8; } html.skin-theme-clientpref-night .ar-verb-form-box > tbody > tr > th { background: #3a5a3a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-night .inflection-table td.avf-focus { background: #4a3d00; color: #f8f9fa; border: 2px solid #edab00; } /* ── Dark mode: system preference ───────────────────────────────────────── */ @media screen and (prefers-color-scheme: dark) { html.skin-theme-clientpref-os .ar-verb-form-box { background: #1a1a1a; border-color: #555; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-head { background: #2d4a2d; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box .avf-note, html.skin-theme-clientpref-os .ar-verb-form-box .avf-of { color: #b8b8b8; } html.skin-theme-clientpref-os .ar-verb-form-box > tbody > tr > th { background: #3a5a3a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .ar-verb-form-box td { background: #2a2a2a; color: #e0e0e0; border-color: #4a4a4a; } html.skin-theme-clientpref-os .inflection-table td.avf-focus { background: #4a3d00; color: #f8f9fa; border: 2px solid #edab00; } } /* ── Small screens ──────────────────────────────────────────────────────── */ @media (max-width: 720px) { /* Floating a 22em box next to body text does not work on a phone: it leaves the label column as a tall grey band with the text squeezed beside it. Full width, no float. */ .ar-verb-form-box { float: none; clear: both; width: 100%; margin: 0.5em 0; font-size: 90%; } .ar-verb-form-box .avf-form, .ar-verb-form-box .avf-lemma { font-size: 135%; } .ar-verb-form-box th, .ar-verb-form-box td { padding: 0.3em 0.45em; } } /* ── Print ──────────────────────────────────────────────────────────────── */ @media print { .ar-verb-form-box { border: 1px solid #000; background: #fff; float: none; width: 100%; } .ar-verb-form-box .avf-head { background: #e0e0e0; color: #000; border-color: #000; } .ar-verb-form-box > tbody > tr > th { background: #f0f0f0; color: #000; } .ar-verb-form-box td { background: #fff; color: #000; } .inflection-table td.avf-focus { background: #fff; border: 2px solid #000; } } 3cvi1bpuv0j3wazeu9uifh0p56cs8e2 قالب:صيغة فعل 10 240797 1097811 2026-08-01T13:45:36Z ForzaGreen 28665 قالب جديد: صيغة فعل — يعرض صفحة صيغة من صيغ تصريف الفعل 1097811 wikitext text/x-wiki <includeonly><templatestyles src="Template:ar-verb-form/style.css" />{{#invoke:ar-verb-form|main}}</includeonly><noinclude> {{توثيق}} <!-- قالب:صيغة فعل يعرض صفحة صيغة من صيغ تصريف فعل عربي (مثل: أَكَلْتُ، يَكْتُبُونَ، اُكْتُبْ). الاستخدام: {{صيغة فعل|جذر=أكل|وزن=فعَل يفعُل|معجم=L12100}} الوسائط: جذر - الجذر اللغوي للفعل (مطلوب) وزن - الوزن الصرفي (مطلوب)، مثل: فعَل يفعُل، فعّل، استفعل معجم - معرف الوحدة المعجمية في ويكي بيانات (اختياري) صفحة - عنوان بديل للاختبار والتوثيق (اختياري) أقسام=لا - يقتصر على البطاقة والمعاني، لمن أراد تحرير باقي الأقسام يدويا إذا كانت الصيغة نفسها تعود لأكثر من فعل، تُكرَّر الوسائط بأرقام: {{صيغة فعل|جذر=أتو|وزن=أفعل|معجم=L1|جذر2=أتي|وزن2=أفعل|معجم2=L2}} ملاحظات: - لا تُذكر الخانة الصرفية في الوسائط. تستنتجها [[وحدة:ar-verb-form]] بتصريف الفعل ومطابقة عنوان الصفحة، فلا يمكن أن تُنسب الصيغة إلى خانة خاطئة. - المعاني والشواهد والمراجع تبقى في صفحة الفعل وحدها؛ هذه الصفحة تحيل إليها. - إذا لم يطابق العنوان أي خانة، تُدرج الصفحة في [[:تصنيف:صفحات صيغ أفعال بلا مطابقة]] بدل أن تعرض نحوا قديما بصمت. --> </noinclude> b1qzl77zvg8jaai9p32yvszt5iduy44 1097851 1097811 2026-08-01T18:57:52Z ForzaGreen 28665 قالب جديد: صيغة فعل — يعرض صفحة صيغة من صيغ تصريف الفعل 1097851 wikitext text/x-wiki <includeonly><templatestyles src="Template:ar-verb-form/style.css" /> {{#invoke:ar-verb-form|main}}</includeonly><noinclude> {{توثيق}} <!-- قالب:صيغة فعل يعرض صفحة صيغة من صيغ تصريف فعل عربي (مثل: أَكَلْتُ، يَكْتُبُونَ، اُكْتُبْ). الاستخدام: {{صيغة فعل|جذر=أكل|وزن=فعَل يفعُل|معجم=L12100}} الوسائط: جذر - الجذر اللغوي للفعل (مطلوب) وزن - الوزن الصرفي (مطلوب)، مثل: فعَل يفعُل، فعّل، استفعل معجم - معرف الوحدة المعجمية في ويكي بيانات (اختياري) صفحة - عنوان بديل للاختبار والتوثيق (اختياري) أقسام=لا - يقتصر على البطاقة والمعاني، لمن أراد تحرير باقي الأقسام يدويا إذا كانت الصيغة نفسها تعود لأكثر من فعل، تُكرَّر الوسائط بأرقام: {{صيغة فعل|جذر=أتو|وزن=أفعل|معجم=L1|جذر2=أتي|وزن2=أفعل|معجم2=L2}} ملاحظات: - لا تُذكر الخانة الصرفية في الوسائط. تستنتجها [[وحدة:ar-verb-form]] بتصريف الفعل ومطابقة عنوان الصفحة، فلا يمكن أن تُنسب الصيغة إلى خانة خاطئة. - المعاني والشواهد والمراجع تبقى في صفحة الفعل وحدها؛ هذه الصفحة تحيل إليها. - إذا لم يطابق العنوان أي خانة، تُدرج الصفحة في [[:تصنيف:صفحات صيغ أفعال بلا مطابقة]] بدل أن تعرض نحوا قديما بصمت. --> </noinclude> 5jrhcnbc8vg3bj9k6or2cja4lnjngyu 1097868 1097851 2026-08-02T05:43:12Z ForzaGreen 28665 صفحات صيغ الأفعال: الاكتفاء بجدول التصريف الكامل مبسوطًا بدل الجدول المصغّر، وتساوي حجم الصيغة والفعل في البطاقة، وإسقاط معرّف ويكي بيانات 1097868 wikitext text/x-wiki <includeonly><templatestyles src="Template:ar-verb-form/style.css" /> {{#invoke:ar-verb-form|main}}</includeonly><noinclude> {{توثيق}} <!-- قالب:صيغة فعل يعرض صفحة صيغة من صيغ تصريف فعل عربي (مثل: أَكَلْتُ، يَكْتُبُونَ، اُكْتُبْ). الاستخدام: {{صيغة فعل|جذر=أكل|وزن=فعَل يفعُل}} الوسائط: جذر - الجذر اللغوي للفعل (مطلوب) وزن - الوزن الصرفي (مطلوب)، مثل: فعَل يفعُل، فعّل، استفعل صفحة - عنوان بديل للاختبار والتوثيق (اختياري) أقسام=لا - يقتصر على البطاقة والمعاني، لمن أراد تحرير باقي الأقسام يدويا إذا كانت الصيغة نفسها تعود لأكثر من فعل، تُكرَّر الوسائط بأرقام: {{صيغة فعل|جذر=أتو|وزن=أفعل|جذر2=أتي|وزن2=أفعل}} ملاحظات: - لا تُذكر الخانة الصرفية في الوسائط. تستنتجها [[وحدة:ar-verb-form]] بتصريف الفعل ومطابقة عنوان الصفحة، فلا يمكن أن تُنسب الصيغة إلى خانة خاطئة. - المعاني والشواهد والمراجع تبقى في صفحة الفعل وحدها؛ هذه الصفحة تحيل إليها. - إذا لم يطابق العنوان أي خانة، تُدرج الصفحة في [[:تصنيف:صفحات صيغ أفعال بلا مطابقة]] بدل أن تعرض نحوا قديما بصمت. --> </noinclude> nzpeb2utpeecmrv3kobq1mwed2rk79p تصنيف:صيغ أفعال عربية 14 240798 1097813 2026-08-01T13:50:22Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097813 wikitext text/x-wiki هذا التصنيف يجمع '''صيغ تصريف الأفعال العربية''' — الصفحات التي تمثل صيغة واحدة من صيغ فعل (مثل [[كَتَبْتُ]]، [[يَكْتُبُونَ]]، [[اُكْتُبْ]])، لا الفعل نفسه. * المعاني والشواهد والمراجع تبقى في صفحة الفعل، وتحيل إليها صفحةُ الصيغة. * تُنشأ هذه الصفحات بقالب {{قا|صيغة فعل}}، الذي يستنتج الخانة الصرفية بتصريف الفعل عبر [[وحدة:ar-verb]] ومطابقة عنوان الصفحة، فلا تُذكر الخانة في نص الصفحة. [[تصنيف:أفعال عربية]] sjwopmat82nnqivm5le19wsgux8rdhs تصنيف:صفحات صيغ أفعال بلا مطابقة 14 240799 1097814 2026-08-01T13:50:32Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097814 wikitext text/x-wiki صفحات تستعمل قالب {{قا|صيغة فعل}} لكن عنوانها لا يطابق أي خانة من خانات تصريف الفعل المذكور. يحدث هذا عادةً لأحد سببين: * تغيّر [[وحدة:ar-verb]] فصار يولّد صيغة مختلفة عن عنوان الصفحة. * الجذر أو الوزن في القالب غير صحيح. الصفحات هنا تحتاج مراجعة يدوية. [[تصنيف:صيانة ويكاموس]] ktb4a9qwnvvmb4pmzh3st1wd8lh4ruq تصنيف:فعل مبني للمعلوم ماضي جمع متكلم 14 240800 1097815 2026-08-01T13:50:42Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097815 wikitext text/x-wiki [[تصنيف:فعل ماضي]] [[تصنيف:فعل مبني للمعلوم]] rk3vb9l25qpmqhcp9wmmklcpfieaf6m تصنيف:فعل مبني للمجهول ماضي مفرد مؤنث غائب 14 240801 1097816 2026-08-01T13:50:52Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097816 wikitext text/x-wiki [[تصنيف:فعل ماضي]] [[تصنيف:فعل مبني للمجهول]] kv4rm3e7o524a0pjvkbdjlm4nrucrhe تصنيف:فعل مبني للمعلوم ماضي مثنى مخاطب 14 240802 1097817 2026-08-01T13:51:02Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097817 wikitext text/x-wiki [[تصنيف:فعل ماضي]] [[تصنيف:فعل مبني للمعلوم]] rk3vb9l25qpmqhcp9wmmklcpfieaf6m تصنيف:فعل مبني للمعلوم مضارع مثنى مخاطب 14 240803 1097818 2026-08-01T13:51:12Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097818 wikitext text/x-wiki [[تصنيف:فعل مضارع]] [[تصنيف:فعل مبني للمعلوم]] lc0mh5wjrvf2m5y3v6jnjwul6tf0qqh تصنيف:اُفْعُلِي 14 240804 1097819 2026-08-01T13:51:22Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097819 wikitext text/x-wiki [[تصنيف:تفعيلات]] h7jtbyhvmw6smskkqjcgcj85pf5ks9m تصنيف:تُفْعِلَانِ 14 240805 1097820 2026-08-01T13:51:32Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097820 wikitext text/x-wiki [[تصنيف:تفعيلات]] h7jtbyhvmw6smskkqjcgcj85pf5ks9m تصنيف:أَفْعَلَتْ 14 240806 1097821 2026-08-01T13:51:42Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097821 wikitext text/x-wiki [[تصنيف:تفعيلات]] h7jtbyhvmw6smskkqjcgcj85pf5ks9m تصنيف:د ح ر ج 14 240807 1097822 2026-08-01T13:51:52Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097822 wikitext text/x-wiki [[تصنيف:جذور د]] [[تصنيف:جذور رباعية]] pak96dn1efr36lpy50xlt9e2c1dkgka تصنيف:أ ت و 14 240808 1097823 2026-08-01T13:52:02Z ForzaGreen 28665 تصنيف جديد لصيغ تصريف الأفعال 1097823 wikitext text/x-wiki [[تصنيف:جذور أ]] [[تصنيف:جذور ثلاثية]] f7eiibq5oo0y7jd3xooe0hkv265wd3e اُكْتُبِي 0 240809 1097824 2026-08-01T13:53:02Z ForzaGreen 28665 إنشاء صفحة صيغة فعل بقالب {{صيغة فعل}} (عيّنة للعرض) 1097824 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=كتب|وزن=فعَل يفعُل|معجم=L12100}} mekklcpzj7cg6tje02sqney4kghgqx9 1097870 1097824 2026-08-02T05:43:46Z ForzaGreen 28665 صيغة فعل: إسقاط معرّف ويكي بيانات من الاستدعاء 1097870 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=كتب|وزن=فعَل يفعُل}} 1eem655vlta7mal359cub7ud2006qos قُلْنَا 0 240810 1097825 2026-08-01T13:53:12Z ForzaGreen 28665 إنشاء صفحة صيغة فعل بقالب {{صيغة فعل}} (عيّنة للعرض) 1097825 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=قول|وزن=فعَل يفعُل|معجم=L1370040}} beaxs7eso2xr40ni3h62ry31p71y5z4 1097871 1097825 2026-08-02T05:43:56Z ForzaGreen 28665 صيغة فعل: إسقاط معرّف ويكي بيانات من الاستدعاء 1097871 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=قول|وزن=فعَل يفعُل}} r77pnndepqog6m72k2i81e15c8s3762 رَمَوْا 0 240811 1097826 2026-08-01T13:53:22Z ForzaGreen 28665 إنشاء صفحة صيغة فعل بقالب {{صيغة فعل}} (عيّنة للعرض) 1097826 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=رمي|وزن=فعَل يفعِل|معجم=L1487881}} 6az16ay1fjxir7r9phzti8qxngvgiks 1097872 1097826 2026-08-02T05:44:06Z ForzaGreen 28665 صيغة فعل: إسقاط معرّف ويكي بيانات من الاستدعاء 1097872 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=رمي|وزن=فعَل يفعِل}} rxmfckcpi18qa44h18obtdgu0xphgdn رُمِيَتْ 0 240812 1097827 2026-08-01T13:53:32Z ForzaGreen 28665 إنشاء صفحة صيغة فعل بقالب {{صيغة فعل}} (عيّنة للعرض) 1097827 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=رمي|وزن=فعَل يفعِل|معجم=L1487881}} 6az16ay1fjxir7r9phzti8qxngvgiks 1097873 1097827 2026-08-02T05:44:16Z ForzaGreen 28665 صيغة فعل: إسقاط معرّف ويكي بيانات من الاستدعاء 1097873 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=رمي|وزن=فعَل يفعِل}} rxmfckcpi18qa44h18obtdgu0xphgdn دَحْرَجْتُمَا 0 240813 1097828 2026-08-01T13:53:42Z ForzaGreen 28665 إنشاء صفحة صيغة فعل بقالب {{صيغة فعل}} (عيّنة للعرض) 1097828 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=دحرج|وزن=فعلل|معجم=L1476940}} igxgf9woqv6wbhdcp0ahl9ir71nbpvc 1097874 1097828 2026-08-02T05:44:26Z ForzaGreen 28665 صيغة فعل: إسقاط معرّف ويكي بيانات من الاستدعاء 1097874 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=دحرج|وزن=فعلل}} 0vvf2b6tpjtlqrvpcinyg90dufrzt18 تُحْسِبَانِ 0 240814 1097829 2026-08-01T13:53:52Z ForzaGreen 28665 إنشاء صفحة صيغة فعل بقالب {{صيغة فعل}} (عيّنة للعرض) 1097829 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=حسب|وزن=أفعل|معجم=L1534392}} fuj2az7ias3255hvm6e42gn84pou2hm 1097875 1097829 2026-08-02T05:44:36Z ForzaGreen 28665 صيغة فعل: إسقاط معرّف ويكي بيانات من الاستدعاء 1097875 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=حسب|وزن=أفعل}} m1t58runrcqzzsjlkts4kic08hy67vp آتَتْ 0 240815 1097830 2026-08-01T13:54:02Z ForzaGreen 28665 إنشاء صفحة صيغة فعل بقالب {{صيغة فعل}} (عيّنة للعرض) 1097830 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=أتو|وزن=أفعل|معجم=L1480527|جذر2=أتي|وزن2=أفعل|معجم2=L1480527}} jv0zumx2ittps1w5isa7q9t9dytxtk4 1097876 1097830 2026-08-02T05:44:46Z ForzaGreen 28665 صيغة فعل: إسقاط معرّف ويكي بيانات من الاستدعاء 1097876 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=أتو|وزن=أفعل|جذر2=أتي|وزن2=أفعل}} r8b6w4glsbb85zknf67q1lr5mn877yy اِحْوَوَّى 0 240816 1097834 2026-08-01T14:26:57Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097834 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1534748}} === المعاني === '''اِحْوَوَّى''' {{افعوّل}} {{معجمية|L1534748|معاني}} === النطق === * {{أصد-عر|اِحْوَوَّى}} {{-}} === التصريفات === {{تصريف|جذر=حوو|وزن=افعوّل}} === المراجع === {{مراجع}} bwaa7rlmbuc4sd9kk69o7oyn5wmcxwe رَحْرَحَ 0 240817 1097835 2026-08-01T14:32:11Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097835 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1535924}} === المعاني === '''رَحْرَحَ''' {{فعلل}} {{معجمية|L1535924|معاني}} === النطق === * {{أصد-عر|رَحْرَحَ}} {{-}} === التصريفات === {{تصريف|جذر=رحرح|وزن=فعلل}} === المراجع === {{مراجع}} s29dmqm2t1il0i7xzxhu1hmw6ocrg0n حَفْحَفَ 0 240818 1097836 2026-08-01T14:33:30Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097836 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1534507}} === المعاني === '''حَفْحَفَ''' {{فعلل}} {{معجمية|L1534507|معاني}} === النطق === * {{أصد-عر|حَفْحَفَ}} {{-}} === التصريفات === {{تصريف|جذر=حفحف|وزن=فعلل}} === المراجع === {{مراجع}} 1wpydq5wkzuofl61gqtqk968cl9h7ai زَامَنَ 0 240819 1097837 2026-08-01T14:35:37Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097837 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1484638}} === المعاني === '''زَامَنَ''' {{فاعل}} {{معجمية|L1484638|معاني}} === النطق === * {{أصد-عر|زَامَنَ}} {{-}} === التصريفات === {{تصريف|جذر=زمن|وزن=فاعل}} === المراجع === {{مراجع}} fh2mqi14j7hi6ujb0nln89b79e5p9th تَرَاضَخَ 0 240820 1097838 2026-08-01T14:38:49Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097838 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1536051}} === المعاني === '''تَرَاضَخَ''' {{تفاعل}} {{معجمية|L1536051|معاني}} === النطق === * {{أصد-عر|تَرَاضَخَ}} {{-}} === التصريفات === {{تصريف|جذر=رضخ|وزن=تفاعل}} === المراجع === {{مراجع}} 1pmnvw6p7fion0o7vv2b3w87rt4yxos اِزْدَجَرَ 0 240821 1097839 2026-08-01T14:39:52Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097839 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1477194}} === المعاني === '''اِزْدَجَرَ''' {{افتعل}} {{معجمية|L1477194|معاني}} === النطق === * {{أصد-عر|اِزْدَجَرَ}} {{-}} === التصريفات === {{تصريف|جذر=زجر|وزن=افتعل}} === المراجع === {{مراجع}} e86gxb8gwuulxn1yql7qqlyszidc5t8 زَانَى 0 240822 1097840 2026-08-01T14:41:58Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097840 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1536651}} === المعاني === '''زَانَى''' {{فاعل}} {{معجمية|L1536651|معاني}} === النطق === * {{أصد-عر|زَانَى}} {{-}} === التصريفات === {{تصريف|جذر=زني|وزن=فاعل}} === المراجع === {{مراجع}} 21984zqp3q580um8dqcui5q2gnpgmr9 اِدَّفَأَ 0 240823 1097841 2026-08-01T14:43:03Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097841 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1535452}} === المعاني === '''اِدَّفَأَ''' {{افتعل}} {{معجمية|L1535452|معاني}} === النطق === * {{أصد-عر|اِدَّفَأَ}} {{-}} === التصريفات === {{تصريف|جذر=دفأ|وزن=افتعل}} === المراجع === {{مراجع}} ati8goeu0mh995ijqjj9xd4cq8kcxkb أَحَاكَ 0 240824 1097842 2026-08-01T14:44:05Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097842 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1534741}} === المعاني === '''أَحَاكَ''' {{أفعل}} {{معجمية|L1534741|معاني}} === النطق === * {{أصد-عر|أَحَاكَ}} {{-}} === التصريفات === {{تصريف|جذر=حيك|وزن=أفعل}} === المراجع === {{مراجع}} 81w4t0sy9nxxm57gt4n9rf44iwv99kh تَدَمَّسَ 0 240825 1097843 2026-08-01T14:47:46Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097843 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1535556}} === المعاني === '''تَدَمَّسَ''' {{تفعّل}} {{معجمية|L1535556|معاني}} === النطق === * {{أصد-عر|تَدَمَّسَ}} {{-}} === التصريفات === {{تصريف|جذر=دمس|وزن=تفعّل}} === المراجع === {{مراجع}} j24n20m48sl8bcn8u90zk7hdcvdjj7f أَحْذَى 0 240826 1097844 2026-08-01T14:50:11Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097844 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1534300}} === المعاني === '''أَحْذَى''' {{أفعل}} {{معجمية|L1534300|معاني}} === النطق === * {{أصد-عر|أَحْذَى}} {{-}} === التصريفات === {{تصريف|جذر=حذو|وزن=أفعل}} === المراجع === {{مراجع}} jvi7gucqk5kk6c59jlfj6wzzd8cn9hn تَرَجَّبَ 0 240827 1097845 2026-08-01T14:51:47Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097845 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1535896}} === المعاني === '''تَرَجَّبَ''' {{تفعّل}} {{معجمية|L1535896|معاني}} === النطق === * {{أصد-عر|تَرَجَّبَ}} {{-}} === التصريفات === {{تصريف|جذر=رجب|وزن=تفعّل}} === المراجع === {{مراجع}} hup144wnxo2hlhkmzymy37ylnnbj668 اِسْتَرْشَدَ 0 240828 1097846 2026-08-01T14:53:51Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097846 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1497391}} === المعاني === '''اِسْتَرْشَدَ''' {{استفعل}} {{معجمية|L1497391|معاني}} === النطق === * {{أصد-عر|اِسْتَرْشَدَ}} {{-}} === التصريفات === {{تصريف|جذر=رشد|وزن=استفعل}} === المراجع === {{مراجع}} a6m57wlf4arlfgmcryagtvva0fx4bt4 رَعَزَ 0 240829 1097847 2026-08-01T14:55:29Z نور إسماعيل 37425 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097847 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1544631}} === المعاني === '''رَعَزَ''' {{فتح}} {{معجمية|L1544631|معاني}} === النطق === * {{أصد-عر|رَعَزَ}} {{-}} === التصريفات === {{تصريف|جذر=رعز|وزن=فعَل يفعَل}} === المراجع === {{مراجع}} i49qk4z3ta5k62vq91qour3usvi9me5 تَبَسْبَسَ 0 240830 1097848 2026-08-01T16:38:20Z حسام الدين 22692 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097848 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1533005}} === المعاني === '''تَبَسْبَسَ''' {{تفعلل}} {{معجمية|L1533005|معاني}} === النطق === * {{أصد-عر|تَبَسْبَسَ}} {{-}} === التصريفات === {{تصريف|جذر=بسبس|وزن=تفعلل}} === المراجع === {{مراجع}} f6uay2knqd69kwu9d680yo3jg2mo0r6 تَسَعَّرَ 0 240831 1097852 2026-08-01T20:35:41Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097852 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1536924}} === المعاني === '''تَسَعَّرَ''' {{تفعّل}} {{معجمية|L1536924|معاني}} === النطق === * {{أصد-عر|تَسَعَّرَ}} {{-}} === التصريفات === {{تصريف|جذر=سعر|وزن=تفعّل}} === المراجع === {{مراجع}} mx17ne6gu9t0znangcyahht4ya23k7c اِسْتَعَرَ 0 240832 1097853 2026-08-01T20:39:00Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097853 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1536923}} === المعاني === '''اِسْتَعَرَ''' {{افتعل}} {{معجمية|L1536923|معاني}} === النطق === * {{أصد-عر|اِسْتَعَرَ}} {{-}} === التصريفات === {{تصريف|جذر=سعر|وزن=افتعل}} === المراجع === {{مراجع}} 8nitwpgcko7119tw0ku2ee26i724jun أَسْعَى 0 240833 1097854 2026-08-01T20:44:57Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097854 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1536935}} === المعاني === '''أَسْعَى''' {{أفعل}} {{معجمية|L1536935|معاني}} === النطق === * {{أصد-عر|أَسْعَى}} {{-}} === التصريفات === {{تصريف|جذر=سعي|وزن=أفعل}} === المراجع === {{مراجع}} 23m3cwfzh68y2eppvvmpur3h2zlk6yd سَقَّى 0 240834 1097855 2026-08-01T20:50:31Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097855 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1536994}} === المعاني === '''سَقَّى''' {{فعّل}} {{معجمية|L1536994|معاني}} === النطق === * {{أصد-عر|سَقَّى}} {{-}} === التصريفات === {{تصريف|جذر=سقي|وزن=فعّل}} === المراجع === {{مراجع}} ht2xpy9xxwdz2euynucnt50mqiax0ok تَسَاقَى 0 240835 1097856 2026-08-01T20:54:02Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097856 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1485777}} === المعاني === '''تَسَاقَى''' {{تفاعل}} {{معجمية|L1485777|معاني}} === النطق === * {{أصد-عر|تَسَاقَى}} {{-}} === التصريفات === {{تصريف|جذر=سقي|وزن=تفاعل}} === المراجع === {{مراجع}} kelbb47ffhi9y82ca6u9ht7a99tuu04 تَسَقَّى 0 240836 1097857 2026-08-01T20:58:32Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097857 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1536993}} === المعاني === '''تَسَقَّى''' {{تفعّل}} {{معجمية|L1536993|معاني}} === النطق === * {{أصد-عر|تَسَقَّى}} {{-}} === التصريفات === {{تصريف|جذر=سقي|وزن=تفعّل}} === المراجع === {{مراجع}} l06skl09p810rk3c7d7vrwu8l2d61zl سَاقَى 0 240837 1097858 2026-08-01T21:02:39Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097858 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1485250}} === المعاني === '''سَاقَى''' {{فاعل}} {{معجمية|L1485250|معاني}} === النطق === * {{أصد-عر|سَاقَى}} {{-}} === التصريفات === {{تصريف|جذر=سقي|وزن=فاعل}} === المراجع === {{مراجع}} hbgd26o41agtvbd14hh8759b59zg1kr سَاعَى 0 240838 1097859 2026-08-01T21:08:16Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097859 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1496719}} === المعاني === '''سَاعَى''' {{فاعل}} {{معجمية|L1496719|معاني}} === النطق === * {{أصد-عر|سَاعَى}} {{-}} === التصريفات === {{تصريف|جذر=سعي|وزن=فاعل}} === المراجع === {{مراجع}} 0wl263ljtnjd0qbp6dines1dao6ol72 أَسْرَى 0 240839 1097860 2026-08-01T21:11:29Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097860 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1483960}} === المعاني === '''أَسْرَى''' {{أفعل}} {{معجمية|L1483960|معاني}} === النطق === * {{أصد-عر|أَسْرَى}} {{-}} === التصريفات === {{تصريف|جذر=سري|وزن=أفعل}} === المراجع === {{مراجع}} 6oxk99v7y8370opu0tyh6hww9cf9rp7 سَرِيَ 0 240840 1097861 2026-08-01T21:14:34Z إسلام 12622 إنشاء صفحة فعل من بيانات المعاجم (ar-senses tool) 1097861 wikitext text/x-wiki == {{اللغة|عربية}} == {{صندوق معلومات فعل|L1544838}} === المعاني === '''سَرِيَ''' {{سمع}} {{معجمية|L1544838|معاني}} === النطق === * {{أصد-عر|سَرِيَ}} {{-}} === التصريفات === {{تصريف|جذر=سرو|وزن=فعِل يفعَل}} === المراجع === {{مراجع}} rsakhrl4kfclxmwxognmfmizi7b1y2q يُقَالُ 0 240841 1097878 2026-08-02T05:48:02Z ForzaGreen 28665 إنشاء صفحة صيغة فعل من وحدة:ar-verb 1097878 wikitext text/x-wiki == {{اللغة|عربية}} == {{صيغة فعل|جذر=قول|وزن=فعَل يفعُل}} r77pnndepqog6m72k2i81e15c8s3762