Grammalecte  Check-in [5e196b8b64]

Overview
Comment:[core][js] change name of new functions for built-in objects
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Timelines: family | ancestors | descendants | both | trunk | core
Files: files | file ages | folders
SHA3-256: 5e196b8b64fc05db64504f9101acead33d396e031bb6a4115f936cce0d782aae
User & Date: olr on 2017-07-26 17:48:10
Other Links: manifest | tags
Context
2017-07-26
17:50
[fr] regex pour aller check-in: 918c1a03f0 user: olr tags: fr, trunk
17:48
[core][js] change name of new functions for built-in objects check-in: 5e196b8b64 user: olr tags: core, trunk
13:11
[fr] regex pour aller check-in: 49ea76c727 user: olr tags: fr, trunk
Changes

Modified compile_rules.py from [9f6ed3c641] to [c1af58c8e6].

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    # methods
    sCode = sCode.replace(".__len__()", ".length")
    sCode = sCode.replace(".endswith", ".endsWith")
    sCode = sCode.replace(".find", ".indexOf")
    sCode = sCode.replace(".startswith", ".startsWith")
    sCode = sCode.replace(".lower", ".toLowerCase")
    sCode = sCode.replace(".upper", ".toUpperCase")
    sCode = sCode.replace(".isdigit", "._isDigit")
    sCode = sCode.replace(".isupper", "._isUpperCase")
    sCode = sCode.replace(".islower", "._isLowerCase")
    sCode = sCode.replace(".istitle", "._isTitle")
    sCode = sCode.replace(".capitalize", "._toCapitalize")
    sCode = sCode.replace(".strip", "._trim")
    sCode = sCode.replace(".lstrip", "._trimLeft")
    sCode = sCode.replace(".rstrip", "._trimRight")
    sCode = sCode.replace('.replace("."', ".replace(/\./g")
    sCode = sCode.replace('.replace("..."', ".replace(/\.\.\./g")
    sCode = re.sub('.replace\("([^"]+)" ?,', ".replace(/\\1/g,", sCode)
    # regex
    sCode = re.sub('re.search\("([^"]+)", *(m.group\(\\d\))\)', "(\\2.search(/\\1/) >= 0)", sCode)
    sCode = re.sub(".search\\(/\\(\\?i\\)([^/]+)/\\) >= 0\\)", ".search(/\\1/i) >= 0)", sCode)
    sCode = re.sub('(look\\(sx?[][.a-z:()]*), "\\(\\?i\\)([^"]+)"', "\\1, /\\2/i", sCode)







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    # methods
    sCode = sCode.replace(".__len__()", ".length")
    sCode = sCode.replace(".endswith", ".endsWith")
    sCode = sCode.replace(".find", ".indexOf")
    sCode = sCode.replace(".startswith", ".startsWith")
    sCode = sCode.replace(".lower", ".toLowerCase")
    sCode = sCode.replace(".upper", ".toUpperCase")
    sCode = sCode.replace(".isdigit", ".gl_isDigit")
    sCode = sCode.replace(".isupper", ".gl_isUpperCase")
    sCode = sCode.replace(".islower", ".gl_isLowerCase")
    sCode = sCode.replace(".istitle", ".gl_isTitle")
    sCode = sCode.replace(".capitalize", ".gl_toCapitalize")
    sCode = sCode.replace(".strip", ".gl_trim")
    sCode = sCode.replace(".lstrip", ".gl_trimLeft")
    sCode = sCode.replace(".rstrip", ".gl_trimRight")
    sCode = sCode.replace('.replace("."', ".replace(/\./g")
    sCode = sCode.replace('.replace("..."', ".replace(/\.\.\./g")
    sCode = re.sub('.replace\("([^"]+)" ?,', ".replace(/\\1/g,", sCode)
    # regex
    sCode = re.sub('re.search\("([^"]+)", *(m.group\(\\d\))\)', "(\\2.search(/\\1/) >= 0)", sCode)
    sCode = re.sub(".search\\(/\\(\\?i\\)([^/]+)/\\) >= 0\\)", ".search(/\\1/i) >= 0)", sCode)
    sCode = re.sub('(look\\(sx?[][.a-z:()]*), "\\(\\?i\\)([^"]+)"', "\\1, /\\2/i", sCode)

Modified gc_core/js/ibdawg.js from [2d42754063] to [fca88c3e7c].

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    isValidToken (sToken) {
        // checks if sToken is valid (if there is hyphens in sToken, sToken is split, each part is checked)
        if (this.isValid(sToken)) {
            return true;
        }
        if (sToken.includes("-")) {
            if (sToken._count("-") > 4) {
                return true;
            }
            return sToken.split("-").every(sWord  =>  this.isValid(sWord)); 
        }
        return false;
    };

................................................................................
        }
        if (sWord.includes("’")) { // ugly hack
            sWord = sWord.replace("’", "'");
        }
        if (this.lookup(sWord)) {
            return true;
        }
        if (sWord.charAt(0)._isUpperCase()) {
            if (sWord.length > 1) {
                if (sWord._isTitle()) {
                    return !!this.lookup(sWord.toLowerCase());
                }
                if (sWord._isUpperCase()) {
                    if (this.bOptNumSigle) {
                        return true;
                    }
                    return !!(this.lookup(sWord.toLowerCase()) || this.lookup(sWord._toCapitalize()));
                }
                return !!this.lookup(sWord.slice(0, 1).toLowerCase() + sWord.slice(1));
            } else {
                return !!this.lookup(sWord.toLowerCase());
            }
        }
        return false;
................................................................................
        }
        return Boolean(this._convBytesToInteger(this.byDic.slice(iAddr, iAddr+this.nBytesArc)) & this._finalNodeMask);
    };

    getMorph (sWord) {
        // retrieves morphologies list, different casing allowed
        let l = this.morph(sWord);
        if (sWord[0]._isUpperCase()) {
            l = l.concat(this.morph(sWord.toLowerCase()));
            if (sWord._isUpperCase() && sWord.length > 1) {
                l = l.concat(this.morph(sWord._toCapitalize()));
            }
        }
        return l;
    };

    // morph (sWord) {
    //     is defined in constructor







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    isValidToken (sToken) {
        // checks if sToken is valid (if there is hyphens in sToken, sToken is split, each part is checked)
        if (this.isValid(sToken)) {
            return true;
        }
        if (sToken.includes("-")) {
            if (sToken.gl_count("-") > 4) {
                return true;
            }
            return sToken.split("-").every(sWord  =>  this.isValid(sWord)); 
        }
        return false;
    };

................................................................................
        }
        if (sWord.includes("’")) { // ugly hack
            sWord = sWord.replace("’", "'");
        }
        if (this.lookup(sWord)) {
            return true;
        }
        if (sWord.charAt(0).gl_isUpperCase()) {
            if (sWord.length > 1) {
                if (sWord.gl_isTitle()) {
                    return !!this.lookup(sWord.toLowerCase());
                }
                if (sWord.gl_isUpperCase()) {
                    if (this.bOptNumSigle) {
                        return true;
                    }
                    return !!(this.lookup(sWord.toLowerCase()) || this.lookup(sWord.gl_toCapitalize()));
                }
                return !!this.lookup(sWord.slice(0, 1).toLowerCase() + sWord.slice(1));
            } else {
                return !!this.lookup(sWord.toLowerCase());
            }
        }
        return false;
................................................................................
        }
        return Boolean(this._convBytesToInteger(this.byDic.slice(iAddr, iAddr+this.nBytesArc)) & this._finalNodeMask);
    };

    getMorph (sWord) {
        // retrieves morphologies list, different casing allowed
        let l = this.morph(sWord);
        if (sWord[0].gl_isUpperCase()) {
            l = l.concat(this.morph(sWord.toLowerCase()));
            if (sWord.gl_isUpperCase() && sWord.length > 1) {
                l = l.concat(this.morph(sWord.gl_toCapitalize()));
            }
        }
        return l;
    };

    // morph (sWord) {
    //     is defined in constructor

Modified gc_core/js/jsex_map.js from [181b814a6e] to [985754ee9e].

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// Map

if (Map.prototype.__grammalecte__ === undefined) {
    Map.prototype._shallowCopy = function () {
        let oNewMap = new Map();
        for (let [key, val] of this.entries()) {
            oNewMap.set(key, val);
        }
        return oNewMap;
    }

    Map.prototype._get = function (key, defaultValue) {
        let res = this.get(key);
        if (res !== undefined) {
            return res;
        }
        return defaultValue;
    }

    Map.prototype._toString = function () {
        // Default .toString() gives nothing useful
        let sRes = "{ ";
        for (let [k, v] of this.entries()) {
            sRes += (typeof k === "string") ? '"' + k + '": ' : k.toString() + ": ";
            sRes += (typeof v === "string") ? '"' + v + '", ' : v.toString() + ", ";
        }
        sRes = sRes.slice(0, -2) + " }"
        return sRes;
    }

    Map.prototype._update = function (dDict) {
        for (let [k, v] of dDict.entries()) {
            this.set(k, v);
        }
    }

    Map.prototype._updateOnlyExistingKeys = function (dDict) {
        for (let [k, v] of dDict.entries()) {
            if (this.has(k)){
                this.set(k, v);
            }
        }
    }

    Map.prototype.__grammalecte__ = true;
}



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// Map

if (Map.prototype.grammalecte === undefined) {
    Map.prototype.gl_shallowCopy = function () {
        let oNewMap = new Map();
        for (let [key, val] of this.entries()) {
            oNewMap.set(key, val);
        }
        return oNewMap;
    }

    Map.prototype.gl_get = function (key, defaultValue) {
        let res = this.get(key);
        if (res !== undefined) {
            return res;
        }
        return defaultValue;
    }

    Map.prototype.gl_toString = function () {
        // Default .toString() gives nothing useful
        let sRes = "{ ";
        for (let [k, v] of this.entries()) {
            sRes += (typeof k === "string") ? '"' + k + '": ' : k.toString() + ": ";
            sRes += (typeof v === "string") ? '"' + v + '", ' : v.toString() + ", ";
        }
        sRes = sRes.slice(0, -2) + " }"
        return sRes;
    }

    Map.prototype.gl_update = function (dDict) {
        for (let [k, v] of dDict.entries()) {
            this.set(k, v);
        }
    }

    Map.prototype.gl_updateOnlyExistingKeys = function (dDict) {
        for (let [k, v] of dDict.entries()) {
            if (this.has(k)){
                this.set(k, v);
            }
        }
    }

    Map.prototype.grammalecte = true;
}

Modified gc_core/js/jsex_regex.js from [bb46156b4b] to [cba83b3853].

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// regex

if (RegExp.prototype.__grammalecte__ === undefined) {
    RegExp.prototype._exec2 = function (sText, aGroupsPos, aNegLookBefore=null) {
        let m;
        while ((m = this.exec(sText)) !== null) {
            // we have to iterate over sText here too
            // because first match doesn’t imply it’s a valid match according to negative lookbefore assertions,
            // and even if first match is finally invalid, it doesn’t mean the following eligible matchs would be invalid too.
            if (aNegLookBefore !== null) {
                // check negative look before assertions
................................................................................
                    m.end.push(iPos + subm.length);
                }
            }
        }
        return m;
    }

    RegExp.prototype.__grammalecte__ = true;
}



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// regex

if (RegExp.prototype.grammalecte === undefined) {
    RegExp.prototype.gl_exec2 = function (sText, aGroupsPos, aNegLookBefore=null) {
        let m;
        while ((m = this.exec(sText)) !== null) {
            // we have to iterate over sText here too
            // because first match doesn’t imply it’s a valid match according to negative lookbefore assertions,
            // and even if first match is finally invalid, it doesn’t mean the following eligible matchs would be invalid too.
            if (aNegLookBefore !== null) {
                // check negative look before assertions
................................................................................
                    m.end.push(iPos + subm.length);
                }
            }
        }
        return m;
    }

    RegExp.prototype.grammalecte = true;
}

Modified gc_core/js/jsex_string.js from [adf06fbda5] to [1e9c89a872].

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// String

if (String.prototype.__grammalecte__ === undefined) {
    String.prototype._count = function (sSearch, bOverlapping) {
        // http://jsperf.com/string-ocurrence-split-vs-match/8
        if (sSearch.length <= 0) {
            return this.length + 1;
        }
        let nOccur = 0;
        let iPos = 0;
        let nStep = (bOverlapping) ? 1 : sSearch.length;
        while ((iPos = this.indexOf(sSearch, iPos)) >= 0) {
            nOccur++;
            iPos += nStep;
        }
        return nOccur;
    }
    String.prototype._isDigit = function () {
        return (this.search(/^[0-9⁰¹²³⁴⁵⁶⁷⁸⁹]+$/) !== -1);
    }
    String.prototype._isLowerCase = function () {
        return (this.search(/^[a-zà-öø-ÿ0-9-]+$/) !== -1);
    }
    String.prototype._isUpperCase = function () {
        return (this.search(/^[A-ZÀ-ÖØ-ߌ0-9-]+$/) !== -1);
    }
    String.prototype._isTitle = function () {
        return (this.search(/^[A-ZÀ-ÖØ-ߌ][a-zà-öø-ÿ'’-]+$/) !== -1);
    }
    String.prototype._toCapitalize = function () {
        return this.slice(0,1).toUpperCase() + this.slice(1).toLowerCase();
    }
    String.prototype._expand = function (oMatch) {
        let sNew = this;
        for (let i = 0; i < oMatch.length ; i++) {
            let z = new RegExp("\\\\"+parseInt(i), "g");
            sNew = sNew.replace(z, oMatch[i]);
        }
        return sNew;
    }
    String.prototype._trimRight = function (sChars) {
        let z = new RegExp("["+sChars+"]+$");
        return this.replace(z, "");
    }
    String.prototype._trimLeft = function (sChars) {
        let z = new RegExp("^["+sChars+"]+");
        return this.replace(z, "");
    }
    String.prototype._trim = function (sChars) {
        let z1 = new RegExp("^["+sChars+"]+");
        let z2 = new RegExp("["+sChars+"]+$");
        return this.replace(z1, "").replace(z2, "");
    }

    String.prototype.__grammalecte__ = true;
}



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// String

if (String.prototype.grammalecte === undefined) {
    String.prototype.gl_count = function (sSearch, bOverlapping) {
        // http://jsperf.com/string-ocurrence-split-vs-match/8
        if (sSearch.length <= 0) {
            return this.length + 1;
        }
        let nOccur = 0;
        let iPos = 0;
        let nStep = (bOverlapping) ? 1 : sSearch.length;
        while ((iPos = this.indexOf(sSearch, iPos)) >= 0) {
            nOccur++;
            iPos += nStep;
        }
        return nOccur;
    }
    String.prototype.gl_isDigit = function () {
        return (this.search(/^[0-9⁰¹²³⁴⁵⁶⁷⁸⁹]+$/) !== -1);
    }
    String.prototype.gl_isLowerCase = function () {
        return (this.search(/^[a-zà-öø-ÿ0-9-]+$/) !== -1);
    }
    String.prototype.gl_isUpperCase = function () {
        return (this.search(/^[A-ZÀ-ÖØ-ߌ0-9-]+$/) !== -1);
    }
    String.prototype.gl_isTitle = function () {
        return (this.search(/^[A-ZÀ-ÖØ-ߌ][a-zà-öø-ÿ'’-]+$/) !== -1);
    }
    String.prototype.gl_toCapitalize = function () {
        return this.slice(0,1).toUpperCase() + this.slice(1).toLowerCase();
    }
    String.prototype.gl_expand = function (oMatch) {
        let sNew = this;
        for (let i = 0; i < oMatch.length ; i++) {
            let z = new RegExp("\\\\"+parseInt(i), "g");
            sNew = sNew.replace(z, oMatch[i]);
        }
        return sNew;
    }
    String.prototype.gl_trimRight = function (sChars) {
        let z = new RegExp("["+sChars+"]+$");
        return this.replace(z, "");
    }
    String.prototype.gl_trimLeft = function (sChars) {
        let z = new RegExp("^["+sChars+"]+");
        return this.replace(z, "");
    }
    String.prototype.gl_trim = function (sChars) {
        let z1 = new RegExp("^["+sChars+"]+");
        let z2 = new RegExp("["+sChars+"]+$");
        return this.replace(z1, "").replace(z2, "");
    }

    String.prototype.grammalecte = true;
}

Modified gc_core/js/lang_core/gc_engine.js from [ee18ec83ee] to [fb021578af].

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${map}


function capitalizeArray (aArray) {
    // can’t map on user defined function??
    let aNew = [];
    for (let i = 0; i < aArray.length; i = i + 1) {
        aNew[i] = aArray[i]._toCapitalize();
    }
    return aNew;
}

const ibdawg = require("resource://grammalecte/ibdawg.js");
const helpers = require("resource://grammalecte/helpers.js");
const gc_options = require("resource://grammalecte/${lang}/gc_options.js");
................................................................................
    // parse sentence
    for (let [iStart, iEnd] of _getSentenceBoundaries(sText)) {
        if (4 < (iEnd - iStart) < 2000) {
            dDA.clear();
            //echo(sText.slice(iStart, iEnd));
            try {
                [_, errs] = _proofread(sText.slice(iStart, iEnd), sAlt.slice(iStart, iEnd), iStart, false, dDA, dPriority, sCountry, bDebug, bContext);
                dErrors._update(errs);
            }
            catch (e) {
                helpers.logerror(e);
            }
        }
    }
    return Array.from(dErrors.values());
................................................................................
    let bCondMemo;
    let nErrorStart;

    for (let [sOption, lRuleGroup] of _getRules(bParagraph)) {
        if (!sOption || option(sOption)) {
            for (let [zRegex, bUppercase, sLineId, sRuleId, nPriority, lActions, lGroups, lNegLookBefore] of lRuleGroup) {
                if (!_aIgnoredRules.has(sRuleId)) {
                    while ((m = zRegex._exec2(s, lGroups, lNegLookBefore)) !== null) {
                        bCondMemo = null;
                        /*if (bDebug) {
                            echo(">>>> Rule # " + sLineId + " - Text: " + s + " opt: "+ sOption);
                        }*/
                        for (let [sFuncCond, cActionType, sWhat, ...eAct] of lActions) {
                        // action in lActions: [ condition, action type, replacement/suggestion/action[, iGroup[, message, URL]] ]
                            try {
................................................................................
                                            }
                                            break;
                                        case "=":
                                            // disambiguation
                                            //echo("-> disambiguation by " + sLineId + "\nzRegex: " + zRegex.source);
                                            oEvalFunc[sWhat](s, m, dDA);
                                            if (bDebug) {
                                                echo("= " + m[0] + "  # " + sLineId + "\nDA: " + dDA._toString());
                                            }
                                            break;
                                        case ">":
                                            // we do nothing, this test is just a condition to apply all following actions
                                            break;
                                        default:
                                            echo("# error: unknown action at " + sLineId);
................................................................................
    oErr["sLineId"] = sLineId;
    oErr["sRuleId"] = sRuleId;
    oErr["sType"] = (sOption) ? sOption : "notype";
    // suggestions
    if (sRepl[0] === "=") {
        let sugg = oEvalFunc[sRepl.slice(1)](s, m);
        if (sugg) {
            if (bUppercase && m[iGroup].slice(0,1)._isUpperCase()) {
                oErr["aSuggestions"] = capitalizeArray(sugg.split("|"));
            } else {
                oErr["aSuggestions"] = sugg.split("|");
            }
        } else {
            oErr["aSuggestions"] = [];
        }
    } else if (sRepl == "_") {
        oErr["aSuggestions"] = [];
    } else {
        if (bUppercase && m[iGroup].slice(0,1)._isUpperCase()) {
            oErr["aSuggestions"] = capitalizeArray(sRepl._expand(m).split("|"));
        } else {
            oErr["aSuggestions"] = sRepl._expand(m).split("|");
        }
    }
    // Message
    if (sMsg[0] === "=") {
        sMessage = oEvalFunc[sMsg.slice(1)](s, m)
    } else {
        sMessage = sMsg._expand(m);
    }
    if (bIdRule) {
        sMessage += " ##" + sLineId + " #" + sRuleId;
    }
    oErr["sMessage"] = sMessage;
    // URL
    oErr["URL"] = sURL || "";
................................................................................
    } else if (sRepl === ">" || sRepl === "_" || sRepl === "~") {
        sNew = sRepl + " ".repeat(ln-1);
    } else if (sRepl === "@") {
        sNew = "@".repeat(ln);
    } else if (sRepl.slice(0,1) === "=") {
        sNew = oEvalFunc[sRepl.slice(1)](s, m);
        sNew = sNew + " ".repeat(ln-sNew.length);
        if (bUppercase && m[iGroup].slice(0,1)._isUpperCase()) {
            sNew = sNew._toCapitalize();
        }
    } else {
        sNew = sRepl._expand(m);
        sNew = sNew + " ".repeat(ln-sNew.length);
    }
    //echo("\n"+s+"\nstart: "+m.start[iGroup]+" end:"+m.end[iGroup])
    return s.slice(0, m.start[iGroup]) + sNew + s.slice(m.end[iGroup]);
}

function ignoreRule (sRuleId) {
................................................................................

//////// init

function load (sContext="JavaScript") {
    try {
        _oDict = new ibdawg.IBDAWG("${dic_name}.json");
        _sContext = sContext;
        _dOptions = gc_options.getOptions(sContext)._shallowCopy();     // duplication necessary, to be able to reset to default
    }
    catch (e) {
        helpers.logerror(e);
    }
}

function setOption (sOpt, bVal) {
    if (_dOptions.has(sOpt)) {
        _dOptions.set(sOpt, bVal);
    }
}

function setOptions (dOpt) {
    _dOptions._updateOnlyExistingKeys(dOpt);
}

function getOptions () {
    return _dOptions;
}

function getDefaultOptions () {
    return gc_options.getOptions(_sContext)._shallowCopy();
}

function resetOptions () {
    _dOptions = gc_options.getOptions(_sContext)._shallowCopy();
}

function getDictionary () {
    return _oDict;
}

function _getRules (bParagraph) {
................................................................................
        helpers.logerror(e);
    }
    return false;
}

function look_chk1 (dDA, s, nOffset, zPattern, sPatternGroup1, sNegPatternGroup1=null) {
    // returns True if s has pattern zPattern and m.group(1) has pattern sPatternGroup1
    let m = zPattern._exec2(s, null);
    if (!m) {
        return false;
    }
    try {
        let sWord = m[1];
        let nPos = m.start[1] + nOffset;
        if (sNegPatternGroup1) {







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${map}


function capitalizeArray (aArray) {
    // can’t map on user defined function??
    let aNew = [];
    for (let i = 0; i < aArray.length; i = i + 1) {
        aNew[i] = aArray[i].gl_toCapitalize();
    }
    return aNew;
}

const ibdawg = require("resource://grammalecte/ibdawg.js");
const helpers = require("resource://grammalecte/helpers.js");
const gc_options = require("resource://grammalecte/${lang}/gc_options.js");
................................................................................
    // parse sentence
    for (let [iStart, iEnd] of _getSentenceBoundaries(sText)) {
        if (4 < (iEnd - iStart) < 2000) {
            dDA.clear();
            //echo(sText.slice(iStart, iEnd));
            try {
                [_, errs] = _proofread(sText.slice(iStart, iEnd), sAlt.slice(iStart, iEnd), iStart, false, dDA, dPriority, sCountry, bDebug, bContext);
                dErrors.gl_update(errs);
            }
            catch (e) {
                helpers.logerror(e);
            }
        }
    }
    return Array.from(dErrors.values());
................................................................................
    let bCondMemo;
    let nErrorStart;

    for (let [sOption, lRuleGroup] of _getRules(bParagraph)) {
        if (!sOption || option(sOption)) {
            for (let [zRegex, bUppercase, sLineId, sRuleId, nPriority, lActions, lGroups, lNegLookBefore] of lRuleGroup) {
                if (!_aIgnoredRules.has(sRuleId)) {
                    while ((m = zRegex.gl_exec2(s, lGroups, lNegLookBefore)) !== null) {
                        bCondMemo = null;
                        /*if (bDebug) {
                            echo(">>>> Rule # " + sLineId + " - Text: " + s + " opt: "+ sOption);
                        }*/
                        for (let [sFuncCond, cActionType, sWhat, ...eAct] of lActions) {
                        // action in lActions: [ condition, action type, replacement/suggestion/action[, iGroup[, message, URL]] ]
                            try {
................................................................................
                                            }
                                            break;
                                        case "=":
                                            // disambiguation
                                            //echo("-> disambiguation by " + sLineId + "\nzRegex: " + zRegex.source);
                                            oEvalFunc[sWhat](s, m, dDA);
                                            if (bDebug) {
                                                echo("= " + m[0] + "  # " + sLineId + "\nDA: " + dDA.gl_toString());
                                            }
                                            break;
                                        case ">":
                                            // we do nothing, this test is just a condition to apply all following actions
                                            break;
                                        default:
                                            echo("# error: unknown action at " + sLineId);
................................................................................
    oErr["sLineId"] = sLineId;
    oErr["sRuleId"] = sRuleId;
    oErr["sType"] = (sOption) ? sOption : "notype";
    // suggestions
    if (sRepl[0] === "=") {
        let sugg = oEvalFunc[sRepl.slice(1)](s, m);
        if (sugg) {
            if (bUppercase && m[iGroup].slice(0,1).gl_isUpperCase()) {
                oErr["aSuggestions"] = capitalizeArray(sugg.split("|"));
            } else {
                oErr["aSuggestions"] = sugg.split("|");
            }
        } else {
            oErr["aSuggestions"] = [];
        }
    } else if (sRepl == "_") {
        oErr["aSuggestions"] = [];
    } else {
        if (bUppercase && m[iGroup].slice(0,1).gl_isUpperCase()) {
            oErr["aSuggestions"] = capitalizeArray(sRepl.gl_expand(m).split("|"));
        } else {
            oErr["aSuggestions"] = sRepl.gl_expand(m).split("|");
        }
    }
    // Message
    if (sMsg[0] === "=") {
        sMessage = oEvalFunc[sMsg.slice(1)](s, m)
    } else {
        sMessage = sMsg.gl_expand(m);
    }
    if (bIdRule) {
        sMessage += " ##" + sLineId + " #" + sRuleId;
    }
    oErr["sMessage"] = sMessage;
    // URL
    oErr["URL"] = sURL || "";
................................................................................
    } else if (sRepl === ">" || sRepl === "_" || sRepl === "~") {
        sNew = sRepl + " ".repeat(ln-1);
    } else if (sRepl === "@") {
        sNew = "@".repeat(ln);
    } else if (sRepl.slice(0,1) === "=") {
        sNew = oEvalFunc[sRepl.slice(1)](s, m);
        sNew = sNew + " ".repeat(ln-sNew.length);
        if (bUppercase && m[iGroup].slice(0,1).gl_isUpperCase()) {
            sNew = sNew.gl_toCapitalize();
        }
    } else {
        sNew = sRepl.gl_expand(m);
        sNew = sNew + " ".repeat(ln-sNew.length);
    }
    //echo("\n"+s+"\nstart: "+m.start[iGroup]+" end:"+m.end[iGroup])
    return s.slice(0, m.start[iGroup]) + sNew + s.slice(m.end[iGroup]);
}

function ignoreRule (sRuleId) {
................................................................................

//////// init

function load (sContext="JavaScript") {
    try {
        _oDict = new ibdawg.IBDAWG("${dic_name}.json");
        _sContext = sContext;
        _dOptions = gc_options.getOptions(sContext).gl_shallowCopy();     // duplication necessary, to be able to reset to default
    }
    catch (e) {
        helpers.logerror(e);
    }
}

function setOption (sOpt, bVal) {
    if (_dOptions.has(sOpt)) {
        _dOptions.set(sOpt, bVal);
    }
}

function setOptions (dOpt) {
    _dOptions.gl_updateOnlyExistingKeys(dOpt);
}

function getOptions () {
    return _dOptions;
}

function getDefaultOptions () {
    return gc_options.getOptions(_sContext).gl_shallowCopy();
}

function resetOptions () {
    _dOptions = gc_options.getOptions(_sContext).gl_shallowCopy();
}

function getDictionary () {
    return _oDict;
}

function _getRules (bParagraph) {
................................................................................
        helpers.logerror(e);
    }
    return false;
}

function look_chk1 (dDA, s, nOffset, zPattern, sPatternGroup1, sNegPatternGroup1=null) {
    // returns True if s has pattern zPattern and m.group(1) has pattern sPatternGroup1
    let m = zPattern.gl_exec2(s, null);
    if (!m) {
        return false;
    }
    try {
        let sWord = m[1];
        let nPos = m.start[1] + nOffset;
        if (sNegPatternGroup1) {

Modified gc_lang/fr/modules-js/conj.js from [82dfb400da] to [0ac007e97e].

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    };

    conjugue (sTemps, sWho, bPro, bNeg, bTpsCo, bInt, bFem) {
        if (!this.dConj.get(sTemps).get(sWho)) {
            return "";
        }
        let sConj;
        if (!bTpsCo && bInt && sWho == ":1s" && this.dConj.get(sTemps)._get(":1ś", false)) {
            sWho = ":1ś";
        }
        if (bTpsCo) {
            sConj = (!bPro) ? _getConjWithTags(this.sVerbAux, this._tTagsAux, sTemps, sWho) : getConj("être", sTemps, sWho);
        } else {
            sConj = this.dConj.get(sTemps).get(sWho);
        }







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    };

    conjugue (sTemps, sWho, bPro, bNeg, bTpsCo, bInt, bFem) {
        if (!this.dConj.get(sTemps).get(sWho)) {
            return "";
        }
        let sConj;
        if (!bTpsCo && bInt && sWho == ":1s" && this.dConj.get(sTemps).gl_get(":1ś", false)) {
            sWho = ":1ś";
        }
        if (bTpsCo) {
            sConj = (!bPro) ? _getConjWithTags(this.sVerbAux, this._tTagsAux, sTemps, sWho) : getConj("être", sTemps, sWho);
        } else {
            sConj = this.dConj.get(sTemps).get(sWho);
        }

Modified gc_lang/fr/modules-js/gce_analyseur.js from [7588af7481] to [673094989d].

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        return "vous";
    }
    if (s2 == "eux") {
        return "ils";
    }
    if (s2 == "elle" || s2 == "elles") {
        // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
        if (cr.mbNprMasNotFem(_dAnalyses._get(s1, ""))) {
            return "ils";
        }
        // si épicène, indéterminable, mais OSEF, le féminin l’emporte
        return "elles";
    }
    return s1 + " et " + s2;
}

function apposition (sWord1, sWord2) {
    // returns true if nom + nom (no agreement required)
    // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    return cr.mbNomNotAdj(_dAnalyses._get(sWord2, "")) && cr.mbPpasNomNotAdj(_dAnalyses._get(sWord1, ""));
}

function isAmbiguousNAV (sWord) {
    // words which are nom|adj and verb are ambiguous (except être and avoir)
    if (!_dAnalyses.has(sWord) && !_storeMorphFromFSA(sWord)) {
        return false;
    }
    if (!cr.mbNomAdj(_dAnalyses._get(sWord, "")) || sWord == "est") {
        return false;
    }
    if (cr.mbVconj(_dAnalyses._get(sWord, "")) && !cr.mbMG(_dAnalyses._get(sWord, ""))) {
        return true;
    }
    return false;
}

function isAmbiguousAndWrong (sWord1, sWord2, sReqMorphNA, sReqMorphConj) {
    //// use it if sWord1 won’t be a verb; word2 is assumed to be true via isAmbiguousNAV
    // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let a2 = _dAnalyses._get(sWord2, null);
    if (!a2 || a2.length === 0) {
        return false;
    }
    if (cr.checkConjVerb(a2, sReqMorphConj)) {
        // verb word2 is ok
        return false;
    }
    let a1 = _dAnalyses._get(sWord1, null);
    if (!a1 || a1.length === 0) {
        return false;
    }
    if (cr.checkAgreement(a1, a2) && (cr.mbAdj(a2) || cr.mbAdj(a1))) {
        return false;
    }
    return true;
}

function isVeryAmbiguousAndWrong (sWord1, sWord2, sReqMorphNA, sReqMorphConj, bLastHopeCond) {
    //// use it if sWord1 can be also a verb; word2 is assumed to be true via isAmbiguousNAV
    // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let a2 = _dAnalyses._get(sWord2, null)
    if (!a2 || a2.length === 0) {
        return false;
    }
    if (cr.checkConjVerb(a2, sReqMorphConj)) {
        // verb word2 is ok
        return false;
    }
    let a1 = _dAnalyses._get(sWord1, null);
    if (!a1 || a1.length === 0) {
        return false;
    }
    if (cr.checkAgreement(a1, a2) && (cr.mbAdj(a2) || cr.mbAdjNb(a1))) {
        return false;
    }
    // now, we know there no agreement, and conjugation is also wrong
................................................................................
        return true;
    }
    return false;
}

function checkAgreement (sWord1, sWord2) {
    // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let a2 = _dAnalyses._get(sWord2, null)
    if (!a2 || a2.length === 0) {
        return true;
    }
    let a1 = _dAnalyses._get(sWord1, null);
    if (!a1 || a1.length === 0) {
        return true;
    }
    return cr.checkAgreement(a1, a2);
}

function mbUnit (s) {
    if (/[µ\/⁰¹²³⁴⁵⁶⁷⁸⁹Ωℓ·]/.test(s)) {
        return true;
    }
    if (s.length > 1 && s.length < 16 && s.slice(0, 1)._isLowerCase() && (!s.slice(1)._isLowerCase() || /[0-9]/.test(s))) {
        return true;
    }
    return false;
}


//// Syntagmes
................................................................................
const _zEndOfNG2 = new RegExp ("^ +([a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ][a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ-]+)");
const _zEndOfNG3 = new RegExp ("^ *, +([a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ][a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ-]+)");

function isEndOfNG (dDA, s, iOffset) {
    if (_zEndOfNG1.test(s)) {
        return true;
    }
    let m = _zEndOfNG2._exec2(s, ["$"]);
    if (m && morphex(dDA, [iOffset+m.start[1], m[1]], ":[VR]", ":[NAQP]")) {
        return true;
    }
    m = _zEndOfNG3._exec2(s, ["$"]);
    if (m && !morph(dDA, [iOffset+m.start[1], m[1]], ":[NA]", false)) {
        return true;
    }
    return false;
}


................................................................................
const _zNextIsNotCOD2 = new RegExp ("^ +(?:[mtsnj](e +|’)|[nv]ous |tu |ils? |elles? )");
const _zNextIsNotCOD3 = new RegExp ("^ +([a-zéèî][a-zà-öA-Zø-ÿÀ-ÖØ-ßĀ-ʯ-]+)");

function isNextNotCOD (dDA, s, iOffset) {
    if (_zNextIsNotCOD1.test(s) || _zNextIsNotCOD2.test(s)) {
        return true;
    }
    let m = _zNextIsNotCOD3._exec2(s, ["$"]);
    if (m && morphex(dDA, [iOffset+m.start[1], m[1]], ":[123][sp]", ":[DM]")) {
        return true;
    }
    return false;
}


................................................................................
const _zNextIsVerb1 = new RegExp ("^ +[nmts](?:e |’)");
const _zNextIsVerb2 = new RegExp ("^ +([a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ][a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ-]+)");

function isNextVerb (dDA, s, iOffset) {
    if (_zNextIsVerb1.test(s)) {
        return true;
    }
    let m = _zNextIsVerb2._exec2(s, ["$"]);
    if (m && morph(dDA, [iOffset+m.start[1], m[1]], ":[123][sp]", false)) {
        return true;
    }
    return false;
}


//// Exceptions

const aREGULARPLURAL = new Set(["abricot", "amarante", "aubergine", "acajou", "anthracite", "brique", "caca", "café",
                                "carotte", "cerise", "chataigne", "corail", "citron", "crème", "grave", "groseille",
                                "jonquille", "marron", "olive", "pervenche", "prune", "sable"]);
const aSHOULDBEVERB = new Set(["aller", "manger"]);







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        return "vous";
    }
    if (s2 == "eux") {
        return "ils";
    }
    if (s2 == "elle" || s2 == "elles") {
        // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
        if (cr.mbNprMasNotFem(_dAnalyses.gl_get(s1, ""))) {
            return "ils";
        }
        // si épicène, indéterminable, mais OSEF, le féminin l’emporte
        return "elles";
    }
    return s1 + " et " + s2;
}

function apposition (sWord1, sWord2) {
    // returns true if nom + nom (no agreement required)
    // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    return cr.mbNomNotAdj(_dAnalyses.gl_get(sWord2, "")) && cr.mbPpasNomNotAdj(_dAnalyses.gl_get(sWord1, ""));
}

function isAmbiguousNAV (sWord) {
    // words which are nom|adj and verb are ambiguous (except être and avoir)
    if (!_dAnalyses.has(sWord) && !_storeMorphFromFSA(sWord)) {
        return false;
    }
    if (!cr.mbNomAdj(_dAnalyses.gl_get(sWord, "")) || sWord == "est") {
        return false;
    }
    if (cr.mbVconj(_dAnalyses.gl_get(sWord, "")) && !cr.mbMG(_dAnalyses.gl_get(sWord, ""))) {
        return true;
    }
    return false;
}

function isAmbiguousAndWrong (sWord1, sWord2, sReqMorphNA, sReqMorphConj) {
    //// use it if sWord1 won’t be a verb; word2 is assumed to be true via isAmbiguousNAV
    // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let a2 = _dAnalyses.gl_get(sWord2, null);
    if (!a2 || a2.length === 0) {
        return false;
    }
    if (cr.checkConjVerb(a2, sReqMorphConj)) {
        // verb word2 is ok
        return false;
    }
    let a1 = _dAnalyses.gl_get(sWord1, null);
    if (!a1 || a1.length === 0) {
        return false;
    }
    if (cr.checkAgreement(a1, a2) && (cr.mbAdj(a2) || cr.mbAdj(a1))) {
        return false;
    }
    return true;
}

function isVeryAmbiguousAndWrong (sWord1, sWord2, sReqMorphNA, sReqMorphConj, bLastHopeCond) {
    //// use it if sWord1 can be also a verb; word2 is assumed to be true via isAmbiguousNAV
    // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let a2 = _dAnalyses.gl_get(sWord2, null)
    if (!a2 || a2.length === 0) {
        return false;
    }
    if (cr.checkConjVerb(a2, sReqMorphConj)) {
        // verb word2 is ok
        return false;
    }
    let a1 = _dAnalyses.gl_get(sWord1, null);
    if (!a1 || a1.length === 0) {
        return false;
    }
    if (cr.checkAgreement(a1, a2) && (cr.mbAdj(a2) || cr.mbAdjNb(a1))) {
        return false;
    }
    // now, we know there no agreement, and conjugation is also wrong
................................................................................
        return true;
    }
    return false;
}

function checkAgreement (sWord1, sWord2) {
    // We don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let a2 = _dAnalyses.gl_get(sWord2, null)
    if (!a2 || a2.length === 0) {
        return true;
    }
    let a1 = _dAnalyses.gl_get(sWord1, null);
    if (!a1 || a1.length === 0) {
        return true;
    }
    return cr.checkAgreement(a1, a2);
}

function mbUnit (s) {
    if (/[µ\/⁰¹²³⁴⁵⁶⁷⁸⁹Ωℓ·]/.test(s)) {
        return true;
    }
    if (s.length > 1 && s.length < 16 && s.slice(0, 1).gl_isLowerCase() && (!s.slice(1).gl_isLowerCase() || /[0-9]/.test(s))) {
        return true;
    }
    return false;
}


//// Syntagmes
................................................................................
const _zEndOfNG2 = new RegExp ("^ +([a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ][a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ-]+)");
const _zEndOfNG3 = new RegExp ("^ *, +([a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ][a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ-]+)");

function isEndOfNG (dDA, s, iOffset) {
    if (_zEndOfNG1.test(s)) {
        return true;
    }
    let m = _zEndOfNG2.gl_exec2(s, ["$"]);
    if (m && morphex(dDA, [iOffset+m.start[1], m[1]], ":[VR]", ":[NAQP]")) {
        return true;
    }
    m = _zEndOfNG3.gl_exec2(s, ["$"]);
    if (m && !morph(dDA, [iOffset+m.start[1], m[1]], ":[NA]", false)) {
        return true;
    }
    return false;
}


................................................................................
const _zNextIsNotCOD2 = new RegExp ("^ +(?:[mtsnj](e +|’)|[nv]ous |tu |ils? |elles? )");
const _zNextIsNotCOD3 = new RegExp ("^ +([a-zéèî][a-zà-öA-Zø-ÿÀ-ÖØ-ßĀ-ʯ-]+)");

function isNextNotCOD (dDA, s, iOffset) {
    if (_zNextIsNotCOD1.test(s) || _zNextIsNotCOD2.test(s)) {
        return true;
    }
    let m = _zNextIsNotCOD3.gl_exec2(s, ["$"]);
    if (m && morphex(dDA, [iOffset+m.start[1], m[1]], ":[123][sp]", ":[DM]")) {
        return true;
    }
    return false;
}


................................................................................
const _zNextIsVerb1 = new RegExp ("^ +[nmts](?:e |’)");
const _zNextIsVerb2 = new RegExp ("^ +([a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ][a-zà-öA-Zø-ÿÀ-Ö0-9_Ø-ßĀ-ʯ-]+)");

function isNextVerb (dDA, s, iOffset) {
    if (_zNextIsVerb1.test(s)) {
        return true;
    }
    let m = _zNextIsVerb2.gl_exec2(s, ["$"]);
    if (m && morph(dDA, [iOffset+m.start[1], m[1]], ":[123][sp]", false)) {
        return true;
    }
    return false;
}


//// Exceptions

const aREGULARPLURAL = new Set(["abricot", "amarante", "aubergine", "acajou", "anthracite", "brique", "caca", "café",
                                "carotte", "cerise", "chataigne", "corail", "citron", "crème", "grave", "groseille",
                                "jonquille", "marron", "olive", "pervenche", "prune", "sable"]);
const aSHOULDBEVERB = new Set(["aller", "manger"]);

Modified gc_lang/fr/modules-js/gce_suggestions.js from [4ab154433f] to [d46530bfae].

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    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sStem of stem(sFlex)) {
        let tTags = conj._getTags(sStem);
        if (tTags) {
            // we get the tense
            let aTense = new Set();
            for (let sMorph of _dAnalyses._get(sFlex, [])) {
                let m;
                let zVerb = new RegExp (sStem+" .*?(:(?:Y|I[pqsf]|S[pq]|K))", "g");
                while (m = zVerb.exec(sMorph)) {
                    // stem must be used in regex to prevent confusion between different verbs (e.g. sauras has 2 stems: savoir and saurer)
                    if (m) {
                        if (m[1] === ":Y") {
                            aTense.add(":Ip");
................................................................................
    } else if (cMode == ":S") {
        lMode = _lSubjonctif;
    } else if (cMode.startsWith(":I") || cMode.startsWith(":S")) {
        lMode = [cMode];
    } else {
        return "";
    }
    let sWho = _dQuiEst._get(sSuj.toLowerCase(), null);
    if (!sWho) {
        if (sSuj[0]._isLowerCase()) { // pas un pronom, ni un nom propre
            return "";
        }
        sWho = ":3s";
    }
    let aSugg = new Set();
    for (let sStem of stem(sFlex)) {
        let tTags = conj._getTags(sStem);
................................................................................

function suggPlur (sFlex, sWordToAgree=null) {
    // returns plural forms assuming sFlex is singular
    if (sWordToAgree) {
        if (!_dAnalyses.has(sWordToAgree) && !_storeMorphFromFSA(sWordToAgree)) {
            return "";
        }
        let sGender = cr.getGender(_dAnalyses._get(sWordToAgree, []));
        if (sGender == ":m") {
            return suggMasPlur(sFlex);
        } else if (sGender == ":f") {
            return suggFemPlur(sFlex);
        }
    }
    let aSugg = new Set();
................................................................................
    return "";
}

function suggMasSing (sFlex, bSuggSimil=false) {
    // returns masculine singular forms
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sMorph of _dAnalyses._get(sFlex, [])) {
        if (!sMorph.includes(":V")) {
            // not a verb
            if (sMorph.includes(":m") || sMorph.includes(":e")) {
                aSugg.add(suggSing(sFlex));
            } else {
                let sStem = cr.getLemmaOfMorph(sMorph);
                if (mfsp.isFemForm(sStem)) {
................................................................................
    return "";
}

function suggMasPlur (sFlex, bSuggSimil=false) {
    // returns masculine plural forms
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sMorph of _dAnalyses._get(sFlex, [])) {
        if (!sMorph.includes(":V")) {
            // not a verb
            if (sMorph.includes(":m") || sMorph.includes(":e")) {
                aSugg.add(suggPlur(sFlex));
            } else {
                let sStem = cr.getLemmaOfMorph(sMorph);
                if (mfsp.isFemForm(sStem)) {
................................................................................
}


function suggFemSing (sFlex, bSuggSimil=false) {
    // returns feminine singular forms
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sMorph of _dAnalyses._get(sFlex, [])) {
        if (!sMorph.includes(":V")) {
            // not a verb
            if (sMorph.includes(":f") || sMorph.includes(":e")) {
                aSugg.add(suggSing(sFlex));
            } else {
                let sStem = cr.getLemmaOfMorph(sMorph);
                if (mfsp.isFemForm(sStem)) {
................................................................................
    return "";
}

function suggFemPlur (sFlex, bSuggSimil=false) {
    // returns feminine plural forms
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sMorph of _dAnalyses._get(sFlex, [])) {
        if (!sMorph.includes(":V")) {
            // not a verb
            if (sMorph.includes(":f") || sMorph.includes(":e")) {
                aSugg.add(suggPlur(sFlex));
            } else {
                let sStem = cr.getLemmaOfMorph(sMorph);
                if (mfsp.isFemForm(sStem)) {
................................................................................
    return false;
}

function switchGender (sFlex, bPlur=null) {
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    if (bPlur === null) {
        for (let sMorph of _dAnalyses._get(sFlex, [])) {
            if (sMorph.includes(":f")) {
                if (sMorph.includes(":s")) {
                    aSugg.add(suggMasSing(sFlex));
                } else if (sMorph.includes(":p")) {
                    aSugg.add(suggMasPlur(sFlex));
                }
            } else if (sMorph.includes(":m")) {
................................................................................
                } else {
                    aSugg.add(suggFemSing(sFlex));
                    aSugg.add(suggFemPlur(sFlex));
                }
            }
        }
    } else if (bPlur) {
        for (let sMorph of _dAnalyses._get(sFlex, [])) {
            if (sMorph.includes(":f")) {
                aSugg.add(suggMasPlur(sFlex));
            } else if (sMorph.includes(":m")) {
                aSugg.add(suggFemPlur(sFlex));
            }
        }
    } else {
        for (let sMorph of _dAnalyses._get(sFlex, [])) {
            if (sMorph.includes(":f")) {
                aSugg.add(suggMasSing(sFlex));
            } else if (sMorph.includes(":m")) {
                aSugg.add(suggFemSing(sFlex));
            }
        }
    }
................................................................................
        return Array.from(aSugg).join("|");
    }
    return "";
}

function switchPlural (sFlex) {
    let aSugg = new Set();
    for (let sMorph of _dAnalyses._get(sFlex, [])) { // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
        if (sMorph.includes(":s")) {
            aSugg.add(suggPlur(sFlex));
        } else if (sMorph.includes(":p")) {
            aSugg.add(suggSing(sFlex));
        }
    }
    if (aSugg.size > 0) {
................................................................................
function hasSimil (sWord, sPattern=null) {
    return phonet.hasSimil(sWord, sPattern);
}

function suggSimil (sWord, sPattern) {
    // return list of words phonetically similar to sWord and whom POS is matching sPattern
    let aSugg = phonet.selectSimil(sWord, sPattern);
    for (let sMorph of _dAnalyses._get(sWord, [])) {
        for (let e of conj.getSimil(sWord, sMorph, sPattern)) {
            aSugg.add(e); 
        }
    }
    if (aSugg.size > 0) {
        return Array.from(aSugg).join("|");
    }
................................................................................
        return "ce|cet";
    }
    return "ce";
}

function suggLesLa (sWord) {
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    if (_dAnalyses._get(sWord, []).some(s  =>  s.includes(":p"))) {
        return "les|la";
    }
    return "la";
}

function formatNumber (s) {
    let nLen = s.length;







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    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sStem of stem(sFlex)) {
        let tTags = conj._getTags(sStem);
        if (tTags) {
            // we get the tense
            let aTense = new Set();
            for (let sMorph of _dAnalyses.gl_get(sFlex, [])) {
                let m;
                let zVerb = new RegExp (sStem+" .*?(:(?:Y|I[pqsf]|S[pq]|K))", "g");
                while (m = zVerb.exec(sMorph)) {
                    // stem must be used in regex to prevent confusion between different verbs (e.g. sauras has 2 stems: savoir and saurer)
                    if (m) {
                        if (m[1] === ":Y") {
                            aTense.add(":Ip");
................................................................................
    } else if (cMode == ":S") {
        lMode = _lSubjonctif;
    } else if (cMode.startsWith(":I") || cMode.startsWith(":S")) {
        lMode = [cMode];
    } else {
        return "";
    }
    let sWho = _dQuiEst.gl_get(sSuj.toLowerCase(), null);
    if (!sWho) {
        if (sSuj[0].gl_isLowerCase()) { // pas un pronom, ni un nom propre
            return "";
        }
        sWho = ":3s";
    }
    let aSugg = new Set();
    for (let sStem of stem(sFlex)) {
        let tTags = conj._getTags(sStem);
................................................................................

function suggPlur (sFlex, sWordToAgree=null) {
    // returns plural forms assuming sFlex is singular
    if (sWordToAgree) {
        if (!_dAnalyses.has(sWordToAgree) && !_storeMorphFromFSA(sWordToAgree)) {
            return "";
        }
        let sGender = cr.getGender(_dAnalyses.gl_get(sWordToAgree, []));
        if (sGender == ":m") {
            return suggMasPlur(sFlex);
        } else if (sGender == ":f") {
            return suggFemPlur(sFlex);
        }
    }
    let aSugg = new Set();
................................................................................
    return "";
}

function suggMasSing (sFlex, bSuggSimil=false) {
    // returns masculine singular forms
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sMorph of _dAnalyses.gl_get(sFlex, [])) {
        if (!sMorph.includes(":V")) {
            // not a verb
            if (sMorph.includes(":m") || sMorph.includes(":e")) {
                aSugg.add(suggSing(sFlex));
            } else {
                let sStem = cr.getLemmaOfMorph(sMorph);
                if (mfsp.isFemForm(sStem)) {
................................................................................
    return "";
}

function suggMasPlur (sFlex, bSuggSimil=false) {
    // returns masculine plural forms
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sMorph of _dAnalyses.gl_get(sFlex, [])) {
        if (!sMorph.includes(":V")) {
            // not a verb
            if (sMorph.includes(":m") || sMorph.includes(":e")) {
                aSugg.add(suggPlur(sFlex));
            } else {
                let sStem = cr.getLemmaOfMorph(sMorph);
                if (mfsp.isFemForm(sStem)) {
................................................................................
}


function suggFemSing (sFlex, bSuggSimil=false) {
    // returns feminine singular forms
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sMorph of _dAnalyses.gl_get(sFlex, [])) {
        if (!sMorph.includes(":V")) {
            // not a verb
            if (sMorph.includes(":f") || sMorph.includes(":e")) {
                aSugg.add(suggSing(sFlex));
            } else {
                let sStem = cr.getLemmaOfMorph(sMorph);
                if (mfsp.isFemForm(sStem)) {
................................................................................
    return "";
}

function suggFemPlur (sFlex, bSuggSimil=false) {
    // returns feminine plural forms
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    for (let sMorph of _dAnalyses.gl_get(sFlex, [])) {
        if (!sMorph.includes(":V")) {
            // not a verb
            if (sMorph.includes(":f") || sMorph.includes(":e")) {
                aSugg.add(suggPlur(sFlex));
            } else {
                let sStem = cr.getLemmaOfMorph(sMorph);
                if (mfsp.isFemForm(sStem)) {
................................................................................
    return false;
}

function switchGender (sFlex, bPlur=null) {
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    let aSugg = new Set();
    if (bPlur === null) {
        for (let sMorph of _dAnalyses.gl_get(sFlex, [])) {
            if (sMorph.includes(":f")) {
                if (sMorph.includes(":s")) {
                    aSugg.add(suggMasSing(sFlex));
                } else if (sMorph.includes(":p")) {
                    aSugg.add(suggMasPlur(sFlex));
                }
            } else if (sMorph.includes(":m")) {
................................................................................
                } else {
                    aSugg.add(suggFemSing(sFlex));
                    aSugg.add(suggFemPlur(sFlex));
                }
            }
        }
    } else if (bPlur) {
        for (let sMorph of _dAnalyses.gl_get(sFlex, [])) {
            if (sMorph.includes(":f")) {
                aSugg.add(suggMasPlur(sFlex));
            } else if (sMorph.includes(":m")) {
                aSugg.add(suggFemPlur(sFlex));
            }
        }
    } else {
        for (let sMorph of _dAnalyses.gl_get(sFlex, [])) {
            if (sMorph.includes(":f")) {
                aSugg.add(suggMasSing(sFlex));
            } else if (sMorph.includes(":m")) {
                aSugg.add(suggFemSing(sFlex));
            }
        }
    }
................................................................................
        return Array.from(aSugg).join("|");
    }
    return "";
}

function switchPlural (sFlex) {
    let aSugg = new Set();
    for (let sMorph of _dAnalyses.gl_get(sFlex, [])) { // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
        if (sMorph.includes(":s")) {
            aSugg.add(suggPlur(sFlex));
        } else if (sMorph.includes(":p")) {
            aSugg.add(suggSing(sFlex));
        }
    }
    if (aSugg.size > 0) {
................................................................................
function hasSimil (sWord, sPattern=null) {
    return phonet.hasSimil(sWord, sPattern);
}

function suggSimil (sWord, sPattern) {
    // return list of words phonetically similar to sWord and whom POS is matching sPattern
    let aSugg = phonet.selectSimil(sWord, sPattern);
    for (let sMorph of _dAnalyses.gl_get(sWord, [])) {
        for (let e of conj.getSimil(sWord, sMorph, sPattern)) {
            aSugg.add(e); 
        }
    }
    if (aSugg.size > 0) {
        return Array.from(aSugg).join("|");
    }
................................................................................
        return "ce|cet";
    }
    return "ce";
}

function suggLesLa (sWord) {
    // we don’t check if word exists in _dAnalyses, for it is assumed it has been done before
    if (_dAnalyses.gl_get(sWord, []).some(s  =>  s.includes(":p"))) {
        return "les|la";
    }
    return "la";
}

function formatNumber (s) {
    let nLen = s.length;

Modified gc_lang/fr/modules-js/lexicographe.js from [673a7bbf6a] to [2702fb7f6b].

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    getInfoForToken (oToken) {
        // Token: .sType, .sValue, .nStart, .nEnd
        // return a list [type, token_string, values]
        let m = null;
        try {
            switch (oToken.sType) {
                case 'SEPARATOR':
                    return { sType: oToken.sType, sValue: oToken.sValue, aLabel: [_dSeparator._get(oToken.sValue, "caractère indéterminé")] };
                    break;
                case 'NUM':
                    return { sType: oToken.sType, sValue: oToken.sValue, aLabel: ["nombre"] };
                    break;
                case 'LINK':
                    return { sType: oToken.sType, sValue: oToken.sValue.slice(0,40)+"…", aLabel: ["hyperlien"] };
                    break;
                case 'ELPFX':
                    let sTemp = oToken.sValue.replace("’", "").replace("'", "").replace("`", "").toLowerCase();
                    return { sType: oToken.sType, sValue: oToken.sValue, aLabel: [_dPFX._get(sTemp, "préfixe élidé inconnu")] };
                    break;
                case 'WORD': 
                    if (oToken.sValue._count("-") > 4) {
                        return { sType: "COMPLEX", sValue: oToken.sValue, aLabel: ["élément complexe indéterminé"] };
                    }
                    else if (this.oDict.isValidToken(oToken.sValue)) {
                        let lMorph = this.oDict.getMorph(oToken.sValue);
                        let aElem = [ for (s of lMorph) if (s.includes(":")) this._formatTags(s) ];
                        return { sType: oToken.sType, sValue: oToken.sValue, aLabel: aElem};
                    }
................................................................................
            sRes += " [" + sTags.slice(1, sTags.indexOf(" ")) + "]";
        }
        if (!sRes) {
            sRes = "#Erreur. Étiquette inconnue : [" + sTags + "]";
            helpers.echo(sRes);
            return sRes;
        }
        return sRes._trimRight(",");
    };

    _formatSuffix (s) {
        if (s.startsWith("t-")) {
            return "“t” euphonique +" + _dAD.get(s.slice(2));
        }
        if (!s.includes("-")) {







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    getInfoForToken (oToken) {
        // Token: .sType, .sValue, .nStart, .nEnd
        // return a list [type, token_string, values]
        let m = null;
        try {
            switch (oToken.sType) {
                case 'SEPARATOR':
                    return { sType: oToken.sType, sValue: oToken.sValue, aLabel: [_dSeparator.gl_get(oToken.sValue, "caractère indéterminé")] };
                    break;
                case 'NUM':
                    return { sType: oToken.sType, sValue: oToken.sValue, aLabel: ["nombre"] };
                    break;
                case 'LINK':
                    return { sType: oToken.sType, sValue: oToken.sValue.slice(0,40)+"…", aLabel: ["hyperlien"] };
                    break;
                case 'ELPFX':
                    let sTemp = oToken.sValue.replace("’", "").replace("'", "").replace("`", "").toLowerCase();
                    return { sType: oToken.sType, sValue: oToken.sValue, aLabel: [_dPFX.gl_get(sTemp, "préfixe élidé inconnu")] };
                    break;
                case 'WORD': 
                    if (oToken.sValue.gl_count("-") > 4) {
                        return { sType: "COMPLEX", sValue: oToken.sValue, aLabel: ["élément complexe indéterminé"] };
                    }
                    else if (this.oDict.isValidToken(oToken.sValue)) {
                        let lMorph = this.oDict.getMorph(oToken.sValue);
                        let aElem = [ for (s of lMorph) if (s.includes(":")) this._formatTags(s) ];
                        return { sType: oToken.sType, sValue: oToken.sValue, aLabel: aElem};
                    }
................................................................................
            sRes += " [" + sTags.slice(1, sTags.indexOf(" ")) + "]";
        }
        if (!sRes) {
            sRes = "#Erreur. Étiquette inconnue : [" + sTags + "]";
            helpers.echo(sRes);
            return sRes;
        }
        return sRes.gl_trimRight(",");
    };

    _formatSuffix (s) {
        if (s.startsWith("t-")) {
            return "“t” euphonique +" + _dAD.get(s.slice(2));
        }
        if (!s.includes("-")) {

Modified gc_lang/fr/modules-js/phonet.js from [7cb5eceb49] to [9c713cdc05].

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function hasSimil (sWord, sPattern=null) {
    // return True if there is list of words phonetically similar to sWord
    if (!sWord) {
        return false;
    }
    if (_dWord.has(sWord)) {
        if (sPattern) {
            return getSimil(sWord).some(sSimil => _dMorph._get(sSimil, []).some(sMorph => sMorph.search(sPattern) >= 0));
        }
        return true;
    }
    if (sWord.slice(0,1)._isUpperCase()) {
        sWord = sWord.toLowerCase();
        if (_dWord.has(sWord)) {
            if (sPattern) {
                return getSimil(sWord).some(sSimil => _dMorph._get(sSimil, []).some(sMorph => sMorph.search(sPattern) >= 0));
            }
            return true;
        }
    }
    return false;
}

................................................................................
    // return list of words phonetically similar to sWord
    if (!sWord) {
        return [];
    }
    if (_dWord.has(sWord)) {
        return _lSet[_dWord.get(sWord)];
    }
    if (sWord.slice(0,1)._isUpperCase()) {
        sWord = sWord.toLowerCase();
        if (_dWord.has(sWord)) {
            return _lSet[_dWord.get(sWord)];
        }
    }
    return [];
}
................................................................................
function selectSimil (sWord, sPattern) {
    // return list of words phonetically similar to sWord and whom POS is matching sPattern
    if (!sPattern) {
        return new Set(getSimil(sWord));
    }
    let aSelect = new Set();
    for (let sSimil of getSimil(sWord)) {
        for (let sMorph of _dMorph._get(sSimil, [])) {
            if (sMorph.search(sPattern) >= 0) {
                aSelect.add(sSimil);
            }
        }
    }
    return aSelect;
}


exports.hasSimil = hasSimil;
exports.getSimil = getSimil;
exports.selectSimil = selectSimil;







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function hasSimil (sWord, sPattern=null) {
    // return True if there is list of words phonetically similar to sWord
    if (!sWord) {
        return false;
    }
    if (_dWord.has(sWord)) {
        if (sPattern) {
            return getSimil(sWord).some(sSimil => _dMorph.gl_get(sSimil, []).some(sMorph => sMorph.search(sPattern) >= 0));
        }
        return true;
    }
    if (sWord.slice(0,1).gl_isUpperCase()) {
        sWord = sWord.toLowerCase();
        if (_dWord.has(sWord)) {
            if (sPattern) {
                return getSimil(sWord).some(sSimil => _dMorph.gl_get(sSimil, []).some(sMorph => sMorph.search(sPattern) >= 0));
            }
            return true;
        }
    }
    return false;
}

................................................................................
    // return list of words phonetically similar to sWord
    if (!sWord) {
        return [];
    }
    if (_dWord.has(sWord)) {
        return _lSet[_dWord.get(sWord)];
    }
    if (sWord.slice(0,1).gl_isUpperCase()) {
        sWord = sWord.toLowerCase();
        if (_dWord.has(sWord)) {
            return _lSet[_dWord.get(sWord)];
        }
    }
    return [];
}
................................................................................
function selectSimil (sWord, sPattern) {
    // return list of words phonetically similar to sWord and whom POS is matching sPattern
    if (!sPattern) {
        return new Set(getSimil(sWord));
    }
    let aSelect = new Set();
    for (let sSimil of getSimil(sWord)) {
        for (let sMorph of _dMorph.gl_get(sSimil, [])) {
            if (sMorph.search(sPattern) >= 0) {
                aSelect.add(sSimil);
            }
        }
    }
    return aSelect;
}


exports.hasSimil = hasSimil;
exports.getSimil = getSimil;
exports.selectSimil = selectSimil;

Modified gc_lang/fr/modules-js/textformatter.js from [fcd9e4b1a6] to [82caf6845e].

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    ["etc", true],
    ["missing_hyphens", true],
    ["ma_word", true],
    ["ma_1letter_lowercase", false],
    ["ma_1letter_uppercase", false]
]);

const dOptions = dDefaultOptions._shallowCopy();


class TextFormatter {

    constructor () {
        this.sLang = "fr";
    };

    formatText (sText, dOpt=null) {
        if (dOpt !== null) {
            dOptions._updateOnlyExistingKeys(dOpt);
        }
        for (let [sOptName, bVal] of dOptions) {
            if (bVal && oReplTable.has(sOptName)) {
                for (let [zRgx, sRep] of oReplTable[sOptName]) {
                    sText = sText.replace(zRgx, sRep);
                }
            }







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    ["etc", true],
    ["missing_hyphens", true],
    ["ma_word", true],
    ["ma_1letter_lowercase", false],
    ["ma_1letter_uppercase", false]
]);

const dOptions = dDefaultOptions.gl_shallowCopy();


class TextFormatter {

    constructor () {
        this.sLang = "fr";
    };

    formatText (sText, dOpt=null) {
        if (dOpt !== null) {
            dOptions.gl_updateOnlyExistingKeys(dOpt);
        }
        for (let [sOptName, bVal] of dOptions) {
            if (bVal && oReplTable.has(sOptName)) {
                for (let [zRgx, sRep] of oReplTable[sOptName]) {
                    sText = sText.replace(zRgx, sRep);
                }
            }

Modified gc_lang/fr/xpi/gce_worker.js from [be41214f38] to [9e0a605cc0].

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            gce.load(sContext);
            oDict = gce.getDictionary();
            oLxg = new lxg.Lexicographe(oDict);
            if (sGCOptions !== "") {
                gce.setOptions(helpers.objectToMap(JSON.parse(sGCOptions)));
            }
            // we always retrieve options from the gce, for setOptions filters obsolete options
            return gce.getOptions()._toString();
        }
        catch (e) {
            worker.log("# Error: " + e.fileName + "\n" + e.name + "\nline: " + e.lineNumber + "\n" + e.message);
        }
    }
}

................................................................................
function parseAndSpellcheck (sText, sLang, bDebug, bContext) {
    let aGrammErr = gce.parse(sText, sLang, bDebug, bContext);
    let aSpellErr = oTokenizer.getSpellingErrors(sText, oDict);
    return JSON.stringify({ aGrammErr: aGrammErr, aSpellErr: aSpellErr });
}

function getOptions () {
    return gce.getOptions()._toString();
}

function getDefaultOptions () {
    return gce.getDefaultOptions()._toString();
}

function setOptions (sGCOptions) {
    gce.setOptions(helpers.objectToMap(JSON.parse(sGCOptions)));
    return gce.getOptions()._toString();
}

function setOption (sOptName, bValue) {
    gce.setOptions(new Map([ [sOptName, bValue] ]));
    return gce.getOptions()._toString();
}

function resetOptions () {
    gce.resetOptions();
    return gce.getOptions()._toString();
}

function fullTests (sGCOptions="") {
    if (!gce || !oDict) {
        return "# Error: grammar checker or dictionary not loaded."
    }
    let dMemoOptions = gce.getOptions();







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            gce.load(sContext);
            oDict = gce.getDictionary();
            oLxg = new lxg.Lexicographe(oDict);
            if (sGCOptions !== "") {
                gce.setOptions(helpers.objectToMap(JSON.parse(sGCOptions)));
            }
            // we always retrieve options from the gce, for setOptions filters obsolete options
            return gce.getOptions().gl_toString();
        }
        catch (e) {
            worker.log("# Error: " + e.fileName + "\n" + e.name + "\nline: " + e.lineNumber + "\n" + e.message);
        }
    }
}

................................................................................
function parseAndSpellcheck (sText, sLang, bDebug, bContext) {
    let aGrammErr = gce.parse(sText, sLang, bDebug, bContext);
    let aSpellErr = oTokenizer.getSpellingErrors(sText, oDict);
    return JSON.stringify({ aGrammErr: aGrammErr, aSpellErr: aSpellErr });
}

function getOptions () {
    return gce.getOptions().gl_toString();
}

function getDefaultOptions () {
    return gce.getDefaultOptions().gl_toString();
}

function setOptions (sGCOptions) {
    gce.setOptions(helpers.objectToMap(JSON.parse(sGCOptions)));
    return gce.getOptions().gl_toString();
}

function setOption (sOptName, bValue) {
    gce.setOptions(new Map([ [sOptName, bValue] ]));
    return gce.getOptions().gl_toString();
}

function resetOptions () {
    gce.resetOptions();
    return gce.getOptions().gl_toString();
}

function fullTests (sGCOptions="") {
    if (!gce || !oDict) {
        return "# Error: grammar checker or dictionary not loaded."
    }
    let dMemoOptions = gce.getOptions();