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// Grammar checker engine
"use strict";
${string}
${regex}
${map}
if (typeof(require) !== 'undefined') {
var helpers = require("resource://grammalecte/helpers.js");
var echo = require("resource://grammalecte/helpers.js").echo;
var gc_options = require("resource://grammalecte/${lang}/gc_options.js");
var gc_rules = require("resource://grammalecte/${lang}/gc_rules.js");
var cregex = require("resource://grammalecte/${lang}/cregex.js");
var text = require("resource://grammalecte/text.js");
}
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<
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// Grammar checker engine
"use strict";
${string}
${regex}
${map}
if (typeof(require) !== 'undefined') {
var helpers = require("resource://grammalecte/helpers.js");
var gc_options = require("resource://grammalecte/${lang}/gc_options.js");
var gc_rules = require("resource://grammalecte/${lang}/gc_rules.js");
var cregex = require("resource://grammalecte/${lang}/cregex.js");
var text = require("resource://grammalecte/text.js");
}
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sText = sText.replace(/‑/g, "-"); // nobreakdash
}
// parse sentence
for (let [iStart, iEnd] of this._getSentenceBoundaries(sText)) {
if (4 < (iEnd - iStart) < 2000) {
dDA.clear();
//echo(sText.slice(iStart, iEnd));
try {
[, errs] = this._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());
},
_zEndOfSentence: new RegExp ('([.?!:;…][ .?!… »”")]*|.$)', "g"),
_zBeginOfParagraph: new RegExp ("^[- –—.,;?!…]*", "ig"),
_zEndOfParagraph: new RegExp ("[- .,;?!…–—]*$", "ig"),
_getSentenceBoundaries: function* (sText) {
let mBeginOfSentence = this._zBeginOfParagraph.exec(sText)
let iStart = this._zBeginOfParagraph.lastIndex;
let m;
while ((m = this._zEndOfSentence.exec(sText)) !== null) {
yield [iStart, this._zEndOfSentence.lastIndex];
iStart = this._zEndOfSentence.lastIndex;
}
},
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sText = sText.replace(/‑/g, "-"); // nobreakdash
}
// parse sentence
for (let [iStart, iEnd] of this._getSentenceBoundaries(sText)) {
if (4 < (iEnd - iStart) < 2000) {
dDA.clear();
//helpers.echo(sText.slice(iStart, iEnd));
try {
[, errs] = this._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());
},
_zEndOfSentence: new RegExp ('([.?!:;…][ .?!… »”")]*|.$)', "g"),
_zBeginOfParagraph: new RegExp ("^[- –—.,;?!…]*", "ig"),
_zEndOfParagraph: new RegExp ("[- .,;?!…–—]*$", "ig"),
_getSentenceBoundaries: function* (sText) {
let mBeginOfSentence = this._zBeginOfParagraph.exec(sText);
let iStart = this._zBeginOfParagraph.lastIndex;
let m;
while ((m = this._zEndOfSentence.exec(sText)) !== null) {
yield [iStart, this._zEndOfSentence.lastIndex];
iStart = this._zEndOfSentence.lastIndex;
}
},
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for (let [sOption, lRuleGroup] of this._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 {
//echo(oEvalFunc[sFuncCond]);
bCondMemo = (!sFuncCond || oEvalFunc[sFuncCond](s, sx, m, dDA, sCountry, bCondMemo))
if (bCondMemo) {
switch (cActionType) {
case "-":
// grammar error
//echo("-> error detected in " + sLineId + "\nzRegex: " + zRegex.source);
nErrorStart = nOffset + m.start[eAct[0]];
if (!dErrs.has(nErrorStart) || nPriority > dPriority.get(nErrorStart)) {
dErrs.set(nErrorStart, this._createError(s, sx, sWhat, nOffset, m, eAct[0], sLineId, sRuleId, bUppercase, eAct[1], eAct[2], bIdRule, sOption, bContext));
dPriority.set(nErrorStart, nPriority);
}
break;
case "~":
// text processor
//echo("-> text processor by " + sLineId + "\nzRegex: " + zRegex.source);
s = this._rewrite(s, sWhat, eAct[0], m, bUppercase);
bChange = true;
if (bDebug) {
echo("~ " + s + " -- " + m[eAct[0]] + " # " + sLineId);
}
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);
}
} else {
if (cActionType == ">") {
break;
}
}
}
catch (e) {
echo(s);
echo("# line id: " + sLineId + "\n# rule id: " + sRuleId);
helpers.logerror(e);
}
}
}
}
}
}
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for (let [sOption, lRuleGroup] of this._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) {
helpers.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 {
//helpers.echo(oEvalFunc[sFuncCond]);
bCondMemo = (!sFuncCond || oEvalFunc[sFuncCond](s, sx, m, dDA, sCountry, bCondMemo));
if (bCondMemo) {
switch (cActionType) {
case "-":
// grammar error
//helpers.echo("-> error detected in " + sLineId + "\nzRegex: " + zRegex.source);
nErrorStart = nOffset + m.start[eAct[0]];
if (!dErrs.has(nErrorStart) || nPriority > dPriority.get(nErrorStart)) {
dErrs.set(nErrorStart, this._createError(s, sx, sWhat, nOffset, m, eAct[0], sLineId, sRuleId, bUppercase, eAct[1], eAct[2], bIdRule, sOption, bContext));
dPriority.set(nErrorStart, nPriority);
}
break;
case "~":
// text processor
//helpers.echo("-> text processor by " + sLineId + "\nzRegex: " + zRegex.source);
s = this._rewrite(s, sWhat, eAct[0], m, bUppercase);
bChange = true;
if (bDebug) {
helpers.echo("~ " + s + " -- " + m[eAct[0]] + " # " + sLineId);
}
break;
case "=":
// disambiguation
//helpers.echo("-> disambiguation by " + sLineId + "\nzRegex: " + zRegex.source);
oEvalFunc[sWhat](s, m, dDA);
if (bDebug) {
helpers.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:
helpers.echo("# error: unknown action at " + sLineId);
}
} else {
if (cActionType == ">") {
break;
}
}
}
catch (e) {
helpers.echo(s);
helpers.echo("# line id: " + sLineId + "\n# rule id: " + sRuleId);
helpers.logerror(e);
}
}
}
}
}
}
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} else {
oErr["aSuggestions"] = sRepl.gl_expand(m).split("|");
}
}
// Message
let sMessage = "";
if (sMsg.slice(0,1) === "=") {
sMessage = oEvalFunc[sMsg.slice(1)](s, m)
} else {
sMessage = sMsg.gl_expand(m);
}
if (bIdRule) {
sMessage += " ##" + sLineId + " #" + sRuleId;
}
oErr["sMessage"] = sMessage;
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} else {
oErr["aSuggestions"] = sRepl.gl_expand(m).split("|");
}
}
// Message
let sMessage = "";
if (sMsg.slice(0,1) === "=") {
sMessage = oEvalFunc[sMsg.slice(1)](s, m);
} else {
sMessage = sMsg.gl_expand(m);
}
if (bIdRule) {
sMessage += " ##" + sLineId + " #" + sRuleId;
}
oErr["sMessage"] = sMessage;
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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]);
},
// Actions on rules
ignoreRule: function (sRuleId) {
_aIgnoredRules.add(sRuleId);
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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);
}
//helpers.echo("\n"+s+"\nstart: "+m.start[iGroup]+" end:"+m.end[iGroup])
return s.slice(0, m.start[iGroup]) + sNew + s.slice(m.end[iGroup]);
},
// Actions on rules
ignoreRule: function (sRuleId) {
_aIgnoredRules.add(sRuleId);
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getDefaultOptions: function () {
return gc_options.getOptions(_sAppContext).gl_shallowCopy();
},
resetOptions: function () {
_dOptions = gc_options.getOptions(_sAppContext).gl_shallowCopy();
}
}
//////// Common functions
function option (sOpt) {
// return true if option sOpt is active
return _dOptions.get(sOpt);
}
function displayInfo (dDA, aWord) {
// for debugging: info of word
if (!aWord) {
echo("> nothing to find");
return true;
}
if (!_dAnalyses.has(aWord[1]) && !_storeMorphFromFSA(aWord[1])) {
echo("> not in FSA");
return true;
}
if (dDA.has(aWord[0])) {
echo("DA: " + dDA.get(aWord[0]));
}
echo("FSA: " + _dAnalyses.get(aWord[1]));
return true;
}
function _storeMorphFromFSA (sWord) {
// retrieves morphologies list from _oDict -> _dAnalyses
//echo("register: "+sWord + " " + _oDict.getMorph(sWord).toString())
_dAnalyses.set(sWord, _oDict.getMorph(sWord));
return !!_dAnalyses.get(sWord);
}
function morph (dDA, aWord, sPattern, bStrict=true, bNoWord=false) {
// analyse a tuple (position, word), return true if sPattern in morphologies (disambiguation on)
if (!aWord) {
//echo("morph: noword, returns " + bNoWord);
return bNoWord;
}
//echo("aWord: "+aWord.toString());
if (!_dAnalyses.has(aWord[1]) && !_storeMorphFromFSA(aWord[1])) {
return false;
}
let lMorph = dDA.has(aWord[0]) ? dDA.get(aWord[0]) : _dAnalyses.get(aWord[1]);
//echo("lMorph: "+lMorph.toString());
if (lMorph.length === 0) {
return false;
}
//echo("***");
if (bStrict) {
return lMorph.every(s => (s.search(sPattern) !== -1));
}
return lMorph.some(s => (s.search(sPattern) !== -1));
}
function morphex (dDA, aWord, sPattern, sNegPattern, bNoWord=false) {
// analyse a tuple (position, word), returns true if not sNegPattern in word morphologies and sPattern in word morphologies (disambiguation on)
if (!aWord) {
//echo("morph: noword, returns " + bNoWord);
return bNoWord;
}
//echo("aWord: "+aWord.toString());
if (!_dAnalyses.has(aWord[1]) && !_storeMorphFromFSA(aWord[1])) {
return false;
}
let lMorph = dDA.has(aWord[0]) ? dDA.get(aWord[0]) : _dAnalyses.get(aWord[1]);
//echo("lMorph: "+lMorph.toString());
if (lMorph.length === 0) {
return false;
}
//echo("***");
// check negative condition
if (lMorph.some(s => (s.search(sNegPattern) !== -1))) {
return false;
}
// search sPattern
return lMorph.some(s => (s.search(sPattern) !== -1));
}
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getDefaultOptions: function () {
return gc_options.getOptions(_sAppContext).gl_shallowCopy();
},
resetOptions: function () {
_dOptions = gc_options.getOptions(_sAppContext).gl_shallowCopy();
}
};
//////// Common functions
function option (sOpt) {
// return true if option sOpt is active
return _dOptions.get(sOpt);
}
function displayInfo (dDA, aWord) {
// for debugging: info of word
if (!aWord) {
helpers.echo("> nothing to find");
return true;
}
if (!_dAnalyses.has(aWord[1]) && !_storeMorphFromFSA(aWord[1])) {
helpers.echo("> not in FSA");
return true;
}
if (dDA.has(aWord[0])) {
helpers.echo("DA: " + dDA.get(aWord[0]));
}
helpers.echo("FSA: " + _dAnalyses.get(aWord[1]));
return true;
}
function _storeMorphFromFSA (sWord) {
// retrieves morphologies list from _oDict -> _dAnalyses
//helpers.echo("register: "+sWord + " " + _oDict.getMorph(sWord).toString())
_dAnalyses.set(sWord, _oDict.getMorph(sWord));
return !!_dAnalyses.get(sWord);
}
function morph (dDA, aWord, sPattern, bStrict=true, bNoWord=false) {
// analyse a tuple (position, word), return true if sPattern in morphologies (disambiguation on)
if (!aWord) {
//helpers.echo("morph: noword, returns " + bNoWord);
return bNoWord;
}
//helpers.echo("aWord: "+aWord.toString());
if (!_dAnalyses.has(aWord[1]) && !_storeMorphFromFSA(aWord[1])) {
return false;
}
let lMorph = dDA.has(aWord[0]) ? dDA.get(aWord[0]) : _dAnalyses.get(aWord[1]);
//helpers.echo("lMorph: "+lMorph.toString());
if (lMorph.length === 0) {
return false;
}
//helpers.echo("***");
if (bStrict) {
return lMorph.every(s => (s.search(sPattern) !== -1));
}
return lMorph.some(s => (s.search(sPattern) !== -1));
}
function morphex (dDA, aWord, sPattern, sNegPattern, bNoWord=false) {
// analyse a tuple (position, word), returns true if not sNegPattern in word morphologies and sPattern in word morphologies (disambiguation on)
if (!aWord) {
//helpers.echo("morph: noword, returns " + bNoWord);
return bNoWord;
}
//helpers.echo("aWord: "+aWord.toString());
if (!_dAnalyses.has(aWord[1]) && !_storeMorphFromFSA(aWord[1])) {
return false;
}
let lMorph = dDA.has(aWord[0]) ? dDA.get(aWord[0]) : _dAnalyses.get(aWord[1]);
//helpers.echo("lMorph: "+lMorph.toString());
if (lMorph.length === 0) {
return false;
}
//helpers.echo("***");
// check negative condition
if (lMorph.some(s => (s.search(sNegPattern) !== -1))) {
return false;
}
// search sPattern
return lMorph.some(s => (s.search(sPattern) !== -1));
}
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// returns a list of sWord's stems
if (!sWord) {
return [];
}
if (!_dAnalyses.has(sWord) && !_storeMorphFromFSA(sWord)) {
return [];
}
return [ for (s of _dAnalyses.get(sWord)) s.slice(1, s.indexOf(" ")) ];
}
//// functions to get text outside pattern scope
// warning: check compile_rules.py to understand how it works
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// returns a list of sWord's stems
if (!sWord) {
return [];
}
if (!_dAnalyses.has(sWord) && !_storeMorphFromFSA(sWord)) {
return [];
}
return _dAnalyses.get(sWord).map( s => s.slice(1, s.indexOf(" ")) );
}
//// functions to get text outside pattern scope
// warning: check compile_rules.py to understand how it works
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return [iStart + _zNextWord.lastIndex - m[1].length, m[1]];
}
const _zPrevWord = new RegExp ("([a-zà-öA-Zø-ÿÀ-Ö0-9Ø-ßĀ-ʯfi-st_][a-zà-öA-Zø-ÿÀ-Ö0-9Ø-ßĀ-ʯfi-st_-]*) +$", "i");
function prevword1 (s, iEnd) {
// get previous word (optimization)
//echo("prev1, s:"+s);
//echo("prev1, s.slice(0, iEnd):"+s.slice(0, iEnd));
let m = _zPrevWord.exec(s.slice(0, iEnd));
//echo("prev1, m:"+m);
if (!m) {
return null;
}
//echo("prev1: " + m.index + " " + m[1]);
return [m.index, m[1]];
}
function look (s, zPattern, zNegPattern=null) {
// seek zPattern in s (before/after/fulltext), if antipattern zNegPattern not in s
try {
if (zNegPattern && zNegPattern.test(s)) {
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return [iStart + _zNextWord.lastIndex - m[1].length, m[1]];
}
const _zPrevWord = new RegExp ("([a-zà-öA-Zø-ÿÀ-Ö0-9Ø-ßĀ-ʯfi-st_][a-zà-öA-Zø-ÿÀ-Ö0-9Ø-ßĀ-ʯfi-st_-]*) +$", "i");
function prevword1 (s, iEnd) {
// get previous word (optimization)
//helpers.echo("prev1, s:"+s);
//helpers.echo("prev1, s.slice(0, iEnd):"+s.slice(0, iEnd));
let m = _zPrevWord.exec(s.slice(0, iEnd));
//helpers.echo("prev1, m:"+m);
if (!m) {
return null;
}
//helpers.echo("prev1: " + m.index + " " + m[1]);
return [m.index, m[1]];
}
function look (s, zPattern, zNegPattern=null) {
// seek zPattern in s (before/after/fulltext), if antipattern zNegPattern not in s
try {
if (zNegPattern && zNegPattern.test(s)) {
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}
if (dDA.has(nPos)) {
return true;
}
if (!_dAnalyses.has(sWord) && !_storeMorphFromFSA(sWord)) {
return true;
}
//echo("morph: "+_dAnalyses.get(sWord).toString());
if (_dAnalyses.get(sWord).length === 1) {
return true;
}
let lSelect = [ for (sMorph of _dAnalyses.get(sWord)) if (sMorph.search(sPattern) !== -1) sMorph ];
//echo("lSelect: "+lSelect.toString());
if (lSelect.length > 0) {
if (lSelect.length != _dAnalyses.get(sWord).length) {
dDA.set(nPos, lSelect);
}
} else if (lDefault) {
dDA.set(nPos, lDefaul);
}
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}
if (dDA.has(nPos)) {
return true;
}
if (!_dAnalyses.has(sWord) && !_storeMorphFromFSA(sWord)) {
return true;
}
//helpers.echo("morph: "+_dAnalyses.get(sWord).toString());
if (_dAnalyses.get(sWord).length === 1) {
return true;
}
let lSelect = _dAnalyses.get(sWord).filter( sMorph => sMorph.search(sPattern) === -1 );
//helpers.echo("lSelect: "+lSelect.toString());
if (lSelect.length > 0) {
if (lSelect.length != _dAnalyses.get(sWord).length) {
dDA.set(nPos, lSelect);
}
} else if (lDefault) {
dDA.set(nPos, lDefaul);
}
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}
if (!_dAnalyses.has(sWord) && !_storeMorphFromFSA(sWord)) {
return true;
}
if (_dAnalyses.get(sWord).length === 1) {
return true;
}
let lSelect = [ for (sMorph of _dAnalyses.get(sWord)) if (sMorph.search(sPattern) === -1) sMorph ];
//echo("lSelect: "+lSelect.toString());
if (lSelect.length > 0) {
if (lSelect.length != _dAnalyses.get(sWord).length) {
dDA.set(nPos, lSelect);
}
} else if (lDefault) {
dDA.set(nPos, lDefault);
}
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}
if (!_dAnalyses.has(sWord) && !_storeMorphFromFSA(sWord)) {
return true;
}
if (_dAnalyses.get(sWord).length === 1) {
return true;
}
let lSelect = _dAnalyses.get(sWord).filter( sMorph => sMorph.search(sPattern) === -1 );
//helpers.echo("lSelect: "+lSelect.toString());
if (lSelect.length > 0) {
if (lSelect.length != _dAnalyses.get(sWord).length) {
dDA.set(nPos, lSelect);
}
} else if (lDefault) {
dDA.set(nPos, lDefault);
}
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