Grammalecte  Check-in [16611cf664]

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Overview
Comment:[core][fr] code cleaning (pylint)
Downloads: Tarball | ZIP archive | SQL archive
Timelines: family | ancestors | descendants | both | trunk | fr | core
Files: files | file ages | folders
SHA3-256:16611cf6645d27571442ae30073b1f402c736ebf805386aaf7d29b52cdd99669
User & Date: olr 2019-05-11 18:50:40
Context
2019-05-12
10:00
[graphspell] code cleaning (pylint) check-in: c2f4d1d4ee user: olr tags: graphspell, trunk
2019-05-11
18:50
[core][fr] code cleaning (pylint) check-in: 16611cf664 user: olr tags: core, fr, trunk
18:49
version 1.0.3 check-in: 4c24296679 user: olr tags: trunk
Changes

Changes to gc_lang/fr/modules-js/gce_analyseur.js.

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        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
    let a2 = _oSpellChecker.getMorph(sWord2);
    if (a2.length === 0) {
        return false;
    }
    if (cregex.checkConjVerb(a2, sReqMorphConj)) {
        // verb word2 is ok
        return false;
    }
    let a1 = _oSpellChecker.getMorph(sWord1);
    if (a1.length === 0) {
        return false;
    }
    if (cregex.checkAgreement(a1, a2) && (cregex.mbAdj(a2) || cregex.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
    let a2 = _oSpellChecker.getMorph(sWord2);
    if (a2.length === 0) {
        return false;
    }
    if (cregex.checkConjVerb(a2, sReqMorphConj)) {
        // verb word2 is ok
        return false;
    }
    let a1 = _oSpellChecker.getMorph(sWord1);
    if (a1.length === 0) {
        return false;
    }
    if (cregex.checkAgreement(a1, a2) && (cregex.mbAdj(a2) || cregex.mbAdjNb(a1))) {
        return false;
    }
    // now, we know there no agreement, and conjugation is also wrong
    if (cregex.isNomAdj(a1)) {
        return true;
    }
    //if cregex.isNomAdjVerb(a1): # considered true
    if (bLastHopeCond) {
        return true;
    }
    return false;
}

function checkAgreement (sWord1, sWord2) {
    let a2 = _oSpellChecker.getMorph(sWord2);
    if (a2.length === 0) {
        return true;
    }
    let a1 = _oSpellChecker.getMorph(sWord1);
    if (a1.length === 0) {
        return true;
    }
    return cregex.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))) {







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        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
    let lMorph2 = _oSpellChecker.getMorph(sWord2);
    if (lMorph2.length === 0) {
        return false;
    }
    if (cregex.checkConjVerb(lMorph2, sReqMorphConj)) {
        // verb word2 is ok
        return false;
    }
    let lMorph1 = _oSpellChecker.getMorph(sWord1);
    if (lMorph1.length === 0) {
        return false;
    }
    if (cregex.checkAgreement(lMorph1, lMorph2) && (cregex.mbAdj(lMorph2) || cregex.mbAdj(lMorph1))) {
        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
    let lMorph2 = _oSpellChecker.getMorph(sWord2);
    if (lMorph2.length === 0) {
        return false;
    }
    if (cregex.checkConjVerb(lMorph2, sReqMorphConj)) {
        // verb word2 is ok
        return false;
    }
    let lMorph1 = _oSpellChecker.getMorph(sWord1);
    if (lMorph1.length === 0) {
        return false;
    }
    if (cregex.checkAgreement(lMorph1, lMorph2) && (cregex.mbAdj(lMorph2) || cregex.mbAdjNb(lMorph1))) {
        return false;
    }
    // now, we know there no agreement, and conjugation is also wrong
    if (cregex.isNomAdj(lMorph1)) {
        return true;
    }
    //if cregex.isNomAdjVerb(lMorph1): # considered true
    if (bLastHopeCond) {
        return true;
    }
    return false;
}

function checkAgreement (sWord1, sWord2) {
    let lMorph2 = _oSpellChecker.getMorph(sWord2);
    if (lMorph2.length === 0) {
        return true;
    }
    let lMorph1 = _oSpellChecker.getMorph(sWord1);
    if (lMorph1.length === 0) {
        return true;
    }
    return cregex.checkAgreement(lMorph1, lMorph2);
}

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))) {

Changes to gc_lang/fr/modules/gce_analyseur.py.

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        return "vous"
    if s2 == "nous":
        return "nous"
    if s2 == "vous":
        return "vous"
    if s2 == "eux":
        return "ils"
    if s2 == "elle" or s2 == "elles":
        if cr.mbNprMasNotFem(_oSpellChecker.getMorph(s1)):
            return "ils"
        # si épicène, indéterminable, mais OSEF, le féminin l’emporte
        return "elles"
    return s1 + " et " + s2


................................................................................
    if cr.mbVconj(lMorph) and not cr.mbMG(lMorph):
        return True
    return False


def isAmbiguousAndWrong (sWord1, sWord2, sReqMorphNA, sReqMorphConj):
    "use it if <sWord1> won’t be a verb; <sWord2> is assumed to be True via isAmbiguousNAV"
    a2 = _oSpellChecker.getMorph(sWord2)
    if not a2:
        return False
    if cr.checkConjVerb(a2, sReqMorphConj):
        # verb word2 is ok
        return False
    a1 = _oSpellChecker.getMorph(sWord1)
    if not a1:
        return False
    if cr.checkAgreement(a1, a2) and (cr.mbAdj(a2) or cr.mbAdj(a1)):
        return False
    return True


def isVeryAmbiguousAndWrong (sWord1, sWord2, sReqMorphNA, sReqMorphConj, bLastHopeCond):
    "use it if <sWord1> can be also a verb; <sWord2> is assumed to be True via isAmbiguousNAV"
    a2 = _oSpellChecker.getMorph(sWord2)
    if not a2:
        return False
    if cr.checkConjVerb(a2, sReqMorphConj):
        # verb word2 is ok
        return False
    a1 = _oSpellChecker.getMorph(sWord1)
    if not a1:
        return False
    if cr.checkAgreement(a1, a2) and (cr.mbAdj(a2) or cr.mbAdjNb(a1)):
        return False
    # now, we know there no agreement, and conjugation is also wrong
    if cr.isNomAdj(a1):
        return True
    #if cr.isNomAdjVerb(a1): # considered True
    if bLastHopeCond:
        return True
    return False


def checkAgreement (sWord1, sWord2):
    "check agreement between <sWord1> and <sWord1>"
    a2 = _oSpellChecker.getMorph(sWord2)
    if not a2:
        return True
    a1 = _oSpellChecker.getMorph(sWord1)
    if not a1:
        return True
    return cr.checkAgreement(a1, a2)


_zUnitSpecial = re.compile("[µ/⁰¹²³⁴⁵⁶⁷⁸⁹Ωℓ·]")
_zUnitNumbers = re.compile("[0-9]")

def mbUnit (s):
    "returns True it can be a measurement unit"







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        return "vous"
    if s2 == "nous":
        return "nous"
    if s2 == "vous":
        return "vous"
    if s2 == "eux":
        return "ils"
    if s2 in ("elle", "elles"):
        if cr.mbNprMasNotFem(_oSpellChecker.getMorph(s1)):
            return "ils"
        # si épicène, indéterminable, mais OSEF, le féminin l’emporte
        return "elles"
    return s1 + " et " + s2


................................................................................
    if cr.mbVconj(lMorph) and not cr.mbMG(lMorph):
        return True
    return False


def isAmbiguousAndWrong (sWord1, sWord2, sReqMorphNA, sReqMorphConj):
    "use it if <sWord1> won’t be a verb; <sWord2> is assumed to be True via isAmbiguousNAV"
    lMorph2 = _oSpellChecker.getMorph(sWord2)
    if not lMorph2:
        return False
    if cr.checkConjVerb(lMorph2, sReqMorphConj):
        # verb word2 is ok
        return False
    lMorph1 = _oSpellChecker.getMorph(sWord1)
    if not lMorph1:
        return False
    if cr.checkAgreement(lMorph1, lMorph2) and (cr.mbAdj(lMorph2) or cr.mbAdj(lMorph1)):
        return False
    return True


def isVeryAmbiguousAndWrong (sWord1, sWord2, sReqMorphNA, sReqMorphConj, bLastHopeCond):
    "use it if <sWord1> can be also a verb; <sWord2> is assumed to be True via isAmbiguousNAV"
    lMorph2 = _oSpellChecker.getMorph(sWord2)
    if not lMorph2:
        return False
    if cr.checkConjVerb(lMorph2, sReqMorphConj):
        # verb word2 is ok
        return False
    lMorph1 = _oSpellChecker.getMorph(sWord1)
    if not lMorph1:
        return False
    if cr.checkAgreement(lMorph1, lMorph2) and (cr.mbAdj(lMorph2) or cr.mbAdjNb(lMorph1)):
        return False
    # now, we know there no agreement, and conjugation is also wrong
    if cr.isNomAdj(lMorph1):
        return True
    #if cr.isNomAdjVerb(lMorph1): # considered True
    if bLastHopeCond:
        return True
    return False


def checkAgreement (sWord1, sWord2):
    "check agreement between <sWord1> and <sWord1>"
    lMorph2 = _oSpellChecker.getMorph(sWord2)
    if not lMorph2:
        return True
    lMorph1 = _oSpellChecker.getMorph(sWord1)
    if not lMorph1:
        return True
    return cr.checkAgreement(lMorph1, lMorph2)


_zUnitSpecial = re.compile("[µ/⁰¹²³⁴⁵⁶⁷⁸⁹Ωℓ·]")
_zUnitNumbers = re.compile("[0-9]")

def mbUnit (s):
    "returns True it can be a measurement unit"

Changes to gc_lang/fr/modules/lexicographe.py.

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                aMorph.append( "{} :  inconnu du dictionnaire".format(sWord) )
            # suffixe d’un mot composé
            if m2:
                aMorph.append( "-{} : {}".format(m2.group(2), self._formatSuffix(m2.group(2).lower())) )
            # Verbes
            aVerb = { s[1:s.find("/")]  for s in lMorph  if ":V" in s }
            return (aMorph, aVerb)
        except:
            traceback.print_exc()
            return (["#erreur"], None)

    def formatTags (self, sTags):
        "returns string: readable tags"
        sRes = ""
        sTags = re.sub("(?<=V[1-3])[itpqnmr_eaxz]+", "", sTags)







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                aMorph.append( "{} :  inconnu du dictionnaire".format(sWord) )
            # suffixe d’un mot composé
            if m2:
                aMorph.append( "-{} : {}".format(m2.group(2), self._formatSuffix(m2.group(2).lower())) )
            # Verbes
            aVerb = { s[1:s.find("/")]  for s in lMorph  if ":V" in s }
            return (aMorph, aVerb)
        except (IndexError, TypeError):
            traceback.print_exc()
            return (["#erreur"], None)

    def formatTags (self, sTags):
        "returns string: readable tags"
        sRes = ""
        sTags = re.sub("(?<=V[1-3])[itpqnmr_eaxz]+", "", sTags)

Changes to gc_lang/fr/modules/mfsp.py.

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    "returns sWord modified by sSfx"
    if not sSfx:
        return ""
    if sSfx == "0":
        return sWord
    try:
        return sWord[:-(ord(sSfx[0])-48)] + sSfx[1:]  if sSfx[0] != '0'  else  sWord + sSfx[1:]  # 48 is the ASCII code for "0"
    except:
        return "## erreur, code : " + str(sSfx) + " ##"







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    "returns sWord modified by sSfx"
    if not sSfx:
        return ""
    if sSfx == "0":
        return sWord
    try:
        return sWord[:-(ord(sSfx[0])-48)] + sSfx[1:]  if sSfx[0] != '0'  else  sWord + sSfx[1:]  # 48 is the ASCII code for "0"
    except (IndexError, TypeError):
        return "## erreur, code : " + str(sSfx) + " ##"

Changes to gc_lang/fr/modules/textformatter.py.

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    def __init__ (self):
        for sOpt, lTup in dReplTable.items():
            for i, t in enumerate(lTup):
                lTup[i] = (re.compile(t[0]), t[1])

    def formatText (self, sText):

        for sOptName, bVal in lOptRepl:
            if bVal:
                for zRgx, sRep in dReplTable[sOptName]:
                    sText = zRgx.sub(sRep, sText)
        return sText







>





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    def __init__ (self):
        for sOpt, lTup in dReplTable.items():
            for i, t in enumerate(lTup):
                lTup[i] = (re.compile(t[0]), t[1])

    def formatText (self, sText):
        "returns formatted text"
        for sOptName, bVal in lOptRepl:
            if bVal:
                for zRgx, sRep in dReplTable[sOptName]:
                    sText = zRgx.sub(sRep, sText)
        return sText