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With pyparsing, you don't need to learn a new syntax for defining grammars or matching expressions - the parsing module provides a library of classes that you use to construct the grammar directly in Python. Here is a program to parse "Hello, World!" (or any greeting of the form C{", !"}), built up using L{Word}, L{Literal}, and L{And} elements (L{'+'} operator gives L{And} expressions, strings are auto-converted to L{Literal} expressions):: from pyparsing import Word, alphas # define grammar of a greeting greet = Word(alphas) + "," + Word(alphas) + "!" hello = "Hello, World!" print (hello, "->", greet.parseString(hello)) The program outputs the following:: Hello, World! -> ['Hello', ',', 'World', '!'] The Python representation of the grammar is quite readable, owing to the self-explanatory class names, and the use of '+', '|' and '^' operators. The L{ParseResults} object returned from L{ParserElement.parseString} can be accessed as a nested list, a dictionary, or an object with named attributes. The pyparsing module handles some of the problems that are typically vexing when writing text parsers: - extra or missing whitespace (the above program will also handle "Hello,World!", "Hello , World !", etc.) - quoted strings - embedded comments s2.1.10s07 Oct 2016 01:31 UTCs*Paul McGuire iÿÿÿÿN(tref(tdatetime(tRLock(t OrderedDicttAndtCaselessKeywordtCaselessLiteralt CharsNotIntCombinetDicttEachtEmptyt FollowedBytForwardt GoToColumntGrouptKeywordtLineEndt LineStarttLiteralt MatchFirsttNoMatchtNotAnyt OneOrMoretOnlyOncetOptionaltOrtParseBaseExceptiontParseElementEnhancetParseExceptiontParseExpressiontParseFatalExceptiont ParseResultstParseSyntaxExceptiont ParserElementt QuotedStringtRecursiveGrammarExceptiontRegextSkipTot StringEndt StringStarttSuppresstTokentTokenConvertertWhitetWordtWordEndt WordStartt ZeroOrMoret alphanumstalphast alphas8bitt anyCloseTagt anyOpenTagt cStyleCommenttcoltcommaSeparatedListtcommonHTMLEntityt countedArraytcppStyleCommenttdblQuotedStringtdblSlashCommentt delimitedListtdictOftdowncaseTokenstemptythexnumst htmlCommenttjavaStyleCommenttlinetlineEndt lineStarttlinenot makeHTMLTagst makeXMLTagstmatchOnlyAtColtmatchPreviousExprtmatchPreviousLiteralt nestedExprtnullDebugActiontnumstoneOftopAssoctoperatorPrecedencet printablestpunc8bittpythonStyleCommentt quotedStringt removeQuotestreplaceHTMLEntityt replaceWitht restOfLinetsglQuotedStringtsranget stringEndt stringStartttraceParseActiont unicodeStringt upcaseTokenst withAttributet indentedBlocktoriginalTextFortungroupt infixNotationt locatedExprt withClasst CloseMatchttokenMaptpyparsing_commoniicCs}t|tƒr|Syt|ƒSWnUtk rxt|ƒjtjƒdƒ}tdƒ}|jd„ƒ|j |ƒSXdS(sDrop-in replacement for str(obj) that tries to be Unicode friendly. It first tries str(obj). If that fails with a UnicodeEncodeError, then it tries unicode(obj). It then < returns the unicode object | encodes it with the default encoding | ... >. txmlcharrefreplaces&#\d+;cSs#dtt|ddd!ƒƒdS(Ns\uiiiÿÿÿÿ(thextint(tt((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt”tN( t isinstancetunicodetstrtUnicodeEncodeErrortencodetsystgetdefaultencodingR%tsetParseActionttransformString(tobjtrett xmlcharref((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt_ustrƒs  s6sum len sorted reversed list tuple set any all min maxccs|] }|VqdS(N((t.0ty((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys  sicCsRd}d„djƒDƒ}x/t||ƒD]\}}|j||ƒ}q,W|S(s/Escape &, <, >, ", ', etc. in a string of data.s&><"'css|]}d|dVqdS(t&t;N((R€ts((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys §ssamp gt lt quot apos(tsplittziptreplace(tdatat from_symbolst to_symbolstfrom_tto_((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt _xml_escape¢s t _ConstantscBseZRS((t__name__t __module__(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRެst 0123456789t ABCDEFabcdefi\Rrccs$|]}|tjkr|VqdS(N(tstringt whitespace(R€tc((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ´scBs_eZdZdd d d„Zed„ƒZd„Zd„Zd„Z dd„Z d „Z RS( s7base exception class for all parsing runtime exceptionsicCs[||_|dkr*||_d|_n||_||_||_|||f|_dS(NRr(tloctNonetmsgtpstrt parserElementtargs(tselfR™R–R˜telem((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__init__ºs       cCs||j|j|j|jƒS(s­ internal factory method to simplify creating one type of ParseException from another - avoids having __init__ signature conflicts among subclasses (R™R–R˜Rš(tclstpe((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt_from_exceptionÅscCsm|dkrt|j|jƒS|dkr>t|j|jƒS|dkr]t|j|jƒSt|ƒ‚dS(s÷supported attributes by name are: - lineno - returns the line number of the exception text - col - returns the column number of the exception text - line - returns the line containing the exception text RHR7tcolumnREN(R7R¢(RHR–R™R7REtAttributeError(Rœtaname((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt __getattr__Ís   cCs d|j|j|j|jfS(Ns"%s (at char %d), (line:%d, col:%d)(R˜R–RHR¢(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__str__ÜscCs t|ƒS(N(R(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__repr__ßss>!} ('-' operator) indicates that parsing is to stop immediately because an unbacktrackable syntax error has been found(R�R�R±(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR!scBs eZdZd„Zd„ZRS(sZexception thrown by L{ParserElement.validate} if the grammar could be improperly recursivecCs ||_dS(N(tparseElementTrace(RœtparseElementList((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžscCs d|jS(NsRecursiveGrammarException: %s(R³(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦ s(R�R�R±RžR¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR$s t_ParseResultsWithOffsetcBs,eZd„Zd„Zd„Zd„ZRS(cCs||f|_dS(N(ttup(Rœtp1tp2((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž$scCs |j|S(N(R¶(Rœti((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt __getitem__&scCst|jdƒS(Ni(treprR¶(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR§(scCs|jd|f|_dS(Ni(R¶(RœR¹((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt setOffset*s(R�R�RžRºR§R¼(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRµ#s   cBsôeZdZd-d-eed„Zd-d-eeed„Zd„Zed„Z d„Z d„Z d„Z d„Z e Zd „Zd „Zd „Zd „Zd „ZerÀeZeZeZn-eZeZeZd„Zd„Zd„Zd„Zd„Zd-d„Zd„Zd„Zd„Z d„Z!d„Z"d„Z#d„Z$d„Z%d„Z&d„Z'dd„Z(d „Z)d!„Z*d"„Z+d-e,ded#„Z-d$„Z.d%„Z/dd&ed'„Z0d(„Z1d)„Z2d*„Z3d+„Z4d,„Z5RS(.sI Structured parse results, to provide multiple means of access to the parsed data: - as a list (C{len(results)}) - by list index (C{results[0], results[1]}, etc.) - by attribute (C{results.} - see L{ParserElement.setResultsName}) Example:: integer = Word(nums) date_str = (integer.setResultsName("year") + '/' + integer.setResultsName("month") + '/' + integer.setResultsName("day")) # equivalent form: # date_str = integer("year") + '/' + integer("month") + '/' + integer("day") # parseString returns a ParseResults object result = date_str.parseString("1999/12/31") def test(s, fn=repr): print("%s -> %s" % (s, fn(eval(s)))) test("list(result)") test("result[0]") test("result['month']") test("result.day") test("'month' in result") test("'minutes' in result") test("result.dump()", str) prints:: list(result) -> ['1999', '/', '12', '/', '31'] result[0] -> '1999' result['month'] -> '12' result.day -> '31' 'month' in result -> True 'minutes' in result -> False result.dump() -> ['1999', '/', '12', '/', '31'] - day: 31 - month: 12 - year: 1999 cCs/t||ƒr|Stj|ƒ}t|_|S(N(Rstobjectt__new__tTruet_ParseResults__doinit(RŸttoklisttnametasListtmodaltretobj((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¾Ts  cCsê|jr¬t|_d|_d|_i|_||_||_|dkrTg}n||tƒrp||_ n-||t ƒr‘t|ƒ|_ n |g|_ t ƒ|_ n|dk ræ|ræ|sÔd|j|¾s(Rò(Rœ((Rœs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt _itervalues½scs‡fd†ˆjƒDƒS(Nc3s|]}|ˆ|fVqdS(N((R€RÚ(Rœ(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys Ás(Rò(Rœ((Rœs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt _iteritemsÀscCst|jƒƒS(sVReturns all named result keys (as a list in Python 2.x, as an iterator in Python 3.x).(RÌRð(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytkeys×scCst|jƒƒS(sXReturns all named result values (as a list in Python 2.x, as an iterator in Python 3.x).(RÌt itervalues(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytvaluesÛscCst|jƒƒS(sfReturns all named result key-values (as a list of tuples in Python 2.x, as an iterator in Python 3.x).(RÌt iteritems(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRáßscCs t|jƒS(s�Since keys() returns an iterator, this method is helpful in bypassing code that looks for the existence of any defined results names.(tboolRÐ(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pythaskeysãscOsÄ|sdg}nxI|jƒD];\}}|dkrJ|d|f}qtd|ƒ‚qWt|dtƒs“t|ƒdks“|d|kr²|d}||}||=|S|d}|SdS(s¹ Removes and returns item at specified index (default=C{last}). Supports both C{list} and C{dict} semantics for C{pop()}. If passed no argument or an integer argument, it will use C{list} semantics and pop tokens from the list of parsed tokens. If passed a non-integer argument (most likely a string), it will use C{dict} semantics and pop the corresponding value from any defined results names. A second default return value argument is supported, just as in C{dict.pop()}. Example:: def remove_first(tokens): tokens.pop(0) print(OneOrMore(Word(nums)).parseString("0 123 321")) # -> ['0', '123', '321'] print(OneOrMore(Word(nums)).addParseAction(remove_first).parseString("0 123 321")) # -> ['123', '321'] label = Word(alphas) patt = label("LABEL") + OneOrMore(Word(nums)) print(patt.parseString("AAB 123 321").dump()) # Use pop() in a parse action to remove named result (note that corresponding value is not # removed from list form of results) def remove_LABEL(tokens): tokens.pop("LABEL") return tokens patt.addParseAction(remove_LABEL) print(patt.parseString("AAB 123 321").dump()) prints:: ['AAB', '123', '321'] - LABEL: AAB ['AAB', '123', '321'] iÿÿÿÿtdefaultis-pop() got an unexpected keyword argument '%s'iN(RáRÔRsRoRÝ(RœR›tkwargsRÚR×tindexR}t defaultvalue((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytpopès"     cCs||kr||S|SdS(si Returns named result matching the given key, or if there is no such name, then returns the given C{defaultValue} or C{None} if no C{defaultValue} is specified. Similar to C{dict.get()}. Example:: integer = Word(nums) date_str = integer("year") + '/' + integer("month") + '/' + integer("day") result = date_str.parseString("1999/12/31") print(result.get("year")) # -> '1999' print(result.get("hour", "not specified")) # -> 'not specified' print(result.get("hour")) # -> None N((Rœtkeyt defaultValue((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRØs cCsw|jj||ƒx]|jjƒD]L\}}x=t|ƒD]/\}\}}t||||kƒ|| ['0', '123', '321'] # use a parse action to insert the parse location in the front of the parsed results def insert_locn(locn, tokens): tokens.insert(0, locn) print(OneOrMore(Word(nums)).addParseAction(insert_locn).parseString("0 123 321")) # -> [0, '0', '123', '321'] N(RÍtinsertRÐRáRâRµ(RœRýtinsStrRÂRåRÚRçRè((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR2scCs|jj|ƒdS(sþ Add single element to end of ParseResults list of elements. Example:: print(OneOrMore(Word(nums)).parseString("0 123 321")) # -> ['0', '123', '321'] # use a parse action to compute the sum of the parsed integers, and add it to the end def append_sum(tokens): tokens.append(sum(map(int, tokens))) print(OneOrMore(Word(nums)).addParseAction(append_sum).parseString("0 123 321")) # -> ['0', '123', '321', 444] N(RÍtappend(Rœtitem((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRFs cCs0t|tƒr||7}n|jj|ƒdS(s Add sequence of elements to end of ParseResults list of elements. Example:: patt = OneOrMore(Word(alphas)) # use a parse action to append the reverse of the matched strings, to make a palindrome def make_palindrome(tokens): tokens.extend(reversed([t[::-1] for t in tokens])) return ''.join(tokens) print(patt.addParseAction(make_palindrome).parseString("lskdj sdlkjf lksd")) # -> 'lskdjsdlkjflksddsklfjkldsjdksl' N(RsR RÍtextend(Rœtitemseq((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRTs  cCs|j2|jjƒdS(s7 Clear all elements and results names. N(RÍRÐtclear(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRfscCs…y ||SWntk r dSX||jkr}||jkrR|j|ddStg|j|D]}|d^qcƒSndSdS(NRriÿÿÿÿi(RÓRÐRÉR (RœRÂR×((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¥ms  +cCs|jƒ}||7}|S(N(RÒ(RœtotherR}((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__add__{s  c sõ|jrÌt|jƒ‰‡fd†}|jjƒ}g|D]<\}}|D])}|t|d||dƒƒf^qMq=}xJ|D]?\}}|||œst](R¨RÍ(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦›sRrcCsog}xb|jD]W}|r2|r2|j|ƒnt|tƒrT||jƒ7}q|jt|ƒƒqW|S(N(RÍRRsR t _asStringListR(RœtseptoutR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžs cCs5g|jD]'}t|tƒr+|jƒn|^q S(sƒ Returns the parse results as a nested list of matching tokens, all converted to strings. Example:: patt = OneOrMore(Word(alphas)) result = patt.parseString("sldkj lsdkj sldkj") # even though the result prints in string-like form, it is actually a pyparsing ParseResults print(type(result), result) # -> ['sldkj', 'lsdkj', 'sldkj'] # Use asList() to create an actual list result_list = result.asList() print(type(result_list), result_list) # -> ['sldkj', 'lsdkj', 'sldkj'] (RÍRsR RÃ(Rœtres((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRéscsGtr|j}n |j}‡fd†‰t‡fd†|ƒDƒƒS(sà Returns the named parse results as a nested dictionary. Example:: integer = Word(nums) date_str = integer("year") + '/' + integer("month") + '/' + integer("day") result = date_str.parseString('12/31/1999') print(type(result), repr(result)) # -> (['12', '/', '31', '/', '1999'], {'day': [('1999', 4)], 'year': [('12', 0)], 'month': [('31', 2)]}) result_dict = result.asDict() print(type(result_dict), repr(result_dict)) # -> {'day': '1999', 'year': '12', 'month': '31'} # even though a ParseResults supports dict-like access, sometime you just need to have a dict import json print(json.dumps(result)) # -> Exception: TypeError: ... is not JSON serializable print(json.dumps(result.asDict())) # -> {"month": "31", "day": "1999", "year": "12"} csMt|tƒrE|jƒr%|jƒSg|D]}ˆ|ƒ^q,Sn|SdS(N(RsR RútasDict(R|R×(ttoItem(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÑs    c3s'|]\}}|ˆ|ƒfVqdS(N((R€RÚR×(R(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys Ús(tPY_3RáRøRÏ(Rœtitem_fn((Rs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¹s    cCsPt|jƒ}|jjƒ|_|j|_|jj|jƒ|j|_|S(sA Returns a new copy of a C{ParseResults} object. (R RÍRÐRÒRÈRÉR RÇ(RœR}((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÒÜs   c Csäd}g}td„|jjƒDƒƒ}|d}|sPd}d}d}nd } |d k rk|} n|jr€|j} n| s™|r�dSd} n|||d| dg7}x t|jƒD]ø\} } t| tƒrI| |kr|| j || |o|d k||ƒg7}qº|| j d |o6|d k||ƒg7}qÂd } | |krh|| } n| sƒ|rzqÂqƒd} nt t | ƒƒ} |||d| d| d| dg 7}qÂW|||d| dg7}dj |ƒS( s‡ (Deprecated) Returns the parse results as XML. Tags are created for tokens and lists that have defined results names. s css2|](\}}|D]}|d|fVqqdS(iN((R€RÚRR×((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ís s RrtITEMtsgss %s%s- %s: s icss|]}t|tƒVqdS(N(RsR (R€tvv((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys sss %s%s[%d]: %s%s%sRr( RRRÃRútsortedRáRsR tdumpR»tanyRâR¨( RœR$tdepthtfullRtNLRáRÚR×R¹R1((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR3Ps,  B?cOstj|jƒ||ŽdS(sõ Pretty-printer for parsed results as a list, using the C{pprint} module. Accepts additional positional or keyword args as defined for the C{pprint.pprint} method. (U{http://docs.python.org/3/library/pprint.html#pprint.pprint}) Example:: ident = Word(alphas, alphanums) num = Word(nums) func = Forward() term = ident | num | Group('(' + func + ')') func <<= ident + Group(Optional(delimitedList(term))) result = func.parseString("fna a,b,(fnb c,d,200),100") result.pprint(width=40) prints:: ['fna', ['a', 'b', ['(', 'fnb', ['c', 'd', '200'], ')'], '100']] N(tpprintRÃ(RœR›Rü((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR8}scCsC|j|jjƒ|jdk r-|jƒp0d|j|jffS(N(RÍRÐRÒRÈR—RÉRÇ(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt __getstate__•s  cCsm|d|_|d\|_}}|_i|_|jj|ƒ|dk r`t|ƒ|_n d|_dS(Nii(RÍRÐRÇRÉR R—RÙRÈ(RœtstateR/t inAccumNames((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt __setstate__œs   cCs|j|j|j|jfS(N(RÍRÇRÊRË(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__getnewargs__©scCs tt|ƒƒt|jƒƒS(N(R®R¯RÌRõ(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR°¬sN(6R�R�R±R—R¿R¾RsRžRºRÜRéRêRëRìt __nonzero__RîRïRòRóRôRRõR÷RáRðRöRøRúRÿRØRRRRR¥R RRR§R¦RRÃRRÒRÆR!R-R0R3R8R9R<R=R°(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR -sh& '              4             # =  %-   cCsW|}d|ko#t|ƒknr@||ddkr@dS||jdd|ƒS(sReturns current column within a string, counting newlines as line separators. The first column is number 1. Note: the default parsing behavior is to expand tabs in the input string before starting the parsing process. See L{I{ParserElement.parseString}} for more information on parsing strings containing C{}s, and suggested methods to maintain a consistent view of the parsed string, the parse location, and line and column positions within the parsed string. iis (RÝtrfind(R–tstrgR„((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR7±s cCs|jdd|ƒdS(sReturns current line number within a string, counting newlines as line separators. The first line is number 1. Note: the default parsing behavior is to expand tabs in the input string before starting the parsing process. See L{I{ParserElement.parseString}} for more information on parsing strings containing C{}s, and suggested methods to maintain a consistent view of the parsed string, the parse location, and line and column positions within the parsed string. s ii(tcount(R–R@((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRH¾s cCsR|jdd|ƒ}|jd|ƒ}|dkrB||d|!S||dSdS(sfReturns the line of text containing loc within a string, counting newlines as line separators. s iiN(R?tfind(R–R@tlastCRtnextCR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyREÊs  cCsAdt|ƒdt|ƒdt||ƒt||ƒfGHdS(NsMatch s at loc s(%d,%d)(RRHR7(tinstringR–texpr((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt_defaultStartDebugActionÔscCs'dt|ƒdt|jƒƒGHdS(NsMatched s -> (RRuRÃ(REtstartloctendlocRFttoks((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt_defaultSuccessDebugAction×scCsdt|ƒGHdS(NsException raised:(R(RER–RFtexc((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt_defaultExceptionDebugActionÚscGsdS(sG'Do-nothing' debug action, to suppress debugging output during parsing.N((R›((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyROÝsics ˆtkr‡fd†Sdg‰tg‰td dkrVdd„}dd„‰ntj}tj‰d}|d dƒd }|d|d |f‰‡‡‡‡‡‡fd †}d }y"tˆdtˆdƒjƒ}Wntk rþt ˆƒ}nX||_|S(Ncs ˆ|ƒS(N((R„tlRp(tfunc(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqúRriiiicSsJtdkrdnd}tjd| |dƒ|}|j|jfgS( Niiiiýÿÿÿiþÿÿÿtlimiti(iii(tsystem_versiont tracebackt extract_stacktfilenameRH(RPR t frame_summary((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRSscSs2tj|d|ƒ}|d}|j|jfgS(NRPiÿÿÿÿ(RRt extract_tbRTRH(ttbRPtframesRU((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRVs iRPiÿÿÿÿics¿x¸y&ˆ|ˆdŒ}tˆd<|SWqtk r¶ˆdrI‚nAz:tjƒd}ˆ|ddƒdd ˆks‚‚nWd~Xˆdˆkr°ˆdcd7R�t __class__(ii( tsingleArgBuiltinsRÆRQRRRSRVtgetattrR�t ExceptionRu(ROR[RSt LINE_DIFFt this_lineR]t func_name((RVRZRORPR[R\s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt _trim_arityøs*          cBseZdZdZeZed„ƒZed„ƒZed„Z d„Z d„Z ed„Z e d„Zd „Zd „Zd „Zd „Zd „Zd„Ze d„Zd„Ze e d„Zd„Zd„Zdefd„ƒYZedFk rdefd„ƒYZndefd„ƒYZiZe ƒZ!ddgZ"e e d„Z#eZ$ed„ƒZ%eZ&edd„ƒZ'ed„Z(e)ed„Z*d „Z+e)d!„Z,e)ed"„Z-d#„Z.d$„Z/d%„Z0d&„Z1d'„Z2d(„Z3d)„Z4d*„Z5d+„Z6d,„Z7d-„Z8d.„Z9d/„Z:dFd0„Z;d1„Z<d2„Z=d3„Z>d4„Z?d5„Z@d6„ZAe d7„ZBd8„ZCd9„ZDd:„ZEd;„ZFgd<„ZGed=„ZHd>„ZId?„ZJd@„ZKdA„ZLdB„ZMe dC„ZNe dDe e edE„ZORS(Gs)Abstract base level parser element class.s cCs |t_dS(sÑ Overrides the default whitespace chars Example:: # default whitespace chars are space, and newline OneOrMore(Word(alphas)).parseString("abc def\nghi jkl") # -> ['abc', 'def', 'ghi', 'jkl'] # change to just treat newline as significant ParserElement.setDefaultWhitespaceChars(" \t") OneOrMore(Word(alphas)).parseString("abc def\nghi jkl") # -> ['abc', 'def'] N(R"tDEFAULT_WHITE_CHARS(tchars((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsetDefaultWhitespaceChars=s cCs |t_dS(s… Set class to be used for inclusion of string literals into a parser. Example:: # default literal class used is Literal integer = Word(nums) date_str = integer("year") + '/' + integer("month") + '/' + integer("day") date_str.parseString("1999/12/31") # -> ['1999', '/', '12', '/', '31'] # change to Suppress ParserElement.inlineLiteralsUsing(Suppress) date_str = integer("year") + '/' + integer("month") + '/' + integer("day") date_str.parseString("1999/12/31") # -> ['1999', '12', '31'] N(R"t_literalStringClass(RŸ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytinlineLiteralsUsingLscCsÁtƒ|_d|_d|_d|_||_t|_t j |_ t|_ t |_t |_tƒ|_t |_t |_t|_d|_t|_d|_d|_t|_t |_dS(NRr(NNN(RÌt parseActionR—t failActiontstrReprt resultsNamet saveAsListR¿tskipWhitespaceR"Rft whiteCharstcopyDefaultWhiteCharsRÆtmayReturnEmptytkeepTabst ignoreExprstdebugt streamlinedt mayIndexErrorterrmsgt modalResultst debugActionstret callPreparset callDuringTry(Rœtsavelist((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžas(                   cCsEtj|ƒ}|j|_|j|_|jrAtj|_n|S(s$ Make a copy of this C{ParserElement}. Useful for defining different parse actions for the same parsing pattern, using copies of the original parse element. Example:: integer = Word(nums).setParseAction(lambda toks: int(toks[0])) integerK = integer.copy().addParseAction(lambda toks: toks[0]*1024) + Suppress("K") integerM = integer.copy().addParseAction(lambda toks: toks[0]*1024*1024) + Suppress("M") print(OneOrMore(integerK | integerM | integer).parseString("5K 100 640K 256M")) prints:: [5120, 100, 655360, 268435456] Equivalent form of C{expr.copy()} is just C{expr()}:: integerM = integer().addParseAction(lambda toks: toks[0]*1024*1024) + Suppress("M") (RÒRkRuRrR"RfRq(Rœtcpy((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÒxs    cCs>||_d|j|_t|dƒr:|j|j_n|S(sf Define name for this expression, makes debugging and exception messages clearer. Example:: Word(nums).parseString("ABC") # -> Exception: Expected W:(0123...) (at char 0), (line:1, col:1) Word(nums).setName("integer").parseString("ABC") # -> Exception: Expected integer (at char 0), (line:1, col:1) s Expected t exception(RÂRyRñR�R˜(RœRÂ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsetName�s  cCsE|jƒ}|jdƒr.|d }t}n||_| |_|S(sP Define name for referencing matching tokens as a nested attribute of the returned parse results. NOTE: this returns a *copy* of the original C{ParserElement} object; this is so that the client can define a basic element, such as an integer, and reference it in multiple places with different names. You can also set results names using the abbreviated syntax, C{expr("name")} in place of C{expr.setResultsName("name")} - see L{I{__call__}<__call__>}. Example:: date_str = (integer.setResultsName("year") + '/' + integer.setResultsName("month") + '/' + integer.setResultsName("day")) # equivalent form: date_str = integer("year") + '/' + integer("month") + '/' + integer("day") t*iÿÿÿÿ(RÒtendswithR¿RnRz(RœRÂtlistAllMatchestnewself((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsetResultsName�s     csa|r9|j‰tt‡fd†}ˆ|_||_n$t|jdƒr]|jj|_n|S(s¦Method to invoke the Python pdb debugger when this element is about to be parsed. Set C{breakFlag} to True to enable, False to disable. cs)ddl}|jƒˆ||||ƒS(Niÿÿÿÿ(tpdbt set_trace(RER–t doActionst callPreParseRˆ(t _parseMethod(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytbreakerÀs  t_originalParseMethod(t_parseR¿RŽRñ(Rœt breakFlagR�((RŒs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsetBreak¹s   cOs7tttt|ƒƒƒ|_|jdtƒ|_|S(s  Define action to perform when successfully matching parse element definition. Parse action fn is a callable method with 0-3 arguments, called as C{fn(s,loc,toks)}, C{fn(loc,toks)}, C{fn(toks)}, or just C{fn()}, where: - s = the original string being parsed (see note below) - loc = the location of the matching substring - toks = a list of the matched tokens, packaged as a C{L{ParseResults}} object If the functions in fns modify the tokens, they can return them as the return value from fn, and the modified list of tokens will replace the original. Otherwise, fn does not need to return any value. Optional keyword arguments: - callDuringTry = (default=C{False}) indicate if parse action should be run during lookaheads and alternate testing Note: the default parsing behavior is to expand tabs in the input string before starting the parsing process. See L{I{parseString}} for more information on parsing strings containing C{}s, and suggested methods to maintain a consistent view of the parsed string, the parse location, and line and column positions within the parsed string. Example:: integer = Word(nums) date_str = integer + '/' + integer + '/' + integer date_str.parseString("1999/12/31") # -> ['1999', '/', '12', '/', '31'] # use parse action to convert to ints at parse time integer = Word(nums).setParseAction(lambda toks: int(toks[0])) date_str = integer + '/' + integer + '/' + integer # note that integer fields are now ints, not strings date_str.parseString("1999/12/31") # -> [1999, '/', 12, '/', 31] R~(RÌtmapReRkRØRÆR~(RœtfnsRü((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRzËs"cOsF|jtttt|ƒƒƒ7_|jp<|jdtƒ|_|S(s¦ Add parse action to expression's list of parse actions. See L{I{setParseAction}}. See examples in L{I{copy}}. R~(RkRÌR’ReR~RØRÆ(RœR“Rü((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytaddParseActionñs$csˆ|jddƒ‰|jdtƒr*tnt‰x3|D]+‰‡‡‡fd†}|jj|ƒq7W|jp~|jdtƒ|_|S(sÓAdd a boolean predicate function to expression's list of parse actions. See L{I{setParseAction}} for function call signatures. Unlike C{setParseAction}, functions passed to C{addCondition} need to return boolean success/fail of the condition. Optional keyword arguments: - message = define a custom message to be used in the raised exception - fatal = if True, will raise ParseFatalException to stop parsing immediately; otherwise will raise ParseException Example:: integer = Word(nums).setParseAction(lambda toks: int(toks[0])) year_int = integer.copy() year_int.addCondition(lambda toks: toks[0] >= 2000, message="Only support years 2000 and later") date_str = year_int + '/' + integer + '/' + integer result = date_str.parseString("1999/12/31") # -> Exception: Only support years 2000 and later (at char 0), (line:1, col:1) tmessagesfailed user-defined conditiontfatalcs7ttˆƒ|||ƒƒs3ˆ||ˆƒ‚ndS(N(RùRe(R„RNRp(texc_typetfnR˜(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytpasR~(RØRÆRRRkRR~(RœR“RüR™((R—R˜R˜s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt addConditionûs cCs ||_|S(s Define action to perform if parsing fails at this expression. Fail acton fn is a callable function that takes the arguments C{fn(s,loc,expr,err)} where: - s = string being parsed - loc = location where expression match was attempted and failed - expr = the parse expression that failed - err = the exception thrown The function returns no value. It may throw C{L{ParseFatalException}} if it is desired to stop parsing immediately.(Rl(RœR˜((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt setFailActions cCsnt}xa|rit}xN|jD]C}y)x"|j||ƒ\}}t}q+WWqtk raqXqWq W|S(N(R¿RÆRuR�R(RœRER–t exprsFoundtetdummy((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt_skipIgnorables#s   cCsp|jr|j||ƒ}n|jrl|j}t|ƒ}x-||krh|||krh|d7}q?Wn|S(Ni(RuRŸRpRqRÝ(RœRER–twttinstrlen((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytpreParse0s    cCs |gfS(N((RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt parseImpl<scCs|S(N((RœRER–t tokenlist((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt postParse?sc Cs¦|j}|s|jr,|jdr?|jd|||ƒn|rc|jrc|j||ƒ}n|}|}yUy|j|||ƒ\}}Wn/tk rÂt|t|ƒ|j |ƒ‚nXWqæt k r(} |jdr|jd|||| ƒn|jr"|j|||| ƒn‚qæXnº|rP|jrP|j||ƒ}n|}|}|j sw|t|ƒkrËy|j|||ƒ\}}Wqætk rÇt|t|ƒ|j |ƒ‚qæXn|j|||ƒ\}}|j |||ƒ}t ||jd|jd|jƒ} |jrf|s7|jrf|rõyrxk|jD]`} | ||| ƒ}|dk rJt ||jd|jo˜t|t tfƒd|jƒ} qJqJWWqct k rñ} |jdrë|jd|||| ƒn‚qcXqfxn|jD]`} | ||| ƒ}|dk rÿt ||jd|joMt|t tfƒd|jƒ} qÿqÿWn|rœ|jdrœ|jd||||| ƒqœn|| fS(NiiRÃRÄi(RvRlR{R}R¢R£RÕRRÝRyRRxR¥R RnRoRzRkR~R—RsRÌ( RœRER–RŠR‹t debuggingtpreloct tokensStartttokensterrt retTokensR˜((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt _parseNoCacheCsp   &    %$       #cCsNy|j||dtƒdSWn)tk rIt|||j|ƒ‚nXdS(NRŠi(R�RÆRRRy(RœRER–((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyttryParse‹s cCs7y|j||ƒWnttfk r.tSXtSdS(N(R­RRÕRÆR¿(RœRER–((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt canParseNext‘s t_UnboundedCachecBseZd„ZRS(cs‰i‰tƒ|_‰‡‡fd†}‡fd†}‡fd†}tj||ƒ|_tj||ƒ|_tj||ƒ|_dS(Ncsˆj|ˆƒS(N(RØ(RœR(tcachet not_in_cache(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRØžscs|ˆ|}) - define your parse action using the full C{(s,loc,toks)} signature, and reference the input string using the parse action's C{s} argument - explictly expand the tabs in your input string before calling C{parseString} Example:: Word('a').parseString('aaaaabaaa') # -> ['aaaaa'] Word('a').parseString('aaaaabaaa', parseAll=True) # -> Exception: Expected end of text iN( R"RÄRwt streamlineRuRtt expandtabsR�R¢R R'Rtverbose_stacktrace(RœREtparseAllR�R–R©tseRL((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt parseString#s$      ccs’|js|jƒnx|jD]}|jƒq W|jsRt|ƒjƒ}nt|ƒ}d}|j}|j}t j ƒd} yÝxÖ||kra| |kray.|||ƒ} ||| dt ƒ\} } Wnt k rï| d}qŒX| |krT| d7} | | | fV|rK|||ƒ} | |kr>| }qQ|d7}q^| }qŒ| d}qŒWWn(t k r�}t jr„‚qŽ|‚nXdS(s† Scan the input string for expression matches. Each match will return the matching tokens, start location, and end location. May be called with optional C{maxMatches} argument, to clip scanning after 'n' matches are found. If C{overlap} is specified, then overlapping matches will be reported. Note that the start and end locations are reported relative to the string being parsed. See L{I{parseString}} for more information on parsing strings with embedded tabs. Example:: source = "sldjf123lsdjjkf345sldkjf879lkjsfd987" print(source) for tokens,start,end in Word(alphas).scanString(source): print(' '*start + '^'*(end-start)) print(' '*start + tokens[0]) prints:: sldjf123lsdjjkf345sldkjf879lkjsfd987 ^^^^^ sldjf ^^^^^^^ lsdjjkf ^^^^^^ sldkjf ^^^^^^ lkjsfd iR‹iN(RwRÈRuRtRRÉRÝR¢R�R"RÄRÆRRRÊ(RœREt maxMatchestoverlapR�R¡R–t preparseFntparseFntmatchesR§tnextLocR©tnextlocRL((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt scanStringUsB               c Cs%g}d}t|_yáxŽ|j|ƒD]}\}}}|j|||!ƒ|rŸt|tƒrs||jƒ7}qŸt|tƒr�||7}qŸ|j|ƒn|}q(W|j||ƒg|D]}|rÁ|^qÁ}djt t t |ƒƒƒSWn(t k r }t jr‚q!|‚nXdS(sf Extension to C{L{scanString}}, to modify matching text with modified tokens that may be returned from a parse action. To use C{transformString}, define a grammar and attach a parse action to it that modifies the returned token list. Invoking C{transformString()} on a target string will then scan for matches, and replace the matched text patterns according to the logic in the parse action. C{transformString()} returns the resulting transformed string. Example:: wd = Word(alphas) wd.setParseAction(lambda toks: toks[0].title()) print(wd.transformString("now is the winter of our discontent made glorious summer by this sun of york.")) Prints:: Now Is The Winter Of Our Discontent Made Glorious Summer By This Sun Of York. iRrN(R¿RtRÕRRsR RÃRÌR¨R’Rt_flattenRR"RÊ( RœRERtlastERpR„R�toRL((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR{œs(     cCsey6tg|j||ƒD]\}}}|^qƒSWn(tk r`}tjrW‚qa|‚nXdS(s~ Another extension to C{L{scanString}}, simplifying the access to the tokens found to match the given parse expression. May be called with optional C{maxMatches} argument, to clip searching after 'n' matches are found. Example:: # a capitalized word starts with an uppercase letter, followed by zero or more lowercase letters cap_word = Word(alphas.upper(), alphas.lower()) print(cap_word.searchString("More than Iron, more than Lead, more than Gold I need Electricity")) prints:: ['More', 'Iron', 'Lead', 'Gold', 'I'] N(R RÕRR"RÊ(RœRERÎRpR„R�RL((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt searchStringÇs 6 c csfd}d}xJ|j|d|ƒD]3\}}}|||!V|rO|dVn|}q"W||VdS(s[ Generator method to split a string using the given expression as a separator. May be called with optional C{maxsplit} argument, to limit the number of splits; and the optional C{includeSeparators} argument (default=C{False}), if the separating matching text should be included in the split results. Example:: punc = oneOf(list(".,;:/-!?")) print(list(punc.split("This, this?, this sentence, is badly punctuated!"))) prints:: ['This', ' this', '', ' this sentence', ' is badly punctuated', ''] iRÎN(RÕ( RœREtmaxsplittincludeSeparatorstsplitstlastRpR„R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR…Þs %   cCsdt|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdSt ||gƒS(s– Implementation of + operator - returns C{L{And}}. Adding strings to a ParserElement converts them to L{Literal}s by default. Example:: greet = Word(alphas) + "," + Word(alphas) + "!" hello = "Hello, World!" print (hello, "->", greet.parseString(hello)) Prints:: Hello, World! -> ['Hello', ',', 'World', '!'] s4Cannot combine element of type %s with ParserElementt stackleveliN( RsRÑR"RitwarningstwarnR¯t SyntaxWarningR—R(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR ôs  cCs\t|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdS||S(s] Implementation of + operator when left operand is not a C{L{ParserElement}} s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRs cCsmt|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdSt |t j ƒ|gƒS(sQ Implementation of - operator, returns C{L{And}} with error stop s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—Rt _ErrorStop(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__sub__s cCs\t|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdS||S(s] Implementation of - operator when left operand is not a C{L{ParserElement}} s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__rsub__ s csEt|tƒr|d}}n-t|tƒr7|d d }|dd kr_d|df}nt|dtƒrÏ|dd krÏ|ddkrœtˆƒS|ddkr¶tˆƒSˆ|dtˆƒSqLt|dtƒrt|dtƒr|\}}||8}qLtdt|dƒt|dƒƒ‚ntdt|ƒƒ‚|dkrgtdƒ‚n|dkr‚tdƒ‚n||ko™dknr­tdƒ‚n|r‡‡fd †‰|r |dkrꈈ|ƒ}qt ˆg|ƒˆ|ƒ}qAˆ|ƒ}n(|dkr.ˆ}nt ˆg|ƒ}|S( så Implementation of * operator, allows use of C{expr * 3} in place of C{expr + expr + expr}. Expressions may also me multiplied by a 2-integer tuple, similar to C{{min,max}} multipliers in regular expressions. Tuples may also include C{None} as in: - C{expr*(n,None)} or C{expr*(n,)} is equivalent to C{expr*n + L{ZeroOrMore}(expr)} (read as "at least n instances of C{expr}") - C{expr*(None,n)} is equivalent to C{expr*(0,n)} (read as "0 to n instances of C{expr}") - C{expr*(None,None)} is equivalent to C{L{ZeroOrMore}(expr)} - C{expr*(1,None)} is equivalent to C{L{OneOrMore}(expr)} Note that C{expr*(None,n)} does not raise an exception if more than n exprs exist in the input stream; that is, C{expr*(None,n)} does not enforce a maximum number of expr occurrences. If this behavior is desired, then write C{expr*(None,n) + ~expr} iiis7cannot multiply 'ParserElement' and ('%s','%s') objectss0cannot multiply 'ParserElement' and '%s' objectss/cannot multiply ParserElement by negative values@second tuple value must be greater or equal to first tuple values+cannot multiply ParserElement by 0 or (0,0)cs2|dkr$tˆˆ|dƒƒStˆƒSdS(Ni(R(tn(tmakeOptionalListRœ(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRæ]s N(NN( RsRottupleR—R0RRÔR¯t ValueErrorR(RœR t minElementst optElementsR}((RæRœs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__mul__,sD#  &  )      cCs |j|ƒS(N(Rë(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__rmul__pscCsdt|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdSt ||gƒS(sI Implementation of | operator - returns C{L{MatchFirst}} s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—R(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__or__ss cCs\t|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdS||BS(s] Implementation of | operator when left operand is not a C{L{ParserElement}} s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__ror__s cCsdt|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdSt ||gƒS(sA Implementation of ^ operator - returns C{L{Or}} s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—R(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__xor__‹s cCs\t|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdS||AS(s] Implementation of ^ operator when left operand is not a C{L{ParserElement}} s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__rxor__—s cCsdt|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdSt ||gƒS(sC Implementation of & operator - returns C{L{Each}} s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—R (RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__and__£s cCs\t|tƒr!tj|ƒ}nt|tƒsTtjdt|ƒtddƒdS||@S(s] Implementation of & operator when left operand is not a C{L{ParserElement}} s4Cannot combine element of type %s with ParserElementRÞiN( RsRÑR"RiRßRàR¯RáR—(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__rand__¯s cCs t|ƒS(sE Implementation of ~ operator - returns C{L{NotAny}} (R(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt __invert__»scCs'|dk r|j|ƒS|jƒSdS(s  Shortcut for C{L{setResultsName}}, with C{listAllMatches=False}. If C{name} is given with a trailing C{'*'} character, then C{listAllMatches} will be passed as C{True}. If C{name} is omitted, same as calling C{L{copy}}. Example:: # these are equivalent userdata = Word(alphas).setResultsName("name") + Word(nums+"-").setResultsName("socsecno") userdata = Word(alphas)("name") + Word(nums+"-")("socsecno") N(R—R‡RÒ(RœRÂ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__call__Ás  cCs t|ƒS(sˆ Suppresses the output of this C{ParserElement}; useful to keep punctuation from cluttering up returned output. (R)(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsuppressÔscCs t|_|S(s Disables the skipping of whitespace before matching the characters in the C{ParserElement}'s defined pattern. This is normally only used internally by the pyparsing module, but may be needed in some whitespace-sensitive grammars. (RÆRp(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytleaveWhitespaceÛs cCst|_||_t|_|S(s8 Overrides the default whitespace chars (R¿RpRqRÆRr(RœRg((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsetWhitespaceCharsäs   cCs t|_|S(sé Overrides default behavior to expand C{}s to spaces before parsing the input string. Must be called before C{parseString} when the input grammar contains elements that match C{} characters. (R¿Rt(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt parseWithTabsís cCsrt|tƒrt|ƒ}nt|tƒrR||jkrn|jj|ƒqnn|jjt|jƒƒƒ|S(s× Define expression to be ignored (e.g., comments) while doing pattern matching; may be called repeatedly, to define multiple comment or other ignorable patterns. Example:: patt = OneOrMore(Word(alphas)) patt.parseString('ablaj /* comment */ lskjd') # -> ['ablaj'] patt.ignore(cStyleComment) patt.parseString('ablaj /* comment */ lskjd') # -> ['ablaj', 'lskjd'] (RsRÑR)RuRRÒ(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytignoreös cCs1|p t|pt|ptf|_t|_|S(sT Enable display of debugging messages while doing pattern matching. (RGRKRMR{R¿Rv(Rœt startActiont successActiontexceptionAction((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsetDebugActions s    cCs)|r|jtttƒn t|_|S(sŽ Enable display of debugging messages while doing pattern matching. Set C{flag} to True to enable, False to disable. Example:: wd = Word(alphas).setName("alphaword") integer = Word(nums).setName("numword") term = wd | integer # turn on debugging for wd wd.setDebug() OneOrMore(term).parseString("abc 123 xyz 890") prints:: Match alphaword at loc 0(1,1) Matched alphaword -> ['abc'] Match alphaword at loc 3(1,4) Exception raised:Expected alphaword (at char 4), (line:1, col:5) Match alphaword at loc 7(1,8) Matched alphaword -> ['xyz'] Match alphaword at loc 11(1,12) Exception raised:Expected alphaword (at char 12), (line:1, col:13) Match alphaword at loc 15(1,16) Exception raised:Expected alphaword (at char 15), (line:1, col:16) The output shown is that produced by the default debug actions - custom debug actions can be specified using L{setDebugActions}. Prior to attempting to match the C{wd} expression, the debugging message C{"Match at loc (,)"} is shown. Then if the parse succeeds, a C{"Matched"} message is shown, or an C{"Exception raised"} message is shown. Also note the use of L{setName} to assign a human-readable name to the expression, which makes debugging and exception messages easier to understand - for instance, the default name created for the C{Word} expression without calling C{setName} is C{"W:(ABCD...)"}. (RýRGRKRMRÆRv(Rœtflag((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsetDebugs# cCs|jS(N(RÂ(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦@scCs t|ƒS(N(R(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR§CscCst|_d|_|S(N(R¿RwR—Rm(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÈFs  cCsdS(N((RœR´((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytcheckRecursionKscCs|jgƒdS(sj Check defined expressions for valid structure, check for infinite recursive definitions. N(R(Rœt validateTrace((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytvalidateNscCs‹y|jƒ}Wn5tk rGt|dƒ�}|jƒ}WdQXnXy|j||ƒSWn(tk r†}tjr}‚q‡|‚nXdS(sÐ Execute the parse expression on the given file or filename. If a filename is specified (instead of a file object), the entire file is opened, read, and closed before parsing. trN(treadR£topenRÍRR"RÊ(Rœtfile_or_filenameRËt file_contentstfRL((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt parseFileTs  cCsdt|tƒr1||kp0t|ƒt|ƒkSt|tƒrM|j|ƒStt|ƒ|kSdS(N(RsR"tvarsRÑRÒtsuper(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__eq__hs " cCs ||k S(N((RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__ne__pscCstt|ƒƒS(N(thashtid(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__hash__sscCs ||kS(N((RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__req__vscCs ||k S(N((RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__rne__yscCs:y!|jt|ƒd|ƒtSWntk r5tSXdS(sÓ Method for quick testing of a parser against a test string. Good for simple inline microtests of sub expressions while building up larger parser. Parameters: - testString - to test against this expression for a match - parseAll - (default=C{True}) - flag to pass to C{L{parseString}} when running tests Example:: expr = Word(nums) assert expr.matches("100") RËN(RÍRR¿RRÆ(Rœt testStringRË((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÒ|s  t#cCsyt|tƒr6tttj|jƒjƒƒƒ}nt|tƒrTt|ƒ}ng}g}t } x|D]þ} |d k r‘|j | t ƒsž|r±| r±|j | ƒqmn| s½qmndj|ƒ| g} g}yQ| jddƒ} |j| d|ƒ} | j | jd|ƒƒ| o%| } Wnÿtk rï} t| tƒrPdnd}d| kr§| j t| j| ƒƒ| j dt| j| ƒdd |ƒn| j d| jd |ƒ| j d t| ƒƒ| oã|} | } n<tk r*}| j d t|ƒƒ| o|} |} nX|rX|rG| j dƒndj| ƒGHn|j | | fƒqmW| |fS( s3 Execute the parse expression on a series of test strings, showing each test, the parsed results or where the parse failed. Quick and easy way to run a parse expression against a list of sample strings. Parameters: - tests - a list of separate test strings, or a multiline string of test strings - parseAll - (default=C{True}) - flag to pass to C{L{parseString}} when running tests - comment - (default=C{'#'}) - expression for indicating embedded comments in the test string; pass None to disable comment filtering - fullDump - (default=C{True}) - dump results as list followed by results names in nested outline; if False, only dump nested list - printResults - (default=C{True}) prints test output to stdout - failureTests - (default=C{False}) indicates if these tests are expected to fail parsing Returns: a (success, results) tuple, where success indicates that all tests succeeded (or failed if C{failureTests} is True), and the results contain a list of lines of each test's output Example:: number_expr = pyparsing_common.number.copy() result = number_expr.runTests(''' # unsigned integer 100 # negative integer -100 # float with scientific notation 6.02e23 # integer with scientific notation 1e-12 ''') print("Success" if result[0] else "Failed!") result = number_expr.runTests(''' # stray character 100Z # missing leading digit before '.' -.100 # too many '.' 3.14.159 ''', failureTests=True) print("Success" if result[0] else "Failed!") prints:: # unsigned integer 100 [100] # negative integer -100 [-100] # float with scientific notation 6.02e23 [6.02e+23] # integer with scientific notation 1e-12 [1e-12] Success # stray character 100Z ^ FAIL: Expected end of text (at char 3), (line:1, col:4) # missing leading digit before '.' -.100 ^ FAIL: Expected {real number with scientific notation | real number | signed integer} (at char 0), (line:1, col:1) # too many '.' 3.14.159 ^ FAIL: Expected end of text (at char 4), (line:1, col:5) Success Each test string must be on a single line. If you want to test a string that spans multiple lines, create a test like this:: expr.runTest(r"this is a test\n of strings that spans \n 3 lines") (Note that this is a raw string literal, you must include the leading 'r'.) s s\nRËR6s(FATAL)Rrt it^sFAIL: sFAIL-EXCEPTION: N(RsRÑRÌR’RuR©trstript splitlinesRR¿R—RÒRÆRR¨R‡RÍR3RRRER–R7Ra(RœttestsRËtcommenttfullDumpt printResultst failureTestst allResultstcommentstsuccessRpRtresultR R–RL((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytrunTests�sNW' +  ,    N(PR�R�R±RfRÆRÊt staticmethodRhRjRžRÒR‚R‡R¿R‘RzR”RšR›RŸR¢R£R¥R¬R­R®R½R¯R¸R—RµR¾RR½R¿RÃR�RÄRÅRÇRÍt_MAX_INTRÕR{RÙR…R RRãRäRëRìRíRîRïRðRñRòRóRôRõRöR÷RøRùRýRÿR¦R§RÈRRR R R RRRRÒR"(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR"8s’      &   H     " 2G +   D      )            cBseZdZd„ZRS(sT Abstract C{ParserElement} subclass, for defining atomic matching patterns. cCstt|ƒjdtƒdS(NR(R R*RžRÆ(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž s(R�R�R±Rž(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR* scBseZdZd„ZRS(s, An empty token, will always match. cCs2tt|ƒjƒd|_t|_t|_dS(NR (R R RžRÂR¿RsRÆRx(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž s  (R�R�R±Rž(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR  scBs#eZdZd„Zed„ZRS(s( A token that will never match. cCs;tt|ƒjƒd|_t|_t|_d|_dS(NRsUnmatchable token( R RRžRÂR¿RsRÆRxRy(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž* s    cCst|||j|ƒ‚dS(N(RRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£1 s(R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR& s cBs#eZdZd„Zed„ZRS(sÐ Token to exactly match a specified string. Example:: Literal('blah').parseString('blah') # -> ['blah'] Literal('blah').parseString('blahfooblah') # -> ['blah'] Literal('blah').parseString('bla') # -> Exception: Expected "blah" For case-insensitive matching, use L{CaselessLiteral}. For keyword matching (force word break before and after the matched string), use L{Keyword} or L{CaselessKeyword}. cCs«tt|ƒjƒ||_t|ƒ|_y|d|_Wn0tk rntj dt ddƒt |_ nXdt |jƒ|_d|j|_t|_t|_dS(Nis2null string passed to Literal; use Empty() insteadRÞis"%s"s Expected (R RRžtmatchRÝtmatchLentfirstMatchCharRÕRßRàRáR R^RRÂRyRÆRsRx(Rœt matchString((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžC s      cCsg|||jkrK|jdks7|j|j|ƒrK||j|jfSt|||j|ƒ‚dS(Ni(R'R&t startswithR%RRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£V s$(R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR5 s  cBsKeZdZedZded„Zed„Z d„Z e d„ƒZ RS(s\ Token to exactly match a specified string as a keyword, that is, it must be immediately followed by a non-keyword character. Compare with C{L{Literal}}: - C{Literal("if")} will match the leading C{'if'} in C{'ifAndOnlyIf'}. - C{Keyword("if")} will not; it will only match the leading C{'if'} in C{'if x=1'}, or C{'if(y==2)'} Accepts two optional constructor arguments in addition to the keyword string: - C{identChars} is a string of characters that would be valid identifier characters, defaulting to all alphanumerics + "_" and "$" - C{caseless} allows case-insensitive matching, default is C{False}. Example:: Keyword("start").parseString("start") # -> ['start'] Keyword("start").parseString("starting") # -> Exception For case-insensitive matching, use L{CaselessKeyword}. s_$cCsðtt|ƒjƒ|dkr+tj}n||_t|ƒ|_y|d|_Wn't k r}t j dt ddƒnXd|j|_ d|j |_t|_t|_||_|rÝ|jƒ|_|jƒ}nt|ƒ|_dS(Nis2null string passed to Keyword; use Empty() insteadRÞis"%s"s Expected (R RRžR—tDEFAULT_KEYWORD_CHARSR%RÝR&R'RÕRßRàRáRÂRyRÆRsRxtcaselesstuppert caselessmatchR²t identChars(RœR(R.R+((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžq s&        cCsb|jr¥||||j!jƒ|jkrF|t|ƒ|jkse|||jjƒ|jkrF|dksŽ||djƒ|jkrF||j|jfSn¡|||jkrF|jdksÜ|j|j|ƒrF|t|ƒ|jks|||j|jkrF|dks2||d|jkrF||j|jfSt |||j |ƒ‚dS(Nii( R+R&R,R-RÝR.R%R'R)RRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£† s #9)$3#cCs%tt|ƒjƒ}tj|_|S(N(R RRÒR*R.(RœR•((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÒ” s cCs |t_dS(s,Overrides the default Keyword chars N(RR*(Rg((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytsetDefaultKeywordChars™ sN( R�R�R±R1R*R—RÆRžR¿R£RÒR#R/(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR^ s    cBs#eZdZd„Zed„ZRS(sl Token to match a specified string, ignoring case of letters. Note: the matched results will always be in the case of the given match string, NOT the case of the input text. Example:: OneOrMore(CaselessLiteral("CMD")).parseString("cmd CMD Cmd10") # -> ['CMD', 'CMD', 'CMD'] (Contrast with example for L{CaselessKeyword}.) cCsItt|ƒj|jƒƒ||_d|j|_d|j|_dS(Ns'%s's Expected (R RRžR,t returnStringRÂRy(RœR(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžª s cCsS||||j!jƒ|jkr7||j|jfSt|||j|ƒ‚dS(N(R&R,R%R0RRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£± s#(R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRŸ s  cBs&eZdZdd„Zed„ZRS(sÐ Caseless version of L{Keyword}. Example:: OneOrMore(CaselessKeyword("CMD")).parseString("cmd CMD Cmd10") # -> ['CMD', 'CMD'] (Contrast with example for L{CaselessLiteral}.) cCs#tt|ƒj||dtƒdS(NR+(R RRžR¿(RœR(R.((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž¿ scCsŒ||||j!jƒ|jkrp|t|ƒ|jks\|||jjƒ|jkrp||j|jfSt|||j|ƒ‚dS(N(R&R,R-RÝR.R%RRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£ s#9N(R�R�R±R—RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¶ s cBs&eZdZdd„Zed„ZRS(sx A variation on L{Literal} which matches "close" matches, that is, strings with at most 'n' mismatching characters. C{CloseMatch} takes parameters: - C{match_string} - string to be matched - C{maxMismatches} - (C{default=1}) maximum number of mismatches allowed to count as a match The results from a successful parse will contain the matched text from the input string and the following named results: - C{mismatches} - a list of the positions within the match_string where mismatches were found - C{original} - the original match_string used to compare against the input string If C{mismatches} is an empty list, then the match was an exact match. Example:: patt = CloseMatch("ATCATCGAATGGA") patt.parseString("ATCATCGAAXGGA") # -> (['ATCATCGAAXGGA'], {'mismatches': [[9]], 'original': ['ATCATCGAATGGA']}) patt.parseString("ATCAXCGAAXGGA") # -> Exception: Expected 'ATCATCGAATGGA' (with up to 1 mismatches) (at char 0), (line:1, col:1) # exact match patt.parseString("ATCATCGAATGGA") # -> (['ATCATCGAATGGA'], {'mismatches': [[]], 'original': ['ATCATCGAATGGA']}) # close match allowing up to 2 mismatches patt = CloseMatch("ATCATCGAATGGA", maxMismatches=2) patt.parseString("ATCAXCGAAXGGA") # -> (['ATCAXCGAAXGGA'], {'mismatches': [[4, 9]], 'original': ['ATCATCGAATGGA']}) icCs]tt|ƒjƒ||_||_||_d|j|jf|_t|_t|_ dS(Ns&Expected %r (with up to %d mismatches)( R RjRžRÂt match_stringt maxMismatchesRyRÆRxRs(RœR1R2((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžá s    cCs|}t|ƒ}|t|jƒ}||kr|j}d}g} |j} x¯tt|||!|jƒƒD]J\}} | \} } | | kro| j|ƒt| ƒ| kr¹Pq¹qoqoW|d}t|||!gƒ}|j|d<| |d<||fSnt|||j|ƒ‚dS(Niitoriginalt mismatches( RÝR1R2RâR†RR RRy(RœRER–RŠtstartR¡tmaxlocR1tmatch_stringlocR4R2ts_mtsrctmattresults((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£ê s(    ,        (R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRjÈ s cBs>eZdZddddedd„Zed„Zd„ZRS(s Token for matching words composed of allowed character sets. Defined with string containing all allowed initial characters, an optional string containing allowed body characters (if omitted, defaults to the initial character set), and an optional minimum, maximum, and/or exact length. The default value for C{min} is 1 (a minimum value < 1 is not valid); the default values for C{max} and C{exact} are 0, meaning no maximum or exact length restriction. An optional C{excludeChars} parameter can list characters that might be found in the input C{bodyChars} string; useful to define a word of all printables except for one or two characters, for instance. L{srange} is useful for defining custom character set strings for defining C{Word} expressions, using range notation from regular expression character sets. A common mistake is to use C{Word} to match a specific literal string, as in C{Word("Address")}. Remember that C{Word} uses the string argument to define I{sets} of matchable characters. This expression would match "Add", "AAA", "dAred", or any other word made up of the characters 'A', 'd', 'r', 'e', and 's'. To match an exact literal string, use L{Literal} or L{Keyword}. pyparsing includes helper strings for building Words: - L{alphas} - L{nums} - L{alphanums} - L{hexnums} - L{alphas8bit} (alphabetic characters in ASCII range 128-255 - accented, tilded, umlauted, etc.) - L{punc8bit} (non-alphabetic characters in ASCII range 128-255 - currency, symbols, superscripts, diacriticals, etc.) - L{printables} (any non-whitespace character) Example:: # a word composed of digits integer = Word(nums) # equivalent to Word("0123456789") or Word(srange("0-9")) # a word with a leading capital, and zero or more lowercase capital_word = Word(alphas.upper(), alphas.lower()) # hostnames are alphanumeric, with leading alpha, and '-' hostname = Word(alphas, alphanums+'-') # roman numeral (not a strict parser, accepts invalid mix of characters) roman = Word("IVXLCDM") # any string of non-whitespace characters, except for ',' csv_value = Word(printables, excludeChars=",") iics�tt|ƒjƒˆrcdj‡fd†|Dƒƒ}|rcdj‡fd†|Dƒƒ}qcn||_t|ƒ|_|rœ||_t|ƒ|_n||_t|ƒ|_|dk|_ |dkrÞt dƒ‚n||_ |dkrÿ||_ n t |_ |dkr)||_ ||_ nt|ƒ|_d|j|_t|_||_d|j|jkr}|dkr}|dkr}|dkr}|j|jkr¿d t|jƒ|_net|jƒdkrÿd tj|jƒt|jƒf|_n%d t|jƒt|jƒf|_|jrDd |jd |_nytj|jƒ|_Wq}tk ryd|_q}XndS( NRrc3s!|]}|ˆkr|VqdS(N((R€R•(t excludeChars(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys 7 sc3s!|]}|ˆkr|VqdS(N((R€R•(R<(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys 9 siisZcannot specify a minimum length < 1; use Optional(Word()) if zero-length word is permitteds Expected Rs[%s]+s%s[%s]*s [%s][%s]*s\b(R R-RžR¨t initCharsOrigR²t initCharst bodyCharsOrigt bodyCharst maxSpecifiedRètminLentmaxLenR$RRÂRyRÆRxt asKeywordt_escapeRegexRangeCharstreStringRÝR|tescapetcompileRaR—(RœR>R@tmintmaxtexactRDR<((R<s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž4 sT%             :   c CsÊ|jr[|jj||ƒ}|s?t|||j|ƒ‚n|jƒ}||jƒfS|||jkr‰t|||j|ƒ‚n|}|d7}t|ƒ}|j}||j }t ||ƒ}x*||krö|||krö|d7}qÍWt } |||j krt } n|jrG||krG|||krGt } n|jr˜|dkrp||d|ksŒ||kr˜|||kr˜t } q˜n| r¹t|||j|ƒ‚n||||!fS(Nii(R|R%RRytendtgroupR>RÝR@RCRIRÆRBR¿RARD( RœRER–RŠR!R5R¡t bodycharsR6tthrowException((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£j s6       %  < cCs�ytt|ƒjƒSWntk r*nX|jdkr–d„}|j|jkr}d||jƒ||jƒf|_q–d||jƒ|_n|jS(NcSs&t|ƒdkr|d dS|SdS(Nis...(RÝ(R„((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt charsAsStr– s s W:(%s,%s)sW:(%s)(R R-R¦RaRmR—R=R?(RœRP((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦� s  (N( R�R�R±R—RÆRžR¿R£R¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR- s.6 #cBsDeZdZeejdƒƒZdd„Zed„Z d„Z RS(s� Token for matching strings that match a given regular expression. Defined with string specifying the regular expression in a form recognized by the inbuilt Python re module. If the given regex contains named groups (defined using C{(?P...)}), these will be preserved as named parse results. Example:: realnum = Regex(r"[+-]?\d+\.\d*") date = Regex(r'(?P\d{4})-(?P\d\d?)-(?P\d\d?)') # ref: http://stackoverflow.com/questions/267399/how-do-you-match-only-valid-roman-numerals-with-a-regular-expression roman = Regex(r"M{0,4}(CM|CD|D?C{0,3})(XC|XL|L?X{0,3})(IX|IV|V?I{0,3})") s[A-Z]icCs3tt|ƒjƒt|tƒrµ|sAtjdtddƒn||_||_ y+t j |j|j ƒ|_ |j|_ Wqþt jk r±tjd|tddƒ‚qþXnIt|tjƒrò||_ t|ƒ|_|_ ||_ n tdƒ‚t|ƒ|_d|j|_t|_t|_dS(s­The parameters C{pattern} and C{flags} are passed to the C{re.compile()} function as-is. See the Python C{re} module for an explanation of the acceptable patterns and flags.s0null string passed to Regex; use Empty() insteadRÞis$invalid pattern (%s) passed to RegexsCRegex may only be constructed with a string or a compiled RE objects Expected N(R R%RžRsRÑRßRàRátpatterntflagsR|RHRFt sre_constantsterrortcompiledREtypeRuRèRRÂRyRÆRxR¿Rs(RœRQRR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž² s.          cCs’|jj||ƒ}|s6t|||j|ƒ‚n|jƒ}|jƒ}t|jƒƒ}|rˆx|D]}||||eZdZddeeded„Zed„Zd„ZRS(s« Token for matching strings that are delimited by quoting characters. Defined with the following parameters: - quoteChar - string of one or more characters defining the quote delimiting string - escChar - character to escape quotes, typically backslash (default=C{None}) - escQuote - special quote sequence to escape an embedded quote string (such as SQL's "" to escape an embedded ") (default=C{None}) - multiline - boolean indicating whether quotes can span multiple lines (default=C{False}) - unquoteResults - boolean indicating whether the matched text should be unquoted (default=C{True}) - endQuoteChar - string of one or more characters defining the end of the quote delimited string (default=C{None} => same as quoteChar) - convertWhitespaceEscapes - convert escaped whitespace (C{'\t'}, C{'\n'}, etc.) to actual whitespace (default=C{True}) Example:: qs = QuotedString('"') print(qs.searchString('lsjdf "This is the quote" sldjf')) complex_qs = QuotedString('{{', endQuoteChar='}}') print(complex_qs.searchString('lsjdf {{This is the "quote"}} sldjf')) sql_qs = QuotedString('"', escQuote='""') print(sql_qs.searchString('lsjdf "This is the quote with ""embedded"" quotes" sldjf')) prints:: [['This is the quote']] [['This is the "quote"']] [['This is the quote with "embedded" quotes']] c sttˆƒjƒ|jƒ}|sGtjdtddƒtƒ‚n|dkr\|}n4|jƒ}|s�tjdtddƒtƒ‚n|ˆ_ t |ƒˆ_ |dˆ_ |ˆ_ t |ƒˆ_|ˆ_|ˆ_|ˆ_|ˆ_|rTtjtjBˆ_dtjˆj ƒtˆj dƒ|dk rDt|ƒpGdfˆ_nPdˆ_dtjˆj ƒtˆj dƒ|dk r—t|ƒpšdfˆ_t ˆj ƒd krˆjd d j‡fd †tt ˆj ƒd dd ƒDƒƒd7_n|r*ˆjdtj|ƒ7_n|rhˆjdtj|ƒ7_tjˆjƒdˆ_nˆjdtjˆj ƒ7_y+tjˆjˆjƒˆ_ˆjˆ_Wn4tj k rètjdˆjtddƒ‚nXt!ˆƒˆ_"dˆj"ˆ_#t$ˆ_%t&ˆ_'dS(Ns$quoteChar cannot be the empty stringRÞis'endQuoteChar cannot be the empty stringis %s(?:[^%s%s]Rrs%s(?:[^%s\n\r%s]is|(?:s)|(?:c3s<|]2}dtjˆj| ƒtˆj|ƒfVqdS(s%s[^%s]N(R|RGt endQuoteCharRE(R€R¹(Rœ(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys / siÿÿÿÿt)s|(?:%s)s|(?:%s.)s(.)s)*%ss$invalid pattern (%s) passed to Regexs Expected ((R R#RžR©RßRàRát SyntaxErrorR—t quoteCharRÝt quoteCharLentfirstQuoteCharRXtendQuoteCharLentescChartescQuotetunquoteResultstconvertWhitespaceEscapesR|t MULTILINEtDOTALLRRRGRERQR¨RÞtescCharReplacePatternRHRFRSRTRRÂRyRÆRxR¿Rs(RœR[R_R`t multilineRaRXRb((Rœs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž sf             ( %E  c CsT|||jkr(|jj||ƒp+d}|sOt|||j|ƒ‚n|jƒ}|jƒ}|jrJ||j |j !}t |t ƒrJd|krü|j rüidd6dd6dd6dd 6}x/|jƒD]\}}|j||ƒ}q×Wn|jr tj|jd |ƒ}n|jrG|j|j|jƒ}qGqJn||fS( Ns\s s\ts s\ns s\fs s\rs\g<1>(R]R|R%R—RRyRLRMRaR\R^RsRÑRbRáR‡R_RÛReR`RX( RœRER–RŠR!R}tws_maptwslittwschar((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£G s*.      !cCs]ytt|ƒjƒSWntk r*nX|jdkrVd|j|jf|_n|jS(Ns.quoted string, starting with %s ending with %s(R R#R¦RaRmR—R[RX(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦j s N( R�R�R±R—RÆR¿RžR£R¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR#í sA #cBs5eZdZdddd„Zed„Zd„ZRS(sô Token for matching words composed of characters I{not} in a given set (will include whitespace in matched characters if not listed in the provided exclusion set - see example). Defined with string containing all disallowed characters, and an optional minimum, maximum, and/or exact length. The default value for C{min} is 1 (a minimum value < 1 is not valid); the default values for C{max} and C{exact} are 0, meaning no maximum or exact length restriction. Example:: # define a comma-separated-value as anything that is not a ',' csv_value = CharsNotIn(',') print(delimitedList(csv_value).parseString("dkls,lsdkjf,s12 34,@!#,213")) prints:: ['dkls', 'lsdkjf', 's12 34', '@!#', '213'] iicCsÉtt|ƒjƒt|_||_|dkr@tdƒ‚n||_|dkra||_n t |_|dkr‹||_||_nt |ƒ|_ d|j |_ |jdk|_ t|_dS(Nisfcannot specify a minimum length < 1; use Optional(CharsNotIn()) if zero-length char group is permittedis Expected (R RRžRÆRptnotCharsRèRBRCR$RRÂRyRsRx(RœRjRIRJRK((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž† s           cCsÏ|||jkr.t|||j|ƒ‚n|}|d7}|j}t||jt|ƒƒ}x*||kr�|||kr�|d7}qfW|||jkr¾t|||j|ƒ‚n||||!fS(Ni(RjRRyRIRCRÝRB(RœRER–RŠR5tnotcharstmaxlen((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£ž s  cCs€ytt|ƒjƒSWntk r*nX|jdkryt|jƒdkrfd|jd |_qyd|j|_n|jS(Nis !W:(%s...)s!W:(%s)(R RR¦RaRmR—RÝRj(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦¯ s (R�R�R±RžR¿R£R¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRv s cBsXeZdZidd6dd6dd6dd6d d 6Zd d d d d„Zed„ZRS(s� Special matching class for matching whitespace. Normally, whitespace is ignored by pyparsing grammars. This class is included when some whitespace structures are significant. Define with a string containing the whitespace characters to be matched; default is C{" \t\r\n"}. Also takes optional C{min}, C{max}, and C{exact} arguments, as defined for the C{L{Word}} class. sRss ss ss ss s iicsÌttˆƒjƒ|ˆ_ˆjdj‡fd†ˆjDƒƒƒdjd„ˆjDƒƒˆ_tˆ_ dˆjˆ_ |ˆ_ |dkrž|ˆ_ n t ˆ_ |dkrÈ|ˆ_ |ˆ_ ndS(NRrc3s$|]}|ˆjkr|VqdS(N(t matchWhite(R€R•(Rœ(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys Ï scss|]}tj|VqdS(N(R,t whiteStrs(R€R•((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys Ñ ss Expected i(R R,RžRmR÷R¨RqRÂR¿RsRyRBRCR$(RœtwsRIRJRK((Rœs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžÌ s )       cCsÏ|||jkr.t|||j|ƒ‚n|}|d7}||j}t|t|ƒƒ}x-||kr�|||jkr�|d7}qcW|||jkr¾t|||j|ƒ‚n||||!fS(Ni(RmRRyRCRIRÝRB(RœRER–RŠR5R6((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£à s  "(R�R�R±RnRžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR,½ s t_PositionTokencBseZd„ZRS(cCs8tt|ƒjƒ|jj|_t|_t|_ dS(N( R RpRžR^R�RÂR¿RsRÆRx(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžñ s (R�R�Rž(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRpð scBs,eZdZd„Zd„Zed„ZRS(sb Token to advance to a specific column of input text; useful for tabular report scraping. cCs tt|ƒjƒ||_dS(N(R RRžR7(Rœtcolno((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžû scCsŽt||ƒ|jkrŠt|ƒ}|jrB|j||ƒ}nxE||kr†||jƒr†t||ƒ|jkr†|d7}qEWn|S(Ni(R7RÝRuRŸtisspace(RœRER–R¡((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¢ÿ s  7cCs^t||ƒ}||jkr6t||d|ƒ‚n||j|}|||!}||fS(NsText not in expected column(R7R(RœRER–RŠtthiscoltnewlocR}((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£ s  (R�R�R±RžR¢R¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR÷ s  cBs#eZdZd„Zed„ZRS(s¿ Matches if current position is at the beginning of a line within the parse string Example:: test = ''' AAA this line AAA and this line AAA but not this one B AAA and definitely not this one ''' for t in (LineStart() + 'AAA' + restOfLine).searchString(test): print(t) Prints:: ['AAA', ' this line'] ['AAA', ' and this line'] cCs tt|ƒjƒd|_dS(NsExpected start of line(R RRžRy(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž& scCs;t||ƒdkr|gfSt|||j|ƒ‚dS(Ni(R7RRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£* s (R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR s cBs#eZdZd„Zed„ZRS(sU Matches if current position is at the end of a line within the parse string cCs<tt|ƒjƒ|jtjjddƒƒd|_dS(Ns RrsExpected end of line(R RRžR÷R"RfR‡Ry(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž3 scCs‡|t|ƒkrK||dkr0|ddfSt|||j|ƒ‚n8|t|ƒkrk|dgfSt|||j|ƒ‚dS(Ns i(RÝRRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£8 s(R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR/ s cBs#eZdZd„Zed„ZRS(sM Matches if current position is at the beginning of the parse string cCs tt|ƒjƒd|_dS(NsExpected start of text(R R(RžRy(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžG scCsL|dkrB||j|dƒkrBt|||j|ƒ‚qBn|gfS(Ni(R¢RRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£K s (R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR(C s cBs#eZdZd„Zed„ZRS(sG Matches if current position is at the end of the parse string cCs tt|ƒjƒd|_dS(NsExpected end of text(R R'RžRy(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžV scCs…|t|ƒkr-t|||j|ƒ‚nT|t|ƒkrM|dgfS|t|ƒkri|gfSt|||j|ƒ‚dS(Ni(RÝRRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£Z s (R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR'R s cBs&eZdZed„Zed„ZRS(sp Matches if the current position is at the beginning of a Word, and is not preceded by any character in a given set of C{wordChars} (default=C{printables}). To emulate the C{} behavior of regular expressions, use C{WordStart(alphanums)}. C{WordStart} will also match at the beginning of the string being parsed, or at the beginning of a line. cCs/tt|ƒjƒt|ƒ|_d|_dS(NsNot at the start of a word(R R/RžR²t wordCharsRy(RœRu((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžl scCs^|dkrT||d|jks6|||jkrTt|||j|ƒ‚qTn|gfS(Nii(RuRRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£q s  (R�R�R±RTRžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR/d s cBs&eZdZed„Zed„ZRS(sZ Matches if the current position is at the end of a Word, and is not followed by any character in a given set of C{wordChars} (default=C{printables}). To emulate the C{} behavior of regular expressions, use C{WordEnd(alphanums)}. C{WordEnd} will also match at the end of the string being parsed, or at the end of a line. cCs8tt|ƒjƒt|ƒ|_t|_d|_dS(NsNot at the end of a word(R R.RžR²RuRÆRpRy(RœRu((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž€ s cCsvt|ƒ}|dkrl||krl|||jksN||d|jkrlt|||j|ƒ‚qln|gfS(Nii(RÝRuRRy(RœRER–RŠR¡((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£† s  (R�R�R±RTRžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR.x s cBsqeZdZed„Zd„Zd„Zd„Zd„Zd„Z d„Z ed„Z gd „Z d „Z RS( s^ Abstract subclass of ParserElement, for combining and post-processing parsed tokens. cCsött|ƒj|ƒt|tƒr4t|ƒ}nt|tƒr[tj|ƒg|_ nŽt|t j ƒr¶t|ƒ}t d„|Dƒƒr¤t tj|ƒ}nt|ƒ|_ n3yt|ƒ|_ Wntk rè|g|_ nXt|_dS(Ncss|]}t|tƒVqdS(N(RsRÑ(R€RF((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys � s(R RRžRsRÎRÌRÑR"RitexprsR»tIterabletallR’RÔRÆR}(RœRvR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž“ s  cCs |j|S(N(Rv(RœR¹((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRº§ scCs|jj|ƒd|_|S(N(RvRR—Rm(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRª s cCsPt|_g|jD]}|jƒ^q|_x|jD]}|jƒq8W|S(s~Extends C{leaveWhitespace} defined in base class, and also invokes C{leaveWhitespace} on all contained expressions.(RÆRpRvRÒRö(RœR�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRö¯ s  %cCs¤t|tƒrb||jkr tt|ƒj|ƒx(|jD]}|j|jdƒq>Wq n>tt|ƒj|ƒx%|jD]}|j|jdƒq‚W|S(Niÿÿÿÿ(RsR)RuR RRùRv(RœR R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRù¸ scCsfytt|ƒjƒSWntk r*nX|jdkr_d|jjt|j ƒf|_n|jS(Ns%s:(%s)( R RR¦RaRmR—R^R�RRv(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦Ä s %cCswtt|ƒjƒx|jD]}|jƒqWt|jƒdkr`|jd}t||jƒrÓ|j rÓ|jdkrÓ|j rÓ|j|jdg|_d|_ |j |j O_ |j |j O_ n|jd}t||jƒr`|j r`|jdkr`|j r`|jd |j|_d|_ |j |j O_ |j |j O_ q`ndt|ƒ|_|S(Niiiiÿÿÿÿs Expected (R RRÈRvRÝRsR^RkRnR—RvRmRsRxRRy(RœR�R ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÈÎ s0        cCstt|ƒj||ƒ}|S(N(R RR‡(RœRÂR…R}((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR‡ð scCs@||g}x|jD]}|j|ƒqW|jgƒdS(N(RvRR(RœRttmpR�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRô scCs>tt|ƒjƒ}g|jD]}|jƒ^q|_|S(N(R RRÒRv(RœR}R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÒú s%(R�R�R±RÆRžRºRRöRùR¦RÈR‡RRÒ(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR� s    "  cBsWeZdZdefd„ƒYZed„Zed„Zd„Zd„Z d„Z RS(s  Requires all given C{ParseExpression}s to be found in the given order. Expressions may be separated by whitespace. May be constructed using the C{'+'} operator. May also be constructed using the C{'-'} operator, which will suppress backtracking. Example:: integer = Word(nums) name_expr = OneOrMore(Word(alphas)) expr = And([integer("id"),name_expr("name"),integer("age")]) # more easily written as: expr = integer("id") + name_expr("name") + integer("age") RâcBseZd„ZRS(cOs3ttj|ƒj||Žd|_|jƒdS(Nt-(R RRâRžRÂRö(RœR›Rü((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž s (R�R�Rž(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRâ scCsltt|ƒj||ƒtd„|jDƒƒ|_|j|jdjƒ|jdj|_t |_ dS(Ncss|]}|jVqdS(N(Rs(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys  si( R RRžRxRvRsR÷RqRpR¿R}(RœRvR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž s c Cs?|jdj|||dtƒ\}}t}x|jdD]õ}t|tjƒr`t}q<n|r÷y|j|||ƒ\}}Wqtk r›‚qtk rÅ}d|_ tj |ƒ‚qt k rót|t |ƒ|j|ƒ‚qXn|j|||ƒ\}}|s$|jƒr<||7}q<q<W||fS(NiR‹i(RvR�RÆRsRRâR¿R!RR—t __traceback__R¡RÕRÝRyRú( RœRER–RŠt resultlistt errorStopR�t exprtokensR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£ s((   %cCs.t|tƒr!tj|ƒ}n|j|ƒS(N(RsRÑR"RiR(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR5 scCs@||g}x+|jD] }|j|ƒ|jsPqqWdS(N(RvRRs(RœR´tsubRecCheckListR�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR: s   cCsVt|dƒr|jS|jdkrOddjd„|jDƒƒd|_n|jS(NRÂt{Rcss|]}t|ƒVqdS(N(R(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys F st}(RñRÂRmR—R¨Rv(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦A s *( R�R�R±R RâR¿RžR£RRR¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÿ s    cBsAeZdZed„Zed„Zd„Zd„Zd„Z RS(s¾ Requires that at least one C{ParseExpression} is found. If two expressions match, the expression that matches the longest string will be used. May be constructed using the C{'^'} operator. Example:: # construct Or using '^' operator number = Word(nums) ^ Combine(Word(nums) + '.' + Word(nums)) print(number.searchString("123 3.1416 789")) prints:: [['123'], ['3.1416'], ['789']] cCsNtt|ƒj||ƒ|jrAtd„|jDƒƒ|_n t|_dS(Ncss|]}|jVqdS(N(Rs(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys \ s(R RRžRvR4RsR¿(RœRvR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžY s c Cs¢d}d}g}xÉ|jD]¾}y|j||ƒ}WnŒtk rw} d| _| j|krÚ| }| j}qÚqtk rÆt|ƒ|krÚt|t|ƒ|j|ƒ}t|ƒ}qÚqX|j ||fƒqW|rh|j dd„ƒxn|D]c\} }y|j |||ƒSWqþtk r`} d| _| j|kra| }| j}qaqþXqþWn|dk r‰|j|_ |‚nt||d|ƒ‚dS(NiÿÿÿÿRcSs |d S(Ni((tx((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqu Rrs no defined alternatives to match( R—RvR­RR{R–RÕRÝRyRtsortR�R˜( RœRER–RŠt maxExcLoct maxExceptionRÒR�tloc2Rªt_((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£` s<      cCs.t|tƒr!tj|ƒ}n|j|ƒS(N(RsRÑR"RiR(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__ixor__† scCsVt|dƒr|jS|jdkrOddjd„|jDƒƒd|_n|jS(NRÂR€s ^ css|]}t|ƒVqdS(N(R(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys � sR�(RñRÂRmR—R¨Rv(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦‹ s *cCs3||g}x|jD]}|j|ƒqWdS(N(RvR(RœR´RR�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR” s( R�R�R±RÆRžR¿R£RˆR¦R(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRK s    &  cBsAeZdZed„Zed„Zd„Zd„Zd„Z RS(s½ Requires that at least one C{ParseExpression} is found. If two expressions match, the first one listed is the one that will match. May be constructed using the C{'|'} operator. Example:: # construct MatchFirst using '|' operator # watch the order of expressions to match number = Word(nums) | Combine(Word(nums) + '.' + Word(nums)) print(number.searchString("123 3.1416 789")) # Fail! -> [['123'], ['3'], ['1416'], ['789']] # put more selective expression first number = Combine(Word(nums) + '.' + Word(nums)) | Word(nums) print(number.searchString("123 3.1416 789")) # Better -> [['123'], ['3.1416'], ['789']] cCsNtt|ƒj||ƒ|jrAtd„|jDƒƒ|_n t|_dS(Ncss|]}|jVqdS(N(Rs(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ® s(R RRžRvR4RsR¿(RœRvR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž« s c Csýd}d}xê|jD]©}y|j|||ƒ}|SWqtk ro}|j|kr¿|}|j}q¿qtk r¾t|ƒ|kr¿t|t|ƒ|j|ƒ}t|ƒ}q¿qXqW|dk rä|j|_|‚nt||d|ƒ‚dS(Niÿÿÿÿs no defined alternatives to match( R—RvR�RR–RÕRÝRyR˜( RœRER–RŠR„R…R�R}Rª((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£² s$    cCs.t|tƒr!tj|ƒ}n|j|ƒS(N(RsRÑR"RiR(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt__ior__Ê scCsVt|dƒr|jS|jdkrOddjd„|jDƒƒd|_n|jS(NRÂR€s | css|]}t|ƒVqdS(N(R(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys Ô sR�(RñRÂRmR—R¨Rv(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦Ï s *cCs3||g}x|jD]}|j|ƒqWdS(N(RvR(RœR´RR�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRØ s( R�R�R±RÆRžR¿R£R‰R¦R(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRš s     cBs8eZdZed„Zed„Zd„Zd„ZRS(sm Requires all given C{ParseExpression}s to be found, but in any order. Expressions may be separated by whitespace. May be constructed using the C{'&'} operator. Example:: color = oneOf("RED ORANGE YELLOW GREEN BLUE PURPLE BLACK WHITE BROWN") shape_type = oneOf("SQUARE CIRCLE TRIANGLE STAR HEXAGON OCTAGON") integer = Word(nums) shape_attr = "shape:" + shape_type("shape") posn_attr = "posn:" + Group(integer("x") + ',' + integer("y"))("posn") color_attr = "color:" + color("color") size_attr = "size:" + integer("size") # use Each (using operator '&') to accept attributes in any order # (shape and posn are required, color and size are optional) shape_spec = shape_attr & posn_attr & Optional(color_attr) & Optional(size_attr) shape_spec.runTests(''' shape: SQUARE color: BLACK posn: 100, 120 shape: CIRCLE size: 50 color: BLUE posn: 50,80 color:GREEN size:20 shape:TRIANGLE posn:20,40 ''' ) prints:: shape: SQUARE color: BLACK posn: 100, 120 ['shape:', 'SQUARE', 'color:', 'BLACK', 'posn:', ['100', ',', '120']] - color: BLACK - posn: ['100', ',', '120'] - x: 100 - y: 120 - shape: SQUARE shape: CIRCLE size: 50 color: BLUE posn: 50,80 ['shape:', 'CIRCLE', 'size:', '50', 'color:', 'BLUE', 'posn:', ['50', ',', '80']] - color: BLUE - posn: ['50', ',', '80'] - x: 50 - y: 80 - shape: CIRCLE - size: 50 color: GREEN size: 20 shape: TRIANGLE posn: 20,40 ['color:', 'GREEN', 'size:', '20', 'shape:', 'TRIANGLE', 'posn:', ['20', ',', '40']] - color: GREEN - posn: ['20', ',', '40'] - x: 20 - y: 40 - shape: TRIANGLE - size: 20 cCsKtt|ƒj||ƒtd„|jDƒƒ|_t|_t|_dS(Ncss|]}|jVqdS(N(Rs(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys s( R R RžRxRvRsR¿RptinitExprGroups(RœRvR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžs cCs4|jrLtd„|jDƒƒ|_g|jD]}t|tƒr/|j^q/}g|jD]%}|jr]t|tƒ r]|^q]}|||_g|jD]}t|t ƒrŸ|j^qŸ|_ g|jD]}t|t ƒrÐ|j^qÐ|_ g|jD]$}t|tt t fƒs|^q|_ |j |j 7_ t|_n|}|j }|j} g} t} xë| r_|| |j |j } g} xŸ| D]—}y|j||ƒ}Wntk rÜ| j|ƒq X| j|jjt|ƒ|ƒƒ||kr|j|ƒq || kr | j|ƒq q Wt| ƒt| ƒkrut} ququW|r˜djd„|Dƒƒ}t||d|ƒ‚n| g|jD]*}t|tƒr¥|j| kr¥|^q¥7} g}x6| D].}|j|||ƒ\}}|j|ƒqãWt|tgƒƒ}||fS(Ncss3|])}t|tƒrt|jƒ|fVqdS(N(RsRRRF(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ss, css|]}t|ƒVqdS(N(R(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys =ss*Missing one or more required elements (%s)(RŠRÏRvtopt1mapRsRRFRst optionalsR0tmultioptionalsRt multirequiredtrequiredRÆR¿R­RRRØRtremoveRÝR¨R�tsumR (RœRER–RŠR�topt1topt2ttmpLocttmpReqdttmpOptt matchOrdert keepMatchingttmpExprstfailedtmissingR|R;t finalResults((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£sP .5 117      "   > cCsVt|dƒr|jS|jdkrOddjd„|jDƒƒd|_n|jS(NRÂR€s & css|]}t|ƒVqdS(N(R(R€R�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys PsR�(RñRÂRmR—R¨Rv(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦Ks *cCs3||g}x|jD]}|j|ƒqWdS(N(RvR(RœR´RR�((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRTs(R�R�R±R¿RžR£R¦R(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR Þ s 5  1 cBs_eZdZed„Zed„Zd„Zd„Zd„Z d„Z gd„Z d„Z RS( sa Abstract subclass of C{ParserElement}, for combining and post-processing parsed tokens. cCsått|ƒj|ƒt|tƒrattjtƒrItj|ƒ}qatjt |ƒƒ}n||_ d|_ |dk rá|j |_ |j|_|j|jƒ|j|_|j|_|j|_|jj|jƒndS(N(R RRžRsRÑt issubclassR"RiR*RRFR—RmRxRsR÷RqRpRoR}RuR(RœRFR((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž^s        cCsG|jdk r+|jj|||dtƒStd||j|ƒ‚dS(NR‹Rr(RFR—R�RÆRRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£pscCs>t|_|jjƒ|_|jdk r:|jjƒn|S(N(RÆRpRFRÒR—Rö(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRövs  cCs¦t|tƒrc||jkr¢tt|ƒj|ƒ|jdk r`|jj|jdƒq`q¢n?tt|ƒj|ƒ|jdk r¢|jj|jdƒn|S(Niÿÿÿÿ(RsR)RuR RRùRFR—(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRù}s cCs6tt|ƒjƒ|jdk r2|jjƒn|S(N(R RRÈRFR—(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRȉscCsV||kr"t||gƒ‚n||g}|jdk rR|jj|ƒndS(N(R$RFR—R(RœR´R((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR�s  cCsA||g}|jdk r0|jj|ƒn|jgƒdS(N(RFR—RR(RœRRy((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR–scCsuytt|ƒjƒSWntk r*nX|jdkrn|jdk rnd|jjt |jƒf|_n|jS(Ns%s:(%s)( R RR¦RaRmR—RFR^R�R(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦œs %( R�R�R±RÆRžR¿R£RöRùRÈRRR¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRZs      cBs#eZdZd„Zed„ZRS(sõ Lookahead matching of the given parse expression. C{FollowedBy} does I{not} advance the parsing position within the input string, it only verifies that the specified parse expression matches at the current position. C{FollowedBy} always returns a null token list. Example:: # use FollowedBy to match a label only if it is followed by a ':' data_word = Word(alphas) label = data_word + FollowedBy(':') attr_expr = Group(label + Suppress(':') + OneOrMore(data_word, stopOn=label).setParseAction(' '.join)) OneOrMore(attr_expr).parseString("shape: SQUARE color: BLACK posn: upper left").pprint() prints:: [['shape', 'SQUARE'], ['color', 'BLACK'], ['posn', 'upper left']] cCs#tt|ƒj|ƒt|_dS(N(R R RžR¿Rs(RœRF((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž¸scCs|jj||ƒ|gfS(N(RFR­(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£¼s(R�R�R±RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR §s cBs,eZdZd„Zed„Zd„ZRS(s± Lookahead to disallow matching with the given parse expression. C{NotAny} does I{not} advance the parsing position within the input string, it only verifies that the specified parse expression does I{not} match at the current position. Also, C{NotAny} does I{not} skip over leading whitespace. C{NotAny} always returns a null token list. May be constructed using the '~' operator. Example:: cCsBtt|ƒj|ƒt|_t|_dt|jƒ|_ dS(NsFound unwanted token, ( R RRžRÆRpR¿RsRRFRy(RœRF((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžÌs  cCs:|jj||ƒr0t|||j|ƒ‚n|gfS(N(RFR®RRy(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£ÓscCsIt|dƒr|jS|jdkrBdt|jƒd|_n|jS(NRÂs~{R�(RñRÂRmR—RRF(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦Øs (R�R�R±RžR¿R£R¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÁs   t_MultipleMatchcBs eZdd„Zed„ZRS(cCsftt|ƒj|ƒt|_|}t|tƒrFtj|ƒ}n|dk rY|nd|_ dS(N( R RžRžR¿RoRsRÑR"RiR—t not_ender(RœRFtstopOntender((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžâs  c Cs|jj}|j}|jdk }|r9|jj}n|rO|||ƒn||||dtƒ\}}y�|j } xo|r”|||ƒn| r¬|||ƒ} n|} ||| |ƒ\}} | sÜ| jƒr~|| 7}q~q~WWnt t fk rnX||fS(NR‹( RFR�RŸRŸR—R­RÆRuRúRRÕ( RœRER–RŠtself_expr_parsetself_skip_ignorablest check_endert try_not_enderR©thasIgnoreExprsR§t tmptokens((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£ês,   N(R�R�R—RžR¿R£(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžás cBseZdZd„ZRS(sƒ Repetition of one or more of the given expression. Parameters: - expr - expression that must match one or more times - stopOn - (default=C{None}) - expression for a terminating sentinel (only required if the sentinel would ordinarily match the repetition expression) Example:: data_word = Word(alphas) label = data_word + FollowedBy(':') attr_expr = Group(label + Suppress(':') + OneOrMore(data_word).setParseAction(' '.join)) text = "shape: SQUARE posn: upper left color: BLACK" OneOrMore(attr_expr).parseString(text).pprint() # Fail! read 'color' as data instead of next label -> [['shape', 'SQUARE color']] # use stopOn attribute for OneOrMore to avoid reading label string as part of the data attr_expr = Group(label + Suppress(':') + OneOrMore(data_word, stopOn=label).setParseAction(' '.join)) OneOrMore(attr_expr).parseString(text).pprint() # Better -> [['shape', 'SQUARE'], ['posn', 'upper left'], ['color', 'BLACK']] # could also be written as (attr_expr * (1,)).parseString(text).pprint() cCsIt|dƒr|jS|jdkrBdt|jƒd|_n|jS(NRÂR€s}...(RñRÂRmR—RRF(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦!s (R�R�R±R¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRscBs/eZdZdd„Zed„Zd„ZRS(sw Optional repetition of zero or more of the given expression. Parameters: - expr - expression that must match zero or more times - stopOn - (default=C{None}) - expression for a terminating sentinel (only required if the sentinel would ordinarily match the repetition expression) Example: similar to L{OneOrMore} cCs)tt|ƒj|d|ƒt|_dS(NR (R R0RžR¿Rs(RœRFR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž6scCsEy tt|ƒj|||ƒSWnttfk r@|gfSXdS(N(R R0R£RRÕ(RœRER–RŠ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR£:s cCsIt|dƒr|jS|jdkrBdt|jƒd|_n|jS(NRÂRs]...(RñRÂRmR—RRF(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦@s N(R�R�R±R—RžR¿R£R¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR0*s   t _NullTokencBs eZd„ZeZd„ZRS(cCstS(N(RÆ(Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRìJscCsdS(NRr((Rœ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¦Ms(R�R�RìR>R¦(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¨Is cBs/eZdZed„Zed„Zd„ZRS(sa Optional matching of the given expression. Parameters: - expr - expression that must match zero or more times - default (optional) - value to be returned if the optional expression is not found. Example:: # US postal code can be a 5-digit zip, plus optional 4-digit qualifier zip = Combine(Word(nums, exact=5) + Optional('-' + Word(nums, exact=4))) zip.runTests(''' # traditional ZIP code 12345 # ZIP+4 form 12101-0001 # invalid ZIP 98765- ''') prints:: # traditional ZIP code 12345 ['12345'] # ZIP+4 form 12101-0001 ['12101-0001'] # invalid ZIP 98765- ^ FAIL: Expected end of text (at char 5), (line:1, col:6) cCsAtt|ƒj|dtƒ|jj|_||_t|_dS(NR( R RRžRÆRFRoRR¿Rs(RœRFRû((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžts cCs¤y(|jj|||dtƒ\}}Wnottfk r™|jtk r�|jjr�t|jgƒ}|j||jj ['3', '.', '1416'] # will also erroneously match the following print(real.parseString('3. 1416')) # -> ['3', '.', '1416'] real = Combine(Word(nums) + '.' + Word(nums)) print(real.parseString('3.1416')) # -> ['3.1416'] # no match when there are internal spaces print(real.parseString('3. 1416')) # -> Exception: Expected W:(0123...) RrcCsQtt|ƒj|ƒ|r)|jƒn||_t|_||_t|_dS(N( R RRžRötadjacentR¿Rpt joinStringR}(RœRFRºR¹((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžrs    cCs6|jrtj||ƒntt|ƒj|ƒ|S(N(R¹R"RùR R(RœR ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRù|s cCse|jƒ}|2|tdj|j|jƒƒgd|jƒ7}|jr]|jƒr]|gS|SdS(NRrRÄ(RÒR R¨RRºRzRnRú(RœRER–R¤tretToks((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¥ƒs  1(R�R�R±R¿RžRùR¥(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRas cBs eZdZd„Zd„ZRS(sù Converter to return the matched tokens as a list - useful for returning tokens of C{L{ZeroOrMore}} and C{L{OneOrMore}} expressions. Example:: ident = Word(alphas) num = Word(nums) term = ident | num func = ident + Optional(delimitedList(term)) print(func.parseString("fn a,b,100")) # -> ['fn', 'a', 'b', '100'] func = ident + Group(Optional(delimitedList(term))) print(func.parseString("fn a,b,100")) # -> ['fn', ['a', 'b', '100']] cCs#tt|ƒj|ƒt|_dS(N(R RRžR¿Ro(RœRF((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRž›scCs|gS(N((RœRER–R¤((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR¥Ÿs(R�R�R±RžR¥(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR�s  cBs eZdZd„Zd„ZRS(sW Converter to return a repetitive expression as a list, but also as a dictionary. Each element can also be referenced using the first token in the expression as its key. Useful for tabular report scraping when the first column can be used as a item key. Example:: data_word = Word(alphas) label = data_word + FollowedBy(':') attr_expr = Group(label + Suppress(':') + OneOrMore(data_word).setParseAction(' '.join)) text = "shape: SQUARE posn: upper left color: light blue texture: burlap" attr_expr = (label + Suppress(':') + OneOrMore(data_word, stopOn=label).setParseAction(' '.join)) # print attributes as plain groups print(OneOrMore(attr_expr).parseString(text).dump()) # instead of OneOrMore(expr), parse using Dict(OneOrMore(Group(expr))) - Dict will auto-assign names result = Dict(OneOrMore(Group(attr_expr))).parseString(text) print(result.dump()) # access named fields as dict entries, or output as dict print(result['shape']) print(result.asDict()) prints:: ['shape', 'SQUARE', 'posn', 'upper left', 'color', 'light blue', 'texture', 'burlap'] [['shape', 'SQUARE'], ['posn', 'upper left'], ['color', 'light blue'], ['texture', 'burlap']] - color: light blue - posn: upper left - shape: SQUARE - texture: burlap SQUARE {'color': 'light blue', 'posn': 'upper left', 'texture': 'burlap', 'shape': 'SQUARE'} See more examples at L{ParseResults} of accessing fields by results name. cCs#tt|ƒj|ƒt|_dS(N(R R RžR¿Ro(RœRF((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRžÆscCsTx9t|ƒD]+\}}t|ƒdkr1q n|d}t|tƒrct|dƒjƒ}nt|ƒdkr‹td|ƒ||nX|S(ss Decorator for debugging parse actions. When the parse action is called, this decorator will print C{">> entering I{method-name}(line:I{current_source_line}, I{parse_location}, I{matched_tokens})".} When the parse action completes, the decorator will print C{"<<"} followed by the returned value, or any exception that the parse action raised. Example:: wd = Word(alphas) @traceParseAction def remove_duplicate_chars(tokens): return ''.join(sorted(set(''.join(tokens))) wds = OneOrMore(wd).setParseAction(remove_duplicate_chars) print(wds.parseString("slkdjs sld sldd sdlf sdljf")) prints:: >>entering remove_duplicate_chars(line: 'slkdjs sld sldd sdlf sdljf', 0, (['slkdjs', 'sld', 'sldd', 'sdlf', 'sdljf'], {})) <>entering %s(line: '%s', %d, %r) s< ['aa', 'bb', 'cc'] delimitedList(Word(hexnums), delim=':', combine=True).parseString("AA:BB:CC:DD:EE") # -> ['AA:BB:CC:DD:EE'] s [Rs]...N(RRR0R‚R)(RFtdelimtcombinetdlName((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR>9s ,!cs�tƒ‰‡‡fd†}|dkrBttƒjd„ƒ}n |jƒ}|jdƒ|j|dtƒ|ˆjdt ˆƒdƒS(s: Helper to define a counted list of expressions. This helper defines a pattern of the form:: integer expr expr expr... where the leading integer tells how many expr expressions follow. The matched tokens returns the array of expr tokens as a list - the leading count token is suppressed. If C{intExpr} is specified, it should be a pyparsing expression that produces an integer value. Example:: countedArray(Word(alphas)).parseString('2 ab cd ef') # -> ['ab', 'cd'] # in this parser, the leading integer value is given in binary, # '10' indicating that 2 values are in the array binaryConstant = Word('01').setParseAction(lambda t: int(t[0], 2)) countedArray(Word(alphas), intExpr=binaryConstant).parseString('10 ab cd ef') # -> ['ab', 'cd'] cs;|d}ˆ|r,ttˆg|ƒƒp5ttƒ>gS(Ni(RRRA(R„RNRpRå(t arrayExprRF(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytcountFieldParseAction_s -cSst|dƒS(Ni(Ro(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqdRrtarrayLenR~s(len) s...N( R R—R-RPRzRÒR‚R”R¿R(RFtintExprRÎ((RÍRFs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR:Ls    cCsMg}x@|D]8}t|tƒr8|jt|ƒƒq |j|ƒq W|S(N(RsRÌRRÖR(tLR}R¹((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÖks  csFtƒ‰‡fd†}|j|dtƒˆjdt|ƒƒˆS(s* Helper to define an expression that is indirectly defined from the tokens matched in a previous expression, that is, it looks for a 'repeat' of a previous expression. For example:: first = Word(nums) second = matchPreviousLiteral(first) matchExpr = first + ":" + second will match C{"1:1"}, but not C{"1:2"}. Because this matches a previous literal, will also match the leading C{"1:1"} in C{"1:10"}. If this is not desired, use C{matchPreviousExpr}. Do I{not} use with packrat parsing enabled. csc|rTt|ƒdkr'ˆ|d>q_t|jƒƒ}ˆtd„|Dƒƒ>n ˆtƒ>dS(Niicss|]}t|ƒVqdS(N(R(R€ttt((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ‰s(RÝRÖRÃRR (R„RNRpttflat(trep(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytcopyTokenToRepeater‚s R~s(prev) (R R”R¿R‚R(RFRÕ((RÔs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRMts  cs\tƒ‰|jƒ}ˆ|K‰‡fd†}|j|dtƒˆjdt|ƒƒˆS(sS Helper to define an expression that is indirectly defined from the tokens matched in a previous expression, that is, it looks for a 'repeat' of a previous expression. For example:: first = Word(nums) second = matchPreviousExpr(first) matchExpr = first + ":" + second will match C{"1:1"}, but not C{"1:2"}. Because this matches by expressions, will I{not} match the leading C{"1:1"} in C{"1:10"}; the expressions are evaluated first, and then compared, so C{"1"} is compared with C{"10"}. Do I{not} use with packrat parsing enabled. cs8t|jƒƒ‰‡fd†}ˆj|dtƒdS(Ncs7t|jƒƒ}|ˆkr3tdddƒ‚ndS(NRri(RÖRÃR(R„RNRpt theseTokens(t matchTokens(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytmustMatchTheseTokens£s R~(RÖRÃRzR¿(R„RNRpRØ(RÔ(R×s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRÕ¡sR~s(prev) (R RÒR”R¿R‚R(RFte2RÕ((RÔs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRL�s   cCsUx$dD]}|j|t|ƒ}qW|jddƒ}|jddƒ}t|ƒS(Ns\^-]s s\ns s\t(R‡t_bslashR(R„R•((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRE¬s  c sD|r!d„}d„}t‰nd„}d„}t‰g}t|tƒr]|jƒ}n7t|tjƒr~t|ƒ}ntj dt ddƒ|s¡t ƒSd}x­|t |ƒd krV||}x†t ||d ƒD]f\}} || |ƒr |||d =Pqß||| ƒrß|||d =|j|| ƒ| }PqßqßW|d 7}qªW| r|ry‡t |ƒt d j|ƒƒkr»td d jd „|Dƒƒƒjd j|ƒƒStdjd„|Dƒƒƒjd j|ƒƒSWqtk rtj dt ddƒqXnt‡fd†|Dƒƒjd j|ƒƒS(sÛ Helper to quickly define a set of alternative Literals, and makes sure to do longest-first testing when there is a conflict, regardless of the input order, but returns a C{L{MatchFirst}} for best performance. Parameters: - strs - a string of space-delimited literals, or a collection of string literals - caseless - (default=C{False}) - treat all literals as caseless - useRegex - (default=C{True}) - as an optimization, will generate a Regex object; otherwise, will generate a C{MatchFirst} object (if C{caseless=True}, or if creating a C{Regex} raises an exception) Example:: comp_oper = oneOf("< = > <= >= !=") var = Word(alphas) number = Word(nums) term = var | number comparison_expr = term + comp_oper + term print(comparison_expr.searchString("B = 12 AA=23 B<=AA AA>12")) prints:: [['B', '=', '12'], ['AA', '=', '23'], ['B', '<=', 'AA'], ['AA', '>', '12']] cSs|jƒ|jƒkS(N(R,(R tb((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqÌRrcSs|jƒj|jƒƒS(N(R,R)(R RÛ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqÍRrcSs ||kS(N((R RÛ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqÐRrcSs |j|ƒS(N(R)(R RÛ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqÑRrs6Invalid argument to oneOf, expected string or iterableRÞiiiRrs[%s]css|]}t|ƒVqdS(N(RE(R€tsym((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys òss | t|css|]}tj|ƒVqdS(N(R|RG(R€RÜ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ôss7Exception creating Regex for oneOf, building MatchFirstc3s|]}ˆ|ƒVqdS(N((R€RÜ(tparseElementClass(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ûs(RRRsRÑR…R»RwRÌRßRàRáRRÝRâRR¨R%R‚RaR( tstrsR+tuseRegextisequaltmaskstsymbolsR¹tcurRæR ((RÞs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRQ´sL        ! !33  cCsttt||ƒƒƒS(sÜ Helper to easily and clearly define a dictionary by specifying the respective patterns for the key and value. Takes care of defining the C{L{Dict}}, C{L{ZeroOrMore}}, and C{L{Group}} tokens in the proper order. The key pattern can include delimiting markers or punctuation, as long as they are suppressed, thereby leaving the significant key text. The value pattern can include named results, so that the C{Dict} results can include named token fields. Example:: text = "shape: SQUARE posn: upper left color: light blue texture: burlap" attr_expr = (label + Suppress(':') + OneOrMore(data_word, stopOn=label).setParseAction(' '.join)) print(OneOrMore(attr_expr).parseString(text).dump()) attr_label = label attr_value = Suppress(':') + OneOrMore(data_word, stopOn=label).setParseAction(' '.join) # similar to Dict, but simpler call format result = dictOf(attr_label, attr_value).parseString(text) print(result.dump()) print(result['shape']) print(result.shape) # object attribute access works too print(result.asDict()) prints:: [['shape', 'SQUARE'], ['posn', 'upper left'], ['color', 'light blue'], ['texture', 'burlap']] - color: light blue - posn: upper left - shape: SQUARE - texture: burlap SQUARE SQUARE {'color': 'light blue', 'shape': 'SQUARE', 'posn': 'upper left', 'texture': 'burlap'} (R R0R(RRç((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR?ýs!cCs|tƒjd„ƒ}|jƒ}t|_|dƒ||dƒ}|rVd„}n d„}|j|ƒ|j|_|S(s� Helper to return the original, untokenized text for a given expression. Useful to restore the parsed fields of an HTML start tag into the raw tag text itself, or to revert separate tokens with intervening whitespace back to the original matching input text. By default, returns astring containing the original parsed text. If the optional C{asString} argument is passed as C{False}, then the return value is a C{L{ParseResults}} containing any results names that were originally matched, and a single token containing the original matched text from the input string. So if the expression passed to C{L{originalTextFor}} contains expressions with defined results names, you must set C{asString} to C{False} if you want to preserve those results name values. Example:: src = "this is test bold text normal text " for tag in ("b","i"): opener,closer = makeHTMLTags(tag) patt = originalTextFor(opener + SkipTo(closer) + closer) print(patt.searchString(src)[0]) prints:: [' bold text '] ['text'] cSs|S(N((R„R–Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq8Rrt_original_startt _original_endcSs||j|j!S(N(RåRæ(R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq=RrcSs'||jdƒ|jdƒ!g|(dS(NRåRæ(Rÿ(R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt extractText?s(R RzRÒRÆR}Ru(RFtasStringt locMarkert endlocMarkert matchExprRç((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRe s      cCst|ƒjd„ƒS(sp Helper to undo pyparsing's default grouping of And expressions, even if all but one are non-empty. cSs|dS(Ni((Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqJRr(R+Rz(RF((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRfEscCsEtƒjd„ƒ}t|dƒ|dƒ|jƒjƒdƒƒS(s© Helper to decorate a returned token with its starting and ending locations in the input string. This helper adds the following results names: - locn_start = location where matched expression begins - locn_end = location where matched expression ends - value = the actual parsed results Be careful if the input text contains C{} characters, you may want to call C{L{ParserElement.parseWithTabs}} Example:: wd = Word(alphas) for match in locatedExpr(wd).searchString("ljsdf123lksdjjf123lkkjj1222"): print(match) prints:: [[0, 'ljsdf', 5]] [[8, 'lksdjjf', 15]] [[18, 'lkkjj', 23]] cSs|S(N((R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq`Rrt locn_startRçtlocn_end(R RzRRÒRö(RFtlocator((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRhLss\[]-*.$+^?()~ RKcCs |ddS(Nii((R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqkRrs\\0?[xX][0-9a-fA-F]+cCs tt|djdƒdƒƒS(Nis\0xi(tunichrRotlstrip(R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqlRrs \\0[0-7]+cCstt|dddƒƒS(Niii(RïRo(R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqmRrR<s\]s\wRzRRtnegatetbodyRcsOd„‰y-dj‡fd†tj|ƒjDƒƒSWntk rJdSXdS(sÜ Helper to easily define string ranges for use in Word construction. Borrows syntax from regexp '[]' string range definitions:: srange("[0-9]") -> "0123456789" srange("[a-z]") -> "abcdefghijklmnopqrstuvwxyz" srange("[a-z$_]") -> "abcdefghijklmnopqrstuvwxyz$_" The input string must be enclosed in []'s, and the returned string is the expanded character set joined into a single string. The values enclosed in the []'s may be: - a single character - an escaped character with a leading backslash (such as C{\-} or C{\]}) - an escaped hex character with a leading C{'\x'} (C{\x21}, which is a C{'!'} character) (C{\0x##} is also supported for backwards compatibility) - an escaped octal character with a leading C{'\0'} (C{\041}, which is a C{'!'} character) - a range of any of the above, separated by a dash (C{'a-z'}, etc.) - any combination of the above (C{'aeiouy'}, C{'a-zA-Z0-9_$'}, etc.) cSsKt|tƒs|Sdjd„tt|dƒt|dƒdƒDƒƒS(NRrcss|]}t|ƒVqdS(N(Rï(R€R•((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys „sii(RsR R¨RÞtord(tp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq„RrRrc3s|]}ˆ|ƒVqdS(N((R€tpart(t _expanded(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys †sN(R¨t_reBracketExprRÍRòRa(R„((Rös@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR]rs  - cs‡fd†}|S(st Helper method for defining parse actions that require matching at a specific column in the input text. cs2t||ƒˆkr.t||dˆƒ‚ndS(Nsmatched token not at column %d(R7R(R@tlocnRJ(Rå(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt verifyCol�s((RåRù((Rås@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRKŠscs ‡fd†S(s¹ Helper method for common parse actions that simply return a literal value. Especially useful when used with C{L{transformString}()}. Example:: num = Word(nums).setParseAction(lambda toks: int(toks[0])) na = oneOf("N/A NA").setParseAction(replaceWith(math.nan)) term = na | num OneOrMore(term).parseString("324 234 N/A 234") # -> [324, 234, nan, 234] csˆgS(N((R„RNRp(treplStr(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq Rr((Rú((Rús@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRZ”s cCs|ddd!S(s Helper parse action for removing quotation marks from parsed quoted strings. Example:: # by default, quotation marks are included in parsed results quotedString.parseString("'Now is the Winter of our Discontent'") # -> ["'Now is the Winter of our Discontent'"] # use removeQuotes to strip quotation marks from parsed results quotedString.setParseAction(removeQuotes) quotedString.parseString("'Now is the Winter of our Discontent'") # -> ["Now is the Winter of our Discontent"] iiiÿÿÿÿ((R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRX¢s csa‡‡fd†}y"tˆdtˆdƒjƒ}Wntk rStˆƒ}nX||_|S(sG Helper to define a parse action by mapping a function to all elements of a ParseResults list.If any additional args are passed, they are forwarded to the given function as additional arguments after the token, as in C{hex_integer = Word(hexnums).setParseAction(tokenMap(int, 16))}, which will convert the parsed data to an integer using base 16. Example (compare the last to example in L{ParserElement.transformString}:: hex_ints = OneOrMore(Word(hexnums)).setParseAction(tokenMap(int, 16)) hex_ints.runTests(''' 00 11 22 aa FF 0a 0d 1a ''') upperword = Word(alphas).setParseAction(tokenMap(str.upper)) OneOrMore(upperword).runTests(''' my kingdom for a horse ''') wd = Word(alphas).setParseAction(tokenMap(str.title)) OneOrMore(wd).setParseAction(' '.join).runTests(''' now is the winter of our discontent made glorious summer by this sun of york ''') prints:: 00 11 22 aa FF 0a 0d 1a [0, 17, 34, 170, 255, 10, 13, 26] my kingdom for a horse ['MY', 'KINGDOM', 'FOR', 'A', 'HORSE'] now is the winter of our discontent made glorious summer by this sun of york ['Now Is The Winter Of Our Discontent Made Glorious Summer By This Sun Of York'] cs g|D]}ˆ|ˆŒ^qS(N((R„RNRpttokn(R›RO(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR™ÐsR�R^(R`R�RaRu(ROR›R™Rd((R›ROs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRk°s    cCst|ƒjƒS(N(RR,(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqÜRrcCst|ƒjƒS(N(Rtlower(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqßRrcCs<t|tƒr+|}t|d| ƒ}n |j}tttdƒ}|rÑtjƒj t ƒ}t dƒ|dƒt t t|t dƒ|ƒƒƒtddtgƒjdƒj d „ƒt d ƒ}n³d jd „tDƒƒ}tjƒj t ƒt|ƒB}t dƒ|dƒt t t|j tƒtt dƒ|ƒƒƒƒtddtgƒjdƒj d „ƒt d ƒ}ttdƒ|d ƒ}|jdd j|jddƒjƒjƒƒƒjd|ƒ}|jdd j|jddƒjƒjƒƒƒjd|ƒ}||_||_||fS(sRInternal helper to construct opening and closing tag expressions, given a tag nameR+s_-:Rttagt=t/RûRAcSs|ddkS(NiRÿ((R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqïRrR Rrcss!|]}|dkr|VqdS(R N((R€R•((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ñscSs|ddkS(NiRÿ((R„RNRp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqöRrsRLs(RsRÑRRÂR-R2R1R<RÒRzRXR)R R0RRRÆR‡R¨RTRWR@Rt_LR‡ttitleR…R‚Rý(ttagStrtxmltresnamet tagAttrNamet tagAttrValuetopenTagtprintablesLessRAbracktcloseTag((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt _makeTagsâs" o{AA  cCs t|tƒS(s  Helper to construct opening and closing tag expressions for HTML, given a tag name. Matches tags in either upper or lower case, attributes with namespaces and with quoted or unquoted values. Example:: text = 'More info at the pyparsing wiki page' # makeHTMLTags returns pyparsing expressions for the opening and closing tags as a 2-tuple a,a_end = makeHTMLTags("A") link_expr = a + SkipTo(a_end)("link_text") + a_end for link in link_expr.searchString(text): # attributes in the tag (like "href" shown here) are also accessible as named results print(link.link_text, '->', link.href) prints:: pyparsing -> http://pyparsing.wikispaces.com (R RÆ(R((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRIÿscCs t|tƒS(sº Helper to construct opening and closing tag expressions for XML, given a tag name. Matches tags only in the given upper/lower case. Example: similar to L{makeHTMLTags} (R R¿(R((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRJscsT|r|‰n |jƒ‰gˆD]\}}||f^q#‰‡fd†}|S(s< Helper to create a validating parse action to be used with start tags created with C{L{makeXMLTags}} or C{L{makeHTMLTags}}. Use C{withAttribute} to qualify a starting tag with a required attribute value, to avoid false matches on common tags such as C{} or C{
}. Call C{withAttribute} with a series of attribute names and values. Specify the list of filter attributes names and values as: - keyword arguments, as in C{(align="right")}, or - as an explicit dict with C{**} operator, when an attribute name is also a Python reserved word, as in C{**{"class":"Customer", "align":"right"}} - a list of name-value tuples, as in ( ("ns1:class", "Customer"), ("ns2:align","right") ) For attribute names with a namespace prefix, you must use the second form. Attribute names are matched insensitive to upper/lower case. If just testing for C{class} (with or without a namespace), use C{L{withClass}}. To verify that the attribute exists, but without specifying a value, pass C{withAttribute.ANY_VALUE} as the value. Example:: html = '''
Some text
1 4 0 1 0
1,3 2,3 1,1
this has no type
''' div,div_end = makeHTMLTags("div") # only match div tag having a type attribute with value "grid" div_grid = div().setParseAction(withAttribute(type="grid")) grid_expr = div_grid + SkipTo(div | div_end)("body") for grid_header in grid_expr.searchString(html): print(grid_header.body) # construct a match with any div tag having a type attribute, regardless of the value div_any_type = div().setParseAction(withAttribute(type=withAttribute.ANY_VALUE)) div_expr = div_any_type + SkipTo(div | div_end)("body") for div_header in div_expr.searchString(html): print(div_header.body) prints:: 1 4 0 1 0 1 4 0 1 0 1,3 2,3 1,1 cs…x~ˆD]v\}}||kr8t||d|ƒ‚n|tjkr|||krt||d||||fƒ‚qqWdS(Nsno matching attribute s+attribute '%s' has value '%s', must be '%s'(RRct ANY_VALUE(R„RNR©tattrNamet attrValue(tattrs(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyR™Rs   (Rá(R›tattrDictRÚR×R™((Rs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRcs 2  %cCs'|rd|nd}ti||6�S(sã Simplified version of C{L{withAttribute}} when matching on a div class - made difficult because C{class} is a reserved word in Python. Example:: html = '''
Some text
1 4 0 1 0
1,3 2,3 1,1
this <div> has no class
''' div,div_end = makeHTMLTags("div") div_grid = div().setParseAction(withClass("grid")) grid_expr = div_grid + SkipTo(div | div_end)("body") for grid_header in grid_expr.searchString(html): print(grid_header.body) div_any_type = div().setParseAction(withClass(withAttribute.ANY_VALUE)) div_expr = div_any_type + SkipTo(div | div_end)("body") for div_header in div_expr.searchString(html): print(div_header.body) prints:: 1 4 0 1 0 1 4 0 1 0 1,3 2,3 1,1 s%s:classtclass(Rc(t classnamet namespacet classattr((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRi\s t(RYcCs<tƒ}||||B}xt|ƒD]\}}|d d \}} } } | dkrdd|nd|} | dkr¶|d ks˜t|ƒdkr§tdƒ‚n|\} }ntƒj| ƒ}| tjkrÌ| dkr t||ƒt |t |ƒƒ}q÷| dkrx|d k rQt|||ƒt |t ||ƒƒ}qÉt||ƒt |t |ƒƒ}q÷| dkr½t|| |||ƒt || |||ƒ}q÷tdƒ‚n+| tj krë| dkr)t |t ƒst |ƒ}nt|j|ƒt ||ƒ}q÷| dkr—|d k rpt|||ƒt |t ||ƒƒ}qèt||ƒt |t |ƒƒ}q÷| dkrÜt|| |||ƒt || |||ƒ}q÷tdƒ‚n td ƒ‚| r |j| ƒn||j| ƒ|BK}|}q(W||K}|S( sœ Helper method for constructing grammars of expressions made up of operators working in a precedence hierarchy. Operators may be unary or binary, left- or right-associative. Parse actions can also be attached to operator expressions. The generated parser will also recognize the use of parentheses to override operator precedences (see example below). Note: if you define a deep operator list, you may see performance issues when using infixNotation. See L{ParserElement.enablePackrat} for a mechanism to potentially improve your parser performance. Parameters: - baseExpr - expression representing the most basic element for the nested - opList - list of tuples, one for each operator precedence level in the expression grammar; each tuple is of the form (opExpr, numTerms, rightLeftAssoc, parseAction), where: - opExpr is the pyparsing expression for the operator; may also be a string, which will be converted to a Literal; if numTerms is 3, opExpr is a tuple of two expressions, for the two operators separating the 3 terms - numTerms is the number of terms for this operator (must be 1, 2, or 3) - rightLeftAssoc is the indicator whether the operator is right or left associative, using the pyparsing-defined constants C{opAssoc.RIGHT} and C{opAssoc.LEFT}. - parseAction is the parse action to be associated with expressions matching this operator expression (the parse action tuple member may be omitted) - lpar - expression for matching left-parentheses (default=C{Suppress('(')}) - rpar - expression for matching right-parentheses (default=C{Suppress(')')}) Example:: # simple example of four-function arithmetic with ints and variable names integer = pyparsing_common.signed_integer varname = pyparsing_common.identifier arith_expr = infixNotation(integer | varname, [ ('-', 1, opAssoc.RIGHT), (oneOf('* /'), 2, opAssoc.LEFT), (oneOf('+ -'), 2, opAssoc.LEFT), ]) arith_expr.runTests(''' 5+3*6 (5+3)*6 -2--11 ''', fullDump=False) prints:: 5+3*6 [[5, '+', [3, '*', 6]]] (5+3)*6 [[[5, '+', 3], '*', 6]] -2--11 [[['-', 2], '-', ['-', 11]]] iis%s terms %s%s termis@if numterms=3, opExpr must be a tuple or list of two expressionsis6operator must be unary (1), binary (2), or ternary (3)s2operator must indicate right or left associativityN(N(R RâR—RÝRèR‚RRtLEFTR RRtRIGHTRsRRFRz(tbaseExprtopListtlpartrparR}tlastExprR¹toperDeftopExprtaritytrightLeftAssocR™ttermNametopExpr1topExpr2tthisExprRë((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRgƒsR;    '  /'   $  /'     s4"(?:[^"\n\r\\]|(?:"")|(?:\\(?:[^x]|x[0-9a-fA-F]+)))*t"s string enclosed in double quotess4'(?:[^'\n\r\\]|(?:'')|(?:\\(?:[^x]|x[0-9a-fA-F]+)))*t's string enclosed in single quotess*quotedString using single or double quotestusunicode string literalcCs!||krtdƒ‚n|d krŽt|tƒrt|tƒrt|ƒdkrât|ƒdkrâ|d k r²tt|t||tj ddƒƒƒj d„ƒ}q|t j ƒt||tj ƒj d„ƒ}q‹|d k r9tt|t |ƒt |ƒttj ddƒƒƒj d„ƒ}q‹ttt |ƒt |ƒttj ddƒƒƒj d„ƒ}qŽtdƒ‚ntƒ}|d k rØ|tt|ƒt||B|Bƒt|ƒƒK}n.|tt|ƒt||Bƒt|ƒƒK}|jd ||fƒ|S( s~ Helper method for defining nested lists enclosed in opening and closing delimiters ("(" and ")" are the default). Parameters: - opener - opening character for a nested list (default=C{"("}); can also be a pyparsing expression - closer - closing character for a nested list (default=C{")"}); can also be a pyparsing expression - content - expression for items within the nested lists (default=C{None}) - ignoreExpr - expression for ignoring opening and closing delimiters (default=C{quotedString}) If an expression is not provided for the content argument, the nested expression will capture all whitespace-delimited content between delimiters as a list of separate values. Use the C{ignoreExpr} argument to define expressions that may contain opening or closing characters that should not be treated as opening or closing characters for nesting, such as quotedString or a comment expression. Specify multiple expressions using an C{L{Or}} or C{L{MatchFirst}}. The default is L{quotedString}, but if no expressions are to be ignored, then pass C{None} for this argument. Example:: data_type = oneOf("void int short long char float double") decl_data_type = Combine(data_type + Optional(Word('*'))) ident = Word(alphas+'_', alphanums+'_') number = pyparsing_common.number arg = Group(decl_data_type + ident) LPAR,RPAR = map(Suppress, "()") code_body = nestedExpr('{', '}', ignoreExpr=(quotedString | cStyleComment)) c_function = (decl_data_type("type") + ident("name") + LPAR + Optional(delimitedList(arg), [])("args") + RPAR + code_body("body")) c_function.ignore(cStyleComment) source_code = ''' int is_odd(int x) { return (x%2); } int dec_to_hex(char hchar) { if (hchar >= '0' && hchar <= '9') { return (ord(hchar)-ord('0')); } else { return (10+ord(hchar)-ord('A')); } } ''' for func in c_function.searchString(source_code): print("%(name)s (%(type)s) args: %(args)s" % func) prints:: is_odd (int) args: [['int', 'x']] dec_to_hex (int) args: [['char', 'hchar']] s.opening and closing strings cannot be the sameiRKcSs|djƒS(Ni(R©(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq9RrcSs|djƒS(Ni(R©(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq<RrcSs|djƒS(Ni(R©(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqBRrcSs|djƒS(Ni(R©(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqFRrsOopening and closing arguments must be strings if no content expression is givensnested %s%s expressionN(RèR—RsRÑRÝRRRR"RfRzRARÒRR RR)R0R‚(topenertclosertcontentRªR}((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRN÷s4:  $  $    5.c s5‡fd†}‡fd†}‡fd†}ttƒjdƒjƒƒ}tƒtƒj|ƒjdƒ}tƒj|ƒjdƒ}tƒj|ƒjdƒ} |rätt|ƒ|t|t|ƒt|ƒƒ| ƒ} n0tt|ƒt|t|ƒt|ƒƒƒ} |j t tƒƒ| jdƒS( s Helper method for defining space-delimited indentation blocks, such as those used to define block statements in Python source code. Parameters: - blockStatementExpr - expression defining syntax of statement that is repeated within the indented block - indentStack - list created by caller to manage indentation stack (multiple statementWithIndentedBlock expressions within a single grammar should share a common indentStack) - indent - boolean indicating whether block must be indented beyond the the current level; set to False for block of left-most statements (default=C{True}) A valid block must contain at least one C{blockStatement}. Example:: data = ''' def A(z): A1 B = 100 G = A2 A2 A3 B def BB(a,b,c): BB1 def BBA(): bba1 bba2 bba3 C D def spam(x,y): def eggs(z): pass ''' indentStack = [1] stmt = Forward() identifier = Word(alphas, alphanums) funcDecl = ("def" + identifier + Group( "(" + Optional( delimitedList(identifier) ) + ")" ) + ":") func_body = indentedBlock(stmt, indentStack) funcDef = Group( funcDecl + func_body ) rvalue = Forward() funcCall = Group(identifier + "(" + Optional(delimitedList(rvalue)) + ")") rvalue << (funcCall | identifier | Word(nums)) assignment = Group(identifier + "=" + rvalue) stmt << ( funcDef | assignment | identifier ) module_body = OneOrMore(stmt) parseTree = module_body.parseString(data) parseTree.pprint() prints:: [['def', 'A', ['(', 'z', ')'], ':', [['A1'], [['B', '=', '100']], [['G', '=', 'A2']], ['A2'], ['A3']]], 'B', ['def', 'BB', ['(', 'a', 'b', 'c', ')'], ':', [['BB1'], [['def', 'BBA', ['(', ')'], ':', [['bba1'], ['bba2'], ['bba3']]]]]], 'C', 'D', ['def', 'spam', ['(', 'x', 'y', ')'], ':', [[['def', 'eggs', ['(', 'z', ')'], ':', [['pass']]]]]]] css|t|ƒkrdSt||ƒ}|ˆdkro|ˆdkrZt||dƒ‚nt||dƒ‚ndS(Niÿÿÿÿsillegal nestingsnot a peer entry(RÝR7RR(R„RNRptcurCol(t indentStack(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytcheckPeerIndentŸscsEt||ƒ}|ˆdkr/ˆj|ƒnt||dƒ‚dS(Niÿÿÿÿsnot a subentry(R7RR(R„RNRpR+(R,(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytcheckSubIndent§scsn|t|ƒkrdSt||ƒ}ˆoH|ˆdkoH|ˆdks`t||dƒ‚nˆjƒdS(Niÿÿÿÿiþÿÿÿsnot an unindent(RÝR7RRÿ(R„RNRpR+(R,(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt checkUnindent®s &s tINDENTRrtUNINDENTsindented block( RRR÷RõR RzR‚RRRùRÚ( tblockStatementExprR,R$R-R.R/R7R0tPEERtUNDENTtsmExpr((R,s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRdQsN"8 $s#[\0xc0-\0xd6\0xd8-\0xf6\0xf8-\0xff]s[\0xa1-\0xbf\0xd7\0xf7]s_:sany tagsgt lt amp nbsp quot aposs><& "'s &(?PRÝs);scommon HTML entitycCstj|jƒS(sRHelper parser action to replace common HTML entities with their special characters(t_htmlEntityMapRØtentity(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRYÉss/\*(?:[^*]|\*(?!/))*s*/sC style commentss HTML comments.*s rest of lines//(?:\\\n|[^\n])*s // commentsC++ style comments#.*sPython style comments t commaItemRûcBs›eZdZeeƒZeeƒZee ƒj dƒj eƒZ ee ƒj dƒj eedƒƒZedƒj dƒj eƒZeƒj eƒdeƒj eƒj dƒZejd„ƒeeeed ƒjƒeƒBj d ƒZejeƒed ƒj d ƒj eƒZed ƒj dƒj eƒZeeBeBjƒZedƒj dƒj eƒZeededƒj dƒZedƒj dƒZedƒj dƒZ e de dj dƒZ!ee de d8ƒdee de d9ƒj dƒZ"e"j#d„ƒdej d ƒZ$e%e!e$Be"Bj d!ƒƒj d!ƒZ&ed"ƒj d#ƒZ'e(d$d%„ƒZ)e(d&d'„ƒZ*ed(ƒj d)ƒZ+ed*ƒj d+ƒZ,ed,ƒj d-ƒZ-e.jƒe/jƒBZ0e(d.„ƒZ1e%e2e3d/ƒe4ƒee5d0d/ƒee6d1ƒƒƒƒjƒj d2ƒZ7e8ee9j:ƒe7Bd3d4ƒƒj d5ƒZ;e(ed6„ƒƒZ<e(ed7„ƒƒZ=RS(:s® Here are some common low-level expressions that may be useful in jump-starting parser development: - numeric forms (L{integers}, L{reals}, L{scientific notation}) - common L{programming identifiers} - network addresses (L{MAC}, L{IPv4}, L{IPv6}) - ISO8601 L{dates} and L{datetime} - L{UUID} - L{comma-separated list} Parse actions: - C{L{convertToInteger}} - C{L{convertToFloat}} - C{L{convertToDate}} - C{L{convertToDatetime}} - C{L{stripHTMLTags}} - C{L{upcaseTokens}} - C{L{downcaseTokens}} Example:: pyparsing_common.number.runTests(''' # any int or real number, returned as the appropriate type 100 -100 +100 3.14159 6.02e23 1e-12 ''') pyparsing_common.fnumber.runTests(''' # any int or real number, returned as float 100 -100 +100 3.14159 6.02e23 1e-12 ''') pyparsing_common.hex_integer.runTests(''' # hex numbers 100 FF ''') pyparsing_common.fraction.runTests(''' # fractions 1/2 -3/4 ''') pyparsing_common.mixed_integer.runTests(''' # mixed fractions 1 1/2 -3/4 1-3/4 ''') import uuid pyparsing_common.uuid.setParseAction(tokenMap(uuid.UUID)) pyparsing_common.uuid.runTests(''' # uuid 12345678-1234-5678-1234-567812345678 ''') prints:: # any int or real number, returned as the appropriate type 100 [100] -100 [-100] +100 [100] 3.14159 [3.14159] 6.02e23 [6.02e+23] 1e-12 [1e-12] # any int or real number, returned as float 100 [100.0] -100 [-100.0] +100 [100.0] 3.14159 [3.14159] 6.02e23 [6.02e+23] 1e-12 [1e-12] # hex numbers 100 [256] FF [255] # fractions 1/2 [0.5] -3/4 [-0.75] # mixed fractions 1 [1] 1/2 [0.5] -3/4 [-0.75] 1-3/4 [1.75] # uuid 12345678-1234-5678-1234-567812345678 [UUID('12345678-1234-5678-1234-567812345678')] tintegers hex integeris[+-]?\d+ssigned integerRÿtfractioncCs|d|dS(Niiÿÿÿÿ((Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq†RrRzs"fraction or mixed integer-fractions [+-]?\d+\.\d*s real numbers+[+-]?\d+([eE][+-]?\d+|\.\d*([eE][+-]?\d+)?)s$real number with scientific notations[+-]?\d+\.?\d*([eE][+-]?\d+)?tfnumberR‡t identifiersK(25[0-5]|2[0-4][0-9]|1?[0-9]{1,2})(\.(25[0-5]|2[0-4][0-9]|1?[0-9]{1,2})){3}s IPv4 addresss[0-9a-fA-F]{1,4}t hex_integerRisfull IPv6 addressiis::sshort IPv6 addresscCstd„|DƒƒdkS(Ncss'|]}tjj|ƒrdVqdS(iN(Rlt _ipv6_partRÒ(R€RÒ((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pys ¢si(R‘(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq¢Rrs::ffff:smixed IPv6 addresss IPv6 addresss:[0-9a-fA-F]{2}([:.-])[0-9a-fA-F]{2}(?:\1[0-9a-fA-F]{2}){4}s MAC addresss%Y-%m-%dcs‡fd†}|S(sØ Helper to create a parse action for converting parsed date string to Python datetime.date Params - - fmt - format to be passed to datetime.strptime (default=C{"%Y-%m-%d"}) Example:: date_expr = pyparsing_common.iso8601_date.copy() date_expr.setParseAction(pyparsing_common.convertToDate()) print(date_expr.parseString("1999-12-31")) prints:: [datetime.date(1999, 12, 31)] csPytj|dˆƒjƒSWn+tk rK}t||t|ƒƒ‚nXdS(Ni(RtstrptimetdateRèRRu(R„RNRptve(tfmt(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytcvt_fn¹s((RBRC((RBs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt convertToDateªss%Y-%m-%dT%H:%M:%S.%fcs‡fd†}|S(s Helper to create a parse action for converting parsed datetime string to Python datetime.datetime Params - - fmt - format to be passed to datetime.strptime (default=C{"%Y-%m-%dT%H:%M:%S.%f"}) Example:: dt_expr = pyparsing_common.iso8601_datetime.copy() dt_expr.setParseAction(pyparsing_common.convertToDatetime()) print(dt_expr.parseString("1999-12-31T23:59:59.999")) prints:: [datetime.datetime(1999, 12, 31, 23, 59, 59, 999000)] csJytj|dˆƒSWn+tk rE}t||t|ƒƒ‚nXdS(Ni(RR?RèRRu(R„RNRpRA(RB(s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRCÏs((RBRC((RBs@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pytconvertToDatetimeÀss7(?P\d{4})(?:-(?P\d\d)(?:-(?P\d\d))?)?s ISO8601 dates†(?P\d{4})-(?P\d\d)-(?P\d\d)[T ](?P\d\d):(?P\d\d)(:(?P\d\d(\.\d*)?)?)?(?PZ|[+-]\d\d:?\d\d)?sISO8601 datetimes2[0-9a-fA-F]{8}(-[0-9a-fA-F]{4}){3}-[0-9a-fA-F]{12}tUUIDcCstjj|dƒS(s Parse action to remove HTML tags from web page HTML source Example:: # strip HTML links from normal text text = 'More info at the
pyparsing wiki page' td,td_end = makeHTMLTags("TD") table_text = td + SkipTo(td_end).setParseAction(pyparsing_common.stripHTMLTags)("body") + td_end print(table_text.parseString(text).body) # -> 'More info at the pyparsing wiki page' i(Rlt_html_stripperR{(R„RNR©((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt stripHTMLTagsàs RÉR<s R8RûRrscomma separated listcCst|ƒjƒS(N(RR,(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRqôRrcCst|ƒjƒS(N(RRü(Rp((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRq÷Rr(ii(ii(>R�R�R±RkRotconvertToIntegertfloattconvertToFloatR-RPR‚RzR9RBR=R%tsigned_integerR:R”RRõt mixed_integerR‘trealtsci_realRÈtnumberR;R2R1R<t ipv4_addressR>t_full_ipv6_addresst_short_ipv6_addressRšt_mixed_ipv6_addressRt ipv6_addresst mac_addressR#RDREt iso8601_datetiso8601_datetimetuuidR5R4RGRHRRRRTR,t _commasepitemR>RWRÒtcomma_separated_listRbR@(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyRlésL†  '/-  ;&J+t__main__tselecttfroms_$RÃRËtcolumnsRƒttablestcommandsK # '*' as column list and dotted table name select * from SYS.XYZZY # caseless match on "SELECT", and casts back to "select" SELECT * from XYZZY, ABC # list of column names, and mixed case SELECT keyword Select AA,BB,CC from Sys.dual # multiple tables Select A, B, C from Sys.dual, Table2 # invalid SELECT keyword - should fail Xelect A, B, C from Sys.dual # incomplete command - should fail Select # invalid column name - should fail Select ^^^ frox Sys.dual s] 100 -100 +100 3.14159 6.02e23 1e-12 s 100 FF s6 12345678-1234-5678-1234-567812345678 (åR±t __version__t__versionTime__t __author__R“tweakrefRRÙRÒRxRßR|RSR»R8RRR³Rt_threadRt ImportErrort threadingRR¸t ordereddictR—t__all__Rçt version_infoRQRtmaxsizeR$RuRÑtchrRïRR‘RÝR2treversedRÌR²R4RxRIRJR_tmaxinttxrangeRÞt __builtin__R…tfnameRR`R£R¯RÎR�R½RŽtascii_uppercasetascii_lowercaseR2RPRBR1RÚR¨t printableRTRaRRRR!R$RµR tMutableMappingtregisterR7RHRERGRKRMROReR"R*R RRRRiRRRRjR-R%R#RR,RpRRRR(R'R/R.RRRRR RR RRžRR0R¨R©RR&R R·R+RRR R)RR`RÆR>R:RÖRMRLRER¿RQR?ReRfRhR‚RARGRFR_R^Rzt _escapedPunct_escapedHexChart_escapedOctChartUNICODEt _singleChart _charRangeR‡R÷R]RKRZRXRkRbR@R RIRJRcR RiRRRRRgRSR<R\RWRaRNRdR3RUR5R4RÏR†R6RõR9RYR6RCRöR[R=R;RDRVRÈRZR8RlR�t selectTokent fromTokentidentt columnNametcolumnNameListt columnSpect tableNamet tableNameListt simpleSQLR"RPR;R=RYRF(((s@/usr/lib/python2.7/site-packages/setuptools/_vendor/pyparsing.pyt=sÊ              *         8 ÿÿ„     @ÿÿÿÿß & A=ŸI‰G3pLOD|M &# @sQ,A ,    I # %  !4@    ,   ?  #   k%Z r  (, #8+ÿ    $