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392 lines
14 KiB
Python
392 lines
14 KiB
Python
"""Shared support for scanning document type declarations in HTML and XHTML.
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This module is used as a foundation for the html.parser module. It has no
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documented public API and should not be used directly.
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"""
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import re
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_declname_match = re.compile(r'[a-zA-Z][-_.a-zA-Z0-9]*\s*').match
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_declstringlit_match = re.compile(r'(\'[^\']*\'|"[^"]*")\s*').match
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_commentclose = re.compile(r'--\s*>')
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_markedsectionclose = re.compile(r']\s*]\s*>')
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# An analysis of the MS-Word extensions is available at
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# http://www.planetpublish.com/xmlarena/xap/Thursday/WordtoXML.pdf
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_msmarkedsectionclose = re.compile(r']\s*>')
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del re
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class ParserBase:
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"""Parser base class which provides some common support methods used
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by the SGML/HTML and XHTML parsers."""
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def __init__(self):
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if self.__class__ is ParserBase:
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raise RuntimeError(
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"_markupbase.ParserBase must be subclassed")
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def error(self, message):
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raise NotImplementedError(
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"subclasses of ParserBase must override error()")
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def reset(self):
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self.lineno = 1
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self.offset = 0
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def getpos(self):
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"""Return current line number and offset."""
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return self.lineno, self.offset
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# Internal -- update line number and offset. This should be
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# called for each piece of data exactly once, in order -- in other
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# words the concatenation of all the input strings to this
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# function should be exactly the entire input.
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def updatepos(self, i, j):
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if i >= j:
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return j
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rawdata = self.rawdata
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nlines = rawdata.count("\n", i, j)
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if nlines:
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self.lineno = self.lineno + nlines
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pos = rawdata.rindex("\n", i, j) # Should not fail
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self.offset = j-(pos+1)
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else:
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self.offset = self.offset + j-i
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return j
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_decl_otherchars = ''
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# Internal -- parse declaration (for use by subclasses).
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def parse_declaration(self, i):
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# This is some sort of declaration; in "HTML as
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# deployed," this should only be the document type
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# declaration ("<!DOCTYPE html...>").
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# ISO 8879:1986, however, has more complex
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# declaration syntax for elements in <!...>, including:
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# --comment--
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# [marked section]
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# name in the following list: ENTITY, DOCTYPE, ELEMENT,
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# ATTLIST, NOTATION, SHORTREF, USEMAP,
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# LINKTYPE, LINK, IDLINK, USELINK, SYSTEM
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rawdata = self.rawdata
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j = i + 2
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assert rawdata[i:j] == "<!", "unexpected call to parse_declaration"
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if rawdata[j:j+1] == ">":
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# the empty comment <!>
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return j + 1
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if rawdata[j:j+1] in ("-", ""):
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# Start of comment followed by buffer boundary,
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# or just a buffer boundary.
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return -1
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# A simple, practical version could look like: ((name|stringlit) S*) + '>'
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n = len(rawdata)
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if rawdata[j:j+2] == '--': #comment
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# Locate --.*-- as the body of the comment
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return self.parse_comment(i)
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elif rawdata[j] == '[': #marked section
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# Locate [statusWord [...arbitrary SGML...]] as the body of the marked section
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# Where statusWord is one of TEMP, CDATA, IGNORE, INCLUDE, RCDATA
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# Note that this is extended by Microsoft Office "Save as Web" function
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# to include [if...] and [endif].
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return self.parse_marked_section(i)
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else: #all other declaration elements
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decltype, j = self._scan_name(j, i)
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if j < 0:
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return j
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if decltype == "doctype":
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self._decl_otherchars = ''
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while j < n:
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c = rawdata[j]
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if c == ">":
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# end of declaration syntax
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data = rawdata[i+2:j]
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if decltype == "doctype":
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self.handle_decl(data)
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else:
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self.unknown_decl(data)
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return j + 1
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if c in "\"'":
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m = _declstringlit_match(rawdata, j)
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if not m:
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return -1 # incomplete
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j = m.end()
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elif c in "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ":
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name, j = self._scan_name(j, i)
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elif c in self._decl_otherchars:
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j = j + 1
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elif c == "[":
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# this could be handled in a separate doctype parser
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if decltype == "doctype":
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j = self._parse_doctype_subset(j + 1, i)
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elif decltype in ("attlist", "linktype", "link", "element"):
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# must tolerate []'d groups in a content model in an element declaration
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# also in data attribute specifications of attlist declaration
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# also link type declaration subsets in linktype declarations
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# also link attribute specification lists in link declarations
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self.error("unsupported '[' char in %s declaration" % decltype)
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else:
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self.error("unexpected '[' char in declaration")
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else:
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self.error(
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"unexpected %r char in declaration" % rawdata[j])
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if j < 0:
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return j
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return -1 # incomplete
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# Internal -- parse a marked section
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# Override this to handle MS-word extension syntax <![if word]>content<![endif]>
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def parse_marked_section(self, i, report=1):
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rawdata= self.rawdata
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assert rawdata[i:i+3] == '<![', "unexpected call to parse_marked_section()"
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sectName, j = self._scan_name( i+3, i )
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if j < 0:
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return j
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if sectName in ("temp", "cdata", "ignore", "include", "rcdata"):
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# look for standard ]]> ending
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match= _markedsectionclose.search(rawdata, i+3)
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elif sectName in ("if", "else", "endif"):
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# look for MS Office ]> ending
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match= _msmarkedsectionclose.search(rawdata, i+3)
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else:
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self.error('unknown status keyword %r in marked section' % rawdata[i+3:j])
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if not match:
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return -1
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if report:
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j = match.start(0)
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self.unknown_decl(rawdata[i+3: j])
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return match.end(0)
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# Internal -- parse comment, return length or -1 if not terminated
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def parse_comment(self, i, report=1):
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rawdata = self.rawdata
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if rawdata[i:i+4] != '<!--':
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self.error('unexpected call to parse_comment()')
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match = _commentclose.search(rawdata, i+4)
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if not match:
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return -1
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if report:
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j = match.start(0)
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self.handle_comment(rawdata[i+4: j])
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return match.end(0)
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# Internal -- scan past the internal subset in a <!DOCTYPE declaration,
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# returning the index just past any whitespace following the trailing ']'.
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def _parse_doctype_subset(self, i, declstartpos):
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rawdata = self.rawdata
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n = len(rawdata)
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j = i
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while j < n:
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c = rawdata[j]
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if c == "<":
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s = rawdata[j:j+2]
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if s == "<":
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# end of buffer; incomplete
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return -1
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if s != "<!":
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self.updatepos(declstartpos, j + 1)
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self.error("unexpected char in internal subset (in %r)" % s)
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if (j + 2) == n:
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# end of buffer; incomplete
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return -1
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if (j + 4) > n:
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# end of buffer; incomplete
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return -1
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if rawdata[j:j+4] == "<!--":
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j = self.parse_comment(j, report=0)
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if j < 0:
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return j
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continue
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name, j = self._scan_name(j + 2, declstartpos)
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if j == -1:
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return -1
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if name not in ("attlist", "element", "entity", "notation"):
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self.updatepos(declstartpos, j + 2)
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self.error(
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"unknown declaration %r in internal subset" % name)
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# handle the individual names
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meth = getattr(self, "_parse_doctype_" + name)
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j = meth(j, declstartpos)
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if j < 0:
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return j
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elif c == "%":
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# parameter entity reference
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if (j + 1) == n:
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# end of buffer; incomplete
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return -1
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s, j = self._scan_name(j + 1, declstartpos)
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if j < 0:
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return j
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if rawdata[j] == ";":
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j = j + 1
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elif c == "]":
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j = j + 1
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while j < n and rawdata[j].isspace():
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j = j + 1
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if j < n:
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if rawdata[j] == ">":
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return j
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self.updatepos(declstartpos, j)
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self.error("unexpected char after internal subset")
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else:
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return -1
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elif c.isspace():
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j = j + 1
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else:
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self.updatepos(declstartpos, j)
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self.error("unexpected char %r in internal subset" % c)
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# end of buffer reached
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return -1
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# Internal -- scan past <!ELEMENT declarations
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def _parse_doctype_element(self, i, declstartpos):
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name, j = self._scan_name(i, declstartpos)
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if j == -1:
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return -1
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# style content model; just skip until '>'
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rawdata = self.rawdata
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if '>' in rawdata[j:]:
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return rawdata.find(">", j) + 1
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return -1
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# Internal -- scan past <!ATTLIST declarations
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def _parse_doctype_attlist(self, i, declstartpos):
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rawdata = self.rawdata
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name, j = self._scan_name(i, declstartpos)
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c = rawdata[j:j+1]
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if c == "":
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return -1
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if c == ">":
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return j + 1
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while 1:
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# scan a series of attribute descriptions; simplified:
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# name type [value] [#constraint]
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name, j = self._scan_name(j, declstartpos)
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if j < 0:
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return j
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c = rawdata[j:j+1]
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if c == "":
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return -1
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if c == "(":
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# an enumerated type; look for ')'
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if ")" in rawdata[j:]:
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j = rawdata.find(")", j) + 1
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else:
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return -1
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while rawdata[j:j+1].isspace():
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j = j + 1
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if not rawdata[j:]:
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# end of buffer, incomplete
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return -1
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else:
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name, j = self._scan_name(j, declstartpos)
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c = rawdata[j:j+1]
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if not c:
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return -1
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if c in "'\"":
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m = _declstringlit_match(rawdata, j)
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if m:
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j = m.end()
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else:
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return -1
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c = rawdata[j:j+1]
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if not c:
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return -1
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if c == "#":
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if rawdata[j:] == "#":
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# end of buffer
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return -1
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name, j = self._scan_name(j + 1, declstartpos)
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if j < 0:
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return j
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c = rawdata[j:j+1]
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if not c:
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return -1
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if c == '>':
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# all done
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return j + 1
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# Internal -- scan past <!NOTATION declarations
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def _parse_doctype_notation(self, i, declstartpos):
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name, j = self._scan_name(i, declstartpos)
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if j < 0:
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return j
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rawdata = self.rawdata
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while 1:
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c = rawdata[j:j+1]
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if not c:
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# end of buffer; incomplete
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return -1
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if c == '>':
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return j + 1
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if c in "'\"":
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m = _declstringlit_match(rawdata, j)
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if not m:
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return -1
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j = m.end()
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else:
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name, j = self._scan_name(j, declstartpos)
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if j < 0:
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return j
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# Internal -- scan past <!ENTITY declarations
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def _parse_doctype_entity(self, i, declstartpos):
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rawdata = self.rawdata
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if rawdata[i:i+1] == "%":
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j = i + 1
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while 1:
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c = rawdata[j:j+1]
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if not c:
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return -1
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if c.isspace():
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j = j + 1
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else:
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break
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else:
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j = i
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name, j = self._scan_name(j, declstartpos)
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if j < 0:
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return j
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while 1:
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c = self.rawdata[j:j+1]
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if not c:
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return -1
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if c in "'\"":
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m = _declstringlit_match(rawdata, j)
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if m:
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j = m.end()
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else:
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return -1 # incomplete
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elif c == ">":
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return j + 1
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else:
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name, j = self._scan_name(j, declstartpos)
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if j < 0:
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return j
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# Internal -- scan a name token and the new position and the token, or
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# return -1 if we've reached the end of the buffer.
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def _scan_name(self, i, declstartpos):
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rawdata = self.rawdata
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n = len(rawdata)
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if i == n:
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return None, -1
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m = _declname_match(rawdata, i)
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if m:
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s = m.group()
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name = s.strip()
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if (i + len(s)) == n:
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return None, -1 # end of buffer
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return name.lower(), m.end()
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else:
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self.updatepos(declstartpos, i)
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self.error("expected name token at %r"
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% rawdata[declstartpos:declstartpos+20])
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# To be overridden -- handlers for unknown objects
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def unknown_decl(self, data):
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pass
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