rem stringlengths 0 322k | add stringlengths 0 2.05M | context stringlengths 8 228k |
|---|---|---|
if ordinal is None: msg = self.reporter.error( ('Enumerated list start value invalid at line %s: ' '"%s" (sequence %r)' % (self.state_machine.abs_line_number(), text, sequence))) self.parent += msg indented, line_offset, blank_finish = \ self.state_machine.get_known_indented(match.end()) bq = self.block_quote(indented,... | if not self.is_enumerated_list_item(ordinal, sequence, format): raise statemachine.TransitionCorrection('text') | def enumerator(self, match, context, next_state): """Enumerated List Item""" format, sequence, text, ordinal = self.parse_enumerator(match) if ordinal is None: msg = self.reporter.error( ('Enumerated list start value invalid at line %s: ' '"%s" (sequence %r)' % (self.state_machine.abs_line_number(), text, sequence))) s... |
raise ParserError, 'enumerator format not matched' | raise ParserError('enumerator format not matched') | def parse_enumerator(self, match, expected_sequence=None): """ Analyze an enumerator and return the results. |
raise ParserError, 'unknown sequence: %s' % sequence else: if text == 'i': sequence = 'lowerroman' elif text == 'I': sequence = 'upperroman' | raise ParserError('unknown enumerator sequence: %s' % sequence) elif text == 'i': sequence = 'lowerroman' elif text == 'I': sequence = 'upperroman' | def parse_enumerator(self, match, expected_sequence=None): """ Analyze an enumerator and return the results. |
raise ParserError, 'enumerator sequence not matched' | raise ParserError('enumerator sequence not matched') | def parse_enumerator(self, match, expected_sequence=None): """ Analyze an enumerator and return the results. |
ordinal != self.lastordinal + 1): | ordinal != (self.lastordinal + 1) or not self.is_enumerated_list_item(ordinal, sequence, format)): | def enumerator(self, match, context, next_state): """Enumerated list item.""" format, sequence, text, ordinal = self.parse_enumerator( match, self.parent['enumtype']) if (sequence != self.parent['enumtype'] or format != self.format or ordinal != self.lastordinal + 1): # different enumeration: new list self.invalid_inpu... |
paragraph, literalnext = self.paragraph( context, self.state_machine.abs_line_number() - 1) self.parent += paragraph if literalnext: self.parent += self.literal_block() | self.blank(None, context, None) | def eof(self, context): if context: paragraph, literalnext = self.paragraph( context, self.state_machine.abs_line_number() - 1) self.parent += paragraph if literalnext: self.parent += self.literal_block() return [] |
for node in self.document.traverse(): | for node in self.document.traverse(self.not_Text): | def apply(self): if self.document.settings.expose_internals: for node in self.document.traverse(): for att in self.document.settings.expose_internals: value = getattr(node, att, None) if value is not None: node['internal:' + att] = value |
self.resolve_chained_targets() self.resolve_anonymous() self.resolve_indirect() self.resolve_external_targets() self.resolve_internal_targets() def resolve_chained_targets(self): """ Attributes "refuri" and "refname" are migrated from the final direct target up the chain of contiguous adjacent internal targets, using ... | def apply(self): self.resolve_chained_targets() self.resolve_anonymous() self.resolve_indirect() self.resolve_external_targets() self.resolve_internal_targets() | |
def resolve_anonymous(self): """ Link anonymous references to targets. Given:: | class ChainedTargetResolver(nodes.SparseNodeVisitor): """ Copy reference attributes up the length of a hyperlink target chain. "Chained targets" are multiple adjacent internal hyperlink targets which "point to" an external or indirect target. After the transform, all chained targets will effectively point to the sam... | def resolve_anonymous(self): """ Link anonymous references to targets. Given:: |
<reference anonymous="1"> internal <reference anonymous="1"> external <target anonymous="1" id="id1"> <target anonymous="1" id="id2" refuri="http://external"> Corresponding references are linked via "refid" or resolved via "refuri":: | I'm known as "d". <target id="e" name="e"> <target id="id1"> <target id="f" name="f" refname="d"> ``ChainedTargetResolver(document).walk()`` will transform the above into:: <document> <target id="a" name="a" refuri="http://chained.external.targets"> <target id="b" name="b" refuri="http://chained.external.targets"> <t... | def resolve_anonymous(self): """ Link anonymous references to targets. Given:: |
<reference anonymous="1" refid="id1"> text <reference anonymous="1" refuri="http://external"> external <target anonymous="1" id="id1"> <target anonymous="1" id="id2" refuri="http://external"> """ | I'm known as "d". <target id="e" name="e" refname="d"> <target id="id1" refname="d"> <target id="f" name="f" refname="d"> """ def unknown_visit(self, node): pass def visit_target(self, node): if node.hasattr('refuri'): attname = 'refuri' call_if_named = self.document.note_external_target elif node.hasattr('refname'):... | def resolve_anonymous(self): """ Link anonymous references to targets. Given:: |
def resolve_indirect(self): """ a) Indirect external references:: <paragraph> <reference refname="indirect external"> indirect external <target id="id1" name="direct external" refuri="http://indirect"> <target id="id2" name="indirect external" refname="direct external"> The "refuri" attribute is migrated back to all ... | class IndirectHyperlinks(Transform): """ a) Indirect external references:: <paragraph> <reference refname="indirect external"> indirect external <target id="id1" name="direct external" refuri="http://indirect"> <target id="id2" name="indirect external" refname="direct external"> The "refuri" attribute is migrated ba... | def resolve_indirect(self): """ a) Indirect external references:: |
def resolve_external_targets(self): """ Given:: <paragraph> <reference refname="direct external"> direct external <target id="id1" name="direct external" refuri="http://direct"> The "refname" attribute is replaced by the direct "refuri" attribute:: <paragraph> <reference refuri="http://direct"> direct external <targ... | class ExternalTargets(Transform): """ Given:: <paragraph> <reference refname="direct external"> direct external <target id="id1" name="direct external" refuri="http://direct"> The "refname" attribute is replaced by the direct "refuri" attribute:: <paragraph> <reference refuri="http://direct"> direct external <targe... | def resolve_external_targets(self): """ Given:: |
def resolve_internal_targets(self): """ Given:: <paragraph> <reference refname="direct internal"> direct internal <target id="id1" name="direct internal"> The "refname" attribute is replaced by "refid" linking to the target's "id":: <paragraph> <reference refid="id1"> direct internal <target id="id1" name="direct in... | class InternalTargets(Transform): """ Given:: <paragraph> <reference refname="direct internal"> direct internal <target id="id1" name="direct internal"> The "refname" attribute is replaced by "refid" linking to the target's "id":: <paragraph> <reference refid="id1"> direct internal <target id="id1" name="direct int... | def resolve_internal_targets(self): """ Given:: |
class ChainedTargetResolver(nodes.SparseNodeVisitor): """ Copy reference attributes up the length of a hyperlink target chain. "Chained targets" are multiple adjacent internal hyperlink targets which "point to" an external or indirect target. After the transform, all chained targets will effectively point to the sam... | def resolve_internal_targets(self): """ Given:: | |
def __init__(self, document, component, startnode=None): Transform.__init__(self, document, component, startnode) self.notes = {} | default_priority = 540 """The TargetNotes transform has to be applied after `IndirectHyperlinks` but before `Footnotes`.""" | def __init__(self, document, component, startnode=None): Transform.__init__(self, document, component, startnode) self.notes = {} |
footnote = self.make_target_footnote(target, refs) if not self.notes.has_key(target['refuri']): self.notes[target['refuri']] = footnote | footnote = self.make_target_footnote(target, refs, notes) if not notes.has_key(target['refuri']): notes[target['refuri']] = footnote | def apply(self): nodelist = [] for target in self.document.external_targets: name = target.get('name') if not name: print >>sys.stderr, 'no name on target: %r' % target continue refs = self.document.refnames.get(name, []) if not refs: continue footnote = self.make_target_footnote(target, refs) if not self.notes.has_key... |
footnote = self.make_target_footnote(target, [ref]) if not self.notes.has_key(target['refuri']): self.notes[target['refuri']] = footnote | footnote = self.make_target_footnote(target, [ref], notes) if not notes.has_key(target['refuri']): notes[target['refuri']] = footnote | def apply(self): nodelist = [] for target in self.document.external_targets: name = target.get('name') if not name: print >>sys.stderr, 'no name on target: %r' % target continue refs = self.document.refnames.get(name, []) if not refs: continue footnote = self.make_target_footnote(target, refs) if not self.notes.has_key... |
def make_target_footnote(self, target, refs): | def make_target_footnote(self, target, refs, notes): | def apply(self): nodelist = [] for target in self.document.external_targets: name = target.get('name') if not name: print >>sys.stderr, 'no name on target: %r' % target continue refs = self.document.refnames.get(name, []) if not refs: continue footnote = self.make_target_footnote(target, refs) if not self.notes.has_key... |
pattern = self.patterns.initial | pattern_search = self.patterns.initial.search | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
match = pattern.search(remaining) | match = pattern_search(remaining) | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
groupdict = match.groupdict() method = dispatch[groupdict["start"] or groupdict["backquote"] or groupdict["refend"] or groupdict["fnend"]] | groups = match.groupdict() method = dispatch[groups['start'] or groups['backquote'] or groups['refend'] or groups['fnend']] | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
%s | %(start_string_prefix)s | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
%s | %(non_whitespace_after)s | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
(?P<refname>%s) (?P<refend>__?) | (?P<refname>%(simplename)s) (?P<refend>__?) | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
(?P<citationlabel>%s) | (?P<citationlabel> %(simplename)s) | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
%s | %(end_string_suffix)s | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
(?P<role>(:%s:)?) | (?P<role>(:%(simplename)s:)?) | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
""" % (start_string_prefix, non_whitespace_after, simplename, simplename, simplename, end_string_suffix, simplename, non_whitespace_after,), re.VERBOSE), | """ % locals(), re.VERBOSE), | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
'%s(`(?P<suffix>:%s:|__?)?)%s' % (non_whitespace_escape_before, simplename, end_string_suffix)), | r % locals(), re.VERBOSE), | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
%s* %s | %(uric)s* %(urilast)s | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
\?%s* %s | \?%(uric)s* %(urilast)s | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
\ %s | \ %(urilast)s | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
%s+(\.%s+)* @ %s+(\.%s*)* %s | %(emailc)s+(\.%(emailc)s+)* @ %(emailc)s+(\.%(emailc)s*)* %(urilast)s | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
%s """ % (start_string_prefix, uric, urilast, uric, urilast, uric, urilast, emailc, emailc, emailc, emailc, urilast, end_string_suffix,), re.VERBOSE)) | %(end_string_suffix)s """ % locals(), re.VERBOSE)) | def parse(self, text, lineno, memo, parent): """ Return 2 lists: nodes (text and inline elements), and system_messages. |
def inline_obj(self, match, lineno, pattern, nodeclass, | def inline_obj(self, match, lineno, end_pattern, nodeclass, | def inline_obj(self, match, lineno, pattern, nodeclass, restore_backslashes=0): string = match.string matchstart = match.start('start') matchend = match.end('start') if self.quoted_start(match): return (string[:matchend], [], string[matchend:], [], '') endmatch = pattern.search(string[matchend:]) if endmatch and endmat... |
endmatch = pattern.search(string[matchend:]) | endmatch = end_pattern.search(string[matchend:]) | def inline_obj(self, match, lineno, pattern, nodeclass, restore_backslashes=0): string = match.string matchstart = match.start('start') matchend = match.end('start') if self.quoted_start(match): return (string[:matchend], [], string[matchend:], [], '') endmatch = pattern.search(string[matchend:]) if endmatch and endmat... |
rawsource = unescape(string[matchstart:matchend+endmatch.end(1)], 1) | textend = matchend + endmatch.end(1) rawsource = unescape(string[matchstart:textend], 1) | def inline_obj(self, match, lineno, pattern, nodeclass, restore_backslashes=0): string = match.string matchstart = match.start('start') matchend = match.end('start') if self.quoted_start(match): return (string[:matchend], [], string[matchend:], [], '') endmatch = pattern.search(string[matchend:]) if endmatch and endmat... |
string[matchend:][endmatch.end(1):], [], endmatch.group(1)) | string[textend:], [], endmatch.group(1)) | def inline_obj(self, match, lineno, pattern, nodeclass, restore_backslashes=0): string = match.string matchstart = match.start('start') matchend = match.end('start') if self.quoted_start(match): return (string[:matchend], [], string[matchend:], [], '') endmatch = pattern.search(string[matchend:]) if endmatch and endmat... |
pattern = self.patterns.interpreted_or_phrase_ref | end_pattern = self.patterns.interpreted_or_phrase_ref | def interpreted_or_phrase_ref(self, match, lineno): pattern = self.patterns.interpreted_or_phrase_ref string = match.string matchstart = match.start('backquote') matchend = match.end('backquote') rolestart = match.start('role') role = match.group('role') position = '' if role: role = role[1:-1] position = 'prefix' elif... |
endmatch = pattern.search(string[matchend:]) | endmatch = end_pattern.search(string[matchend:]) | def interpreted_or_phrase_ref(self, match, lineno): pattern = self.patterns.interpreted_or_phrase_ref string = match.string matchstart = match.start('backquote') matchend = match.end('backquote') rolestart = match.start('role') role = match.group('role') position = '' if role: role = role[1:-1] position = 'prefix' elif... |
rawsource = unescape( string[match.start():matchend+endmatch.end()], 1) | rawsource = unescape(string[matchstart:textend], 1) | def interpreted_or_phrase_ref(self, match, lineno): pattern = self.patterns.interpreted_or_phrase_ref string = match.string matchstart = match.start('backquote') matchend = match.end('backquote') rolestart = match.start('role') role = match.group('role') position = '' if role: role = role[1:-1] position = 'prefix' elif... |
'Mismatch: inline interpreted text start-string and' ' role with phrase-reference end-string at line %s.' % lineno) text = unescape(string[matchstart:matchend], 1) rawsource = unescape(string[matchstart:matchend], 1) prb = self.problematic(text, rawsource, msg) return (string[:matchstart], [prb], string[matchend:], [ms... | 'Mismatch: both interpreted text role %s and ' 'reference suffix at line %s.' % (position, lineno)) text = unescape(string[rolestart:textend], 1) prb = self.problematic(text, text, msg) return string[:rolestart], [prb], string[textend:], [msg] return self.phrase_ref(string[:matchstart], string[textend:], rawsource, tex... | def interpreted_or_phrase_ref(self, match, lineno): pattern = self.patterns.interpreted_or_phrase_ref string = match.string matchstart = match.start('backquote') matchend = match.end('backquote') rolestart = match.start('role') role = match.group('role') position = '' if role: role = role[1:-1] position = 'prefix' elif... |
return self.interpreted( string[:rolestart], string[matchend:][endmatch.end():], endmatch, role, position, lineno, escaped, rawsource, text) | return self.interpreted(string[:rolestart], string[textend:], rawsource, text, role, position) | def interpreted_or_phrase_ref(self, match, lineno): pattern = self.patterns.interpreted_or_phrase_ref string = match.string matchstart = match.start('backquote') matchend = match.end('backquote') rolestart = match.start('role') role = match.group('role') position = '' if role: role = role[1:-1] position = 'prefix' elif... |
rawsource = unescape(string[matchstart:matchend], 1) prb = self.problematic(text, rawsource, msg) | prb = self.problematic(text, text, msg) | def interpreted_or_phrase_ref(self, match, lineno): pattern = self.patterns.interpreted_or_phrase_ref string = match.string matchstart = match.start('backquote') matchend = match.end('backquote') rolestart = match.start('role') role = match.group('role') position = '' if role: role = role[1:-1] position = 'prefix' elif... |
def phrase_ref(self, before, after, text, rawsource): | def phrase_ref(self, before, after, rawsource, text): | def phrase_ref(self, before, after, text, rawsource): refname = normalize_name(text) reference = nodes.reference(rawsource, text) if rawsource[-2:] == '__': reference['anonymous'] = 1 self.document.note_anonymous_ref(reference) else: reference['refname'] = refname self.document.note_refname(reference) return before, [r... |
def interpreted(self, before, after, endmatch, role, position, lineno, escaped, rawsource, text): if endmatch.group('suffix'): if role: msg = self.reporter.warning('Multiple roles in interpreted ' 'text at line %s.' % lineno) return (before + rawsource, [], after, [msg]) role = endmatch.group('suffix')[1:-1] position =... | def interpreted(self, before, after, rawsource, text, role, position): | def interpreted(self, before, after, endmatch, role, position, lineno, escaped, rawsource, text): if endmatch.group('suffix'): if role: msg = self.reporter.warning('Multiple roles in interpreted ' 'text at line %s.' % lineno) return (before + rawsource, [], after, [msg]) role = endmatch.group('suffix')[1:-1] position =... |
text before and after the match. | text before and after the match. Return a list of `nodes.Text` and inline element nodes. | def implicit_inline(self, text, lineno): """ Check each of the patterns in `self.implicit` for a match, and dispatch to the stored method for the pattern. Recursively check the text before and after the match. """ if not text: return [] for pattern, dispatch in self.implicit: match = pattern.search(text) if match: try... |
return (self.implicit_inline(text[:match.start()], lineno) | return (self.text(text[:match.start()]) | def implicit_inline(self, text, lineno): """ Check each of the patterns in `self.implicit` for a match, and dispatch to the stored method for the pattern. Recursively check the text before and after the match. """ if not text: return [] for pattern, dispatch in self.implicit: match = pattern.search(text) if match: try... |
%s | %(non_whitespace_escape_before)s | def build_table_row(self, rowdata, tableline): row = nodes.row() for cell in rowdata: if cell is None: continue morerows, morecols, offset, cellblock = cell attributes = {} if morerows: attributes['morerows'] = morerows if morecols: attributes['morecols'] = morecols entry = nodes.entry(**attributes) row += entry if ''.... |
""" % (Inliner.non_whitespace_escape_before, Inliner.non_whitespace_escape_before), re.VERBOSE), | """ % vars(Inliner), re.VERBOSE), | def build_table_row(self, rowdata, tableline): row = nodes.row() for cell in rowdata: if cell is None: continue morerows, morecols, offset, cellblock = cell attributes = {} if morerows: attributes['morerows'] = morerows if morecols: attributes['morecols'] = morecols entry = nodes.entry(**attributes) row += entry if ''.... |
(?P<simple>%s)_ | (?P<simple>%(simplename)s)_ | def build_table_row(self, rowdata, tableline): row = nodes.row() for cell in rowdata: if cell is None: continue morerows, morecols, offset, cellblock = cell attributes = {} if morerows: attributes['morerows'] = morerows if morecols: attributes['morecols'] = morecols entry = nodes.entry(**attributes) row += entry if ''.... |
""" % (Inliner.simplename, Inliner.non_whitespace_escape_before,), re.VERBOSE), | """ % vars(Inliner), re.VERBOSE), | def build_table_row(self, rowdata, tableline): row = nodes.row() for cell in rowdata: if cell is None: continue morerows, morecols, offset, cellblock = cell attributes = {} if morerows: attributes['morerows'] = morerows if morecols: attributes['morecols'] = morecols entry = nodes.entry(**attributes) row += entry if ''.... |
""" % Inliner.non_whitespace_escape_before, re.VERBOSE),) | """ % vars(Inliner), re.VERBOSE),) | def build_table_row(self, rowdata, tableline): row = nodes.row() for cell in rowdata: if cell is None: continue morerows, morecols, offset, cellblock = cell attributes = {} if morerows: attributes['morerows'] = morerows if morecols: attributes['morecols'] = morecols entry = nodes.entry(**attributes) row += entry if ''.... |
self.shortDescription = lambda: ('Functional test for ' + self.configfile) | self.shortDescription = self.getdesc | def __init__(self, *args, **kwargs): """Set self.configfile, pass arguments to parent __init__.""" self.configfile = kwargs['configfile'] del kwargs['configfile'] self.shortDescription = lambda: ('Functional test for ' + self.configfile) DocutilsTestSupport.CustomTestCase.__init__(self, *args, **kwargs) |
reference = nodes.reference(refuri=data) | reference_node = nodes.reference(refuri=data) | def image(name, arguments, options, content, lineno, content_offset, block_text, state, state_machine): reference = ''.join(arguments[0].split('\n')) if reference.find(' ') != -1: error = state_machine.reporter.error( 'Image URI contains whitespace.', nodes.literal_block(block_text, block_text), line=lineno) return [er... |
reference = nodes.reference( | reference_node = nodes.reference( | def image(name, arguments, options, content, lineno, content_offset, block_text, state, state_machine): reference = ''.join(arguments[0].split('\n')) if reference.find(' ') != -1: error = state_machine.reporter.error( 'Image URI contains whitespace.', nodes.literal_block(block_text, block_text), line=lineno) return [er... |
state.document.note_refname(reference) | state.document.note_refname(reference_node) | def image(name, arguments, options, content, lineno, content_offset, block_text, state, state_machine): reference = ''.join(arguments[0].split('\n')) if reference.find(' ') != -1: error = state_machine.reporter.error( 'Image URI contains whitespace.', nodes.literal_block(block_text, block_text), line=lineno) return [er... |
reference = [data] | messages.append(data) | def image(name, arguments, options, content, lineno, content_offset, block_text, state, state_machine): reference = ''.join(arguments[0].split('\n')) if reference.find(' ') != -1: error = state_machine.reporter.error( 'Image URI contains whitespace.', nodes.literal_block(block_text, block_text), line=lineno) return [er... |
reference = None image_node = nodes.image(block_text, **options) if reference: reference += image_node return [reference] else: return [image_node] | return messages + [image_node] | def image(name, arguments, options, content, lineno, content_offset, block_text, state, state_machine): reference = ''.join(arguments[0].split('\n')) if reference.find(' ') != -1: error = state_machine.reporter.error( 'Image URI contains whitespace.', nodes.literal_block(block_text, block_text), line=lineno) return [er... |
self.one_indirect_target(reftarget) | self.resolve_indirect_target(reftarget) | def resolve_indirect_target(self, target): refname = target['refname'] reftarget_id = self.document.nameids.get(refname) if not reftarget_id: self.nonexistent_indirect_target(target) return reftarget = self.document.ids[reftarget_id] if isinstance(reftarget, nodes.target) \ and not reftarget.resolved and reftarget.hasa... |
self.context.append(('</a>', '')) self.context.append(('<a class="fn-backref" href=" % backrefs[0],)) | self.context.append('') self.context.append('<a class="fn-backref" href=" 'name="%s">' % (backrefs[0], node['id'])) | def footnote_backrefs(self, node): if self.document.options.footnote_backlinks \ and node.hasattr('backrefs'): backrefs = node['backrefs'] if len(backrefs) == 1: self.context.append(('</a>', '')) self.context.append(('<a class="fn-backref" href="#%s">' % backrefs[0],)) else: i = 1 backlinks = [] for backref in backrefs... |
self.context.append(('', '(%s) ' % ', '.join(backlinks))) self.context.append(('',)) else: self.context.append(('', '')) self.context.append(('',)) | self.context.append('(%s) ' % ', '.join(backlinks)) self.context.append('<a name="%s">' % node['id']) else: self.context.append('') self.context.append('<a name="%s">' % node['id']) | def footnote_backrefs(self, node): if self.document.options.footnote_backlinks \ and node.hasattr('backrefs'): backrefs = node['backrefs'] if len(backrefs) == 1: self.context.append(('</a>', '')) self.context.append(('<a class="fn-backref" href="#%s">' % backrefs[0],)) else: i = 1 backlinks = [] for backref in backrefs... |
self.body.append(']%s</td><td>%s' % self.context.pop()) | self.body.append(']</a></td><td>%s' % self.context.pop()) | def depart_label(self, node): self.body.append(']%s</td><td>%s' % self.context.pop()) |
self.context.append('</p>\n') | if node.parent.hasattr('id'): self.body.append( self.starttag({}, 'a', '', name=node.parent['id'])) self.context.append('</a></p>\n') else: self.context.append('</p>\n') | def visit_title(self, node): """Only 6 section levels are supported by HTML.""" if isinstance(node.parent, nodes.topic): self.body.append( self.starttag(node, 'p', '', CLASS='topic-title')) self.context.append('</p>\n') elif self.section_level == 0: # document title self.head.append('<title>%s</title>\n' % self.encode(... |
{'action': 'store_true', 'validator': validate_boolean}), | {'action': 'store_true', 'validator': frontend.validate_boolean}), | def find_theme(name): # Where else to look for a theme? # Check working dir? Destination dir? Config dir? Plugins dir? path = os.path.join(themes_dir_path, name) if not os.path.isdir(path): raise docutils.ApplicationError( 'Theme directory not found: %r (path: %r)' % (name, path)) return path |
'validator': validate_boolean}), | 'validator': frontend.validate_boolean}), | def find_theme(name): # Where else to look for a theme? # Check working dir? Destination dir? Config dir? Plugins dir? path = os.path.join(themes_dir_path, name) if not os.path.isdir(path): raise docutils.ApplicationError( 'Theme directory not found: %r (path: %r)' % (name, path)) return path |
zinfo = zipfile.ZipInfo('content.xml') zfile.writestr(zinfo, self.visitor.content_astext()) | zfile.writestr('content.xml', self.visitor.content_astext()) | def assemble_my_parts(self): """Assemble the `self.parts` dictionary. Extend in subclasses. """ #ipshell('At assemble_parts') writers.Writer.assemble_parts(self) f = tempfile.NamedTemporaryFile() zfile = zipfile.ZipFile(f, 'w', zipfile.ZIP_DEFLATED) zinfo = zipfile.ZipInfo('content.xml') zfile.writestr(zinfo, self.vis... |
zinfo = zipfile.ZipInfo('META-INF/manifest.xml') zfile.writestr(zinfo, s1) | zfile.writestr('META-INF/manifest.xml', s1) | def assemble_my_parts(self): """Assemble the `self.parts` dictionary. Extend in subclasses. """ #ipshell('At assemble_parts') writers.Writer.assemble_parts(self) f = tempfile.NamedTemporaryFile() zfile = zipfile.ZipFile(f, 'w', zipfile.ZIP_DEFLATED) zinfo = zipfile.ZipInfo('content.xml') zfile.writestr(zinfo, self.vis... |
zinfo = zipfile.ZipInfo('meta.xml') zfile.writestr(zinfo, s1) | zfile.writestr('meta.xml', s1) | def assemble_my_parts(self): """Assemble the `self.parts` dictionary. Extend in subclasses. """ #ipshell('At assemble_parts') writers.Writer.assemble_parts(self) f = tempfile.NamedTemporaryFile() zfile = zipfile.ZipFile(f, 'w', zipfile.ZIP_DEFLATED) zinfo = zipfile.ZipInfo('content.xml') zfile.writestr(zinfo, self.vis... |
zinfo = zipfile.ZipInfo('styles.xml') zfile.writestr(zinfo, s1) | zfile.writestr('styles.xml', s1) | def assemble_my_parts(self): """Assemble the `self.parts` dictionary. Extend in subclasses. """ #ipshell('At assemble_parts') writers.Writer.assemble_parts(self) f = tempfile.NamedTemporaryFile() zfile = zipfile.ZipFile(f, 'w', zipfile.ZIP_DEFLATED) zinfo = zipfile.ZipInfo('content.xml') zfile.writestr(zinfo, self.vis... |
root = etree.Element('manifest:manifest', | root = Element('manifest:manifest', | def create_manifest(self): root = etree.Element('manifest:manifest', attrib=MANIFEST_NAMESPACE_DICT) doc = etree.ElementTree(root) etree.SubElement(root, 'manifest:file-entry', attrib={ 'manifest:media-type': 'application/vnd.oasis.opendocument.text', 'manifest:full-path': '/', }) etree.SubElement(root, 'manifest:file-... |
etree.SubElement(root, 'manifest:file-entry', attrib={ | SubElement(root, 'manifest:file-entry', attrib={ | def create_manifest(self): root = etree.Element('manifest:manifest', attrib=MANIFEST_NAMESPACE_DICT) doc = etree.ElementTree(root) etree.SubElement(root, 'manifest:file-entry', attrib={ 'manifest:media-type': 'application/vnd.oasis.opendocument.text', 'manifest:full-path': '/', }) etree.SubElement(root, 'manifest:file-... |
s1 = etree.tostring(doc) | s1 = ToString(doc) | def create_manifest(self): root = etree.Element('manifest:manifest', attrib=MANIFEST_NAMESPACE_DICT) doc = etree.ElementTree(root) etree.SubElement(root, 'manifest:file-entry', attrib={ 'manifest:media-type': 'application/vnd.oasis.opendocument.text', 'manifest:full-path': '/', }) etree.SubElement(root, 'manifest:file-... |
root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) | root = Element('office:document-meta', attrib=META_NAMESPACE_DICT) | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') | root = SubElement(root, 'office:meta') el1 = SubElement(root, 'meta:generator') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
el1 = etree.SubElement(root, 'meta:initial-creator') | el1 = SubElement(root, 'meta:initial-creator') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
el1 = etree.SubElement(root, 'meta:creation-date') | el1 = SubElement(root, 'meta:creation-date') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
el1 = etree.SubElement(root, 'dc:creator') | el1 = SubElement(root, 'dc:creator') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
el1 = etree.SubElement(root, 'dc:date') | el1 = SubElement(root, 'dc:date') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
el1 = etree.SubElement(root, 'dc:language') | el1 = SubElement(root, 'dc:language') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
el1 = etree.SubElement(root, 'meta:editing-cycles') | el1 = SubElement(root, 'meta:editing-cycles') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
el1 = etree.SubElement(root, 'meta:editing-duration') | el1 = SubElement(root, 'meta:editing-duration') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
el1 = etree.SubElement(root, 'dc:title') | el1 = SubElement(root, 'dc:title') | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
s1 = etree.tostring(doc) | s1 = ToString(doc) | def create_meta(self): root = etree.Element('office:document-meta', attrib=META_NAMESPACE_DICT) doc = etree.ElementTree(root) root = etree.SubElement(root, 'office:meta') el1 = etree.SubElement(root, 'meta:generator') el1.text = 'Docutils/rst2odf.py/%s' % (VERSION, ) s1 = os.environ.get('USER', '') el1 = etree.SubEleme... |
root = etree.Element( | root = Element( | def __init__(self, document): #nodes.SparseNodeVisitor.__init__(self, document) nodes.GenericNodeVisitor.__init__(self, document) self.settings = document.settings self.section_level = 0 self.section_count = 0 # Create ElementTree content and styles documents. root = etree.Element( 'office:document-content', CONTENT_NA... |
etree.SubElement(root, 'office:scripts') etree.SubElement(root, 'office:font-face-decls') el = etree.SubElement(root, 'office:automatic-styles') | SubElement(root, 'office:scripts') SubElement(root, 'office:font-face-decls') el = SubElement(root, 'office:automatic-styles') | def __init__(self, document): #nodes.SparseNodeVisitor.__init__(self, document) nodes.GenericNodeVisitor.__init__(self, document) self.settings = document.settings self.section_level = 0 self.section_count = 0 # Create ElementTree content and styles documents. root = etree.Element( 'office:document-content', CONTENT_NA... |
el = etree.SubElement(root, 'office:body') el = etree.SubElement(el, 'office:text') | el = SubElement(root, 'office:body') el = SubElement(el, 'office:text') | def __init__(self, document): #nodes.SparseNodeVisitor.__init__(self, document) nodes.GenericNodeVisitor.__init__(self, document) self.settings = document.settings self.section_level = 0 self.section_count = 0 # Create ElementTree content and styles documents. root = etree.Element( 'office:document-content', CONTENT_NA... |
s1 = etree.tostring(root) | et = etree.ElementTree(root) s1 = ToString(et) | def astext(self): root = self.content_tree.getroot() s1 = etree.tostring(root) return s1 |
s1 = etree.tostring(root) | et = etree.ElementTree(root) s1 = ToString(et) | def styles_astext(self): root = self.styles_tree.getroot() s1 = etree.tostring(root) return s1 |
el = etree.SubElement(self.current_element, tag) | el = SubElement(self.current_element, tag) | def append_child(self, tag, attrib=None): if attrib is None: el = etree.SubElement(self.current_element, tag) else: el = etree.SubElement(self.current_element, tag, attrib) return el |
el = etree.SubElement(self.current_element, tag, attrib) | el = SubElement(self.current_element, tag, attrib) | def append_child(self, tag, attrib=None): if attrib is None: el = etree.SubElement(self.current_element, tag) else: el = etree.SubElement(self.current_element, tag, attrib) return el |
el1 = etree.SubElement(el, 'text:span', | el1 = SubElement(el, 'text:span', | def generate_labeled_block(self, node, label): el = self.append_child('text:p', attrib={ 'text:style-name': 'rststyle-textbody'}) el1 = etree.SubElement(el, 'text:span', attrib={'text:style-name': 'rststyle-strong'}) el1.text = label el = self.append_child('text:p', attrib={ 'text:style-name': 'rststyle-blockindent'}) ... |
el1 = etree.SubElement(el, 'text:span', | el1 = SubElement(el, 'text:span', | def visit_authors(self, node): #ipshell('At visit_authors') #self.trace_visit_node(node) label = 'Authors:' el = self.append_child('text:p', attrib={ 'text:style-name': 'rststyle-textbody'}) el1 = etree.SubElement(el, 'text:span', attrib={'text:style-name': 'rststyle-strong'}) el1.text = label |
el = etree.SubElement(self.current_element, 'text:list', attrib={ | el = SubElement(self.current_element, 'text:list', attrib={ | def visit_bullet_list(self, node): #import pdb; pdb.set_trace() #ipshell('At visit_bullet_list') #print '(visit_bullet_list) node: %s' % node.astext() el = etree.SubElement(self.current_element, 'text:list', attrib={ 'text:style-name': 'rststyle-bulletlist', }) self.set_current_element(el) self.paragraph_style_stack.ap... |
el1 = etree.SubElement(el, 'office:annotation', attrib={}) el2 = etree.SubElement(el1, 'text:p', attrib={}) | el1 = SubElement(el, 'office:annotation', attrib={}) el2 = SubElement(el1, 'text:p', attrib={}) | def visit_comment(self, node): #ipshell('At visit_comment') el = self.append_child('text:p', attrib={'text:style-name': 'rststyle-textbody'}) el1 = etree.SubElement(el, 'office:annotation', attrib={}) el2 = etree.SubElement(el1, 'text:p', attrib={}) el2.text = node.astext() |
el1 = etree.SubElement(el, 'text:span', | el1 = SubElement(el, 'text:span', | def visit_date(self, node): el = self.append_child('text:p', attrib={ 'text:style-name': 'rststyle-textbody'}) el1 = etree.SubElement(el, 'text:span', attrib={'text:style-name': 'rststyle-strong'}) el1.text = 'Date: ' el1.tail = node.astext() |
el1 = etree.Element('text:section', attrib={ | el1 = Element('text:section', attrib={ | def depart_decoration(self, node): #global DEBUG #self.trace_depart_node(node) #DEBUG = 0 #ipshell('At depart_decoration') el = self.current_element.getchildren()[-1] self.current_element.remove(el) el1 = etree.Element('text:section', attrib={ 'text:name': '_rstFooterSection', }) el2 = etree.SubElement(el1, 'text:p', a... |
el2 = etree.SubElement(el1, 'text:p', attrib={ | el2 = SubElement(el1, 'text:p', attrib={ | def depart_decoration(self, node): #global DEBUG #self.trace_depart_node(node) #DEBUG = 0 #ipshell('At depart_decoration') el = self.current_element.getchildren()[-1] self.current_element.remove(el) el1 = etree.Element('text:section', attrib={ 'text:name': '_rstFooterSection', }) el2 = etree.SubElement(el1, 'text:p', a... |
el1 = etree.SubElement(el, 'text:span', | el1 = SubElement(el, 'text:span', | def visit_term(self, node): el = self.append_child('text:p', attrib={ 'text:style-name': 'rststyle-textbody'}) el1 = etree.SubElement(el, 'text:span', attrib={'text:style-name': 'rststyle-strong'}) #el1.text = node.astext() self.set_current_element(el1) |
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