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434 lines
13 KiB
434 lines
13 KiB
from fontTools.voltLib.error import VoltLibError
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from typing import NamedTuple
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class Pos(NamedTuple):
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adv: int
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dx: int
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dy: int
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adv_adjust_by: dict
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dx_adjust_by: dict
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dy_adjust_by: dict
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def __str__(self):
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res = ' POS'
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for attr in ('adv', 'dx', 'dy'):
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value = getattr(self, attr)
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if value is not None:
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res += f' {attr.upper()} {value}'
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adjust_by = getattr(self, f'{attr}_adjust_by', {})
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for size, adjustment in adjust_by.items():
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res += f' ADJUST_BY {adjustment} AT {size}'
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res += ' END_POS'
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return res
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class Element(object):
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def __init__(self, location=None):
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self.location = location
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def build(self, builder):
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pass
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def __str__(self):
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raise NotImplementedError
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class Statement(Element):
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pass
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class Expression(Element):
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pass
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class VoltFile(Statement):
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def __init__(self):
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Statement.__init__(self, location=None)
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self.statements = []
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def build(self, builder):
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for s in self.statements:
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s.build(builder)
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def __str__(self):
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return '\n' + '\n'.join(str(s) for s in self.statements) + ' END\n'
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class GlyphDefinition(Statement):
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def __init__(self, name, gid, gunicode, gtype, components, location=None):
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Statement.__init__(self, location)
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self.name = name
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self.id = gid
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self.unicode = gunicode
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self.type = gtype
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self.components = components
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def __str__(self):
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res = f'DEF_GLYPH "{self.name}" ID {self.id}'
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if self.unicode is not None:
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if len(self.unicode) > 1:
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unicodes = ','.join(f'U+{u:04X}' for u in self.unicode)
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res += f' UNICODEVALUES "{unicodes}"'
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else:
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res += f' UNICODE {self.unicode[0]}'
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if self.type is not None:
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res += f' TYPE {self.type}'
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if self.components is not None:
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res += f' COMPONENTS {self.components}'
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res += ' END_GLYPH'
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return res
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class GroupDefinition(Statement):
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def __init__(self, name, enum, location=None):
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Statement.__init__(self, location)
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self.name = name
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self.enum = enum
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self.glyphs_ = None
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def glyphSet(self, groups=None):
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if groups is not None and self.name in groups:
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raise VoltLibError(
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'Group "%s" contains itself.' % (self.name),
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self.location)
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if self.glyphs_ is None:
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if groups is None:
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groups = set({self.name})
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else:
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groups.add(self.name)
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self.glyphs_ = self.enum.glyphSet(groups)
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return self.glyphs_
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def __str__(self):
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enum = self.enum and str(self.enum) or ''
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return f'DEF_GROUP "{self.name}"\n{enum}\nEND_GROUP'
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class GlyphName(Expression):
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"""A single glyph name, such as cedilla."""
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def __init__(self, glyph, location=None):
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Expression.__init__(self, location)
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self.glyph = glyph
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def glyphSet(self):
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return (self.glyph,)
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def __str__(self):
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return f' GLYPH "{self.glyph}"'
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class Enum(Expression):
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"""An enum"""
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def __init__(self, enum, location=None):
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Expression.__init__(self, location)
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self.enum = enum
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def __iter__(self):
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for e in self.glyphSet():
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yield e
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def glyphSet(self, groups=None):
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glyphs = []
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for element in self.enum:
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if isinstance(element, (GroupName, Enum)):
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glyphs.extend(element.glyphSet(groups))
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else:
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glyphs.extend(element.glyphSet())
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return tuple(glyphs)
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def __str__(self):
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enum = ''.join(str(e) for e in self.enum)
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return f' ENUM{enum} END_ENUM'
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class GroupName(Expression):
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"""A glyph group"""
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def __init__(self, group, parser, location=None):
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Expression.__init__(self, location)
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self.group = group
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self.parser_ = parser
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def glyphSet(self, groups=None):
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group = self.parser_.resolve_group(self.group)
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if group is not None:
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self.glyphs_ = group.glyphSet(groups)
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return self.glyphs_
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else:
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raise VoltLibError(
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'Group "%s" is used but undefined.' % (self.group),
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self.location)
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def __str__(self):
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return f' GROUP "{self.group}"'
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class Range(Expression):
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"""A glyph range"""
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def __init__(self, start, end, parser, location=None):
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Expression.__init__(self, location)
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self.start = start
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self.end = end
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self.parser = parser
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def glyphSet(self):
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return tuple(self.parser.glyph_range(self.start, self.end))
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def __str__(self):
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return f' RANGE "{self.start}" TO "{self.end}"'
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class ScriptDefinition(Statement):
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def __init__(self, name, tag, langs, location=None):
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Statement.__init__(self, location)
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self.name = name
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self.tag = tag
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self.langs = langs
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def __str__(self):
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res = 'DEF_SCRIPT'
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if self.name is not None:
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res += f' NAME "{self.name}"'
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res += f' TAG "{self.tag}"\n\n'
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for lang in self.langs:
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res += f'{lang}'
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res += 'END_SCRIPT'
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return res
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class LangSysDefinition(Statement):
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def __init__(self, name, tag, features, location=None):
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Statement.__init__(self, location)
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self.name = name
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self.tag = tag
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self.features = features
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def __str__(self):
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res = 'DEF_LANGSYS'
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if self.name is not None:
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res += f' NAME "{self.name}"'
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res += f' TAG "{self.tag}"\n\n'
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for feature in self.features:
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res += f'{feature}'
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res += 'END_LANGSYS\n'
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return res
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class FeatureDefinition(Statement):
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def __init__(self, name, tag, lookups, location=None):
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Statement.__init__(self, location)
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self.name = name
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self.tag = tag
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self.lookups = lookups
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def __str__(self):
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res = f'DEF_FEATURE NAME "{self.name}" TAG "{self.tag}"\n'
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res += ' ' + ' '.join(f'LOOKUP "{l}"' for l in self.lookups) + '\n'
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res += 'END_FEATURE\n'
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return res
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class LookupDefinition(Statement):
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def __init__(self, name, process_base, process_marks, mark_glyph_set,
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direction, reversal, comments, context, sub, pos,
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location=None):
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Statement.__init__(self, location)
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self.name = name
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self.process_base = process_base
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self.process_marks = process_marks
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self.mark_glyph_set = mark_glyph_set
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self.direction = direction
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self.reversal = reversal
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self.comments = comments
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self.context = context
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self.sub = sub
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self.pos = pos
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def __str__(self):
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res = f'DEF_LOOKUP "{self.name}"'
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res += f' {self.process_base and "PROCESS_BASE" or "SKIP_BASE"}'
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if self.process_marks:
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res += ' PROCESS_MARKS '
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if self.mark_glyph_set:
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res += f'MARK_GLYPH_SET "{self.mark_glyph_set}"'
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elif isinstance(self.process_marks, str):
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res += f'"{self.process_marks}"'
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else:
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res += 'ALL'
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else:
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res += ' SKIP_MARKS'
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if self.direction is not None:
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res += f' DIRECTION {self.direction}'
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if self.reversal:
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res += ' REVERSAL'
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if self.comments is not None:
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comments = self.comments.replace('\n', r'\n')
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res += f'\nCOMMENTS "{comments}"'
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if self.context:
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res += '\n' + '\n'.join(str(c) for c in self.context)
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else:
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res += '\nIN_CONTEXT\nEND_CONTEXT'
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if self.sub:
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res += f'\n{self.sub}'
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if self.pos:
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res += f'\n{self.pos}'
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return res
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class SubstitutionDefinition(Statement):
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def __init__(self, mapping, location=None):
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Statement.__init__(self, location)
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self.mapping = mapping
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def __str__(self):
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res = 'AS_SUBSTITUTION\n'
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for src, dst in self.mapping.items():
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src = ''.join(str(s) for s in src)
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dst = ''.join(str(d) for d in dst)
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res += f'SUB{src}\nWITH{dst}\nEND_SUB\n'
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res += 'END_SUBSTITUTION'
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return res
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class SubstitutionSingleDefinition(SubstitutionDefinition):
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pass
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class SubstitutionMultipleDefinition(SubstitutionDefinition):
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pass
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class SubstitutionLigatureDefinition(SubstitutionDefinition):
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pass
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class SubstitutionReverseChainingSingleDefinition(SubstitutionDefinition):
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pass
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class PositionAttachDefinition(Statement):
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def __init__(self, coverage, coverage_to, location=None):
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Statement.__init__(self, location)
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self.coverage = coverage
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self.coverage_to = coverage_to
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def __str__(self):
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coverage = ''.join(str(c) for c in self.coverage)
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res = f'AS_POSITION\nATTACH{coverage}\nTO'
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for coverage, anchor in self.coverage_to:
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coverage = ''.join(str(c) for c in coverage)
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res += f'{coverage} AT ANCHOR "{anchor}"'
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res += '\nEND_ATTACH\nEND_POSITION'
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return res
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class PositionAttachCursiveDefinition(Statement):
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def __init__(self, coverages_exit, coverages_enter, location=None):
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Statement.__init__(self, location)
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self.coverages_exit = coverages_exit
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self.coverages_enter = coverages_enter
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def __str__(self):
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res = 'AS_POSITION\nATTACH_CURSIVE'
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for coverage in self.coverages_exit:
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coverage = ''.join(str(c) for c in coverage)
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res += f'\nEXIT {coverage}'
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for coverage in self.coverages_enter:
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coverage = ''.join(str(c) for c in coverage)
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res += f'\nENTER {coverage}'
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res += '\nEND_ATTACH\nEND_POSITION'
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return res
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class PositionAdjustPairDefinition(Statement):
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def __init__(self, coverages_1, coverages_2, adjust_pair, location=None):
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Statement.__init__(self, location)
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self.coverages_1 = coverages_1
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self.coverages_2 = coverages_2
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self.adjust_pair = adjust_pair
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def __str__(self):
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res = 'AS_POSITION\nADJUST_PAIR\n'
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for coverage in self.coverages_1:
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coverage = ' '.join(str(c) for c in coverage)
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res += f' FIRST {coverage}'
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res += '\n'
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for coverage in self.coverages_2:
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coverage = ' '.join(str(c) for c in coverage)
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res += f' SECOND {coverage}'
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res += '\n'
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for (id_1, id_2), (pos_1, pos_2) in self.adjust_pair.items():
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res += f' {id_1} {id_2} BY{pos_1}{pos_2}\n'
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res += '\nEND_ADJUST\nEND_POSITION'
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return res
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class PositionAdjustSingleDefinition(Statement):
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def __init__(self, adjust_single, location=None):
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Statement.__init__(self, location)
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self.adjust_single = adjust_single
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def __str__(self):
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res = 'AS_POSITION\nADJUST_SINGLE'
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for coverage, pos in self.adjust_single:
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coverage = ''.join(str(c) for c in coverage)
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res += f'{coverage} BY{pos}'
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res += '\nEND_ADJUST\nEND_POSITION'
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return res
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class ContextDefinition(Statement):
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def __init__(self, ex_or_in, left=None, right=None, location=None):
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Statement.__init__(self, location)
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self.ex_or_in = ex_or_in
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self.left = left if left is not None else []
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self.right = right if right is not None else []
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def __str__(self):
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res = self.ex_or_in + '\n'
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for coverage in self.left:
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coverage = ''.join(str(c) for c in coverage)
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res += f' LEFT{coverage}\n'
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for coverage in self.right:
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coverage = ''.join(str(c) for c in coverage)
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res += f' RIGHT{coverage}\n'
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res += 'END_CONTEXT'
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return res
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class AnchorDefinition(Statement):
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def __init__(self, name, gid, glyph_name, component, locked,
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pos, location=None):
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Statement.__init__(self, location)
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self.name = name
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self.gid = gid
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self.glyph_name = glyph_name
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self.component = component
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self.locked = locked
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self.pos = pos
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def __str__(self):
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locked = self.locked and ' LOCKED' or ''
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return (f'DEF_ANCHOR "{self.name}"'
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f' ON {self.gid}'
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f' GLYPH {self.glyph_name}'
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f' COMPONENT {self.component}'
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f'{locked}'
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f' AT {self.pos} END_ANCHOR')
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class SettingDefinition(Statement):
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def __init__(self, name, value, location=None):
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Statement.__init__(self, location)
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self.name = name
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self.value = value
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def __str__(self):
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if self.value is True:
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return f'{self.name}'
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if isinstance(self.value, (tuple, list)):
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value = " ".join(str(v) for v in self.value)
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return f'{self.name} {value}'
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return f'{self.name} {self.value}'
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