484 lines
17 KiB
Python
484 lines
17 KiB
Python
from fontTools.misc.psCharStrings import (
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SimpleT2Decompiler,
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T2WidthExtractor,
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calcSubrBias,
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)
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def _uniq_sort(l):
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return sorted(set(l))
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class StopHintCountEvent(Exception):
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pass
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class _DesubroutinizingT2Decompiler(SimpleT2Decompiler):
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stop_hintcount_ops = (
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"op_hintmask",
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"op_cntrmask",
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"op_rmoveto",
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"op_hmoveto",
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"op_vmoveto",
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)
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def __init__(self, localSubrs, globalSubrs, private=None):
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SimpleT2Decompiler.__init__(self, localSubrs, globalSubrs, private)
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def execute(self, charString):
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self.need_hintcount = True # until proven otherwise
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for op_name in self.stop_hintcount_ops:
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setattr(self, op_name, self.stop_hint_count)
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if hasattr(charString, "_desubroutinized"):
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# If a charstring has already been desubroutinized, we will still
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# need to execute it if we need to count hints in order to
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# compute the byte length for mask arguments, and haven't finished
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# counting hints pairs.
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if self.need_hintcount and self.callingStack:
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try:
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SimpleT2Decompiler.execute(self, charString)
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except StopHintCountEvent:
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del self.callingStack[-1]
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return
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charString._patches = []
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SimpleT2Decompiler.execute(self, charString)
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desubroutinized = charString.program[:]
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for idx, expansion in reversed(charString._patches):
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assert idx >= 2
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assert desubroutinized[idx - 1] in [
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"callsubr",
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"callgsubr",
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], desubroutinized[idx - 1]
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assert type(desubroutinized[idx - 2]) == int
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if expansion[-1] == "return":
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expansion = expansion[:-1]
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desubroutinized[idx - 2 : idx] = expansion
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if not self.private.in_cff2:
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if "endchar" in desubroutinized:
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# Cut off after first endchar
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desubroutinized = desubroutinized[
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: desubroutinized.index("endchar") + 1
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]
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charString._desubroutinized = desubroutinized
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del charString._patches
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def op_callsubr(self, index):
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subr = self.localSubrs[self.operandStack[-1] + self.localBias]
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SimpleT2Decompiler.op_callsubr(self, index)
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self.processSubr(index, subr)
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def op_callgsubr(self, index):
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subr = self.globalSubrs[self.operandStack[-1] + self.globalBias]
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SimpleT2Decompiler.op_callgsubr(self, index)
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self.processSubr(index, subr)
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def stop_hint_count(self, *args):
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self.need_hintcount = False
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for op_name in self.stop_hintcount_ops:
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setattr(self, op_name, None)
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cs = self.callingStack[-1]
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if hasattr(cs, "_desubroutinized"):
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raise StopHintCountEvent()
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def op_hintmask(self, index):
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SimpleT2Decompiler.op_hintmask(self, index)
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if self.need_hintcount:
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self.stop_hint_count()
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def processSubr(self, index, subr):
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cs = self.callingStack[-1]
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if not hasattr(cs, "_desubroutinized"):
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cs._patches.append((index, subr._desubroutinized))
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def desubroutinize(cff):
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for fontName in cff.fontNames:
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font = cff[fontName]
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cs = font.CharStrings
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for c in cs.values():
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c.decompile()
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subrs = getattr(c.private, "Subrs", [])
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decompiler = _DesubroutinizingT2Decompiler(subrs, c.globalSubrs, c.private)
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decompiler.execute(c)
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c.program = c._desubroutinized
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del c._desubroutinized
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# Delete all the local subrs
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if hasattr(font, "FDArray"):
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for fd in font.FDArray:
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pd = fd.Private
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if hasattr(pd, "Subrs"):
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del pd.Subrs
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if "Subrs" in pd.rawDict:
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del pd.rawDict["Subrs"]
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else:
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pd = font.Private
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if hasattr(pd, "Subrs"):
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del pd.Subrs
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if "Subrs" in pd.rawDict:
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del pd.rawDict["Subrs"]
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# as well as the global subrs
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cff.GlobalSubrs.clear()
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class _MarkingT2Decompiler(SimpleT2Decompiler):
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def __init__(self, localSubrs, globalSubrs, private):
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SimpleT2Decompiler.__init__(self, localSubrs, globalSubrs, private)
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for subrs in [localSubrs, globalSubrs]:
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if subrs and not hasattr(subrs, "_used"):
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subrs._used = set()
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def op_callsubr(self, index):
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self.localSubrs._used.add(self.operandStack[-1] + self.localBias)
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SimpleT2Decompiler.op_callsubr(self, index)
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def op_callgsubr(self, index):
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self.globalSubrs._used.add(self.operandStack[-1] + self.globalBias)
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SimpleT2Decompiler.op_callgsubr(self, index)
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class _DehintingT2Decompiler(T2WidthExtractor):
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class Hints(object):
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def __init__(self):
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# Whether calling this charstring produces any hint stems
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# Note that if a charstring starts with hintmask, it will
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# have has_hint set to True, because it *might* produce an
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# implicit vstem if called under certain conditions.
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self.has_hint = False
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# Index to start at to drop all hints
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self.last_hint = 0
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# Index up to which we know more hints are possible.
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# Only relevant if status is 0 or 1.
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self.last_checked = 0
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# The status means:
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# 0: after dropping hints, this charstring is empty
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# 1: after dropping hints, there may be more hints
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# continuing after this, or there might be
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# other things. Not clear yet.
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# 2: no more hints possible after this charstring
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self.status = 0
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# Has hintmask instructions; not recursive
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self.has_hintmask = False
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# List of indices of calls to empty subroutines to remove.
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self.deletions = []
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pass
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def __init__(
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self, css, localSubrs, globalSubrs, nominalWidthX, defaultWidthX, private=None
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):
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self._css = css
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T2WidthExtractor.__init__(
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self, localSubrs, globalSubrs, nominalWidthX, defaultWidthX
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)
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self.private = private
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def execute(self, charString):
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old_hints = charString._hints if hasattr(charString, "_hints") else None
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charString._hints = self.Hints()
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T2WidthExtractor.execute(self, charString)
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hints = charString._hints
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if hints.has_hint or hints.has_hintmask:
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self._css.add(charString)
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if hints.status != 2:
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# Check from last_check, make sure we didn't have any operators.
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for i in range(hints.last_checked, len(charString.program) - 1):
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if isinstance(charString.program[i], str):
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hints.status = 2
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break
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else:
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hints.status = 1 # There's *something* here
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hints.last_checked = len(charString.program)
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if old_hints:
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assert hints.__dict__ == old_hints.__dict__
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def op_callsubr(self, index):
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subr = self.localSubrs[self.operandStack[-1] + self.localBias]
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T2WidthExtractor.op_callsubr(self, index)
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self.processSubr(index, subr)
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def op_callgsubr(self, index):
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subr = self.globalSubrs[self.operandStack[-1] + self.globalBias]
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T2WidthExtractor.op_callgsubr(self, index)
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self.processSubr(index, subr)
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def op_hstem(self, index):
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T2WidthExtractor.op_hstem(self, index)
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self.processHint(index)
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def op_vstem(self, index):
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T2WidthExtractor.op_vstem(self, index)
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self.processHint(index)
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def op_hstemhm(self, index):
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T2WidthExtractor.op_hstemhm(self, index)
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self.processHint(index)
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def op_vstemhm(self, index):
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T2WidthExtractor.op_vstemhm(self, index)
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self.processHint(index)
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def op_hintmask(self, index):
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rv = T2WidthExtractor.op_hintmask(self, index)
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self.processHintmask(index)
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return rv
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def op_cntrmask(self, index):
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rv = T2WidthExtractor.op_cntrmask(self, index)
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self.processHintmask(index)
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return rv
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def processHintmask(self, index):
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cs = self.callingStack[-1]
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hints = cs._hints
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hints.has_hintmask = True
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if hints.status != 2:
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# Check from last_check, see if we may be an implicit vstem
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for i in range(hints.last_checked, index - 1):
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if isinstance(cs.program[i], str):
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hints.status = 2
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break
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else:
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# We are an implicit vstem
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hints.has_hint = True
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hints.last_hint = index + 1
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hints.status = 0
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hints.last_checked = index + 1
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def processHint(self, index):
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cs = self.callingStack[-1]
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hints = cs._hints
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hints.has_hint = True
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hints.last_hint = index
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hints.last_checked = index
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def processSubr(self, index, subr):
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cs = self.callingStack[-1]
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hints = cs._hints
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subr_hints = subr._hints
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# Check from last_check, make sure we didn't have
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# any operators.
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if hints.status != 2:
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for i in range(hints.last_checked, index - 1):
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if isinstance(cs.program[i], str):
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hints.status = 2
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break
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hints.last_checked = index
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if hints.status != 2:
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if subr_hints.has_hint:
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hints.has_hint = True
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# Decide where to chop off from
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if subr_hints.status == 0:
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hints.last_hint = index
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else:
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hints.last_hint = index - 2 # Leave the subr call in
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elif subr_hints.status == 0:
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hints.deletions.append(index)
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hints.status = max(hints.status, subr_hints.status)
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def _cs_subset_subroutines(charstring, subrs, gsubrs):
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p = charstring.program
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for i in range(1, len(p)):
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if p[i] == "callsubr":
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assert isinstance(p[i - 1], int)
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p[i - 1] = subrs._used.index(p[i - 1] + subrs._old_bias) - subrs._new_bias
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elif p[i] == "callgsubr":
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assert isinstance(p[i - 1], int)
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p[i - 1] = (
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gsubrs._used.index(p[i - 1] + gsubrs._old_bias) - gsubrs._new_bias
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)
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def _cs_drop_hints(charstring):
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hints = charstring._hints
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if hints.deletions:
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p = charstring.program
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for idx in reversed(hints.deletions):
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del p[idx - 2 : idx]
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if hints.has_hint:
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assert not hints.deletions or hints.last_hint <= hints.deletions[0]
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charstring.program = charstring.program[hints.last_hint :]
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if not charstring.program:
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# TODO CFF2 no need for endchar.
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charstring.program.append("endchar")
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if hasattr(charstring, "width"):
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# Insert width back if needed
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if charstring.width != charstring.private.defaultWidthX:
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# For CFF2 charstrings, this should never happen
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assert (
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charstring.private.defaultWidthX is not None
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), "CFF2 CharStrings must not have an initial width value"
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charstring.program.insert(
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0, charstring.width - charstring.private.nominalWidthX
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)
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if hints.has_hintmask:
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i = 0
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p = charstring.program
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while i < len(p):
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if p[i] in ["hintmask", "cntrmask"]:
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assert i + 1 <= len(p)
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del p[i : i + 2]
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continue
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i += 1
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assert len(charstring.program)
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del charstring._hints
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def remove_hints(cff, *, removeUnusedSubrs: bool = True):
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for fontname in cff.keys():
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font = cff[fontname]
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cs = font.CharStrings
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# This can be tricky, but doesn't have to. What we do is:
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#
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# - Run all used glyph charstrings and recurse into subroutines,
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# - For each charstring (including subroutines), if it has any
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# of the hint stem operators, we mark it as such.
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# Upon returning, for each charstring we note all the
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# subroutine calls it makes that (recursively) contain a stem,
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# - Dropping hinting then consists of the following two ops:
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# * Drop the piece of the program in each charstring before the
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# last call to a stem op or a stem-calling subroutine,
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# * Drop all hintmask operations.
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# - It's trickier... A hintmask right after hints and a few numbers
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# will act as an implicit vstemhm. As such, we track whether
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# we have seen any non-hint operators so far and do the right
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# thing, recursively... Good luck understanding that :(
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css = set()
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for c in cs.values():
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c.decompile()
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subrs = getattr(c.private, "Subrs", [])
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decompiler = _DehintingT2Decompiler(
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css,
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subrs,
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c.globalSubrs,
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c.private.nominalWidthX,
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c.private.defaultWidthX,
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c.private,
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)
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decompiler.execute(c)
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c.width = decompiler.width
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for charstring in css:
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_cs_drop_hints(charstring)
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del css
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# Drop font-wide hinting values
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all_privs = []
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if hasattr(font, "FDArray"):
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all_privs.extend(fd.Private for fd in font.FDArray)
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else:
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all_privs.append(font.Private)
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for priv in all_privs:
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for k in [
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"BlueValues",
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"OtherBlues",
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"FamilyBlues",
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"FamilyOtherBlues",
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"BlueScale",
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"BlueShift",
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"BlueFuzz",
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"StemSnapH",
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"StemSnapV",
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"StdHW",
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"StdVW",
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"ForceBold",
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"LanguageGroup",
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"ExpansionFactor",
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]:
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if hasattr(priv, k):
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setattr(priv, k, None)
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if removeUnusedSubrs:
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remove_unused_subroutines(cff)
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def _pd_delete_empty_subrs(private_dict):
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if hasattr(private_dict, "Subrs") and not private_dict.Subrs:
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if "Subrs" in private_dict.rawDict:
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del private_dict.rawDict["Subrs"]
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del private_dict.Subrs
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def remove_unused_subroutines(cff):
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for fontname in cff.keys():
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font = cff[fontname]
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cs = font.CharStrings
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# Renumber subroutines to remove unused ones
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# Mark all used subroutines
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for c in cs.values():
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subrs = getattr(c.private, "Subrs", [])
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decompiler = _MarkingT2Decompiler(subrs, c.globalSubrs, c.private)
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decompiler.execute(c)
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all_subrs = [font.GlobalSubrs]
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if hasattr(font, "FDArray"):
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all_subrs.extend(
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fd.Private.Subrs
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for fd in font.FDArray
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if hasattr(fd.Private, "Subrs") and fd.Private.Subrs
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)
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elif hasattr(font.Private, "Subrs") and font.Private.Subrs:
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all_subrs.append(font.Private.Subrs)
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subrs = set(subrs) # Remove duplicates
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# Prepare
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for subrs in all_subrs:
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if not hasattr(subrs, "_used"):
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subrs._used = set()
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subrs._used = _uniq_sort(subrs._used)
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subrs._old_bias = calcSubrBias(subrs)
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subrs._new_bias = calcSubrBias(subrs._used)
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# Renumber glyph charstrings
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for c in cs.values():
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subrs = getattr(c.private, "Subrs", None)
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_cs_subset_subroutines(c, subrs, font.GlobalSubrs)
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# Renumber subroutines themselves
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for subrs in all_subrs:
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if subrs == font.GlobalSubrs:
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if not hasattr(font, "FDArray") and hasattr(font.Private, "Subrs"):
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local_subrs = font.Private.Subrs
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else:
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local_subrs = None
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else:
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local_subrs = subrs
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subrs.items = [subrs.items[i] for i in subrs._used]
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if hasattr(subrs, "file"):
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del subrs.file
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if hasattr(subrs, "offsets"):
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del subrs.offsets
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for subr in subrs.items:
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_cs_subset_subroutines(subr, local_subrs, font.GlobalSubrs)
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# Delete local SubrsIndex if empty
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if hasattr(font, "FDArray"):
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for fd in font.FDArray:
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_pd_delete_empty_subrs(fd.Private)
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else:
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_pd_delete_empty_subrs(font.Private)
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# Cleanup
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for subrs in all_subrs:
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del subrs._used, subrs._old_bias, subrs._new_bias
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