312 lines
12 KiB
Python
312 lines
12 KiB
Python
from __future__ import print_function, division, absolute_import
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from fontTools.misc.py23 import *
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from fontTools import ttLib
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from fontTools.misc import sstruct
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from fontTools.misc.textTools import safeEval
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from fontTools.ttLib import TTLibError
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from . import DefaultTable
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import array
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import sys
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import struct
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import logging
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import fontTools.ttLib.tables.TupleVariation as tv
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log = logging.getLogger(__name__)
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TupleVariation = tv.TupleVariation
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# https://www.microsoft.com/typography/otspec/gvar.htm
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# https://www.microsoft.com/typography/otspec/otvarcommonformats.htm
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#
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# Apple's documentation of 'gvar':
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# https://developer.apple.com/fonts/TrueType-Reference-Manual/RM06/Chap6gvar.html
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#
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# FreeType2 source code for parsing 'gvar':
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# http://git.savannah.gnu.org/cgit/freetype/freetype2.git/tree/src/truetype/ttgxvar.c
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GVAR_HEADER_FORMAT = """
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> # big endian
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version: H
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reserved: H
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axisCount: H
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sharedTupleCount: H
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offsetToSharedTuples: I
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glyphCount: H
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flags: H
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offsetToGlyphVariationData: I
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"""
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GVAR_HEADER_SIZE = sstruct.calcsize(GVAR_HEADER_FORMAT)
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class table__g_v_a_r(DefaultTable.DefaultTable):
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dependencies = ["fvar", "glyf"]
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def compile(self, ttFont):
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axisTags = [axis.axisTag for axis in ttFont["fvar"].axes]
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sharedCoords = self.compileSharedCoords_(axisTags)
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sharedCoordIndices = {coord:i for i, coord in enumerate(sharedCoords)}
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sharedCoordSize = sum([len(c) for c in sharedCoords])
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compiledGlyphs = self.compileGlyphs_(ttFont, axisTags, sharedCoordIndices)
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offset = 0
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offsets = []
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for glyph in compiledGlyphs:
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offsets.append(offset)
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offset += len(glyph)
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offsets.append(offset)
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compiledOffsets, tableFormat = self.compileOffsets_(offsets)
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header = {}
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header["version"] = self.version
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header["reserved"] = self.reserved
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header["axisCount"] = len(axisTags)
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header["sharedTupleCount"] = len(sharedCoords)
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header["offsetToSharedTuples"] = GVAR_HEADER_SIZE + len(compiledOffsets)
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header["glyphCount"] = len(compiledGlyphs)
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header["flags"] = tableFormat
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header["offsetToGlyphVariationData"] = header["offsetToSharedTuples"] + sharedCoordSize
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compiledHeader = sstruct.pack(GVAR_HEADER_FORMAT, header)
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result = [compiledHeader, compiledOffsets]
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result.extend(sharedCoords)
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result.extend(compiledGlyphs)
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return bytesjoin(result)
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def compileSharedCoords_(self, axisTags):
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coordCount = {}
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for variations in self.variations.values():
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for gvar in variations:
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coord = gvar.compileCoord(axisTags)
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coordCount[coord] = coordCount.get(coord, 0) + 1
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sharedCoords = [(count, coord) for (coord, count) in coordCount.items() if count > 1]
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sharedCoords.sort(reverse=True)
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MAX_NUM_SHARED_COORDS = tv.TUPLE_INDEX_MASK + 1
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sharedCoords = sharedCoords[:MAX_NUM_SHARED_COORDS]
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return [c[1] for c in sharedCoords] # Strip off counts.
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def compileGlyphs_(self, ttFont, axisTags, sharedCoordIndices):
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result = []
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for glyphName in ttFont.getGlyphOrder():
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glyph = ttFont["glyf"][glyphName]
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numPointsInGlyph = self.getNumPoints_(glyph)
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result.append(self.compileGlyph_(glyphName, numPointsInGlyph, axisTags, sharedCoordIndices))
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return result
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def compileGlyph_(self, glyphName, numPointsInGlyph, axisTags, sharedCoordIndices):
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variations = self.variations.get(glyphName, [])
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variations = [v for v in variations if v.hasImpact()]
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if len(variations) == 0:
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return b""
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# Each glyph variation tuples modifies a set of control points. To indicate
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# which exact points are getting modified, a single tuple can either refer
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# to a shared set of points, or the tuple can supply its private point numbers.
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# Because the impact of sharing can be positive (no need for a private point list)
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# or negative (need to supply 0,0 deltas for unused points), it is not obvious
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# how to determine which tuples should take their points from the shared
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# pool versus have their own. Perhaps we should resort to brute force,
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# and try all combinations? However, if a glyph has n variation tuples,
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# we would need to try 2^n combinations (because each tuple may or may not
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# be part of the shared set). How many variations tuples do glyphs have?
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#
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# Skia.ttf: {3: 1, 5: 11, 6: 41, 7: 62, 8: 387, 13: 1, 14: 3}
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# JamRegular.ttf: {3: 13, 4: 122, 5: 1, 7: 4, 8: 1, 9: 1, 10: 1}
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# BuffaloGalRegular.ttf: {1: 16, 2: 13, 4: 2, 5: 4, 6: 19, 7: 1, 8: 3, 9: 18}
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# (Reading example: In Skia.ttf, 41 glyphs have 6 variation tuples).
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#
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# Is this even worth optimizing? If we never use a shared point list,
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# the private lists will consume 112K for Skia, 5K for BuffaloGalRegular,
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# and 15K for JamRegular. If we always use a shared point list,
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# the shared lists will consume 16K for Skia, 3K for BuffaloGalRegular,
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# and 10K for JamRegular. However, in the latter case the delta arrays
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# will become larger, but I haven't yet measured by how much. From
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# gut feeling (which may be wrong), the optimum is to share some but
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# not all points; however, then we would need to try all combinations.
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#
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# For the time being, we try two variants and then pick the better one:
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# (a) each tuple supplies its own private set of points;
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# (b) all tuples refer to a shared set of points, which consists of
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# "every control point in the glyph".
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allPoints = set(range(numPointsInGlyph))
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tuples = []
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data = []
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someTuplesSharePoints = False
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for gvar in variations:
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privateTuple, privateData = gvar.compile(axisTags, sharedCoordIndices, sharedPoints=None)
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sharedTuple, sharedData = gvar.compile(axisTags, sharedCoordIndices, sharedPoints=allPoints)
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# TODO: Apple macOS 10.9.5 (maybe also earlier) up to 10.12 had a bug
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# that broke variations if the `gvar` table contains shared tuples.
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# Apple will likely fix this in macOS 10.13. But for the time being,
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# we never emit shared points although the result would be more compact.
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# https://rawgit.com/unicode-org/text-rendering-tests/master/reports/CoreText.html#GVAR-1
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#if (len(sharedTuple) + len(sharedData)) < (len(privateTuple) + len(privateData)):
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if False:
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tuples.append(sharedTuple)
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data.append(sharedData)
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someTuplesSharePoints = True
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else:
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tuples.append(privateTuple)
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data.append(privateData)
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if someTuplesSharePoints:
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data = bytechr(0) + bytesjoin(data) # 0x00 = "all points in glyph"
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tupleCount = tv.TUPLES_SHARE_POINT_NUMBERS | len(tuples)
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else:
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data = bytesjoin(data)
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tupleCount = len(tuples)
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tuples = bytesjoin(tuples)
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result = struct.pack(">HH", tupleCount, 4 + len(tuples)) + tuples + data
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if len(result) % 2 != 0:
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result = result + b"\0" # padding
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return result
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def decompile(self, data, ttFont):
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axisTags = [axis.axisTag for axis in ttFont["fvar"].axes]
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glyphs = ttFont.getGlyphOrder()
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sstruct.unpack(GVAR_HEADER_FORMAT, data[0:GVAR_HEADER_SIZE], self)
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assert len(glyphs) == self.glyphCount
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assert len(axisTags) == self.axisCount
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offsets = self.decompileOffsets_(data[GVAR_HEADER_SIZE:], tableFormat=(self.flags & 1), glyphCount=self.glyphCount)
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sharedCoords = decompileSharedTuples_(
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axisTags, self.sharedTupleCount, data, self.offsetToSharedTuples)
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self.variations = {}
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offsetToData = self.offsetToGlyphVariationData
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for i in range(self.glyphCount):
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glyphName = glyphs[i]
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glyph = ttFont["glyf"][glyphName]
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numPointsInGlyph = self.getNumPoints_(glyph)
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gvarData = data[offsetToData + offsets[i] : offsetToData + offsets[i + 1]]
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self.variations[glyphName] = \
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self.decompileGlyph_(numPointsInGlyph, sharedCoords, axisTags, gvarData)
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@staticmethod
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def decompileOffsets_(data, tableFormat, glyphCount):
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if tableFormat == 0:
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# Short format: array of UInt16
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offsets = array.array("H")
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offsetsSize = (glyphCount + 1) * 2
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else:
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# Long format: array of UInt32
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offsets = array.array("I")
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offsetsSize = (glyphCount + 1) * 4
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offsets.fromstring(data[0 : offsetsSize])
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if sys.byteorder != "big":
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offsets.byteswap()
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# In the short format, offsets need to be multiplied by 2.
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# This is not documented in Apple's TrueType specification,
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# but can be inferred from the FreeType implementation, and
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# we could verify it with two sample GX fonts.
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if tableFormat == 0:
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offsets = [off * 2 for off in offsets]
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return offsets
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@staticmethod
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def compileOffsets_(offsets):
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"""Packs a list of offsets into a 'gvar' offset table.
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Returns a pair (bytestring, tableFormat). Bytestring is the
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packed offset table. Format indicates whether the table
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uses short (tableFormat=0) or long (tableFormat=1) integers.
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The returned tableFormat should get packed into the flags field
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of the 'gvar' header.
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"""
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assert len(offsets) >= 2
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for i in range(1, len(offsets)):
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assert offsets[i - 1] <= offsets[i]
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if max(offsets) <= 0xffff * 2:
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packed = array.array("H", [n >> 1 for n in offsets])
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tableFormat = 0
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else:
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packed = array.array("I", offsets)
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tableFormat = 1
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if sys.byteorder != "big":
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packed.byteswap()
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return (packed.tostring(), tableFormat)
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def decompileGlyph_(self, numPointsInGlyph, sharedCoords, axisTags, data):
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if len(data) < 4:
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return []
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numAxes = len(axisTags)
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tuples = []
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flags, offsetToData = struct.unpack(">HH", data[:4])
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pos = 4
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dataPos = offsetToData
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if (flags & tv.TUPLES_SHARE_POINT_NUMBERS) != 0:
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sharedPoints, dataPos = TupleVariation.decompilePoints_(numPointsInGlyph, data, dataPos, "gvar")
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else:
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sharedPoints = []
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for _ in range(flags & tv.TUPLE_COUNT_MASK):
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dataSize, flags = struct.unpack(">HH", data[pos:pos+4])
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tupleSize = TupleVariation.getTupleSize_(flags, numAxes)
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tupleData = data[pos : pos + tupleSize]
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pointDeltaData = data[dataPos : dataPos + dataSize]
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tuples.append(tv.decompileTupleVariation_(
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numPointsInGlyph, sharedCoords, sharedPoints,
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"gvar", axisTags, tupleData, pointDeltaData))
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pos += tupleSize
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dataPos += dataSize
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return tuples
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def toXML(self, writer, ttFont, progress=None):
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writer.simpletag("version", value=self.version)
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writer.newline()
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writer.simpletag("reserved", value=self.reserved)
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writer.newline()
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axisTags = [axis.axisTag for axis in ttFont["fvar"].axes]
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for glyphName in ttFont.getGlyphOrder():
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variations = self.variations.get(glyphName)
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if not variations:
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continue
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writer.begintag("glyphVariations", glyph=glyphName)
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writer.newline()
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for gvar in variations:
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gvar.toXML(writer, axisTags)
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writer.endtag("glyphVariations")
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writer.newline()
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def fromXML(self, name, attrs, content, ttFont):
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if name == "version":
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self.version = safeEval(attrs["value"])
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elif name == "reserved":
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self.reserved = safeEval(attrs["value"])
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elif name == "glyphVariations":
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if not hasattr(self, "variations"):
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self.variations = {}
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glyphName = attrs["glyph"]
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glyph = ttFont["glyf"][glyphName]
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numPointsInGlyph = self.getNumPoints_(glyph)
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glyphVariations = []
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for element in content:
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if isinstance(element, tuple):
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name, attrs, content = element
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if name == "tuple":
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gvar = TupleVariation({}, [None] * numPointsInGlyph)
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glyphVariations.append(gvar)
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for tupleElement in content:
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if isinstance(tupleElement, tuple):
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tupleName, tupleAttrs, tupleContent = tupleElement
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gvar.fromXML(tupleName, tupleAttrs, tupleContent)
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self.variations[glyphName] = glyphVariations
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@staticmethod
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def getNumPoints_(glyph):
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NUM_PHANTOM_POINTS = 4
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if glyph.isComposite():
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return len(glyph.components) + NUM_PHANTOM_POINTS
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else:
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# Empty glyphs (eg. space, nonmarkingreturn) have no "coordinates" attribute.
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return len(getattr(glyph, "coordinates", [])) + NUM_PHANTOM_POINTS
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def decompileSharedTuples_(axisTags, sharedTupleCount, data, offset):
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result = []
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for _ in range(sharedTupleCount):
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t, offset = TupleVariation.decompileCoord_(axisTags, data, offset)
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result.append(t)
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return result
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