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86 lines
2.8 KiB
Python
86 lines
2.8 KiB
Python
import re
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from fontTools.pens.transformPen import TransformPen
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from fontTools.misc.transform import Transform
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from fontTools.pens.reverseContourPen import ReverseContourPen
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# Directives are glyph-specific post-processing directives for the compiler.
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# A directive is added to the "note" section of a glyph and takes the
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# following form:
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#
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# !post:DIRECTIVE
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#
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# Where DIRECTIVE is the name of a known directive.
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# This string can appear anywhere in the glyph note.
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# Directives are _not_ case sensitive but normalized by str.lower(), meaning
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# that e.g. "removeoverlap" == "RemoveOverlap" == "REMOVEOVERLAP".
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#
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knownDirectives = set([
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'removeoverlap', # applies overlap removal (boolean union)
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])
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_findDirectiveRegEx = re.compile(r'\!post:([^ ]+)', re.I | re.U)
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def findGlyphDirectives(string): # -> set<string> | None
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directives = set()
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if string and len(string) > 0:
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for directive in _findDirectiveRegEx.findall(string):
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directive = directive.lower()
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if directive in knownDirectives:
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directives.add(directive)
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else:
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print(
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'unknown glyph directive !post:%s in glyph %s' % (directive, g.name),
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file=sys.stderr
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)
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return directives
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def composedGlyphIsTrivial(g):
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# A trivial glyph is one that does not use components or where component transformation
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# does not include mirroring (i.e. "flipped").
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if g.components and len(g.components) > 0:
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for c in g.components:
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# has non-trivial transformation? (i.e. scaled)
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# Example of optimally trivial transformation:
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# (1, 0, 0, 1, 0, 0) no scale or offset
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# Example of scaled transformation matrix:
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# (-1.0, 0, 0.3311, 1, 1464.0, 0) flipped x axis, sheered and offset
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#
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xScale = c.transformation[0]
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yScale = c.transformation[3]
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# If glyph is reflected along x or y axes, it won't slant well.
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if xScale < 0 or yScale < 0:
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return False
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return True
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def decomposeGlyphs(ufos, glyphNamesToDecompose):
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for ufo in ufos:
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for glyphname in glyphNamesToDecompose:
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glyph = ufo[glyphname]
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_deepCopyContours(ufo, glyph, glyph, Transform())
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glyph.clearComponents()
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def _deepCopyContours(ufo, parent, component, transformation):
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"""Copy contours from component to parent, including nested components."""
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for nested in component.components:
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_deepCopyContours(
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ufo,
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parent,
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ufo[nested.baseGlyph],
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transformation.transform(nested.transformation)
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)
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if component != parent:
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pen = TransformPen(parent.getPen(), transformation)
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# if the transformation has a negative determinant, it will reverse
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# the contour direction of the component
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xx, xy, yx, yy = transformation[:4]
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if xx*yy - xy*yx < 0:
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pen = ReverseContourPen(pen)
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component.draw(pen) |