ufo.py 12 KB

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  1. # Copyright 2015 Google Inc. All Rights Reserved.
  2. #
  3. # Licensed under the Apache License, Version 2.0 (the "License");
  4. # you may not use this file except in compliance with the License.
  5. # You may obtain a copy of the License at
  6. #
  7. # http://www.apache.org/licenses/LICENSE-2.0
  8. #
  9. # Unless required by applicable law or agreed to in writing, software
  10. # distributed under the License is distributed on an "AS IS" BASIS,
  11. # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. # See the License for the specific language governing permissions and
  13. # limitations under the License.
  14. """Converts cubic bezier curves to quadratic splines.
  15. Conversion is performed such that the quadratic splines keep the same end-curve
  16. tangents as the original cubics. The approach is iterative, increasing the
  17. number of segments for a spline until the error gets below a bound.
  18. Respective curves from multiple fonts will be converted at once to ensure that
  19. the resulting splines are interpolation-compatible.
  20. """
  21. import logging
  22. from fontTools.pens.basePen import AbstractPen
  23. from fontTools.pens.pointPen import PointToSegmentPen
  24. from fontTools.pens.reverseContourPen import ReverseContourPen
  25. from . import curves_to_quadratic
  26. from .errors import (
  27. UnequalZipLengthsError,
  28. IncompatibleSegmentNumberError,
  29. IncompatibleSegmentTypesError,
  30. IncompatibleGlyphsError,
  31. IncompatibleFontsError,
  32. )
  33. __all__ = ["fonts_to_quadratic", "font_to_quadratic"]
  34. # The default approximation error below is a relative value (1/1000 of the EM square).
  35. # Later on, we convert it to absolute font units by multiplying it by a font's UPEM
  36. # (see fonts_to_quadratic).
  37. DEFAULT_MAX_ERR = 0.001
  38. CURVE_TYPE_LIB_KEY = "com.github.googlei18n.cu2qu.curve_type"
  39. logger = logging.getLogger(__name__)
  40. _zip = zip
  41. def zip(*args):
  42. """Ensure each argument to zip has the same length. Also make sure a list is
  43. returned for python 2/3 compatibility.
  44. """
  45. if len(set(len(a) for a in args)) != 1:
  46. raise UnequalZipLengthsError(*args)
  47. return list(_zip(*args))
  48. class GetSegmentsPen(AbstractPen):
  49. """Pen to collect segments into lists of points for conversion.
  50. Curves always include their initial on-curve point, so some points are
  51. duplicated between segments.
  52. """
  53. def __init__(self):
  54. self._last_pt = None
  55. self.segments = []
  56. def _add_segment(self, tag, *args):
  57. if tag in ["move", "line", "qcurve", "curve"]:
  58. self._last_pt = args[-1]
  59. self.segments.append((tag, args))
  60. def moveTo(self, pt):
  61. self._add_segment("move", pt)
  62. def lineTo(self, pt):
  63. self._add_segment("line", pt)
  64. def qCurveTo(self, *points):
  65. self._add_segment("qcurve", self._last_pt, *points)
  66. def curveTo(self, *points):
  67. self._add_segment("curve", self._last_pt, *points)
  68. def closePath(self):
  69. self._add_segment("close")
  70. def endPath(self):
  71. self._add_segment("end")
  72. def addComponent(self, glyphName, transformation):
  73. pass
  74. def _get_segments(glyph):
  75. """Get a glyph's segments as extracted by GetSegmentsPen."""
  76. pen = GetSegmentsPen()
  77. # glyph.draw(pen)
  78. # We can't simply draw the glyph with the pen, but we must initialize the
  79. # PointToSegmentPen explicitly with outputImpliedClosingLine=True.
  80. # By default PointToSegmentPen does not outputImpliedClosingLine -- unless
  81. # last and first point on closed contour are duplicated. Because we are
  82. # converting multiple glyphs at the same time, we want to make sure
  83. # this function returns the same number of segments, whether or not
  84. # the last and first point overlap.
  85. # https://github.com/googlefonts/fontmake/issues/572
  86. # https://github.com/fonttools/fonttools/pull/1720
  87. pointPen = PointToSegmentPen(pen, outputImpliedClosingLine=True)
  88. glyph.drawPoints(pointPen)
  89. return pen.segments
  90. def _set_segments(glyph, segments, reverse_direction):
  91. """Draw segments as extracted by GetSegmentsPen back to a glyph."""
  92. glyph.clearContours()
  93. pen = glyph.getPen()
  94. if reverse_direction:
  95. pen = ReverseContourPen(pen)
  96. for tag, args in segments:
  97. if tag == "move":
  98. pen.moveTo(*args)
  99. elif tag == "line":
  100. pen.lineTo(*args)
  101. elif tag == "curve":
  102. pen.curveTo(*args[1:])
  103. elif tag == "qcurve":
  104. pen.qCurveTo(*args[1:])
  105. elif tag == "close":
  106. pen.closePath()
  107. elif tag == "end":
  108. pen.endPath()
  109. else:
  110. raise AssertionError('Unhandled segment type "%s"' % tag)
  111. def _segments_to_quadratic(segments, max_err, stats, all_quadratic=True):
  112. """Return quadratic approximations of cubic segments."""
  113. assert all(s[0] == "curve" for s in segments), "Non-cubic given to convert"
  114. new_points = curves_to_quadratic([s[1] for s in segments], max_err, all_quadratic)
  115. n = len(new_points[0])
  116. assert all(len(s) == n for s in new_points[1:]), "Converted incompatibly"
  117. spline_length = str(n - 2)
  118. stats[spline_length] = stats.get(spline_length, 0) + 1
  119. if all_quadratic or n == 3:
  120. return [("qcurve", p) for p in new_points]
  121. else:
  122. return [("curve", p) for p in new_points]
  123. def _glyphs_to_quadratic(glyphs, max_err, reverse_direction, stats, all_quadratic=True):
  124. """Do the actual conversion of a set of compatible glyphs, after arguments
  125. have been set up.
  126. Return True if the glyphs were modified, else return False.
  127. """
  128. try:
  129. segments_by_location = zip(*[_get_segments(g) for g in glyphs])
  130. except UnequalZipLengthsError:
  131. raise IncompatibleSegmentNumberError(glyphs)
  132. if not any(segments_by_location):
  133. return False
  134. # always modify input glyphs if reverse_direction is True
  135. glyphs_modified = reverse_direction
  136. new_segments_by_location = []
  137. incompatible = {}
  138. for i, segments in enumerate(segments_by_location):
  139. tag = segments[0][0]
  140. if not all(s[0] == tag for s in segments[1:]):
  141. incompatible[i] = [s[0] for s in segments]
  142. elif tag == "curve":
  143. new_segments = _segments_to_quadratic(
  144. segments, max_err, stats, all_quadratic
  145. )
  146. if all_quadratic or new_segments != segments:
  147. glyphs_modified = True
  148. segments = new_segments
  149. new_segments_by_location.append(segments)
  150. if glyphs_modified:
  151. new_segments_by_glyph = zip(*new_segments_by_location)
  152. for glyph, new_segments in zip(glyphs, new_segments_by_glyph):
  153. _set_segments(glyph, new_segments, reverse_direction)
  154. if incompatible:
  155. raise IncompatibleSegmentTypesError(glyphs, segments=incompatible)
  156. return glyphs_modified
  157. def glyphs_to_quadratic(
  158. glyphs, max_err=None, reverse_direction=False, stats=None, all_quadratic=True
  159. ):
  160. """Convert the curves of a set of compatible of glyphs to quadratic.
  161. All curves will be converted to quadratic at once, ensuring interpolation
  162. compatibility. If this is not required, calling glyphs_to_quadratic with one
  163. glyph at a time may yield slightly more optimized results.
  164. Return True if glyphs were modified, else return False.
  165. Raises IncompatibleGlyphsError if glyphs have non-interpolatable outlines.
  166. """
  167. if stats is None:
  168. stats = {}
  169. if not max_err:
  170. # assume 1000 is the default UPEM
  171. max_err = DEFAULT_MAX_ERR * 1000
  172. if isinstance(max_err, (list, tuple)):
  173. max_errors = max_err
  174. else:
  175. max_errors = [max_err] * len(glyphs)
  176. assert len(max_errors) == len(glyphs)
  177. return _glyphs_to_quadratic(
  178. glyphs, max_errors, reverse_direction, stats, all_quadratic
  179. )
  180. def fonts_to_quadratic(
  181. fonts,
  182. max_err_em=None,
  183. max_err=None,
  184. reverse_direction=False,
  185. stats=None,
  186. dump_stats=False,
  187. remember_curve_type=True,
  188. all_quadratic=True,
  189. ):
  190. """Convert the curves of a collection of fonts to quadratic.
  191. All curves will be converted to quadratic at once, ensuring interpolation
  192. compatibility. If this is not required, calling fonts_to_quadratic with one
  193. font at a time may yield slightly more optimized results.
  194. Return the set of modified glyph names if any, else return an empty set.
  195. By default, cu2qu stores the curve type in the fonts' lib, under a private
  196. key "com.github.googlei18n.cu2qu.curve_type", and will not try to convert
  197. them again if the curve type is already set to "quadratic".
  198. Setting 'remember_curve_type' to False disables this optimization.
  199. Raises IncompatibleFontsError if same-named glyphs from different fonts
  200. have non-interpolatable outlines.
  201. """
  202. if remember_curve_type:
  203. curve_types = {f.lib.get(CURVE_TYPE_LIB_KEY, "cubic") for f in fonts}
  204. if len(curve_types) == 1:
  205. curve_type = next(iter(curve_types))
  206. if curve_type in ("quadratic", "mixed"):
  207. logger.info("Curves already converted to quadratic")
  208. return False
  209. elif curve_type == "cubic":
  210. pass # keep converting
  211. else:
  212. raise NotImplementedError(curve_type)
  213. elif len(curve_types) > 1:
  214. # going to crash later if they do differ
  215. logger.warning("fonts may contain different curve types")
  216. if stats is None:
  217. stats = {}
  218. if max_err_em and max_err:
  219. raise TypeError("Only one of max_err and max_err_em can be specified.")
  220. if not (max_err_em or max_err):
  221. max_err_em = DEFAULT_MAX_ERR
  222. if isinstance(max_err, (list, tuple)):
  223. assert len(max_err) == len(fonts)
  224. max_errors = max_err
  225. elif max_err:
  226. max_errors = [max_err] * len(fonts)
  227. if isinstance(max_err_em, (list, tuple)):
  228. assert len(fonts) == len(max_err_em)
  229. max_errors = [f.info.unitsPerEm * e for f, e in zip(fonts, max_err_em)]
  230. elif max_err_em:
  231. max_errors = [f.info.unitsPerEm * max_err_em for f in fonts]
  232. modified = set()
  233. glyph_errors = {}
  234. for name in set().union(*(f.keys() for f in fonts)):
  235. glyphs = []
  236. cur_max_errors = []
  237. for font, error in zip(fonts, max_errors):
  238. if name in font:
  239. glyphs.append(font[name])
  240. cur_max_errors.append(error)
  241. try:
  242. if _glyphs_to_quadratic(
  243. glyphs, cur_max_errors, reverse_direction, stats, all_quadratic
  244. ):
  245. modified.add(name)
  246. except IncompatibleGlyphsError as exc:
  247. logger.error(exc)
  248. glyph_errors[name] = exc
  249. if glyph_errors:
  250. raise IncompatibleFontsError(glyph_errors)
  251. if modified and dump_stats:
  252. spline_lengths = sorted(stats.keys())
  253. logger.info(
  254. "New spline lengths: %s"
  255. % (", ".join("%s: %d" % (l, stats[l]) for l in spline_lengths))
  256. )
  257. if remember_curve_type:
  258. for font in fonts:
  259. curve_type = font.lib.get(CURVE_TYPE_LIB_KEY, "cubic")
  260. new_curve_type = "quadratic" if all_quadratic else "mixed"
  261. if curve_type != new_curve_type:
  262. font.lib[CURVE_TYPE_LIB_KEY] = new_curve_type
  263. return modified
  264. def glyph_to_quadratic(glyph, **kwargs):
  265. """Convenience wrapper around glyphs_to_quadratic, for just one glyph.
  266. Return True if the glyph was modified, else return False.
  267. """
  268. return glyphs_to_quadratic([glyph], **kwargs)
  269. def font_to_quadratic(font, **kwargs):
  270. """Convenience wrapper around fonts_to_quadratic, for just one font.
  271. Return the set of modified glyph names if any, else return empty set.
  272. """
  273. return fonts_to_quadratic([font], **kwargs)