msdfgen.cpp 15 KB

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  1. #include "../msdfgen.h"
  2. #include <vector>
  3. #include "edge-selectors.h"
  4. #include "contour-combiners.h"
  5. #include "ShapeDistanceFinder.h"
  6. namespace msdfgen {
  7. template <typename DistanceType>
  8. class DistancePixelConversion;
  9. template <>
  10. class DistancePixelConversion<double> {
  11. double invRange;
  12. public:
  13. typedef BitmapRef<float, 1> BitmapRefType;
  14. inline explicit DistancePixelConversion(double range) : invRange(1/range) { }
  15. inline void operator()(float *pixels, double distance) const {
  16. *pixels = float(invRange*distance+.5);
  17. }
  18. };
  19. template <>
  20. class DistancePixelConversion<MultiDistance> {
  21. double invRange;
  22. public:
  23. typedef BitmapRef<float, 3> BitmapRefType;
  24. inline explicit DistancePixelConversion(double range) : invRange(1/range) { }
  25. inline void operator()(float *pixels, const MultiDistance &distance) const {
  26. pixels[0] = float(invRange*distance.r+.5);
  27. pixels[1] = float(invRange*distance.g+.5);
  28. pixels[2] = float(invRange*distance.b+.5);
  29. }
  30. };
  31. template <>
  32. class DistancePixelConversion<MultiAndTrueDistance> {
  33. double invRange;
  34. public:
  35. typedef BitmapRef<float, 4> BitmapRefType;
  36. inline explicit DistancePixelConversion(double range) : invRange(1/range) { }
  37. inline void operator()(float *pixels, const MultiAndTrueDistance &distance) const {
  38. pixels[0] = float(invRange*distance.r+.5);
  39. pixels[1] = float(invRange*distance.g+.5);
  40. pixels[2] = float(invRange*distance.b+.5);
  41. pixels[3] = float(invRange*distance.a+.5);
  42. }
  43. };
  44. template <>
  45. class DistancePixelConversion<M7AndTrueDistanceSelector::DistanceType> {
  46. double invRange;
  47. public:
  48. typedef BitmapRef<float, 8> BitmapRefType;
  49. inline explicit DistancePixelConversion(double range) : invRange(1/range) { }
  50. inline void operator()(float *pixels, const M7AndTrueDistanceSelector::DistanceType &distance) const {
  51. pixels[0] = float(invRange*distance.p[0]+.5);
  52. pixels[1] = float(invRange*distance.p[1]+.5);
  53. pixels[2] = float(invRange*distance.p[2]+.5);
  54. pixels[3] = float(invRange*distance.p[3]+.5);
  55. pixels[4] = float(invRange*distance.p[4]+.5);
  56. pixels[5] = float(invRange*distance.p[5]+.5);
  57. pixels[6] = float(invRange*distance.p[6]+.5);
  58. pixels[7] = float(invRange*distance.t+.5);
  59. }
  60. };
  61. template <class ContourCombiner>
  62. void generateDistanceField(const typename DistancePixelConversion<typename ContourCombiner::DistanceType>::BitmapRefType &output, const Shape &shape, const Projection &projection, double range) {
  63. DistancePixelConversion<typename ContourCombiner::DistanceType> distancePixelConversion(range);
  64. #ifdef MSDFGEN_USE_OPENMP
  65. #pragma omp parallel
  66. #endif
  67. {
  68. ShapeDistanceFinder<ContourCombiner> distanceFinder(shape);
  69. bool rightToLeft = false;
  70. #ifdef MSDFGEN_USE_OPENMP
  71. #pragma omp for
  72. #endif
  73. for (int y = 0; y < output.height; ++y) {
  74. int row = shape.inverseYAxis ? output.height-y-1 : y;
  75. for (int col = 0; col < output.width; ++col) {
  76. int x = rightToLeft ? output.width-col-1 : col;
  77. Point2 p = projection.unproject(Point2(x+.5, y+.5));
  78. typename ContourCombiner::DistanceType distance = distanceFinder.distance(p);
  79. distancePixelConversion(output(x, row), distance);
  80. }
  81. rightToLeft = !rightToLeft;
  82. }
  83. }
  84. }
  85. void generateSDF(const BitmapRef<float, 1> &output, const Shape &shape, const Projection &projection, double range, const GeneratorConfig &config) {
  86. if (config.overlapSupport)
  87. generateDistanceField<OverlappingContourCombiner<TrueDistanceSelector> >(output, shape, projection, range);
  88. else
  89. generateDistanceField<SimpleContourCombiner<TrueDistanceSelector> >(output, shape, projection, range);
  90. }
  91. void generatePseudoSDF(const BitmapRef<float, 1> &output, const Shape &shape, const Projection &projection, double range, const GeneratorConfig &config) {
  92. if (config.overlapSupport)
  93. generateDistanceField<OverlappingContourCombiner<PseudoDistanceSelector> >(output, shape, projection, range);
  94. else
  95. generateDistanceField<SimpleContourCombiner<PseudoDistanceSelector> >(output, shape, projection, range);
  96. }
  97. void generateMSDF(const BitmapRef<float, 3> &output, const Shape &shape, const Projection &projection, double range, const MSDFGeneratorConfig &config) {
  98. if (config.overlapSupport)
  99. generateDistanceField<OverlappingContourCombiner<MultiDistanceSelector> >(output, shape, projection, range);
  100. else
  101. generateDistanceField<SimpleContourCombiner<MultiDistanceSelector> >(output, shape, projection, range);
  102. msdfErrorCorrection(output, shape, projection, range, config);
  103. }
  104. void generateMTSDF(const BitmapRef<float, 4> &output, const Shape &shape, const Projection &projection, double range, const MSDFGeneratorConfig &config) {
  105. if (config.overlapSupport)
  106. generateDistanceField<OverlappingContourCombiner<MultiAndTrueDistanceSelector> >(output, shape, projection, range);
  107. else
  108. generateDistanceField<SimpleContourCombiner<MultiAndTrueDistanceSelector> >(output, shape, projection, range);
  109. msdfErrorCorrection(output, shape, projection, range, config);
  110. }
  111. void generate7TSDF(const BitmapRef<float, 8> &output, const Shape &shape, const Projection &projection, double range, const MSDFGeneratorConfig &config) {
  112. if (config.overlapSupport)
  113. generateDistanceField<OverlappingContourCombiner<M7AndTrueDistanceSelector> >(output, shape, projection, range);
  114. else
  115. generateDistanceField<SimpleContourCombiner<M7AndTrueDistanceSelector> >(output, shape, projection, range);
  116. }
  117. // Legacy API
  118. void generateSDF(const BitmapRef<float, 1> &output, const Shape &shape, double range, const Vector2 &scale, const Vector2 &translate, bool overlapSupport) {
  119. generateSDF(output, shape, Projection(scale, translate), range, GeneratorConfig(overlapSupport));
  120. }
  121. void generatePseudoSDF(const BitmapRef<float, 1> &output, const Shape &shape, double range, const Vector2 &scale, const Vector2 &translate, bool overlapSupport) {
  122. generatePseudoSDF(output, shape, Projection(scale, translate), range, GeneratorConfig(overlapSupport));
  123. }
  124. void generateMSDF(const BitmapRef<float, 3> &output, const Shape &shape, double range, const Vector2 &scale, const Vector2 &translate, const ErrorCorrectionConfig &errorCorrectionConfig, bool overlapSupport) {
  125. generateMSDF(output, shape, Projection(scale, translate), range, MSDFGeneratorConfig(overlapSupport, errorCorrectionConfig));
  126. }
  127. void generateMTSDF(const BitmapRef<float, 4> &output, const Shape &shape, double range, const Vector2 &scale, const Vector2 &translate, const ErrorCorrectionConfig &errorCorrectionConfig, bool overlapSupport) {
  128. generateMTSDF(output, shape, Projection(scale, translate), range, MSDFGeneratorConfig(overlapSupport, errorCorrectionConfig));
  129. }
  130. // Legacy version
  131. void generateSDF_legacy(const BitmapRef<float, 1> &output, const Shape &shape, double range, const Vector2 &scale, const Vector2 &translate) {
  132. #ifdef MSDFGEN_USE_OPENMP
  133. #pragma omp parallel for
  134. #endif
  135. for (int y = 0; y < output.height; ++y) {
  136. int row = shape.inverseYAxis ? output.height-y-1 : y;
  137. for (int x = 0; x < output.width; ++x) {
  138. double dummy;
  139. Point2 p = Vector2(x+.5, y+.5)/scale-translate;
  140. SignedDistance minDistance;
  141. for (std::vector<Contour>::const_iterator contour = shape.contours.begin(); contour != shape.contours.end(); ++contour)
  142. for (std::vector<EdgeHolder>::const_iterator edge = contour->edges.begin(); edge != contour->edges.end(); ++edge) {
  143. SignedDistance distance = (*edge)->signedDistance(p, dummy);
  144. if (distance < minDistance)
  145. minDistance = distance;
  146. }
  147. *output(x, row) = float(minDistance.distance/range+.5);
  148. }
  149. }
  150. }
  151. void generatePseudoSDF_legacy(const BitmapRef<float, 1> &output, const Shape &shape, double range, const Vector2 &scale, const Vector2 &translate) {
  152. #ifdef MSDFGEN_USE_OPENMP
  153. #pragma omp parallel for
  154. #endif
  155. for (int y = 0; y < output.height; ++y) {
  156. int row = shape.inverseYAxis ? output.height-y-1 : y;
  157. for (int x = 0; x < output.width; ++x) {
  158. Point2 p = Vector2(x+.5, y+.5)/scale-translate;
  159. SignedDistance minDistance;
  160. const EdgeHolder *nearEdge = NULL;
  161. double nearParam = 0;
  162. for (std::vector<Contour>::const_iterator contour = shape.contours.begin(); contour != shape.contours.end(); ++contour)
  163. for (std::vector<EdgeHolder>::const_iterator edge = contour->edges.begin(); edge != contour->edges.end(); ++edge) {
  164. double param;
  165. SignedDistance distance = (*edge)->signedDistance(p, param);
  166. if (distance < minDistance) {
  167. minDistance = distance;
  168. nearEdge = &*edge;
  169. nearParam = param;
  170. }
  171. }
  172. if (nearEdge)
  173. (*nearEdge)->distanceToPseudoDistance(minDistance, p, nearParam);
  174. *output(x, row) = float(minDistance.distance/range+.5);
  175. }
  176. }
  177. }
  178. void generateMSDF_legacy(const BitmapRef<float, 3> &output, const Shape &shape, double range, const Vector2 &scale, const Vector2 &translate, ErrorCorrectionConfig errorCorrectionConfig) {
  179. #ifdef MSDFGEN_USE_OPENMP
  180. #pragma omp parallel for
  181. #endif
  182. for (int y = 0; y < output.height; ++y) {
  183. int row = shape.inverseYAxis ? output.height-y-1 : y;
  184. for (int x = 0; x < output.width; ++x) {
  185. Point2 p = Vector2(x+.5, y+.5)/scale-translate;
  186. struct {
  187. SignedDistance minDistance;
  188. const EdgeHolder *nearEdge;
  189. double nearParam;
  190. } r, g, b;
  191. r.nearEdge = g.nearEdge = b.nearEdge = NULL;
  192. r.nearParam = g.nearParam = b.nearParam = 0;
  193. for (std::vector<Contour>::const_iterator contour = shape.contours.begin(); contour != shape.contours.end(); ++contour)
  194. for (std::vector<EdgeHolder>::const_iterator edge = contour->edges.begin(); edge != contour->edges.end(); ++edge) {
  195. double param;
  196. SignedDistance distance = (*edge)->signedDistance(p, param);
  197. if ((*edge)->color&RED && distance < r.minDistance) {
  198. r.minDistance = distance;
  199. r.nearEdge = &*edge;
  200. r.nearParam = param;
  201. }
  202. if ((*edge)->color&GREEN && distance < g.minDistance) {
  203. g.minDistance = distance;
  204. g.nearEdge = &*edge;
  205. g.nearParam = param;
  206. }
  207. if ((*edge)->color&BLUE && distance < b.minDistance) {
  208. b.minDistance = distance;
  209. b.nearEdge = &*edge;
  210. b.nearParam = param;
  211. }
  212. }
  213. if (r.nearEdge)
  214. (*r.nearEdge)->distanceToPseudoDistance(r.minDistance, p, r.nearParam);
  215. if (g.nearEdge)
  216. (*g.nearEdge)->distanceToPseudoDistance(g.minDistance, p, g.nearParam);
  217. if (b.nearEdge)
  218. (*b.nearEdge)->distanceToPseudoDistance(b.minDistance, p, b.nearParam);
  219. output(x, row)[0] = float(r.minDistance.distance/range+.5);
  220. output(x, row)[1] = float(g.minDistance.distance/range+.5);
  221. output(x, row)[2] = float(b.minDistance.distance/range+.5);
  222. }
  223. }
  224. errorCorrectionConfig.distanceCheckMode = ErrorCorrectionConfig::DO_NOT_CHECK_DISTANCE;
  225. msdfErrorCorrection(output, shape, Projection(scale, translate), range, MSDFGeneratorConfig(false, errorCorrectionConfig));
  226. }
  227. void generateMTSDF_legacy(const BitmapRef<float, 4> &output, const Shape &shape, double range, const Vector2 &scale, const Vector2 &translate, ErrorCorrectionConfig errorCorrectionConfig) {
  228. #ifdef MSDFGEN_USE_OPENMP
  229. #pragma omp parallel for
  230. #endif
  231. for (int y = 0; y < output.height; ++y) {
  232. int row = shape.inverseYAxis ? output.height-y-1 : y;
  233. for (int x = 0; x < output.width; ++x) {
  234. Point2 p = Vector2(x+.5, y+.5)/scale-translate;
  235. SignedDistance minDistance;
  236. struct {
  237. SignedDistance minDistance;
  238. const EdgeHolder *nearEdge;
  239. double nearParam;
  240. } r, g, b;
  241. r.nearEdge = g.nearEdge = b.nearEdge = NULL;
  242. r.nearParam = g.nearParam = b.nearParam = 0;
  243. for (std::vector<Contour>::const_iterator contour = shape.contours.begin(); contour != shape.contours.end(); ++contour)
  244. for (std::vector<EdgeHolder>::const_iterator edge = contour->edges.begin(); edge != contour->edges.end(); ++edge) {
  245. double param;
  246. SignedDistance distance = (*edge)->signedDistance(p, param);
  247. if (distance < minDistance)
  248. minDistance = distance;
  249. if ((*edge)->color&RED && distance < r.minDistance) {
  250. r.minDistance = distance;
  251. r.nearEdge = &*edge;
  252. r.nearParam = param;
  253. }
  254. if ((*edge)->color&GREEN && distance < g.minDistance) {
  255. g.minDistance = distance;
  256. g.nearEdge = &*edge;
  257. g.nearParam = param;
  258. }
  259. if ((*edge)->color&BLUE && distance < b.minDistance) {
  260. b.minDistance = distance;
  261. b.nearEdge = &*edge;
  262. b.nearParam = param;
  263. }
  264. }
  265. if (r.nearEdge)
  266. (*r.nearEdge)->distanceToPseudoDistance(r.minDistance, p, r.nearParam);
  267. if (g.nearEdge)
  268. (*g.nearEdge)->distanceToPseudoDistance(g.minDistance, p, g.nearParam);
  269. if (b.nearEdge)
  270. (*b.nearEdge)->distanceToPseudoDistance(b.minDistance, p, b.nearParam);
  271. output(x, row)[0] = float(r.minDistance.distance/range+.5);
  272. output(x, row)[1] = float(g.minDistance.distance/range+.5);
  273. output(x, row)[2] = float(b.minDistance.distance/range+.5);
  274. output(x, row)[3] = float(minDistance.distance/range+.5);
  275. }
  276. }
  277. errorCorrectionConfig.distanceCheckMode = ErrorCorrectionConfig::DO_NOT_CHECK_DISTANCE;
  278. msdfErrorCorrection(output, shape, Projection(scale, translate), range, MSDFGeneratorConfig(false, errorCorrectionConfig));
  279. }
  280. }