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contour-combiners.cpp 5.1 KB

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  1. #include "contour-combiners.h"
  2. #include <cfloat>
  3. #include "arithmetics.hpp"
  4. namespace msdfgen {
  5. static void initDistance(double &distance) {
  6. distance = -DBL_MAX;
  7. }
  8. static void initDistance(MultiDistance &distance) {
  9. distance.r = -DBL_MAX;
  10. distance.g = -DBL_MAX;
  11. distance.b = -DBL_MAX;
  12. }
  13. static double resolveDistance(double distance) {
  14. return distance;
  15. }
  16. static double resolveDistance(const MultiDistance &distance) {
  17. return median(distance.r, distance.g, distance.b);
  18. }
  19. template <class EdgeSelector>
  20. SimpleContourCombiner<EdgeSelector>::SimpleContourCombiner(const Shape &shape) { }
  21. template <class EdgeSelector>
  22. void SimpleContourCombiner<EdgeSelector>::reset(const Point2 &p) {
  23. shapeEdgeSelector.reset(p);
  24. }
  25. template <class EdgeSelector>
  26. EdgeSelector &SimpleContourCombiner<EdgeSelector>::edgeSelector(int) {
  27. return shapeEdgeSelector;
  28. }
  29. template <class EdgeSelector>
  30. typename SimpleContourCombiner<EdgeSelector>::DistanceType SimpleContourCombiner<EdgeSelector>::distance() const {
  31. return shapeEdgeSelector.distance();
  32. }
  33. template class SimpleContourCombiner<TrueDistanceSelector>;
  34. template class SimpleContourCombiner<PseudoDistanceSelector>;
  35. template class SimpleContourCombiner<MultiDistanceSelector>;
  36. template class SimpleContourCombiner<MultiAndTrueDistanceSelector>;
  37. template <class EdgeSelector>
  38. OverlappingContourCombiner<EdgeSelector>::OverlappingContourCombiner(const Shape &shape) {
  39. windings.reserve(shape.contours.size());
  40. for (std::vector<Contour>::const_iterator contour = shape.contours.begin(); contour != shape.contours.end(); ++contour)
  41. windings.push_back(contour->winding());
  42. edgeSelectors.resize(shape.contours.size());
  43. }
  44. template <class EdgeSelector>
  45. void OverlappingContourCombiner<EdgeSelector>::reset(const Point2 &p) {
  46. this->p = p;
  47. for (typename std::vector<EdgeSelector>::iterator contourEdgeSelector = edgeSelectors.begin(); contourEdgeSelector != edgeSelectors.end(); ++contourEdgeSelector)
  48. contourEdgeSelector->reset(p);
  49. }
  50. template <class EdgeSelector>
  51. EdgeSelector &OverlappingContourCombiner<EdgeSelector>::edgeSelector(int i) {
  52. return edgeSelectors[i];
  53. }
  54. template <class EdgeSelector>
  55. typename OverlappingContourCombiner<EdgeSelector>::DistanceType OverlappingContourCombiner<EdgeSelector>::distance() const {
  56. int contourCount = (int) edgeSelectors.size();
  57. EdgeSelector shapeEdgeSelector;
  58. EdgeSelector innerEdgeSelector;
  59. EdgeSelector outerEdgeSelector;
  60. shapeEdgeSelector.reset(p);
  61. innerEdgeSelector.reset(p);
  62. outerEdgeSelector.reset(p);
  63. for (int i = 0; i < contourCount; ++i) {
  64. DistanceType edgeDistance = edgeSelectors[i].distance();
  65. shapeEdgeSelector.merge(edgeSelectors[i]);
  66. if (windings[i] > 0 && resolveDistance(edgeDistance) >= 0)
  67. innerEdgeSelector.merge(edgeSelectors[i]);
  68. if (windings[i] < 0 && resolveDistance(edgeDistance) <= 0)
  69. outerEdgeSelector.merge(edgeSelectors[i]);
  70. }
  71. DistanceType shapeDistance = shapeEdgeSelector.distance();
  72. DistanceType innerDistance = innerEdgeSelector.distance();
  73. DistanceType outerDistance = outerEdgeSelector.distance();
  74. double innerScalarDistance = resolveDistance(innerDistance);
  75. double outerScalarDistance = resolveDistance(outerDistance);
  76. DistanceType distance;
  77. initDistance(distance);
  78. int winding = 0;
  79. if (innerScalarDistance >= 0 && fabs(innerScalarDistance) <= fabs(outerScalarDistance)) {
  80. distance = innerDistance;
  81. winding = 1;
  82. for (int i = 0; i < contourCount; ++i)
  83. if (windings[i] > 0) {
  84. DistanceType contourDistance = edgeSelectors[i].distance();
  85. if (fabs(resolveDistance(contourDistance)) < fabs(outerScalarDistance) && resolveDistance(contourDistance) > resolveDistance(distance))
  86. distance = contourDistance;
  87. }
  88. } else if (outerScalarDistance <= 0 && fabs(outerScalarDistance) < fabs(innerScalarDistance)) {
  89. distance = outerDistance;
  90. winding = -1;
  91. for (int i = 0; i < contourCount; ++i)
  92. if (windings[i] < 0) {
  93. DistanceType contourDistance = edgeSelectors[i].distance();
  94. if (fabs(resolveDistance(contourDistance)) < fabs(innerScalarDistance) && resolveDistance(contourDistance) < resolveDistance(distance))
  95. distance = contourDistance;
  96. }
  97. } else
  98. return shapeDistance;
  99. for (int i = 0; i < contourCount; ++i)
  100. if (windings[i] != winding) {
  101. DistanceType contourDistance = edgeSelectors[i].distance();
  102. if (resolveDistance(contourDistance)*resolveDistance(distance) >= 0 && fabs(resolveDistance(contourDistance)) < fabs(resolveDistance(distance)))
  103. distance = contourDistance;
  104. }
  105. if (resolveDistance(distance) == resolveDistance(shapeDistance))
  106. distance = shapeDistance;
  107. return distance;
  108. }
  109. template class OverlappingContourCombiner<TrueDistanceSelector>;
  110. template class OverlappingContourCombiner<PseudoDistanceSelector>;
  111. template class OverlappingContourCombiner<MultiDistanceSelector>;
  112. template class OverlappingContourCombiner<MultiAndTrueDistanceSelector>;
  113. }