2022-10-13 19:25:29 +02:00
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#ifndef OT_GLYF_VARCOMPOSITEGLYPH_HH
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#define OT_GLYF_VARCOMPOSITEGLYPH_HH
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#include "../../hb-open-type.hh"
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2022-10-17 20:53:58 +02:00
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#include "coord-setter.hh"
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2022-10-13 19:25:29 +02:00
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namespace OT {
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namespace glyf_impl {
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struct VarCompositeGlyphRecord
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{
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protected:
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enum var_composite_glyph_flag_t
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{
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2022-10-13 21:12:26 +02:00
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USE_MY_METRICS = 0x0001,
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AXIS_INDICES_ARE_SHORT = 0x0002,
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UNIFORM_SCALE = 0x0004,
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HAVE_TRANSLATE_X = 0x0008,
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HAVE_TRANSLATE_Y = 0x0010,
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HAVE_ROTATION = 0x0020,
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HAVE_SCALE_X = 0x0040,
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HAVE_SCALE_Y = 0x0080,
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HAVE_SKEW_X = 0x0100,
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HAVE_SKEW_Y = 0x0200,
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HAVE_TCENTER_X = 0x0400,
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HAVE_TCENTER_Y = 0x0800,
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2022-10-13 19:25:29 +02:00
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};
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public:
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2022-10-14 01:11:12 +02:00
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2022-10-17 20:12:40 +02:00
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static constexpr unsigned NUM_TRANSFORM_POINTS = 5;
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2022-10-14 01:11:12 +02:00
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2022-10-13 19:25:29 +02:00
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unsigned int get_size () const
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{
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unsigned int size = min_size;
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2022-10-13 21:12:26 +02:00
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unsigned axis_width = (flags & AXIS_INDICES_ARE_SHORT) ? 4 : 3;
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size += num_axes * axis_width;
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if (flags & HAVE_TRANSLATE_X) size += 2;
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if (flags & HAVE_TRANSLATE_Y) size += 2;
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if (flags & HAVE_ROTATION) size += 2;
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if (flags & HAVE_SCALE_X) size += 2;
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if (flags & HAVE_SCALE_Y) size += 2;
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if (flags & HAVE_SKEW_X) size += 2;
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if (flags & HAVE_SKEW_Y) size += 2;
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if (flags & HAVE_TCENTER_X) size += 2;
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if (flags & HAVE_TCENTER_Y) size += 2;
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2022-10-13 19:25:29 +02:00
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return size;
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}
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2022-10-17 20:12:40 +02:00
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bool has_more () const { return true; }
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bool is_use_my_metrics () const { return flags & USE_MY_METRICS; }
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2022-10-13 22:15:36 +02:00
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2022-10-14 01:11:12 +02:00
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hb_codepoint_t get_gid () const
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{
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return gid;
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}
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unsigned get_num_axes () const
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{
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return num_axes;
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}
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unsigned get_num_points () const
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{
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return num_axes + NUM_TRANSFORM_POINTS;
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}
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2022-10-17 20:48:24 +02:00
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void transform_points (hb_array_t<contour_point_t> transformation_points,
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contour_point_vector_t &points) const
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2022-10-13 19:25:29 +02:00
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{
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float matrix[4];
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contour_point_t trans;
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2022-10-17 20:48:24 +02:00
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get_transformation_from_points (transformation_points, matrix, trans);
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2022-10-17 20:12:40 +02:00
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points.transform (matrix);
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points.translate (trans);
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}
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static inline void transform (float (&matrix)[4], contour_point_t &trans,
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float (other)[6])
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{
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// https://github.com/fonttools/fonttools/blob/f66ee05f71c8b57b5f519ee975e95edcd1466e14/Lib/fontTools/misc/transform.py#L268
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float xx1 = other[0];
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float xy1 = other[1];
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float yx1 = other[2];
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float yy1 = other[3];
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float dx1 = other[4];
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float dy1 = other[5];
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float xx2 = matrix[0];
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float xy2 = matrix[1];
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float yx2 = matrix[2];
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float yy2 = matrix[3];
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float dx2 = trans.x;
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float dy2 = trans.y;
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matrix[0] = xx1*xx2 + xy1*yx2;
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matrix[1] = xx1*xy2 + xy1*yy2;
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matrix[2] = yx1*xx2 + yy1*yx2;
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matrix[3] = yx1*xy2 + yy1*yy2;
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trans.x = xx2*dx1 + yx2*dy1 + dx2;
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trans.y = xy2*dx1 + yy2*dy1 + dy2;
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}
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2022-10-13 21:12:26 +02:00
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static void translate (float (&matrix)[4], contour_point_t &trans,
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float translateX, float translateY)
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{
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// https://github.com/fonttools/fonttools/blob/f66ee05f71c8b57b5f519ee975e95edcd1466e14/Lib/fontTools/misc/transform.py#L213
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float other[6] = {1.f, 0.f, 0.f, 1.f, translateX, translateY};
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transform (matrix, trans, other);
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}
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static void scale (float (&matrix)[4], contour_point_t &trans,
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float scaleX, float scaleY)
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{
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// https://github.com/fonttools/fonttools/blob/f66ee05f71c8b57b5f519ee975e95edcd1466e14/Lib/fontTools/misc/transform.py#L224
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float other[6] = {scaleX, 0.f, 0.f, scaleY, 0.f, 0.f};
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transform (matrix, trans, other);
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}
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static void rotate (float (&matrix)[4], contour_point_t &trans,
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float rotation)
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{
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// https://github.com/fonttools/fonttools/blob/f66ee05f71c8b57b5f519ee975e95edcd1466e14/Lib/fontTools/misc/transform.py#L240
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rotation = rotation * float (M_PI);
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float c = cosf (rotation);
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float s = sinf (rotation);
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float other[6] = {c, s, -s, c, 0.f, 0.f};
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transform (matrix, trans, other);
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}
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static void skew (float (&matrix)[4], contour_point_t &trans,
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float skewX, float skewY)
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{
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// https://github.com/fonttools/fonttools/blob/f66ee05f71c8b57b5f519ee975e95edcd1466e14/Lib/fontTools/misc/transform.py#L255
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skewX = skewX * float (M_PI);
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skewY = skewY * float (M_PI);
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2022-10-18 18:47:32 +02:00
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float other[6] = {1.f, tanf (skewY), tanf (skewX), 1.f, 0.f, 0.f};
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2022-10-13 21:12:26 +02:00
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transform (matrix, trans, other);
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}
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2022-10-17 20:48:24 +02:00
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bool get_points (contour_point_vector_t &points) const
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{
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float translateX = 0.f;
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float translateY = 0.f;
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float rotation = 0.f;
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2022-10-18 18:47:32 +02:00
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float scaleX = 1.f * (1 << 12);
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float scaleY = 1.f * (1 << 12);
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2022-10-13 21:12:26 +02:00
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float skewX = 0.f;
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float skewY = 0.f;
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float tCenterX = 0.f;
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float tCenterY = 0.f;
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2022-10-17 20:48:24 +02:00
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if (unlikely (!points.resize (points.length + get_num_points ()))) return false;
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unsigned axis_width = (flags & AXIS_INDICES_ARE_SHORT) ? 2 : 1;
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2022-10-13 21:12:26 +02:00
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unsigned axes_size = num_axes * axis_width;
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2022-10-17 20:48:24 +02:00
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const F2DOT14 *q = (const F2DOT14 *) (axes_size +
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&StructAfter<const HBUINT8> (num_axes));
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hb_array_t<contour_point_t> axis_points = points.sub_array (points.length - get_num_points ());
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unsigned count = num_axes;
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for (unsigned i = 0; i < count; i++)
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axis_points[i].x = *q++;
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const HBUINT16 *p = (const HBUINT16 *) q;
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if (flags & HAVE_TRANSLATE_X) translateX = * (const FWORD *) p++;
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if (flags & HAVE_TRANSLATE_Y) translateY = * (const FWORD *) p++;
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2022-10-17 20:48:24 +02:00
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if (flags & HAVE_ROTATION) rotation = * (const F2DOT14 *) p++;
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2022-10-13 21:12:26 +02:00
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if (flags & HAVE_SCALE_X) scaleX = * (const F4DOT12 *) p++;
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if (flags & HAVE_SCALE_Y) scaleY = * (const F4DOT12 *) p++;
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2022-10-17 20:48:24 +02:00
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if (flags & HAVE_SKEW_X) skewX = * (const F2DOT14 *) p++;
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if (flags & HAVE_SKEW_Y) skewY = * (const F2DOT14 *) p++;
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2022-10-13 21:12:26 +02:00
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if (flags & HAVE_TCENTER_X) tCenterX = * (const FWORD *) p++;
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if (flags & HAVE_TCENTER_Y) tCenterY = * (const FWORD *) p++;
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if ((flags & UNIFORM_SCALE) && !(flags & HAVE_SCALE_Y))
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scaleY = scaleX;
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2022-10-17 20:48:24 +02:00
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hb_array_t<contour_point_t> t = points.sub_array (points.length - NUM_TRANSFORM_POINTS);
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t[0].x = translateX;
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t[0].y = translateY;
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t[1].x = rotation;
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t[2].x = scaleX;
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t[2].y = scaleY;
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t[3].x = skewX;
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t[3].y = skewY;
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t[4].x = tCenterX;
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t[4].y = tCenterY;
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return true;
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}
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void get_transformation_from_points (hb_array_t<contour_point_t> points,
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float (&matrix)[4], contour_point_t &trans) const
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{
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matrix[0] = matrix[3] = 1.f;
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matrix[1] = matrix[2] = 0.f;
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2022-10-13 21:12:26 +02:00
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trans.init (0.f, 0.f);
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2022-10-17 20:48:24 +02:00
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hb_array_t<contour_point_t> t = points.sub_array (points.length - NUM_TRANSFORM_POINTS);
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float translateX = t[0].x;
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float translateY = t[0].y;
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float rotation = t[1].x / (1 << 14);
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float scaleX = t[2].x / (1 << 12);
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float scaleY = t[2].y / (1 << 12);
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float skewX = t[3].x / (1 << 14);
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float skewY = t[3].y / (1 << 14);
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float tCenterX = t[4].x;
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float tCenterY = t[4].y;
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2022-10-13 21:12:26 +02:00
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translate (matrix, trans, translateX + tCenterX, translateY + tCenterY);
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rotate (matrix, trans, rotation);
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scale (matrix, trans, scaleX, scaleY);
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skew (matrix, trans, -skewX, skewY);
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translate (matrix, trans, -tCenterX, -tCenterY);
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2022-10-13 19:25:29 +02:00
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}
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2022-10-18 19:00:35 +02:00
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void set_variations (coord_setter_t &setter,
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hb_array_t<contour_point_t> axis_points) const
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2022-10-17 21:05:22 +02:00
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{
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unsigned axis_width = (flags & AXIS_INDICES_ARE_SHORT) ? 2 : 1;
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const HBUINT8 *p = &StructAfter<const HBUINT8> (num_axes);
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const HBUINT16 *q = &StructAfter<const HBUINT16> (num_axes);
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unsigned count = num_axes;
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for (unsigned i = 0; i < count; i++)
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{
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unsigned axis_index = axis_width == 1 ? *p++ : *q++;
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2022-10-18 21:38:12 +02:00
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signed v = axis_points[i].x;
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v = hb_clamp (v, -(1<<14), (1<<14));
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setter[axis_index] = v;
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2022-10-17 21:05:22 +02:00
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}
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}
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2022-10-13 19:25:29 +02:00
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protected:
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HBUINT16 flags;
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HBGlyphID16 gid;
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HBUINT8 num_axes;
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2022-10-13 19:25:29 +02:00
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public:
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2022-10-13 21:12:26 +02:00
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DEFINE_SIZE_MIN (5);
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};
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using var_composite_iter_t = composite_iter_tmpl<VarCompositeGlyphRecord>;
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struct VarCompositeGlyph
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{
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const GlyphHeader &header;
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hb_bytes_t bytes;
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VarCompositeGlyph (const GlyphHeader &header_, hb_bytes_t bytes_) :
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header (header_), bytes (bytes_) {}
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var_composite_iter_t iter () const
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{ return var_composite_iter_t (bytes, &StructAfter<VarCompositeGlyphRecord, GlyphHeader> (header)); }
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};
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} /* namespace glyf_impl */
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} /* namespace OT */
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#endif /* OT_GLYF_VARCOMPOSITEGLYPH_HH */
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