blob: 18777a77b5bce989e33f812b4d9ca850a1aed986 [file] [log] [blame]
epoger@google.comec3ed6a2011-07-28 14:26:00 +00001
2/*
3 * Copyright 2011 Google Inc.
4 *
5 * Use of this source code is governed by a BSD-style license that can be
6 * found in the LICENSE file.
7 */
reed@android.com8a1c16f2008-12-17 15:59:43 +00008#include "SkMatrix.h"
9
caryclark@google.com9da0cea32012-06-06 12:11:33 +000010// FIXME: needs to be in a header
11bool SkSetPoly3To3_A(SkMatrix* matrix, const SkPoint src[3], const SkPoint dst[3]);
12
reed@google.com8f4d2302013-12-17 16:44:46 +000013typedef double SkDScalar;
reed@android.com8a1c16f2008-12-17 15:59:43 +000014
reed@google.com8f4d2302013-12-17 16:44:46 +000015static SkScalar SkDScalar_toScalar(SkDScalar value) {
16 return static_cast<float>(value);
17}
18static SkScalar divide(SkDScalar numer, SkDScalar denom) {
19 return static_cast<float>(numer / denom);
20}
reed@android.com8a1c16f2008-12-17 15:59:43 +000021
22static SkDScalar SkDScalar_setMul(SkScalar a, SkScalar b) {
robertphillips@google.com8637a362012-04-10 18:32:35 +000023 return (SkDScalar) ((SkDScalar) a * b);
reed@android.com8a1c16f2008-12-17 15:59:43 +000024}
25
26static void computeOuterProduct(SkScalar op[4],
27 const SkPoint pts0[3], const SkPoint& ave0,
28 const SkPoint pts1[3], const SkPoint& ave1) {
reed@android.com4516f472009-06-29 16:25:36 +000029 sk_bzero(op, 4 * sizeof(op[0]));
reed@android.com8a1c16f2008-12-17 15:59:43 +000030 for (int i = 0; i < 3; i++) {
31 SkScalar x0 = pts0[i].fX - ave0.fX;
32 SkScalar y0 = pts0[i].fY - ave0.fY;
33 SkScalar x1 = pts1[i].fX - ave1.fX;
34 SkScalar y1 = pts1[i].fY - ave1.fY;
35 op[0] += SkScalarMul(x0, x1);
36 op[1] += SkScalarMul(x0, y1);
37 op[2] += SkScalarMul(y0, x1);
38 op[3] += SkScalarMul(y0, y1);
39 }
40}
41
42static SkDScalar ddot(SkScalar ax, SkScalar ay, SkScalar bx, SkScalar by) {
43 return SkDScalar_setMul(ax, bx) + SkDScalar_setMul(ay, by);
44}
45
46static SkScalar dot(SkScalar ax, SkScalar ay, SkScalar bx, SkScalar by) {
47 return SkDScalar_toScalar(ddot(ax, ay, bx, by));
48}
49
robertphillips@google.com8637a362012-04-10 18:32:35 +000050bool SkSetPoly3To3_A(SkMatrix* matrix, const SkPoint src[3], const SkPoint dst[3]) {
reed@android.com8a1c16f2008-12-17 15:59:43 +000051 const SkPoint& srcAve = src[0];
52 const SkPoint& dstAve = dst[0];
rmistry@google.comd6176b02012-08-23 18:14:13 +000053
reed@android.com8a1c16f2008-12-17 15:59:43 +000054 SkScalar srcOP[4], dstOP[4];
rmistry@google.comd6176b02012-08-23 18:14:13 +000055
reed@android.com8a1c16f2008-12-17 15:59:43 +000056 computeOuterProduct(srcOP, src, srcAve, src, srcAve);
57 computeOuterProduct(dstOP, src, srcAve, dst, dstAve);
58
59 SkDScalar det = SkDScalar_setMul(srcOP[0], srcOP[3]) -
60 SkDScalar_setMul(srcOP[1], srcOP[2]);
61
62 SkDScalar M[4];
rmistry@google.comd6176b02012-08-23 18:14:13 +000063
reed@android.com8a1c16f2008-12-17 15:59:43 +000064 const SkScalar srcOP0 = srcOP[3];
65 const SkScalar srcOP1 = -srcOP[1];
66 const SkScalar srcOP2 = -srcOP[2];
67 const SkScalar srcOP3 = srcOP[0];
rmistry@google.comd6176b02012-08-23 18:14:13 +000068
reed@android.com8a1c16f2008-12-17 15:59:43 +000069 M[0] = ddot(srcOP0, srcOP1, dstOP[0], dstOP[2]);
70 M[1] = ddot(srcOP2, srcOP3, dstOP[0], dstOP[2]);
71 M[2] = ddot(srcOP0, srcOP1, dstOP[1], dstOP[3]);
72 M[3] = ddot(srcOP2, srcOP3, dstOP[1], dstOP[3]);
rmistry@google.comd6176b02012-08-23 18:14:13 +000073
reed@android.com8a1c16f2008-12-17 15:59:43 +000074 matrix->reset();
epoger@google.com52564402011-07-21 14:18:48 +000075 matrix->setScaleX(divide(M[0], det));
76 matrix->setSkewX( divide(M[1], det));
77 matrix->setSkewY (divide(M[2], det));
78 matrix->setScaleY(divide(M[3], det));
reed@android.com8a1c16f2008-12-17 15:59:43 +000079 matrix->setTranslateX(dstAve.fX - dot(srcAve.fX, srcAve.fY,
80 matrix->getScaleX(), matrix->getSkewX()));
81 matrix->setTranslateY(dstAve.fY - dot(srcAve.fX, srcAve.fY,
82 matrix->getSkewY(), matrix->getScaleY()));
83 return true;
84}