2008-12-17 15:59:43 +00:00
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#include "SkColorMatrix.h"
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#define kRScale 0
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#define kGScale 6
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#define kBScale 12
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#define kAScale 18
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2011-05-04 00:20:09 +00:00
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void SkColorMatrix::setIdentity() {
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2008-12-17 15:59:43 +00:00
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memset(fMat, 0, sizeof(fMat));
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fMat[kRScale] = fMat[kGScale] = fMat[kBScale] = fMat[kAScale] = SK_Scalar1;
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}
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void SkColorMatrix::setScale(SkScalar rScale, SkScalar gScale, SkScalar bScale,
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2011-05-04 00:20:09 +00:00
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SkScalar aScale) {
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2008-12-17 15:59:43 +00:00
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memset(fMat, 0, sizeof(fMat));
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fMat[kRScale] = rScale;
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fMat[kGScale] = gScale;
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fMat[kBScale] = bScale;
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fMat[kAScale] = aScale;
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}
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///////////////////////////////////////////////////////////////////////////////
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2011-05-04 00:20:09 +00:00
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void SkColorMatrix::setRotate(Axis axis, SkScalar degrees) {
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2008-12-17 15:59:43 +00:00
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SkScalar S, C;
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S = SkScalarSinCos(SkDegreesToRadians(degrees), &C);
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this->setSinCos(axis, S, C);
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}
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2011-05-04 00:20:09 +00:00
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void SkColorMatrix::setSinCos(Axis axis, SkScalar sine, SkScalar cosine) {
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2008-12-17 15:59:43 +00:00
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SkASSERT((unsigned)axis < 3);
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static const uint8_t gRotateIndex[] = {
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6, 7, 11, 12,
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2009-11-10 17:58:47 +00:00
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0, 10, 2, 12,
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2008-12-17 15:59:43 +00:00
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0, 1, 5, 6,
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};
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const uint8_t* index = gRotateIndex + axis * 4;
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this->setIdentity();
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fMat[index[0]] = cosine;
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fMat[index[1]] = sine;
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fMat[index[2]] = -sine;
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fMat[index[3]] = cosine;
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}
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2011-05-04 00:20:09 +00:00
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void SkColorMatrix::preRotate(Axis axis, SkScalar degrees) {
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2008-12-17 15:59:43 +00:00
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SkColorMatrix tmp;
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tmp.setRotate(axis, degrees);
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this->preConcat(tmp);
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}
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2011-05-04 00:20:09 +00:00
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void SkColorMatrix::postRotate(Axis axis, SkScalar degrees) {
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2008-12-17 15:59:43 +00:00
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SkColorMatrix tmp;
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tmp.setRotate(axis, degrees);
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this->postConcat(tmp);
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}
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///////////////////////////////////////////////////////////////////////////////
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void SkColorMatrix::setConcat(const SkColorMatrix& matA,
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2011-05-04 00:20:09 +00:00
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const SkColorMatrix& matB) {
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2008-12-17 15:59:43 +00:00
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SkScalar tmp[20];
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SkScalar* result = fMat;
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2011-05-04 00:20:09 +00:00
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if (&matA == this || &matB == this) {
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2008-12-17 15:59:43 +00:00
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result = tmp;
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2011-05-04 00:20:09 +00:00
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}
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2008-12-17 15:59:43 +00:00
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const SkScalar* a = matA.fMat;
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const SkScalar* b = matB.fMat;
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int index = 0;
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2011-05-04 00:20:09 +00:00
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for (int j = 0; j < 20; j += 5) {
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for (int i = 0; i < 4; i++) {
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2008-12-17 15:59:43 +00:00
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result[index++] = SkScalarMul(a[j + 0], b[i + 0]) +
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SkScalarMul(a[j + 1], b[i + 5]) +
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SkScalarMul(a[j + 2], b[i + 10]) +
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SkScalarMul(a[j + 3], b[i + 15]);
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}
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result[index++] = SkScalarMul(a[j + 0], b[4]) +
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SkScalarMul(a[j + 1], b[9]) +
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SkScalarMul(a[j + 2], b[14]) +
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SkScalarMul(a[j + 3], b[19]) +
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a[j + 4];
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}
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2011-05-04 00:20:09 +00:00
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if (fMat != result) {
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2008-12-17 15:59:43 +00:00
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memcpy(fMat, result, sizeof(fMat));
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2011-05-04 00:20:09 +00:00
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}
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2008-12-17 15:59:43 +00:00
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}
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///////////////////////////////////////////////////////////////////////////////
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2011-05-04 00:20:09 +00:00
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static void setrow(SkScalar row[], SkScalar r, SkScalar g, SkScalar b) {
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2008-12-17 15:59:43 +00:00
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row[0] = r;
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row[1] = g;
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row[2] = b;
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}
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static const SkScalar kHueR = SkFloatToScalar(0.213f);
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static const SkScalar kHueG = SkFloatToScalar(0.715f);
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static const SkScalar kHueB = SkFloatToScalar(0.072f);
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2011-05-04 00:20:09 +00:00
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void SkColorMatrix::setSaturation(SkScalar sat) {
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2008-12-17 15:59:43 +00:00
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memset(fMat, 0, sizeof(fMat));
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const SkScalar R = SkScalarMul(kHueR, SK_Scalar1 - sat);
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const SkScalar G = SkScalarMul(kHueG, SK_Scalar1 - sat);
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const SkScalar B = SkScalarMul(kHueB, SK_Scalar1 - sat);
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setrow(fMat + 0, R + sat, G, B);
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setrow(fMat + 5, R, G + sat, B);
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setrow(fMat + 10, R, G, B + sat);
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fMat[18] = SK_Scalar1;
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}
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static const SkScalar kR2Y = SkFloatToScalar(0.299f);
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static const SkScalar kG2Y = SkFloatToScalar(0.587f);
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static const SkScalar kB2Y = SkFloatToScalar(0.114f);
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static const SkScalar kR2U = SkFloatToScalar(-0.16874f);
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static const SkScalar kG2U = SkFloatToScalar(-0.33126f);
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static const SkScalar kB2U = SkFloatToScalar(0.5f);
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static const SkScalar kR2V = SkFloatToScalar(0.5f);
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static const SkScalar kG2V = SkFloatToScalar(-0.41869f);
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static const SkScalar kB2V = SkFloatToScalar(-0.08131f);
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2011-05-04 00:20:09 +00:00
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void SkColorMatrix::setRGB2YUV() {
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2008-12-17 15:59:43 +00:00
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memset(fMat, 0, sizeof(fMat));
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setrow(fMat + 0, kR2Y, kG2Y, kB2Y);
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setrow(fMat + 5, kR2U, kG2U, kB2U);
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setrow(fMat + 10, kR2V, kG2V, kB2V);
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fMat[18] = SK_Scalar1;
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}
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static const SkScalar kV2R = SkFloatToScalar(1.402f);
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static const SkScalar kU2G = SkFloatToScalar(-0.34414f);
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static const SkScalar kV2G = SkFloatToScalar(-0.71414f);
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static const SkScalar kU2B = SkFloatToScalar(1.772f);
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2011-05-04 00:20:09 +00:00
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void SkColorMatrix::setYUV2RGB() {
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2008-12-17 15:59:43 +00:00
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memset(fMat, 0, sizeof(fMat));
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setrow(fMat + 0, SK_Scalar1, 0, kV2R);
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setrow(fMat + 5, SK_Scalar1, kU2G, kV2G);
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setrow(fMat + 10, SK_Scalar1, kU2B, 0);
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fMat[18] = SK_Scalar1;
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}
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