| Index: src/utils/SkPatchGrid.cpp
|
| diff --git a/src/utils/SkPatchGrid.cpp b/src/utils/SkPatchGrid.cpp
|
| new file mode 100644
|
| index 0000000000000000000000000000000000000000..b1fea574037b9e894de4cc323ff8ef24d790ea2d
|
| --- /dev/null
|
| +++ b/src/utils/SkPatchGrid.cpp
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| @@ -0,0 +1,188 @@
|
| +/*
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| + * Copyright 2014 Google Inc.
|
| + *
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| + * Use of this source code is governed by a BSD-style license that can be
|
| + * found in the LICENSE file.
|
| + */
|
| +
|
| +#include "SkPatchGrid.h"
|
| +#include "SkPatchUtils.h"
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| +
|
| +SkPatchGrid::SkPatchGrid(int rows, int cols, VertexType flags, SkXfermode* xfer)
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| + : fRows(0)
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| + , fCols(0)
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| + , fModeFlags(kNone_VertexType)
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| + , fCornerPts(NULL)
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| + , fCornerColors(NULL)
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| + , fTexCoords(NULL)
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| + , fHrzCtrlPts(NULL)
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| + , fVrtCtrlPts(NULL)
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| + , fXferMode(NULL) {
|
| + this->reset(rows, cols, flags, xfer);
|
| +}
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| +
|
| +SkPatchGrid::~SkPatchGrid() {
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| + SkDELETE_ARRAY(fCornerPts);
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| + SkDELETE_ARRAY(fCornerColors);
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| + SkDELETE_ARRAY(fTexCoords);
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| + SkDELETE_ARRAY(fHrzCtrlPts);
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| + SkDELETE_ARRAY(fVrtCtrlPts);
|
| +}
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| +
|
| +bool SkPatchGrid::setPatch(int x, int y, const SkPoint cubics[12], const SkColor colors[4],
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| + const SkPoint texCoords[4]) {
|
| + // Check for the passed paramaters to be within the range of the grid dimensions and a valid
|
| + // pointer for the cubics' control points.
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| + if (x < 0 || y < 0 || x > fCols - 1 || y > fRows - 1 || NULL == cubics) {
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| + return false;
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| + }
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| +
|
| + // setup corners and colors
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| + int cornerPos = y * (fCols + 1) + x;
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| + fCornerPts[cornerPos] = cubics[SkPatchUtils::kTopP0_CubicCtrlPts];
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| + fCornerPts[cornerPos + 1] = cubics[SkPatchUtils::kTopP3_CubicCtrlPts];
|
| + fCornerPts[cornerPos + (fCols + 1)] = cubics[SkPatchUtils::kBottomP0_CubicCtrlPts];
|
| + fCornerPts[cornerPos + (fCols + 1) + 1] = cubics[SkPatchUtils::kBottomP3_CubicCtrlPts];
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| +
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| + // set horizontal control points
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| + int hrzPos = y * (fCols * 2) + (x * 2);
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| + fHrzCtrlPts[hrzPos] = cubics[SkPatchUtils::kTopP1_CubicCtrlPts];
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| + fHrzCtrlPts[hrzPos + 1] = cubics[SkPatchUtils::kTopP2_CubicCtrlPts];
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| + fHrzCtrlPts[hrzPos + (fCols * 2)] = cubics[SkPatchUtils::kBottomP1_CubicCtrlPts];
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| + fHrzCtrlPts[hrzPos + (fCols * 2) + 1] = cubics[SkPatchUtils::kBottomP2_CubicCtrlPts];
|
| +
|
| + // set vertical control points
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| + int vrtPos = (y*2) * (fCols + 1) + x;
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| + fVrtCtrlPts[vrtPos] = cubics[SkPatchUtils::kLeftP1_CubicCtrlPts];
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| + fVrtCtrlPts[vrtPos + 1] = cubics[SkPatchUtils::kRightP1_CubicCtrlPts];
|
| + fVrtCtrlPts[vrtPos + (fCols + 1)] = cubics[SkPatchUtils::kLeftP2_CubicCtrlPts];
|
| + fVrtCtrlPts[vrtPos + (fCols + 1) + 1] = cubics[SkPatchUtils::kRightP2_CubicCtrlPts];
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| +
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| + // set optional values (colors and texture coordinates)
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| + if ((fModeFlags & kColors_VertexType) && NULL != colors) {
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| + fCornerColors[cornerPos] = colors[0];
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| + fCornerColors[cornerPos + 1] = colors[1];
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| + fCornerColors[cornerPos + (fCols + 1)] = colors[3];
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| + fCornerColors[cornerPos + (fCols + 1) + 1] = colors[2];
|
| + }
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| +
|
| + if ((fModeFlags & kTexs_VertexType) && NULL != texCoords) {
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| + fTexCoords[cornerPos] = texCoords[0];
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| + fTexCoords[cornerPos + 1] = texCoords[1];
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| + fTexCoords[cornerPos + (fCols + 1)] = texCoords[3];
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| + fTexCoords[cornerPos + (fCols + 1) + 1] = texCoords[2];
|
| + }
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| +
|
| + return true;
|
| +}
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| +
|
| +bool SkPatchGrid::getPatch(int x, int y, SkPoint cubics[12], SkColor colors[4],
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| + SkPoint texCoords[4]) const {
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| +
|
| + if (x < 0 || y < 0 || x > fCols - 1 || y > fRows - 1 || NULL == cubics) {
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| + return false;
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| + }
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| +
|
| + // set the patch by building the array of points and colors with the corresponding values.
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| + int cornerPos = y * (fCols + 1) + x;
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| + cubics[SkPatchUtils::kTopP0_CubicCtrlPts] = fCornerPts[cornerPos];
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| + cubics[SkPatchUtils::kTopP3_CubicCtrlPts] = fCornerPts[cornerPos + 1];
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| + cubics[SkPatchUtils::kBottomP0_CubicCtrlPts] = fCornerPts[cornerPos + (fCols + 1)];
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| + cubics[SkPatchUtils::kBottomP3_CubicCtrlPts] = fCornerPts[cornerPos + (fCols + 1) + 1];
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| +
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| + int hrzPos = y * (fCols * 2) + (x * 2);
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| + cubics[SkPatchUtils::kTopP1_CubicCtrlPts] = fHrzCtrlPts[hrzPos];
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| + cubics[SkPatchUtils::kTopP2_CubicCtrlPts] = fHrzCtrlPts[hrzPos + 1];
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| + cubics[SkPatchUtils::kBottomP1_CubicCtrlPts] = fHrzCtrlPts[hrzPos + (fCols * 2)];
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| + cubics[SkPatchUtils::kBottomP2_CubicCtrlPts] = fHrzCtrlPts[hrzPos + (fCols * 2) + 1];
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| +
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| + int vrtPos = (y*2) * (fCols + 1) + x;
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| + cubics[SkPatchUtils::kLeftP1_CubicCtrlPts] = fVrtCtrlPts[vrtPos];
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| + cubics[SkPatchUtils::kRightP1_CubicCtrlPts] = fVrtCtrlPts[vrtPos + 1];
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| + cubics[SkPatchUtils::kLeftP2_CubicCtrlPts] = fVrtCtrlPts[vrtPos + (fCols + 1)];
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| + cubics[SkPatchUtils::kRightP2_CubicCtrlPts] = fVrtCtrlPts[vrtPos + (fCols + 1) + 1];
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| +
|
| + if ((fModeFlags & kColors_VertexType) && NULL != colors) {
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| + colors[0] = fCornerColors[cornerPos];
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| + colors[1] = fCornerColors[cornerPos + 1];
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| + colors[3] = fCornerColors[cornerPos + (fCols + 1)];
|
| + colors[2] = fCornerColors[cornerPos + (fCols + 1) + 1];
|
| + }
|
| +
|
| + if ((fModeFlags & kTexs_VertexType) && NULL != texCoords) {
|
| + texCoords[0] = fTexCoords[cornerPos];
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| + texCoords[1] = fTexCoords[cornerPos + 1];
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| + texCoords[3] = fTexCoords[cornerPos + (fCols + 1)];
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| + texCoords[2] = fTexCoords[cornerPos + (fCols + 1) + 1];
|
| + }
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| +
|
| + return true;
|
| +}
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| +
|
| +void SkPatchGrid::reset(int rows, int cols, VertexType flags, SkXfermode* xMode) {
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| + SkDELETE_ARRAY(fCornerPts);
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| + SkDELETE_ARRAY(fCornerColors);
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| + SkDELETE_ARRAY(fTexCoords);
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| + SkDELETE_ARRAY(fHrzCtrlPts);
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| + SkDELETE_ARRAY(fVrtCtrlPts);
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| +
|
| + fCols = cols;
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| + fRows = rows;
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| + fModeFlags = flags;
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| + fXferMode = xMode;
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| +
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| + fCornerPts = SkNEW_ARRAY(SkPoint, (fRows + 1) * (fCols + 1));
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| + fHrzCtrlPts = SkNEW_ARRAY(SkPoint, (fRows + 1) * fCols * 2);
|
| + fVrtCtrlPts = SkNEW_ARRAY(SkPoint, fRows * 2 * (fCols + 1));
|
| + memset(fCornerPts, 0, (fRows + 1) * (fCols + 1) * sizeof(SkPoint));
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| + memset(fHrzCtrlPts, 0, (fRows + 1) * fCols * 2 * sizeof(SkPoint));
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| + memset(fVrtCtrlPts, 0, fRows * 2 * (fCols + 1) * sizeof(SkPoint));
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| +
|
| + if (fModeFlags & kColors_VertexType) {
|
| + fCornerColors = SkNEW_ARRAY(SkColor, (fRows + 1) * (fCols + 1));
|
| + memset(fCornerColors, 0, (fRows + 1) * (fCols + 1) * sizeof(SkColor));
|
| + }
|
| +
|
| + if (fModeFlags & kTexs_VertexType) {
|
| + fTexCoords = SkNEW_ARRAY(SkPoint, (fRows + 1) * (fCols + 1));
|
| + memset(fTexCoords, 0, (fRows + 1) * (fCols + 1) * sizeof(SkPoint));
|
| + }
|
| +}
|
| +
|
| +void SkPatchGrid::draw(SkCanvas* canvas, SkPaint& paint) {
|
| + int* maxCols = SkNEW_ARRAY(int, fCols);
|
| + int* maxRows = SkNEW_ARRAY(int, fRows);
|
| + memset(maxCols, 0, fCols * sizeof(int));
|
| + memset(maxRows, 0, fRows * sizeof(int));
|
| +
|
| + // Get the maximum level of detail per axis for each row and column
|
| + for (int y = 0; y < fRows; y++) {
|
| + for (int x = 0; x < fCols; x++) {
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| + SkPoint cubics[12];
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| + this->getPatch(x, y, cubics, NULL, NULL);
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| + SkMatrix matrix = canvas->getTotalMatrix();
|
| + SkISize lod = SkPatchUtils::GetLevelOfDetail(cubics, &matrix);
|
| + maxCols[x] = SkMax32(maxCols[x], lod.width());
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| + maxRows[y] = SkMax32(maxRows[y], lod.height());
|
| + }
|
| + }
|
| + // Draw the patches by generating their geometry with the maximum level of detail per axis.
|
| + for (int x = 0; x < fCols; x++) {
|
| + for (int y = 0; y < fRows; y++) {
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| + SkPoint cubics[12];
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| + SkPoint texCoords[4];
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| + SkColor colors[4];
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| + this->getPatch(x, y, cubics, colors, texCoords);
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| + SkPatchUtils::VertexData data;
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| + SkPatchUtils::getVertexData(&data, cubics,
|
| + fModeFlags & kColors_VertexType ? colors : NULL,
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| + fModeFlags & kTexs_VertexType ? texCoords : NULL,
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| + maxCols[x], maxRows[y]);
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| + canvas->drawVertices(SkCanvas::kTriangles_VertexMode, data.fVertexCount,
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| + data.fPoints, data.fTexCoords, data.fColors, fXferMode,
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| + data.fIndices, data.fIndexCount, paint);
|
| + }
|
| + }
|
| + SkDELETE_ARRAY(maxCols);
|
| + SkDELETE_ARRAY(maxRows);
|
| +}
|
|
|