4991b8f234
https://codereview.appspot.com/7195054/ git-svn-id: http://skia.googlecode.com/svn/trunk@7422 2bbb7eff-a529-9590-31e7-b0007b416f81
485 lines
16 KiB
C++
485 lines
16 KiB
C++
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/*
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* Copyright 2012 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#include "SkObjectParser.h"
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#include "SkData.h"
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#include "SkFontDescriptor.h"
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#include "SkRRect.h"
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#include "SkShader.h"
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#include "SkStream.h"
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#include "SkStringUtils.h"
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#include "SkTypeface.h"
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/* TODO(chudy): Replace all std::strings with char */
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SkString* SkObjectParser::BitmapToString(const SkBitmap& bitmap) {
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SkString* mBitmap = new SkString("SkBitmap: ");
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mBitmap->append("W: ");
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mBitmap->appendS32(bitmap.width());
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mBitmap->append(" H: ");
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mBitmap->appendS32(bitmap.height());
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const char* gConfigStrings[] = {
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"None", "A1", "A8", "Index8", "RGB565", "ARGB4444", "ARGB8888", "RLE8"
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};
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SkASSERT(SkBitmap::kConfigCount == 8);
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mBitmap->append(" Config: ");
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mBitmap->append(gConfigStrings[bitmap.getConfig()]);
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if (bitmap.isOpaque()) {
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mBitmap->append(" opaque");
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} else {
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mBitmap->append(" not-opaque");
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}
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if (bitmap.isImmutable()) {
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mBitmap->append(" immutable");
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} else {
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mBitmap->append(" not-immutable");
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}
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if (bitmap.isVolatile()) {
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mBitmap->append(" volatile");
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} else {
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mBitmap->append(" not-volatile");
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}
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mBitmap->append(" genID: ");
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mBitmap->appendS32(bitmap.getGenerationID());
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return mBitmap;
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}
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SkString* SkObjectParser::BoolToString(bool doAA) {
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SkString* mBool = new SkString("Bool doAA: ");
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if (doAA) {
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mBool->append("True");
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} else {
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mBool->append("False");
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}
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return mBool;
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}
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SkString* SkObjectParser::CustomTextToString(const char* text) {
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SkString* mText = new SkString(text);
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return mText;
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}
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SkString* SkObjectParser::IntToString(int x, const char* text) {
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SkString* mInt = new SkString(text);
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mInt->append(" ");
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mInt->appendScalar(SkIntToScalar(x));
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return mInt;
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}
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SkString* SkObjectParser::IRectToString(const SkIRect& rect) {
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SkString* mRect = new SkString("SkIRect: ");
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mRect->append("L: ");
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mRect->appendS32(rect.left());
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mRect->append(", T: ");
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mRect->appendS32(rect.top());
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mRect->append(", R: ");
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mRect->appendS32(rect.right());
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mRect->append(", B: ");
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mRect->appendS32(rect.bottom());
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return mRect;
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}
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SkString* SkObjectParser::MatrixToString(const SkMatrix& matrix) {
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SkString* mMatrix = new SkString("SkMatrix: (");
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for (int i = 0; i < 8; i++) {
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mMatrix->appendScalar(matrix.get(i));
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mMatrix->append("), (");
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}
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mMatrix->appendScalar(matrix.get(8));
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mMatrix->append(")");
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return mMatrix;
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}
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SkString* SkObjectParser::PaintToString(const SkPaint& paint) {
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SkString* mPaint = new SkString("<dl><dt>SkPaint:</dt><dd><dl>");
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SkTypeface* typeface = paint.getTypeface();
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if (NULL != typeface) {
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SkDynamicMemoryWStream ostream;
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typeface->serialize(&ostream);
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SkAutoTUnref<SkData> data(ostream.copyToData());
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SkMemoryStream stream(data);
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SkFontDescriptor descriptor(&stream);
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mPaint->append("<dt>Font Family Name:</dt><dd>");
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mPaint->append(descriptor.getFamilyName());
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mPaint->append("</dd><dt>Font Full Name:</dt><dd>");
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mPaint->append(descriptor.getFullName());
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mPaint->append("</dd><dt>Font PS Name:</dt><dd>");
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mPaint->append(descriptor.getPostscriptName());
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mPaint->append("</dd><dt>Font File Name:</dt><dd>");
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mPaint->append(descriptor.getFontFileName());
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mPaint->append("</dd>");
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}
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mPaint->append("<dt>TextSize:</dt><dd>");
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mPaint->appendScalar(paint.getTextSize());
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mPaint->append("</dd>");
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mPaint->append("<dt>TextScaleX:</dt><dd>");
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mPaint->appendScalar(paint.getTextScaleX());
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mPaint->append("</dd>");
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mPaint->append("<dt>TextSkewX:</dt><dd>");
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mPaint->appendScalar(paint.getTextSkewX());
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mPaint->append("</dd>");
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SkPathEffect* pathEffect = paint.getPathEffect();
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if (NULL != pathEffect) {
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mPaint->append("<dt>PathEffect:</dt><dd>");
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mPaint->append("</dd>");
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}
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SkShader* shader = paint.getShader();
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if (NULL != shader) {
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mPaint->append("<dt>Shader:</dt><dd>");
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SkDEVCODE(shader->toString(mPaint);)
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mPaint->append("</dd>");
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}
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SkXfermode* xfer = paint.getXfermode();
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if (NULL != xfer) {
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mPaint->append("<dt>Xfermode:</dt><dd>");
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SkDEVCODE(xfer->toString(mPaint);)
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mPaint->append("</dd>");
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}
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SkMaskFilter* maskFilter = paint.getMaskFilter();
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if (NULL != maskFilter) {
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mPaint->append("<dt>MaskFilter:</dt><dd>");
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mPaint->append("</dd>");
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}
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SkColorFilter* colorFilter = paint.getColorFilter();
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if (NULL != colorFilter) {
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mPaint->append("<dt>ColorFilter:</dt><dd>");
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mPaint->append("</dd>");
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}
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SkRasterizer* rasterizer = paint.getRasterizer();
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if (NULL != rasterizer) {
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mPaint->append("<dt>Rasterizer:</dt><dd>");
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mPaint->append("</dd>");
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}
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SkDrawLooper* looper = paint.getLooper();
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if (NULL != looper) {
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mPaint->append("<dt>DrawLooper:</dt><dd>");
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SkDEVCODE(looper->toString(mPaint);)
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mPaint->append("</dd>");
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}
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SkImageFilter* imageFilter = paint.getImageFilter();
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if (NULL != imageFilter) {
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mPaint->append("<dt>ImageFilter:</dt><dd>");
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mPaint->append("</dd>");
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}
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SkAnnotation* annotation = paint.getAnnotation();
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if (NULL != annotation) {
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mPaint->append("<dt>Annotation:</dt><dd>");
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mPaint->append("</dd>");
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}
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mPaint->append("<dt>Color:</dt><dd>0x");
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SkColor color = paint.getColor();
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mPaint->appendHex(color);
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mPaint->append("</dd>");
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mPaint->append("<dt>Stroke Width:</dt><dd>");
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mPaint->appendScalar(paint.getStrokeWidth());
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mPaint->append("</dd>");
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mPaint->append("<dt>Stroke Miter:</dt><dd>");
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mPaint->appendScalar(paint.getStrokeMiter());
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mPaint->append("</dd>");
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mPaint->append("<dt>Flags:</dt><dd>(");
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if (paint.getFlags()) {
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bool needSeparator = false;
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SkAddFlagToString(mPaint, paint.isAntiAlias(), "AntiAlias", &needSeparator);
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SkAddFlagToString(mPaint, paint.isFilterBitmap(), "FilterBitmap", &needSeparator);
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SkAddFlagToString(mPaint, paint.isDither(), "Dither", &needSeparator);
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SkAddFlagToString(mPaint, paint.isUnderlineText(), "UnderlineText", &needSeparator);
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SkAddFlagToString(mPaint, paint.isStrikeThruText(), "StrikeThruText", &needSeparator);
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SkAddFlagToString(mPaint, paint.isFakeBoldText(), "FakeBoldText", &needSeparator);
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SkAddFlagToString(mPaint, paint.isLinearText(), "LinearText", &needSeparator);
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SkAddFlagToString(mPaint, paint.isSubpixelText(), "SubpixelText", &needSeparator);
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SkAddFlagToString(mPaint, paint.isDevKernText(), "DevKernText", &needSeparator);
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SkAddFlagToString(mPaint, paint.isLCDRenderText(), "LCDRenderText", &needSeparator);
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SkAddFlagToString(mPaint, paint.isEmbeddedBitmapText(),
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"EmbeddedBitmapText", &needSeparator);
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SkAddFlagToString(mPaint, paint.isAutohinted(), "Autohinted", &needSeparator);
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SkAddFlagToString(mPaint, paint.isVerticalText(), "VerticalText", &needSeparator);
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SkAddFlagToString(mPaint, SkToBool(paint.getFlags() & SkPaint::kGenA8FromLCD_Flag),
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"GenA8FromLCD", &needSeparator);
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} else {
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mPaint->append("None");
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}
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mPaint->append(")</dd>");
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mPaint->append("<dt>TextAlign:</dt><dd>");
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static const char* gTextAlignStrings[SkPaint::kAlignCount] = { "Left", "Center", "Right" };
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mPaint->append(gTextAlignStrings[paint.getTextAlign()]);
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mPaint->append("</dd>");
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mPaint->append("<dt>CapType:</dt><dd>");
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static const char* gStrokeCapStrings[SkPaint::kCapCount] = { "Butt", "Round", "Square" };
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mPaint->append(gStrokeCapStrings[paint.getStrokeCap()]);
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mPaint->append("</dd>");
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mPaint->append("<dt>JoinType:</dt><dd>");
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static const char* gJoinStrings[SkPaint::kJoinCount] = { "Miter", "Round", "Bevel" };
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mPaint->append(gJoinStrings[paint.getStrokeJoin()]);
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mPaint->append("</dd>");
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mPaint->append("<dt>Style:</dt><dd>");
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static const char* gStyleStrings[SkPaint::kStyleCount] = { "Fill", "Stroke", "StrokeAndFill" };
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mPaint->append(gStyleStrings[paint.getStyle()]);
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mPaint->append("</dd>");
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mPaint->append("<dt>TextEncoding:</dt><dd>");
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static const char* gTextEncodingStrings[] = { "UTF8", "UTF16", "UTF32", "GlyphID" };
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mPaint->append(gTextEncodingStrings[paint.getTextEncoding()]);
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mPaint->append("</dd>");
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mPaint->append("<dt>Hinting:</dt><dd>");
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static const char* gHintingStrings[] = { "None", "Slight", "Normal", "Full" };
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mPaint->append(gHintingStrings[paint.getHinting()]);
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mPaint->append("</dd>");
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mPaint->append("</dd></dl></dl>");
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return mPaint;
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}
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SkString* SkObjectParser::PathToString(const SkPath& path) {
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SkString* mPath = new SkString("Path (");
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static const char* gFillStrings[] = {
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"Winding", "EvenOdd", "InverseWinding", "InverseEvenOdd"
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};
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mPath->append(gFillStrings[path.getFillType()]);
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mPath->append(", ");
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static const char* gConvexityStrings[] = {
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"Unknown", "Convex", "Concave"
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};
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SkASSERT(SkPath::kConcave_Convexity == 2);
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mPath->append(gConvexityStrings[path.getConvexity()]);
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mPath->append(", ");
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if (path.isRect(NULL)) {
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mPath->append("isRect, ");
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} else {
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mPath->append("isNotRect, ");
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}
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mPath->appendS32(path.countVerbs());
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mPath->append("V, ");
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mPath->appendS32(path.countPoints());
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mPath->append("P): ");
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static const char* gVerbStrings[] = {
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"Move", "Line", "Quad", "Cubic", "Close", "Done"
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};
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static const int gPtsPerVerb[] = { 1, 1, 2, 3, 0, 0 };
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static const int gPtOffsetPerVerb[] = { 0, 1, 1, 1, 0, 0 };
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SkASSERT(SkPath::kDone_Verb == 5);
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SkPath::Iter iter(const_cast<SkPath&>(path), false);
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SkPath::Verb verb;
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SkPoint points[4];
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for(verb = iter.next(points, false);
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verb != SkPath::kDone_Verb;
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verb = iter.next(points, false)) {
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mPath->append(gVerbStrings[verb]);
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mPath->append(" ");
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for (int i = 0; i < gPtsPerVerb[verb]; ++i) {
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mPath->append("(");
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mPath->appendScalar(points[gPtOffsetPerVerb[verb]+i].fX);
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mPath->append(", ");
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mPath->appendScalar(points[gPtOffsetPerVerb[verb]+i].fY);
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mPath->append(") ");
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}
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}
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SkString* boundStr = SkObjectParser::RectToString(path.getBounds(), " Bound: ");
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if (NULL != boundStr) {
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mPath->append(*boundStr);
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SkDELETE(boundStr);
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}
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return mPath;
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}
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SkString* SkObjectParser::PointsToString(const SkPoint pts[], size_t count) {
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SkString* mPoints = new SkString("SkPoints pts[]: ");
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for (unsigned int i = 0; i < count; i++) {
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mPoints->append("(");
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mPoints->appendScalar(pts[i].fX);
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mPoints->append(",");
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mPoints->appendScalar(pts[i].fY);
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mPoints->append(")");
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}
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return mPoints;
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}
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SkString* SkObjectParser::PointModeToString(SkCanvas::PointMode mode) {
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SkString* mMode = new SkString("SkCanvas::PointMode: ");
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if (mode == SkCanvas::kPoints_PointMode) {
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mMode->append("kPoints_PointMode");
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} else if (mode == SkCanvas::kLines_PointMode) {
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mMode->append("kLines_Mode");
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} else if (mode == SkCanvas::kPolygon_PointMode) {
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mMode->append("kPolygon_PointMode");
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}
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return mMode;
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}
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SkString* SkObjectParser::RectToString(const SkRect& rect, const char* title) {
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SkString* mRect = new SkString;
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if (NULL == title) {
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mRect->append("SkRect: ");
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} else {
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mRect->append(title);
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}
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mRect->append("(");
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mRect->appendScalar(rect.left());
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mRect->append(", ");
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mRect->appendScalar(rect.top());
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mRect->append(", ");
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mRect->appendScalar(rect.right());
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mRect->append(", ");
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mRect->appendScalar(rect.bottom());
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mRect->append(")");
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return mRect;
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}
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SkString* SkObjectParser::RRectToString(const SkRRect& rrect, const char* title) {
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SkString* mRRect = new SkString;
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if (NULL == title) {
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mRRect->append("SkRRect (");
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if (rrect.isEmpty()) {
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mRRect->append("empty");
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} else if (rrect.isRect()) {
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mRRect->append("rect");
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} else if (rrect.isOval()) {
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mRRect->append("oval");
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} else if (rrect.isSimple()) {
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mRRect->append("simple");
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} else {
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SkASSERT(rrect.isComplex());
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mRRect->append("complex");
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}
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mRRect->append("): ");
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} else {
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mRRect->append(title);
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}
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mRRect->append("(");
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mRRect->appendScalar(rrect.rect().left());
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mRRect->append(", ");
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mRRect->appendScalar(rrect.rect().top());
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mRRect->append(", ");
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mRRect->appendScalar(rrect.rect().right());
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mRRect->append(", ");
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mRRect->appendScalar(rrect.rect().bottom());
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mRRect->append(") radii: (");
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for (int i = 0; i < 4; ++i) {
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const SkVector& radii = rrect.radii((SkRRect::Corner) i);
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mRRect->appendScalar(radii.fX);
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mRRect->append(", ");
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mRRect->appendScalar(radii.fY);
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if (i < 3) {
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mRRect->append(", ");
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}
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}
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mRRect->append(")");
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return mRRect;
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}
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SkString* SkObjectParser::RegionOpToString(SkRegion::Op op) {
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SkString* mOp = new SkString("SkRegion::Op: ");
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if (op == SkRegion::kDifference_Op) {
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mOp->append("kDifference_Op");
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} else if (op == SkRegion::kIntersect_Op) {
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mOp->append("kIntersect_Op");
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} else if (op == SkRegion::kUnion_Op) {
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mOp->append("kUnion_Op");
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} else if (op == SkRegion::kXOR_Op) {
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mOp->append("kXOR_Op");
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} else if (op == SkRegion::kReverseDifference_Op) {
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mOp->append("kReverseDifference_Op");
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} else if (op == SkRegion::kReplace_Op) {
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mOp->append("kReplace_Op");
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} else {
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mOp->append("Unknown Type");
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}
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return mOp;
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}
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SkString* SkObjectParser::RegionToString(const SkRegion& region) {
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SkString* mRegion = new SkString("SkRegion: Data unavailable.");
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return mRegion;
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}
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SkString* SkObjectParser::SaveFlagsToString(SkCanvas::SaveFlags flags) {
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SkString* mFlags = new SkString("SkCanvas::SaveFlags: ");
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if(flags == SkCanvas::kMatrixClip_SaveFlag) {
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mFlags->append("kMatrixClip_SaveFlag");
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} else if (flags == SkCanvas::kClip_SaveFlag) {
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mFlags->append("kClip_SaveFlag");
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} else if (flags == SkCanvas::kHasAlphaLayer_SaveFlag) {
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mFlags->append("kHasAlphaLayer_SaveFlag");
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} else if (flags == SkCanvas::kFullColorLayer_SaveFlag) {
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mFlags->append("kFullColorLayer_SaveFlag");
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} else if (flags == SkCanvas::kClipToLayer_SaveFlag) {
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mFlags->append("kClipToLayer_SaveFlag");
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} else if (flags == SkCanvas::kMatrixClip_SaveFlag) {
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mFlags->append("kMatrixClip_SaveFlag");
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} else if (flags == SkCanvas::kARGB_NoClipLayer_SaveFlag) {
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mFlags->append("kARGB_NoClipLayer_SaveFlag");
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} else if (flags == SkCanvas::kARGB_ClipLayer_SaveFlag) {
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mFlags->append("kARGB_ClipLayer_SaveFlag");
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} else {
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mFlags->append("Data Unavailable");
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}
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return mFlags;
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}
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SkString* SkObjectParser::ScalarToString(SkScalar x, const char* text) {
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SkString* mScalar = new SkString(text);
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mScalar->append(" ");
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mScalar->appendScalar(x);
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return mScalar;
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|
}
|
|
|
|
SkString* SkObjectParser::TextToString(const void* text, size_t byteLength) {
|
|
SkString* mText = new SkString(6+byteLength+1);
|
|
mText->append("Text: ");
|
|
mText->append((char*) text, byteLength);
|
|
return mText;
|
|
}
|