d6176b0dca
This CL is part II of IV (I broke down the 1280 files into 4 CLs). Review URL: https://codereview.appspot.com/6474054 git-svn-id: http://skia.googlecode.com/svn/trunk@5263 2bbb7eff-a529-9590-31e7-b0007b416f81
348 lines
11 KiB
C++
348 lines
11 KiB
C++
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/*
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* Copyright 2006 The Android Open Source Project
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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 "SkImageDecoder.h"
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#include "SkColor.h"
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#include "SkColorPriv.h"
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#include "SkStream.h"
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#include "SkTemplates.h"
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#include "SkPackBits.h"
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#include "gif_lib.h"
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class SkGIFImageDecoder : public SkImageDecoder {
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public:
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virtual Format getFormat() const {
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return kGIF_Format;
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}
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protected:
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virtual bool onDecode(SkStream* stream, SkBitmap* bm, Mode mode);
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};
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static const uint8_t gStartingIterlaceYValue[] = {
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0, 4, 2, 1
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};
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static const uint8_t gDeltaIterlaceYValue[] = {
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8, 8, 4, 2
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};
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/* Implement the GIF interlace algorithm in an iterator.
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1) grab every 8th line beginning at 0
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2) grab every 8th line beginning at 4
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3) grab every 4th line beginning at 2
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4) grab every 2nd line beginning at 1
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*/
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class GifInterlaceIter {
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public:
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GifInterlaceIter(int height) : fHeight(height) {
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fStartYPtr = gStartingIterlaceYValue;
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fDeltaYPtr = gDeltaIterlaceYValue;
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fCurrY = *fStartYPtr++;
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fDeltaY = *fDeltaYPtr++;
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}
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int currY() const {
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SkASSERT(fStartYPtr);
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SkASSERT(fDeltaYPtr);
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return fCurrY;
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}
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void next() {
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SkASSERT(fStartYPtr);
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SkASSERT(fDeltaYPtr);
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int y = fCurrY + fDeltaY;
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// We went from an if statement to a while loop so that we iterate
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// through fStartYPtr until a valid row is found. This is so that images
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// that are smaller than 5x5 will not trash memory.
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while (y >= fHeight) {
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if (gStartingIterlaceYValue +
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SK_ARRAY_COUNT(gStartingIterlaceYValue) == fStartYPtr) {
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// we done
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SkDEBUGCODE(fStartYPtr = NULL;)
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SkDEBUGCODE(fDeltaYPtr = NULL;)
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y = 0;
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} else {
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y = *fStartYPtr++;
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fDeltaY = *fDeltaYPtr++;
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}
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}
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fCurrY = y;
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}
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private:
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const int fHeight;
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int fCurrY;
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int fDeltaY;
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const uint8_t* fStartYPtr;
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const uint8_t* fDeltaYPtr;
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};
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///////////////////////////////////////////////////////////////////////////////
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//#define GIF_STAMP "GIF" /* First chars in file - GIF stamp. */
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//#define GIF_STAMP_LEN (sizeof(GIF_STAMP) - 1)
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static int DecodeCallBackProc(GifFileType* fileType, GifByteType* out,
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int size) {
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SkStream* stream = (SkStream*) fileType->UserData;
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return (int) stream->read(out, size);
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}
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void CheckFreeExtension(SavedImage* Image) {
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if (Image->ExtensionBlocks) {
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FreeExtension(Image);
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}
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}
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// return NULL on failure
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static const ColorMapObject* find_colormap(const GifFileType* gif) {
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const ColorMapObject* cmap = gif->Image.ColorMap;
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if (NULL == cmap) {
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cmap = gif->SColorMap;
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}
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if (NULL == cmap) {
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// no colormap found
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return NULL;
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}
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// some sanity checks
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if (cmap && ((unsigned)cmap->ColorCount > 256 ||
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cmap->ColorCount != (1 << cmap->BitsPerPixel))) {
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cmap = NULL;
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}
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return cmap;
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}
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// return -1 if not found (i.e. we're completely opaque)
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static int find_transpIndex(const SavedImage& image, int colorCount) {
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int transpIndex = -1;
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for (int i = 0; i < image.ExtensionBlockCount; ++i) {
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const ExtensionBlock* eb = image.ExtensionBlocks + i;
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if (eb->Function == 0xF9 && eb->ByteCount == 4) {
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if (eb->Bytes[0] & 1) {
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transpIndex = (unsigned char)eb->Bytes[3];
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// check for valid transpIndex
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if (transpIndex >= colorCount) {
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transpIndex = -1;
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}
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break;
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}
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}
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}
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return transpIndex;
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}
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static bool error_return(GifFileType* gif, const SkBitmap& bm,
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const char msg[]) {
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#if 0
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SkDebugf("libgif error <%s> bitmap [%d %d] pixels %p colortable %p\n",
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msg, bm.width(), bm.height(), bm.getPixels(), bm.getColorTable());
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#endif
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return false;
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}
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bool SkGIFImageDecoder::onDecode(SkStream* sk_stream, SkBitmap* bm, Mode mode) {
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GifFileType* gif = DGifOpen(sk_stream, DecodeCallBackProc);
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if (NULL == gif) {
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return error_return(gif, *bm, "DGifOpen");
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}
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SkAutoTCallIProc<GifFileType, DGifCloseFile> acp(gif);
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SavedImage temp_save;
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temp_save.ExtensionBlocks=NULL;
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temp_save.ExtensionBlockCount=0;
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SkAutoTCallVProc<SavedImage, CheckFreeExtension> acp2(&temp_save);
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int width, height;
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GifRecordType recType;
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GifByteType *extData;
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int transpIndex = -1; // -1 means we don't have it (yet)
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do {
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if (DGifGetRecordType(gif, &recType) == GIF_ERROR) {
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return error_return(gif, *bm, "DGifGetRecordType");
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}
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switch (recType) {
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case IMAGE_DESC_RECORD_TYPE: {
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if (DGifGetImageDesc(gif) == GIF_ERROR) {
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return error_return(gif, *bm, "IMAGE_DESC_RECORD_TYPE");
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}
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if (gif->ImageCount < 1) { // sanity check
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return error_return(gif, *bm, "ImageCount < 1");
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}
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width = gif->SWidth;
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height = gif->SHeight;
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if (width <= 0 || height <= 0 ||
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!this->chooseFromOneChoice(SkBitmap::kIndex8_Config,
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width, height)) {
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return error_return(gif, *bm, "chooseFromOneChoice");
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}
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bm->setConfig(SkBitmap::kIndex8_Config, width, height);
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if (SkImageDecoder::kDecodeBounds_Mode == mode)
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return true;
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SavedImage* image = &gif->SavedImages[gif->ImageCount-1];
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const GifImageDesc& desc = image->ImageDesc;
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// check for valid descriptor
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if ( (desc.Top | desc.Left) < 0 ||
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desc.Left + desc.Width > width ||
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desc.Top + desc.Height > height) {
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return error_return(gif, *bm, "TopLeft");
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}
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// now we decode the colortable
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int colorCount = 0;
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{
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const ColorMapObject* cmap = find_colormap(gif);
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if (NULL == cmap) {
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return error_return(gif, *bm, "null cmap");
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}
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colorCount = cmap->ColorCount;
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SkColorTable* ctable = SkNEW_ARGS(SkColorTable, (colorCount));
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SkPMColor* colorPtr = ctable->lockColors();
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for (int index = 0; index < colorCount; index++)
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colorPtr[index] = SkPackARGB32(0xFF,
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cmap->Colors[index].Red,
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cmap->Colors[index].Green,
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cmap->Colors[index].Blue);
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transpIndex = find_transpIndex(temp_save, colorCount);
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if (transpIndex < 0)
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ctable->setFlags(ctable->getFlags() | SkColorTable::kColorsAreOpaque_Flag);
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else
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colorPtr[transpIndex] = 0; // ram in a transparent SkPMColor
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ctable->unlockColors(true);
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SkAutoUnref aurts(ctable);
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if (!this->allocPixelRef(bm, ctable)) {
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return error_return(gif, *bm, "allocPixelRef");
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}
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}
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SkAutoLockPixels alp(*bm);
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// time to decode the scanlines
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//
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uint8_t* scanline = bm->getAddr8(0, 0);
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const int rowBytes = bm->rowBytes();
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const int innerWidth = desc.Width;
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const int innerHeight = desc.Height;
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// abort if either inner dimension is <= 0
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if (innerWidth <= 0 || innerHeight <= 0) {
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return error_return(gif, *bm, "non-pos inner width/height");
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}
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// are we only a subset of the total bounds?
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if ((desc.Top | desc.Left) > 0 ||
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innerWidth < width || innerHeight < height)
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{
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int fill;
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if (transpIndex >= 0) {
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fill = transpIndex;
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} else {
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fill = gif->SBackGroundColor;
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}
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// check for valid fill index/color
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if (static_cast<unsigned>(fill) >=
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static_cast<unsigned>(colorCount)) {
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fill = 0;
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}
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memset(scanline, fill, bm->getSize());
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// bump our starting address
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scanline += desc.Top * rowBytes + desc.Left;
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}
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// now decode each scanline
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if (gif->Image.Interlace)
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{
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GifInterlaceIter iter(innerHeight);
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for (int y = 0; y < innerHeight; y++)
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{
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uint8_t* row = scanline + iter.currY() * rowBytes;
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if (DGifGetLine(gif, row, innerWidth) == GIF_ERROR) {
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return error_return(gif, *bm, "interlace DGifGetLine");
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}
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iter.next();
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}
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}
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else
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{
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// easy, non-interlace case
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for (int y = 0; y < innerHeight; y++) {
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if (DGifGetLine(gif, scanline, innerWidth) == GIF_ERROR) {
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return error_return(gif, *bm, "DGifGetLine");
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}
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scanline += rowBytes;
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}
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}
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goto DONE;
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} break;
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case EXTENSION_RECORD_TYPE:
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if (DGifGetExtension(gif, &temp_save.Function,
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&extData) == GIF_ERROR) {
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return error_return(gif, *bm, "DGifGetExtension");
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}
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while (extData != NULL) {
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/* Create an extension block with our data */
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if (AddExtensionBlock(&temp_save, extData[0],
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&extData[1]) == GIF_ERROR) {
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return error_return(gif, *bm, "AddExtensionBlock");
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}
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if (DGifGetExtensionNext(gif, &extData) == GIF_ERROR) {
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return error_return(gif, *bm, "DGifGetExtensionNext");
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}
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temp_save.Function = 0;
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}
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break;
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case TERMINATE_RECORD_TYPE:
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break;
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default: /* Should be trapped by DGifGetRecordType */
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break;
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}
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} while (recType != TERMINATE_RECORD_TYPE);
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DONE:
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return true;
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}
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///////////////////////////////////////////////////////////////////////////////
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DEFINE_DECODER_CREATOR(GIFImageDecoder);
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///////////////////////////////////////////////////////////////////////////////
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#include "SkTRegistry.h"
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static SkImageDecoder* sk_libgif_dfactory(SkStream* stream) {
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char buf[GIF_STAMP_LEN];
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if (stream->read(buf, GIF_STAMP_LEN) == GIF_STAMP_LEN) {
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if (memcmp(GIF_STAMP, buf, GIF_STAMP_LEN) == 0 ||
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memcmp(GIF87_STAMP, buf, GIF_STAMP_LEN) == 0 ||
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memcmp(GIF89_STAMP, buf, GIF_STAMP_LEN) == 0) {
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return SkNEW(SkGIFImageDecoder);
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}
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}
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return NULL;
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}
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static SkTRegistry<SkImageDecoder*, SkStream*> gReg(sk_libgif_dfactory);
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