565901db95
Make SkAutoTMalloc's interface look more like SkAutoMalloc: - add free(), which does what you expect - make reset() return a pointer fPtr No public API changes (SkAutoTMalloc is in include/private) BUG=skia:2148 Review URL: https://codereview.chromium.org/1516833003
542 lines
19 KiB
C++
542 lines
19 KiB
C++
/*
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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 "SkColor.h"
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#include "SkColorPriv.h"
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#include "SkColorTable.h"
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#include "SkImageDecoder.h"
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#include "SkRTConf.h"
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#include "SkScaledBitmapSampler.h"
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#include "SkStream.h"
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#include "SkTemplates.h"
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#include "SkUtils.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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Format getFormat() const override {
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return kGIF_Format;
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}
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protected:
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Result onDecode(SkStream* stream, SkBitmap* bm, Mode mode) override;
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private:
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typedef SkImageDecoder INHERITED;
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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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SK_CONF_DECLARE(bool, c_suppressGIFImageDecoderWarnings,
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"images.gif.suppressDecoderWarnings", true,
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"Suppress GIF warnings and errors when calling image decode "
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"functions.");
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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 = nullptr;)
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SkDEBUGCODE(fDeltaYPtr = nullptr;)
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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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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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#if GIFLIB_MAJOR < 5
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FreeExtension(Image);
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#else
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GifFreeExtensions(&Image->ExtensionBlockCount, &Image->ExtensionBlocks);
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#endif
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}
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}
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// return nullptr 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 (nullptr == cmap) {
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cmap = gif->SColorMap;
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}
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if (nullptr == cmap) {
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// no colormap found
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return nullptr;
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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 = nullptr;
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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 SkImageDecoder::Result error_return(const SkBitmap& bm, const char msg[]) {
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if (!c_suppressGIFImageDecoderWarnings) {
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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(),
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bm.getColorTable());
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}
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return SkImageDecoder::kFailure;
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}
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static void gif_warning(const SkBitmap& bm, const char msg[]) {
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if (!c_suppressGIFImageDecoderWarnings) {
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SkDebugf("libgif warning [%s] bitmap [%d %d] pixels %p colortable %p\n",
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msg, bm.width(), bm.height(), bm.getPixels(),
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bm.getColorTable());
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}
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}
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/**
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* Skip rows in the source gif image.
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* @param gif Source image.
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* @param dst Scratch output needed by gif library call. Must be >= width bytes.
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* @param width Bytes per row in the source image.
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* @param rowsToSkip Number of rows to skip.
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* @return True on success, false on GIF_ERROR.
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*/
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static bool skip_src_rows(GifFileType* gif, uint8_t* dst, int width, int rowsToSkip) {
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for (int i = 0; i < rowsToSkip; i++) {
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if (DGifGetLine(gif, dst, width) == GIF_ERROR) {
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return false;
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}
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}
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return true;
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}
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/**
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* GIFs with fewer then 256 color entries will sometimes index out of
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* bounds of the color table (this is malformed, but libgif does not
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* check sicne it is rare). This function checks for this error and
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* fixes it. This makes the output image consistantly deterministic.
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*/
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static void sanitize_indexed_bitmap(SkBitmap* bm) {
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if ((kIndex_8_SkColorType == bm->colorType()) && !(bm->empty())) {
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SkAutoLockPixels alp(*bm);
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if (bm->getPixels()) {
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SkColorTable* ct = bm->getColorTable(); // Index8 must have it.
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SkASSERT(ct != nullptr);
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uint32_t count = ct->count();
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SkASSERT(count > 0);
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SkASSERT(count <= 0x100);
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if (count != 0x100) { // Full colortables can't go wrong.
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// Count is a power of 2; asserted elsewhere.
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uint8_t byteMask = (~(count - 1));
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bool warning = false;
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uint8_t* addr = static_cast<uint8_t*>(bm->getPixels());
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int height = bm->height();
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int width = bm->width();
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size_t rowBytes = bm->rowBytes();
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while (--height >= 0) {
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uint8_t* ptr = addr;
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int x = width;
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while (--x >= 0) {
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if (0 != ((*ptr) & byteMask)) {
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warning = true;
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*ptr = 0;
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}
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++ptr;
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}
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addr += rowBytes;
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}
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if (warning) {
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gif_warning(*bm, "Index out of bounds.");
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}
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}
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}
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}
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}
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namespace {
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// This function is a template argument, so can't be static.
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int close_gif(GifFileType* gif) {
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#if GIFLIB_MAJOR < 5 || (GIFLIB_MAJOR == 5 && GIFLIB_MINOR == 0)
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return DGifCloseFile(gif);
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#else
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return DGifCloseFile(gif, nullptr);
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#endif
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}
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}//namespace
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SkImageDecoder::Result SkGIFImageDecoder::onDecode(SkStream* sk_stream, SkBitmap* bm, Mode mode) {
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#if GIFLIB_MAJOR < 5
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GifFileType* gif = DGifOpen(sk_stream, DecodeCallBackProc);
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#else
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GifFileType* gif = DGifOpen(sk_stream, DecodeCallBackProc, nullptr);
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#endif
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if (nullptr == gif) {
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return error_return(*bm, "DGifOpen");
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}
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SkAutoTCallIProc<GifFileType, close_gif> acp(gif);
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SavedImage temp_save;
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temp_save.ExtensionBlocks=nullptr;
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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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#if GIFLIB_MAJOR >= 5
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int extFunction;
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#endif
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int transpIndex = -1; // -1 means we don't have it (yet)
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int fillIndex = gif->SBackGroundColor;
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do {
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if (DGifGetRecordType(gif, &recType) == GIF_ERROR) {
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return error_return(*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(*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(*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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SavedImage* image = &gif->SavedImages[gif->ImageCount-1];
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const GifImageDesc& desc = image->ImageDesc;
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int imageLeft = desc.Left;
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int imageTop = desc.Top;
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const int innerWidth = desc.Width;
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const int innerHeight = desc.Height;
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if (innerWidth <= 0 || innerHeight <= 0) {
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return error_return(*bm, "invalid dimensions");
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}
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// check for valid descriptor
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if (innerWidth > width) {
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gif_warning(*bm, "image too wide, expanding output to size");
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width = innerWidth;
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imageLeft = 0;
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} else if (imageLeft + innerWidth > width) {
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gif_warning(*bm, "shifting image left to fit");
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imageLeft = width - innerWidth;
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} else if (imageLeft < 0) {
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gif_warning(*bm, "shifting image right to fit");
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imageLeft = 0;
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}
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if (innerHeight > height) {
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gif_warning(*bm, "image too tall, expanding output to size");
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height = innerHeight;
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imageTop = 0;
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} else if (imageTop + innerHeight > height) {
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gif_warning(*bm, "shifting image up to fit");
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imageTop = height - innerHeight;
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} else if (imageTop < 0) {
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gif_warning(*bm, "shifting image down to fit");
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imageTop = 0;
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}
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SkScaledBitmapSampler sampler(width, height, this->getSampleSize());
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bm->setInfo(SkImageInfo::Make(sampler.scaledWidth(), sampler.scaledHeight(),
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kIndex_8_SkColorType, kPremul_SkAlphaType));
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if (SkImageDecoder::kDecodeBounds_Mode == mode) {
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return kSuccess;
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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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// Declare colorPtr here for scope.
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SkPMColor colorPtr[256]; // storage for worst-case
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const ColorMapObject* cmap = find_colormap(gif);
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if (cmap != nullptr) {
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SkASSERT(cmap->ColorCount == (1 << (cmap->BitsPerPixel)));
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colorCount = cmap->ColorCount;
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if (colorCount > 256) {
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colorCount = 256; // our kIndex8 can't support more
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}
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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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}
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} else {
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// find_colormap() returned nullptr. Some (rare, broken)
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// GIFs don't have a color table, so we force one.
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gif_warning(*bm, "missing colormap");
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colorCount = 256;
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sk_memset32(colorPtr, SK_ColorWHITE, colorCount);
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}
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transpIndex = find_transpIndex(temp_save, colorCount);
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if (transpIndex >= 0) {
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colorPtr[transpIndex] = SK_ColorTRANSPARENT; // ram in a transparent SkPMColor
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fillIndex = transpIndex;
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} else if (fillIndex >= colorCount) {
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// gif->SBackGroundColor should be less than colorCount.
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fillIndex = 0; // If not, fix it.
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}
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SkAutoTUnref<SkColorTable> ctable(new SkColorTable(colorPtr, colorCount));
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if (!this->allocPixelRef(bm, ctable)) {
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return error_return(*bm, "allocPixelRef");
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}
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}
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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(*bm, "non-pos inner width/height");
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}
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SkAutoLockPixels alp(*bm);
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SkAutoTMalloc<uint8_t> storage(innerWidth);
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uint8_t* scanline = storage.get();
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// GIF has an option to store the scanlines of an image, plus a larger background,
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// filled by a fill color. In this case, we will use a subset of the larger bitmap
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// for sampling.
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SkBitmap subset;
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SkBitmap* workingBitmap;
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// are we only a subset of the total bounds?
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if ((imageTop | imageLeft) > 0 ||
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innerWidth < width || innerHeight < height) {
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// Fill the background.
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memset(bm->getPixels(), fillIndex, bm->getSize());
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// Create a subset of the bitmap.
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SkIRect subsetRect(SkIRect::MakeXYWH(imageLeft / sampler.srcDX(),
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imageTop / sampler.srcDY(),
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innerWidth / sampler.srcDX(),
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innerHeight / sampler.srcDY()));
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if (!bm->extractSubset(&subset, subsetRect)) {
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return error_return(*bm, "Extract failed.");
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}
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// Update the sampler. We'll now be only sampling into the subset.
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sampler = SkScaledBitmapSampler(innerWidth, innerHeight, this->getSampleSize());
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workingBitmap = ⊂
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} else {
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workingBitmap = bm;
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}
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// bm is already locked, but if we had to take a subset, it must be locked also,
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// so that getPixels() will point to its pixels.
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SkAutoLockPixels alpWorking(*workingBitmap);
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if (!sampler.begin(workingBitmap, SkScaledBitmapSampler::kIndex, *this)) {
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return error_return(*bm, "Sampler failed to begin.");
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}
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// now decode each scanline
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if (gif->Image.Interlace) {
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// Iterate over the height of the source data. The sampler will
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// take care of skipping unneeded rows.
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GifInterlaceIter iter(innerHeight);
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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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gif_warning(*bm, "interlace DGifGetLine");
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memset(scanline, fillIndex, innerWidth);
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for (; y < innerHeight; y++) {
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sampler.sampleInterlaced(scanline, iter.currY());
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iter.next();
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}
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return kPartialSuccess;
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}
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sampler.sampleInterlaced(scanline, iter.currY());
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iter.next();
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}
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} else {
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// easy, non-interlace case
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const int outHeight = workingBitmap->height();
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skip_src_rows(gif, scanline, innerWidth, sampler.srcY0());
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for (int y = 0; y < outHeight; y++) {
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if (DGifGetLine(gif, scanline, innerWidth) == GIF_ERROR) {
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gif_warning(*bm, "DGifGetLine");
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memset(scanline, fillIndex, innerWidth);
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for (; y < outHeight; y++) {
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sampler.next(scanline);
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}
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return kPartialSuccess;
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}
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// scanline now contains the raw data. Sample it.
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sampler.next(scanline);
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if (y < outHeight - 1) {
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skip_src_rows(gif, scanline, innerWidth, sampler.srcDY() - 1);
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}
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}
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// skip the rest of the rows (if any)
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int read = (outHeight - 1) * sampler.srcDY() + sampler.srcY0() + 1;
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SkASSERT(read <= innerHeight);
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skip_src_rows(gif, scanline, innerWidth, innerHeight - read);
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}
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sanitize_indexed_bitmap(bm);
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return kSuccess;
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} break;
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case EXTENSION_RECORD_TYPE:
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#if GIFLIB_MAJOR < 5
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if (DGifGetExtension(gif, &temp_save.Function,
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&extData) == GIF_ERROR) {
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#else
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if (DGifGetExtension(gif, &extFunction, &extData) == GIF_ERROR) {
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#endif
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return error_return(*bm, "DGifGetExtension");
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}
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while (extData != nullptr) {
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/* Create an extension block with our data */
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#if GIFLIB_MAJOR < 5
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if (AddExtensionBlock(&temp_save, extData[0],
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&extData[1]) == GIF_ERROR) {
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#else
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if (GifAddExtensionBlock(&temp_save.ExtensionBlockCount,
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&temp_save.ExtensionBlocks,
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extFunction,
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extData[0],
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&extData[1]) == GIF_ERROR) {
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#endif
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return error_return(*bm, "AddExtensionBlock");
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}
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if (DGifGetExtensionNext(gif, &extData) == GIF_ERROR) {
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return error_return(*bm, "DGifGetExtensionNext");
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}
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#if GIFLIB_MAJOR < 5
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temp_save.Function = 0;
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#endif
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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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|
|
sanitize_indexed_bitmap(bm);
|
|
return kSuccess;
|
|
}
|
|
|
|
///////////////////////////////////////////////////////////////////////////////
|
|
DEFINE_DECODER_CREATOR(GIFImageDecoder);
|
|
///////////////////////////////////////////////////////////////////////////////
|
|
|
|
static bool is_gif(SkStreamRewindable* stream) {
|
|
char buf[GIF_STAMP_LEN];
|
|
if (stream->read(buf, GIF_STAMP_LEN) == GIF_STAMP_LEN) {
|
|
if (memcmp(GIF_STAMP, buf, GIF_STAMP_LEN) == 0 ||
|
|
memcmp(GIF87_STAMP, buf, GIF_STAMP_LEN) == 0 ||
|
|
memcmp(GIF89_STAMP, buf, GIF_STAMP_LEN) == 0) {
|
|
return true;
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
static SkImageDecoder* sk_libgif_dfactory(SkStreamRewindable* stream) {
|
|
if (is_gif(stream)) {
|
|
return new SkGIFImageDecoder;
|
|
}
|
|
return nullptr;
|
|
}
|
|
|
|
static SkImageDecoder_DecodeReg gReg(sk_libgif_dfactory);
|
|
|
|
static SkImageDecoder::Format get_format_gif(SkStreamRewindable* stream) {
|
|
if (is_gif(stream)) {
|
|
return SkImageDecoder::kGIF_Format;
|
|
}
|
|
return SkImageDecoder::kUnknown_Format;
|
|
}
|
|
|
|
static SkImageDecoder_FormatReg gFormatReg(get_format_gif);
|