bd6343b1d6
Obviously these are all currently function pointers of type T(*)(P) for various T and P. In bench refactoring, I'm trying to register a function pointer of type T(*)(), which can't be done as is (passing P=void doesn't work). This also lets us register things like primitives, which is conceivable useful. BUG= R=reed@google.com, scroggo@google.com Review URL: https://codereview.chromium.org/23453031 git-svn-id: http://skia.googlecode.com/svn/trunk@11082 2bbb7eff-a529-9590-31e7-b0007b416f81
450 lines
13 KiB
C++
450 lines
13 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 "SkMovie.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 "SkUtils.h"
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#include "gif_lib.h"
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class SkGIFMovie : public SkMovie {
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public:
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SkGIFMovie(SkStream* stream);
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virtual ~SkGIFMovie();
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protected:
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virtual bool onGetInfo(Info*);
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virtual bool onSetTime(SkMSec);
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virtual bool onGetBitmap(SkBitmap*);
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private:
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GifFileType* fGIF;
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int fCurrIndex;
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int fLastDrawIndex;
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SkBitmap fBackup;
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};
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static int Decode(GifFileType* fileType, GifByteType* out, 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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SkGIFMovie::SkGIFMovie(SkStream* stream)
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{
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#if GIFLIB_MAJOR < 5
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fGIF = DGifOpen( stream, Decode );
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#else
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fGIF = DGifOpen( stream, Decode, NULL );
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#endif
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if (NULL == fGIF)
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return;
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if (DGifSlurp(fGIF) != GIF_OK)
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{
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DGifCloseFile(fGIF);
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fGIF = NULL;
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}
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fCurrIndex = -1;
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fLastDrawIndex = -1;
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}
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SkGIFMovie::~SkGIFMovie()
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{
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if (fGIF)
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DGifCloseFile(fGIF);
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}
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static SkMSec savedimage_duration(const SavedImage* image)
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{
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for (int j = 0; j < image->ExtensionBlockCount; j++)
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{
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if (image->ExtensionBlocks[j].Function == GRAPHICS_EXT_FUNC_CODE)
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{
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SkASSERT(image->ExtensionBlocks[j].ByteCount >= 4);
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const uint8_t* b = (const uint8_t*)image->ExtensionBlocks[j].Bytes;
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return ((b[2] << 8) | b[1]) * 10;
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}
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}
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return 0;
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}
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bool SkGIFMovie::onGetInfo(Info* info)
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{
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if (NULL == fGIF)
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return false;
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SkMSec dur = 0;
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for (int i = 0; i < fGIF->ImageCount; i++)
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dur += savedimage_duration(&fGIF->SavedImages[i]);
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info->fDuration = dur;
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info->fWidth = fGIF->SWidth;
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info->fHeight = fGIF->SHeight;
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info->fIsOpaque = false; // how to compute?
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return true;
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}
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bool SkGIFMovie::onSetTime(SkMSec time)
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{
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if (NULL == fGIF)
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return false;
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SkMSec dur = 0;
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for (int i = 0; i < fGIF->ImageCount; i++)
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{
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dur += savedimage_duration(&fGIF->SavedImages[i]);
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if (dur >= time)
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{
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fCurrIndex = i;
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return fLastDrawIndex != fCurrIndex;
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}
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}
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fCurrIndex = fGIF->ImageCount - 1;
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return true;
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}
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static void copyLine(uint32_t* dst, const unsigned char* src, const ColorMapObject* cmap,
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int transparent, int width)
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{
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for (; width > 0; width--, src++, dst++) {
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if (*src != transparent) {
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const GifColorType& col = cmap->Colors[*src];
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*dst = SkPackARGB32(0xFF, col.Red, col.Green, col.Blue);
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}
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}
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}
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#if GIFLIB_MAJOR < 5
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static void copyInterlaceGroup(SkBitmap* bm, const unsigned char*& src,
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const ColorMapObject* cmap, int transparent, int copyWidth,
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int copyHeight, const GifImageDesc& imageDesc, int rowStep,
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int startRow)
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{
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int row;
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// every 'rowStep'th row, starting with row 'startRow'
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for (row = startRow; row < copyHeight; row += rowStep) {
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uint32_t* dst = bm->getAddr32(imageDesc.Left, imageDesc.Top + row);
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copyLine(dst, src, cmap, transparent, copyWidth);
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src += imageDesc.Width;
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}
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// pad for rest height
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src += imageDesc.Width * ((imageDesc.Height - row + rowStep - 1) / rowStep);
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}
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static void blitInterlace(SkBitmap* bm, const SavedImage* frame, const ColorMapObject* cmap,
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int transparent)
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{
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int width = bm->width();
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int height = bm->height();
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GifWord copyWidth = frame->ImageDesc.Width;
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if (frame->ImageDesc.Left + copyWidth > width) {
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copyWidth = width - frame->ImageDesc.Left;
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}
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GifWord copyHeight = frame->ImageDesc.Height;
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if (frame->ImageDesc.Top + copyHeight > height) {
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copyHeight = height - frame->ImageDesc.Top;
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}
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// deinterlace
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const unsigned char* src = (unsigned char*)frame->RasterBits;
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// group 1 - every 8th row, starting with row 0
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copyInterlaceGroup(bm, src, cmap, transparent, copyWidth, copyHeight, frame->ImageDesc, 8, 0);
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// group 2 - every 8th row, starting with row 4
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copyInterlaceGroup(bm, src, cmap, transparent, copyWidth, copyHeight, frame->ImageDesc, 8, 4);
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// group 3 - every 4th row, starting with row 2
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copyInterlaceGroup(bm, src, cmap, transparent, copyWidth, copyHeight, frame->ImageDesc, 4, 2);
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copyInterlaceGroup(bm, src, cmap, transparent, copyWidth, copyHeight, frame->ImageDesc, 2, 1);
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}
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#endif
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static void blitNormal(SkBitmap* bm, const SavedImage* frame, const ColorMapObject* cmap,
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int transparent)
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{
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int width = bm->width();
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int height = bm->height();
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const unsigned char* src = (unsigned char*)frame->RasterBits;
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uint32_t* dst = bm->getAddr32(frame->ImageDesc.Left, frame->ImageDesc.Top);
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GifWord copyWidth = frame->ImageDesc.Width;
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if (frame->ImageDesc.Left + copyWidth > width) {
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copyWidth = width - frame->ImageDesc.Left;
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}
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GifWord copyHeight = frame->ImageDesc.Height;
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if (frame->ImageDesc.Top + copyHeight > height) {
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copyHeight = height - frame->ImageDesc.Top;
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}
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for (; copyHeight > 0; copyHeight--) {
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copyLine(dst, src, cmap, transparent, copyWidth);
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src += frame->ImageDesc.Width;
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dst += width;
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}
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}
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static void fillRect(SkBitmap* bm, GifWord left, GifWord top, GifWord width, GifWord height,
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uint32_t col)
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{
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int bmWidth = bm->width();
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int bmHeight = bm->height();
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uint32_t* dst = bm->getAddr32(left, top);
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GifWord copyWidth = width;
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if (left + copyWidth > bmWidth) {
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copyWidth = bmWidth - left;
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}
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GifWord copyHeight = height;
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if (top + copyHeight > bmHeight) {
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copyHeight = bmHeight - top;
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}
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for (; copyHeight > 0; copyHeight--) {
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sk_memset32(dst, col, copyWidth);
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dst += bmWidth;
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}
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}
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static void drawFrame(SkBitmap* bm, const SavedImage* frame, const ColorMapObject* cmap)
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{
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int transparent = -1;
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for (int i = 0; i < frame->ExtensionBlockCount; ++i) {
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ExtensionBlock* eb = frame->ExtensionBlocks + i;
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if (eb->Function == GRAPHICS_EXT_FUNC_CODE &&
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eb->ByteCount == 4) {
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bool has_transparency = ((eb->Bytes[0] & 1) == 1);
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if (has_transparency) {
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transparent = (unsigned char)eb->Bytes[3];
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}
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}
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}
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if (frame->ImageDesc.ColorMap != NULL) {
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// use local color table
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cmap = frame->ImageDesc.ColorMap;
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}
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if (cmap == NULL || cmap->ColorCount != (1 << cmap->BitsPerPixel)) {
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SkDEBUGFAIL("bad colortable setup");
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return;
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}
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#if GIFLIB_MAJOR < 5
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// before GIFLIB 5, de-interlacing wasn't done by library at load time
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if (frame->ImageDesc.Interlace) {
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blitInterlace(bm, frame, cmap, transparent);
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return;
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}
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#endif
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blitNormal(bm, frame, cmap, transparent);
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}
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static bool checkIfWillBeCleared(const SavedImage* frame)
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{
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for (int i = 0; i < frame->ExtensionBlockCount; ++i) {
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ExtensionBlock* eb = frame->ExtensionBlocks + i;
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if (eb->Function == GRAPHICS_EXT_FUNC_CODE &&
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eb->ByteCount == 4) {
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// check disposal method
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int disposal = ((eb->Bytes[0] >> 2) & 7);
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if (disposal == 2 || disposal == 3) {
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return true;
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}
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}
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}
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return false;
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}
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static void getTransparencyAndDisposalMethod(const SavedImage* frame, bool* trans, int* disposal)
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{
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*trans = false;
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*disposal = 0;
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for (int i = 0; i < frame->ExtensionBlockCount; ++i) {
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ExtensionBlock* eb = frame->ExtensionBlocks + i;
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if (eb->Function == GRAPHICS_EXT_FUNC_CODE &&
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eb->ByteCount == 4) {
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*trans = ((eb->Bytes[0] & 1) == 1);
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*disposal = ((eb->Bytes[0] >> 2) & 7);
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}
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}
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}
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// return true if area of 'target' is completely covers area of 'covered'
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static bool checkIfCover(const SavedImage* target, const SavedImage* covered)
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{
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if (target->ImageDesc.Left <= covered->ImageDesc.Left
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&& covered->ImageDesc.Left + covered->ImageDesc.Width <=
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target->ImageDesc.Left + target->ImageDesc.Width
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&& target->ImageDesc.Top <= covered->ImageDesc.Top
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&& covered->ImageDesc.Top + covered->ImageDesc.Height <=
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target->ImageDesc.Top + target->ImageDesc.Height) {
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return true;
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}
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return false;
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}
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static void disposeFrameIfNeeded(SkBitmap* bm, const SavedImage* cur, const SavedImage* next,
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SkBitmap* backup, SkColor color)
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{
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// We can skip disposal process if next frame is not transparent
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// and completely covers current area
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bool curTrans;
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int curDisposal;
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getTransparencyAndDisposalMethod(cur, &curTrans, &curDisposal);
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bool nextTrans;
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int nextDisposal;
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getTransparencyAndDisposalMethod(next, &nextTrans, &nextDisposal);
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if ((curDisposal == 2 || curDisposal == 3)
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&& (nextTrans || !checkIfCover(next, cur))) {
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switch (curDisposal) {
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// restore to background color
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// -> 'background' means background under this image.
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case 2:
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fillRect(bm, cur->ImageDesc.Left, cur->ImageDesc.Top,
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cur->ImageDesc.Width, cur->ImageDesc.Height,
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color);
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break;
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// restore to previous
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case 3:
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bm->swap(*backup);
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break;
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}
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}
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// Save current image if next frame's disposal method == 3
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if (nextDisposal == 3) {
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const uint32_t* src = bm->getAddr32(0, 0);
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uint32_t* dst = backup->getAddr32(0, 0);
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int cnt = bm->width() * bm->height();
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memcpy(dst, src, cnt*sizeof(uint32_t));
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}
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}
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bool SkGIFMovie::onGetBitmap(SkBitmap* bm)
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{
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const GifFileType* gif = fGIF;
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if (NULL == gif)
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return false;
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if (gif->ImageCount < 1) {
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return false;
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}
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const int width = gif->SWidth;
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const int height = gif->SHeight;
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if (width <= 0 || height <= 0) {
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return false;
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}
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// no need to draw
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if (fLastDrawIndex >= 0 && fLastDrawIndex == fCurrIndex) {
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return true;
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}
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int startIndex = fLastDrawIndex + 1;
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if (fLastDrawIndex < 0 || !bm->readyToDraw()) {
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// first time
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startIndex = 0;
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// create bitmap
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bm->setConfig(SkBitmap::kARGB_8888_Config, width, height, 0);
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if (!bm->allocPixels(NULL)) {
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return false;
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}
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// create bitmap for backup
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fBackup.setConfig(SkBitmap::kARGB_8888_Config, width, height, 0);
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if (!fBackup.allocPixels(NULL)) {
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return false;
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}
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} else if (startIndex > fCurrIndex) {
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// rewind to 1st frame for repeat
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startIndex = 0;
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}
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int lastIndex = fCurrIndex;
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if (lastIndex < 0) {
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// first time
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lastIndex = 0;
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} else if (lastIndex > fGIF->ImageCount - 1) {
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// this block must not be reached.
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lastIndex = fGIF->ImageCount - 1;
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}
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SkColor bgColor = SkPackARGB32(0, 0, 0, 0);
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if (gif->SColorMap != NULL) {
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const GifColorType& col = gif->SColorMap->Colors[fGIF->SBackGroundColor];
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bgColor = SkColorSetARGB(0xFF, col.Red, col.Green, col.Blue);
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}
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static SkColor paintingColor = SkPackARGB32(0, 0, 0, 0);
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// draw each frames - not intelligent way
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for (int i = startIndex; i <= lastIndex; i++) {
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const SavedImage* cur = &fGIF->SavedImages[i];
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if (i == 0) {
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bool trans;
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int disposal;
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getTransparencyAndDisposalMethod(cur, &trans, &disposal);
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if (!trans && gif->SColorMap != NULL) {
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paintingColor = bgColor;
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} else {
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paintingColor = SkColorSetARGB(0, 0, 0, 0);
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}
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bm->eraseColor(paintingColor);
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fBackup.eraseColor(paintingColor);
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} else {
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// Dispose previous frame before move to next frame.
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const SavedImage* prev = &fGIF->SavedImages[i-1];
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disposeFrameIfNeeded(bm, prev, cur, &fBackup, paintingColor);
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}
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// Draw frame
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// We can skip this process if this index is not last and disposal
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// method == 2 or method == 3
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if (i == lastIndex || !checkIfWillBeCleared(cur)) {
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drawFrame(bm, cur, gif->SColorMap);
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}
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}
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// save index
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fLastDrawIndex = lastIndex;
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return true;
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}
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///////////////////////////////////////////////////////////////////////////////
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#include "SkTRegistry.h"
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SkMovie* Factory(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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// must rewind here, since our construct wants to re-read the data
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stream->rewind();
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return SkNEW_ARGS(SkGIFMovie, (stream));
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}
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}
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return NULL;
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}
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static SkTRegistry<SkMovie*(*)(SkStream*)> gReg(Factory);
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