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1 /*
2  * Copyright (C) 2006 Apple Computer, Inc.  All rights reserved.
3  *
4  * Redistribution and use in source and binary forms, with or without
5  * modification, are permitted provided that the following conditions
6  * are met:
7  * 1. Redistributions of source code must retain the above copyright
8  *    notice, this list of conditions and the following disclaimer.
9  * 2. Redistributions in binary form must reproduce the above copyright
10  *    notice, this list of conditions and the following disclaimer in the
11  *    documentation and/or other materials provided with the distribution.
12  *
13  * THIS SOFTWARE IS PROVIDED BY APPLE COMPUTER, INC. ``AS IS'' AND ANY
14  * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
15  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
16  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL APPLE COMPUTER, INC. OR
17  * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
18  * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
19  * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
20  * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
21  * OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
22  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
23  * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
24  */
25 
26 #include "config.h"
27 #include "platform/image-decoders/gif/GIFImageDecoder.h"
28 
29 #include <limits>
30 #include "platform/PlatformInstrumentation.h"
31 #include "platform/image-decoders/gif/GIFImageReader.h"
32 #include "wtf/NotFound.h"
33 #include "wtf/PassOwnPtr.h"
34 
35 namespace blink {
36 
GIFImageDecoder(ImageSource::AlphaOption alphaOption,ImageSource::GammaAndColorProfileOption gammaAndColorProfileOption,size_t maxDecodedBytes)37 GIFImageDecoder::GIFImageDecoder(ImageSource::AlphaOption alphaOption,
38     ImageSource::GammaAndColorProfileOption gammaAndColorProfileOption,
39     size_t maxDecodedBytes)
40     : ImageDecoder(alphaOption, gammaAndColorProfileOption, maxDecodedBytes)
41     , m_repetitionCount(cAnimationLoopOnce)
42 {
43 }
44 
~GIFImageDecoder()45 GIFImageDecoder::~GIFImageDecoder()
46 {
47 }
48 
setData(SharedBuffer * data,bool allDataReceived)49 void GIFImageDecoder::setData(SharedBuffer* data, bool allDataReceived)
50 {
51     if (failed())
52         return;
53 
54     ImageDecoder::setData(data, allDataReceived);
55     if (m_reader)
56         m_reader->setData(data);
57 }
58 
isSizeAvailable()59 bool GIFImageDecoder::isSizeAvailable()
60 {
61     if (!ImageDecoder::isSizeAvailable())
62         parse(GIFSizeQuery);
63 
64     return ImageDecoder::isSizeAvailable();
65 }
66 
frameCount()67 size_t GIFImageDecoder::frameCount()
68 {
69     parse(GIFFrameCountQuery);
70     return m_frameBufferCache.size();
71 }
72 
repetitionCount() const73 int GIFImageDecoder::repetitionCount() const
74 {
75     // This value can arrive at any point in the image data stream.  Most GIFs
76     // in the wild declare it near the beginning of the file, so it usually is
77     // set by the time we've decoded the size, but (depending on the GIF and the
78     // packets sent back by the webserver) not always.  If the reader hasn't
79     // seen a loop count yet, it will return cLoopCountNotSeen, in which case we
80     // should default to looping once (the initial value for
81     // |m_repetitionCount|).
82     //
83     // There are some additional wrinkles here. First, ImageSource::clear()
84     // may destroy the reader, making the result from the reader _less_
85     // authoritative on future calls if the recreated reader hasn't seen the
86     // loop count.  We don't need to special-case this because in this case the
87     // new reader will once again return cLoopCountNotSeen, and we won't
88     // overwrite the cached correct value.
89     //
90     // Second, a GIF might never set a loop count at all, in which case we
91     // should continue to treat it as a "loop once" animation.  We don't need
92     // special code here either, because in this case we'll never change
93     // |m_repetitionCount| from its default value.
94     //
95     // Third, we use the same GIFImageReader for counting frames and we might
96     // see the loop count and then encounter a decoding error which happens
97     // later in the stream. It is also possible that no frames are in the
98     // stream. In these cases we should just loop once.
99     if (isAllDataReceived() && parseCompleted() && m_reader->imagesCount() == 1)
100         m_repetitionCount = cAnimationNone;
101     else if (failed() || (m_reader && (!m_reader->imagesCount())))
102         m_repetitionCount = cAnimationLoopOnce;
103     else if (m_reader && m_reader->loopCount() != cLoopCountNotSeen)
104         m_repetitionCount = m_reader->loopCount();
105     return m_repetitionCount;
106 }
107 
frameBufferAtIndex(size_t index)108 ImageFrame* GIFImageDecoder::frameBufferAtIndex(size_t index)
109 {
110     if (index >= frameCount())
111         return 0;
112 
113     ImageFrame& frame = m_frameBufferCache[index];
114     if (frame.status() != ImageFrame::FrameComplete) {
115         PlatformInstrumentation::willDecodeImage("GIF");
116         decode(index);
117         PlatformInstrumentation::didDecodeImage();
118     }
119 
120     frame.notifyBitmapIfPixelsChanged();
121     return &frame;
122 }
123 
frameIsCompleteAtIndex(size_t index) const124 bool GIFImageDecoder::frameIsCompleteAtIndex(size_t index) const
125 {
126     return m_reader && (index < m_reader->imagesCount()) && m_reader->frameContext(index)->isComplete();
127 }
128 
frameDurationAtIndex(size_t index) const129 float GIFImageDecoder::frameDurationAtIndex(size_t index) const
130 {
131     return (m_reader && (index < m_reader->imagesCount()) &&
132         m_reader->frameContext(index)->isHeaderDefined()) ?
133         m_reader->frameContext(index)->delayTime() : 0;
134 }
135 
setFailed()136 bool GIFImageDecoder::setFailed()
137 {
138     m_reader.clear();
139     return ImageDecoder::setFailed();
140 }
141 
haveDecodedRow(size_t frameIndex,GIFRow::const_iterator rowBegin,size_t width,size_t rowNumber,unsigned repeatCount,bool writeTransparentPixels)142 bool GIFImageDecoder::haveDecodedRow(size_t frameIndex, GIFRow::const_iterator rowBegin, size_t width, size_t rowNumber, unsigned repeatCount, bool writeTransparentPixels)
143 {
144     const GIFFrameContext* frameContext = m_reader->frameContext(frameIndex);
145     // The pixel data and coordinates supplied to us are relative to the frame's
146     // origin within the entire image size, i.e.
147     // (frameContext->xOffset, frameContext->yOffset). There is no guarantee
148     // that width == (size().width() - frameContext->xOffset), so
149     // we must ensure we don't run off the end of either the source data or the
150     // row's X-coordinates.
151     const int xBegin = frameContext->xOffset();
152     const int yBegin = frameContext->yOffset() + rowNumber;
153     const int xEnd = std::min(static_cast<int>(frameContext->xOffset() + width), size().width());
154     const int yEnd = std::min(static_cast<int>(frameContext->yOffset() + rowNumber + repeatCount), size().height());
155     if (!width || (xBegin < 0) || (yBegin < 0) || (xEnd <= xBegin) || (yEnd <= yBegin))
156         return true;
157 
158     const GIFColorMap::Table& colorTable = frameContext->localColorMap().isDefined() ? frameContext->localColorMap().table() : m_reader->globalColorMap().table();
159 
160     if (colorTable.isEmpty())
161         return true;
162 
163     GIFColorMap::Table::const_iterator colorTableIter = colorTable.begin();
164 
165     // Initialize the frame if necessary.
166     ImageFrame& buffer = m_frameBufferCache[frameIndex];
167     if ((buffer.status() == ImageFrame::FrameEmpty) && !initFrameBuffer(frameIndex))
168         return false;
169 
170     const size_t transparentPixel = frameContext->transparentPixel();
171     GIFRow::const_iterator rowEnd = rowBegin + (xEnd - xBegin);
172     ImageFrame::PixelData* currentAddress = buffer.getAddr(xBegin, yBegin);
173 
174     // We may or may not need to write transparent pixels to the buffer.
175     // If we're compositing against a previous image, it's wrong, and if
176     // we're writing atop a cleared, fully transparent buffer, it's
177     // unnecessary; but if we're decoding an interlaced gif and
178     // displaying it "Haeberli"-style, we must write these for passes
179     // beyond the first, or the initial passes will "show through" the
180     // later ones.
181     //
182     // The loops below are almost identical. One writes a transparent pixel
183     // and one doesn't based on the value of |writeTransparentPixels|.
184     // The condition check is taken out of the loop to enhance performance.
185     // This optimization reduces decoding time by about 15% for a 3MB image.
186     if (writeTransparentPixels) {
187         for (; rowBegin != rowEnd; ++rowBegin, ++currentAddress) {
188             const size_t sourceValue = *rowBegin;
189             if ((sourceValue != transparentPixel) && (sourceValue < colorTable.size())) {
190                 *currentAddress = colorTableIter[sourceValue];
191             } else {
192                 *currentAddress = 0;
193                 m_currentBufferSawAlpha = true;
194             }
195         }
196     } else {
197         for (; rowBegin != rowEnd; ++rowBegin, ++currentAddress) {
198             const size_t sourceValue = *rowBegin;
199             if ((sourceValue != transparentPixel) && (sourceValue < colorTable.size()))
200                 *currentAddress = colorTableIter[sourceValue];
201             else
202                 m_currentBufferSawAlpha = true;
203         }
204     }
205 
206     // Tell the frame to copy the row data if need be.
207     if (repeatCount > 1)
208         buffer.copyRowNTimes(xBegin, xEnd, yBegin, yEnd);
209 
210     buffer.setPixelsChanged(true);
211     return true;
212 }
213 
parseCompleted() const214 bool GIFImageDecoder::parseCompleted() const
215 {
216     return m_reader && m_reader->parseCompleted();
217 }
218 
frameComplete(size_t frameIndex)219 bool GIFImageDecoder::frameComplete(size_t frameIndex)
220 {
221     // Initialize the frame if necessary.  Some GIFs insert do-nothing frames,
222     // in which case we never reach haveDecodedRow() before getting here.
223     ImageFrame& buffer = m_frameBufferCache[frameIndex];
224     if ((buffer.status() == ImageFrame::FrameEmpty) && !initFrameBuffer(frameIndex))
225         return false; // initFrameBuffer() has already called setFailed().
226 
227     buffer.setStatus(ImageFrame::FrameComplete);
228 
229     if (!m_currentBufferSawAlpha) {
230         // The whole frame was non-transparent, so it's possible that the entire
231         // resulting buffer was non-transparent, and we can setHasAlpha(false).
232         if (buffer.originalFrameRect().contains(IntRect(IntPoint(), size()))) {
233             buffer.setHasAlpha(false);
234             buffer.setRequiredPreviousFrameIndex(kNotFound);
235         } else if (buffer.requiredPreviousFrameIndex() != kNotFound) {
236             // Tricky case.  This frame does not have alpha only if everywhere
237             // outside its rect doesn't have alpha.  To know whether this is
238             // true, we check the start state of the frame -- if it doesn't have
239             // alpha, we're safe.
240             const ImageFrame* prevBuffer = &m_frameBufferCache[buffer.requiredPreviousFrameIndex()];
241             ASSERT(prevBuffer->disposalMethod() != ImageFrame::DisposeOverwritePrevious);
242 
243             // Now, if we're at a DisposeNotSpecified or DisposeKeep frame, then
244             // we can say we have no alpha if that frame had no alpha.  But
245             // since in initFrameBuffer() we already copied that frame's alpha
246             // state into the current frame's, we need do nothing at all here.
247             //
248             // The only remaining case is a DisposeOverwriteBgcolor frame.  If
249             // it had no alpha, and its rect is contained in the current frame's
250             // rect, we know the current frame has no alpha.
251             if ((prevBuffer->disposalMethod() == ImageFrame::DisposeOverwriteBgcolor) && !prevBuffer->hasAlpha() && buffer.originalFrameRect().contains(prevBuffer->originalFrameRect()))
252                 buffer.setHasAlpha(false);
253         }
254     }
255 
256     return true;
257 }
258 
clearCacheExceptFrame(size_t clearExceptFrame)259 size_t GIFImageDecoder::clearCacheExceptFrame(size_t clearExceptFrame)
260 {
261     // We need to preserve frames such that:
262     //  1. We don't clear |clearExceptFrame|;
263     //  2. We don't clear any frame from which a future initFrameBuffer() call
264     //     will copy bitmap data.
265     // All other frames can be cleared.
266     while ((clearExceptFrame < m_frameBufferCache.size()) && (m_frameBufferCache[clearExceptFrame].status() == ImageFrame::FrameEmpty))
267         clearExceptFrame = m_frameBufferCache[clearExceptFrame].requiredPreviousFrameIndex();
268 
269     return ImageDecoder::clearCacheExceptFrame(clearExceptFrame);
270 }
271 
clearFrameBuffer(size_t frameIndex)272 void GIFImageDecoder::clearFrameBuffer(size_t frameIndex)
273 {
274     if (m_reader && m_frameBufferCache[frameIndex].status() == ImageFrame::FramePartial) {
275         // Reset the state of the partial frame in the reader so that the frame
276         // can be decoded again when requested.
277         m_reader->clearDecodeState(frameIndex);
278     }
279     ImageDecoder::clearFrameBuffer(frameIndex);
280 }
281 
parse(GIFParseQuery query)282 void GIFImageDecoder::parse(GIFParseQuery query)
283 {
284     if (failed())
285         return;
286 
287     if (!m_reader) {
288         m_reader = adoptPtr(new GIFImageReader(this));
289         m_reader->setData(m_data);
290     }
291 
292     if (!m_reader->parse(query)) {
293         setFailed();
294         return;
295     }
296 
297     const size_t oldSize = m_frameBufferCache.size();
298     m_frameBufferCache.resize(m_reader->imagesCount());
299 
300     for (size_t i = oldSize; i < m_reader->imagesCount(); ++i) {
301         ImageFrame& buffer = m_frameBufferCache[i];
302         const GIFFrameContext* frameContext = m_reader->frameContext(i);
303         buffer.setPremultiplyAlpha(m_premultiplyAlpha);
304         buffer.setRequiredPreviousFrameIndex(findRequiredPreviousFrame(i, false));
305         buffer.setDuration(frameContext->delayTime());
306         buffer.setDisposalMethod(frameContext->disposalMethod());
307 
308         // Initialize the frame rect in our buffer.
309         IntRect frameRect = frameContext->frameRect();
310 
311         // Make sure the frameRect doesn't extend outside the buffer.
312         if (frameRect.maxX() > size().width())
313             frameRect.setWidth(size().width() - frameRect.x());
314         if (frameRect.maxY() > size().height())
315             frameRect.setHeight(size().height() - frameRect.y());
316 
317         buffer.setOriginalFrameRect(frameRect);
318     }
319 }
320 
decode(size_t frameIndex)321 void GIFImageDecoder::decode(size_t frameIndex)
322 {
323     parse(GIFFrameCountQuery);
324 
325     if (failed())
326         return;
327 
328     Vector<size_t> framesToDecode;
329     size_t frameToDecode = frameIndex;
330     do {
331         framesToDecode.append(frameToDecode);
332         frameToDecode = m_frameBufferCache[frameToDecode].requiredPreviousFrameIndex();
333     } while (frameToDecode != kNotFound && m_frameBufferCache[frameToDecode].status() != ImageFrame::FrameComplete);
334 
335     for (size_t i = framesToDecode.size(); i > 0; --i) {
336         size_t frameIndex = framesToDecode[i - 1];
337         if (!m_reader->decode(frameIndex)) {
338             setFailed();
339             return;
340         }
341 
342         // We need more data to continue decoding.
343         if (m_frameBufferCache[frameIndex].status() != ImageFrame::FrameComplete)
344             break;
345     }
346 
347     // It is also a fatal error if all data is received and we have decoded all
348     // frames available but the file is truncated.
349     if (frameIndex >= m_frameBufferCache.size() - 1 && isAllDataReceived() && m_reader && !m_reader->parseCompleted())
350         setFailed();
351 }
352 
initFrameBuffer(size_t frameIndex)353 bool GIFImageDecoder::initFrameBuffer(size_t frameIndex)
354 {
355     // Initialize the frame rect in our buffer.
356     ImageFrame* const buffer = &m_frameBufferCache[frameIndex];
357 
358     size_t requiredPreviousFrameIndex = buffer->requiredPreviousFrameIndex();
359     if (requiredPreviousFrameIndex == kNotFound) {
360         // This frame doesn't rely on any previous data.
361         if (!buffer->setSize(size().width(), size().height()))
362             return setFailed();
363     } else {
364         const ImageFrame* prevBuffer = &m_frameBufferCache[requiredPreviousFrameIndex];
365         ASSERT(prevBuffer->status() == ImageFrame::FrameComplete);
366 
367         // Preserve the last frame as the starting state for this frame.
368         if (!buffer->copyBitmapData(*prevBuffer))
369             return setFailed();
370 
371         if (prevBuffer->disposalMethod() == ImageFrame::DisposeOverwriteBgcolor) {
372             // We want to clear the previous frame to transparent, without
373             // affecting pixels in the image outside of the frame.
374             const IntRect& prevRect = prevBuffer->originalFrameRect();
375             ASSERT(!prevRect.contains(IntRect(IntPoint(), size())));
376             buffer->zeroFillFrameRect(prevRect);
377         }
378     }
379 
380     // Update our status to be partially complete.
381     buffer->setStatus(ImageFrame::FramePartial);
382 
383     // Reset the alpha pixel tracker for this frame.
384     m_currentBufferSawAlpha = false;
385     return true;
386 }
387 
388 } // namespace blink
389