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Side by Side Diff: third_party/WebKit/Source/platform/image-decoders/gif/GIFImageDecoder.cpp

Issue 2565323003: Move gif image decoder to SkCodec (Closed)
Patch Set: Keep a cache of the max fully received frame index Created 3 years, 4 months ago
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1 /* 1 /*
2 * Copyright (C) 2006 Apple Computer, Inc. All rights reserved. 2 * Copyright (C) 2006 Apple Computer, Inc. All rights reserved.
3 * 3 *
4 * Redistribution and use in source and binary forms, with or without 4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions 5 * modification, are permitted provided that the following conditions
6 * are met: 6 * are met:
7 * 1. Redistributions of source code must retain the above copyright 7 * 1. Redistributions of source code must retain the above copyright
8 * notice, this list of conditions and the following disclaimer. 8 * notice, this list of conditions and the following disclaimer.
9 * 2. Redistributions in binary form must reproduce the above copyright 9 * 2. Redistributions in binary form must reproduce the above copyright
10 * notice, this list of conditions and the following disclaimer in the 10 * notice, this list of conditions and the following disclaimer in the
11 * documentation and/or other materials provided with the distribution. 11 * documentation and/or other materials provided with the distribution.
12 * 12 *
13 * THIS SOFTWARE IS PROVIDED BY APPLE COMPUTER, INC. ``AS IS'' AND ANY 13 * THIS SOFTWARE IS PROVIDED BY APPLE COMPUTER, INC. ``AS IS'' AND ANY
14 * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 14 * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
15 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 15 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
16 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL APPLE COMPUTER, INC. OR 16 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL APPLE COMPUTER, INC. OR
17 * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, 17 * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
18 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 18 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
19 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR 19 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
20 * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY 20 * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
21 * OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 21 * OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
22 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 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. 23 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
24 */ 24 */
25 25
26 #include "platform/image-decoders/gif/GIFImageDecoder.h" 26 #include "platform/image-decoders/gif/GIFImageDecoder.h"
27 27
28 #include <limits> 28 #include <limits>
29 #include "platform/image-decoders/gif/GIFImageReader.h"
30 #include "platform/wtf/NotFound.h" 29 #include "platform/wtf/NotFound.h"
31 #include "platform/wtf/PtrUtil.h" 30 #include "platform/wtf/PtrUtil.h"
31 #include "third_party/skia/include/core/SkImageInfo.h"
32 32
33 namespace blink { 33 namespace blink {
34 34
35 GIFImageDecoder::GIFImageDecoder(AlphaOption alpha_option, 35 GIFImageDecoder::GIFImageDecoder(AlphaOption alpha_option,
36 const ColorBehavior& color_behavior, 36 const ColorBehavior& color_behavior,
37 size_t max_decoded_bytes) 37 size_t max_decoded_bytes)
38 : ImageDecoder(alpha_option, color_behavior, max_decoded_bytes), 38 : ImageDecoder(alpha_option, color_behavior, max_decoded_bytes),
39 repetition_count_(kAnimationLoopOnce) {} 39 codec_(),
40 40 segment_stream_(nullptr) {}
41 GIFImageDecoder::~GIFImageDecoder() {}
42 41
43 void GIFImageDecoder::OnSetData(SegmentReader* data) { 42 void GIFImageDecoder::OnSetData(SegmentReader* data) {
44 if (reader_) 43 if (!data) {
45 reader_->SetData(data); 44 if (segment_stream_)
45 segment_stream_->SetReader(nullptr);
46 return;
47 }
48
49 if (!segment_stream_)
50 segment_stream_ = new SegmentStream();
51
52 segment_stream_->SetReader(PassRefPtr<SegmentReader>(data));
53
54 if (!codec_) {
55 SkCodec::Result stream_creation_result;
56 codec_.reset(SkCodec::NewFromStream(segment_stream_,
57 &stream_creation_result, nullptr));
58 switch (stream_creation_result) {
59 case SkCodec::kSuccess: {
60 // SkCodec::NewFromStream will read enough of the image to get the image
61 // size.
62 SkImageInfo image_info = codec_->getInfo();
63 SetSize(image_info.width(), image_info.height());
64 return;
65 }
66 case SkCodec::kIncompleteInput:
67 // |segment_stream_|'s ownership is passed into NewFromStream.
68 // It is deleted if NewFromStream fails.
69 // If NewFromStream fails, we set |segment_stream_| to null so
70 // we aren't pointing to reclaimed memory.
71 segment_stream_ = nullptr;
72 return;
73 default:
74 SetFailed();
75 return;
76 }
77 }
46 } 78 }
47 79
48 int GIFImageDecoder::RepetitionCount() const { 80 int GIFImageDecoder::RepetitionCount() const {
49 // This value can arrive at any point in the image data stream. Most GIFs 81 DCHECK(!Failed());
50 // in the wild declare it near the beginning of the file, so it usually is 82
51 // set by the time we've decoded the size, but (depending on the GIF and the 83 if (codec_ || !segment_stream_->IsCleared()) {
scroggo_chromium 2017/07/25 19:02:00 I think you want &&
cblume 2017/07/26 07:43:29 Done.
52 // packets sent back by the webserver) not always. If the reader hasn't 84 // This value can arrive at any point in the image data stream. Most GIFs
53 // seen a loop count yet, it will return kCLoopCountNotSeen, in which case we 85 // in the wild declare it near the beginning of the file, so it usually is
54 // should default to looping once (the initial value for 86 // set by the time we've decoded the size, but (depending on the GIF and the
55 // |repetition_count_|). 87 // packets sent back by the webserver) not always.
88 //
89 // SkCodec will parse forward in the file if the repetition count has not
90 // been seen yet.
91 int repetition_count = codec_->getRepetitionCount();
92
93 switch (repetition_count) {
94 case 0: {
95 // SkCodec returns 0 for both still images and animated images which
96 // only play once.
97 if (IsAllDataReceived() && codec_->getFrameCount() == 1) {
98 cached_repetition_count_ = kAnimationNone;
99 break;
100 }
101
102 cached_repetition_count_ = kAnimationLoopOnce;
103 break;
104 }
105 case SkCodec::kRepetitionCountInfinite:
106 cached_repetition_count_ = kAnimationLoopInfinite;
107 break;
108 default:
109 cached_repetition_count_ = repetition_count;
110 break;
111 }
112 }
113
114 return cached_repetition_count_;
115 }
116
117 bool GIFImageDecoder::FrameIsReceivedAtIndex(size_t index) const {
118 if (!codec_)
119 return false;
120
121 if (segment_stream_->IsCleared()) {
122 if (max_received_frame_index_ == kNotFound)
123 return false;
124
125 return index <= max_received_frame_index_;
126 }
127
128 int frame_count = codec_->getFrameCount();
129 for (int i = 0; i < frame_count; i++) {
130 SkCodec::FrameInfo frame_info;
131 codec_->getFrameInfo(index, &frame_info);
132 if (frame_info.fFullyReceived)
133 max_received_frame_index_ = i;
134 }
135
136 if (max_received_frame_index_ == kNotFound)
137 return false;
138
139 return index <= max_received_frame_index_;
140 }
141
142 float GIFImageDecoder::FrameDurationAtIndex(size_t index) const {
143 if (index < frame_buffer_cache_.size())
144 return frame_buffer_cache_[index].Duration();
145 return 0;
146 }
147
148 bool GIFImageDecoder::SetFailed() {
149 segment_stream_ = nullptr;
150 codec_.reset();
151 return ImageDecoder::SetFailed();
152 }
153
154 size_t GIFImageDecoder::ClearCacheExceptFrame(size_t index) {
155 // SkCodec attempts to report the earliest possible required frame, but it is
156 // possible that frame has been evicted, while a later frame (which could also
157 // be used as the required frame) is still cached. Try to preserve a frame
158 // that is still cached.
159 if (frame_buffer_cache_.size() <= 1)
160 return 0;
161
162 size_t index2 = kNotFound;
163 if (index < frame_buffer_cache_.size()) {
164 const ImageFrame& frame = frame_buffer_cache_[index];
165 if (!FrameStatusSufficientForSuccessors(index) ||
166 frame.GetDisposalMethod() == ImageFrame::kDisposeOverwritePrevious) {
167 index2 = GetViableReferenceFrameIndex(index);
168 }
169 }
170
171 return ClearCacheExceptTwoFrames(index, index2);
172 }
173
174 size_t GIFImageDecoder::DecodeFrameCount() {
175 if (!codec_ || segment_stream_->IsCleared())
176 return frame_buffer_cache_.size();
177
178 return codec_->getFrameCount();
179 }
180
181 void GIFImageDecoder::InitializeNewFrame(size_t index) {
182 DCHECK(codec_);
183
184 ImageFrame& frame = frame_buffer_cache_[index];
185 // SkCodec does not inform us if only a portion of the image was updated
186 // in the current frame. Because of this, rather than correctly filling in
187 // the frame rect, we set the frame rect to be the image's full size.
188 // The original frame rect is not used, anyway.
189 IntSize full_image_size = Size();
190 frame.SetOriginalFrameRect(IntRect(IntPoint(), full_image_size));
191
192 SkCodec::FrameInfo frame_info;
193 bool frame_info_received = codec_->getFrameInfo(index, &frame_info);
194 DCHECK(frame_info_received);
195 frame.SetDuration(frame_info.fDuration);
196 size_t required_previous_frame_index;
197 if (frame_info.fRequiredFrame == SkCodec::kNone) {
198 required_previous_frame_index = kNotFound;
199 } else {
200 required_previous_frame_index =
201 static_cast<size_t>(frame_info.fRequiredFrame);
202 }
203 frame.SetRequiredPreviousFrameIndex(required_previous_frame_index);
204
205 ImageFrame::DisposalMethod disposal_method = ImageFrame::kDisposeNotSpecified;
206 switch (frame_info.fDisposalMethod) {
207 case SkCodecAnimation::DisposalMethod::kKeep:
208 disposal_method = ImageFrame::kDisposeKeep;
209 break;
210 case SkCodecAnimation::DisposalMethod::kRestoreBGColor:
211 disposal_method = ImageFrame::kDisposeOverwriteBgcolor;
212 break;
213 case SkCodecAnimation::DisposalMethod::kRestorePrevious:
214 disposal_method = ImageFrame::kDisposeOverwritePrevious;
215 break;
216 }
217 frame.SetDisposalMethod(disposal_method);
218 }
219
220 void GIFImageDecoder::Decode(size_t index) {
221 if (!codec_ || segment_stream_->IsCleared())
222 return;
223
224 DCHECK(!Failed());
225
226 DCHECK_LT(index, frame_buffer_cache_.size());
227
228 UpdateAggressivePurging(index);
229 SkImageInfo image_info = codec_->getInfo()
230 .makeColorType(kN32_SkColorType)
231 .makeColorSpace(ColorSpaceForSkImages());
232
233 SkCodec::Options options;
234 options.fFrameIndex = index;
235 options.fPriorFrame = SkCodec::kNone;
236 options.fZeroInitialized = SkCodec::kNo_ZeroInitialized;
237
238 ImageFrame& frame = frame_buffer_cache_[index];
239 if (frame.GetStatus() == ImageFrame::kFrameEmpty) {
240 size_t required_previous_frame_index = frame.RequiredPreviousFrameIndex();
241 if (required_previous_frame_index == kNotFound) {
242 frame.AllocatePixelData(Size().Width(), Size().Height(),
243 ColorSpaceForSkImages());
244 frame.ZeroFillPixelData();
245 } else {
246 size_t previous_frame_index = GetViableReferenceFrameIndex(index);
247 if (previous_frame_index == kNotFound) {
248 previous_frame_index = required_previous_frame_index;
249 Decode(previous_frame_index);
250 }
251
252 // We try to reuse |previous_frame| as starting state to avoid copying.
253 // If CanReusePreviousFrameBuffer returns false, we must copy the data
254 // since |previous_frame| is necessary to decode this or later frames.
255 // In that case copy the data instead.
256 ImageFrame& previous_frame = frame_buffer_cache_[previous_frame_index];
257 if ((!CanReusePreviousFrameBuffer(index) ||
258 !frame.TakeBitmapDataIfWritable(&previous_frame)) &&
259 !frame.CopyBitmapData(previous_frame)) {
260 SetFailed();
261 return;
262 }
263 options.fPriorFrame = previous_frame_index;
264 }
265 }
266
267 if (frame.GetStatus() == ImageFrame::kFrameAllocated) {
268 SkCodec::Result start_incremental_decode_result =
269 codec_->startIncrementalDecode(image_info, frame.Bitmap().getPixels(),
270 frame.Bitmap().rowBytes(), &options);
271 switch (start_incremental_decode_result) {
272 case SkCodec::kSuccess:
273 break;
274 case SkCodec::kIncompleteInput:
275 return;
276 default:
277 SetFailed();
278 return;
279 }
280 frame.SetStatus(ImageFrame::kFramePartial);
281 }
282
283 SkCodec::Result incremental_decode_result = codec_->incrementalDecode();
284 switch (incremental_decode_result) {
285 case SkCodec::kSuccess: {
286 SkCodec::FrameInfo frame_info;
287 bool frame_info_received = codec_->getFrameInfo(index, &frame_info);
288 DCHECK(frame_info_received);
289 frame.SetHasAlpha(!SkAlphaTypeIsOpaque(frame_info.fAlphaType));
290 frame.SetPixelsChanged(true);
291 frame.SetStatus(ImageFrame::kFrameComplete);
292 PostDecodeProcessing(index);
293 break;
294 }
295 case SkCodec::kIncompleteInput:
296 frame.SetPixelsChanged(true);
297 if (FrameIsReceivedAtIndex(index) || IsAllDataReceived()) {
298 SetFailed();
299 }
300 break;
301 default:
302 SetFailed();
303 break;
304 }
305 }
306
307 bool GIFImageDecoder::CanReusePreviousFrameBuffer(size_t index) const {
308 DCHECK(index < frame_buffer_cache_.size());
309 return frame_buffer_cache_[index].GetDisposalMethod() !=
310 ImageFrame::kDisposeOverwritePrevious;
311 }
312
313 size_t GIFImageDecoder::GetViableReferenceFrameIndex(
314 size_t dependent_index) const {
315 DCHECK_LT(dependent_index, frame_buffer_cache_.size());
316
317 size_t required_previous_frame_index =
318 frame_buffer_cache_[dependent_index].RequiredPreviousFrameIndex();
319
320 // Any frame in the range [|required_previous_frame_index|, |dependent_index|)
321 // which has a disposal method other than kRestorePrevious can be provided as
322 // the prior frame to SkCodec.
56 // 323 //
57 // There are some additional wrinkles here. First, ImageSource::Clear() 324 // SkCodec sets SkCodec::FrameInfo::fRequiredFrame to the earliest frame which
58 // may destroy the reader, making the result from the reader _less_ 325 // can be used. This might come up when several frames update the same
59 // authoritative on future calls if the recreated reader hasn't seen the 326 // subregion. If that same subregion is about to be overwritten, it doesn't
60 // loop count. We don't need to special-case this because in this case the 327 // matter which frame in that chain is provided.
61 // new reader will once again return kCLoopCountNotSeen, and we won't 328 size_t previous_reference_frame_index = kNotFound;
62 // overwrite the cached correct value. 329 if (required_previous_frame_index != kNotFound) {
63 // 330 // Loop backwards because the frames most likely to be in cache are the most
64 // Second, a GIF might never set a loop count at all, in which case we 331 // recent.
65 // should continue to treat it as a "loop once" animation. We don't need 332 for (size_t i = dependent_index - 1; i != required_previous_frame_index;
66 // special code here either, because in this case we'll never change 333 i--) {
67 // |repetition_count_| from its default value. 334 const ImageFrame& frame = frame_buffer_cache_[i];
68 // 335
69 // Third, we use the same GIFImageReader for counting frames and we might 336 if (frame.GetDisposalMethod() == ImageFrame::kDisposeOverwritePrevious)
70 // see the loop count and then encounter a decoding error which happens 337 continue;
71 // later in the stream. It is also possible that no frames are in the 338
72 // stream. In these cases we should just loop once. 339 if (frame.GetStatus() == ImageFrame::kFrameComplete) {
73 if (IsAllDataReceived() && ParseCompleted() && reader_->ImagesCount() == 1) 340 previous_reference_frame_index = i;
74 repetition_count_ = kAnimationNone; 341 break;
75 else if (Failed() || (reader_ && (!reader_->ImagesCount()))) 342 }
76 repetition_count_ = kAnimationLoopOnce; 343 }
77 else if (reader_ && reader_->LoopCount() != kCLoopCountNotSeen) 344 }
78 repetition_count_ = reader_->LoopCount(); 345
79 return repetition_count_; 346 return previous_reference_frame_index;
80 }
81
82 bool GIFImageDecoder::FrameIsReceivedAtIndex(size_t index) const {
83 return reader_ && (index < reader_->ImagesCount()) &&
84 reader_->FrameContext(index)->IsComplete();
85 }
86
87 float GIFImageDecoder::FrameDurationAtIndex(size_t index) const {
88 return (reader_ && (index < reader_->ImagesCount()) &&
89 reader_->FrameContext(index)->IsHeaderDefined())
90 ? reader_->FrameContext(index)->DelayTime()
91 : 0;
92 }
93
94 bool GIFImageDecoder::SetFailed() {
95 reader_.reset();
96 return ImageDecoder::SetFailed();
97 }
98
99 bool GIFImageDecoder::HaveDecodedRow(size_t frame_index,
100 GIFRow::const_iterator row_begin,
101 size_t width,
102 size_t row_number,
103 unsigned repeat_count,
104 bool write_transparent_pixels) {
105 const GIFFrameContext* frame_context = reader_->FrameContext(frame_index);
106 // The pixel data and coordinates supplied to us are relative to the frame's
107 // origin within the entire image size, i.e.
108 // (frameC_context->xOffset, frame_context->yOffset). There is no guarantee
109 // that width == (size().width() - frame_context->xOffset), so
110 // we must ensure we don't run off the end of either the source data or the
111 // row's X-coordinates.
112 const int x_begin = frame_context->XOffset();
113 const int y_begin = frame_context->YOffset() + row_number;
114 const int x_end = std::min(static_cast<int>(frame_context->XOffset() + width),
115 Size().Width());
116 const int y_end = std::min(
117 static_cast<int>(frame_context->YOffset() + row_number + repeat_count),
118 Size().Height());
119 if (!width || (x_begin < 0) || (y_begin < 0) || (x_end <= x_begin) ||
120 (y_end <= y_begin))
121 return true;
122
123 const GIFColorMap::Table& color_table =
124 frame_context->LocalColorMap().IsDefined()
125 ? frame_context->LocalColorMap().GetTable()
126 : reader_->GlobalColorMap().GetTable();
127
128 if (color_table.IsEmpty())
129 return true;
130
131 GIFColorMap::Table::const_iterator color_table_iter = color_table.begin();
132
133 // Initialize the frame if necessary.
134 ImageFrame& buffer = frame_buffer_cache_[frame_index];
135 if (!InitFrameBuffer(frame_index))
136 return false;
137
138 const size_t transparent_pixel = frame_context->TransparentPixel();
139 GIFRow::const_iterator row_end = row_begin + (x_end - x_begin);
140 ImageFrame::PixelData* current_address = buffer.GetAddr(x_begin, y_begin);
141
142 // We may or may not need to write transparent pixels to the buffer.
143 // If we're compositing against a previous image, it's wrong, and if
144 // we're writing atop a cleared, fully transparent buffer, it's
145 // unnecessary; but if we're decoding an interlaced gif and
146 // displaying it "Haeberli"-style, we must write these for passes
147 // beyond the first, or the initial passes will "show through" the
148 // later ones.
149 //
150 // The loops below are almost identical. One writes a transparent pixel
151 // and one doesn't based on the value of |write_transparent_pixels|.
152 // The condition check is taken out of the loop to enhance performance.
153 // This optimization reduces decoding time by about 15% for a 3MB image.
154 if (write_transparent_pixels) {
155 for (; row_begin != row_end; ++row_begin, ++current_address) {
156 const size_t source_value = *row_begin;
157 if ((source_value != transparent_pixel) &&
158 (source_value < color_table.size())) {
159 *current_address = color_table_iter[source_value];
160 } else {
161 *current_address = 0;
162 current_buffer_saw_alpha_ = true;
163 }
164 }
165 } else {
166 for (; row_begin != row_end; ++row_begin, ++current_address) {
167 const size_t source_value = *row_begin;
168 if ((source_value != transparent_pixel) &&
169 (source_value < color_table.size()))
170 *current_address = color_table_iter[source_value];
171 else
172 current_buffer_saw_alpha_ = true;
173 }
174 }
175
176 // Tell the frame to copy the row data if need be.
177 if (repeat_count > 1)
178 buffer.CopyRowNTimes(x_begin, x_end, y_begin, y_end);
179
180 buffer.SetPixelsChanged(true);
181 return true;
182 }
183
184 bool GIFImageDecoder::ParseCompleted() const {
185 return reader_ && reader_->ParseCompleted();
186 }
187
188 bool GIFImageDecoder::FrameComplete(size_t frame_index) {
189 // Initialize the frame if necessary. Some GIFs insert do-nothing frames,
190 // in which case we never reach HaveDecodedRow() before getting here.
191 if (!InitFrameBuffer(frame_index))
192 return SetFailed();
193
194 if (!current_buffer_saw_alpha_)
195 CorrectAlphaWhenFrameBufferSawNoAlpha(frame_index);
196
197 frame_buffer_cache_[frame_index].SetStatus(ImageFrame::kFrameComplete);
198
199 return true;
200 }
201
202 void GIFImageDecoder::ClearFrameBuffer(size_t frame_index) {
203 if (reader_ && frame_buffer_cache_[frame_index].GetStatus() ==
204 ImageFrame::kFramePartial) {
205 // Reset the state of the partial frame in the reader so that the frame
206 // can be decoded again when requested.
207 reader_->ClearDecodeState(frame_index);
208 }
209 ImageDecoder::ClearFrameBuffer(frame_index);
210 }
211
212 size_t GIFImageDecoder::DecodeFrameCount() {
213 Parse(kGIFFrameCountQuery);
214 // If decoding fails, |reader_| will have been destroyed. Instead of
215 // returning 0 in this case, return the existing number of frames. This way
216 // if we get halfway through the image before decoding fails, we won't
217 // suddenly start reporting that the image has zero frames.
218 return Failed() ? frame_buffer_cache_.size() : reader_->ImagesCount();
219 }
220
221 void GIFImageDecoder::InitializeNewFrame(size_t index) {
222 ImageFrame* buffer = &frame_buffer_cache_[index];
223 const GIFFrameContext* frame_context = reader_->FrameContext(index);
224 buffer->SetOriginalFrameRect(
225 Intersection(frame_context->FrameRect(), IntRect(IntPoint(), Size())));
226 buffer->SetDuration(frame_context->DelayTime());
227 buffer->SetDisposalMethod(frame_context->GetDisposalMethod());
228 buffer->SetRequiredPreviousFrameIndex(
229 FindRequiredPreviousFrame(index, false));
230 }
231
232 void GIFImageDecoder::Decode(size_t index) {
233 Parse(kGIFFrameCountQuery);
234
235 if (Failed())
236 return;
237
238 UpdateAggressivePurging(index);
239
240 Vector<size_t> frames_to_decode = FindFramesToDecode(index);
241 for (auto i = frames_to_decode.rbegin(); i != frames_to_decode.rend(); ++i) {
242 if (!reader_->Decode(*i)) {
243 SetFailed();
244 return;
245 }
246
247 // If this returns false, we need more data to continue decoding.
248 if (!PostDecodeProcessing(*i))
249 break;
250 }
251
252 // It is also a fatal error if all data is received and we have decoded all
253 // frames available but the file is truncated.
254 if (index >= frame_buffer_cache_.size() - 1 && IsAllDataReceived() &&
255 reader_ && !reader_->ParseCompleted())
256 SetFailed();
257 }
258
259 void GIFImageDecoder::Parse(GIFParseQuery query) {
260 if (Failed())
261 return;
262
263 if (!reader_) {
264 reader_ = WTF::MakeUnique<GIFImageReader>(this);
265 reader_->SetData(data_);
266 }
267
268 if (!reader_->Parse(query))
269 SetFailed();
270 }
271
272 void GIFImageDecoder::OnInitFrameBuffer(size_t frame_index) {
273 current_buffer_saw_alpha_ = false;
274 }
275
276 bool GIFImageDecoder::CanReusePreviousFrameBuffer(size_t frame_index) const {
277 DCHECK(frame_index < frame_buffer_cache_.size());
278 return frame_buffer_cache_[frame_index].GetDisposalMethod() !=
279 ImageFrame::kDisposeOverwritePrevious;
280 } 347 }
281 348
282 } // namespace blink 349 } // namespace blink
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