• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * Copyright (C) 2013 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include <string.h>
18 #include "JNIHelpers.h"
19 #include "utils/log.h"
20 #include "utils/math.h"
21 #include "webp/format_constants.h"
22 
23 #include "FrameSequence_webp.h"
24 
25 #define WEBP_DEBUG 0
26 
27 ////////////////////////////////////////////////////////////////////////////////
28 // Frame sequence
29 ////////////////////////////////////////////////////////////////////////////////
30 
GetLE32(const uint8_t * const data)31 static uint32_t GetLE32(const uint8_t* const data) {
32     return MKFOURCC(data[0], data[1], data[2], data[3]);
33 }
34 
35 // Returns true if the frame covers full canvas.
isFullFrame(const WebPIterator & frame,int canvasWidth,int canvasHeight)36 static bool isFullFrame(const WebPIterator& frame, int canvasWidth, int canvasHeight) {
37     return (frame.width == canvasWidth && frame.height == canvasHeight);
38 }
39 
40 // Returns true if the rectangle defined by 'frame' contains pixel (x, y).
FrameContainsPixel(const WebPIterator & frame,int x,int y)41 static bool FrameContainsPixel(const WebPIterator& frame, int x, int y) {
42     const int left = frame.x_offset;
43     const int right = left + frame.width;
44     const int top = frame.y_offset;
45     const int bottom = top + frame.height;
46     return x >= left && x < right && y >= top && y < bottom;
47 }
48 
49 // Construct mIsKeyFrame array.
constructDependencyChain()50 void FrameSequence_webp::constructDependencyChain() {
51     const size_t frameCount = getFrameCount();
52     mIsKeyFrame = new bool[frameCount];
53     const int canvasWidth = getWidth();
54     const int canvasHeight = getHeight();
55 
56     WebPIterator prev;
57     WebPIterator curr;
58 
59     // Note: WebPDemuxGetFrame() uses base-1 counting.
60     int ok = WebPDemuxGetFrame(mDemux, 1, &curr);
61     ALOG_ASSERT(ok, "Could not retrieve frame# 0");
62     mIsKeyFrame[0] = true;  // 0th frame is always a key frame.
63     for (size_t i = 1; i < frameCount; i++) {
64         prev = curr;
65         ok = WebPDemuxGetFrame(mDemux, i + 1, &curr);  // Get ith frame.
66         ALOG_ASSERT(ok, "Could not retrieve frame# %d", i);
67 
68         if ((!curr.has_alpha || curr.blend_method == WEBP_MUX_NO_BLEND) &&
69                 isFullFrame(curr, canvasWidth, canvasHeight)) {
70             mIsKeyFrame[i] = true;
71         } else {
72             mIsKeyFrame[i] = (prev.dispose_method == WEBP_MUX_DISPOSE_BACKGROUND) &&
73                     (isFullFrame(prev, canvasWidth, canvasHeight) || mIsKeyFrame[i - 1]);
74         }
75     }
76     WebPDemuxReleaseIterator(&prev);
77     WebPDemuxReleaseIterator(&curr);
78 
79 #if WEBP_DEBUG
80     ALOGD("Dependency chain:");
81     for (size_t i = 0; i < frameCount; i++) {
82         ALOGD("Frame# %zu: %s", i, mIsKeyFrame[i] ? "Key frame" : "NOT a key frame");
83     }
84 #endif
85 }
86 
FrameSequence_webp(Stream * stream)87 FrameSequence_webp::FrameSequence_webp(Stream* stream) {
88     // Read RIFF header to get file size.
89     uint8_t riff_header[RIFF_HEADER_SIZE];
90     if (stream->read(riff_header, RIFF_HEADER_SIZE) != RIFF_HEADER_SIZE) {
91         ALOGE("WebP header load failed");
92         return;
93     }
94     mData.size = CHUNK_HEADER_SIZE + GetLE32(riff_header + TAG_SIZE);
95     mData.bytes = new uint8_t[mData.size];
96     memcpy((void*)mData.bytes, riff_header, RIFF_HEADER_SIZE);
97 
98     // Read rest of the bytes.
99     void* remaining_bytes = (void*)(mData.bytes + RIFF_HEADER_SIZE);
100     size_t remaining_size = mData.size - RIFF_HEADER_SIZE;
101     if (stream->read(remaining_bytes, remaining_size) != remaining_size) {
102         ALOGE("WebP full load failed");
103         return;
104     }
105 
106     // Construct demux.
107     mDemux = WebPDemux(&mData);
108     if (!mDemux) {
109         ALOGE("Parsing of WebP container file failed");
110         return;
111     }
112     mLoopCount = WebPDemuxGetI(mDemux, WEBP_FF_LOOP_COUNT);
113     mFormatFlags = WebPDemuxGetI(mDemux, WEBP_FF_FORMAT_FLAGS);
114 #if WEBP_DEBUG
115     ALOGD("FrameSequence_webp created with size = %d x %d, number of frames = %d, flags = 0x%X",
116           getWidth(), getHeight(), getFrameCount(), mFormatFlags);
117 #endif
118     constructDependencyChain();
119 }
120 
~FrameSequence_webp()121 FrameSequence_webp::~FrameSequence_webp() {
122     WebPDemuxDelete(mDemux);
123     delete[] mData.bytes;
124     delete[] mIsKeyFrame;
125 }
126 
createState() const127 FrameSequenceState* FrameSequence_webp::createState() const {
128     return new FrameSequenceState_webp(*this);
129 }
130 
131 ////////////////////////////////////////////////////////////////////////////////
132 // draw helpers
133 ////////////////////////////////////////////////////////////////////////////////
134 
willBeCleared(const WebPIterator & iter)135 static bool willBeCleared(const WebPIterator& iter) {
136     return iter.dispose_method == WEBP_MUX_DISPOSE_BACKGROUND;
137 }
138 
139 // return true if area of 'target' completely covers area of 'covered'
checkIfCover(const WebPIterator & target,const WebPIterator & covered)140 static bool checkIfCover(const WebPIterator& target, const WebPIterator& covered) {
141     const int covered_x_max = covered.x_offset + covered.width;
142     const int target_x_max = target.x_offset + target.width;
143     const int covered_y_max = covered.y_offset + covered.height;
144     const int target_y_max = target.y_offset + target.height;
145     return target.x_offset <= covered.x_offset
146            && covered_x_max <= target_x_max
147            && target.y_offset <= covered.y_offset
148            && covered_y_max <= target_y_max;
149 }
150 
151 // Clear all pixels in a line to transparent.
clearLine(Color8888 * dst,int width)152 static void clearLine(Color8888* dst, int width) {
153     memset(dst, 0, width * sizeof(*dst));  // Note: Assumes TRANSPARENT == 0x0.
154 }
155 
156 // Copy all pixels from 'src' to 'dst'.
copyFrame(const Color8888 * src,int srcStride,Color8888 * dst,int dstStride,int width,int height)157 static void copyFrame(const Color8888* src, int srcStride, Color8888* dst, int dstStride,
158         int width, int height) {
159     for (int y = 0; y < height; y++) {
160         memcpy(dst, src, width * sizeof(*dst));
161         src += srcStride;
162         dst += dstStride;
163     }
164 }
165 
166 ////////////////////////////////////////////////////////////////////////////////
167 // Frame sequence state
168 ////////////////////////////////////////////////////////////////////////////////
169 
FrameSequenceState_webp(const FrameSequence_webp & frameSequence)170 FrameSequenceState_webp::FrameSequenceState_webp(const FrameSequence_webp& frameSequence) :
171         mFrameSequence(frameSequence) {
172     WebPInitDecoderConfig(&mDecoderConfig);
173     mDecoderConfig.output.is_external_memory = 1;
174     mDecoderConfig.output.colorspace = MODE_rgbA;  // Pre-multiplied alpha mode.
175     const int canvasWidth = mFrameSequence.getWidth();
176     const int canvasHeight = mFrameSequence.getHeight();
177     mPreservedBuffer = new Color8888[canvasWidth * canvasHeight];
178 }
179 
~FrameSequenceState_webp()180 FrameSequenceState_webp::~FrameSequenceState_webp() {
181     delete[] mPreservedBuffer;
182 }
183 
initializeFrame(const WebPIterator & currIter,Color8888 * currBuffer,int currStride,const WebPIterator & prevIter,const Color8888 * prevBuffer,int prevStride)184 void FrameSequenceState_webp::initializeFrame(const WebPIterator& currIter, Color8888* currBuffer,
185         int currStride, const WebPIterator& prevIter, const Color8888* prevBuffer, int prevStride) {
186     const int canvasWidth = mFrameSequence.getWidth();
187     const int canvasHeight = mFrameSequence.getHeight();
188     const bool currFrameIsKeyFrame = mFrameSequence.isKeyFrame(currIter.frame_num - 1);
189 
190     if (currFrameIsKeyFrame) {  // Clear canvas.
191         for (int y = 0; y < canvasHeight; y++) {
192             Color8888* dst = currBuffer + y * currStride;
193             clearLine(dst, canvasWidth);
194         }
195     } else {
196         // Preserve previous frame as starting state of current frame.
197         copyFrame(prevBuffer, prevStride, currBuffer, currStride, canvasWidth, canvasHeight);
198 
199         // Dispose previous frame rectangle to Background if needed.
200         bool prevFrameCompletelyCovered =
201                 (!currIter.has_alpha || currIter.blend_method == WEBP_MUX_NO_BLEND) &&
202                 checkIfCover(currIter, prevIter);
203         if ((prevIter.dispose_method == WEBP_MUX_DISPOSE_BACKGROUND) &&
204                 !prevFrameCompletelyCovered) {
205             Color8888* dst = currBuffer + prevIter.x_offset + prevIter.y_offset * currStride;
206             for (int j = 0; j < prevIter.height; j++) {
207                 clearLine(dst, prevIter.width);
208                 dst += currStride;
209             }
210         }
211     }
212 }
213 
decodeFrame(const WebPIterator & currIter,Color8888 * currBuffer,int currStride,const WebPIterator & prevIter,const Color8888 * prevBuffer,int prevStride)214 bool FrameSequenceState_webp::decodeFrame(const WebPIterator& currIter, Color8888* currBuffer,
215         int currStride, const WebPIterator& prevIter, const Color8888* prevBuffer, int prevStride) {
216     Color8888* dst = currBuffer + currIter.x_offset + currIter.y_offset * currStride;
217     mDecoderConfig.output.u.RGBA.rgba = (uint8_t*)dst;
218     mDecoderConfig.output.u.RGBA.stride = currStride * 4;
219     mDecoderConfig.output.u.RGBA.size = mDecoderConfig.output.u.RGBA.stride * currIter.height;
220 
221     const WebPData& currFrame = currIter.fragment;
222     if (WebPDecode(currFrame.bytes, currFrame.size, &mDecoderConfig) != VP8_STATUS_OK) {
223         return false;
224     }
225 
226     const int canvasWidth = mFrameSequence.getWidth();
227     const int canvasHeight = mFrameSequence.getHeight();
228     const bool currFrameIsKeyFrame = mFrameSequence.isKeyFrame(currIter.frame_num - 1);
229     // During the decoding of current frame, we may have set some pixels to be transparent
230     // (i.e. alpha < 255). However, the value of each of these pixels should have been determined
231     // by blending it against the value of that pixel in the previous frame if WEBP_MUX_BLEND was
232     // specified. So, we correct these pixels based on disposal method of the previous frame and
233     // the previous frame buffer.
234     if (currIter.blend_method == WEBP_MUX_BLEND && !currFrameIsKeyFrame) {
235         if (prevIter.dispose_method == WEBP_MUX_DISPOSE_NONE) {
236             for (int y = 0; y < currIter.height; y++) {
237                 const int canvasY = currIter.y_offset + y;
238                 for (int x = 0; x < currIter.width; x++) {
239                     const int canvasX = currIter.x_offset + x;
240                     Color8888& currPixel = currBuffer[canvasY * currStride + canvasX];
241                     // FIXME: Use alpha-blending when alpha is between 0 and 255.
242                     if (!(currPixel & COLOR_8888_ALPHA_MASK)) {
243                         const Color8888 prevPixel = prevBuffer[canvasY * prevStride + canvasX];
244                         currPixel = prevPixel;
245                     }
246                 }
247             }
248         } else {  // prevIter.dispose_method == WEBP_MUX_DISPOSE_BACKGROUND
249             // Need to restore transparent pixels to as they were just after frame initialization.
250             // That is:
251             //   * Transparent if it belongs to previous frame rectangle <-- This is a no-op.
252             //   * Pixel in the previous canvas otherwise <-- Need to restore.
253             for (int y = 0; y < currIter.height; y++) {
254                 const int canvasY = currIter.y_offset + y;
255                 for (int x = 0; x < currIter.width; x++) {
256                     const int canvasX = currIter.x_offset + x;
257                     Color8888& currPixel = currBuffer[canvasY * currStride + canvasX];
258                     // FIXME: Use alpha-blending when alpha is between 0 and 255.
259                     if (!(currPixel & COLOR_8888_ALPHA_MASK)
260                             && !FrameContainsPixel(prevIter, canvasX, canvasY)) {
261                         const Color8888 prevPixel = prevBuffer[canvasY * prevStride + canvasX];
262                         currPixel = prevPixel;
263                     }
264                 }
265             }
266         }
267     }
268     return true;
269 }
270 
drawFrame(int frameNr,Color8888 * outputPtr,int outputPixelStride,int previousFrameNr)271 long FrameSequenceState_webp::drawFrame(int frameNr,
272         Color8888* outputPtr, int outputPixelStride, int previousFrameNr) {
273     WebPDemuxer* demux = mFrameSequence.getDemuxer();
274     ALOG_ASSERT(demux, "Cannot drawFrame, mDemux is NULL");
275 
276 #if WEBP_DEBUG
277     ALOGD("  drawFrame called for frame# %d, previous frame# %d", frameNr, previousFrameNr);
278 #endif
279 
280     const int canvasWidth = mFrameSequence.getWidth();
281     const int canvasHeight = mFrameSequence.getHeight();
282 
283     // Find the first frame to be decoded.
284     int start = max(previousFrameNr + 1, 0);
285     int earliestRequired = frameNr;
286     while (earliestRequired > start) {
287         if (mFrameSequence.isKeyFrame(earliestRequired)) {
288             start = earliestRequired;
289             break;
290         }
291         earliestRequired--;
292     }
293 
294     WebPIterator currIter;
295     WebPIterator prevIter;
296     int ok = WebPDemuxGetFrame(demux, start, &currIter);  // Get frame number 'start - 1'.
297     ALOG_ASSERT(ok, "Could not retrieve frame# %d", start - 1);
298 
299     // Use preserve buffer only if needed.
300     Color8888* prevBuffer = (frameNr == 0) ? outputPtr : mPreservedBuffer;
301     int prevStride = (frameNr == 0) ? outputPixelStride : canvasWidth;
302     Color8888* currBuffer = outputPtr;
303     int currStride = outputPixelStride;
304 
305     for (int i = start; i <= frameNr; i++) {
306         prevIter = currIter;
307         ok = WebPDemuxGetFrame(demux, i + 1, &currIter);  // Get ith frame.
308         ALOG_ASSERT(ok, "Could not retrieve frame# %d", i);
309 #if WEBP_DEBUG
310         ALOGD("      producing frame %d (has_alpha = %d, dispose = %s, blend = %s, duration = %d)",
311               i, currIter.has_alpha,
312               (currIter.dispose_method == WEBP_MUX_DISPOSE_NONE) ? "none" : "background",
313               (currIter.blend_method == WEBP_MUX_BLEND) ? "yes" : "no", currIter.duration);
314 #endif
315         // We swap the prev/curr buffers as we go.
316         Color8888* tmpBuffer = prevBuffer;
317         prevBuffer = currBuffer;
318         currBuffer = tmpBuffer;
319 
320         int tmpStride = prevStride;
321         prevStride = currStride;
322         currStride = tmpStride;
323 
324 #if WEBP_DEBUG
325         ALOGD("            prev = %p, curr = %p, out = %p, tmp = %p",
326               prevBuffer, currBuffer, outputPtr, mPreservedBuffer);
327 #endif
328         // Process this frame.
329         initializeFrame(currIter, currBuffer, currStride, prevIter, prevBuffer, prevStride);
330 
331         if (i == frameNr || !willBeCleared(currIter)) {
332             if (!decodeFrame(currIter, currBuffer, currStride, prevIter, prevBuffer, prevStride)) {
333                 ALOGE("Error decoding frame# %d", i);
334                 return -1;
335             }
336         }
337     }
338 
339     if (outputPtr != currBuffer) {
340         copyFrame(currBuffer, currStride, outputPtr, outputPixelStride, canvasWidth, canvasHeight);
341     }
342 
343     // Return last frame's delay.
344     const int frameCount = mFrameSequence.getFrameCount();
345     const int lastFrame = (frameNr + frameCount - 1) % frameCount;
346     ok = WebPDemuxGetFrame(demux, lastFrame, &currIter);
347     ALOG_ASSERT(ok, "Could not retrieve frame# %d", lastFrame - 1);
348     const int lastFrameDelay = currIter.duration;
349 
350     WebPDemuxReleaseIterator(&currIter);
351     WebPDemuxReleaseIterator(&prevIter);
352 
353     return lastFrameDelay;
354 }
355 
356 ////////////////////////////////////////////////////////////////////////////////
357 // Registry
358 ////////////////////////////////////////////////////////////////////////////////
359 
360 #include "Registry.h"
361 
isWebP(void * header,int header_size)362 static bool isWebP(void* header, int header_size) {
363     const uint8_t* const header_str = (const uint8_t*)header;
364     return (header_size >= RIFF_HEADER_SIZE) &&
365             !memcmp("RIFF", header_str, 4) &&
366             !memcmp("WEBP", header_str + 8, 4);
367 }
368 
createFramesequence(Stream * stream)369 static FrameSequence* createFramesequence(Stream* stream) {
370     return new FrameSequence_webp(stream);
371 }
372 
373 static RegistryEntry gEntry = {
374         RIFF_HEADER_SIZE,
375         isWebP,
376         createFramesequence,
377         NULL,
378 };
379 static Registry gRegister(gEntry);
380 
381