FrameSequence_webp.cpp revision 0b33dbff239b2ed7c6f5472151b9255012d478f4
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
31static 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.
36static 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).
41static 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.
50void 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
87FrameSequence_webp::FrameSequence_webp(Stream* stream)
88        : mDemux(NULL)
89        , mIsKeyFrame(NULL)
90        , mRawByteBuffer(NULL) {
91    if (stream->getRawBuffer() != NULL) {
92        mData.size = stream->getRawBufferSize();
93        mData.bytes = stream->getRawBufferAddr();
94        mRawByteBuffer = stream->getRawBuffer();
95    } else {
96        // Read RIFF header to get file size.
97        uint8_t riff_header[RIFF_HEADER_SIZE];
98        if (stream->read(riff_header, RIFF_HEADER_SIZE) != RIFF_HEADER_SIZE) {
99            ALOGE("WebP header load failed");
100            return;
101        }
102        uint32_t readSize = GetLE32(riff_header + TAG_SIZE);
103        if (readSize > MAX_CHUNK_PAYLOAD) {
104            ALOGE("WebP got header size too large");
105            return;
106        }
107        mData.size = CHUNK_HEADER_SIZE + readSize;
108        mData.bytes = new uint8_t[mData.size];
109        memcpy((void*)mData.bytes, riff_header, RIFF_HEADER_SIZE);
110
111        // Read rest of the bytes.
112        void* remaining_bytes = (void*)(mData.bytes + RIFF_HEADER_SIZE);
113        size_t remaining_size = mData.size - RIFF_HEADER_SIZE;
114        if (stream->read(remaining_bytes, remaining_size) != remaining_size) {
115            ALOGE("WebP full load failed");
116            return;
117        }
118    }
119
120    // Construct demux.
121    mDemux = WebPDemux(&mData);
122    if (!mDemux) {
123        ALOGE("Parsing of WebP container file failed");
124        return;
125    }
126    mLoopCount = WebPDemuxGetI(mDemux, WEBP_FF_LOOP_COUNT);
127    mFormatFlags = WebPDemuxGetI(mDemux, WEBP_FF_FORMAT_FLAGS);
128#if WEBP_DEBUG
129    ALOGD("FrameSequence_webp created with size = %d x %d, number of frames = %d, flags = 0x%X",
130          getWidth(), getHeight(), getFrameCount(), mFormatFlags);
131#endif
132    constructDependencyChain();
133}
134
135FrameSequence_webp::~FrameSequence_webp() {
136    WebPDemuxDelete(mDemux);
137    delete[] mIsKeyFrame;
138    if (mRawByteBuffer == NULL) {
139        delete[] mData.bytes;
140    }
141}
142
143FrameSequenceState* FrameSequence_webp::createState() const {
144    return new FrameSequenceState_webp(*this);
145}
146
147////////////////////////////////////////////////////////////////////////////////
148// draw helpers
149////////////////////////////////////////////////////////////////////////////////
150
151static bool willBeCleared(const WebPIterator& iter) {
152    return iter.dispose_method == WEBP_MUX_DISPOSE_BACKGROUND;
153}
154
155// return true if area of 'target' completely covers area of 'covered'
156static bool checkIfCover(const WebPIterator& target, const WebPIterator& covered) {
157    const int covered_x_max = covered.x_offset + covered.width;
158    const int target_x_max = target.x_offset + target.width;
159    const int covered_y_max = covered.y_offset + covered.height;
160    const int target_y_max = target.y_offset + target.height;
161    return target.x_offset <= covered.x_offset
162           && covered_x_max <= target_x_max
163           && target.y_offset <= covered.y_offset
164           && covered_y_max <= target_y_max;
165}
166
167// Clear all pixels in a line to transparent.
168static void clearLine(Color8888* dst, int width) {
169    memset(dst, 0, width * sizeof(*dst));  // Note: Assumes TRANSPARENT == 0x0.
170}
171
172// Copy all pixels from 'src' to 'dst'.
173static void copyFrame(const Color8888* src, int srcStride, Color8888* dst, int dstStride,
174        int width, int height) {
175    for (int y = 0; y < height; y++) {
176        memcpy(dst, src, width * sizeof(*dst));
177        src += srcStride;
178        dst += dstStride;
179    }
180}
181
182////////////////////////////////////////////////////////////////////////////////
183// Frame sequence state
184////////////////////////////////////////////////////////////////////////////////
185
186FrameSequenceState_webp::FrameSequenceState_webp(const FrameSequence_webp& frameSequence) :
187        mFrameSequence(frameSequence) {
188    WebPInitDecoderConfig(&mDecoderConfig);
189    mDecoderConfig.output.is_external_memory = 1;
190    mDecoderConfig.output.colorspace = MODE_rgbA;  // Pre-multiplied alpha mode.
191    const int canvasWidth = mFrameSequence.getWidth();
192    const int canvasHeight = mFrameSequence.getHeight();
193    mPreservedBuffer = new Color8888[canvasWidth * canvasHeight];
194}
195
196FrameSequenceState_webp::~FrameSequenceState_webp() {
197    delete[] mPreservedBuffer;
198}
199
200void FrameSequenceState_webp::initializeFrame(const WebPIterator& currIter, Color8888* currBuffer,
201        int currStride, const WebPIterator& prevIter, const Color8888* prevBuffer, int prevStride) {
202    const int canvasWidth = mFrameSequence.getWidth();
203    const int canvasHeight = mFrameSequence.getHeight();
204    const bool currFrameIsKeyFrame = mFrameSequence.isKeyFrame(currIter.frame_num - 1);
205
206    if (currFrameIsKeyFrame) {  // Clear canvas.
207        for (int y = 0; y < canvasHeight; y++) {
208            Color8888* dst = currBuffer + y * currStride;
209            clearLine(dst, canvasWidth);
210        }
211    } else {
212        // Preserve previous frame as starting state of current frame.
213        copyFrame(prevBuffer, prevStride, currBuffer, currStride, canvasWidth, canvasHeight);
214
215        // Dispose previous frame rectangle to Background if needed.
216        bool prevFrameCompletelyCovered =
217                (!currIter.has_alpha || currIter.blend_method == WEBP_MUX_NO_BLEND) &&
218                checkIfCover(currIter, prevIter);
219        if ((prevIter.dispose_method == WEBP_MUX_DISPOSE_BACKGROUND) &&
220                !prevFrameCompletelyCovered) {
221            Color8888* dst = currBuffer + prevIter.x_offset + prevIter.y_offset * currStride;
222            for (int j = 0; j < prevIter.height; j++) {
223                clearLine(dst, prevIter.width);
224                dst += currStride;
225            }
226        }
227    }
228}
229
230bool FrameSequenceState_webp::decodeFrame(const WebPIterator& currIter, Color8888* currBuffer,
231        int currStride, const WebPIterator& prevIter, const Color8888* prevBuffer, int prevStride) {
232    Color8888* dst = currBuffer + currIter.x_offset + currIter.y_offset * currStride;
233    mDecoderConfig.output.u.RGBA.rgba = (uint8_t*)dst;
234    mDecoderConfig.output.u.RGBA.stride = currStride * 4;
235    mDecoderConfig.output.u.RGBA.size = mDecoderConfig.output.u.RGBA.stride * currIter.height;
236
237    const WebPData& currFrame = currIter.fragment;
238    if (WebPDecode(currFrame.bytes, currFrame.size, &mDecoderConfig) != VP8_STATUS_OK) {
239        return false;
240    }
241
242    const int canvasWidth = mFrameSequence.getWidth();
243    const int canvasHeight = mFrameSequence.getHeight();
244    const bool currFrameIsKeyFrame = mFrameSequence.isKeyFrame(currIter.frame_num - 1);
245    // During the decoding of current frame, we may have set some pixels to be transparent
246    // (i.e. alpha < 255). However, the value of each of these pixels should have been determined
247    // by blending it against the value of that pixel in the previous frame if WEBP_MUX_BLEND was
248    // specified. So, we correct these pixels based on disposal method of the previous frame and
249    // the previous frame buffer.
250    if (currIter.blend_method == WEBP_MUX_BLEND && !currFrameIsKeyFrame) {
251        if (prevIter.dispose_method == WEBP_MUX_DISPOSE_NONE) {
252            for (int y = 0; y < currIter.height; y++) {
253                const int canvasY = currIter.y_offset + y;
254                for (int x = 0; x < currIter.width; x++) {
255                    const int canvasX = currIter.x_offset + x;
256                    Color8888& currPixel = currBuffer[canvasY * currStride + canvasX];
257                    // FIXME: Use alpha-blending when alpha is between 0 and 255.
258                    if (!(currPixel & COLOR_8888_ALPHA_MASK)) {
259                        const Color8888 prevPixel = prevBuffer[canvasY * prevStride + canvasX];
260                        currPixel = prevPixel;
261                    }
262                }
263            }
264        } else {  // prevIter.dispose_method == WEBP_MUX_DISPOSE_BACKGROUND
265            // Need to restore transparent pixels to as they were just after frame initialization.
266            // That is:
267            //   * Transparent if it belongs to previous frame rectangle <-- This is a no-op.
268            //   * Pixel in the previous canvas otherwise <-- Need to restore.
269            for (int y = 0; y < currIter.height; y++) {
270                const int canvasY = currIter.y_offset + y;
271                for (int x = 0; x < currIter.width; x++) {
272                    const int canvasX = currIter.x_offset + x;
273                    Color8888& currPixel = currBuffer[canvasY * currStride + canvasX];
274                    // FIXME: Use alpha-blending when alpha is between 0 and 255.
275                    if (!(currPixel & COLOR_8888_ALPHA_MASK)
276                            && !FrameContainsPixel(prevIter, canvasX, canvasY)) {
277                        const Color8888 prevPixel = prevBuffer[canvasY * prevStride + canvasX];
278                        currPixel = prevPixel;
279                    }
280                }
281            }
282        }
283    }
284    return true;
285}
286
287long FrameSequenceState_webp::drawFrame(int frameNr,
288        Color8888* outputPtr, int outputPixelStride, int previousFrameNr) {
289    WebPDemuxer* demux = mFrameSequence.getDemuxer();
290    ALOG_ASSERT(demux, "Cannot drawFrame, mDemux is NULL");
291
292#if WEBP_DEBUG
293    ALOGD("  drawFrame called for frame# %d, previous frame# %d", frameNr, previousFrameNr);
294#endif
295
296    const int canvasWidth = mFrameSequence.getWidth();
297    const int canvasHeight = mFrameSequence.getHeight();
298
299    // Find the first frame to be decoded.
300    int start = max(previousFrameNr + 1, 0);
301    int earliestRequired = frameNr;
302    while (earliestRequired > start) {
303        if (mFrameSequence.isKeyFrame(earliestRequired)) {
304            start = earliestRequired;
305            break;
306        }
307        earliestRequired--;
308    }
309
310    WebPIterator currIter;
311    WebPIterator prevIter;
312    int ok = WebPDemuxGetFrame(demux, start, &currIter);  // Get frame number 'start - 1'.
313    ALOG_ASSERT(ok, "Could not retrieve frame# %d", start - 1);
314
315    // Use preserve buffer only if needed.
316    Color8888* prevBuffer = (frameNr == 0) ? outputPtr : mPreservedBuffer;
317    int prevStride = (frameNr == 0) ? outputPixelStride : canvasWidth;
318    Color8888* currBuffer = outputPtr;
319    int currStride = outputPixelStride;
320
321    for (int i = start; i <= frameNr; i++) {
322        prevIter = currIter;
323        ok = WebPDemuxGetFrame(demux, i + 1, &currIter);  // Get ith frame.
324        ALOG_ASSERT(ok, "Could not retrieve frame# %d", i);
325#if WEBP_DEBUG
326        ALOGD("      producing frame %d (has_alpha = %d, dispose = %s, blend = %s, duration = %d)",
327              i, currIter.has_alpha,
328              (currIter.dispose_method == WEBP_MUX_DISPOSE_NONE) ? "none" : "background",
329              (currIter.blend_method == WEBP_MUX_BLEND) ? "yes" : "no", currIter.duration);
330#endif
331        // We swap the prev/curr buffers as we go.
332        Color8888* tmpBuffer = prevBuffer;
333        prevBuffer = currBuffer;
334        currBuffer = tmpBuffer;
335
336        int tmpStride = prevStride;
337        prevStride = currStride;
338        currStride = tmpStride;
339
340#if WEBP_DEBUG
341        ALOGD("            prev = %p, curr = %p, out = %p, tmp = %p",
342              prevBuffer, currBuffer, outputPtr, mPreservedBuffer);
343#endif
344        // Process this frame.
345        initializeFrame(currIter, currBuffer, currStride, prevIter, prevBuffer, prevStride);
346
347        if (i == frameNr || !willBeCleared(currIter)) {
348            if (!decodeFrame(currIter, currBuffer, currStride, prevIter, prevBuffer, prevStride)) {
349                ALOGE("Error decoding frame# %d", i);
350                return -1;
351            }
352        }
353    }
354
355    if (outputPtr != currBuffer) {
356        copyFrame(currBuffer, currStride, outputPtr, outputPixelStride, canvasWidth, canvasHeight);
357    }
358
359    // Return last frame's delay.
360    const int frameCount = mFrameSequence.getFrameCount();
361    const int lastFrame = (frameNr + frameCount - 1) % frameCount;
362    ok = WebPDemuxGetFrame(demux, lastFrame + 1, &currIter);
363    ALOG_ASSERT(ok, "Could not retrieve frame# %d", lastFrame);
364    const int lastFrameDelay = currIter.duration;
365
366    WebPDemuxReleaseIterator(&currIter);
367    WebPDemuxReleaseIterator(&prevIter);
368
369    return lastFrameDelay;
370}
371
372////////////////////////////////////////////////////////////////////////////////
373// Registry
374////////////////////////////////////////////////////////////////////////////////
375
376#include "Registry.h"
377
378static bool isWebP(void* header, int header_size) {
379    const uint8_t* const header_str = (const uint8_t*)header;
380    return (header_size >= RIFF_HEADER_SIZE) &&
381            !memcmp("RIFF", header_str, 4) &&
382            !memcmp("WEBP", header_str + 8, 4);
383}
384
385static bool acceptsWebPBuffer() {
386    return true;
387}
388
389static FrameSequence* createFramesequence(Stream* stream) {
390    return new FrameSequence_webp(stream);
391}
392
393static RegistryEntry gEntry = {
394        RIFF_HEADER_SIZE,
395        isWebP,
396        createFramesequence,
397        NULL,
398        acceptsWebPBuffer,
399};
400static Registry gRegister(gEntry);
401
402