1 // Copyright 2011 Google Inc. All Rights Reserved.
2 //
3 // Use of this source code is governed by a BSD-style license
4 // that can be found in the COPYING file in the root of the source
5 // tree. An additional intellectual property rights grant can be found
6 // in the file PATENTS. All contributing project authors may
7 // be found in the AUTHORS file in the root of the source tree.
8 // -----------------------------------------------------------------------------
9 //
10 // Read APIs for mux.
11 //
12 // Authors: Urvang ([email protected])
13 // Vikas ([email protected])
14
15 #include <assert.h>
16 #include "src/mux/muxi.h"
17 #include "src/utils/utils.h"
18
19 //------------------------------------------------------------------------------
20 // Helper method(s).
21
22 // Handy MACRO.
23 #define SWITCH_ID_LIST(INDEX, LIST) \
24 do { \
25 if (idx == (INDEX)) { \
26 const WebPChunk* const chunk = ChunkSearchList((LIST), nth, \
27 kChunks[(INDEX)].tag); \
28 if (chunk) { \
29 *data = chunk->data_; \
30 return WEBP_MUX_OK; \
31 } else { \
32 return WEBP_MUX_NOT_FOUND; \
33 } \
34 } \
35 } while (0)
36
MuxGet(const WebPMux * const mux,CHUNK_INDEX idx,uint32_t nth,WebPData * const data)37 static WebPMuxError MuxGet(const WebPMux* const mux, CHUNK_INDEX idx,
38 uint32_t nth, WebPData* const data) {
39 assert(mux != NULL);
40 assert(idx != IDX_LAST_CHUNK);
41 assert(!IsWPI(kChunks[idx].id));
42 WebPDataInit(data);
43
44 SWITCH_ID_LIST(IDX_VP8X, mux->vp8x_);
45 SWITCH_ID_LIST(IDX_ICCP, mux->iccp_);
46 SWITCH_ID_LIST(IDX_ANIM, mux->anim_);
47 SWITCH_ID_LIST(IDX_EXIF, mux->exif_);
48 SWITCH_ID_LIST(IDX_XMP, mux->xmp_);
49 assert(idx != IDX_UNKNOWN);
50 return WEBP_MUX_NOT_FOUND;
51 }
52 #undef SWITCH_ID_LIST
53
54 // Fill the chunk with the given data (includes chunk header bytes), after some
55 // verifications.
ChunkVerifyAndAssign(WebPChunk * chunk,const uint8_t * data,size_t data_size,size_t riff_size,int copy_data)56 static WebPMuxError ChunkVerifyAndAssign(WebPChunk* chunk,
57 const uint8_t* data, size_t data_size,
58 size_t riff_size, int copy_data) {
59 uint32_t chunk_size;
60 WebPData chunk_data;
61
62 // Correctness checks.
63 if (data_size < CHUNK_HEADER_SIZE) return WEBP_MUX_NOT_ENOUGH_DATA;
64 chunk_size = GetLE32(data + TAG_SIZE);
65 if (chunk_size > MAX_CHUNK_PAYLOAD) return WEBP_MUX_BAD_DATA;
66
67 {
68 const size_t chunk_disk_size = SizeWithPadding(chunk_size);
69 if (chunk_disk_size > riff_size) return WEBP_MUX_BAD_DATA;
70 if (chunk_disk_size > data_size) return WEBP_MUX_NOT_ENOUGH_DATA;
71 }
72
73 // Data assignment.
74 chunk_data.bytes = data + CHUNK_HEADER_SIZE;
75 chunk_data.size = chunk_size;
76 return ChunkAssignData(chunk, &chunk_data, copy_data, GetLE32(data + 0));
77 }
78
MuxImageFinalize(WebPMuxImage * const wpi)79 int MuxImageFinalize(WebPMuxImage* const wpi) {
80 const WebPChunk* const img = wpi->img_;
81 const WebPData* const image = &img->data_;
82 const int is_lossless = (img->tag_ == kChunks[IDX_VP8L].tag);
83 int w, h;
84 int vp8l_has_alpha = 0;
85 const int ok = is_lossless ?
86 VP8LGetInfo(image->bytes, image->size, &w, &h, &vp8l_has_alpha) :
87 VP8GetInfo(image->bytes, image->size, image->size, &w, &h);
88 assert(img != NULL);
89 if (ok) {
90 // Ignore ALPH chunk accompanying VP8L.
91 if (is_lossless && (wpi->alpha_ != NULL)) {
92 ChunkDelete(wpi->alpha_);
93 wpi->alpha_ = NULL;
94 }
95 wpi->width_ = w;
96 wpi->height_ = h;
97 wpi->has_alpha_ = vp8l_has_alpha || (wpi->alpha_ != NULL);
98 }
99 return ok;
100 }
101
MuxImageParse(const WebPChunk * const chunk,int copy_data,WebPMuxImage * const wpi)102 static int MuxImageParse(const WebPChunk* const chunk, int copy_data,
103 WebPMuxImage* const wpi) {
104 const uint8_t* bytes = chunk->data_.bytes;
105 size_t size = chunk->data_.size;
106 const uint8_t* const last = (bytes == NULL) ? NULL : bytes + size;
107 WebPChunk subchunk;
108 size_t subchunk_size;
109 WebPChunk** unknown_chunk_list = &wpi->unknown_;
110 ChunkInit(&subchunk);
111
112 assert(chunk->tag_ == kChunks[IDX_ANMF].tag);
113 assert(!wpi->is_partial_);
114
115 // ANMF.
116 {
117 const size_t hdr_size = ANMF_CHUNK_SIZE;
118 const WebPData temp = { bytes, hdr_size };
119 // Each of ANMF chunk contain a header at the beginning. So, its size should
120 // be at least 'hdr_size'.
121 if (size < hdr_size) goto Fail;
122 if (ChunkAssignData(&subchunk, &temp, copy_data,
123 chunk->tag_) != WEBP_MUX_OK) {
124 goto Fail;
125 }
126 }
127 if (ChunkSetHead(&subchunk, &wpi->header_) != WEBP_MUX_OK) goto Fail;
128 wpi->is_partial_ = 1; // Waiting for ALPH and/or VP8/VP8L chunks.
129
130 // Rest of the chunks.
131 subchunk_size = ChunkDiskSize(&subchunk) - CHUNK_HEADER_SIZE;
132 bytes += subchunk_size;
133 size -= subchunk_size;
134
135 while (bytes != last) {
136 ChunkInit(&subchunk);
137 if (ChunkVerifyAndAssign(&subchunk, bytes, size, size,
138 copy_data) != WEBP_MUX_OK) {
139 goto Fail;
140 }
141 switch (ChunkGetIdFromTag(subchunk.tag_)) {
142 case WEBP_CHUNK_ALPHA:
143 if (wpi->alpha_ != NULL) goto Fail; // Consecutive ALPH chunks.
144 if (ChunkSetHead(&subchunk, &wpi->alpha_) != WEBP_MUX_OK) goto Fail;
145 wpi->is_partial_ = 1; // Waiting for a VP8 chunk.
146 break;
147 case WEBP_CHUNK_IMAGE:
148 if (wpi->img_ != NULL) goto Fail; // Only 1 image chunk allowed.
149 if (ChunkSetHead(&subchunk, &wpi->img_) != WEBP_MUX_OK) goto Fail;
150 if (!MuxImageFinalize(wpi)) goto Fail;
151 wpi->is_partial_ = 0; // wpi is completely filled.
152 break;
153 case WEBP_CHUNK_UNKNOWN:
154 if (wpi->is_partial_) {
155 goto Fail; // Encountered an unknown chunk
156 // before some image chunks.
157 }
158 if (ChunkAppend(&subchunk, &unknown_chunk_list) != WEBP_MUX_OK) {
159 goto Fail;
160 }
161 break;
162 default:
163 goto Fail;
164 }
165 subchunk_size = ChunkDiskSize(&subchunk);
166 bytes += subchunk_size;
167 size -= subchunk_size;
168 }
169 if (wpi->is_partial_) goto Fail;
170 return 1;
171
172 Fail:
173 ChunkRelease(&subchunk);
174 return 0;
175 }
176
177 //------------------------------------------------------------------------------
178 // Create a mux object from WebP-RIFF data.
179
WebPMuxCreateInternal(const WebPData * bitstream,int copy_data,int version)180 WebPMux* WebPMuxCreateInternal(const WebPData* bitstream, int copy_data,
181 int version) {
182 size_t riff_size;
183 uint32_t tag;
184 const uint8_t* end;
185 WebPMux* mux = NULL;
186 WebPMuxImage* wpi = NULL;
187 const uint8_t* data;
188 size_t size;
189 WebPChunk chunk;
190 // Stores the end of the chunk lists so that it is faster to append data to
191 // their ends.
192 WebPChunk** chunk_list_ends[WEBP_CHUNK_NIL + 1] = { NULL };
193 ChunkInit(&chunk);
194
195 if (WEBP_ABI_IS_INCOMPATIBLE(version, WEBP_MUX_ABI_VERSION)) {
196 return NULL; // version mismatch
197 }
198 if (bitstream == NULL) return NULL;
199
200 data = bitstream->bytes;
201 size = bitstream->size;
202
203 if (data == NULL) return NULL;
204 if (size < RIFF_HEADER_SIZE + CHUNK_HEADER_SIZE) return NULL;
205 if (GetLE32(data + 0) != MKFOURCC('R', 'I', 'F', 'F') ||
206 GetLE32(data + CHUNK_HEADER_SIZE) != MKFOURCC('W', 'E', 'B', 'P')) {
207 return NULL;
208 }
209
210 mux = WebPMuxNew();
211 if (mux == NULL) return NULL;
212
213 tag = GetLE32(data + RIFF_HEADER_SIZE);
214 if (tag != kChunks[IDX_VP8].tag &&
215 tag != kChunks[IDX_VP8L].tag &&
216 tag != kChunks[IDX_VP8X].tag) {
217 goto Err; // First chunk should be VP8, VP8L or VP8X.
218 }
219
220 riff_size = GetLE32(data + TAG_SIZE);
221 if (riff_size > MAX_CHUNK_PAYLOAD) goto Err;
222
223 // Note this padding is historical and differs from demux.c which does not
224 // pad the file size.
225 riff_size = SizeWithPadding(riff_size);
226 if (riff_size < CHUNK_HEADER_SIZE) goto Err;
227 if (riff_size > size) goto Err;
228 // There's no point in reading past the end of the RIFF chunk.
229 if (size > riff_size + CHUNK_HEADER_SIZE) {
230 size = riff_size + CHUNK_HEADER_SIZE;
231 }
232
233 end = data + size;
234 data += RIFF_HEADER_SIZE;
235 size -= RIFF_HEADER_SIZE;
236
237 wpi = (WebPMuxImage*)WebPSafeMalloc(1ULL, sizeof(*wpi));
238 if (wpi == NULL) goto Err;
239 MuxImageInit(wpi);
240
241 // Loop over chunks.
242 while (data != end) {
243 size_t data_size;
244 WebPChunkId id;
245 if (ChunkVerifyAndAssign(&chunk, data, size, riff_size,
246 copy_data) != WEBP_MUX_OK) {
247 goto Err;
248 }
249 data_size = ChunkDiskSize(&chunk);
250 id = ChunkGetIdFromTag(chunk.tag_);
251 switch (id) {
252 case WEBP_CHUNK_ALPHA:
253 if (wpi->alpha_ != NULL) goto Err; // Consecutive ALPH chunks.
254 if (ChunkSetHead(&chunk, &wpi->alpha_) != WEBP_MUX_OK) goto Err;
255 wpi->is_partial_ = 1; // Waiting for a VP8 chunk.
256 break;
257 case WEBP_CHUNK_IMAGE:
258 if (ChunkSetHead(&chunk, &wpi->img_) != WEBP_MUX_OK) goto Err;
259 if (!MuxImageFinalize(wpi)) goto Err;
260 wpi->is_partial_ = 0; // wpi is completely filled.
261 PushImage:
262 // Add this to mux->images_ list.
263 if (MuxImagePush(wpi, &mux->images_) != WEBP_MUX_OK) goto Err;
264 MuxImageInit(wpi); // Reset for reading next image.
265 break;
266 case WEBP_CHUNK_ANMF:
267 if (wpi->is_partial_) goto Err; // Previous wpi is still incomplete.
268 if (!MuxImageParse(&chunk, copy_data, wpi)) goto Err;
269 ChunkRelease(&chunk);
270 goto PushImage;
271 default: // A non-image chunk.
272 if (wpi->is_partial_) goto Err; // Encountered a non-image chunk before
273 // getting all chunks of an image.
274 if (chunk_list_ends[id] == NULL) {
275 chunk_list_ends[id] =
276 MuxGetChunkListFromId(mux, id); // List to add this chunk.
277 }
278 if (ChunkAppend(&chunk, &chunk_list_ends[id]) != WEBP_MUX_OK) goto Err;
279 if (id == WEBP_CHUNK_VP8X) { // grab global specs
280 if (data_size < CHUNK_HEADER_SIZE + VP8X_CHUNK_SIZE) goto Err;
281 mux->canvas_width_ = GetLE24(data + 12) + 1;
282 mux->canvas_height_ = GetLE24(data + 15) + 1;
283 }
284 break;
285 }
286 data += data_size;
287 size -= data_size;
288 ChunkInit(&chunk);
289 }
290
291 // Incomplete image.
292 if (wpi->is_partial_) goto Err;
293
294 // Validate mux if complete.
295 if (MuxValidate(mux) != WEBP_MUX_OK) goto Err;
296
297 MuxImageDelete(wpi);
298 return mux; // All OK;
299
300 Err: // Something bad happened.
301 ChunkRelease(&chunk);
302 MuxImageDelete(wpi);
303 WebPMuxDelete(mux);
304 return NULL;
305 }
306
307 //------------------------------------------------------------------------------
308 // Get API(s).
309
310 // Validates that the given mux has a single image.
ValidateForSingleImage(const WebPMux * const mux)311 static WebPMuxError ValidateForSingleImage(const WebPMux* const mux) {
312 const int num_images = MuxImageCount(mux->images_, WEBP_CHUNK_IMAGE);
313 const int num_frames = MuxImageCount(mux->images_, WEBP_CHUNK_ANMF);
314
315 if (num_images == 0) {
316 // No images in mux.
317 return WEBP_MUX_NOT_FOUND;
318 } else if (num_images == 1 && num_frames == 0) {
319 // Valid case (single image).
320 return WEBP_MUX_OK;
321 } else {
322 // Frame case OR an invalid mux.
323 return WEBP_MUX_INVALID_ARGUMENT;
324 }
325 }
326
327 // Get the canvas width, height and flags after validating that VP8X/VP8/VP8L
328 // chunk and canvas size are valid.
MuxGetCanvasInfo(const WebPMux * const mux,int * width,int * height,uint32_t * flags)329 static WebPMuxError MuxGetCanvasInfo(const WebPMux* const mux,
330 int* width, int* height, uint32_t* flags) {
331 int w, h;
332 uint32_t f = 0;
333 WebPData data;
334 assert(mux != NULL);
335
336 // Check if VP8X chunk is present.
337 if (MuxGet(mux, IDX_VP8X, 1, &data) == WEBP_MUX_OK) {
338 if (data.size < VP8X_CHUNK_SIZE) return WEBP_MUX_BAD_DATA;
339 f = GetLE32(data.bytes + 0);
340 w = GetLE24(data.bytes + 4) + 1;
341 h = GetLE24(data.bytes + 7) + 1;
342 } else {
343 const WebPMuxImage* const wpi = mux->images_;
344 // Grab user-forced canvas size as default.
345 w = mux->canvas_width_;
346 h = mux->canvas_height_;
347 if (w == 0 && h == 0 && ValidateForSingleImage(mux) == WEBP_MUX_OK) {
348 // single image and not forced canvas size => use dimension of first frame
349 assert(wpi != NULL);
350 w = wpi->width_;
351 h = wpi->height_;
352 }
353 if (wpi != NULL) {
354 if (wpi->has_alpha_) f |= ALPHA_FLAG;
355 }
356 }
357 if (w * (uint64_t)h >= MAX_IMAGE_AREA) return WEBP_MUX_BAD_DATA;
358
359 if (width != NULL) *width = w;
360 if (height != NULL) *height = h;
361 if (flags != NULL) *flags = f;
362 return WEBP_MUX_OK;
363 }
364
WebPMuxGetCanvasSize(const WebPMux * mux,int * width,int * height)365 WebPMuxError WebPMuxGetCanvasSize(const WebPMux* mux, int* width, int* height) {
366 if (mux == NULL || width == NULL || height == NULL) {
367 return WEBP_MUX_INVALID_ARGUMENT;
368 }
369 return MuxGetCanvasInfo(mux, width, height, NULL);
370 }
371
WebPMuxGetFeatures(const WebPMux * mux,uint32_t * flags)372 WebPMuxError WebPMuxGetFeatures(const WebPMux* mux, uint32_t* flags) {
373 if (mux == NULL || flags == NULL) return WEBP_MUX_INVALID_ARGUMENT;
374 return MuxGetCanvasInfo(mux, NULL, NULL, flags);
375 }
376
EmitVP8XChunk(uint8_t * const dst,int width,int height,uint32_t flags)377 static uint8_t* EmitVP8XChunk(uint8_t* const dst, int width,
378 int height, uint32_t flags) {
379 const size_t vp8x_size = CHUNK_HEADER_SIZE + VP8X_CHUNK_SIZE;
380 assert(width >= 1 && height >= 1);
381 assert(width <= MAX_CANVAS_SIZE && height <= MAX_CANVAS_SIZE);
382 assert(width * (uint64_t)height < MAX_IMAGE_AREA);
383 PutLE32(dst, MKFOURCC('V', 'P', '8', 'X'));
384 PutLE32(dst + TAG_SIZE, VP8X_CHUNK_SIZE);
385 PutLE32(dst + CHUNK_HEADER_SIZE, flags);
386 PutLE24(dst + CHUNK_HEADER_SIZE + 4, width - 1);
387 PutLE24(dst + CHUNK_HEADER_SIZE + 7, height - 1);
388 return dst + vp8x_size;
389 }
390
391 // Assemble a single image WebP bitstream from 'wpi'.
SynthesizeBitstream(const WebPMuxImage * const wpi,WebPData * const bitstream)392 static WebPMuxError SynthesizeBitstream(const WebPMuxImage* const wpi,
393 WebPData* const bitstream) {
394 uint8_t* dst;
395
396 // Allocate data.
397 const int need_vp8x = (wpi->alpha_ != NULL);
398 const size_t vp8x_size = need_vp8x ? CHUNK_HEADER_SIZE + VP8X_CHUNK_SIZE : 0;
399 const size_t alpha_size = need_vp8x ? ChunkDiskSize(wpi->alpha_) : 0;
400 // Note: No need to output ANMF chunk for a single image.
401 const size_t size = RIFF_HEADER_SIZE + vp8x_size + alpha_size +
402 ChunkDiskSize(wpi->img_);
403 uint8_t* const data = (uint8_t*)WebPSafeMalloc(1ULL, size);
404 if (data == NULL) return WEBP_MUX_MEMORY_ERROR;
405
406 // There should be at most one alpha_ chunk and exactly one img_ chunk.
407 assert(wpi->alpha_ == NULL || wpi->alpha_->next_ == NULL);
408 assert(wpi->img_ != NULL && wpi->img_->next_ == NULL);
409
410 // Main RIFF header.
411 dst = MuxEmitRiffHeader(data, size);
412
413 if (need_vp8x) {
414 dst = EmitVP8XChunk(dst, wpi->width_, wpi->height_, ALPHA_FLAG); // VP8X.
415 dst = ChunkListEmit(wpi->alpha_, dst); // ALPH.
416 }
417
418 // Bitstream.
419 dst = ChunkListEmit(wpi->img_, dst);
420 assert(dst == data + size);
421
422 // Output.
423 bitstream->bytes = data;
424 bitstream->size = size;
425 return WEBP_MUX_OK;
426 }
427
WebPMuxGetChunk(const WebPMux * mux,const char fourcc[4],WebPData * chunk_data)428 WebPMuxError WebPMuxGetChunk(const WebPMux* mux, const char fourcc[4],
429 WebPData* chunk_data) {
430 CHUNK_INDEX idx;
431 if (mux == NULL || fourcc == NULL || chunk_data == NULL) {
432 return WEBP_MUX_INVALID_ARGUMENT;
433 }
434 idx = ChunkGetIndexFromFourCC(fourcc);
435 assert(idx != IDX_LAST_CHUNK);
436 if (IsWPI(kChunks[idx].id)) { // An image chunk.
437 return WEBP_MUX_INVALID_ARGUMENT;
438 } else if (idx != IDX_UNKNOWN) { // A known chunk type.
439 return MuxGet(mux, idx, 1, chunk_data);
440 } else { // An unknown chunk type.
441 const WebPChunk* const chunk =
442 ChunkSearchList(mux->unknown_, 1, ChunkGetTagFromFourCC(fourcc));
443 if (chunk == NULL) return WEBP_MUX_NOT_FOUND;
444 *chunk_data = chunk->data_;
445 return WEBP_MUX_OK;
446 }
447 }
448
MuxGetImageInternal(const WebPMuxImage * const wpi,WebPMuxFrameInfo * const info)449 static WebPMuxError MuxGetImageInternal(const WebPMuxImage* const wpi,
450 WebPMuxFrameInfo* const info) {
451 // Set some defaults for unrelated fields.
452 info->x_offset = 0;
453 info->y_offset = 0;
454 info->duration = 1;
455 info->dispose_method = WEBP_MUX_DISPOSE_NONE;
456 info->blend_method = WEBP_MUX_BLEND;
457 // Extract data for related fields.
458 info->id = ChunkGetIdFromTag(wpi->img_->tag_);
459 return SynthesizeBitstream(wpi, &info->bitstream);
460 }
461
MuxGetFrameInternal(const WebPMuxImage * const wpi,WebPMuxFrameInfo * const frame)462 static WebPMuxError MuxGetFrameInternal(const WebPMuxImage* const wpi,
463 WebPMuxFrameInfo* const frame) {
464 const int is_frame = (wpi->header_->tag_ == kChunks[IDX_ANMF].tag);
465 const WebPData* frame_data;
466 if (!is_frame) return WEBP_MUX_INVALID_ARGUMENT;
467 assert(wpi->header_ != NULL); // Already checked by WebPMuxGetFrame().
468 // Get frame chunk.
469 frame_data = &wpi->header_->data_;
470 if (frame_data->size < kChunks[IDX_ANMF].size) return WEBP_MUX_BAD_DATA;
471 // Extract info.
472 frame->x_offset = 2 * GetLE24(frame_data->bytes + 0);
473 frame->y_offset = 2 * GetLE24(frame_data->bytes + 3);
474 {
475 const uint8_t bits = frame_data->bytes[15];
476 frame->duration = GetLE24(frame_data->bytes + 12);
477 frame->dispose_method =
478 (bits & 1) ? WEBP_MUX_DISPOSE_BACKGROUND : WEBP_MUX_DISPOSE_NONE;
479 frame->blend_method = (bits & 2) ? WEBP_MUX_NO_BLEND : WEBP_MUX_BLEND;
480 }
481 frame->id = ChunkGetIdFromTag(wpi->header_->tag_);
482 return SynthesizeBitstream(wpi, &frame->bitstream);
483 }
484
WebPMuxGetFrame(const WebPMux * mux,uint32_t nth,WebPMuxFrameInfo * frame)485 WebPMuxError WebPMuxGetFrame(
486 const WebPMux* mux, uint32_t nth, WebPMuxFrameInfo* frame) {
487 WebPMuxError err;
488 WebPMuxImage* wpi;
489
490 if (mux == NULL || frame == NULL) {
491 return WEBP_MUX_INVALID_ARGUMENT;
492 }
493
494 // Get the nth WebPMuxImage.
495 err = MuxImageGetNth((const WebPMuxImage**)&mux->images_, nth, &wpi);
496 if (err != WEBP_MUX_OK) return err;
497
498 // Get frame info.
499 if (wpi->header_ == NULL) {
500 return MuxGetImageInternal(wpi, frame);
501 } else {
502 return MuxGetFrameInternal(wpi, frame);
503 }
504 }
505
WebPMuxGetAnimationParams(const WebPMux * mux,WebPMuxAnimParams * params)506 WebPMuxError WebPMuxGetAnimationParams(const WebPMux* mux,
507 WebPMuxAnimParams* params) {
508 WebPData anim;
509 WebPMuxError err;
510
511 if (mux == NULL || params == NULL) return WEBP_MUX_INVALID_ARGUMENT;
512
513 err = MuxGet(mux, IDX_ANIM, 1, &anim);
514 if (err != WEBP_MUX_OK) return err;
515 if (anim.size < kChunks[WEBP_CHUNK_ANIM].size) return WEBP_MUX_BAD_DATA;
516 params->bgcolor = GetLE32(anim.bytes);
517 params->loop_count = GetLE16(anim.bytes + 4);
518
519 return WEBP_MUX_OK;
520 }
521
522 // Get chunk index from chunk id. Returns IDX_NIL if not found.
ChunkGetIndexFromId(WebPChunkId id)523 static CHUNK_INDEX ChunkGetIndexFromId(WebPChunkId id) {
524 int i;
525 for (i = 0; kChunks[i].id != WEBP_CHUNK_NIL; ++i) {
526 if (id == kChunks[i].id) return (CHUNK_INDEX)i;
527 }
528 return IDX_NIL;
529 }
530
531 // Count number of chunks matching 'tag' in the 'chunk_list'.
532 // If tag == NIL_TAG, any tag will be matched.
CountChunks(const WebPChunk * const chunk_list,uint32_t tag)533 static int CountChunks(const WebPChunk* const chunk_list, uint32_t tag) {
534 int count = 0;
535 const WebPChunk* current;
536 for (current = chunk_list; current != NULL; current = current->next_) {
537 if (tag == NIL_TAG || current->tag_ == tag) {
538 count++; // Count chunks whose tags match.
539 }
540 }
541 return count;
542 }
543
WebPMuxNumChunks(const WebPMux * mux,WebPChunkId id,int * num_elements)544 WebPMuxError WebPMuxNumChunks(const WebPMux* mux,
545 WebPChunkId id, int* num_elements) {
546 if (mux == NULL || num_elements == NULL) {
547 return WEBP_MUX_INVALID_ARGUMENT;
548 }
549
550 if (IsWPI(id)) {
551 *num_elements = MuxImageCount(mux->images_, id);
552 } else {
553 WebPChunk* const* chunk_list = MuxGetChunkListFromId(mux, id);
554 const CHUNK_INDEX idx = ChunkGetIndexFromId(id);
555 *num_elements = CountChunks(*chunk_list, kChunks[idx].tag);
556 }
557
558 return WEBP_MUX_OK;
559 }
560
561 //------------------------------------------------------------------------------
562