Chromium Code Reviews
chromiumcodereview-hr@appspot.gserviceaccount.com (chromiumcodereview-hr) | Please choose your nickname with Settings | Help | Chromium Project | Gerrit Changes | Sign out
(239)

Side by Side Diff: third_party/libwebp/enc/alpha.c

Issue 116213006: Update libwebp to 0.4.0 (Closed) Base URL: svn://svn.chromium.org/chrome/trunk/src
Patch Set: After Blink Roll Created 6 years, 11 months ago
Use n/p to move between diff chunks; N/P to move between comments. Draft comments are only viewable by you.
Jump to:
View unified diff | Download patch | Annotate | Revision Log
« no previous file with comments | « third_party/libwebp/dsp/yuv.c ('k') | third_party/libwebp/enc/analysis.c » ('j') | no next file with comments »
Toggle Intra-line Diffs ('i') | Expand Comments ('e') | Collapse Comments ('c') | Show Comments Hide Comments ('s')
OLDNEW
1 // Copyright 2011 Google Inc. All Rights Reserved. 1 // Copyright 2011 Google Inc. All Rights Reserved.
2 // 2 //
3 // Use of this source code is governed by a BSD-style license 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 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 5 // tree. An additional intellectual property rights grant can be found
6 // in the file PATENTS. All contributing project authors may 6 // in the file PATENTS. All contributing project authors may
7 // be found in the AUTHORS file in the root of the source tree. 7 // be found in the AUTHORS file in the root of the source tree.
8 // ----------------------------------------------------------------------------- 8 // -----------------------------------------------------------------------------
9 // 9 //
10 // Alpha-plane compression. 10 // Alpha-plane compression.
11 // 11 //
12 // Author: Skal (pascal.massimino@gmail.com) 12 // Author: Skal (pascal.massimino@gmail.com)
13 13
14 #include <assert.h> 14 #include <assert.h>
15 #include <stdlib.h> 15 #include <stdlib.h>
16 16
17 #include "./vp8enci.h" 17 #include "./vp8enci.h"
18 #include "../utils/filters.h" 18 #include "../utils/filters.h"
19 #include "../utils/quant_levels.h" 19 #include "../utils/quant_levels.h"
20 #include "../webp/format_constants.h" 20 #include "../webp/format_constants.h"
21 21
22 #if defined(__cplusplus) || defined(c_plusplus)
23 extern "C" {
24 #endif
25
26 // ----------------------------------------------------------------------------- 22 // -----------------------------------------------------------------------------
27 // Encodes the given alpha data via specified compression method 'method'. 23 // Encodes the given alpha data via specified compression method 'method'.
28 // The pre-processing (quantization) is performed if 'quality' is less than 100. 24 // The pre-processing (quantization) is performed if 'quality' is less than 100.
29 // For such cases, the encoding is lossy. The valid range is [0, 100] for 25 // For such cases, the encoding is lossy. The valid range is [0, 100] for
30 // 'quality' and [0, 1] for 'method': 26 // 'quality' and [0, 1] for 'method':
31 // 'method = 0' - No compression; 27 // 'method = 0' - No compression;
32 // 'method = 1' - Use lossless coder on the alpha plane only 28 // 'method = 1' - Use lossless coder on the alpha plane only
33 // 'filter' values [0, 4] correspond to prediction modes none, horizontal, 29 // 'filter' values [0, 4] correspond to prediction modes none, horizontal,
34 // vertical & gradient filters. The prediction mode 4 will try all the 30 // vertical & gradient filters. The prediction mode 4 will try all the
35 // prediction modes 0 to 3 and pick the best one. 31 // prediction modes 0 to 3 and pick the best one.
(...skipping 28 matching lines...) Expand all
64 picture.stats = stats; 60 picture.stats = stats;
65 if (!WebPPictureAlloc(&picture)) return 0; 61 if (!WebPPictureAlloc(&picture)) return 0;
66 62
67 // Transfer the alpha values to the green channel. 63 // Transfer the alpha values to the green channel.
68 { 64 {
69 int i, j; 65 int i, j;
70 uint32_t* dst = picture.argb; 66 uint32_t* dst = picture.argb;
71 const uint8_t* src = data; 67 const uint8_t* src = data;
72 for (j = 0; j < picture.height; ++j) { 68 for (j = 0; j < picture.height; ++j) {
73 for (i = 0; i < picture.width; ++i) { 69 for (i = 0; i < picture.width; ++i) {
74 dst[i] = (src[i] << 8) | 0xff000000u; 70 dst[i] = src[i] << 8; // we leave A/R/B channels zero'd.
75 } 71 }
76 src += width; 72 src += width;
77 dst += picture.argb_stride; 73 dst += picture.argb_stride;
78 } 74 }
79 } 75 }
80 76
81 WebPConfigInit(&config); 77 WebPConfigInit(&config);
82 config.lossless = 1; 78 config.lossless = 1;
83 config.method = effort_level; // impact is very small 79 config.method = effort_level; // impact is very small
84 // Set a moderate default quality setting for alpha. 80 // Set a low default quality for encoding alpha. Ensure that Alpha quality at
85 config.quality = 10.f * effort_level; 81 // lower methods (3 and below) is less than the threshold for triggering
82 // costly 'BackwardReferencesTraceBackwards'.
83 config.quality = 8.f * effort_level;
86 assert(config.quality >= 0 && config.quality <= 100.f); 84 assert(config.quality >= 0 && config.quality <= 100.f);
87 85
88 ok = VP8LBitWriterInit(&tmp_bw, (width * height) >> 3); 86 ok = VP8LBitWriterInit(&tmp_bw, (width * height) >> 3);
89 ok = ok && (VP8LEncodeStream(&config, &picture, &tmp_bw) == VP8_ENC_OK); 87 ok = ok && (VP8LEncodeStream(&config, &picture, &tmp_bw) == VP8_ENC_OK);
90 WebPPictureFree(&picture); 88 WebPPictureFree(&picture);
91 if (ok) { 89 if (ok) {
92 const uint8_t* const buffer = VP8LBitWriterFinish(&tmp_bw); 90 const uint8_t* const buffer = VP8LBitWriterFinish(&tmp_bw);
93 const size_t buffer_size = VP8LBitWriterNumBytes(&tmp_bw); 91 const size_t buffer_size = VP8LBitWriterNumBytes(&tmp_bw);
94 VP8BitWriterAppend(bw, buffer, buffer_size); 92 VP8BitWriterAppend(bw, buffer, buffer_size);
95 } 93 }
96 VP8LBitWriterDestroy(&tmp_bw); 94 VP8LBitWriterDestroy(&tmp_bw);
97 return ok && !bw->error_; 95 return ok && !bw->error_;
98 } 96 }
99 97
100 // ----------------------------------------------------------------------------- 98 // -----------------------------------------------------------------------------
101 99
100 // Small struct to hold the result of a filter mode compression attempt.
101 typedef struct {
102 size_t score;
103 VP8BitWriter bw;
104 WebPAuxStats stats;
105 } FilterTrial;
106
107 // This function always returns an initialized 'bw' object, even upon error.
102 static int EncodeAlphaInternal(const uint8_t* const data, int width, int height, 108 static int EncodeAlphaInternal(const uint8_t* const data, int width, int height,
103 int method, int filter, int reduce_levels, 109 int method, int filter, int reduce_levels,
104 int effort_level, // in [0..6] range 110 int effort_level, // in [0..6] range
105 uint8_t* const tmp_alpha, 111 uint8_t* const tmp_alpha,
106 VP8BitWriter* const bw, 112 FilterTrial* result) {
107 WebPAuxStats* const stats) {
108 int ok = 0; 113 int ok = 0;
109 const uint8_t* alpha_src; 114 const uint8_t* alpha_src;
110 WebPFilterFunc filter_func; 115 WebPFilterFunc filter_func;
111 uint8_t header; 116 uint8_t header;
112 size_t expected_size; 117 size_t expected_size;
113 const size_t data_size = width * height; 118 const size_t data_size = width * height;
114 119
115 assert((uint64_t)data_size == (uint64_t)width * height); // as per spec 120 assert((uint64_t)data_size == (uint64_t)width * height); // as per spec
116 assert(filter >= 0 && filter < WEBP_FILTER_LAST); 121 assert(filter >= 0 && filter < WEBP_FILTER_LAST);
117 assert(method >= ALPHA_NO_COMPRESSION); 122 assert(method >= ALPHA_NO_COMPRESSION);
118 assert(method <= ALPHA_LOSSLESS_COMPRESSION); 123 assert(method <= ALPHA_LOSSLESS_COMPRESSION);
119 assert(sizeof(header) == ALPHA_HEADER_LEN); 124 assert(sizeof(header) == ALPHA_HEADER_LEN);
120 // TODO(skal): have a common function and #define's to validate alpha params. 125 // TODO(skal): have a common function and #define's to validate alpha params.
121 126
122 expected_size = 127 expected_size =
123 (method == ALPHA_NO_COMPRESSION) ? (ALPHA_HEADER_LEN + data_size) 128 (method == ALPHA_NO_COMPRESSION) ? (ALPHA_HEADER_LEN + data_size)
124 : (data_size >> 5); 129 : (data_size >> 5);
125 header = method | (filter << 2); 130 header = method | (filter << 2);
126 if (reduce_levels) header |= ALPHA_PREPROCESSED_LEVELS << 4; 131 if (reduce_levels) header |= ALPHA_PREPROCESSED_LEVELS << 4;
127 132
128 VP8BitWriterInit(bw, expected_size); 133 VP8BitWriterInit(&result->bw, expected_size);
129 VP8BitWriterAppend(bw, &header, ALPHA_HEADER_LEN); 134 VP8BitWriterAppend(&result->bw, &header, ALPHA_HEADER_LEN);
130 135
131 filter_func = WebPFilters[filter]; 136 filter_func = WebPFilters[filter];
132 if (filter_func != NULL) { 137 if (filter_func != NULL) {
133 filter_func(data, width, height, width, tmp_alpha); 138 filter_func(data, width, height, width, tmp_alpha);
134 alpha_src = tmp_alpha; 139 alpha_src = tmp_alpha;
135 } else { 140 } else {
136 alpha_src = data; 141 alpha_src = data;
137 } 142 }
138 143
139 if (method == ALPHA_NO_COMPRESSION) { 144 if (method == ALPHA_NO_COMPRESSION) {
140 ok = VP8BitWriterAppend(bw, alpha_src, width * height); 145 ok = VP8BitWriterAppend(&result->bw, alpha_src, width * height);
141 ok = ok && !bw->error_; 146 ok = ok && !result->bw.error_;
142 } else { 147 } else {
143 ok = EncodeLossless(alpha_src, width, height, effort_level, bw, stats); 148 ok = EncodeLossless(alpha_src, width, height, effort_level,
144 VP8BitWriterFinish(bw); 149 &result->bw, &result->stats);
150 VP8BitWriterFinish(&result->bw);
145 } 151 }
152 result->score = VP8BitWriterSize(&result->bw);
146 return ok; 153 return ok;
147 } 154 }
148 155
149 // ----------------------------------------------------------------------------- 156 // -----------------------------------------------------------------------------
150 157
151 // TODO(skal): move to dsp/ ? 158 // TODO(skal): move to dsp/ ?
152 static void CopyPlane(const uint8_t* src, int src_stride, 159 static void CopyPlane(const uint8_t* src, int src_stride,
153 uint8_t* dst, int dst_stride, int width, int height) { 160 uint8_t* dst, int dst_stride, int width, int height) {
154 while (height-- > 0) { 161 while (height-- > 0) {
155 memcpy(dst, src, width); 162 memcpy(dst, src, width);
(...skipping 14 matching lines...) Expand all
170 for (i = 0; i < width; ++i) { 177 for (i = 0; i < width; ++i) {
171 color[p[i]] = 1; 178 color[p[i]] = 1;
172 } 179 }
173 } 180 }
174 for (j = 0; j < 256; ++j) { 181 for (j = 0; j < 256; ++j) {
175 if (color[j] > 0) ++colors; 182 if (color[j] > 0) ++colors;
176 } 183 }
177 return colors; 184 return colors;
178 } 185 }
179 186
187 #define FILTER_TRY_NONE (1 << WEBP_FILTER_NONE)
188 #define FILTER_TRY_ALL ((1 << WEBP_FILTER_LAST) - 1)
189
190 // Given the input 'filter' option, return an OR'd bit-set of filters to try.
191 static uint32_t GetFilterMap(const uint8_t* alpha, int width, int height,
192 int filter, int effort_level) {
193 uint32_t bit_map = 0U;
194 if (filter == WEBP_FILTER_FAST) {
195 // Quick estimate of the best candidate.
196 int try_filter_none = (effort_level > 3);
197 const int kMinColorsForFilterNone = 16;
198 const int kMaxColorsForFilterNone = 192;
199 const int num_colors = GetNumColors(alpha, width, height, width);
200 // For low number of colors, NONE yields better compression.
201 filter = (num_colors <= kMinColorsForFilterNone) ? WEBP_FILTER_NONE :
202 EstimateBestFilter(alpha, width, height, width);
203 bit_map |= 1 << filter;
204 // For large number of colors, try FILTER_NONE in addition to the best
205 // filter as well.
206 if (try_filter_none || num_colors > kMaxColorsForFilterNone) {
207 bit_map |= FILTER_TRY_NONE;
208 }
209 } else if (filter == WEBP_FILTER_NONE) {
210 bit_map = FILTER_TRY_NONE;
211 } else { // WEBP_FILTER_BEST -> try all
212 bit_map = FILTER_TRY_ALL;
213 }
214 return bit_map;
215 }
216
217 static void InitFilterTrial(FilterTrial* const score) {
218 score->score = (size_t)~0U;
219 VP8BitWriterInit(&score->bw, 0);
220 }
221
222 static int ApplyFiltersAndEncode(const uint8_t* alpha, int width, int height,
223 size_t data_size, int method, int filter,
224 int reduce_levels, int effort_level,
225 uint8_t** const output,
226 size_t* const output_size,
227 WebPAuxStats* const stats) {
228 int ok = 1;
229 FilterTrial best;
230 uint32_t try_map =
231 GetFilterMap(alpha, width, height, filter, effort_level);
232 InitFilterTrial(&best);
233 if (try_map != FILTER_TRY_NONE) {
234 uint8_t* filtered_alpha = (uint8_t*)malloc(data_size);
235 if (filtered_alpha == NULL) return 0;
236
237 for (filter = WEBP_FILTER_NONE; ok && try_map; ++filter, try_map >>= 1) {
238 if (try_map & 1) {
239 FilterTrial trial;
240 ok = EncodeAlphaInternal(alpha, width, height, method, filter,
241 reduce_levels, effort_level, filtered_alpha,
242 &trial);
243 if (ok && trial.score < best.score) {
244 VP8BitWriterWipeOut(&best.bw);
245 best = trial;
246 } else {
247 VP8BitWriterWipeOut(&trial.bw);
248 }
249 }
250 }
251 free(filtered_alpha);
252 } else {
253 ok = EncodeAlphaInternal(alpha, width, height, method, WEBP_FILTER_NONE,
254 reduce_levels, effort_level, NULL, &best);
255 }
256 if (ok) {
257 if (stats != NULL) *stats = best.stats;
258 *output_size = VP8BitWriterSize(&best.bw);
259 *output = VP8BitWriterBuf(&best.bw);
260 } else {
261 VP8BitWriterWipeOut(&best.bw);
262 }
263 return ok;
264 }
265
180 static int EncodeAlpha(VP8Encoder* const enc, 266 static int EncodeAlpha(VP8Encoder* const enc,
181 int quality, int method, int filter, 267 int quality, int method, int filter,
182 int effort_level, 268 int effort_level,
183 uint8_t** const output, size_t* const output_size) { 269 uint8_t** const output, size_t* const output_size) {
184 const WebPPicture* const pic = enc->pic_; 270 const WebPPicture* const pic = enc->pic_;
185 const int width = pic->width; 271 const int width = pic->width;
186 const int height = pic->height; 272 const int height = pic->height;
187 273
188 uint8_t* quant_alpha = NULL; 274 uint8_t* quant_alpha = NULL;
189 const size_t data_size = width * height; 275 const size_t data_size = width * height;
(...skipping 10 matching lines...) Expand all
200 assert(filter >= WEBP_FILTER_NONE && filter <= WEBP_FILTER_FAST); 286 assert(filter >= WEBP_FILTER_NONE && filter <= WEBP_FILTER_FAST);
201 287
202 if (quality < 0 || quality > 100) { 288 if (quality < 0 || quality > 100) {
203 return 0; 289 return 0;
204 } 290 }
205 291
206 if (method < ALPHA_NO_COMPRESSION || method > ALPHA_LOSSLESS_COMPRESSION) { 292 if (method < ALPHA_NO_COMPRESSION || method > ALPHA_LOSSLESS_COMPRESSION) {
207 return 0; 293 return 0;
208 } 294 }
209 295
296 if (method == ALPHA_NO_COMPRESSION) {
297 // Don't filter, as filtering will make no impact on compressed size.
298 filter = WEBP_FILTER_NONE;
299 }
300
210 quant_alpha = (uint8_t*)malloc(data_size); 301 quant_alpha = (uint8_t*)malloc(data_size);
211 if (quant_alpha == NULL) { 302 if (quant_alpha == NULL) {
212 return 0; 303 return 0;
213 } 304 }
214 305
215 // Extract alpha data (width x height) from raw_data (stride x height). 306 // Extract alpha data (width x height) from raw_data (stride x height).
216 CopyPlane(pic->a, pic->a_stride, quant_alpha, width, width, height); 307 CopyPlane(pic->a, pic->a_stride, quant_alpha, width, width, height);
217 308
218 if (reduce_levels) { // No Quantization required for 'quality = 100'. 309 if (reduce_levels) { // No Quantization required for 'quality = 100'.
219 // 16 alpha levels gives quite a low MSE w.r.t original alpha plane hence 310 // 16 alpha levels gives quite a low MSE w.r.t original alpha plane hence
220 // mapped to moderate quality 70. Hence Quality:[0, 70] -> Levels:[2, 16] 311 // mapped to moderate quality 70. Hence Quality:[0, 70] -> Levels:[2, 16]
221 // and Quality:]70, 100] -> Levels:]16, 256]. 312 // and Quality:]70, 100] -> Levels:]16, 256].
222 const int alpha_levels = (quality <= 70) ? (2 + quality / 5) 313 const int alpha_levels = (quality <= 70) ? (2 + quality / 5)
223 : (16 + (quality - 70) * 8); 314 : (16 + (quality - 70) * 8);
224 ok = QuantizeLevels(quant_alpha, width, height, alpha_levels, &sse); 315 ok = QuantizeLevels(quant_alpha, width, height, alpha_levels, &sse);
225 } 316 }
226 317
227 if (ok) { 318 if (ok) {
228 VP8BitWriter bw; 319 ok = ApplyFiltersAndEncode(quant_alpha, width, height, data_size, method,
229 int test_filter; 320 filter, reduce_levels, effort_level, output,
230 uint8_t* filtered_alpha = NULL; 321 output_size, pic->stats);
231 int try_filter_none = (effort_level > 3); 322 if (pic->stats != NULL) { // need stats?
323 pic->stats->coded_size += (int)(*output_size);
324 enc->sse_[3] = sse;
325 }
326 }
232 327
233 if (filter == WEBP_FILTER_FAST) { // Quick estimate of the best candidate.
234 const int kMinColorsForFilterNone = 16;
235 const int kMaxColorsForFilterNone = 192;
236 const int num_colors = GetNumColors(quant_alpha, width, height, width);
237 // For low number of colors, NONE yeilds better compression.
238 filter = (num_colors <= kMinColorsForFilterNone) ? WEBP_FILTER_NONE :
239 EstimateBestFilter(quant_alpha, width, height, width);
240 // For large number of colors, try FILTER_NONE in addition to the best
241 // filter as well.
242 if (num_colors > kMaxColorsForFilterNone) {
243 try_filter_none = 1;
244 }
245 }
246
247 // Test for WEBP_FILTER_NONE for higher effort levels.
248 if (try_filter_none || filter == WEBP_FILTER_NONE) {
249 ok = EncodeAlphaInternal(quant_alpha, width, height,
250 method, WEBP_FILTER_NONE, reduce_levels,
251 effort_level, NULL, &bw, pic->stats);
252
253 if (!ok) {
254 VP8BitWriterWipeOut(&bw);
255 goto End;
256 }
257 }
258 // Stop?
259 if (filter == WEBP_FILTER_NONE) {
260 goto Ok;
261 }
262
263 filtered_alpha = (uint8_t*)malloc(data_size);
264 ok = (filtered_alpha != NULL);
265 if (!ok) {
266 goto End;
267 }
268
269 // Try the other mode(s).
270 {
271 WebPAuxStats best_stats;
272 size_t best_score = try_filter_none ?
273 VP8BitWriterSize(&bw) : (size_t)~0U;
274 int wipe_tmp_bw = try_filter_none;
275
276 memset(&best_stats, 0, sizeof(best_stats)); // prevent spurious warning
277 if (pic->stats != NULL) best_stats = *pic->stats;
278 for (test_filter =
279 try_filter_none ? WEBP_FILTER_HORIZONTAL : WEBP_FILTER_NONE;
280 ok && (test_filter <= WEBP_FILTER_GRADIENT);
281 ++test_filter) {
282 VP8BitWriter tmp_bw;
283 if (filter != WEBP_FILTER_BEST && test_filter != filter) {
284 continue;
285 }
286 ok = EncodeAlphaInternal(quant_alpha, width, height,
287 method, test_filter, reduce_levels,
288 effort_level, filtered_alpha, &tmp_bw,
289 pic->stats);
290 if (ok) {
291 const size_t score = VP8BitWriterSize(&tmp_bw);
292 if (score < best_score) {
293 // swap bitwriter objects.
294 VP8BitWriter tmp = tmp_bw;
295 tmp_bw = bw;
296 bw = tmp;
297 best_score = score;
298 if (pic->stats != NULL) best_stats = *pic->stats;
299 }
300 } else {
301 VP8BitWriterWipeOut(&bw);
302 }
303 if (wipe_tmp_bw) {
304 VP8BitWriterWipeOut(&tmp_bw);
305 }
306 wipe_tmp_bw = 1; // For next filter trial for WEBP_FILTER_BEST.
307 }
308 if (pic->stats != NULL) *pic->stats = best_stats;
309 }
310 Ok:
311 if (ok) {
312 *output_size = VP8BitWriterSize(&bw);
313 *output = VP8BitWriterBuf(&bw);
314 if (pic->stats != NULL) { // need stats?
315 pic->stats->coded_size += (int)(*output_size);
316 enc->sse_[3] = sse;
317 }
318 }
319 free(filtered_alpha);
320 }
321 End:
322 free(quant_alpha); 328 free(quant_alpha);
323 return ok; 329 return ok;
324 } 330 }
325 331
326
327 //------------------------------------------------------------------------------ 332 //------------------------------------------------------------------------------
328 // Main calls 333 // Main calls
329 334
330 static int CompressAlphaJob(VP8Encoder* const enc, void* dummy) { 335 static int CompressAlphaJob(VP8Encoder* const enc, void* dummy) {
331 const WebPConfig* config = enc->config_; 336 const WebPConfig* config = enc->config_;
332 uint8_t* alpha_data = NULL; 337 uint8_t* alpha_data = NULL;
333 size_t alpha_size = 0; 338 size_t alpha_size = 0;
334 const int effort_level = config->method; // maps to [0..6] 339 const int effort_level = config->method; // maps to [0..6]
335 const WEBP_FILTER_TYPE filter = 340 const WEBP_FILTER_TYPE filter =
336 (config->alpha_filtering == 0) ? WEBP_FILTER_NONE : 341 (config->alpha_filtering == 0) ? WEBP_FILTER_NONE :
(...skipping 59 matching lines...) Expand 10 before | Expand all | Expand 10 after
396 ok = WebPWorkerSync(worker); // finish anything left in flight 401 ok = WebPWorkerSync(worker); // finish anything left in flight
397 WebPWorkerEnd(worker); // still need to end the worker, even if !ok 402 WebPWorkerEnd(worker); // still need to end the worker, even if !ok
398 } 403 }
399 free(enc->alpha_data_); 404 free(enc->alpha_data_);
400 enc->alpha_data_ = NULL; 405 enc->alpha_data_ = NULL;
401 enc->alpha_data_size_ = 0; 406 enc->alpha_data_size_ = 0;
402 enc->has_alpha_ = 0; 407 enc->has_alpha_ = 0;
403 return ok; 408 return ok;
404 } 409 }
405 410
406 #if defined(__cplusplus) || defined(c_plusplus)
407 } // extern "C"
408 #endif
OLDNEW
« no previous file with comments | « third_party/libwebp/dsp/yuv.c ('k') | third_party/libwebp/enc/analysis.c » ('j') | no next file with comments »

Powered by Google App Engine
This is Rietveld 408576698