xref: /aosp_15_r20/external/webp/examples/cwebp.c (revision b2055c353e87c8814eb2b6b1b11112a1562253bd)
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 //  simple command line calling the WebPEncode function.
11 //  Encodes a raw .YUV into WebP bitstream
12 //
13 // Author: Skal ([email protected])
14 
15 #include <assert.h>
16 #include <stdio.h>
17 #include <stdlib.h>
18 #include <string.h>
19 
20 #ifdef HAVE_CONFIG_H
21 #include "webp/config.h"
22 #endif
23 
24 #include "../examples/example_util.h"
25 #include "../imageio/image_dec.h"
26 #include "../imageio/imageio_util.h"
27 #include "../imageio/webpdec.h"
28 #include "./stopwatch.h"
29 #include "./unicode.h"
30 #include "sharpyuv/sharpyuv.h"
31 #include "webp/encode.h"
32 
33 #ifndef WEBP_DLL
34 #ifdef __cplusplus
35 extern "C" {
36 #endif
37 
38 extern void* VP8GetCPUInfo;   // opaque forward declaration.
39 
40 #ifdef __cplusplus
41 }    // extern "C"
42 #endif
43 #endif  // WEBP_DLL
44 
45 //------------------------------------------------------------------------------
46 
47 static int verbose = 0;
48 
ReadYUV(const uint8_t * const data,size_t data_size,WebPPicture * const pic)49 static int ReadYUV(const uint8_t* const data, size_t data_size,
50                    WebPPicture* const pic) {
51   const int use_argb = pic->use_argb;
52   const int uv_width = (pic->width + 1) / 2;
53   const int uv_height = (pic->height + 1) / 2;
54   const int y_plane_size = pic->width * pic->height;
55   const int uv_plane_size = uv_width * uv_height;
56   const size_t expected_data_size = y_plane_size + 2 * uv_plane_size;
57 
58   if (data_size != expected_data_size) {
59     fprintf(stderr,
60             "input data doesn't have the expected size (%d instead of %d)\n",
61             (int)data_size, (int)expected_data_size);
62     return 0;
63   }
64 
65   pic->use_argb = 0;
66   if (!WebPPictureAlloc(pic)) return 0;
67   ImgIoUtilCopyPlane(data, pic->width, pic->y, pic->y_stride,
68                      pic->width, pic->height);
69   ImgIoUtilCopyPlane(data + y_plane_size, uv_width,
70                      pic->u, pic->uv_stride, uv_width, uv_height);
71   ImgIoUtilCopyPlane(data + y_plane_size + uv_plane_size, uv_width,
72                      pic->v, pic->uv_stride, uv_width, uv_height);
73   return use_argb ? WebPPictureYUVAToARGB(pic) : 1;
74 }
75 
76 #ifdef HAVE_WINCODEC_H
77 
ReadPicture(const char * const filename,WebPPicture * const pic,int keep_alpha,Metadata * const metadata)78 static int ReadPicture(const char* const filename, WebPPicture* const pic,
79                        int keep_alpha, Metadata* const metadata) {
80   int ok = 0;
81   const uint8_t* data = NULL;
82   size_t data_size = 0;
83   if (pic->width != 0 && pic->height != 0) {
84     ok = ImgIoUtilReadFile(filename, &data, &data_size);
85     ok = ok && ReadYUV(data, data_size, pic);
86   } else {
87     // If no size specified, try to decode it using WIC.
88     ok = ReadPictureWithWIC(filename, pic, keep_alpha, metadata);
89     if (!ok) {
90       ok = ImgIoUtilReadFile(filename, &data, &data_size);
91       ok = ok && ReadWebP(data, data_size, pic, keep_alpha, metadata);
92     }
93   }
94   if (!ok) {
95     WFPRINTF(stderr, "Error! Could not process file %s\n",
96              (const W_CHAR*)filename);
97   }
98   WebPFree((void*)data);
99   return ok;
100 }
101 
102 #else  // !HAVE_WINCODEC_H
103 
ReadPicture(const char * const filename,WebPPicture * const pic,int keep_alpha,Metadata * const metadata)104 static int ReadPicture(const char* const filename, WebPPicture* const pic,
105                        int keep_alpha, Metadata* const metadata) {
106   const uint8_t* data = NULL;
107   size_t data_size = 0;
108   int ok = 0;
109 
110   ok = ImgIoUtilReadFile(filename, &data, &data_size);
111   if (!ok) goto End;
112 
113   if (pic->width == 0 || pic->height == 0) {
114     WebPImageReader reader = WebPGuessImageReader(data, data_size);
115     ok = reader(data, data_size, pic, keep_alpha, metadata);
116   } else {
117     // If image size is specified, infer it as YUV format.
118     ok = ReadYUV(data, data_size, pic);
119   }
120  End:
121   if (!ok) {
122     WFPRINTF(stderr, "Error! Could not process file %s\n",
123              (const W_CHAR*)filename);
124   }
125   WebPFree((void*)data);
126   return ok;
127 }
128 
129 #endif  // !HAVE_WINCODEC_H
130 
AllocExtraInfo(WebPPicture * const pic)131 static void AllocExtraInfo(WebPPicture* const pic) {
132   const int mb_w = (pic->width + 15) / 16;
133   const int mb_h = (pic->height + 15) / 16;
134   pic->extra_info =
135       (uint8_t*)WebPMalloc(mb_w * mb_h * sizeof(*pic->extra_info));
136 }
137 
PrintByteCount(const int bytes[4],int total_size,int * const totals)138 static void PrintByteCount(const int bytes[4], int total_size,
139                            int* const totals) {
140   int s;
141   int total = 0;
142   for (s = 0; s < 4; ++s) {
143     fprintf(stderr, "| %7d ", bytes[s]);
144     total += bytes[s];
145     if (totals) totals[s] += bytes[s];
146   }
147   fprintf(stderr, "| %7d  (%.1f%%)\n", total, 100.f * total / total_size);
148 }
149 
PrintPercents(const int counts[4])150 static void PrintPercents(const int counts[4]) {
151   int s;
152   const int total = counts[0] + counts[1] + counts[2] + counts[3];
153   for (s = 0; s < 4; ++s) {
154     fprintf(stderr, "|     %3d%%", (int)(100. * counts[s] / total + .5));
155   }
156   fprintf(stderr, "| %7d\n", total);
157 }
158 
PrintValues(const int values[4])159 static void PrintValues(const int values[4]) {
160   int s;
161   for (s = 0; s < 4; ++s) {
162     fprintf(stderr, "| %7d ", values[s]);
163   }
164   fprintf(stderr, "|\n");
165 }
166 
PrintFullLosslessInfo(const WebPAuxStats * const stats,const char * const description)167 static void PrintFullLosslessInfo(const WebPAuxStats* const stats,
168                                   const char* const description) {
169   fprintf(stderr, "Lossless-%s compressed size: %d bytes\n",
170           description, stats->lossless_size);
171   fprintf(stderr, "  * Header size: %d bytes, image data size: %d\n",
172           stats->lossless_hdr_size, stats->lossless_data_size);
173   if (stats->lossless_features) {
174     fprintf(stderr, "  * Lossless features used:");
175     if (stats->lossless_features & 1) fprintf(stderr, " PREDICTION");
176     if (stats->lossless_features & 2) fprintf(stderr, " CROSS-COLOR-TRANSFORM");
177     if (stats->lossless_features & 4) fprintf(stderr, " SUBTRACT-GREEN");
178     if (stats->lossless_features & 8) fprintf(stderr, " PALETTE");
179     fprintf(stderr, "\n");
180   }
181   fprintf(stderr, "  * Precision Bits: histogram=%d transform=%d cache=%d\n",
182           stats->histogram_bits, stats->transform_bits, stats->cache_bits);
183   if (stats->palette_size > 0) {
184     fprintf(stderr, "  * Palette size:   %d\n", stats->palette_size);
185   }
186 }
187 
PrintExtraInfoLossless(const WebPPicture * const pic,int short_output,const char * const file_name)188 static void PrintExtraInfoLossless(const WebPPicture* const pic,
189                                    int short_output,
190                                    const char* const file_name) {
191   const WebPAuxStats* const stats = pic->stats;
192   if (short_output) {
193     fprintf(stderr, "%7d %2.2f\n", stats->coded_size, stats->PSNR[3]);
194   } else {
195     WFPRINTF(stderr, "File:      %s\n", (const W_CHAR*)file_name);
196     fprintf(stderr, "Dimension: %d x %d\n", pic->width, pic->height);
197     fprintf(stderr, "Output:    %d bytes (%.2f bpp)\n", stats->coded_size,
198             8.f * stats->coded_size / pic->width / pic->height);
199     PrintFullLosslessInfo(stats, "ARGB");
200   }
201 }
202 
PrintExtraInfoLossy(const WebPPicture * const pic,int short_output,int full_details,const char * const file_name)203 static void PrintExtraInfoLossy(const WebPPicture* const pic, int short_output,
204                                 int full_details,
205                                 const char* const file_name) {
206   const WebPAuxStats* const stats = pic->stats;
207   if (short_output) {
208     fprintf(stderr, "%7d %2.2f\n", stats->coded_size, stats->PSNR[3]);
209   } else {
210     const int num_i4 = stats->block_count[0];
211     const int num_i16 = stats->block_count[1];
212     const int num_skip = stats->block_count[2];
213     const int total = num_i4 + num_i16;
214     WFPRINTF(stderr, "File:      %s\n", (const W_CHAR*)file_name);
215     fprintf(stderr, "Dimension: %d x %d%s\n",
216             pic->width, pic->height,
217             stats->alpha_data_size ? " (with alpha)" : "");
218     fprintf(stderr, "Output:    "
219             "%d bytes Y-U-V-All-PSNR %2.2f %2.2f %2.2f   %2.2f dB\n"
220             "           (%.2f bpp)\n",
221             stats->coded_size,
222             stats->PSNR[0], stats->PSNR[1], stats->PSNR[2], stats->PSNR[3],
223             8.f * stats->coded_size / pic->width / pic->height);
224     if (total > 0) {
225       int totals[4] = { 0, 0, 0, 0 };
226       fprintf(stderr, "block count:  intra4:     %6d  (%.2f%%)\n"
227                       "              intra16:    %6d  (%.2f%%)\n"
228                       "              skipped:    %6d  (%.2f%%)\n",
229               num_i4, 100.f * num_i4 / total,
230               num_i16, 100.f * num_i16 / total,
231               num_skip, 100.f * num_skip / total);
232       fprintf(stderr, "bytes used:  header:         %6d  (%.1f%%)\n"
233                       "             mode-partition: %6d  (%.1f%%)\n",
234               stats->header_bytes[0],
235               100.f * stats->header_bytes[0] / stats->coded_size,
236               stats->header_bytes[1],
237               100.f * stats->header_bytes[1] / stats->coded_size);
238       if (stats->alpha_data_size > 0) {
239         fprintf(stderr, "             transparency:   %6d (%.1f dB)\n",
240                 stats->alpha_data_size, stats->PSNR[4]);
241       }
242       fprintf(stderr, " Residuals bytes  "
243                       "|segment 1|segment 2|segment 3"
244                       "|segment 4|  total\n");
245       if (full_details) {
246         fprintf(stderr, "  intra4-coeffs:  ");
247         PrintByteCount(stats->residual_bytes[0], stats->coded_size, totals);
248         fprintf(stderr, " intra16-coeffs:  ");
249         PrintByteCount(stats->residual_bytes[1], stats->coded_size, totals);
250         fprintf(stderr, "  chroma coeffs:  ");
251         PrintByteCount(stats->residual_bytes[2], stats->coded_size, totals);
252       }
253       fprintf(stderr, "    macroblocks:  ");
254       PrintPercents(stats->segment_size);
255       fprintf(stderr, "      quantizer:  ");
256       PrintValues(stats->segment_quant);
257       fprintf(stderr, "   filter level:  ");
258       PrintValues(stats->segment_level);
259       if (full_details) {
260         fprintf(stderr, "------------------+---------");
261         fprintf(stderr, "+---------+---------+---------+-----------------\n");
262         fprintf(stderr, " segments total:  ");
263         PrintByteCount(totals, stats->coded_size, NULL);
264       }
265     }
266     if (stats->lossless_size > 0) {
267       PrintFullLosslessInfo(stats, "alpha");
268     }
269   }
270 }
271 
PrintMapInfo(const WebPPicture * const pic)272 static void PrintMapInfo(const WebPPicture* const pic) {
273   if (pic->extra_info != NULL) {
274     const int mb_w = (pic->width + 15) / 16;
275     const int mb_h = (pic->height + 15) / 16;
276     const int type = pic->extra_info_type;
277     int x, y;
278     for (y = 0; y < mb_h; ++y) {
279       for (x = 0; x < mb_w; ++x) {
280         const int c = pic->extra_info[x + y * mb_w];
281         if (type == 1) {   // intra4/intra16
282           fprintf(stderr, "%c", "+."[c]);
283         } else if (type == 2) {    // segments
284           fprintf(stderr, "%c", ".-*X"[c]);
285         } else if (type == 3) {    // quantizers
286           fprintf(stderr, "%.2d ", c);
287         } else if (type == 6 || type == 7) {
288           fprintf(stderr, "%3d ", c);
289         } else {
290           fprintf(stderr, "0x%.2x ", c);
291         }
292       }
293       fprintf(stderr, "\n");
294     }
295   }
296 }
297 
298 //------------------------------------------------------------------------------
299 
MyWriter(const uint8_t * data,size_t data_size,const WebPPicture * const pic)300 static int MyWriter(const uint8_t* data, size_t data_size,
301                     const WebPPicture* const pic) {
302   FILE* const out = (FILE*)pic->custom_ptr;
303   return data_size ? (fwrite(data, data_size, 1, out) == 1) : 1;
304 }
305 
306 // Dumps a picture as a PGM file using the IMC4 layout.
DumpPicture(const WebPPicture * const picture,const char * PGM_name)307 static int DumpPicture(const WebPPicture* const picture, const char* PGM_name) {
308   int y;
309   int ok = 0;
310   const int uv_width = (picture->width + 1) / 2;
311   const int uv_height = (picture->height + 1) / 2;
312   const int stride = (picture->width + 1) & ~1;
313   const uint8_t* src_y = picture->y;
314   const uint8_t* src_u = picture->u;
315   const uint8_t* src_v = picture->v;
316   const uint8_t* src_a = picture->a;
317   const int alpha_height =
318       WebPPictureHasTransparency(picture) ? picture->height : 0;
319   const int height = picture->height + uv_height + alpha_height;
320   FILE* const f = WFOPEN(PGM_name, "wb");
321   if (f == NULL) return 0;
322   fprintf(f, "P5\n%d %d\n255\n", stride, height);
323   for (y = 0; y < picture->height; ++y) {
324     if (fwrite(src_y, picture->width, 1, f) != 1) goto Error;
325     if (picture->width & 1) fputc(0, f);  // pad
326     src_y += picture->y_stride;
327   }
328   for (y = 0; y < uv_height; ++y) {
329     if (fwrite(src_u, uv_width, 1, f) != 1) goto Error;
330     if (fwrite(src_v, uv_width, 1, f) != 1) goto Error;
331     src_u += picture->uv_stride;
332     src_v += picture->uv_stride;
333   }
334   for (y = 0; y < alpha_height; ++y) {
335     if (fwrite(src_a, picture->width, 1, f) != 1) goto Error;
336     if (picture->width & 1) fputc(0, f);  // pad
337     src_a += picture->a_stride;
338   }
339   ok = 1;
340 
341  Error:
342   fclose(f);
343   return ok;
344 }
345 
346 // -----------------------------------------------------------------------------
347 // Metadata writing.
348 
349 enum {
350   METADATA_EXIF = (1 << 0),
351   METADATA_ICC  = (1 << 1),
352   METADATA_XMP  = (1 << 2),
353   METADATA_ALL  = METADATA_EXIF | METADATA_ICC | METADATA_XMP
354 };
355 
356 static const int kChunkHeaderSize = 8;
357 static const int kTagSize = 4;
358 
PrintMetadataInfo(const Metadata * const metadata,int metadata_written)359 static void PrintMetadataInfo(const Metadata* const metadata,
360                               int metadata_written) {
361   if (metadata == NULL || metadata_written == 0) return;
362 
363   fprintf(stderr, "Metadata:\n");
364   if (metadata_written & METADATA_ICC) {
365     fprintf(stderr, "  * ICC profile:  %6d bytes\n", (int)metadata->iccp.size);
366   }
367   if (metadata_written & METADATA_EXIF) {
368     fprintf(stderr, "  * EXIF data:    %6d bytes\n", (int)metadata->exif.size);
369   }
370   if (metadata_written & METADATA_XMP) {
371     fprintf(stderr, "  * XMP data:     %6d bytes\n", (int)metadata->xmp.size);
372   }
373 }
374 
375 // Outputs, in little endian, 'num' bytes from 'val' to 'out'.
WriteLE(FILE * const out,uint32_t val,int num)376 static int WriteLE(FILE* const out, uint32_t val, int num) {
377   uint8_t buf[4];
378   int i;
379   for (i = 0; i < num; ++i) {
380     buf[i] = (uint8_t)(val & 0xff);
381     val >>= 8;
382   }
383   return (fwrite(buf, num, 1, out) == 1);
384 }
385 
WriteLE24(FILE * const out,uint32_t val)386 static int WriteLE24(FILE* const out, uint32_t val) {
387   return WriteLE(out, val, 3);
388 }
389 
WriteLE32(FILE * const out,uint32_t val)390 static int WriteLE32(FILE* const out, uint32_t val) {
391   return WriteLE(out, val, 4);
392 }
393 
WriteMetadataChunk(FILE * const out,const char fourcc[4],const MetadataPayload * const payload)394 static int WriteMetadataChunk(FILE* const out, const char fourcc[4],
395                               const MetadataPayload* const payload) {
396   const uint8_t zero = 0;
397   const size_t need_padding = payload->size & 1;
398   int ok = (fwrite(fourcc, kTagSize, 1, out) == 1);
399   ok = ok && WriteLE32(out, (uint32_t)payload->size);
400   ok = ok && (fwrite(payload->bytes, payload->size, 1, out) == 1);
401   return ok && (fwrite(&zero, need_padding, need_padding, out) == need_padding);
402 }
403 
404 // Sets 'flag' in 'vp8x_flags' and updates 'metadata_size' with the size of the
405 // chunk if there is metadata and 'keep' is true.
UpdateFlagsAndSize(const MetadataPayload * const payload,int keep,int flag,uint32_t * vp8x_flags,uint64_t * metadata_size)406 static int UpdateFlagsAndSize(const MetadataPayload* const payload,
407                               int keep, int flag,
408                               uint32_t* vp8x_flags, uint64_t* metadata_size) {
409   if (keep && payload->bytes != NULL && payload->size > 0) {
410     *vp8x_flags |= flag;
411     *metadata_size += kChunkHeaderSize + payload->size + (payload->size & 1);
412     return 1;
413   }
414   return 0;
415 }
416 
417 // Writes a WebP file using the image contained in 'memory_writer' and the
418 // metadata from 'metadata'. Metadata is controlled by 'keep_metadata' and the
419 // availability in 'metadata'. Returns true on success.
420 // For details see doc/webp-container-spec.txt#extended-file-format.
WriteWebPWithMetadata(FILE * const out,const WebPPicture * const picture,const WebPMemoryWriter * const memory_writer,const Metadata * const metadata,int keep_metadata,int * const metadata_written)421 static int WriteWebPWithMetadata(FILE* const out,
422                                  const WebPPicture* const picture,
423                                  const WebPMemoryWriter* const memory_writer,
424                                  const Metadata* const metadata,
425                                  int keep_metadata,
426                                  int* const metadata_written) {
427   const char kVP8XHeader[] = "VP8X\x0a\x00\x00\x00";
428   const int kAlphaFlag = 0x10;
429   const int kEXIFFlag  = 0x08;
430   const int kICCPFlag  = 0x20;
431   const int kXMPFlag   = 0x04;
432   const size_t kRiffHeaderSize = 12;
433   const size_t kMaxChunkPayload = ~0 - kChunkHeaderSize - 1;
434   const size_t kMinSize = kRiffHeaderSize + kChunkHeaderSize;
435   uint32_t flags = 0;
436   uint64_t metadata_size = 0;
437   const int write_exif = UpdateFlagsAndSize(&metadata->exif,
438                                             !!(keep_metadata & METADATA_EXIF),
439                                             kEXIFFlag, &flags, &metadata_size);
440   const int write_iccp = UpdateFlagsAndSize(&metadata->iccp,
441                                             !!(keep_metadata & METADATA_ICC),
442                                             kICCPFlag, &flags, &metadata_size);
443   const int write_xmp  = UpdateFlagsAndSize(&metadata->xmp,
444                                             !!(keep_metadata & METADATA_XMP),
445                                             kXMPFlag, &flags, &metadata_size);
446   uint8_t* webp = memory_writer->mem;
447   size_t webp_size = memory_writer->size;
448 
449   *metadata_written = 0;
450 
451   if (webp_size < kMinSize) return 0;
452   if (webp_size - kChunkHeaderSize + metadata_size > kMaxChunkPayload) {
453     fprintf(stderr, "Error! Addition of metadata would exceed "
454                     "container size limit.\n");
455     return 0;
456   }
457 
458   if (metadata_size > 0) {
459     const int kVP8XChunkSize = 18;
460     const int has_vp8x = !memcmp(webp + kRiffHeaderSize, "VP8X", kTagSize);
461     const uint32_t riff_size = (uint32_t)(webp_size - kChunkHeaderSize +
462                                           (has_vp8x ? 0 : kVP8XChunkSize) +
463                                           metadata_size);
464     // RIFF
465     int ok = (fwrite(webp, kTagSize, 1, out) == 1);
466     // RIFF size (file header size is not recorded)
467     ok = ok && WriteLE32(out, riff_size);
468     webp += kChunkHeaderSize;
469     webp_size -= kChunkHeaderSize;
470     // WEBP
471     ok = ok && (fwrite(webp, kTagSize, 1, out) == 1);
472     webp += kTagSize;
473     webp_size -= kTagSize;
474     if (has_vp8x) {  // update the existing VP8X flags
475       webp[kChunkHeaderSize] |= (uint8_t)(flags & 0xff);
476       ok = ok && (fwrite(webp, kVP8XChunkSize, 1, out) == 1);
477       webp += kVP8XChunkSize;
478       webp_size -= kVP8XChunkSize;
479     } else {
480       const int is_lossless = !memcmp(webp, "VP8L", kTagSize);
481       if (is_lossless) {
482         // Presence of alpha is stored in the 37th bit (29th after the
483         // signature) of VP8L data.
484         if (webp[kChunkHeaderSize + 4] & (1 << 4)) flags |= kAlphaFlag;
485       }
486       ok = ok && (fwrite(kVP8XHeader, kChunkHeaderSize, 1, out) == 1);
487       ok = ok && WriteLE32(out, flags);
488       ok = ok && WriteLE24(out, picture->width - 1);
489       ok = ok && WriteLE24(out, picture->height - 1);
490     }
491     if (write_iccp) {
492       ok = ok && WriteMetadataChunk(out, "ICCP", &metadata->iccp);
493       *metadata_written |= METADATA_ICC;
494     }
495     // Image
496     ok = ok && (fwrite(webp, webp_size, 1, out) == 1);
497     if (write_exif) {
498       ok = ok && WriteMetadataChunk(out, "EXIF", &metadata->exif);
499       *metadata_written |= METADATA_EXIF;
500     }
501     if (write_xmp) {
502       ok = ok && WriteMetadataChunk(out, "XMP ", &metadata->xmp);
503       *metadata_written |= METADATA_XMP;
504     }
505     return ok;
506   }
507 
508   // No metadata, just write the original image file.
509   return (fwrite(webp, webp_size, 1, out) == 1);
510 }
511 
512 //------------------------------------------------------------------------------
513 
ProgressReport(int percent,const WebPPicture * const picture)514 static int ProgressReport(int percent, const WebPPicture* const picture) {
515   fprintf(stderr, "[%s]: %3d %%      \r",
516           (char*)picture->user_data, percent);
517   return 1;  // all ok
518 }
519 
520 //------------------------------------------------------------------------------
521 
HelpShort(void)522 static void HelpShort(void) {
523   printf("Usage:\n\n");
524   printf("   cwebp [options] -q quality input.png -o output.webp\n\n");
525   printf("where quality is between 0 (poor) to 100 (very good).\n");
526   printf("Typical value is around 80.\n\n");
527   printf("Try -longhelp for an exhaustive list of advanced options.\n");
528 }
529 
HelpLong(void)530 static void HelpLong(void) {
531   printf("Usage:\n");
532   printf(" cwebp [-preset <...>] [options] in_file [-o out_file]\n\n");
533   printf("If input size (-s) for an image is not specified, it is\n"
534          "assumed to be a PNG, JPEG, TIFF or WebP file.\n");
535   printf("Note: Animated PNG and WebP files are not supported.\n");
536 #ifdef HAVE_WINCODEC_H
537   printf("Windows builds can take as input any of the files handled by WIC.\n");
538 #endif
539   printf("\nOptions:\n");
540   printf("  -h / -help ............. short help\n");
541   printf("  -H / -longhelp ......... long help\n");
542   printf("  -q <float> ............. quality factor (0:small..100:big), "
543          "default=75\n");
544   printf("  -alpha_q <int> ......... transparency-compression quality (0..100),"
545          "\n                           default=100\n");
546   printf("  -preset <string> ....... preset setting, one of:\n");
547   printf("                            default, photo, picture,\n");
548   printf("                            drawing, icon, text\n");
549   printf("     -preset must come first, as it overwrites other parameters\n");
550   printf("  -z <int> ............... activates lossless preset with given\n"
551          "                           level in [0:fast, ..., 9:slowest]\n");
552   printf("\n");
553   printf("  -m <int> ............... compression method (0=fast, 6=slowest), "
554          "default=4\n");
555   printf("  -segments <int> ........ number of segments to use (1..4), "
556          "default=4\n");
557   printf("  -size <int> ............ target size (in bytes)\n");
558   printf("  -psnr <float> .......... target PSNR (in dB. typically: 42)\n");
559   printf("\n");
560   printf("  -s <int> <int> ......... input size (width x height) for YUV\n");
561   printf("  -sns <int> ............. spatial noise shaping (0:off, 100:max), "
562          "default=50\n");
563   printf("  -f <int> ............... filter strength (0=off..100), "
564          "default=60\n");
565   printf("  -sharpness <int> ....... "
566          "filter sharpness (0:most .. 7:least sharp), default=0\n");
567   printf("  -strong ................ use strong filter instead "
568                                      "of simple (default)\n");
569   printf("  -nostrong .............. use simple filter instead of strong\n");
570   printf("  -sharp_yuv ............. use sharper (and slower) RGB->YUV "
571                                      "conversion\n");
572   printf("  -partition_limit <int> . limit quality to fit the 512k limit on\n");
573   printf("                           "
574          "the first partition (0=no degradation ... 100=full)\n");
575   printf("  -pass <int> ............ analysis pass number (1..10)\n");
576   printf("  -qrange <min> <max> .... specifies the permissible quality range\n"
577          "                           (default: 0 100)\n");
578   printf("  -crop <x> <y> <w> <h> .. crop picture with the given rectangle\n");
579   printf("  -resize <w> <h> ........ resize picture (*after* any cropping)\n");
580   printf("  -mt .................... use multi-threading if available\n");
581   printf("  -low_memory ............ reduce memory usage (slower encoding)\n");
582   printf("  -map <int> ............. print map of extra info\n");
583   printf("  -print_psnr ............ prints averaged PSNR distortion\n");
584   printf("  -print_ssim ............ prints averaged SSIM distortion\n");
585   printf("  -print_lsim ............ prints local-similarity distortion\n");
586   printf("  -d <file.pgm> .......... dump the compressed output (PGM file)\n");
587   printf("  -alpha_method <int> .... transparency-compression method (0..1), "
588          "default=1\n");
589   printf("  -alpha_filter <string> . predictive filtering for alpha plane,\n");
590   printf("                           one of: none, fast (default) or best\n");
591   printf("  -exact ................. preserve RGB values in transparent area, "
592          "default=off\n");
593   printf("  -blend_alpha <hex> ..... blend colors against background color\n"
594          "                           expressed as RGB values written in\n"
595          "                           hexadecimal, e.g. 0xc0e0d0 for red=0xc0\n"
596          "                           green=0xe0 and blue=0xd0\n");
597   printf("  -noalpha ............... discard any transparency information\n");
598   printf("  -lossless .............. encode image losslessly, default=off\n");
599   printf("  -near_lossless <int> ... use near-lossless image preprocessing\n"
600          "                           (0..100=off), default=100\n");
601   printf("  -hint <string> ......... specify image characteristics hint,\n");
602   printf("                           one of: photo, picture or graph\n");
603 
604   printf("\n");
605   printf("  -metadata <string> ..... comma separated list of metadata to\n");
606   printf("                           ");
607   printf("copy from the input to the output if present.\n");
608   printf("                           "
609          "Valid values: all, none (default), exif, icc, xmp\n");
610 
611   printf("\n");
612   printf("  -short ................. condense printed message\n");
613   printf("  -quiet ................. don't print anything\n");
614   printf("  -version ............... print version number and exit\n");
615 #ifndef WEBP_DLL
616   printf("  -noasm ................. disable all assembly optimizations\n");
617 #endif
618   printf("  -v ..................... verbose, e.g. print encoding/decoding "
619          "times\n");
620   printf("  -progress .............. report encoding progress\n");
621   printf("\n");
622   printf("Experimental Options:\n");
623   printf("  -jpeg_like ............. roughly match expected JPEG size\n");
624   printf("  -af .................... auto-adjust filter strength\n");
625   printf("  -pre <int> ............. pre-processing filter\n");
626   printf("\n");
627   printf("Supported input formats:\n  %s\n", WebPGetEnabledInputFileFormats());
628 }
629 
630 //------------------------------------------------------------------------------
631 // Error messages
632 
633 static const char* const kErrorMessages[VP8_ENC_ERROR_LAST] = {
634   "OK",
635   "OUT_OF_MEMORY: Out of memory allocating objects",
636   "BITSTREAM_OUT_OF_MEMORY: Out of memory re-allocating byte buffer",
637   "NULL_PARAMETER: NULL parameter passed to function",
638   "INVALID_CONFIGURATION: configuration is invalid",
639   "BAD_DIMENSION: Bad picture dimension. Maximum width and height "
640   "allowed is 16383 pixels.",
641   "PARTITION0_OVERFLOW: Partition #0 is too big to fit 512k.\n"
642   "To reduce the size of this partition, try using less segments "
643   "with the -segments option, and eventually reduce the number of "
644   "header bits using -partition_limit. More details are available "
645   "in the manual (`man cwebp`)",
646   "PARTITION_OVERFLOW: Partition is too big to fit 16M",
647   "BAD_WRITE: Picture writer returned an I/O error",
648   "FILE_TOO_BIG: File would be too big to fit in 4G",
649   "USER_ABORT: encoding abort requested by user"
650 };
651 
652 //------------------------------------------------------------------------------
653 
main(int argc,const char * argv[])654 int main(int argc, const char* argv[]) {
655   int return_value = -1;
656   const char* in_file = NULL, *out_file = NULL, *dump_file = NULL;
657   FILE* out = NULL;
658   int c;
659   int short_output = 0;
660   int quiet = 0;
661   int keep_alpha = 1;
662   int blend_alpha = 0;
663   uint32_t background_color = 0xffffffu;
664   int crop = 0, crop_x = 0, crop_y = 0, crop_w = 0, crop_h = 0;
665   int resize_w = 0, resize_h = 0;
666   int lossless_preset = 6;
667   int use_lossless_preset = -1;  // -1=unset, 0=don't use, 1=use it
668   int show_progress = 0;
669   int keep_metadata = 0;
670   int metadata_written = 0;
671   WebPPicture picture;
672   int print_distortion = -1;        // -1=off, 0=PSNR, 1=SSIM, 2=LSIM
673   WebPPicture original_picture;    // when PSNR or SSIM is requested
674   WebPConfig config;
675   WebPAuxStats stats;
676   WebPMemoryWriter memory_writer;
677   int use_memory_writer;
678   Metadata metadata;
679   Stopwatch stop_watch;
680 
681   INIT_WARGV(argc, argv);
682 
683   MetadataInit(&metadata);
684   WebPMemoryWriterInit(&memory_writer);
685   if (!WebPPictureInit(&picture) ||
686       !WebPPictureInit(&original_picture) ||
687       !WebPConfigInit(&config)) {
688     fprintf(stderr, "Error! Version mismatch!\n");
689     FREE_WARGV_AND_RETURN(-1);
690   }
691 
692   if (argc == 1) {
693     HelpShort();
694     FREE_WARGV_AND_RETURN(0);
695   }
696 
697   for (c = 1; c < argc; ++c) {
698     int parse_error = 0;
699     if (!strcmp(argv[c], "-h") || !strcmp(argv[c], "-help")) {
700       HelpShort();
701       FREE_WARGV_AND_RETURN(0);
702     } else if (!strcmp(argv[c], "-H") || !strcmp(argv[c], "-longhelp")) {
703       HelpLong();
704       FREE_WARGV_AND_RETURN(0);
705     } else if (!strcmp(argv[c], "-o") && c + 1 < argc) {
706       out_file = (const char*)GET_WARGV(argv, ++c);
707     } else if (!strcmp(argv[c], "-d") && c + 1 < argc) {
708       dump_file = (const char*)GET_WARGV(argv, ++c);
709       config.show_compressed = 1;
710     } else if (!strcmp(argv[c], "-print_psnr")) {
711       config.show_compressed = 1;
712       print_distortion = 0;
713     } else if (!strcmp(argv[c], "-print_ssim")) {
714       config.show_compressed = 1;
715       print_distortion = 1;
716     } else if (!strcmp(argv[c], "-print_lsim")) {
717       config.show_compressed = 1;
718       print_distortion = 2;
719     } else if (!strcmp(argv[c], "-short")) {
720       ++short_output;
721     } else if (!strcmp(argv[c], "-s") && c + 2 < argc) {
722       picture.width = ExUtilGetInt(argv[++c], 0, &parse_error);
723       picture.height = ExUtilGetInt(argv[++c], 0, &parse_error);
724       if (picture.width > WEBP_MAX_DIMENSION || picture.width < 0 ||
725           picture.height > WEBP_MAX_DIMENSION ||  picture.height < 0) {
726         fprintf(stderr,
727                 "Specified dimension (%d x %d) is out of range.\n",
728                 picture.width, picture.height);
729         goto Error;
730       }
731     } else if (!strcmp(argv[c], "-m") && c + 1 < argc) {
732       config.method = ExUtilGetInt(argv[++c], 0, &parse_error);
733       use_lossless_preset = 0;   // disable -z option
734     } else if (!strcmp(argv[c], "-q") && c + 1 < argc) {
735       config.quality = ExUtilGetFloat(argv[++c], &parse_error);
736       use_lossless_preset = 0;   // disable -z option
737     } else if (!strcmp(argv[c], "-z") && c + 1 < argc) {
738       lossless_preset = ExUtilGetInt(argv[++c], 0, &parse_error);
739       if (use_lossless_preset != 0) use_lossless_preset = 1;
740     } else if (!strcmp(argv[c], "-alpha_q") && c + 1 < argc) {
741       config.alpha_quality = ExUtilGetInt(argv[++c], 0, &parse_error);
742     } else if (!strcmp(argv[c], "-alpha_method") && c + 1 < argc) {
743       config.alpha_compression = ExUtilGetInt(argv[++c], 0, &parse_error);
744     } else if (!strcmp(argv[c], "-alpha_cleanup")) {
745       // This flag is obsolete, does opposite of -exact.
746       config.exact = 0;
747     } else if (!strcmp(argv[c], "-exact")) {
748       config.exact = 1;
749     } else if (!strcmp(argv[c], "-blend_alpha") && c + 1 < argc) {
750       blend_alpha = 1;
751       // background color is given in hex with an optional '0x' prefix
752       background_color = ExUtilGetInt(argv[++c], 16, &parse_error);
753       background_color = background_color & 0x00ffffffu;
754     } else if (!strcmp(argv[c], "-alpha_filter") && c + 1 < argc) {
755       ++c;
756       if (!strcmp(argv[c], "none")) {
757         config.alpha_filtering = 0;
758       } else if (!strcmp(argv[c], "fast")) {
759         config.alpha_filtering = 1;
760       } else if (!strcmp(argv[c], "best")) {
761         config.alpha_filtering = 2;
762       } else {
763         fprintf(stderr, "Error! Unrecognized alpha filter: %s\n", argv[c]);
764         goto Error;
765       }
766     } else if (!strcmp(argv[c], "-noalpha")) {
767       keep_alpha = 0;
768     } else if (!strcmp(argv[c], "-lossless")) {
769       config.lossless = 1;
770     } else if (!strcmp(argv[c], "-near_lossless") && c + 1 < argc) {
771       config.near_lossless = ExUtilGetInt(argv[++c], 0, &parse_error);
772       config.lossless = 1;  // use near-lossless only with lossless
773     } else if (!strcmp(argv[c], "-hint") && c + 1 < argc) {
774       ++c;
775       if (!strcmp(argv[c], "photo")) {
776         config.image_hint = WEBP_HINT_PHOTO;
777       } else if (!strcmp(argv[c], "picture")) {
778         config.image_hint = WEBP_HINT_PICTURE;
779       } else if (!strcmp(argv[c], "graph")) {
780         config.image_hint = WEBP_HINT_GRAPH;
781       } else {
782         fprintf(stderr, "Error! Unrecognized image hint: %s\n", argv[c]);
783         goto Error;
784       }
785     } else if (!strcmp(argv[c], "-size") && c + 1 < argc) {
786       config.target_size = ExUtilGetInt(argv[++c], 0, &parse_error);
787     } else if (!strcmp(argv[c], "-psnr") && c + 1 < argc) {
788       config.target_PSNR = ExUtilGetFloat(argv[++c], &parse_error);
789     } else if (!strcmp(argv[c], "-sns") && c + 1 < argc) {
790       config.sns_strength = ExUtilGetInt(argv[++c], 0, &parse_error);
791     } else if (!strcmp(argv[c], "-f") && c + 1 < argc) {
792       config.filter_strength = ExUtilGetInt(argv[++c], 0, &parse_error);
793     } else if (!strcmp(argv[c], "-af")) {
794       config.autofilter = 1;
795     } else if (!strcmp(argv[c], "-jpeg_like")) {
796       config.emulate_jpeg_size = 1;
797     } else if (!strcmp(argv[c], "-mt")) {
798       ++config.thread_level;  // increase thread level
799     } else if (!strcmp(argv[c], "-low_memory")) {
800       config.low_memory = 1;
801     } else if (!strcmp(argv[c], "-strong")) {
802       config.filter_type = 1;
803     } else if (!strcmp(argv[c], "-nostrong")) {
804       config.filter_type = 0;
805     } else if (!strcmp(argv[c], "-sharpness") && c + 1 < argc) {
806       config.filter_sharpness = ExUtilGetInt(argv[++c], 0, &parse_error);
807     } else if (!strcmp(argv[c], "-sharp_yuv")) {
808       config.use_sharp_yuv = 1;
809     } else if (!strcmp(argv[c], "-pass") && c + 1 < argc) {
810       config.pass = ExUtilGetInt(argv[++c], 0, &parse_error);
811     } else if (!strcmp(argv[c], "-qrange") && c + 2 < argc) {
812       config.qmin = ExUtilGetInt(argv[++c], 0, &parse_error);
813       config.qmax = ExUtilGetInt(argv[++c], 0, &parse_error);
814       if (config.qmin < 0) config.qmin = 0;
815       if (config.qmax > 100) config.qmax = 100;
816     } else if (!strcmp(argv[c], "-pre") && c + 1 < argc) {
817       config.preprocessing = ExUtilGetInt(argv[++c], 0, &parse_error);
818     } else if (!strcmp(argv[c], "-segments") && c + 1 < argc) {
819       config.segments = ExUtilGetInt(argv[++c], 0, &parse_error);
820     } else if (!strcmp(argv[c], "-partition_limit") && c + 1 < argc) {
821       config.partition_limit = ExUtilGetInt(argv[++c], 0, &parse_error);
822     } else if (!strcmp(argv[c], "-map") && c + 1 < argc) {
823       picture.extra_info_type = ExUtilGetInt(argv[++c], 0, &parse_error);
824     } else if (!strcmp(argv[c], "-crop") && c + 4 < argc) {
825       crop = 1;
826       crop_x = ExUtilGetInt(argv[++c], 0, &parse_error);
827       crop_y = ExUtilGetInt(argv[++c], 0, &parse_error);
828       crop_w = ExUtilGetInt(argv[++c], 0, &parse_error);
829       crop_h = ExUtilGetInt(argv[++c], 0, &parse_error);
830     } else if (!strcmp(argv[c], "-resize") && c + 2 < argc) {
831       resize_w = ExUtilGetInt(argv[++c], 0, &parse_error);
832       resize_h = ExUtilGetInt(argv[++c], 0, &parse_error);
833 #ifndef WEBP_DLL
834     } else if (!strcmp(argv[c], "-noasm")) {
835       VP8GetCPUInfo = NULL;
836 #endif
837     } else if (!strcmp(argv[c], "-version")) {
838       const int version = WebPGetEncoderVersion();
839       const int sharpyuv_version = SharpYuvGetVersion();
840       printf("%d.%d.%d\n",
841              (version >> 16) & 0xff, (version >> 8) & 0xff, version & 0xff);
842       printf("libsharpyuv: %d.%d.%d\n",
843              (sharpyuv_version >> 24) & 0xff, (sharpyuv_version >> 16) & 0xffff,
844              sharpyuv_version & 0xff);
845       FREE_WARGV_AND_RETURN(0);
846     } else if (!strcmp(argv[c], "-progress")) {
847       show_progress = 1;
848     } else if (!strcmp(argv[c], "-quiet")) {
849       quiet = 1;
850     } else if (!strcmp(argv[c], "-preset") && c + 1 < argc) {
851       WebPPreset preset;
852       ++c;
853       if (!strcmp(argv[c], "default")) {
854         preset = WEBP_PRESET_DEFAULT;
855       } else if (!strcmp(argv[c], "photo")) {
856         preset = WEBP_PRESET_PHOTO;
857       } else if (!strcmp(argv[c], "picture")) {
858         preset = WEBP_PRESET_PICTURE;
859       } else if (!strcmp(argv[c], "drawing")) {
860         preset = WEBP_PRESET_DRAWING;
861       } else if (!strcmp(argv[c], "icon")) {
862         preset = WEBP_PRESET_ICON;
863       } else if (!strcmp(argv[c], "text")) {
864         preset = WEBP_PRESET_TEXT;
865       } else {
866         fprintf(stderr, "Error! Unrecognized preset: %s\n", argv[c]);
867         goto Error;
868       }
869       if (!WebPConfigPreset(&config, preset, config.quality)) {
870         fprintf(stderr, "Error! Could initialize configuration with preset.\n");
871         goto Error;
872       }
873     } else if (!strcmp(argv[c], "-metadata") && c + 1 < argc) {
874       static const struct {
875         const char* option;
876         int flag;
877       } kTokens[] = {
878         { "all",  METADATA_ALL },
879         { "none", 0 },
880         { "exif", METADATA_EXIF },
881         { "icc",  METADATA_ICC },
882         { "xmp",  METADATA_XMP },
883       };
884       const size_t kNumTokens = sizeof(kTokens) / sizeof(kTokens[0]);
885       const char* start = argv[++c];
886       const char* const end = start + strlen(start);
887 
888       while (start < end) {
889         size_t i;
890         const char* token = strchr(start, ',');
891         if (token == NULL) token = end;
892 
893         for (i = 0; i < kNumTokens; ++i) {
894           if ((size_t)(token - start) == strlen(kTokens[i].option) &&
895               !strncmp(start, kTokens[i].option, strlen(kTokens[i].option))) {
896             if (kTokens[i].flag != 0) {
897               keep_metadata |= kTokens[i].flag;
898             } else {
899               keep_metadata = 0;
900             }
901             break;
902           }
903         }
904         if (i == kNumTokens) {
905           fprintf(stderr, "Error! Unknown metadata type '%.*s'\n",
906                   (int)(token - start), start);
907           FREE_WARGV_AND_RETURN(-1);
908         }
909         start = token + 1;
910       }
911 #ifdef HAVE_WINCODEC_H
912       if (keep_metadata != 0 && keep_metadata != METADATA_ICC) {
913         // TODO(jzern): remove when -metadata is supported on all platforms.
914         fprintf(stderr, "Warning: only ICC profile extraction is currently"
915                         " supported on this platform!\n");
916       }
917 #endif
918     } else if (!strcmp(argv[c], "-v")) {
919       verbose = 1;
920     } else if (!strcmp(argv[c], "--")) {
921       if (c + 1 < argc) in_file = (const char*)GET_WARGV(argv, ++c);
922       break;
923     } else if (argv[c][0] == '-') {
924       fprintf(stderr, "Error! Unknown option '%s'\n", argv[c]);
925       HelpLong();
926       FREE_WARGV_AND_RETURN(-1);
927     } else {
928       in_file = (const char*)GET_WARGV(argv, c);
929     }
930 
931     if (parse_error) {
932       HelpLong();
933       FREE_WARGV_AND_RETURN(-1);
934     }
935   }
936   if (in_file == NULL) {
937     fprintf(stderr, "No input file specified!\n");
938     HelpShort();
939     goto Error;
940   }
941 
942   if (use_lossless_preset == 1) {
943     if (!WebPConfigLosslessPreset(&config, lossless_preset)) {
944       fprintf(stderr, "Invalid lossless preset (-z %d)\n", lossless_preset);
945       goto Error;
946     }
947   }
948 
949   // Check for unsupported command line options for lossless mode and log
950   // warning for such options.
951   if (!quiet && config.lossless == 1) {
952     if (config.target_size > 0 || config.target_PSNR > 0) {
953       fprintf(stderr, "Encoding for specified size or PSNR is not supported"
954                       " for lossless encoding. Ignoring such option(s)!\n");
955     }
956     if (config.partition_limit > 0) {
957       fprintf(stderr, "Partition limit option is not required for lossless"
958                       " encoding. Ignoring this option!\n");
959     }
960   }
961   // If a target size or PSNR was given, but somehow the -pass option was
962   // omitted, force a reasonable value.
963   if (config.target_size > 0 || config.target_PSNR > 0) {
964     if (config.pass == 1) config.pass = 6;
965   }
966 
967   if (!WebPValidateConfig(&config)) {
968     fprintf(stderr, "Error! Invalid configuration.\n");
969     goto Error;
970   }
971 
972   // Read the input. We need to decide if we prefer ARGB or YUVA
973   // samples, depending on the expected compression mode (this saves
974   // some conversion steps).
975   picture.use_argb = (config.lossless || config.use_sharp_yuv ||
976                       config.preprocessing > 0 ||
977                       crop || (resize_w | resize_h) > 0);
978   if (verbose) {
979     StopwatchReset(&stop_watch);
980   }
981   if (!ReadPicture(in_file, &picture, keep_alpha,
982                    (keep_metadata == 0) ? NULL : &metadata)) {
983     WFPRINTF(stderr, "Error! Cannot read input picture file '%s'\n",
984              (const W_CHAR*)in_file);
985     goto Error;
986   }
987   picture.progress_hook = (show_progress && !quiet) ? ProgressReport : NULL;
988 
989   if (blend_alpha) {
990     WebPBlendAlpha(&picture, background_color);
991   }
992 
993   if (verbose) {
994     const double read_time = StopwatchReadAndReset(&stop_watch);
995     fprintf(stderr, "Time to read input: %.3fs\n", read_time);
996   }
997   // The bitstream should be kept in memory when metadata must be appended
998   // before writing it to a file/stream, and/or when the near-losslessly encoded
999   // bitstream must be decoded for distortion computation (lossy will modify the
1000   // 'picture' but not the lossless pipeline).
1001   // Otherwise directly write the bitstream to a file.
1002   use_memory_writer = (out_file != NULL && keep_metadata) ||
1003                       (!quiet && print_distortion >= 0 && config.lossless &&
1004                        config.near_lossless < 100);
1005 
1006   // Open the output
1007   if (out_file != NULL) {
1008     const int use_stdout = !WSTRCMP(out_file, "-");
1009     out = use_stdout ? ImgIoUtilSetBinaryMode(stdout) : WFOPEN(out_file, "wb");
1010     if (out == NULL) {
1011       WFPRINTF(stderr, "Error! Cannot open output file '%s'\n",
1012                (const W_CHAR*)out_file);
1013       goto Error;
1014     } else {
1015       if (!short_output && !quiet) {
1016         WFPRINTF(stderr, "Saving file '%s'\n", (const W_CHAR*)out_file);
1017       }
1018     }
1019     if (use_memory_writer) {
1020       picture.writer = WebPMemoryWrite;
1021       picture.custom_ptr = (void*)&memory_writer;
1022     } else {
1023       picture.writer = MyWriter;
1024       picture.custom_ptr = (void*)out;
1025     }
1026   } else {
1027     out = NULL;
1028     if (use_memory_writer) {
1029       picture.writer = WebPMemoryWrite;
1030       picture.custom_ptr = (void*)&memory_writer;
1031     }
1032     if (!quiet && !short_output) {
1033       fprintf(stderr, "No output file specified (no -o flag). Encoding will\n");
1034       fprintf(stderr, "be performed, but its results discarded.\n\n");
1035     }
1036   }
1037   if (!quiet) {
1038     picture.stats = &stats;
1039     picture.user_data = (void*)in_file;
1040   }
1041 
1042   // Crop & resize.
1043   if (verbose) {
1044     StopwatchReset(&stop_watch);
1045   }
1046   if (crop != 0) {
1047     // We use self-cropping using a view.
1048     if (!WebPPictureView(&picture, crop_x, crop_y, crop_w, crop_h, &picture)) {
1049       fprintf(stderr, "Error! Cannot crop picture\n");
1050       goto Error;
1051     }
1052   }
1053   if ((resize_w | resize_h) > 0) {
1054     WebPPicture picture_no_alpha;
1055     if (config.exact) {
1056       // If -exact, we can't premultiply RGB by A otherwise RGB is lost if A=0.
1057       // We rescale an opaque copy and assemble scaled A and non-premultiplied
1058       // RGB channels. This is slower but it's a very uncommon use case. Color
1059       // leak at sharp alpha edges is possible.
1060       if (!WebPPictureCopy(&picture, &picture_no_alpha)) {
1061         fprintf(stderr, "Error! Cannot copy temporary picture\n");
1062         goto Error;
1063       }
1064 
1065       // We enforced picture.use_argb = 1 above. Now, remove the alpha values.
1066       {
1067         int x, y;
1068         uint32_t* argb_no_alpha = picture_no_alpha.argb;
1069         for (y = 0; y < picture_no_alpha.height; ++y) {
1070           for (x = 0; x < picture_no_alpha.width; ++x) {
1071             argb_no_alpha[x] |= 0xff000000;  // Opaque copy.
1072           }
1073           argb_no_alpha += picture_no_alpha.argb_stride;
1074         }
1075       }
1076 
1077       if (!WebPPictureRescale(&picture_no_alpha, resize_w, resize_h)) {
1078         fprintf(stderr, "Error! Cannot resize temporary picture\n");
1079         goto Error;
1080       }
1081     }
1082 
1083     if (!WebPPictureRescale(&picture, resize_w, resize_h)) {
1084       fprintf(stderr, "Error! Cannot resize picture\n");
1085       goto Error;
1086     }
1087 
1088     if (config.exact) {  // Put back the alpha information.
1089       int x, y;
1090       uint32_t* argb_no_alpha = picture_no_alpha.argb;
1091       uint32_t* argb = picture.argb;
1092       for (y = 0; y < picture_no_alpha.height; ++y) {
1093         for (x = 0; x < picture_no_alpha.width; ++x) {
1094           argb[x] = (argb[x] & 0xff000000) | (argb_no_alpha[x] & 0x00ffffff);
1095         }
1096         argb_no_alpha += picture_no_alpha.argb_stride;
1097         argb += picture.argb_stride;
1098       }
1099       WebPPictureFree(&picture_no_alpha);
1100     }
1101   }
1102   if (verbose && (crop != 0 || (resize_w | resize_h) > 0)) {
1103     const double preproc_time = StopwatchReadAndReset(&stop_watch);
1104     fprintf(stderr, "Time to crop/resize picture: %.3fs\n", preproc_time);
1105   }
1106 
1107   if (picture.extra_info_type > 0) {
1108     AllocExtraInfo(&picture);
1109   }
1110   // Save original picture for later comparison. Only for lossy as lossless does
1111   // not modify 'picture' (even near-lossless).
1112   if (print_distortion >= 0 && !config.lossless &&
1113       !WebPPictureCopy(&picture, &original_picture)) {
1114     fprintf(stderr, "Error! Cannot copy temporary picture\n");
1115     goto Error;
1116   }
1117 
1118   // Compress.
1119   if (verbose) {
1120     StopwatchReset(&stop_watch);
1121   }
1122   if (!WebPEncode(&config, &picture)) {
1123     fprintf(stderr, "Error! Cannot encode picture as WebP\n");
1124     fprintf(stderr, "Error code: %d (%s)\n",
1125             picture.error_code, kErrorMessages[picture.error_code]);
1126     goto Error;
1127   }
1128   if (verbose) {
1129     const double encode_time = StopwatchReadAndReset(&stop_watch);
1130     fprintf(stderr, "Time to encode picture: %.3fs\n", encode_time);
1131   }
1132 
1133   // Get the decompressed image for the lossless pipeline.
1134   if (!quiet && print_distortion >= 0 && config.lossless) {
1135     if (config.near_lossless == 100) {
1136       // Pure lossless: image was not modified, make 'original_picture' a view
1137       // of 'picture' by copying all members except the freeable pointers.
1138       original_picture = picture;
1139       original_picture.memory_ = original_picture.memory_argb_ = NULL;
1140     } else {
1141       // Decode the bitstream stored in 'memory_writer' to get the altered image
1142       // to 'picture'; save the 'original_picture' beforehand.
1143       assert(use_memory_writer);
1144       original_picture = picture;
1145       if (!WebPPictureInit(&picture)) {  // Do not free 'picture'.
1146         fprintf(stderr, "Error! Version mismatch!\n");
1147         goto Error;
1148       }
1149 
1150       picture.use_argb = 1;
1151       if (!ReadWebP(
1152               memory_writer.mem, memory_writer.size, &picture,
1153               /*keep_alpha=*/WebPPictureHasTransparency(&original_picture),
1154               /*metadata=*/NULL)) {
1155         fprintf(stderr, "Error! Cannot decode encoded WebP bitstream\n");
1156         fprintf(stderr, "Error code: %d (%s)\n", picture.error_code,
1157                 kErrorMessages[picture.error_code]);
1158         goto Error;
1159       }
1160       picture.stats = original_picture.stats;
1161     }
1162     original_picture.stats = NULL;
1163   }
1164 
1165   // Write the YUV planes to a PGM file. Only available for lossy.
1166   if (dump_file) {
1167     if (picture.use_argb) {
1168       fprintf(stderr, "Warning: can't dump file (-d option) "
1169                       "in lossless mode.\n");
1170     } else if (!DumpPicture(&picture, dump_file)) {
1171       WFPRINTF(stderr, "Warning, couldn't dump picture %s\n",
1172                (const W_CHAR*)dump_file);
1173     }
1174   }
1175 
1176   if (use_memory_writer && out != NULL &&
1177       !WriteWebPWithMetadata(out, &picture, &memory_writer, &metadata,
1178                              keep_metadata, &metadata_written)) {
1179     fprintf(stderr, "Error writing WebP file!\n");
1180     goto Error;
1181   }
1182 
1183   if (out == NULL && keep_metadata) {
1184     // output is disabled, just display the metadata stats.
1185     const struct {
1186       const MetadataPayload* const payload;
1187       int flag;
1188     } *iter, info[] = {{&metadata.exif, METADATA_EXIF},
1189                        {&metadata.iccp, METADATA_ICC},
1190                        {&metadata.xmp, METADATA_XMP},
1191                        {NULL, 0}};
1192     uint32_t unused1 = 0;
1193     uint64_t unused2 = 0;
1194 
1195     for (iter = info; iter->payload != NULL; ++iter) {
1196       if (UpdateFlagsAndSize(iter->payload, !!(keep_metadata & iter->flag),
1197                              /*flag=*/0, &unused1, &unused2)) {
1198         metadata_written |= iter->flag;
1199       }
1200     }
1201   }
1202 
1203   if (!quiet) {
1204     if (!short_output || print_distortion < 0) {
1205       if (config.lossless) {
1206         PrintExtraInfoLossless(&picture, short_output, in_file);
1207       } else {
1208         PrintExtraInfoLossy(&picture, short_output, config.low_memory, in_file);
1209       }
1210     }
1211     if (!short_output && picture.extra_info_type > 0) {
1212       PrintMapInfo(&picture);
1213     }
1214     if (print_distortion >= 0) {    // print distortion
1215       static const char* distortion_names[] = { "PSNR", "SSIM", "LSIM" };
1216       float values[5];
1217       if (!WebPPictureDistortion(&picture, &original_picture,
1218                                  print_distortion, values)) {
1219         fprintf(stderr, "Error while computing the distortion.\n");
1220         goto Error;
1221       }
1222       if (!short_output) {
1223         fprintf(stderr, "%s: ", distortion_names[print_distortion]);
1224         fprintf(stderr, "B:%.2f G:%.2f R:%.2f A:%.2f  Total:%.2f\n",
1225                 values[0], values[1], values[2], values[3], values[4]);
1226       } else {
1227         fprintf(stderr, "%7d %.4f\n", picture.stats->coded_size, values[4]);
1228       }
1229     }
1230     if (!short_output) {
1231       PrintMetadataInfo(&metadata, metadata_written);
1232     }
1233   }
1234   return_value = 0;
1235 
1236  Error:
1237   WebPMemoryWriterClear(&memory_writer);
1238   WebPFree(picture.extra_info);
1239   MetadataFree(&metadata);
1240   WebPPictureFree(&picture);
1241   WebPPictureFree(&original_picture);
1242   if (out != NULL && out != stdout) {
1243     fclose(out);
1244   }
1245 
1246   FREE_WARGV_AND_RETURN(return_value);
1247 }
1248 
1249 //------------------------------------------------------------------------------
1250