FFmpeg
 All Data Structures Namespaces Files Functions Variables Typedefs Enumerations Enumerator Macros Groups Pages
ffprobe.c
Go to the documentation of this file.
1 /*
2  * Copyright (c) 2007-2010 Stefano Sabatini
3  *
4  * This file is part of FFmpeg.
5  *
6  * FFmpeg is free software; you can redistribute it and/or
7  * modify it under the terms of the GNU Lesser General Public
8  * License as published by the Free Software Foundation; either
9  * version 2.1 of the License, or (at your option) any later version.
10  *
11  * FFmpeg is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14  * Lesser General Public License for more details.
15  *
16  * You should have received a copy of the GNU Lesser General Public
17  * License along with FFmpeg; if not, write to the Free Software
18  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
19  */
20 
21 /**
22  * @file
23  * simple media prober based on the FFmpeg libraries
24  */
25 
26 #include "config.h"
27 #include "libavutil/ffversion.h"
28 
29 #include <string.h>
30 
31 #include "libavformat/avformat.h"
32 #include "libavcodec/avcodec.h"
33 #include "libavutil/avassert.h"
34 #include "libavutil/avstring.h"
35 #include "libavutil/bprint.h"
36 #include "libavutil/opt.h"
37 #include "libavutil/pixdesc.h"
38 #include "libavutil/dict.h"
39 #include "libavutil/libm.h"
40 #include "libavutil/parseutils.h"
41 #include "libavutil/timecode.h"
42 #include "libavutil/timestamp.h"
43 #include "libavdevice/avdevice.h"
44 #include "libswscale/swscale.h"
47 #include "cmdutils.h"
48 
49 const char program_name[] = "ffprobe";
50 const int program_birth_year = 2007;
51 
52 static int do_bitexact = 0;
53 static int do_count_frames = 0;
54 static int do_count_packets = 0;
55 static int do_read_frames = 0;
56 static int do_read_packets = 0;
57 static int do_show_chapters = 0;
58 static int do_show_error = 0;
59 static int do_show_format = 0;
60 static int do_show_frames = 0;
61 static int do_show_packets = 0;
62 static int do_show_programs = 0;
63 static int do_show_streams = 0;
65 static int do_show_data = 0;
66 static int do_show_program_version = 0;
67 static int do_show_library_versions = 0;
68 
69 static int do_show_chapter_tags = 0;
70 static int do_show_format_tags = 0;
71 static int do_show_frame_tags = 0;
72 static int do_show_program_tags = 0;
73 static int do_show_stream_tags = 0;
74 
75 static int show_value_unit = 0;
76 static int use_value_prefix = 0;
79 static int show_private_data = 1;
80 
81 static char *print_format;
82 static char *stream_specifier;
83 
84 typedef struct {
85  int id; ///< identifier
86  int64_t start, end; ///< start, end in second/AV_TIME_BASE units
87  int has_start, has_end;
88  int start_is_offset, end_is_offset;
90 } ReadInterval;
91 
93 static int read_intervals_nb = 0;
94 
95 /* section structure definition */
96 
97 #define SECTION_MAX_NB_CHILDREN 10
98 
99 struct section {
100  int id; ///< unique id identifying a section
101  const char *name;
102 
103 #define SECTION_FLAG_IS_WRAPPER 1 ///< the section only contains other sections, but has no data at its own level
104 #define SECTION_FLAG_IS_ARRAY 2 ///< the section contains an array of elements of the same type
105 #define SECTION_FLAG_HAS_VARIABLE_FIELDS 4 ///< the section may contain a variable number of fields with variable keys.
106  /// For these sections the element_name field is mandatory.
107  int flags;
108  int children_ids[SECTION_MAX_NB_CHILDREN+1]; ///< list of children section IDS, terminated by -1
109  const char *element_name; ///< name of the contained element, if provided
110  const char *unique_name; ///< unique section name, in case the name is ambiguous
113 };
114 
115 typedef enum {
145 } SectionID;
146 
147 static struct section sections[] = {
149  [SECTION_ID_CHAPTER] = { SECTION_ID_CHAPTER, "chapter", 0, { SECTION_ID_CHAPTER_TAGS, -1 } },
150  [SECTION_ID_CHAPTER_TAGS] = { SECTION_ID_CHAPTER_TAGS, "tags", SECTION_FLAG_HAS_VARIABLE_FIELDS, { -1 }, .element_name = "tag", .unique_name = "chapter_tags" },
151  [SECTION_ID_ERROR] = { SECTION_ID_ERROR, "error", 0, { -1 } },
152  [SECTION_ID_FORMAT] = { SECTION_ID_FORMAT, "format", 0, { SECTION_ID_FORMAT_TAGS, -1 } },
153  [SECTION_ID_FORMAT_TAGS] = { SECTION_ID_FORMAT_TAGS, "tags", SECTION_FLAG_HAS_VARIABLE_FIELDS, { -1 }, .element_name = "tag", .unique_name = "format_tags" },
155  [SECTION_ID_FRAME] = { SECTION_ID_FRAME, "frame", 0, { SECTION_ID_FRAME_TAGS, -1 } },
156  [SECTION_ID_FRAME_TAGS] = { SECTION_ID_FRAME_TAGS, "tags", SECTION_FLAG_HAS_VARIABLE_FIELDS, { -1 }, .element_name = "tag", .unique_name = "frame_tags" },
158  [SECTION_ID_LIBRARY_VERSION] = { SECTION_ID_LIBRARY_VERSION, "library_version", 0, { -1 } },
161  [SECTION_ID_PACKET] = { SECTION_ID_PACKET, "packet", 0, { -1 } },
162  [SECTION_ID_PROGRAM_STREAM_DISPOSITION] = { SECTION_ID_PROGRAM_STREAM_DISPOSITION, "disposition", 0, { -1 }, .unique_name = "program_stream_disposition" },
163  [SECTION_ID_PROGRAM_STREAM_TAGS] = { SECTION_ID_PROGRAM_STREAM_TAGS, "tags", SECTION_FLAG_HAS_VARIABLE_FIELDS, { -1 }, .element_name = "tag", .unique_name = "program_stream_tags" },
165  [SECTION_ID_PROGRAM_STREAMS] = { SECTION_ID_PROGRAM_STREAMS, "streams", SECTION_FLAG_IS_ARRAY, { SECTION_ID_PROGRAM_STREAM, -1 }, .unique_name = "program_streams" },
167  [SECTION_ID_PROGRAM_TAGS] = { SECTION_ID_PROGRAM_TAGS, "tags", SECTION_FLAG_HAS_VARIABLE_FIELDS, { -1 }, .element_name = "tag", .unique_name = "program_tags" },
168  [SECTION_ID_PROGRAM_VERSION] = { SECTION_ID_PROGRAM_VERSION, "program_version", 0, { -1 } },
175  [SECTION_ID_STREAM_DISPOSITION] = { SECTION_ID_STREAM_DISPOSITION, "disposition", 0, { -1 }, .unique_name = "stream_disposition" },
176  [SECTION_ID_STREAM_TAGS] = { SECTION_ID_STREAM_TAGS, "tags", SECTION_FLAG_HAS_VARIABLE_FIELDS, { -1 }, .element_name = "tag", .unique_name = "stream_tags" },
177  [SECTION_ID_SUBTITLE] = { SECTION_ID_SUBTITLE, "subtitle", 0, { -1 } },
178 };
179 
180 static const OptionDef *options;
181 
182 /* FFprobe context */
183 static const char *input_filename;
184 static AVInputFormat *iformat = NULL;
185 
186 static const char *const binary_unit_prefixes [] = { "", "Ki", "Mi", "Gi", "Ti", "Pi" };
187 static const char *const decimal_unit_prefixes[] = { "", "K" , "M" , "G" , "T" , "P" };
188 
189 static const char unit_second_str[] = "s" ;
190 static const char unit_hertz_str[] = "Hz" ;
191 static const char unit_byte_str[] = "byte" ;
192 static const char unit_bit_per_second_str[] = "bit/s";
193 
194 static int nb_streams;
195 static uint64_t *nb_streams_packets;
196 static uint64_t *nb_streams_frames;
197 static int *selected_streams;
198 
199 static void ffprobe_cleanup(int ret)
200 {
201  int i;
202  for (i = 0; i < FF_ARRAY_ELEMS(sections); i++)
203  av_dict_free(&(sections[i].entries_to_show));
204 }
205 
206 struct unit_value {
207  union { double d; long long int i; } val;
208  const char *unit;
209 };
210 
211 static char *value_string(char *buf, int buf_size, struct unit_value uv)
212 {
213  double vald;
214  long long int vali;
215  int show_float = 0;
216 
217  if (uv.unit == unit_second_str) {
218  vald = uv.val.d;
219  show_float = 1;
220  } else {
221  vald = vali = uv.val.i;
222  }
223 
225  double secs;
226  int hours, mins;
227  secs = vald;
228  mins = (int)secs / 60;
229  secs = secs - mins * 60;
230  hours = mins / 60;
231  mins %= 60;
232  snprintf(buf, buf_size, "%d:%02d:%09.6f", hours, mins, secs);
233  } else {
234  const char *prefix_string = "";
235 
236  if (use_value_prefix && vald > 1) {
237  long long int index;
238 
240  index = (long long int) (log2(vald)) / 10;
241  index = av_clip(index, 0, FF_ARRAY_ELEMS(binary_unit_prefixes) - 1);
242  vald /= exp2(index * 10);
243  prefix_string = binary_unit_prefixes[index];
244  } else {
245  index = (long long int) (log10(vald)) / 3;
246  index = av_clip(index, 0, FF_ARRAY_ELEMS(decimal_unit_prefixes) - 1);
247  vald /= pow(10, index * 3);
248  prefix_string = decimal_unit_prefixes[index];
249  }
250  vali = vald;
251  }
252 
253  if (show_float || (use_value_prefix && vald != (long long int)vald))
254  snprintf(buf, buf_size, "%f", vald);
255  else
256  snprintf(buf, buf_size, "%lld", vali);
257  av_strlcatf(buf, buf_size, "%s%s%s", *prefix_string || show_value_unit ? " " : "",
258  prefix_string, show_value_unit ? uv.unit : "");
259  }
260 
261  return buf;
262 }
263 
264 /* WRITERS API */
265 
266 typedef struct WriterContext WriterContext;
267 
268 #define WRITER_FLAG_DISPLAY_OPTIONAL_FIELDS 1
269 #define WRITER_FLAG_PUT_PACKETS_AND_FRAMES_IN_SAME_CHAPTER 2
270 
271 typedef enum {
277 
278 typedef struct Writer {
279  const AVClass *priv_class; ///< private class of the writer, if any
280  int priv_size; ///< private size for the writer context
281  const char *name;
282 
283  int (*init) (WriterContext *wctx);
285 
288  void (*print_integer) (WriterContext *wctx, const char *, long long int);
289  void (*print_rational) (WriterContext *wctx, AVRational *q, char *sep);
290  void (*print_string) (WriterContext *wctx, const char *, const char *);
291  int flags; ///< a combination or WRITER_FLAG_*
292 } Writer;
293 
294 #define SECTION_MAX_NB_LEVELS 10
295 
297  const AVClass *class; ///< class of the writer
298  const Writer *writer; ///< the Writer of which this is an instance
299  char *name; ///< name of this writer instance
300  void *priv; ///< private data for use by the filter
301 
302  const struct section *sections; ///< array containing all sections
303  int nb_sections; ///< number of sections
304 
305  int level; ///< current level, starting from 0
306 
307  /** number of the item printed in the given section, starting from 0 */
309 
310  /** section per each level */
312  AVBPrint section_pbuf[SECTION_MAX_NB_LEVELS]; ///< generic print buffer dedicated to each section,
313  /// used by various writers
314 
315  unsigned int nb_section_packet; ///< number of the packet section in case we are in "packets_and_frames" section
316  unsigned int nb_section_frame; ///< number of the frame section in case we are in "packets_and_frames" section
317  unsigned int nb_section_packet_frame; ///< nb_section_packet or nb_section_frame according if is_packets_and_frames
318 
322 };
323 
324 static const char *writer_get_name(void *p)
325 {
326  WriterContext *wctx = p;
327  return wctx->writer->name;
328 }
329 
330 #define OFFSET(x) offsetof(WriterContext, x)
331 
332 static const AVOption writer_options[] = {
333  { "string_validation", "set string validation mode",
334  OFFSET(string_validation), AV_OPT_TYPE_INT, {.i64=WRITER_STRING_VALIDATION_REPLACE}, 0, WRITER_STRING_VALIDATION_NB-1, .unit = "sv" },
335  { "sv", "set string validation mode",
336  OFFSET(string_validation), AV_OPT_TYPE_INT, {.i64=WRITER_STRING_VALIDATION_REPLACE}, 0, WRITER_STRING_VALIDATION_NB-1, .unit = "sv" },
337  { "ignore", NULL, 0, AV_OPT_TYPE_CONST, {.i64 = WRITER_STRING_VALIDATION_IGNORE}, .unit = "sv" },
338  { "replace", NULL, 0, AV_OPT_TYPE_CONST, {.i64 = WRITER_STRING_VALIDATION_REPLACE}, .unit = "sv" },
339  { "fail", NULL, 0, AV_OPT_TYPE_CONST, {.i64 = WRITER_STRING_VALIDATION_FAIL}, .unit = "sv" },
340  { "string_validation_replacement", "set string validation replacement string", OFFSET(string_validation_replacement), AV_OPT_TYPE_STRING, {.str=""}},
341  { "svr", "set string validation replacement string", OFFSET(string_validation_replacement), AV_OPT_TYPE_STRING, {.str="\xEF\xBF\xBD"}},
342  { NULL }
343 };
344 
345 static void *writer_child_next(void *obj, void *prev)
346 {
347  WriterContext *ctx = obj;
348  if (!prev && ctx->writer && ctx->writer->priv_class && ctx->priv)
349  return ctx->priv;
350  return NULL;
351 }
352 
353 static const AVClass writer_class = {
354  .class_name = "Writer",
355  .item_name = writer_get_name,
356  .option = writer_options,
357  .version = LIBAVUTIL_VERSION_INT,
358  .child_next = writer_child_next,
359 };
360 
361 static void writer_close(WriterContext **wctx)
362 {
363  int i;
364 
365  if (!*wctx)
366  return;
367 
368  if ((*wctx)->writer->uninit)
369  (*wctx)->writer->uninit(*wctx);
370  for (i = 0; i < SECTION_MAX_NB_LEVELS; i++)
371  av_bprint_finalize(&(*wctx)->section_pbuf[i], NULL);
372  if ((*wctx)->writer->priv_class)
373  av_opt_free((*wctx)->priv);
374  av_freep(&((*wctx)->priv));
375  av_opt_free(*wctx);
376  av_freep(wctx);
377 }
378 
379 static void bprint_bytes(AVBPrint *bp, const uint8_t *ubuf, size_t ubuf_size)
380 {
381  int i;
382  av_bprintf(bp, "0X");
383  for (i = 0; i < ubuf_size; i++)
384  av_bprintf(bp, "%02X", ubuf[i]);
385 }
386 
387 
388 static int writer_open(WriterContext **wctx, const Writer *writer, const char *args,
389  const struct section *sections, int nb_sections)
390 {
391  int i, ret = 0;
392 
393  if (!(*wctx = av_mallocz(sizeof(WriterContext)))) {
394  ret = AVERROR(ENOMEM);
395  goto fail;
396  }
397 
398  if (!((*wctx)->priv = av_mallocz(writer->priv_size))) {
399  ret = AVERROR(ENOMEM);
400  goto fail;
401  }
402 
403  (*wctx)->class = &writer_class;
404  (*wctx)->writer = writer;
405  (*wctx)->level = -1;
406  (*wctx)->sections = sections;
407  (*wctx)->nb_sections = nb_sections;
408 
409  av_opt_set_defaults(*wctx);
410 
411  if (writer->priv_class) {
412  void *priv_ctx = (*wctx)->priv;
413  *((const AVClass **)priv_ctx) = writer->priv_class;
414  av_opt_set_defaults(priv_ctx);
415  }
416 
417  /* convert options to dictionary */
418  if (args) {
419  AVDictionary *opts = NULL;
420  AVDictionaryEntry *opt = NULL;
421 
422  if ((ret = av_dict_parse_string(&opts, args, "=", ":", 0)) < 0) {
423  av_log(*wctx, AV_LOG_ERROR, "Failed to parse option string '%s' provided to writer context\n", args);
424  av_dict_free(&opts);
425  goto fail;
426  }
427 
428  while ((opt = av_dict_get(opts, "", opt, AV_DICT_IGNORE_SUFFIX))) {
429  if ((ret = av_opt_set(*wctx, opt->key, opt->value, AV_OPT_SEARCH_CHILDREN)) < 0) {
430  av_log(*wctx, AV_LOG_ERROR, "Failed to set option '%s' with value '%s' provided to writer context\n",
431  opt->key, opt->value);
432  av_dict_free(&opts);
433  goto fail;
434  }
435  }
436 
437  av_dict_free(&opts);
438  }
439 
440  /* validate replace string */
441  {
442  const uint8_t *p = (*wctx)->string_validation_replacement;
443  const uint8_t *endp = p + strlen(p);
444  while (*p) {
445  const uint8_t *p0 = p;
446  int32_t code;
447  ret = av_utf8_decode(&code, &p, endp, (*wctx)->string_validation_utf8_flags);
448  if (ret < 0) {
449  AVBPrint bp;
451  bprint_bytes(&bp, p0, p-p0),
452  av_log(wctx, AV_LOG_ERROR,
453  "Invalid UTF8 sequence %s found in string validation replace '%s'\n",
454  bp.str, (*wctx)->string_validation_replacement);
455  return ret;
456  }
457  }
458  }
459 
460  for (i = 0; i < SECTION_MAX_NB_LEVELS; i++)
461  av_bprint_init(&(*wctx)->section_pbuf[i], 1, AV_BPRINT_SIZE_UNLIMITED);
462 
463  if ((*wctx)->writer->init)
464  ret = (*wctx)->writer->init(*wctx);
465  if (ret < 0)
466  goto fail;
467 
468  return 0;
469 
470 fail:
471  writer_close(wctx);
472  return ret;
473 }
474 
476  int section_id)
477 {
478  int parent_section_id;
479  wctx->level++;
481  parent_section_id = wctx->level ?
482  (wctx->section[wctx->level-1])->id : SECTION_ID_NONE;
483 
484  wctx->nb_item[wctx->level] = 0;
485  wctx->section[wctx->level] = &wctx->sections[section_id];
486 
487  if (section_id == SECTION_ID_PACKETS_AND_FRAMES) {
488  wctx->nb_section_packet = wctx->nb_section_frame =
489  wctx->nb_section_packet_frame = 0;
490  } else if (parent_section_id == SECTION_ID_PACKETS_AND_FRAMES) {
491  wctx->nb_section_packet_frame = section_id == SECTION_ID_PACKET ?
492  wctx->nb_section_packet : wctx->nb_section_frame;
493  }
494 
495  if (wctx->writer->print_section_header)
496  wctx->writer->print_section_header(wctx);
497 }
498 
500 {
501  int section_id = wctx->section[wctx->level]->id;
502  int parent_section_id = wctx->level ?
503  wctx->section[wctx->level-1]->id : SECTION_ID_NONE;
504 
505  if (parent_section_id != SECTION_ID_NONE)
506  wctx->nb_item[wctx->level-1]++;
507  if (parent_section_id == SECTION_ID_PACKETS_AND_FRAMES) {
508  if (section_id == SECTION_ID_PACKET) wctx->nb_section_packet++;
509  else wctx->nb_section_frame++;
510  }
511  if (wctx->writer->print_section_footer)
512  wctx->writer->print_section_footer(wctx);
513  wctx->level--;
514 }
515 
516 static inline void writer_print_integer(WriterContext *wctx,
517  const char *key, long long int val)
518 {
519  const struct section *section = wctx->section[wctx->level];
520 
521  if (section->show_all_entries || av_dict_get(section->entries_to_show, key, NULL, 0)) {
522  wctx->writer->print_integer(wctx, key, val);
523  wctx->nb_item[wctx->level]++;
524  }
525 }
526 
527 static inline int validate_string(WriterContext *wctx, char **dstp, const char *src)
528 {
529  const uint8_t *p, *endp;
530  AVBPrint dstbuf;
531  int invalid_chars_nb = 0, ret = 0;
532 
534 
535  endp = src + strlen(src);
536  for (p = (uint8_t *)src; *p;) {
537  uint32_t code;
538  int invalid = 0;
539  const uint8_t *p0 = p;
540 
541  if (av_utf8_decode(&code, &p, endp, wctx->string_validation_utf8_flags) < 0) {
542  AVBPrint bp;
544  bprint_bytes(&bp, p0, p-p0);
545  av_log(wctx, AV_LOG_DEBUG,
546  "Invalid UTF-8 sequence %s found in string '%s'\n", bp.str, src);
547  invalid = 1;
548  }
549 
550  if (invalid) {
551  invalid_chars_nb++;
552 
553  switch (wctx->string_validation) {
555  av_log(wctx, AV_LOG_ERROR,
556  "Invalid UTF-8 sequence found in string '%s'\n", src);
558  goto end;
559  break;
560 
562  av_bprintf(&dstbuf, "%s", wctx->string_validation_replacement);
563  break;
564  }
565  }
566 
567  if (!invalid || wctx->string_validation == WRITER_STRING_VALIDATION_IGNORE)
568  av_bprint_append_data(&dstbuf, p0, p-p0);
569  }
570 
571  if (invalid_chars_nb && wctx->string_validation == WRITER_STRING_VALIDATION_REPLACE) {
572  av_log(wctx, AV_LOG_WARNING,
573  "%d invalid UTF-8 sequence(s) found in string '%s', replaced with '%s'\n",
574  invalid_chars_nb, src, wctx->string_validation_replacement);
575  }
576 
577 end:
578  av_bprint_finalize(&dstbuf, dstp);
579  return ret;
580 }
581 
582 #define PRINT_STRING_OPT 1
583 #define PRINT_STRING_VALIDATE 2
584 
585 static inline int writer_print_string(WriterContext *wctx,
586  const char *key, const char *val, int flags)
587 {
588  const struct section *section = wctx->section[wctx->level];
589  int ret = 0;
590 
591  if ((flags & PRINT_STRING_OPT)
593  return 0;
594 
595  if (section->show_all_entries || av_dict_get(section->entries_to_show, key, NULL, 0)) {
596  if (flags & PRINT_STRING_VALIDATE) {
597  char *key1 = NULL, *val1 = NULL;
598  ret = validate_string(wctx, &key1, key);
599  if (ret < 0) goto end;
600  ret = validate_string(wctx, &val1, val);
601  if (ret < 0) goto end;
602  wctx->writer->print_string(wctx, key1, val1);
603  end:
604  if (ret < 0) {
605  av_log(wctx, AV_LOG_ERROR,
606  "Invalid key=value string combination %s=%s in section %s\n",
607  key, val, section->unique_name);
608  }
609  av_free(key1);
610  av_free(val1);
611  } else {
612  wctx->writer->print_string(wctx, key, val);
613  }
614 
615  wctx->nb_item[wctx->level]++;
616  }
617 
618  return ret;
619 }
620 
621 static inline void writer_print_rational(WriterContext *wctx,
622  const char *key, AVRational q, char sep)
623 {
624  AVBPrint buf;
626  av_bprintf(&buf, "%d%c%d", q.num, sep, q.den);
627  writer_print_string(wctx, key, buf.str, 0);
628 }
629 
630 static void writer_print_time(WriterContext *wctx, const char *key,
631  int64_t ts, const AVRational *time_base, int is_duration)
632 {
633  char buf[128];
634 
635  if ((!is_duration && ts == AV_NOPTS_VALUE) || (is_duration && ts == 0)) {
636  writer_print_string(wctx, key, "N/A", PRINT_STRING_OPT);
637  } else {
638  double d = ts * av_q2d(*time_base);
639  struct unit_value uv;
640  uv.val.d = d;
641  uv.unit = unit_second_str;
642  value_string(buf, sizeof(buf), uv);
643  writer_print_string(wctx, key, buf, 0);
644  }
645 }
646 
647 static void writer_print_ts(WriterContext *wctx, const char *key, int64_t ts, int is_duration)
648 {
649  if ((!is_duration && ts == AV_NOPTS_VALUE) || (is_duration && ts == 0)) {
650  writer_print_string(wctx, key, "N/A", PRINT_STRING_OPT);
651  } else {
652  writer_print_integer(wctx, key, ts);
653  }
654 }
655 
656 static void writer_print_data(WriterContext *wctx, const char *name,
657  uint8_t *data, int size)
658 {
659  AVBPrint bp;
660  int offset = 0, l, i;
661 
663  av_bprintf(&bp, "\n");
664  while (size) {
665  av_bprintf(&bp, "%08x: ", offset);
666  l = FFMIN(size, 16);
667  for (i = 0; i < l; i++) {
668  av_bprintf(&bp, "%02x", data[i]);
669  if (i & 1)
670  av_bprintf(&bp, " ");
671  }
672  av_bprint_chars(&bp, ' ', 41 - 2 * i - i / 2);
673  for (i = 0; i < l; i++)
674  av_bprint_chars(&bp, data[i] - 32U < 95 ? data[i] : '.', 1);
675  av_bprintf(&bp, "\n");
676  offset += l;
677  data += l;
678  size -= l;
679  }
680  writer_print_string(wctx, name, bp.str, 0);
681  av_bprint_finalize(&bp, NULL);
682 }
683 
684 #define MAX_REGISTERED_WRITERS_NB 64
685 
687 
688 static int writer_register(const Writer *writer)
689 {
690  static int next_registered_writer_idx = 0;
691 
692  if (next_registered_writer_idx == MAX_REGISTERED_WRITERS_NB)
693  return AVERROR(ENOMEM);
694 
695  registered_writers[next_registered_writer_idx++] = writer;
696  return 0;
697 }
698 
699 static const Writer *writer_get_by_name(const char *name)
700 {
701  int i;
702 
703  for (i = 0; registered_writers[i]; i++)
704  if (!strcmp(registered_writers[i]->name, name))
705  return registered_writers[i];
706 
707  return NULL;
708 }
709 
710 
711 /* WRITERS */
712 
713 #define DEFINE_WRITER_CLASS(name) \
714 static const char *name##_get_name(void *ctx) \
715 { \
716  return #name ; \
717 } \
718 static const AVClass name##_class = { \
719  .class_name = #name, \
720  .item_name = name##_get_name, \
721  .option = name##_options \
722 }
723 
724 /* Default output */
725 
726 typedef struct DefaultContext {
727  const AVClass *class;
728  int nokey;
732 
733 #undef OFFSET
734 #define OFFSET(x) offsetof(DefaultContext, x)
735 
736 static const AVOption default_options[] = {
737  { "noprint_wrappers", "do not print headers and footers", OFFSET(noprint_wrappers), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
738  { "nw", "do not print headers and footers", OFFSET(noprint_wrappers), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
739  { "nokey", "force no key printing", OFFSET(nokey), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
740  { "nk", "force no key printing", OFFSET(nokey), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
741  {NULL},
742 };
743 
744 DEFINE_WRITER_CLASS(default);
745 
746 /* lame uppercasing routine, assumes the string is lower case ASCII */
747 static inline char *upcase_string(char *dst, size_t dst_size, const char *src)
748 {
749  int i;
750  for (i = 0; src[i] && i < dst_size-1; i++)
751  dst[i] = av_toupper(src[i]);
752  dst[i] = 0;
753  return dst;
754 }
755 
757 {
758  DefaultContext *def = wctx->priv;
759  char buf[32];
760  const struct section *section = wctx->section[wctx->level];
761  const struct section *parent_section = wctx->level ?
762  wctx->section[wctx->level-1] : NULL;
763 
764  av_bprint_clear(&wctx->section_pbuf[wctx->level]);
765  if (parent_section &&
766  !(parent_section->flags & (SECTION_FLAG_IS_WRAPPER|SECTION_FLAG_IS_ARRAY))) {
767  def->nested_section[wctx->level] = 1;
768  av_bprintf(&wctx->section_pbuf[wctx->level], "%s%s:",
769  wctx->section_pbuf[wctx->level-1].str,
770  upcase_string(buf, sizeof(buf),
771  av_x_if_null(section->element_name, section->name)));
772  }
773 
774  if (def->noprint_wrappers || def->nested_section[wctx->level])
775  return;
776 
778  printf("[%s]\n", upcase_string(buf, sizeof(buf), section->name));
779 }
780 
782 {
783  DefaultContext *def = wctx->priv;
784  const struct section *section = wctx->section[wctx->level];
785  char buf[32];
786 
787  if (def->noprint_wrappers || def->nested_section[wctx->level])
788  return;
789 
791  printf("[/%s]\n", upcase_string(buf, sizeof(buf), section->name));
792 }
793 
794 static void default_print_str(WriterContext *wctx, const char *key, const char *value)
795 {
796  DefaultContext *def = wctx->priv;
797 
798  if (!def->nokey)
799  printf("%s%s=", wctx->section_pbuf[wctx->level].str, key);
800  printf("%s\n", value);
801 }
802 
803 static void default_print_int(WriterContext *wctx, const char *key, long long int value)
804 {
805  DefaultContext *def = wctx->priv;
806 
807  if (!def->nokey)
808  printf("%s%s=", wctx->section_pbuf[wctx->level].str, key);
809  printf("%lld\n", value);
810 }
811 
812 static const Writer default_writer = {
813  .name = "default",
814  .priv_size = sizeof(DefaultContext),
817  .print_integer = default_print_int,
818  .print_string = default_print_str,
820  .priv_class = &default_class,
821 };
822 
823 /* Compact output */
824 
825 /**
826  * Apply C-language-like string escaping.
827  */
828 static const char *c_escape_str(AVBPrint *dst, const char *src, const char sep, void *log_ctx)
829 {
830  const char *p;
831 
832  for (p = src; *p; p++) {
833  switch (*p) {
834  case '\b': av_bprintf(dst, "%s", "\\b"); break;
835  case '\f': av_bprintf(dst, "%s", "\\f"); break;
836  case '\n': av_bprintf(dst, "%s", "\\n"); break;
837  case '\r': av_bprintf(dst, "%s", "\\r"); break;
838  case '\\': av_bprintf(dst, "%s", "\\\\"); break;
839  default:
840  if (*p == sep)
841  av_bprint_chars(dst, '\\', 1);
842  av_bprint_chars(dst, *p, 1);
843  }
844  }
845  return dst->str;
846 }
847 
848 /**
849  * Quote fields containing special characters, check RFC4180.
850  */
851 static const char *csv_escape_str(AVBPrint *dst, const char *src, const char sep, void *log_ctx)
852 {
853  char meta_chars[] = { sep, '"', '\n', '\r', '\0' };
854  int needs_quoting = !!src[strcspn(src, meta_chars)];
855 
856  if (needs_quoting)
857  av_bprint_chars(dst, '"', 1);
858 
859  for (; *src; src++) {
860  if (*src == '"')
861  av_bprint_chars(dst, '"', 1);
862  av_bprint_chars(dst, *src, 1);
863  }
864  if (needs_quoting)
865  av_bprint_chars(dst, '"', 1);
866  return dst->str;
867 }
868 
869 static const char *none_escape_str(AVBPrint *dst, const char *src, const char sep, void *log_ctx)
870 {
871  return src;
872 }
873 
874 typedef struct CompactContext {
875  const AVClass *class;
877  char item_sep;
878  int nokey;
881  const char * (*escape_str)(AVBPrint *dst, const char *src, const char sep, void *log_ctx);
886 
887 #undef OFFSET
888 #define OFFSET(x) offsetof(CompactContext, x)
889 
890 static const AVOption compact_options[]= {
891  {"item_sep", "set item separator", OFFSET(item_sep_str), AV_OPT_TYPE_STRING, {.str="|"}, CHAR_MIN, CHAR_MAX },
892  {"s", "set item separator", OFFSET(item_sep_str), AV_OPT_TYPE_STRING, {.str="|"}, CHAR_MIN, CHAR_MAX },
893  {"nokey", "force no key printing", OFFSET(nokey), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
894  {"nk", "force no key printing", OFFSET(nokey), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
895  {"escape", "set escape mode", OFFSET(escape_mode_str), AV_OPT_TYPE_STRING, {.str="c"}, CHAR_MIN, CHAR_MAX },
896  {"e", "set escape mode", OFFSET(escape_mode_str), AV_OPT_TYPE_STRING, {.str="c"}, CHAR_MIN, CHAR_MAX },
897  {"print_section", "print section name", OFFSET(print_section), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
898  {"p", "print section name", OFFSET(print_section), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
899  {NULL},
900 };
901 
902 DEFINE_WRITER_CLASS(compact);
903 
905 {
906  CompactContext *compact = wctx->priv;
907 
908  if (strlen(compact->item_sep_str) != 1) {
909  av_log(wctx, AV_LOG_ERROR, "Item separator '%s' specified, but must contain a single character\n",
910  compact->item_sep_str);
911  return AVERROR(EINVAL);
912  }
913  compact->item_sep = compact->item_sep_str[0];
914 
915  if (!strcmp(compact->escape_mode_str, "none")) compact->escape_str = none_escape_str;
916  else if (!strcmp(compact->escape_mode_str, "c" )) compact->escape_str = c_escape_str;
917  else if (!strcmp(compact->escape_mode_str, "csv" )) compact->escape_str = csv_escape_str;
918  else {
919  av_log(wctx, AV_LOG_ERROR, "Unknown escape mode '%s'\n", compact->escape_mode_str);
920  return AVERROR(EINVAL);
921  }
922 
923  return 0;
924 }
925 
927 {
928  CompactContext *compact = wctx->priv;
929  const struct section *section = wctx->section[wctx->level];
930  const struct section *parent_section = wctx->level ?
931  wctx->section[wctx->level-1] : NULL;
932  compact->terminate_line[wctx->level] = 1;
933  compact->has_nested_elems[wctx->level] = 0;
934 
935  av_bprint_clear(&wctx->section_pbuf[wctx->level]);
936  if (!(section->flags & SECTION_FLAG_IS_ARRAY) && parent_section &&
937  !(parent_section->flags & (SECTION_FLAG_IS_WRAPPER|SECTION_FLAG_IS_ARRAY))) {
938  compact->nested_section[wctx->level] = 1;
939  compact->has_nested_elems[wctx->level-1] = 1;
940  av_bprintf(&wctx->section_pbuf[wctx->level], "%s%s:",
941  wctx->section_pbuf[wctx->level-1].str,
942  (char *)av_x_if_null(section->element_name, section->name));
943  wctx->nb_item[wctx->level] = wctx->nb_item[wctx->level-1];
944  } else {
945  if (parent_section && compact->has_nested_elems[wctx->level-1] &&
946  (section->flags & SECTION_FLAG_IS_ARRAY)) {
947  compact->terminate_line[wctx->level-1] = 0;
948  printf("\n");
949  }
950  if (compact->print_section &&
952  printf("%s%c", section->name, compact->item_sep);
953  }
954 }
955 
957 {
958  CompactContext *compact = wctx->priv;
959 
960  if (!compact->nested_section[wctx->level] &&
961  compact->terminate_line[wctx->level] &&
963  printf("\n");
964 }
965 
966 static void compact_print_str(WriterContext *wctx, const char *key, const char *value)
967 {
968  CompactContext *compact = wctx->priv;
969  AVBPrint buf;
970 
971  if (wctx->nb_item[wctx->level]) printf("%c", compact->item_sep);
972  if (!compact->nokey)
973  printf("%s%s=", wctx->section_pbuf[wctx->level].str, key);
975  printf("%s", compact->escape_str(&buf, value, compact->item_sep, wctx));
976  av_bprint_finalize(&buf, NULL);
977 }
978 
979 static void compact_print_int(WriterContext *wctx, const char *key, long long int value)
980 {
981  CompactContext *compact = wctx->priv;
982 
983  if (wctx->nb_item[wctx->level]) printf("%c", compact->item_sep);
984  if (!compact->nokey)
985  printf("%s%s=", wctx->section_pbuf[wctx->level].str, key);
986  printf("%lld", value);
987 }
988 
989 static const Writer compact_writer = {
990  .name = "compact",
991  .priv_size = sizeof(CompactContext),
992  .init = compact_init,
995  .print_integer = compact_print_int,
996  .print_string = compact_print_str,
998  .priv_class = &compact_class,
999 };
1000 
1001 /* CSV output */
1002 
1003 #undef OFFSET
1004 #define OFFSET(x) offsetof(CompactContext, x)
1005 
1006 static const AVOption csv_options[] = {
1007  {"item_sep", "set item separator", OFFSET(item_sep_str), AV_OPT_TYPE_STRING, {.str=","}, CHAR_MIN, CHAR_MAX },
1008  {"s", "set item separator", OFFSET(item_sep_str), AV_OPT_TYPE_STRING, {.str=","}, CHAR_MIN, CHAR_MAX },
1009  {"nokey", "force no key printing", OFFSET(nokey), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
1010  {"nk", "force no key printing", OFFSET(nokey), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
1011  {"escape", "set escape mode", OFFSET(escape_mode_str), AV_OPT_TYPE_STRING, {.str="csv"}, CHAR_MIN, CHAR_MAX },
1012  {"e", "set escape mode", OFFSET(escape_mode_str), AV_OPT_TYPE_STRING, {.str="csv"}, CHAR_MIN, CHAR_MAX },
1013  {"print_section", "print section name", OFFSET(print_section), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
1014  {"p", "print section name", OFFSET(print_section), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
1015  {NULL},
1016 };
1017 
1018 DEFINE_WRITER_CLASS(csv);
1019 
1020 static const Writer csv_writer = {
1021  .name = "csv",
1022  .priv_size = sizeof(CompactContext),
1023  .init = compact_init,
1026  .print_integer = compact_print_int,
1027  .print_string = compact_print_str,
1029  .priv_class = &csv_class,
1030 };
1031 
1032 /* Flat output */
1033 
1034 typedef struct FlatContext {
1035  const AVClass *class;
1036  const char *sep_str;
1037  char sep;
1039 } FlatContext;
1040 
1041 #undef OFFSET
1042 #define OFFSET(x) offsetof(FlatContext, x)
1043 
1044 static const AVOption flat_options[]= {
1045  {"sep_char", "set separator", OFFSET(sep_str), AV_OPT_TYPE_STRING, {.str="."}, CHAR_MIN, CHAR_MAX },
1046  {"s", "set separator", OFFSET(sep_str), AV_OPT_TYPE_STRING, {.str="."}, CHAR_MIN, CHAR_MAX },
1047  {"hierarchical", "specify if the section specification should be hierarchical", OFFSET(hierarchical), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
1048  {"h", "specify if the section specification should be hierarchical", OFFSET(hierarchical), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
1049  {NULL},
1050 };
1051 
1052 DEFINE_WRITER_CLASS(flat);
1053 
1055 {
1056  FlatContext *flat = wctx->priv;
1057 
1058  if (strlen(flat->sep_str) != 1) {
1059  av_log(wctx, AV_LOG_ERROR, "Item separator '%s' specified, but must contain a single character\n",
1060  flat->sep_str);
1061  return AVERROR(EINVAL);
1062  }
1063  flat->sep = flat->sep_str[0];
1064 
1065  return 0;
1066 }
1067 
1068 static const char *flat_escape_key_str(AVBPrint *dst, const char *src, const char sep)
1069 {
1070  const char *p;
1071 
1072  for (p = src; *p; p++) {
1073  if (!((*p >= '0' && *p <= '9') ||
1074  (*p >= 'a' && *p <= 'z') ||
1075  (*p >= 'A' && *p <= 'Z')))
1076  av_bprint_chars(dst, '_', 1);
1077  else
1078  av_bprint_chars(dst, *p, 1);
1079  }
1080  return dst->str;
1081 }
1082 
1083 static const char *flat_escape_value_str(AVBPrint *dst, const char *src)
1084 {
1085  const char *p;
1086 
1087  for (p = src; *p; p++) {
1088  switch (*p) {
1089  case '\n': av_bprintf(dst, "%s", "\\n"); break;
1090  case '\r': av_bprintf(dst, "%s", "\\r"); break;
1091  case '\\': av_bprintf(dst, "%s", "\\\\"); break;
1092  case '"': av_bprintf(dst, "%s", "\\\""); break;
1093  case '`': av_bprintf(dst, "%s", "\\`"); break;
1094  case '$': av_bprintf(dst, "%s", "\\$"); break;
1095  default: av_bprint_chars(dst, *p, 1); break;
1096  }
1097  }
1098  return dst->str;
1099 }
1100 
1102 {
1103  FlatContext *flat = wctx->priv;
1104  AVBPrint *buf = &wctx->section_pbuf[wctx->level];
1105  const struct section *section = wctx->section[wctx->level];
1106  const struct section *parent_section = wctx->level ?
1107  wctx->section[wctx->level-1] : NULL;
1108 
1109  /* build section header */
1110  av_bprint_clear(buf);
1111  if (!parent_section)
1112  return;
1113  av_bprintf(buf, "%s", wctx->section_pbuf[wctx->level-1].str);
1114 
1115  if (flat->hierarchical ||
1117  av_bprintf(buf, "%s%s", wctx->section[wctx->level]->name, flat->sep_str);
1118 
1119  if (parent_section->flags & SECTION_FLAG_IS_ARRAY) {
1120  int n = parent_section->id == SECTION_ID_PACKETS_AND_FRAMES ?
1121  wctx->nb_section_packet_frame : wctx->nb_item[wctx->level-1];
1122  av_bprintf(buf, "%d%s", n, flat->sep_str);
1123  }
1124  }
1125 }
1126 
1127 static void flat_print_int(WriterContext *wctx, const char *key, long long int value)
1128 {
1129  printf("%s%s=%lld\n", wctx->section_pbuf[wctx->level].str, key, value);
1130 }
1131 
1132 static void flat_print_str(WriterContext *wctx, const char *key, const char *value)
1133 {
1134  FlatContext *flat = wctx->priv;
1135  AVBPrint buf;
1136 
1137  printf("%s", wctx->section_pbuf[wctx->level].str);
1139  printf("%s=", flat_escape_key_str(&buf, key, flat->sep));
1140  av_bprint_clear(&buf);
1141  printf("\"%s\"\n", flat_escape_value_str(&buf, value));
1142  av_bprint_finalize(&buf, NULL);
1143 }
1144 
1145 static const Writer flat_writer = {
1146  .name = "flat",
1147  .priv_size = sizeof(FlatContext),
1148  .init = flat_init,
1150  .print_integer = flat_print_int,
1151  .print_string = flat_print_str,
1153  .priv_class = &flat_class,
1154 };
1155 
1156 /* INI format output */
1157 
1158 typedef struct {
1159  const AVClass *class;
1161 } INIContext;
1162 
1163 #undef OFFSET
1164 #define OFFSET(x) offsetof(INIContext, x)
1165 
1166 static const AVOption ini_options[] = {
1167  {"hierarchical", "specify if the section specification should be hierarchical", OFFSET(hierarchical), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
1168  {"h", "specify if the section specification should be hierarchical", OFFSET(hierarchical), AV_OPT_TYPE_INT, {.i64=1}, 0, 1 },
1169  {NULL},
1170 };
1171 
1172 DEFINE_WRITER_CLASS(ini);
1173 
1174 static char *ini_escape_str(AVBPrint *dst, const char *src)
1175 {
1176  int i = 0;
1177  char c = 0;
1178 
1179  while (c = src[i++]) {
1180  switch (c) {
1181  case '\b': av_bprintf(dst, "%s", "\\b"); break;
1182  case '\f': av_bprintf(dst, "%s", "\\f"); break;
1183  case '\n': av_bprintf(dst, "%s", "\\n"); break;
1184  case '\r': av_bprintf(dst, "%s", "\\r"); break;
1185  case '\t': av_bprintf(dst, "%s", "\\t"); break;
1186  case '\\':
1187  case '#' :
1188  case '=' :
1189  case ':' : av_bprint_chars(dst, '\\', 1);
1190  default:
1191  if ((unsigned char)c < 32)
1192  av_bprintf(dst, "\\x00%02x", c & 0xff);
1193  else
1194  av_bprint_chars(dst, c, 1);
1195  break;
1196  }
1197  }
1198  return dst->str;
1199 }
1200 
1202 {
1203  INIContext *ini = wctx->priv;
1204  AVBPrint *buf = &wctx->section_pbuf[wctx->level];
1205  const struct section *section = wctx->section[wctx->level];
1206  const struct section *parent_section = wctx->level ?
1207  wctx->section[wctx->level-1] : NULL;
1208 
1209  av_bprint_clear(buf);
1210  if (!parent_section) {
1211  printf("# ffprobe output\n\n");
1212  return;
1213  }
1214 
1215  if (wctx->nb_item[wctx->level-1])
1216  printf("\n");
1217 
1218  av_bprintf(buf, "%s", wctx->section_pbuf[wctx->level-1].str);
1219  if (ini->hierarchical ||
1221  av_bprintf(buf, "%s%s", buf->str[0] ? "." : "", wctx->section[wctx->level]->name);
1222 
1223  if (parent_section->flags & SECTION_FLAG_IS_ARRAY) {
1224  int n = parent_section->id == SECTION_ID_PACKETS_AND_FRAMES ?
1225  wctx->nb_section_packet_frame : wctx->nb_item[wctx->level-1];
1226  av_bprintf(buf, ".%d", n);
1227  }
1228  }
1229 
1231  printf("[%s]\n", buf->str);
1232 }
1233 
1234 static void ini_print_str(WriterContext *wctx, const char *key, const char *value)
1235 {
1236  AVBPrint buf;
1237 
1239  printf("%s=", ini_escape_str(&buf, key));
1240  av_bprint_clear(&buf);
1241  printf("%s\n", ini_escape_str(&buf, value));
1242  av_bprint_finalize(&buf, NULL);
1243 }
1244 
1245 static void ini_print_int(WriterContext *wctx, const char *key, long long int value)
1246 {
1247  printf("%s=%lld\n", key, value);
1248 }
1249 
1250 static const Writer ini_writer = {
1251  .name = "ini",
1252  .priv_size = sizeof(INIContext),
1254  .print_integer = ini_print_int,
1255  .print_string = ini_print_str,
1257  .priv_class = &ini_class,
1258 };
1259 
1260 /* JSON output */
1261 
1262 typedef struct {
1263  const AVClass *class;
1265  int compact;
1266  const char *item_sep, *item_start_end;
1267 } JSONContext;
1268 
1269 #undef OFFSET
1270 #define OFFSET(x) offsetof(JSONContext, x)
1271 
1272 static const AVOption json_options[]= {
1273  { "compact", "enable compact output", OFFSET(compact), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
1274  { "c", "enable compact output", OFFSET(compact), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
1275  { NULL }
1276 };
1277 
1278 DEFINE_WRITER_CLASS(json);
1279 
1281 {
1282  JSONContext *json = wctx->priv;
1283 
1284  json->item_sep = json->compact ? ", " : ",\n";
1285  json->item_start_end = json->compact ? " " : "\n";
1286 
1287  return 0;
1288 }
1289 
1290 static const char *json_escape_str(AVBPrint *dst, const char *src, void *log_ctx)
1291 {
1292  static const char json_escape[] = {'"', '\\', '\b', '\f', '\n', '\r', '\t', 0};
1293  static const char json_subst[] = {'"', '\\', 'b', 'f', 'n', 'r', 't', 0};
1294  const char *p;
1295 
1296  for (p = src; *p; p++) {
1297  char *s = strchr(json_escape, *p);
1298  if (s) {
1299  av_bprint_chars(dst, '\\', 1);
1300  av_bprint_chars(dst, json_subst[s - json_escape], 1);
1301  } else if ((unsigned char)*p < 32) {
1302  av_bprintf(dst, "\\u00%02x", *p & 0xff);
1303  } else {
1304  av_bprint_chars(dst, *p, 1);
1305  }
1306  }
1307  return dst->str;
1308 }
1309 
1310 #define JSON_INDENT() printf("%*c", json->indent_level * 4, ' ')
1311 
1313 {
1314  JSONContext *json = wctx->priv;
1315  AVBPrint buf;
1316  const struct section *section = wctx->section[wctx->level];
1317  const struct section *parent_section = wctx->level ?
1318  wctx->section[wctx->level-1] : NULL;
1319 
1320  if (wctx->level && wctx->nb_item[wctx->level-1])
1321  printf(",\n");
1322 
1323  if (section->flags & SECTION_FLAG_IS_WRAPPER) {
1324  printf("{\n");
1325  json->indent_level++;
1326  } else {
1328  json_escape_str(&buf, section->name, wctx);
1329  JSON_INDENT();
1330 
1331  json->indent_level++;
1332  if (section->flags & SECTION_FLAG_IS_ARRAY) {
1333  printf("\"%s\": [\n", buf.str);
1334  } else if (parent_section && !(parent_section->flags & SECTION_FLAG_IS_ARRAY)) {
1335  printf("\"%s\": {%s", buf.str, json->item_start_end);
1336  } else {
1337  printf("{%s", json->item_start_end);
1338 
1339  /* this is required so the parser can distinguish between packets and frames */
1340  if (parent_section && parent_section->id == SECTION_ID_PACKETS_AND_FRAMES) {
1341  if (!json->compact)
1342  JSON_INDENT();
1343  printf("\"type\": \"%s\"%s", section->name, json->item_sep);
1344  }
1345  }
1346  av_bprint_finalize(&buf, NULL);
1347  }
1348 }
1349 
1351 {
1352  JSONContext *json = wctx->priv;
1353  const struct section *section = wctx->section[wctx->level];
1354 
1355  if (wctx->level == 0) {
1356  json->indent_level--;
1357  printf("\n}\n");
1358  } else if (section->flags & SECTION_FLAG_IS_ARRAY) {
1359  printf("\n");
1360  json->indent_level--;
1361  JSON_INDENT();
1362  printf("]");
1363  } else {
1364  printf("%s", json->item_start_end);
1365  json->indent_level--;
1366  if (!json->compact)
1367  JSON_INDENT();
1368  printf("}");
1369  }
1370 }
1371 
1372 static inline void json_print_item_str(WriterContext *wctx,
1373  const char *key, const char *value)
1374 {
1375  AVBPrint buf;
1376 
1378  printf("\"%s\":", json_escape_str(&buf, key, wctx));
1379  av_bprint_clear(&buf);
1380  printf(" \"%s\"", json_escape_str(&buf, value, wctx));
1381  av_bprint_finalize(&buf, NULL);
1382 }
1383 
1384 static void json_print_str(WriterContext *wctx, const char *key, const char *value)
1385 {
1386  JSONContext *json = wctx->priv;
1387 
1388  if (wctx->nb_item[wctx->level])
1389  printf("%s", json->item_sep);
1390  if (!json->compact)
1391  JSON_INDENT();
1392  json_print_item_str(wctx, key, value);
1393 }
1394 
1395 static void json_print_int(WriterContext *wctx, const char *key, long long int value)
1396 {
1397  JSONContext *json = wctx->priv;
1398  AVBPrint buf;
1399 
1400  if (wctx->nb_item[wctx->level])
1401  printf("%s", json->item_sep);
1402  if (!json->compact)
1403  JSON_INDENT();
1404 
1406  printf("\"%s\": %lld", json_escape_str(&buf, key, wctx), value);
1407  av_bprint_finalize(&buf, NULL);
1408 }
1409 
1410 static const Writer json_writer = {
1411  .name = "json",
1412  .priv_size = sizeof(JSONContext),
1413  .init = json_init,
1416  .print_integer = json_print_int,
1417  .print_string = json_print_str,
1419  .priv_class = &json_class,
1420 };
1421 
1422 /* XML output */
1423 
1424 typedef struct {
1425  const AVClass *class;
1430 } XMLContext;
1431 
1432 #undef OFFSET
1433 #define OFFSET(x) offsetof(XMLContext, x)
1434 
1435 static const AVOption xml_options[] = {
1436  {"fully_qualified", "specify if the output should be fully qualified", OFFSET(fully_qualified), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
1437  {"q", "specify if the output should be fully qualified", OFFSET(fully_qualified), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
1438  {"xsd_strict", "ensure that the output is XSD compliant", OFFSET(xsd_strict), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
1439  {"x", "ensure that the output is XSD compliant", OFFSET(xsd_strict), AV_OPT_TYPE_INT, {.i64=0}, 0, 1 },
1440  {NULL},
1441 };
1442 
1443 DEFINE_WRITER_CLASS(xml);
1444 
1445 static av_cold int xml_init(WriterContext *wctx)
1446 {
1447  XMLContext *xml = wctx->priv;
1448 
1449  if (xml->xsd_strict) {
1450  xml->fully_qualified = 1;
1451 #define CHECK_COMPLIANCE(opt, opt_name) \
1452  if (opt) { \
1453  av_log(wctx, AV_LOG_ERROR, \
1454  "XSD-compliant output selected but option '%s' was selected, XML output may be non-compliant.\n" \
1455  "You need to disable such option with '-no%s'\n", opt_name, opt_name); \
1456  return AVERROR(EINVAL); \
1457  }
1458  CHECK_COMPLIANCE(show_private_data, "private");
1461 
1463  av_log(wctx, AV_LOG_ERROR,
1464  "Interleaved frames and packets are not allowed in XSD. "
1465  "Select only one between the -show_frames and the -show_packets options.\n");
1466  return AVERROR(EINVAL);
1467  }
1468  }
1469 
1470  return 0;
1471 }
1472 
1473 static const char *xml_escape_str(AVBPrint *dst, const char *src, void *log_ctx)
1474 {
1475  const char *p;
1476 
1477  for (p = src; *p; p++) {
1478  switch (*p) {
1479  case '&' : av_bprintf(dst, "%s", "&amp;"); break;
1480  case '<' : av_bprintf(dst, "%s", "&lt;"); break;
1481  case '>' : av_bprintf(dst, "%s", "&gt;"); break;
1482  case '"' : av_bprintf(dst, "%s", "&quot;"); break;
1483  case '\'': av_bprintf(dst, "%s", "&apos;"); break;
1484  default: av_bprint_chars(dst, *p, 1);
1485  }
1486  }
1487 
1488  return dst->str;
1489 }
1490 
1491 #define XML_INDENT() printf("%*c", xml->indent_level * 4, ' ')
1492 
1494 {
1495  XMLContext *xml = wctx->priv;
1496  const struct section *section = wctx->section[wctx->level];
1497  const struct section *parent_section = wctx->level ?
1498  wctx->section[wctx->level-1] : NULL;
1499 
1500  if (wctx->level == 0) {
1501  const char *qual = " xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' "
1502  "xmlns:ffprobe='http://www.ffmpeg.org/schema/ffprobe' "
1503  "xsi:schemaLocation='http://www.ffmpeg.org/schema/ffprobe ffprobe.xsd'";
1504 
1505  printf("<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n");
1506  printf("<%sffprobe%s>\n",
1507  xml->fully_qualified ? "ffprobe:" : "",
1508  xml->fully_qualified ? qual : "");
1509  return;
1510  }
1511 
1512  if (xml->within_tag) {
1513  xml->within_tag = 0;
1514  printf(">\n");
1515  }
1516  if (section->flags & SECTION_FLAG_HAS_VARIABLE_FIELDS) {
1517  xml->indent_level++;
1518  } else {
1519  if (parent_section && (parent_section->flags & SECTION_FLAG_IS_WRAPPER) &&
1520  wctx->level && wctx->nb_item[wctx->level-1])
1521  printf("\n");
1522  xml->indent_level++;
1523 
1524  if (section->flags & SECTION_FLAG_IS_ARRAY) {
1525  XML_INDENT(); printf("<%s>\n", section->name);
1526  } else {
1527  XML_INDENT(); printf("<%s ", section->name);
1528  xml->within_tag = 1;
1529  }
1530  }
1531 }
1532 
1534 {
1535  XMLContext *xml = wctx->priv;
1536  const struct section *section = wctx->section[wctx->level];
1537 
1538  if (wctx->level == 0) {
1539  printf("</%sffprobe>\n", xml->fully_qualified ? "ffprobe:" : "");
1540  } else if (xml->within_tag) {
1541  xml->within_tag = 0;
1542  printf("/>\n");
1543  xml->indent_level--;
1544  } else if (section->flags & SECTION_FLAG_HAS_VARIABLE_FIELDS) {
1545  xml->indent_level--;
1546  } else {
1547  XML_INDENT(); printf("</%s>\n", section->name);
1548  xml->indent_level--;
1549  }
1550 }
1551 
1552 static void xml_print_str(WriterContext *wctx, const char *key, const char *value)
1553 {
1554  AVBPrint buf;
1555  XMLContext *xml = wctx->priv;
1556  const struct section *section = wctx->section[wctx->level];
1557 
1559 
1560  if (section->flags & SECTION_FLAG_HAS_VARIABLE_FIELDS) {
1561  XML_INDENT();
1562  printf("<%s key=\"%s\"",
1563  section->element_name, xml_escape_str(&buf, key, wctx));
1564  av_bprint_clear(&buf);
1565  printf(" value=\"%s\"/>\n", xml_escape_str(&buf, value, wctx));
1566  } else {
1567  if (wctx->nb_item[wctx->level])
1568  printf(" ");
1569  printf("%s=\"%s\"", key, xml_escape_str(&buf, value, wctx));
1570  }
1571 
1572  av_bprint_finalize(&buf, NULL);
1573 }
1574 
1575 static void xml_print_int(WriterContext *wctx, const char *key, long long int value)
1576 {
1577  if (wctx->nb_item[wctx->level])
1578  printf(" ");
1579  printf("%s=\"%lld\"", key, value);
1580 }
1581 
1582 static Writer xml_writer = {
1583  .name = "xml",
1584  .priv_size = sizeof(XMLContext),
1585  .init = xml_init,
1588  .print_integer = xml_print_int,
1589  .print_string = xml_print_str,
1591  .priv_class = &xml_class,
1592 };
1593 
1594 static void writer_register_all(void)
1595 {
1596  static int initialized;
1597 
1598  if (initialized)
1599  return;
1600  initialized = 1;
1601 
1602  writer_register(&default_writer);
1603  writer_register(&compact_writer);
1604  writer_register(&csv_writer);
1605  writer_register(&flat_writer);
1606  writer_register(&ini_writer);
1607  writer_register(&json_writer);
1608  writer_register(&xml_writer);
1609 }
1610 
1611 #define print_fmt(k, f, ...) do { \
1612  av_bprint_clear(&pbuf); \
1613  av_bprintf(&pbuf, f, __VA_ARGS__); \
1614  writer_print_string(w, k, pbuf.str, 0); \
1615 } while (0)
1616 
1617 #define print_int(k, v) writer_print_integer(w, k, v)
1618 #define print_q(k, v, s) writer_print_rational(w, k, v, s)
1619 #define print_str(k, v) writer_print_string(w, k, v, 0)
1620 #define print_str_opt(k, v) writer_print_string(w, k, v, PRINT_STRING_OPT)
1621 #define print_str_validate(k, v) writer_print_string(w, k, v, PRINT_STRING_VALIDATE)
1622 #define print_time(k, v, tb) writer_print_time(w, k, v, tb, 0)
1623 #define print_ts(k, v) writer_print_ts(w, k, v, 0)
1624 #define print_duration_time(k, v, tb) writer_print_time(w, k, v, tb, 1)
1625 #define print_duration_ts(k, v) writer_print_ts(w, k, v, 1)
1626 #define print_val(k, v, u) do { \
1627  struct unit_value uv; \
1628  uv.val.i = v; \
1629  uv.unit = u; \
1630  writer_print_string(w, k, value_string(val_str, sizeof(val_str), uv), 0); \
1631 } while (0)
1632 
1633 #define print_section_header(s) writer_print_section_header(w, s)
1634 #define print_section_footer(s) writer_print_section_footer(w, s)
1635 
1636 #define REALLOCZ_ARRAY_STREAM(ptr, cur_n, new_n) \
1637 { \
1638  ret = av_reallocp_array(&(ptr), (new_n), sizeof(*(ptr))); \
1639  if (ret < 0) \
1640  goto end; \
1641  memset( (ptr) + (cur_n), 0, ((new_n) - (cur_n)) * sizeof(*(ptr)) ); \
1642 }
1643 
1644 static inline int show_tags(WriterContext *w, AVDictionary *tags, int section_id)
1645 {
1646  AVDictionaryEntry *tag = NULL;
1647  int ret = 0;
1648 
1649  if (!tags)
1650  return 0;
1651  writer_print_section_header(w, section_id);
1652 
1653  while ((tag = av_dict_get(tags, "", tag, AV_DICT_IGNORE_SUFFIX))) {
1654  if ((ret = print_str_validate(tag->key, tag->value)) < 0)
1655  break;
1656  }
1658 
1659  return ret;
1660 }
1661 
1662 static void show_packet(WriterContext *w, AVFormatContext *fmt_ctx, AVPacket *pkt, int packet_idx)
1663 {
1664  char val_str[128];
1665  AVStream *st = fmt_ctx->streams[pkt->stream_index];
1666  AVBPrint pbuf;
1667  const char *s;
1668 
1670 
1672 
1674  if (s) print_str ("codec_type", s);
1675  else print_str_opt("codec_type", "unknown");
1676  print_int("stream_index", pkt->stream_index);
1677  print_ts ("pts", pkt->pts);
1678  print_time("pts_time", pkt->pts, &st->time_base);
1679  print_ts ("dts", pkt->dts);
1680  print_time("dts_time", pkt->dts, &st->time_base);
1681  print_duration_ts("duration", pkt->duration);
1682  print_duration_time("duration_time", pkt->duration, &st->time_base);
1683  print_duration_ts("convergence_duration", pkt->convergence_duration);
1684  print_duration_time("convergence_duration_time", pkt->convergence_duration, &st->time_base);
1685  print_val("size", pkt->size, unit_byte_str);
1686  if (pkt->pos != -1) print_fmt ("pos", "%"PRId64, pkt->pos);
1687  else print_str_opt("pos", "N/A");
1688  print_fmt("flags", "%c", pkt->flags & AV_PKT_FLAG_KEY ? 'K' : '_');
1689  if (do_show_data)
1690  writer_print_data(w, "data", pkt->data, pkt->size);
1692 
1693  av_bprint_finalize(&pbuf, NULL);
1694  fflush(stdout);
1695 }
1696 
1697 static void show_subtitle(WriterContext *w, AVSubtitle *sub, AVStream *stream,
1699 {
1700  AVBPrint pbuf;
1701 
1703 
1705 
1706  print_str ("media_type", "subtitle");
1707  print_ts ("pts", sub->pts);
1708  print_time("pts_time", sub->pts, &AV_TIME_BASE_Q);
1709  print_int ("format", sub->format);
1710  print_int ("start_display_time", sub->start_display_time);
1711  print_int ("end_display_time", sub->end_display_time);
1712  print_int ("num_rects", sub->num_rects);
1713 
1715 
1716  av_bprint_finalize(&pbuf, NULL);
1717  fflush(stdout);
1718 }
1719 
1720 static void show_frame(WriterContext *w, AVFrame *frame, AVStream *stream,
1722 {
1723  AVBPrint pbuf;
1724  const char *s;
1725 
1727 
1729 
1731  if (s) print_str ("media_type", s);
1732  else print_str_opt("media_type", "unknown");
1733  print_int("key_frame", frame->key_frame);
1734  print_ts ("pkt_pts", frame->pkt_pts);
1735  print_time("pkt_pts_time", frame->pkt_pts, &stream->time_base);
1736  print_ts ("pkt_dts", frame->pkt_dts);
1737  print_time("pkt_dts_time", frame->pkt_dts, &stream->time_base);
1738  print_ts ("best_effort_timestamp", av_frame_get_best_effort_timestamp(frame));
1739  print_time("best_effort_timestamp_time", av_frame_get_best_effort_timestamp(frame), &stream->time_base);
1740  print_duration_ts ("pkt_duration", av_frame_get_pkt_duration(frame));
1741  print_duration_time("pkt_duration_time", av_frame_get_pkt_duration(frame), &stream->time_base);
1742  if (av_frame_get_pkt_pos (frame) != -1) print_fmt ("pkt_pos", "%"PRId64, av_frame_get_pkt_pos(frame));
1743  else print_str_opt("pkt_pos", "N/A");
1744  if (av_frame_get_pkt_size(frame) != -1) print_fmt ("pkt_size", "%d", av_frame_get_pkt_size(frame));
1745  else print_str_opt("pkt_size", "N/A");
1746 
1747  switch (stream->codec->codec_type) {
1748  AVRational sar;
1749 
1750  case AVMEDIA_TYPE_VIDEO:
1751  print_int("width", frame->width);
1752  print_int("height", frame->height);
1753  s = av_get_pix_fmt_name(frame->format);
1754  if (s) print_str ("pix_fmt", s);
1755  else print_str_opt("pix_fmt", "unknown");
1756  sar = av_guess_sample_aspect_ratio(fmt_ctx, stream, frame);
1757  if (sar.num) {
1758  print_q("sample_aspect_ratio", sar, ':');
1759  } else {
1760  print_str_opt("sample_aspect_ratio", "N/A");
1761  }
1762  print_fmt("pict_type", "%c", av_get_picture_type_char(frame->pict_type));
1763  print_int("coded_picture_number", frame->coded_picture_number);
1764  print_int("display_picture_number", frame->display_picture_number);
1765  print_int("interlaced_frame", frame->interlaced_frame);
1766  print_int("top_field_first", frame->top_field_first);
1767  print_int("repeat_pict", frame->repeat_pict);
1768  break;
1769 
1770  case AVMEDIA_TYPE_AUDIO:
1771  s = av_get_sample_fmt_name(frame->format);
1772  if (s) print_str ("sample_fmt", s);
1773  else print_str_opt("sample_fmt", "unknown");
1774  print_int("nb_samples", frame->nb_samples);
1775  print_int("channels", av_frame_get_channels(frame));
1776  if (av_frame_get_channel_layout(frame)) {
1777  av_bprint_clear(&pbuf);
1780  print_str ("channel_layout", pbuf.str);
1781  } else
1782  print_str_opt("channel_layout", "unknown");
1783  break;
1784  }
1785  if (do_show_frame_tags)
1787 
1789 
1790  av_bprint_finalize(&pbuf, NULL);
1791  fflush(stdout);
1792 }
1793 
1797 {
1798  AVCodecContext *dec_ctx = fmt_ctx->streams[pkt->stream_index]->codec;
1799  AVSubtitle sub;
1800  int ret = 0, got_frame = 0;
1801 
1802  if (dec_ctx->codec) {
1803  switch (dec_ctx->codec_type) {
1804  case AVMEDIA_TYPE_VIDEO:
1805  ret = avcodec_decode_video2(dec_ctx, frame, &got_frame, pkt);
1806  break;
1807 
1808  case AVMEDIA_TYPE_AUDIO:
1809  ret = avcodec_decode_audio4(dec_ctx, frame, &got_frame, pkt);
1810  break;
1811 
1812  case AVMEDIA_TYPE_SUBTITLE:
1813  ret = avcodec_decode_subtitle2(dec_ctx, &sub, &got_frame, pkt);
1814  break;
1815  }
1816  }
1817 
1818  if (ret < 0)
1819  return ret;
1820  ret = FFMIN(ret, pkt->size); /* guard against bogus return values */
1821  pkt->data += ret;
1822  pkt->size -= ret;
1823  if (got_frame) {
1824  int is_sub = (dec_ctx->codec_type == AVMEDIA_TYPE_SUBTITLE);
1826  if (do_show_frames)
1827  if (is_sub)
1828  show_subtitle(w, &sub, fmt_ctx->streams[pkt->stream_index], fmt_ctx);
1829  else
1830  show_frame(w, frame, fmt_ctx->streams[pkt->stream_index], fmt_ctx);
1831  if (is_sub)
1832  avsubtitle_free(&sub);
1833  }
1834  return got_frame;
1835 }
1836 
1837 static void log_read_interval(const ReadInterval *interval, void *log_ctx, int log_level)
1838 {
1839  av_log(log_ctx, log_level, "id:%d", interval->id);
1840 
1841  if (interval->has_start) {
1842  av_log(log_ctx, log_level, " start:%s%s", interval->start_is_offset ? "+" : "",
1843  av_ts2timestr(interval->start, &AV_TIME_BASE_Q));
1844  } else {
1845  av_log(log_ctx, log_level, " start:N/A");
1846  }
1847 
1848  if (interval->has_end) {
1849  av_log(log_ctx, log_level, " end:%s", interval->end_is_offset ? "+" : "");
1850  if (interval->duration_frames)
1851  av_log(log_ctx, log_level, "#%"PRId64, interval->end);
1852  else
1853  av_log(log_ctx, log_level, "%s", av_ts2timestr(interval->end, &AV_TIME_BASE_Q));
1854  } else {
1855  av_log(log_ctx, log_level, " end:N/A");
1856  }
1857 
1858  av_log(log_ctx, log_level, "\n");
1859 }
1860 
1862  const ReadInterval *interval, int64_t *cur_ts)
1863 {
1864  AVPacket pkt, pkt1;
1865  AVFrame *frame = NULL;
1866  int ret = 0, i = 0, frame_count = 0;
1867  int64_t start = -INT64_MAX, end = interval->end;
1868  int has_start = 0, has_end = interval->has_end && !interval->end_is_offset;
1869 
1870  av_init_packet(&pkt);
1871 
1872  av_log(NULL, AV_LOG_VERBOSE, "Processing read interval ");
1873  log_read_interval(interval, NULL, AV_LOG_VERBOSE);
1874 
1875  if (interval->has_start) {
1876  int64_t target;
1877  if (interval->start_is_offset) {
1878  if (*cur_ts == AV_NOPTS_VALUE) {
1879  av_log(NULL, AV_LOG_ERROR,
1880  "Could not seek to relative position since current "
1881  "timestamp is not defined\n");
1882  ret = AVERROR(EINVAL);
1883  goto end;
1884  }
1885  target = *cur_ts + interval->start;
1886  } else {
1887  target = interval->start;
1888  }
1889 
1890  av_log(NULL, AV_LOG_VERBOSE, "Seeking to read interval start point %s\n",
1891  av_ts2timestr(target, &AV_TIME_BASE_Q));
1892  if ((ret = avformat_seek_file(fmt_ctx, -1, -INT64_MAX, target, INT64_MAX, 0)) < 0) {
1893  av_log(NULL, AV_LOG_ERROR, "Could not seek to position %"PRId64": %s\n",
1894  interval->start, av_err2str(ret));
1895  goto end;
1896  }
1897  }
1898 
1899  frame = av_frame_alloc();
1900  if (!frame) {
1901  ret = AVERROR(ENOMEM);
1902  goto end;
1903  }
1904  while (!av_read_frame(fmt_ctx, &pkt)) {
1905  if (fmt_ctx->nb_streams > nb_streams) {
1909  nb_streams = fmt_ctx->nb_streams;
1910  }
1911  if (selected_streams[pkt.stream_index]) {
1912  AVRational tb = fmt_ctx->streams[pkt.stream_index]->time_base;
1913 
1914  if (pkt.pts != AV_NOPTS_VALUE)
1915  *cur_ts = av_rescale_q(pkt.pts, tb, AV_TIME_BASE_Q);
1916 
1917  if (!has_start && *cur_ts != AV_NOPTS_VALUE) {
1918  start = *cur_ts;
1919  has_start = 1;
1920  }
1921 
1922  if (has_start && !has_end && interval->end_is_offset) {
1923  end = start + interval->end;
1924  has_end = 1;
1925  }
1926 
1927  if (interval->end_is_offset && interval->duration_frames) {
1928  if (frame_count >= interval->end)
1929  break;
1930  } else if (has_end && *cur_ts != AV_NOPTS_VALUE && *cur_ts >= end) {
1931  break;
1932  }
1933 
1934  frame_count++;
1935  if (do_read_packets) {
1936  if (do_show_packets)
1937  show_packet(w, fmt_ctx, &pkt, i++);
1939  }
1940  if (do_read_frames) {
1941  pkt1 = pkt;
1942  while (pkt1.size && process_frame(w, fmt_ctx, frame, &pkt1) > 0);
1943  }
1944  }
1945  av_free_packet(&pkt);
1946  }
1947  av_init_packet(&pkt);
1948  pkt.data = NULL;
1949  pkt.size = 0;
1950  //Flush remaining frames that are cached in the decoder
1951  for (i = 0; i < fmt_ctx->nb_streams; i++) {
1952  pkt.stream_index = i;
1953  if (do_read_frames)
1954  while (process_frame(w, fmt_ctx, frame, &pkt) > 0);
1955  }
1956 
1957 end:
1958  av_frame_free(&frame);
1959  if (ret < 0) {
1960  av_log(NULL, AV_LOG_ERROR, "Could not read packets in interval ");
1961  log_read_interval(interval, NULL, AV_LOG_ERROR);
1962  }
1963  return ret;
1964 }
1965 
1967 {
1968  int i, ret = 0;
1969  int64_t cur_ts = fmt_ctx->start_time;
1970 
1971  if (read_intervals_nb == 0) {
1972  ReadInterval interval = (ReadInterval) { .has_start = 0, .has_end = 0 };
1973  ret = read_interval_packets(w, fmt_ctx, &interval, &cur_ts);
1974  } else {
1975  for (i = 0; i < read_intervals_nb; i++) {
1976  ret = read_interval_packets(w, fmt_ctx, &read_intervals[i], &cur_ts);
1977  if (ret < 0)
1978  break;
1979  }
1980  }
1981 
1982  return ret;
1983 }
1984 
1985 static int show_stream(WriterContext *w, AVFormatContext *fmt_ctx, int stream_idx, int in_program)
1986 {
1987  AVStream *stream = fmt_ctx->streams[stream_idx];
1989  const AVCodec *dec;
1990  char val_str[128];
1991  const char *s;
1992  AVRational sar, dar;
1993  AVBPrint pbuf;
1994  const AVCodecDescriptor *cd;
1995  int ret = 0;
1996 
1998 
2000 
2001  print_int("index", stream->index);
2002 
2003  if ((dec_ctx = stream->codec)) {
2004  const char *profile = NULL;
2005  dec = dec_ctx->codec;
2006  if (dec) {
2007  print_str("codec_name", dec->name);
2008  if (!do_bitexact) {
2009  if (dec->long_name) print_str ("codec_long_name", dec->long_name);
2010  else print_str_opt("codec_long_name", "unknown");
2011  }
2012  } else if ((cd = avcodec_descriptor_get(stream->codec->codec_id))) {
2013  print_str_opt("codec_name", cd->name);
2014  if (!do_bitexact) {
2015  print_str_opt("codec_long_name",
2016  cd->long_name ? cd->long_name : "unknown");
2017  }
2018  } else {
2019  print_str_opt("codec_name", "unknown");
2020  if (!do_bitexact) {
2021  print_str_opt("codec_long_name", "unknown");
2022  }
2023  }
2024 
2025  if (dec && (profile = av_get_profile_name(dec, dec_ctx->profile)))
2026  print_str("profile", profile);
2027  else
2028  print_str_opt("profile", "unknown");
2029 
2030  s = av_get_media_type_string(dec_ctx->codec_type);
2031  if (s) print_str ("codec_type", s);
2032  else print_str_opt("codec_type", "unknown");
2033  print_q("codec_time_base", dec_ctx->time_base, '/');
2034 
2035  /* print AVI/FourCC tag */
2036  av_get_codec_tag_string(val_str, sizeof(val_str), dec_ctx->codec_tag);
2037  print_str("codec_tag_string", val_str);
2038  print_fmt("codec_tag", "0x%04x", dec_ctx->codec_tag);
2039 
2040  switch (dec_ctx->codec_type) {
2041  case AVMEDIA_TYPE_VIDEO:
2042  print_int("width", dec_ctx->width);
2043  print_int("height", dec_ctx->height);
2044  print_int("has_b_frames", dec_ctx->has_b_frames);
2045  sar = av_guess_sample_aspect_ratio(fmt_ctx, stream, NULL);
2046  if (sar.den) {
2047  print_q("sample_aspect_ratio", sar, ':');
2048  av_reduce(&dar.num, &dar.den,
2049  dec_ctx->width * sar.num,
2050  dec_ctx->height * sar.den,
2051  1024*1024);
2052  print_q("display_aspect_ratio", dar, ':');
2053  } else {
2054  print_str_opt("sample_aspect_ratio", "N/A");
2055  print_str_opt("display_aspect_ratio", "N/A");
2056  }
2057  s = av_get_pix_fmt_name(dec_ctx->pix_fmt);
2058  if (s) print_str ("pix_fmt", s);
2059  else print_str_opt("pix_fmt", "unknown");
2060  print_int("level", dec_ctx->level);
2061  if (dec_ctx->color_range != AVCOL_RANGE_UNSPECIFIED)
2062  print_str ("color_range", dec_ctx->color_range == AVCOL_RANGE_MPEG ? "tv": "pc");
2063  else
2064  print_str_opt("color_range", "N/A");
2065  s = av_get_colorspace_name(dec_ctx->colorspace);
2066  if (s) print_str ("color_space", s);
2067  else print_str_opt("color_space", "unknown");
2068  if (dec_ctx->timecode_frame_start >= 0) {
2069  char tcbuf[AV_TIMECODE_STR_SIZE];
2071  print_str("timecode", tcbuf);
2072  } else {
2073  print_str_opt("timecode", "N/A");
2074  }
2075  break;
2076 
2077  case AVMEDIA_TYPE_AUDIO:
2078  s = av_get_sample_fmt_name(dec_ctx->sample_fmt);
2079  if (s) print_str ("sample_fmt", s);
2080  else print_str_opt("sample_fmt", "unknown");
2081  print_val("sample_rate", dec_ctx->sample_rate, unit_hertz_str);
2082  print_int("channels", dec_ctx->channels);
2083 
2084  if (dec_ctx->channel_layout) {
2085  av_bprint_clear(&pbuf);
2086  av_bprint_channel_layout(&pbuf, dec_ctx->channels, dec_ctx->channel_layout);
2087  print_str ("channel_layout", pbuf.str);
2088  } else {
2089  print_str_opt("channel_layout", "unknown");
2090  }
2091 
2092  print_int("bits_per_sample", av_get_bits_per_sample(dec_ctx->codec_id));
2093  break;
2094 
2095  case AVMEDIA_TYPE_SUBTITLE:
2096  if (dec_ctx->width)
2097  print_int("width", dec_ctx->width);
2098  else
2099  print_str_opt("width", "N/A");
2100  if (dec_ctx->height)
2101  print_int("height", dec_ctx->height);
2102  else
2103  print_str_opt("height", "N/A");
2104  break;
2105  }
2106  } else {
2107  print_str_opt("codec_type", "unknown");
2108  }
2109  if (dec_ctx->codec && dec_ctx->codec->priv_class && show_private_data) {
2110  const AVOption *opt = NULL;
2111  while (opt = av_opt_next(dec_ctx->priv_data,opt)) {
2112  uint8_t *str;
2113  if (opt->flags) continue;
2114  if (av_opt_get(dec_ctx->priv_data, opt->name, 0, &str) >= 0) {
2115  print_str(opt->name, str);
2116  av_free(str);
2117  }
2118  }
2119  }
2120 
2121  if (fmt_ctx->iformat->flags & AVFMT_SHOW_IDS) print_fmt ("id", "0x%x", stream->id);
2122  else print_str_opt("id", "N/A");
2123  print_q("r_frame_rate", stream->r_frame_rate, '/');
2124  print_q("avg_frame_rate", stream->avg_frame_rate, '/');
2125  print_q("time_base", stream->time_base, '/');
2126  print_ts ("start_pts", stream->start_time);
2127  print_time("start_time", stream->start_time, &stream->time_base);
2128  print_ts ("duration_ts", stream->duration);
2129  print_time("duration", stream->duration, &stream->time_base);
2130  if (dec_ctx->bit_rate > 0) print_val ("bit_rate", dec_ctx->bit_rate, unit_bit_per_second_str);
2131  else print_str_opt("bit_rate", "N/A");
2132  if (dec_ctx->rc_max_rate > 0) print_val ("max_bit_rate", dec_ctx->rc_max_rate, unit_bit_per_second_str);
2133  else print_str_opt("max_bit_rate", "N/A");
2134  if (stream->nb_frames) print_fmt ("nb_frames", "%"PRId64, stream->nb_frames);
2135  else print_str_opt("nb_frames", "N/A");
2136  if (nb_streams_frames[stream_idx]) print_fmt ("nb_read_frames", "%"PRIu64, nb_streams_frames[stream_idx]);
2137  else print_str_opt("nb_read_frames", "N/A");
2138  if (nb_streams_packets[stream_idx]) print_fmt ("nb_read_packets", "%"PRIu64, nb_streams_packets[stream_idx]);
2139  else print_str_opt("nb_read_packets", "N/A");
2140  if (do_show_data)
2141  writer_print_data(w, "extradata", dec_ctx->extradata,
2142  dec_ctx->extradata_size);
2143 
2144  /* Print disposition information */
2145 #define PRINT_DISPOSITION(flagname, name) do { \
2146  print_int(name, !!(stream->disposition & AV_DISPOSITION_##flagname)); \
2147  } while (0)
2148 
2151  PRINT_DISPOSITION(DEFAULT, "default");
2152  PRINT_DISPOSITION(DUB, "dub");
2153  PRINT_DISPOSITION(ORIGINAL, "original");
2154  PRINT_DISPOSITION(COMMENT, "comment");
2155  PRINT_DISPOSITION(LYRICS, "lyrics");
2156  PRINT_DISPOSITION(KARAOKE, "karaoke");
2157  PRINT_DISPOSITION(FORCED, "forced");
2158  PRINT_DISPOSITION(HEARING_IMPAIRED, "hearing_impaired");
2159  PRINT_DISPOSITION(VISUAL_IMPAIRED, "visual_impaired");
2160  PRINT_DISPOSITION(CLEAN_EFFECTS, "clean_effects");
2161  PRINT_DISPOSITION(ATTACHED_PIC, "attached_pic");
2163  }
2164 
2165  if (do_show_stream_tags)
2166  ret = show_tags(w, stream->metadata, in_program ? SECTION_ID_PROGRAM_STREAM_TAGS : SECTION_ID_STREAM_TAGS);
2167 
2169  av_bprint_finalize(&pbuf, NULL);
2170  fflush(stdout);
2171 
2172  return ret;
2173 }
2174 
2176 {
2177  int i, ret = 0;
2178 
2180  for (i = 0; i < fmt_ctx->nb_streams; i++)
2181  if (selected_streams[i]) {
2182  ret = show_stream(w, fmt_ctx, i, 0);
2183  if (ret < 0)
2184  break;
2185  }
2187 
2188  return ret;
2189 }
2190 
2192 {
2193  int i, ret = 0;
2194 
2196  print_int("program_id", program->id);
2197  print_int("program_num", program->program_num);
2198  print_int("nb_streams", program->nb_stream_indexes);
2199  print_int("pmt_pid", program->pmt_pid);
2200  print_int("pcr_pid", program->pcr_pid);
2201  print_ts("start_pts", program->start_time);
2202  print_time("start_time", program->start_time, &AV_TIME_BASE_Q);
2203  print_ts("end_pts", program->end_time);
2204  print_time("end_time", program->end_time, &AV_TIME_BASE_Q);
2206  ret = show_tags(w, program->metadata, SECTION_ID_PROGRAM_TAGS);
2207  if (ret < 0)
2208  goto end;
2209 
2211  for (i = 0; i < program->nb_stream_indexes; i++) {
2212  if (selected_streams[program->stream_index[i]]) {
2213  ret = show_stream(w, fmt_ctx, program->stream_index[i], 1);
2214  if (ret < 0)
2215  break;
2216  }
2217  }
2219 
2220 end:
2222  return ret;
2223 }
2224 
2226 {
2227  int i, ret = 0;
2228 
2230  for (i = 0; i < fmt_ctx->nb_programs; i++) {
2231  AVProgram *program = fmt_ctx->programs[i];
2232  if (!program)
2233  continue;
2234  ret = show_program(w, fmt_ctx, program);
2235  if (ret < 0)
2236  break;
2237  }
2239  return ret;
2240 }
2241 
2243 {
2244  int i, ret = 0;
2245 
2247  for (i = 0; i < fmt_ctx->nb_chapters; i++) {
2248  AVChapter *chapter = fmt_ctx->chapters[i];
2249 
2251  print_int("id", chapter->id);
2252  print_q ("time_base", chapter->time_base, '/');
2253  print_int("start", chapter->start);
2254  print_time("start_time", chapter->start, &chapter->time_base);
2255  print_int("end", chapter->end);
2256  print_time("end_time", chapter->end, &chapter->time_base);
2258  ret = show_tags(w, chapter->metadata, SECTION_ID_CHAPTER_TAGS);
2260  }
2262 
2263  return ret;
2264 }
2265 
2267 {
2268  char val_str[128];
2269  int64_t size = fmt_ctx->pb ? avio_size(fmt_ctx->pb) : -1;
2270  int ret = 0;
2271 
2273  print_str_validate("filename", fmt_ctx->filename);
2274  print_int("nb_streams", fmt_ctx->nb_streams);
2275  print_int("nb_programs", fmt_ctx->nb_programs);
2276  print_str("format_name", fmt_ctx->iformat->name);
2277  if (!do_bitexact) {
2278  if (fmt_ctx->iformat->long_name) print_str ("format_long_name", fmt_ctx->iformat->long_name);
2279  else print_str_opt("format_long_name", "unknown");
2280  }
2281  print_time("start_time", fmt_ctx->start_time, &AV_TIME_BASE_Q);
2282  print_time("duration", fmt_ctx->duration, &AV_TIME_BASE_Q);
2283  if (size >= 0) print_val ("size", size, unit_byte_str);
2284  else print_str_opt("size", "N/A");
2285  if (fmt_ctx->bit_rate > 0) print_val ("bit_rate", fmt_ctx->bit_rate, unit_bit_per_second_str);
2286  else print_str_opt("bit_rate", "N/A");
2287  print_int("probe_score", av_format_get_probe_score(fmt_ctx));
2288  if (do_show_format_tags)
2289  ret = show_tags(w, fmt_ctx->metadata, SECTION_ID_FORMAT_TAGS);
2290 
2292  fflush(stdout);
2293  return ret;
2294 }
2295 
2296 static void show_error(WriterContext *w, int err)
2297 {
2298  char errbuf[128];
2299  const char *errbuf_ptr = errbuf;
2300 
2301  if (av_strerror(err, errbuf, sizeof(errbuf)) < 0)
2302  errbuf_ptr = strerror(AVUNERROR(err));
2303 
2305  print_int("code", err);
2306  print_str("string", errbuf_ptr);
2308 }
2309 
2310 static int open_input_file(AVFormatContext **fmt_ctx_ptr, const char *filename)
2311 {
2312  int err, i, orig_nb_streams;
2313  AVFormatContext *fmt_ctx = NULL;
2314  AVDictionaryEntry *t;
2315  AVDictionary **opts;
2316 
2317  if ((err = avformat_open_input(&fmt_ctx, filename,
2318  iformat, &format_opts)) < 0) {
2319  print_error(filename, err);
2320  return err;
2321  }
2322  if ((t = av_dict_get(format_opts, "", NULL, AV_DICT_IGNORE_SUFFIX))) {
2323  av_log(NULL, AV_LOG_ERROR, "Option %s not found.\n", t->key);
2324  return AVERROR_OPTION_NOT_FOUND;
2325  }
2326 
2327  /* fill the streams in the format context */
2328  opts = setup_find_stream_info_opts(fmt_ctx, codec_opts);
2329  orig_nb_streams = fmt_ctx->nb_streams;
2330 
2331  if ((err = avformat_find_stream_info(fmt_ctx, opts)) < 0) {
2332  print_error(filename, err);
2333  return err;
2334  }
2335  for (i = 0; i < orig_nb_streams; i++)
2336  av_dict_free(&opts[i]);
2337  av_freep(&opts);
2338 
2339  av_dump_format(fmt_ctx, 0, filename, 0);
2340 
2341  /* bind a decoder to each input stream */
2342  for (i = 0; i < fmt_ctx->nb_streams; i++) {
2343  AVStream *stream = fmt_ctx->streams[i];
2344  AVCodec *codec;
2345 
2346  if (stream->codec->codec_id == AV_CODEC_ID_PROBE) {
2347  av_log(NULL, AV_LOG_WARNING,
2348  "Failed to probe codec for input stream %d\n",
2349  stream->index);
2350  } else if (!(codec = avcodec_find_decoder(stream->codec->codec_id))) {
2351  av_log(NULL, AV_LOG_WARNING,
2352  "Unsupported codec with id %d for input stream %d\n",
2353  stream->codec->codec_id, stream->index);
2354  } else {
2356  fmt_ctx, stream, codec);
2357  if (avcodec_open2(stream->codec, codec, &opts) < 0) {
2358  av_log(NULL, AV_LOG_WARNING, "Could not open codec for input stream %d\n",
2359  stream->index);
2360  }
2361  if ((t = av_dict_get(opts, "", NULL, AV_DICT_IGNORE_SUFFIX))) {
2362  av_log(NULL, AV_LOG_ERROR, "Option %s for input stream %d not found\n",
2363  t->key, stream->index);
2364  return AVERROR_OPTION_NOT_FOUND;
2365  }
2366  }
2367  }
2368 
2369  *fmt_ctx_ptr = fmt_ctx;
2370  return 0;
2371 }
2372 
2373 static void close_input_file(AVFormatContext **ctx_ptr)
2374 {
2375  int i;
2376  AVFormatContext *fmt_ctx = *ctx_ptr;
2377 
2378  /* close decoder for each stream */
2379  for (i = 0; i < fmt_ctx->nb_streams; i++)
2380  if (fmt_ctx->streams[i]->codec->codec_id != AV_CODEC_ID_NONE)
2381  avcodec_close(fmt_ctx->streams[i]->codec);
2382 
2383  avformat_close_input(ctx_ptr);
2384 }
2385 
2386 static int probe_file(WriterContext *wctx, const char *filename)
2387 {
2389  int ret, i;
2390  int section_id;
2391 
2394 
2395  ret = open_input_file(&fmt_ctx, filename);
2396  if (ret < 0)
2397  return ret;
2398 
2399 #define CHECK_END if (ret < 0) goto end
2400 
2401  nb_streams = fmt_ctx->nb_streams;
2405 
2406  for (i = 0; i < fmt_ctx->nb_streams; i++) {
2407  if (stream_specifier) {
2408  ret = avformat_match_stream_specifier(fmt_ctx,
2409  fmt_ctx->streams[i],
2411  CHECK_END;
2412  else
2413  selected_streams[i] = ret;
2414  ret = 0;
2415  } else {
2416  selected_streams[i] = 1;
2417  }
2418  }
2419 
2423  section_id = SECTION_ID_PACKETS_AND_FRAMES;
2424  else if (do_show_packets && !do_show_frames)
2425  section_id = SECTION_ID_PACKETS;
2426  else // (!do_show_packets && do_show_frames)
2427  section_id = SECTION_ID_FRAMES;
2429  writer_print_section_header(wctx, section_id);
2430  ret = read_packets(wctx, fmt_ctx);
2433  CHECK_END;
2434  }
2435 
2436  if (do_show_programs) {
2437  ret = show_programs(wctx, fmt_ctx);
2438  CHECK_END;
2439  }
2440 
2441  if (do_show_streams) {
2442  ret = show_streams(wctx, fmt_ctx);
2443  CHECK_END;
2444  }
2445  if (do_show_chapters) {
2446  ret = show_chapters(wctx, fmt_ctx);
2447  CHECK_END;
2448  }
2449  if (do_show_format) {
2450  ret = show_format(wctx, fmt_ctx);
2451  CHECK_END;
2452  }
2453 
2454 end:
2455  close_input_file(&fmt_ctx);
2459 
2460  return ret;
2461 }
2462 
2463 static void show_usage(void)
2464 {
2465  av_log(NULL, AV_LOG_INFO, "Simple multimedia streams analyzer\n");
2466  av_log(NULL, AV_LOG_INFO, "usage: %s [OPTIONS] [INPUT_FILE]\n", program_name);
2467  av_log(NULL, AV_LOG_INFO, "\n");
2468 }
2469 
2471 {
2472  AVBPrint pbuf;
2474 
2476  print_str("version", FFMPEG_VERSION);
2477  print_fmt("copyright", "Copyright (c) %d-%d the FFmpeg developers",
2478  program_birth_year, CONFIG_THIS_YEAR);
2479  print_str("build_date", __DATE__);
2480  print_str("build_time", __TIME__);
2481  print_str("compiler_ident", CC_IDENT);
2482  print_str("configuration", FFMPEG_CONFIGURATION);
2484 
2485  av_bprint_finalize(&pbuf, NULL);
2486 }
2487 
2488 #define SHOW_LIB_VERSION(libname, LIBNAME) \
2489  do { \
2490  if (CONFIG_##LIBNAME) { \
2491  unsigned int version = libname##_version(); \
2492  writer_print_section_header(w, SECTION_ID_LIBRARY_VERSION); \
2493  print_str("name", "lib" #libname); \
2494  print_int("major", LIB##LIBNAME##_VERSION_MAJOR); \
2495  print_int("minor", LIB##LIBNAME##_VERSION_MINOR); \
2496  print_int("micro", LIB##LIBNAME##_VERSION_MICRO); \
2497  print_int("version", version); \
2498  print_str("ident", LIB##LIBNAME##_IDENT); \
2499  writer_print_section_footer(w); \
2500  } \
2501  } while (0)
2502 
2504 {
2506  SHOW_LIB_VERSION(avutil, AVUTIL);
2507  SHOW_LIB_VERSION(avcodec, AVCODEC);
2508  SHOW_LIB_VERSION(avformat, AVFORMAT);
2509  SHOW_LIB_VERSION(avdevice, AVDEVICE);
2510  SHOW_LIB_VERSION(avfilter, AVFILTER);
2511  SHOW_LIB_VERSION(swscale, SWSCALE);
2512  SHOW_LIB_VERSION(swresample, SWRESAMPLE);
2513  SHOW_LIB_VERSION(postproc, POSTPROC);
2515 }
2516 
2517 static int opt_format(void *optctx, const char *opt, const char *arg)
2518 {
2519  iformat = av_find_input_format(arg);
2520  if (!iformat) {
2521  av_log(NULL, AV_LOG_ERROR, "Unknown input format: %s\n", arg);
2522  return AVERROR(EINVAL);
2523  }
2524  return 0;
2525 }
2526 
2527 static inline void mark_section_show_entries(SectionID section_id,
2528  int show_all_entries, AVDictionary *entries)
2529 {
2530  struct section *section = &sections[section_id];
2531 
2533  if (show_all_entries) {
2534  SectionID *id;
2535  for (id = section->children_ids; *id != -1; id++)
2536  mark_section_show_entries(*id, show_all_entries, entries);
2537  } else {
2538  av_dict_copy(&section->entries_to_show, entries, 0);
2539  }
2540 }
2541 
2542 static int match_section(const char *section_name,
2543  int show_all_entries, AVDictionary *entries)
2544 {
2545  int i, ret = 0;
2546 
2547  for (i = 0; i < FF_ARRAY_ELEMS(sections); i++) {
2548  const struct section *section = &sections[i];
2549  if (!strcmp(section_name, section->name) ||
2550  (section->unique_name && !strcmp(section_name, section->unique_name))) {
2551  av_log(NULL, AV_LOG_DEBUG,
2552  "'%s' matches section with unique name '%s'\n", section_name,
2553  (char *)av_x_if_null(section->unique_name, section->name));
2554  ret++;
2555  mark_section_show_entries(section->id, show_all_entries, entries);
2556  }
2557  }
2558  return ret;
2559 }
2560 
2561 static int opt_show_entries(void *optctx, const char *opt, const char *arg)
2562 {
2563  const char *p = arg;
2564  int ret = 0;
2565 
2566  while (*p) {
2567  AVDictionary *entries = NULL;
2568  char *section_name = av_get_token(&p, "=:");
2569  int show_all_entries = 0;
2570 
2571  if (!section_name) {
2572  av_log(NULL, AV_LOG_ERROR,
2573  "Missing section name for option '%s'\n", opt);
2574  return AVERROR(EINVAL);
2575  }
2576 
2577  if (*p == '=') {
2578  p++;
2579  while (*p && *p != ':') {
2580  char *entry = av_get_token(&p, ",:");
2581  if (!entry)
2582  break;
2583  av_log(NULL, AV_LOG_VERBOSE,
2584  "Adding '%s' to the entries to show in section '%s'\n",
2585  entry, section_name);
2586  av_dict_set(&entries, entry, "", AV_DICT_DONT_STRDUP_KEY);
2587  if (*p == ',')
2588  p++;
2589  }
2590  } else {
2591  show_all_entries = 1;
2592  }
2593 
2594  ret = match_section(section_name, show_all_entries, entries);
2595  if (ret == 0) {
2596  av_log(NULL, AV_LOG_ERROR, "No match for section '%s'\n", section_name);
2597  ret = AVERROR(EINVAL);
2598  }
2599  av_dict_free(&entries);
2600  av_free(section_name);
2601 
2602  if (ret <= 0)
2603  break;
2604  if (*p)
2605  p++;
2606  }
2607 
2608  return ret;
2609 }
2610 
2611 static int opt_show_format_entry(void *optctx, const char *opt, const char *arg)
2612 {
2613  char *buf = av_asprintf("format=%s", arg);
2614  int ret;
2615 
2616  av_log(NULL, AV_LOG_WARNING,
2617  "Option '%s' is deprecated, use '-show_entries format=%s' instead\n",
2618  opt, arg);
2619  ret = opt_show_entries(optctx, opt, buf);
2620  av_free(buf);
2621  return ret;
2622 }
2623 
2624 static void opt_input_file(void *optctx, const char *arg)
2625 {
2626  if (input_filename) {
2627  av_log(NULL, AV_LOG_ERROR,
2628  "Argument '%s' provided as input filename, but '%s' was already specified.\n",
2629  arg, input_filename);
2630  exit_program(1);
2631  }
2632  if (!strcmp(arg, "-"))
2633  arg = "pipe:";
2634  input_filename = arg;
2635 }
2636 
2637 static int opt_input_file_i(void *optctx, const char *opt, const char *arg)
2638 {
2639  opt_input_file(optctx, arg);
2640  return 0;
2641 }
2642 
2643 void show_help_default(const char *opt, const char *arg)
2644 {
2646  show_usage();
2647  show_help_options(options, "Main options:", 0, 0, 0);
2648  printf("\n");
2649 
2651 }
2652 
2653 /**
2654  * Parse interval specification, according to the format:
2655  * INTERVAL ::= [START|+START_OFFSET][%[END|+END_OFFSET]]
2656  * INTERVALS ::= INTERVAL[,INTERVALS]
2657 */
2658 static int parse_read_interval(const char *interval_spec,
2659  ReadInterval *interval)
2660 {
2661  int ret = 0;
2662  char *next, *p, *spec = av_strdup(interval_spec);
2663  if (!spec)
2664  return AVERROR(ENOMEM);
2665 
2666  if (!*spec) {
2667  av_log(NULL, AV_LOG_ERROR, "Invalid empty interval specification\n");
2668  ret = AVERROR(EINVAL);
2669  goto end;
2670  }
2671 
2672  p = spec;
2673  next = strchr(spec, '%');
2674  if (next)
2675  *next++ = 0;
2676 
2677  /* parse first part */
2678  if (*p) {
2679  interval->has_start = 1;
2680 
2681  if (*p == '+') {
2682  interval->start_is_offset = 1;
2683  p++;
2684  } else {
2685  interval->start_is_offset = 0;
2686  }
2687 
2688  ret = av_parse_time(&interval->start, p, 1);
2689  if (ret < 0) {
2690  av_log(NULL, AV_LOG_ERROR, "Invalid interval start specification '%s'\n", p);
2691  goto end;
2692  }
2693  } else {
2694  interval->has_start = 0;
2695  }
2696 
2697  /* parse second part */
2698  p = next;
2699  if (p && *p) {
2700  int64_t us;
2701  interval->has_end = 1;
2702 
2703  if (*p == '+') {
2704  interval->end_is_offset = 1;
2705  p++;
2706  } else {
2707  interval->end_is_offset = 0;
2708  }
2709 
2710  if (interval->end_is_offset && *p == '#') {
2711  long long int lli;
2712  char *tail;
2713  interval->duration_frames = 1;
2714  p++;
2715  lli = strtoll(p, &tail, 10);
2716  if (*tail || lli < 0) {
2717  av_log(NULL, AV_LOG_ERROR,
2718  "Invalid or negative value '%s' for duration number of frames\n", p);
2719  goto end;
2720  }
2721  interval->end = lli;
2722  } else {
2723  ret = av_parse_time(&us, p, 1);
2724  if (ret < 0) {
2725  av_log(NULL, AV_LOG_ERROR, "Invalid interval end/duration specification '%s'\n", p);
2726  goto end;
2727  }
2728  interval->end = us;
2729  }
2730  } else {
2731  interval->has_end = 0;
2732  }
2733 
2734 end:
2735  av_free(spec);
2736  return ret;
2737 }
2738 
2739 static int parse_read_intervals(const char *intervals_spec)
2740 {
2741  int ret, n, i;
2742  char *p, *spec = av_strdup(intervals_spec);
2743  if (!spec)
2744  return AVERROR(ENOMEM);
2745 
2746  /* preparse specification, get number of intervals */
2747  for (n = 0, p = spec; *p; p++)
2748  if (*p == ',')
2749  n++;
2750  n++;
2751 
2752  read_intervals = av_malloc_array(n, sizeof(*read_intervals));
2753  if (!read_intervals) {
2754  ret = AVERROR(ENOMEM);
2755  goto end;
2756  }
2757  read_intervals_nb = n;
2758 
2759  /* parse intervals */
2760  p = spec;
2761  for (i = 0; p; i++) {
2762  char *next;
2763 
2765  next = strchr(p, ',');
2766  if (next)
2767  *next++ = 0;
2768 
2769  read_intervals[i].id = i;
2770  ret = parse_read_interval(p, &read_intervals[i]);
2771  if (ret < 0) {
2772  av_log(NULL, AV_LOG_ERROR, "Error parsing read interval #%d '%s'\n",
2773  i, p);
2774  goto end;
2775  }
2776  av_log(NULL, AV_LOG_VERBOSE, "Parsed log interval ");
2777  log_read_interval(&read_intervals[i], NULL, AV_LOG_VERBOSE);
2778  p = next;
2779  }
2781 
2782 end:
2783  av_free(spec);
2784  return ret;
2785 }
2786 
2787 static int opt_read_intervals(void *optctx, const char *opt, const char *arg)
2788 {
2789  return parse_read_intervals(arg);
2790 }
2791 
2792 static int opt_pretty(void *optctx, const char *opt, const char *arg)
2793 {
2794  show_value_unit = 1;
2795  use_value_prefix = 1;
2798  return 0;
2799 }
2800 
2801 static void print_section(SectionID id, int level)
2802 {
2803  const SectionID *pid;
2804  const struct section *section = &sections[id];
2805  printf("%c%c%c",
2806  section->flags & SECTION_FLAG_IS_WRAPPER ? 'W' : '.',
2807  section->flags & SECTION_FLAG_IS_ARRAY ? 'A' : '.',
2808  section->flags & SECTION_FLAG_HAS_VARIABLE_FIELDS ? 'V' : '.');
2809  printf("%*c %s", level * 4, ' ', section->name);
2810  if (section->unique_name)
2811  printf("/%s", section->unique_name);
2812  printf("\n");
2813 
2814  for (pid = section->children_ids; *pid != -1; pid++)
2815  print_section(*pid, level+1);
2816 }
2817 
2818 static int opt_sections(void *optctx, const char *opt, const char *arg)
2819 {
2820  printf("Sections:\n"
2821  "W.. = Section is a wrapper (contains other sections, no local entries)\n"
2822  ".A. = Section contains an array of elements of the same type\n"
2823  "..V = Section may contain a variable number of fields with variable keys\n"
2824  "FLAGS NAME/UNIQUE_NAME\n"
2825  "---\n");
2827  return 0;
2828 }
2829 
2830 static int opt_show_versions(const char *opt, const char *arg)
2831 {
2834  return 0;
2835 }
2836 
2837 #define DEFINE_OPT_SHOW_SECTION(section, target_section_id) \
2838  static int opt_show_##section(const char *opt, const char *arg) \
2839  { \
2840  mark_section_show_entries(SECTION_ID_##target_section_id, 1, NULL); \
2841  return 0; \
2842  }
2843 
2844 DEFINE_OPT_SHOW_SECTION(chapters, CHAPTERS);
2845 DEFINE_OPT_SHOW_SECTION(error, ERROR);
2846 DEFINE_OPT_SHOW_SECTION(format, FORMAT);
2847 DEFINE_OPT_SHOW_SECTION(frames, FRAMES);
2848 DEFINE_OPT_SHOW_SECTION(library_versions, LIBRARY_VERSIONS);
2849 DEFINE_OPT_SHOW_SECTION(packets, PACKETS);
2850 DEFINE_OPT_SHOW_SECTION(program_version, PROGRAM_VERSION);
2851 DEFINE_OPT_SHOW_SECTION(streams, STREAMS);
2852 DEFINE_OPT_SHOW_SECTION(programs, PROGRAMS);
2853 
2854 static const OptionDef real_options[] = {
2855 #include "cmdutils_common_opts.h"
2856  { "f", HAS_ARG, {.func_arg = opt_format}, "force format", "format" },
2857  { "unit", OPT_BOOL, {&show_value_unit}, "show unit of the displayed values" },
2858  { "prefix", OPT_BOOL, {&use_value_prefix}, "use SI prefixes for the displayed values" },
2859  { "byte_binary_prefix", OPT_BOOL, {&use_byte_value_binary_prefix},
2860  "use binary prefixes for byte units" },
2861  { "sexagesimal", OPT_BOOL, {&use_value_sexagesimal_format},
2862  "use sexagesimal format HOURS:MM:SS.MICROSECONDS for time units" },
2863  { "pretty", 0, {.func_arg = opt_pretty},
2864  "prettify the format of displayed values, make it more human readable" },
2865  { "print_format", OPT_STRING | HAS_ARG, {(void*)&print_format},
2866  "set the output printing format (available formats are: default, compact, csv, flat, ini, json, xml)", "format" },
2867  { "of", OPT_STRING | HAS_ARG, {(void*)&print_format}, "alias for -print_format", "format" },
2868  { "select_streams", OPT_STRING | HAS_ARG, {(void*)&stream_specifier}, "select the specified streams", "stream_specifier" },
2869  { "sections", OPT_EXIT, {.func_arg = opt_sections}, "print sections structure and section information, and exit" },
2870  { "show_data", OPT_BOOL, {(void*)&do_show_data}, "show packets data" },
2871  { "show_error", 0, {(void*)&opt_show_error}, "show probing error" },
2872  { "show_format", 0, {(void*)&opt_show_format}, "show format/container info" },
2873  { "show_frames", 0, {(void*)&opt_show_frames}, "show frames info" },
2874  { "show_format_entry", HAS_ARG, {.func_arg = opt_show_format_entry},
2875  "show a particular entry from the format/container info", "entry" },
2876  { "show_entries", HAS_ARG, {.func_arg = opt_show_entries},
2877  "show a set of specified entries", "entry_list" },
2878  { "show_packets", 0, {(void*)&opt_show_packets}, "show packets info" },
2879  { "show_programs", 0, {(void*)&opt_show_programs}, "show programs info" },
2880  { "show_streams", 0, {(void*)&opt_show_streams}, "show streams info" },
2881  { "show_chapters", 0, {(void*)&opt_show_chapters}, "show chapters info" },
2882  { "count_frames", OPT_BOOL, {(void*)&do_count_frames}, "count the number of frames per stream" },
2883  { "count_packets", OPT_BOOL, {(void*)&do_count_packets}, "count the number of packets per stream" },
2884  { "show_program_version", 0, {(void*)&opt_show_program_version}, "show ffprobe version" },
2885  { "show_library_versions", 0, {(void*)&opt_show_library_versions}, "show library versions" },
2886  { "show_versions", 0, {(void*)&opt_show_versions}, "show program and library versions" },
2887  { "show_private_data", OPT_BOOL, {(void*)&show_private_data}, "show private data" },
2888  { "private", OPT_BOOL, {(void*)&show_private_data}, "same as show_private_data" },
2889  { "bitexact", OPT_BOOL, {&do_bitexact}, "force bitexact output" },
2890  { "read_intervals", HAS_ARG, {.func_arg = opt_read_intervals}, "set read intervals", "read_intervals" },
2891  { "default", HAS_ARG | OPT_AUDIO | OPT_VIDEO | OPT_EXPERT, {.func_arg = opt_default}, "generic catch all option", "" },
2892  { "i", HAS_ARG, {.func_arg = opt_input_file_i}, "read specified file", "input_file"},
2893  { NULL, },
2894 };
2895 
2896 static inline int check_section_show_entries(int section_id)
2897 {
2898  int *id;
2899  struct section *section = &sections[section_id];
2900  if (sections[section_id].show_all_entries || sections[section_id].entries_to_show)
2901  return 1;
2902  for (id = section->children_ids; *id != -1; id++)
2903  if (check_section_show_entries(*id))
2904  return 1;
2905  return 0;
2906 }
2907 
2908 #define SET_DO_SHOW(id, varname) do { \
2909  if (check_section_show_entries(SECTION_ID_##id)) \
2910  do_show_##varname = 1; \
2911  } while (0)
2912 
2913 int main(int argc, char **argv)
2914 {
2915  const Writer *w;
2916  WriterContext *wctx;
2917  char *buf;
2918  char *w_name = NULL, *w_args = NULL;
2919  int ret, i;
2920 
2923 
2924  options = real_options;
2925  parse_loglevel(argc, argv, options);
2926  av_register_all();
2928  init_opts();
2929 #if CONFIG_AVDEVICE
2931 #endif
2932 
2933  show_banner(argc, argv, options);
2934  parse_options(NULL, argc, argv, options, opt_input_file);
2935 
2936  /* mark things to show, based on -show_entries */
2937  SET_DO_SHOW(CHAPTERS, chapters);
2938  SET_DO_SHOW(ERROR, error);
2939  SET_DO_SHOW(FORMAT, format);
2940  SET_DO_SHOW(FRAMES, frames);
2941  SET_DO_SHOW(LIBRARY_VERSIONS, library_versions);
2942  SET_DO_SHOW(PACKETS, packets);
2943  SET_DO_SHOW(PROGRAM_VERSION, program_version);
2944  SET_DO_SHOW(PROGRAMS, programs);
2945  SET_DO_SHOW(STREAMS, streams);
2946  SET_DO_SHOW(STREAM_DISPOSITION, stream_disposition);
2947  SET_DO_SHOW(PROGRAM_STREAM_DISPOSITION, stream_disposition);
2948 
2949  SET_DO_SHOW(CHAPTER_TAGS, chapter_tags);
2950  SET_DO_SHOW(FORMAT_TAGS, format_tags);
2951  SET_DO_SHOW(FRAME_TAGS, frame_tags);
2952  SET_DO_SHOW(PROGRAM_TAGS, program_tags);
2953  SET_DO_SHOW(STREAM_TAGS, stream_tags);
2954 
2956  av_log(NULL, AV_LOG_ERROR,
2957  "-bitexact and -show_program_version or -show_library_versions "
2958  "options are incompatible\n");
2959  ret = AVERROR(EINVAL);
2960  goto end;
2961  }
2962 
2964 
2965  if (!print_format)
2966  print_format = av_strdup("default");
2967  if (!print_format) {
2968  ret = AVERROR(ENOMEM);
2969  goto end;
2970  }
2971  w_name = av_strtok(print_format, "=", &buf);
2972  w_args = buf;
2973 
2974  w = writer_get_by_name(w_name);
2975  if (!w) {
2976  av_log(NULL, AV_LOG_ERROR, "Unknown output format with name '%s'\n", w_name);
2977  ret = AVERROR(EINVAL);
2978  goto end;
2979  }
2980 
2981  if ((ret = writer_open(&wctx, w, w_args,
2982  sections, FF_ARRAY_ELEMS(sections))) >= 0) {
2983  if (w == &xml_writer)
2985 
2987 
2992 
2993  if (!input_filename &&
2996  show_usage();
2997  av_log(NULL, AV_LOG_ERROR, "You have to specify one input file.\n");
2998  av_log(NULL, AV_LOG_ERROR, "Use -h to get full help or, even better, run 'man %s'.\n", program_name);
2999  ret = AVERROR(EINVAL);
3000  } else if (input_filename) {
3001  ret = probe_file(wctx, input_filename);
3002  if (ret < 0 && do_show_error)
3003  show_error(wctx, ret);
3004  }
3005 
3007  writer_close(&wctx);
3008  }
3009 
3010 end:
3012  av_freep(&read_intervals);
3013 
3014  uninit_opts();
3015  for (i = 0; i < FF_ARRAY_ELEMS(sections); i++)
3016  av_dict_free(&(sections[i].entries_to_show));
3017 
3019 
3020  return ret < 0;
3021 }