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1 /*
2  * Vividas VIV format Demuxer
3  * Copyright (c) 2012 Krzysztof Klinikowski
4  * Copyright (c) 2010 Andrzej Szombierski
5  * based on vivparse Copyright (c) 2007 Måns Rullgård
6  *
7  * This file is part of FFmpeg.
8  *
9  * FFmpeg is free software; you can redistribute it and/or
10  * modify it under the terms of the GNU Lesser General Public
11  * License as published by the Free Software Foundation; either
12  * version 2.1 of the License, or (at your option) any later version.
13  *
14  * FFmpeg is distributed in the hope that it will be useful,
15  * but WITHOUT ANY WARRANTY; without even the implied warranty of
16  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
17  * Lesser General Public License for more details.
18  *
19  * You should have received a copy of the GNU Lesser General Public
20  * License along with FFmpeg; if not, write to the Free Software
21  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
22  */
23 
24 /**
25  * @file
26  * @brief Vividas VIV (.viv) file demuxer
27  * @author Andrzej Szombierski [qq at kuku eu org] (2010-07)
28  * @sa http://wiki.multimedia.cx/index.php?title=Vividas_VIV
29  */
30 
31 #include "libavutil/avassert.h"
32 #include "libavutil/intreadwrite.h"
33 #include "avio_internal.h"
34 #include "avformat.h"
35 #include "internal.h"
36 
37 #define MAX_AUDIO_SUBPACKETS 100
38 
39 typedef struct VIV_SB_block {
40     int size, n_packets;
41     int64_t byte_offset;
42     int64_t packet_offset;
43 } VIV_SB_block;
44 
45 typedef struct VIV_SB_entry {
46     int size, flag;
47 } VIV_SB_entry;
48 
49 typedef struct VIV_AudioSubpacket {
50     int start, pcm_bytes;
51 } VIV_AudioSubpacket;
52 
53 typedef struct VividasDemuxContext {
54     int n_sb_blocks;
55     VIV_SB_block *sb_blocks;
56     int num_audio;
57 
58     uint32_t sb_key;
59     int64_t sb_offset;
60 
61     int current_sb, current_sb_entry;
62     uint8_t *sb_buf;
63     AVIOContext *sb_pb;
64     int n_sb_entries;
65     VIV_SB_entry *sb_entries;
66 
67     int n_audio_subpackets;
68     int current_audio_subpacket;
69 
70     int64_t audio_sample;
71 
72     VIV_AudioSubpacket audio_subpackets[MAX_AUDIO_SUBPACKETS];
73 } VividasDemuxContext;
74 
viv_probe(const AVProbeData * p)75 static int viv_probe(const AVProbeData *p)
76 {
77     if (memcmp(p->buf, "vividas03", 9))
78         return 0;
79 
80     return AVPROBE_SCORE_MAX;
81 }
82 
83 static const uint8_t keybits[32] = {
84  20,  52, 111,  10,  27,  71, 142,  53,
85  82, 138,   1,  78,  86, 121, 183,  85,
86 105, 152,  39, 140, 172,  11,  64, 144,
87 155,   6,  71, 163, 186,  49, 126,  43,
88 };
89 
decode_key(uint8_t * buf)90 static uint32_t decode_key(uint8_t *buf)
91 {
92     uint32_t key = 0;
93 
94     for (int i = 0; i < 32; i++) {
95         unsigned p = keybits[i];
96         key |= ((buf[p] >> ((i*5+3)&7)) & 1u) << i;
97     }
98 
99     return key;
100 }
101 
put_v(uint8_t * p,unsigned v)102 static void put_v(uint8_t *p, unsigned v)
103 {
104     if (v>>28)
105         *p++ = ((v>>28)&0x7f)|0x80;
106     if (v>>21)
107         *p++ = ((v>>21)&0x7f)|0x80;
108     if (v>>14)
109         *p++ = ((v>>14)&0x7f)|0x80;
110     if (v>>7)
111         *p++ =  ((v>>7)&0x7f)|0x80;
112 }
113 
recover_key(unsigned char sample[4],unsigned expected_size)114 static unsigned recover_key(unsigned char sample[4], unsigned expected_size)
115 {
116     unsigned char plaintext[8] = { 'S', 'B' };
117 
118     put_v(plaintext+2, expected_size);
119 
120     return AV_RL32(sample) ^ AV_RL32(plaintext);
121 }
122 
xor_block(void * p1,void * p2,unsigned size,int key,unsigned * key_ptr)123 static void xor_block(void *p1, void *p2, unsigned size, int key, unsigned *key_ptr)
124 {
125     unsigned *d1 = p1;
126     unsigned *d2 = p2;
127     unsigned k = *key_ptr;
128 
129     size >>= 2;
130 
131     while (size > 0) {
132         *d2 = *d1 ^ (HAVE_BIGENDIAN ? av_bswap32(k) : k);
133         k += key;
134         d1++;
135         d2++;
136         size--;
137     }
138 
139     *key_ptr = k;
140 }
141 
decode_block(uint8_t * src,uint8_t * dest,unsigned size,uint32_t key,uint32_t * key_ptr,int align)142 static void decode_block(uint8_t *src, uint8_t *dest, unsigned size,
143                          uint32_t key, uint32_t *key_ptr,
144                          int align)
145 {
146     unsigned s = size;
147     char tmp[4];
148     int a2;
149 
150     if (!size)
151         return;
152 
153     align &= 3;
154     a2 = (4 - align) & 3;
155 
156     if (align) {
157         uint32_t tmpkey = *key_ptr - key;
158         if (a2 > s) {
159             a2 = s;
160             avpriv_request_sample(NULL, "tiny aligned block\n");
161         }
162         memcpy(tmp + align, src, a2);
163         xor_block(tmp, tmp, 4, key, &tmpkey);
164         memcpy(dest, tmp + align, a2);
165         s -= a2;
166     }
167 
168     if (s >= 4) {
169         xor_block(src + a2, dest + a2, s & ~3,
170                   key, key_ptr);
171         s &= 3;
172     }
173 
174     if (s) {
175         size -= s;
176         memcpy(tmp, src + size, s);
177         xor_block(&tmp, &tmp, 4, key, key_ptr);
178         memcpy(dest + size, tmp, s);
179     }
180 }
181 
get_v(uint8_t * p,int len)182 static uint32_t get_v(uint8_t *p, int len)
183 {
184     uint32_t v = 0;
185     const uint8_t *end = p + len;
186 
187     do {
188         if (p >= end || v >= UINT_MAX / 128 - *p)
189             return v;
190         v <<= 7;
191         v += *p & 0x7f;
192     } while (*p++ & 0x80);
193 
194     return v;
195 }
196 
read_vblock(AVIOContext * src,uint32_t * size,uint32_t key,uint32_t * k2,int align)197 static uint8_t *read_vblock(AVIOContext *src, uint32_t *size,
198                             uint32_t key, uint32_t *k2, int align)
199 {
200     uint8_t tmp[4];
201     uint8_t *buf;
202     unsigned n;
203 
204     if (avio_read(src, tmp, 4) != 4)
205         return NULL;
206 
207     decode_block(tmp, tmp, 4, key, k2, align);
208 
209     n = get_v(tmp, 4);
210     if (n < 4)
211         return NULL;
212 
213     buf = av_malloc(n);
214     if (!buf)
215         return NULL;
216 
217     *size = n;
218     n -= 4;
219 
220     memcpy(buf, tmp, 4);
221 
222     if (avio_read(src, buf + 4, n) == n) {
223         decode_block(buf + 4, buf + 4, n, key, k2, align);
224     } else {
225         av_free(buf);
226         buf = NULL;
227     }
228 
229     return buf;
230 }
231 
read_sb_block(AVIOContext * src,unsigned * size,uint32_t * key,unsigned expected_size)232 static uint8_t *read_sb_block(AVIOContext *src, unsigned *size,
233                               uint32_t *key, unsigned expected_size)
234 {
235     uint8_t *buf;
236     uint8_t ibuf[8], sbuf[8];
237     uint32_t k2;
238     unsigned n;
239 
240     if (avio_read(src, ibuf, 8) < 8)
241         return NULL;
242 
243     k2 = *key;
244     decode_block(ibuf, sbuf, 8, *key, &k2, 0);
245 
246     n = get_v(sbuf+2, 6);
247 
248     if (sbuf[0] != 'S' || sbuf[1] != 'B' || (expected_size>0 && n != expected_size)) {
249         uint32_t tmpkey = recover_key(ibuf, expected_size);
250         k2 = tmpkey;
251         decode_block(ibuf, sbuf, 8, tmpkey, &k2, 0);
252         n = get_v(sbuf+2, 6);
253         if (sbuf[0] != 'S' || sbuf[1] != 'B' || expected_size != n)
254             return NULL;
255         *key = tmpkey;
256     }
257 
258     if (n < 8)
259         return NULL;
260 
261     buf = av_malloc(n);
262     if (!buf)
263         return NULL;
264 
265     memcpy(buf, sbuf, 8);
266 
267     *size = n;
268     n -= 8;
269 
270     if (avio_read(src, buf+8, n) < n) {
271         av_free(buf);
272         return NULL;
273     }
274 
275     decode_block(buf + 8, buf + 8, n, *key, &k2, 0);
276 
277     return buf;
278 }
279 
track_header(VividasDemuxContext * viv,AVFormatContext * s,uint8_t * buf,int size)280 static int track_header(VividasDemuxContext *viv, AVFormatContext *s,  uint8_t *buf, int size)
281 {
282     int i, j, ret;
283     int64_t off;
284     int val_1;
285     int num_video;
286     AVIOContext pb0, *pb = &pb0;
287 
288     ffio_init_context(pb, buf, size, 0, NULL, NULL, NULL, NULL);
289 
290     ffio_read_varlen(pb); // track_header_len
291     avio_r8(pb); // '1'
292 
293     val_1 = ffio_read_varlen(pb);
294 
295     for (i=0;i<val_1;i++) {
296         int c = avio_r8(pb);
297         if (avio_feof(pb))
298             return AVERROR_EOF;
299         for (j=0;j<c;j++) {
300             if (avio_feof(pb))
301                 return AVERROR_EOF;
302             avio_r8(pb); // val_3
303             avio_r8(pb); // val_4
304         }
305     }
306 
307     avio_r8(pb); // num_streams
308 
309     off = avio_tell(pb);
310     off += ffio_read_varlen(pb); // val_5
311 
312     avio_r8(pb); // '2'
313     num_video = avio_r8(pb);
314 
315     avio_seek(pb, off, SEEK_SET);
316     if (num_video != 1) {
317         av_log(s, AV_LOG_ERROR, "number of video tracks %d is not 1\n", num_video);
318         return AVERROR_PATCHWELCOME;
319     }
320 
321     for (i = 0; i < num_video; i++) {
322         AVStream *st = avformat_new_stream(s, NULL);
323         int num, den;
324 
325         if (!st)
326             return AVERROR(ENOMEM);
327 
328         st->id = i;
329 
330         st->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
331         st->codecpar->codec_id = AV_CODEC_ID_VP6;
332 
333         off = avio_tell(pb);
334         off += ffio_read_varlen(pb);
335         avio_r8(pb); // '3'
336         avio_r8(pb); // val_7
337         num = avio_rl32(pb); // frame_time
338         den = avio_rl32(pb); // time_base
339         avpriv_set_pts_info(st, 64, num, den);
340         st->nb_frames = avio_rl32(pb); // n frames
341         st->codecpar->width = avio_rl16(pb); // width
342         st->codecpar->height = avio_rl16(pb); // height
343         avio_r8(pb); // val_8
344         avio_rl32(pb); // val_9
345 
346         avio_seek(pb, off, SEEK_SET);
347     }
348 
349     off = avio_tell(pb);
350     off += ffio_read_varlen(pb); // val_10
351     avio_r8(pb); // '4'
352     viv->num_audio = avio_r8(pb);
353     avio_seek(pb, off, SEEK_SET);
354 
355     if (viv->num_audio != 1)
356         av_log(s, AV_LOG_WARNING, "number of audio tracks %d is not 1\n", viv->num_audio);
357 
358     for(i=0;i<viv->num_audio;i++) {
359         int q;
360         AVStream *st = avformat_new_stream(s, NULL);
361         if (!st)
362             return AVERROR(ENOMEM);
363 
364         st->id = num_video + i;
365 
366         st->codecpar->codec_type = AVMEDIA_TYPE_AUDIO;
367         st->codecpar->codec_id = AV_CODEC_ID_VORBIS;
368 
369         off = avio_tell(pb);
370         off += ffio_read_varlen(pb); // length
371         avio_r8(pb); // '5'
372         avio_r8(pb); //codec_id
373         avio_rl16(pb); //codec_subid
374         st->codecpar->channels = avio_rl16(pb); // channels
375         st->codecpar->sample_rate = avio_rl32(pb); // sample_rate
376         if (st->codecpar->sample_rate <= 0 || st->codecpar->channels <= 0)
377             return AVERROR_INVALIDDATA;
378         avio_seek(pb, 10, SEEK_CUR); // data_1
379         q = avio_r8(pb);
380         avio_seek(pb, q, SEEK_CUR); // data_2
381         avio_r8(pb); // zeropad
382 
383         if (avio_tell(pb) < off) {
384             int num_data;
385             int xd_size = 1;
386             int data_len[256];
387             int offset = 1;
388             uint8_t *p;
389             ffio_read_varlen(pb); // val_13
390             avio_r8(pb); // '19'
391             ffio_read_varlen(pb); // len_3
392             num_data = avio_r8(pb);
393             for (j = 0; j < num_data; j++) {
394                 int64_t len = ffio_read_varlen(pb);
395                 if (len < 0 || len > INT_MAX/2 - xd_size) {
396                     return AVERROR_INVALIDDATA;
397                 }
398                 data_len[j] = len;
399                 xd_size += len + 1 + len/255;
400             }
401 
402             ret = ff_alloc_extradata(st->codecpar, xd_size);
403             if (ret < 0)
404                 return ret;
405 
406             p = st->codecpar->extradata;
407             p[0] = 2;
408 
409             for (j = 0; j < num_data - 1; j++) {
410                 unsigned delta = av_xiphlacing(&p[offset], data_len[j]);
411                 av_assert0(delta <= xd_size - offset);
412                 offset += delta;
413             }
414 
415             for (j = 0; j < num_data; j++) {
416                 int ret = avio_read(pb, &p[offset], data_len[j]);
417                 if (ret < data_len[j]) {
418                     st->codecpar->extradata_size = 0;
419                     av_freep(&st->codecpar->extradata);
420                     break;
421                 }
422                 av_assert0(data_len[j] <= xd_size - offset);
423                 offset += data_len[j];
424             }
425 
426             if (offset < st->codecpar->extradata_size)
427                 st->codecpar->extradata_size = offset;
428         }
429     }
430 
431     return 0;
432 }
433 
track_index(VividasDemuxContext * viv,AVFormatContext * s,uint8_t * buf,unsigned size)434 static int track_index(VividasDemuxContext *viv, AVFormatContext *s, uint8_t *buf, unsigned size)
435 {
436     int64_t off;
437     int64_t poff;
438     int maxnp=0;
439     AVIOContext pb0, *pb = &pb0;
440     int i;
441     int64_t filesize = avio_size(s->pb);
442 
443     ffio_init_context(pb, buf, size, 0, NULL, NULL, NULL, NULL);
444 
445     ffio_read_varlen(pb); // track_index_len
446     avio_r8(pb); // 'c'
447     viv->n_sb_blocks = ffio_read_varlen(pb);
448     if (viv->n_sb_blocks < 0 || viv->n_sb_blocks > size / 2)
449         goto error;
450     viv->sb_blocks = av_calloc(viv->n_sb_blocks, sizeof(VIV_SB_block));
451     if (!viv->sb_blocks) {
452         viv->n_sb_blocks = 0;
453         return AVERROR(ENOMEM);
454     }
455 
456     off = 0;
457     poff = 0;
458 
459     for (i = 0; i < viv->n_sb_blocks; i++) {
460         uint64_t size_tmp      = ffio_read_varlen(pb);
461         uint64_t n_packets_tmp = ffio_read_varlen(pb);
462 
463         if (size_tmp > INT_MAX || n_packets_tmp > INT_MAX)
464             goto error;
465 
466         viv->sb_blocks[i].byte_offset = off;
467         viv->sb_blocks[i].packet_offset = poff;
468 
469         viv->sb_blocks[i].size = size_tmp;
470         viv->sb_blocks[i].n_packets = n_packets_tmp;
471 
472         off += viv->sb_blocks[i].size;
473         poff += viv->sb_blocks[i].n_packets;
474 
475         if (maxnp < viv->sb_blocks[i].n_packets)
476             maxnp = viv->sb_blocks[i].n_packets;
477     }
478 
479     if (filesize > 0 && poff > filesize)
480         goto error;
481 
482     viv->sb_entries = av_calloc(maxnp, sizeof(VIV_SB_entry));
483 
484     return 0;
485 error:
486     viv->n_sb_blocks = 0;
487     av_freep(&viv->sb_blocks);
488     return AVERROR_INVALIDDATA;
489 }
490 
load_sb_block(AVFormatContext * s,VividasDemuxContext * viv,unsigned expected_size)491 static void load_sb_block(AVFormatContext *s, VividasDemuxContext *viv, unsigned expected_size)
492 {
493     uint32_t size = 0;
494     int i;
495     AVIOContext *pb = 0;
496 
497     if (viv->sb_pb) {
498         av_free(viv->sb_pb);
499         viv->sb_pb = NULL;
500     }
501 
502     if (viv->sb_buf)
503         av_free(viv->sb_buf);
504 
505     viv->sb_buf = read_sb_block(s->pb, &size, &viv->sb_key, expected_size);
506     if (!viv->sb_buf) {
507         return;
508     }
509 
510     pb = avio_alloc_context(viv->sb_buf, size, 0, NULL, NULL, NULL, NULL);
511     if (!pb)
512         return;
513 
514     viv->sb_pb = pb;
515 
516     avio_r8(pb); //  'S'
517     avio_r8(pb); //  'B'
518     ffio_read_varlen(pb); //  size
519     avio_r8(pb); //  junk
520     ffio_read_varlen(pb); // first packet
521 
522     viv->n_sb_entries = viv->sb_blocks[viv->current_sb].n_packets;
523 
524     for (i = 0; i < viv->n_sb_entries; i++) {
525         viv->sb_entries[i].size = ffio_read_varlen(pb);
526         viv->sb_entries[i].flag = avio_r8(pb);
527     }
528 
529     ffio_read_varlen(pb);
530     avio_r8(pb);
531 
532     viv->current_sb_entry = 0;
533 }
534 
viv_read_header(AVFormatContext * s)535 static int viv_read_header(AVFormatContext *s)
536 {
537     VividasDemuxContext *viv = s->priv_data;
538     AVIOContext *pb = s->pb;
539     int64_t header_end;
540     int num_tracks;
541     uint32_t key, k2;
542     uint32_t v;
543     uint8_t keybuffer[187];
544     uint32_t b22_size = 0;
545     uint32_t b22_key = 0;
546     uint8_t *buf = 0;
547     int ret;
548 
549     avio_skip(pb, 9);
550 
551     header_end = avio_tell(pb);
552 
553     header_end += ffio_read_varlen(pb);
554 
555     num_tracks = avio_r8(pb);
556 
557     if (num_tracks != 1) {
558         av_log(s, AV_LOG_ERROR, "number of tracks %d is not 1\n", num_tracks);
559         return AVERROR(EINVAL);
560     }
561 
562     v = avio_r8(pb);
563     avio_seek(pb, v, SEEK_CUR);
564 
565     avio_read(pb, keybuffer, 187);
566     key = decode_key(keybuffer);
567     viv->sb_key = key;
568 
569     avio_rl32(pb);
570 
571     for (;;) {
572         int64_t here = avio_tell(pb);
573         int block_len, block_type;
574 
575         if (here >= header_end)
576             break;
577 
578         block_len = ffio_read_varlen(pb);
579         if (avio_feof(pb) || block_len <= 0)
580             return AVERROR_INVALIDDATA;
581 
582         block_type = avio_r8(pb);
583 
584         if (block_type == 22) {
585             avio_read(pb, keybuffer, 187);
586             b22_key = decode_key(keybuffer);
587             b22_size = avio_rl32(pb);
588         }
589 
590         avio_seek(pb, here + block_len, SEEK_SET);
591     }
592 
593     if (b22_size) {
594         k2 = b22_key;
595         buf = read_vblock(pb, &v, b22_key, &k2, 0);
596         if (!buf)
597             return AVERROR(EIO);
598 
599         av_free(buf);
600     }
601 
602     k2 = key;
603     buf = read_vblock(pb, &v, key, &k2, 0);
604     if (!buf)
605         return AVERROR(EIO);
606     ret = track_header(viv, s, buf, v);
607     av_free(buf);
608     if (ret < 0)
609         return ret;
610 
611     buf = read_vblock(pb, &v, key, &k2, v);
612     if (!buf)
613         return AVERROR(EIO);
614     ret = track_index(viv, s, buf, v);
615     av_free(buf);
616     if (ret < 0)
617         return ret;
618 
619     viv->sb_offset = avio_tell(pb);
620     if (viv->n_sb_blocks > 0) {
621         viv->current_sb = 0;
622         load_sb_block(s, viv, viv->sb_blocks[0].size);
623     } else {
624         viv->current_sb = -1;
625     }
626 
627     return 0;
628 }
629 
viv_read_packet(AVFormatContext * s,AVPacket * pkt)630 static int viv_read_packet(AVFormatContext *s,
631                            AVPacket *pkt)
632 {
633     VividasDemuxContext *viv = s->priv_data;
634     AVIOContext *pb;
635     int64_t off;
636     int ret;
637 
638     if (!viv->sb_pb)
639         return AVERROR(EIO);
640     if (avio_feof(viv->sb_pb))
641         return AVERROR_EOF;
642 
643     if (viv->current_audio_subpacket < viv->n_audio_subpackets) {
644         AVStream *astream;
645         int size = viv->audio_subpackets[viv->current_audio_subpacket+1].start - viv->audio_subpackets[viv->current_audio_subpacket].start;
646 
647         pb = viv->sb_pb;
648         ret = av_get_packet(pb, pkt, size);
649         if (ret < 0)
650             return ret;
651         pkt->pos += viv->sb_offset + viv->sb_blocks[viv->current_sb].byte_offset;
652 
653         pkt->stream_index = 1;
654         astream = s->streams[pkt->stream_index];
655 
656         pkt->pts = av_rescale_q(viv->audio_sample, av_make_q(1, astream->codecpar->sample_rate), astream->time_base);
657         viv->audio_sample += viv->audio_subpackets[viv->current_audio_subpacket].pcm_bytes / 2 / astream->codecpar->channels;
658         pkt->flags |= AV_PKT_FLAG_KEY;
659         viv->current_audio_subpacket++;
660         return 0;
661     }
662 
663     if (viv->current_sb_entry >= viv->n_sb_entries) {
664         if (viv->current_sb+1 >= viv->n_sb_blocks)
665             return AVERROR(EIO);
666         viv->current_sb++;
667 
668         load_sb_block(s, viv, 0);
669         viv->current_sb_entry = 0;
670     }
671 
672     pb = viv->sb_pb;
673     if (!pb)
674         return AVERROR(EIO);
675     off = avio_tell(pb);
676 
677     if (viv->current_sb_entry >= viv->n_sb_entries)
678         return AVERROR_INVALIDDATA;
679 
680     off += viv->sb_entries[viv->current_sb_entry].size;
681 
682     if (viv->sb_entries[viv->current_sb_entry].flag == 0) {
683         uint64_t v_size = ffio_read_varlen(pb);
684 
685         if (!viv->num_audio)
686             return AVERROR_INVALIDDATA;
687 
688         ffio_read_varlen(pb);
689         if (v_size > INT_MAX || !v_size)
690             return AVERROR_INVALIDDATA;
691         ret = av_get_packet(pb, pkt, v_size);
692         if (ret < 0)
693             return ret;
694         pkt->pos += viv->sb_offset + viv->sb_blocks[viv->current_sb].byte_offset;
695 
696         pkt->pts = viv->sb_blocks[viv->current_sb].packet_offset + viv->current_sb_entry;
697         pkt->flags |= (pkt->data[0]&0x80)?0:AV_PKT_FLAG_KEY;
698         pkt->stream_index = 0;
699 
700         for (int i = 0; i < MAX_AUDIO_SUBPACKETS - 1; i++) {
701             int start, pcm_bytes;
702             start = ffio_read_varlen(pb);
703             pcm_bytes = ffio_read_varlen(pb);
704 
705             if (i > 0 && start == 0)
706                 break;
707 
708             viv->n_audio_subpackets = i + 1;
709             viv->audio_subpackets[i].start = start;
710             viv->audio_subpackets[i].pcm_bytes = pcm_bytes;
711         }
712         viv->audio_subpackets[viv->n_audio_subpackets].start = (int)(off - avio_tell(pb));
713         viv->current_audio_subpacket = 0;
714 
715     } else {
716         uint64_t v_size = ffio_read_varlen(pb);
717 
718         if (v_size > INT_MAX || !v_size)
719             return AVERROR_INVALIDDATA;
720         ret = av_get_packet(pb, pkt, v_size);
721         if (ret < 0)
722             return ret;
723         pkt->pos += viv->sb_offset + viv->sb_blocks[viv->current_sb].byte_offset;
724         pkt->pts = viv->sb_blocks[viv->current_sb].packet_offset + viv->current_sb_entry;
725         pkt->flags |= (pkt->data[0] & 0x80) ? 0 : AV_PKT_FLAG_KEY;
726         pkt->stream_index = 0;
727     }
728 
729     viv->current_sb_entry++;
730 
731     return 0;
732 }
733 
viv_read_close(AVFormatContext * s)734 static int viv_read_close(AVFormatContext *s)
735 {
736     VividasDemuxContext *viv = s->priv_data;
737 
738     av_freep(&viv->sb_pb);
739     av_freep(&viv->sb_buf);
740     av_freep(&viv->sb_blocks);
741     av_freep(&viv->sb_entries);
742 
743     return 0;
744 }
745 
viv_read_seek(AVFormatContext * s,int stream_index,int64_t timestamp,int flags)746 static int viv_read_seek(AVFormatContext *s, int stream_index, int64_t timestamp, int flags)
747 {
748     VividasDemuxContext *viv = s->priv_data;
749     int64_t frame;
750 
751     if (stream_index == 0)
752         frame = timestamp;
753     else
754         frame = av_rescale_q(timestamp, s->streams[0]->time_base, s->streams[stream_index]->time_base);
755 
756     for (int i = 0; i < viv->n_sb_blocks; i++) {
757         if (frame >= viv->sb_blocks[i].packet_offset && frame < viv->sb_blocks[i].packet_offset + viv->sb_blocks[i].n_packets) {
758             // flush audio packet queue
759             viv->current_audio_subpacket = 0;
760             viv->n_audio_subpackets = 0;
761             viv->current_sb = i;
762             // seek to ith sb block
763             avio_seek(s->pb, viv->sb_offset + viv->sb_blocks[i].byte_offset, SEEK_SET);
764             // load the block
765             load_sb_block(s, viv, 0);
766             // most problematic part: guess audio offset
767             viv->audio_sample = av_rescale_q(viv->sb_blocks[i].packet_offset, av_make_q(s->streams[1]->codecpar->sample_rate, 1), av_inv_q(s->streams[0]->time_base));
768             // hand-tuned 1.s a/v offset
769             viv->audio_sample += s->streams[1]->codecpar->sample_rate;
770             viv->current_sb_entry = 0;
771             return 1;
772         }
773     }
774     return 0;
775 }
776 
777 AVInputFormat ff_vividas_demuxer = {
778     .name           = "vividas",
779     .long_name      = NULL_IF_CONFIG_SMALL("Vividas VIV"),
780     .priv_data_size = sizeof(VividasDemuxContext),
781     .read_probe     = viv_probe,
782     .read_header    = viv_read_header,
783     .read_packet    = viv_read_packet,
784     .read_close     = viv_read_close,
785     .read_seek      = viv_read_seek,
786 };
787