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  1. /*
  2. * Buffered I/O for ffmpeg system
  3. * Copyright (c) 2000,2001 Fabrice Bellard
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * FFmpeg is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with FFmpeg; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. #include "libavutil/crc.h"
  22. #include "libavutil/intreadwrite.h"
  23. #include "avformat.h"
  24. #include "avio.h"
  25. #include <stdarg.h>
  26. #define IO_BUFFER_SIZE 32768
  27. static void fill_buffer(ByteIOContext *s);
  28. #if LIBAVFORMAT_VERSION_MAJOR >= 53
  29. static int url_resetbuf(ByteIOContext *s, int flags);
  30. #endif
  31. int init_put_byte(ByteIOContext *s,
  32. unsigned char *buffer,
  33. int buffer_size,
  34. int write_flag,
  35. void *opaque,
  36. int (*read_packet)(void *opaque, uint8_t *buf, int buf_size),
  37. int (*write_packet)(void *opaque, uint8_t *buf, int buf_size),
  38. int64_t (*seek)(void *opaque, int64_t offset, int whence))
  39. {
  40. s->buffer = buffer;
  41. s->buffer_size = buffer_size;
  42. s->buf_ptr = buffer;
  43. s->opaque = opaque;
  44. url_resetbuf(s, write_flag ? URL_WRONLY : URL_RDONLY);
  45. s->write_packet = write_packet;
  46. s->read_packet = read_packet;
  47. s->seek = seek;
  48. s->pos = 0;
  49. s->must_flush = 0;
  50. s->eof_reached = 0;
  51. s->error = 0;
  52. s->is_streamed = 0;
  53. s->max_packet_size = 0;
  54. s->update_checksum= NULL;
  55. if(!read_packet && !write_flag){
  56. s->pos = buffer_size;
  57. s->buf_end = s->buffer + buffer_size;
  58. }
  59. s->read_pause = NULL;
  60. s->read_seek = NULL;
  61. return 0;
  62. }
  63. ByteIOContext *av_alloc_put_byte(
  64. unsigned char *buffer,
  65. int buffer_size,
  66. int write_flag,
  67. void *opaque,
  68. int (*read_packet)(void *opaque, uint8_t *buf, int buf_size),
  69. int (*write_packet)(void *opaque, uint8_t *buf, int buf_size),
  70. int64_t (*seek)(void *opaque, int64_t offset, int whence))
  71. {
  72. ByteIOContext *s = av_mallocz(sizeof(ByteIOContext));
  73. init_put_byte(s, buffer, buffer_size, write_flag, opaque,
  74. read_packet, write_packet, seek);
  75. return s;
  76. }
  77. static void flush_buffer(ByteIOContext *s)
  78. {
  79. if (s->buf_ptr > s->buffer) {
  80. if (s->write_packet && !s->error){
  81. int ret= s->write_packet(s->opaque, s->buffer, s->buf_ptr - s->buffer);
  82. if(ret < 0){
  83. s->error = ret;
  84. }
  85. }
  86. if(s->update_checksum){
  87. s->checksum= s->update_checksum(s->checksum, s->checksum_ptr, s->buf_ptr - s->checksum_ptr);
  88. s->checksum_ptr= s->buffer;
  89. }
  90. s->pos += s->buf_ptr - s->buffer;
  91. }
  92. s->buf_ptr = s->buffer;
  93. }
  94. void put_byte(ByteIOContext *s, int b)
  95. {
  96. *(s->buf_ptr)++ = b;
  97. if (s->buf_ptr >= s->buf_end)
  98. flush_buffer(s);
  99. }
  100. void put_buffer(ByteIOContext *s, const unsigned char *buf, int size)
  101. {
  102. while (size > 0) {
  103. int len = FFMIN(s->buf_end - s->buf_ptr, size);
  104. memcpy(s->buf_ptr, buf, len);
  105. s->buf_ptr += len;
  106. if (s->buf_ptr >= s->buf_end)
  107. flush_buffer(s);
  108. buf += len;
  109. size -= len;
  110. }
  111. }
  112. void put_flush_packet(ByteIOContext *s)
  113. {
  114. flush_buffer(s);
  115. s->must_flush = 0;
  116. }
  117. int64_t url_fseek(ByteIOContext *s, int64_t offset, int whence)
  118. {
  119. int64_t offset1;
  120. int64_t pos;
  121. int force = whence & AVSEEK_FORCE;
  122. whence &= ~AVSEEK_FORCE;
  123. if(!s)
  124. return AVERROR(EINVAL);
  125. pos = s->pos - (s->write_flag ? 0 : (s->buf_end - s->buffer));
  126. if (whence != SEEK_CUR && whence != SEEK_SET)
  127. return AVERROR(EINVAL);
  128. if (whence == SEEK_CUR) {
  129. offset1 = pos + (s->buf_ptr - s->buffer);
  130. if (offset == 0)
  131. return offset1;
  132. offset += offset1;
  133. }
  134. offset1 = offset - pos;
  135. if (!s->must_flush &&
  136. offset1 >= 0 && offset1 <= (s->buf_end - s->buffer)) {
  137. /* can do the seek inside the buffer */
  138. s->buf_ptr = s->buffer + offset1;
  139. } else if(s->is_streamed && !s->write_flag && offset1 >= 0 &&
  140. (whence != SEEK_END || force)) {
  141. while(s->pos < offset && !s->eof_reached)
  142. fill_buffer(s);
  143. if (s->eof_reached)
  144. return AVERROR_EOF;
  145. s->buf_ptr = s->buf_end + offset - s->pos;
  146. } else {
  147. int64_t res = AVERROR(EPIPE);
  148. #if CONFIG_MUXERS || CONFIG_NETWORK
  149. if (s->write_flag) {
  150. flush_buffer(s);
  151. s->must_flush = 1;
  152. }
  153. #endif /* CONFIG_MUXERS || CONFIG_NETWORK */
  154. if (!s->seek || (res = s->seek(s->opaque, offset, SEEK_SET)) < 0)
  155. return res;
  156. if (!s->write_flag)
  157. s->buf_end = s->buffer;
  158. s->buf_ptr = s->buffer;
  159. s->pos = offset;
  160. }
  161. s->eof_reached = 0;
  162. return offset;
  163. }
  164. void url_fskip(ByteIOContext *s, int64_t offset)
  165. {
  166. url_fseek(s, offset, SEEK_CUR);
  167. }
  168. int64_t url_ftell(ByteIOContext *s)
  169. {
  170. return url_fseek(s, 0, SEEK_CUR);
  171. }
  172. int64_t url_fsize(ByteIOContext *s)
  173. {
  174. int64_t size;
  175. if(!s)
  176. return AVERROR(EINVAL);
  177. if (!s->seek)
  178. return AVERROR(EPIPE);
  179. size = s->seek(s->opaque, 0, AVSEEK_SIZE);
  180. if(size<0){
  181. if ((size = s->seek(s->opaque, -1, SEEK_END)) < 0)
  182. return size;
  183. size++;
  184. s->seek(s->opaque, s->pos, SEEK_SET);
  185. }
  186. return size;
  187. }
  188. int url_feof(ByteIOContext *s)
  189. {
  190. if(!s)
  191. return 0;
  192. return s->eof_reached;
  193. }
  194. int url_ferror(ByteIOContext *s)
  195. {
  196. if(!s)
  197. return 0;
  198. return s->error;
  199. }
  200. void put_le32(ByteIOContext *s, unsigned int val)
  201. {
  202. put_byte(s, val);
  203. put_byte(s, val >> 8);
  204. put_byte(s, val >> 16);
  205. put_byte(s, val >> 24);
  206. }
  207. void put_be32(ByteIOContext *s, unsigned int val)
  208. {
  209. put_byte(s, val >> 24);
  210. put_byte(s, val >> 16);
  211. put_byte(s, val >> 8);
  212. put_byte(s, val);
  213. }
  214. void put_strz(ByteIOContext *s, const char *str)
  215. {
  216. if (str)
  217. put_buffer(s, (const unsigned char *) str, strlen(str) + 1);
  218. else
  219. put_byte(s, 0);
  220. }
  221. void put_le64(ByteIOContext *s, uint64_t val)
  222. {
  223. put_le32(s, (uint32_t)(val & 0xffffffff));
  224. put_le32(s, (uint32_t)(val >> 32));
  225. }
  226. void put_be64(ByteIOContext *s, uint64_t val)
  227. {
  228. put_be32(s, (uint32_t)(val >> 32));
  229. put_be32(s, (uint32_t)(val & 0xffffffff));
  230. }
  231. void put_le16(ByteIOContext *s, unsigned int val)
  232. {
  233. put_byte(s, val);
  234. put_byte(s, val >> 8);
  235. }
  236. void put_be16(ByteIOContext *s, unsigned int val)
  237. {
  238. put_byte(s, val >> 8);
  239. put_byte(s, val);
  240. }
  241. void put_le24(ByteIOContext *s, unsigned int val)
  242. {
  243. put_le16(s, val & 0xffff);
  244. put_byte(s, val >> 16);
  245. }
  246. void put_be24(ByteIOContext *s, unsigned int val)
  247. {
  248. put_be16(s, val >> 8);
  249. put_byte(s, val);
  250. }
  251. void put_tag(ByteIOContext *s, const char *tag)
  252. {
  253. while (*tag) {
  254. put_byte(s, *tag++);
  255. }
  256. }
  257. /* Input stream */
  258. static void fill_buffer(ByteIOContext *s)
  259. {
  260. uint8_t *dst= !s->max_packet_size && s->buf_end - s->buffer < s->buffer_size ? s->buf_ptr : s->buffer;
  261. int len= s->buffer_size - (dst - s->buffer);
  262. int max_buffer_size = s->max_packet_size ? s->max_packet_size : IO_BUFFER_SIZE;
  263. assert(s->buf_ptr == s->buf_end);
  264. /* no need to do anything if EOF already reached */
  265. if (s->eof_reached)
  266. return;
  267. if(s->update_checksum && dst == s->buffer){
  268. if(s->buf_end > s->checksum_ptr)
  269. s->checksum= s->update_checksum(s->checksum, s->checksum_ptr, s->buf_end - s->checksum_ptr);
  270. s->checksum_ptr= s->buffer;
  271. }
  272. /* make buffer smaller in case it ended up large after probing */
  273. if (s->buffer_size > max_buffer_size) {
  274. url_setbufsize(s, max_buffer_size);
  275. s->checksum_ptr = dst = s->buffer;
  276. len = s->buffer_size;
  277. }
  278. if(s->read_packet)
  279. len = s->read_packet(s->opaque, dst, len);
  280. else
  281. len = 0;
  282. if (len <= 0) {
  283. /* do not modify buffer if EOF reached so that a seek back can
  284. be done without rereading data */
  285. s->eof_reached = 1;
  286. if(len<0)
  287. s->error= len;
  288. } else {
  289. s->pos += len;
  290. s->buf_ptr = dst;
  291. s->buf_end = dst + len;
  292. }
  293. }
  294. unsigned long ff_crc04C11DB7_update(unsigned long checksum, const uint8_t *buf,
  295. unsigned int len)
  296. {
  297. return av_crc(av_crc_get_table(AV_CRC_32_IEEE), checksum, buf, len);
  298. }
  299. unsigned long get_checksum(ByteIOContext *s)
  300. {
  301. s->checksum= s->update_checksum(s->checksum, s->checksum_ptr, s->buf_ptr - s->checksum_ptr);
  302. s->update_checksum= NULL;
  303. return s->checksum;
  304. }
  305. void init_checksum(ByteIOContext *s,
  306. unsigned long (*update_checksum)(unsigned long c, const uint8_t *p, unsigned int len),
  307. unsigned long checksum)
  308. {
  309. s->update_checksum= update_checksum;
  310. if(s->update_checksum){
  311. s->checksum= checksum;
  312. s->checksum_ptr= s->buf_ptr;
  313. }
  314. }
  315. /* XXX: put an inline version */
  316. int get_byte(ByteIOContext *s)
  317. {
  318. if (s->buf_ptr < s->buf_end) {
  319. return *s->buf_ptr++;
  320. } else {
  321. fill_buffer(s);
  322. if (s->buf_ptr < s->buf_end)
  323. return *s->buf_ptr++;
  324. else
  325. return 0;
  326. }
  327. }
  328. int url_fgetc(ByteIOContext *s)
  329. {
  330. if (s->buf_ptr < s->buf_end) {
  331. return *s->buf_ptr++;
  332. } else {
  333. fill_buffer(s);
  334. if (s->buf_ptr < s->buf_end)
  335. return *s->buf_ptr++;
  336. else
  337. return URL_EOF;
  338. }
  339. }
  340. int get_buffer(ByteIOContext *s, unsigned char *buf, int size)
  341. {
  342. int len, size1;
  343. size1 = size;
  344. while (size > 0) {
  345. len = s->buf_end - s->buf_ptr;
  346. if (len > size)
  347. len = size;
  348. if (len == 0) {
  349. if(size > s->buffer_size && !s->update_checksum){
  350. if(s->read_packet)
  351. len = s->read_packet(s->opaque, buf, size);
  352. if (len <= 0) {
  353. /* do not modify buffer if EOF reached so that a seek back can
  354. be done without rereading data */
  355. s->eof_reached = 1;
  356. if(len<0)
  357. s->error= len;
  358. break;
  359. } else {
  360. s->pos += len;
  361. size -= len;
  362. buf += len;
  363. s->buf_ptr = s->buffer;
  364. s->buf_end = s->buffer/* + len*/;
  365. }
  366. }else{
  367. fill_buffer(s);
  368. len = s->buf_end - s->buf_ptr;
  369. if (len == 0)
  370. break;
  371. }
  372. } else {
  373. memcpy(buf, s->buf_ptr, len);
  374. buf += len;
  375. s->buf_ptr += len;
  376. size -= len;
  377. }
  378. }
  379. if (size1 == size) {
  380. if (url_ferror(s)) return url_ferror(s);
  381. if (url_feof(s)) return AVERROR_EOF;
  382. }
  383. return size1 - size;
  384. }
  385. int get_partial_buffer(ByteIOContext *s, unsigned char *buf, int size)
  386. {
  387. int len;
  388. if(size<0)
  389. return -1;
  390. len = s->buf_end - s->buf_ptr;
  391. if (len == 0) {
  392. fill_buffer(s);
  393. len = s->buf_end - s->buf_ptr;
  394. }
  395. if (len > size)
  396. len = size;
  397. memcpy(buf, s->buf_ptr, len);
  398. s->buf_ptr += len;
  399. if (!len) {
  400. if (url_ferror(s)) return url_ferror(s);
  401. if (url_feof(s)) return AVERROR_EOF;
  402. }
  403. return len;
  404. }
  405. unsigned int get_le16(ByteIOContext *s)
  406. {
  407. unsigned int val;
  408. val = get_byte(s);
  409. val |= get_byte(s) << 8;
  410. return val;
  411. }
  412. unsigned int get_le24(ByteIOContext *s)
  413. {
  414. unsigned int val;
  415. val = get_le16(s);
  416. val |= get_byte(s) << 16;
  417. return val;
  418. }
  419. unsigned int get_le32(ByteIOContext *s)
  420. {
  421. unsigned int val;
  422. val = get_le16(s);
  423. val |= get_le16(s) << 16;
  424. return val;
  425. }
  426. uint64_t get_le64(ByteIOContext *s)
  427. {
  428. uint64_t val;
  429. val = (uint64_t)get_le32(s);
  430. val |= (uint64_t)get_le32(s) << 32;
  431. return val;
  432. }
  433. unsigned int get_be16(ByteIOContext *s)
  434. {
  435. unsigned int val;
  436. val = get_byte(s) << 8;
  437. val |= get_byte(s);
  438. return val;
  439. }
  440. unsigned int get_be24(ByteIOContext *s)
  441. {
  442. unsigned int val;
  443. val = get_be16(s) << 8;
  444. val |= get_byte(s);
  445. return val;
  446. }
  447. unsigned int get_be32(ByteIOContext *s)
  448. {
  449. unsigned int val;
  450. val = get_be16(s) << 16;
  451. val |= get_be16(s);
  452. return val;
  453. }
  454. char *get_strz(ByteIOContext *s, char *buf, int maxlen)
  455. {
  456. int i = 0;
  457. char c;
  458. while ((c = get_byte(s))) {
  459. if (i < maxlen-1)
  460. buf[i++] = c;
  461. }
  462. buf[i] = 0; /* Ensure null terminated, but may be truncated */
  463. return buf;
  464. }
  465. uint64_t get_be64(ByteIOContext *s)
  466. {
  467. uint64_t val;
  468. val = (uint64_t)get_be32(s) << 32;
  469. val |= (uint64_t)get_be32(s);
  470. return val;
  471. }
  472. uint64_t ff_get_v(ByteIOContext *bc){
  473. uint64_t val = 0;
  474. int tmp;
  475. do{
  476. tmp = get_byte(bc);
  477. val= (val<<7) + (tmp&127);
  478. }while(tmp&128);
  479. return val;
  480. }
  481. int url_fdopen(ByteIOContext **s, URLContext *h)
  482. {
  483. uint8_t *buffer;
  484. int buffer_size, max_packet_size;
  485. max_packet_size = url_get_max_packet_size(h);
  486. if (max_packet_size) {
  487. buffer_size = max_packet_size; /* no need to bufferize more than one packet */
  488. } else {
  489. buffer_size = IO_BUFFER_SIZE;
  490. }
  491. buffer = av_malloc(buffer_size);
  492. if (!buffer)
  493. return AVERROR(ENOMEM);
  494. *s = av_mallocz(sizeof(ByteIOContext));
  495. if(!*s) {
  496. av_free(buffer);
  497. return AVERROR(ENOMEM);
  498. }
  499. if (init_put_byte(*s, buffer, buffer_size,
  500. (h->flags & URL_WRONLY || h->flags & URL_RDWR), h,
  501. url_read, url_write, url_seek) < 0) {
  502. av_free(buffer);
  503. av_freep(s);
  504. return AVERROR(EIO);
  505. }
  506. (*s)->is_streamed = h->is_streamed;
  507. (*s)->max_packet_size = max_packet_size;
  508. if(h->prot) {
  509. (*s)->read_pause = (int (*)(void *, int))h->prot->url_read_pause;
  510. (*s)->read_seek = (int64_t (*)(void *, int, int64_t, int))h->prot->url_read_seek;
  511. }
  512. return 0;
  513. }
  514. int url_setbufsize(ByteIOContext *s, int buf_size)
  515. {
  516. uint8_t *buffer;
  517. buffer = av_malloc(buf_size);
  518. if (!buffer)
  519. return AVERROR(ENOMEM);
  520. av_free(s->buffer);
  521. s->buffer = buffer;
  522. s->buffer_size = buf_size;
  523. s->buf_ptr = buffer;
  524. url_resetbuf(s, s->write_flag ? URL_WRONLY : URL_RDONLY);
  525. return 0;
  526. }
  527. #if LIBAVFORMAT_VERSION_MAJOR < 53
  528. int url_resetbuf(ByteIOContext *s, int flags)
  529. #else
  530. static int url_resetbuf(ByteIOContext *s, int flags)
  531. #endif
  532. {
  533. #if LIBAVFORMAT_VERSION_MAJOR < 53
  534. URLContext *h = s->opaque;
  535. if ((flags & URL_RDWR) || (h && h->flags != flags && !h->flags & URL_RDWR))
  536. return AVERROR(EINVAL);
  537. #else
  538. assert(flags == URL_WRONLY || flags == URL_RDONLY);
  539. #endif
  540. if (flags & URL_WRONLY) {
  541. s->buf_end = s->buffer + s->buffer_size;
  542. s->write_flag = 1;
  543. } else {
  544. s->buf_end = s->buffer;
  545. s->write_flag = 0;
  546. }
  547. return 0;
  548. }
  549. int ff_rewind_with_probe_data(ByteIOContext *s, unsigned char *buf, int buf_size)
  550. {
  551. int64_t buffer_start;
  552. int buffer_size;
  553. int overlap, new_size;
  554. if (s->write_flag)
  555. return AVERROR(EINVAL);
  556. buffer_size = s->buf_end - s->buffer;
  557. /* the buffers must touch or overlap */
  558. if ((buffer_start = s->pos - buffer_size) > buf_size)
  559. return AVERROR(EINVAL);
  560. overlap = buf_size - buffer_start;
  561. new_size = buf_size + buffer_size - overlap;
  562. if (new_size > buf_size) {
  563. if (!(buf = av_realloc(buf, new_size)))
  564. return AVERROR(ENOMEM);
  565. memcpy(buf + buf_size, s->buffer + overlap, buffer_size - overlap);
  566. buf_size = new_size;
  567. }
  568. av_free(s->buffer);
  569. s->buf_ptr = s->buffer = buf;
  570. s->pos = s->buffer_size = buf_size;
  571. s->buf_end = s->buf_ptr + buf_size;
  572. s->eof_reached = 0;
  573. s->must_flush = 0;
  574. return 0;
  575. }
  576. int url_fopen(ByteIOContext **s, const char *filename, int flags)
  577. {
  578. URLContext *h;
  579. int err;
  580. err = url_open(&h, filename, flags);
  581. if (err < 0)
  582. return err;
  583. err = url_fdopen(s, h);
  584. if (err < 0) {
  585. url_close(h);
  586. return err;
  587. }
  588. return 0;
  589. }
  590. int url_fclose(ByteIOContext *s)
  591. {
  592. URLContext *h = s->opaque;
  593. av_free(s->buffer);
  594. av_free(s);
  595. return url_close(h);
  596. }
  597. URLContext *url_fileno(ByteIOContext *s)
  598. {
  599. return s->opaque;
  600. }
  601. #if CONFIG_MUXERS
  602. int url_fprintf(ByteIOContext *s, const char *fmt, ...)
  603. {
  604. va_list ap;
  605. char buf[4096];
  606. int ret;
  607. va_start(ap, fmt);
  608. ret = vsnprintf(buf, sizeof(buf), fmt, ap);
  609. va_end(ap);
  610. put_buffer(s, buf, strlen(buf));
  611. return ret;
  612. }
  613. #endif //CONFIG_MUXERS
  614. char *url_fgets(ByteIOContext *s, char *buf, int buf_size)
  615. {
  616. int c;
  617. char *q;
  618. c = url_fgetc(s);
  619. if (c == EOF)
  620. return NULL;
  621. q = buf;
  622. for(;;) {
  623. if (c == EOF || c == '\n')
  624. break;
  625. if ((q - buf) < buf_size - 1)
  626. *q++ = c;
  627. c = url_fgetc(s);
  628. }
  629. if (buf_size > 0)
  630. *q = '\0';
  631. return buf;
  632. }
  633. int url_fget_max_packet_size(ByteIOContext *s)
  634. {
  635. return s->max_packet_size;
  636. }
  637. int av_url_read_fpause(ByteIOContext *s, int pause)
  638. {
  639. if (!s->read_pause)
  640. return AVERROR(ENOSYS);
  641. return s->read_pause(s->opaque, pause);
  642. }
  643. int64_t av_url_read_fseek(ByteIOContext *s, int stream_index,
  644. int64_t timestamp, int flags)
  645. {
  646. URLContext *h = s->opaque;
  647. int64_t ret;
  648. if (!s->read_seek)
  649. return AVERROR(ENOSYS);
  650. ret = s->read_seek(h, stream_index, timestamp, flags);
  651. if(ret >= 0) {
  652. int64_t pos;
  653. s->buf_ptr = s->buf_end; // Flush buffer
  654. pos = s->seek(h, 0, SEEK_CUR);
  655. if (pos >= 0)
  656. s->pos = pos;
  657. else if (pos != AVERROR(ENOSYS))
  658. ret = pos;
  659. }
  660. return ret;
  661. }
  662. /* url_open_dyn_buf and url_close_dyn_buf are used in rtp.c to send a response
  663. * back to the server even if CONFIG_MUXERS is false. */
  664. #if CONFIG_MUXERS || CONFIG_NETWORK
  665. /* buffer handling */
  666. int url_open_buf(ByteIOContext **s, uint8_t *buf, int buf_size, int flags)
  667. {
  668. int ret;
  669. *s = av_mallocz(sizeof(ByteIOContext));
  670. if(!*s)
  671. return AVERROR(ENOMEM);
  672. ret = init_put_byte(*s, buf, buf_size,
  673. (flags & URL_WRONLY || flags & URL_RDWR),
  674. NULL, NULL, NULL, NULL);
  675. if(ret != 0)
  676. av_freep(s);
  677. return ret;
  678. }
  679. int url_close_buf(ByteIOContext *s)
  680. {
  681. put_flush_packet(s);
  682. return s->buf_ptr - s->buffer;
  683. }
  684. /* output in a dynamic buffer */
  685. typedef struct DynBuffer {
  686. int pos, size, allocated_size;
  687. uint8_t *buffer;
  688. int io_buffer_size;
  689. uint8_t io_buffer[1];
  690. } DynBuffer;
  691. static int dyn_buf_write(void *opaque, uint8_t *buf, int buf_size)
  692. {
  693. DynBuffer *d = opaque;
  694. unsigned new_size, new_allocated_size;
  695. /* reallocate buffer if needed */
  696. new_size = d->pos + buf_size;
  697. new_allocated_size = d->allocated_size;
  698. if(new_size < d->pos || new_size > INT_MAX/2)
  699. return -1;
  700. while (new_size > new_allocated_size) {
  701. if (!new_allocated_size)
  702. new_allocated_size = new_size;
  703. else
  704. new_allocated_size += new_allocated_size / 2 + 1;
  705. }
  706. if (new_allocated_size > d->allocated_size) {
  707. d->buffer = av_realloc(d->buffer, new_allocated_size);
  708. if(d->buffer == NULL)
  709. return AVERROR(ENOMEM);
  710. d->allocated_size = new_allocated_size;
  711. }
  712. memcpy(d->buffer + d->pos, buf, buf_size);
  713. d->pos = new_size;
  714. if (d->pos > d->size)
  715. d->size = d->pos;
  716. return buf_size;
  717. }
  718. static int dyn_packet_buf_write(void *opaque, uint8_t *buf, int buf_size)
  719. {
  720. unsigned char buf1[4];
  721. int ret;
  722. /* packetized write: output the header */
  723. AV_WB32(buf1, buf_size);
  724. ret= dyn_buf_write(opaque, buf1, 4);
  725. if(ret < 0)
  726. return ret;
  727. /* then the data */
  728. return dyn_buf_write(opaque, buf, buf_size);
  729. }
  730. static int64_t dyn_buf_seek(void *opaque, int64_t offset, int whence)
  731. {
  732. DynBuffer *d = opaque;
  733. if (whence == SEEK_CUR)
  734. offset += d->pos;
  735. else if (whence == SEEK_END)
  736. offset += d->size;
  737. if (offset < 0 || offset > 0x7fffffffLL)
  738. return -1;
  739. d->pos = offset;
  740. return 0;
  741. }
  742. static int url_open_dyn_buf_internal(ByteIOContext **s, int max_packet_size)
  743. {
  744. DynBuffer *d;
  745. int ret;
  746. unsigned io_buffer_size = max_packet_size ? max_packet_size : 1024;
  747. if(sizeof(DynBuffer) + io_buffer_size < io_buffer_size)
  748. return -1;
  749. d = av_mallocz(sizeof(DynBuffer) + io_buffer_size);
  750. if (!d)
  751. return AVERROR(ENOMEM);
  752. *s = av_mallocz(sizeof(ByteIOContext));
  753. if(!*s) {
  754. av_free(d);
  755. return AVERROR(ENOMEM);
  756. }
  757. d->io_buffer_size = io_buffer_size;
  758. ret = init_put_byte(*s, d->io_buffer, io_buffer_size,
  759. 1, d, NULL,
  760. max_packet_size ? dyn_packet_buf_write : dyn_buf_write,
  761. max_packet_size ? NULL : dyn_buf_seek);
  762. if (ret == 0) {
  763. (*s)->max_packet_size = max_packet_size;
  764. } else {
  765. av_free(d);
  766. av_freep(s);
  767. }
  768. return ret;
  769. }
  770. int url_open_dyn_buf(ByteIOContext **s)
  771. {
  772. return url_open_dyn_buf_internal(s, 0);
  773. }
  774. int url_open_dyn_packet_buf(ByteIOContext **s, int max_packet_size)
  775. {
  776. if (max_packet_size <= 0)
  777. return -1;
  778. return url_open_dyn_buf_internal(s, max_packet_size);
  779. }
  780. int url_close_dyn_buf(ByteIOContext *s, uint8_t **pbuffer)
  781. {
  782. DynBuffer *d = s->opaque;
  783. int size;
  784. put_flush_packet(s);
  785. *pbuffer = d->buffer;
  786. size = d->size;
  787. av_free(d);
  788. av_free(s);
  789. return size;
  790. }
  791. #endif /* CONFIG_MUXERS || CONFIG_NETWORK */