record.c revision 1.22 1 /* $NetBSD: record.c,v 1.22 2002/01/31 00:03:24 augustss Exp $ */
2
3 /*
4 * Copyright (c) 1999 Matthew R. Green
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
23 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
24 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
25 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
26 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28 * SUCH DAMAGE.
29 */
30
31 /*
32 * SunOS compatible audiorecord(1)
33 */
34
35 #include <sys/types.h>
36 #include <sys/audioio.h>
37 #include <sys/ioctl.h>
38 #include <sys/time.h>
39 #include <sys/uio.h>
40
41 #include <err.h>
42 #include <fcntl.h>
43 #include <paths.h>
44 #include <signal.h>
45 #include <stdio.h>
46 #include <stdlib.h>
47 #include <string.h>
48 #include <unistd.h>
49
50 #include "libaudio.h"
51 #include "auconv.h"
52
53 audio_info_t info, oinfo;
54 ssize_t total_size = -1;
55 const char *device;
56 const char *ctldev;
57 int format = AUDIO_FORMAT_SUN;
58 char *header_info;
59 char default_info[8] = { '\0', '\0', '\0', '\0', '\0', '\0', '\0', '\0' };
60 int audiofd, ctlfd, outfd;
61 int qflag, aflag, fflag;
62 int verbose;
63 int monitor_gain, omonitor_gain;
64 int gain;
65 int balance;
66 int port;
67 int encoding;
68 char *encoding_str;
69 int precision;
70 int sample_rate;
71 int channels;
72 struct timeval record_time;
73 struct timeval start_time; /* XXX because that's what gettimeofday returns */
74
75 void (*conv_func) (u_char *, size_t);
76
77 void usage (void);
78 int main (int, char *[]);
79 int timeleft (struct timeval *, struct timeval *);
80 void cleanup (int) __attribute__((__noreturn__));
81 int write_header_sun (void **, size_t *, int *);
82 int write_header_wav (void **, size_t *, int *);
83 void write_header (void);
84 void rewrite_header (void);
85
86 int
87 main(argc, argv)
88 int argc;
89 char *argv[];
90 {
91 char *buffer;
92 size_t len, bufsize;
93 int ch, no_time_limit = 1;
94
95 while ((ch = getopt(argc, argv, "ab:C:F:c:d:e:fhi:m:P:p:qt:s:Vv:")) != -1) {
96 switch (ch) {
97 case 'a':
98 aflag++;
99 break;
100 case 'b':
101 decode_int(optarg, &balance);
102 if (balance < 0 || balance > 63)
103 errx(1, "balance must be between 0 and 63\n");
104 break;
105 case 'C':
106 ctldev = optarg;
107 break;
108 case 'F':
109 format = audio_format_from_str(optarg);
110 if (format < 0)
111 errx(1, "Unknown audio format; "
112 "supported formats: \"sun\" and \"wav\"");
113 break;
114 case 'c':
115 decode_int(optarg, &channels);
116 if (channels < 0 || channels > 16)
117 errx(1, "channels must be between 0 and 16\n");
118 break;
119 case 'd':
120 device = optarg;
121 break;
122 case 'e':
123 encoding_str = optarg;
124 break;
125 case 'f':
126 fflag++;
127 break;
128 case 'i':
129 header_info = optarg;
130 break;
131 case 'm':
132 decode_int(optarg, &monitor_gain);
133 if (monitor_gain < 0 || monitor_gain > 255)
134 errx(1, "monitor volume must be between 0 and 255\n");
135 break;
136 case 'P':
137 decode_int(optarg, &precision);
138 if (precision != 4 && precision != 8 &&
139 precision != 16 && precision != 24 &&
140 precision != 32)
141 errx(1, "precision must be between 4, 8, 16, 24 or 32");
142 break;
143 case 'p':
144 len = strlen(optarg);
145
146 if (strncmp(optarg, "mic", len) == 0)
147 port |= AUDIO_MICROPHONE;
148 else if (strncmp(optarg, "cd", len) == 0 ||
149 strncmp(optarg, "internal-cd", len) == 0)
150 port |= AUDIO_CD;
151 else if (strncmp(optarg, "line", len) == 0)
152 port |= AUDIO_LINE_IN;
153 else
154 errx(1,
155 "port must be `cd', `internal-cd', `mic', or `line'");
156 break;
157 case 'q':
158 qflag++;
159 break;
160 case 's':
161 decode_int(optarg, &sample_rate);
162 if (sample_rate < 0 || sample_rate > 48000 * 2) /* XXX */
163 errx(1, "sample rate must be between 0 and 96000\n");
164 break;
165 case 't':
166 no_time_limit = 0;
167 decode_time(optarg, &record_time);
168 break;
169 case 'V':
170 verbose++;
171 break;
172 case 'v':
173 decode_int(optarg, &gain);
174 if (gain < 0 || gain > 255)
175 errx(1, "volume must be between 0 and 255\n");
176 break;
177 /* case 'h': */
178 default:
179 usage();
180 /* NOTREACHED */
181 }
182 }
183 argc -= optind;
184 argv += optind;
185
186 /*
187 * open the audio device, and control device
188 */
189 if (device == NULL && (device = getenv("AUDIODEVICE")) == NULL &&
190 (device = getenv("AUDIODEV")) == NULL) /* Sun compatibility */
191 device = _PATH_SOUND;
192 if (ctldev == NULL && (ctldev = getenv("AUDIOCTLDEVICE")) == NULL)
193 ctldev = _PATH_AUDIOCTL;
194
195 audiofd = open(device, O_RDONLY);
196 if (audiofd < 0 && device == _PATH_SOUND) {
197 device = _PATH_SOUND0;
198 ctldev = _PATH_AUDIOCTL0;
199 audiofd = open(device, O_WRONLY);
200 }
201 if (audiofd < 0)
202 err(1, "failed to open %s", device);
203 ctlfd = open(ctldev, O_RDWR);
204 if (ctlfd < 0)
205 err(1, "failed to open %s", ctldev);
206
207 /*
208 * work out the buffer size to use, and allocate it. also work out
209 * what the old monitor gain value is, so that we can reset it later.
210 */
211 if (ioctl(ctlfd, AUDIO_GETINFO, &oinfo) < 0)
212 err(1, "failed to get audio info");
213 bufsize = oinfo.record.buffer_size;
214 if (bufsize < 32 * 1024)
215 bufsize = 32 * 1024;
216 omonitor_gain = oinfo.monitor_gain;
217
218 buffer = malloc(bufsize);
219 if (buffer == NULL)
220 err(1, "couldn't malloc buffer of %d size", (int)bufsize);
221
222 /*
223 * open the output file
224 */
225 if (argc != 1)
226 usage();
227 if (argv[0][0] != '-' && argv[0][1] != '\0') {
228 outfd = open(*argv, O_CREAT|(aflag ? O_APPEND : O_TRUNC)|O_WRONLY, 0666);
229 if (outfd < 0)
230 err(1, "could not open %s", *argv);
231 } else
232 outfd = STDOUT_FILENO;
233
234 /*
235 * convert the encoding string into a value.
236 */
237 if (encoding_str) {
238 encoding = audio_enc_to_val(encoding_str);
239 if (encoding == -1)
240 errx(1, "unknown encoding, bailing...");
241 }
242 else
243 encoding = AUDIO_ENCODING_ULAW;
244
245 /*
246 * set up audio device for recording with the speified parameters
247 */
248 AUDIO_INITINFO(&info);
249
250 /*
251 * for these, get the current values for stuffing into the header
252 */
253 #define SETINFO(x) if (x) info.record.x = x; else x = oinfo.record.x
254 SETINFO (sample_rate);
255 SETINFO (channels);
256 SETINFO (precision);
257 SETINFO (encoding);
258 SETINFO (gain);
259 SETINFO (port);
260 SETINFO (balance);
261 #undef SETINFO
262
263 if (monitor_gain)
264 info.monitor_gain = monitor_gain;
265 else
266 monitor_gain = oinfo.monitor_gain;
267
268 info.mode = AUMODE_RECORD;
269 if (ioctl(ctlfd, AUDIO_SETINFO, &info) < 0)
270 err(1, "failed to reset audio info");
271
272 signal(SIGINT, cleanup);
273 write_header();
274 total_size = 0;
275
276 (void)gettimeofday(&start_time, NULL);
277 while (no_time_limit || timeleft(&start_time, &record_time)) {
278 if (read(audiofd, buffer, bufsize) != bufsize)
279 err(1, "read failed");
280 if (conv_func)
281 (*conv_func)(buffer, bufsize);
282 if (write(outfd, buffer, bufsize) != bufsize)
283 err(1, "write failed");
284 total_size += bufsize;
285 }
286 cleanup(0);
287 }
288
289 int
290 timeleft(start_tvp, record_tvp)
291 struct timeval *start_tvp;
292 struct timeval *record_tvp;
293 {
294 struct timeval now, diff;
295
296 (void)gettimeofday(&now, NULL);
297 timersub(&now, start_tvp, &diff);
298 timersub(record_tvp, &diff, &now);
299
300 return (now.tv_sec > 0 || (now.tv_sec == 0 && now.tv_usec > 0));
301 }
302
303 void
304 cleanup(signo)
305 int signo;
306 {
307
308 close(audiofd);
309 rewrite_header();
310 close(outfd);
311 if (omonitor_gain) {
312 AUDIO_INITINFO(&info);
313 info.monitor_gain = omonitor_gain;
314 if (ioctl(ctlfd, AUDIO_SETINFO, &info) < 0)
315 err(1, "failed to reset audio info");
316 }
317 close(ctlfd);
318 exit(0);
319 }
320
321 int
322 write_header_sun(hdrp, lenp, leftp)
323 void **hdrp;
324 size_t *lenp;
325 int *leftp;
326 {
327 static int warned = 0;
328 static sun_audioheader auh;
329 int sunenc, oencoding = encoding;
330
331 if (encoding == AUDIO_ENCODING_ULINEAR_LE) {
332 if (precision == 16)
333 conv_func = swap_bytes;
334 else if (precision == 32)
335 conv_func = swap_bytes32;
336 if (conv_func)
337 encoding = AUDIO_ENCODING_SLINEAR_BE;
338 } else if (encoding == AUDIO_ENCODING_ULINEAR_BE) {
339 if (precision == 16)
340 conv_func = change_sign16_be;
341 else if (precision == 32)
342 conv_func = change_sign32_be;
343 if (conv_func)
344 encoding = AUDIO_ENCODING_SLINEAR_BE;
345 } else if (encoding == AUDIO_ENCODING_SLINEAR_LE) {
346 if (precision == 16)
347 conv_func = change_sign16_swap_bytes_le;
348 else if (precision == 32)
349 conv_func = change_sign32_swap_bytes_le;
350 if (conv_func)
351 encoding = AUDIO_ENCODING_SLINEAR_BE;
352 }
353
354 /* if we can't express this as a Sun header, don't write any */
355 if (audio_encoding_to_sun(encoding, precision, &sunenc) != 0) {
356 if (!qflag && !warned)
357 warnx("failed to convert to sun encoding from %d:%d; "
358 "Sun audio header not written",
359 oencoding, precision);
360 conv_func = 0;
361 warned = 1;
362 return -1;
363 }
364
365 auh.magic = htonl(AUDIO_FILE_MAGIC);
366 if (outfd == STDOUT_FILENO)
367 auh.data_size = htonl(AUDIO_UNKNOWN_SIZE);
368 else
369 auh.data_size = htonl(total_size);
370 auh.encoding = htonl(sunenc);
371 auh.sample_rate = htonl(sample_rate);
372 auh.channels = htonl(channels);
373 if (header_info) {
374 int len, infolen;
375
376 infolen = ((len = strlen(header_info)) + 7) & 0xfffffff8;
377 *leftp = infolen - len;
378 auh.hdr_size = htonl(sizeof(auh) + infolen);
379 } else {
380 *leftp = sizeof(default_info);
381 auh.hdr_size = htonl(sizeof(auh) + *leftp);
382 }
383 *(sun_audioheader **)hdrp = &auh;
384 *lenp = sizeof auh;
385 return 0;
386 }
387
388 int
389 write_header_wav(hdrp, lenp, leftp)
390 void **hdrp;
391 size_t *lenp;
392 int *leftp;
393 {
394 /*
395 * WAV header we write looks like this:
396 *
397 * bytes purpose
398 * 0-3 "RIFF"
399 * 4-7 file length (minus 8)
400 * 8-15 "WAVEfmt "
401 * 16-19 format size
402 * 20-21 format tag
403 * 22-23 number of channels
404 * 24-27 sample rate
405 * 28-31 average bytes per second
406 * 32-33 block alignment
407 * 34-35 bits per sample
408 *
409 * then for ULAW and ALAW outputs, we have an extended chunk size
410 * and a WAV "fact" to add:
411 *
412 * 36-37 length of extension (== 0)
413 * 38-41 "fact"
414 * 42-45 fact size
415 * 46-49 number of samples written
416 * 50-53 "data"
417 * 54-57 data length
418 * 58- raw audio data
419 *
420 * for PCM outputs we have just the data remaining:
421 *
422 * 36-39 "data"
423 * 40-43 data length
424 * 44- raw audio data
425 *
426 * RIFF\^@^C^@WAVEfmt ^P^@^@^@^A^@^B^@D<AC>^@^@^P<B1>^B^@^D^@^P^@data^@^@^C^@^@^@^@^@^@^@^@^@^@
427 */
428 char wavheaderbuf[64], *p = wavheaderbuf;
429 const char *riff = "RIFF",
430 *wavefmt = "WAVEfmt ",
431 *fact = "fact",
432 *data = "data";
433 u_int32_t filelen, fmtsz, sps, abps, factsz = 4, nsample, datalen;
434 u_int16_t fmttag, nchan, align, bps, extln = 0;
435
436 if (header_info)
437 warnx("header information not supported for WAV");
438 *leftp = NULL;
439
440 switch (precision) {
441 case 8:
442 bps = 8;
443 break;
444 case 16:
445 bps = 16;
446 break;
447 case 32:
448 bps = 32;
449 break;
450 default:
451 {
452 static int warned = 0;
453
454 if (warned == 0) {
455 warnx("can not support precision of %d\n", precision);
456 warned = 1;
457 }
458 }
459 return (-1);
460 }
461
462 switch (encoding) {
463 case AUDIO_ENCODING_ULAW:
464 fmttag = WAVE_FORMAT_MULAW;
465 fmtsz = 18;
466 align = channels;
467 break;
468 case AUDIO_ENCODING_ALAW:
469 fmttag = WAVE_FORMAT_ALAW;
470 fmtsz = 18;
471 align = channels;
472 break;
473 /*
474 * we could try to support RIFX but it seems to be more portable
475 * to output little-endian data for WAV files.
476 */
477 case AUDIO_ENCODING_ULINEAR_BE:
478 if (bps == 16)
479 conv_func = change_sign16_swap_bytes_be;
480 else if (bps == 32)
481 conv_func = change_sign32_swap_bytes_be;
482 goto fmt_pcm;
483 case AUDIO_ENCODING_SLINEAR_BE:
484 if (bps == 16)
485 conv_func = swap_bytes;
486 else if (bps == 32)
487 conv_func = swap_bytes32;
488 goto fmt_pcm;
489 case AUDIO_ENCODING_ULINEAR_LE:
490 if (bps == 16)
491 conv_func = change_sign16_le;
492 else if (bps == 32)
493 conv_func = change_sign32_le;
494 /* FALLTHROUGH */
495 case AUDIO_ENCODING_SLINEAR_LE:
496 case AUDIO_ENCODING_PCM16:
497 fmt_pcm:
498 fmttag = WAVE_FORMAT_PCM;
499 fmtsz = 16;
500 align = channels * (bps / 8);
501 break;
502 default:
503 {
504 static int warned = 0;
505
506 if (warned == 0) {
507 warnx("can not support encoding of %s\n", wav_enc_from_val(encoding));
508 warned = 1;
509 }
510 }
511 return (-1);
512 }
513
514 nchan = channels;
515 sps = sample_rate;
516
517 /* data length */
518 if (outfd == STDOUT_FILENO)
519 datalen = 0;
520 else
521 datalen = total_size;
522
523 /* file length */
524 filelen = 4 + (8 + fmtsz) + (8 + datalen);
525 if (fmttag != WAVE_FORMAT_PCM)
526 filelen += 8 + factsz;
527
528 abps = (double)align*sample_rate / (double)1 + 0.5;
529
530 nsample = (datalen / bps) / sample_rate;
531
532 /*
533 * now we've calculated the info, write it out!
534 */
535 #define put32(x) do { \
536 u_int32_t _f; \
537 putle32(_f, (x)); \
538 memcpy(p, &_f, 4); \
539 } while (0)
540 #define put16(x) do { \
541 u_int16_t _f; \
542 putle16(_f, (x)); \
543 memcpy(p, &_f, 2); \
544 } while (0)
545 memcpy(p, riff, 4);
546 p += 4; /* 4 */
547 put32(filelen);
548 p += 4; /* 8 */
549 memcpy(p, wavefmt, 8);
550 p += 8; /* 16 */
551 put32(fmtsz);
552 p += 4; /* 20 */
553 put16(fmttag);
554 p += 2; /* 22 */
555 put16(nchan);
556 p += 2; /* 24 */
557 put32(sps);
558 p += 4; /* 28 */
559 put32(abps);
560 p += 4; /* 32 */
561 put16(align);
562 p += 2; /* 34 */
563 put16(bps);
564 p += 2; /* 36 */
565 /* NON PCM formats have an extended chunk; write it */
566 if (fmttag != WAVE_FORMAT_PCM) {
567 put16(extln);
568 p += 2; /* 38 */
569 memcpy(p, fact, 4);
570 p += 4; /* 42 */
571 put32(factsz);
572 p += 4; /* 46 */
573 put32(nsample);
574 p += 4; /* 50 */
575 }
576 memcpy(p, data, 4);
577 p += 4; /* 40/54 */
578 put32(datalen);
579 p += 4; /* 44/58 */
580 #undef put32
581 #undef put16
582
583 *hdrp = wavheaderbuf;
584 *lenp = (p - wavheaderbuf);
585
586 return 0;
587 }
588
589 void
590 write_header()
591 {
592 struct iovec iv[3];
593 int veclen, left, tlen;
594 void *hdr;
595 size_t hdrlen;
596
597 switch (format) {
598 case AUDIO_FORMAT_SUN:
599 if (write_header_sun(&hdr, &hdrlen, &left) != 0)
600 return;
601 break;
602 case AUDIO_FORMAT_WAV:
603 if (write_header_wav(&hdr, &hdrlen, &left) != 0)
604 return;
605 break;
606 case AUDIO_FORMAT_NONE:
607 return;
608 default:
609 errx(1, "unknown audio format");
610 }
611
612 veclen = 0;
613 tlen = 0;
614
615 if (hdrlen != 0) {
616 iv[veclen].iov_base = hdr;
617 iv[veclen].iov_len = hdrlen;
618 tlen += iv[veclen++].iov_len;
619 }
620 if (header_info) {
621 iv[veclen].iov_base = header_info;
622 iv[veclen].iov_len = (int)strlen(header_info) + 1;
623 tlen += iv[veclen++].iov_len;
624 }
625 if (left) {
626 iv[veclen].iov_base = default_info;
627 iv[veclen].iov_len = left;
628 tlen += iv[veclen++].iov_len;
629 }
630
631 if (tlen == 0)
632 return;
633
634 if (writev(outfd, iv, veclen) != tlen)
635 err(1, "could not write audio header");
636 }
637
638 void
639 rewrite_header()
640 {
641
642 /* can't do this here! */
643 if (outfd == STDOUT_FILENO)
644 return;
645
646 if (lseek(outfd, SEEK_SET, 0) < 0)
647 err(1, "could not seek to start of file for header rewrite");
648 write_header();
649 }
650
651 void
652 usage()
653 {
654
655 fprintf(stderr, "Usage: %s [-afhqV] [options] {files ...|-}\n",
656 getprogname());
657 fprintf(stderr, "Options:\n\t"
658 "-C audio control device\n\t"
659 "-F format\n\t"
660 "-b balance (0-63)\n\t"
661 "-c channels\n\t"
662 "-d audio device\n\t"
663 "-e encoding\n\t"
664 "-i header information\n\t"
665 "-m monitor volume\n\t"
666 "-P precision bits (4, 8, 16, 24 or 32)\n\t"
667 "-p input port\n\t"
668 "-s sample rate\n\t"
669 "-t recording time\n\t"
670 "-v volume\n");
671 exit(EXIT_FAILURE);
672 }
673