xref: /freebsd/usr.sbin/cdcontrol/cdcontrol.c (revision 729362425c09cf6b362366aabc6fb547eee8035a)
1 /*
2  * Compact Disc Control Utility by Serge V. Vakulenko <vak@cronyx.ru>.
3  * Based on the non-X based CD player by Jean-Marc Zucconi and
4  * Andrey A. Chernov.
5  *
6  * Fixed and further modified on 5-Sep-1995 by Jukka Ukkonen <jau@funet.fi>.
7  *
8  * 11-Sep-1995: Jukka A. Ukkonen <jau@funet.fi>
9  *              A couple of further fixes to my own earlier "fixes".
10  *
11  * 18-Sep-1995: Jukka A. Ukkonen <jau@funet.fi>
12  *              Added an ability to specify addresses relative to the
13  *              beginning of a track. This is in fact a variation of
14  *              doing the simple play_msf() call.
15  *
16  * 11-Oct-1995: Serge V.Vakulenko <vak@cronyx.ru>
17  *              New eject algorithm.
18  *              Some code style reformatting.
19  */
20 
21 #ifndef lint
22 static const char rcsid[] =
23   "$FreeBSD$";
24 #endif /* not lint */
25 
26 #include <sys/cdio.h>
27 #include <sys/cdrio.h>
28 #include <sys/file.h>
29 #include <sys/ioctl.h>
30 #include <sys/param.h>
31 #include <arpa/inet.h>
32 #include <ctype.h>
33 #include <err.h>
34 #include <errno.h>
35 #include <histedit.h>
36 #include <limits.h>
37 #include <paths.h>
38 #include <stdio.h>
39 #include <stdlib.h>
40 #include <string.h>
41 #include <unistd.h>
42 #include <vis.h>
43 
44 #define VERSION "2.0"
45 
46 #define ASTS_INVALID	0x00  /* Audio status byte not valid */
47 #define ASTS_PLAYING	0x11  /* Audio play operation in progress */
48 #define ASTS_PAUSED	0x12  /* Audio play operation paused */
49 #define ASTS_COMPLETED	0x13  /* Audio play operation successfully completed */
50 #define ASTS_ERROR	0x14  /* Audio play operation stopped due to error */
51 #define ASTS_VOID	0x15  /* No current audio status to return */
52 
53 #ifndef DEFAULT_CD_DRIVE
54 #  define DEFAULT_CD_DRIVE  "/dev/cd0"
55 #endif
56 
57 #ifndef DEFAULT_CD_PARTITION
58 #  define DEFAULT_CD_PARTITION  "c"
59 #endif
60 
61 #define CMD_DEBUG	1
62 #define CMD_EJECT	2
63 #define CMD_HELP	3
64 #define CMD_INFO	4
65 #define CMD_PAUSE	5
66 #define CMD_PLAY	6
67 #define CMD_QUIT	7
68 #define CMD_RESUME	8
69 #define CMD_STOP	9
70 #define CMD_VOLUME	10
71 #define CMD_CLOSE	11
72 #define CMD_RESET	12
73 #define CMD_SET		13
74 #define CMD_STATUS	14
75 #define CMD_CDID	15
76 #define CMD_NEXT	16
77 #define CMD_PREVIOUS	17
78 #define CMD_SPEED	18
79 #define STATUS_AUDIO	0x1
80 #define STATUS_MEDIA	0x2
81 #define STATUS_VOLUME	0x4
82 
83 struct cmdtab {
84 	int command;
85 	const char *name;
86 	unsigned min;
87 	const char *args;
88 } cmdtab[] = {
89 { CMD_CLOSE,	"close",	1, "" },
90 { CMD_DEBUG,	"debug",	1, "on | off" },
91 { CMD_EJECT,	"eject",	1, "" },
92 { CMD_HELP,	"?",		1, 0 },
93 { CMD_HELP,	"help",		1, "" },
94 { CMD_INFO,	"info",		1, "" },
95 { CMD_NEXT,	"next",		1, "" },
96 { CMD_PAUSE,	"pause",	2, "" },
97 { CMD_PLAY,	"play",		1, "min1:sec1[.fram1] [min2:sec2[.fram2]]" },
98 { CMD_PLAY,	"play",		1, "track1[.index1] [track2[.index2]]" },
99 { CMD_PLAY,	"play",		1, "tr1 m1:s1[.f1] [[tr2] [m2:s2[.f2]]]" },
100 { CMD_PLAY,	"play",		1, "[#block [len]]" },
101 { CMD_PREVIOUS,	"previous",	2, "" },
102 { CMD_QUIT,	"quit",		1, "" },
103 { CMD_RESET,	"reset",	4, "" },
104 { CMD_RESUME,	"resume",	1, "" },
105 { CMD_SET,	"set",		2, "msf | lba" },
106 { CMD_STATUS,	"status",	1, "[audio | media | volume]" },
107 { CMD_STOP,	"stop",		3, "" },
108 { CMD_VOLUME,	"volume",	1,
109       "<l> <r> | left | right | mute | mono | stereo" },
110 { CMD_CDID,	"cdid",		2, "" },
111 { CMD_SPEED,	"speed",	2, "speed" },
112 { 0,		NULL,		0, NULL }
113 };
114 
115 struct cd_toc_entry	toc_buffer[100];
116 
117 const char	*cdname;
118 int		fd = -1;
119 int		verbose = 1;
120 int		msf = 1;
121 
122 int		 setvol(int, int);
123 int		 read_toc_entrys(int);
124 int		 play_msf(int, int, int, int, int, int);
125 int		 play_track(int, int, int, int);
126 int		 get_vol(int *, int *);
127 int		 status(int *, int *, int *, int *);
128 int		 open_cd(void);
129 int		 next_prev(char *arg, int);
130 int		 play(char *arg);
131 int		 info(char *arg);
132 int		 cdid(void);
133 int		 pstatus(char *arg);
134 char		*input(int *);
135 void		 prtrack(struct cd_toc_entry *e, int lastflag);
136 void		 lba2msf(unsigned long lba, u_char *m, u_char *s, u_char *f);
137 unsigned int	 msf2lba(u_char m, u_char s, u_char f);
138 int		 play_blocks(int blk, int len);
139 int		 run(int cmd, char *arg);
140 char		*parse(char *buf, int *cmd);
141 void		 help(void);
142 void		 usage(void);
143 char		*use_cdrom_instead(const char *);
144 __const char	*strstatus(int);
145 static u_int	 dbprog_discid(void);
146 __const char	*cdcontrol_prompt(void);
147 
148 void help ()
149 {
150 	struct cmdtab *c;
151 	const char *s;
152 	char n;
153 	int i;
154 
155 	for (c=cmdtab; c->name; ++c) {
156 		if (! c->args)
157 			continue;
158 		printf("\t");
159 		for (i = c->min, s = c->name; *s; s++, i--) {
160 			if (i > 0)
161 				n = toupper(*s);
162 			else
163 				n = *s;
164 			putchar(n);
165 		}
166 		if (*c->args)
167 			printf (" %s", c->args);
168 		printf ("\n");
169 	}
170 	printf ("\n\tThe word \"play\" is not required for the play commands.\n");
171 	printf ("\tThe plain target address is taken as a synonym for play.\n");
172 }
173 
174 void usage ()
175 {
176 	fprintf (stderr, "usage: cdcontrol [-sv] [-f device] [command ...]\n");
177 	exit (1);
178 }
179 
180 char *use_cdrom_instead(const char *old_envvar)
181 {
182 	char *device;
183 
184 	device = getenv(old_envvar);
185 	if (device)
186 		warnx("%s environment variable deprecated, "
187 		    "please use CDROM in the future.", old_envvar);
188 	return device;
189 }
190 
191 
192 int main (int argc, char **argv)
193 {
194 	int cmd;
195 	char *arg;
196 
197 	for (;;) {
198 		switch (getopt (argc, argv, "svhf:")) {
199 		case EOF:
200 			break;
201 		case 's':
202 			verbose = 0;
203 			continue;
204 		case 'v':
205 			verbose = 2;
206 			continue;
207 		case 'f':
208 			cdname = optarg;
209 			continue;
210 		case 'h':
211 		default:
212 			usage ();
213 		}
214 		break;
215 	}
216 	argc -= optind;
217 	argv += optind;
218 
219 	if (argc > 0 && ! strcasecmp (*argv, "help"))
220 		usage ();
221 
222 	if (! cdname) {
223 		cdname = getenv("CDROM");
224 	}
225 
226 	if (! cdname)
227 		cdname = use_cdrom_instead("MUSIC_CD");
228 	if (! cdname)
229 		cdname = use_cdrom_instead("CD_DRIVE");
230 	if (! cdname)
231 		cdname = use_cdrom_instead("DISC");
232 	if (! cdname)
233 		cdname = use_cdrom_instead("CDPLAY");
234 
235 	if (! cdname) {
236 		cdname = DEFAULT_CD_DRIVE;
237 		warnx("no CD device name specified, defaulting to %s", cdname);
238 	}
239 
240 	if (argc > 0) {
241 		char buf[80], *p;
242 		int len;
243 
244 		for (p=buf; argc-->0; ++argv) {
245 			len = strlen (*argv);
246 
247 			if (p + len >= buf + sizeof (buf) - 1)
248 				usage ();
249 
250 			if (p > buf)
251 				*p++ = ' ';
252 
253 			strcpy (p, *argv);
254 			p += len;
255 		}
256 		*p = 0;
257 		arg = parse (buf, &cmd);
258 		return (run (cmd, arg));
259 	}
260 
261 	if (verbose == 1)
262 		verbose = isatty (0);
263 
264 	if (verbose) {
265 		printf ("Compact Disc Control utility, version %s\n", VERSION);
266 		printf ("Type `?' for command list\n\n");
267 	}
268 
269 	for (;;) {
270 		arg = input (&cmd);
271 		if (run (cmd, arg) < 0) {
272 			if (verbose)
273 				warn(NULL);
274 			close (fd);
275 			fd = -1;
276 		}
277 		fflush (stdout);
278 	}
279 }
280 
281 int run (int cmd, char *arg)
282 {
283 	long speed;
284 	int l, r, rc;
285 
286 	switch (cmd) {
287 
288 	case CMD_QUIT:
289 		exit (0);
290 
291 	case CMD_INFO:
292 		if (fd < 0 && ! open_cd ())
293 			return (0);
294 
295 		return info (arg);
296 
297 	case CMD_CDID:
298 		if (fd < 0 && ! open_cd ())
299 			return (0);
300 
301 		return cdid ();
302 
303 	case CMD_STATUS:
304 		if (fd < 0 && ! open_cd ())
305 			return (0);
306 
307 		return pstatus (arg);
308 
309 	case CMD_NEXT:
310 	case CMD_PREVIOUS:
311 		if (fd < 0 && ! open_cd ())
312 			return (0);
313 
314 		while (isspace (*arg))
315 			arg++;
316 
317 		return next_prev (arg, cmd);
318 
319 	case CMD_PAUSE:
320 		if (fd < 0 && ! open_cd ())
321 			return (0);
322 
323 		return ioctl (fd, CDIOCPAUSE);
324 
325 	case CMD_RESUME:
326 		if (fd < 0 && ! open_cd ())
327 			return (0);
328 
329 		return ioctl (fd, CDIOCRESUME);
330 
331 	case CMD_STOP:
332 		if (fd < 0 && ! open_cd ())
333 			return (0);
334 
335 		rc = ioctl (fd, CDIOCSTOP);
336 
337 		(void) ioctl (fd, CDIOCALLOW);
338 
339 		return (rc);
340 
341 	case CMD_RESET:
342 		if (fd < 0 && ! open_cd ())
343 			return (0);
344 
345 		rc = ioctl (fd, CDIOCRESET);
346 		if (rc < 0)
347 			return rc;
348 		close(fd);
349 		fd = -1;
350 		return (0);
351 
352 	case CMD_DEBUG:
353 		if (fd < 0 && ! open_cd ())
354 			return (0);
355 
356 		if (! strcasecmp (arg, "on"))
357 			return ioctl (fd, CDIOCSETDEBUG);
358 
359 		if (! strcasecmp (arg, "off"))
360 			return ioctl (fd, CDIOCCLRDEBUG);
361 
362 		warnx("invalid command arguments");
363 
364 		return (0);
365 
366 	case CMD_EJECT:
367 		if (fd < 0 && ! open_cd ())
368 			return (0);
369 
370 		(void) ioctl (fd, CDIOCALLOW);
371 		rc = ioctl (fd, CDIOCEJECT);
372 		if (rc < 0)
373 			return (rc);
374 		return (0);
375 
376 	case CMD_CLOSE:
377 		if (fd < 0 && ! open_cd ())
378 			return (0);
379 
380 		(void) ioctl (fd, CDIOCALLOW);
381 		rc = ioctl (fd, CDIOCCLOSE);
382 		if (rc < 0)
383 			return (rc);
384 		close(fd);
385 		fd = -1;
386 		return (0);
387 
388 	case CMD_PLAY:
389 		if (fd < 0 && ! open_cd ())
390 			return (0);
391 
392 		while (isspace (*arg))
393 			arg++;
394 
395 		return play (arg);
396 
397 	case CMD_SET:
398 		if (! strcasecmp (arg, "msf"))
399 			msf = 1;
400 		else if (! strcasecmp (arg, "lba"))
401 			msf = 0;
402 		else
403 			warnx("invalid command arguments");
404 		return (0);
405 
406 	case CMD_VOLUME:
407 		if (fd < 0 && !open_cd ())
408 			return (0);
409 
410 		if (! strncasecmp (arg, "left", strlen(arg)))
411 			return ioctl (fd, CDIOCSETLEFT);
412 
413 		if (! strncasecmp (arg, "right", strlen(arg)))
414 			return ioctl (fd, CDIOCSETRIGHT);
415 
416 		if (! strncasecmp (arg, "mono", strlen(arg)))
417 			return ioctl (fd, CDIOCSETMONO);
418 
419 		if (! strncasecmp (arg, "stereo", strlen(arg)))
420 			return ioctl (fd, CDIOCSETSTERIO);
421 
422 		if (! strncasecmp (arg, "mute", strlen(arg)))
423 			return ioctl (fd, CDIOCSETMUTE);
424 
425 		if (2 != sscanf (arg, "%d %d", &l, &r)) {
426 			warnx("invalid command arguments");
427 			return (0);
428 		}
429 
430 		return setvol (l, r);
431 
432 	case CMD_SPEED:
433 		if (fd < 0 && ! open_cd ())
434 			return (0);
435 
436 		errno = 0;
437 		if (strcasecmp("max", arg) == 0)
438 			speed = CDR_MAX_SPEED;
439 		else
440 			speed = strtol(arg, NULL, 10) * 177;
441 		if (speed <= 0 || speed > INT_MAX) {
442 			warnx("invalid command arguments %s", arg);
443 			return (0);
444 		}
445 		return ioctl(fd, CDRIOCREADSPEED, &speed);
446 
447 	default:
448 	case CMD_HELP:
449 		help ();
450 		return (0);
451 
452 	}
453 }
454 
455 int play (char *arg)
456 {
457 	struct ioc_toc_header h;
458 	unsigned int n;
459 	int rc, start, end = 0, istart = 1, iend = 1;
460 
461 	rc = ioctl (fd, CDIOREADTOCHEADER, &h);
462 
463 	if (rc < 0)
464 		return (rc);
465 
466 	n = h.ending_track - h.starting_track + 1;
467 	rc = read_toc_entrys ((n + 1) * sizeof (struct cd_toc_entry));
468 
469 	if (rc < 0)
470 		return (rc);
471 
472 	if (! arg || ! *arg) {
473 		/* Play the whole disc */
474 		if (msf)
475 			return play_blocks (0, msf2lba (toc_buffer[n].addr.msf.minute,
476 							toc_buffer[n].addr.msf.second,
477 							toc_buffer[n].addr.msf.frame));
478 		else
479 			return play_blocks (0, ntohl(toc_buffer[n].addr.lba));
480 	}
481 
482 	if (strchr (arg, '#')) {
483 		/* Play block #blk [ len ] */
484 		int blk, len = 0;
485 
486 		if (2 != sscanf (arg, "#%d%d", &blk, &len) &&
487 		    1 != sscanf (arg, "#%d", &blk))
488 			goto Clean_up;
489 
490 		if (len == 0) {
491 			if (msf)
492 				len = msf2lba (toc_buffer[n].addr.msf.minute,
493 					       toc_buffer[n].addr.msf.second,
494 					       toc_buffer[n].addr.msf.frame) - blk;
495 			else
496 				len = ntohl(toc_buffer[n].addr.lba) - blk;
497 		}
498 		return play_blocks (blk, len);
499 	}
500 
501 	if (strchr (arg, ':')) {
502 		/*
503 		 * Play MSF m1:s1 [ .f1 ] [ m2:s2 [ .f2 ] ]
504 		 *
505 		 * Will now also undestand timed addresses relative
506 		 * to the beginning of a track in the form...
507 		 *
508 		 *      tr1 m1:s1[.f1] [[tr2] [m2:s2[.f2]]]
509 		 */
510 		unsigned tr1, tr2;
511 		unsigned m1, m2, s1, s2, f1, f2;
512 		unsigned char tm, ts, tf;
513 
514 		tr2 = m2 = s2 = f2 = f1 = 0;
515 		if (8 == sscanf (arg, "%d %d:%d.%d %d %d:%d.%d",
516 		    &tr1, &m1, &s1, &f1, &tr2, &m2, &s2, &f2))
517 			goto Play_Relative_Addresses;
518 
519 		tr2 = m2 = s2 = f2 = f1 = 0;
520 		if (7 == sscanf (arg, "%d %d:%d %d %d:%d.%d",
521 		    &tr1, &m1, &s1, &tr2, &m2, &s2, &f2))
522 			goto Play_Relative_Addresses;
523 
524 		tr2 = m2 = s2 = f2 = f1 = 0;
525 		if (7 == sscanf (arg, "%d %d:%d.%d %d %d:%d",
526 		    &tr1, &m1, &s1, &f1, &tr2, &m2, &s2))
527 			goto Play_Relative_Addresses;
528 
529 		tr2 = m2 = s2 = f2 = f1 = 0;
530 		if (7 == sscanf (arg, "%d %d:%d.%d %d:%d.%d",
531 		    &tr1, &m1, &s1, &f1, &m2, &s2, &f2))
532 			goto Play_Relative_Addresses;
533 
534 		tr2 = m2 = s2 = f2 = f1 = 0;
535 		if (6 == sscanf (arg, "%d %d:%d.%d %d:%d",
536 		    &tr1, &m1, &s1, &f1, &m2, &s2))
537 			goto Play_Relative_Addresses;
538 
539 		tr2 = m2 = s2 = f2 = f1 = 0;
540 		if (6 == sscanf (arg, "%d %d:%d %d:%d.%d",
541 		    &tr1, &m1, &s1, &m2, &s2, &f2))
542 			goto Play_Relative_Addresses;
543 
544 		tr2 = m2 = s2 = f2 = f1 = 0;
545 		if (6 == sscanf (arg, "%d %d:%d.%d %d %d",
546 		    &tr1, &m1, &s1, &f1, &tr2, &m2))
547 			goto Play_Relative_Addresses;
548 
549 		tr2 = m2 = s2 = f2 = f1 = 0;
550 		if (5 == sscanf (arg, "%d %d:%d %d:%d", &tr1, &m1, &s1, &m2, &s2))
551 			goto Play_Relative_Addresses;
552 
553 		tr2 = m2 = s2 = f2 = f1 = 0;
554 		if (5 == sscanf (arg, "%d %d:%d %d %d",
555 		    &tr1, &m1, &s1, &tr2, &m2))
556 			goto Play_Relative_Addresses;
557 
558 		tr2 = m2 = s2 = f2 = f1 = 0;
559 		if (5 == sscanf (arg, "%d %d:%d.%d %d",
560 		    &tr1, &m1, &s1, &f1, &tr2))
561 			goto Play_Relative_Addresses;
562 
563 		tr2 = m2 = s2 = f2 = f1 = 0;
564 		if (4 == sscanf (arg, "%d %d:%d %d", &tr1, &m1, &s1, &tr2))
565 			goto Play_Relative_Addresses;
566 
567 		tr2 = m2 = s2 = f2 = f1 = 0;
568 		if (4 == sscanf (arg, "%d %d:%d.%d", &tr1, &m1, &s1, &f1))
569 			goto Play_Relative_Addresses;
570 
571 		tr2 = m2 = s2 = f2 = f1 = 0;
572 		if (3 == sscanf (arg, "%d %d:%d", &tr1, &m1, &s1))
573 			goto Play_Relative_Addresses;
574 
575 		tr2 = m2 = s2 = f2 = f1 = 0;
576 		goto Try_Absolute_Timed_Addresses;
577 
578 Play_Relative_Addresses:
579 		if (! tr1)
580 			tr1 = 1;
581 		else if (tr1 > n)
582 			tr1 = n;
583 
584 		tr1--;
585 
586 		if (msf) {
587 			tm = toc_buffer[tr1].addr.msf.minute;
588 			ts = toc_buffer[tr1].addr.msf.second;
589 			tf = toc_buffer[tr1].addr.msf.frame;
590 		} else
591 			lba2msf(ntohl(toc_buffer[tr1].addr.lba),
592 				&tm, &ts, &tf);
593 		if ((m1 > tm)
594 		    || ((m1 == tm)
595 		    && ((s1 > ts)
596 		    || ((s1 == ts)
597 		    && (f1 > tf))))) {
598 			printf ("Track %d is not that long.\n", tr1);
599 			return (0);
600 		}
601 
602 		f1 += tf;
603 		if (f1 >= 75) {
604 			s1 += f1 / 75;
605 			f1 %= 75;
606 		}
607 
608 		s1 += ts;
609 		if (s1 >= 60) {
610 			m1 += s1 / 60;
611 			s1 %= 60;
612 		}
613 
614 		m1 += tm;
615 
616 		if (! tr2) {
617 			if (m2 || s2 || f2) {
618 				tr2 = tr1;
619 				f2 += f1;
620 				if (f2 >= 75) {
621 					s2 += f2 / 75;
622 					f2 %= 75;
623 				}
624 
625 				s2 += s1;
626 				if (s2 > 60) {
627 					m2 += s2 / 60;
628 					s2 %= 60;
629 				}
630 
631 				m2 += m1;
632 			} else {
633 				tr2 = n;
634 				if (msf) {
635 					m2 = toc_buffer[n].addr.msf.minute;
636 					s2 = toc_buffer[n].addr.msf.second;
637 					f2 = toc_buffer[n].addr.msf.frame;
638 				} else {
639 					lba2msf(ntohl(toc_buffer[n].addr.lba),
640 						&tm, &ts, &tf);
641 					m2 = tm;
642 					s2 = ts;
643 					f2 = tf;
644 				}
645 			}
646 		} else if (tr2 > n) {
647 			tr2 = n;
648 			m2 = s2 = f2 = 0;
649 		} else {
650 			if (m2 || s2 || f2)
651 				tr2--;
652 			if (msf) {
653 				tm = toc_buffer[tr2].addr.msf.minute;
654 				ts = toc_buffer[tr2].addr.msf.second;
655 				tf = toc_buffer[tr2].addr.msf.frame;
656 			} else
657 				lba2msf(ntohl(toc_buffer[tr2].addr.lba),
658 					&tm, &ts, &tf);
659 			f2 += tf;
660 			if (f2 >= 75) {
661 				s2 += f2 / 75;
662 				f2 %= 75;
663 			}
664 
665 			s2 += ts;
666 			if (s2 > 60) {
667 				m2 += s2 / 60;
668 				s2 %= 60;
669 			}
670 
671 			m2 += tm;
672 		}
673 
674 		if (msf) {
675 			tm = toc_buffer[n].addr.msf.minute;
676 			ts = toc_buffer[n].addr.msf.second;
677 			tf = toc_buffer[n].addr.msf.frame;
678 		} else
679 			lba2msf(ntohl(toc_buffer[n].addr.lba),
680 				&tm, &ts, &tf);
681 		if ((tr2 < n)
682 		    && ((m2 > tm)
683 		    || ((m2 == tm)
684 		    && ((s2 > ts)
685 		    || ((s2 == ts)
686 		    && (f2 > tf)))))) {
687 			printf ("The playing time of the disc is not that long.\n");
688 			return (0);
689 		}
690 		return (play_msf (m1, s1, f1, m2, s2, f2));
691 
692 Try_Absolute_Timed_Addresses:
693 		if (6 != sscanf (arg, "%d:%d.%d%d:%d.%d",
694 			&m1, &s1, &f1, &m2, &s2, &f2) &&
695 		    5 != sscanf (arg, "%d:%d.%d%d:%d", &m1, &s1, &f1, &m2, &s2) &&
696 		    5 != sscanf (arg, "%d:%d%d:%d.%d", &m1, &s1, &m2, &s2, &f2) &&
697 		    3 != sscanf (arg, "%d:%d.%d", &m1, &s1, &f1) &&
698 		    4 != sscanf (arg, "%d:%d%d:%d", &m1, &s1, &m2, &s2) &&
699 		    2 != sscanf (arg, "%d:%d", &m1, &s1))
700 			goto Clean_up;
701 
702 		if (m2 == 0) {
703 			if (msf) {
704 				m2 = toc_buffer[n].addr.msf.minute;
705 				s2 = toc_buffer[n].addr.msf.second;
706 				f2 = toc_buffer[n].addr.msf.frame;
707 			} else {
708 				lba2msf(ntohl(toc_buffer[n].addr.lba),
709 					&tm, &ts, &tf);
710 				m2 = tm;
711 				s2 = ts;
712 				f2 = tf;
713 			}
714 		}
715 		return play_msf (m1, s1, f1, m2, s2, f2);
716 	}
717 
718 	/*
719 	 * Play track trk1 [ .idx1 ] [ trk2 [ .idx2 ] ]
720 	 */
721 	if (4 != sscanf (arg, "%d.%d%d.%d", &start, &istart, &end, &iend) &&
722 	    3 != sscanf (arg, "%d.%d%d", &start, &istart, &end) &&
723 	    3 != sscanf (arg, "%d%d.%d", &start, &end, &iend) &&
724 	    2 != sscanf (arg, "%d.%d", &start, &istart) &&
725 	    2 != sscanf (arg, "%d%d", &start, &end) &&
726 	    1 != sscanf (arg, "%d", &start))
727 		goto Clean_up;
728 
729 	if (end == 0)
730 		end = n;
731 	return (play_track (start, istart, end, iend));
732 
733 Clean_up:
734 	warnx("invalid command arguments");
735 	return (0);
736 }
737 
738 int next_prev (char *arg, int cmd)
739 {
740 	struct ioc_toc_header h;
741 	int dir, junk, n, off, rc, trk;
742 
743 	dir = (cmd == CMD_NEXT) ? 1 : -1;
744 	rc = ioctl (fd, CDIOREADTOCHEADER, &h);
745 	if (rc < 0)
746 		return (rc);
747 
748 	n = h.ending_track - h.starting_track + 1;
749 	rc = status (&trk, &junk, &junk, &junk);
750 	if (rc < 0)
751 		return (-1);
752 
753 	if (arg && *arg) {
754 		if (sscanf (arg, "%u", &off) != 1) {
755 		    warnx("invalid command argument");
756 		    return (0);
757 		} else
758 		    trk += off * dir;
759 	} else
760 		trk += dir;
761 
762 	if (trk > h.ending_track)
763 		trk = 1;
764 
765 	return (play_track (trk, 1, n, 1));
766 }
767 
768 const char *strstatus (int sts)
769 {
770 	switch (sts) {
771 	case ASTS_INVALID:	return ("invalid");
772 	case ASTS_PLAYING:	return ("playing");
773 	case ASTS_PAUSED:	return ("paused");
774 	case ASTS_COMPLETED:	return ("completed");
775 	case ASTS_ERROR:	return ("error");
776 	case ASTS_VOID:		return ("void");
777 	default:		return ("??");
778 	}
779 }
780 
781 int pstatus (char *arg)
782 {
783 	struct ioc_vol v;
784 	struct ioc_read_subchannel ss;
785 	struct cd_sub_channel_info data;
786 	int rc, trk, m, s, f;
787 	int what = 0;
788 	char *p, vmcn[(4 * 15) + 1];
789 
790 	while ((p = strtok(arg, " \t"))) {
791 	    arg = 0;
792 	    if (!strncasecmp(p, "audio", strlen(p)))
793 		what |= STATUS_AUDIO;
794 	    else if (!strncasecmp(p, "media", strlen(p)))
795 		what |= STATUS_MEDIA;
796 	    else if (!strncasecmp(p, "volume", strlen(p)))
797 		what |= STATUS_VOLUME;
798 	    else {
799 		warnx("invalid command arguments");
800 		return 0;
801 	    }
802 	}
803 	if (!what)
804 	    what = STATUS_AUDIO|STATUS_MEDIA|STATUS_VOLUME;
805 	if (what & STATUS_AUDIO) {
806 	    rc = status (&trk, &m, &s, &f);
807 	    if (rc >= 0)
808 		if (verbose)
809 		    printf ("Audio status = %d<%s>, current track = %d, current position = %d:%02d.%02d\n",
810 			    rc, strstatus (rc), trk, m, s, f);
811 		else
812 		    printf ("%d %d %d:%02d.%02d\n", rc, trk, m, s, f);
813 	    else
814 		printf ("No current status info available\n");
815 	}
816 	if (what & STATUS_MEDIA) {
817 	    bzero (&ss, sizeof (ss));
818 	    ss.data = &data;
819 	    ss.data_len = sizeof (data);
820 	    ss.address_format = msf ? CD_MSF_FORMAT : CD_LBA_FORMAT;
821 	    ss.data_format = CD_MEDIA_CATALOG;
822 	    rc = ioctl (fd, CDIOCREADSUBCHANNEL, (char *) &ss);
823 	    if (rc >= 0) {
824 		printf("Media catalog is %sactive",
825 		    ss.data->what.media_catalog.mc_valid ? "": "in");
826 		if (ss.data->what.media_catalog.mc_valid &&
827 		    ss.data->what.media_catalog.mc_number[0])
828 		{
829 		    strvisx (vmcn, ss.data->what.media_catalog.mc_number,
830 			    (sizeof (vmcn) - 1) / 4, VIS_OCTAL | VIS_NL);
831 		    printf(", number \"%.*s\"", (int)sizeof (vmcn), vmcn);
832 		}
833 		putchar('\n');
834 	    } else
835 		printf("No media catalog info available\n");
836 	}
837 	if (what & STATUS_VOLUME) {
838 	    rc = ioctl (fd, CDIOCGETVOL, &v);
839 	    if (rc >= 0)
840 		if (verbose)
841 		    printf ("Left volume = %d, right volume = %d\n",
842 			    v.vol[0], v.vol[1]);
843 		else
844 		    printf ("%d %d\n", v.vol[0], v.vol[1]);
845 	    else
846 		printf ("No volume level info available\n");
847 	}
848 	return(0);
849 }
850 
851 /*
852  * dbprog_sum
853  *	Convert an integer to its text string representation, and
854  *	compute its checksum.  Used by dbprog_discid to derive the
855  *	disc ID.
856  *
857  * Args:
858  *	n - The integer value.
859  *
860  * Return:
861  *	The integer checksum.
862  */
863 static int
864 dbprog_sum(int n)
865 {
866 	char	buf[12],
867 		*p;
868 	int	ret = 0;
869 
870 	/* For backward compatibility this algorithm must not change */
871 	sprintf(buf, "%u", n);
872 	for (p = buf; *p != '\0'; p++)
873 		ret += (*p - '0');
874 
875 	return(ret);
876 }
877 
878 
879 /*
880  * dbprog_discid
881  *	Compute a magic disc ID based on the number of tracks,
882  *	the length of each track, and a checksum of the string
883  *	that represents the offset of each track.
884  *
885  * Args:
886  *	s - Pointer to the curstat_t structure.
887  *
888  * Return:
889  *	The integer disc ID.
890  */
891 static u_int
892 dbprog_discid()
893 {
894 	struct	ioc_toc_header h;
895 	int	rc;
896 	int	i, ntr,
897 		t = 0,
898 		n = 0;
899 
900 	rc = ioctl (fd, CDIOREADTOCHEADER, &h);
901 	if (rc < 0)
902 		return 0;
903 	ntr = h.ending_track - h.starting_track + 1;
904 	i = msf;
905 	msf = 1;
906 	rc = read_toc_entrys ((ntr + 1) * sizeof (struct cd_toc_entry));
907 	msf = i;
908 	if (rc < 0)
909 		return 0;
910 	/* For backward compatibility this algorithm must not change */
911 	for (i = 0; i < ntr; i++) {
912 #define TC_MM(a) toc_buffer[a].addr.msf.minute
913 #define TC_SS(a) toc_buffer[a].addr.msf.second
914 		n += dbprog_sum((TC_MM(i) * 60) + TC_SS(i));
915 
916 		t += ((TC_MM(i+1) * 60) + TC_SS(i+1)) -
917 		    ((TC_MM(i) * 60) + TC_SS(i));
918 	}
919 
920 	return((n % 0xff) << 24 | t << 8 | ntr);
921 }
922 
923 int cdid ()
924 {
925 	u_int	id;
926 
927 	id = dbprog_discid();
928 	if (id)
929 	{
930 		if (verbose)
931 			printf ("CDID=");
932 		printf ("%08x\n",id);
933 	}
934 	return id ? 0 : 1;
935 }
936 
937 int info (char *arg __unused)
938 {
939 	struct ioc_toc_header h;
940 	int rc, i, n;
941 
942 	rc = ioctl (fd, CDIOREADTOCHEADER, &h);
943 	if (rc >= 0) {
944 		if (verbose)
945 			printf ("Starting track = %d, ending track = %d, TOC size = %d bytes\n",
946 				h.starting_track, h.ending_track, h.len);
947 		else
948 			printf ("%d %d %d\n", h.starting_track,
949 				h.ending_track, h.len);
950 	} else {
951 		warn("getting toc header");
952 		return (rc);
953 	}
954 
955 	n = h.ending_track - h.starting_track + 1;
956 	rc = read_toc_entrys ((n + 1) * sizeof (struct cd_toc_entry));
957 	if (rc < 0)
958 		return (rc);
959 
960 	if (verbose) {
961 		printf ("track     start  duration   block  length   type\n");
962 		printf ("-------------------------------------------------\n");
963 	}
964 
965 	for (i = 0; i < n; i++) {
966 		printf ("%5d  ", toc_buffer[i].track);
967 		prtrack (toc_buffer + i, 0);
968 	}
969 	printf ("%5d  ", toc_buffer[n].track);
970 	prtrack (toc_buffer + n, 1);
971 	return (0);
972 }
973 
974 void lba2msf (unsigned long lba, u_char *m, u_char *s, u_char *f)
975 {
976 	lba += 150;			/* block start offset */
977 	lba &= 0xffffff;		/* negative lbas use only 24 bits */
978 	*m = lba / (60 * 75);
979 	lba %= (60 * 75);
980 	*s = lba / 75;
981 	*f = lba % 75;
982 }
983 
984 unsigned int msf2lba (u_char m, u_char s, u_char f)
985 {
986 	return (((m * 60) + s) * 75 + f) - 150;
987 }
988 
989 void prtrack (struct cd_toc_entry *e, int lastflag)
990 {
991 	int block, next, len;
992 	u_char m, s, f;
993 
994 	if (msf) {
995 		/* Print track start */
996 		printf ("%2d:%02d.%02d  ", e->addr.msf.minute,
997 			e->addr.msf.second, e->addr.msf.frame);
998 
999 		block = msf2lba (e->addr.msf.minute, e->addr.msf.second,
1000 			e->addr.msf.frame);
1001 	} else {
1002 		block = ntohl(e->addr.lba);
1003 		lba2msf(block, &m, &s, &f);
1004 		/* Print track start */
1005 		printf ("%2d:%02d.%02d  ", m, s, f);
1006 	}
1007 	if (lastflag) {
1008 		/* Last track -- print block */
1009 		printf ("       -  %6d       -      -\n", block);
1010 		return;
1011 	}
1012 
1013 	if (msf)
1014 		next = msf2lba (e[1].addr.msf.minute, e[1].addr.msf.second,
1015 			e[1].addr.msf.frame);
1016 	else
1017 		next = ntohl(e[1].addr.lba);
1018 	len = next - block;
1019 	/* Take into account a start offset time. */
1020 	lba2msf (len - 150, &m, &s, &f);
1021 
1022 	/* Print duration, block, length, type */
1023 	printf ("%2d:%02d.%02d  %6d  %6d  %5s\n", m, s, f, block, len,
1024 		(e->control & 4) ? "data" : "audio");
1025 }
1026 
1027 int play_track (int tstart, int istart, int tend, int iend)
1028 {
1029 	struct ioc_play_track t;
1030 
1031 	t.start_track = tstart;
1032 	t.start_index = istart;
1033 	t.end_track = tend;
1034 	t.end_index = iend;
1035 
1036 	return ioctl (fd, CDIOCPLAYTRACKS, &t);
1037 }
1038 
1039 int play_blocks (int blk, int len)
1040 {
1041 	struct ioc_play_blocks  t;
1042 
1043 	t.blk = blk;
1044 	t.len = len;
1045 
1046 	return ioctl (fd, CDIOCPLAYBLOCKS, &t);
1047 }
1048 
1049 int setvol (int left, int right)
1050 {
1051 	struct ioc_vol  v;
1052 
1053 	v.vol[0] = left;
1054 	v.vol[1] = right;
1055 	v.vol[2] = 0;
1056 	v.vol[3] = 0;
1057 
1058 	return ioctl (fd, CDIOCSETVOL, &v);
1059 }
1060 
1061 int read_toc_entrys (int len)
1062 {
1063 	struct ioc_read_toc_entry t;
1064 
1065 	t.address_format = msf ? CD_MSF_FORMAT : CD_LBA_FORMAT;
1066 	t.starting_track = 0;
1067 	t.data_len = len;
1068 	t.data = toc_buffer;
1069 
1070 	return (ioctl (fd, CDIOREADTOCENTRYS, (char *) &t));
1071 }
1072 
1073 int play_msf (int start_m, int start_s, int start_f,
1074 	int end_m, int end_s, int end_f)
1075 {
1076 	struct ioc_play_msf a;
1077 
1078 	a.start_m = start_m;
1079 	a.start_s = start_s;
1080 	a.start_f = start_f;
1081 	a.end_m = end_m;
1082 	a.end_s = end_s;
1083 	a.end_f = end_f;
1084 
1085 	return ioctl (fd, CDIOCPLAYMSF, (char *) &a);
1086 }
1087 
1088 int status (int *trk, int *min, int *sec, int *frame)
1089 {
1090 	struct ioc_read_subchannel s;
1091 	struct cd_sub_channel_info data;
1092 	u_char mm, ss, ff;
1093 
1094 	bzero (&s, sizeof (s));
1095 	s.data = &data;
1096 	s.data_len = sizeof (data);
1097 	s.address_format = msf ? CD_MSF_FORMAT : CD_LBA_FORMAT;
1098 	s.data_format = CD_CURRENT_POSITION;
1099 
1100 	if (ioctl (fd, CDIOCREADSUBCHANNEL, (char *) &s) < 0)
1101 		return -1;
1102 
1103 	*trk = s.data->what.position.track_number;
1104 	if (msf) {
1105 		*min = s.data->what.position.reladdr.msf.minute;
1106 		*sec = s.data->what.position.reladdr.msf.second;
1107 		*frame = s.data->what.position.reladdr.msf.frame;
1108 	} else {
1109 		lba2msf(ntohl(s.data->what.position.reladdr.lba),
1110 			&mm, &ss, &ff);
1111 		*min = mm;
1112 		*sec = ss;
1113 		*frame = ff;
1114 	}
1115 
1116 	return s.data->header.audio_status;
1117 }
1118 
1119 const char *
1120 cdcontrol_prompt()
1121 {
1122 	return ("cdcontrol> ");
1123 }
1124 
1125 char *
1126 input (int *cmd)
1127 {
1128 #define MAXLINE 80
1129 	static EditLine *el = NULL;
1130 	static History *hist = NULL;
1131 	HistEvent he;
1132 	static char buf[MAXLINE];
1133 	int num = 0;
1134 	int len;
1135 	const char *bp = NULL;
1136 	char *p;
1137 
1138 	do {
1139 		if (verbose) {
1140 			if (!el) {
1141 				el = el_init("cdcontrol", stdin, stdout,
1142 				    stderr);
1143 				hist = history_init();
1144 				history(hist, &he, H_EVENT, 100);
1145 				el_set(el, EL_HIST, history, hist);
1146 				el_set(el, EL_EDITOR, "emacs");
1147 				el_set(el, EL_PROMPT, cdcontrol_prompt);
1148 				el_set(el, EL_SIGNAL, 1);
1149 				el_source(el, NULL);
1150 			}
1151 			if ((bp = el_gets(el, &num)) == NULL || num == 0) {
1152 				*cmd = CMD_QUIT;
1153 				fprintf (stderr, "\r\n");
1154 				return (0);
1155 			}
1156 
1157 			len = (num > MAXLINE) ? MAXLINE : num;
1158 			memcpy(buf, bp, len);
1159 			buf[len] = 0;
1160 			history(hist, &he, H_ENTER, bp);
1161 #undef MAXLINE
1162 
1163 		} else {
1164 			if (! fgets (buf, sizeof (buf), stdin)) {
1165 				*cmd = CMD_QUIT;
1166 				fprintf (stderr, "\r\n");
1167 				return (0);
1168 			}
1169 		}
1170 		p = parse (buf, cmd);
1171 	} while (! p);
1172 	return (p);
1173 }
1174 
1175 char *parse (char *buf, int *cmd)
1176 {
1177 	struct cmdtab *c;
1178 	char *p;
1179 	unsigned int len;
1180 
1181 	for (p=buf; isspace (*p); p++)
1182 		continue;
1183 
1184 	if (isdigit (*p) || (p[0] == '#' && isdigit (p[1]))) {
1185 		*cmd = CMD_PLAY;
1186 		return (p);
1187 	} else if (*p == '+') {
1188 		*cmd = CMD_NEXT;
1189 		return (p + 1);
1190 	} else if (*p == '-') {
1191 		*cmd = CMD_PREVIOUS;
1192 		return (p + 1);
1193 	}
1194 
1195 	for (buf = p; *p && ! isspace (*p); p++)
1196 		continue;
1197 
1198 	len = p - buf;
1199 	if (! len)
1200 		return (0);
1201 
1202 	if (*p) {		/* It must be a spacing character! */
1203 		char *q;
1204 
1205 		*p++ = 0;
1206 		for (q=p; *q && *q != '\n' && *q != '\r'; q++)
1207 			continue;
1208 		*q = 0;
1209 	}
1210 
1211 	*cmd = -1;
1212 	for (c=cmdtab; c->name; ++c) {
1213 		/* Is it an exact match? */
1214 		if (! strcasecmp (buf, c->name)) {
1215   			*cmd = c->command;
1216   			break;
1217   		}
1218 
1219 		/* Try short hand forms then... */
1220 		if (len >= c->min && ! strncasecmp (buf, c->name, len)) {
1221 			if (*cmd != -1 && *cmd != c->command) {
1222 				warnx("ambiguous command");
1223 				return (0);
1224 			}
1225 			*cmd = c->command;
1226   		}
1227 	}
1228 
1229 	if (*cmd == -1) {
1230 		warnx("invalid command, enter ``help'' for commands");
1231 		return (0);
1232 	}
1233 
1234 	while (isspace (*p))
1235 		p++;
1236 	return p;
1237 }
1238 
1239 int open_cd ()
1240 {
1241 	char devbuf[MAXPATHLEN];
1242 
1243 	if (fd > -1)
1244 		return (1);
1245 
1246 	if (*cdname == '/') {
1247 		snprintf (devbuf, MAXPATHLEN, "%s", cdname);
1248 	} else {
1249 		snprintf (devbuf, MAXPATHLEN, "%s%s", _PATH_DEV, cdname);
1250 	}
1251 
1252 	fd = open (devbuf, O_RDONLY);
1253 
1254 	if (fd < 0 && errno == ENOENT) {
1255 		strcat (devbuf, DEFAULT_CD_PARTITION);
1256 		fd = open (devbuf, O_RDONLY);
1257 	}
1258 
1259 	if (fd < 0) {
1260 		if (errno == ENXIO) {
1261 			/*  ENXIO has an overloaded meaning here.
1262 			 *  The original "Device not configured" should
1263 			 *  be interpreted as "No disc in drive %s". */
1264 			warnx("no disc in drive %s", devbuf);
1265 			return (0);
1266 		}
1267 		err(1, "%s", devbuf);
1268 	}
1269 	return (1);
1270 }
1271