2 * Copyright (C) 2005-2009 Andre Noll <maan@systemlinux.org>
4 * Licensed under the GPL v2. For licencing details see COPYING.
7 /** \file audiod.c the paraslash's audio daemon */
12 #include <openssl/rc4.h>
18 #include "audiod.cmdline.h"
23 #include "buffer_tree.h"
25 #include "grab_client.h"
26 #include "client.cmdline.h"
34 #include "write_common.h"
37 /** define the array of error lists needed by para_audiod */
39 /** define the array containing all supported audio formats */
40 const char *audio_formats
[] = {AUDIOD_AUDIO_FORMAT_ARRAY NULL
};
42 /** Defines how audiod handles one supported audio format. */
43 struct audio_format_info
{
44 /** pointer to the receiver for this audio format */
45 struct receiver
*receiver
;
46 /** the receiver configuration */
48 /** the number of filters that should be activated for this audio format */
49 unsigned int num_filters
;
50 /** Array of filter numbers to be activated. */
51 unsigned *filter_nums
;
52 /** Pointer to the array of filter configurations. */
54 /** the number of filters that should be activated for this audio format */
55 unsigned int num_writers
;
56 /** Array of writer numbers to be activated. */
58 /** pointer to the array of writer configurations */
60 /** do not start receiver/filters/writer before this time */
61 struct timeval restart_barrier
;
65 * para_audiod uses \p MAX_STREAM_SLOTS different slots, each of which may
66 * be associated with a receiver/filter/writer triple. This array holds all
67 * information on the status of these slots.
69 * \sa struct slot_info
71 struct slot_info slot
[MAX_STREAM_SLOTS
];
73 /** The vss status flags audiod is interested in. */
74 enum vss_status_flags
{
75 /** Whether the 'N' flag is set. */
76 VSS_STATUS_FLAG_NEXT
= 1,
77 /** The 'P' flag is set. */
78 VSS_STATUS_FLAG_PLAYING
= 2,
82 * The task for obtaining para_server's status (para_client stat).
84 * \sa struct task, struct sched.
87 /** The associated task structure of audiod. */
89 /** Client data associated with the stat task. */
90 struct client_task
*ct
;
91 /** Do not restart client command until this time. */
92 struct timeval restart_barrier
;
93 /** Last time we received status data from para_server. */
94 struct timeval last_status_read
;
95 /** The offset value announced by para_server. */
97 /** The length of the current audio file as announced by para_server. */
99 /** The start of the current stream from the view of para_server. */
100 struct timeval server_stream_start
;
101 /** The average time deviation between para_server and para_audiod. */
102 struct timeval sa_time_diff
;
103 /** Whether client time is ahead of server time. */
104 int sa_time_diff_sign
;
105 /** The 'P' and the 'N' flags as announced by para_server. */
106 enum vss_status_flags vss_status
;
107 /** Number of times the clock difference is to be checked. */
108 unsigned clock_diff_count
;
109 /** When to start the next check for clock difference. */
110 struct timeval clock_diff_barrier
;
111 /** Number of the audio format as announced by para_server. */
112 int current_audio_format_num
;
115 /** The array of status items sent by para_server. */
116 char *stat_item_values
[NUM_STAT_ITEMS
] = {NULL
};
119 * the current mode of operation of which can be changed by the on/off/cycle
120 * commands. It is either, AUDIOD_OFF, AUDIOD_ON or AUDIOD_STANDBY.
122 int audiod_status
= AUDIOD_ON
;
125 * the gengetopt args_info struct that holds information on all command line
128 struct audiod_args_info conf
;
130 static char *socket_name
;
131 static struct audio_format_info afi
[NUM_AUDIO_FORMATS
];
133 static struct signal_task signal_task_struct
, *sig_task
= &signal_task_struct
;
135 static struct status_task status_task_struct
;
138 * the task that calls the status command of para_server
140 * \sa struct status_task
142 static struct status_task
*stat_task
= &status_task_struct
;
143 static struct timeval initial_delay_barrier
;
146 * the task for handling audiod commands
148 * \sa struct task, struct sched
150 struct command_task
{
151 /** the local listening socket */
153 /** the associated task structure */
157 /** iterate over all supported audio formats */
158 #define FOR_EACH_AUDIO_FORMAT(af) for (af = 0; af < NUM_AUDIO_FORMATS; af++)
161 * get the audio format number
162 * \param name the name of the audio format
164 * \return The audio format number on success, -E_UNSUPPORTED_AUDIO_FORMAT if
165 * \a name is not a supported audio format.
167 int get_audio_format_num(const char *name
)
171 while (para_isspace(*name
))
173 FOR_EACH_AUDIO_FORMAT(i
)
174 if (!strcmp(name
, audio_formats
[i
]))
176 return -E_UNSUPPORTED_AUDIO_FORMAT
;
179 char *get_time_string(int slot_num
)
181 int ret
, seconds
= 0, length
;
182 struct timeval
*tmp
, sum
, sss
, /* server stream start */
183 rstime
, /* receiver start time */
184 wstime
, /* writer start time */
185 wtime
, /* now - writer start */
186 rskip
; /* receiver start - sss */
187 struct slot_info
*s
= slot_num
< 0? NULL
: &slot
[slot_num
];
190 if (audiod_status
== AUDIOD_OFF
)
192 if (!(stat_task
->vss_status
& VSS_STATUS_FLAG_PLAYING
)) {
193 if (stat_task
->length_seconds
) /* paused */
195 goto empty
; /* stopped */
197 if (audiod_status
== AUDIOD_ON
&& !s
)
200 * Valid status items and playing, set length and tmp to the stream
201 * start. We use the slot info and fall back to the info from current
202 * status items if no slot info is available.
204 length
= stat_task
->length_seconds
;
205 tmp
= &stat_task
->server_stream_start
;
206 if (s
&& s
->wns
) { /* writer active in this slot */
207 btr_get_node_start(s
->wns
[0].btrn
, &wstime
);
208 if (wstime
.tv_sec
!= 0) { /* writer wrote something */
209 if (s
->server_stream_start
.tv_sec
== 0) {
210 /* copy status info to slot */
211 s
->server_stream_start
= stat_task
->server_stream_start
;
212 s
->offset_seconds
= stat_task
->offset_seconds
;
213 s
->seconds_total
= stat_task
->length_seconds
;
215 length
= s
->seconds_total
;
216 tmp
= &s
->server_stream_start
;
219 if (stat_task
->sa_time_diff_sign
> 0)
220 tv_diff(tmp
, &stat_task
->sa_time_diff
, &sss
);
222 tv_add(tmp
, &stat_task
->sa_time_diff
, &sss
);
225 tv_diff(now
, &sss
, &diff
);
226 seconds
= diff
.tv_sec
+ stat_task
->offset_seconds
;
229 tv_diff(now
, &wstime
, &wtime
);
230 //PARA_CRIT_LOG("offset %d\n", s->offset_seconds);
231 seconds
= s
->offset_seconds
;
232 btr_get_node_start(s
->receiver_node
->btrn
, &rstime
);
233 ret
= tv_diff(&rstime
, &sss
, &rskip
);
234 if (ret
> 0) { /* audiod was started in the middle of the stream */
235 tv_add(&wtime
, &rskip
, &sum
);
236 seconds
+= sum
.tv_sec
;
238 seconds
+= wtime
.tv_sec
;
240 seconds
= PARA_MIN(seconds
, length
);
241 seconds
= PARA_MAX(seconds
, 0);
243 "%s%d:%02d [%d:%02d] (%d%%/%d:%02d)",
247 (length
- seconds
) / 60,
248 (length
- seconds
) % 60,
249 length
? (seconds
* 100 + length
/ 2) / length
: 0,
253 PARA_DEBUG_LOG("slot %d: %s\n", slot_num
, msg
);
256 return para_strdup(NULL
);
259 static int want_colors(void)
261 if (conf
.color_arg
== color_arg_no
)
263 if (conf
.color_arg
== color_arg_yes
)
265 if (conf
.logfile_given
)
267 return isatty(STDERR_FILENO
);
270 static void parse_config_or_die(void)
274 struct audiod_cmdline_parser_params params
= {
278 .check_ambiguity
= 0,
282 if (conf
.config_file_given
)
283 config_file
= para_strdup(conf
.config_file_arg
);
285 char *home
= para_homedir();
286 config_file
= make_message("%s/.paraslash/audiod.conf", home
);
289 ret
= file_exists(config_file
);
290 if (conf
.config_file_given
&& !ret
) {
291 PARA_EMERG_LOG("can not read config file %s\n", config_file
);
295 audiod_cmdline_parser_config_file(config_file
, &conf
, ¶ms
);
297 daemon_set_loglevel(conf
.loglevel_arg
);
304 static void setup_signal_handling(void)
306 sig_task
->fd
= para_signal_init();
307 PARA_INFO_LOG("signal pipe: fd %d\n", sig_task
->fd
);
308 para_install_sighandler(SIGINT
);
309 para_install_sighandler(SIGTERM
);
310 para_install_sighandler(SIGHUP
);
311 para_sigaction(SIGPIPE
, SIG_IGN
);
314 static void clear_slot(int slot_num
)
316 struct slot_info
*s
= &slot
[slot_num
];
318 PARA_INFO_LOG("clearing slot %d\n", slot_num
);
319 memset(s
, 0, sizeof(struct slot_info
));
323 static void close_receiver(int slot_num
)
325 struct slot_info
*s
= &slot
[slot_num
];
326 struct audio_format_info
*a
;
327 struct timeval restart_delay
= {0, 200 * 1000};
329 if (s
->format
< 0 || !s
->receiver_node
)
332 PARA_NOTICE_LOG("closing %s receiver in slot %d\n",
333 audio_formats
[s
->format
], slot_num
);
334 a
->receiver
->close(s
->receiver_node
);
335 btr_free_node(s
->receiver_node
->btrn
);
336 free(s
->receiver_node
);
337 s
->receiver_node
= NULL
;
338 tv_add(now
, &restart_delay
, &afi
[s
->format
].restart_barrier
);
341 static void writer_cleanup(struct writer_node
*wn
)
347 w
= writers
+ wn
->writer_num
;
348 PARA_INFO_LOG("closing %s\n", writer_names
[wn
->writer_num
]);
350 btr_free_node(wn
->btrn
);
353 static void close_writers(struct slot_info
*s
)
355 struct audio_format_info
*a
;
361 if (a
->num_writers
== 0)
362 writer_cleanup(s
->wns
);
364 for (i
= 0; i
< a
->num_writers
; i
++)
365 writer_cleanup(s
->wns
+ i
);
371 static void close_filters(struct slot_info
*s
)
374 struct audio_format_info
*a
= afi
+ s
->format
;
375 if (a
->num_filters
== 0)
377 for (i
= 0; i
< a
->num_filters
; i
++) {
378 struct filter_node
*fn
= s
->fns
+ i
;
383 f
= filters
+ fn
->filter_num
;
386 btr_free_node(fn
->btrn
);
392 static void kill_all_decoders(int error
)
397 struct slot_info
*s
= &slot
[i
];
398 struct audio_format_info
*a
;
403 for (j
= 0; j
< a
->num_writers
; j
++)
404 s
->wns
[j
].task
.error
= error
;
406 for (j
= 0; j
< a
->num_writers
; j
++)
407 s
->fns
[j
].task
.error
= error
;
408 if (s
->receiver_node
)
409 s
->receiver_node
->task
.error
= error
;
413 static int get_empty_slot(void)
424 if (s
->wns
|| s
->receiver_node
|| s
->fns
)
429 return -E_NO_MORE_SLOTS
;
433 * get the number of filters
435 * \param audio_format_num the number identifying the audio format
437 * \return the number of filters for the given audio format
441 int num_filters(int audio_format_num
)
443 return afi
[audio_format_num
].num_filters
;
446 static void open_filters(struct slot_info
*s
)
448 struct audio_format_info
*a
= afi
+ s
->format
;
449 struct filter_node
*fn
;
450 int nf
= a
->num_filters
;
451 struct btr_node
*parent
;
456 PARA_INFO_LOG("opening %s filters\n", audio_formats
[s
->format
]);
457 assert(s
->fns
== NULL
);
458 s
->fns
= para_calloc(nf
* sizeof(struct filter_node
));
459 parent
= s
->receiver_node
->btrn
;
460 for (i
= 0; i
< nf
; i
++) {
461 struct filter
*f
= filters
+ a
->filter_nums
[i
];
463 fn
->filter_num
= a
->filter_nums
[i
];
464 fn
->conf
= a
->filter_conf
[i
];
465 fn
->task
.pre_select
= f
->pre_select
;
466 fn
->task
.post_select
= f
->post_select
;
467 fn
->btrn
= btr_new_node(f
->name
, parent
, f
->execute
, fn
);
469 register_task(&fn
->task
);
471 PARA_NOTICE_LOG("%s filter %d/%d (%s) started in slot %d\n",
472 audio_formats
[s
->format
], i
, nf
, f
->name
, s
- slot
);
473 sprintf(fn
->task
.status
, "%s (slot %d)", f
->name
, s
- slot
);
477 static void open_writers(struct slot_info
*s
)
480 struct audio_format_info
*a
= afi
+ s
->format
;
481 struct writer_node
*wn
;
482 struct btr_node
*parent
= s
->fns
[a
->num_filters
- 1].btrn
;
484 assert(s
->wns
== NULL
);
485 s
->wns
= para_calloc(PARA_MAX(1U, a
->num_writers
)
486 * sizeof(struct writer_node
));
487 if (a
->num_writers
== 0)
488 setup_writer_node(NULL
, parent
, s
->wns
);
490 PARA_INFO_LOG("opening %s writers\n", audio_formats
[s
->format
]);
491 for (i
= 0; i
< a
->num_writers
; i
++) {
493 wn
->conf
= a
->writer_conf
[i
];
494 wn
->writer_num
= a
->writer_nums
[i
];
495 register_writer_node(wn
, parent
);
500 /* returns slot num on success */
501 static int open_receiver(int format
)
503 struct audio_format_info
*a
= &afi
[format
];
506 struct receiver
*r
= a
->receiver
;
507 struct receiver_node
*rn
;
508 const struct timeval restart_delay
= {2, 0};
510 ret
= get_empty_slot();
516 s
->receiver_node
= para_calloc(sizeof(struct receiver_node
));
517 rn
= s
->receiver_node
;
519 rn
->conf
= a
->receiver_conf
;
520 rn
->btrn
= btr_new_node(r
->name
, NULL
, NULL
, rn
);
523 btr_free_node(rn
->btrn
);
525 s
->receiver_node
= NULL
;
528 PARA_NOTICE_LOG("started %s: %s receiver in slot %d\n",
529 audio_formats
[s
->format
], r
->name
, slot_num
);
530 rn
->task
.pre_select
= r
->pre_select
;
531 rn
->task
.post_select
= r
->post_select
;
532 sprintf(rn
->task
.status
, "%s receiver node", r
->name
);
533 register_task(&rn
->task
);
537 PARA_ERROR_LOG("%s\n", para_strerror(-ret
));
538 tv_add(now
, &restart_delay
, &afi
[format
].restart_barrier
);
542 /* return: 0: Not running, 1: Running, -1: Running but eof (or error) */
543 static int receiver_running(int format
)
548 struct slot_info
*s
= &slot
[i
];
549 if (s
->format
!= format
)
551 if (!s
->receiver_node
)
553 if (s
->receiver_node
->task
.error
>= 0)
560 struct btr_node
*audiod_get_btr_root(void)
562 int i
, newest_slot
= -1;
563 struct timeval newest_rstime
= {0, 0};
566 struct slot_info
*s
= &slot
[i
];
567 struct timeval rstime
;
568 if (!s
->receiver_node
)
570 if (s
->receiver_node
->task
.error
< 0)
572 btr_get_node_start(s
->receiver_node
->btrn
, &rstime
);
573 if (newest_slot
>= 0 && tv_diff(&rstime
, &newest_rstime
, NULL
) < 0)
575 newest_rstime
= rstime
;
578 if (newest_slot
== -1)
580 return slot
[newest_slot
].receiver_node
->btrn
;
583 /* returns slot num on success. */
584 static int open_current_receiver(struct sched
*s
)
587 int ret
, cafn
= stat_task
->current_audio_format_num
;
589 if (cafn
< 0 || !stat_task
->ct
)
591 /* Do nothing if the 'N' flag is set or the 'P' flag is unset */
592 if (stat_task
->vss_status
!= VSS_STATUS_FLAG_PLAYING
)
594 ret
= receiver_running(cafn
);
595 if (ret
> 0) /* already running and not eof */
597 if (ret
< 0) { /* eof */
599 * para_server uses a zero start time during the announcement
600 * period, i.e. before it sends the first chunk. Wait until
601 * this period begins to avoid restarting the receiver that
602 * belongs to the file just completed.
604 if (stat_task
->server_stream_start
.tv_sec
!= 0) {
605 sched_request_timeout_ms(100, s
);
609 if (tv_diff(now
, &afi
[cafn
].restart_barrier
, &diff
) < 0) {
610 if (tv_diff(&s
->timeout
, &diff
, NULL
) > 0)
611 sched_request_timeout(&diff
, s
);
616 /* start a new receiver */
617 return open_receiver(cafn
);
620 static unsigned compute_time_diff(const struct timeval
*status_time
)
622 struct timeval tmp
, diff
;
623 static unsigned count
;
624 int sign
, sa_time_diff_sign
= stat_task
->sa_time_diff_sign
;
625 const struct timeval max_deviation
= {0, 500 * 1000};
626 const int time_smooth
= 5;
630 sign
= tv_diff(status_time
, now
, &diff
);
631 // PARA_NOTICE_LOG("%s: sign = %i, sa_time_diff_sign = %i\n", __func__,
632 // sign, sa_time_diff_sign);
634 sa_time_diff_sign
= sign
;
635 stat_task
->sa_time_diff
= diff
;
640 int s
= tv_diff(&diff
, &stat_task
->sa_time_diff
, &tmp
);
641 if (tv_diff(&max_deviation
, &tmp
, NULL
) < 0)
642 PARA_WARNING_LOG("time diff jump: %lims\n",
646 sa_time_diff_sign
= tv_convex_combination(
647 sa_time_diff_sign
* time_smooth
, &stat_task
->sa_time_diff
,
648 count
> 10? sign
: sign
* time_smooth
, &diff
,
650 stat_task
->sa_time_diff
= tmp
;
651 PARA_INFO_LOG("time diff (cur/avg): %s%lums/%s%lums\n",
654 sa_time_diff_sign
? "+" : "-",
655 tv2ms(&stat_task
->sa_time_diff
)
658 stat_task
->sa_time_diff_sign
= sa_time_diff_sign
;
662 static int update_item(int itemnum
, char *buf
)
664 long unsigned sec
, usec
;
666 if (stat_task
->clock_diff_count
&& itemnum
!= SI_CURRENT_TIME
)
668 free(stat_item_values
[itemnum
]);
669 stat_item_values
[itemnum
] = para_strdup(buf
);
670 stat_client_write_item(itemnum
);
672 case SI_STATUS_FLAGS
:
673 stat_task
->vss_status
= 0;
674 if (strchr(buf
, 'N'))
675 stat_task
->vss_status
|= VSS_STATUS_FLAG_NEXT
;
676 if (strchr(buf
, 'P'))
677 stat_task
->vss_status
|= VSS_STATUS_FLAG_PLAYING
;
680 stat_task
->offset_seconds
= atoi(buf
);
682 case SI_SECONDS_TOTAL
:
683 stat_task
->length_seconds
= atoi(buf
);
685 case SI_STREAM_START
:
686 if (sscanf(buf
, "%lu.%lu", &sec
, &usec
) == 2) {
687 struct timeval a_start
, delay
;
688 delay
.tv_sec
= conf
.stream_delay_arg
/ 1000;
689 delay
.tv_usec
= (conf
.stream_delay_arg
% 1000) * 1000;
690 stat_task
->server_stream_start
.tv_sec
= sec
;
691 stat_task
->server_stream_start
.tv_usec
= usec
;
692 if (compute_time_diff(NULL
) > 2) {
693 if (stat_task
->sa_time_diff_sign
< 0)
694 tv_add(&stat_task
->server_stream_start
,
695 &stat_task
->sa_time_diff
, &a_start
);
697 tv_diff(&stat_task
->server_stream_start
,
698 &stat_task
->sa_time_diff
, &a_start
);
699 tv_add(&a_start
, &delay
, &initial_delay_barrier
);
703 case SI_CURRENT_TIME
:
704 if (sscanf(buf
, "%lu.%lu", &sec
, &usec
) == 2) {
705 struct timeval tv
= {sec
, usec
};
706 compute_time_diff(&tv
);
710 stat_task
->current_audio_format_num
711 = get_audio_format_num(buf
);
716 static int parse_stream_command(const char *txt
, char **cmd
)
718 char *p
= strchr(txt
, ':');
722 return -E_MISSING_COLON
;
724 FOR_EACH_AUDIO_FORMAT(i
) {
725 if (strncmp(txt
, audio_formats
[i
], strlen(audio_formats
[i
])))
730 return -E_UNSUPPORTED_AUDIO_FORMAT
;
733 static int add_filter(int format
, char *cmdline
)
735 struct audio_format_info
*a
= &afi
[format
];
736 int filter_num
, nf
= a
->num_filters
;
738 filter_num
= check_filter_arg(cmdline
, &a
->filter_conf
[nf
]);
741 a
->filter_nums
[nf
] = filter_num
;
743 PARA_INFO_LOG("%s filter %d: %s\n", audio_formats
[format
], nf
,
744 filters
[filter_num
].name
);
748 static int parse_writer_args(void)
752 struct audio_format_info
*a
;
754 nw
= PARA_MAX(1U, conf
.writer_given
);
755 PARA_INFO_LOG("maximal number of writers: %d\n", nw
);
756 FOR_EACH_AUDIO_FORMAT(i
) {
758 a
->writer_conf
= para_malloc(nw
* sizeof(void *));
759 a
->writer_nums
= para_malloc(nw
* sizeof(int));
762 for (i
= 0; i
< conf
.writer_given
; i
++) {
765 ret
= parse_stream_command(conf
.writer_arg
[i
], &cmd
);
770 wconf
= check_writer_arg(cmd
, &writer_num
);
775 a
->writer_nums
[nw
] = writer_num
;
776 a
->writer_conf
[nw
] = wconf
;
777 PARA_INFO_LOG("%s writer #%d: %s\n", audio_formats
[ret
],
778 nw
, writer_names
[writer_num
]);
786 static int parse_receiver_args(void)
788 int i
, ret
, receiver_num
;
790 struct audio_format_info
*a
;
792 for (i
= conf
.receiver_given
- 1; i
>= 0; i
--) {
793 char *arg
= conf
.receiver_arg
[i
];
794 char *recv_arg
= strchr(arg
, ':');
795 ret
= -E_MISSING_COLON
;
800 ret
= get_audio_format_num(arg
);
803 afi
[ret
].receiver_conf
= check_receiver_arg(recv_arg
, &receiver_num
);
804 if (!afi
[ret
].receiver_conf
) {
805 ret
= -E_RECV_SYNTAX
;
808 afi
[ret
].receiver
= &receivers
[receiver_num
];
810 /* use the first available receiver with no arguments
811 * for those audio formats for which no receiver
814 cmd
= para_strdup(receivers
[0].name
);
815 FOR_EACH_AUDIO_FORMAT(i
) {
817 if (a
->receiver_conf
)
819 a
->receiver_conf
= check_receiver_arg(cmd
, &receiver_num
);
820 if (!a
->receiver_conf
)
821 return -E_RECV_SYNTAX
;
822 a
->receiver
= &receivers
[receiver_num
];
830 static int init_default_filters(void)
834 FOR_EACH_AUDIO_FORMAT(i
) {
835 struct audio_format_info
*a
= &afi
[i
];
840 continue; /* no default -- nothing to to */
841 /* add "dec" to audio format name */
842 tmp
= make_message("%sdec", audio_formats
[i
]);
843 for (j
= 0; filters
[j
].name
; j
++)
844 if (!strcmp(tmp
, filters
[j
].name
))
847 ret
= -E_UNSUPPORTED_FILTER
;
848 if (!filters
[j
].name
)
850 tmp
= para_strdup(filters
[j
].name
);
851 ret
= add_filter(i
, tmp
);
855 PARA_INFO_LOG("%s -> default filter: %s\n", audio_formats
[i
],
862 static int parse_filter_args(void)
866 nf
= PARA_MAX(1U, conf
.filter_given
);
867 PARA_INFO_LOG("maximal number of filters: %d\n", nf
);
868 FOR_EACH_AUDIO_FORMAT(i
) {
869 afi
[i
].filter_conf
= para_malloc(nf
* sizeof(void *));
870 afi
[i
].filter_nums
= para_malloc(nf
* sizeof(unsigned));
872 if (!conf
.no_default_filters_given
)
873 return init_default_filters();
874 for (i
= 0; i
< conf
.filter_given
; i
++) {
875 char *arg
= conf
.filter_arg
[i
];
876 char *filter_name
= strchr(arg
, ':');
877 ret
= -E_MISSING_COLON
;
882 ret
= get_audio_format_num(arg
);
885 ret
= add_filter(ret
, filter_name
);
889 ret
= init_default_filters(); /* use default values for the rest */
894 static int parse_stream_args(void)
898 ret
= parse_receiver_args();
901 ret
= parse_filter_args();
904 ret
= parse_writer_args();
910 /* does not unlink socket on errors */
911 static int audiod_get_socket(void)
913 struct sockaddr_un unix_addr
;
916 if (conf
.socket_given
)
917 socket_name
= para_strdup(conf
.socket_arg
);
919 char *hn
= para_hostname();
920 socket_name
= make_message("/var/paraslash/audiod_socket.%s",
924 PARA_NOTICE_LOG("local socket: %s\n", socket_name
);
925 if (conf
.force_given
)
927 ret
= create_local_socket(socket_name
, &unix_addr
,
928 S_IRUSR
| S_IWUSR
| S_IRGRP
| S_IWGRP
| S_IWOTH
);
932 if (listen(fd
, 5) < 0) {
933 ret
= -ERRNO_TO_PARA_ERROR(errno
);
936 ret
= mark_fd_nonblocking(fd
);
941 PARA_EMERG_LOG("%s\n", para_strerror(-ret
));
945 static void signal_pre_select(struct sched
*s
, struct task
*t
)
947 struct signal_task
*st
= container_of(t
, struct signal_task
, task
);
948 para_fd_set(st
->fd
, &s
->rfds
, &s
->max_fileno
);
951 static void signal_post_select(struct sched
*s
, struct task
*t
)
953 struct signal_task
*st
= container_of(t
, struct signal_task
, task
);
955 if (!FD_ISSET(st
->fd
, &s
->rfds
))
958 st
->signum
= para_next_signal();
959 switch (st
->signum
) {
963 PARA_EMERG_LOG("terminating on signal %d\n", st
->signum
);
964 clean_exit(EXIT_FAILURE
, "caught deadly signal");
968 static void signal_setup_default(struct signal_task
*st
)
970 st
->task
.pre_select
= signal_pre_select
;
971 st
->task
.post_select
= signal_post_select
;
972 sprintf(st
->task
.status
, "signal task");
975 static void command_pre_select(struct sched
*s
, struct task
*t
)
977 struct command_task
*ct
= container_of(t
, struct command_task
, task
);
978 para_fd_set(ct
->fd
, &s
->rfds
, &s
->max_fileno
);
981 static void command_post_select(struct sched
*s
, struct task
*t
)
984 struct command_task
*ct
= container_of(t
, struct command_task
, task
);
985 static struct timeval last_status_dump
;
986 struct timeval tmp
, delay
= {0, 500 * 1000};
988 tv_add(&last_status_dump
, &delay
, &tmp
);
989 if (tv_diff(&tmp
, now
, NULL
) < 0) {
990 audiod_status_dump();
991 last_status_dump
= *now
;
994 if (!FD_ISSET(ct
->fd
, &s
->rfds
))
996 ret
= handle_connect(ct
->fd
);
998 PARA_ERROR_LOG("%s\n", para_strerror(-ret
));
1001 static void init_command_task(struct command_task
*ct
)
1003 ct
->task
.pre_select
= command_pre_select
;
1004 ct
->task
.post_select
= command_post_select
;
1006 ct
->fd
= audiod_get_socket(); /* doesn't return on errors */
1007 sprintf(ct
->task
.status
, "command task");
1010 static void close_stat_pipe(void)
1014 client_close(stat_task
->ct
);
1015 stat_task
->ct
= NULL
;
1016 clear_and_dump_items();
1017 stat_task
->length_seconds
= 0;
1018 stat_task
->offset_seconds
= 0;
1019 stat_task
->vss_status
= 0;
1020 stat_task
->current_audio_format_num
= -1;
1021 audiod_status_dump();
1025 * close the connection to para_server and exit
1027 * \param status the exit status which is passed to exit(3)
1028 * \param msg the log message
1030 * Log \a msg with loglevel \p EMERG, close the connection to para_server if
1031 * open, and call \p exit(status). \a status should be either EXIT_SUCCESS or
1036 void __noreturn
clean_exit(int status
, const char *msg
)
1038 PARA_EMERG_LOG("%s\n", msg
);
1040 unlink(socket_name
);
1045 /* avoid busy loop if server is down */
1046 static void set_stat_task_restart_barrier(unsigned seconds
)
1048 struct timeval delay
= {seconds
, 0};
1049 tv_add(now
, &delay
, &stat_task
->restart_barrier
);
1052 static bool try_to_close_slot(int slot_num
)
1054 struct slot_info
*s
= &slot
[slot_num
];
1055 struct audio_format_info
*a
= afi
+ s
->format
;
1060 if (s
->receiver_node
&& s
->receiver_node
->task
.error
!= -E_TASK_UNREGISTERED
)
1062 for (i
= 0; i
< a
->num_filters
; i
++)
1063 if (s
->fns
&& s
->fns
[i
].task
.error
!= -E_TASK_UNREGISTERED
)
1065 if (a
->num_writers
> 0) {
1066 for (i
= 0; i
< a
->num_writers
; i
++)
1067 if (s
->wns
&& s
->wns
[i
].task
.error
!= -E_TASK_UNREGISTERED
)
1070 if (s
->wns
&& s
->wns
[0].task
.error
!= -E_TASK_UNREGISTERED
)
1073 PARA_INFO_LOG("closing slot %d\n", slot_num
);
1076 close_receiver(slot_num
);
1077 clear_slot(slot_num
);
1082 * Check if any receivers/filters/writers need to be started and do so if
1085 static void start_stop_decoders(struct sched
*s
)
1088 struct slot_info
*sl
;
1089 struct audio_format_info
*a
;
1092 if (try_to_close_slot(i
))
1094 // if (audiod_status != AUDIOD_ON ||
1095 // !(stat_task->vss_status & VSS_STATUS_FLAG_PLAYING))
1096 // return kill_all_decoders(-E_NOT_PLAYING);
1097 ret
= open_current_receiver(s
);
1101 a
= afi
+ sl
->format
;
1105 activate_grab_clients();
1106 btr_log_tree(sl
->receiver_node
->btrn
, LL_NOTICE
);
1110 /* restart the client task if necessary */
1111 static void status_pre_select(struct sched
*s
, struct task
*t
)
1113 struct status_task
*st
= container_of(t
, struct status_task
, task
);
1115 if (audiod_status
== AUDIOD_OFF
) {
1118 if (st
->ct
->task
.error
>= 0) {
1119 st
->ct
->task
.error
= -E_AUDIOD_OFF
;
1122 if (st
->ct
->task
.error
!= -E_TASK_UNREGISTERED
)
1125 st
->clock_diff_count
= conf
.clock_diff_count_arg
;
1130 if (st
->ct
->task
.error
< 0) {
1131 if (st
->ct
->task
.error
!= -E_TASK_UNREGISTERED
)
1136 if (st
->ct
->status
!= CL_RECEIVING
)
1138 ret
= for_each_stat_item(st
->ct
->buf
, st
->ct
->loaded
,
1141 st
->ct
->task
.error
= ret
;
1144 if (st
->ct
->loaded
!= ret
) {
1145 st
->last_status_read
= *now
;
1146 st
->ct
->loaded
= ret
;
1148 struct timeval diff
;
1149 tv_diff(now
, &st
->last_status_read
, &diff
);
1150 if (diff
.tv_sec
> 61)
1151 st
->ct
->task
.error
= -E_STATUS_TIMEOUT
;
1155 if (tv_diff(now
, &st
->restart_barrier
, NULL
) < 0)
1157 if (st
->clock_diff_count
) { /* get status only one time */
1158 char *argv
[] = {"audiod", "--", "stat", "-p", "-n=1", NULL
};
1160 PARA_INFO_LOG("clock diff count: %d\n", st
->clock_diff_count
);
1161 st
->clock_diff_count
--;
1162 client_open(argc
, argv
, &st
->ct
, NULL
);
1163 set_stat_task_restart_barrier(2);
1167 char *argv
[] = {"audiod", "--", "stat", "-p", NULL
};
1169 client_open(argc
, argv
, &st
->ct
, NULL
);
1170 set_stat_task_restart_barrier(5);
1173 free(stat_item_values
[SI_BASENAME
]);
1174 stat_item_values
[SI_BASENAME
] = para_strdup(
1175 "no connection to para_server");
1176 stat_client_write_item(SI_BASENAME
);
1177 st
->last_status_read
= *now
;
1179 start_stop_decoders(s
);
1182 static void init_status_task(struct status_task
*st
)
1184 memset(st
, 0, sizeof(struct status_task
));
1185 st
->task
.pre_select
= status_pre_select
;
1186 st
->sa_time_diff_sign
= 1;
1187 st
->clock_diff_count
= conf
.clock_diff_count_arg
;
1188 st
->current_audio_format_num
= -1;
1189 sprintf(st
->task
.status
, "status task");
1192 static void set_initial_status(void)
1194 audiod_status
= AUDIOD_ON
;
1195 if (!conf
.mode_given
)
1197 if (!strcmp(conf
.mode_arg
, "sb")) {
1198 audiod_status
= AUDIOD_STANDBY
;
1201 if (!strcmp(conf
.mode_arg
, "off")) {
1202 audiod_status
= AUDIOD_OFF
;
1205 if (strcmp(conf
.mode_arg
, "on"))
1206 PARA_WARNING_LOG("invalid mode\n");
1209 __noreturn
static void print_help_and_die(void)
1211 int d
= conf
.detailed_help_given
;
1212 const char **p
= d
? audiod_args_info_detailed_help
1213 : audiod_args_info_help
;
1215 printf_or_die("%s\n\n", AUDIOD_CMDLINE_PARSER_PACKAGE
"-"
1216 AUDIOD_CMDLINE_PARSER_VERSION
);
1217 printf_or_die("%s\n\n", audiod_args_info_usage
);
1219 printf_or_die("%s\n", *p
);
1220 print_receiver_helps(d
);
1221 print_filter_helps(d
);
1222 print_writer_helps(d
);
1226 static void init_colors_or_die(void)
1232 daemon_set_default_log_colors();
1233 daemon_set_flag(DF_COLOR_LOG
);
1234 for (i
= 0; i
< conf
.log_color_given
; i
++) {
1235 ret
= daemon_set_log_color(conf
.log_color_arg
[i
]);
1242 * the main function of para_audiod
1244 * \param argc usual argument count
1245 * \param argv usual argument vector
1247 * \return EXIT_SUCCESS or EXIT_FAILURE
1249 * \sa para_audiod(1)
1251 int main(int argc
, char *argv
[])
1254 static struct sched s
;
1255 struct command_task command_task_struct
, *cmd_task
= &command_task_struct
;
1256 struct audiod_cmdline_parser_params params
= {
1259 .check_required
= 0,
1260 .check_ambiguity
= 0,
1265 if (audiod_cmdline_parser_ext(argc
, argv
, &conf
, ¶ms
))
1267 HANDLE_VERSION_FLAG("audiod", conf
);
1268 /* init receivers/filters/writers early to make help work */
1272 if (conf
.help_given
|| conf
.detailed_help_given
)
1273 print_help_and_die();
1274 drop_privileges_or_die(conf
.user_arg
, conf
.group_arg
);
1275 parse_config_or_die();
1276 init_colors_or_die();
1277 init_random_seed_or_die();
1278 daemon_set_flag(DF_LOG_TIME
);
1279 daemon_set_flag(DF_LOG_HOSTNAME
);
1280 daemon_set_flag(DF_LOG_LL
);
1281 if (conf
.log_timing_given
)
1282 daemon_set_flag(DF_LOG_TIMING
);
1283 if (conf
.logfile_given
) {
1284 daemon_set_logfile(conf
.logfile_arg
);
1285 daemon_open_log_or_die();
1287 ret
= parse_stream_args();
1289 PARA_EMERG_LOG("%s\n", para_strerror(-ret
));
1292 log_welcome("para_audiod");
1293 server_uptime(UPTIME_SET
);
1294 set_initial_status();
1297 setup_signal_handling();
1298 signal_setup_default(sig_task
);
1300 init_status_task(stat_task
);
1301 init_command_task(cmd_task
);
1303 if (conf
.daemon_given
)
1306 register_task(&sig_task
->task
);
1307 register_task(&cmd_task
->task
);
1308 register_task(&stat_task
->task
);
1309 s
.default_timeout
.tv_sec
= 2;
1310 s
.default_timeout
.tv_usec
= 999 * 1000;
1313 PARA_EMERG_LOG("%s\n", para_strerror(-ret
));
1314 return EXIT_FAILURE
;