2 * Copyright (C) 2005-2007 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 */
13 #include "audiod.cmdline.h"
18 #include "grab_client.cmdline.h"
19 #include "grab_client.h"
20 #include "client.cmdline.h"
28 #include "write_common.h"
31 /** define the array of error lists needed by para_audiod */
33 /** define the array containing all supported audio formats */
34 const char *audio_formats
[] = {AUDIOD_AUDIO_FORMAT_ARRAY NULL
};
36 /** Defines how audiod handles one supported audio format. */
37 struct audio_format_info
{
38 /** pointer to the receiver for this audio format */
39 struct receiver
*receiver
;
40 /** the receiver configuration */
42 /** the number of filters that should be activated for this audio format */
43 unsigned int num_filters
;
44 /** pointer to the array of filters to be activated */
45 struct filter
**filters
;
46 /** pointer to the array of filter configurations */
48 /** the number of filters that should be activated for this audio format */
49 unsigned int num_writers
;
50 /** pointer to the array of writers to be activated */
51 struct writer
**writers
;
52 /** pointer to the array of writer configurations */
54 /** do not start receiver/filters/writer before this time */
55 struct timeval restart_barrier
;
59 * para_audiod uses \p MAX_STREAM_SLOTS different slots, each of which may
60 * be associated with a receiver/filter/writer triple. This array holds all
61 * information on the status of these slots.
63 * \sa struct slot_info
65 struct slot_info slot
[MAX_STREAM_SLOTS
];
69 * the current mode of operation of which can be changed by the on/off/cycle
70 * commands. It is either, AUDIOD_OFF, AUDIOD_ON or AUDIOD_STANDBY.
72 int audiod_status
= AUDIOD_ON
;
75 * the gengetopt args_info struct that holds information on all command line
78 struct audiod_args_info conf
;
80 static char *socket_name
;
82 static struct audio_format_info afi
[NUM_AUDIO_FORMATS
];
84 static struct signal_task signal_task_struct
, *sig_task
= &signal_task_struct
;
86 static struct status_task status_task_struct
;
89 * the task that calls the status command of para_server
91 * \sa struct status_task
93 struct status_task
*stat_task
= &status_task_struct
;
94 static struct timeval initial_delay_barrier
;
97 * the task for handling audiod commands
99 * \sa struct task, struct sched
101 struct command_task
{
102 /** the local listening socket */
104 /** the associated task structure */
108 /** iterate over all supported audio formats */
109 #define FOR_EACH_AUDIO_FORMAT(af) for (af = 0; af < NUM_AUDIO_FORMATS; af++)
112 * get the audio format number
113 * \param name the name of the audio format
115 * \return The audio format number on success, -E_UNSUPPORTED_AUDIO_FORMAT if
116 * \a name is not a supported audio format.
118 int get_audio_format_num(char *name
)
122 while (isspace(*name
))
124 FOR_EACH_AUDIO_FORMAT(i
)
125 if (!strcmp(name
, audio_formats
[i
]))
127 return -E_UNSUPPORTED_AUDIO_FORMAT
;
131 * the log function of para_audiod
134 * \param fmt the format string
136 void para_log(int ll
, const char* fmt
,...)
142 char str
[MAXLINE
] = "";
143 static char *hostname
;
145 if (ll
< conf
.loglevel_arg
)
148 hostname
= para_hostname();
149 outfd
= logfile
? logfile
: stderr
;
152 strftime(str
, MAXLINE
, "%b %d %H:%M:%S", tm
);
153 fprintf(outfd
, "%s %s ", str
, hostname
);
154 if (conf
.loglevel_arg
<= INFO
)
155 fprintf(outfd
, "%i ", ll
);
157 vfprintf(outfd
, fmt
, argp
);
161 static char *configfile_exists(void)
163 char *home
= para_homedir();
164 char *config_file
= make_message("%s/.paraslash/audiod.conf",
167 if (file_exists(config_file
))
173 static void setup_signal_handling(void)
175 sig_task
->fd
= para_signal_init();
176 PARA_INFO_LOG("signal pipe: fd %d\n", sig_task
->fd
);
177 para_install_sighandler(SIGINT
);
178 para_install_sighandler(SIGTERM
);
179 para_install_sighandler(SIGHUP
);
180 signal(SIGPIPE
, SIG_IGN
);
183 static void clear_slot(int slot_num
)
185 struct slot_info
*s
= &slot
[slot_num
];
187 PARA_INFO_LOG("clearing slot %d\n", slot_num
);
188 memset(s
, 0, sizeof(struct slot_info
));
192 static void close_receiver(int slot_num
)
194 struct slot_info
*s
= &slot
[slot_num
];
195 struct audio_format_info
*a
;
197 if (s
->format
< 0 || !s
->receiver_node
)
200 PARA_NOTICE_LOG("closing %s receiver in slot %d (eof = %d)\n",
201 audio_formats
[s
->format
] , slot_num
, s
->receiver_node
->eof
);
202 a
->receiver
->close(s
->receiver_node
);
203 free(s
->receiver_node
);
204 s
->receiver_node
= NULL
;
207 static void kill_all_decoders(void)
212 struct slot_info
*s
= &slot
[i
];
213 if (s
->wng
&& !s
->wng
->eof
) {
214 PARA_INFO_LOG("unregistering writer node group in slot %d\n",
216 wng_unregister(s
->wng
);
219 if (s
->fc
&& !s
->fc
->eof
) {
220 PARA_INFO_LOG("unregistering filter chain in slot %d\n", i
);
221 unregister_task(&s
->fc
->task
);
224 if (s
->receiver_node
&& !s
->receiver_node
->eof
) {
225 PARA_INFO_LOG("unregistering receiver_node in slot %d\n", i
);
226 unregister_task(&s
->receiver_node
->task
);
227 s
->receiver_node
->eof
= 1;
232 static int get_empty_slot(void)
243 if (s
->wng
|| s
->receiver_node
|| s
->fc
)
248 return -E_NO_MORE_SLOTS
;
252 * get the number of filters
254 * \param audio_format_num the number identifying the audio format
256 * \return the number of filters for the given audio format
260 int num_filters(int audio_format_num
)
262 return afi
[audio_format_num
].num_filters
;
265 static void filter_event_handler(struct task
*t
)
267 PARA_NOTICE_LOG("%s\n", PARA_STRERROR(-t
->ret
));
268 struct filter_chain
*fc
= t
->private_data
;
273 static void open_filters(int slot_num
)
275 struct slot_info
*s
= &slot
[slot_num
];
276 struct audio_format_info
*a
= &afi
[s
->format
];
277 int nf
= a
->num_filters
;
283 PARA_INFO_LOG("opening %s filters\n", audio_formats
[s
->format
]);
284 s
->fc
= para_calloc(sizeof(struct filter_chain
));
285 INIT_LIST_HEAD(&s
->fc
->filters
);
286 s
->fc
->inbuf
= s
->receiver_node
->buf
;
287 s
->fc
->in_loaded
= &s
->receiver_node
->loaded
;
288 s
->fc
->input_eof
= &s
->receiver_node
->eof
;
289 s
->fc
->task
.pre_select
= filter_pre_select
;
290 s
->fc
->task
.event_handler
= filter_event_handler
;
291 s
->fc
->task
.private_data
= s
->fc
;
294 s
->receiver_node
->output_eof
= &s
->fc
->eof
;
295 sprintf(s
->fc
->task
.status
, "filter chain");
296 for (i
= 0; i
< nf
; i
++) {
297 struct filter_node
*fn
= para_calloc(sizeof(struct filter_node
));
298 fn
->conf
= a
->filter_conf
[i
];
300 fn
->filter
= a
->filters
[i
];
301 INIT_LIST_HEAD(&fn
->callbacks
);
302 list_add_tail(&fn
->node
, &s
->fc
->filters
);
303 fn
->filter
->open(fn
);
304 PARA_NOTICE_LOG("%s filter %d/%d (%s) started in slot %d\n",
305 audio_formats
[s
->format
], i
+ 1, nf
,
306 fn
->filter
->name
, slot_num
);
307 s
->fc
->outbuf
= fn
->buf
;
308 s
->fc
->out_loaded
= &fn
->loaded
;
310 register_task(&s
->fc
->task
);
313 static void wng_event_handler(struct task
*t
)
315 struct writer_node_group
*wng
= t
->private_data
;
317 PARA_INFO_LOG("%s\n", PARA_STRERROR(-t
->ret
));
322 static void open_writers(int slot_num
)
325 struct slot_info
*s
= &slot
[slot_num
];
326 struct audio_format_info
*a
= &afi
[s
->format
];
328 PARA_INFO_LOG("opening %s writers\n", audio_formats
[s
->format
]);
330 s
->wng
= setup_default_wng();
332 s
->wng
= wng_new(a
->num_writers
);
334 s
->wng
->buf
= s
->fc
->outbuf
;
335 s
->wng
->loaded
= s
->fc
->out_loaded
;
336 s
->wng
->input_eof
= &s
->fc
->eof
;
337 s
->wng
->channels
= &s
->fc
->channels
;
338 s
->wng
->samplerate
= &s
->fc
->samplerate
;
339 s
->fc
->output_eof
= &s
->wng
->eof
;
340 PARA_INFO_LOG("samplerate: %d\n", *s
->wng
->samplerate
);
342 s
->wng
->buf
= s
->receiver_node
->buf
;
343 s
->wng
->loaded
= &s
->receiver_node
->loaded
;
344 s
->wng
->input_eof
= &s
->receiver_node
->eof
;
346 s
->wng
->task
.event_handler
= wng_event_handler
;
347 for (i
= 0; i
< a
->num_writers
; i
++) {
348 s
->wng
->writer_nodes
[i
].conf
= a
->writer_conf
[i
];
349 s
->wng
->writer_nodes
[i
].writer
= a
->writers
[i
];
351 ret
= wng_open(s
->wng
);
353 PARA_ERROR_LOG("%s\n", PARA_STRERROR(-ret
));
357 activate_inactive_grab_clients(slot_num
, s
->format
, &s
->fc
->filters
);
360 static void rn_event_handler(struct task
*t
)
362 struct receiver_node
*rn
= t
->private_data
;
363 const struct timeval restart_delay
= {0, 10 * 1000};
366 PARA_NOTICE_LOG("%s\n", PARA_STRERROR(-t
->ret
));
369 /* set restart barrier */
371 if (slot
[i
].receiver_node
!= rn
)
373 tv_add(now
, &restart_delay
, &afi
[slot
[i
].format
].restart_barrier
);
377 static int open_receiver(int format
)
379 struct audio_format_info
*a
= &afi
[format
];
382 struct receiver_node
*rn
;
383 const struct timeval restart_delay
= {1, 0};
385 ret
= get_empty_slot();
391 s
->receiver_node
= para_calloc(sizeof(struct receiver_node
));
392 rn
= s
->receiver_node
;
393 rn
->receiver
= a
->receiver
;
394 rn
->conf
= a
->receiver_conf
;
395 ret
= a
->receiver
->open(s
->receiver_node
);
397 free(s
->receiver_node
);
398 s
->receiver_node
= NULL
;
401 PARA_NOTICE_LOG("started %s: %s receiver in slot %d\n",
402 audio_formats
[s
->format
], a
->receiver
->name
, slot_num
);
403 rn
->task
.private_data
= s
->receiver_node
;
404 rn
->task
.pre_select
= a
->receiver
->pre_select
;
405 rn
->task
.post_select
= a
->receiver
->post_select
;
406 rn
->task
.event_handler
= rn_event_handler
;
407 sprintf(rn
->task
.status
, "%s receiver node", rn
->receiver
->name
);
408 register_task(&rn
->task
);
411 PARA_ERROR_LOG("%s\n", PARA_STRERROR(-ret
));
412 tv_add(now
, &restart_delay
, &afi
[format
].restart_barrier
);
416 static int receiver_running(int format
)
421 struct slot_info
*s
= &slot
[i
];
422 if (s
->format
== format
&& s
->receiver_node
423 && !s
->receiver_node
->eof
)
429 static int open_current_receiver(struct sched
*s
)
433 char *audio_format
= stat_task
->stat_item_values
[SI_FORMAT
];
435 if (!audio_format
|| !stat_task
->pcd
)
437 i
= get_audio_format_num(audio_format
+ strlen(
438 status_item_list
[SI_FORMAT
]) + 1);
441 if (receiver_running(i
))
443 if (tv_diff(now
, &afi
[i
].restart_barrier
, &diff
) < 0) {
447 return open_receiver(i
) < 0? 0 : 1;
450 static unsigned compute_time_diff(const struct timeval
*status_time
)
452 struct timeval tmp
, diff
;
453 static unsigned count
;
454 int sign
, sa_time_diff_sign
= stat_task
->sa_time_diff_sign
;
455 const struct timeval max_deviation
= {0, 500 * 1000};
456 const int time_smooth
= 5;
460 sign
= tv_diff(status_time
, now
, &diff
);
461 // PARA_NOTICE_LOG("%s: sign = %i, sa_time_diff_sign = %i\n", __func__,
462 // sign, sa_time_diff_sign);
464 sa_time_diff_sign
= sign
;
465 stat_task
->sa_time_diff
= diff
;
470 int s
= tv_diff(&diff
, &stat_task
->sa_time_diff
, &tmp
);
471 if (tv_diff(&max_deviation
, &tmp
, NULL
) < 0)
472 PARA_WARNING_LOG("time diff jump: %lims\n",
476 sa_time_diff_sign
= tv_convex_combination(
477 sa_time_diff_sign
* time_smooth
, &stat_task
->sa_time_diff
,
478 count
> 10? sign
: sign
* time_smooth
, &diff
,
480 stat_task
->sa_time_diff
= tmp
;
481 PARA_INFO_LOG("time diff (cur/avg): %s%lums/%s%lums\n",
484 sa_time_diff_sign
? "+" : "-",
485 tv2ms(&stat_task
->sa_time_diff
)
488 stat_task
->sa_time_diff_sign
= sa_time_diff_sign
;
492 static int check_stat_line(char *line
, __a_unused
void *data
)
496 long unsigned sec
, usec
;
499 // PARA_INFO_LOG("line: %s\n", line);
502 itemnum
= stat_line_valid(line
);
504 PARA_WARNING_LOG("invalid status line: %s\n", line
);
507 if (stat_task
->clock_diff_count
&& itemnum
!= SI_CURRENT_TIME
)
509 tmp
= make_message("%s\n", line
);
510 stat_client_write(tmp
, itemnum
);
512 free(stat_task
->stat_item_values
[itemnum
]);
513 stat_task
->stat_item_values
[itemnum
] = para_strdup(line
);
514 ilen
= strlen(status_item_list
[itemnum
]);
517 stat_task
->playing
= strstr(line
, "playing")? 1 : 0;
520 stat_task
->offset_seconds
= atoi(line
+ ilen
+ 1);
523 stat_task
->length_seconds
= atoi(line
+ ilen
+ 1);
525 case SI_STREAM_START
:
526 if (sscanf(line
+ ilen
+ 1, "%lu.%lu", &sec
, &usec
) == 2) {
527 struct timeval a_start
, delay
;
528 delay
.tv_sec
= conf
.stream_delay_arg
/ 1000;
529 delay
.tv_usec
= (conf
.stream_delay_arg
% 1000) * 1000;
530 stat_task
->server_stream_start
.tv_sec
= sec
;
531 stat_task
->server_stream_start
.tv_usec
= usec
;
532 if (compute_time_diff(NULL
) > 2) {
533 if (stat_task
->sa_time_diff_sign
< 0)
534 tv_add(&stat_task
->server_stream_start
,
535 &stat_task
->sa_time_diff
, &a_start
);
537 tv_diff(&stat_task
->server_stream_start
,
538 &stat_task
->sa_time_diff
, &a_start
);
539 tv_add(&a_start
, &delay
, &initial_delay_barrier
);
543 case SI_CURRENT_TIME
:
544 if (sscanf(line
+ ilen
+ 1, "%lu.%lu", &sec
, &usec
) == 2) {
545 struct timeval tv
= {sec
, usec
};
546 compute_time_diff(&tv
);
548 if (stat_task
->clock_diff_count
)
549 stat_task
->clock_diff_count
--;
555 static void try_to_close_slot(int slot_num
)
557 struct slot_info
*s
= &slot
[slot_num
];
561 if (s
->receiver_node
&& !s
->receiver_node
->eof
)
563 if (s
->fc
&& !s
->fc
->eof
)
565 if (s
->wng
&& !s
->wng
->eof
)
567 PARA_INFO_LOG("closing slot %d \n", slot_num
);
569 close_filters(s
->fc
);
571 close_receiver(slot_num
);
572 clear_slot(slot_num
);
576 * Check if any receivers/filters/writers need to be started and do so if
577 * necessary. Since the pre_select function didn't have a chance yet to put
578 * file descriptors into the fd sets given by s, make the upcoming select()
579 * return immediately to avoid a long timeout in case we started something.
581 static void audiod_pre_select(struct sched
*s
, __a_unused
struct task
*t
)
584 struct timeval min_delay
= {0, 1};
587 if (audiod_status
!= AUDIOD_ON
|| !stat_task
->playing
)
588 return kill_all_decoders();
589 if (open_current_receiver(s
))
590 s
->timeout
= min_delay
;
592 struct slot_info
*sl
= &slot
[i
];
593 struct audio_format_info
*a
;
598 a
= &afi
[sl
->format
];
599 if (!sl
->receiver_node
)
601 if (!a
->num_filters
) {
602 if (sl
->receiver_node
->loaded
&& !sl
->wng
) {
604 s
->timeout
= min_delay
;
608 if (sl
->receiver_node
->loaded
&& !sl
->fc
) {
610 s
->timeout
= min_delay
;
613 if (!sl
->fc
|| !*sl
->fc
->out_loaded
|| sl
->wng
)
615 if (tv_diff(now
, &initial_delay_barrier
, &diff
) > 0) {
617 s
->timeout
= min_delay
;
620 PARA_INFO_LOG("initial delay: %lu ms left\n", tv2ms(&diff
));
621 if (tv_diff(&s
->timeout
, &diff
, NULL
) > 0) {
627 static void audiod_post_select(__a_unused
struct sched
*s
,
628 __a_unused
struct task
*t
)
634 try_to_close_slot(i
);
637 static void init_audiod_task(struct task
*t
)
639 t
->pre_select
= audiod_pre_select
;
640 t
->post_select
= audiod_post_select
;
641 t
->event_handler
= NULL
;
643 sprintf(t
->status
, "audiod task");
646 static int parse_stream_command(const char *txt
, char **cmd
)
648 char *p
= strchr(txt
, ':');
652 return -E_MISSING_COLON
;
654 FOR_EACH_AUDIO_FORMAT(i
) {
655 if (strncmp(txt
, audio_formats
[i
], strlen(audio_formats
[i
])))
660 return -E_UNSUPPORTED_AUDIO_FORMAT
;
663 static int add_filter(int format
, char *cmdline
)
665 struct audio_format_info
*a
= &afi
[format
];
666 int filter_num
, nf
= a
->num_filters
;
668 filter_num
= check_filter_arg(cmdline
, &a
->filter_conf
[nf
]);
671 a
->filters
[nf
] = &filters
[filter_num
];
673 PARA_INFO_LOG("%s filter %d: %s\n", audio_formats
[format
], nf
+ 1,
674 a
->filters
[nf
]->name
);
678 static int init_writers(void)
682 struct audio_format_info
*a
;
684 init_supported_writers();
685 nw
= PARA_MAX(1, conf
.writer_given
);
686 PARA_INFO_LOG("maximal number of writers: %d\n", nw
);
687 FOR_EACH_AUDIO_FORMAT(i
) {
689 a
->writer_conf
= para_malloc(nw
* sizeof(void *));
690 a
->writers
= para_malloc(nw
* sizeof(struct writer
*));
693 for (i
= 0; i
< conf
.writer_given
; i
++) {
696 ret
= parse_stream_command(conf
.writer_arg
[i
], &cmd
);
701 wconf
= check_writer_arg(cmd
, &writer_num
);
706 a
->writers
[nw
] = &writers
[writer_num
];
707 a
->writer_conf
[nw
] = wconf
;
708 PARA_INFO_LOG("%s writer #%d: %s\n", audio_formats
[ret
],
709 nw
, writer_names
[writer_num
]);
717 static int init_receivers(void)
719 int i
, ret
, receiver_num
;
721 struct audio_format_info
*a
;
723 for (i
= 0; receivers
[i
].name
; i
++) {
724 PARA_INFO_LOG("initializing %s receiver\n", receivers
[i
].name
);
725 receivers
[i
].init(&receivers
[i
]);
727 for (i
= conf
.receiver_given
- 1; i
>= 0; i
--) {
728 char *arg
= conf
.receiver_arg
[i
];
729 char *recv_arg
= strchr(arg
, ':');
730 ret
= -E_MISSING_COLON
;
735 ret
= get_audio_format_num(arg
);
738 afi
[ret
].receiver_conf
= check_receiver_arg(recv_arg
, &receiver_num
);
739 if (!afi
[ret
].receiver_conf
) {
740 ret
= -E_RECV_SYNTAX
;
743 afi
[ret
].receiver
= &receivers
[receiver_num
];
745 /* use the first available receiver with no arguments
746 * for those audio formats for which no receiver
749 cmd
= para_strdup(receivers
[0].name
);
750 FOR_EACH_AUDIO_FORMAT(i
) {
752 if (a
->receiver_conf
)
754 a
->receiver_conf
= check_receiver_arg(cmd
, &receiver_num
);
755 if (!a
->receiver_conf
)
756 return -E_RECV_SYNTAX
;
757 a
->receiver
= &receivers
[receiver_num
];
765 static int init_default_filters(void)
769 FOR_EACH_AUDIO_FORMAT(i
) {
770 struct audio_format_info
*a
= &afi
[i
];
775 continue; /* no default -- nothing to to */
776 /* add "dec" to audio format name */
777 tmp
= make_message("%sdec", audio_formats
[i
]);
778 for (j
= 0; filters
[j
].name
; j
++)
779 if (!strcmp(tmp
, filters
[j
].name
))
782 ret
= -E_UNSUPPORTED_FILTER
;
783 if (!filters
[j
].name
)
785 tmp
= para_strdup(filters
[j
].name
);
786 ret
= add_filter(i
, tmp
);
790 PARA_INFO_LOG("%s -> default filter: %s\n", audio_formats
[i
],
797 static int init_filters(void)
801 filter_init(filters
);
802 nf
= PARA_MAX(1, conf
.filter_given
);
803 PARA_INFO_LOG("maximal number of filters: %d\n", nf
);
804 FOR_EACH_AUDIO_FORMAT(i
) {
805 afi
[i
].filter_conf
= para_malloc(nf
* sizeof(void *));
806 afi
[i
].filters
= para_malloc(nf
* sizeof(struct filter
*));
808 if (!conf
.no_default_filters_given
)
809 return init_default_filters();
810 for (i
= 0; i
< conf
.filter_given
; i
++) {
811 char *arg
= conf
.filter_arg
[i
];
812 char *filter_name
= strchr(arg
, ':');
813 ret
= -E_MISSING_COLON
;
818 ret
= get_audio_format_num(arg
);
821 ret
= add_filter(ret
, filter_name
);
825 ret
= init_default_filters(); /* use default values for the rest */
830 static int init_stream_io(void)
834 ret
= init_writers();
837 ret
= init_receivers();
840 ret
= init_filters();
846 static int audiod_get_socket(void)
848 struct sockaddr_un unix_addr
;
851 if (conf
.socket_given
)
852 socket_name
= para_strdup(conf
.socket_arg
);
854 char *hn
= para_hostname();
855 socket_name
= make_message("/var/paraslash/audiod_socket.%s",
859 PARA_NOTICE_LOG("local socket: %s\n", socket_name
);
860 if (conf
.force_given
)
862 fd
= create_local_socket(socket_name
, &unix_addr
,
863 S_IRUSR
| S_IWUSR
| S_IRGRP
| S_IWGRP
| S_IWOTH
);
865 PARA_EMERG_LOG("can not connect to socket\n");
866 exit(EXIT_FAILURE
); /* do not unlink socket */
868 if (listen(fd
, 5) < 0) {
869 PARA_EMERG_LOG("can not listen on socket\n");
870 exit(EXIT_FAILURE
); /* do not unlink socket */
872 mark_fd_nonblock(fd
);
876 static void signal_event_handler(struct task
*t
)
878 struct signal_task
*st
= t
->private_data
;
880 switch (st
->signum
) {
884 PARA_EMERG_LOG("terminating on signal %d\n", st
->signum
);
885 clean_exit(EXIT_FAILURE
, "caught deadly signal");
889 static void signal_pre_select(struct sched
*s
, struct task
*t
)
891 struct signal_task
*st
= t
->private_data
;
893 para_fd_set(st
->fd
, &s
->rfds
, &s
->max_fileno
);
896 static void signal_post_select(struct sched
*s
, struct task
*t
)
898 struct signal_task
*st
= t
->private_data
;
900 if (!FD_ISSET(st
->fd
, &s
->rfds
))
902 t
->ret
= -E_SIGNAL_CAUGHT
;
903 st
->signum
= para_next_signal();
906 static void signal_setup_default(struct signal_task
*st
)
908 st
->task
.pre_select
= signal_pre_select
;
909 st
->task
.post_select
= signal_post_select
;
910 st
->task
.private_data
= st
;
911 sprintf(st
->task
.status
, "signal task");
914 static void command_pre_select(struct sched
*s
, struct task
*t
)
916 struct command_task
*ct
= t
->private_data
;
918 para_fd_set(ct
->fd
, &s
->rfds
, &s
->max_fileno
);
922 static void command_post_select(struct sched
*s
, struct task
*t
)
925 struct command_task
*ct
= t
->private_data
;
927 t
->ret
= 1; /* always successful */
928 audiod_status_dump();
929 if (!FD_ISSET(ct
->fd
, &s
->rfds
))
931 ret
= handle_connect(ct
->fd
);
933 PARA_ERROR_LOG("%s\n", PARA_STRERROR(-ret
));
936 static void init_command_task(struct command_task
*ct
)
938 ct
->task
.pre_select
= command_pre_select
;
939 ct
->task
.post_select
= command_post_select
;
940 ct
->task
.event_handler
= NULL
;
941 ct
->task
.private_data
= ct
;
942 ct
->fd
= audiod_get_socket(); /* doesn't return on errors */
943 sprintf(ct
->task
.status
, "command task");
946 static void close_stat_pipe(void)
952 client_close(stat_task
->pcd
);
953 stat_task
->pcd
= NULL
;
954 for (i
= 0; i
< NUM_STAT_ITEMS
; i
++) {
955 free(stat_task
->stat_item_values
[i
]);
956 stat_task
->stat_item_values
[i
] = NULL
;
959 stat_task
->length_seconds
= 0;
960 stat_task
->offset_seconds
= 0;
961 audiod_status_dump();
962 stat_task
->playing
= 0;
963 stat_task
->stat_item_values
[SI_BASENAME
] = make_message(
964 "%s:no connection to para_server\n",
965 status_item_list
[SI_BASENAME
]);
966 stat_client_write(stat_task
->stat_item_values
[SI_BASENAME
],
968 if (stat_task
->clock_diff_count
) {
969 stat_task
->clock_diff_barrier
.tv_sec
= now
->tv_sec
+ 1;
970 stat_task
->clock_diff_barrier
.tv_usec
= now
->tv_usec
;
975 * close the connection to para_server and exit
977 * \param status the exit status which is passed to exit(3)
978 * \param msg the log message
980 * Log \a msg with loglevel \p EMERG, close the connection to para_server if
981 * open, and call \p exit(status). \a status should be either EXIT_SUCCESS or
986 void __noreturn
clean_exit(int status
, const char *msg
)
988 PARA_EMERG_LOG("%s\n", msg
);
995 /* avoid busy loop if server is down */
996 static void set_stat_task_restart_barrier(void)
998 struct timeval delay
= {5, 0};
999 tv_add(now
, &delay
, &stat_task
->restart_barrier
);
1002 static void client_task_event_handler(__a_unused
struct task
*t
)
1006 if (t
->ret
== -E_HANDSHAKE_COMPLETE
)
1010 if (t
->ret
!= -E_SERVER_EOF
)
1011 stat_task
->clock_diff_count
= conf
.clock_diff_count_arg
;
1012 set_stat_task_restart_barrier();
1013 FOR_EACH_AUDIO_FORMAT(i
)
1014 afi
[i
].restart_barrier
= stat_task
->restart_barrier
;
1017 static void status_pre_select(struct sched
*s
, struct task
*t
)
1019 struct status_task
*st
= t
->private_data
;
1022 t
->ret
= 1; /* always successful */
1023 if (st
->pcd
|| audiod_status
== AUDIOD_OFF
)
1025 if (!st
->clock_diff_count
&& tv_diff(now
, &st
->restart_barrier
, NULL
)
1028 if (st
->clock_diff_count
) {
1029 char *argv
[] = {"audiod", "stat", "1", NULL
};
1031 if (tv_diff(now
, &st
->clock_diff_barrier
, NULL
) < 0)
1033 PARA_INFO_LOG("clock diff count: %d\n", st
->clock_diff_count
);
1034 ret
= client_open(argc
, argv
, &st
->pcd
);
1037 char *argv
[] = {"audiod", "stat", NULL
};
1039 ret
= client_open(argc
, argv
, &st
->pcd
);
1041 set_stat_task_restart_barrier();
1044 st
->pcd
->task
.event_handler
= client_task_event_handler
;
1045 s
->timeout
.tv_sec
= 0;
1046 s
->timeout
.tv_usec
= 1;
1049 static void status_post_select(__a_unused
struct sched
*s
, struct task
*t
)
1051 struct status_task
*st
= t
->private_data
;
1052 unsigned bytes_left
;
1055 if (!st
->pcd
|| st
->pcd
->status
!= CL_RECEIVING
)
1057 if (st
->pcd
&& audiod_status
== AUDIOD_OFF
) {
1058 unregister_task(&st
->pcd
->task
);
1060 st
->clock_diff_count
= conf
.clock_diff_count_arg
;
1063 bytes_left
= for_each_line(st
->pcd
->buf
, st
->pcd
->loaded
,
1064 &check_stat_line
, NULL
);
1065 if (st
->pcd
->loaded
!= bytes_left
) {
1066 st
->last_status_read
= *now
;
1067 st
->pcd
->loaded
= bytes_left
;
1069 struct timeval diff
;
1070 tv_diff(now
, &st
->last_status_read
, &diff
);
1071 if (diff
.tv_sec
> 61)
1076 static void init_status_task(struct status_task
*st
)
1078 memset(st
, 0, sizeof(struct status_task
));
1079 st
->task
.pre_select
= status_pre_select
;
1080 st
->task
.post_select
= status_post_select
;
1081 st
->task
.private_data
= st
;
1082 st
->sa_time_diff_sign
= 1;
1083 st
->clock_diff_count
= conf
.clock_diff_count_arg
;
1084 sprintf(st
->task
.status
, "status task");
1087 static void set_initial_status(void)
1089 audiod_status
= AUDIOD_ON
;
1090 if (!conf
.mode_given
)
1092 if (!strcmp(conf
.mode_arg
, "sb")) {
1093 audiod_status
= AUDIOD_STANDBY
;
1096 if (!strcmp(conf
.mode_arg
, "off")) {
1097 audiod_status
= AUDIOD_OFF
;
1100 if (strcmp(conf
.mode_arg
, "on"))
1101 PARA_WARNING_LOG("%s", "invalid mode\n");
1105 * the main function of para_audiod
1107 * \param argc usual argument count
1108 * \param argv usual argument vector
1110 * \return EXIT_SUCCESS or EXIT_FAILURE
1112 * \sa para_audiod(1)
1114 int main(int argc
, char *argv
[])
1119 struct command_task command_task_struct
, *cmd_task
= &command_task_struct
;
1120 struct task audiod_task_struct
, *audiod_task
= &audiod_task_struct
;
1123 audiod_cmdline_parser(argc
, argv
, &conf
);
1124 HANDLE_VERSION_FLAG("audiod", conf
);
1125 para_drop_privileges(conf
.user_arg
, conf
.group_arg
);
1126 config_file
= configfile_exists();
1128 struct audiod_cmdline_parser_params params
= {
1131 .check_required
= 0,
1132 .check_ambiguity
= 0
1135 if (audiod_cmdline_parser_config_file(config_file
, &conf
, ¶ms
)) {
1136 PARA_EMERG_LOG("%s", "parse error in config file\n");
1141 if (conf
.logfile_given
)
1142 logfile
= open_log(conf
.logfile_arg
);
1143 log_welcome("para_audiod", conf
.loglevel_arg
);
1144 i
= init_stream_io();
1146 PARA_EMERG_LOG("init stream io error: %s\n", PARA_STRERROR(-i
));
1149 server_uptime(UPTIME_SET
);
1150 set_initial_status();
1154 setup_signal_handling();
1155 signal_setup_default(sig_task
);
1156 sig_task
->task
.event_handler
= signal_event_handler
;
1158 init_status_task(stat_task
);
1159 init_command_task(cmd_task
);
1160 init_audiod_task(audiod_task
);
1162 if (conf
.daemon_given
)
1165 register_task(&sig_task
->task
);
1166 register_task(&cmd_task
->task
);
1167 register_task(&stat_task
->task
);
1168 register_task(audiod_task
);
1169 s
.default_timeout
.tv_sec
= 0;
1170 s
.default_timeout
.tv_usec
= 99 * 1000;
1173 PARA_EMERG_LOG("%s\n", PARA_STRERROR(-ret
));
1174 return EXIT_FAILURE
;