X-Git-Url: http://git.tuebingen.mpg.de/?p=paraslash.git;a=blobdiff_plain;f=audiod.c;h=2bda0f69b4fc047e81f191f690682ecdb3b52db5;hp=a6408d87f79cc6d17aff487af2539d68441a6391;hb=5ec0d9ef2189e22b3ee80f661196b6ae0593a525;hpb=decf72f578ef0cb7a3bc3a81834ef64c2b19c91f diff --git a/audiod.c b/audiod.c index a6408d87..2bda0f69 100644 --- a/audiod.c +++ b/audiod.c @@ -196,13 +196,25 @@ char *get_time_string(int slot_num) } if (audiod_status == AUDIOD_ON && !s) goto empty; - /* valid status items and playing */ + /* + * Valid status items and playing, set length and tmp to the stream + * start. We use the slot info and fall back to the info from current + * status items if no slot info is available. + */ + length = stat_task->length_seconds; + tmp = &stat_task->server_stream_start; if (s && s->wns) { /* writer active in this slot */ - length = s->seconds_total; - tmp = &s->server_stream_start; - } else { /* standby mode, rely on status items */ - length = stat_task->length_seconds; - tmp = &stat_task->server_stream_start; + btr_get_node_start(s->wns[0].btrn, &wstime); + if (wstime.tv_sec != 0) { /* writer wrote something */ + if (s->server_stream_start.tv_sec == 0) { + /* copy status info to slot */ + s->server_stream_start = stat_task->server_stream_start; + s->offset_seconds = stat_task->offset_seconds; + s->seconds_total = stat_task->length_seconds; + } + length = s->seconds_total; + tmp = &s->server_stream_start; + } } if (stat_task->sa_time_diff_sign > 0) tv_diff(tmp, &stat_task->sa_time_diff, &sss); @@ -214,7 +226,6 @@ char *get_time_string(int slot_num) seconds = diff.tv_sec + stat_task->offset_seconds; goto out; } - btr_get_node_start(s->wns[0].btrn, &wstime); tv_diff(now, &wstime, &wtime); //PARA_CRIT_LOG("offset %d\n", s->offset_seconds); seconds = s->offset_seconds; @@ -329,8 +340,12 @@ static void close_receiver(int slot_num) static void writer_cleanup(struct writer_node *wn) { - struct writer *w = writers + wn->writer_num; + struct writer *w; + if (!wn) + return; + w = writers + wn->writer_num; + PARA_INFO_LOG("closing %s\n", writer_names[wn->writer_num]); w->close(wn); btr_free_node(wn->btrn); } @@ -353,7 +368,7 @@ static void close_writers(struct slot_info *s) s->wns = NULL; } -static void _close_filters(struct slot_info *s) +static void close_filters(struct slot_info *s) { int i; struct audio_format_info *a = afi + s->format; @@ -361,15 +376,33 @@ static void _close_filters(struct slot_info *s) return; for (i = 0; i < a->num_filters; i++) { struct filter_node *fn = s->fns + i; - struct filter *f = filters + fn->filter_num; + struct filter *f; - f->close(fn); + if (!fn) + continue; + f = filters + fn->filter_num; + if (f->close) + f->close(fn); btr_free_node(fn->btrn); } free(s->fns); s->fns = NULL; } +/* + * Whenever a task commits suicide by returning from post_select with t->error + * < 0, it also removes its btr node. We do exactly that to kill a running + * task. Note that the scheduler checks t->error also _before_ each pre/post + * select call, so the victim will never be scheduled again. + */ +static void kill_btrn(struct btr_node *btrn, struct task *t, int error) +{ + if (t->error < 0) + return; + t->error = error; + btr_remove_node(btrn); +} + static void kill_all_decoders(int error) { int i, j; @@ -382,12 +415,13 @@ static void kill_all_decoders(int error) a = afi + s->format; if (s->wns) for (j = 0; j < a->num_writers; j++) - s->wns[j].task.error = error; + kill_btrn(s->wns[j].btrn, &s->wns[j].task, error); if (s->fns) for (j = 0; j < a->num_writers; j++) - s->fns[j].task.error = error; + kill_btrn(s->fns[j].btrn, &s->wns[j].task, error); if (s->receiver_node) - s->receiver_node->task.error = error; + kill_btrn(s->receiver_node->btrn, &s->receiver_node->task, + error); } } @@ -445,7 +479,11 @@ static void open_filters(struct slot_info *s) fn->conf = a->filter_conf[i]; fn->task.pre_select = f->pre_select; fn->task.post_select = f->post_select; - fn->btrn = btr_new_node(f->name, parent, f->execute, fn); + + fn->btrn = btr_new_node(&(struct btr_node_description) + EMBRACE(.name = f->name, .parent = parent, + .handler = f->execute, .context = fn)); + f->open(fn); register_task(&fn->task); parent = fn->btrn; @@ -476,10 +514,6 @@ static void open_writers(struct slot_info *s) register_writer_node(wn, parent); } } - s->server_stream_start = stat_task->server_stream_start.tv_sec? - stat_task->server_stream_start : *now; - s->offset_seconds = stat_task->offset_seconds; - s->seconds_total = stat_task->length_seconds; } /* returns slot num on success */ @@ -502,7 +536,8 @@ static int open_receiver(int format) rn = s->receiver_node; rn->receiver = r; rn->conf = a->receiver_conf; - rn->btrn = btr_new_node(r->name, NULL, NULL, rn); + rn->btrn = btr_new_node(&(struct btr_node_description) + EMBRACE(.name = r->name, .context = rn)); ret = r->open(rn); if (ret < 0) { btr_free_node(rn->btrn); @@ -586,12 +621,14 @@ static int open_current_receiver(struct sched *s) * this period begins to avoid restarting the receiver that * belongs to the file just completed. */ - if (stat_task->server_stream_start.tv_sec != 0) + if (stat_task->server_stream_start.tv_sec != 0) { sched_request_timeout_ms(100, s); + return -1; + } } if (tv_diff(now, &afi[cafn].restart_barrier, &diff) < 0) { if (tv_diff(&s->timeout, &diff, NULL) > 0) - s->timeout = diff; + sched_request_timeout(&diff, s); else sched_min_delay(s); return -1; @@ -1045,12 +1082,17 @@ static bool try_to_close_slot(int slot_num) for (i = 0; i < a->num_filters; i++) if (s->fns && s->fns[i].task.error != -E_TASK_UNREGISTERED) return false; - for (i = 0; i < a->num_writers; i++) - if (s->wns && s->wns[i].task.error != -E_TASK_UNREGISTERED) + if (a->num_writers > 0) { + for (i = 0; i < a->num_writers; i++) + if (s->wns && s->wns[i].task.error != -E_TASK_UNREGISTERED) + return false; + } else { + if (s->wns && s->wns[0].task.error != -E_TASK_UNREGISTERED) return false; + } PARA_INFO_LOG("closing slot %d\n", slot_num); close_writers(s); - _close_filters(s); + close_filters(s); close_receiver(slot_num); clear_slot(slot_num); return true; @@ -1069,9 +1111,9 @@ static void start_stop_decoders(struct sched *s) FOR_EACH_SLOT(i) if (try_to_close_slot(i)) sched_min_delay(s); -// if (audiod_status != AUDIOD_ON || -// !(stat_task->vss_status & VSS_STATUS_FLAG_PLAYING)) -// return kill_all_decoders(-E_NOT_PLAYING); + if (audiod_status != AUDIOD_ON || + !(stat_task->vss_status & VSS_STATUS_FLAG_PLAYING)) + return kill_all_decoders(-E_NOT_PLAYING); ret = open_current_receiver(s); if (ret < 0) return;