mirror of
https://gitlab.freedesktop.org/pulseaudio/pulseaudio.git
synced 2026-02-10 04:27:45 -05:00
git-svn-id: file:///home/lennart/svn/public/pulseaudio/trunk@45 fefdeb5f-60dc-0310-8127-8f9354f1896f
280 lines
7 KiB
C
280 lines
7 KiB
C
#include <stdlib.h>
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#include <assert.h>
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#include <string.h>
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#include <stdio.h>
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#include "sink.h"
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#include "sinkinput.h"
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#include "strbuf.h"
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#include "sample-util.h"
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#include "namereg.h"
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#define MAX_MIX_CHANNELS 32
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struct sink* sink_new(struct core *core, const char *name, int fail, const struct pa_sample_spec *spec) {
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struct sink *s;
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char *n = NULL;
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int r;
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assert(core && spec);
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s = malloc(sizeof(struct sink));
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assert(s);
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if (!(name = namereg_register(core, name, NAMEREG_SINK, s, fail))) {
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free(s);
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return NULL;
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}
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s->name = strdup(name);
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s->core = core;
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s->sample_spec = *spec;
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s->inputs = idxset_new(NULL, NULL);
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if (name) {
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n = malloc(strlen(name)+9);
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sprintf(n, "%s_monitor", name);
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}
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s->monitor_source = source_new(core, n, 0, spec);
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assert(s->monitor_source);
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free(n);
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s->volume = VOLUME_NORM;
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s->notify = NULL;
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s->get_latency = NULL;
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s->userdata = NULL;
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r = idxset_put(core->sinks, s, &s->index);
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assert(s->index != IDXSET_INVALID && r >= 0);
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fprintf(stderr, "sink: created %u \"%s\".\n", s->index, s->name);
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return s;
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}
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void sink_free(struct sink *s) {
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struct sink_input *i, *j = NULL;
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assert(s);
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namereg_unregister(s->core, s->name);
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while ((i = idxset_first(s->inputs, NULL))) {
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assert(i != j);
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sink_input_kill(i);
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j = i;
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}
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idxset_free(s->inputs, NULL, NULL);
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source_free(s->monitor_source);
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idxset_remove_by_data(s->core->sinks, s, NULL);
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fprintf(stderr, "sink: freed %u \"%s\"\n", s->index, s->name);
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free(s->name);
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free(s);
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}
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void sink_notify(struct sink*s) {
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assert(s);
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if (s->notify)
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s->notify(s);
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}
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static unsigned fill_mix_info(struct sink *s, struct mix_info *info, unsigned maxinfo) {
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uint32_t index = IDXSET_INVALID;
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struct sink_input *i;
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unsigned n = 0;
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assert(s && info);
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for (i = idxset_first(s->inputs, &index); maxinfo > 0 && i; i = idxset_next(s->inputs, &index)) {
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if (sink_input_peek(i, &info->chunk) < 0)
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continue;
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info->volume = i->volume;
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assert(info->chunk.memblock && info->chunk.memblock->data && info->chunk.length);
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info->userdata = i;
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info++;
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maxinfo--;
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n++;
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}
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return n;
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}
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static void inputs_drop(struct sink *s, struct mix_info *info, unsigned maxinfo, size_t length) {
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assert(s && info);
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for (; maxinfo > 0; maxinfo--, info++) {
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struct sink_input *i = info->userdata;
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assert(i && info->chunk.memblock);
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memblock_unref(info->chunk.memblock);
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sink_input_drop(i, length);
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}
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}
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int sink_render(struct sink*s, size_t length, struct memchunk *result) {
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struct mix_info info[MAX_MIX_CHANNELS];
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unsigned n;
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size_t l;
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assert(s && length && result);
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n = fill_mix_info(s, info, MAX_MIX_CHANNELS);
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if (n <= 0)
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return -1;
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if (n == 1) {
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uint32_t volume = VOLUME_NORM;
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struct sink_info *i = info[0].userdata;
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assert(i);
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*result = info[0].chunk;
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memblock_ref(result->memblock);
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if (result->length > length)
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result->length = length;
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l = result->length;
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if (s->volume != VOLUME_NORM || info[0].volume != VOLUME_NORM)
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volume = volume_multiply(s->volume, info[0].volume);
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if (volume != VOLUME_NORM) {
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memchunk_make_writable(result);
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volume_memchunk(result, &s->sample_spec, volume);
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}
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} else {
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result->memblock = memblock_new(length);
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assert(result->memblock);
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result->length = l = mix_chunks(info, n, result->memblock->data, length, &s->sample_spec, s->volume);
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result->index = 0;
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assert(l);
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}
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inputs_drop(s, info, n, l);
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assert(s->monitor_source);
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source_post(s->monitor_source, result);
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return 0;
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}
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int sink_render_into(struct sink*s, struct memchunk *target) {
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struct mix_info info[MAX_MIX_CHANNELS];
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unsigned n;
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size_t l;
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assert(s && target && target->length && target->memblock && target->memblock->data);
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memblock_assert_exclusive(target->memblock);
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n = fill_mix_info(s, info, MAX_MIX_CHANNELS);
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if (n <= 0)
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return -1;
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if (n == 1) {
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uint32_t volume = VOLUME_NORM;
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struct sink_info *i = info[0].userdata;
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assert(i);
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l = target->length;
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if (l > info[0].chunk.length)
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l = info[0].chunk.length;
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memcpy(target->memblock->data+target->index, info[0].chunk.memblock->data + info[0].chunk.index, l);
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target->length = l;
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if (s->volume != VOLUME_NORM || info[0].volume != VOLUME_NORM)
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volume = volume_multiply(s->volume, info[0].volume);
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if (volume != VOLUME_NORM)
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volume_memchunk(target, &s->sample_spec, volume);
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} else
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target->length = l = mix_chunks(info, n, target->memblock->data+target->index, target->length, &s->sample_spec, s->volume);
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assert(l);
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inputs_drop(s, info, n, l);
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assert(s->monitor_source);
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source_post(s->monitor_source, target);
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return 0;
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}
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void sink_render_into_full(struct sink *s, struct memchunk *target) {
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struct memchunk chunk;
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size_t l, d;
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assert(s && target && target->memblock && target->length && target->memblock->data);
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l = target->length;
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d = 0;
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while (l > 0) {
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chunk = *target;
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chunk.index += d;
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chunk.length -= d;
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if (sink_render_into(s, &chunk) < 0)
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break;
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d += chunk.length;
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l -= chunk.length;
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}
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if (l > 0) {
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chunk = *target;
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chunk.index += d;
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chunk.length -= d;
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silence_memchunk(&chunk, &s->sample_spec);
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}
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}
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uint32_t sink_get_latency(struct sink *s) {
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assert(s);
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if (!s->get_latency)
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return 0;
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return s->get_latency(s);
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}
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struct sink* sink_get_default(struct core *c) {
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struct sink *sink;
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assert(c);
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if ((sink = idxset_get_by_index(c->sinks, c->default_sink_index)))
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return sink;
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if (!(sink = idxset_first(c->sinks, &c->default_sink_index)))
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return NULL;
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fprintf(stderr, "core: default sink vanished, setting to %u.\n", sink->index);
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return sink;
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}
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char *sink_list_to_string(struct core *c) {
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struct strbuf *s;
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struct sink *sink, *default_sink;
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uint32_t index = IDXSET_INVALID;
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assert(c);
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s = strbuf_new();
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assert(s);
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strbuf_printf(s, "%u sink(s) available.\n", idxset_ncontents(c->sinks));
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default_sink = sink_get_default(c);
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for (sink = idxset_first(c->sinks, &index); sink; sink = idxset_next(c->sinks, &index)) {
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assert(sink->monitor_source);
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strbuf_printf(s, " %c index: %u, name: <%s>, volume: <0x%04x>, latency: <%u usec>, monitor_source: <%u>\n", sink == default_sink ? '*' : ' ', sink->index, sink->name, (unsigned) sink->volume, sink_get_latency(sink), sink->monitor_source->index);
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}
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return strbuf_tostring_free(s);
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}
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