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				https://gitlab.freedesktop.org/pulseaudio/pulseaudio.git
				synced 2025-11-03 09:01:50 -05:00 
			
		
		
		
	native protocol: add "local" field to pa_context add volume paramter to pa_stream_connect_playback add support for renaming streams/clients support lazy samples add functions to kill clients/source inputs/sink outputs add functions for loading/unloading modules add autoload management API git-svn-id: file:///home/lennart/svn/public/pulseaudio/trunk@204 fefdeb5f-60dc-0310-8127-8f9354f1896f
		
			
				
	
	
		
			263 lines
		
	
	
	
		
			6.9 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			263 lines
		
	
	
	
		
			6.9 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* $Id$ */
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/***
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  This file is part of polypaudio.
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  polypaudio is free software; you can redistribute it and/or modify
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  it under the terms of the GNU General Public License as published
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  by the Free Software Foundation; either version 2 of the License,
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  or (at your option) any later version.
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  polypaudio is distributed in the hope that it will be useful, but
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  WITHOUT ANY WARRANTY; without even the implied warranty of
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  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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  General Public License for more details.
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  You should have received a copy of the GNU General Public License
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  along with polypaudio; if not, write to the Free Software
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  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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  USA.
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***/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <stdio.h>
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#include <assert.h>
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#include <stdlib.h>
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#include <string.h>
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#include "sink-input.h"
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#include "sample-util.h"
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#include "xmalloc.h"
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#include "subscribe.h"
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#include "log.h"
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#define CONVERT_BUFFER_LENGTH 4096
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struct pa_sink_input* pa_sink_input_new(struct pa_sink *s, const char *name, const struct pa_sample_spec *spec, int variable_rate) {
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    struct pa_sink_input *i;
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    struct pa_resampler *resampler = NULL;
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    int r;
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    char st[256];
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    assert(s && spec && s->state == PA_SINK_RUNNING);
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    if (pa_idxset_ncontents(s->inputs) >= PA_MAX_INPUTS_PER_SINK) {
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        pa_log(__FILE__": Failed to create sink input: too many inputs per sink.\n");
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        return NULL;
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    }
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    if (variable_rate || !pa_sample_spec_equal(spec, &s->sample_spec))
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        if (!(resampler = pa_resampler_new(spec, &s->sample_spec, s->core->memblock_stat)))
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            return NULL;
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    i = pa_xmalloc(sizeof(struct pa_sink_input));
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    i->ref = 1;
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    i->state = PA_SINK_INPUT_RUNNING;
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    i->name = pa_xstrdup(name);
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    i->client = NULL;
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    i->owner = NULL;
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    i->sink = s;
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    i->sample_spec = *spec;
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    i->peek = NULL;
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    i->drop = NULL;
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    i->kill = NULL;
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    i->get_latency = NULL;
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    i->userdata = NULL;
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    i->corked = 0;
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    i->volume = PA_VOLUME_NORM;
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    i->resampled_chunk.memblock = NULL;
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    i->resampled_chunk.index = i->resampled_chunk.length = 0;
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    i->resampler = resampler;
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    assert(s->core);
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    r = pa_idxset_put(s->core->sink_inputs, i, &i->index);
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    assert(r == 0 && i->index != PA_IDXSET_INVALID);
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    r = pa_idxset_put(s->inputs, i, NULL);
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    assert(r == 0);
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    pa_sample_spec_snprint(st, sizeof(st), spec);
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    pa_log(__FILE__": created %u \"%s\" on %u with sample spec \"%s\"\n", i->index, i->name, s->index, st);
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    pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK_INPUT|PA_SUBSCRIPTION_EVENT_NEW, i->index);
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    return i;    
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}
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void pa_sink_input_disconnect(struct pa_sink_input *i) {
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    assert(i && i->state == PA_SINK_INPUT_RUNNING && i->sink && i->sink->core);
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    pa_idxset_remove_by_data(i->sink->core->sink_inputs, i, NULL);
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    pa_idxset_remove_by_data(i->sink->inputs, i, NULL);
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    pa_subscription_post(i->sink->core, PA_SUBSCRIPTION_EVENT_SINK_INPUT|PA_SUBSCRIPTION_EVENT_REMOVE, i->index);
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    i->sink = NULL;
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    i->peek = NULL;
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    i->drop = NULL;
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    i->kill = NULL;
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    i->get_latency = NULL;
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    i->state = PA_SINK_INPUT_DISCONNECTED;
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}
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static void sink_input_free(struct pa_sink_input* i) {
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    assert(i);
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    if (i->state != PA_SINK_INPUT_DISCONNECTED)
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        pa_sink_input_disconnect(i);
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    if (i->resampled_chunk.memblock)
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        pa_memblock_unref(i->resampled_chunk.memblock);
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    if (i->resampler)
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        pa_resampler_free(i->resampler);
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    pa_xfree(i->name);
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    pa_xfree(i);
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}
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void pa_sink_input_unref(struct pa_sink_input *i) {
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    assert(i && i->ref >= 1);
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    if (!(--i->ref))
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        sink_input_free(i);
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}
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struct pa_sink_input* pa_sink_input_ref(struct pa_sink_input *i) {
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    assert(i && i->ref >= 1);
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    i->ref++;
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    return i;
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}
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void pa_sink_input_kill(struct pa_sink_input*i) {
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    assert(i && i->ref >= 1);
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    if (i->kill)
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        i->kill(i);
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}
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pa_usec_t pa_sink_input_get_latency(struct pa_sink_input *i) {
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    pa_usec_t r = 0;
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    assert(i && i->ref >= 1);
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    if (i->get_latency)
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        r += i->get_latency(i);
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    if (i->resampled_chunk.memblock)
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        r += pa_bytes_to_usec(i->resampled_chunk.length, &i->sample_spec);
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    return r;
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}
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int pa_sink_input_peek(struct pa_sink_input *i, struct pa_memchunk *chunk) {
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    int ret = 0;
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    assert(i && chunk && i->ref >= 1);
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    if (!i->peek || !i->drop)
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        return -1;
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    if (i->corked)
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        return -1;
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    if (!i->resampler)
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        return i->peek(i, chunk);
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    pa_sink_input_ref(i);
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    while (!i->resampled_chunk.memblock) {
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        struct pa_memchunk tchunk;
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        size_t l;
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        if ((ret = i->peek(i, &tchunk)) < 0)
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            goto finish;
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        assert(tchunk.length);
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        l = pa_resampler_request(i->resampler, CONVERT_BUFFER_LENGTH);
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        if (l > tchunk.length)
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            l = tchunk.length;
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        i->drop(i, &tchunk, l);
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        tchunk.length = l;
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        pa_resampler_run(i->resampler, &tchunk, &i->resampled_chunk);
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        pa_memblock_unref(tchunk.memblock);
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    }
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    assert(i->resampled_chunk.memblock && i->resampled_chunk.length);
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    *chunk = i->resampled_chunk;
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    pa_memblock_ref(i->resampled_chunk.memblock);
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    ret = 0;
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finish:
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    pa_sink_input_unref(i);
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    return ret;
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}
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void pa_sink_input_drop(struct pa_sink_input *i, const struct pa_memchunk *chunk, size_t length) {
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    assert(i && length && i->ref >= 1);
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    if (!i->resampler) {
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        if (i->drop)
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            i->drop(i, chunk, length);
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        return;
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    }
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    assert(i->resampled_chunk.memblock && i->resampled_chunk.length >= length);
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    i->resampled_chunk.index += length;
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    i->resampled_chunk.length -= length;
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    if (!i->resampled_chunk.length) {
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        pa_memblock_unref(i->resampled_chunk.memblock);
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        i->resampled_chunk.memblock = NULL;
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        i->resampled_chunk.index = i->resampled_chunk.length = 0;
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    }
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}
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void pa_sink_input_set_volume(struct pa_sink_input *i, pa_volume_t volume) {
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    assert(i && i->sink && i->sink->core && i->ref >= 1);
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    if (i->volume != volume) {
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        i->volume = volume;
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        pa_subscription_post(i->sink->core, PA_SUBSCRIPTION_EVENT_SINK_INPUT|PA_SUBSCRIPTION_EVENT_CHANGE, i->index);
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    }
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}
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void pa_sink_input_cork(struct pa_sink_input *i, int b) {
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    int n;
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    assert(i && i->ref >= 1);
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    n = i->corked && !b;
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    i->corked = b;
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    if (n)
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        pa_sink_notify(i->sink);
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}
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void pa_sink_input_set_rate(struct pa_sink_input *i, uint32_t rate) {
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    assert(i && i->resampler && i->ref >= 1);
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    if (i->sample_spec.rate == rate)
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        return;
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    i->sample_spec.rate = rate;
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    pa_resampler_set_input_rate(i->resampler, rate);
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}
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void pa_sink_input_set_name(struct pa_sink_input *i, const char *name) {
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    assert(i && i->ref >= 1);
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    pa_xfree(i->name);
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    i->name = pa_xstrdup(name);
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    pa_subscription_post(i->sink->core, PA_SUBSCRIPTION_EVENT_SINK_INPUT|PA_SUBSCRIPTION_EVENT_CHANGE, i->index);
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}
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