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https://gitlab.freedesktop.org/pulseaudio/pulseaudio.git
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There are no behaviour changes, the code from almost all the SET_STATE handlers is moved with minimal changes to the newly introduced set_state_in_io_thread() callback. The only exception is module-tunnel, which has to call pa_sink_render() after pa_sink.thread_info.state has been updated. The set_state_in_io_thread() callback is called before updating that variable, so moving the SET_STATE handler code to the callback isn't possible. The purpose of this change is to make it easier to get state change handling right in modules. Hooking to the SET_STATE messages in modules required care in calling pa_sink/source_process_msg() at the right time (or not calling it at all, as was the case on resume failures), and there were a few bugs (fixed before this patch). Now the core takes care of ordering things correctly. Another motivation for this change is that there was some talk about adding a suspend_cause variable to pa_sink/source.thread_info. The variable would be updated in the core SET_STATE handler, but that would not work with the old design, because in case of resume failures modules didn't call the core message handler.
677 lines
21 KiB
C
677 lines
21 KiB
C
/***
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This file is part of PulseAudio.
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Copyright 2010 Intel Corporation
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Contributor: Pierre-Louis Bossart <pierre-louis.bossart@intel.com>
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PulseAudio is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published
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by the Free Software Foundation; either version 2.1 of the License,
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or (at your option) any later version.
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PulseAudio 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 Lesser General Public License
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along with PulseAudio; if not, see <http://www.gnu.org/licenses/>.
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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 <pulse/gccmacro.h>
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#include <pulse/xmalloc.h>
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#include <pulsecore/i18n.h>
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#include <pulsecore/namereg.h>
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#include <pulsecore/sink.h>
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#include <pulsecore/module.h>
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#include <pulsecore/core-util.h>
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#include <pulsecore/modargs.h>
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#include <pulsecore/log.h>
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#include <pulsecore/rtpoll.h>
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#include <pulsecore/sample-util.h>
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#include <pulsecore/ltdl-helper.h>
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PA_MODULE_AUTHOR("Pierre-Louis Bossart");
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PA_MODULE_DESCRIPTION(_("Virtual sink"));
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PA_MODULE_VERSION(PACKAGE_VERSION);
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PA_MODULE_LOAD_ONCE(false);
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PA_MODULE_USAGE(
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_("sink_name=<name for the sink> "
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"sink_properties=<properties for the sink> "
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"master=<name of sink to filter> "
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"rate=<sample rate> "
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"channels=<number of channels> "
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"channel_map=<channel map> "
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"use_volume_sharing=<yes or no> "
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"force_flat_volume=<yes or no> "
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));
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#define MEMBLOCKQ_MAXLENGTH (16*1024*1024)
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struct userdata {
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pa_module *module;
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/* FIXME: Uncomment this and take "autoloaded" as a modarg if this is a filter */
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/* bool autoloaded; */
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pa_sink *sink;
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pa_sink_input *sink_input;
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pa_memblockq *memblockq;
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bool auto_desc;
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unsigned channels;
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};
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static const char* const valid_modargs[] = {
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"sink_name",
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"sink_properties",
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"master",
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"rate",
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"channels",
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"channel_map",
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"use_volume_sharing",
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"force_flat_volume",
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NULL
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};
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/* Called from I/O thread context */
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static int sink_process_msg_cb(pa_msgobject *o, int code, void *data, int64_t offset, pa_memchunk *chunk) {
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struct userdata *u = PA_SINK(o)->userdata;
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switch (code) {
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case PA_SINK_MESSAGE_GET_LATENCY:
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/* The sink is _put() before the sink input is, so let's
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* make sure we don't access it in that time. Also, the
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* sink input is first shut down, the sink second. */
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if (!PA_SINK_IS_LINKED(u->sink->thread_info.state) ||
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!PA_SINK_INPUT_IS_LINKED(u->sink_input->thread_info.state)) {
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*((int64_t*) data) = 0;
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return 0;
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}
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*((int64_t*) data) =
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/* Get the latency of the master sink */
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pa_sink_get_latency_within_thread(u->sink_input->sink, true) +
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/* Add the latency internal to our sink input on top */
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pa_bytes_to_usec(pa_memblockq_get_length(u->sink_input->thread_info.render_memblockq), &u->sink_input->sink->sample_spec);
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return 0;
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}
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return pa_sink_process_msg(o, code, data, offset, chunk);
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}
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/* Called from main context */
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static int sink_set_state_in_main_thread_cb(pa_sink *s, pa_sink_state_t state, pa_suspend_cause_t suspend_cause) {
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struct userdata *u;
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pa_sink_assert_ref(s);
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pa_assert_se(u = s->userdata);
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if (!PA_SINK_IS_LINKED(state) ||
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!PA_SINK_INPUT_IS_LINKED(pa_sink_input_get_state(u->sink_input)))
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return 0;
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pa_sink_input_cork(u->sink_input, state == PA_SINK_SUSPENDED);
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return 0;
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}
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/* Called from the IO thread. */
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static int sink_set_state_in_io_thread_cb(pa_sink *s, pa_sink_state_t new_state) {
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struct userdata *u;
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pa_assert(s);
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pa_assert_se(u = s->userdata);
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/* When set to running or idle for the first time, request a rewind
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* of the master sink to make sure we are heard immediately */
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if ((new_state == PA_SINK_IDLE || new_state == PA_SINK_RUNNING) && u->sink->thread_info.state == PA_SINK_INIT) {
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pa_log_debug("Requesting rewind due to state change.");
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pa_sink_input_request_rewind(u->sink_input, 0, false, true, true);
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}
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return 0;
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}
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/* Called from I/O thread context */
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static void sink_request_rewind_cb(pa_sink *s) {
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struct userdata *u;
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pa_sink_assert_ref(s);
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pa_assert_se(u = s->userdata);
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if (!PA_SINK_IS_LINKED(u->sink->thread_info.state) ||
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!PA_SINK_INPUT_IS_LINKED(u->sink_input->thread_info.state))
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return;
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/* Just hand this one over to the master sink */
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pa_sink_input_request_rewind(u->sink_input,
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s->thread_info.rewind_nbytes +
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pa_memblockq_get_length(u->memblockq), true, false, false);
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}
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/* Called from I/O thread context */
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static void sink_update_requested_latency_cb(pa_sink *s) {
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struct userdata *u;
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pa_sink_assert_ref(s);
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pa_assert_se(u = s->userdata);
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if (!PA_SINK_IS_LINKED(u->sink->thread_info.state) ||
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!PA_SINK_INPUT_IS_LINKED(u->sink_input->thread_info.state))
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return;
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/* Just hand this one over to the master sink */
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pa_sink_input_set_requested_latency_within_thread(
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u->sink_input,
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pa_sink_get_requested_latency_within_thread(s));
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}
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/* Called from main context */
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static void sink_set_volume_cb(pa_sink *s) {
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struct userdata *u;
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pa_sink_assert_ref(s);
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pa_assert_se(u = s->userdata);
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if (!PA_SINK_IS_LINKED(pa_sink_get_state(s)) ||
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!PA_SINK_INPUT_IS_LINKED(pa_sink_input_get_state(u->sink_input)))
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return;
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pa_sink_input_set_volume(u->sink_input, &s->real_volume, s->save_volume, true);
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}
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/* Called from main context */
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static void sink_set_mute_cb(pa_sink *s) {
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struct userdata *u;
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pa_sink_assert_ref(s);
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pa_assert_se(u = s->userdata);
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if (!PA_SINK_IS_LINKED(pa_sink_get_state(s)) ||
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!PA_SINK_INPUT_IS_LINKED(pa_sink_input_get_state(u->sink_input)))
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return;
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pa_sink_input_set_mute(u->sink_input, s->muted, s->save_muted);
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}
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/* Called from I/O thread context */
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static int sink_input_pop_cb(pa_sink_input *i, size_t nbytes, pa_memchunk *chunk) {
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struct userdata *u;
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float *src, *dst;
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size_t fs;
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unsigned n, c;
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pa_memchunk tchunk;
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pa_usec_t current_latency PA_GCC_UNUSED;
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pa_sink_input_assert_ref(i);
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pa_assert(chunk);
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pa_assert_se(u = i->userdata);
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if (!PA_SINK_IS_LINKED(u->sink->thread_info.state))
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return -1;
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/* Hmm, process any rewind request that might be queued up */
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pa_sink_process_rewind(u->sink, 0);
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/* (1) IF YOU NEED A FIXED BLOCK SIZE USE
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* pa_memblockq_peek_fixed_size() HERE INSTEAD. NOTE THAT FILTERS
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* WHICH CAN DEAL WITH DYNAMIC BLOCK SIZES ARE HIGHLY
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* PREFERRED. */
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while (pa_memblockq_peek(u->memblockq, &tchunk) < 0) {
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pa_memchunk nchunk;
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pa_sink_render(u->sink, nbytes, &nchunk);
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pa_memblockq_push(u->memblockq, &nchunk);
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pa_memblock_unref(nchunk.memblock);
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}
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/* (2) IF YOU NEED A FIXED BLOCK SIZE, THIS NEXT LINE IS NOT
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* NECESSARY */
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tchunk.length = PA_MIN(nbytes, tchunk.length);
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pa_assert(tchunk.length > 0);
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fs = pa_frame_size(&i->sample_spec);
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n = (unsigned) (tchunk.length / fs);
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pa_assert(n > 0);
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chunk->index = 0;
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chunk->length = n*fs;
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chunk->memblock = pa_memblock_new(i->sink->core->mempool, chunk->length);
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pa_memblockq_drop(u->memblockq, chunk->length);
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src = pa_memblock_acquire_chunk(&tchunk);
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dst = pa_memblock_acquire(chunk->memblock);
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/* (3) PUT YOUR CODE HERE TO DO SOMETHING WITH THE DATA */
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/* As an example, copy input to output */
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for (c = 0; c < u->channels; c++) {
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pa_sample_clamp(PA_SAMPLE_FLOAT32NE,
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dst+c, u->channels * sizeof(float),
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src+c, u->channels * sizeof(float),
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n);
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}
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pa_memblock_release(tchunk.memblock);
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pa_memblock_release(chunk->memblock);
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pa_memblock_unref(tchunk.memblock);
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/* (4) IF YOU NEED THE LATENCY FOR SOMETHING ACQUIRE IT LIKE THIS: */
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current_latency =
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/* Get the latency of the master sink */
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pa_sink_get_latency_within_thread(i->sink, false) +
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/* Add the latency internal to our sink input on top */
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pa_bytes_to_usec(pa_memblockq_get_length(i->thread_info.render_memblockq), &i->sink->sample_spec);
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return 0;
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}
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/* Called from I/O thread context */
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static void sink_input_process_rewind_cb(pa_sink_input *i, size_t nbytes) {
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struct userdata *u;
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size_t amount = 0;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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/* If the sink is not yet linked, there is nothing to rewind */
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if (!PA_SINK_IS_LINKED(u->sink->thread_info.state))
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return;
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if (u->sink->thread_info.rewind_nbytes > 0) {
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size_t max_rewrite;
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max_rewrite = nbytes + pa_memblockq_get_length(u->memblockq);
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amount = PA_MIN(u->sink->thread_info.rewind_nbytes, max_rewrite);
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u->sink->thread_info.rewind_nbytes = 0;
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if (amount > 0) {
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pa_memblockq_seek(u->memblockq, - (int64_t) amount, PA_SEEK_RELATIVE, true);
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/* (5) PUT YOUR CODE HERE TO RESET YOUR FILTER */
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}
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}
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pa_sink_process_rewind(u->sink, amount);
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pa_memblockq_rewind(u->memblockq, nbytes);
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}
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/* Called from I/O thread context */
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static void sink_input_update_max_rewind_cb(pa_sink_input *i, size_t nbytes) {
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struct userdata *u;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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/* FIXME: Too small max_rewind:
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* https://bugs.freedesktop.org/show_bug.cgi?id=53709 */
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pa_memblockq_set_maxrewind(u->memblockq, nbytes);
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pa_sink_set_max_rewind_within_thread(u->sink, nbytes);
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}
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/* Called from I/O thread context */
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static void sink_input_update_max_request_cb(pa_sink_input *i, size_t nbytes) {
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struct userdata *u;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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/* (6) IF YOU NEED A FIXED BLOCK SIZE ROUND nbytes UP TO MULTIPLES
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* OF IT HERE. THE PA_ROUND_UP MACRO IS USEFUL FOR THAT. */
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pa_sink_set_max_request_within_thread(u->sink, nbytes);
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}
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/* Called from I/O thread context */
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static void sink_input_update_sink_latency_range_cb(pa_sink_input *i) {
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struct userdata *u;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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pa_sink_set_latency_range_within_thread(u->sink, i->sink->thread_info.min_latency, i->sink->thread_info.max_latency);
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}
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/* Called from I/O thread context */
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static void sink_input_update_sink_fixed_latency_cb(pa_sink_input *i) {
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struct userdata *u;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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/* (7) IF YOU NEED A FIXED BLOCK SIZE ADD THE LATENCY FOR ONE
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* BLOCK MINUS ONE SAMPLE HERE. pa_usec_to_bytes_round_up() IS
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* USEFUL FOR THAT. */
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pa_sink_set_fixed_latency_within_thread(u->sink, i->sink->thread_info.fixed_latency);
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}
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/* Called from I/O thread context */
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static void sink_input_detach_cb(pa_sink_input *i) {
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struct userdata *u;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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if (PA_SINK_IS_LINKED(u->sink->thread_info.state))
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pa_sink_detach_within_thread(u->sink);
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pa_sink_set_rtpoll(u->sink, NULL);
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}
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/* Called from I/O thread context */
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static void sink_input_attach_cb(pa_sink_input *i) {
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struct userdata *u;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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pa_sink_set_rtpoll(u->sink, i->sink->thread_info.rtpoll);
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pa_sink_set_latency_range_within_thread(u->sink, i->sink->thread_info.min_latency, i->sink->thread_info.max_latency);
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/* (8.1) IF YOU NEED A FIXED BLOCK SIZE ADD THE LATENCY FOR ONE
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* BLOCK MINUS ONE SAMPLE HERE. SEE (7) */
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pa_sink_set_fixed_latency_within_thread(u->sink, i->sink->thread_info.fixed_latency);
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/* (8.2) IF YOU NEED A FIXED BLOCK SIZE ROUND
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* pa_sink_input_get_max_request(i) UP TO MULTIPLES OF IT
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* HERE. SEE (6) */
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pa_sink_set_max_request_within_thread(u->sink, pa_sink_input_get_max_request(i));
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/* FIXME: Too small max_rewind:
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* https://bugs.freedesktop.org/show_bug.cgi?id=53709 */
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pa_sink_set_max_rewind_within_thread(u->sink, pa_sink_input_get_max_rewind(i));
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if (PA_SINK_IS_LINKED(u->sink->thread_info.state))
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pa_sink_attach_within_thread(u->sink);
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}
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/* Called from main context */
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static void sink_input_kill_cb(pa_sink_input *i) {
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struct userdata *u;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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/* The order here matters! We first kill the sink so that streams
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* can properly be moved away while the sink input is still connected
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* to the master. */
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pa_sink_input_cork(u->sink_input, true);
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pa_sink_unlink(u->sink);
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pa_sink_input_unlink(u->sink_input);
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pa_sink_input_unref(u->sink_input);
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u->sink_input = NULL;
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pa_sink_unref(u->sink);
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u->sink = NULL;
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pa_module_unload_request(u->module, true);
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}
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/* Called from main context */
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static void sink_input_moving_cb(pa_sink_input *i, pa_sink *dest) {
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struct userdata *u;
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pa_sink_input_assert_ref(i);
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pa_assert_se(u = i->userdata);
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if (dest) {
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pa_sink_set_asyncmsgq(u->sink, dest->asyncmsgq);
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pa_sink_update_flags(u->sink, PA_SINK_LATENCY|PA_SINK_DYNAMIC_LATENCY, dest->flags);
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} else
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pa_sink_set_asyncmsgq(u->sink, NULL);
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if (u->auto_desc && dest) {
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const char *z;
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pa_proplist *pl;
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pl = pa_proplist_new();
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z = pa_proplist_gets(dest->proplist, PA_PROP_DEVICE_DESCRIPTION);
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pa_proplist_setf(pl, PA_PROP_DEVICE_DESCRIPTION, "Virtual Sink %s on %s",
|
|
pa_proplist_gets(u->sink->proplist, "device.vsink.name"), z ? z : dest->name);
|
|
|
|
pa_sink_update_proplist(u->sink, PA_UPDATE_REPLACE, pl);
|
|
pa_proplist_free(pl);
|
|
}
|
|
}
|
|
|
|
/* Called from main context */
|
|
static void sink_input_volume_changed_cb(pa_sink_input *i) {
|
|
struct userdata *u;
|
|
|
|
pa_sink_input_assert_ref(i);
|
|
pa_assert_se(u = i->userdata);
|
|
|
|
pa_sink_volume_changed(u->sink, &i->volume);
|
|
}
|
|
|
|
/* Called from main context */
|
|
static void sink_input_mute_changed_cb(pa_sink_input *i) {
|
|
struct userdata *u;
|
|
|
|
pa_sink_input_assert_ref(i);
|
|
pa_assert_se(u = i->userdata);
|
|
|
|
pa_sink_mute_changed(u->sink, i->muted);
|
|
}
|
|
|
|
int pa__init(pa_module*m) {
|
|
struct userdata *u;
|
|
pa_sample_spec ss;
|
|
pa_channel_map map;
|
|
pa_modargs *ma;
|
|
pa_sink *master=NULL;
|
|
pa_sink_input_new_data sink_input_data;
|
|
pa_sink_new_data sink_data;
|
|
bool use_volume_sharing = true;
|
|
bool force_flat_volume = false;
|
|
pa_memchunk silence;
|
|
|
|
pa_assert(m);
|
|
|
|
if (!(ma = pa_modargs_new(m->argument, valid_modargs))) {
|
|
pa_log("Failed to parse module arguments.");
|
|
goto fail;
|
|
}
|
|
|
|
if (!(master = pa_namereg_get(m->core, pa_modargs_get_value(ma, "master", NULL), PA_NAMEREG_SINK))) {
|
|
pa_log("Master sink not found");
|
|
goto fail;
|
|
}
|
|
|
|
pa_assert(master);
|
|
|
|
ss = master->sample_spec;
|
|
ss.format = PA_SAMPLE_FLOAT32;
|
|
map = master->channel_map;
|
|
if (pa_modargs_get_sample_spec_and_channel_map(ma, &ss, &map, PA_CHANNEL_MAP_DEFAULT) < 0) {
|
|
pa_log("Invalid sample format specification or channel map");
|
|
goto fail;
|
|
}
|
|
|
|
if (pa_modargs_get_value_boolean(ma, "use_volume_sharing", &use_volume_sharing) < 0) {
|
|
pa_log("use_volume_sharing= expects a boolean argument");
|
|
goto fail;
|
|
}
|
|
|
|
if (pa_modargs_get_value_boolean(ma, "force_flat_volume", &force_flat_volume) < 0) {
|
|
pa_log("force_flat_volume= expects a boolean argument");
|
|
goto fail;
|
|
}
|
|
|
|
if (use_volume_sharing && force_flat_volume) {
|
|
pa_log("Flat volume can't be forced when using volume sharing.");
|
|
goto fail;
|
|
}
|
|
|
|
u = pa_xnew0(struct userdata, 1);
|
|
u->module = m;
|
|
m->userdata = u;
|
|
u->channels = ss.channels;
|
|
|
|
/* Create sink */
|
|
pa_sink_new_data_init(&sink_data);
|
|
sink_data.driver = __FILE__;
|
|
sink_data.module = m;
|
|
if (!(sink_data.name = pa_xstrdup(pa_modargs_get_value(ma, "sink_name", NULL))))
|
|
sink_data.name = pa_sprintf_malloc("%s.vsink", master->name);
|
|
pa_sink_new_data_set_sample_spec(&sink_data, &ss);
|
|
pa_sink_new_data_set_channel_map(&sink_data, &map);
|
|
pa_proplist_sets(sink_data.proplist, PA_PROP_DEVICE_MASTER_DEVICE, master->name);
|
|
pa_proplist_sets(sink_data.proplist, PA_PROP_DEVICE_CLASS, "filter");
|
|
pa_proplist_sets(sink_data.proplist, "device.vsink.name", sink_data.name);
|
|
|
|
if (pa_modargs_get_proplist(ma, "sink_properties", sink_data.proplist, PA_UPDATE_REPLACE) < 0) {
|
|
pa_log("Invalid properties");
|
|
pa_sink_new_data_done(&sink_data);
|
|
goto fail;
|
|
}
|
|
|
|
if ((u->auto_desc = !pa_proplist_contains(sink_data.proplist, PA_PROP_DEVICE_DESCRIPTION))) {
|
|
const char *z;
|
|
|
|
z = pa_proplist_gets(master->proplist, PA_PROP_DEVICE_DESCRIPTION);
|
|
pa_proplist_setf(sink_data.proplist, PA_PROP_DEVICE_DESCRIPTION, "Virtual Sink %s on %s", sink_data.name, z ? z : master->name);
|
|
}
|
|
|
|
u->sink = pa_sink_new(m->core, &sink_data, (master->flags & (PA_SINK_LATENCY|PA_SINK_DYNAMIC_LATENCY))
|
|
| (use_volume_sharing ? PA_SINK_SHARE_VOLUME_WITH_MASTER : 0));
|
|
pa_sink_new_data_done(&sink_data);
|
|
|
|
if (!u->sink) {
|
|
pa_log("Failed to create sink.");
|
|
goto fail;
|
|
}
|
|
|
|
u->sink->parent.process_msg = sink_process_msg_cb;
|
|
u->sink->set_state_in_main_thread = sink_set_state_in_main_thread_cb;
|
|
u->sink->set_state_in_io_thread = sink_set_state_in_io_thread_cb;
|
|
u->sink->update_requested_latency = sink_update_requested_latency_cb;
|
|
u->sink->request_rewind = sink_request_rewind_cb;
|
|
pa_sink_set_set_mute_callback(u->sink, sink_set_mute_cb);
|
|
if (!use_volume_sharing) {
|
|
pa_sink_set_set_volume_callback(u->sink, sink_set_volume_cb);
|
|
pa_sink_enable_decibel_volume(u->sink, true);
|
|
}
|
|
/* Normally this flag would be enabled automatically be we can force it. */
|
|
if (force_flat_volume)
|
|
u->sink->flags |= PA_SINK_FLAT_VOLUME;
|
|
u->sink->userdata = u;
|
|
|
|
pa_sink_set_asyncmsgq(u->sink, master->asyncmsgq);
|
|
|
|
/* Create sink input */
|
|
pa_sink_input_new_data_init(&sink_input_data);
|
|
sink_input_data.driver = __FILE__;
|
|
sink_input_data.module = m;
|
|
pa_sink_input_new_data_set_sink(&sink_input_data, master, false, true);
|
|
sink_input_data.origin_sink = u->sink;
|
|
pa_proplist_setf(sink_input_data.proplist, PA_PROP_MEDIA_NAME, "Virtual Sink Stream from %s", pa_proplist_gets(u->sink->proplist, PA_PROP_DEVICE_DESCRIPTION));
|
|
pa_proplist_sets(sink_input_data.proplist, PA_PROP_MEDIA_ROLE, "filter");
|
|
pa_sink_input_new_data_set_sample_spec(&sink_input_data, &ss);
|
|
pa_sink_input_new_data_set_channel_map(&sink_input_data, &map);
|
|
sink_input_data.flags |= PA_SINK_INPUT_START_CORKED;
|
|
|
|
pa_sink_input_new(&u->sink_input, m->core, &sink_input_data);
|
|
pa_sink_input_new_data_done(&sink_input_data);
|
|
|
|
if (!u->sink_input)
|
|
goto fail;
|
|
|
|
u->sink_input->pop = sink_input_pop_cb;
|
|
u->sink_input->process_rewind = sink_input_process_rewind_cb;
|
|
u->sink_input->update_max_rewind = sink_input_update_max_rewind_cb;
|
|
u->sink_input->update_max_request = sink_input_update_max_request_cb;
|
|
u->sink_input->update_sink_latency_range = sink_input_update_sink_latency_range_cb;
|
|
u->sink_input->update_sink_fixed_latency = sink_input_update_sink_fixed_latency_cb;
|
|
u->sink_input->kill = sink_input_kill_cb;
|
|
u->sink_input->attach = sink_input_attach_cb;
|
|
u->sink_input->detach = sink_input_detach_cb;
|
|
u->sink_input->moving = sink_input_moving_cb;
|
|
u->sink_input->volume_changed = use_volume_sharing ? NULL : sink_input_volume_changed_cb;
|
|
u->sink_input->mute_changed = sink_input_mute_changed_cb;
|
|
u->sink_input->userdata = u;
|
|
|
|
u->sink->input_to_master = u->sink_input;
|
|
|
|
pa_sink_input_get_silence(u->sink_input, &silence);
|
|
u->memblockq = pa_memblockq_new("module-virtual-sink memblockq", 0, MEMBLOCKQ_MAXLENGTH, 0, &ss, 1, 1, 0, &silence);
|
|
pa_memblock_unref(silence.memblock);
|
|
|
|
/* (9) INITIALIZE ANYTHING ELSE YOU NEED HERE */
|
|
|
|
/* The order here is important. The input must be put first,
|
|
* otherwise streams might attach to the sink before the sink
|
|
* input is attached to the master. */
|
|
pa_sink_input_put(u->sink_input);
|
|
pa_sink_put(u->sink);
|
|
pa_sink_input_cork(u->sink_input, false);
|
|
|
|
pa_modargs_free(ma);
|
|
|
|
return 0;
|
|
|
|
fail:
|
|
if (ma)
|
|
pa_modargs_free(ma);
|
|
|
|
pa__done(m);
|
|
|
|
return -1;
|
|
}
|
|
|
|
int pa__get_n_used(pa_module *m) {
|
|
struct userdata *u;
|
|
|
|
pa_assert(m);
|
|
pa_assert_se(u = m->userdata);
|
|
|
|
return pa_sink_linked_by(u->sink);
|
|
}
|
|
|
|
void pa__done(pa_module*m) {
|
|
struct userdata *u;
|
|
|
|
pa_assert(m);
|
|
|
|
if (!(u = m->userdata))
|
|
return;
|
|
|
|
/* See comments in sink_input_kill_cb() above regarding
|
|
* destruction order! */
|
|
|
|
if (u->sink_input)
|
|
pa_sink_input_cork(u->sink_input, true);
|
|
|
|
if (u->sink)
|
|
pa_sink_unlink(u->sink);
|
|
|
|
if (u->sink_input) {
|
|
pa_sink_input_unlink(u->sink_input);
|
|
pa_sink_input_unref(u->sink_input);
|
|
}
|
|
|
|
if (u->sink)
|
|
pa_sink_unref(u->sink);
|
|
|
|
if (u->memblockq)
|
|
pa_memblockq_free(u->memblockq);
|
|
|
|
pa_xfree(u);
|
|
}
|