mirror of
https://gitlab.freedesktop.org/pipewire/pipewire.git
synced 2025-10-29 05:40:27 -04:00
added simple api to pipewire pulseaudio wrapper
This commit is contained in:
parent
0bff0e345f
commit
1facf8ed48
2 changed files with 534 additions and 0 deletions
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@ -35,6 +35,10 @@ pipewire_mainloop_glib_sources = [
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'mainloop-glib.c',
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]
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pipewire_mainloop_simple_sources = [
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'simple.c',
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]
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pipewire_pulseaudio_c_args = [
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'-DHAVE_CONFIG_H',
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'-D_GNU_SOURCE',
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@ -63,3 +67,13 @@ pipewire_pulseaudio = shared_library('pulse-mainloop-glib-pw',
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dependencies : [pipewire_dep, pulseaudio_dep, mathlib, glib_dep],
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install : true,
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)
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pipewire_pulseaudio = shared_library('pulse-simple-pw',
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pipewire_mainloop_simple_sources,
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soversion : pipewire_version,
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c_args : pipewire_pulseaudio_c_args,
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link_args : vflag,
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include_directories : [configinc],
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dependencies : [pipewire_dep, pulseaudio_dep, mathlib, glib_dep],
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install : true,
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)
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520
pipewire-pulseaudio/src/simple.c
Normal file
520
pipewire-pulseaudio/src/simple.c
Normal file
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@ -0,0 +1,520 @@
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/***
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This file is part of PulseAudio.
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Copyright 2004-2006 Lennart Poettering
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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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/*Modefied for pipewire by Jan Koester 2020*/
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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 <string.h>
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#include <stdlib.h>
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#include <pulse/pulseaudio.h>
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#include <pulse/thread-mainloop.h>
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#include <pulse/xmalloc.h>
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#include "internal.h"
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SPA_EXPORT
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struct pa_simple {
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pa_threaded_mainloop *mainloop;
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pa_context *context;
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pa_stream *stream;
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pa_stream_direction_t direction;
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const void *read_data;
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size_t read_index, read_length;
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int operation_success;
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};
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typedef struct pa_simple pa_simple;
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#define CHECK_VALIDITY_RETURN_ANY(rerror, expression, error, ret) \
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do { \
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if (!(expression)) { \
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if (rerror) \
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*(rerror) = error; \
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return (ret); \
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} \
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} while(false);
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#define CHECK_SUCCESS_GOTO(p, rerror, expression, label) \
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do { \
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if (!(expression)) { \
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if (rerror) \
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*(rerror) = pa_context_errno((p)->context); \
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goto label; \
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} \
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} while(false);
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#define CHECK_DEAD_GOTO(p, rerror, label) \
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do { \
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if (!(p)->context || !PA_CONTEXT_IS_GOOD(pa_context_get_state((p)->context)) || \
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!(p)->stream || !PA_STREAM_IS_GOOD(pa_stream_get_state((p)->stream))) { \
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if (((p)->context && pa_context_get_state((p)->context) == PA_CONTEXT_FAILED) || \
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((p)->stream && pa_stream_get_state((p)->stream) == PA_STREAM_FAILED)) { \
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if (rerror) \
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*(rerror) = pa_context_errno((p)->context); \
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} else \
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if (rerror) \
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*(rerror) = PA_ERR_BADSTATE; \
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goto label; \
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} \
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} while(false);
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static void context_state_cb(pa_context *c, void *userdata) {
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pa_simple *p = userdata;
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pa_assert(c);
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pa_assert(p);
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switch (pa_context_get_state(c)) {
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case PA_CONTEXT_READY:
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case PA_CONTEXT_TERMINATED:
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case PA_CONTEXT_FAILED:
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pa_threaded_mainloop_signal(p->mainloop, 0);
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break;
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case PA_CONTEXT_UNCONNECTED:
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case PA_CONTEXT_CONNECTING:
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case PA_CONTEXT_AUTHORIZING:
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case PA_CONTEXT_SETTING_NAME:
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break;
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}
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}
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static void stream_state_cb(pa_stream *s, void * userdata) {
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pa_simple *p = userdata;
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pa_assert(s);
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pa_assert(p);
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switch (pa_stream_get_state(s)) {
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case PA_STREAM_READY:
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case PA_STREAM_FAILED:
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case PA_STREAM_TERMINATED:
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pa_threaded_mainloop_signal(p->mainloop, 0);
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break;
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case PA_STREAM_UNCONNECTED:
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case PA_STREAM_CREATING:
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break;
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}
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}
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static void stream_request_cb(pa_stream *s, size_t length, void *userdata) {
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pa_simple *p = userdata;
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pa_assert(p);
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pa_threaded_mainloop_signal(p->mainloop, 0);
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}
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static void stream_latency_update_cb(pa_stream *s, void *userdata) {
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pa_simple *p = userdata;
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pa_assert(p);
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pa_threaded_mainloop_signal(p->mainloop, 0);
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}
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SPA_EXPORT
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void pa_simple_free(pa_simple *s) {
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pa_assert(s);
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if (s->mainloop)
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pa_threaded_mainloop_stop(s->mainloop);
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if (s->stream)
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pa_stream_unref(s->stream);
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if (s->context) {
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pa_context_disconnect(s->context);
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pa_context_unref(s->context);
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}
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if (s->mainloop)
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pa_threaded_mainloop_free(s->mainloop);
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pa_xfree(s);
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}
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SPA_EXPORT
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pa_simple* pa_simple_new(
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const char *server,
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const char *name,
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pa_stream_direction_t dir,
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const char *dev,
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const char *stream_name,
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const pa_sample_spec *ss,
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const pa_channel_map *map,
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const pa_buffer_attr *attr,
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int *rerror) {
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pa_simple *p;
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int error = PA_ERR_INTERNAL, r;
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CHECK_VALIDITY_RETURN_ANY(rerror, !server || *server, PA_ERR_INVALID, NULL);
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CHECK_VALIDITY_RETURN_ANY(rerror, dir == PA_STREAM_PLAYBACK || dir == PA_STREAM_RECORD, PA_ERR_INVALID, NULL);
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CHECK_VALIDITY_RETURN_ANY(rerror, !dev || *dev, PA_ERR_INVALID, NULL);
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CHECK_VALIDITY_RETURN_ANY(rerror, ss && pa_sample_spec_valid(ss), PA_ERR_INVALID, NULL);
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CHECK_VALIDITY_RETURN_ANY(rerror, !map || (pa_channel_map_valid(map) && map->channels == ss->channels), PA_ERR_INVALID, NULL)
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p = pa_xnew0(pa_simple, 1);
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p->direction = dir;
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if (!(p->mainloop = pa_threaded_mainloop_new()))
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goto fail;
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if (!(p->context = pa_context_new(pa_threaded_mainloop_get_api(p->mainloop), name)))
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goto fail;
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pa_context_set_state_callback(p->context, context_state_cb, p);
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if (pa_context_connect(p->context, server, 0, NULL) < 0) {
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error = pa_context_errno(p->context);
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goto fail;
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}
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pa_threaded_mainloop_lock(p->mainloop);
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if (pa_threaded_mainloop_start(p->mainloop) < 0)
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goto unlock_and_fail;
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for (;;) {
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pa_context_state_t state;
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state = pa_context_get_state(p->context);
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if (state == PA_CONTEXT_READY)
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break;
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if (!PA_CONTEXT_IS_GOOD(state)) {
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error = pa_context_errno(p->context);
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goto unlock_and_fail;
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}
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/* Wait until the context is ready */
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pa_threaded_mainloop_wait(p->mainloop);
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}
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if (!(p->stream = pa_stream_new(p->context, stream_name, ss, map))) {
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error = pa_context_errno(p->context);
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goto unlock_and_fail;
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}
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pa_stream_set_state_callback(p->stream, stream_state_cb, p);
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pa_stream_set_read_callback(p->stream, stream_request_cb, p);
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pa_stream_set_write_callback(p->stream, stream_request_cb, p);
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pa_stream_set_latency_update_callback(p->stream, stream_latency_update_cb, p);
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if (dir == PA_STREAM_PLAYBACK)
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r = pa_stream_connect_playback(p->stream, dev, attr,
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PA_STREAM_INTERPOLATE_TIMING
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|PA_STREAM_ADJUST_LATENCY
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|PA_STREAM_AUTO_TIMING_UPDATE, NULL, NULL);
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else
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r = pa_stream_connect_record(p->stream, dev, attr,
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PA_STREAM_INTERPOLATE_TIMING
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|PA_STREAM_ADJUST_LATENCY
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|PA_STREAM_AUTO_TIMING_UPDATE);
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if (r < 0) {
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error = pa_context_errno(p->context);
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goto unlock_and_fail;
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}
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for (;;) {
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pa_stream_state_t state;
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state = pa_stream_get_state(p->stream);
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if (state == PA_STREAM_READY)
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break;
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if (!PA_STREAM_IS_GOOD(state)) {
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error = pa_context_errno(p->context);
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goto unlock_and_fail;
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}
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/* Wait until the stream is ready */
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pa_threaded_mainloop_wait(p->mainloop);
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}
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pa_threaded_mainloop_unlock(p->mainloop);
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return p;
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unlock_and_fail:
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pa_threaded_mainloop_unlock(p->mainloop);
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fail:
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if (rerror)
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*rerror = error;
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pa_simple_free(p);
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return NULL;
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}
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SPA_EXPORT
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int pa_simple_write(pa_simple *p, const void*data, size_t length, int *rerror) {
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pa_assert(p);
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CHECK_VALIDITY_RETURN_ANY(rerror, p->direction == PA_STREAM_PLAYBACK, PA_ERR_BADSTATE, -1);
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CHECK_VALIDITY_RETURN_ANY(rerror, data, PA_ERR_INVALID, -1);
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CHECK_VALIDITY_RETURN_ANY(rerror, length > 0, PA_ERR_INVALID, -1);
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pa_threaded_mainloop_lock(p->mainloop);
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CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
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while (length > 0) {
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size_t l;
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int r;
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while (!(l = pa_stream_writable_size(p->stream))) {
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pa_threaded_mainloop_wait(p->mainloop);
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CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
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}
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CHECK_SUCCESS_GOTO(p, rerror, l != (size_t) -1, unlock_and_fail);
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if (l > length)
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l = length;
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r = pa_stream_write(p->stream, data, l, NULL, 0LL, PA_SEEK_RELATIVE);
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CHECK_SUCCESS_GOTO(p, rerror, r >= 0, unlock_and_fail);
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data = (const uint8_t*) data + l;
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length -= l;
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}
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pa_threaded_mainloop_unlock(p->mainloop);
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return 0;
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unlock_and_fail:
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pa_threaded_mainloop_unlock(p->mainloop);
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return -1;
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}
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SPA_EXPORT
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int pa_simple_read(pa_simple *p, void*data, size_t length, int *rerror) {
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pa_assert(p);
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CHECK_VALIDITY_RETURN_ANY(rerror, p->direction == PA_STREAM_RECORD, PA_ERR_BADSTATE, -1);
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CHECK_VALIDITY_RETURN_ANY(rerror, data, PA_ERR_INVALID, -1);
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CHECK_VALIDITY_RETURN_ANY(rerror, length > 0, PA_ERR_INVALID, -1);
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pa_threaded_mainloop_lock(p->mainloop);
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CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
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while (length > 0) {
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size_t l;
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while (!p->read_data) {
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int r;
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r = pa_stream_peek(p->stream, &p->read_data, &p->read_length);
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CHECK_SUCCESS_GOTO(p, rerror, r == 0, unlock_and_fail);
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if (p->read_length <= 0) {
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pa_threaded_mainloop_wait(p->mainloop);
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CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
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} else if (!p->read_data) {
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/* There's a hole in the stream, skip it. We could generate
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* silence, but that wouldn't work for compressed streams. */
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r = pa_stream_drop(p->stream);
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CHECK_SUCCESS_GOTO(p, rerror, r == 0, unlock_and_fail);
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} else
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p->read_index = 0;
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}
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l = p->read_length < length ? p->read_length : length;
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memcpy(data, (const uint8_t*) p->read_data+p->read_index, l);
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data = (uint8_t*) data + l;
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length -= l;
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p->read_index += l;
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p->read_length -= l;
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if (!p->read_length) {
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int r;
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r = pa_stream_drop(p->stream);
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p->read_data = NULL;
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p->read_length = 0;
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p->read_index = 0;
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CHECK_SUCCESS_GOTO(p, rerror, r == 0, unlock_and_fail);
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}
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}
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pa_threaded_mainloop_unlock(p->mainloop);
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return 0;
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unlock_and_fail:
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pa_threaded_mainloop_unlock(p->mainloop);
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return -1;
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}
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static void success_cb(pa_stream *s, int success, void *userdata) {
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pa_simple *p = userdata;
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pa_assert(s);
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pa_assert(p);
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p->operation_success = success;
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pa_threaded_mainloop_signal(p->mainloop, 0);
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}
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SPA_EXPORT
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int pa_simple_drain(pa_simple *p, int *rerror) {
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pa_operation *o = NULL;
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pa_assert(p);
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CHECK_VALIDITY_RETURN_ANY(rerror, p->direction == PA_STREAM_PLAYBACK, PA_ERR_BADSTATE, -1);
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pa_threaded_mainloop_lock(p->mainloop);
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CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
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o = pa_stream_drain(p->stream, success_cb, p);
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CHECK_SUCCESS_GOTO(p, rerror, o, unlock_and_fail);
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||||
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p->operation_success = 0;
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while (pa_operation_get_state(o) == PA_OPERATION_RUNNING) {
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pa_threaded_mainloop_wait(p->mainloop);
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CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
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}
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CHECK_SUCCESS_GOTO(p, rerror, p->operation_success, unlock_and_fail);
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pa_operation_unref(o);
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pa_threaded_mainloop_unlock(p->mainloop);
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return 0;
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unlock_and_fail:
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||||
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||||
if (o) {
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pa_operation_cancel(o);
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pa_operation_unref(o);
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||||
}
|
||||
|
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pa_threaded_mainloop_unlock(p->mainloop);
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return -1;
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||||
}
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||||
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||||
SPA_EXPORT
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int pa_simple_flush(pa_simple *p, int *rerror) {
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||||
pa_operation *o = NULL;
|
||||
|
||||
pa_assert(p);
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||||
|
||||
pa_threaded_mainloop_lock(p->mainloop);
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||||
CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
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||||
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o = pa_stream_flush(p->stream, success_cb, p);
|
||||
CHECK_SUCCESS_GOTO(p, rerror, o, unlock_and_fail);
|
||||
|
||||
p->operation_success = 0;
|
||||
while (pa_operation_get_state(o) == PA_OPERATION_RUNNING) {
|
||||
pa_threaded_mainloop_wait(p->mainloop);
|
||||
CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
|
||||
}
|
||||
CHECK_SUCCESS_GOTO(p, rerror, p->operation_success, unlock_and_fail);
|
||||
|
||||
pa_operation_unref(o);
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pa_threaded_mainloop_unlock(p->mainloop);
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||||
|
||||
return 0;
|
||||
|
||||
unlock_and_fail:
|
||||
|
||||
if (o) {
|
||||
pa_operation_cancel(o);
|
||||
pa_operation_unref(o);
|
||||
}
|
||||
|
||||
pa_threaded_mainloop_unlock(p->mainloop);
|
||||
return -1;
|
||||
}
|
||||
|
||||
SPA_EXPORT
|
||||
pa_usec_t pa_simple_get_latency(pa_simple *p, int *rerror) {
|
||||
pa_usec_t t;
|
||||
|
||||
pa_assert(p);
|
||||
|
||||
pa_threaded_mainloop_lock(p->mainloop);
|
||||
|
||||
for (;;) {
|
||||
int negative;
|
||||
|
||||
CHECK_DEAD_GOTO(p, rerror, unlock_and_fail);
|
||||
|
||||
if (pa_stream_get_latency(p->stream, &t, &negative) >= 0) {
|
||||
if (p->direction == PA_STREAM_RECORD) {
|
||||
pa_usec_t already_read;
|
||||
|
||||
/* pa_simple_read() calls pa_stream_peek() to get the next
|
||||
* chunk of audio. If the next chunk is larger than what the
|
||||
* pa_simple_read() caller wanted, the leftover data is stored
|
||||
* in p->read_data until pa_simple_read() is called again.
|
||||
* pa_stream_drop() won't be called until the whole chunk has
|
||||
* been consumed, which means that pa_stream_get_latency() will
|
||||
* return too large values, because the whole size of the
|
||||
* partially read chunk is included in the latency. Therefore,
|
||||
* we need to subtract the already-read amount from the
|
||||
* latency. */
|
||||
already_read = pa_bytes_to_usec(p->read_index, pa_stream_get_sample_spec(p->stream));
|
||||
|
||||
if (!negative) {
|
||||
if (t > already_read)
|
||||
t -= already_read;
|
||||
else
|
||||
t = 0;
|
||||
}
|
||||
}
|
||||
|
||||
/* We don't have a way to report negative latencies from
|
||||
* pa_simple_get_latency(). If the latency is negative, let's
|
||||
* report zero. */
|
||||
if (negative)
|
||||
t = 0;
|
||||
|
||||
break;
|
||||
}
|
||||
|
||||
CHECK_SUCCESS_GOTO(p, rerror, pa_context_errno(p->context) == PA_ERR_NODATA, unlock_and_fail);
|
||||
|
||||
/* Wait until latency data is available again */
|
||||
pa_threaded_mainloop_wait(p->mainloop);
|
||||
}
|
||||
|
||||
pa_threaded_mainloop_unlock(p->mainloop);
|
||||
|
||||
return t;
|
||||
|
||||
unlock_and_fail:
|
||||
|
||||
pa_threaded_mainloop_unlock(p->mainloop);
|
||||
return (pa_usec_t) -1;
|
||||
}
|
||||
Loading…
Add table
Add a link
Reference in a new issue