mirror of
https://gitlab.freedesktop.org/pulseaudio/pulseaudio.git
synced 2025-11-01 22:58:47 -04:00
Without the flag, the latency on the remote server will not be configured correctly. Part-of: <https://gitlab.freedesktop.org/pulseaudio/pulseaudio/-/merge_requests/699>
800 lines
26 KiB
C
800 lines
26 KiB
C
/***
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This file is part of PulseAudio.
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Copyright 2013 Alexander Couzens
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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 "restart-module.h"
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#include <pulse/context.h>
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#include <pulse/timeval.h>
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#include <pulse/xmalloc.h>
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#include <pulse/stream.h>
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#include <pulse/mainloop.h>
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#include <pulse/introspect.h>
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#include <pulse/error.h>
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#include <pulsecore/core.h>
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#include <pulsecore/core-util.h>
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#include <pulsecore/i18n.h>
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#include <pulsecore/sink.h>
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#include <pulsecore/modargs.h>
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#include <pulsecore/log.h>
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#include <pulsecore/thread.h>
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#include <pulsecore/thread-mq.h>
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#include <pulsecore/poll.h>
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#include <pulsecore/rtpoll.h>
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#include <pulsecore/proplist-util.h>
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PA_MODULE_AUTHOR("Alexander Couzens");
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PA_MODULE_DESCRIPTION("Create a network sink which connects via a stream to a remote PulseAudio server");
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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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"server=<address> "
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"sink=<name of the remote sink> "
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"sink_name=<name for the local sink> "
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"sink_properties=<properties for the local sink> "
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"reconnect_interval_ms=<interval to try reconnects, 0 or omitted if disabled> "
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"format=<sample format> "
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"channels=<number of channels> "
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"rate=<sample rate> "
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"channel_map=<channel map> "
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"cookie=<cookie file path>"
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);
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#define MAX_LATENCY_USEC (200 * PA_USEC_PER_MSEC)
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#define TUNNEL_THREAD_FAILED_MAINLOOP 1
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static int do_init(pa_module *m);
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static void do_done(pa_module *m);
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static void stream_state_cb(pa_stream *stream, void *userdata);
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static void stream_changed_buffer_attr_cb(pa_stream *stream, void *userdata);
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static void stream_set_buffer_attr_cb(pa_stream *stream, int success, void *userdata);
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static void context_state_cb(pa_context *c, void *userdata);
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static void sink_update_requested_latency_cb(pa_sink *s);
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struct tunnel_msg {
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pa_msgobject parent;
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};
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typedef struct tunnel_msg tunnel_msg;
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PA_DEFINE_PRIVATE_CLASS(tunnel_msg, pa_msgobject);
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enum {
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TUNNEL_MESSAGE_CREATE_SINK_REQUEST,
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TUNNEL_MESSAGE_MAYBE_RESTART,
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};
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enum {
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TUNNEL_MESSAGE_SINK_CREATED = PA_SINK_MESSAGE_MAX,
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};
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struct userdata {
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pa_module *module;
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pa_sink *sink;
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pa_thread *thread;
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pa_thread_mq *thread_mq;
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pa_mainloop *thread_mainloop;
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pa_mainloop_api *thread_mainloop_api;
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pa_context *context;
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pa_stream *stream;
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pa_rtpoll *rtpoll;
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bool update_stream_bufferattr_after_connect;
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bool connected;
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bool shutting_down;
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char *cookie_file;
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char *remote_server;
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char *remote_sink_name;
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char *sink_name;
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pa_proplist *sink_proplist;
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pa_sample_spec sample_spec;
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pa_channel_map channel_map;
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tunnel_msg *msg;
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pa_usec_t reconnect_interval_us;
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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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"server",
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"sink",
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"format",
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"channels",
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"rate",
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"channel_map",
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"cookie",
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"reconnect_interval_ms",
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NULL,
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};
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static void cork_stream(struct userdata *u, bool cork) {
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pa_operation *operation;
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pa_assert(u);
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pa_assert(u->stream);
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if (cork) {
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/* When the sink becomes suspended (which is the only case where we
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* cork the stream), we don't want to keep any old data around, because
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* the old data is most likely unrelated to the audio that will be
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* played at the time when the sink starts running again. */
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if ((operation = pa_stream_flush(u->stream, NULL, NULL)))
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pa_operation_unref(operation);
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}
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if ((operation = pa_stream_cork(u->stream, cork, NULL, NULL)))
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pa_operation_unref(operation);
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}
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static void reset_bufferattr(pa_buffer_attr *bufferattr) {
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pa_assert(bufferattr);
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bufferattr->fragsize = (uint32_t) -1;
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bufferattr->minreq = (uint32_t) -1;
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bufferattr->maxlength = (uint32_t) -1;
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bufferattr->prebuf = (uint32_t) -1;
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bufferattr->tlength = (uint32_t) -1;
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}
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static pa_proplist* tunnel_new_proplist(struct userdata *u) {
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pa_proplist *proplist = pa_proplist_new();
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pa_assert(proplist);
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pa_proplist_sets(proplist, PA_PROP_APPLICATION_NAME, "PulseAudio");
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pa_proplist_sets(proplist, PA_PROP_APPLICATION_ID, "org.PulseAudio.PulseAudio");
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pa_proplist_sets(proplist, PA_PROP_APPLICATION_VERSION, PACKAGE_VERSION);
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pa_init_proplist(proplist);
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return proplist;
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}
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static void thread_func(void *userdata) {
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struct userdata *u = userdata;
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pa_proplist *proplist;
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pa_assert(u);
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pa_log_debug("Thread starting up");
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pa_thread_mq_install(u->thread_mq);
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proplist = tunnel_new_proplist(u);
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u->context = pa_context_new_with_proplist(u->thread_mainloop_api,
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"PulseAudio",
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proplist);
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pa_proplist_free(proplist);
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if (!u->context) {
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pa_log("Failed to create libpulse context");
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goto fail;
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}
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if (u->cookie_file && pa_context_load_cookie_from_file(u->context, u->cookie_file) != 0) {
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pa_log_error("Can not load cookie file!");
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goto fail;
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}
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pa_context_set_state_callback(u->context, context_state_cb, u);
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if (pa_context_connect(u->context,
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u->remote_server,
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PA_CONTEXT_NOAUTOSPAWN,
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NULL) < 0) {
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pa_log("Failed to connect libpulse context: %s", pa_strerror(pa_context_errno(u->context)));
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goto fail;
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}
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for (;;) {
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int ret;
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if (pa_mainloop_iterate(u->thread_mainloop, 1, &ret) < 0) {
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if (ret == 0)
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goto finish;
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else
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goto fail;
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}
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if (u->sink && PA_UNLIKELY(u->sink->thread_info.rewind_requested))
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pa_sink_process_rewind(u->sink, 0);
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if (u->connected &&
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pa_stream_get_state(u->stream) == PA_STREAM_READY &&
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PA_SINK_IS_LINKED(u->sink->thread_info.state)) {
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size_t writable;
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writable = pa_stream_writable_size(u->stream);
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if (writable > 0) {
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pa_memchunk memchunk;
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const void *p;
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pa_sink_render_full(u->sink, writable, &memchunk);
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pa_assert(memchunk.length > 0);
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/* we have new data to write */
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p = pa_memblock_acquire(memchunk.memblock);
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/* TODO: Use pa_stream_begin_write() to reduce copying. */
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ret = pa_stream_write(u->stream,
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(uint8_t*) p + memchunk.index,
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memchunk.length,
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NULL, /**< A cleanup routine for the data or NULL to request an internal copy */
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0, /** offset */
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PA_SEEK_RELATIVE);
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pa_memblock_release(memchunk.memblock);
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pa_memblock_unref(memchunk.memblock);
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if (ret != 0) {
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pa_log_error("Could not write data into the stream ... ret = %i", ret);
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u->thread_mainloop_api->quit(u->thread_mainloop_api, TUNNEL_THREAD_FAILED_MAINLOOP);
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}
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}
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}
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}
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fail:
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/* send a message to the ctl thread to ask it to either terminate us, or
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* restart us, but either way this thread will exit, so then wait for the
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* shutdown message */
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pa_asyncmsgq_post(u->thread_mq->outq, PA_MSGOBJECT(u->msg), TUNNEL_MESSAGE_MAYBE_RESTART, u, 0, NULL, NULL);
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pa_asyncmsgq_wait_for(u->thread_mq->inq, PA_MESSAGE_SHUTDOWN);
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finish:
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if (u->stream) {
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pa_stream_disconnect(u->stream);
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pa_stream_unref(u->stream);
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u->stream = NULL;
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}
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if (u->context) {
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pa_context_disconnect(u->context);
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pa_context_unref(u->context);
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u->context = NULL;
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}
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pa_log_debug("Thread shutting down");
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}
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static void stream_state_cb(pa_stream *stream, void *userdata) {
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struct userdata *u = userdata;
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pa_assert(u);
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switch (pa_stream_get_state(stream)) {
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case PA_STREAM_FAILED:
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pa_log_error("Stream failed.");
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u->connected = false;
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u->thread_mainloop_api->quit(u->thread_mainloop_api, TUNNEL_THREAD_FAILED_MAINLOOP);
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break;
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case PA_STREAM_TERMINATED:
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pa_log_debug("Stream terminated.");
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break;
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case PA_STREAM_READY:
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if (PA_SINK_IS_OPENED(u->sink->thread_info.state))
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cork_stream(u, false);
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/* Only call our requested_latency_cb when requested_latency
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* changed between PA_STREAM_CREATING -> PA_STREAM_READY, because
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* we don't want to override the initial tlength set by the server
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* without a good reason. */
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if (u->update_stream_bufferattr_after_connect)
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sink_update_requested_latency_cb(u->sink);
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else
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stream_changed_buffer_attr_cb(stream, userdata);
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case PA_STREAM_CREATING:
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case PA_STREAM_UNCONNECTED:
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break;
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}
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}
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/* called when remote server changes the stream buffer_attr */
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static void stream_changed_buffer_attr_cb(pa_stream *stream, void *userdata) {
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struct userdata *u = userdata;
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const pa_buffer_attr *bufferattr;
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pa_assert(u);
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bufferattr = pa_stream_get_buffer_attr(u->stream);
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pa_sink_set_max_request_within_thread(u->sink, bufferattr->tlength);
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pa_log_debug("Server reports buffer attrs changed. tlength now at %lu.",
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(unsigned long) bufferattr->tlength);
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}
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/* called after we requested a change of the stream buffer_attr */
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static void stream_set_buffer_attr_cb(pa_stream *stream, int success, void *userdata) {
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stream_changed_buffer_attr_cb(stream, userdata);
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}
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/* called when the server experiences an underrun of our buffer */
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static void stream_underflow_callback(pa_stream *stream, void *userdata) {
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pa_log_info("Server signalled buffer underrun.");
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}
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/* called when the server experiences an overrun of our buffer */
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static void stream_overflow_callback(pa_stream *stream, void *userdata) {
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pa_log_info("Server signalled buffer overrun.");
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}
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/* Do a reinit of the module. Note that u will be freed as a result of this
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* call. */
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static void maybe_restart(struct userdata *u) {
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if (u->reconnect_interval_us > 0) {
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pa_restart_module_reinit(u->module, do_init, do_done, u->reconnect_interval_us);
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} else {
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/* exit the module */
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pa_asyncmsgq_post(u->thread_mq->outq, PA_MSGOBJECT(u->module->core), PA_CORE_MESSAGE_UNLOAD_MODULE, u->module, 0, NULL, NULL);
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}
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}
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static void on_sink_created(struct userdata *u) {
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pa_proplist *proplist;
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pa_buffer_attr bufferattr;
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pa_usec_t requested_latency;
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char *username = pa_get_user_name_malloc();
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char *hostname = pa_get_host_name_malloc();
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/* TODO: old tunnel put here the remote sink_name into stream name e.g. 'Null Output for lynxis@lazus' */
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char *stream_name = pa_sprintf_malloc(_("Tunnel for %s@%s"), username, hostname);
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pa_xfree(hostname);
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pa_xfree(username);
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pa_assert_io_context();
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/* if we still don't have a sink, then sink creation failed, and we should
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* kill this io thread */
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if (!u->sink) {
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pa_log_error("Could not create a sink.");
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u->thread_mainloop_api->quit(u->thread_mainloop_api, TUNNEL_THREAD_FAILED_MAINLOOP);
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return;
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}
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proplist = tunnel_new_proplist(u);
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u->stream = pa_stream_new_with_proplist(u->context,
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stream_name,
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&u->sink->sample_spec,
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&u->sink->channel_map,
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proplist);
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pa_proplist_free(proplist);
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pa_xfree(stream_name);
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if (!u->stream) {
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pa_log_error("Could not create a stream.");
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u->thread_mainloop_api->quit(u->thread_mainloop_api, TUNNEL_THREAD_FAILED_MAINLOOP);
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return;
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}
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requested_latency = pa_sink_get_requested_latency_within_thread(u->sink);
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if (requested_latency == (pa_usec_t) -1)
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requested_latency = u->sink->thread_info.max_latency;
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reset_bufferattr(&bufferattr);
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bufferattr.tlength = pa_usec_to_bytes(requested_latency, &u->sink->sample_spec);
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pa_log_debug("tlength requested at %lu.", (unsigned long) bufferattr.tlength);
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pa_stream_set_state_callback(u->stream, stream_state_cb, u);
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pa_stream_set_buffer_attr_callback(u->stream, stream_changed_buffer_attr_cb, u);
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pa_stream_set_underflow_callback(u->stream, stream_underflow_callback, u);
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pa_stream_set_overflow_callback(u->stream, stream_overflow_callback, u);
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if (pa_stream_connect_playback(u->stream,
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u->remote_sink_name,
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&bufferattr,
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PA_STREAM_INTERPOLATE_TIMING | PA_STREAM_DONT_MOVE | PA_STREAM_START_CORKED | PA_STREAM_AUTO_TIMING_UPDATE | PA_STREAM_ADJUST_LATENCY,
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NULL,
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NULL) < 0) {
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pa_log_error("Could not connect stream.");
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u->thread_mainloop_api->quit(u->thread_mainloop_api, TUNNEL_THREAD_FAILED_MAINLOOP);
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}
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u->connected = true;
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}
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static void context_state_cb(pa_context *c, void *userdata) {
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struct userdata *u = userdata;
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pa_assert(u);
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switch (pa_context_get_state(c)) {
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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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case PA_CONTEXT_READY:
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/* now that we're connected, ask the control thread to create a sink for
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* us, and wait for that to complete before proceeding, we'll
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* receive TUNNEL_MESSAGE_SINK_CREATED in response when the sink is
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* created (see sink_process_msg_cb()) */
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pa_log_debug("Connection successful. Creating stream.");
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pa_assert(!u->stream);
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pa_assert(!u->sink);
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pa_log_debug("Asking ctl thread to create sink.");
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pa_asyncmsgq_post(u->thread_mq->outq, PA_MSGOBJECT(u->msg), TUNNEL_MESSAGE_CREATE_SINK_REQUEST, u, 0, NULL, NULL);
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break;
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case PA_CONTEXT_FAILED:
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pa_log_debug("Context failed: %s.", pa_strerror(pa_context_errno(u->context)));
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u->connected = false;
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u->thread_mainloop_api->quit(u->thread_mainloop_api, TUNNEL_THREAD_FAILED_MAINLOOP);
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break;
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case PA_CONTEXT_TERMINATED:
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pa_log_debug("Context terminated.");
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u->connected = false;
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u->thread_mainloop_api->quit(u->thread_mainloop_api, TUNNEL_THREAD_FAILED_MAINLOOP);
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break;
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}
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}
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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_operation *operation;
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size_t nbytes;
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pa_usec_t block_usec;
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pa_buffer_attr bufferattr;
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pa_sink_assert_ref(s);
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pa_assert_se(u = s->userdata);
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block_usec = pa_sink_get_requested_latency_within_thread(s);
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if (block_usec == (pa_usec_t) -1)
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block_usec = s->thread_info.max_latency;
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nbytes = pa_usec_to_bytes(block_usec, &s->sample_spec);
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pa_sink_set_max_request_within_thread(s, nbytes);
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if (u->stream) {
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switch (pa_stream_get_state(u->stream)) {
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case PA_STREAM_READY:
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if (pa_stream_get_buffer_attr(u->stream)->tlength == nbytes)
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break;
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pa_log_debug("Requesting new buffer attrs. tlength requested at %lu.",
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(unsigned long) nbytes);
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|
|
|
reset_bufferattr(&bufferattr);
|
|
bufferattr.tlength = nbytes;
|
|
if ((operation = pa_stream_set_buffer_attr(u->stream, &bufferattr, stream_set_buffer_attr_cb, u)))
|
|
pa_operation_unref(operation);
|
|
break;
|
|
case PA_STREAM_CREATING:
|
|
/* we have to delay our request until stream is ready */
|
|
u->update_stream_bufferattr_after_connect = true;
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
static int sink_process_msg_cb(pa_msgobject *o, int code, void *data, int64_t offset, pa_memchunk *chunk) {
|
|
struct userdata *u = PA_SINK(o)->userdata;
|
|
|
|
switch (code) {
|
|
case PA_SINK_MESSAGE_GET_LATENCY: {
|
|
int negative;
|
|
pa_usec_t remote_latency;
|
|
|
|
if (!PA_SINK_IS_LINKED(u->sink->thread_info.state)) {
|
|
*((int64_t*) data) = 0;
|
|
return 0;
|
|
}
|
|
|
|
if (!u->stream) {
|
|
*((int64_t*) data) = 0;
|
|
return 0;
|
|
}
|
|
|
|
if (pa_stream_get_state(u->stream) != PA_STREAM_READY) {
|
|
*((int64_t*) data) = 0;
|
|
return 0;
|
|
}
|
|
|
|
if (pa_stream_get_latency(u->stream, &remote_latency, &negative) < 0) {
|
|
*((int64_t*) data) = 0;
|
|
return 0;
|
|
}
|
|
|
|
*((int64_t*) data) = remote_latency;
|
|
return 0;
|
|
}
|
|
case TUNNEL_MESSAGE_SINK_CREATED:
|
|
on_sink_created(u);
|
|
return 0;
|
|
}
|
|
return pa_sink_process_msg(o, code, data, offset, chunk);
|
|
}
|
|
|
|
/* Called from the IO thread. */
|
|
static int sink_set_state_in_io_thread_cb(pa_sink *s, pa_sink_state_t new_state, pa_suspend_cause_t new_suspend_cause) {
|
|
struct userdata *u;
|
|
|
|
pa_assert(s);
|
|
pa_assert_se(u = s->userdata);
|
|
|
|
/* It may be that only the suspend cause is changing, in which case there's
|
|
* nothing to do. */
|
|
if (new_state == s->thread_info.state)
|
|
return 0;
|
|
|
|
if (!u->stream || pa_stream_get_state(u->stream) != PA_STREAM_READY)
|
|
return 0;
|
|
|
|
switch (new_state) {
|
|
case PA_SINK_SUSPENDED: {
|
|
cork_stream(u, true);
|
|
break;
|
|
}
|
|
case PA_SINK_IDLE:
|
|
case PA_SINK_RUNNING: {
|
|
cork_stream(u, false);
|
|
break;
|
|
}
|
|
case PA_SINK_INVALID_STATE:
|
|
case PA_SINK_INIT:
|
|
case PA_SINK_UNLINKED:
|
|
break;
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
/* Creates a sink in the main thread.
|
|
*
|
|
* This method is called when we receive a message from the io thread that a
|
|
* connection has been established with the server. We defer creation of the
|
|
* sink until the connection is established, because we don't have a sink if
|
|
* the remote server isn't there.
|
|
*/
|
|
static void create_sink(struct userdata *u) {
|
|
pa_sink_new_data sink_data;
|
|
|
|
pa_assert_ctl_context();
|
|
|
|
/* Create sink */
|
|
pa_sink_new_data_init(&sink_data);
|
|
sink_data.driver = __FILE__;
|
|
sink_data.module = u->module;
|
|
|
|
pa_sink_new_data_set_name(&sink_data, u->sink_name);
|
|
pa_sink_new_data_set_sample_spec(&sink_data, &u->sample_spec);
|
|
pa_sink_new_data_set_channel_map(&sink_data, &u->channel_map);
|
|
|
|
pa_proplist_update(sink_data.proplist, PA_UPDATE_REPLACE, u->sink_proplist);
|
|
|
|
if (!(u->sink = pa_sink_new(u->module->core, &sink_data, PA_SINK_LATENCY | PA_SINK_DYNAMIC_LATENCY | PA_SINK_NETWORK))) {
|
|
pa_log("Failed to create sink.");
|
|
goto finish;
|
|
}
|
|
|
|
u->sink->userdata = u;
|
|
u->sink->parent.process_msg = sink_process_msg_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;
|
|
pa_sink_set_latency_range(u->sink, 0, MAX_LATENCY_USEC);
|
|
|
|
/* set thread message queue */
|
|
pa_sink_set_asyncmsgq(u->sink, u->thread_mq->inq);
|
|
pa_sink_set_rtpoll(u->sink, u->rtpoll);
|
|
|
|
pa_sink_put(u->sink);
|
|
|
|
finish:
|
|
pa_sink_new_data_done(&sink_data);
|
|
|
|
/* tell any interested io threads that the sink they asked for has now been
|
|
* created (even if we failed, we still notify the thread, so they can
|
|
* either handle or kill the thread, rather than deadlock waiting for a
|
|
* message that will never come */
|
|
pa_asyncmsgq_send(u->sink->asyncmsgq, PA_MSGOBJECT(u->sink), TUNNEL_MESSAGE_SINK_CREATED, u, 0, NULL);
|
|
}
|
|
|
|
/* Runs in PA mainloop context */
|
|
static int tunnel_process_msg(pa_msgobject *o, int code, void *data, int64_t offset, pa_memchunk *chunk) {
|
|
struct userdata *u = (struct userdata *) data;
|
|
|
|
pa_assert(u);
|
|
pa_assert_ctl_context();
|
|
|
|
if (u->shutting_down)
|
|
return 0;
|
|
|
|
switch (code) {
|
|
case TUNNEL_MESSAGE_CREATE_SINK_REQUEST:
|
|
create_sink(u);
|
|
break;
|
|
case TUNNEL_MESSAGE_MAYBE_RESTART:
|
|
maybe_restart(u);
|
|
break;
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int do_init(pa_module *m) {
|
|
struct userdata *u = NULL;
|
|
pa_modargs *ma = NULL;
|
|
const char *remote_server = NULL;
|
|
char *default_sink_name = NULL;
|
|
uint32_t reconnect_interval_ms = 0;
|
|
|
|
pa_assert(m);
|
|
|
|
if (!(ma = pa_modargs_new(m->argument, valid_modargs))) {
|
|
pa_log("Failed to parse module arguments.");
|
|
goto fail;
|
|
}
|
|
|
|
u = pa_xnew0(struct userdata, 1);
|
|
u->module = m;
|
|
m->userdata = u;
|
|
|
|
u->sample_spec = m->core->default_sample_spec;
|
|
u->channel_map = m->core->default_channel_map;
|
|
if (pa_modargs_get_sample_spec_and_channel_map(ma, &u->sample_spec, &u->channel_map, PA_CHANNEL_MAP_DEFAULT) < 0) {
|
|
pa_log("Invalid sample format specification or channel map");
|
|
goto fail;
|
|
}
|
|
|
|
remote_server = pa_modargs_get_value(ma, "server", NULL);
|
|
if (!remote_server) {
|
|
pa_log("No server given!");
|
|
goto fail;
|
|
}
|
|
|
|
u->remote_server = pa_xstrdup(remote_server);
|
|
u->thread_mainloop = pa_mainloop_new();
|
|
if (u->thread_mainloop == NULL) {
|
|
pa_log("Failed to create mainloop");
|
|
goto fail;
|
|
}
|
|
u->thread_mainloop_api = pa_mainloop_get_api(u->thread_mainloop);
|
|
u->cookie_file = pa_xstrdup(pa_modargs_get_value(ma, "cookie", NULL));
|
|
u->remote_sink_name = pa_xstrdup(pa_modargs_get_value(ma, "sink", NULL));
|
|
|
|
u->thread_mq = pa_xnew0(pa_thread_mq, 1);
|
|
|
|
if (pa_thread_mq_init_thread_mainloop(u->thread_mq, m->core->mainloop, u->thread_mainloop_api) < 0) {
|
|
pa_log("pa_thread_mq_init_thread_mainloop() failed.");
|
|
goto fail;
|
|
}
|
|
|
|
u->msg = pa_msgobject_new(tunnel_msg);
|
|
u->msg->parent.process_msg = tunnel_process_msg;
|
|
|
|
/* The rtpoll created here is never run. It is only necessary to avoid crashes
|
|
* when module-tunnel-sink-new is used together with module-loopback or
|
|
* module-combine-sink. Both modules base their asyncmsq on the rtpoll provided
|
|
* by the sink. module-loopback and combine-sink only work because they call
|
|
* pa_asyncmsq_process_one() themselves. module_rtp_recv also uses the rtpoll,
|
|
* but never calls pa_asyncmsq_process_one(), so it will not work in combination
|
|
* with module-tunnel-sink-new. */
|
|
u->rtpoll = pa_rtpoll_new();
|
|
|
|
default_sink_name = pa_sprintf_malloc("tunnel-sink-new.%s", remote_server);
|
|
u->sink_name = pa_xstrdup(pa_modargs_get_value(ma, "sink_name", default_sink_name));
|
|
|
|
u->sink_proplist = pa_proplist_new();
|
|
pa_proplist_sets(u->sink_proplist, PA_PROP_DEVICE_CLASS, "sound");
|
|
pa_proplist_setf(u->sink_proplist,
|
|
PA_PROP_DEVICE_DESCRIPTION,
|
|
_("Tunnel to %s/%s"),
|
|
remote_server,
|
|
pa_strempty(u->remote_sink_name));
|
|
|
|
if (pa_modargs_get_proplist(ma, "sink_properties", u->sink_proplist, PA_UPDATE_REPLACE) < 0) {
|
|
pa_log("Invalid properties");
|
|
goto fail;
|
|
}
|
|
|
|
pa_modargs_get_value_u32(ma, "reconnect_interval_ms", &reconnect_interval_ms);
|
|
u->reconnect_interval_us = reconnect_interval_ms * PA_USEC_PER_MSEC;
|
|
|
|
if (!(u->thread = pa_thread_new("tunnel-sink", thread_func, u))) {
|
|
pa_log("Failed to create thread.");
|
|
goto fail;
|
|
}
|
|
|
|
pa_modargs_free(ma);
|
|
pa_xfree(default_sink_name);
|
|
|
|
return 0;
|
|
|
|
fail:
|
|
if (ma)
|
|
pa_modargs_free(ma);
|
|
|
|
if (default_sink_name)
|
|
pa_xfree(default_sink_name);
|
|
|
|
return -1;
|
|
}
|
|
|
|
static void do_done(pa_module *m) {
|
|
struct userdata *u = NULL;
|
|
|
|
pa_assert(m);
|
|
|
|
if (!(u = m->userdata))
|
|
return;
|
|
|
|
u->shutting_down = true;
|
|
|
|
if (u->sink)
|
|
pa_sink_unlink(u->sink);
|
|
|
|
if (u->thread) {
|
|
pa_asyncmsgq_send(u->thread_mq->inq, NULL, PA_MESSAGE_SHUTDOWN, NULL, 0, NULL);
|
|
pa_thread_free(u->thread);
|
|
}
|
|
|
|
if (u->thread_mq) {
|
|
pa_thread_mq_done(u->thread_mq);
|
|
pa_xfree(u->thread_mq);
|
|
}
|
|
|
|
if (u->thread_mainloop)
|
|
pa_mainloop_free(u->thread_mainloop);
|
|
|
|
if (u->cookie_file)
|
|
pa_xfree(u->cookie_file);
|
|
|
|
if (u->remote_sink_name)
|
|
pa_xfree(u->remote_sink_name);
|
|
|
|
if (u->remote_server)
|
|
pa_xfree(u->remote_server);
|
|
|
|
if (u->sink)
|
|
pa_sink_unref(u->sink);
|
|
|
|
if (u->rtpoll)
|
|
pa_rtpoll_free(u->rtpoll);
|
|
|
|
if (u->sink_proplist)
|
|
pa_proplist_free(u->sink_proplist);
|
|
|
|
if (u->sink_name)
|
|
pa_xfree(u->sink_name);
|
|
|
|
pa_xfree(u->msg);
|
|
|
|
pa_xfree(u);
|
|
|
|
m->userdata = NULL;
|
|
}
|
|
|
|
int pa__init(pa_module *m) {
|
|
int ret;
|
|
|
|
pa_assert(m);
|
|
|
|
ret = do_init(m);
|
|
|
|
if (ret < 0)
|
|
pa__done(m);
|
|
|
|
return ret;
|
|
}
|
|
|
|
void pa__done(pa_module *m) {
|
|
pa_assert(m);
|
|
|
|
do_done(m);
|
|
}
|