mirror of
https://gitlab.freedesktop.org/pulseaudio/pulseaudio.git
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git-svn-id: file:///home/lennart/svn/public/pulseaudio/branches/coling@2408 fefdeb5f-60dc-0310-8127-8f9354f1896f
505 lines
14 KiB
C
505 lines
14 KiB
C
/* $Id: module-esound-sink.c 2043 2007-11-09 18:25:40Z lennart $ */
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/***
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This file is part of PulseAudio.
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Copyright 2008 Colin Guthrie
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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 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, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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USA.
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***/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <stdlib.h>
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#include <sys/stat.h>
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#include <stdio.h>
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#include <errno.h>
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#include <string.h>
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#include <fcntl.h>
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#include <unistd.h>
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#include <limits.h>
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#include <poll.h>
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#include <sys/socket.h>
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#include <netinet/in.h>
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#include <netinet/tcp.h>
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#include <sys/ioctl.h>
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#ifdef HAVE_LINUX_SOCKIOS_H
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#include <linux/sockios.h>
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#endif
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#include <pulse/xmalloc.h>
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#include <pulse/timeval.h>
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#include <pulsecore/core-error.h>
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#include <pulsecore/iochannel.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/socket-client.h>
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#include <pulsecore/authkey.h>
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#include <pulsecore/thread-mq.h>
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#include <pulsecore/thread.h>
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#include <pulsecore/time-smoother.h>
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#include <pulsecore/rtclock.h>
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#include <pulsecore/socket-util.h>
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#include "module-raop-sink-symdef.h"
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#include "rtp.h"
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#include "sdp.h"
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#include "sap.h"
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#include "raop_client.h"
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PA_MODULE_AUTHOR("Colin Guthrie");
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PA_MODULE_DESCRIPTION("RAOP Sink (Apple Airtunes)");
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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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"server=<address> cookie=<filename> "
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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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#define DEFAULT_SINK_NAME "airtunes"
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struct userdata {
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pa_core *core;
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pa_module *module;
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pa_sink *sink;
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pa_thread_mq thread_mq;
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pa_rtpoll *rtpoll;
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pa_rtpoll_item *rtpoll_item;
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pa_thread *thread;
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pa_memchunk raw_memchunk;
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pa_memchunk encoded_memchunk;
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void *write_data;
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size_t write_length, write_index;
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void *read_data;
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size_t read_length, read_index;
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pa_usec_t latency;
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/*esd_format_t format;*/
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int32_t rate;
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pa_smoother *smoother;
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int fd;
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int64_t offset;
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int64_t encoding_overhead;
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int32_t next_encoding_overhead;
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double encoding_ratio;
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pa_raop_client *raop;
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size_t block_size;
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};
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static const char* const valid_modargs[] = {
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"server",
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"rate",
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"format",
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"channels",
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"sink_name",
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NULL
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};
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enum {
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SINK_MESSAGE_PASS_SOCKET = PA_SINK_MESSAGE_MAX
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};
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static int sink_process_msg(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_SET_STATE:
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switch ((pa_sink_state_t) PA_PTR_TO_UINT(data)) {
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case PA_SINK_SUSPENDED:
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pa_assert(PA_SINK_OPENED(u->sink->thread_info.state));
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pa_smoother_pause(u->smoother, pa_rtclock_usec());
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break;
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case PA_SINK_IDLE:
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case PA_SINK_RUNNING:
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if (u->sink->thread_info.state == PA_SINK_SUSPENDED)
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pa_smoother_resume(u->smoother, pa_rtclock_usec());
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break;
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case PA_SINK_UNLINKED:
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case PA_SINK_INIT:
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;
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}
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break;
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case PA_SINK_MESSAGE_GET_LATENCY: {
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pa_usec_t w, r;
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r = pa_smoother_get(u->smoother, pa_rtclock_usec());
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w = pa_bytes_to_usec((u->offset - u->encoding_overhead + (u->encoded_memchunk.length / u->encoding_ratio)), &u->sink->sample_spec);
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*((pa_usec_t*) data) = w > r ? w - r : 0;
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break;
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}
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case SINK_MESSAGE_PASS_SOCKET: {
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struct pollfd *pollfd;
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pa_assert(!u->rtpoll_item);
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u->rtpoll_item = pa_rtpoll_item_new(u->rtpoll, PA_RTPOLL_NEVER, 1);
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pollfd = pa_rtpoll_item_get_pollfd(u->rtpoll_item, NULL);
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pollfd->fd = u->fd;
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pollfd->events = pollfd->revents = 0;
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return 0;
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}
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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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static void thread_func(void *userdata) {
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struct userdata *u = userdata;
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int write_type = 0;
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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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pa_rtpoll_install(u->rtpoll);
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pa_smoother_set_time_offset(u->smoother, pa_rtclock_usec());
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for (;;) {
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int ret;
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if (u->rtpoll_item) {
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struct pollfd *pollfd;
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pollfd = pa_rtpoll_item_get_pollfd(u->rtpoll_item, NULL);
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/* Render some data and write it to the fifo */
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if (PA_SINK_OPENED(u->sink->thread_info.state) && pollfd->revents) {
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pa_usec_t usec;
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int64_t n;
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for (;;) {
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ssize_t l;
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void *p;
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if (u->raw_memchunk.length <= 0) {
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if (u->raw_memchunk.memblock)
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pa_memblock_unref(u->raw_memchunk.memblock);
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pa_memchunk_reset(&u->raw_memchunk);
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/* Grab unencoded data */
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pa_sink_render(u->sink, u->block_size, &u->raw_memchunk);
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}
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pa_assert(u->raw_memchunk.length > 0);
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if (u->encoded_memchunk.length <= 0) {
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/* Encode it */
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size_t rl = u->raw_memchunk.length;
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u->encoding_overhead += u->next_encoding_overhead;
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pa_raop_client_encode_sample(u->raop, &u->raw_memchunk, &u->encoded_memchunk);
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u->next_encoding_overhead = (u->encoded_memchunk.length - (rl - u->raw_memchunk.length));
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u->encoding_ratio = u->encoded_memchunk.length / (rl - u->raw_memchunk.length);
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}
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pa_assert(u->encoded_memchunk.length > 0);
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p = pa_memblock_acquire(u->encoded_memchunk.memblock);
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l = pa_write(u->fd, (uint8_t*) p + u->encoded_memchunk.index, u->encoded_memchunk.length, &write_type);
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pa_memblock_release(u->encoded_memchunk.memblock);
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pa_assert(l != 0);
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if (l < 0) {
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if (errno == EINTR)
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continue;
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else if (errno == EAGAIN) {
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/* OK, we filled all socket buffers up
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* now. */
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goto filled_up;
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} else {
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pa_log("Failed to write data to FIFO: %s", pa_cstrerror(errno));
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goto fail;
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}
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} else {
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u->offset += l;
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u->encoded_memchunk.index += l;
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u->encoded_memchunk.length -= l;
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pollfd->revents = 0;
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if (u->encoded_memchunk.length > 0)
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/* OK, we wrote less that we asked for,
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* hence we can assume that the socket
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* buffers are full now */
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goto filled_up;
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}
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}
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filled_up:
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/* At this spot we know that the socket buffers are
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* fully filled up. This is the best time to estimate
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* the playback position of the server */
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n = u->offset;
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#ifdef SIOCOUTQ
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{
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int l;
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if (ioctl(u->fd, SIOCOUTQ, &l) >= 0 && l > 0)
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n -= l;
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}
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#endif
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usec = pa_bytes_to_usec(n, &u->sink->sample_spec);
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if (usec > u->latency)
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usec -= u->latency;
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else
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usec = 0;
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pa_smoother_put(u->smoother, pa_rtclock_usec(), usec);
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}
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/* Hmm, nothing to do. Let's sleep */
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pollfd->events = PA_SINK_OPENED(u->sink->thread_info.state) ? POLLOUT : 0;
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}
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if ((ret = pa_rtpoll_run(u->rtpoll, TRUE)) < 0)
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goto fail;
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if (ret == 0)
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goto finish;
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if (u->rtpoll_item) {
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struct pollfd* pollfd;
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pollfd = pa_rtpoll_item_get_pollfd(u->rtpoll_item, NULL);
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if (pollfd->revents & ~POLLOUT) {
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pa_log("FIFO shutdown.");
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goto fail;
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}
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}
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}
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fail:
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/* If this was no regular exit from the loop we have to continue
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* processing messages until we received PA_MESSAGE_SHUTDOWN */
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pa_asyncmsgq_post(u->thread_mq.outq, PA_MSGOBJECT(u->core), PA_CORE_MESSAGE_UNLOAD_MODULE, u->module, 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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pa_log_debug("Thread shutting down");
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}
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static void on_connection(PA_GCC_UNUSED int fd, void*userdata) {
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struct userdata *u = userdata;
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pa_assert(u);
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pa_assert(u->fd < 0);
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u->fd = fd;
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pa_log_debug("Connection authenticated, handing fd to IO thread...");
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pa_asyncmsgq_post(u->thread_mq.inq, PA_MSGOBJECT(u->sink), SINK_MESSAGE_PASS_SOCKET, NULL, 0, NULL, NULL);
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}
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static void on_close(void*userdata) {
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struct userdata *u = userdata;
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pa_assert(u);
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pa_log_debug("Control connection closed.");
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pa_module_unload_request(u->module);
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}
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int pa__init(pa_module*m) {
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struct userdata *u = NULL;
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const char *p;
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pa_sample_spec ss;
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pa_modargs *ma = NULL;
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char *t;
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pa_assert(m);
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if (!(ma = pa_modargs_new(m->argument, valid_modargs))) {
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pa_log("failed to parse module arguments");
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goto fail;
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}
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ss = m->core->default_sample_spec;
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if (pa_modargs_get_sample_spec(ma, &ss) < 0) {
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pa_log("invalid sample format specification");
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goto fail;
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}
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if ((/*ss.format != PA_SAMPLE_U8 &&*/ ss.format != PA_SAMPLE_S16NE) ||
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(ss.channels > 2)) {
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pa_log("sample type support is limited to mono/stereo and U8 or S16NE sample data");
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goto fail;
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}
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u = pa_xnew0(struct userdata, 1);
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u->core = m->core;
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u->module = m;
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m->userdata = u;
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u->fd = -1;
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u->smoother = pa_smoother_new(PA_USEC_PER_SEC, PA_USEC_PER_SEC*2, TRUE);
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pa_memchunk_reset(&u->raw_memchunk);
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pa_memchunk_reset(&u->encoded_memchunk);
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u->offset = 0;
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u->encoding_overhead = 0;
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u->next_encoding_overhead = 0;
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u->encoding_ratio = 1.0;
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pa_thread_mq_init(&u->thread_mq, m->core->mainloop);
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u->rtpoll = pa_rtpoll_new();
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pa_rtpoll_item_new_asyncmsgq(u->rtpoll, PA_RTPOLL_EARLY, u->thread_mq.inq);
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u->rtpoll_item = NULL;
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/*u->format =
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(ss.format == PA_SAMPLE_U8 ? ESD_BITS8 : ESD_BITS16) |
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(ss.channels == 2 ? ESD_STEREO : ESD_MONO);*/
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u->rate = ss.rate;
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u->block_size = pa_usec_to_bytes(PA_USEC_PER_SEC/20, &ss);
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u->read_data = u->write_data = NULL;
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u->read_index = u->write_index = u->read_length = u->write_length = 0;
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/*u->state = STATE_AUTH;*/
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u->latency = 0;
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if (!(u->sink = pa_sink_new(m->core, __FILE__, pa_modargs_get_value(ma, "sink_name", DEFAULT_SINK_NAME), 0, &ss, NULL))) {
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pa_log("Failed to create sink.");
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goto fail;
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}
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u->sink->parent.process_msg = sink_process_msg;
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u->sink->userdata = u;
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u->sink->flags = PA_SINK_LATENCY|PA_SINK_NETWORK;
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pa_sink_set_module(u->sink, m);
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pa_sink_set_asyncmsgq(u->sink, u->thread_mq.inq);
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pa_sink_set_rtpoll(u->sink, u->rtpoll);
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if (!(p = pa_modargs_get_value(ma, "server", NULL))) {
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pa_log("No server argument given.");
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goto fail;
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}
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if (!(u->raop = pa_raop_client_new(u->core, p))) {
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pa_log("Failed to connect to server.");
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goto fail;
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}
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pa_raop_client_set_callback(u->raop, on_connection, u);
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pa_raop_client_set_closed_callback(u->raop, on_close, u);
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pa_sink_set_description(u->sink, t = pa_sprintf_malloc("Airtunes sink '%s'", p));
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pa_xfree(t);
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if (!(u->thread = pa_thread_new(thread_func, u))) {
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pa_log("Failed to create thread.");
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goto fail;
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}
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pa_sink_put(u->sink);
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pa_modargs_free(ma);
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return 0;
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fail:
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if (ma)
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pa_modargs_free(ma);
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pa__done(m);
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return -1;
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}
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void pa__done(pa_module*m) {
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struct userdata *u;
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pa_assert(m);
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if (!(u = m->userdata))
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return;
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if (u->sink)
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pa_sink_unlink(u->sink);
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if (u->thread) {
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pa_asyncmsgq_send(u->thread_mq.inq, NULL, PA_MESSAGE_SHUTDOWN, NULL, 0, NULL);
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pa_thread_free(u->thread);
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}
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pa_thread_mq_done(&u->thread_mq);
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if (u->sink)
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pa_sink_unref(u->sink);
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if (u->rtpoll_item)
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pa_rtpoll_item_free(u->rtpoll_item);
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if (u->rtpoll)
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pa_rtpoll_free(u->rtpoll);
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if (u->raw_memchunk.memblock)
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pa_memblock_unref(u->raw_memchunk.memblock);
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if (u->encoded_memchunk.memblock)
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pa_memblock_unref(u->encoded_memchunk.memblock);
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if (u->raop)
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pa_raop_client_free(u->raop);
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pa_xfree(u->read_data);
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pa_xfree(u->write_data);
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if (u->smoother)
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pa_smoother_free(u->smoother);
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if (u->fd >= 0)
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pa_close(u->fd);
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pa_xfree(u);
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}
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