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				https://gitlab.freedesktop.org/pipewire/pipewire.git
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	Make a function that can initialize raw audio info from a dict and fill in the defaults. We can use this in many of the modules when the audio format is parsed.
		
			
				
	
	
		
			442 lines
		
	
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			442 lines
		
	
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* PipeWire */
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/* SPDX-FileCopyrightText: Copyright © 2021 Wim Taymans */
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/* SPDX-License-Identifier: MIT */
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#include <string.h>
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#include <stdio.h>
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#include <errno.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <fcntl.h>
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#include <unistd.h>
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#include <stdlib.h>
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#include <signal.h>
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#include <limits.h>
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#include <math.h>
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#include "config.h"
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#include <spa/utils/result.h>
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#include <spa/utils/string.h>
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#include <spa/utils/json.h>
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#include <spa/utils/ringbuffer.h>
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#include <spa/debug/types.h>
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#include <spa/pod/builder.h>
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#include <spa/param/audio/format-utils.h>
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#include <spa/param/audio/raw.h>
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#include <spa/param/audio/raw-json.h>
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#include <pipewire/impl.h>
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#include <pipewire/i18n.h>
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/** \page page_module_example_sink Example Sink
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 *
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 * The example sink is a good starting point for writing a custom
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 * sink. We refer to the source code for more information.
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 *
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 * ## Module Name
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 *
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 * `libpipewire-module-example-sink`
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 *
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 * ## Module Options
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 *
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 * - `node.name`: a unique name for the stream
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 * - `node.description`: a human readable name for the stream
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 * - `stream.props = {}`: properties to be passed to the stream
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 *
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 * ## General options
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 *
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 * Options with well-known behavior.
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 *
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 * - \ref PW_KEY_REMOTE_NAME
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 * - \ref PW_KEY_AUDIO_FORMAT
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 * - \ref PW_KEY_AUDIO_RATE
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 * - \ref PW_KEY_AUDIO_CHANNELS
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 * - \ref SPA_KEY_AUDIO_POSITION
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 * - \ref PW_KEY_MEDIA_NAME
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 * - \ref PW_KEY_NODE_LATENCY
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 * - \ref PW_KEY_NODE_NAME
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 * - \ref PW_KEY_NODE_DESCRIPTION
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 * - \ref PW_KEY_NODE_GROUP
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 * - \ref PW_KEY_NODE_VIRTUAL
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 * - \ref PW_KEY_MEDIA_CLASS
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 *
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 * ## Example configuration
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 *
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 *\code{.unparsed}
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 * # ~/.config/pipewire/pipewire.conf.d/my-example-sink.conf
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 *
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 * context.modules = [
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 * {   name = libpipewire-module-example-sink
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 *     args = {
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 *         node.name = "example_sink"
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 *         node.description = "My Example Sink"
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 *         stream.props = {
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 *             audio.position = [ FL FR ]
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 *         }
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 *     }
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 * }
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 * ]
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 *\endcode
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 */
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#define NAME "example-sink"
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PW_LOG_TOPIC_STATIC(mod_topic, "mod." NAME);
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#define PW_LOG_TOPIC_DEFAULT mod_topic
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#define DEFAULT_FORMAT "S16"
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#define DEFAULT_RATE 48000
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#define DEFAULT_CHANNELS 2
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#define DEFAULT_POSITION "[ FL FR ]"
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#define MODULE_USAGE	"( node.latency=<latency as fraction> ) "				\
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			"( node.name=<name of the nodes> ) "					\
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			"( node.description=<description of the nodes> ) "			\
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			"( audio.format=<format, default:"DEFAULT_FORMAT"> ) "			\
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			"( audio.rate=<sample rate, default: "SPA_STRINGIFY(DEFAULT_RATE)"> ) "			\
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			"( audio.channels=<number of channels, default:"SPA_STRINGIFY(DEFAULT_CHANNELS) "> ) "	\
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			"( audio.position=<channel map, default:"DEFAULT_POSITION"> ] "		\
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			"( stream.props=<properties> ) "
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static const struct spa_dict_item module_props[] = {
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	{ PW_KEY_MODULE_AUTHOR, "Wim Taymans <wim.taymans@gmail.com>" },
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	{ PW_KEY_MODULE_DESCRIPTION, "An example audio sink" },
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	{ PW_KEY_MODULE_USAGE, MODULE_USAGE },
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	{ PW_KEY_MODULE_VERSION, PACKAGE_VERSION },
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};
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struct impl {
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	struct pw_context *context;
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	struct pw_properties *props;
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	struct pw_impl_module *module;
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	struct spa_hook module_listener;
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	struct pw_core *core;
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	struct spa_hook core_proxy_listener;
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	struct spa_hook core_listener;
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	struct pw_properties *stream_props;
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	struct pw_stream *stream;
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	struct spa_hook stream_listener;
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	struct spa_audio_info_raw info;
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	uint32_t frame_size;
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	unsigned int do_disconnect:1;
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};
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static void stream_destroy(void *d)
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{
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	struct impl *impl = d;
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	spa_hook_remove(&impl->stream_listener);
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	impl->stream = NULL;
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}
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static void stream_state_changed(void *d, enum pw_stream_state old,
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		enum pw_stream_state state, const char *error)
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{
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	struct impl *impl = d;
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	switch (state) {
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	case PW_STREAM_STATE_ERROR:
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	case PW_STREAM_STATE_UNCONNECTED:
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		pw_impl_module_schedule_destroy(impl->module);
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		break;
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	case PW_STREAM_STATE_PAUSED:
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	case PW_STREAM_STATE_STREAMING:
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		break;
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	default:
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		break;
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	}
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}
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static void playback_stream_process(void *d)
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{
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	struct impl *impl = d;
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	struct pw_buffer *buf;
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	struct spa_data *bd;
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	void *data;
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	uint32_t offs, size;
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	if ((buf = pw_stream_dequeue_buffer(impl->stream)) == NULL) {
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		pw_log_debug("out of buffers: %m");
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		return;
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	}
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	bd = &buf->buffer->datas[0];
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	offs = SPA_MIN(bd->chunk->offset, bd->maxsize);
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	size = SPA_MIN(bd->chunk->size, bd->maxsize - offs);
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	data = SPA_PTROFF(bd->data, offs, void);
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	/* write buffer contents here */
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	pw_log_info("got buffer of size %d and data %p", size, data);
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	pw_stream_queue_buffer(impl->stream, buf);
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}
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static const struct pw_stream_events playback_stream_events = {
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	PW_VERSION_STREAM_EVENTS,
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	.destroy = stream_destroy,
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	.state_changed = stream_state_changed,
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	.process = playback_stream_process
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};
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static int create_stream(struct impl *impl)
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{
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	int res;
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	uint32_t n_params;
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	const struct spa_pod *params[1];
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	uint8_t buffer[1024];
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	struct spa_pod_builder b;
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	impl->stream = pw_stream_new(impl->core, "example sink", impl->stream_props);
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	impl->stream_props = NULL;
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	if (impl->stream == NULL)
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		return -errno;
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	pw_stream_add_listener(impl->stream,
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			&impl->stream_listener,
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			&playback_stream_events, impl);
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	n_params = 0;
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	spa_pod_builder_init(&b, buffer, sizeof(buffer));
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	params[n_params++] = spa_format_audio_raw_build(&b,
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			SPA_PARAM_EnumFormat, &impl->info);
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	if ((res = pw_stream_connect(impl->stream,
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			PW_DIRECTION_INPUT,
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			PW_ID_ANY,
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			PW_STREAM_FLAG_AUTOCONNECT |
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			PW_STREAM_FLAG_MAP_BUFFERS |
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			PW_STREAM_FLAG_RT_PROCESS,
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			params, n_params)) < 0)
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		return res;
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	return 0;
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}
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static void core_error(void *data, uint32_t id, int seq, int res, const char *message)
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{
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	struct impl *impl = data;
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	pw_log_error("error id:%u seq:%d res:%d (%s): %s",
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			id, seq, res, spa_strerror(res), message);
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	if (id == PW_ID_CORE && res == -EPIPE)
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		pw_impl_module_schedule_destroy(impl->module);
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}
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static const struct pw_core_events core_events = {
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	PW_VERSION_CORE_EVENTS,
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	.error = core_error,
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};
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static void core_destroy(void *d)
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{
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	struct impl *impl = d;
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	spa_hook_remove(&impl->core_listener);
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	impl->core = NULL;
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	pw_impl_module_schedule_destroy(impl->module);
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}
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static const struct pw_proxy_events core_proxy_events = {
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	.destroy = core_destroy,
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};
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static void impl_destroy(struct impl *impl)
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{
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	if (impl->stream)
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		pw_stream_destroy(impl->stream);
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	if (impl->core && impl->do_disconnect)
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		pw_core_disconnect(impl->core);
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	pw_properties_free(impl->stream_props);
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	pw_properties_free(impl->props);
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	free(impl);
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}
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static void module_destroy(void *data)
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{
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	struct impl *impl = data;
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	spa_hook_remove(&impl->module_listener);
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	impl_destroy(impl);
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}
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static const struct pw_impl_module_events module_events = {
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	PW_VERSION_IMPL_MODULE_EVENTS,
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	.destroy = module_destroy,
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};
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static void parse_audio_info(const struct pw_properties *props, struct spa_audio_info_raw *info)
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{
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	spa_audio_info_raw_init_dict_keys(info,
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			&SPA_DICT_ITEMS(
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				SPA_DICT_ITEM(SPA_KEY_AUDIO_FORMAT, DEFAULT_FORMAT),
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				SPA_DICT_ITEM(SPA_KEY_AUDIO_RATE, SPA_STRINGIFY(DEFAULT_RATE)),
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				SPA_DICT_ITEM(SPA_KEY_AUDIO_POSITION, DEFAULT_POSITION)),
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			&props->dict,
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			SPA_KEY_AUDIO_FORMAT,
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			SPA_KEY_AUDIO_RATE,
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			SPA_KEY_AUDIO_CHANNELS,
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			SPA_KEY_AUDIO_POSITION, NULL);
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}
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static int calc_frame_size(const struct spa_audio_info_raw *info)
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{
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	int res = info->channels;
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	switch (info->format) {
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	case SPA_AUDIO_FORMAT_U8:
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	case SPA_AUDIO_FORMAT_S8:
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	case SPA_AUDIO_FORMAT_ALAW:
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	case SPA_AUDIO_FORMAT_ULAW:
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		return res;
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	case SPA_AUDIO_FORMAT_S16:
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	case SPA_AUDIO_FORMAT_S16_OE:
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	case SPA_AUDIO_FORMAT_U16:
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		return res * 2;
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	case SPA_AUDIO_FORMAT_S24:
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	case SPA_AUDIO_FORMAT_S24_OE:
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	case SPA_AUDIO_FORMAT_U24:
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		return res * 3;
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	case SPA_AUDIO_FORMAT_S24_32:
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	case SPA_AUDIO_FORMAT_S24_32_OE:
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	case SPA_AUDIO_FORMAT_S32:
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	case SPA_AUDIO_FORMAT_S32_OE:
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	case SPA_AUDIO_FORMAT_U32:
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	case SPA_AUDIO_FORMAT_U32_OE:
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	case SPA_AUDIO_FORMAT_F32:
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	case SPA_AUDIO_FORMAT_F32_OE:
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		return res * 4;
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	case SPA_AUDIO_FORMAT_F64:
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	case SPA_AUDIO_FORMAT_F64_OE:
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		return res * 8;
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	default:
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		return 0;
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	}
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}
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static void copy_props(struct impl *impl, struct pw_properties *props, const char *key)
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{
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	const char *str;
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	if ((str = pw_properties_get(props, key)) != NULL) {
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		if (pw_properties_get(impl->stream_props, key) == NULL)
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			pw_properties_set(impl->stream_props, key, str);
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	}
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}
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SPA_EXPORT
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int pipewire__module_init(struct pw_impl_module *module, const char *args)
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{
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	struct pw_context *context = pw_impl_module_get_context(module);
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	struct pw_properties *props = NULL;
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	uint32_t id = pw_global_get_id(pw_impl_module_get_global(module));
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	uint32_t pid = getpid();
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	struct impl *impl;
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	const char *str;
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	int res;
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	PW_LOG_TOPIC_INIT(mod_topic);
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	impl = calloc(1, sizeof(struct impl));
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	if (impl == NULL)
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		return -errno;
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	pw_log_debug("module %p: new %s", impl, args);
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	if (args == NULL)
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		args = "";
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	props = pw_properties_new_string(args);
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	if (props == NULL) {
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		res = -errno;
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		pw_log_error( "can't create properties: %m");
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		goto error;
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	}
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	impl->props = props;
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	impl->stream_props = pw_properties_new(NULL, NULL);
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	if (impl->stream_props == NULL) {
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		res = -errno;
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		pw_log_error( "can't create properties: %m");
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		goto error;
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	}
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	impl->module = module;
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	impl->context = context;
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	if (pw_properties_get(props, PW_KEY_NODE_VIRTUAL) == NULL)
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		pw_properties_set(props, PW_KEY_NODE_VIRTUAL, "true");
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	if (pw_properties_get(props, PW_KEY_MEDIA_CLASS) == NULL)
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		pw_properties_set(props, PW_KEY_MEDIA_CLASS, "Audio/Sink");
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	if (pw_properties_get(props, PW_KEY_NODE_NAME) == NULL)
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		pw_properties_setf(props, PW_KEY_NODE_NAME, "example-sink-%u-%u", pid, id);
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	if (pw_properties_get(props, PW_KEY_NODE_DESCRIPTION) == NULL)
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		pw_properties_set(props, PW_KEY_NODE_DESCRIPTION,
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				pw_properties_get(props, PW_KEY_NODE_NAME));
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	if ((str = pw_properties_get(props, "stream.props")) != NULL)
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		pw_properties_update_string(impl->stream_props, str, strlen(str));
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	copy_props(impl, props, PW_KEY_AUDIO_RATE);
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	copy_props(impl, props, PW_KEY_AUDIO_CHANNELS);
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	copy_props(impl, props, SPA_KEY_AUDIO_POSITION);
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	copy_props(impl, props, PW_KEY_NODE_NAME);
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	copy_props(impl, props, PW_KEY_NODE_DESCRIPTION);
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	copy_props(impl, props, PW_KEY_NODE_GROUP);
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	copy_props(impl, props, PW_KEY_NODE_LATENCY);
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	copy_props(impl, props, PW_KEY_NODE_VIRTUAL);
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	copy_props(impl, props, PW_KEY_MEDIA_CLASS);
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	parse_audio_info(impl->stream_props, &impl->info);
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	impl->frame_size = calc_frame_size(&impl->info);
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	if (impl->frame_size == 0) {
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		res = -EINVAL;
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		pw_log_error( "can't parse audio format");
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		goto error;
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	}
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	impl->core = pw_context_get_object(impl->context, PW_TYPE_INTERFACE_Core);
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	if (impl->core == NULL) {
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		str = pw_properties_get(props, PW_KEY_REMOTE_NAME);
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		impl->core = pw_context_connect(impl->context,
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				pw_properties_new(
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					PW_KEY_REMOTE_NAME, str,
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					NULL),
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				0);
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		impl->do_disconnect = true;
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	}
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	if (impl->core == NULL) {
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		res = -errno;
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		pw_log_error("can't connect: %m");
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		goto error;
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	}
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	pw_proxy_add_listener((struct pw_proxy*)impl->core,
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			&impl->core_proxy_listener,
 | 
						|
			&core_proxy_events, impl);
 | 
						|
	pw_core_add_listener(impl->core,
 | 
						|
			&impl->core_listener,
 | 
						|
			&core_events, impl);
 | 
						|
 | 
						|
	if ((res = create_stream(impl)) < 0)
 | 
						|
		goto error;
 | 
						|
 | 
						|
	pw_impl_module_add_listener(module, &impl->module_listener, &module_events, impl);
 | 
						|
 | 
						|
	pw_impl_module_update_properties(module, &SPA_DICT_INIT_ARRAY(module_props));
 | 
						|
 | 
						|
	return 0;
 | 
						|
 | 
						|
error:
 | 
						|
	impl_destroy(impl);
 | 
						|
	return res;
 | 
						|
}
 |