pipewire/spa/plugins/audiomixer/audiomixer.c

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/* Spa
*
* Copyright © 2018 Wim Taymans
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice (including the next
* paragraph) shall be included in all copies or substantial portions of the
* Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
* DEALINGS IN THE SOFTWARE.
*/
#include <errno.h>
#include <string.h>
#include <stdio.h>
#include <spa/support/log.h>
#include <spa/utils/list.h>
#include <spa/node/node.h>
#include <spa/node/io.h>
#include <spa/param/audio/format-utils.h>
#include <spa/param/param.h>
#include <spa/pod/filter.h>
#include "mix-ops.h"
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#define NAME "audiomixer"
#define MAX_BUFFERS 64
#define MAX_PORTS 128
#define PORT_DEFAULT_VOLUME 1.0
#define PORT_DEFAULT_MUTE false
struct port_props {
double volume;
int32_t mute;
};
static void port_props_reset(struct port_props *props)
{
props->volume = PORT_DEFAULT_VOLUME;
props->mute = PORT_DEFAULT_MUTE;
}
struct buffer {
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uint32_t id;
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struct spa_list link;
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bool outstanding;
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struct spa_buffer *outbuf;
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struct spa_meta_header *h;
};
struct port {
uint32_t direction;
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uint32_t id;
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struct port_props props;
struct spa_io_buffers *io;
struct spa_io_range *io_range;
double *io_volume;
int32_t *io_mute;
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struct spa_port_info info;
int valid:1;
int have_format:1;
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struct buffer buffers[MAX_BUFFERS];
uint32_t n_buffers;
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struct spa_list queue;
size_t queued_bytes;
};
struct impl {
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struct spa_handle handle;
struct spa_node node;
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struct spa_log *log;
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struct spa_audiomixer_ops ops;
const struct spa_node_callbacks *callbacks;
void *user_data;
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uint32_t port_count;
uint32_t last_port;
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struct port in_ports[MAX_PORTS];
struct port out_ports[1];
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bool have_format;
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int n_formats;
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struct spa_audio_info format;
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uint32_t bpf;
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mix_clear_func_t clear;
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mix_func_t copy;
mix_func_t add;
mix_scale_func_t copy_scale;
mix_scale_func_t add_scale;
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bool started;
};
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#define CHECK_FREE_IN_PORT(this,d,p) ((d) == SPA_DIRECTION_INPUT && (p) < MAX_PORTS && !this->in_ports[(p)].valid)
#define CHECK_IN_PORT(this,d,p) ((d) == SPA_DIRECTION_INPUT && (p) < MAX_PORTS && this->in_ports[(p)].valid)
#define CHECK_OUT_PORT(this,d,p) ((d) == SPA_DIRECTION_OUTPUT && (p) == 0)
#define CHECK_PORT(this,d,p) (CHECK_OUT_PORT(this,d,p) || CHECK_IN_PORT (this,d,p))
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#define GET_IN_PORT(this,p) (&this->in_ports[p])
#define GET_OUT_PORT(this,p) (&this->out_ports[p])
#define GET_PORT(this,d,p) (d == SPA_DIRECTION_INPUT ? GET_IN_PORT(this,p) : GET_OUT_PORT(this,p))
static int impl_node_enum_params(struct spa_node *node,
uint32_t id, uint32_t start, uint32_t num,
const struct spa_pod *filter,
spa_result_func_t func, void *data)
{
return -ENOTSUP;
}
static int impl_node_set_param(struct spa_node *node, uint32_t id, uint32_t flags,
const struct spa_pod *param)
{
return -ENOTSUP;
}
static int impl_node_set_io(struct spa_node *node, uint32_t id, void *data, size_t size)
{
return -ENOTSUP;
}
static int impl_node_send_command(struct spa_node *node, const struct spa_command *command)
{
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struct impl *this;
spa_return_val_if_fail(node != NULL, -EINVAL);
spa_return_val_if_fail(command != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
switch (SPA_NODE_COMMAND_ID(command)) {
case SPA_NODE_COMMAND_Start:
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this->started = true;
break;
case SPA_NODE_COMMAND_Pause:
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this->started = false;
break;
default:
return -ENOTSUP;
}
return 0;
}
static void emit_port_info(struct impl *this, struct port *port)
{
if (this->callbacks && this->callbacks->port_info && port->info.change_mask) {
this->callbacks->port_info(this->user_data, port->direction, port->id, &port->info);
port->info.change_mask = 0;
}
}
static int
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impl_node_set_callbacks(struct spa_node *node,
const struct spa_node_callbacks *callbacks,
void *user_data)
{
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struct impl *this;
uint32_t i;
spa_return_val_if_fail(node != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
this->callbacks = callbacks;
this->user_data = user_data;
emit_port_info(this, GET_OUT_PORT(this, 0));
for (i = 0; i < this->last_port; i++) {
if (this->in_ports[i].valid)
emit_port_info(this, GET_IN_PORT(this, i));
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}
return 0;
}
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static int impl_node_add_port(struct spa_node *node, enum spa_direction direction, uint32_t port_id,
const struct spa_dict *props)
{
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struct impl *this;
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struct port *port;
spa_return_val_if_fail(node != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
spa_return_val_if_fail(CHECK_FREE_IN_PORT(this, direction, port_id), -EINVAL);
port = GET_IN_PORT(this, port_id);
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port->valid = true;
port->direction = SPA_DIRECTION_INPUT;
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port->id = port_id;
port_props_reset(&port->props);
port->io_volume = &port->props.volume;
port->io_mute = &port->props.mute;
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spa_list_init(&port->queue);
port->info = SPA_PORT_INFO_INIT();
port->info.change_mask = SPA_PORT_CHANGE_MASK_FLAGS;
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port->info.flags = SPA_PORT_FLAG_CAN_USE_BUFFERS |
SPA_PORT_FLAG_REMOVABLE |
SPA_PORT_FLAG_OPTIONAL |
SPA_PORT_FLAG_IN_PLACE;
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this->port_count++;
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if (this->last_port <= port_id)
this->last_port = port_id + 1;
spa_log_info(this->log, NAME " %p: add port %d", this, port_id);
emit_port_info(this, port);
return 0;
}
static int
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impl_node_remove_port(struct spa_node *node, enum spa_direction direction, uint32_t port_id)
{
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struct impl *this;
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struct port *port;
spa_return_val_if_fail(node != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
spa_return_val_if_fail(CHECK_IN_PORT(this, direction, port_id), -EINVAL);
port = GET_IN_PORT(this, port_id);
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this->port_count--;
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if (port->have_format && this->have_format) {
if (--this->n_formats == 0)
this->have_format = false;
}
spa_memzero(port, sizeof(struct port));
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if (port_id == this->last_port + 1) {
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int i;
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for (i = this->last_port; i >= 0; i--)
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if (GET_IN_PORT (this, i)->valid)
break;
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this->last_port = i + 1;
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}
spa_log_info(this->log, NAME " %p: remove port %d", this, port_id);
if (this->callbacks && this->callbacks->port_info)
this->callbacks->port_info(this->user_data, direction, port_id, NULL);
return 0;
}
static int port_enum_formats(struct spa_node *node,
enum spa_direction direction, uint32_t port_id,
uint32_t index,
struct spa_pod **param,
struct spa_pod_builder *builder)
{
struct impl *this = SPA_CONTAINER_OF(node, struct impl, node);
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switch (index) {
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case 0:
if (this->have_format) {
*param = spa_pod_builder_add_object(builder,
SPA_TYPE_OBJECT_Format, SPA_PARAM_EnumFormat,
SPA_FORMAT_mediaType, SPA_POD_Id(SPA_MEDIA_TYPE_audio),
SPA_FORMAT_mediaSubtype, SPA_POD_Id(SPA_MEDIA_SUBTYPE_raw),
SPA_FORMAT_AUDIO_format, SPA_POD_Id(this->format.info.raw.format),
SPA_FORMAT_AUDIO_rate, SPA_POD_Int(this->format.info.raw.rate),
SPA_FORMAT_AUDIO_channels, SPA_POD_Int(this->format.info.raw.channels));
} else {
*param = spa_pod_builder_add_object(builder,
SPA_TYPE_OBJECT_Format, SPA_PARAM_EnumFormat,
SPA_FORMAT_mediaType, SPA_POD_Id(SPA_MEDIA_TYPE_audio),
SPA_FORMAT_mediaSubtype, SPA_POD_Id(SPA_MEDIA_SUBTYPE_raw),
SPA_FORMAT_AUDIO_format, SPA_POD_CHOICE_ENUM_Int(3,
SPA_AUDIO_FORMAT_S16,
SPA_AUDIO_FORMAT_S16,
SPA_AUDIO_FORMAT_F32),
SPA_FORMAT_AUDIO_rate, SPA_POD_CHOICE_RANGE_Int(44100, 1, INT32_MAX),
SPA_FORMAT_AUDIO_channels, SPA_POD_CHOICE_RANGE_Int(2, 1, INT32_MAX));
}
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break;
default:
return 0;
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}
return 1;
}
static int
impl_node_port_enum_params(struct spa_node *node,
enum spa_direction direction, uint32_t port_id,
uint32_t id, uint32_t start, uint32_t num,
const struct spa_pod *filter,
spa_result_func_t func, void *data)
{
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struct impl *this;
struct port *port;
struct spa_pod *param;
struct spa_pod_builder b = { 0 };
uint8_t buffer[1024];
struct spa_result_node_enum_params result;
uint32_t count = 0;
int res;
spa_return_val_if_fail(node != NULL, -EINVAL);
spa_return_val_if_fail(num != 0, -EINVAL);
spa_return_val_if_fail(func != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
spa_return_val_if_fail(CHECK_PORT(this, direction, port_id), -EINVAL);
port = GET_PORT(this, direction, port_id);
result.next = start;
next:
spa_pod_builder_init(&b, buffer, sizeof(buffer));
switch (id) {
case SPA_PARAM_List:
{
uint32_t list[] = { SPA_PARAM_EnumFormat,
SPA_PARAM_Format,
SPA_PARAM_Buffers,
SPA_PARAM_Meta,
SPA_PARAM_IO, };
if (result.next < SPA_N_ELEMENTS(list))
param = spa_pod_builder_add_object(&b,
SPA_TYPE_OBJECT_ParamList, id,
SPA_PARAM_LIST_id, SPA_POD_Id(list[result.next]));
else
return 0;
break;
}
case SPA_PARAM_EnumFormat:
if ((res = port_enum_formats(node, direction, port_id,
result.next, &param, &b)) <= 0)
return res;
break;
case SPA_PARAM_Format:
if (!port->have_format)
return -EIO;
if (result.next > 0)
return 0;
param = spa_format_audio_raw_build(&b, id, &this->format.info.raw);
break;
case SPA_PARAM_Buffers:
if (!port->have_format)
return -EIO;
if (result.next > 0)
return 0;
param = spa_pod_builder_add_object(&b,
SPA_TYPE_OBJECT_ParamBuffers, id,
SPA_PARAM_BUFFERS_buffers, SPA_POD_CHOICE_RANGE_Int(1, 1, MAX_BUFFERS),
SPA_PARAM_BUFFERS_blocks, SPA_POD_Int(1),
SPA_PARAM_BUFFERS_size, SPA_POD_CHOICE_RANGE_Int(
1024 * this->bpf,
16 * this->bpf,
INT32_MAX / this->bpf),
SPA_PARAM_BUFFERS_stride, SPA_POD_Int(0),
SPA_PARAM_BUFFERS_align, SPA_POD_Int(16));
break;
case SPA_PARAM_Meta:
if (!port->have_format)
return -EIO;
switch (result.next) {
case 0:
param = spa_pod_builder_add_object(&b,
SPA_TYPE_OBJECT_ParamMeta, id,
SPA_PARAM_META_type, SPA_POD_Id(SPA_META_Header),
SPA_PARAM_META_size, SPA_POD_Int(sizeof(struct spa_meta_header)));
break;
default:
return 0;
}
break;
case SPA_PARAM_IO:
switch (result.next) {
case 0:
param = spa_pod_builder_add_object(&b,
SPA_TYPE_OBJECT_ParamIO, id,
SPA_PARAM_IO_id, SPA_POD_Id(SPA_IO_Buffers),
SPA_PARAM_IO_size, SPA_POD_Int(sizeof(struct spa_io_buffers)));
break;
case 1:
param = spa_pod_builder_add_object(&b,
SPA_TYPE_OBJECT_ParamIO, id,
SPA_PARAM_IO_id, SPA_POD_Id(SPA_IO_Range),
SPA_PARAM_IO_size, SPA_POD_Int(sizeof(struct spa_io_range)));
break;
case 2:
param = spa_pod_builder_add_object(&b,
SPA_TYPE_OBJECT_ParamIO, id,
SPA_PARAM_IO_id, SPA_POD_Id(SPA_IO_Control),
SPA_PARAM_IO_size, SPA_POD_Int(sizeof(struct spa_io_sequence)));
break;
default:
return 0;
}
break;
default:
return -ENOENT;
}
result.next++;
if (spa_pod_filter(&b, &result.param, param, filter) < 0)
goto next;
if ((res = func(data, count, &result)) != 0)
return res;
if (++count != num)
goto next;
return 0;
}
static int clear_buffers(struct impl *this, struct port *port)
{
if (port->n_buffers > 0) {
spa_log_info(this->log, NAME " %p: clear buffers %p", this, port);
port->n_buffers = 0;
spa_list_init(&port->queue);
}
return 0;
}
static int port_set_format(struct spa_node *node,
enum spa_direction direction,
uint32_t port_id,
uint32_t flags,
const struct spa_pod *format)
{
struct impl *this = SPA_CONTAINER_OF(node, struct impl, node);
struct port *port;
int res;
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port = GET_PORT(this, direction, port_id);
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if (format == NULL) {
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if (port->have_format) {
port->have_format = false;
if (--this->n_formats == 0)
this->have_format = false;
clear_buffers(this, port);
}
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} else {
struct spa_audio_info info = { 0 };
if ((res = spa_format_parse(format, &info.media_type, &info.media_subtype)) < 0)
return res;
if (info.media_type != SPA_MEDIA_TYPE_audio ||
info.media_subtype != SPA_MEDIA_SUBTYPE_raw)
return -EINVAL;
if (spa_format_audio_raw_parse(format, &info.info.raw) < 0)
return -EINVAL;
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if (this->have_format) {
if (memcmp(&info, &this->format, sizeof(struct spa_audio_info)))
return -EINVAL;
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} else {
if (info.info.raw.format == SPA_AUDIO_FORMAT_S16) {
this->clear = this->ops.clear[FMT_S16];
this->copy = this->ops.copy[FMT_S16];
this->add = this->ops.add[FMT_S16];
this->copy_scale = this->ops.copy_scale[FMT_S16];
this->add_scale = this->ops.add_scale[FMT_S16];
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this->bpf = sizeof(int16_t) * info.info.raw.channels;
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}
else if (info.info.raw.format == SPA_AUDIO_FORMAT_F32) {
this->clear = this->ops.clear[FMT_F32];
this->copy = this->ops.copy[FMT_F32];
this->add = this->ops.add[FMT_F32];
this->copy_scale = this->ops.copy_scale[FMT_F32];
this->add_scale = this->ops.add_scale[FMT_F32];
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this->bpf = sizeof(float) * info.info.raw.channels;
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}
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else
return -EINVAL;
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this->have_format = true;
this->format = info;
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}
if (!port->have_format) {
this->n_formats++;
port->have_format = true;
spa_log_info(this->log, NAME " %p: set format on port %d", this, port_id);
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}
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}
return 0;
}
static int
impl_node_port_set_param(struct spa_node *node,
enum spa_direction direction, uint32_t port_id,
uint32_t id, uint32_t flags,
const struct spa_pod *param)
{
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struct impl *this;
spa_return_val_if_fail(node != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
spa_return_val_if_fail(CHECK_PORT(this, direction, port_id), -EINVAL);
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if (id == SPA_PARAM_Format) {
return port_set_format(node, direction, port_id, flags, param);
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}
else
return -ENOENT;
}
static int
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impl_node_port_use_buffers(struct spa_node *node,
enum spa_direction direction,
uint32_t port_id,
struct spa_buffer **buffers,
uint32_t n_buffers)
{
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struct impl *this;
struct port *port;
uint32_t i;
spa_return_val_if_fail(node != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
spa_return_val_if_fail(CHECK_PORT(this, direction, port_id), -EINVAL);
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port = GET_PORT(this, direction, port_id);
spa_return_val_if_fail(port->have_format, -EIO);
spa_log_info(this->log, NAME " %p: use buffers %d on port %d", this, n_buffers, port_id);
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clear_buffers(this, port);
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for (i = 0; i < n_buffers; i++) {
struct buffer *b;
struct spa_data *d = buffers[i]->datas;
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b = &port->buffers[i];
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b->id = i;
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b->outbuf = buffers[i];
b->outstanding = (direction == SPA_DIRECTION_INPUT);
b->h = spa_buffer_find_meta_data(buffers[i], SPA_META_Header, sizeof(*b->h));
if (!((d[0].type == SPA_DATA_MemPtr ||
d[0].type == SPA_DATA_MemFd ||
d[0].type == SPA_DATA_DmaBuf) && d[0].data != NULL)) {
spa_log_error(this->log, NAME " %p: invalid memory on buffer %p", this,
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buffers[i]);
return -EINVAL;
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}
if (!b->outstanding)
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spa_list_append(&port->queue, &b->link);
port->queued_bytes = 0;
if (port->io)
*port->io = SPA_IO_BUFFERS_INIT;
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}
port->n_buffers = n_buffers;
return 0;
}
static int
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impl_node_port_alloc_buffers(struct spa_node *node,
enum spa_direction direction,
uint32_t port_id,
struct spa_pod **params,
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uint32_t n_params,
struct spa_buffer **buffers,
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uint32_t *n_buffers)
{
return -ENOTSUP;
}
static int
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impl_node_port_set_io(struct spa_node *node,
enum spa_direction direction, uint32_t port_id,
uint32_t id, void *data, size_t size)
{
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struct impl *this;
struct port *port;
spa_return_val_if_fail(node != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
spa_return_val_if_fail(CHECK_PORT(this, direction, port_id), -EINVAL);
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port = GET_PORT(this, direction, port_id);
switch (id) {
case SPA_IO_Buffers:
port->io = data;
break;
case SPA_IO_Range:
port->io_range = data;
break;
default:
return -ENOENT;
}
return 0;
}
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static void recycle_buffer(struct impl *this, uint32_t id)
{
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struct port *port = GET_OUT_PORT(this, 0);
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struct buffer *b = &port->buffers[id];
if (!b->outstanding)
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return;
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spa_list_append(&port->queue, &b->link);
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b->outstanding = false;
spa_log_trace(this->log, NAME " %p: recycle buffer %d", this, id);
}
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static int impl_node_port_reuse_buffer(struct spa_node *node, uint32_t port_id, uint32_t buffer_id)
{
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struct impl *this;
spa_return_val_if_fail(node != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
spa_return_val_if_fail(CHECK_PORT(this, SPA_DIRECTION_OUTPUT, port_id), -EINVAL);
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recycle_buffer(this, buffer_id);
return -ENOTSUP;
}
static inline void
add_port_data(struct impl *this, void *out, size_t outsize, struct port *port, int layer)
{
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size_t insize;
struct buffer *b;
uint32_t index, offset, len1, len2, maxsize;
struct spa_data *d;
void *data;
double volume = *port->io_volume;
bool mute = *port->io_mute;
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b = spa_list_first(&port->queue, struct buffer, link);
d = b->outbuf->datas;
maxsize = d[0].maxsize;
data = d[0].data;
insize = SPA_MIN(d[0].chunk->size, maxsize);
outsize = SPA_MIN(outsize, insize);
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index = d[0].chunk->offset + (insize - port->queued_bytes);
offset = index % maxsize;
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len1 = SPA_MIN(outsize, maxsize - offset);
len2 = outsize - len1;
if (volume < 0.001 || mute) {
/* silence, for the first layer clear, otherwise do nothing */
if (layer == 0) {
this->clear(out, len1);
if (len2 > 0)
this->clear(SPA_MEMBER(out, len1, void), len2);
}
}
else if (volume < 0.999 || volume > 1.001) {
mix_scale_func_t mix = layer == 0 ? this->copy_scale : this->add_scale;
mix(out, SPA_MEMBER(data, offset, void), volume, len1);
if (len2 > 0)
mix(SPA_MEMBER(out, len1, void), data, volume, len2);
}
else {
mix_func_t mix = layer == 0 ? this->copy : this->add;
mix(out, SPA_MEMBER(data, offset, void), len1);
if (len2 > 0)
mix(SPA_MEMBER(out, len1, void), data, len2);
}
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port->queued_bytes -= outsize;
if (port->queued_bytes == 0) {
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spa_log_trace(this->log, NAME " %p: return buffer %d on port %d %zd",
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this, b->id, port->id, outsize);
port->io->buffer_id = b->id;
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spa_list_remove(&b->link);
b->outstanding = true;
} else {
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spa_log_trace(this->log, NAME " %p: keeping buffer %d on port %d %zd %zd",
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this, b->id, port->id, port->queued_bytes, outsize);
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}
}
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static int mix_output(struct impl *this, size_t n_bytes)
{
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struct buffer *outbuf;
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uint32_t i, layer;
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struct port *outport;
struct spa_io_buffers *outio;
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struct spa_data *od;
uint32_t avail, index, maxsize, len1, len2, offset;
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outport = GET_OUT_PORT(this, 0);
outio = outport->io;
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if (spa_list_is_empty(&outport->queue)) {
spa_log_trace(this->log, NAME " %p: out of buffers", this);
return -EPIPE;
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}
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outbuf = spa_list_first(&outport->queue, struct buffer, link);
spa_list_remove(&outbuf->link);
outbuf->outstanding = true;
od = outbuf->outbuf->datas;
maxsize = od[0].maxsize;
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avail = maxsize;
index = 0;
n_bytes = SPA_MIN(n_bytes, avail);
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offset = index % maxsize;
len1 = SPA_MIN(n_bytes, maxsize - offset);
len2 = n_bytes - len1;
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spa_log_trace(this->log, NAME " %p: dequeue output buffer %d %zd %d %d %d",
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this, outbuf->id, n_bytes, offset, len1, len2);
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for (layer = 0, i = 0; i < this->last_port; i++) {
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struct port *in_port = GET_IN_PORT(this, i);
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if (in_port->io == NULL || in_port->n_buffers == 0)
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continue;
if (in_port->queued_bytes == 0) {
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spa_log_warn(this->log, NAME " %p: underrun stream %d", this, i);
continue;
}
add_port_data(this, SPA_MEMBER(od[0].data, offset, void), len1, in_port, layer);
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if (len2 > 0)
add_port_data(this, od[0].data, len2, in_port, layer);
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layer++;
}
od[0].chunk->offset = index;
od[0].chunk->size = n_bytes;
od[0].chunk->stride = 0;
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outio->buffer_id = outbuf->id;
outio->status = SPA_STATUS_HAVE_BUFFER;
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return SPA_STATUS_HAVE_BUFFER;
}
static int impl_node_process(struct spa_node *node)
{
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struct impl *this;
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struct port *outport;
struct spa_io_buffers *outio;
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uint32_t i;
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size_t min_queued = SIZE_MAX;
spa_return_val_if_fail(node != NULL, -EINVAL);
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this = SPA_CONTAINER_OF(node, struct impl, node);
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outport = GET_OUT_PORT(this, 0);
outio = outport->io;
spa_return_val_if_fail(outio != NULL, -EIO);
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spa_log_trace(this->log, NAME " %p: status %d", this, outio->status);
if (outio->status == SPA_STATUS_HAVE_BUFFER)
goto done;
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/* recycle */
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if (outio->buffer_id < outport->n_buffers) {
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recycle_buffer(this, outio->buffer_id);
outio->buffer_id = SPA_ID_INVALID;
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}
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/* produce more output if possible */
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for (i = 0; i < this->last_port; i++) {
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struct port *inport = GET_IN_PORT(this, i);
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if (inport->io == NULL || inport->n_buffers == 0)
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continue;
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if (inport->queued_bytes < min_queued)
min_queued = inport->queued_bytes;
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}
if (min_queued != SIZE_MAX && min_queued > 0) {
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outio->status = mix_output(this, min_queued);
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} else {
/* take requested output range and apply to input */
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for (i = 0; i < this->last_port; i++) {
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struct port *inport = GET_IN_PORT(this, i);
struct spa_io_buffers *inio;
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if ((inio = inport->io) == NULL || inport->n_buffers == 0)
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continue;
spa_log_trace(this->log, NAME " %p: port %d queued %zd, res %d", this,
i, inport->queued_bytes, inio->status);
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if (inport->queued_bytes == 0) {
if (inport->io_range && outport->io_range)
*inport->io_range = *outport->io_range;
inio->status = SPA_STATUS_NEED_BUFFER;
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}
}
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outio->status = SPA_STATUS_NEED_BUFFER;
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}
done:
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return outio->status;
}
static const struct spa_node impl_node = {
SPA_VERSION_NODE,
.enum_params = impl_node_enum_params,
.set_param = impl_node_set_param,
.set_io = impl_node_set_io,
.send_command = impl_node_send_command,
.set_callbacks = impl_node_set_callbacks,
.add_port = impl_node_add_port,
.remove_port = impl_node_remove_port,
.port_enum_params = impl_node_port_enum_params,
.port_set_param = impl_node_port_set_param,
.port_use_buffers = impl_node_port_use_buffers,
.port_alloc_buffers = impl_node_port_alloc_buffers,
.port_set_io = impl_node_port_set_io,
.port_reuse_buffer = impl_node_port_reuse_buffer,
.process = impl_node_process,
};
static int impl_get_interface(struct spa_handle *handle, uint32_t type, void **interface)
{
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struct impl *this;
spa_return_val_if_fail(handle != NULL, -EINVAL);
spa_return_val_if_fail(interface != NULL, -EINVAL);
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this = (struct impl *) handle;
if (type == SPA_TYPE_INTERFACE_Node)
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*interface = &this->node;
else
return -ENOENT;
return 0;
}
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static int impl_clear(struct spa_handle *handle)
{
return 0;
}
2018-04-09 10:06:17 +02:00
static size_t
impl_get_size(const struct spa_handle_factory *factory,
const struct spa_dict *params)
{
return sizeof(struct impl);
}
static int
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impl_init(const struct spa_handle_factory *factory,
struct spa_handle *handle,
const struct spa_dict *info,
const struct spa_support *support,
uint32_t n_support)
{
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struct impl *this;
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struct port *port;
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uint32_t i;
spa_return_val_if_fail(factory != NULL, -EINVAL);
spa_return_val_if_fail(handle != NULL, -EINVAL);
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handle->get_interface = impl_get_interface;
handle->clear = impl_clear;
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this = (struct impl *) handle;
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for (i = 0; i < n_support; i++) {
if (support[i].type == SPA_TYPE_INTERFACE_Log)
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this->log = support[i].data;
}
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this->node = impl_node;
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port = GET_OUT_PORT(this, 0);
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port->valid = true;
port->direction = SPA_DIRECTION_OUTPUT;
2018-03-09 12:30:54 +01:00
port->id = 0;
2019-02-14 17:40:01 +01:00
port->info.flags = SPA_PORT_FLAG_CAN_USE_BUFFERS |
SPA_PORT_FLAG_NO_REF;
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spa_list_init(&port->queue);
spa_audiomixer_get_ops(&this->ops);
return 0;
}
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static const struct spa_interface_info impl_interfaces[] = {
{SPA_TYPE_INTERFACE_Node,},
};
static int
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impl_enum_interface_info(const struct spa_handle_factory *factory,
const struct spa_interface_info **info,
uint32_t *index)
{
spa_return_val_if_fail(factory != NULL, -EINVAL);
spa_return_val_if_fail(info != NULL, -EINVAL);
spa_return_val_if_fail(index != NULL, -EINVAL);
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switch (*index) {
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case 0:
*info = &impl_interfaces[*index];
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break;
default:
return 0;
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}
(*index)++;
return 1;
}
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const struct spa_handle_factory spa_audiomixer_factory = {
SPA_VERSION_HANDLE_FACTORY,
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NAME,
NULL,
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impl_get_size,
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impl_init,
impl_enum_interface_info,
};