mirror of
https://gitlab.freedesktop.org/gstreamer/gstreamer.git
synced 2024-11-23 10:11:08 +00:00
dc787434bc
Adds a new plugin for ASIO devices. Although there is a standard low-level audio API, WASAPI, on Windows, ASIO is still being broadly used for audio devices which are aiming to professional use case. In case of such devices, ASIO API might be able to show better quality and latency performance depending on manufacturer's driver implementation. In order to build this plugin, user should provide path to ASIO SDK as a build option, "asio-sdk-path". Part-of: <https://gitlab.freedesktop.org/gstreamer/gst-plugins-bad/-/merge_requests/2309>
375 lines
11 KiB
C++
375 lines
11 KiB
C++
/* GStreamer
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* Copyright (C) 2021 Seungha Yang <seungha@centricular.com>
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but 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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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
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* Boston, MA 02110-1301, 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 "gstasiosrc.h"
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#include "gstasioobject.h"
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#include "gstasioringbuffer.h"
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#include <atlconv.h>
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#include <string.h>
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#include <set>
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GST_DEBUG_CATEGORY_STATIC (gst_asio_src_debug);
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#define GST_CAT_DEFAULT gst_asio_src_debug
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static GstStaticPadTemplate src_template = GST_STATIC_PAD_TEMPLATE ("src",
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GST_PAD_SRC,
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GST_PAD_ALWAYS,
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GST_STATIC_CAPS (GST_ASIO_STATIC_CAPS));
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enum
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{
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PROP_0,
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PROP_DEVICE_CLSID,
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PROP_CAPTURE_CHANNELS,
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PROP_BUFFER_SIZE,
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PROP_OCCUPY_ALL_CHANNELS,
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PROP_LOOPBACK,
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};
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#define DEFAULT_BUFFER_SIZE 0
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#define DEFAULT_OCCUPY_ALL_CHANNELS TRUE
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#define DEFAULT_LOOPBACK FALSE
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struct _GstAsioSrc
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{
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GstAudioSrc parent;
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/* properties */
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gchar *device_clsid;
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gchar *capture_channles;
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guint buffer_size;
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gboolean occupy_all_channels;
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gboolean loopback;
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};
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static void gst_asio_src_finalize (GObject * object);
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static void gst_asio_src_set_property (GObject * object, guint prop_id,
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const GValue * value, GParamSpec * pspec);
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static void gst_asio_src_get_property (GObject * object, guint prop_id,
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GValue * value, GParamSpec * pspec);
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static GstCaps *gst_asio_src_get_caps (GstBaseSrc * src, GstCaps * filter);
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static GstAudioRingBuffer *gst_asio_src_create_ringbuffer (GstAudioBaseSrc *
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src);
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#define gst_asio_src_parent_class parent_class
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G_DEFINE_TYPE (GstAsioSrc, gst_asio_src, GST_TYPE_AUDIO_BASE_SRC);
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static void
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gst_asio_src_class_init (GstAsioSrcClass * klass)
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{
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GObjectClass *gobject_class = G_OBJECT_CLASS (klass);
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GstElementClass *element_class = GST_ELEMENT_CLASS (klass);
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GstBaseSrcClass *basesrc_class = GST_BASE_SRC_CLASS (klass);
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GstAudioBaseSrcClass *audiobasesrc_class = GST_AUDIO_BASE_SRC_CLASS (klass);
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gobject_class->finalize = gst_asio_src_finalize;
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gobject_class->set_property = gst_asio_src_set_property;
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gobject_class->get_property = gst_asio_src_get_property;
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g_object_class_install_property (gobject_class, PROP_DEVICE_CLSID,
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g_param_spec_string ("device-clsid", "Device CLSID",
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"ASIO device CLSID as a string", NULL,
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(GParamFlags) (GST_PARAM_MUTABLE_READY | G_PARAM_READWRITE |
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G_PARAM_STATIC_STRINGS)));
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g_object_class_install_property (gobject_class, PROP_CAPTURE_CHANNELS,
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g_param_spec_string ("input-channels", "Input Channels",
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"Comma-separated list of ASIO channels to capture", NULL,
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(GParamFlags) (GST_PARAM_MUTABLE_READY | G_PARAM_READWRITE |
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G_PARAM_STATIC_STRINGS)));
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g_object_class_install_property (gobject_class, PROP_BUFFER_SIZE,
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g_param_spec_uint ("buffer-size", "Buffer Size",
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"Preferred buffer size (0 for default)",
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0, G_MAXINT32, DEFAULT_BUFFER_SIZE,
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(GParamFlags) (GST_PARAM_MUTABLE_READY | G_PARAM_READWRITE |
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G_PARAM_STATIC_STRINGS)));
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g_object_class_install_property (gobject_class, PROP_OCCUPY_ALL_CHANNELS,
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g_param_spec_boolean ("occupy-all-channels",
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"Occupy All Channles",
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"When enabled, ASIO device will allocate resources for all in/output "
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"channles",
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DEFAULT_OCCUPY_ALL_CHANNELS,
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(GParamFlags) (GST_PARAM_MUTABLE_READY | G_PARAM_READWRITE |
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G_PARAM_STATIC_STRINGS)));
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g_object_class_install_property (gobject_class, PROP_LOOPBACK,
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g_param_spec_boolean ("loopback", "Loopback recording",
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"Open the sink device for loopback recording",
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DEFAULT_LOOPBACK,
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(GParamFlags) (G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS)));
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gst_element_class_add_static_pad_template (element_class, &src_template);
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gst_element_class_set_static_metadata (element_class, "AsioSrc",
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"Source/Audio/Hardware",
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"Stream audio from an audio capture device through ASIO",
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"Seungha Yang <seungha@centricular.com>");
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basesrc_class->get_caps = GST_DEBUG_FUNCPTR (gst_asio_src_get_caps);
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audiobasesrc_class->create_ringbuffer =
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GST_DEBUG_FUNCPTR (gst_asio_src_create_ringbuffer);
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GST_DEBUG_CATEGORY_INIT (gst_asio_src_debug, "asiosrc", 0, "asiosrc");
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}
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static void
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gst_asio_src_init (GstAsioSrc * self)
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{
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self->buffer_size = DEFAULT_BUFFER_SIZE;
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self->occupy_all_channels = DEFAULT_OCCUPY_ALL_CHANNELS;
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self->loopback = DEFAULT_LOOPBACK;
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}
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static void
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gst_asio_src_finalize (GObject * object)
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{
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GstAsioSrc *self = GST_ASIO_SRC (object);
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g_free (self->device_clsid);
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g_free (self->capture_channles);
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G_OBJECT_CLASS (parent_class)->finalize (object);
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}
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static void
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gst_asio_src_set_property (GObject * object, guint prop_id,
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const GValue * value, GParamSpec * pspec)
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{
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GstAsioSrc *self = GST_ASIO_SRC (object);
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switch (prop_id) {
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case PROP_DEVICE_CLSID:
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g_free (self->device_clsid);
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self->device_clsid = g_value_dup_string (value);
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break;
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case PROP_CAPTURE_CHANNELS:
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g_free (self->capture_channles);
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self->capture_channles = g_value_dup_string (value);
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break;
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case PROP_BUFFER_SIZE:
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self->buffer_size = g_value_get_uint (value);
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break;
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case PROP_OCCUPY_ALL_CHANNELS:
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self->occupy_all_channels = g_value_get_boolean (value);
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break;
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case PROP_LOOPBACK:
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self->loopback = g_value_get_boolean (value);
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break;
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default:
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G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
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break;
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}
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}
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static void
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gst_asio_src_get_property (GObject * object, guint prop_id,
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GValue * value, GParamSpec * pspec)
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{
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GstAsioSrc *self = GST_ASIO_SRC (object);
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switch (prop_id) {
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case PROP_DEVICE_CLSID:
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g_value_set_string (value, self->device_clsid);
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break;
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case PROP_CAPTURE_CHANNELS:
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g_value_set_string (value, self->capture_channles);
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break;
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case PROP_BUFFER_SIZE:
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g_value_set_uint (value, self->buffer_size);
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break;
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case PROP_OCCUPY_ALL_CHANNELS:
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g_value_set_boolean (value, self->occupy_all_channels);
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break;
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case PROP_LOOPBACK:
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g_value_set_boolean (value, self->loopback);
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break;
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default:
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G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
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break;
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}
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}
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static GstCaps *
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gst_asio_src_get_caps (GstBaseSrc * src, GstCaps * filter)
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{
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GstAudioBaseSrc *asrc = GST_AUDIO_BASE_SRC (src);
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GstAsioSrc *self = GST_ASIO_SRC (src);
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GstCaps *caps = nullptr;
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if (asrc->ringbuffer)
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caps =
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gst_asio_ring_buffer_get_caps (GST_ASIO_RING_BUFFER (asrc->ringbuffer));
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if (!caps)
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caps = gst_pad_get_pad_template_caps (GST_BASE_SRC_PAD (src));
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if (filter) {
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GstCaps *filtered =
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gst_caps_intersect_full (filter, caps, GST_CAPS_INTERSECT_FIRST);
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gst_caps_unref (caps);
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caps = filtered;
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}
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GST_DEBUG_OBJECT (self, "returning caps %" GST_PTR_FORMAT, caps);
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return caps;
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}
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static GstAudioRingBuffer *
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gst_asio_src_create_ringbuffer (GstAudioBaseSrc * src)
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{
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GstAsioSrc *self = GST_ASIO_SRC (src);
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GstAsioRingBuffer *ringbuffer = nullptr;
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HRESULT hr;
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CLSID clsid = GUID_NULL;
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GList *device_infos = nullptr;
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GstAsioDeviceInfo *info = nullptr;
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GstAsioObject *asio_object = nullptr;
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glong max_input_ch = 0;
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glong max_output_ch = 0;
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guint *channel_indices = nullptr;
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guint num_capture_channels = 0;
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std::set < guint > channel_list;
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guint i;
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gchar *ringbuffer_name;
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USES_CONVERSION;
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GST_DEBUG_OBJECT (self, "Create ringbuffer");
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if (gst_asio_enum (&device_infos) == 0) {
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GST_WARNING_OBJECT (self, "No available ASIO devices");
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return nullptr;
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}
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if (self->device_clsid) {
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hr = CLSIDFromString (A2COLE (self->device_clsid), &clsid);
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if (FAILED (hr)) {
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GST_WARNING_OBJECT (self, "Failed to convert %s to CLSID",
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self->device_clsid);
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clsid = GUID_NULL;
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}
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}
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/* Pick the first device */
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if (clsid == GUID_NULL) {
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info = (GstAsioDeviceInfo *) device_infos->data;
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} else {
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/* Find matching device */
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GList *iter;
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for (iter = device_infos; iter; iter = g_list_next (iter)) {
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GstAsioDeviceInfo *tmp = (GstAsioDeviceInfo *) iter->data;
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if (tmp->clsid == clsid) {
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info = tmp;
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break;
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}
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}
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}
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if (!info) {
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GST_WARNING_OBJECT (self, "Failed to find matching device");
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goto out;
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}
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asio_object = gst_asio_object_new (info, self->occupy_all_channels);
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if (!asio_object) {
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GST_WARNING_OBJECT (self, "Failed to create ASIO object");
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goto out;
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}
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/* Configure channels to use */
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if (!gst_asio_object_get_max_num_channels (asio_object, &max_input_ch,
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&max_output_ch) || max_input_ch <= 0) {
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GST_WARNING_OBJECT (self, "No available input channels");
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goto out;
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}
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/* Check if user requested specific channel(s) */
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if (self->capture_channles) {
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gchar **ch;
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ch = g_strsplit (self->capture_channles, ",", 0);
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num_capture_channels = g_strv_length (ch);
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if (num_capture_channels > max_input_ch) {
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GST_WARNING_OBJECT (self, "To many channels %d were requested",
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num_capture_channels);
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} else {
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for (i = 0; i < num_capture_channels; i++) {
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guint64 c = g_ascii_strtoull (ch[i], nullptr, 0);
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if (c >= (guint64) max_input_ch) {
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GST_WARNING_OBJECT (self, "Invalid channel index");
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num_capture_channels = 0;
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break;
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}
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channel_list.insert ((guint) c);
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}
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}
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g_strfreev (ch);
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}
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channel_indices = (guint *) g_alloca (sizeof (guint) * max_input_ch);
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if (channel_list.size () == 0) {
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for (i = 0; i < max_input_ch; i++)
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channel_indices[i] = i;
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num_capture_channels = max_input_ch;
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} else {
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num_capture_channels = (guint) channel_list.size ();
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i = 0;
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for (auto iter:channel_list) {
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channel_indices[i++] = iter;
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}
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}
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ringbuffer_name = g_strdup_printf ("%s-asioringbuffer",
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GST_OBJECT_NAME (src));
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ringbuffer =
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(GstAsioRingBuffer *) gst_asio_ring_buffer_new (asio_object,
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self->loopback ? GST_ASIO_DEVICE_CLASS_LOOPBACK_CAPTURE :
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GST_ASIO_DEVICE_CLASS_CAPTURE, ringbuffer_name);
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g_free (ringbuffer_name);
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if (!ringbuffer) {
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GST_WARNING_OBJECT (self, "Couldn't create ringbuffer object");
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goto out;
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}
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if (!gst_asio_ring_buffer_configure (ringbuffer, channel_indices,
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num_capture_channels, self->buffer_size)) {
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GST_WARNING_OBJECT (self, "Failed to configure ringbuffer");
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gst_clear_object (&ringbuffer);
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goto out;
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}
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out:
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if (device_infos)
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g_list_free_full (device_infos, (GDestroyNotify) gst_asio_device_info_free);
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gst_clear_object (&asio_object);
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return GST_AUDIO_RING_BUFFER_CAST (ringbuffer);
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}
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