176 lines
6.9 KiB
Vala
176 lines
6.9 KiB
Vala
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using Gst;
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namespace Dino.Plugins.Rtp {
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public static extern Buffer adjust_to_running_time(Base.Transform transform, Buffer buf);
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}
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public class Dino.Plugins.Rtp.EchoProbe : Audio.Filter {
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private static StaticPadTemplate sink_template = {"sink", PadDirection.SINK, PadPresence.ALWAYS, {null, "audio/x-raw,rate=48000,channels=1,layout=interleaved,format=S16LE"}};
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private static StaticPadTemplate src_template = {"src", PadDirection.SRC, PadPresence.ALWAYS, {null, "audio/x-raw,rate=48000,channels=1,layout=interleaved,format=S16LE"}};
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public Audio.Info audio_info { get; private set; }
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public signal void on_new_buffer(Buffer buffer);
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private uint period_samples;
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private uint period_size;
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private Base.Adapter adapter = new Base.Adapter();
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static construct {
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add_static_pad_template(sink_template);
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add_static_pad_template(src_template);
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set_static_metadata("Acoustic Echo Canceller probe", "Generic/Audio", "Gathers playback buffers for echo cancellation", "Dino Team <contact@dino.im>");
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}
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construct {
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set_passthrough(true);
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}
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public override bool setup(Audio.Info info) {
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audio_info = info;
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period_samples = info.rate / 100; // 10ms buffers
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period_size = period_samples * info.bpf;
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return true;
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}
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public override FlowReturn transform_ip(Buffer buf) {
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lock (adapter) {
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adapter.push(adjust_to_running_time(this, buf));
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while (adapter.available() > period_size) {
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on_new_buffer(adapter.take_buffer(period_size));
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}
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}
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return FlowReturn.OK;
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}
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public override bool stop() {
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adapter.clear();
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return true;
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}
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}
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public class Dino.Plugins.Rtp.VoiceProcessor : Audio.Filter {
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private static StaticPadTemplate sink_template = {"sink", PadDirection.SINK, PadPresence.ALWAYS, {null, "audio/x-raw,rate=48000,channels=1,layout=interleaved,format=S16LE"}};
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private static StaticPadTemplate src_template = {"src", PadDirection.SRC, PadPresence.ALWAYS, {null, "audio/x-raw,rate=48000,channels=1,layout=interleaved,format=S16LE"}};
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public Audio.Info audio_info { get; private set; }
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private ulong process_outgoing_buffer_handler_id;
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private uint adjust_delay_timeout_id;
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private uint period_samples;
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private uint period_size;
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private Base.Adapter adapter = new Base.Adapter();
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private EchoProbe? echo_probe;
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private Audio.StreamVolume? stream_volume;
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private ClockTime last_reverse;
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private void* native;
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static construct {
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add_static_pad_template(sink_template);
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add_static_pad_template(src_template);
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set_static_metadata("Voice Processor (AGC, AEC, filters, etc.)", "Generic/Audio", "Pre-processes voice with WebRTC Audio Processing Library", "Dino Team <contact@dino.im>");
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}
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construct {
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set_passthrough(false);
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}
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public VoiceProcessor(EchoProbe? echo_probe = null, Audio.StreamVolume? stream_volume = null) {
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this.echo_probe = echo_probe;
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this.stream_volume = stream_volume;
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}
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private static extern void* init_native(int stream_delay);
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private static extern void setup_native(void* native);
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private static extern void destroy_native(void* native);
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private static extern void analyze_reverse_stream(void* native, Audio.Info info, Buffer buffer);
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private static extern void process_stream(void* native, Audio.Info info, Buffer buffer);
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private static extern void adjust_stream_delay(void* native);
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private static extern void notify_gain_level(void* native, int gain_level);
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private static extern int get_suggested_gain_level(void* native);
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private static extern bool get_stream_has_voice(void* native);
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public override bool setup(Audio.Info info) {
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debug("VoiceProcessor.setup(%s)", info.to_caps().to_string());
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audio_info = info;
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period_samples = info.rate / 100; // 10ms buffers
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period_size = period_samples * info.bpf;
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adapter.clear();
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setup_native(native);
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return true;
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}
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public override bool start() {
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native = init_native(150);
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if (process_outgoing_buffer_handler_id == 0 && echo_probe != null) {
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process_outgoing_buffer_handler_id = echo_probe.on_new_buffer.connect(process_outgoing_buffer);
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}
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if (stream_volume == null && sinkpad.get_peer() != null && sinkpad.get_peer().get_parent_element() is Audio.StreamVolume) {
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stream_volume = sinkpad.get_peer().get_parent_element() as Audio.StreamVolume;
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}
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return true;
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}
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private bool adjust_delay() {
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if (native != null) {
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adjust_stream_delay(native);
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return Source.CONTINUE;
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} else {
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adjust_delay_timeout_id = 0;
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return Source.REMOVE;
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}
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}
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private void process_outgoing_buffer(Buffer buffer) {
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if (buffer.pts != uint64.MAX) {
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last_reverse = buffer.pts;
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}
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analyze_reverse_stream(native, echo_probe.audio_info, buffer);
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if (adjust_delay_timeout_id == 0 && echo_probe != null) {
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adjust_delay_timeout_id = Timeout.add(5000, adjust_delay);
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}
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}
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public override FlowReturn submit_input_buffer(bool is_discont, Buffer input) {
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lock (adapter) {
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if (is_discont) {
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adapter.clear();
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}
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adapter.push(adjust_to_running_time(this, input));
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}
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return FlowReturn.OK;
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}
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public override FlowReturn generate_output(out Buffer output_buffer) {
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lock (adapter) {
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if (adapter.available() >= period_size) {
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output_buffer = (Gst.Buffer) adapter.take_buffer(period_size).make_writable();
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int old_gain_level = 0;
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if (stream_volume != null) {
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old_gain_level = (int) (stream_volume.get_volume(Audio.StreamVolumeFormat.LINEAR) * 255.0);
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notify_gain_level(native, old_gain_level);
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}
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process_stream(native, audio_info, output_buffer);
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if (stream_volume != null) {
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int new_gain_level = get_suggested_gain_level(native);
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if (old_gain_level != new_gain_level) {
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debug("Gain: %i -> %i", old_gain_level, new_gain_level);
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stream_volume.set_volume(Audio.StreamVolumeFormat.LINEAR, ((double)new_gain_level) / 255.0);
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}
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}
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}
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}
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return FlowReturn.OK;
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}
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public override bool stop() {
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if (process_outgoing_buffer_handler_id != 0) {
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echo_probe.disconnect(process_outgoing_buffer_handler_id);
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process_outgoing_buffer_handler_id = 0;
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}
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if (adjust_delay_timeout_id != 0) {
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Source.remove(adjust_delay_timeout_id);
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adjust_delay_timeout_id = 0;
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}
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adapter.clear();
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destroy_native(native);
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native = null;
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return true;
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}
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}
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