cubeb_sink: Improve logging
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675ffc1024
commit
a6cf2e1f9d
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@ -2,6 +2,7 @@
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include <cstdarg>
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#include <mutex>
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#include <vector>
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#include <cubeb/cubeb.h>
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@ -22,6 +23,7 @@ struct CubebSink::Impl {
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static long DataCallback(cubeb_stream* stream, void* user_data, const void* input_buffer,
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void* output_buffer, long num_frames);
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static void StateCallback(cubeb_stream* stream, void* user_data, cubeb_state state);
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static void LogCallback(char const* fmt, ...);
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};
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CubebSink::CubebSink(std::string target_device_name) : impl(std::make_unique<Impl>()) {
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@ -29,21 +31,23 @@ CubebSink::CubebSink(std::string target_device_name) : impl(std::make_unique<Imp
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LOG_CRITICAL(Audio_Sink, "cubeb_init failed");
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return;
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}
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cubeb_devid output_device = nullptr;
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cubeb_stream_params params;
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params.rate = native_sample_rate;
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params.channels = 2;
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params.format = CUBEB_SAMPLE_S16NE;
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params.layout = CUBEB_LAYOUT_STEREO;
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cubeb_set_log_callback(CUBEB_LOG_NORMAL, &Impl::LogCallback);
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impl->sample_rate = native_sample_rate;
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u32 minimum_latency = 0;
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if (cubeb_get_min_latency(impl->ctx, ¶ms, &minimum_latency) != CUBEB_OK)
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LOG_CRITICAL(Audio_Sink, "Error getting minimum latency");
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cubeb_stream_params params;
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params.rate = impl->sample_rate;
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params.channels = 2;
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params.layout = CUBEB_LAYOUT_STEREO;
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params.format = CUBEB_SAMPLE_S16NE;
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params.prefs = CUBEB_STREAM_PREF_NONE;
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u32 minimum_latency = 100 * impl->sample_rate / 1000; // Firefox default
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if (cubeb_get_min_latency(impl->ctx, ¶ms, &minimum_latency) != CUBEB_OK) {
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LOG_CRITICAL(Audio_Sink, "Error getting minimum latency");
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}
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cubeb_devid output_device = nullptr;
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if (target_device_name != auto_device_name && !target_device_name.empty()) {
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cubeb_device_collection collection;
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if (cubeb_enumerate_devices(impl->ctx, CUBEB_DEVICE_TYPE_OUTPUT, &collection) != CUBEB_OK) {
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@ -61,10 +65,22 @@ CubebSink::CubebSink(std::string target_device_name) : impl(std::make_unique<Imp
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}
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}
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if (cubeb_stream_init(impl->ctx, &impl->stream, "Citra Audio Output", nullptr, nullptr,
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int stream_err = cubeb_stream_init(impl->ctx, &impl->stream, "CitraAudio", nullptr, nullptr,
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output_device, ¶ms, std::max(512u, minimum_latency),
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&Impl::DataCallback, &Impl::StateCallback, impl.get()) != CUBEB_OK) {
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LOG_CRITICAL(Audio_Sink, "Error initializing cubeb stream");
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&Impl::DataCallback, &Impl::StateCallback, impl.get());
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if (stream_err != CUBEB_OK) {
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switch (stream_err) {
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case CUBEB_ERROR:
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default:
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LOG_CRITICAL(Audio_Sink, "Error initializing cubeb stream ({})", stream_err);
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break;
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case CUBEB_ERROR_INVALID_FORMAT:
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LOG_CRITICAL(Audio_Sink, "Invalid format when initializing cubeb stream");
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break;
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case CUBEB_ERROR_DEVICE_UNAVAILABLE:
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LOG_CRITICAL(Audio_Sink, "Device unavailable when initializing cubeb stream");
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break;
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}
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return;
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}
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@ -75,8 +91,11 @@ CubebSink::CubebSink(std::string target_device_name) : impl(std::make_unique<Imp
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}
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CubebSink::~CubebSink() {
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if (!impl->ctx)
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if (!impl->ctx) {
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return;
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}
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impl->cb = nullptr;
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if (cubeb_stream_stop(impl->stream) != CUBEB_OK) {
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LOG_CRITICAL(Audio_Sink, "Error stopping cubeb stream");
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@ -102,21 +121,53 @@ long CubebSink::Impl::DataCallback(cubeb_stream* stream, void* user_data, const
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Impl* impl = static_cast<Impl*>(user_data);
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s16* buffer = reinterpret_cast<s16*>(output_buffer);
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if (!impl || !impl->cb)
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return 0;
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if (!impl || !impl->cb) {
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LOG_DEBUG(Audio_Sink, "Emitting zeros");
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std::memset(output_buffer, 0, num_frames * 2 * sizeof(s16));
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return num_frames;
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}
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impl->cb(buffer, num_frames);
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return num_frames;
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}
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void CubebSink::Impl::StateCallback(cubeb_stream* stream, void* user_data, cubeb_state state) {}
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void CubebSink::Impl::StateCallback(cubeb_stream* stream, void* user_data, cubeb_state state) {
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switch (state) {
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case CUBEB_STATE_STARTED:
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LOG_INFO(Audio_Sink, "Cubeb Audio Stream Started");
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break;
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case CUBEB_STATE_STOPPED:
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LOG_INFO(Audio_Sink, "Cubeb Audio Stream Stopped");
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break;
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case CUBEB_STATE_DRAINED:
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LOG_INFO(Audio_Sink, "Cubeb Audio Stream Drained");
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break;
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case CUBEB_STATE_ERROR:
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LOG_CRITICAL(Audio_Sink, "Cubeb Audio Stream Errored");
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break;
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}
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}
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void CubebSink::Impl::LogCallback(char const* format, ...) {
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std::array<char, 512> buffer;
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std::va_list args;
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va_start(args, format);
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#ifdef _MSC_VER
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vsprintf_s(buffer.data(), buffer.size(), format, args);
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#else
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vsnprintf(buffer.data(), buffer.size(), format, args);
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#endif
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va_end(args);
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buffer.back() = '\0';
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LOG_INFO(Audio_Sink, "{}", buffer.data());
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}
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std::vector<std::string> ListCubebSinkDevices() {
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std::vector<std::string> device_list;
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cubeb* ctx;
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if (cubeb_init(&ctx, "Citra Device Enumerator", nullptr) != CUBEB_OK) {
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if (cubeb_init(&ctx, "CitraEnumerator", nullptr) != CUBEB_OK) {
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LOG_CRITICAL(Audio_Sink, "cubeb_init failed");
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return {};
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}
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@ -15,7 +15,6 @@ DspInterface::DspInterface() = default;
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DspInterface::~DspInterface() = default;
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void DspInterface::SetSink(const std::string& sink_id, const std::string& audio_device) {
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sink.reset();
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const SinkDetails& sink_details = GetSinkDetails(sink_id);
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sink = sink_details.factory(audio_device);
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sink->SetCallback(
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