184 lines
6.5 KiB
C++
184 lines
6.5 KiB
C++
// Copyright 2018 Citra Emulator Project
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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 <utility>
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#include <vector>
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#include <cubeb/cubeb.h>
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#include "audio_core/cubeb_input.h"
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#include "common/logging/log.h"
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namespace AudioCore {
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using SampleQueue = Common::SPSCQueue<Frontend::Mic::Samples>;
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struct CubebInput::Impl {
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cubeb* ctx = nullptr;
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cubeb_stream* stream = nullptr;
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std::unique_ptr<SampleQueue> sample_queue{};
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u8 sample_size_in_bytes = 0;
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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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};
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CubebInput::CubebInput(std::string device_id)
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: impl(std::make_unique<Impl>()), device_id(std::move(device_id)) {
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if (cubeb_init(&impl->ctx, "Citra Input", nullptr) != CUBEB_OK) {
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LOG_ERROR(Audio, "cubeb_init failed! Mic will not work properly");
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return;
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}
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impl->sample_queue = std::make_unique<SampleQueue>();
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}
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CubebInput::~CubebInput() {
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if (!impl->ctx)
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return;
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if (cubeb_stream_stop(impl->stream) != CUBEB_OK) {
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LOG_ERROR(Audio, "Error stopping cubeb input stream.");
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}
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cubeb_destroy(impl->ctx);
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}
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void CubebInput::StartSampling(const Frontend::Mic::Parameters& params) {
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// Cubeb apparently only supports signed 16 bit PCM (and float32 which the 3ds doesn't support)
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// TODO resample the input stream
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if (params.sign == Frontend::Mic::Signedness::Unsigned) {
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LOG_ERROR(Audio,
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"Application requested unsupported unsigned pcm format. Falling back to signed");
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}
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impl->sample_size_in_bytes = params.sample_size / 8;
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parameters = params;
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is_sampling = true;
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cubeb_devid input_device = nullptr;
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if (device_id != Frontend::Mic::default_device_name && !device_id.empty()) {
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cubeb_device_collection collection;
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if (cubeb_enumerate_devices(impl->ctx, CUBEB_DEVICE_TYPE_INPUT, &collection) != CUBEB_OK) {
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LOG_WARNING(Audio, "Audio input device enumeration not supported");
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} else {
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const auto collection_end = collection.device + collection.count;
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const auto device = std::find_if(
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collection.device, collection_end, [this](const cubeb_device_info& info) {
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return info.friendly_name != nullptr && device_id == info.friendly_name;
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});
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if (device != collection_end) {
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input_device = device->devid;
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}
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cubeb_device_collection_destroy(impl->ctx, &collection);
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}
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}
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cubeb_stream_params input_params;
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input_params.channels = 1;
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input_params.layout = CUBEB_LAYOUT_UNDEFINED;
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input_params.prefs = CUBEB_STREAM_PREF_NONE;
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input_params.format = CUBEB_SAMPLE_S16LE;
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input_params.rate = params.sample_rate;
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u32 latency_frames;
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if (cubeb_get_min_latency(impl->ctx, &input_params, &latency_frames) != CUBEB_OK) {
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LOG_ERROR(Audio, "Could not get minimum latency");
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}
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if (cubeb_stream_init(impl->ctx, &impl->stream, "Citra Microphone", input_device, &input_params,
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nullptr, nullptr, latency_frames, Impl::DataCallback, Impl::StateCallback,
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impl.get()) != CUBEB_OK) {
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LOG_CRITICAL(Audio, "Error creating cubeb input stream");
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is_sampling = false;
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return;
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}
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if (cubeb_stream_start(impl->stream) != CUBEB_OK) {
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LOG_CRITICAL(Audio, "Error starting cubeb input stream");
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is_sampling = false;
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return;
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}
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}
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void CubebInput::StopSampling() {
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if (impl->stream) {
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cubeb_stream_stop(impl->stream);
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}
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is_sampling = false;
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}
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void CubebInput::AdjustSampleRate(u32 sample_rate) {
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// TODO This should restart the stream with the new sample rate
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LOG_ERROR(Audio, "AdjustSampleRate unimplemented!");
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}
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Frontend::Mic::Samples CubebInput::Read() {
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Frontend::Mic::Samples samples{};
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Frontend::Mic::Samples queue;
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while (impl->sample_queue->Pop(queue)) {
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samples.insert(samples.end(), queue.begin(), queue.end());
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}
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return samples;
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}
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long CubebInput::Impl::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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Impl* impl = static_cast<Impl*>(user_data);
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if (!impl) {
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return 0;
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}
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constexpr auto resample_s16_s8 = [](s16 sample) {
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return static_cast<u8>(static_cast<u16>(sample) >> 8);
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};
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std::vector<u8> samples{};
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samples.reserve(num_frames * impl->sample_size_in_bytes);
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if (impl->sample_size_in_bytes == 1) {
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// If the sample format is 8bit, then resample back to 8bit before passing back to core
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for (std::size_t i = 0; i < static_cast<std::size_t>(num_frames); i++) {
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s16 data;
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std::memcpy(&data, static_cast<const u8*>(input_buffer) + i * 2, 2);
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samples.push_back(resample_s16_s8(data));
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}
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} else {
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// Otherwise copy all of the samples to the buffer (which will be treated as s16 by core)
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const u8* data = reinterpret_cast<const u8*>(input_buffer);
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samples.insert(samples.begin(), data, data + num_frames * impl->sample_size_in_bytes);
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}
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impl->sample_queue->Push(samples);
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// returning less than num_frames here signals cubeb to stop sampling
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return num_frames;
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}
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void CubebInput::Impl::StateCallback(cubeb_stream* stream, void* user_data, cubeb_state state) {}
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std::vector<std::string> ListCubebInputDevices() {
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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 Input Device Enumerator", nullptr) != CUBEB_OK) {
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LOG_CRITICAL(Audio, "cubeb_init failed");
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return {};
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}
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cubeb_device_collection collection;
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if (cubeb_enumerate_devices(ctx, CUBEB_DEVICE_TYPE_INPUT, &collection) != CUBEB_OK) {
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LOG_WARNING(Audio_Sink, "Audio input device enumeration not supported");
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} else {
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for (std::size_t i = 0; i < collection.count; i++) {
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const cubeb_device_info& device = collection.device[i];
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if (device.state == CUBEB_DEVICE_STATE_ENABLED && device.friendly_name) {
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device_list.emplace_back(device.friendly_name);
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}
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}
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cubeb_device_collection_destroy(ctx, &collection);
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}
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cubeb_destroy(ctx);
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return device_list;
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}
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} // namespace AudioCore
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