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168 lines
4.3 KiB
C++
168 lines
4.3 KiB
C++
// Copyright 2017 Dolphin Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#include "AudioCommon/CubebStream.h"
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#include <cubeb/cubeb.h>
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#include "AudioCommon/CubebUtils.h"
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#include "Common/CommonTypes.h"
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#include "Common/Event.h"
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#include "Common/Logging/Log.h"
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#include "Common/ScopeGuard.h"
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#include "Common/Thread.h"
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#include "Core/Config/MainSettings.h"
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#ifdef _WIN32
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#include <Objbase.h>
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#endif
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// ~10 ms - needs to be at least 240 for surround
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constexpr u32 BUFFER_SAMPLES = 512;
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long CubebStream::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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{
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auto* self = static_cast<CubebStream*>(user_data);
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if (self->m_stereo)
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self->m_mixer->Mix(static_cast<short*>(output_buffer), num_frames);
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else
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self->m_mixer->MixSurround(static_cast<float*>(output_buffer), num_frames);
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return num_frames;
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}
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void CubebStream::StateCallback(cubeb_stream* stream, void* user_data, cubeb_state state)
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{
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}
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CubebStream::CubebStream()
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#ifdef _WIN32
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: m_work_queue("Cubeb Worker", [](const std::function<void()>& func) { func(); })
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{
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Common::Event sync_event;
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m_work_queue.EmplaceItem([this, &sync_event] {
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Common::ScopeGuard sync_event_guard([&sync_event] { sync_event.Set(); });
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auto result = ::CoInitializeEx(nullptr, COINIT_MULTITHREADED | COINIT_DISABLE_OLE1DDE);
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m_coinit_success = result == S_OK;
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m_should_couninit = result == S_OK || result == S_FALSE;
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});
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sync_event.Wait();
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}
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#else
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= default;
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#endif
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bool CubebStream::Init()
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{
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bool return_value = false;
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#ifdef _WIN32
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if (!m_coinit_success)
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return false;
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Common::Event sync_event;
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m_work_queue.EmplaceItem([this, &return_value, &sync_event] {
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Common::ScopeGuard sync_event_guard([&sync_event] { sync_event.Set(); });
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#endif
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m_ctx = CubebUtils::GetContext();
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if (m_ctx)
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{
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m_stereo = !Config::ShouldUseDPL2Decoder();
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cubeb_stream_params params{};
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params.rate = m_mixer->GetSampleRate();
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if (m_stereo)
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{
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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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}
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else
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{
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params.channels = 6;
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params.format = CUBEB_SAMPLE_FLOAT32NE;
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params.layout = CUBEB_LAYOUT_3F2_LFE;
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}
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u32 minimum_latency = 0;
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if (cubeb_get_min_latency(m_ctx.get(), ¶ms, &minimum_latency) != CUBEB_OK)
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ERROR_LOG_FMT(AUDIO, "Error getting minimum latency");
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INFO_LOG_FMT(AUDIO, "Minimum latency: {} frames", minimum_latency);
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return_value =
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cubeb_stream_init(m_ctx.get(), &m_stream, "Dolphin Audio Output", nullptr, nullptr,
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nullptr, ¶ms, std::max(BUFFER_SAMPLES, minimum_latency),
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DataCallback, StateCallback, this) == CUBEB_OK;
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}
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#ifdef _WIN32
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});
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sync_event.Wait();
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#endif
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return return_value;
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}
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bool CubebStream::SetRunning(bool running)
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{
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bool return_value = false;
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#ifdef _WIN32
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if (!m_coinit_success)
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return false;
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Common::Event sync_event;
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m_work_queue.EmplaceItem([this, running, &return_value, &sync_event] {
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Common::ScopeGuard sync_event_guard([&sync_event] { sync_event.Set(); });
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#endif
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if (running)
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return_value = cubeb_stream_start(m_stream) == CUBEB_OK;
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else
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return_value = cubeb_stream_stop(m_stream) == CUBEB_OK;
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#ifdef _WIN32
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});
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sync_event.Wait();
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#endif
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return return_value;
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}
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CubebStream::~CubebStream()
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{
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#ifdef _WIN32
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Common::Event sync_event;
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m_work_queue.EmplaceItem([this, &sync_event] {
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Common::ScopeGuard sync_event_guard([&sync_event] { sync_event.Set(); });
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#endif
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cubeb_stream_stop(m_stream);
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cubeb_stream_destroy(m_stream);
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#ifdef _WIN32
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if (m_should_couninit)
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{
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m_should_couninit = false;
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CoUninitialize();
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}
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m_coinit_success = false;
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});
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sync_event.Wait();
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#endif
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m_ctx.reset();
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}
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void CubebStream::SetVolume(int volume)
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{
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#ifdef _WIN32
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if (!m_coinit_success)
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return;
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Common::Event sync_event;
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m_work_queue.EmplaceItem([this, volume, &sync_event] {
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Common::ScopeGuard sync_event_guard([&sync_event] { sync_event.Set(); });
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#endif
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cubeb_stream_set_volume(m_stream, volume / 100.0f);
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#ifdef _WIN32
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});
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sync_event.Wait();
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#endif
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}
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