output/winmm: use AudioOutputWrapper
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30bb3f1fcb
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7b2cdd618e
@ -20,6 +20,7 @@
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#include "config.h"
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#include "WinmmOutputPlugin.hxx"
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#include "../OutputAPI.hxx"
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#include "../Wrapper.hxx"
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#include "pcm/PcmBuffer.hxx"
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#include "mixer/MixerList.hxx"
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#include "fs/AllocatedPath.hxx"
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@ -36,7 +37,9 @@ struct WinmmBuffer {
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WAVEHDR hdr;
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};
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struct WinmmOutput {
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class WinmmOutput {
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friend struct AudioOutputWrapper<WinmmOutput>;
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AudioOutput base;
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const UINT device_id;
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@ -51,7 +54,34 @@ struct WinmmOutput {
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WinmmBuffer buffers[8];
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unsigned next_buffer;
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public:
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WinmmOutput(const ConfigBlock &block);
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HWAVEOUT GetHandle() {
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return handle;
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}
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static WinmmOutput *Create(const ConfigBlock &block, Error &) {
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return new WinmmOutput(block);
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}
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bool Open(AudioFormat &audio_format, Error &);
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void Close();
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size_t Play(const void *chunk, size_t size, Error &);
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void Drain();
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void Cancel();
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private:
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/**
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* Wait until the buffer is finished.
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*/
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void DrainBuffer(WinmmBuffer &buffer);
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void DrainAllBuffers();
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void Stop();
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};
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static std::runtime_error
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@ -68,7 +98,7 @@ MakeWaveOutError(MMRESULT result, const char *prefix)
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HWAVEOUT
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winmm_output_get_handle(WinmmOutput &output)
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{
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return output.handle;
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return output.GetHandle();
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}
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static bool
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@ -121,27 +151,11 @@ WinmmOutput::WinmmOutput(const ConfigBlock &block)
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{
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}
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static AudioOutput *
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winmm_output_init(const ConfigBlock &block, Error &)
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bool
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WinmmOutput::Open(AudioFormat &audio_format, Error &)
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{
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return &(new WinmmOutput(block))->base;
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}
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static void
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winmm_output_finish(AudioOutput *ao)
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{
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WinmmOutput *wo = (WinmmOutput *)ao;
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delete wo;
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}
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static bool
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winmm_output_open(AudioOutput *ao, AudioFormat &audio_format, Error &)
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{
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WinmmOutput *wo = (WinmmOutput *)ao;
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wo->event = CreateEvent(nullptr, false, false, nullptr);
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if (wo->event == nullptr)
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event = CreateEvent(nullptr, false, false, nullptr);
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if (event == nullptr)
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throw std::runtime_error("CreateEvent() failed");
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switch (audio_format.format) {
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@ -172,40 +186,37 @@ winmm_output_open(AudioOutput *ao, AudioFormat &audio_format, Error &)
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format.wBitsPerSample = audio_format.GetSampleSize() * 8;
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format.cbSize = 0;
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MMRESULT result = waveOutOpen(&wo->handle, wo->device_id, &format,
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(DWORD_PTR)wo->event, 0, CALLBACK_EVENT);
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MMRESULT result = waveOutOpen(&handle, device_id, &format,
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(DWORD_PTR)event, 0, CALLBACK_EVENT);
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if (result != MMSYSERR_NOERROR) {
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CloseHandle(wo->event);
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CloseHandle(event);
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throw MakeWaveOutError(result, "waveOutOpen() failed");
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}
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for (unsigned i = 0; i < ARRAY_SIZE(wo->buffers); ++i) {
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memset(&wo->buffers[i].hdr, 0, sizeof(wo->buffers[i].hdr));
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}
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for (unsigned i = 0; i < ARRAY_SIZE(buffers); ++i)
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memset(&buffers[i].hdr, 0, sizeof(buffers[i].hdr));
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wo->next_buffer = 0;
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next_buffer = 0;
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return true;
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}
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static void
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winmm_output_close(AudioOutput *ao)
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void
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WinmmOutput::Close()
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{
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WinmmOutput *wo = (WinmmOutput *)ao;
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for (unsigned i = 0; i < ARRAY_SIZE(buffers); ++i)
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buffers[i].buffer.Clear();
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for (unsigned i = 0; i < ARRAY_SIZE(wo->buffers); ++i)
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wo->buffers[i].buffer.Clear();
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waveOutClose(handle);
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waveOutClose(wo->handle);
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CloseHandle(wo->event);
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CloseHandle(event);
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}
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/**
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* Copy data into a buffer, and prepare the wave header.
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*/
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static void
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winmm_set_buffer(WinmmOutput *wo, WinmmBuffer *buffer,
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winmm_set_buffer(HWAVEOUT handle, WinmmBuffer *buffer,
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const void *data, size_t size)
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{
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void *dest = buffer->buffer.Get(size);
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@ -217,27 +228,24 @@ winmm_set_buffer(WinmmOutput *wo, WinmmBuffer *buffer,
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buffer->hdr.lpData = (LPSTR)dest;
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buffer->hdr.dwBufferLength = size;
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MMRESULT result = waveOutPrepareHeader(wo->handle, &buffer->hdr,
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MMRESULT result = waveOutPrepareHeader(handle, &buffer->hdr,
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sizeof(buffer->hdr));
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if (result != MMSYSERR_NOERROR)
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throw MakeWaveOutError(result,
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"waveOutPrepareHeader() failed");
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}
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/**
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* Wait until the buffer is finished.
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*/
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static void
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winmm_drain_buffer(WinmmOutput *wo, WinmmBuffer *buffer)
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void
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WinmmOutput::DrainBuffer(WinmmBuffer &buffer)
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{
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if ((buffer->hdr.dwFlags & WHDR_DONE) == WHDR_DONE)
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if ((buffer.hdr.dwFlags & WHDR_DONE) == WHDR_DONE)
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/* already finished */
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return;
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while (true) {
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MMRESULT result = waveOutUnprepareHeader(wo->handle,
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&buffer->hdr,
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sizeof(buffer->hdr));
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MMRESULT result = waveOutUnprepareHeader(handle,
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&buffer.hdr,
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sizeof(buffer.hdr));
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if (result == MMSYSERR_NOERROR)
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return;
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else if (result != WAVERR_STILLPLAYING)
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@ -245,93 +253,88 @@ winmm_drain_buffer(WinmmOutput *wo, WinmmBuffer *buffer)
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"waveOutUnprepareHeader() failed");
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/* wait some more */
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WaitForSingleObject(wo->event, INFINITE);
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WaitForSingleObject(event, INFINITE);
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}
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}
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static size_t
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winmm_output_play(AudioOutput *ao, const void *chunk, size_t size, Error &)
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size_t
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WinmmOutput::Play(const void *chunk, size_t size, Error &)
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{
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WinmmOutput *wo = (WinmmOutput *)ao;
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/* get the next buffer from the ring and prepare it */
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WinmmBuffer *buffer = &wo->buffers[wo->next_buffer];
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winmm_drain_buffer(wo, buffer);
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winmm_set_buffer(wo, buffer, chunk, size);
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WinmmBuffer *buffer = &buffers[next_buffer];
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DrainBuffer(*buffer);
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winmm_set_buffer(handle, buffer, chunk, size);
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/* enqueue the buffer */
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MMRESULT result = waveOutWrite(wo->handle, &buffer->hdr,
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MMRESULT result = waveOutWrite(handle, &buffer->hdr,
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sizeof(buffer->hdr));
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if (result != MMSYSERR_NOERROR) {
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waveOutUnprepareHeader(wo->handle, &buffer->hdr,
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waveOutUnprepareHeader(handle, &buffer->hdr,
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sizeof(buffer->hdr));
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throw MakeWaveOutError(result, "waveOutWrite() failed");
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}
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/* mark our buffer as "used" */
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wo->next_buffer = (wo->next_buffer + 1) %
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ARRAY_SIZE(wo->buffers);
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next_buffer = (next_buffer + 1) % ARRAY_SIZE(buffers);
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return size;
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}
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static void
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winmm_drain_all_buffers(WinmmOutput *wo)
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void
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WinmmOutput::DrainAllBuffers()
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{
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for (unsigned i = wo->next_buffer; i < ARRAY_SIZE(wo->buffers); ++i)
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winmm_drain_buffer(wo, &wo->buffers[i]);
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for (unsigned i = next_buffer; i < ARRAY_SIZE(buffers); ++i)
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DrainBuffer(buffers[i]);
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for (unsigned i = 0; i < wo->next_buffer; ++i)
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winmm_drain_buffer(wo, &wo->buffers[i]);
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for (unsigned i = 0; i < next_buffer; ++i)
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DrainBuffer(buffers[i]);
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}
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static void
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winmm_stop(WinmmOutput *wo)
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void
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WinmmOutput::Stop()
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{
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waveOutReset(wo->handle);
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waveOutReset(handle);
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for (unsigned i = 0; i < ARRAY_SIZE(wo->buffers); ++i) {
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WinmmBuffer *buffer = &wo->buffers[i];
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waveOutUnprepareHeader(wo->handle, &buffer->hdr,
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for (unsigned i = 0; i < ARRAY_SIZE(buffers); ++i) {
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WinmmBuffer *buffer = &buffers[i];
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waveOutUnprepareHeader(handle, &buffer->hdr,
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sizeof(buffer->hdr));
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}
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}
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static void
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winmm_output_drain(AudioOutput *ao)
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void
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WinmmOutput::Drain()
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{
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WinmmOutput *wo = (WinmmOutput *)ao;
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try {
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winmm_drain_all_buffers(wo);
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DrainAllBuffers();
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} catch (...) {
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winmm_stop(wo);
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Stop();
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throw;
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}
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}
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static void
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winmm_output_cancel(AudioOutput *ao)
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void
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WinmmOutput::Cancel()
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{
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WinmmOutput *wo = (WinmmOutput *)ao;
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winmm_stop(wo);
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Stop();
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}
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typedef AudioOutputWrapper<WinmmOutput> Wrapper;
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const struct AudioOutputPlugin winmm_output_plugin = {
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"winmm",
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winmm_output_test_default_device,
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winmm_output_init,
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winmm_output_finish,
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&Wrapper::Init,
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&Wrapper::Finish,
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nullptr,
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nullptr,
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winmm_output_open,
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winmm_output_close,
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&Wrapper::Open,
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&Wrapper::Close,
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nullptr,
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nullptr,
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winmm_output_play,
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winmm_output_drain,
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winmm_output_cancel,
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&Wrapper::Play,
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&Wrapper::Drain,
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&Wrapper::Cancel,
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nullptr,
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&winmm_mixer_plugin,
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};
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