mirror of https://github.com/snes9xgit/snes9x.git
413 lines
10 KiB
C++
413 lines
10 KiB
C++
/*****************************************************************************\
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Snes9x - Portable Super Nintendo Entertainment System (TM) emulator.
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This file is licensed under the Snes9x License.
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For further information, consult the LICENSE file in the root directory.
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\*****************************************************************************/
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#include "CXAudio2.h"
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#include "../snes9x.h"
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#include "../apu/apu.h"
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#include "wsnes9x.h"
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#include <process.h>
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#include "dxerr.h"
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#include "commctrl.h"
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/* CXAudio2
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Implements audio output through XAudio2.
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Basic idea: one master voice and one source voice are created;
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the source voice consumes buffers queued by PushBuffer, plays them through
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the master voice and calls OnBufferEnd after each buffer.
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ProcessSound copies new samples into the buffer and queues them for playback.
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*/
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/* Construction/Destruction
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*/
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CXAudio2::CXAudio2(void)
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{
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pXAudio2 = NULL;
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pSourceVoice = NULL;
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pMasterVoice = NULL;
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sum_bufferSize = singleBufferBytes \
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= singleBufferSamples = blockCount = 0;
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soundBuffer = NULL;
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initDone = false;
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}
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CXAudio2::~CXAudio2(void)
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{
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DeInitXAudio2();
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}
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INT_PTR CALLBACK DlgXAudio2InitError(HWND hDlg, UINT msg, WPARAM wParam, LPARAM lParam)
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{
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switch (msg)
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{
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case WM_INITDIALOG:
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{
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// display warning icon and set text of sys control (too long for resource)
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HICON aIcn = LoadIcon(NULL, IDI_WARNING);
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SendDlgItemMessage(hDlg, IDC_STATIC_ICON, STM_SETICON, (WPARAM)aIcn, 0);
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SetDlgItemText(hDlg, IDC_SYSLINK_DX, TEXT("Unable to initialize XAudio2.\
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You will not be able to hear any sound effects or music while playing.\n\n\
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This is usually caused by not having a recent DirectX9 runtime installed.\n\
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You can download the most recent DirectX9 runtime here:\n\n\
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<a href=\"https://www.microsoft.com/en-us/download/details.aspx?id=35\">https://www.microsoft.com/en-us/download/details.aspx?id=35</a>"));
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// center dialog on parent
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HWND parent = GetParent(hDlg);
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RECT rcParent, rcSelf;
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GetWindowRect(parent, &rcParent);
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GetWindowRect(hDlg, &rcSelf);
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SetWindowPos(hDlg,
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HWND_TOP,
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rcParent.left + ((rcParent.right - rcParent.left) - (rcSelf.right - rcSelf.left)) / 2,
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rcParent.top + ((rcParent.bottom - rcParent.top) - (rcSelf.bottom - rcSelf.top)) / 2,
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0, 0,
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SWP_NOSIZE);
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}
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return true;
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case WM_COMMAND:
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switch (LOWORD(wParam))
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{
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case IDOK:
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if (HIWORD(wParam) == BN_CLICKED) {
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EndDialog(hDlg, IDOK);
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return TRUE;
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}
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}
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break;
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case WM_NOTIFY:
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switch (((LPNMHDR)lParam)->code)
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{
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case NM_CLICK: // Fall through to the next case.
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case NM_RETURN:
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{
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PNMLINK pNMLink = (PNMLINK)lParam;
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LITEM item = pNMLink->item;
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// open link with registered application
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ShellExecute(NULL, L"open", item.szUrl, NULL, NULL, SW_SHOW);
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break;
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}
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}
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}
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return FALSE;
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}
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/* CXAudio2::InitXAudio2
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initializes the XAudio2 object
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-----
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returns true if successful, false otherwise
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*/
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bool CXAudio2::InitXAudio2(void)
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{
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if(initDone)
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return true;
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HRESULT hr;
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if ( FAILED(hr = XAudio2Create( &pXAudio2, 0 , XAUDIO2_DEFAULT_PROCESSOR ) ) ) {
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DXTRACE_ERR_MSGBOX(TEXT("Unable to create XAudio2 object."),hr);
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DialogBox(GUI.hInstance, MAKEINTRESOURCE(IDD_DIALOG_XAUDIO2_INIT_ERROR), GUI.hWnd, DlgXAudio2InitError);
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return false;
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}
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initDone = true;
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return true;
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}
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/* CXAudio2::InitVoices
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initializes the voice objects with the current audio settings
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-----
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returns true if successful, false otherwise
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*/
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bool CXAudio2::InitVoices(void)
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{
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HRESULT hr;
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// subtract -1, we added "Default" as first index
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int device_index = FindDeviceIndex(GUI.AudioDevice) - 1;
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if (device_index < 0)
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device_index = 0;
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if ( FAILED(hr = pXAudio2->CreateMasteringVoice( &pMasterVoice, 2,
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Settings.SoundPlaybackRate, 0, device_index, NULL ) ) ) {
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DXTRACE_ERR_MSGBOX(TEXT("Unable to create mastering voice."),hr);
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return false;
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}
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WAVEFORMATEX wfx;
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wfx.wFormatTag = WAVE_FORMAT_PCM;
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wfx.nChannels = 2;
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wfx.nSamplesPerSec = Settings.SoundPlaybackRate;
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wfx.nBlockAlign = 2 * 2;
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wfx.wBitsPerSample = 16;
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wfx.nAvgBytesPerSec = wfx.nSamplesPerSec * wfx.nBlockAlign;
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wfx.cbSize = 0;
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if( FAILED(hr = pXAudio2->CreateSourceVoice(&pSourceVoice, (WAVEFORMATEX*)&wfx,
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XAUDIO2_VOICE_NOSRC, XAUDIO2_DEFAULT_FREQ_RATIO, this, NULL, NULL ) ) ) {
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DXTRACE_ERR_MSGBOX(TEXT("Unable to create source voice."),hr);
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return false;
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}
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return true;
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}
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/* CXAudio2::DeInitXAudio2
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deinitializes all objects
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*/
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void CXAudio2::DeInitXAudio2(void)
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{
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initDone = false;
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DeInitVoices();
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if(pXAudio2) {
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pXAudio2->Release();
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pXAudio2 = NULL;
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}
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}
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/* CXAudio2::DeInitVoices
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deinitializes the voice objects and buffers
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*/
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void CXAudio2::DeInitVoices(void)
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{
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if(pSourceVoice) {
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StopPlayback();
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pSourceVoice->DestroyVoice();
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pSourceVoice = NULL;
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}
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if(pMasterVoice) {
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pMasterVoice->DestroyVoice();
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pMasterVoice = NULL;
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}
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if(soundBuffer) {
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delete [] soundBuffer;
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soundBuffer = NULL;
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}
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}
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/* CXAudio2::OnBufferEnd
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callback function called by the source voice
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IN:
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pBufferContext - unused
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*/
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void CXAudio2::OnBufferEnd(void *pBufferContext)
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{
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InterlockedDecrement(&bufferCount);
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SetEvent(GUI.SoundSyncEvent);
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}
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/* CXAudio2::PushBuffer
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pushes one buffer onto the source voice playback queue
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IN:
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AudioBytes - size of the buffer
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pAudioData - pointer to the buffer
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pContext - context passed to the callback, currently unused
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*/
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void CXAudio2::PushBuffer(UINT32 AudioBytes,BYTE *pAudioData,void *pContext)
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{
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XAUDIO2_BUFFER xa2buffer={0};
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xa2buffer.AudioBytes=AudioBytes;
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xa2buffer.pAudioData=pAudioData;
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xa2buffer.pContext=pContext;
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InterlockedIncrement(&bufferCount);
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pSourceVoice->SubmitSourceBuffer(&xa2buffer);
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}
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/* CXAudio2::SetupSound
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applies current sound settings by recreating the voice objects and buffers
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-----
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returns true if successful, false otherwise
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*/
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bool CXAudio2::SetupSound()
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{
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if(!initDone)
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return false;
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DeInitVoices();
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blockCount = 8;
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UINT32 blockTime = GUI.SoundBufferSize / blockCount;
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singleBufferSamples = (Settings.SoundPlaybackRate * blockTime) / 1000;
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singleBufferSamples *= 2;
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singleBufferBytes = singleBufferSamples * 2;
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sum_bufferSize = singleBufferBytes * blockCount;
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if (InitVoices())
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{
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soundBuffer = new uint8[sum_bufferSize];
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writeOffset = 0;
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partialOffset = 0;
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}
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else {
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DeInitVoices();
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return false;
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}
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bufferCount = 0;
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BeginPlayback();
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return true;
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}
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void CXAudio2::SetVolume(double volume)
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{
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pSourceVoice->SetVolume(volume);
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}
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void CXAudio2::BeginPlayback()
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{
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pSourceVoice->Start(0);
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}
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void CXAudio2::StopPlayback()
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{
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pSourceVoice->Stop(0);
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}
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int CXAudio2::GetAvailableBytes()
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{
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return ((blockCount - bufferCount) * singleBufferBytes) - partialOffset;
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}
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/* CXAudio2::ProcessSound
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The mixing function called by the sound core when new samples are available.
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SoundBuffer is divided into blockCount blocks. If there are enough available samples and a free block,
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the block is filled and queued to the source voice. bufferCount is increased by pushbuffer and decreased by
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the OnBufferComplete callback.
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*/
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void CXAudio2::ProcessSound()
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{
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int freeBytes = GetAvailableBytes();
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if (Settings.DynamicRateControl)
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{
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S9xUpdateDynamicRate(freeBytes, sum_bufferSize);
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}
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S9xFinalizeSamples();
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UINT32 availableSamples;
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availableSamples = S9xGetSampleCount();
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if (Settings.DynamicRateControl && !Settings.SoundSync)
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{
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// Using rate control, we should always keep the emulator's sound buffers empty to
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// maintain an accurate measurement.
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if (availableSamples > (freeBytes >> 1))
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{
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S9xClearSamples();
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return;
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}
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}
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if(!initDone)
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return;
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if(Settings.SoundSync && !Settings.TurboMode && !Settings.Mute)
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{
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// no sound sync when speed is not set to 100%
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while((freeBytes >> 1) < availableSamples)
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{
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ResetEvent(GUI.SoundSyncEvent);
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if(!GUI.AllowSoundSync || WaitForSingleObject(GUI.SoundSyncEvent, 1000) != WAIT_OBJECT_0)
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{
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S9xClearSamples();
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return;
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}
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freeBytes = GetAvailableBytes();
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}
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}
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if (partialOffset != 0) {
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BYTE *offsetBuffer = soundBuffer + writeOffset + partialOffset;
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UINT32 samplesleftinblock = (singleBufferBytes - partialOffset) >> 1;
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if (availableSamples <= samplesleftinblock)
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{
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S9xMixSamples(offsetBuffer, availableSamples);
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partialOffset += availableSamples << 1;
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availableSamples = 0;
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}
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else
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{
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S9xMixSamples(offsetBuffer, samplesleftinblock);
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partialOffset = 0;
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availableSamples -= samplesleftinblock;
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PushBuffer(singleBufferBytes, soundBuffer + writeOffset, NULL);
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writeOffset += singleBufferBytes;
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writeOffset %= sum_bufferSize;
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}
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}
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while (availableSamples >= singleBufferSamples && bufferCount < blockCount) {
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BYTE *curBuffer = soundBuffer + writeOffset;
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S9xMixSamples(curBuffer, singleBufferSamples);
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PushBuffer(singleBufferBytes, curBuffer, NULL);
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writeOffset += singleBufferBytes;
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writeOffset %= sum_bufferSize;
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availableSamples -= singleBufferSamples;
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}
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if (availableSamples > 0 && bufferCount < blockCount) {
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S9xMixSamples(soundBuffer + writeOffset, availableSamples);
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partialOffset = availableSamples << 1;
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}
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}
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/* CXAudio2::GetDeviceList
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get a list of the available output devices
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-----
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returns a vector of display names
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*/
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std::vector<std::wstring> CXAudio2::GetDeviceList()
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{
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std::vector<std::wstring> device_list;
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if (pXAudio2)
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{
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UINT32 num_devices;
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pXAudio2->GetDeviceCount(&num_devices);
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device_list.push_back(_T("Default"));
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for (unsigned int i = 0; i < num_devices; i++)
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{
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XAUDIO2_DEVICE_DETAILS device_details;
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if (SUCCEEDED(pXAudio2->GetDeviceDetails(i, &device_details)))
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{
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device_list.push_back(device_details.DisplayName);
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}
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}
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}
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return device_list;
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}
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/* CXAudio2::FindDeviceIndex
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find a device name in the list of possible output devices
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-----
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returns the index in the device list returned by GetDeviceList
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*/
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int CXAudio2::FindDeviceIndex(TCHAR *audio_device)
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{
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std::vector<std::wstring> device_list = GetDeviceList();
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int index = 0;
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for (int i = 0; i < device_list.size(); i++)
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{
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if (_tcsstr(device_list[i].c_str(), audio_device) != NULL)
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{
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index = i;
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break;
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}
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}
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return index;
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}
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