mirror of
https://bitbucket.org/CPMADevs/cnq3
synced 2024-11-10 14:41:48 +00:00
319 lines
7.4 KiB
C++
319 lines
7.4 KiB
C++
/*
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===========================================================================
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Copyright (C) 1999-2005 Id Software, Inc.
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This file is part of Quake III Arena source code.
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Quake III Arena source code is free software; you can redistribute it
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and/or modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the License,
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or (at your option) any later version.
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Quake III Arena source code is distributed in the hope that it will be
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useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Quake III Arena source code; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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===========================================================================
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*/
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#include "../client/snd_local.h"
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#include "win_local.h"
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#include <dsound.h>
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#pragma comment( lib, "dxguid" )
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HRESULT (WINAPI *pDirectSoundCreate)(GUID FAR *lpGUID, LPDIRECTSOUND FAR *lplpDS, IUnknown FAR *pUnkOuter);
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#define iDirectSoundCreate(a,b,c) pDirectSoundCreate(a,b,c)
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#define SECONDARY_BUFFER_SIZE 0x10000
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static int sample16;
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static DWORD gSndBufSize;
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static DWORD locksize;
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static LPDIRECTSOUND pDS;
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static LPDIRECTSOUNDBUFFER pDSBuf, pDSPBuf;
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static HINSTANCE hInstDS;
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static const char *DSoundError( int error ) {
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switch ( error ) {
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case DSERR_BUFFERLOST:
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return "DSERR_BUFFERLOST";
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case DSERR_INVALIDCALL:
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return "DSERR_INVALIDCALLS";
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case DSERR_INVALIDPARAM:
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return "DSERR_INVALIDPARAM";
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case DSERR_PRIOLEVELNEEDED:
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return "DSERR_PRIOLEVELNEEDED";
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}
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return "unknown";
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}
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void Sys_S_Shutdown( void ) {
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Com_DPrintf( "Shutting down sound system\n" );
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if ( pDS ) {
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Com_DPrintf( "Destroying DS buffers\n" );
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if ( pDS )
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{
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Com_DPrintf( "...setting NORMAL coop level\n" );
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pDS->SetCooperativeLevel( g_wv.hWnd, DSSCL_PRIORITY );
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}
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if ( pDSBuf )
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{
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Com_DPrintf( "...stopping and releasing sound buffer\n" );
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pDSBuf->Stop();
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pDSBuf->Release();
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}
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// only release primary buffer if it's not also the mixing buffer we just released
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if ( pDSPBuf && ( pDSBuf != pDSPBuf ) )
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{
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Com_DPrintf( "...releasing primary buffer\n" );
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pDSPBuf->Release();
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}
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pDSBuf = NULL;
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pDSPBuf = NULL;
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dma.buffer = NULL;
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Com_DPrintf( "...releasing DS object\n" );
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pDS->Release();
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}
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if ( hInstDS ) {
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Com_DPrintf( "...freeing DSOUND.DLL\n" );
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FreeLibrary( hInstDS );
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hInstDS = NULL;
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}
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pDS = NULL;
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pDSBuf = NULL;
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pDSPBuf = NULL;
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memset ((void *)&dma, 0, sizeof (dma));
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CoUninitialize( );
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}
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static qbool SNDDMA_InitDS()
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{
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HRESULT hresult;
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DSBUFFERDESC dsbuf;
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DSBCAPS dsbcaps;
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WAVEFORMATEX format;
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Com_Printf( "Initializing DirectSound\n" );
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if (SUCCEEDED( hresult = CoCreateInstance( CLSID_DirectSound8, NULL, CLSCTX_INPROC_SERVER, IID_IDirectSound8, (void **)&pDS))) {
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Com_DPrintf( "Using DS8\n" );
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}
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else if (SUCCEEDED( hresult = CoCreateInstance( CLSID_DirectSound, NULL, CLSCTX_INPROC_SERVER, IID_IDirectSound, (void **)&pDS))) {
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Com_DPrintf( "Using legacy DS\n" );
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}
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else {
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Com_Printf("failed\n");
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Sys_S_Shutdown();
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return qfalse;
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}
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hresult = pDS->Initialize( NULL );
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Com_DPrintf("...setting DSSCL_PRIORITY coop level: " );
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if ( DS_OK != pDS->SetCooperativeLevel( g_wv.hWnd, DSSCL_PRIORITY ) ) {
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Com_Printf ("failed\n");
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Sys_S_Shutdown();
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return qfalse;
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}
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Com_DPrintf("ok\n" );
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// create the secondary buffer we'll actually work with
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dma.channels = 2;
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dma.samplebits = 16;
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dma.speed = 22050;
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memset (&format, 0, sizeof(format));
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format.wFormatTag = WAVE_FORMAT_PCM;
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format.nChannels = dma.channels;
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format.wBitsPerSample = dma.samplebits;
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format.nSamplesPerSec = dma.speed;
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format.nBlockAlign = format.nChannels * format.wBitsPerSample / 8;
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format.cbSize = 0;
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format.nAvgBytesPerSec = format.nSamplesPerSec*format.nBlockAlign;
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memset (&dsbuf, 0, sizeof(dsbuf));
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dsbuf.dwSize = sizeof(DSBUFFERDESC);
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dsbuf.dwBufferBytes = SECONDARY_BUFFER_SIZE;
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dsbuf.lpwfxFormat = &format;
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memset(&dsbcaps, 0, sizeof(dsbcaps));
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dsbcaps.dwSize = sizeof(dsbcaps);
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Com_DPrintf( "...creating secondary buffer: " );
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dsbuf.dwFlags = DSBCAPS_LOCHARDWARE | DSBCAPS_GETCURRENTPOSITION2 | DSBCAPS_GLOBALFOCUS | DSBCAPS_CTRLVOLUME;
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if (DS_OK == pDS->CreateSoundBuffer( &dsbuf, &pDSBuf, NULL )) {
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Com_Printf( "locked hardware. ok\n" );
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}
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else {
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// Couldn't get hardware, fallback to software.
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dsbuf.dwFlags = DSBCAPS_LOCSOFTWARE | DSBCAPS_GETCURRENTPOSITION2 | DSBCAPS_GLOBALFOCUS | DSBCAPS_CTRLVOLUME;
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if (DS_OK != pDS->CreateSoundBuffer( &dsbuf, &pDSBuf, NULL )) {
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Com_Printf( "failed\n" );
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Sys_S_Shutdown();
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return qfalse;
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}
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Com_DPrintf( "forced to software. ok\n" );
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}
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// Make sure mixer is active
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if ( DS_OK != pDSBuf->Play( 0, 0, DSBPLAY_LOOPING ) ) {
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Com_Printf ("*** Looped sound play failed ***\n");
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Sys_S_Shutdown ();
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return qfalse;
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}
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// get the returned buffer size
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if ( DS_OK != pDSBuf->GetCaps(&dsbcaps) ) {
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Com_Printf ("*** GetCaps failed ***\n");
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Sys_S_Shutdown ();
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return qfalse;
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}
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gSndBufSize = dsbcaps.dwBufferBytes;
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dma.channels = format.nChannels;
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dma.samplebits = format.wBitsPerSample;
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dma.speed = format.nSamplesPerSec;
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dma.samples = gSndBufSize/(dma.samplebits/8);
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dma.submission_chunk = 1;
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dma.buffer = NULL; // must be locked first
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sample16 = (dma.samplebits/8) - 1;
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Sys_S_BeginPainting();
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if (dma.buffer)
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memset(dma.buffer, 0, dma.samples * dma.samplebits/8);
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Sys_S_Submit();
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return qtrue;
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}
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qbool Sys_S_Init(void)
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{
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CoInitialize(NULL);
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memset ((void *)&dma, 0, sizeof (dma));
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if (!SNDDMA_InitDS()) {
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assert(!pDSBuf);
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return qfalse;
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}
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assert(pDSBuf);
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Com_DPrintf("Completed successfully\n" );
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return qtrue;
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}
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int Sys_S_GetDMAPos( void ) {
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MMTIME mmtime;
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int s;
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DWORD dwWrite;
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mmtime.wType = TIME_SAMPLES;
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pDSBuf->GetCurrentPosition( &mmtime.u.sample, &dwWrite );
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s = mmtime.u.sample;
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s >>= sample16;
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s &= (dma.samples-1);
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return s;
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}
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void Sys_S_BeginPainting( void ) {
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int reps;
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DWORD dwSize2;
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DWORD *pbuf, *pbuf2;
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HRESULT hresult;
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DWORD dwStatus;
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if ( !pDSBuf ) {
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return;
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}
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// if the buffer was lost or stopped, restore it and/or restart it
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if ( pDSBuf->GetStatus(&dwStatus) != DS_OK ) {
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Com_Printf ("Couldn't get sound buffer status\n");
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}
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if (dwStatus & DSBSTATUS_BUFFERLOST)
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pDSBuf->Restore();
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if (!(dwStatus & DSBSTATUS_PLAYING))
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pDSBuf->Play( 0, 0, DSBPLAY_LOOPING );
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// lock the dsound buffer
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reps = 0;
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dma.buffer = NULL;
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while ((hresult = pDSBuf->Lock( 0, gSndBufSize, (LPVOID*)&pbuf, &locksize, (LPVOID*)&pbuf2, &dwSize2, 0 )) != DS_OK)
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{
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if (hresult != DSERR_BUFFERLOST)
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{
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Com_Printf( "SNDDMA_BeginPainting: Lock failed with error '%s'\n", DSoundError( hresult ) );
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S_Shutdown ();
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return;
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}
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else
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{
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pDSBuf->Restore();
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}
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if (++reps > 2)
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return;
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}
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dma.buffer = (unsigned char *)pbuf;
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}
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void Sys_S_Submit( void )
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{
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if ( pDSBuf ) {
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pDSBuf->Unlock( dma.buffer, locksize, NULL, 0 );
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}
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}
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void WIN_S_Mute( qbool mute )
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{
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if (!pDSBuf) {
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return;
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}
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static LONG lVolume = DSBVOLUME_MIN;
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static qbool bWasMuted = qfalse;
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if (mute && !bWasMuted) {
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pDSBuf->GetVolume(&lVolume);
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pDSBuf->SetVolume(DSBVOLUME_MIN);
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bWasMuted = qtrue;
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} else if (!mute && bWasMuted && lVolume != DSBVOLUME_MIN) {
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pDSBuf->SetVolume(lVolume);
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bWasMuted = qfalse;
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}
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}
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