451 lines
13 KiB
C
451 lines
13 KiB
C
/* -*- tab-width: 8; c-basic-offset: 4 -*- */
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/*
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* MSACM32 library
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*
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* Copyright 2000 Eric Pouech
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*/
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#include <assert.h>
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#include "wine/winestring.h"
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#include "winbase.h"
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#include "wingdi.h"
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#include "winuser.h"
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#include "msacm.h"
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#include "msacmdrv.h"
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#include "debugtools.h"
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DEFAULT_DEBUG_CHANNEL(msacm);
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static DWORD PCM_drvOpen(LPCSTR str)
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{
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return 1;
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}
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static DWORD PCM_drvClose(DWORD dwDevID)
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{
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return 1;
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}
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static struct {
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int nChannels;
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int nBits;
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int rate;
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} PCM_Formats[] = {
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{1, 8, 8000},
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{2, 8, 8000},
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{1, 16, 8000},
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{2, 16, 8000},
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{1, 8, 11025},
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{2, 8, 11025},
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{1, 16, 11025},
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{2, 16, 11025},
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{1, 8, 22050},
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{2, 8, 22050},
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{1, 16, 22050},
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{2, 16, 22050},
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{1, 8, 44100},
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{2, 8, 44100},
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{1, 16, 44100},
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{2, 16, 44100},
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};
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#define NUM_PCM_FORMATS (sizeof(PCM_Formats) / sizeof(PCM_Formats[0]))
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static DWORD PCM_GetFormatIndex(LPWAVEFORMATEX wfx)
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{
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int i;
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for (i = 0; i < NUM_PCM_FORMATS; i++) {
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if (wfx->nChannels == PCM_Formats[i].nChannels &&
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wfx->nSamplesPerSec == PCM_Formats[i].rate &&
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wfx->wBitsPerSample == PCM_Formats[i].nBits)
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return i;
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}
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return 0xFFFFFFFF;
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}
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static LRESULT PCM_DriverDetails(PACMDRIVERDETAILSW add)
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{
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add->fccType = ACMDRIVERDETAILS_FCCTYPE_AUDIOCODEC;
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add->fccComp = ACMDRIVERDETAILS_FCCCOMP_UNDEFINED;
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add->wMid = 0xFF;
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add->wPid = 0x00;
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add->vdwACM = 0x01000000;
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add->vdwDriver = 0x01000000;
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add->fdwSupport = ACMDRIVERDETAILS_SUPPORTF_CONVERTER;
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add->cFormatTags = 1;
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add->cFilterTags = 0;
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add->hicon = (HICON)0;
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lstrcpyAtoW(add->szShortName, "WINE-PCM");
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lstrcpyAtoW(add->szLongName, "Wine PCM converter");
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lstrcpyAtoW(add->szCopyright, "Brought to you by the Wine team...");
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lstrcpyAtoW(add->szLicensing, "Refer to LICENSE file");
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add->szFeatures[0] = 0;
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return MMSYSERR_NOERROR;
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}
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static LRESULT PCM_FormatTagDetails(PACMFORMATTAGDETAILSW aftd, DWORD dwQuery)
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{
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switch (dwQuery) {
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case ACM_FORMATTAGDETAILSF_INDEX:
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if (aftd->dwFormatTagIndex != 0) return ACMERR_NOTPOSSIBLE;
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break;
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case ACM_FORMATTAGDETAILSF_FORMATTAG:
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if (aftd->dwFormatTag != WAVE_FORMAT_PCM) return ACMERR_NOTPOSSIBLE;
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break;
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case ACM_FORMATTAGDETAILSF_LARGESTSIZE:
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if (aftd->dwFormatTag != WAVE_FORMAT_UNKNOWN && aftd->dwFormatTag != WAVE_FORMAT_UNKNOWN)
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return ACMERR_NOTPOSSIBLE;
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break;
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default:
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WARN("Unsupported query %08lx\n", dwQuery);
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return MMSYSERR_NOTSUPPORTED;
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}
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aftd->dwFormatTagIndex = 0;
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aftd->dwFormatTag = WAVE_FORMAT_PCM;
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aftd->cbFormatSize = sizeof(PCMWAVEFORMAT);
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aftd->fdwSupport = ACMDRIVERDETAILS_SUPPORTF_CONVERTER;
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aftd->cStandardFormats = NUM_PCM_FORMATS;
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aftd->szFormatTag[0] = 0;
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return MMSYSERR_NOERROR;
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}
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static LRESULT PCM_FormatDetails(PACMFORMATDETAILSW afd, DWORD dwQuery)
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{
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switch (dwQuery) {
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case ACM_FORMATDETAILSF_FORMAT:
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afd->dwFormatIndex = PCM_GetFormatIndex(afd->pwfx);
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if (afd->dwFormatIndex == 0xFFFFFFFF) return ACMERR_NOTPOSSIBLE;
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break;
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case ACM_FORMATDETAILSF_INDEX:
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assert(afd->dwFormatIndex < NUM_PCM_FORMATS);
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afd->pwfx->wFormatTag = WAVE_FORMAT_PCM;
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afd->pwfx->nChannels = PCM_Formats[afd->dwFormatIndex].nChannels;
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afd->pwfx->nSamplesPerSec = PCM_Formats[afd->dwFormatIndex].rate;
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afd->pwfx->wBitsPerSample = PCM_Formats[afd->dwFormatIndex].nBits;
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/* native MSACM uses a PCMWAVEFORMAT structure, so cbSize is not accessible
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afd->pwfx->cbSize = 0;
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*/
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afd->pwfx->nBlockAlign = (afd->pwfx->nChannels * afd->pwfx->wBitsPerSample) / 8;
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afd->pwfx->nAvgBytesPerSec = afd->pwfx->nSamplesPerSec * afd->pwfx->nBlockAlign;
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break;
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default:
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WARN("Unsupported query %08lx\n", dwQuery);
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return MMSYSERR_NOTSUPPORTED;
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}
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afd->dwFormatTag = WAVE_FORMAT_PCM;
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afd->fdwSupport = ACMDRIVERDETAILS_SUPPORTF_CONVERTER;
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afd->szFormat[0] = 0; /* let MSACM format this for us... */
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return MMSYSERR_NOERROR;
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}
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static LRESULT PCM_FormatSuggest(PACMDRVFORMATSUGGEST adfs)
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{
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FIXME("(%p);\n", adfs);
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return MMSYSERR_NOTSUPPORTED;
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}
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static LRESULT PCM_StreamOpen(PACMDRVSTREAMINSTANCE adsi)
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{
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assert(!(adsi->fdwOpen & ACM_STREAMOPENF_ASYNC));
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if (PCM_GetFormatIndex(adsi->pwfxSrc) == 0xFFFFFFFF ||
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PCM_GetFormatIndex(adsi->pwfxDst) == 0xFFFFFFFF)
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return ACMERR_NOTPOSSIBLE;
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return MMSYSERR_NOERROR;
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}
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static LRESULT PCM_StreamClose(PACMDRVSTREAMINSTANCE adsi)
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{
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return MMSYSERR_NOERROR;
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}
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static inline DWORD PCM_round(DWORD a, DWORD b, DWORD c)
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{
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assert(a && b && c);
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/* to be sure, always return an entire number of c... */
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return (a * b + c - 1) / c;
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}
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static LRESULT PCM_StreamSize(PACMDRVSTREAMINSTANCE adsi, PACMDRVSTREAMSIZE adss)
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{
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switch (adss->fdwSize) {
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case ACM_STREAMSIZEF_DESTINATION:
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/* cbDstLength => cbSrcLength */
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adss->cbSrcLength = PCM_round(adss->cbDstLength, adsi->pwfxSrc->nAvgBytesPerSec, adsi->pwfxDst->nAvgBytesPerSec);
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break;
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case ACM_STREAMSIZEF_SOURCE:
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/* cbSrcLength => cbDstLength */
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adss->cbDstLength = PCM_round(adss->cbSrcLength, adsi->pwfxDst->nAvgBytesPerSec, adsi->pwfxSrc->nAvgBytesPerSec);
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break;
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default:
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WARN("Unsupported query %08lx\n", adss->fdwSize);
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return MMSYSERR_NOTSUPPORTED;
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}
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return MMSYSERR_NOERROR;
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}
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/*
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parameters :
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8 bit unsigned vs 16 bit signed (-32 / +32k ???)
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mono vs stereo
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sampling rate (8.0, 11.025, 22.05, 44.1 kHz)
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*/
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static void cvtMS88K(const unsigned char* src, int ns, unsigned char* dst)
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{
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while (ns--) {
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*dst++ = *src;
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*dst++ = *src++;
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}
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}
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static void cvtMS816K(const unsigned char* src, int ns, short* dst)
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{
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int v;
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while (ns--) {
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v = ((short)(*src++) ^ 0x80) * 256;
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*dst++ = LOBYTE(v);
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*dst++ = HIBYTE(v);
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*dst++ = LOBYTE(v);
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*dst++ = HIBYTE(v);
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}
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}
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static void cvtMS168K(const short* src, int ns, unsigned char* dst)
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{
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unsigned char v;
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while (ns--) {
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v = HIBYTE(*src++) ^ 0x80;
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*dst++ = v;
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*dst++ = v;
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}
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}
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static void cvtMS1616K(const short* src, int ns, short* dst)
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{
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while (ns--) {
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*dst++ = *src;
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*dst++ = *src++;
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}
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}
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static void cvtSM88K(const unsigned char* src, int ns, unsigned char* dst)
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{
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while (ns--) {
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*dst++ = (src[0] + src[1]) / 2;
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src += 2;
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}
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}
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static void cvtSM816K(const unsigned char* src, int ns, short* dst)
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{
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int v;
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while (ns--) {
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v = (((short)(src[0]) ^ 0x80) * 256 + ((short)(src[1]) ^ 0x80) * 256) / 2;
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src += 2;
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*dst++ = LOBYTE(v);
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*dst++ = HIBYTE(v);
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}
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}
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static void cvtSM168K(const short* src, int ns, unsigned char* dst)
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{
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unsigned char v;
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while (ns--) {
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v = ((HIBYTE(src[0]) ^ 0x80) + (HIBYTE(src[1]) ^ 0x80)) / 2;
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src += 2;
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*dst++ = v;
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}
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}
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static void cvtSM1616K(const short* src, int ns, short* dst)
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{
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while (ns--) {
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*dst++ = (src[0] + src[1]) / 2;
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src += 2;
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}
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}
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static void cvtMM816K(const unsigned char* src, int ns, short* dst)
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{
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int v;
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while (ns--) {
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v = ((short)(*src++) ^ 0x80) * 256;
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*dst++ = LOBYTE(v);
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*dst++ = HIBYTE(v);
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}
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}
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static void cvtSS816K(const unsigned char* src, int ns, short* dst)
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{
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int v;
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while (ns--) {
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v = ((short)(*src++) ^ 0x80) * 256;
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*dst++ = LOBYTE(v);
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*dst++ = HIBYTE(v);
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v = ((short)(*src++) ^ 0x80) * 256;
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*dst++ = LOBYTE(v);
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*dst++ = HIBYTE(v);
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}
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}
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static void cvtMM168K(const short* src, int ns, unsigned char* dst)
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{
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while (ns--) {
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*dst++ = HIBYTE(*src++) ^ 0x80;
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}
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}
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static void cvtSS168K(const short* src, int ns, unsigned char* dst)
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{
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while (ns--) {
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*dst++ = HIBYTE(*src++) ^ 0x80;
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*dst++ = HIBYTE(*src++) ^ 0x80;
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}
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}
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static LRESULT PCM_StreamConvert(PACMDRVSTREAMINSTANCE adsi, PACMDRVSTREAMHEADER adsh)
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{
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/* do the job */
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if (adsi->pwfxSrc->nSamplesPerSec == adsi->pwfxDst->nSamplesPerSec) {
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/* easy case */
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if (adsi->pwfxSrc->wBitsPerSample == adsi->pwfxDst->wBitsPerSample &&
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adsi->pwfxSrc->nChannels == adsi->pwfxDst->nChannels) {
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memcpy(adsh->pbDst, adsh->pbSrc, adsh->cbSrcLength);
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} else if (adsi->pwfxSrc->wBitsPerSample == 8 &&
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adsi->pwfxDst->wBitsPerSample == 8) {
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if (adsi->pwfxSrc->nChannels == 1 &&
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adsi->pwfxDst->nChannels == 2)
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cvtMS88K(adsh->pbSrc, adsh->cbSrcLength, adsh->pbDst);
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else if (adsi->pwfxSrc->nChannels == 2 &&
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adsi->pwfxDst->nChannels == 1)
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cvtSM88K(adsh->pbSrc, adsh->cbSrcLength / 2, adsh->pbDst);
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} else if (adsi->pwfxSrc->wBitsPerSample == 8 &&
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adsi->pwfxDst->wBitsPerSample == 16) {
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if (adsi->pwfxSrc->nChannels == 1 &&
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adsi->pwfxDst->nChannels == 1)
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cvtMM816K(adsh->pbSrc, adsh->cbSrcLength, (short*)adsh->pbDst);
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else if (adsi->pwfxSrc->nChannels == 1 &&
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adsi->pwfxDst->nChannels == 2)
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cvtMS816K(adsh->pbSrc, adsh->cbSrcLength, (short*)adsh->pbDst);
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else if (adsi->pwfxSrc->nChannels == 2 &&
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adsi->pwfxDst->nChannels == 1)
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cvtSM816K(adsh->pbSrc, adsh->cbSrcLength / 2, (short*)adsh->pbDst);
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else if (adsi->pwfxSrc->nChannels == 2 &&
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adsi->pwfxDst->nChannels == 2)
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cvtSS816K(adsh->pbSrc, adsh->cbSrcLength / 2, (short*)adsh->pbDst);
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} else if (adsi->pwfxSrc->wBitsPerSample == 16 &&
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adsi->pwfxDst->wBitsPerSample == 8) {
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if (adsi->pwfxSrc->nChannels == 1 &&
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adsi->pwfxDst->nChannels == 1)
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cvtMM168K((short*)adsh->pbSrc, adsh->cbSrcLength / 2, adsh->pbDst);
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else if (adsi->pwfxSrc->nChannels == 1 &&
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adsi->pwfxDst->nChannels == 2)
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cvtMS168K((short*)adsh->pbSrc, adsh->cbSrcLength / 2, adsh->pbDst);
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else if (adsi->pwfxSrc->nChannels == 2 &&
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adsi->pwfxDst->nChannels == 1)
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cvtSM168K((short*)adsh->pbSrc, adsh->cbSrcLength / 4, adsh->pbDst);
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else if (adsi->pwfxSrc->nChannels == 2 &&
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adsi->pwfxDst->nChannels == 2)
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cvtSS168K((short*)adsh->pbSrc, adsh->cbSrcLength / 4, adsh->pbDst);
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} else if (adsi->pwfxSrc->wBitsPerSample == 16 &&
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adsi->pwfxDst->wBitsPerSample == 16) {
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if (adsi->pwfxSrc->nChannels == 1 &&
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adsi->pwfxDst->nChannels == 2)
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cvtMS1616K((short*)adsh->pbSrc, adsh->cbSrcLength / 2, (short*)adsh->pbDst);
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else if (adsi->pwfxSrc->nChannels == 2 &&
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adsi->pwfxDst->nChannels == 1)
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cvtSM1616K((short*)adsh->pbSrc, adsh->cbSrcLength / 4, (short*)adsh->pbDst);
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} else FIXME("NIY\n");
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/* FIXME: rounding shall be taken care off... */
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adsh->cbSrcLengthUsed = adsh->cbSrcLength;
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adsh->cbDstLengthUsed = (adsh->cbSrcLength * adsi->pwfxDst->nBlockAlign) / adsi->pwfxSrc->nBlockAlign;
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} else {
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FIXME("NIY\n");
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return MMSYSERR_NOTSUPPORTED;
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}
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return MMSYSERR_NOERROR;
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}
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/**************************************************************************
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* PCM_DriverProc [exported]
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*/
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LRESULT CALLBACK PCM_DriverProc(DWORD dwDevID, HDRVR hDriv, UINT wMsg,
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LPARAM dwParam1, LPARAM dwParam2)
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{
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TRACE("(%08lx %08lx %u %08lx %08lx);\n",
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dwDevID, (DWORD)hDriv, wMsg, dwParam1, dwParam2);
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switch (wMsg) {
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case DRV_LOAD: return 1;
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case DRV_FREE: return 1;
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case DRV_OPEN: return PCM_drvOpen((LPSTR)dwParam1);
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case DRV_CLOSE: return PCM_drvClose(dwDevID);
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case DRV_ENABLE: return 1;
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case DRV_DISABLE: return 1;
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case DRV_QUERYCONFIGURE: return 1;
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case DRV_CONFIGURE: MessageBoxA(0, "MSACM PCM filter !", "Wine Driver", MB_OK); return 1;
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case DRV_INSTALL: return DRVCNF_RESTART;
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case DRV_REMOVE: return DRVCNF_RESTART;
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case ACMDM_DRIVER_NOTIFY:
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/* no caching from other ACM drivers is done so far */
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return MMSYSERR_NOERROR;
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case ACMDM_DRIVER_DETAILS:
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return PCM_DriverDetails((PACMDRIVERDETAILSW)dwParam1);
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case ACMDM_FORMATTAG_DETAILS:
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return PCM_FormatTagDetails((PACMFORMATTAGDETAILSW)dwParam1, dwParam2);
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case ACMDM_FORMAT_DETAILS:
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return PCM_FormatDetails((PACMFORMATDETAILSW)dwParam1, dwParam2);
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case ACMDM_FORMAT_SUGGEST:
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return PCM_FormatSuggest((PACMDRVFORMATSUGGEST)dwParam1);
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case ACMDM_STREAM_OPEN:
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return PCM_StreamOpen((PACMDRVSTREAMINSTANCE)dwParam1);
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case ACMDM_STREAM_CLOSE:
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return PCM_StreamClose((PACMDRVSTREAMINSTANCE)dwParam1);
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case ACMDM_STREAM_SIZE:
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return PCM_StreamSize((PACMDRVSTREAMINSTANCE)dwParam1, (PACMDRVSTREAMSIZE)dwParam2);
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case ACMDM_STREAM_CONVERT:
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return PCM_StreamConvert((PACMDRVSTREAMINSTANCE)dwParam1, (PACMDRVSTREAMHEADER)dwParam2);
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case ACMDM_HARDWARE_WAVE_CAPS_INPUT:
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case ACMDM_HARDWARE_WAVE_CAPS_OUTPUT:
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/* this converter is not a hardware driver */
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case ACMDM_FILTERTAG_DETAILS:
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case ACMDM_FILTER_DETAILS:
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/* this converter is not a filter */
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case ACMDM_STREAM_RESET:
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/* only needed for asynchronous driver... we aren't, so just say it */
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case ACMDM_STREAM_PREPARE:
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case ACMDM_STREAM_UNPREPARE:
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/* nothing special to do here... so don't do anything */
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return MMSYSERR_NOTSUPPORTED;
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default:
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return DefDriverProc(dwDevID, hDriv, wMsg, dwParam1, dwParam2);
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}
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return 0;
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}
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