msacm32: Added converter for ADPCM to PCM 8 bit mono.
Signed-off-by: Fabian Maurer <dark.shadow4@web.de> Signed-off-by: Andrew Eikum <aeikum@codeweavers.com> Signed-off-by: Alexandre Julliard <julliard@winehq.org>
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@ -179,6 +179,25 @@ static inline void W16(unsigned char* dst, short s)
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dst[1] = HIBYTE(s);
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}
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/***********************************************************************
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* W8
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*
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* Write a 8 bit sample
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*/
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static inline void W8(unsigned char* dst, short s)
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{
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dst[0] = (unsigned char)((s + 32768) >> 8);
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}
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static inline void W8_16(unsigned char* dst, short s, int bytes)
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{
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if(bytes == 1)
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W8(dst, s);
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else
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W16(dst, s);
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}
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/* IMA (or DVI) APDCM codec routines */
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static const unsigned IMA_StepTable[89] =
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@ -339,7 +358,7 @@ static void cvtSSima16K(PACMDRVSTREAMINSTANCE adsi,
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}
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}
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static void cvtMMima16K(PACMDRVSTREAMINSTANCE adsi,
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static void cvtMMimaK(PACMDRVSTREAMINSTANCE adsi,
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const unsigned char* src, LPDWORD nsrc,
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unsigned char* dst, LPDWORD ndst)
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{
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@ -347,15 +366,15 @@ static void cvtMMima16K(PACMDRVSTREAMINSTANCE adsi,
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int stepIndex;
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int nsamp_blk = ((LPIMAADPCMWAVEFORMAT)adsi->pwfxSrc)->wSamplesPerBlock;
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int nsamp;
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int bytesPerSample = adsi->pwfxDst->wBitsPerSample / 8;
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/* compute the number of entire blocks we can decode...
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* it's the min of the number of entire blocks in source buffer and the number
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* of entire blocks in destination buffer
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*/
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DWORD nblock = min(*nsrc / adsi->pwfxSrc->nBlockAlign,
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*ndst / (nsamp_blk * 2));
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DWORD nblock = min(*nsrc / adsi->pwfxSrc->nBlockAlign, *ndst / (nsamp_blk * bytesPerSample));
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*nsrc = nblock * adsi->pwfxSrc->nBlockAlign;
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*ndst = nblock * nsamp_blk * 2;
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*ndst = nblock * nsamp_blk * bytesPerSample;
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nsamp_blk--; /* remove the sample in block header */
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for (; nblock > 0; nblock--)
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@ -367,14 +386,14 @@ static void cvtMMima16K(PACMDRVSTREAMINSTANCE adsi,
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stepIndex = (unsigned)*(src + 2);
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clamp_step_index(&stepIndex);
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src += 4;
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W16(dst, sample); dst += 2;
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W8_16(dst, sample, bytesPerSample); dst += bytesPerSample;
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for (nsamp = nsamp_blk; nsamp > 0; nsamp -= 2)
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{
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process_nibble(*src, &stepIndex, &sample);
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W16(dst, sample); dst += 2;
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W8_16(dst, sample, bytesPerSample); dst += bytesPerSample;
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process_nibble(*src++ >> 4, &stepIndex, &sample);
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W16(dst, sample); dst += 2;
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W8_16(dst, sample, bytesPerSample); dst += bytesPerSample;
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}
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/* we have now to realign the source pointer on block */
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src = in_src + adsi->pwfxSrc->nBlockAlign;
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@ -735,10 +754,11 @@ static LRESULT ADPCM_StreamOpen(PACMDRVSTREAMINSTANCE adsi)
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{
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/* resampling or mono <=> stereo not available
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* ADPCM algo only define 16 bit per sample output
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* (The API seems to still allow 8 bit per sample output)
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*/
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if (adsi->pwfxSrc->nSamplesPerSec != adsi->pwfxDst->nSamplesPerSec ||
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adsi->pwfxSrc->nChannels != adsi->pwfxDst->nChannels ||
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adsi->pwfxDst->wBitsPerSample != 16)
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(adsi->pwfxDst->wBitsPerSample != 16 && adsi->pwfxDst->wBitsPerSample != 8))
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goto theEnd;
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nspb = ((LPIMAADPCMWAVEFORMAT)adsi->pwfxSrc)->wSamplesPerBlock;
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@ -756,7 +776,12 @@ static LRESULT ADPCM_StreamOpen(PACMDRVSTREAMINSTANCE adsi)
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if (adsi->pwfxDst->wBitsPerSample == 16 && adsi->pwfxDst->nChannels == 2)
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aad->convert = cvtSSima16K;
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if (adsi->pwfxDst->wBitsPerSample == 16 && adsi->pwfxDst->nChannels == 1)
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aad->convert = cvtMMima16K;
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aad->convert = cvtMMimaK;
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if (adsi->pwfxDst->wBitsPerSample == 8 && adsi->pwfxDst->nChannels == 1)
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aad->convert = cvtMMimaK;
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/* FIXME: Stereo support for 8bit samples*/
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if (adsi->pwfxDst->wBitsPerSample == 8 && adsi->pwfxDst->nChannels == 2)
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goto theEnd;
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}
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else if (adsi->pwfxSrc->wFormatTag == WAVE_FORMAT_PCM &&
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adsi->pwfxDst->wFormatTag == WAVE_FORMAT_IMA_ADPCM)
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