2012-08-15 01:01:55 -07:00
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#include "config.h"
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#ifdef HAVE_XMMINTRIN_H
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2013-06-18 14:33:39 -07:00
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#ifdef IN_IDE_PARSER
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/* KDevelop's parser won't recognize these defines that get added by the -msse
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* switch used to compile this source. Without them, xmmintrin.h fails to
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* declare anything. */
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#define __MMX__
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#define __SSE__
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#endif
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2012-08-15 01:01:55 -07:00
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#include <xmmintrin.h>
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#endif
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#include "AL/al.h"
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#include "AL/alc.h"
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#include "alMain.h"
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#include "alu.h"
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2012-09-09 00:53:54 -07:00
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#include "alSource.h"
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2012-09-16 06:19:39 -07:00
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#include "alAuxEffectSlot.h"
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2012-09-09 00:53:54 -07:00
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#include "mixer_defs.h"
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2012-08-15 01:01:55 -07:00
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2014-02-23 21:17:09 -08:00
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static inline void ApplyCoeffsStep(ALuint Offset, ALfloat (*restrict Values)[2],
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const ALuint IrSize,
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2013-05-28 22:27:07 -07:00
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ALfloat (*restrict Coeffs)[2],
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2014-02-23 21:17:09 -08:00
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const ALfloat (*restrict CoeffStep)[2],
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ALfloat left, ALfloat right)
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2012-08-15 08:19:04 -07:00
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{
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2014-02-23 21:17:09 -08:00
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const __m128 lrlr = { left, right, left, right };
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__m128 coeffs, deltas, imp0, imp1;
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__m128 vals = _mm_setzero_ps();
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2012-09-11 01:59:42 -07:00
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ALuint i;
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2014-02-23 21:17:09 -08:00
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if((Offset&1))
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2012-08-15 08:19:04 -07:00
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{
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2014-02-23 21:17:09 -08:00
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const ALuint o0 = Offset&HRIR_MASK;
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const ALuint o1 = (Offset+IrSize-1)&HRIR_MASK;
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coeffs = _mm_load_ps(&Coeffs[0][0]);
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deltas = _mm_load_ps(&CoeffStep[0][0]);
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vals = _mm_loadl_pi(vals, (__m64*)&Values[o0][0]);
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imp0 = _mm_mul_ps(lrlr, coeffs);
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2012-09-11 01:59:42 -07:00
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coeffs = _mm_add_ps(coeffs, deltas);
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2014-02-23 21:17:09 -08:00
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vals = _mm_add_ps(imp0, vals);
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_mm_store_ps(&Coeffs[0][0], coeffs);
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_mm_storel_pi((__m64*)&Values[o0][0], vals);
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for(i = 1;i < IrSize-1;i += 2)
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{
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const ALuint o2 = (Offset+i)&HRIR_MASK;
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coeffs = _mm_load_ps(&Coeffs[i+1][0]);
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deltas = _mm_load_ps(&CoeffStep[i+1][0]);
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vals = _mm_load_ps(&Values[o2][0]);
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imp1 = _mm_mul_ps(lrlr, coeffs);
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coeffs = _mm_add_ps(coeffs, deltas);
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imp0 = _mm_shuffle_ps(imp0, imp1, _MM_SHUFFLE(1, 0, 3, 2));
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vals = _mm_add_ps(imp0, vals);
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_mm_store_ps(&Coeffs[i+1][0], coeffs);
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_mm_store_ps(&Values[o2][0], vals);
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imp0 = imp1;
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}
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vals = _mm_loadl_pi(vals, (__m64*)&Values[o1][0]);
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imp0 = _mm_movehl_ps(imp0, imp0);
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vals = _mm_add_ps(imp0, vals);
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_mm_storel_pi((__m64*)&Values[o1][0], vals);
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}
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else
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{
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for(i = 0;i < IrSize;i += 2)
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{
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const ALuint o = (Offset + i)&HRIR_MASK;
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coeffs = _mm_load_ps(&Coeffs[i][0]);
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deltas = _mm_load_ps(&CoeffStep[i][0]);
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vals = _mm_load_ps(&Values[o][0]);
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imp0 = _mm_mul_ps(lrlr, coeffs);
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coeffs = _mm_add_ps(coeffs, deltas);
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vals = _mm_add_ps(imp0, vals);
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_mm_store_ps(&Coeffs[i][0], coeffs);
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_mm_store_ps(&Values[o][0], vals);
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}
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2012-08-15 08:19:04 -07:00
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}
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}
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2013-05-28 22:27:07 -07:00
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static inline void ApplyCoeffs(ALuint Offset, ALfloat (*restrict Values)[2],
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const ALuint IrSize,
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ALfloat (*restrict Coeffs)[2],
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ALfloat left, ALfloat right)
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2012-08-15 01:01:55 -07:00
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{
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const __m128 lrlr = { left, right, left, right };
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2012-09-09 04:09:31 -07:00
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__m128 vals = _mm_setzero_ps();
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2012-08-15 08:19:04 -07:00
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__m128 coeffs;
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2012-09-11 01:59:42 -07:00
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ALuint i;
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if((Offset&1))
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2012-08-15 01:01:55 -07:00
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{
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2012-09-11 01:59:42 -07:00
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const ALuint o0 = Offset&HRIR_MASK;
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const ALuint o1 = (Offset+IrSize-1)&HRIR_MASK;
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__m128 imp0, imp1;
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2012-08-15 08:19:04 -07:00
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2012-09-11 01:59:42 -07:00
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coeffs = _mm_load_ps(&Coeffs[0][0]);
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2012-08-15 01:01:55 -07:00
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vals = _mm_loadl_pi(vals, (__m64*)&Values[o0][0]);
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2012-09-11 01:59:42 -07:00
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imp0 = _mm_mul_ps(lrlr, coeffs);
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vals = _mm_add_ps(imp0, vals);
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2012-08-15 01:01:55 -07:00
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_mm_storel_pi((__m64*)&Values[o0][0], vals);
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2012-09-11 01:59:42 -07:00
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for(i = 1;i < IrSize-1;i += 2)
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{
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const ALuint o2 = (Offset+i)&HRIR_MASK;
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coeffs = _mm_load_ps(&Coeffs[i+1][0]);
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vals = _mm_load_ps(&Values[o2][0]);
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imp1 = _mm_mul_ps(lrlr, coeffs);
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imp0 = _mm_shuffle_ps(imp0, imp1, _MM_SHUFFLE(1, 0, 3, 2));
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vals = _mm_add_ps(imp0, vals);
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_mm_store_ps(&Values[o2][0], vals);
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imp0 = imp1;
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}
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vals = _mm_loadl_pi(vals, (__m64*)&Values[o1][0]);
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imp0 = _mm_movehl_ps(imp0, imp0);
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vals = _mm_add_ps(imp0, vals);
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_mm_storel_pi((__m64*)&Values[o1][0], vals);
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}
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else
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{
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for(i = 0;i < IrSize;i += 2)
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{
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const ALuint o = (Offset + i)&HRIR_MASK;
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coeffs = _mm_load_ps(&Coeffs[i][0]);
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vals = _mm_load_ps(&Values[o][0]);
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vals = _mm_add_ps(vals, _mm_mul_ps(lrlr, coeffs));
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_mm_store_ps(&Values[o][0], vals);
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}
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2012-08-15 01:01:55 -07:00
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}
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}
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2012-09-16 08:14:26 -07:00
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#define SUFFIX SSE
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#include "mixer_inc.c"
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#undef SUFFIX
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2012-08-29 01:56:04 -07:00
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2014-03-23 02:45:50 -07:00
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void MixDirect_SSE(DirectParams *params, const ALfloat *restrict data, ALuint srcchan,
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2014-03-23 07:31:33 -07:00
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ALuint OutPos, ALuint BufferSize)
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2012-09-09 00:53:54 -07:00
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{
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2013-10-06 10:11:01 -07:00
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ALfloat (*restrict OutBuffer)[BUFFERSIZE] = params->OutBuffer;
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2014-03-23 06:57:00 -07:00
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ALuint Counter = maxu(params->Counter, OutPos) - OutPos;
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ALfloat DrySend, Step;
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__m128 gain, step;
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2012-09-09 00:53:54 -07:00
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ALuint c;
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2012-09-11 06:32:42 -07:00
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for(c = 0;c < MaxChannels;c++)
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2012-09-09 04:02:54 -07:00
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{
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2014-03-23 06:57:00 -07:00
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ALuint pos = 0;
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Step = params->Mix.Gains.Step[srcchan][c];
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if(Step != 1.0f && Counter > 0)
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{
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DrySend = params->Mix.Gains.Current[srcchan][c];
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if(BufferSize-pos > 3 && Counter-pos > 3)
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{
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gain = _mm_set_ps(
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DrySend,
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DrySend * Step,
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DrySend * Step * Step,
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DrySend * Step * Step * Step
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);
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step = _mm_set1_ps(Step * Step * Step * Step);
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do {
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const __m128 val4 = _mm_load_ps(&data[pos]);
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__m128 dry4 = _mm_load_ps(&OutBuffer[c][OutPos+pos]);
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dry4 = _mm_add_ps(dry4, _mm_mul_ps(val4, gain));
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gain = _mm_mul_ps(gain, step);
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_mm_store_ps(&OutBuffer[c][OutPos+pos], dry4);
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pos += 4;
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} while(BufferSize-pos > 3 && Counter-pos > 3);
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DrySend = _mm_cvtss_f32(_mm_shuffle_ps(gain, gain, _MM_SHUFFLE(3, 3, 3, 3)));
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}
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if(!(BufferSize-pos > 3))
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{
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for(;pos < BufferSize && pos < Counter;pos++)
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{
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OutBuffer[c][OutPos+pos] += data[pos]*DrySend;
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DrySend *= Step;
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}
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}
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params->Mix.Gains.Current[srcchan][c] = DrySend;
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}
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DrySend = params->Mix.Gains.Target[srcchan][c];
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2013-10-06 17:25:47 -07:00
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if(!(DrySend > GAIN_SILENCE_THRESHOLD))
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2012-09-24 15:33:44 -07:00
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continue;
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2012-09-24 19:07:07 -07:00
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gain = _mm_set1_ps(DrySend);
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2014-03-23 06:57:00 -07:00
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for(;BufferSize-pos > 3;pos += 4)
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2012-09-09 04:02:54 -07:00
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{
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2012-09-11 06:32:42 -07:00
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const __m128 val4 = _mm_load_ps(&data[pos]);
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2013-10-06 10:11:01 -07:00
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__m128 dry4 = _mm_load_ps(&OutBuffer[c][OutPos+pos]);
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2012-09-09 04:02:54 -07:00
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dry4 = _mm_add_ps(dry4, _mm_mul_ps(val4, gain));
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2013-10-06 10:11:01 -07:00
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_mm_store_ps(&OutBuffer[c][OutPos+pos], dry4);
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2012-09-09 04:02:54 -07:00
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}
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2012-09-24 19:07:07 -07:00
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for(;pos < BufferSize;pos++)
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2013-10-06 10:11:01 -07:00
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OutBuffer[c][OutPos+pos] += data[pos]*DrySend;
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2012-09-09 00:53:54 -07:00
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}
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}
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2012-09-16 08:14:26 -07:00
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2012-09-09 00:53:54 -07:00
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2014-03-23 02:45:50 -07:00
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void MixSend_SSE(SendParams *params, const ALfloat *restrict data,
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2014-03-23 16:11:21 -07:00
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ALuint OutPos, ALuint UNUSED(SamplesToDo), ALuint BufferSize)
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2012-09-16 06:19:39 -07:00
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{
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2013-10-06 10:11:01 -07:00
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ALfloat (*restrict OutBuffer)[BUFFERSIZE] = params->OutBuffer;
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2014-03-23 16:11:21 -07:00
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ALuint Counter = maxu(params->Counter, OutPos) - OutPos;
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ALfloat WetGain, Step;
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__m128 gain, step;
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2012-09-16 06:19:39 -07:00
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2014-03-23 16:11:21 -07:00
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{
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ALuint pos = 0;
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2012-09-24 19:07:07 -07:00
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2014-03-23 16:11:21 -07:00
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Step = params->Gain.Step;
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if(Step != 1.0f && Counter > 0)
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{
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WetGain = params->Gain.Current;
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if(BufferSize-pos > 3 && Counter-pos > 3)
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{
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gain = _mm_set_ps(
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WetGain,
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WetGain * Step,
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WetGain * Step * Step,
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WetGain * Step * Step * Step
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);
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step = _mm_set1_ps(Step * Step * Step * Step);
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do {
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const __m128 val4 = _mm_load_ps(&data[pos]);
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__m128 dry4 = _mm_load_ps(&OutBuffer[0][OutPos+pos]);
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dry4 = _mm_add_ps(dry4, _mm_mul_ps(val4, gain));
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gain = _mm_mul_ps(gain, step);
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_mm_store_ps(&OutBuffer[0][OutPos+pos], dry4);
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pos += 4;
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} while(BufferSize-pos > 3 && Counter-pos > 3);
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WetGain = _mm_cvtss_f32(_mm_shuffle_ps(gain, gain, _MM_SHUFFLE(3, 3, 3, 3)));
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}
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if(!(BufferSize-pos > 3))
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{
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for(;pos < BufferSize && pos < Counter;pos++)
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{
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OutBuffer[0][OutPos+pos] += data[pos]*WetGain;
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WetGain *= Step;
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}
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}
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params->Gain.Current = WetGain;
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}
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2012-09-24 19:07:07 -07:00
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2014-03-23 16:11:21 -07:00
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WetGain = params->Gain.Target;
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if(!(WetGain > GAIN_SILENCE_THRESHOLD))
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return;
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gain = _mm_set1_ps(WetGain);
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for(;BufferSize-pos > 3;pos += 4)
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{
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const __m128 val4 = _mm_load_ps(&data[pos]);
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__m128 wet4 = _mm_load_ps(&OutBuffer[0][OutPos+pos]);
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wet4 = _mm_add_ps(wet4, _mm_mul_ps(val4, gain));
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_mm_store_ps(&OutBuffer[0][OutPos+pos], wet4);
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}
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for(;pos < BufferSize;pos++)
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OutBuffer[0][OutPos+pos] += data[pos] * WetGain;
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2012-09-16 06:19:39 -07:00
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}
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}
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