298 lines
9.7 KiB
C
298 lines
9.7 KiB
C
#include "config.h"
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#include "AL/alc.h"
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#include "AL/al.h"
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#include "alMain.h"
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#include "alSource.h"
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#include "alAuxEffectSlot.h"
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#include "mixer_defs.h"
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#ifdef __GNUC__
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#define LIKELY(x) __builtin_expect(!!(x), 1)
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#define UNLIKELY(x) __builtin_expect(!!(x), 0)
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#else
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#define LIKELY(x) (x)
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#define UNLIKELY(x) (x)
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#endif
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#define REAL_MERGE2(a,b) a##b
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#define MERGE2(a,b) REAL_MERGE2(a,b)
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#define REAL_MERGE4(a,b,c,d) a##b##c##d
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#define MERGE4(a,b,c,d) REAL_MERGE4(a,b,c,d)
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void MERGE4(MixDirect_Hrtf_,SAMPLER,_,SUFFIX)(
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ALsource *Source, ALCdevice *Device, DirectParams *params,
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const ALfloat *RESTRICT data, ALuint srcfrac,
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ALuint OutPos, ALuint SamplesToDo, ALuint BufferSize)
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{
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const ALuint NumChannels = Source->NumChannels;
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const ALint *RESTRICT DelayStep = params->Hrtf.DelayStep;
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ALfloat (*RESTRICT DryBuffer)[MaxChannels];
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ALfloat *RESTRICT ClickRemoval, *RESTRICT PendingClicks;
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ALfloat (*RESTRICT CoeffStep)[2] = params->Hrtf.CoeffStep;
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ALuint pos, frac;
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FILTER *DryFilter;
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ALuint BufferIdx;
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ALuint increment;
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ALfloat value;
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ALuint i, c;
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increment = Source->Params.Step;
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DryBuffer = Device->DryBuffer;
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ClickRemoval = Device->ClickRemoval;
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PendingClicks = Device->PendingClicks;
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DryFilter = ¶ms->iirFilter;
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for(i = 0;i < NumChannels;i++)
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{
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ALfloat (*RESTRICT TargetCoeffs)[2] = params->Hrtf.Coeffs[i];
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ALuint *RESTRICT TargetDelay = params->Hrtf.Delay[i];
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ALfloat *RESTRICT History = Source->Hrtf.History[i];
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ALfloat (*RESTRICT Values)[2] = Source->Hrtf.Values[i];
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ALint Counter = maxu(Source->Hrtf.Counter, OutPos) - OutPos;
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ALuint Offset = Source->Hrtf.Offset + OutPos;
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ALfloat Coeffs[HRIR_LENGTH][2] ALIGN(16);
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ALuint Delay[2];
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ALfloat left, right;
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pos = 0;
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frac = srcfrac;
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for(c = 0;c < HRIR_LENGTH;c++)
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{
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Coeffs[c][0] = TargetCoeffs[c][0] - (CoeffStep[c][0]*Counter);
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Coeffs[c][1] = TargetCoeffs[c][1] - (CoeffStep[c][1]*Counter);
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}
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Delay[0] = TargetDelay[0] - (DelayStep[0]*Counter);
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Delay[1] = TargetDelay[1] - (DelayStep[1]*Counter);
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if(LIKELY(OutPos == 0))
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2PC(DryFilter, i, value);
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History[Offset&SRC_HISTORY_MASK] = value;
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left = lerp(History[(Offset-(Delay[0]>>HRTFDELAY_BITS))&SRC_HISTORY_MASK],
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History[(Offset-(Delay[0]>>HRTFDELAY_BITS)-1)&SRC_HISTORY_MASK],
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(Delay[0]&HRTFDELAY_MASK)*(1.0f/HRTFDELAY_FRACONE));
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right = lerp(History[(Offset-(Delay[1]>>HRTFDELAY_BITS))&SRC_HISTORY_MASK],
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History[(Offset-(Delay[1]>>HRTFDELAY_BITS)-1)&SRC_HISTORY_MASK],
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(Delay[1]&HRTFDELAY_MASK)*(1.0f/HRTFDELAY_FRACONE));
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ClickRemoval[FrontLeft] -= Values[(Offset+1)&HRIR_MASK][0] +
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Coeffs[0][0] * left;
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ClickRemoval[FrontRight] -= Values[(Offset+1)&HRIR_MASK][1] +
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Coeffs[0][1] * right;
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}
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for(BufferIdx = 0;BufferIdx < BufferSize && Counter > 0;BufferIdx++)
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2P(DryFilter, i, value);
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History[Offset&SRC_HISTORY_MASK] = value;
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left = lerp(History[(Offset-(Delay[0]>>HRTFDELAY_BITS))&SRC_HISTORY_MASK],
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History[(Offset-(Delay[0]>>HRTFDELAY_BITS)-1)&SRC_HISTORY_MASK],
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(Delay[0]&HRTFDELAY_MASK)*(1.0f/HRTFDELAY_FRACONE));
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right = lerp(History[(Offset-(Delay[1]>>HRTFDELAY_BITS))&SRC_HISTORY_MASK],
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History[(Offset-(Delay[1]>>HRTFDELAY_BITS)-1)&SRC_HISTORY_MASK],
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(Delay[1]&HRTFDELAY_MASK)*(1.0f/HRTFDELAY_FRACONE));
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Delay[0] += DelayStep[0];
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Delay[1] += DelayStep[1];
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Values[Offset&HRIR_MASK][0] = 0.0f;
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Values[Offset&HRIR_MASK][1] = 0.0f;
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Offset++;
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ApplyCoeffsStep(Offset, Values, Coeffs, CoeffStep, left, right);
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DryBuffer[OutPos][FrontLeft] += Values[Offset&HRIR_MASK][0];
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DryBuffer[OutPos][FrontRight] += Values[Offset&HRIR_MASK][1];
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frac += increment;
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pos += frac>>FRACTIONBITS;
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frac &= FRACTIONMASK;
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OutPos++;
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Counter--;
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}
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Delay[0] >>= HRTFDELAY_BITS;
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Delay[1] >>= HRTFDELAY_BITS;
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for(;BufferIdx < BufferSize;BufferIdx++)
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2P(DryFilter, i, value);
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History[Offset&SRC_HISTORY_MASK] = value;
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left = History[(Offset-Delay[0])&SRC_HISTORY_MASK];
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right = History[(Offset-Delay[1])&SRC_HISTORY_MASK];
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Values[Offset&HRIR_MASK][0] = 0.0f;
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Values[Offset&HRIR_MASK][1] = 0.0f;
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Offset++;
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ApplyCoeffs(Offset, Values, Coeffs, left, right);
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DryBuffer[OutPos][FrontLeft] += Values[Offset&HRIR_MASK][0];
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DryBuffer[OutPos][FrontRight] += Values[Offset&HRIR_MASK][1];
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frac += increment;
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pos += frac>>FRACTIONBITS;
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frac &= FRACTIONMASK;
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OutPos++;
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}
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if(LIKELY(OutPos == SamplesToDo))
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2PC(DryFilter, i, value);
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History[Offset&SRC_HISTORY_MASK] = value;
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left = History[(Offset-Delay[0])&SRC_HISTORY_MASK];
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right = History[(Offset-Delay[1])&SRC_HISTORY_MASK];
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PendingClicks[FrontLeft] += Values[(Offset+1)&HRIR_MASK][0] +
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Coeffs[0][0] * left;
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PendingClicks[FrontRight] += Values[(Offset+1)&HRIR_MASK][1] +
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Coeffs[0][1] * right;
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}
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OutPos -= BufferSize;
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}
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}
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void MERGE4(MixDirect_,SAMPLER,_,SUFFIX)(
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ALsource *Source, ALCdevice *Device, DirectParams *params,
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const ALfloat *RESTRICT data, ALuint srcfrac,
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ALuint OutPos, ALuint SamplesToDo, ALuint BufferSize)
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{
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const ALuint NumChannels = Source->NumChannels;
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ALfloat (*RESTRICT DryBuffer)[MaxChannels];
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ALfloat *RESTRICT ClickRemoval, *RESTRICT PendingClicks;
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ALfloat DrySend[MaxChannels];
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FILTER *DryFilter;
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ALuint pos, frac;
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ALuint BufferIdx;
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ALuint increment;
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ALfloat value;
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ALuint i, c;
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increment = Source->Params.Step;
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DryBuffer = Device->DryBuffer;
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ClickRemoval = Device->ClickRemoval;
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PendingClicks = Device->PendingClicks;
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DryFilter = ¶ms->iirFilter;
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for(i = 0;i < NumChannels;i++)
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{
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for(c = 0;c < MaxChannels;c++)
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DrySend[c] = params->Gains[i][c];
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pos = 0;
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frac = srcfrac;
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if(OutPos == 0)
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2PC(DryFilter, i, value);
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for(c = 0;c < MaxChannels;c++)
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ClickRemoval[c] -= value*DrySend[c];
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}
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for(BufferIdx = 0;BufferIdx < BufferSize;BufferIdx++)
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2P(DryFilter, i, value);
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for(c = 0;c < MaxChannels;c++)
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DryBuffer[OutPos][c] += value*DrySend[c];
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frac += increment;
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pos += frac>>FRACTIONBITS;
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frac &= FRACTIONMASK;
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OutPos++;
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}
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if(OutPos == SamplesToDo)
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2PC(DryFilter, i, value);
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for(c = 0;c < MaxChannels;c++)
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PendingClicks[c] += value*DrySend[c];
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}
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OutPos -= BufferSize;
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}
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}
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void MERGE4(MixSend_,SAMPLER,_,SUFFIX)(
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ALsource *Source, ALuint sendidx, SendParams *params,
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const ALfloat *RESTRICT data, ALuint srcfrac,
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ALuint OutPos, ALuint SamplesToDo, ALuint BufferSize)
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{
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const ALuint NumChannels = Source->NumChannels;
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ALeffectslot *Slot;
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ALfloat WetSend;
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ALfloat *WetBuffer;
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ALfloat *WetClickRemoval;
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ALfloat *WetPendingClicks;
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FILTER *WetFilter;
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ALuint pos, frac;
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ALuint BufferIdx;
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ALuint increment;
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ALfloat value;
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ALuint i;
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increment = Source->Params.Step;
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Slot = Source->Params.Slot[sendidx];
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WetBuffer = Slot->WetBuffer;
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WetClickRemoval = Slot->ClickRemoval;
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WetPendingClicks = Slot->PendingClicks;
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WetFilter = ¶ms->iirFilter;
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WetSend = params->Gain;
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for(i = 0;i < NumChannels;i++)
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{
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pos = 0;
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frac = srcfrac;
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if(OutPos == 0)
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2PC(WetFilter, i, value);
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WetClickRemoval[0] -= value * WetSend;
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}
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for(BufferIdx = 0;BufferIdx < BufferSize;BufferIdx++)
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2P(WetFilter, i, value);
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WetBuffer[OutPos] += value * WetSend;
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frac += increment;
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pos += frac>>FRACTIONBITS;
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frac &= FRACTIONMASK;
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OutPos++;
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}
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if(OutPos == SamplesToDo)
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{
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value = SAMPLER(data + pos*NumChannels + i, NumChannels, frac);
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value = lpFilter2PC(WetFilter, i, value);
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WetPendingClicks[0] += value * WetSend;
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}
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OutPos -= BufferSize;
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}
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}
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#undef MERGE4
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#undef REAL_MERGE4
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#undef MERGE2
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#undef REAL_MERGE2
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#undef UNLIKELY
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#undef LIKELY
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