Return non-const from the resampler function

This commit is contained in:
Chris Robinson
2021-01-02 17:37:09 -08:00
parent 1f51de9983
commit 04cd0bc576
7 changed files with 40 additions and 51 deletions
+4 -14
View File
@@ -615,21 +615,11 @@ void Voice::mix(const State vstate, ALCcontext *Context, const uint SamplesToDo)
chandata.mPrevSamples.size(), chandata.mPrevSamples.begin());
/* Resample, then apply ambisonic upsampling as needed. */
const float *ResampledData{Resample(&mResampleState,
&SrcData[MaxResamplerPadding>>1], DataPosFrac, increment,
{Device->ResampledData, DstBufferSize})};
float *ResampledData{Resample(&mResampleState, &SrcData[MaxResamplerPadding>>1],
DataPosFrac, increment, {Device->ResampledData, DstBufferSize})};
if((mFlags&VoiceIsAmbisonic))
{
const float hfscale{chandata.mAmbiScale};
/* Beware the evil const_cast. It's safe since it's pointing to
* either SourceData or ResampledData (both non-const), but the
* resample method takes the source as const float* and may
* return it without copying to output, making it currently
* unavoidable.
*/
const al::span<float> samples{const_cast<float*>(ResampledData), DstBufferSize};
chandata.mAmbiSplitter.processHfScale(samples, hfscale);
}
chandata.mAmbiSplitter.processHfScale({ResampledData, DstBufferSize},
chandata.mAmbiScale);
/* Now filter and mix to the appropriate outputs. */
float (&FilterBuf)[BufferLineSize] = Device->FilteredData;
+7 -6
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@@ -59,15 +59,15 @@ union InterpState {
BsincState bsinc;
};
using ResamplerFunc = const float*(*)(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst);
using ResamplerFunc = float*(*)(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst);
ResamplerFunc PrepareResampler(Resampler resampler, uint increment, InterpState *state);
template<typename TypeTag, typename InstTag>
const float *Resample_(const InterpState *state, const float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst);
float *Resample_(const InterpState *state, float *RESTRICT src, uint frac, uint increment,
const al::span<float> dst);
template<typename InstTag>
void Mix_(const al::span<const float> InSamples, const al::span<FloatBufferLine> OutBuffer,
@@ -85,11 +85,12 @@ void MixDirectHrtf_(FloatBufferLine &LeftOut, FloatBufferLine &RightOut,
float *TempBuf, HrtfChannelState *ChanState, const size_t IrSize, const size_t BufferSize);
/* Vectorized resampler helpers */
inline void InitPosArrays(uint frac, uint increment, uint *frac_arr, uint *pos_arr, size_t size)
template<size_t N>
inline void InitPosArrays(uint frac, uint increment, uint (&frac_arr)[N], uint (&pos_arr)[N])
{
pos_arr[0] = 0;
frac_arr[0] = frac;
for(size_t i{1};i < size;i++)
for(size_t i{1};i < N;i++)
{
const uint frac_tmp{frac_arr[i-1] + increment};
pos_arr[i] = pos_arr[i-1] + (frac_tmp>>MixerFracBits);
+13 -13
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@@ -68,8 +68,8 @@ inline float do_fastbsinc(const InterpState &istate, const float *RESTRICT vals,
using SamplerT = float(&)(const InterpState&, const float*RESTRICT, const uint);
template<SamplerT Sampler>
const float *DoResample(const InterpState *state, const float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
float *DoResample(const InterpState *state, float *RESTRICT src, uint frac, uint increment,
const al::span<float> dst)
{
const InterpState istate{*state};
for(float &out : dst)
@@ -97,7 +97,7 @@ inline void ApplyCoeffs(float2 *RESTRICT Values, const size_t IrSize, const Hrir
} // namespace
template<>
const float *Resample_<CopyTag,CTag>(const InterpState*, const float *RESTRICT src, uint, uint,
float *Resample_<CopyTag,CTag>(const InterpState*, float *RESTRICT src, uint, uint,
const al::span<float> dst)
{
#if defined(HAVE_SSE) || defined(HAVE_NEON)
@@ -110,28 +110,28 @@ const float *Resample_<CopyTag,CTag>(const InterpState*, const float *RESTRICT s
}
template<>
const float *Resample_<PointTag,CTag>(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst)
float *Resample_<PointTag,CTag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{ return DoResample<do_point>(state, src, frac, increment, dst); }
template<>
const float *Resample_<LerpTag,CTag>(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst)
float *Resample_<LerpTag,CTag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{ return DoResample<do_lerp>(state, src, frac, increment, dst); }
template<>
const float *Resample_<CubicTag,CTag>(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst)
float *Resample_<CubicTag,CTag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{ return DoResample<do_cubic>(state, src-1, frac, increment, dst); }
template<>
const float *Resample_<BSincTag,CTag>(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst)
float *Resample_<BSincTag,CTag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{ return DoResample<do_bsinc>(state, src-state->bsinc.l, frac, increment, dst); }
template<>
const float *Resample_<FastBSincTag,CTag>(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst)
float *Resample_<FastBSincTag,CTag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{ return DoResample<do_fastbsinc>(state, src-state->bsinc.l, frac, increment, dst); }
+8 -10
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@@ -24,8 +24,7 @@ namespace {
inline float32x4_t set_f4(float l0, float l1, float l2, float l3)
{
float32x4_t ret{};
ret = vsetq_lane_f32(l0, ret, 0);
float32x4_t ret{vmovq_n_f32(l0)};
ret = vsetq_lane_f32(l1, ret, 1);
ret = vsetq_lane_f32(l2, ret, 2);
ret = vsetq_lane_f32(l3, ret, 3);
@@ -40,8 +39,7 @@ inline void ApplyCoeffs(float2 *RESTRICT Values, const size_t IrSize, const Hrir
{
float32x4_t leftright4;
{
float32x2_t leftright2 = vdup_n_f32(0.0);
leftright2 = vset_lane_f32(left, leftright2, 0);
float32x2_t leftright2{vmov_n_f32(left)};
leftright2 = vset_lane_f32(right, leftright2, 1);
leftright4 = vcombine_f32(leftright2, leftright2);
}
@@ -61,7 +59,7 @@ inline void ApplyCoeffs(float2 *RESTRICT Values, const size_t IrSize, const Hrir
} // namespace
template<>
const float *Resample_<LerpTag,NEONTag>(const InterpState*, const float *RESTRICT src, uint frac,
float *Resample_<LerpTag,NEONTag>(const InterpState*, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{
const int32x4_t increment4 = vdupq_n_s32(static_cast<int>(increment*4));
@@ -70,7 +68,7 @@ const float *Resample_<LerpTag,NEONTag>(const InterpState*, const float *RESTRIC
alignas(16) uint pos_[4], frac_[4];
int32x4_t pos4, frac4;
InitPosArrays(frac, increment, frac_, pos_, 4);
InitPosArrays(frac, increment, frac_, pos_);
frac4 = vld1q_s32(reinterpret_cast<int*>(frac_));
pos4 = vld1q_s32(reinterpret_cast<int*>(pos_));
@@ -114,8 +112,8 @@ const float *Resample_<LerpTag,NEONTag>(const InterpState*, const float *RESTRIC
}
template<>
const float *Resample_<BSincTag,NEONTag>(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst)
float *Resample_<BSincTag,NEONTag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{
const float *const filter{state->bsinc.filter};
const float32x4_t sf4{vdupq_n_f32(state->bsinc.sf)};
@@ -160,8 +158,8 @@ const float *Resample_<BSincTag,NEONTag>(const InterpState *state, const float *
}
template<>
const float *Resample_<FastBSincTag,NEONTag>(const InterpState *state,
const float *RESTRICT src, uint frac, uint increment, const al::span<float> dst)
float *Resample_<FastBSincTag,NEONTag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{
const float *const filter{state->bsinc.filter};
const size_t m{state->bsinc.m};
+4 -4
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@@ -77,8 +77,8 @@ inline void ApplyCoeffs(float2 *RESTRICT Values, const size_t IrSize, const Hrir
} // namespace
template<>
const float *Resample_<BSincTag,SSETag>(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst)
float *Resample_<BSincTag,SSETag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{
const float *const filter{state->bsinc.filter};
const __m128 sf4{_mm_set1_ps(state->bsinc.sf)};
@@ -124,8 +124,8 @@ const float *Resample_<BSincTag,SSETag>(const InterpState *state, const float *R
}
template<>
const float *Resample_<FastBSincTag,SSETag>(const InterpState *state, const float *RESTRICT src,
uint frac, uint increment, const al::span<float> dst)
float *Resample_<FastBSincTag,SSETag>(const InterpState *state, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{
const float *const filter{state->bsinc.filter};
const size_t m{state->bsinc.m};
+2 -2
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@@ -35,7 +35,7 @@ struct LerpTag;
#endif
template<>
const float *Resample_<LerpTag,SSE2Tag>(const InterpState*, const float *RESTRICT src, uint frac,
float *Resample_<LerpTag,SSE2Tag>(const InterpState*, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{
const __m128i increment4{_mm_set1_epi32(static_cast<int>(increment*4))};
@@ -43,7 +43,7 @@ const float *Resample_<LerpTag,SSE2Tag>(const InterpState*, const float *RESTRIC
const __m128i fracMask4{_mm_set1_epi32(MixerFracMask)};
alignas(16) uint pos_[4], frac_[4];
InitPosArrays(frac, increment, frac_, pos_, 4);
InitPosArrays(frac, increment, frac_, pos_);
__m128i frac4{_mm_setr_epi32(static_cast<int>(frac_[0]), static_cast<int>(frac_[1]),
static_cast<int>(frac_[2]), static_cast<int>(frac_[3]))};
__m128i pos4{_mm_setr_epi32(static_cast<int>(pos_[0]), static_cast<int>(pos_[1]),
+2 -2
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@@ -36,7 +36,7 @@ struct LerpTag;
#endif
template<>
const float *Resample_<LerpTag,SSE4Tag>(const InterpState*, const float *RESTRICT src, uint frac,
float *Resample_<LerpTag,SSE4Tag>(const InterpState*, float *RESTRICT src, uint frac,
uint increment, const al::span<float> dst)
{
const __m128i increment4{_mm_set1_epi32(static_cast<int>(increment*4))};
@@ -44,7 +44,7 @@ const float *Resample_<LerpTag,SSE4Tag>(const InterpState*, const float *RESTRIC
const __m128i fracMask4{_mm_set1_epi32(MixerFracMask)};
alignas(16) uint pos_[4], frac_[4];
InitPosArrays(frac, increment, frac_, pos_, 4);
InitPosArrays(frac, increment, frac_, pos_);
__m128i frac4{_mm_setr_epi32(static_cast<int>(frac_[0]), static_cast<int>(frac_[1]),
static_cast<int>(frac_[2]), static_cast<int>(frac_[3]))};
__m128i pos4{_mm_setr_epi32(static_cast<int>(pos_[0]), static_cast<int>(pos_[1]),