mirror of https://github.com/gnss-sdr/gnss-sdr
150 lines
4.1 KiB
C
150 lines
4.1 KiB
C
#ifndef INCLUDED_volk_gnsssdr_32f_index_max_16u_a_H
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#define INCLUDED_volk_gnsssdr_32f_index_max_16u_a_H
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#include <volk_gnsssdr/volk_gnsssdr_common.h>
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#include <volk_gnsssdr/volk_gnsssdr_common.h>
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#include <inttypes.h>
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#include <stdio.h>
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#ifdef LV_HAVE_SSE4_1
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#include <smmintrin.h>
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static inline void volk_gnsssdr_32f_index_max_16u_a_sse4_1(unsigned int* target, const float* src0, unsigned int num_points) {
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if(num_points > 0){
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unsigned int number = 0;
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const unsigned int quarterPoints = num_points / 4;
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float* inputPtr = (float*)src0;
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__m128 indexIncrementValues = _mm_set1_ps(4);
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__m128 currentIndexes = _mm_set_ps(-1,-2,-3,-4);
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float max = src0[0];
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float index = 0;
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__m128 maxValues = _mm_set1_ps(max);
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__m128 maxValuesIndex = _mm_setzero_ps();
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__m128 compareResults;
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__m128 currentValues;
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__VOLK_ATTR_ALIGNED(16) float maxValuesBuffer[4];
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__VOLK_ATTR_ALIGNED(16) float maxIndexesBuffer[4];
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for(;number < quarterPoints; number++){
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currentValues = _mm_load_ps(inputPtr); inputPtr += 4;
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currentIndexes = _mm_add_ps(currentIndexes, indexIncrementValues);
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compareResults = _mm_cmpgt_ps(maxValues, currentValues);
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maxValuesIndex = _mm_blendv_ps(currentIndexes, maxValuesIndex, compareResults);
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maxValues = _mm_blendv_ps(currentValues, maxValues, compareResults);
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}
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// Calculate the largest value from the remaining 4 points
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_mm_store_ps(maxValuesBuffer, maxValues);
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_mm_store_ps(maxIndexesBuffer, maxValuesIndex);
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for(number = 0; number < 4; number++){
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if(maxValuesBuffer[number] > max){
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index = maxIndexesBuffer[number];
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max = maxValuesBuffer[number];
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}
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}
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number = quarterPoints * 4;
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for(;number < num_points; number++){
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if(src0[number] > max){
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index = number;
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max = src0[number];
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}
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}
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target[0] = (unsigned int)index;
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}
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}
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#endif /*LV_HAVE_SSE4_1*/
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#ifdef LV_HAVE_SSE
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#include<xmmintrin.h>
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static inline void volk_gnsssdr_32f_index_max_16u_a_sse(unsigned int* target, const float* src0, unsigned int num_points) {
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if(num_points > 0){
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unsigned int number = 0;
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const unsigned int quarterPoints = num_points / 4;
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float* inputPtr = (float*)src0;
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__m128 indexIncrementValues = _mm_set1_ps(4);
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__m128 currentIndexes = _mm_set_ps(-1,-2,-3,-4);
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float max = src0[0];
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float index = 0;
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__m128 maxValues = _mm_set1_ps(max);
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__m128 maxValuesIndex = _mm_setzero_ps();
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__m128 compareResults;
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__m128 currentValues;
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__VOLK_ATTR_ALIGNED(16) float maxValuesBuffer[4];
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__VOLK_ATTR_ALIGNED(16) float maxIndexesBuffer[4];
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for(;number < quarterPoints; number++){
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currentValues = _mm_load_ps(inputPtr); inputPtr += 4;
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currentIndexes = _mm_add_ps(currentIndexes, indexIncrementValues);
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compareResults = _mm_cmpgt_ps(maxValues, currentValues);
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maxValuesIndex = _mm_or_ps(_mm_and_ps(compareResults, maxValuesIndex) , _mm_andnot_ps(compareResults, currentIndexes));
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maxValues = _mm_or_ps(_mm_and_ps(compareResults, maxValues) , _mm_andnot_ps(compareResults, currentValues));
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}
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// Calculate the largest value from the remaining 4 points
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_mm_store_ps(maxValuesBuffer, maxValues);
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_mm_store_ps(maxIndexesBuffer, maxValuesIndex);
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for(number = 0; number < 4; number++){
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if(maxValuesBuffer[number] > max){
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index = maxIndexesBuffer[number];
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max = maxValuesBuffer[number];
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}
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}
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number = quarterPoints * 4;
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for(;number < num_points; number++){
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if(src0[number] > max){
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index = number;
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max = src0[number];
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}
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}
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target[0] = (unsigned int)index;
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}
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}
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#endif /*LV_HAVE_SSE*/
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#ifdef LV_HAVE_GENERIC
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static inline void volk_gnsssdr_32f_index_max_16u_generic(unsigned int* target, const float* src0, unsigned int num_points) {
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if(num_points > 0){
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float max = src0[0];
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unsigned int index = 0;
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unsigned int i = 1;
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for(; i < num_points; ++i) {
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if(src0[i] > max){
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index = i;
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max = src0[i];
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}
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}
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target[0] = index;
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}
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}
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#endif /*LV_HAVE_GENERIC*/
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#endif /*INCLUDED_volk_gnsssdr_32f_index_max_16u_a_H*/
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