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#include <assert.h> |
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#include <immintrin.h> |
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#include <xnnpack/intrinsics-polyfill.h> |
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#include <xnnpack/pavgpool.h> |
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void xnn_f16_pavgpool_minmax_ukernel_9x__avx2_c8( |
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size_t output_pixels, |
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size_t kernel_elements, |
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size_t channels, |
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const void** input, |
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size_t input_offset, |
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const void* zero, |
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const void* multiplier, |
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void* output, |
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size_t input_increment, |
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size_t output_increment, |
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const union xnn_f16_minmax_params params[restrict XNN_MIN_ELEMENTS(1)]) XNN_OOB_READS |
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{ |
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assert(output_pixels != 0); |
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assert(kernel_elements != 0); |
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assert(kernel_elements <= 9); |
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assert(channels != 0); |
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const __m256 voutput_min = _mm256_load_ps(params->avx.min); |
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const __m256 voutput_max = _mm256_load_ps(params->avx.max); |
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uint16_t* o = (uint16_t*) output; |
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do { |
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const uint16_t* i0 = (const uint16_t*) input[0]; |
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assert(i0 != NULL); |
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const uint16_t* i1 = (const uint16_t*) input[1]; |
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const uint16_t* i2 = (const uint16_t*) input[2]; |
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const uint16_t* i3 = (const uint16_t*) input[3]; |
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const uint16_t* i4 = (const uint16_t*) input[4]; |
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const uint16_t* i5 = (const uint16_t*) input[5]; |
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const uint16_t* i6 = (const uint16_t*) input[6]; |
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const uint16_t* i7 = (const uint16_t*) input[7]; |
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const uint16_t* i8 = (const uint16_t*) input[8]; |
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input = (const void**) ((uintptr_t) input + input_increment); |
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if (kernel_elements < 2) { |
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i1 = (const uint16_t*) zero; |
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} |
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assert(i1 != NULL); |
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if (kernel_elements <= 2) { |
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i2 = (const uint16_t*) zero; |
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} |
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assert(i2 != NULL); |
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if (kernel_elements < 4) { |
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i3 = (const uint16_t*) zero; |
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} |
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assert(i3 != NULL); |
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if (kernel_elements <= 4) { |
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i4 = (const uint16_t*) zero; |
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} |
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assert(i4 != NULL); |
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if (kernel_elements < 6) { |
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i5 = (const uint16_t*) zero; |
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} |
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assert(i5 != NULL); |
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if (kernel_elements <= 6) { |
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i6 = (const uint16_t*) zero; |
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} |
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assert(i6 != NULL); |
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if (kernel_elements < 8) { |
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i7 = (const uint16_t*) zero; |
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} |
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assert(i7 != NULL); |
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if (kernel_elements <= 8) { |
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i8 = (const uint16_t*) zero; |
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} |
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assert(i8 != NULL); |
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if XNN_UNPREDICTABLE(i0 != zero) { |
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i0 = (const uint16_t*) ((uintptr_t) i0 + input_offset); |
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} |
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if XNN_UNPREDICTABLE(i1 != zero) { |
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i1 = (const uint16_t*) ((uintptr_t) i1 + input_offset); |
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} |
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if XNN_UNPREDICTABLE(i2 != zero) { |
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i2 = (const uint16_t*) ((uintptr_t) i2 + input_offset); |
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} |
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if XNN_UNPREDICTABLE(i3 != zero) { |
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i3 = (const uint16_t*) ((uintptr_t) i3 + input_offset); |
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} |
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if XNN_UNPREDICTABLE(i4 != zero) { |
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i4 = (const uint16_t*) ((uintptr_t) i4 + input_offset); |
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} |
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if XNN_UNPREDICTABLE(i5 != zero) { |
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i5 = (const uint16_t*) ((uintptr_t) i5 + input_offset); |
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} |
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if XNN_UNPREDICTABLE(i6 != zero) { |
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i6 = (const uint16_t*) ((uintptr_t) i6 + input_offset); |
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} |
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if XNN_UNPREDICTABLE(i7 != zero) { |
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i7 = (const uint16_t*) ((uintptr_t) i7 + input_offset); |
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} |
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if XNN_UNPREDICTABLE(i8 != zero) { |
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i8 = (const uint16_t*) ((uintptr_t) i8 + input_offset); |
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} |
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const __m256 vmultiplier = _mm256_cvtph_ps(_mm_set1_epi16((short) *((const uint16_t*) multiplier))); |
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multiplier = (const uint16_t*) multiplier + 1; |
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size_t c = channels; |
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while (c >= 8) { |
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const __m256 vi0 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i0)); |
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i0 += 8; |
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const __m256 vi1 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i1)); |
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i1 += 8; |
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const __m256 vi2 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i2)); |
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i2 += 8; |
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const __m256 vi3 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i3)); |
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i3 += 8; |
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const __m256 vi4 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i4)); |
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i4 += 8; |
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const __m256 vi5 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i5)); |
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i5 += 8; |
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const __m256 vi6 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i6)); |
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i6 += 8; |
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const __m256 vi7 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i7)); |
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i7 += 8; |
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const __m256 vi8 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i8)); |
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i8 += 8; |
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const __m256 vsum01 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vi0, vi1), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum23 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vi2, vi3), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum45 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vi4, vi5), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum67 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vi6, vi7), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum018 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vsum01, vi8), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum2345 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vsum23, vsum45), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum01678 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vsum018, vsum67), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vsum2345, vsum01678), _MM_FROUND_TO_NEAREST_INT)); |
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__m256 vout = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_mul_ps(vsum, vmultiplier), _MM_FROUND_TO_NEAREST_INT)); |
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vout = _mm256_max_ps(vout, voutput_min); |
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vout = _mm256_min_ps(vout, voutput_max); |
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_mm_storeu_si128((__m128i*) o, _mm256_cvtps_ph(vout, _MM_FROUND_TO_NEAREST_INT)); |
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o += 8; |
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c -= 8; |
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} |
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if (c != 0) { |
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const __m256 vi0 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i0)); |
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const __m256 vi1 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i1)); |
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const __m256 vi2 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i2)); |
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const __m256 vi3 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i3)); |
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const __m256 vi4 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i4)); |
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const __m256 vi5 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i5)); |
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const __m256 vi6 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i6)); |
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const __m256 vi7 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i7)); |
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const __m256 vi8 = _mm256_cvtph_ps(_mm_loadu_si128((const __m128i*) i8)); |
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const __m256 vsum01 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vi0, vi1), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum23 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vi2, vi3), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum45 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vi4, vi5), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum67 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vi6, vi7), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum018 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vsum01, vi8), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum2345 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vsum23, vsum45), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum01678 = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vsum018, vsum67), _MM_FROUND_TO_NEAREST_INT)); |
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const __m256 vsum = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_add_ps(vsum2345, vsum01678), _MM_FROUND_TO_NEAREST_INT)); |
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__m256 vout = _mm256_cvtph_ps(_mm256_cvtps_ph(_mm256_mul_ps(vsum, vmultiplier), _MM_FROUND_TO_NEAREST_INT)); |
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vout = _mm256_max_ps(vout, voutput_min); |
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vout = _mm256_min_ps(vout, voutput_max); |
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__m128i vh = _mm256_cvtps_ph(vout, _MM_FROUND_TO_NEAREST_INT); |
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if (c & 4) { |
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_mm_storel_epi64((__m128i*) o, vh); |
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vh = _mm_unpackhi_epi64(vh, vh); |
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o += 4; |
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} |
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if (c & 2) { |
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_mm_storeu_si32(o, vh); |
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vh = _mm_srli_epi64(vh, 32); |
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o += 2; |
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} |
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if (c & 1) { |
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*o = (uint16_t) _mm_extract_epi16(vh, 0); |
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o += 1; |
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} |
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} |
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o = (uint16_t*) ((uintptr_t) o + output_increment); |
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} while (--output_pixels != 0); |
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} |
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