| #include "edge-impulse-sdk/dsp/config.hpp" |
| #if EIDSP_LOAD_CMSIS_DSP_SOURCES |
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| #include "edge-impulse-sdk/CMSIS/DSP/Include/dsp/complex_math_functions.h" |
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| #if defined(ARM_MATH_NEON) && !defined(ARM_MATH_AUTOVECTORIZE) |
| #include "edge-impulse-sdk/CMSIS/DSP/Include/arm_vec_math.h" |
| #endif |
|
|
| #if defined(ARM_MATH_MVEF) && !defined(ARM_MATH_AUTOVECTORIZE) |
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| #include "edge-impulse-sdk/CMSIS/DSP/Include/arm_helium_utils.h" |
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| void arm_cmplx_mag_f32( |
| const float32_t * pSrc, |
| float32_t * pDst, |
| uint32_t numSamples) |
| { |
| int32_t blockSize = numSamples; |
| uint32_t blkCnt; |
| f32x4x2_t vecSrc; |
| f32x4_t sum; |
| float32_t real, imag; |
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| |
| blkCnt = blockSize >> 2; |
| while (blkCnt > 0U) |
| { |
| q31x4_t newtonStartVec; |
| f32x4_t sumHalf, invSqrt; |
|
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| vecSrc = vld2q(pSrc); |
| pSrc += 8; |
| sum = vmulq(vecSrc.val[0], vecSrc.val[0]); |
| sum = vfmaq(sum, vecSrc.val[1], vecSrc.val[1]); |
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| newtonStartVec = vdupq_n_s32(INVSQRT_MAGIC_F32) - vshrq((q31x4_t) sum, 1); |
| sumHalf = sum * 0.5f; |
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| INVSQRT_NEWTON_MVE_F32(invSqrt, sumHalf, (f32x4_t) newtonStartVec); |
| INVSQRT_NEWTON_MVE_F32(invSqrt, sumHalf, invSqrt); |
| INVSQRT_NEWTON_MVE_F32(invSqrt, sumHalf, invSqrt); |
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| invSqrt = vdupq_m(invSqrt, 0.0f, vcmpltq(invSqrt, 0.0f)); |
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| sum = vmulq(sum, invSqrt); |
| vst1q(pDst, sum); |
| pDst += 4; |
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| blkCnt--; |
| } |
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| blkCnt = blockSize & 3; |
| while (blkCnt > 0U) |
| { |
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| real = *pSrc++; |
| imag = *pSrc++; |
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| arm_sqrt_f32((real * real) + (imag * imag), pDst++); |
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| blkCnt--; |
| } |
| } |
|
|
| #else |
| void arm_cmplx_mag_f32( |
| const float32_t * pSrc, |
| float32_t * pDst, |
| uint32_t numSamples) |
| { |
| uint32_t blkCnt; |
| float32_t real, imag; |
|
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| #if defined(ARM_MATH_NEON) && !defined(ARM_MATH_AUTOVECTORIZE) |
|
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| float32x4x2_t vecA; |
| float32x4_t vRealA; |
| float32x4_t vImagA; |
| float32x4_t vMagSqA; |
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| float32x4x2_t vecB; |
| float32x4_t vRealB; |
| float32x4_t vImagB; |
| float32x4_t vMagSqB; |
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| blkCnt = numSamples >> 3; |
|
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| while (blkCnt > 0U) |
| { |
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| vecA = vld2q_f32(pSrc); |
| pSrc += 8; |
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| vecB = vld2q_f32(pSrc); |
| pSrc += 8; |
|
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| vRealA = vmulq_f32(vecA.val[0], vecA.val[0]); |
| vImagA = vmulq_f32(vecA.val[1], vecA.val[1]); |
| vMagSqA = vaddq_f32(vRealA, vImagA); |
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| vRealB = vmulq_f32(vecB.val[0], vecB.val[0]); |
| vImagB = vmulq_f32(vecB.val[1], vecB.val[1]); |
| vMagSqB = vaddq_f32(vRealB, vImagB); |
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| vst1q_f32(pDst, __arm_vec_sqrt_f32_neon(vMagSqA)); |
| pDst += 4; |
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| vst1q_f32(pDst, __arm_vec_sqrt_f32_neon(vMagSqB)); |
| pDst += 4; |
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| blkCnt--; |
| } |
|
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| blkCnt = numSamples & 7; |
|
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| #else |
|
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| #if defined (ARM_MATH_LOOPUNROLL) && !defined(ARM_MATH_AUTOVECTORIZE) |
|
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| blkCnt = numSamples >> 2U; |
|
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| while (blkCnt > 0U) |
| { |
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| real = *pSrc++; |
| imag = *pSrc++; |
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| arm_sqrt_f32((real * real) + (imag * imag), pDst++); |
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| real = *pSrc++; |
| imag = *pSrc++; |
| arm_sqrt_f32((real * real) + (imag * imag), pDst++); |
|
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| real = *pSrc++; |
| imag = *pSrc++; |
| arm_sqrt_f32((real * real) + (imag * imag), pDst++); |
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| real = *pSrc++; |
| imag = *pSrc++; |
| arm_sqrt_f32((real * real) + (imag * imag), pDst++); |
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| blkCnt--; |
| } |
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| blkCnt = numSamples % 0x4U; |
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| #else |
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| blkCnt = numSamples; |
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| #endif |
| #endif |
|
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| while (blkCnt > 0U) |
| { |
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| real = *pSrc++; |
| imag = *pSrc++; |
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| arm_sqrt_f32((real * real) + (imag * imag), pDst++); |
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| blkCnt--; |
| } |
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| } |
| #endif |
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| #endif |
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