| #include "edge-impulse-sdk/dsp/config.hpp" |
| #if EIDSP_LOAD_CMSIS_DSP_SOURCES |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
|
|
| #include "edge-impulse-sdk/CMSIS/DSP/Include/dsp/transform_functions.h" |
| #include "edge-impulse-sdk/CMSIS/DSP/Include/arm_common_tables.h" |
|
|
| #if defined(ARM_MATH_MVEF) && !defined(ARM_MATH_AUTOVECTORIZE) |
|
|
| #include "edge-impulse-sdk/CMSIS/DSP/Include/arm_helium_utils.h" |
| #include "edge-impulse-sdk/CMSIS/DSP/Include/arm_vec_fft.h" |
| #include "edge-impulse-sdk/CMSIS/DSP/Include/arm_mve_tables.h" |
|
|
|
|
| static float32_t arm_inverse_fft_length_f32(uint16_t fftLen) |
| { |
| float32_t retValue=1.0; |
|
|
| switch (fftLen) |
| { |
|
|
| case 4096U: |
| retValue = 0.000244140625; |
| break; |
|
|
| case 2048U: |
| retValue = 0.00048828125; |
| break; |
|
|
| case 1024U: |
| retValue = 0.0009765625f; |
| break; |
|
|
| case 512U: |
| retValue = 0.001953125; |
| break; |
|
|
| case 256U: |
| retValue = 0.00390625f; |
| break; |
|
|
| case 128U: |
| retValue = 0.0078125; |
| break; |
|
|
| case 64U: |
| retValue = 0.015625f; |
| break; |
|
|
| case 32U: |
| retValue = 0.03125; |
| break; |
|
|
| case 16U: |
| retValue = 0.0625f; |
| break; |
|
|
|
|
| default: |
| break; |
| } |
| return(retValue); |
| } |
|
|
|
|
|
|
|
|
| static void _arm_radix4_butterfly_f32_mve(const arm_cfft_instance_f32 * S,float32_t * pSrc, uint32_t fftLen) |
| { |
| f32x4_t vecTmp0, vecTmp1; |
| f32x4_t vecSum0, vecDiff0, vecSum1, vecDiff1; |
| f32x4_t vecA, vecB, vecC, vecD; |
| uint32_t blkCnt; |
| uint32_t n1, n2; |
| uint32_t stage = 0; |
| int32_t iter = 1; |
| static const int32_t strides[4] = { |
| (0 - 16) * (int32_t)sizeof(q31_t *), |
| (1 - 16) * (int32_t)sizeof(q31_t *), |
| (8 - 16) * (int32_t)sizeof(q31_t *), |
| (9 - 16) * (int32_t)sizeof(q31_t *) |
| }; |
|
|
| n2 = fftLen; |
| n1 = n2; |
| n2 >>= 2u; |
| for (int k = fftLen / 4u; k > 1; k >>= 2) |
| { |
| float32_t const *p_rearranged_twiddle_tab_stride1 = |
| &S->rearranged_twiddle_stride1[ |
| S->rearranged_twiddle_tab_stride1_arr[stage]]; |
| float32_t const *p_rearranged_twiddle_tab_stride2 = |
| &S->rearranged_twiddle_stride2[ |
| S->rearranged_twiddle_tab_stride2_arr[stage]]; |
| float32_t const *p_rearranged_twiddle_tab_stride3 = |
| &S->rearranged_twiddle_stride3[ |
| S->rearranged_twiddle_tab_stride3_arr[stage]]; |
|
|
| float32_t * pBase = pSrc; |
| for (int i = 0; i < iter; i++) |
| { |
| float32_t *inA = pBase; |
| float32_t *inB = inA + n2 * CMPLX_DIM; |
| float32_t *inC = inB + n2 * CMPLX_DIM; |
| float32_t *inD = inC + n2 * CMPLX_DIM; |
| float32_t const *pW1 = p_rearranged_twiddle_tab_stride1; |
| float32_t const *pW2 = p_rearranged_twiddle_tab_stride2; |
| float32_t const *pW3 = p_rearranged_twiddle_tab_stride3; |
| f32x4_t vecW; |
|
|
| blkCnt = n2 / 2; |
| |
| |
| |
| vecA = vldrwq_f32(inA); |
| vecC = vldrwq_f32(inC); |
| while (blkCnt > 0U) |
| { |
| vecB = vldrwq_f32(inB); |
| vecD = vldrwq_f32(inD); |
|
|
| vecSum0 = vecA + vecC; |
| vecDiff0 = vecA - vecC; |
|
|
| vecSum1 = vecB + vecD; |
| vecDiff1 = vecB - vecD; |
| |
| |
| |
| vecTmp0 = vecSum0 + vecSum1; |
| vst1q(inA, vecTmp0); |
| inA += 4; |
|
|
| |
| |
| |
| vecTmp0 = vecSum0 - vecSum1; |
| |
| |
| |
| vecW = vld1q(pW2); |
| pW2 += 4; |
| vecTmp1 = MVE_CMPLX_MULT_FLT_Conj_AxB(vecW, vecTmp0); |
| vst1q(inB, vecTmp1); |
| inB += 4; |
|
|
| |
| |
| |
| vecTmp0 = MVE_CMPLX_SUB_A_ixB(vecDiff0, vecDiff1); |
| |
| |
| |
| vecW = vld1q(pW1); |
| pW1 +=4; |
| vecTmp1 = MVE_CMPLX_MULT_FLT_Conj_AxB(vecW, vecTmp0); |
| vst1q(inC, vecTmp1); |
| inC += 4; |
|
|
| |
| |
| |
| vecTmp0 = MVE_CMPLX_ADD_A_ixB(vecDiff0, vecDiff1); |
| |
| |
| |
| vecW = vld1q(pW3); |
| pW3 += 4; |
| vecTmp1 = MVE_CMPLX_MULT_FLT_Conj_AxB(vecW, vecTmp0); |
| vst1q(inD, vecTmp1); |
| inD += 4; |
|
|
| vecA = vldrwq_f32(inA); |
| vecC = vldrwq_f32(inC); |
|
|
| blkCnt--; |
| } |
| pBase += CMPLX_DIM * n1; |
| } |
| n1 = n2; |
| n2 >>= 2u; |
| iter = iter << 2; |
| stage++; |
| } |
|
|
| |
| |
| |
| uint32x4_t vecScGathAddr = vld1q_u32((uint32_t*)strides); |
| vecScGathAddr = vecScGathAddr + (uint32_t) pSrc; |
|
|
| |
| vecA = vldrwq_gather_base_wb_f32(&vecScGathAddr, 64); |
| vecC = vldrwq_gather_base_f32(vecScGathAddr, 16); |
|
|
| blkCnt = (fftLen >> 3); |
| while (blkCnt > 0U) |
| { |
| vecSum0 = vecA + vecC; |
| vecDiff0 = vecA - vecC; |
|
|
| vecB = vldrwq_gather_base_f32(vecScGathAddr, 8); |
| vecD = vldrwq_gather_base_f32(vecScGathAddr, 24); |
|
|
| vecSum1 = vecB + vecD; |
| vecDiff1 = vecB - vecD; |
|
|
| |
| vecA = vldrwq_gather_base_wb_f32(&vecScGathAddr, 64); |
| vecC = vldrwq_gather_base_f32(vecScGathAddr, 16); |
|
|
| vecTmp0 = vecSum0 + vecSum1; |
| vstrwq_scatter_base_f32(vecScGathAddr, -64, vecTmp0); |
|
|
| vecTmp0 = vecSum0 - vecSum1; |
| vstrwq_scatter_base_f32(vecScGathAddr, -64 + 8, vecTmp0); |
|
|
| vecTmp0 = MVE_CMPLX_SUB_A_ixB(vecDiff0, vecDiff1); |
| vstrwq_scatter_base_f32(vecScGathAddr, -64 + 16, vecTmp0); |
|
|
| vecTmp0 = MVE_CMPLX_ADD_A_ixB(vecDiff0, vecDiff1); |
| vstrwq_scatter_base_f32(vecScGathAddr, -64 + 24, vecTmp0); |
|
|
| blkCnt--; |
| } |
|
|
| |
| |
| |
| } |
|
|
| static void arm_cfft_radix4by2_f32_mve(const arm_cfft_instance_f32 * S, float32_t *pSrc, uint32_t fftLen) |
| { |
| float32_t const *pCoefVec; |
| float32_t const *pCoef = S->pTwiddle; |
| float32_t *pIn0, *pIn1; |
| uint32_t n2; |
| uint32_t blkCnt; |
| f32x4_t vecIn0, vecIn1, vecSum, vecDiff; |
| f32x4_t vecCmplxTmp, vecTw; |
|
|
|
|
| n2 = fftLen >> 1; |
| pIn0 = pSrc; |
| pIn1 = pSrc + fftLen; |
| pCoefVec = pCoef; |
|
|
| blkCnt = n2 / 2; |
| while (blkCnt > 0U) |
| { |
| vecIn0 = *(f32x4_t *) pIn0; |
| vecIn1 = *(f32x4_t *) pIn1; |
| vecTw = vld1q(pCoefVec); |
| pCoefVec += 4; |
|
|
| vecSum = vecIn0 + vecIn1; |
| vecDiff = vecIn0 - vecIn1; |
|
|
| vecCmplxTmp = MVE_CMPLX_MULT_FLT_Conj_AxB(vecTw, vecDiff); |
|
|
| vst1q(pIn0, vecSum); |
| pIn0 += 4; |
| vst1q(pIn1, vecCmplxTmp); |
| pIn1 += 4; |
|
|
| blkCnt--; |
| } |
|
|
| _arm_radix4_butterfly_f32_mve(S, pSrc, n2); |
|
|
| _arm_radix4_butterfly_f32_mve(S, pSrc + fftLen, n2); |
|
|
| pIn0 = pSrc; |
| } |
|
|
| static void _arm_radix4_butterfly_inverse_f32_mve(const arm_cfft_instance_f32 * S,float32_t * pSrc, uint32_t fftLen, float32_t onebyfftLen) |
| { |
| f32x4_t vecTmp0, vecTmp1; |
| f32x4_t vecSum0, vecDiff0, vecSum1, vecDiff1; |
| f32x4_t vecA, vecB, vecC, vecD; |
| uint32_t blkCnt; |
| uint32_t n1, n2; |
| uint32_t stage = 0; |
| int32_t iter = 1; |
| static const int32_t strides[4] = { |
| (0 - 16) * (int32_t)sizeof(q31_t *), |
| (1 - 16) * (int32_t)sizeof(q31_t *), |
| (8 - 16) * (int32_t)sizeof(q31_t *), |
| (9 - 16) * (int32_t)sizeof(q31_t *) |
| }; |
|
|
| n2 = fftLen; |
| n1 = n2; |
| n2 >>= 2u; |
| for (int k = fftLen / 4; k > 1; k >>= 2) |
| { |
| float32_t const *p_rearranged_twiddle_tab_stride1 = |
| &S->rearranged_twiddle_stride1[ |
| S->rearranged_twiddle_tab_stride1_arr[stage]]; |
| float32_t const *p_rearranged_twiddle_tab_stride2 = |
| &S->rearranged_twiddle_stride2[ |
| S->rearranged_twiddle_tab_stride2_arr[stage]]; |
| float32_t const *p_rearranged_twiddle_tab_stride3 = |
| &S->rearranged_twiddle_stride3[ |
| S->rearranged_twiddle_tab_stride3_arr[stage]]; |
|
|
| float32_t * pBase = pSrc; |
| for (int i = 0; i < iter; i++) |
| { |
| float32_t *inA = pBase; |
| float32_t *inB = inA + n2 * CMPLX_DIM; |
| float32_t *inC = inB + n2 * CMPLX_DIM; |
| float32_t *inD = inC + n2 * CMPLX_DIM; |
| float32_t const *pW1 = p_rearranged_twiddle_tab_stride1; |
| float32_t const *pW2 = p_rearranged_twiddle_tab_stride2; |
| float32_t const *pW3 = p_rearranged_twiddle_tab_stride3; |
| f32x4_t vecW; |
|
|
| blkCnt = n2 / 2; |
| |
| |
| |
| vecA = vldrwq_f32(inA); |
| vecC = vldrwq_f32(inC); |
| while (blkCnt > 0U) |
| { |
| vecB = vldrwq_f32(inB); |
| vecD = vldrwq_f32(inD); |
|
|
| vecSum0 = vecA + vecC; |
| vecDiff0 = vecA - vecC; |
|
|
| vecSum1 = vecB + vecD; |
| vecDiff1 = vecB - vecD; |
| |
| |
| |
| vecTmp0 = vecSum0 + vecSum1; |
| vst1q(inA, vecTmp0); |
| inA += 4; |
| |
| |
| |
| vecTmp0 = vecSum0 - vecSum1; |
| |
| |
| |
| vecW = vld1q(pW2); |
| pW2 += 4; |
| vecTmp1 = MVE_CMPLX_MULT_FLT_AxB(vecW, vecTmp0); |
| vst1q(inB, vecTmp1); |
| inB += 4; |
|
|
| |
| |
| |
| vecTmp0 = MVE_CMPLX_ADD_A_ixB(vecDiff0, vecDiff1); |
| |
| |
| |
| vecW = vld1q(pW1); |
| pW1 += 4; |
| vecTmp1 = MVE_CMPLX_MULT_FLT_AxB(vecW, vecTmp0); |
| vst1q(inC, vecTmp1); |
| inC += 4; |
|
|
| |
| |
| |
| vecTmp0 = MVE_CMPLX_SUB_A_ixB(vecDiff0, vecDiff1); |
| |
| |
| |
| vecW = vld1q(pW3); |
| pW3 += 4; |
| vecTmp1 = MVE_CMPLX_MULT_FLT_AxB(vecW, vecTmp0); |
| vst1q(inD, vecTmp1); |
| inD += 4; |
|
|
| vecA = vldrwq_f32(inA); |
| vecC = vldrwq_f32(inC); |
|
|
| blkCnt--; |
| } |
| pBase += CMPLX_DIM * n1; |
| } |
| n1 = n2; |
| n2 >>= 2u; |
| iter = iter << 2; |
| stage++; |
| } |
|
|
| |
| |
| |
| uint32x4_t vecScGathAddr = vld1q_u32 ((uint32_t*)strides); |
| vecScGathAddr = vecScGathAddr + (uint32_t) pSrc; |
|
|
| |
| |
| |
| vecA = vldrwq_gather_base_wb_f32(&vecScGathAddr, 64); |
| vecC = vldrwq_gather_base_f32(vecScGathAddr, 16); |
|
|
| blkCnt = (fftLen >> 3); |
| while (blkCnt > 0U) |
| { |
| vecSum0 = vecA + vecC; |
| vecDiff0 = vecA - vecC; |
|
|
| vecB = vldrwq_gather_base_f32(vecScGathAddr, 8); |
| vecD = vldrwq_gather_base_f32(vecScGathAddr, 24); |
|
|
| vecSum1 = vecB + vecD; |
| vecDiff1 = vecB - vecD; |
|
|
| vecA = vldrwq_gather_base_wb_f32(&vecScGathAddr, 64); |
| vecC = vldrwq_gather_base_f32(vecScGathAddr, 16); |
|
|
| vecTmp0 = vecSum0 + vecSum1; |
| vecTmp0 = vecTmp0 * onebyfftLen; |
| vstrwq_scatter_base_f32(vecScGathAddr, -64, vecTmp0); |
|
|
| vecTmp0 = vecSum0 - vecSum1; |
| vecTmp0 = vecTmp0 * onebyfftLen; |
| vstrwq_scatter_base_f32(vecScGathAddr, -64 + 8, vecTmp0); |
|
|
| vecTmp0 = MVE_CMPLX_ADD_A_ixB(vecDiff0, vecDiff1); |
| vecTmp0 = vecTmp0 * onebyfftLen; |
| vstrwq_scatter_base_f32(vecScGathAddr, -64 + 16, vecTmp0); |
|
|
| vecTmp0 = MVE_CMPLX_SUB_A_ixB(vecDiff0, vecDiff1); |
| vecTmp0 = vecTmp0 * onebyfftLen; |
| vstrwq_scatter_base_f32(vecScGathAddr, -64 + 24, vecTmp0); |
|
|
| blkCnt--; |
| } |
|
|
| |
| |
| |
| } |
|
|
| static void arm_cfft_radix4by2_inverse_f32_mve(const arm_cfft_instance_f32 * S,float32_t *pSrc, uint32_t fftLen) |
| { |
| float32_t const *pCoefVec; |
| float32_t const *pCoef = S->pTwiddle; |
| float32_t *pIn0, *pIn1; |
| uint32_t n2; |
| float32_t onebyfftLen = arm_inverse_fft_length_f32(fftLen); |
| uint32_t blkCnt; |
| f32x4_t vecIn0, vecIn1, vecSum, vecDiff; |
| f32x4_t vecCmplxTmp, vecTw; |
|
|
|
|
| n2 = fftLen >> 1; |
| pIn0 = pSrc; |
| pIn1 = pSrc + fftLen; |
| pCoefVec = pCoef; |
|
|
| blkCnt = n2 / 2; |
| while (blkCnt > 0U) |
| { |
| vecIn0 = *(f32x4_t *) pIn0; |
| vecIn1 = *(f32x4_t *) pIn1; |
| vecTw = vld1q(pCoefVec); |
| pCoefVec += 4; |
|
|
| vecSum = vecIn0 + vecIn1; |
| vecDiff = vecIn0 - vecIn1; |
|
|
| vecCmplxTmp = MVE_CMPLX_MULT_FLT_AxB(vecTw, vecDiff); |
|
|
| vst1q(pIn0, vecSum); |
| pIn0 += 4; |
| vst1q(pIn1, vecCmplxTmp); |
| pIn1 += 4; |
|
|
| blkCnt--; |
| } |
|
|
| _arm_radix4_butterfly_inverse_f32_mve(S, pSrc, n2, onebyfftLen); |
|
|
| _arm_radix4_butterfly_inverse_f32_mve(S, pSrc + fftLen, n2, onebyfftLen); |
| } |
|
|
|
|
| |
| |
| |
| |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
|
|
|
|
| void arm_cfft_f32( |
| const arm_cfft_instance_f32 * S, |
| float32_t * pSrc, |
| uint8_t ifftFlag, |
| uint8_t bitReverseFlag) |
| { |
| uint32_t fftLen = S->fftLen; |
|
|
| if (ifftFlag == 1U) { |
|
|
| switch (fftLen) { |
| case 16: |
| case 64: |
| case 256: |
| case 1024: |
| case 4096: |
| _arm_radix4_butterfly_inverse_f32_mve(S, pSrc, fftLen, arm_inverse_fft_length_f32(S->fftLen)); |
| break; |
|
|
| case 32: |
| case 128: |
| case 512: |
| case 2048: |
| arm_cfft_radix4by2_inverse_f32_mve(S, pSrc, fftLen); |
| break; |
| } |
| } else { |
| switch (fftLen) { |
| case 16: |
| case 64: |
| case 256: |
| case 1024: |
| case 4096: |
| _arm_radix4_butterfly_f32_mve(S, pSrc, fftLen); |
| break; |
|
|
| case 32: |
| case 128: |
| case 512: |
| case 2048: |
| arm_cfft_radix4by2_f32_mve(S, pSrc, fftLen); |
| break; |
| } |
| } |
|
|
|
|
| if (bitReverseFlag) |
| { |
|
|
| arm_bitreversal_32_inpl_mve((uint32_t*)pSrc, S->bitRevLength, S->pBitRevTable); |
|
|
| } |
| } |
|
|
|
|
| #else |
| extern void arm_radix8_butterfly_f32( |
| float32_t * pSrc, |
| uint16_t fftLen, |
| const float32_t * pCoef, |
| uint16_t twidCoefModifier); |
|
|
| extern void arm_bitreversal_32( |
| uint32_t * pSrc, |
| const uint16_t bitRevLen, |
| const uint16_t * pBitRevTable); |
|
|
| |
| |
| |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
|
|
| void arm_cfft_radix8by2_f32 (arm_cfft_instance_f32 * S, float32_t * p1) |
| { |
| uint32_t L = S->fftLen; |
| float32_t * pCol1, * pCol2, * pMid1, * pMid2; |
| float32_t * p2 = p1 + L; |
| const float32_t * tw = (float32_t *) S->pTwiddle; |
| float32_t t1[4], t2[4], t3[4], t4[4], twR, twI; |
| float32_t m0, m1, m2, m3; |
| uint32_t l; |
|
|
| pCol1 = p1; |
| pCol2 = p2; |
|
|
| |
| L >>= 1; |
|
|
| |
| pMid1 = p1 + L; |
| pMid2 = p2 + L; |
|
|
| |
| for (l = L >> 2; l > 0; l-- ) |
| { |
| t1[0] = p1[0]; |
| t1[1] = p1[1]; |
| t1[2] = p1[2]; |
| t1[3] = p1[3]; |
|
|
| t2[0] = p2[0]; |
| t2[1] = p2[1]; |
| t2[2] = p2[2]; |
| t2[3] = p2[3]; |
|
|
| t3[0] = pMid1[0]; |
| t3[1] = pMid1[1]; |
| t3[2] = pMid1[2]; |
| t3[3] = pMid1[3]; |
|
|
| t4[0] = pMid2[0]; |
| t4[1] = pMid2[1]; |
| t4[2] = pMid2[2]; |
| t4[3] = pMid2[3]; |
|
|
| *p1++ = t1[0] + t2[0]; |
| *p1++ = t1[1] + t2[1]; |
| *p1++ = t1[2] + t2[2]; |
| *p1++ = t1[3] + t2[3]; |
|
|
| t2[0] = t1[0] - t2[0]; |
| t2[1] = t1[1] - t2[1]; |
| t2[2] = t1[2] - t2[2]; |
| t2[3] = t1[3] - t2[3]; |
|
|
| *pMid1++ = t3[0] + t4[0]; |
| *pMid1++ = t3[1] + t4[1]; |
| *pMid1++ = t3[2] + t4[2]; |
| *pMid1++ = t3[3] + t4[3]; |
|
|
| t4[0] = t4[0] - t3[0]; |
| t4[1] = t4[1] - t3[1]; |
| t4[2] = t4[2] - t3[2]; |
| t4[3] = t4[3] - t3[3]; |
|
|
| twR = *tw++; |
| twI = *tw++; |
|
|
| |
| m0 = t2[0] * twR; |
| m1 = t2[1] * twI; |
| m2 = t2[1] * twR; |
| m3 = t2[0] * twI; |
|
|
| |
| *p2++ = m0 + m1; |
| |
| *p2++ = m2 - m3; |
|
|
| |
| |
| m0 = t4[0] * twI; |
| m1 = t4[1] * twR; |
| m2 = t4[1] * twI; |
| m3 = t4[0] * twR; |
|
|
| *pMid2++ = m0 - m1; |
| *pMid2++ = m2 + m3; |
|
|
| twR = *tw++; |
| twI = *tw++; |
|
|
| m0 = t2[2] * twR; |
| m1 = t2[3] * twI; |
| m2 = t2[3] * twR; |
| m3 = t2[2] * twI; |
|
|
| *p2++ = m0 + m1; |
| *p2++ = m2 - m3; |
|
|
| m0 = t4[2] * twI; |
| m1 = t4[3] * twR; |
| m2 = t4[3] * twI; |
| m3 = t4[2] * twR; |
|
|
| *pMid2++ = m0 - m1; |
| *pMid2++ = m2 + m3; |
| } |
|
|
| |
| arm_radix8_butterfly_f32 (pCol1, L, (float32_t *) S->pTwiddle, 2U); |
|
|
| |
| arm_radix8_butterfly_f32 (pCol2, L, (float32_t *) S->pTwiddle, 2U); |
| } |
|
|
| void arm_cfft_radix8by4_f32 (arm_cfft_instance_f32 * S, float32_t * p1) |
| { |
| uint32_t L = S->fftLen >> 1; |
| float32_t * pCol1, *pCol2, *pCol3, *pCol4, *pEnd1, *pEnd2, *pEnd3, *pEnd4; |
| const float32_t *tw2, *tw3, *tw4; |
| float32_t * p2 = p1 + L; |
| float32_t * p3 = p2 + L; |
| float32_t * p4 = p3 + L; |
| float32_t t2[4], t3[4], t4[4], twR, twI; |
| float32_t p1ap3_0, p1sp3_0, p1ap3_1, p1sp3_1; |
| float32_t m0, m1, m2, m3; |
| uint32_t l, twMod2, twMod3, twMod4; |
|
|
| pCol1 = p1; |
| pCol2 = p2; |
| pCol3 = p3; |
| pCol4 = p4; |
| pEnd1 = p2 - 1; |
| pEnd2 = p3 - 1; |
| pEnd3 = p4 - 1; |
| pEnd4 = pEnd3 + L; |
|
|
| tw2 = tw3 = tw4 = (float32_t *) S->pTwiddle; |
|
|
| L >>= 1; |
|
|
| |
|
|
| twMod2 = 2; |
| twMod3 = 4; |
| twMod4 = 6; |
|
|
| |
| p1ap3_0 = p1[0] + p3[0]; |
| p1sp3_0 = p1[0] - p3[0]; |
| p1ap3_1 = p1[1] + p3[1]; |
| p1sp3_1 = p1[1] - p3[1]; |
|
|
| |
| t2[0] = p1sp3_0 + p2[1] - p4[1]; |
| t2[1] = p1sp3_1 - p2[0] + p4[0]; |
| |
| t3[0] = p1ap3_0 - p2[0] - p4[0]; |
| t3[1] = p1ap3_1 - p2[1] - p4[1]; |
| |
| t4[0] = p1sp3_0 - p2[1] + p4[1]; |
| t4[1] = p1sp3_1 + p2[0] - p4[0]; |
| |
| *p1++ = p1ap3_0 + p2[0] + p4[0]; |
| *p1++ = p1ap3_1 + p2[1] + p4[1]; |
|
|
| |
| *p2++ = t2[0]; |
| *p2++ = t2[1]; |
| *p3++ = t3[0]; |
| *p3++ = t3[1]; |
| *p4++ = t4[0]; |
| *p4++ = t4[1]; |
|
|
| tw2 += twMod2; |
| tw3 += twMod3; |
| tw4 += twMod4; |
|
|
| for (l = (L - 2) >> 1; l > 0; l-- ) |
| { |
| |
| p1ap3_0 = p1[0] + p3[0]; |
| p1sp3_0 = p1[0] - p3[0]; |
| p1ap3_1 = p1[1] + p3[1]; |
| p1sp3_1 = p1[1] - p3[1]; |
| |
| t2[0] = p1sp3_0 + p2[1] - p4[1]; |
| t2[1] = p1sp3_1 - p2[0] + p4[0]; |
| |
| t3[0] = p1ap3_0 - p2[0] - p4[0]; |
| t3[1] = p1ap3_1 - p2[1] - p4[1]; |
| |
| t4[0] = p1sp3_0 - p2[1] + p4[1]; |
| t4[1] = p1sp3_1 + p2[0] - p4[0]; |
| |
| *p1++ = p1ap3_0 + p2[0] + p4[0]; |
| *p1++ = p1ap3_1 + p2[1] + p4[1]; |
|
|
| |
| p1ap3_1 = pEnd1[-1] + pEnd3[-1]; |
| p1sp3_1 = pEnd1[-1] - pEnd3[-1]; |
| p1ap3_0 = pEnd1[ 0] + pEnd3[0]; |
| p1sp3_0 = pEnd1[ 0] - pEnd3[0]; |
| |
| t2[2] = pEnd2[0] - pEnd4[0] + p1sp3_1; |
| t2[3] = pEnd1[0] - pEnd3[0] - pEnd2[-1] + pEnd4[-1]; |
| |
| t3[2] = p1ap3_1 - pEnd2[-1] - pEnd4[-1]; |
| t3[3] = p1ap3_0 - pEnd2[ 0] - pEnd4[ 0]; |
| |
| t4[2] = pEnd2[ 0] - pEnd4[ 0] - p1sp3_1; |
| t4[3] = pEnd4[-1] - pEnd2[-1] - p1sp3_0; |
| |
| *pEnd1-- = p1ap3_0 + pEnd2[ 0] + pEnd4[ 0]; |
| *pEnd1-- = p1ap3_1 + pEnd2[-1] + pEnd4[-1]; |
|
|
| |
| |
| twR = *tw2++; |
| twI = *tw2++; |
| |
| |
| |
|
|
| |
| m0 = t2[0] * twR; |
| m1 = t2[1] * twI; |
| m2 = t2[1] * twR; |
| m3 = t2[0] * twI; |
|
|
| *p2++ = m0 + m1; |
| *p2++ = m2 - m3; |
| |
| |
| |
| m0 = t2[3] * twI; |
| m1 = t2[2] * twR; |
| m2 = t2[2] * twI; |
| m3 = t2[3] * twR; |
|
|
| *pEnd2-- = m0 - m1; |
| *pEnd2-- = m2 + m3; |
|
|
| |
| twR = tw3[0]; |
| twI = tw3[1]; |
| tw3 += twMod3; |
| |
| m0 = t3[0] * twR; |
| m1 = t3[1] * twI; |
| m2 = t3[1] * twR; |
| m3 = t3[0] * twI; |
|
|
| *p3++ = m0 + m1; |
| *p3++ = m2 - m3; |
| |
| |
| |
| m0 = -t3[3] * twR; |
| m1 = t3[2] * twI; |
| m2 = t3[2] * twR; |
| m3 = t3[3] * twI; |
|
|
| *pEnd3-- = m0 - m1; |
| *pEnd3-- = m3 - m2; |
|
|
| |
| twR = tw4[0]; |
| twI = tw4[1]; |
| tw4 += twMod4; |
| |
| m0 = t4[0] * twR; |
| m1 = t4[1] * twI; |
| m2 = t4[1] * twR; |
| m3 = t4[0] * twI; |
|
|
| *p4++ = m0 + m1; |
| *p4++ = m2 - m3; |
| |
| |
| |
| m0 = t4[3] * twI; |
| m1 = t4[2] * twR; |
| m2 = t4[2] * twI; |
| m3 = t4[3] * twR; |
|
|
| *pEnd4-- = m0 - m1; |
| *pEnd4-- = m2 + m3; |
| } |
|
|
| |
| |
| |
| p1ap3_0 = p1[0] + p3[0]; |
| p1sp3_0 = p1[0] - p3[0]; |
| p1ap3_1 = p1[1] + p3[1]; |
| p1sp3_1 = p1[1] - p3[1]; |
|
|
| |
| t2[0] = p1sp3_0 + p2[1] - p4[1]; |
| t2[1] = p1sp3_1 - p2[0] + p4[0]; |
| |
| t3[0] = p1ap3_0 - p2[0] - p4[0]; |
| t3[1] = p1ap3_1 - p2[1] - p4[1]; |
| |
| t4[0] = p1sp3_0 - p2[1] + p4[1]; |
| t4[1] = p1sp3_1 + p2[0] - p4[0]; |
| |
| *p1++ = p1ap3_0 + p2[0] + p4[0]; |
| *p1++ = p1ap3_1 + p2[1] + p4[1]; |
|
|
| |
| twR = tw2[0]; |
| twI = tw2[1]; |
|
|
| m0 = t2[0] * twR; |
| m1 = t2[1] * twI; |
| m2 = t2[1] * twR; |
| m3 = t2[0] * twI; |
|
|
| *p2++ = m0 + m1; |
| *p2++ = m2 - m3; |
| |
| twR = tw3[0]; |
| twI = tw3[1]; |
|
|
| m0 = t3[0] * twR; |
| m1 = t3[1] * twI; |
| m2 = t3[1] * twR; |
| m3 = t3[0] * twI; |
|
|
| *p3++ = m0 + m1; |
| *p3++ = m2 - m3; |
| |
| twR = tw4[0]; |
| twI = tw4[1]; |
|
|
| m0 = t4[0] * twR; |
| m1 = t4[1] * twI; |
| m2 = t4[1] * twR; |
| m3 = t4[0] * twI; |
|
|
| *p4++ = m0 + m1; |
| *p4++ = m2 - m3; |
|
|
| |
| arm_radix8_butterfly_f32 (pCol1, L, (float32_t *) S->pTwiddle, 4U); |
|
|
| |
| arm_radix8_butterfly_f32 (pCol2, L, (float32_t *) S->pTwiddle, 4U); |
|
|
| |
| arm_radix8_butterfly_f32 (pCol3, L, (float32_t *) S->pTwiddle, 4U); |
|
|
| |
| arm_radix8_butterfly_f32 (pCol4, L, (float32_t *) S->pTwiddle, 4U); |
| } |
|
|
| |
| |
| |
| |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
|
|
| void arm_cfft_f32( |
| const arm_cfft_instance_f32 * S, |
| float32_t * p1, |
| uint8_t ifftFlag, |
| uint8_t bitReverseFlag) |
| { |
| uint32_t L = S->fftLen, l; |
| float32_t invL, * pSrc; |
|
|
| if (ifftFlag == 1U) |
| { |
| |
| pSrc = p1 + 1; |
| for (l = 0; l < L; l++) |
| { |
| *pSrc = -*pSrc; |
| pSrc += 2; |
| } |
| } |
|
|
| switch (L) |
| { |
| case 16: |
| case 128: |
| case 1024: |
| arm_cfft_radix8by2_f32 ( (arm_cfft_instance_f32 *) S, p1); |
| break; |
| case 32: |
| case 256: |
| case 2048: |
| arm_cfft_radix8by4_f32 ( (arm_cfft_instance_f32 *) S, p1); |
| break; |
| case 64: |
| case 512: |
| case 4096: |
| arm_radix8_butterfly_f32 ( p1, L, (float32_t *) S->pTwiddle, 1); |
| break; |
| } |
|
|
| if ( bitReverseFlag ) |
| arm_bitreversal_32 ((uint32_t*) p1, S->bitRevLength, S->pBitRevTable); |
|
|
| if (ifftFlag == 1U) |
| { |
| invL = 1.0f / (float32_t)L; |
|
|
| |
| pSrc = p1; |
| for (l= 0; l < L; l++) |
| { |
| *pSrc++ *= invL ; |
| *pSrc = -(*pSrc) * invL; |
| pSrc++; |
| } |
| } |
| } |
| #endif |
|
|
| |
| |
| |
|
|
| #endif |
|
|