| #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/matrix_functions.h" |
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| #if defined(ARM_MATH_MVEI) && !defined(ARM_MATH_AUTOVECTORIZE) |
|
|
| #include "edge-impulse-sdk/CMSIS/DSP/Include/arm_helium_utils.h" |
|
|
| #define MATRIX_DIM2 2 |
| #define MATRIX_DIM3 3 |
| #define MATRIX_DIM4 4 |
|
|
| __STATIC_INLINE arm_status arm_mat_cmplx_mult_q31_2x2_mve( |
| const arm_matrix_instance_q31 * pSrcA, |
| const arm_matrix_instance_q31 * pSrcB, |
| arm_matrix_instance_q31 * pDst) |
| { |
| q31_t const *pInB = pSrcB->pData; |
| q31_t const *pInA = pSrcA->pData; |
| q31_t *pOut = pDst->pData; |
| uint32x4_t vecColBOffs0; |
| q31_t const *pInA0 = pInA; |
| q31_t const *pInA1 = pInA0 + CMPLX_DIM * MATRIX_DIM2; |
| q63_t acc0, acc1, acc2, acc3; |
| q31x4_t vecB, vecA; |
|
|
| static const uint32_t offsetB0[4] = { |
| 0, 1, |
| MATRIX_DIM2 * CMPLX_DIM, MATRIX_DIM2 * CMPLX_DIM + 1 |
| }; |
|
|
| vecColBOffs0 = vldrwq_u32(offsetB0); |
|
|
| pInB = (q31_t const *) pSrcB->pData; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM2 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM2 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM2 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM2 + 1] = (q31_t) asrl(acc3, 31); |
| |
| |
| |
| pInB = pInB + CMPLX_DIM; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| pOut += CMPLX_DIM; |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM2 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM2 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM2 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM2 + 1] = (q31_t) asrl(acc3, 31); |
| |
| |
| |
| return (ARM_MATH_SUCCESS); |
| } |
|
|
| __STATIC_INLINE arm_status arm_mat_cmplx_mult_q31_3x3_mve( |
| const arm_matrix_instance_q31 * pSrcA, |
| const arm_matrix_instance_q31 * pSrcB, |
| arm_matrix_instance_q31 * pDst) |
| { |
| q31_t const *pInB = pSrcB->pData; |
| q31_t const *pInA = pSrcA->pData; |
| q31_t *pOut = pDst->pData; |
| uint32x4_t vecColBOffs0, vecColBOffs1; |
| q31_t const *pInA0 = pInA; |
| q31_t const *pInA1 = pInA0 + CMPLX_DIM * MATRIX_DIM3; |
| q31_t const *pInA2 = pInA1 + CMPLX_DIM * MATRIX_DIM3; |
| q63_t acc0, acc1, acc2, acc3; |
| q31x4_t vecB, vecB1, vecA; |
| |
| |
| |
| mve_pred16_t p0 = vctp32q(CMPLX_DIM); |
|
|
| static const uint32_t offsetB0[4] = { |
| 0, 1, |
| MATRIX_DIM3 * CMPLX_DIM, MATRIX_DIM3 * CMPLX_DIM + 1 |
| }; |
| static const uint32_t offsetB1[4] = { |
| 2 * MATRIX_DIM3 * CMPLX_DIM, 2 * MATRIX_DIM3 * CMPLX_DIM + 1, |
| INACTIVELANE, INACTIVELANE |
| }; |
|
|
| vecColBOffs0 = vldrwq_u32(offsetB0); |
| vecColBOffs1 = vldrwq_u32(offsetB1); |
|
|
| pInB = (q31_t const *) pSrcB->pData; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecB1 = vldrwq_gather_shifted_offset(pInB, vecColBOffs1); |
|
|
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_z_s32(&pInA0[4], p0); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_z_s32(&pInA1[4], p0); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc3, 31); |
|
|
| vecA = vldrwq_s32(pInA2); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_z_s32(&pInA2[4], p0); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| pOut[2 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[2 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc1, 31); |
| pOut += CMPLX_DIM; |
|
|
| |
| |
| |
| pInB = pInB + CMPLX_DIM; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecB1 = vldrwq_gather_shifted_offset(pInB, vecColBOffs1); |
|
|
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_z_s32(&pInA0[4], p0); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_z_s32(&pInA1[4], p0); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc3, 31); |
|
|
| vecA = vldrwq_s32(pInA2); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_z_s32(&pInA2[4], p0); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| pOut[2 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[2 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc1, 31); |
| pOut += CMPLX_DIM; |
|
|
| |
| |
| |
| pInB = pInB + CMPLX_DIM; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecB1 = vldrwq_gather_shifted_offset(pInB, vecColBOffs1); |
|
|
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_z_s32(&pInA0[4], p0); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_z_s32(&pInA1[4], p0); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc3, 31); |
|
|
| vecA = vldrwq_s32(pInA2); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_z_s32(&pInA2[4], p0); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| pOut[2 * CMPLX_DIM * MATRIX_DIM3 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[2 * CMPLX_DIM * MATRIX_DIM3 + 1] = (q31_t) asrl(acc1, 31); |
| |
| |
| |
| return (ARM_MATH_SUCCESS); |
| } |
|
|
| __STATIC_INLINE arm_status arm_mat_cmplx_mult_q31_4x4_mve( |
| const arm_matrix_instance_q31 * pSrcA, |
| const arm_matrix_instance_q31 * pSrcB, |
| arm_matrix_instance_q31 * pDst) |
| { |
| q31_t const *pInB = pSrcB->pData; |
| q31_t const *pInA = pSrcA->pData; |
| q31_t *pOut = pDst->pData; |
| uint32x4_t vecColBOffs0, vecColBOffs1; |
| q31_t const *pInA0 = pInA; |
| q31_t const *pInA1 = pInA0 + CMPLX_DIM * MATRIX_DIM4; |
| q31_t const *pInA2 = pInA1 + CMPLX_DIM * MATRIX_DIM4; |
| q31_t const *pInA3 = pInA2 + CMPLX_DIM * MATRIX_DIM4; |
| q63_t acc0, acc1, acc2, acc3; |
| q31x4_t vecB, vecB1, vecA; |
|
|
| static const uint32_t offsetB0[4] = { |
| 0, 1, |
| MATRIX_DIM4 * CMPLX_DIM, MATRIX_DIM4 * CMPLX_DIM + 1 |
| }; |
| static const uint32_t offsetB1[4] = { |
| 2 * MATRIX_DIM4 * CMPLX_DIM, 2 * MATRIX_DIM4 * CMPLX_DIM + 1, |
| 3 * MATRIX_DIM4 * CMPLX_DIM, 3 * MATRIX_DIM4 * CMPLX_DIM + 1 |
| }; |
|
|
| vecColBOffs0 = vldrwq_u32(offsetB0); |
| vecColBOffs1 = vldrwq_u32(offsetB1); |
|
|
| pInB = (q31_t const *) pSrcB->pData; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecB1 = vldrwq_gather_shifted_offset(pInB, vecColBOffs1); |
|
|
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(&pInA0[4]); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_s32(&pInA1[4]); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc3, 31); |
|
|
| vecA = vldrwq_s32(pInA2); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA3); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(&pInA2[4]); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_s32(&pInA3[4]); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[2 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[2 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[3 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[3 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc3, 31); |
| pOut += CMPLX_DIM; |
|
|
| |
| |
| |
| pInB = pInB + CMPLX_DIM; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecB1 = vldrwq_gather_shifted_offset(pInB, vecColBOffs1); |
|
|
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(&pInA0[4]); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_s32(&pInA1[4]); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc3, 31); |
|
|
| vecA = vldrwq_s32(pInA2); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA3); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(&pInA2[4]); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_s32(&pInA3[4]); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[2 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[2 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[3 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[3 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc3, 31); |
| pOut += CMPLX_DIM; |
| |
| |
| |
| pInB = pInB + CMPLX_DIM; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecB1 = vldrwq_gather_shifted_offset(pInB, vecColBOffs1); |
|
|
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(&pInA0[4]); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_s32(&pInA1[4]); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc3, 31); |
|
|
| vecA = vldrwq_s32(pInA2); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA3); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(&pInA2[4]); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_s32(&pInA3[4]); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[2 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[2 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[3 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[3 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc3, 31); |
| pOut += CMPLX_DIM; |
|
|
| |
| |
| |
| pInB = pInB + CMPLX_DIM; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecColBOffs0); |
| vecB1 = vldrwq_gather_shifted_offset(pInB, vecColBOffs1); |
|
|
| vecA = vldrwq_s32(pInA0); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA1); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(&pInA0[4]); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_s32(&pInA1[4]); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[0 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[0 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[1 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc3, 31); |
|
|
| vecA = vldrwq_s32(pInA2); |
| acc0 = vmlsldavq_s32(vecA, vecB); |
| acc1 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(pInA3); |
| acc2 = vmlsldavq_s32(vecA, vecB); |
| acc3 = vmlaldavxq_s32(vecA, vecB); |
|
|
| vecA = vldrwq_s32(&pInA2[4]); |
| acc0 = vmlsldavaq_s32(acc0, vecA, vecB1); |
| acc1 = vmlaldavaxq_s32(acc1, vecA, vecB1); |
|
|
| vecA = vldrwq_s32(&pInA3[4]); |
| acc2 = vmlsldavaq_s32(acc2, vecA, vecB1); |
| acc3 = vmlaldavaxq_s32(acc3, vecA, vecB1); |
|
|
| pOut[2 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc0, 31); |
| pOut[2 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc1, 31); |
| pOut[3 * CMPLX_DIM * MATRIX_DIM4 + 0] = (q31_t) asrl(acc2, 31); |
| pOut[3 * CMPLX_DIM * MATRIX_DIM4 + 1] = (q31_t) asrl(acc3, 31); |
| |
| |
| |
| return (ARM_MATH_SUCCESS); |
| } |
|
|
|
|
| arm_status arm_mat_cmplx_mult_q31( |
| const arm_matrix_instance_q31 * pSrcA, |
| const arm_matrix_instance_q31 * pSrcB, |
| arm_matrix_instance_q31 * pDst) |
| { |
| q31_t const *pInB = (q31_t const *) pSrcB->pData; |
| q31_t const *pInA = (q31_t const *) pSrcA->pData; |
| q31_t *pOut = pDst->pData; |
| q31_t *px; |
| uint16_t numRowsA = pSrcA->numRows; |
| uint16_t numColsB = pSrcB->numCols; |
| uint16_t numColsA = pSrcA->numCols; |
| uint16_t col, i = 0U, row = numRowsA; |
| arm_status status; |
| uint32x4_t vecOffs, vecColBOffs; |
| uint32_t blkCnt, rowCnt; |
|
|
| #ifdef ARM_MATH_MATRIX_CHECK |
|
|
| |
| if ((pSrcA->numCols != pSrcB->numRows) || |
| (pSrcA->numRows != pDst->numRows) || (pSrcB->numCols != pDst->numCols)) |
| { |
|
|
| |
| status = ARM_MATH_SIZE_MISMATCH; |
| } |
| else |
| #endif |
|
|
| { |
| |
| |
| |
| if (numRowsA == numColsB && numColsB == numColsA) |
| { |
| if (numRowsA == 1) |
| { |
| q63_t sumReal = (q63_t) pInA[0] * pInB[0]; |
| sumReal -= (q63_t) pInA[1] * pInB[1]; |
|
|
| q63_t sumImag = (q63_t) pInA[0] * pInB[1]; |
| sumImag += (q63_t) pInA[1] * pInB[0]; |
| |
| |
| pOut[0] = (q31_t) clip_q63_to_q31(sumReal >> 31); |
| pOut[1] = (q31_t) clip_q63_to_q31(sumImag >> 31); |
| return (ARM_MATH_SUCCESS); |
| } |
| else if (numRowsA == 2) |
| return arm_mat_cmplx_mult_q31_2x2_mve(pSrcA, pSrcB, pDst); |
| else if (numRowsA == 3) |
| return arm_mat_cmplx_mult_q31_3x3_mve(pSrcA, pSrcB, pDst); |
| else if (numRowsA == 4) |
| return arm_mat_cmplx_mult_q31_4x4_mve(pSrcA, pSrcB, pDst); |
| } |
|
|
| vecColBOffs[0] = 0; |
| vecColBOffs[1] = 1; |
| vecColBOffs[2] = numColsB * CMPLX_DIM; |
| vecColBOffs[3] = (numColsB * CMPLX_DIM) + 1; |
|
|
| |
| |
| |
|
|
| |
| |
| |
| rowCnt = row >> 1; |
| while (rowCnt > 0u) |
| { |
| |
| |
| |
| px = pOut + i * CMPLX_DIM; |
| i = i + 2 * numColsB; |
| |
| |
| |
| col = numColsB; |
| |
| |
| |
| |
| pInB = (q31_t const *) pSrcB->pData; |
| |
| |
| |
| while (col > 0u) |
| { |
| |
| |
| |
| |
| |
| |
|
|
| q31_t const *pSrcA0Vec, *pSrcA1Vec; |
| q31_t const *pInA0 = pInA; |
| q31_t const *pInA1 = pInA0 + numColsA * CMPLX_DIM; |
| q63_t acc0, acc1, acc2, acc3; |
|
|
| acc0 = 0LL; |
| acc1 = 0LL; |
| acc2 = 0LL; |
| acc3 = 0LL; |
|
|
| pSrcA0Vec = (q31_t const *) pInA0; |
| pSrcA1Vec = (q31_t const *) pInA1; |
| |
|
|
| vecOffs = vecColBOffs; |
|
|
| |
| |
| |
| blkCnt = (numColsA * CMPLX_DIM) >> 2; |
| while (blkCnt > 0U) |
| { |
| q31x4_t vecB, vecA; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecOffs); |
| |
| |
| |
| vecOffs = vecOffs + (uint32_t) (numColsB * 2 * CMPLX_DIM); |
|
|
|
|
| vecA = vld1q(pSrcA0Vec); |
| pSrcA0Vec += 4; |
| acc0 = vmlsldavaq(acc0, vecA, vecB); |
| acc1 = vmlaldavaxq(acc1, vecA, vecB); |
|
|
| |
| vecA = vld1q(pSrcA1Vec); |
| pSrcA1Vec += 4; |
| |
| acc2 = vmlsldavaq(acc2, vecA, vecB); |
| acc3 = vmlaldavaxq(acc3, vecA, vecB); |
|
|
|
|
| blkCnt--; |
| } |
| |
|
|
| |
| |
| |
| blkCnt = (numColsA * CMPLX_DIM) & 3; |
| if (blkCnt > 0U) |
| { |
| mve_pred16_t p0 = vctp32q(blkCnt); |
| q31x4_t vecB, vecA; |
|
|
| vecB = vldrwq_gather_shifted_offset_z(pInB, vecOffs, p0); |
|
|
| |
| |
| |
| vecOffs = vecOffs + (uint32_t) (numColsB * 2 * CMPLX_DIM); |
| |
| |
| vecA = vld1q(pSrcA0Vec); |
| acc0 = vmlsldavaq(acc0, vecA, vecB); |
| acc1 = vmlaldavaxq(acc1, vecA, vecB); |
| vecA = vld1q(pSrcA1Vec); |
| acc2 = vmlsldavaq(acc2, vecA, vecB); |
| acc3 = vmlaldavaxq(acc3, vecA, vecB); |
| |
|
|
| } |
|
|
| px[0 * CMPLX_DIM * numColsB + 0] = (q31_t) clip_q63_to_q31(acc0 >> 31); |
| px[0 * CMPLX_DIM * numColsB + 1] = (q31_t) clip_q63_to_q31(acc1 >> 31); |
| px[1 * CMPLX_DIM * numColsB + 0] = (q31_t) clip_q63_to_q31(acc2 >> 31); |
| px[1 * CMPLX_DIM * numColsB + 1] = (q31_t) clip_q63_to_q31(acc3 >> 31); |
| px += CMPLX_DIM; |
| |
| |
| |
| col--; |
| |
| |
| |
| pInB = (q31_t const *) pSrcB->pData + (numColsB - col) * CMPLX_DIM; |
| } |
|
|
| |
| |
| |
| pInA += (numColsA * 2) * CMPLX_DIM; |
| |
| |
| |
| rowCnt --; |
|
|
| } |
|
|
| rowCnt = row & 1; |
| while (rowCnt > 0u) |
| { |
| |
| |
| |
| px = pOut + i * CMPLX_DIM; |
| i = i + numColsB; |
| |
| |
| |
| col = numColsB; |
| |
| |
| |
| |
| pInB = (q31_t const *) pSrcB->pData; |
| |
| |
| |
| while (col > 0u) |
| { |
| |
| |
| |
| |
| |
| |
|
|
| q31_t const *pSrcA0Vec; |
| q31_t const *pInA0 = pInA; |
| q63_t acc0,acc1; |
|
|
| acc0 = 0LL; |
| acc1 = 0LL; |
|
|
| pSrcA0Vec = (q31_t const *) pInA0; |
| |
| vecOffs = vecColBOffs; |
|
|
| |
| |
| |
| blkCnt = (numColsA * CMPLX_DIM) >> 2; |
| while (blkCnt > 0U) |
| { |
| q31x4_t vecB, vecA; |
|
|
| vecB = vldrwq_gather_shifted_offset(pInB, vecOffs); |
| |
| |
| |
| vecOffs = vecOffs + (uint32_t) (numColsB * 2 * CMPLX_DIM); |
| |
| vecA = vld1q(pSrcA0Vec); |
| pSrcA0Vec += 4; |
| acc0 = vmlsldavaq(acc0, vecA, vecB); |
| acc1 = vmlaldavaxq(acc1, vecA, vecB); |
| |
|
|
| blkCnt--; |
| } |
|
|
|
|
| |
| |
| |
| blkCnt = (numColsA * CMPLX_DIM) & 3; |
| if (blkCnt > 0U) |
| { |
| mve_pred16_t p0 = vctp32q(blkCnt); |
| q31x4_t vecB, vecA; |
|
|
| vecB = vldrwq_gather_shifted_offset_z(pInB, vecOffs, p0); |
|
|
| |
| |
| |
| vecOffs = vecOffs + (uint32_t) (numColsB * 2 * CMPLX_DIM); |
| |
| vecA = vld1q(pSrcA0Vec); |
| |
|
|
| acc0 = vmlsldavaq(acc0, vecA, vecB); |
| acc1 = vmlaldavaxq(acc1, vecA, vecB); |
|
|
|
|
| } |
|
|
| px[0] = (q31_t) clip_q63_to_q31(acc0 >> 31); |
| px[1] = (q31_t) clip_q63_to_q31(acc1 >> 31); |
|
|
| |
| px += CMPLX_DIM; |
| |
| |
| |
| col--; |
| |
| |
| |
| pInB = (q31_t const *) pSrcB->pData + (numColsB - col) * CMPLX_DIM; |
| } |
|
|
| |
| |
| |
| pInA += numColsA * CMPLX_DIM; |
| rowCnt--; |
| } |
|
|
| |
| |
| status = ARM_MATH_SUCCESS; |
| } |
|
|
| |
| return (status); |
| } |
|
|
| #else |
| arm_status arm_mat_cmplx_mult_q31( |
| const arm_matrix_instance_q31 * pSrcA, |
| const arm_matrix_instance_q31 * pSrcB, |
| arm_matrix_instance_q31 * pDst) |
| { |
| q31_t *pIn1 = pSrcA->pData; |
| q31_t *pIn2 = pSrcB->pData; |
| q31_t *pInA = pSrcA->pData; |
| q31_t *pOut = pDst->pData; |
| q31_t *px; |
| uint16_t numRowsA = pSrcA->numRows; |
| uint16_t numColsB = pSrcB->numCols; |
| uint16_t numColsA = pSrcA->numCols; |
| q63_t sumReal, sumImag; |
| q31_t a1, b1, c1, d1; |
| uint32_t col, i = 0U, j, row = numRowsA, colCnt; |
| arm_status status; |
|
|
| #if defined (ARM_MATH_LOOPUNROLL) |
| q31_t a0, b0, c0, d0; |
| #endif |
|
|
| #ifdef ARM_MATH_MATRIX_CHECK |
|
|
| |
| if ((pSrcA->numCols != pSrcB->numRows) || |
| (pSrcA->numRows != pDst->numRows) || |
| (pSrcB->numCols != pDst->numCols) ) |
| { |
| |
| status = ARM_MATH_SIZE_MISMATCH; |
| } |
| else |
|
|
| #endif |
|
|
| { |
| |
| |
| do |
| { |
| |
| px = pOut + 2 * i; |
|
|
| |
| col = numColsB; |
|
|
| |
| |
| pIn2 = pSrcB->pData; |
|
|
| j = 0U; |
|
|
| |
| do |
| { |
| |
| sumReal = 0.0; |
| sumImag = 0.0; |
|
|
| |
| pIn1 = pInA; |
|
|
| #if defined (ARM_MATH_LOOPUNROLL) |
|
|
| |
| colCnt = numColsA >> 2U; |
|
|
| |
| while (colCnt > 0U) |
| { |
|
|
| |
| a0 = *pIn1; |
|
|
| |
| c0 = *pIn2; |
|
|
| |
| b0 = *(pIn1 + 1U); |
|
|
| |
| d0 = *(pIn2 + 1U); |
|
|
| |
| sumReal += (q63_t) a0 * c0; |
| sumImag += (q63_t) b0 * c0; |
|
|
| |
| pIn1 += 2U; |
| pIn2 += 2 * numColsB; |
|
|
| |
| sumReal -= (q63_t) b0 * d0; |
| sumImag += (q63_t) a0 * d0; |
|
|
| |
|
|
| |
| a1 = *(pIn1 ); |
| c1 = *(pIn2 ); |
| b1 = *(pIn1 + 1U); |
| d1 = *(pIn2 + 1U); |
|
|
| |
| sumReal += (q63_t) a1 * c1; |
| sumImag += (q63_t) b1 * c1; |
|
|
| |
| pIn1 += 2U; |
| pIn2 += 2 * numColsB; |
|
|
| |
| sumReal -= (q63_t) b1 * d1; |
| sumImag += (q63_t) a1 * d1; |
|
|
| a0 = *(pIn1 ); |
| c0 = *(pIn2 ); |
| b0 = *(pIn1 + 1U); |
| d0 = *(pIn2 + 1U); |
|
|
| |
| sumReal += (q63_t) a0 * c0; |
| sumImag += (q63_t) b0 * c0; |
|
|
| |
| pIn1 += 2U; |
| pIn2 += 2 * numColsB; |
|
|
| |
| sumReal -= (q63_t) b0 * d0; |
| sumImag += (q63_t) a0 * d0; |
|
|
| |
|
|
| a1 = *(pIn1 ); |
| c1 = *(pIn2 ); |
| b1 = *(pIn1 + 1U); |
| d1 = *(pIn2 + 1U); |
|
|
| |
| sumReal += (q63_t) a1 * c1; |
| sumImag += (q63_t) b1 * c1; |
|
|
| |
| pIn1 += 2U; |
| pIn2 += 2 * numColsB; |
|
|
| |
| sumReal -= (q63_t) b1 * d1; |
| sumImag += (q63_t) a1 * d1; |
|
|
| |
| colCnt--; |
| } |
|
|
| |
| |
| colCnt = numColsA % 0x4U; |
|
|
| #else |
|
|
| |
| colCnt = numColsA; |
|
|
| #endif |
|
|
| while (colCnt > 0U) |
| { |
| |
| a1 = *(pIn1 ); |
| c1 = *(pIn2 ); |
| b1 = *(pIn1 + 1U); |
| d1 = *(pIn2 + 1U); |
|
|
| |
| sumReal += (q63_t) a1 * c1; |
| sumImag += (q63_t) b1 * c1; |
|
|
| |
| pIn1 += 2U; |
| pIn2 += 2 * numColsB; |
|
|
| |
| sumReal -= (q63_t) b1 * d1; |
| sumImag += (q63_t) a1 * d1; |
|
|
| |
| colCnt--; |
| } |
|
|
| |
| *px++ = (q31_t) clip_q63_to_q31(sumReal >> 31); |
| *px++ = (q31_t) clip_q63_to_q31(sumImag >> 31); |
|
|
| |
| j++; |
| pIn2 = pSrcB->pData + 2U * j; |
|
|
| |
| col--; |
|
|
| } while (col > 0U); |
|
|
| |
| i = i + numColsB; |
| pInA = pInA + 2 * numColsA; |
|
|
| |
| row--; |
|
|
| } while (row > 0U); |
|
|
| |
| status = ARM_MATH_SUCCESS; |
| } |
|
|
| |
| return (status); |
| } |
| #endif |
|
|
| |
| |
| |
|
|
| #endif |
|
|