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https://github.com/gnss-sdr/gnss-sdr
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@ -103,7 +103,6 @@ static inline void volk_gnsssdr_16ic_s32fc_x2_rotator_16ic_a_sse3(lv_16sc_t* out
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for(unsigned int number = 0; number < sse_iters; number++)
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{
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a = _mm_set_ps((float)(lv_cimag(_in[1])), (float)(lv_creal(_in[1])), (float)(lv_cimag(_in[0])), (float)(lv_creal(_in[0]))); // //load (2 byte imag, 2 byte real) x 2 into 128 bits reg
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__builtin_prefetch(_in + 8);
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//complex 32fc multiplication b=a*two_phase_acc_reg
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yl = _mm_moveldup_ps(two_phase_acc_reg); // Load yl with cr,cr,dr,dr
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yh = _mm_movehdup_ps(two_phase_acc_reg); // Load yh with ci,ci,di,di
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@ -150,7 +149,7 @@ static inline void volk_gnsssdr_16ic_s32fc_x2_rotator_16ic_a_sse3(lv_16sc_t* out
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_out += 4;
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}
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_mm_store_ps((float*)two_phase_acc, two_phase_acc_reg);
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_mm_storeu_ps((float*)two_phase_acc, two_phase_acc_reg);
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(*phase) = two_phase_acc[0];
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for (unsigned int i = sse_iters * 4; i < num_points; ++i)
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@ -200,7 +199,6 @@ static inline void volk_gnsssdr_16ic_s32fc_x2_rotator_16ic_u_sse3(lv_16sc_t* out
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for(unsigned int number = 0; number < sse_iters; number++)
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{
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a = _mm_set_ps((float)(lv_cimag(_in[1])), (float)(lv_creal(_in[1])), (float)(lv_cimag(_in[0])), (float)(lv_creal(_in[0]))); // //load (2 byte imag, 2 byte real) x 2 into 128 bits reg
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__builtin_prefetch(_in + 8);
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//complex 32fc multiplication b=a*two_phase_acc_reg
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yl = _mm_moveldup_ps(two_phase_acc_reg); // Load yl with cr,cr,dr,dr
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yh = _mm_movehdup_ps(two_phase_acc_reg); // Load yh with ci,ci,di,di
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@ -221,6 +219,7 @@ static inline void volk_gnsssdr_16ic_s32fc_x2_rotator_16ic_u_sse3(lv_16sc_t* out
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//next two samples
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_in += 2;
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a = _mm_set_ps((float)(lv_cimag(_in[1])), (float)(lv_creal(_in[1])), (float)(lv_cimag(_in[0])), (float)(lv_creal(_in[0]))); // //load (2 byte imag, 2 byte real) x 2 into 128 bits reg
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__builtin_prefetch(_in + 8);
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//complex 32fc multiplication b=a*two_phase_acc_reg
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yl = _mm_moveldup_ps(two_phase_acc_reg); // Load yl with cr,cr,dr,dr
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yh = _mm_movehdup_ps(two_phase_acc_reg); // Load yh with ci,ci,di,di
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@ -140,7 +140,6 @@ static inline void volk_gnsssdr_16ic_x2_rotator_dot_prod_16ic_xn_a_sse3(lv_16sc_
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// Phase rotation on operand in_common starts here:
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//printf("generic phase %i: %f,%f\n", n*4,lv_creal(*phase),lv_cimag(*phase));
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pa = _mm_set_ps((float)(lv_cimag(_in_common[1])), (float)(lv_creal(_in_common[1])), (float)(lv_cimag(_in_common[0])), (float)(lv_creal(_in_common[0]))); // //load (2 byte imag, 2 byte real) x 2 into 128 bits reg
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__builtin_prefetch(_in_common + 8);
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//complex 32fc multiplication b=a*two_phase_acc_reg
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yl = _mm_moveldup_ps(two_phase_acc_reg); // Load yl with cr,cr,dr,dr
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yh = _mm_movehdup_ps(two_phase_acc_reg); // Load yh with ci,ci,di,di
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@ -304,6 +303,7 @@ static inline void volk_gnsssdr_16ic_x2_rotator_dot_prod_16ic_xn_u_sse3(lv_16sc_
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for(unsigned int number = 0; number < sse_iters; number++)
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{
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// Phase rotation on operand in_common starts here:
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pa = _mm_set_ps((float)(lv_cimag(_in_common[1])), (float)(lv_creal(_in_common[1])), (float)(lv_cimag(_in_common[0])), (float)(lv_creal(_in_common[0]))); // //load (2 byte imag, 2 byte real) x 2 into 128 bits reg
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__builtin_prefetch(_in_common + 8);
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//complex 32fc multiplication b=a*two_phase_acc_reg
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@ -378,7 +378,7 @@ static inline void volk_gnsssdr_16ic_x2_rotator_dot_prod_16ic_xn_u_sse3(lv_16sc_
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a = _mm_or_si128(realcacc[n_vec], imagcacc[n_vec]);
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_mm_store_si128((__m128i*)dotProductVector, a); // Store the results back into the dot product vector
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_mm_storeu_si128((__m128i*)dotProductVector, a); // Store the results back into the dot product vector
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dotProduct = lv_cmake(0,0);
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for (int i = 0; i < 4; ++i)
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{
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@ -390,9 +390,10 @@ static inline void volk_gnsssdr_16ic_x2_rotator_dot_prod_16ic_xn_u_sse3(lv_16sc_
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free(realcacc);
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free(imagcacc);
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_mm_store_ps((float*)two_phase_acc, two_phase_acc_reg);
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_mm_storeu_ps((float*)two_phase_acc, two_phase_acc_reg);
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(*phase) = two_phase_acc[0];
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for(unsigned int n = sse_iters * 4; n < num_points; n++)
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{
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tmp16 = in_common[n];
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