#include #include #include #include //test for sse #ifndef LV_HAVE_SSSE3 void qa_16sc_deinterleave_16s_aligned16::t1() { printf("ssse3 not available... no test performed\n"); } #else void qa_16sc_deinterleave_16s_aligned16::t1() { volk_environment_init(); clock_t start, end; double total; const int vlen = 3201; const int ITERS = 100000; std::complex input0[vlen] __attribute__ ((aligned (16))); int16_t output_generic[vlen] __attribute__ ((aligned (16))); int16_t output_generic1[vlen] __attribute__ ((aligned (16))); int16_t output_sse2[vlen] __attribute__ ((aligned (16))); int16_t output_sse21[vlen] __attribute__ ((aligned (16))); int16_t output_ssse3[vlen] __attribute__ ((aligned (16))); int16_t output_ssse31[vlen] __attribute__ ((aligned (16))); int16_t* loadInput = (int16_t*)input0; for(int i = 0; i < vlen*2; ++i) { loadInput[i] = ((int16_t)((((float) (rand() - (RAND_MAX/2))) / static_cast((RAND_MAX/2))) * 32678.0)); } printf("16sc_deinterleave_16s_aligned\n"); start = clock(); for(int count = 0; count < ITERS; ++count) { volk_16sc_deinterleave_16s_aligned16_manual(output_generic, output_generic1, input0, vlen, "generic"); } end = clock(); total = (double)(end-start)/(double)CLOCKS_PER_SEC; printf("generic_time: %f\n", total); start = clock(); for(int count = 0; count < ITERS; ++count) { volk_16sc_deinterleave_16s_aligned16_manual(output_sse2, output_sse21, input0, vlen, "sse2"); } end = clock(); total = (double)(end-start)/(double)CLOCKS_PER_SEC; printf("sse2_time: %f\n", total); start = clock(); for(int count = 0; count < ITERS; ++count) { volk_16sc_deinterleave_16s_aligned16_manual(output_ssse3, output_ssse31, input0, vlen, "ssse3"); } end = clock(); total = (double)(end-start)/(double)CLOCKS_PER_SEC; printf("ssse3_time: %f\n", total); for(int i = 0; i < 1; ++i) { //printf("inputs: %d, %d\n", input0[i*2], input0[i*2 + 1]); //printf("generic... %d, ssse3... %d\n", output0[i], output1[i]); } for(int i = 0; i < vlen; ++i) { //printf("%d...%d\n", output0[i], output01[i]); CPPUNIT_ASSERT_EQUAL(output_generic[i], output_sse2[i]); CPPUNIT_ASSERT_EQUAL(output_generic1[i], output_sse21[i]); CPPUNIT_ASSERT_EQUAL(output_generic[i], output_ssse3[i]); CPPUNIT_ASSERT_EQUAL(output_generic1[i], output_ssse31[i]); } } #endif