309 lines
11 KiB
C++
Executable File
309 lines
11 KiB
C++
Executable File
#include "ComplexTestsF32.h"
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#include <stdio.h>
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#include "Error.h"
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#define SNR_THRESHOLD 120
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#define REL_ERROR (7.0e-6)
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void ComplexTestsF32::test_cmplx_conj_f32()
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{
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const float32_t *inp1=input1.ptr();
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float32_t *outp=output.ptr();
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arm_cmplx_conj_f32(inp1,outp,input1.nbSamples() >> 1 );
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ASSERT_EMPTY_TAIL(output);
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ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
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ASSERT_REL_ERROR(output,ref,REL_ERROR);
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}
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void ComplexTestsF32::test_cmplx_dot_prod_f32()
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{
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float32_t re,im;
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const float32_t *inp1=input1.ptr();
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const float32_t *inp2=input2.ptr();
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float32_t *outp=output.ptr();
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arm_cmplx_dot_prod_f32(inp1,inp2,input1.nbSamples() >> 1,&re,&im);
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outp[0] = re;
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outp[1] = im;
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ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
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ASSERT_REL_ERROR(output,ref,REL_ERROR);
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ASSERT_EMPTY_TAIL(output);
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}
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void ComplexTestsF32::test_cmplx_mag_f32()
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{
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const float32_t *inp1=input1.ptr();
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float32_t *outp=output.ptr();
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arm_cmplx_mag_f32(inp1,outp,input1.nbSamples() >> 1 );
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ASSERT_EMPTY_TAIL(output);
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ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
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ASSERT_REL_ERROR(output,ref,REL_ERROR);
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}
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void ComplexTestsF32::test_cmplx_mag_squared_f32()
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{
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const float32_t *inp1=input1.ptr();
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float32_t *outp=output.ptr();
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arm_cmplx_mag_squared_f32(inp1,outp,input1.nbSamples() >> 1 );
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ASSERT_EMPTY_TAIL(output);
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ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
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ASSERT_REL_ERROR(output,ref,REL_ERROR);
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}
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void ComplexTestsF32::test_cmplx_mult_cmplx_f32()
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{
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const float32_t *inp1=input1.ptr();
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const float32_t *inp2=input2.ptr();
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float32_t *outp=output.ptr();
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arm_cmplx_mult_cmplx_f32(inp1,inp2,outp,input1.nbSamples() >> 1 );
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ASSERT_EMPTY_TAIL(output);
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ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
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ASSERT_REL_ERROR(output,ref,REL_ERROR);
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}
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void ComplexTestsF32::test_cmplx_mult_real_f32()
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{
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const float32_t *inp1=input1.ptr();
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const float32_t *inp2=input2.ptr();
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float32_t *outp=output.ptr();
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arm_cmplx_mult_real_f32(inp1,inp2,outp,input1.nbSamples() >> 1 );
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ASSERT_EMPTY_TAIL(output);
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ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
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ASSERT_REL_ERROR(output,ref,REL_ERROR);
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}
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void ComplexTestsF32::setUp(Testing::testID_t id,std::vector<Testing::param_t>& params,Client::PatternMgr *mgr)
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{
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Testing::nbSamples_t nb=MAX_NB_SAMPLES;
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(void)params;
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switch(id)
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{
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case ComplexTestsF32::TEST_CMPLX_CONJ_F32_1:
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nb = 3;
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ref.reload(ComplexTestsF32::REF_CONJ_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_CONJ_F32_2:
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nb = 8;
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ref.reload(ComplexTestsF32::REF_CONJ_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_CONJ_F32_3:
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nb = 11;
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ref.reload(ComplexTestsF32::REF_CONJ_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_DOT_PROD_F32_4:
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nb = 3;
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ref.reload(ComplexTestsF32::REF_DOT_PROD_3_F32_ID,mgr);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT2_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_DOT_PROD_F32_5:
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nb = 8;
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ref.reload(ComplexTestsF32::REF_DOT_PROD_4N_F32_ID,mgr);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT2_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_DOT_PROD_F32_6:
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nb = 11;
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ref.reload(ComplexTestsF32::REF_DOT_PROD_4N1_F32_ID,mgr);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT2_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MAG_F32_7:
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nb = 3;
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ref.reload(ComplexTestsF32::REF_MAG_F32_ID,mgr,nb);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MAG_F32_8:
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nb = 8;
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ref.reload(ComplexTestsF32::REF_MAG_F32_ID,mgr,nb);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MAG_F32_9:
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nb = 11;
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ref.reload(ComplexTestsF32::REF_MAG_F32_ID,mgr,nb);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MAG_SQUARED_F32_10:
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nb = 3;
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ref.reload(ComplexTestsF32::REF_MAG_SQUARED_F32_ID,mgr,nb);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MAG_SQUARED_F32_11:
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nb = 8;
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ref.reload(ComplexTestsF32::REF_MAG_SQUARED_F32_ID,mgr,nb);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MAG_SQUARED_F32_12:
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nb = 11;
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ref.reload(ComplexTestsF32::REF_MAG_SQUARED_F32_ID,mgr,nb);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MULT_CMPLX_F32_13:
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nb = 3;
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ref.reload(ComplexTestsF32::REF_CMPLX_MULT_CMPLX_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT2_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MULT_CMPLX_F32_14:
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nb = 8;
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ref.reload(ComplexTestsF32::REF_CMPLX_MULT_CMPLX_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT2_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MULT_CMPLX_F32_15:
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nb = 11;
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ref.reload(ComplexTestsF32::REF_CMPLX_MULT_CMPLX_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT2_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MULT_REAL_F32_16:
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nb = 3;
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ref.reload(ComplexTestsF32::REF_CMPLX_MULT_REAL_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT3_F32_ID,mgr,nb);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MULT_REAL_F32_17:
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nb = 8;
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ref.reload(ComplexTestsF32::REF_CMPLX_MULT_REAL_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT3_F32_ID,mgr,nb);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MULT_REAL_F32_18:
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nb = 11;
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ref.reload(ComplexTestsF32::REF_CMPLX_MULT_REAL_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT3_F32_ID,mgr,nb);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_CONJ_F32_19:
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ref.reload(ComplexTestsF32::REF_CONJ_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_DOT_PROD_F32_20:
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ref.reload(ComplexTestsF32::REF_DOT_PROD_LONG_F32_ID,mgr);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT2_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MAG_F32_21:
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ref.reload(ComplexTestsF32::REF_MAG_F32_ID,mgr,nb);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MAG_SQUARED_F32_22:
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ref.reload(ComplexTestsF32::REF_MAG_SQUARED_F32_ID,mgr,nb);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MULT_CMPLX_F32_23:
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ref.reload(ComplexTestsF32::REF_CMPLX_MULT_CMPLX_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT2_F32_ID,mgr,nb << 1);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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case ComplexTestsF32::TEST_CMPLX_MULT_REAL_F32_24:
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ref.reload(ComplexTestsF32::REF_CMPLX_MULT_REAL_F32_ID,mgr,nb << 1);
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input1.reload(ComplexTestsF32::INPUT1_F32_ID,mgr,nb << 1);
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input2.reload(ComplexTestsF32::INPUT3_F32_ID,mgr,nb);
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output.create(ref.nbSamples(),ComplexTestsF32::OUT_SAMPLES_F32_ID,mgr);
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break;
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}
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}
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void ComplexTestsF32::tearDown(Testing::testID_t id,Client::PatternMgr *mgr)
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{
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(void)id;
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output.dump(mgr);
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}
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