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202 lines
5.3 KiB
C++
202 lines
5.3 KiB
C++
#include "FastMathQ31.h"
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#include <stdio.h>
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#include "Error.h"
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#include "Test.h"
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#define SNR_THRESHOLD 100
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/*
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Reference patterns are generated with
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a double precision computation.
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*/
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#define ABS_SQRT_ERROR ((q31_t)7)
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#define ABS_ERROR ((q31_t)2200)
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#define ABS_DIV_ERROR ((q31_t)1)
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#define LOG_ABS_ERROR ((q31_t)2)
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void FastMathQ31::test_vlog_q31()
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{
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const q31_t *inp = input.ptr();
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q31_t *outp = output.ptr();
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arm_vlog_q31(inp,outp,ref.nbSamples());
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ASSERT_SNR(ref,output,(float32_t)SNR_THRESHOLD);
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ASSERT_NEAR_EQ(ref,output,LOG_ABS_ERROR);
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ASSERT_EMPTY_TAIL(output);
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}
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void FastMathQ31::test_division_q31()
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{
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const q31_t *nump = numerator.ptr();
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const q31_t *denp = denominator.ptr();
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q31_t *outp = output.ptr();
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int16_t *shiftp = shift.ptr();
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arm_status status;
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for(unsigned long i=0; i < ref.nbSamples(); i++)
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{
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status = arm_divide_q31(nump[i],denp[i],&outp[i],&shiftp[i]);
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}
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(void)status;
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ASSERT_SNR(ref,output,(float32_t)SNR_THRESHOLD);
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ASSERT_NEAR_EQ(ref,output,ABS_DIV_ERROR);
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ASSERT_EQ(refShift,shift);
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}
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void FastMathQ31::test_cos_q31()
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{
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const q31_t *inp = input.ptr();
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q31_t *outp = output.ptr();
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unsigned long i;
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for(i=0; i < ref.nbSamples(); i++)
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{
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outp[i]=arm_cos_q31(inp[i]);
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}
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ASSERT_SNR(ref,output,(float32_t)SNR_THRESHOLD);
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ASSERT_NEAR_EQ(ref,output,ABS_ERROR);
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}
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void FastMathQ31::test_sin_q31()
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{
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const q31_t *inp = input.ptr();
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q31_t *outp = output.ptr();
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unsigned long i;
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for(i=0; i < ref.nbSamples(); i++)
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{
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outp[i]=arm_sin_q31(inp[i]);
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}
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ASSERT_SNR(ref,output,(float32_t)SNR_THRESHOLD);
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ASSERT_NEAR_EQ(ref,output,ABS_ERROR);
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}
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void FastMathQ31::test_sqrt_q31()
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{
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const q31_t *inp = input.ptr();
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q31_t *outp = output.ptr();
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arm_status status;
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unsigned long i;
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for(i=0; i < ref.nbSamples(); i++)
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{
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status=arm_sqrt_q31(inp[i],&outp[i]);
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ASSERT_TRUE((status == ARM_MATH_SUCCESS) || ((inp[i] <= 0) && (status == ARM_MATH_ARGUMENT_ERROR)));
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}
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//ASSERT_SNR(ref,output,(float32_t)SNR_THRESHOLD);
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ASSERT_NEAR_EQ(ref,output,ABS_SQRT_ERROR);
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}
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void FastMathQ31::setUp(Testing::testID_t id,std::vector<Testing::param_t>& paramsArgs,Client::PatternMgr *mgr)
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{
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(void)paramsArgs;
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switch(id)
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{
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case FastMathQ31::TEST_COS_Q31_1:
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{
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input.reload(FastMathQ31::ANGLES1_Q31_ID,mgr);
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ref.reload(FastMathQ31::COS1_Q31_ID,mgr);
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output.create(ref.nbSamples(),FastMathQ31::OUT_Q31_ID,mgr);
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}
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break;
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case FastMathQ31::TEST_SIN_Q31_2:
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{
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input.reload(FastMathQ31::ANGLES1_Q31_ID,mgr);
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ref.reload(FastMathQ31::SIN1_Q31_ID,mgr);
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output.create(ref.nbSamples(),FastMathQ31::OUT_Q31_ID,mgr);
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}
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break;
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case FastMathQ31::TEST_SQRT_Q31_3:
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{
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input.reload(FastMathQ31::SQRTINPUT1_Q31_ID,mgr);
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ref.reload(FastMathQ31::SQRT1_Q31_ID,mgr);
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output.create(ref.nbSamples(),FastMathQ31::OUT_Q31_ID,mgr);
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}
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break;
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case FastMathQ31::TEST_DIVISION_Q31_4:
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{
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numerator.reload(FastMathQ31::NUMERATOR_Q31_ID,mgr);
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denominator.reload(FastMathQ31::DENOMINATOR_Q31_ID,mgr);
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ref.reload(FastMathQ31::DIVISION_VALUE_Q31_ID,mgr);
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refShift.reload(FastMathQ31::DIVISION_SHIFT_S16_ID,mgr);
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output.create(ref.nbSamples(),FastMathQ31::OUT_Q31_ID,mgr);
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shift.create(ref.nbSamples(),FastMathQ31::SHIFT_S16_ID,mgr);
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}
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break;
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case FastMathQ31::TEST_VLOG_Q31_5:
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{
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input.reload(FastMathQ31::LOGINPUT1_Q31_ID,mgr);
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ref.reload(FastMathQ31::LOG1_Q31_ID,mgr);
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output.create(ref.nbSamples(),FastMathQ31::OUT_Q31_ID,mgr);
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}
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break;
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case FastMathQ31::TEST_VLOG_Q31_6:
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{
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input.reload(FastMathQ31::LOGINPUT1_Q31_ID,mgr,3);
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ref.reload(FastMathQ31::LOG1_Q31_ID,mgr,3);
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output.create(ref.nbSamples(),FastMathQ31::OUT_Q31_ID,mgr);
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}
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break;
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case FastMathQ31::TEST_VLOG_Q31_7:
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{
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input.reload(FastMathQ31::LOGINPUT1_Q31_ID,mgr,8);
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ref.reload(FastMathQ31::LOG1_Q31_ID,mgr,8);
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output.create(ref.nbSamples(),FastMathQ31::OUT_Q31_ID,mgr);
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}
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break;
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case FastMathQ31::TEST_VLOG_Q31_8:
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{
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input.reload(FastMathQ31::LOGINPUT1_Q31_ID,mgr,11);
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ref.reload(FastMathQ31::LOG1_Q31_ID,mgr,11);
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output.create(ref.nbSamples(),FastMathQ31::OUT_Q31_ID,mgr);
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}
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break;
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}
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}
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void FastMathQ31::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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