RMUL2025/lib/cmsis_5/CMSIS/DSP/Testing/Source/Tests/DECIMF32.cpp

171 lines
3.7 KiB
C++
Executable File

#include "DECIMF32.h"
#include <stdio.h>
#include "Error.h"
#define SNR_THRESHOLD 120
/*
Reference patterns are generated with
a double precision computation.
*/
#define REL_ERROR (8.0e-4)
void DECIMF32::test_fir_decimate_f32()
{
int nbTests;
int nb;
uint32_t *pConfig = config.ptr();
const float32_t * pSrc = input.ptr();
float32_t * pDst = output.ptr();
float32_t * pCoefs = coefs.ptr();
nbTests=config.nbSamples() / 4;
for(nb=0;nb < nbTests; nb++)
{
this->q = pConfig[0];
this->numTaps = pConfig[1];
this->blocksize = pConfig[2];
this->refsize = pConfig[3];
pConfig += 4;
this->status=arm_fir_decimate_init_f32(&(this->S),
this->numTaps,
this->q,
pCoefs,
state.ptr(),
this->blocksize);
ASSERT_TRUE(this->status == ARM_MATH_SUCCESS);
arm_fir_decimate_f32(
&(this->S),
pSrc,
pDst,
this->blocksize);
pSrc += this->blocksize;
pDst += this->refsize;
pCoefs += this->numTaps;
}
ASSERT_EMPTY_TAIL(output);
ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
ASSERT_REL_ERROR(output,ref,REL_ERROR);
}
void DECIMF32::test_fir_interpolate_f32()
{
int nbTests;
int nb;
uint32_t *pConfig = config.ptr();
const float32_t * pSrc = input.ptr();
float32_t * pDst = output.ptr();
float32_t * pCoefs = coefs.ptr();
nbTests=config.nbSamples() / 4;
for(nb=0;nb < nbTests; nb++)
{
this->q = pConfig[0];
this->numTaps = pConfig[1];
this->blocksize = pConfig[2];
this->refsize = pConfig[3];
pConfig += 4;
this->status=arm_fir_interpolate_init_f32(&(this->SI),
this->q,
this->numTaps,
pCoefs,
state.ptr(),
this->blocksize);
ASSERT_TRUE(this->status == ARM_MATH_SUCCESS);
arm_fir_interpolate_f32(
&(this->SI),
pSrc,
pDst,
this->blocksize);
pSrc += this->blocksize;
pDst += this->refsize;
pCoefs += this->numTaps;
}
ASSERT_EMPTY_TAIL(output);
ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
ASSERT_REL_ERROR(output,ref,REL_ERROR);
}
void DECIMF32::setUp(Testing::testID_t id,std::vector<Testing::param_t>& params,Client::PatternMgr *mgr)
{
(void)params;
switch(id)
{
case DECIMF32::TEST_FIR_DECIMATE_F32_1:
config.reload(DECIMF32::CONFIGSDECIMF32_ID,mgr);
input.reload(DECIMF32::INPUT1_F32_ID,mgr);
coefs.reload(DECIMF32::COEFS1_F32_ID,mgr);
ref.reload(DECIMF32::REF1_DECIM_F32_ID,mgr);
state.create(16 + 768 - 1,DECIMF32::STATE_F32_ID,mgr);
break;
case DECIMF32::TEST_FIR_INTERPOLATE_F32_2:
config.reload(DECIMF32::CONFIGSINTERPF32_ID,mgr);
input.reload(DECIMF32::INPUT2_F32_ID,mgr);
coefs.reload(DECIMF32::COEFS2_F32_ID,mgr);
ref.reload(DECIMF32::REF2_INTERP_F32_ID,mgr);
state.create(16 + 768 - 1,DECIMF32::STATE_F32_ID,mgr);
break;
}
output.create(ref.nbSamples(),DECIMF32::OUT_F32_ID,mgr);
}
void DECIMF32::tearDown(Testing::testID_t id,Client::PatternMgr *mgr)
{
(void)id;
output.dump(mgr);
}