| 12345678910111213141516171819202122232425262728293031323334353637383940414243 |
- import cmsisdsp as dsp
- import numpy as np
- import cmsisdsp.fixedpoint as f
- import cmsisdsp.mfcc as mfcc
- import scipy.signal as sig
- from mfccdebugdata import *
- from cmsisdsp.datatype import Q15
- import cmsisdsp.datatype as dt
- mfccq15=dsp.arm_mfcc_instance_q15()
- sample_rate = 16000
- FFTSize = 256
- numOfDctOutputs = 13
-
- freq_min = 64
- freq_high = sample_rate / 2
- numOfMelFilters = 20
- windowQ15 = dt.convert(sig.hamming(FFTSize, sym=False),Q15)
- filtLen,filtPos,packedFiltersQ15 = mfcc.melFilterMatrix(Q15,freq_min, freq_high, numOfMelFilters,sample_rate,FFTSize)
- dctMatrixFiltersQ15 = mfcc.dctMatrix(Q15,numOfDctOutputs, numOfMelFilters)
- status=dsp.arm_mfcc_init_q15(mfccq15,FFTSize,numOfMelFilters,numOfDctOutputs,
- dctMatrixFiltersQ15,
- filtPos,filtLen,packedFiltersQ15,windowQ15)
- print("Init status = %d" % status)
- tmp=np.zeros(2*FFTSize,dtype=np.int32)
- debugQ15 = f.toQ15(debug)
- errorStatus,resQ15=dsp.arm_mfcc_q15(mfccq15,debugQ15,tmp)
- print("MFCC status = %d" % errorStatus)
- res=(1<<8)*f.Q15toF32(resQ15)
- print(res)
- print(ref)
- print("FFT Length = %d" % mfccq15.fftLen())
- print("Nb MEL Filters = %d" % mfccq15.nbMelFilters())
- print("Nb DCT Outputs = %d" % mfccq15.nbDctOutputs())
|