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[/] [versatile_fft/] [trunk/] [single_unit/] [test_fft.m] - Diff between revs 2 and 3

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% Modify the length of the FFT in the line below
 
log2fftlen = 10;
 
% If you modify the number of bits used to represent
 
% real and imaginary part of the complex number,
 
% you should also modify the ICPX_WIDTH constant
 
% in the icpx_pkg.vhd file
 
icpx_width = 16;
 
% Do not modify below
 
% Write the package defining length of the FFT
 
fo=fopen("src/fft_len.vhd","w");
 
fprintf(fo,"package fft_len is\n");
 
fprintf(fo,"constant LOG2_FFT_LEN : integer := %d;\n",log2fftlen);
 
fprintf(fo,"end fft_len;\n");
 
fclose(fo)
 
fftlen=2 ** log2fftlen;
 
%Generate the data. Now it is only a noise, but you
 
%can generate something with periodic components
 
%It is important, that values fit in range of representation
 
%(-2,2) for standard implementation.
 
%May be changed if you redefine our icpx_number format
 
re=3*rand(1,fftlen)-1.5;
 
im=3*rand(1,fftlen)-1.5;
 
fo=fopen("data_in.txt","w");
 
for i=1:fftlen
 
   fprintf(fo,"%g %g\n",re(i),im(i));
 
end
 
fclose(fo)
 
scale = 2 ** (icpx_width-2);
 
di = (re+j*im)*scale/fftlen;
 
fr = fft(di);
 
fo=fopen("data_oct.txt","w");
 
for i=1:fftlen
 
   fprintf(fo,"%d %d\n",floor(real(fr(i))),floor(imag(fr(i))));
 
end
 
fclose(fo)
 
%Run the simulation
 
system("make clean; make")
 
%Compare results calculated in octave and in our IP core
 
system("vim -d data_oct.txt data_out.txt")
 
 
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