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author | Brijeshcr | 2017-07-06 15:48:47 +0530 |
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committer | GitHub | 2017-07-06 15:48:47 +0530 |
commit | ea958d3c401761dcc24865d9639b2fab31038db8 (patch) | |
tree | 8cea93113a46d7015d1a10638778f92275a0ca94 /src/c/signalProcessing/transforms/idct/sidcta.c | |
parent | cb1d99232e521c34e9f0c271a6c4176cc7b9cbe4 (diff) | |
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Revert "LinearAlgebra Function Added"
Diffstat (limited to 'src/c/signalProcessing/transforms/idct/sidcta.c')
-rw-r--r-- | src/c/signalProcessing/transforms/idct/sidcta.c | 83 |
1 files changed, 83 insertions, 0 deletions
diff --git a/src/c/signalProcessing/transforms/idct/sidcta.c b/src/c/signalProcessing/transforms/idct/sidcta.c new file mode 100644 index 0000000..62f85da --- /dev/null +++ b/src/c/signalProcessing/transforms/idct/sidcta.c @@ -0,0 +1,83 @@ +/* Copyright (C) 2016 - IIT Bombay - FOSSEE + + This file must be used under the terms of the CeCILL. + This source file is licensed as described in the file COPYING, which + you should have received as part of this distribution. The terms + are also available at + http://www.cecill.info/licences/Licence_CeCILL_V2-en.txt + Author: Ukasha Noor + Organization: FOSSEE, IIT Bombay + Email: toolbox@scilab.in +*/ + + +#include "idct.h" +/*#include <fftw3.h>*/ +#include <math.h> + +void sidcta(float *in,int row,int col,float *out) +{ + int i,j,k,u,v; + int n=col; + int x,y; + float res,ress; + float re,z,q,m; + if(row==1) + { + res=1./sqrt(n); + ress=sqrt(2./n); + for(u=0;u<row;u++) + { + for(v=0;v<col;v++) + { + x=v*row+u; + out[x]=0; + for(i=0;i<row;i++) + { + for(j=0;j<col;j++) + { + y=row*j+i; + if(y==0) + out[x]+=res*in[y]*(cos(((M_PI)*(j)*(v+1./2.))/n)); + else + out[x]+=ress*in[y]*(cos(((M_PI)*(j)*(v+1./2.))/n)); + } + } + } + + } + } + else + { + for(u=0;u<row;u++) + { + for(v=0;v<col;v++) + { + x=v*row+u; + out[x]=0; + for(i=0;i<row;i++) + { + re=0; + for(j=0;j<col;j++) + { + y=row*j+i; + m=(float)in[j*row+i]; + z=(float)(((float)v+1.0/2.0)*(float)j); + q=(float)(M_PI/(float)col); + m=m*(cos(q*z)); + if(j==0) + re+=m/sqrt((float)col); + else + re+=m*sqrt(2./col); + } + z=(float)(((float)u+1.0/2.0)*(float)i); + q=(float)(M_PI/(float)row); + if(i==0) + out[x]+=(re*(cos(z*q)))/sqrt((float)row); + else + out[x]+=(re*(cos(z*q))*sqrt(2./row)); + } + } + } + } +} |