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liboctave
cruft
blas-xtra
zdconv2.f
Go to the documentation of this file.
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c Copyright (C) 2010-2013 VZLU Prague, a.s., Czech Republic
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c
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c Author: Jaroslav Hajek <highegg@gmail.com>
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c
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c This file is part of Octave.
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c
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c Octave is free software; you can redistribute it and/or modify
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c it under the terms of the GNU General Public License as published by
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c the Free Software Foundation; either version 3 of the License, or
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c (at your option) any later version.
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c
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c This program is distributed in the hope that it will be useful,
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c but WITHOUT ANY WARRANTY; without even the implied warranty of
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c MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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c GNU General Public License for more details.
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c
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c You should have received a copy of the GNU General Public License
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c along with this software; see the file COPYING. If not, see
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c <http://www.gnu.org/licenses/>.
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c
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subroutine
zdconv2o
(ma,na,a,mb,nb,b,c)
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c purpose: a 2-dimensional outer additive convolution.
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c equivalent to the following:
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c for i = 1:ma
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c for j = 1:na
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c c(i:i+mb-1,j:j+mb-1) += a(i,j)*b
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c endfor
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c endfor
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c arguments:
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c ma,na (in) dimensions of a
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c a (in) 1st matrix
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c mb,nb (in) dimensions of b
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c b (in) 2nd matrix
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c c (inout) accumulator matrix, size (ma+mb-1, na+nb-1)
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c
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integer
ma,na,mb,nb
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double complex
a(ma,na)
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double precision
b(mb,nb)
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double complex
c(ma+mb-1,na+nb-1)
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double complex
btmp
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integer
i,j,k
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external
zaxpy
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do
k = 1,na
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do
j = 1,nb
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do
i = 1,mb
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btmp = b(i,j)
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call zaxpy(ma,btmp,a(1,k),1,c(i,j+k-1),1)
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end do
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end do
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end do
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end subroutine
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subroutine
zdconv2i
(ma,na,a,mb,nb,b,c)
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c purpose: a 2-dimensional inner additive convolution.
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c equivalent to the following:
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c for i = 1:ma-mb+1
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c for j = 1:na-nb+1
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c c(i,j) = sum (sum (a(i:i+mb-1,j:j+nb-1) .* b))
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c endfor
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c endfor
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c arguments:
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c ma,na (in) dimensions of a
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c a (in) 1st matrix
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c mb,nb (in) dimensions of b
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c b (in) 2nd matrix
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c c (inout) accumulator matrix, size (ma+mb-1, na+nb-1)
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c
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integer
ma,na,mb,nb
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double complex
a(ma,na)
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double precision
b(mb,nb)
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double complex
c(ma-mb+1,na-nb+1)
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double complex
btmp
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integer
i,j,k
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external
zaxpy
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do
k = 1,na-nb+1
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do
j = 1,nb
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do
i = 1,mb
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btmp = b(i,j)
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call zaxpy(ma-mb+1,btmp,a(mb+1-i,k+nb-j),1,c(1,k),1)
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end do
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end do
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end do
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end subroutine
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