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// Scilab ( http://www.scilab.org/ ) - This file is part of Scilab
// Copyright (C) ???? - INRIA - Farid BELAHCENE
// Copyright (C) 2008 - INRIA - Pierre MARECHAL
//
// 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_V2.1-en.txt
function z = bitor(x,y)
// BITOR function
// Given x,y two positives integers this function returns the decimal
// number whose the binary form is the OR of the binary representations
// of x and y
// -Inputs :
// x, y : scalars/vectors/matices of positives integers,
// x and y must have the same size
// -Output :
// z : scalar/vector/matrix
//
// F.Belahcene
// P. Marechal, 5 Feb 2008
// - fix bug 2691 and 2692
// - Add argument check
// Check input arguments
// =========================================================================
rhs = argn(2);
if rhs <> 2 then
error(msprintf(gettext("%s: Wrong number of input argument(s): %d expected.\n"),"bitor",2));
end
if typeof(x)<>typeof(y)
error(msprintf(gettext("%s: Wrong type for input arguments: Same types expected.\n"),"bitor"));
end
if or(size(x)<>size(y)) then
error(msprintf(gettext("%s: Wrong size for input arguments: Same size expected.\n"),"bitor"));
end
if isempty(x) & isempty(x)
z=[];
return
end
if (type(x)==1 & (x-floor(x)<>0 | x<0)) ..
| (type(x)==8 & (inttype(x)<10) ) ..
| (type(x)<>1 & type(x)<>8) then
error(msprintf(gettext("%s: Wrong input argument #%d: Scalar/matrix of unsigned integers expected.\n"),"bitor",1));
end
if (type(y)==1 & (y-floor(y)<>0 | y<0)) ..
| (type(y)==8 & (inttype(y)<10) ) ..
| (type(y)<>1 & type(y)<>8) then
error(msprintf(gettext("%s: Wrong input argument #%d: Scalar/matrix of unsigned integers expected.\n"),"bitor",2));
end
// Algorithm
// =========================================================================
if type(x)==8 then
z = x | y;
else
a = 2^32;
z = double( uint32(x/a) | uint32(y/a) ) * a;
z = z + double(uint32(x-z) | uint32(y-z));
end
endfunction
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