📄 sdpa2vec.m
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% x = sdpavec(E,K)
% Takes an SDPA type sparse data description E, i.e.
% E(1,:) = block, E(2,:) = row, E(3,:) = column, E(4,:) = entry,
% and transforms it into a "long" vector, with vectorized matrices for
% each block stacked under each other. The size of each matrix block
% is given in the field K.s.
% ********** INTERNAL FUNCTION OF SEDUMI **********
function x = sdpa2vec(E,K,invperm)
%
% This file is part of SeDuMi 1.1 by Imre Polik and Oleksandr Romanko
% Copyright (C) 2005 McMaster University, Hamilton, CANADA (since 1.1)
%
% Copyright (C) 2001 Jos F. Sturm (up to 1.05R5)
% Dept. Econometrics & O.R., Tilburg University, the Netherlands.
% Supported by the Netherlands Organization for Scientific Research (NWO).
%
% Affiliation SeDuMi 1.03 and 1.04Beta (2000):
% Dept. Quantitative Economics, Maastricht University, the Netherlands.
%
% Affiliations up to SeDuMi 1.02 (AUG1998):
% CRL, McMaster University, Canada.
% Supported by the Netherlands Organization for Scientific Research (NWO).
%
% This program is free software; you can redistribute it and/or modify
% it under the terms of the GNU General Public License as published by
% the Free Software Foundation; either version 2 of the License, or
% (at your option) any later version.
%
% This program is distributed in the hope that it will be useful,
% but WITHOUT ANY WARRANTY; without even the implied warranty of
% MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
% GNU General Public License for more details.
%
% You should have received a copy of the GNU General Public License
% along with this program; if not, write to the Free Software
% Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
% 02110-1301, USA %
% ------------------------------------------------------------
% Split E into blocks E[1], E[2], ..., E[length(K.s)]
% ------------------------------------------------------------
[xir,xjc] = sdpasplit(E(1,:),length(K.s));
x = sparse([],[],[],0,0,2*size(E,2));
for knz = 1:length(xir)
permk = xir(knz);
k = invperm(permk);
if k > K.l
k = k - K.l; % matrix
nk = K.s(k);
Ek = E(2:4,xjc(knz):xjc(knz+1)-1);
Xk = sparse(Ek(1,:),Ek(2,:),Ek(3,:),nk,nk);
Xk = Xk + triu(Xk,1)';
x=[x;Xk(:)];
else
x=[x;E(4,xjc(knz))];
end
end
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