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% Copyright (c) P.J.Gawthrop, 1996.
% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
% %% Version control history
% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
% %% $Id$
% %% $Log$
% %% Revision 1.4 1996/12/07 21:34:52 peterg
% %% Tests for null string with strcmp
% %%
% %% Revision 1.3 1996/08/08 15:52:28 peter
% %% Recursive version.
% %% Fails due to octave bug - reported.
% %%
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% Copyright (c) P.J.Gawthrop, 1996.
% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
% %% Version control history
% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
% %% $Id$
% %% $Log$
% %% Revision 1.5 1997/05/16 07:33:45 peterg
% %% Now checks to see if sub system is a simple component before
% %% recursion.
% %% 0 --> zero
% %% 1 --> one
% %%
% %% Revision 1.4 1996/12/07 21:34:52 peterg
% %% Tests for null string with strcmp
% %%
% %% Revision 1.3 1996/08/08 15:52:28 peter
% %% Recursive version.
% %% Fails due to octave bug - reported.
% %%
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% Setup file - append to the fig file
filenum = fopen(fig_name, 'a');
% Get the raw and the processed bonds
eval(['[rbonds,rstrokes,rcomponents] = ', system_type, '_rbg;']);
eval(['[bonds] = ', system_type, '_abg;']);
% Get the causal bonds
eval(['[cbonds,status]=', full_name, '_cbg;']);
% Check sizes
[N_components,Columns] = size(rcomponents);
if (Columns ~= 13)
error('Incorrect rcomponents matrix: must have 13 columns');
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% Setup file - append to the fig file
filenum = fopen(fig_name, 'a');
% Get the raw and the processed bonds
eval(['[rbonds,rstrokes,rcomponents] = ', system_type, '_rbg;']);
eval(['[bonds] = ', system_type, '_abg;']);
% Original number of bonds
[n_bonds,junk] = size(bonds);
% Get the causal bonds
eval(['[cbonds,status]=', full_name, '_cbg;']);
% Check sizes
[N_components,Columns] = size(rcomponents);
if (Columns ~= 13)
error('Incorrect rcomponents matrix: must have 13 columns');
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arrow_barb = which_end.*other_end_2 + (one-which_end).*other_end_1;
arrow_vector = arrow_barb-arrow_end;
unit_arrow_vector = arrow_vector./(length2d(arrow_vector)*[1 1]);
bond_vector = (arrow_end - other_end);
unit_bond_vector = bond_vector./(length2d(bond_vector)*[1 1]);
unit_stroke_vector = (rot*unit_bond_vector')';
% Get indices of bonds with changed causality
changed_e = bonds(:,1)~=cbonds(:,1);
changed_f = bonds(:,2)~=cbonds(:,2);
changed = changed_e|changed_f;
index_e = getindex(changed_e,1)';
index_f = getindex(changed_f,1)';
index = getindex(changed,1)';
% Print the new strokes in fig format
if index(1,1)>0
for i = index_e % Do the effort stroke - opp. side to arrow
if cbonds(i,1)==1 % Stroke at arrow end
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arrow_barb = which_end.*other_end_2 + (one-which_end).*other_end_1;
arrow_vector = arrow_barb-arrow_end;
unit_arrow_vector = arrow_vector./(length2d(arrow_vector)*[1 1]);
bond_vector = (arrow_end - other_end);
unit_bond_vector = bond_vector./(length2d(bond_vector)*[1 1]);
unit_stroke_vector = (rot*unit_bond_vector')';
% Get indices of bonds with changed causality -- but ignore the extra bonds
% due to vector bond expansion
changed_e = bonds(:,1)~=cbonds(1:n_bonds,1)
changed_f = bonds(:,2)~=cbonds(1:n_bonds,2)
changed = changed_e|changed_f
index_e = getindex(changed_e,1)'
index_f = getindex(changed_f,1)'
index = getindex(changed,1)';
% Print the new strokes in fig format
if index(1,1)>0
for i = index_e % Do the effort stroke - opp. side to arrow
if cbonds(i,1)==1 % Stroke at arrow end
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