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-rw-r--r--tests/general_tests/symphonymat/symphonymat_logical2.sce34
1 files changed, 9 insertions, 25 deletions
diff --git a/tests/general_tests/symphonymat/symphonymat_logical2.sce b/tests/general_tests/symphonymat/symphonymat_logical2.sce
index 4f3923f..98a3b70 100644
--- a/tests/general_tests/symphonymat/symphonymat_logical2.sce
+++ b/tests/general_tests/symphonymat/symphonymat_logical2.sce
@@ -2,55 +2,39 @@
// A basic case :
-// Objective function
c = -1*[20,10,15]';
-// Lower Bound of variable
-lb = repmat(0,3,1);
-
-// Upper Bound of variables
-ub = repmat(%inf,3,1);
-
-// Constraint Matrix
A = [3,2,5;
2,1,1;
1,1,3;
5,2,4]
-// Upper Bound of constrains
b = [ 55;26;30;57]
-// Row Matrix for telling symphony that the is integer or not
+
intcon = [];
// Output
//Problem loaded into environment.
-//
+
//Note: There is no limit on time.
-//
+
//An optimal solution has been found.
-//
-// 0.
+// output =
//
// Iterations: 1
-//
-// output
+// status =
//
// 227.
-//
-// status
+// f =
//
// - 268.
-//
-// f
+// x =
//
// 1.8
// 20.8
-// 1.6
-//
-// x
+// 1.6
// Calling Symphony
-[x,f,status,output] = symphonymat(c,intcon,A,b,[],[],lb,ub)
-disp("x",x,"f",f,"status",status,"output",output);
+[x,f,status,output] = symphonymat(c,intcon,A,b)