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-rw-r--r--js/Linear/TCLSS.js99
1 files changed, 50 insertions, 49 deletions
diff --git a/js/Linear/TCLSS.js b/js/Linear/TCLSS.js
index 516eb048..e6a19aa3 100644
--- a/js/Linear/TCLSS.js
+++ b/js/Linear/TCLSS.js
@@ -20,65 +20,66 @@ function TCLSS() {
model.dep_ut = [false,true];
exprs = [[strcat(sci2exp(A))],[strcat(sci2exp(B))],[strcat(sci2exp(C))],[strcat(sci2exp(D))],[strcat(sci2exp(x0))]];
gr_i = [];
- x = standard_define([3,2],model,exprs,gr_i);
+ this.x = standard_define([3,2],model,exprs,gr_i);
}
TCLSS.prototype.details = function TCLSS() {
+ return this.x;
}
TCLSS.prototype.get = function TCLSS() {
}
TCLSS.prototype.set = function TCLSS() {
- x = arg1;
+ this.x = arg1;
graphics = arg1.graphics;
exprs = graphics.exprs;
model = arg1.model;
if (size(exprs,"*")==7) {
- exprs = exprs[[1:4,7]-1];
-}
+ exprs = exprs[[1:4,7]-1];
+ }
while (true) {
- [ok,A,B,C,D,x0,exprs] = scicos_getvalue("Set continuous linear system parameters",[["A matrix"],["B matrix"],["C matrix"],["D matrix"],["Initial state"]],list("mat",[-1,-1],"mat",["size(%1,2)","-1"],"mat",["-1","size(%1,2)"],"mat",[-1,-1],"vec","size(%1,2)"),exprs);
- if (!ok) {
-break;
-}
- out = size(C,1);
- if (out==0) {
- out = [];
-}
- in1 = size(B,2);
- if (in1==0) {
- in1 = [];
-}
- [ms,ns] = size(A);
- if (ms!=ns) {
-message("A matrix must be square");
- } else {
- [model,graphics,ok] = check_io(model,graphics,[[in1],[ms]],out,1,[]);
- if (ok) {
- graphics.exprs = exprs;
- rpar = [[A.slice()],[B.slice()],[C.slice()],[D.slice()]];
- if (D!=[]) {
- if (norm(D,1)!=0) {
- mmm = [true,true];
- } else {
- mmm = [false,true];
-}
- if (or(model.dep_ut!=mmm)) {
- model.dep_ut = mmm;
-}
- } else {
- model.dep_ut = [false,true];
-}
- model.state = x0.slice();
- model.rpar = rpar;
- if (D!=[]) {
- model.sim = list("tcslti4",4);
- } else {
- model.sim = list("tcsltj4",4);
-}
- x.graphics = graphics;
- x.model = model;
-break;
-}
-}
-}
+ [ok,A,B,C,D,x0,exprs] = scicos_getvalue("Set continuous linear system parameters",[["A matrix"],["B matrix"],["C matrix"],["D matrix"],["Initial state"]],list("mat",[-1,-1],"mat",["size(%1,2)","-1"],"mat",["-1","size(%1,2)"],"mat",[-1,-1],"vec","size(%1,2)"),exprs);
+ if (!ok) {
+ break;
+ }
+ out = size(C,1);
+ if (out==0) {
+ out = [];
+ }
+ in1 = size(B,2);
+ if (in1==0) {
+ in1 = [];
+ }
+ [ms,ns] = size(A);
+ if (ms!=ns) {
+ message("A matrix must be square");
+ } else {
+ [model,graphics,ok] = check_io(model,graphics,[[in1],[ms]],out,1,[]);
+ if (ok) {
+ graphics.exprs = exprs;
+ rpar = [[A.slice()],[B.slice()],[C.slice()],[D.slice()]];
+ if (D!=[]) {
+ if (norm(D,1)!=0) {
+ mmm = [true,true];
+ } else {
+ mmm = [false,true];
+ }
+ if (or(model.dep_ut!=mmm)) {
+ model.dep_ut = mmm;
+ }
+ } else {
+ model.dep_ut = [false,true];
+ }
+ model.state = x0.slice();
+ model.rpar = rpar;
+ if (D!=[]) {
+ model.sim = list("tcslti4",4);
+ } else {
+ model.sim = list("tcsltj4",4);
+ }
+ this.x.graphics = graphics;
+ this.x.model = model;
+ break;
+ }
+ }
+ }
}
}