1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
|
/* autogenerated from "macros/Linear/INTEGRAL_f.sci" */
function INTEGRAL_f() {
INTEGRAL_f.prototype.define = function INTEGRAL_f() {
this.x0 = 0;
this.model = scicos_model();
this.model.sim = new ScilabString(["integr"]);
this.model.in1 = new ScilabDouble([1]);
this.model.out = new ScilabDouble([1]);
this.model.state = new ScilabDouble([this.x0]);
this.model.blocktype = new ScilabString(["c"]);
this.model.dep_ut = new ScilabDouble([false,true]);
var exprs = strcat(sci2exp(this.x0));
var gr_i = new ScilabString(["xstringb(orig(1),orig(2),\"INTEGRAL_f\",sz(1),sz(2));"]);
this.x = standard_define([2,2],this.model,exprs,gr_i);
return new BasicBlock(this.x);
}
INTEGRAL_f.prototype.details = function INTEGRAL_f() {
return this.x;
}
INTEGRAL_f.prototype.get = function INTEGRAL_f() {
var options = {
}
return options;
}
INTEGRAL_f.prototype.set = function INTEGRAL_f() {
this.x0 = parseFloat(arguments[0]["x0"])
this.x = arg1;
this.graphics = arg1.graphics;
var exprs = this.graphics.exprs;
this.model = arg1.model;
while (true) {
[ok,this.x0,exprs] = scicos_getvalue("Set continuous linear system parameters","Initial state",list("vec",1),exprs);
if (!ok) {
break;
}
this.graphics.exprs = new ScilabDouble([exprs]);
this.model.state = new ScilabDouble([this.x0]);
this.x.graphics = this.graphics;
this.x.model = this.model;
break;
}
this.x.model.firing = [];
return new BasicBlock(this.x);
}
}
|