summaryrefslogtreecommitdiff
path: root/js/Misc/generic_block.js
blob: 1d319a0cd7701d9350172ff8751e4e108f2f81bd (plain)
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
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
/* autogenerated from "macros/Misc/generic_block.sci" */
function generic_block() {
    generic_block.prototype.define = function generic_block() {
        model = scicos_model();
        function_name = "sinblk";
        funtyp = 1;
        model.sim = list(function_name,funtyp);
        model.in1 = 1;
        model.out = 1;
        model.evtin = [];
        model.evtout = [];
        model.state = [];
        model.dstate = [];
        model.rpar = [];
        model.ipar = [];
        model.blocktype = "c";
        model.firing = [];
        model.dep_ut = [true,false];
        label = [[function_name],[sci2exp(funtyp)],[sci2exp(model.in1)],[sci2exp(model.out)],[sci2exp(model.evtin)],[sci2exp(model.evtout)],[sci2exp(model.state)],[sci2exp(model.dstate)],[sci2exp(model.rpar)],[sci2exp(model.ipar)],[sci2exp(model.firing)],["y"],["n"]];
        gr_i = [];
        x = standard_define([2,2],model,label,gr_i);
    }
    generic_block.prototype.details = function generic_block() {
    }
    generic_block.prototype.get = function generic_block() {
    }
    generic_block.prototype.set = function generic_block() {
        x = arg1;
        model = arg1.model;
        graphics = arg1.graphics;
        label = graphics.exprs;
        if (size(label,"*")==14) {
        label[9-1] = [];
}
        while (true) {
        [ok,function_name,funtyp,i,o,ci,co,xx,z,rpar,ipar,auto0,depu,dept,lab] = scicos_getvalue("Set GENERIC block parameters",[["simulation function"],["function type (0,1,2,..)"],["input ports sizes"],["output port sizes"],["input event ports sizes"],["output events ports sizes"],["initial continuous state"],["initial discrete state"],["Real parameters vector"],["Integer parameters vector"],["initial firing vector (<0 for no firing)"],["direct feedthrough (y or n)"],["time dependence (y or n)"]],list("str",1,"vec",1,"vec",-1,"vec",-1,"vec",-1,"vec",-1,"vec",-1,"vec",-1,"vec",-1,"vec",-1,"vec","sum(%6)","str",1,"str",1),label);
        if (!ok) {
break;
}
        label = lab;
        function_name = stripblanks(function_name);
        xx = xx.slice();
        z = z.slice();
        rpar = rpar.slice();
        ipar = int(ipar.slice());
        i = int(i.slice());
        o = int(o.slice());
        ci = int(ci.slice());
        co = int(co.slice());
        funtyp = int(funtyp);
        if (funtyp<0) {
message("function type cannot be negative");
        ok = false;
}
        if ([[ci],[co]]!=[]) {
        if (max([[ci],[co]])>1) {
message("vector event links not supported");
        ok = false;
}
}
        depu = stripblanks(depu);
        if (part(depu,1)=="y") {
        depu = true;
        } else {
        depu = false;
}
        dept = stripblanks(dept);
        if (part(dept,1)=="y") {
        dept = true;
        } else {
        dept = false;
}
        dep_ut = [depu,dept];
        if (ok) {
        [model,graphics,ok] = check_io(model,graphics,i,o,ci,co);
}
        if (ok) {
        if (funtyp==3) {
        needcompile = 4;
}
        model.sim = list(function_name,funtyp);
        model.state = xx;
        model.dstate = z;
        model.rpar = rpar;
        model.ipar = ipar;
        model.firing = auto0;
        model.dep_ut = dep_ut;
        arg1.model = model;
        graphics.exprs = label;
        arg1.graphics = graphics;
        x = arg1;
break;
}
}
needcompile=resume(needcompile)
    }
}