/* autogenerated from "macros/NonLinear/INTRPLBLK_f.sci" */ function INTRPLBLK_f() { INTRPLBLK_f.prototype.define = function INTRPLBLK_f() { this.a = [[0],[1]]; this.b = [[0],[1]]; this.model = scicos_model(); this.model.sim = new ScilabString(["intrpl"]); this.model.in = new ScilabDouble([1]); this.model.out = new ScilabDouble([1]); this.model.rpar = new ScilabDouble([this.a],[this.b]); this.model.blocktype = new ScilabString(["c"]); this.model.dep_ut = new ScilabBoolean([true,false]); var exprs = [[strcat(sci2exp(this.a))],[strcat(sci2exp(this.b))]]; var gr_i = new ScilabString(["xstringb(orig(1),orig(2),\"INTRPLBLK_f\",sz(1),sz(2));"]); this.x = new standard_define(new ScilabDouble([2,2]),this.model,new ScilabDouble(exprs),gr_i); return new BasicBlock(this.x); } INTRPLBLK_f.prototype.details = function INTRPLBLK_f() { return this.x; } INTRPLBLK_f.prototype.get = function INTRPLBLK_f() { var exprs = this.graphics.exprs; this.set_param_popup_title = "Set Interpolation block parameters"; var options = { a:["X coord.",this.a.toString().replace(/,/g," ")], b:["Y coord.",this.b.toString().replace(/,/g," ")], } return options; } INTRPLBLK_f.prototype.set = function INTRPLBLK_f() { var exprs = this.graphics.exprs; while (true) { var ok = true; this.a = inverse(arguments[0]["a"]); this.b = inverse(arguments[0]["b"]); var exprs = [arguments[0]["a"], arguments[0]["b"]]; if (!ok) { break; } if (size(this.a,"*")!=size(this.b,"*")) { message("X and Y must have the same size"); throw "user error"; } else if (min(this.a.slice(2-1,$)-this.a.slice(1-1,$-1))<=0) { message("X must be strictly increasing"); throw "user error"; } else { if (ok) { this.graphics.exprs = new ScilabDouble([exprs]); this.model.rpar = new ScilabDouble([this.a.slice()],[this.b.slice()]); this.x.graphics = this.graphics; this.x.model = this.model; break; } } } return new BasicBlock(this.x); } INTRPLBLK_f.prototype.get_popup_title = function INTRPLBLK_f() { return this.set_param_popup_title; } }