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-rw-r--r--js/NonLinear/QUANT_f.js20
1 files changed, 10 insertions, 10 deletions
diff --git a/js/NonLinear/QUANT_f.js b/js/NonLinear/QUANT_f.js
index b22f4cc2..d236e32a 100644
--- a/js/NonLinear/QUANT_f.js
+++ b/js/NonLinear/QUANT_f.js
@@ -1,17 +1,17 @@
/* autogenerated from "macros/NonLinear/QUANT_f.sci" */
function QUANT_f() {
QUANT_f.prototype.define = function QUANT_f() {
- pas = 0.1;
- meth = 1;
+ this.pas = 0.1;
+ this.meth = 1;
model = scicos_model();
model.sim = "qzrnd";
model.in1 = -1;
model.out = -1;
- model.rpar = pas;
- model.ipar = meth;
+ model.rpar = this.pas;
+ model.ipar = this.meth;
model.blocktype = "c";
model.dep_ut = [true,false];
- exprs = [[string(pas)],[string(meth)]];
+ exprs = [[string(this.pas)],[string(this.meth)]];
gr_i = [];
this.x = standard_define([2,2],model,exprs,gr_i);
return new BasicBlock(this.x);
@@ -27,17 +27,17 @@ function QUANT_f() {
exprs = graphics.exprs;
model = arg1.model;
while (true) {
- [ok,pas,meth,exprs] = scicos_getvalue("Set parameters",[["Step"],["Quantization Type (1-4)"]],list("vec",1,"vec",1),exprs);
+ [ok,this.pas,this.meth,exprs] = scicos_getvalue("Set parameters",[["Step"],["Quantization Type (1-4)"]],list("vec",1,"vec",1),exprs);
if (!ok) {
break;
}
- if (meth<1||meth>4) {
+ if (this.meth<1||this.meth>4) {
message("Quantization Type must be from 1 to 4");
} else {
- rpar = pas;
+ rpar = this.pas;
model.rpar = rpar;
- model.ipar = meth;
- switch (meth) {
+ model.ipar = this.meth;
+ switch (this.meth) {
case 1:
model.sim = "qzrnd";
case 2: