/* autogenerated from "macros/MatrixOp/MATSING.sci" */ function MATSING() { MATSING.prototype.define = function MATSING() { model = scicos_model(); function_name = "mat_sing"; funtyp = 4; model.sim = list(function_name,funtyp); model.in1 = -1; model.in2 = -2; model.intyp = 1; model.out = -1; model.out2 = 1; model.outtyp = 1; model.evtin = []; model.evtout = []; model.state = []; model.dstate = []; model.rpar = []; model.ipar = []; model.blocktype = "c"; model.firing = []; model.dep_ut = [true,false]; label = [[sci2exp(1)],[sci2exp(1)]]; gr_i = []; x = standard_define([2,2],model,label,gr_i); } MATSING.prototype.details = function MATSING() { } MATSING.prototype.get = function MATSING() { } MATSING.prototype.set = function MATSING() { x = arg1; model = arg1.model; graphics = arg1.graphics; label = graphics.exprs; if (size(label,"*")==14) { label[9-1] = []; } while (true) { [ok,typ,decomptyp,lab] = scicos_getvalue("Set MATSVD block parameters",[["Datatype(1=real double 2=Complex)"],["decomposition type (1=singular values 2=sing values+matrix U & V)"]],list("vec",1,"vec",1),label); if (!ok) { break; } label = lab; if ((typ==1)) { if ((decomptyp==1)) { function_name = "mat_sing"; in1 = [-1,-2]; out = [-1,1]; ot = 1; } else if ((decomptyp==2)) { function_name = "mat_svd"; in1 = [-1,-2]; out = [[-1,-1],[-1,-2],[-2,-2]]; ot = [1,1,1]; } else { message("decomposition type is not supported"); ok = false; } it = 1; } else if ((typ==2)) { if ((decomptyp==1)) { function_name = "matz_sing"; in1 = [-1,-2]; out = [-1,1]; ot = 1; } else if ((decomptyp==2)) { function_name = "matz_svd"; in1 = [-1,-2]; out = [[-1,-1],[-1,-2],[-2,-2]]; ot = [2,1,2]; } else { message("decomposition type is not supported"); ok = false; } it = 2; } else { message("Datatype is not supported"); ok = false; } funtyp = 4; if (ok) { [model,graphics,ok] = set_io(model,graphics,list(in1,it),list(out,ot),[],[]); } if (ok) { model.sim = list(function_name,funtyp); arg1.model = model; graphics.exprs = label; arg1.graphics = graphics; x = arg1; break; } } } }