// Scicos // // Copyright (C) INRIA - METALAU Project // // This program is free software; you can redistribute it and/or modify // it under the terms of the GNU General Public License as published by // the Free Software Foundation; either version 2 of the License, or // (at your option) any later version. // // This program is distributed in the hope that it will be useful, // but WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the // GNU General Public License for more details. // // You should have received a copy of the GNU General Public License // along with this program; if not, write to the Free Software // Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. // // See the file ../license.txt // function [x,y,typ]=Flowmeter(job,arg1,arg2) // Copyright INRIA // the automatically generated interface block for Modelica CapteurD.mo model // - avec un dialogue de saisie de parametre x=[]; y=[]; typ=[]; select job case "set" then x=arg1; graphics=arg1.graphics; exprs=graphics.exprs model=arg1.model; x=arg1 exprs=x.graphics.exprs while %f do [ok,Qini,exprs]=scicos_getvalue(["Set Flowmeter block parameters:";"";"Qini: "],"Qini",list("vec",1),exprs) if ~ok then break, end x.model.equations.parameters(2)=list(Qini) x.graphics.exprs=exprs break end case "define" then ModelName="Flowmeter" PrametersValue=1 ParametersName="Qini" model=scicos_model() Typein=[]; Typeout=[]; MI=[]; MO=[] P=[50,105,-1,90;0,10,2,0;101,10,-2,0] PortName=["Mesure";"C1";"C2"] for i=1:size(P,"r") if P(i,3)==1 then Typein= [Typein; "E"]; MI=[MI;PortName(i)]; end if P(i,3)==2 then Typein= [Typein; "I"]; MI=[MI;PortName(i)]; end if P(i,3)==-1 then Typeout=[Typeout;"E"]; MO=[MO;PortName(i)]; end if P(i,3)==-2 then Typeout=[Typeout;"I"]; MO=[MO;PortName(i)]; end end model=scicos_model() mo=modelica() model.sim=ModelName; mo.inputs=MI; mo.outputs=MO; model.rpar=PrametersValue; mo.parameters=list(ParametersName,PrametersValue,zeros(ParametersName)); exprs="1" gr_i=[]; model.blocktype="c" model.dep_ut=[%f %t] mo.model=ModelName model.equations=mo model.in=ones(size(MI,"*"),1) model.out=ones(size(MO,"*"),1) x=standard_define([2 2],model,exprs,list(gr_i,0)) x.graphics.in_implicit=Typein; x.graphics.out_implicit=Typeout; end endfunction