📄 inp2d.c
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/**********Copyright 1990 Regents of the University of California. All rights reserved.Author: 1988 Thomas L. Quarles**********/#include "spice.h"#include <stdio.h>#include "ifsim.h"#include "inpdefs.h"#include "inpmacs.h"#include "fteext.h"#include "suffix.h"voidINP2D(ckt,tab,current) GENERIC *ckt; INPtables *tab; card *current;{/* Dname <node> <node> <model> [<val>] [OFF] [IC=<val>] */int mytype; /* the type we looked up */int type; /* the type the model says it is */char *line; /* the part of the current line left to parse */char *name; /* the resistor's name */char *nname1; /* the first node's name */char *nname2; /* the second node's name */GENERIC *node1; /* the first node's node pointer */GENERIC *node2; /* the second node's node pointer */int error; /* error code temporary */GENERIC *fast; /* pointer to the actual instance */IFvalue ptemp; /* a value structure to package resistance into */int waslead; /* flag to indicate that funny unlabeled number was found */double leadval; /* actual value of unlabeled number */char *model; /* the name of the model */INPmodel *thismodel; /* pointer to model description for user's model */GENERIC *mdfast; /* pointer to the actual model */IFuid uid; /* uid of default model */ mytype = INPtypelook("Diode"); if(mytype < 0 ) { LITERR("Device type Diode not supported by this binary\n") return; } line = current->line; INPgetTok(&line,&name,1); INPinsert(&name,tab); INPgetTok(&line,&nname1,1); INPtermInsert(ckt,&nname1,tab,&node1); INPgetTok(&line,&nname2,1); INPtermInsert(ckt,&nname2,tab,&node2); INPgetTok(&line,&model,1); INPinsert(&model,tab); current->error = INPgetMod(ckt,model,&thismodel,tab); if(thismodel != NULL) { if(mytype != thismodel->INPmodType) { LITERR("incorrect model type") return; } type = mytype; mdfast = (thismodel->INPmodfast); } else { type = mytype; if(!tab->defDmod) { /* create default D model */ IFnewUid(ckt,&uid,(IFuid)NULL,"D",UID_MODEL,(GENERIC**)NULL); IFC(newModel,(ckt,type,&(tab->defDmod),uid)) } mdfast = tab->defDmod; } IFC(newInstance,(ckt,mdfast,&fast,name)) IFC(bindNode,(ckt,fast,1,node1)) IFC(bindNode,(ckt,fast,2,node2)) PARSECALL((&line,ckt,type,fast,&leadval,&waslead,tab)) if(waslead) { ptemp.rValue = leadval; GCA(INPpName,("area",&ptemp,ckt,type,fast)) }}
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