📄 vcvsask.c
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/**********Copyright 1990 Regents of the University of California. All rights reserved.Author: 1987 Thomas L. Quarles**********//* * This routine gives access to the internal device parameters * of Voltage Controlled Voltage Source */#include "spice.h"#include <stdio.h>#include "cktdefs.h"#include "devdefs.h"#include "ifsim.h"#include "vcvsdefs.h"#include "sperror.h"#include "util.h"#include "suffix.h"/* ARGSUSED */intVCVSask(ckt,inst,which,value,select) CKTcircuit *ckt; GENinstance *inst; int which; IFvalue *value; IFvalue *select;{ VCVSinstance *here = (VCVSinstance *)inst; double vr; double vi; double sr; double si; double vm; static char *msg = "Current and power not available for ac analysis"; switch(which) { case VCVS_POS_NODE: value->iValue = here->VCVSposNode; return (OK); case VCVS_NEG_NODE: value->iValue = here->VCVSnegNode; return (OK); case VCVS_CONT_P_NODE: value->iValue = here->VCVScontPosNode; return (OK); case VCVS_CONT_N_NODE: value->iValue = here->VCVScontNegNode; return (OK); case VCVS_IC: value->rValue = here->VCVSinitCond; return (OK); case VCVS_GAIN: value->rValue = here->VCVScoeff; return (OK); case VCVS_CONT_V_OLD: value->rValue = *(ckt->CKTstate0 + here->VCVScontVOld); return (OK); case VCVS_BR: value->iValue = here->VCVSbranch; return (OK); case VCVS_QUEST_SENS_DC: if(ckt->CKTsenInfo){ value->rValue = *(ckt->CKTsenInfo->SEN_Sap[select->iValue + 1]+ here->VCVSsenParmNo); } return(OK); case VCVS_QUEST_SENS_REAL: if(ckt->CKTsenInfo){ value->rValue = *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+ here->VCVSsenParmNo); } return(OK); case VCVS_QUEST_SENS_IMAG: if(ckt->CKTsenInfo){ value->rValue = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+ here->VCVSsenParmNo); } return(OK); case VCVS_QUEST_SENS_MAG: if(ckt->CKTsenInfo){ vr = *(ckt->CKTrhsOld + select->iValue + 1); vi = *(ckt->CKTirhsOld + select->iValue + 1); vm = sqrt(vr*vr + vi*vi); if(vm == 0){ value->rValue = 0; return(OK); } sr = *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+ here->VCVSsenParmNo); si = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+ here->VCVSsenParmNo); value->rValue = (vr * sr + vi * si)/vm; } return(OK); case VCVS_QUEST_SENS_PH: if(ckt->CKTsenInfo){ vr = *(ckt->CKTrhsOld + select->iValue + 1); vi = *(ckt->CKTirhsOld + select->iValue + 1); vm = vr*vr + vi*vi; if(vm == 0){ value->rValue = 0; return(OK); } sr = *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+ here->VCVSsenParmNo); si = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+ here->VCVSsenParmNo); value->rValue = (vr * si - vi * sr)/vm; } return(OK); case VCVS_QUEST_SENS_CPLX: if(ckt->CKTsenInfo){ value->cValue.real= *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+ here->VCVSsenParmNo); value->cValue.imag= *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+ here->VCVSsenParmNo); } return(OK); case VCVS_CURRENT : if (ckt->CKTcurrentAnalysis & DOING_AC) { errMsg = MALLOC(strlen(msg)+1); errRtn = "VCVSask"; strcpy(errMsg,msg); return(E_ASKCURRENT); } else { value->rValue = *(ckt->CKTrhsOld + here->VCVSbranch); } return(OK); case VCVS_VOLTS : value->rValue = (*(ckt->CKTrhsOld + here->VCVSposNode) - *(ckt->CKTrhsOld + here->VCVSnegNode)); return(OK); case VCVS_POWER : if (ckt->CKTcurrentAnalysis & DOING_AC) { errMsg = MALLOC(strlen(msg)+1); errRtn = "VCVSask"; strcpy(errMsg,msg); return(E_ASKPOWER); } else { value->rValue = *(ckt->CKTrhsOld + here->VCVSbranch) * (*(ckt->CKTrhsOld + here->VCVSposNode) - *(ckt->CKTrhsOld + here->VCVSnegNode)); } return(OK); default: return (E_BADPARM); } /* NOTREACHED */}
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