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📄 cccsask.c

📁 spice中支持多层次元件模型仿真的可单独运行的插件源码
💻 C
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/**********Copyright 1990 Regents of the University of California.  All rights reserved.Author: 1987**********//* * This routine gives access to the internal device parameters * of Current Controlled Current Source */#include "spice.h"#include <stdio.h>#include "cktdefs.h"#include "devdefs.h"#include "ifsim.h"#include "cccsdefs.h"#include "sperror.h"#include "util.h"#include "suffix.h"/* ARGSUSED */intCCCSask(ckt,inst,which,value,select)    CKTcircuit *ckt;    GENinstance *inst;    int which;    IFvalue *value;    IFvalue *select;{    CCCSinstance *here = (CCCSinstance*)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 CCCS_GAIN:            value->rValue = here->CCCScoeff;            return (OK);        case CCCS_CONTROL:            value->uValue = here->CCCScontName;            return (OK);        case CCCS_POS_NODE:            value->iValue = here->CCCSposNode;            return (OK);        case CCCS_NEG_NODE:            value->iValue = here->CCCSnegNode;            return (OK);        case CCCS_CONT_BR:            value->iValue = here->CCCScontBranch;            return (OK);        case CCCS_CURRENT :            if (ckt->CKTcurrentAnalysis & DOING_AC) {                errMsg = MALLOC(strlen(msg)+1);                errRtn = "CCCSask";                strcpy(errMsg,msg);                return(E_ASKCURRENT);            } else {                value->rValue = *(ckt->CKTrhsOld +                         here->CCCScontBranch) * here->CCCScoeff;            }            return(OK);        case CCCS_VOLTS :	    value->rValue = (*(ckt->CKTrhsOld + here->CCCSposNode) - 		*(ckt->CKTrhsOld + here->CCCSnegNode));            return(OK);        case CCCS_POWER :            if (ckt->CKTcurrentAnalysis & DOING_AC) {                errMsg = MALLOC(strlen(msg)+1);                errRtn = "CCCSask";                strcpy(errMsg,msg);                return(E_ASKPOWER);            } else {                value->rValue = *(ckt->CKTrhsOld +                         here->CCCScontBranch) * here->CCCScoeff *                         (*(ckt->CKTrhsOld + here->CCCSposNode) -                         *(ckt->CKTrhsOld + here->CCCSnegNode));            }            return(OK);        case CCCS_QUEST_SENS_DC:            if(ckt->CKTsenInfo){                value->rValue = *(ckt->CKTsenInfo->SEN_Sap[select->iValue + 1]+                        here->CCCSsenParmNo);            }            return(OK);        case CCCS_QUEST_SENS_REAL:            if(ckt->CKTsenInfo){                value->rValue = *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+                        here->CCCSsenParmNo);            }            return(OK);        case CCCS_QUEST_SENS_IMAG:            if(ckt->CKTsenInfo){                value->rValue = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                    here->CCCSsenParmNo);            }            return(OK);        case CCCS_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->CCCSsenParmNo);                si = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->CCCSsenParmNo);                value->rValue = (vr * sr + vi * si)/vm;            }            return(OK);        case CCCS_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->CCCSsenParmNo);                si = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->CCCSsenParmNo);                value->rValue =  (vr * si - vi * sr)/vm;            }            return(OK);        case CCCS_QUEST_SENS_CPLX:            if(ckt->CKTsenInfo){                value->cValue.real=                         *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+                        here->CCCSsenParmNo);                value->cValue.imag=                         *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->CCCSsenParmNo);            }            return(OK);        default:            return (E_BADPARM);    }    /* NOTREACHED */}

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