⭐ 欢迎来到虫虫下载站! | 📦 资源下载 📁 资源专辑 ℹ️ 关于我们
⭐ 虫虫下载站

📄 mos3ask.c

📁 linux平台下类似著名的电路板作图软件 Spice的源代码
💻 C
📖 第 1 页 / 共 2 页
字号:
            return(OK);        case MOS3_QBS:            value->rValue = *(ckt->CKTstate0 + here->MOS3qbs);            return(OK);        case MOS3_CQBS:            value->rValue = *(ckt->CKTstate0 + here->MOS3cqbs);            return(OK);        case MOS3_L_SENS_DC:            if(ckt->CKTsenInfo){                value->rValue = *(ckt->CKTsenInfo->SEN_Sap[select->iValue + 1]+                        here->MOS3senParmNo);            }            return(OK);        case MOS3_L_SENS_REAL:            if(ckt->CKTsenInfo){            value->rValue = *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+                        here->MOS3senParmNo);            }            return(OK);        case MOS3_L_SENS_IMAG:            if(ckt->CKTsenInfo){                value->rValue = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->MOS3senParmNo);            }            return(OK);        case MOS3_L_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->MOS3senParmNo);                si = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->MOS3senParmNo);                value->rValue = (vr * sr + vi * si)/vm;            }            return(OK);        case MOS3_L_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->MOS3senParmNo);                si = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->MOS3senParmNo);                value->rValue =  (vr * si - vi * sr)/vm;            }            return(OK);        case MOS3_L_SENS_CPLX:            if(ckt->CKTsenInfo){                value->cValue.real=                         *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+                        here->MOS3senParmNo);                value->cValue.imag=                         *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->MOS3senParmNo);            }            return(OK);        case MOS3_W_SENS_DC:            if(ckt->CKTsenInfo){                value->rValue = *(ckt->CKTsenInfo->SEN_Sap[select->iValue + 1]+                        here->MOS3senParmNo + here->MOS3sens_l);            }            return(OK);        case MOS3_W_SENS_REAL:            if(ckt->CKTsenInfo){                value->rValue = *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+                        here->MOS3senParmNo + here->MOS3sens_l);            }            return(OK);        case MOS3_W_SENS_IMAG:            if(ckt->CKTsenInfo){                value->rValue = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->MOS3senParmNo + here->MOS3sens_l);            }            return(OK);        case MOS3_W_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->MOS3senParmNo + here->MOS3sens_l);                si = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->MOS3senParmNo + here->MOS3sens_l);                value->rValue = (vr * sr + vi * si)/vm;            }            return(OK);        case MOS3_W_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->MOS3senParmNo + here->MOS3sens_l);                si = *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->MOS3senParmNo + here->MOS3sens_l);                value->rValue =  (vr * si - vi * sr)/vm;            }            return(OK);        case MOS3_W_SENS_CPLX:            if(ckt->CKTsenInfo){                value->cValue.real=                         *(ckt->CKTsenInfo->SEN_RHS[select->iValue + 1]+                        here->MOS3senParmNo + here->MOS3sens_l);                value->cValue.imag=                         *(ckt->CKTsenInfo->SEN_iRHS[select->iValue + 1]+                        here->MOS3senParmNo + here->MOS3sens_l);            }            return(OK);        case MOS3_CB :            if (ckt->CKTcurrentAnalysis & DOING_AC) {                errMsg = MALLOC(strlen(msg)+1);                errRtn = "MOS3ask.c";                strcpy(errMsg,msg);                return(E_ASKCURRENT);            } else {                value->rValue = here->MOS3cbd + here->MOS3cbs - *(ckt->CKTstate0                        + here->MOS3cqgb);            }            return(OK);        case MOS3_CG :            if (ckt->CKTcurrentAnalysis & DOING_AC) {                errMsg = MALLOC(strlen(msg)+1);                errRtn = "MOS3ask.c";                strcpy(errMsg,msg);                return(E_ASKCURRENT);            } else if (ckt->CKTcurrentAnalysis & (DOING_DCOP | DOING_TRCV)) {                value->rValue = 0;            } else if ((ckt->CKTcurrentAnalysis & DOING_TRAN) &&                         (ckt->CKTmode & MODETRANOP)) {                value->rValue = 0;            } else {                value->rValue = *(ckt->CKTstate0 + here->MOS3cqgb) +                    *(ckt->CKTstate0 + here->MOS3cqgd) + *(ckt->CKTstate0 +                     here->MOS3cqgs);            }            return(OK);        case MOS3_CS :            if (ckt->CKTcurrentAnalysis & DOING_AC) {                errMsg = MALLOC(strlen(msg)+1);                errRtn = "MOS3ask.c";                strcpy(errMsg,msg);                return(E_ASKCURRENT);            } else {                value->rValue = -here->MOS3cd;                value->rValue -= here->MOS3cbd + here->MOS3cbs -                        *(ckt->CKTstate0 + here->MOS3cqgb);                if ((ckt->CKTcurrentAnalysis & DOING_TRAN) &&                         !(ckt->CKTmode & MODETRANOP)) {                    value->rValue -= *(ckt->CKTstate0 + here->MOS3cqgb) +                             *(ckt->CKTstate0 + here->MOS3cqgd) +                            *(ckt->CKTstate0 + here->MOS3cqgs);                }            }            return(OK);        case MOS3_POWER :            if (ckt->CKTcurrentAnalysis & DOING_AC) {                errMsg = MALLOC(strlen(msg)+1);                errRtn = "MOS3ask.c";                strcpy(errMsg,msg);                return(E_ASKPOWER);            } else {                double temp;                value->rValue = here->MOS3cd *                         *(ckt->CKTrhsOld + here->MOS3dNode);                value->rValue += (here->MOS3cbd + here->MOS3cbs -                        *(ckt->CKTstate0 + here->MOS3cqgb)) *                        *(ckt->CKTrhsOld + here->MOS3bNode);                if ((ckt->CKTcurrentAnalysis & DOING_TRAN) &&                         !(ckt->CKTmode & MODETRANOP)) {                    value->rValue += (*(ckt->CKTstate0 + here->MOS3cqgb) +                             *(ckt->CKTstate0 + here->MOS3cqgd) +                             *(ckt->CKTstate0 + here->MOS3cqgs)) *                            *(ckt->CKTrhsOld + here->MOS3gNode);                }                temp = -here->MOS3cd;                temp -= here->MOS3cbd + here->MOS3cbs ;                if ((ckt->CKTcurrentAnalysis & DOING_TRAN) &&                         !(ckt->CKTmode & MODETRANOP)) {                    temp -= *(ckt->CKTstate0 + here->MOS3cqgb) +                             *(ckt->CKTstate0 + here->MOS3cqgd) +                             *(ckt->CKTstate0 + here->MOS3cqgs);                }                value->rValue += temp * *(ckt->CKTrhsOld + here->MOS3sNode);            }            return(OK);        default:            return(E_BADPARM);    }    /* NOTREACHED */}

⌨️ 快捷键说明

复制代码 Ctrl + C
搜索代码 Ctrl + F
全屏模式 F11
切换主题 Ctrl + Shift + D
显示快捷键 ?
增大字号 Ctrl + =
减小字号 Ctrl + -