isrcload.c

来自「ngspice又一个电子CAD仿真软件代码.功能更全」· C语言 代码 · 共 339 行

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/**********Copyright 1990 Regents of the University of California.  All rights reserved.Author: 1985 Thomas L. QuarlesModified: 2000 Alansfixes**********/#include "ngspice.h"#include "cktdefs.h"#include "isrcdefs.h"#include "trandefs.h"#include "sperror.h"#include "suffix.h"#ifdef XSPICE_EXP#include "cmproto.h"#endifintISRCload(GENmodel *inModel, CKTcircuit *ckt)        /* actually load the current current value into the          * sparse matrix previously provided          */{    ISRCmodel *model = (ISRCmodel*)inModel;    ISRCinstance *here;    double value;    double time;    /*  loop through all the current source models */    for( ; model != NULL; model = model->ISRCnextModel ) {        /* loop through all the instances of the model */        for (here = model->ISRCinstances; here != NULL ;                here=here->ISRCnextInstance) {	    if (here->ISRCowner != ARCHme) continue;                        if( (ckt->CKTmode & (MODEDCOP | MODEDCTRANCURVE)) &&                    here->ISRCdcGiven ) {                /* load using DC value */#ifdef XSPICE_EXP/* gtri - begin - wbk - modify to process srcFact, etc. for all sources */                value = here->ISRCdcValue;#else                value = here->ISRCdcValue * ckt->CKTsrcFact;#endif            } else {                if(ckt->CKTmode & (MODEDC)) {                    time = 0;                } else {                    time = ckt->CKTtime;                }                /* use transient function */                switch(here->ISRCfunctionType) {                case PULSE: {		    double	V1, V2, TD, TR, TF, PW, PER;		                        double	basetime = 0;/* gtri - begin - wbk - add PHASE parameter */#ifdef XSPICE                    double PHASE;                    double phase;                    double deltat;                    double basephase;		    		    PHASE = here->ISRCfunctionOrder > 7		         ? here->ISRCcoeffs[7] : 0.0;			 		    /* normalize phase to 0 - 2PI */                     phase = PHASE * M_PI / 180.0;                    basephase = 2 * M_PI * floor(phase / (2 * M_PI));                    phase -= basephase;                    /* compute equivalent delta time and add to time */                    deltat = (phase / (2 * M_PI)) * PER;                    time += deltat; #endif/* gtri - end - wbk - add PHASE parameter */		    		    V1 = here->ISRCcoeffs[0];		    V2 = here->ISRCcoeffs[1];		    TD = here->ISRCfunctionOrder > 2			? here->ISRCcoeffs[2] : 0.0;		    TR = here->ISRCfunctionOrder > 3			&& here->ISRCcoeffs[3] != 0.0			? here->ISRCcoeffs[3] : ckt->CKTstep;		    TF = here->ISRCfunctionOrder > 4			&& here->ISRCcoeffs[4] != 0.0			? here->ISRCcoeffs[4] : ckt->CKTstep;		    PW = here->ISRCfunctionOrder > 5			&& here->ISRCcoeffs[5] != 0.0			? here->ISRCcoeffs[5] : ckt->CKTfinalTime;		    PER = here->ISRCfunctionOrder > 6			&& here->ISRCcoeffs[6] != 0.0			? here->ISRCcoeffs[6] : ckt->CKTfinalTime;                    time -= TD;                    if(time > PER) {                        /* repeating signal - figure out where we are */                        /* in period */                        basetime = PER * floor(time/PER);                        time -= basetime;                    }                    if( time <= 0 || time >= TR + PW + TF) {                        value = V1;                    } else  if ( time >= TR && time <= TR + PW) {                        value = V2;                    } else if (time > 0 && time < TR) {                        value = V1 + (V2 - V1) * (time) / TR;                    } else { /* time > TR + PW && < TR + PW + TF */                        value = V2 + (V1 - V2) * (time - (TR + PW)) / TF;                    }                }                break;                case SINE: {				    double VO, VA, FREQ, TD, THETA;/* gtri - begin - wbk - add PHASE parameter */#ifdef XSPICE                    double PHASE;		    double phase;                    PHASE = here->ISRCfunctionOrder > 5		           ? here->ISRCcoeffs[5] : 0.0;		       			     	    /* compute phase in radians */                     phase = PHASE * M_PI / 180.0;#endif	            VO = here->ISRCcoeffs[0];	            VA = here->ISRCcoeffs[1];                    FREQ =  here->ISRCfunctionOrder > 2 	                 && here->ISRCcoeffs[2] != 0.0		          ? here->ISRCcoeffs[2] : (1/ckt->CKTfinalTime);	            TD = here->ISRCfunctionOrder > 3	                ? here->ISRCcoeffs[3] : 0.0;                    THETA = here->ISRCfunctionOrder > 4	                   ? here->ISRCcoeffs[4] : 0.0;                    time -= TD;                    if (time <= 0) {                        value = VO;                    } else {#ifdef XSPICE                        value = VO + VA * sin(FREQ*time * 2.0 * M_PI + phase) *                                 exp(-time*THETA);#else		                            value = VO + VA * sin(FREQ*time * 2.0 * M_PI) *                                 exp(-time*THETA);#endif/* gtri - end - wbk - add PHASE parameter */			                    }                }                break;                case EXP: {		    double V1, V2, TD1, TD2, TAU1, TAU2;		    		    V1  = here->ISRCcoeffs[0];		    V2  = here->ISRCcoeffs[1];		    TD1 = here->ISRCfunctionOrder > 2 		        && here->ISRCcoeffs[2] != 0.0			 ? here->ISRCcoeffs[2] : ckt->CKTstep;		    TAU1 = here->ISRCfunctionOrder > 3 		         && here->ISRCcoeffs[3] != 0.0			  ? here->ISRCcoeffs[3] : ckt->CKTstep;                    TD2  = here->ISRCfunctionOrder > 4 		         && here->ISRCcoeffs[4] != 0.0			  ? here->ISRCcoeffs[4] : TD1 + ckt->CKTstep;                    TAU2 = here->ISRCfunctionOrder > 5 		         && here->ISRCcoeffs[5]			  ? here->ISRCcoeffs[5] : ckt->CKTstep;			                      if(time <= TD1)  {                        value = V1;                    } else if (time <= TD2) {                        value = V1 + (V2-V1)*(1-exp(-(time-TD1)/TAU1));                    } else {                        value = V1 + (V2-V1)*(1-exp(-(time-TD1)/TAU1)) +                                     (V1-V2)*(1-exp(-(time-TD2)/TAU2)) ;                    }                }                break;                case SFFM:{				    double VO, VA, FC, MDI, FS;/* gtri - begin - wbk - add PHASE parameters */#ifdef XSPICE                    double PHASEC, PHASES;                    double phasec;                    double phases;		                        PHASEC = here->ISRCfunctionOrder > 5		            ? here->ISRCcoeffs[5] : 0.0;                    PHASES = here->ISRCfunctionOrder > 6		            ? here->ISRCcoeffs[6] : 0.0;			                    /* compute phases in radians */                    phasec = PHASEC * M_PI / 180.0;                    phases = PHASES * M_PI / 180.0;    #endif		                       VO = here->ISRCcoeffs[0];                   VA = here->ISRCcoeffs[1];                   FC = here->ISRCfunctionOrder > 2 		      && here->ISRCcoeffs[2]		       ? here->ISRCcoeffs[2] : (1/ckt->CKTfinalTime);                   MDI = here->ISRCfunctionOrder > 3		        ? here->ISRCcoeffs[3] : 0.0;                   FS  = here->ISRCfunctionOrder > 4 		       && here->ISRCcoeffs[4]		        ? here->ISRCcoeffs[4] : (1/ckt->CKTfinalTime);#ifdef XSPICE                    /* compute waveform value */                    value = VO + VA *                         sin((2.0 * M_PI * FC * time + phasec) +                        MDI * sin(2.0 * M_PI * FS * time + phases));#else /* XSPICE */                    value = VO + VA *                         sin((2.0 * M_PI * FC * time) +                        MDI * sin(2.0 * M_PI * FS * time));#endif /* XSPICE *//* gtri - end - wbk - add PHASE parameters */                }                break;		case AM:{				double VA, FC, MF, VO, TD;/* gtri - begin - wbk - add PHASE parameters */#ifdef XSPICE                    double PHASEC, PHASES;                    double phasec;                    double phases;		                        PHASEC = here->ISRCfunctionOrder > 5		            ? here->ISRCcoeffs[5] : 0.0;                    PHASES = here->ISRCfunctionOrder > 6		            ? here->ISRCcoeffs[6] : 0.0;			                    /* compute phases in radians */                    phasec = PHASEC * M_PI / 180.0;                    phases = PHASES * M_PI / 180.0;    #endif							   VA = here->ISRCcoeffs[0];                   VO = here->ISRCcoeffs[1];                   MF = here->ISRCfunctionOrder > 2 		      && here->ISRCcoeffs[2]		       ? here->ISRCcoeffs[2] : (1/ckt->CKTfinalTime);                   FC = here->ISRCfunctionOrder > 3		        ? here->ISRCcoeffs[3] : 0.0;                   TD  = here->ISRCfunctionOrder > 4 		       && here->ISRCcoeffs[4]		        ? here->ISRCcoeffs[4] : 0,0;                    time -= TD;                    if (time <= 0) {                        value = 0;                    } else {#ifdef XSPICE                    /* compute waveform value */		    value = VA * (VO + sin(2.0 * M_PI * MF * time + phases )) *		        sin(2 * M_PI * FC * time + phases);                    #else /* XSPICE */		    		        value = VA * (VO + sin(2.0 * M_PI * MF * time)) *		        sin(2 * M_PI * FC * time);#endif					    }		    /* gtri - end - wbk - add PHASE parameters */		}		break;                default:#ifdef XSPICE_EXP                    value = here->ISRCdcValue;#else                    value = here->ISRCdcValue * ckt->CKTsrcFact;#endif                    break;                case PWL: {                    int i;                    if(time< *(here->ISRCcoeffs)) {                        value = *(here->ISRCcoeffs + 1) ;                        break;                    }                    for(i=0;i<=(here->ISRCfunctionOrder/2)-1;i++) {                        if((*(here->ISRCcoeffs+2*i)==time)) {                            value = *(here->ISRCcoeffs+2*i+1);                            goto loadDone;                        }                        if((*(here->ISRCcoeffs+2*i)<time) &&                                (*(here->ISRCcoeffs+2*(i+1)) >time)) {                            value = *(here->ISRCcoeffs+2*i+1) +                                (((time-*(here->ISRCcoeffs+2*i))/                                (*(here->ISRCcoeffs+2*(i+1)) -                                  *(here->ISRCcoeffs+2*i))) *                                (*(here->ISRCcoeffs+2*i+3) -                                  *(here->ISRCcoeffs+2*i+1)));                            goto loadDone;                        }                    }                    value = *(here->ISRCcoeffs+ here->ISRCfunctionOrder-1) ;                    break;                }                }            }loadDone:/* gtri - begin - wbk - modify for supply ramping option */#ifdef XSPICE_EXP            value *= ckt->CKTsrcFact;            value *= cm_analog_ramp_factor();#else            if (ckt->CKTmode & MODETRANOP) value *= ckt->CKTsrcFact;#endif/* gtri - end - wbk - modify for supply ramping option */            *(ckt->CKTrhs + (here->ISRCposNode)) += value;            *(ckt->CKTrhs + (here->ISRCnegNode)) -= value;/* gtri - end - wbk - modify to process srcFact, etc. for all sources */#ifdef XSPICE/* gtri - begin - wbk - record value so it can be output if requested */            here->ISRCcurrent = value;/* gtri - end   - wbk - record value so it can be output if requested */#endif        }    }    return(OK);}

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