wrtfmt.c
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00001 #include "f2c.h"
00002 #include "fio.h"
00003 #include "fmt.h"
00004 #ifdef __cplusplus
00005 extern "C" {
00006 #endif
00007 
00008 extern icilist *f__svic;
00009 extern char *f__icptr;
00010 
00011  static int
00012 mv_cur(Void)    /* shouldn't use fseek because it insists on calling fflush */
00013                 /* instead we know too much about stdio */
00014 {
00015         int cursor = f__cursor;
00016         f__cursor = 0;
00017         if(f__external == 0) {
00018                 if(cursor < 0) {
00019                         if(f__hiwater < f__recpos)
00020                                 f__hiwater = f__recpos;
00021                         f__recpos += cursor;
00022                         f__icptr += cursor;
00023                         if(f__recpos < 0)
00024                                 err(f__elist->cierr, 110, "left off");
00025                 }
00026                 else if(cursor > 0) {
00027                         if(f__recpos + cursor >= f__svic->icirlen)
00028                                 err(f__elist->cierr, 110, "recend");
00029                         if(f__hiwater <= f__recpos)
00030                                 for(; cursor > 0; cursor--)
00031                                         (*f__putn)(' ');
00032                         else if(f__hiwater <= f__recpos + cursor) {
00033                                 cursor -= f__hiwater - f__recpos;
00034                                 f__icptr += f__hiwater - f__recpos;
00035                                 f__recpos = f__hiwater;
00036                                 for(; cursor > 0; cursor--)
00037                                         (*f__putn)(' ');
00038                         }
00039                         else {
00040                                 f__icptr += cursor;
00041                                 f__recpos += cursor;
00042                         }
00043                 }
00044                 return(0);
00045         }
00046         if (cursor > 0) {
00047                 if(f__hiwater <= f__recpos)
00048                         for(;cursor>0;cursor--) (*f__putn)(' ');
00049                 else if(f__hiwater <= f__recpos + cursor) {
00050                         cursor -= f__hiwater - f__recpos;
00051                         f__recpos = f__hiwater;
00052                         for(; cursor > 0; cursor--)
00053                                 (*f__putn)(' ');
00054                 }
00055                 else {
00056                         f__recpos += cursor;
00057                 }
00058         }
00059         else if (cursor < 0)
00060         {
00061                 if(cursor + f__recpos < 0)
00062                         err(f__elist->cierr,110,"left off");
00063                 if(f__hiwater < f__recpos)
00064                         f__hiwater = f__recpos;
00065                 f__recpos += cursor;
00066         }
00067         return(0);
00068 }
00069 
00070  static int
00071 #ifdef KR_headers
00072 wrt_Z(n,w,minlen,len) Uint *n; int w, minlen; ftnlen len;
00073 #else
00074 wrt_Z(Uint *n, int w, int minlen, ftnlen len)
00075 #endif
00076 {
00077         register char *s, *se;
00078         register int i, w1;
00079         static int one = 1;
00080         static char hex[] = "0123456789ABCDEF";
00081         s = (char *)n;
00082         --len;
00083         if (*(char *)&one) {
00084                 /* little endian */
00085                 se = s;
00086                 s += len;
00087                 i = -1;
00088                 }
00089         else {
00090                 se = s + len;
00091                 i = 1;
00092                 }
00093         for(;; s += i)
00094                 if (s == se || *s)
00095                         break;
00096         w1 = (i*(se-s) << 1) + 1;
00097         if (*s & 0xf0)
00098                 w1++;
00099         if (w1 > w)
00100                 for(i = 0; i < w; i++)
00101                         (*f__putn)('*');
00102         else {
00103                 if ((minlen -= w1) > 0)
00104                         w1 += minlen;
00105                 while(--w >= w1)
00106                         (*f__putn)(' ');
00107                 while(--minlen >= 0)
00108                         (*f__putn)('0');
00109                 if (!(*s & 0xf0)) {
00110                         (*f__putn)(hex[*s & 0xf]);
00111                         if (s == se)
00112                                 return 0;
00113                         s += i;
00114                         }
00115                 for(;; s += i) {
00116                         (*f__putn)(hex[*s >> 4 & 0xf]);
00117                         (*f__putn)(hex[*s & 0xf]);
00118                         if (s == se)
00119                                 break;
00120                         }
00121                 }
00122         return 0;
00123         }
00124 
00125  static int
00126 #ifdef KR_headers
00127 wrt_I(n,w,len, base) Uint *n; ftnlen len; register int base;
00128 #else
00129 wrt_I(Uint *n, int w, ftnlen len, register int base)
00130 #endif
00131 {       int ndigit,sign,spare,i;
00132         longint x;
00133         char *ans;
00134         if(len==sizeof(integer)) x=n->il;
00135         else if(len == sizeof(char)) x = n->ic;
00136 #ifdef Allow_TYQUAD
00137         else if (len == sizeof(longint)) x = n->ili;
00138 #endif
00139         else x=n->is;
00140         ans=f__icvt(x,&ndigit,&sign, base);
00141         spare=w-ndigit;
00142         if(sign || f__cplus) spare--;
00143         if(spare<0)
00144                 for(i=0;i<w;i++) (*f__putn)('*');
00145         else
00146         {       for(i=0;i<spare;i++) (*f__putn)(' ');
00147                 if(sign) (*f__putn)('-');
00148                 else if(f__cplus) (*f__putn)('+');
00149                 for(i=0;i<ndigit;i++) (*f__putn)(*ans++);
00150         }
00151         return(0);
00152 }
00153  static int
00154 #ifdef KR_headers
00155 wrt_IM(n,w,m,len,base) Uint *n; ftnlen len; int base;
00156 #else
00157 wrt_IM(Uint *n, int w, int m, ftnlen len, int base)
00158 #endif
00159 {       int ndigit,sign,spare,i,xsign;
00160         longint x;
00161         char *ans;
00162         if(sizeof(integer)==len) x=n->il;
00163         else if(len == sizeof(char)) x = n->ic;
00164 #ifdef Allow_TYQUAD
00165         else if (len == sizeof(longint)) x = n->ili;
00166 #endif
00167         else x=n->is;
00168         ans=f__icvt(x,&ndigit,&sign, base);
00169         if(sign || f__cplus) xsign=1;
00170         else xsign=0;
00171         if(ndigit+xsign>w || m+xsign>w)
00172         {       for(i=0;i<w;i++) (*f__putn)('*');
00173                 return(0);
00174         }
00175         if(x==0 && m==0)
00176         {       for(i=0;i<w;i++) (*f__putn)(' ');
00177                 return(0);
00178         }
00179         if(ndigit>=m)
00180                 spare=w-ndigit-xsign;
00181         else
00182                 spare=w-m-xsign;
00183         for(i=0;i<spare;i++) (*f__putn)(' ');
00184         if(sign) (*f__putn)('-');
00185         else if(f__cplus) (*f__putn)('+');
00186         for(i=0;i<m-ndigit;i++) (*f__putn)('0');
00187         for(i=0;i<ndigit;i++) (*f__putn)(*ans++);
00188         return(0);
00189 }
00190  static int
00191 #ifdef KR_headers
00192 wrt_AP(s) char *s;
00193 #else
00194 wrt_AP(char *s)
00195 #endif
00196 {       char quote;
00197         int i;
00198 
00199         if(f__cursor && (i = mv_cur()))
00200                 return i;
00201         quote = *s++;
00202         for(;*s;s++)
00203         {       if(*s!=quote) (*f__putn)(*s);
00204                 else if(*++s==quote) (*f__putn)(*s);
00205                 else return(1);
00206         }
00207         return(1);
00208 }
00209  static int
00210 #ifdef KR_headers
00211 wrt_H(a,s) char *s;
00212 #else
00213 wrt_H(int a, char *s)
00214 #endif
00215 {
00216         int i;
00217 
00218         if(f__cursor && (i = mv_cur()))
00219                 return i;
00220         while(a--) (*f__putn)(*s++);
00221         return(1);
00222 }
00223 
00224  int
00225 #ifdef KR_headers
00226 wrt_L(n,len, sz) Uint *n; ftnlen sz;
00227 #else
00228 wrt_L(Uint *n, int len, ftnlen sz)
00229 #endif
00230 {       int i;
00231         long x;
00232         if(sizeof(long)==sz) x=n->il;
00233         else if(sz == sizeof(char)) x = n->ic;
00234         else x=n->is;
00235         for(i=0;i<len-1;i++)
00236                 (*f__putn)(' ');
00237         if(x) (*f__putn)('T');
00238         else (*f__putn)('F');
00239         return(0);
00240 }
00241  static int
00242 #ifdef KR_headers
00243 wrt_A(p,len) char *p; ftnlen len;
00244 #else
00245 wrt_A(char *p, ftnlen len)
00246 #endif
00247 {
00248         while(len-- > 0) (*f__putn)(*p++);
00249         return(0);
00250 }
00251  static int
00252 #ifdef KR_headers
00253 wrt_AW(p,w,len) char * p; ftnlen len;
00254 #else
00255 wrt_AW(char * p, int w, ftnlen len)
00256 #endif
00257 {
00258         while(w>len)
00259         {       w--;
00260                 (*f__putn)(' ');
00261         }
00262         while(w-- > 0)
00263                 (*f__putn)(*p++);
00264         return(0);
00265 }
00266 
00267  static int
00268 #ifdef KR_headers
00269 wrt_G(p,w,d,e,len) ufloat *p; ftnlen len;
00270 #else
00271 wrt_G(ufloat *p, int w, int d, int e, ftnlen len)
00272 #endif
00273 {       double up = 1,x;
00274         int i=0,oldscale,n,j;
00275         x = len==sizeof(real)?p->pf:p->pd;
00276         if(x < 0 ) x = -x;
00277         if(x<.1) {
00278                 if (x != 0.)
00279                         return(wrt_E(p,w,d,e,len));
00280                 i = 1;
00281                 goto have_i;
00282                 }
00283         for(;i<=d;i++,up*=10)
00284         {       if(x>=up) continue;
00285  have_i:
00286                 oldscale = f__scale;
00287                 f__scale = 0;
00288                 if(e==0) n=4;
00289                 else    n=e+2;
00290                 i=wrt_F(p,w-n,d-i,len);
00291                 for(j=0;j<n;j++) (*f__putn)(' ');
00292                 f__scale=oldscale;
00293                 return(i);
00294         }
00295         return(wrt_E(p,w,d,e,len));
00296 }
00297 
00298  int
00299 #ifdef KR_headers
00300 w_ed(p,ptr,len) struct syl *p; char *ptr; ftnlen len;
00301 #else
00302 w_ed(struct syl *p, char *ptr, ftnlen len)
00303 #endif
00304 {
00305         int i;
00306 
00307         if(f__cursor && (i = mv_cur()))
00308                 return i;
00309         switch(p->op)
00310         {
00311         default:
00312                 fprintf(stderr,"w_ed, unexpected code: %d\n", p->op);
00313                 sig_die(f__fmtbuf, 1);
00314         case I: return(wrt_I((Uint *)ptr,p->p1,len, 10));
00315         case IM:
00316                 return(wrt_IM((Uint *)ptr,p->p1,p->p2.i[0],len,10));
00317 
00318                 /* O and OM don't work right for character, double, complex, */
00319                 /* or doublecomplex, and they differ from Fortran 90 in */
00320                 /* showing a minus sign for negative values. */
00321 
00322         case O: return(wrt_I((Uint *)ptr, p->p1, len, 8));
00323         case OM:
00324                 return(wrt_IM((Uint *)ptr,p->p1,p->p2.i[0],len,8));
00325         case L: return(wrt_L((Uint *)ptr,p->p1, len));
00326         case A: return(wrt_A(ptr,len));
00327         case AW:
00328                 return(wrt_AW(ptr,p->p1,len));
00329         case D:
00330         case E:
00331         case EE:
00332                 return(wrt_E((ufloat *)ptr,p->p1,p->p2.i[0],p->p2.i[1],len));
00333         case G:
00334         case GE:
00335                 return(wrt_G((ufloat *)ptr,p->p1,p->p2.i[0],p->p2.i[1],len));
00336         case F: return(wrt_F((ufloat *)ptr,p->p1,p->p2.i[0],len));
00337 
00338                 /* Z and ZM assume 8-bit bytes. */
00339 
00340         case Z: return(wrt_Z((Uint *)ptr,p->p1,0,len));
00341         case ZM:
00342                 return(wrt_Z((Uint *)ptr,p->p1,p->p2.i[0],len));
00343         }
00344 }
00345 
00346  int
00347 #ifdef KR_headers
00348 w_ned(p) struct syl *p;
00349 #else
00350 w_ned(struct syl *p)
00351 #endif
00352 {
00353         switch(p->op)
00354         {
00355         default: fprintf(stderr,"w_ned, unexpected code: %d\n", p->op);
00356                 sig_die(f__fmtbuf, 1);
00357         case SLASH:
00358                 return((*f__donewrec)());
00359         case T: f__cursor = p->p1-f__recpos - 1;
00360                 return(1);
00361         case TL: f__cursor -= p->p1;
00362                 if(f__cursor < -f__recpos)      /* TL1000, 1X */
00363                         f__cursor = -f__recpos;
00364                 return(1);
00365         case TR:
00366         case X:
00367                 f__cursor += p->p1;
00368                 return(1);
00369         case APOS:
00370                 return(wrt_AP(p->p2.s));
00371         case H:
00372                 return(wrt_H(p->p1,p->p2.s));
00373         }
00374 }
00375 #ifdef __cplusplus
00376 }
00377 #endif


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autogenerated on Sat Jun 8 2019 18:56:16