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#ifndef lint |
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static const char RCSid[] = "$Id: calfunc.c,v 2.13 2003/08/04 22:37:53 greg Exp $"; |
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#endif |
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/* |
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* calfunc.c - routines for calcomp using functions. |
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* |
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* If VARIABLE is not set, only library functions |
8 |
* can be accessed. |
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* |
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* 2/19/03 Eliminated conditional compiles in favor of esupport extern. |
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*/ |
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|
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#include "copyright.h" |
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|
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#include <stdio.h> |
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#include <string.h> |
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#include <errno.h> |
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#include <math.h> |
19 |
|
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#include "rterror.h" |
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#include "calcomp.h" |
22 |
|
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/* bits in argument flag (better be right!) */ |
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#define AFLAGSIZ (8*sizeof(unsigned long)) |
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#define ALISTSIZ 6 /* maximum saved argument list */ |
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|
27 |
typedef struct activation { |
28 |
char *name; /* function name */ |
29 |
struct activation *prev; /* previous activation */ |
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double *ap; /* argument list */ |
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unsigned long an; /* computed argument flags */ |
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EPNODE *fun; /* argument function */ |
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} ACTIVATION; /* an activation record */ |
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|
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static ACTIVATION *curact = NULL; |
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|
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static double libfunc(char *fname, VARDEF *vp); |
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|
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#ifndef MAXLIB |
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#define MAXLIB 64 /* maximum number of library functions */ |
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#endif |
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|
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static double l_if(char *), l_select(char *), l_rand(char *); |
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static double l_floor(char *), l_ceil(char *); |
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static double l_sqrt(char *); |
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static double l_sin(char *), l_cos(char *), l_tan(char *); |
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static double l_asin(char *), l_acos(char *), l_atan(char *), l_atan2(char *); |
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static double l_exp(char *), l_log(char *), l_log10(char *); |
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|
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/* functions must be listed alphabetically */ |
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static LIBR library[MAXLIB] = { |
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{ "acos", 1, ':', l_acos }, |
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{ "asin", 1, ':', l_asin }, |
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{ "atan", 1, ':', l_atan }, |
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{ "atan2", 2, ':', l_atan2 }, |
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{ "ceil", 1, ':', l_ceil }, |
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{ "cos", 1, ':', l_cos }, |
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{ "exp", 1, ':', l_exp }, |
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{ "floor", 1, ':', l_floor }, |
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{ "if", 3, ':', l_if }, |
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{ "log", 1, ':', l_log }, |
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{ "log10", 1, ':', l_log10 }, |
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{ "rand", 1, ':', l_rand }, |
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{ "select", 1, ':', l_select }, |
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{ "sin", 1, ':', l_sin }, |
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{ "sqrt", 1, ':', l_sqrt }, |
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{ "tan", 1, ':', l_tan }, |
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}; |
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|
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static int libsize = 16; |
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|
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#define resolve(ep) ((ep)->type==VAR?(ep)->v.ln:argf((ep)->v.chan)) |
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|
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|
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int |
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fundefined(fname) /* return # of arguments for function */ |
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char *fname; |
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{ |
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register LIBR *lp; |
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register VARDEF *vp; |
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|
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if ((vp = varlookup(fname)) != NULL && vp->def != NULL |
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&& vp->def->v.kid->type == FUNC) |
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return(nekids(vp->def->v.kid) - 1); |
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lp = vp != NULL ? vp->lib : liblookup(fname); |
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if (lp == NULL) |
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return(0); |
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return(lp->nargs); |
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} |
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|
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|
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double |
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funvalue(fname, n, a) /* return a function value to the user */ |
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char *fname; |
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int n; |
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double *a; |
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{ |
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ACTIVATION act; |
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register VARDEF *vp; |
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double rval; |
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/* push environment */ |
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act.name = fname; |
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act.prev = curact; |
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act.ap = a; |
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if (n >= AFLAGSIZ) |
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act.an = ~0; |
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else |
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act.an = (1L<<n)-1; |
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act.fun = NULL; |
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curact = &act; |
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|
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if ((vp = varlookup(fname)) == NULL || vp->def == NULL |
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|| vp->def->v.kid->type != FUNC) |
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rval = libfunc(fname, vp); |
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else |
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rval = evalue(vp->def->v.kid->sibling); |
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|
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curact = act.prev; /* pop environment */ |
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return(rval); |
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} |
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|
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|
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void |
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funset(fname, nargs, assign, fptr) /* set a library function */ |
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char *fname; |
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int nargs; |
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int assign; |
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double (*fptr)(char *); |
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{ |
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int oldlibsize = libsize; |
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char *cp; |
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register LIBR *lp; |
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/* check for context */ |
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for (cp = fname; *cp; cp++) |
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; |
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if (cp == fname) |
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return; |
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if (cp[-1] == CNTXMARK) |
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*--cp = '\0'; |
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if ((lp = liblookup(fname)) == NULL) { /* insert */ |
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if (libsize >= MAXLIB) { |
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eputs("Too many library functons!\n"); |
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quit(1); |
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} |
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for (lp = &library[libsize]; lp > library; lp--) |
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if (strcmp(lp[-1].fname, fname) > 0) { |
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lp[0].fname = lp[-1].fname; |
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lp[0].nargs = lp[-1].nargs; |
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lp[0].atyp = lp[-1].atyp; |
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lp[0].f = lp[-1].f; |
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} else |
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break; |
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libsize++; |
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} |
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if (fptr == NULL) { /* delete */ |
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while (lp < &library[libsize-1]) { |
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lp[0].fname = lp[1].fname; |
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lp[0].nargs = lp[1].nargs; |
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lp[0].atyp = lp[1].atyp; |
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lp[0].f = lp[1].f; |
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lp++; |
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} |
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libsize--; |
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} else { /* or assign */ |
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lp[0].fname = fname; /* string must be static! */ |
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lp[0].nargs = nargs; |
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lp[0].atyp = assign; |
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lp[0].f = fptr; |
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} |
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if (libsize != oldlibsize) |
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libupdate(fname); /* relink library */ |
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} |
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|
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|
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int |
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nargum() /* return number of available arguments */ |
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{ |
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register int n; |
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|
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if (curact == NULL) |
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return(0); |
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if (curact->fun == NULL) { |
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for (n = 0; (1L<<n) & curact->an; n++) |
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; |
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return(n); |
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} |
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return(nekids(curact->fun) - 1); |
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} |
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|
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|
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double |
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argument(n) /* return nth argument for active function */ |
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register int n; |
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{ |
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register ACTIVATION *actp = curact; |
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register EPNODE *ep = NULL; |
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double aval; |
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|
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if (actp == NULL || --n < 0) { |
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eputs("Bad call to argument!\n"); |
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quit(1); |
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} |
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/* already computed? */ |
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if (n < AFLAGSIZ && 1L<<n & actp->an) |
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return(actp->ap[n]); |
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|
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if (actp->fun == NULL || (ep = ekid(actp->fun, n+1)) == NULL) { |
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eputs(actp->name); |
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eputs(": too few arguments\n"); |
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quit(1); |
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} |
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curact = actp->prev; /* pop environment */ |
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aval = evalue(ep); /* compute argument */ |
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curact = actp; /* push back environment */ |
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if (n < ALISTSIZ) { /* save value */ |
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actp->ap[n] = aval; |
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actp->an |= 1L<<n; |
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} |
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return(aval); |
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} |
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|
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|
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VARDEF * |
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argf(n) /* return function def for nth argument */ |
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int n; |
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{ |
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register ACTIVATION *actp; |
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register EPNODE *ep; |
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|
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for (actp = curact; actp != NULL; actp = actp->prev) { |
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|
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if (n <= 0) |
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break; |
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|
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if (actp->fun == NULL) |
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goto badarg; |
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|
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if ((ep = ekid(actp->fun, n)) == NULL) { |
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eputs(actp->name); |
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eputs(": too few arguments\n"); |
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quit(1); |
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} |
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if (ep->type == VAR) |
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return(ep->v.ln); /* found it */ |
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|
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if (ep->type != ARG) |
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goto badarg; |
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|
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n = ep->v.chan; /* try previous context */ |
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} |
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eputs("Bad call to argf!\n"); |
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quit(1); |
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|
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badarg: |
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eputs(actp->name); |
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eputs(": argument not a function\n"); |
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quit(1); |
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return NULL; /* pro forma return */ |
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} |
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|
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|
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char * |
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argfun(n) /* return function name for nth argument */ |
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int n; |
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{ |
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return(argf(n)->name); |
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} |
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|
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|
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double |
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efunc(ep) /* evaluate a function */ |
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register EPNODE *ep; |
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{ |
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ACTIVATION act; |
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double alist[ALISTSIZ]; |
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double rval; |
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register VARDEF *dp; |
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/* push environment */ |
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dp = resolve(ep->v.kid); |
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act.name = dp->name; |
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act.prev = curact; |
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act.ap = alist; |
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act.an = 0; |
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act.fun = ep; |
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curact = &act; |
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|
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if (dp->def == NULL || dp->def->v.kid->type != FUNC) |
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rval = libfunc(act.name, dp); |
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else |
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rval = evalue(dp->def->v.kid->sibling); |
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|
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curact = act.prev; /* pop environment */ |
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return(rval); |
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} |
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|
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|
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LIBR * |
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liblookup(fname) /* look up a library function */ |
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char *fname; |
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{ |
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int upper, lower; |
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register int cm, i; |
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|
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lower = 0; |
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upper = cm = libsize; |
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|
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while ((i = (lower + upper) >> 1) != cm) { |
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cm = strcmp(fname, library[i].fname); |
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if (cm > 0) |
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lower = i; |
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else if (cm < 0) |
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upper = i; |
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else |
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return(&library[i]); |
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cm = i; |
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} |
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return(NULL); |
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} |
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|
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|
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/* |
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* The following routines are for internal use: |
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*/ |
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|
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|
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static double |
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libfunc(fname, vp) /* execute library function */ |
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char *fname; |
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VARDEF *vp; |
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{ |
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register LIBR *lp; |
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double d; |
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int lasterrno; |
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|
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if (vp != NULL) |
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lp = vp->lib; |
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else |
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lp = liblookup(fname); |
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if (lp == NULL) { |
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eputs(fname); |
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eputs(": undefined function\n"); |
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quit(1); |
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} |
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lasterrno = errno; |
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errno = 0; |
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d = (*lp->f)(lp->fname); |
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#ifdef IEEE |
348 |
if (errno == 0) |
349 |
if (isnan(d)) |
350 |
errno = EDOM; |
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else if (isinf(d)) |
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errno = ERANGE; |
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#endif |
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if (errno == EDOM || errno == ERANGE) { |
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wputs(fname); |
356 |
if (errno == EDOM) |
357 |
wputs(": domain error\n"); |
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else if (errno == ERANGE) |
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wputs(": range error\n"); |
360 |
else |
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wputs(": error in call\n"); |
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return(0.0); |
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} |
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errno = lasterrno; |
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return(d); |
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} |
367 |
|
368 |
|
369 |
/* |
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* Library functions: |
371 |
*/ |
372 |
|
373 |
|
374 |
static double |
375 |
l_if(char *nm) /* if(cond, then, else) conditional expression */ |
376 |
/* cond evaluates true if greater than zero */ |
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{ |
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if (argument(1) > 0.0) |
379 |
return(argument(2)); |
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else |
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return(argument(3)); |
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} |
383 |
|
384 |
|
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static double |
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l_select(char *nm) /* return argument #(A1+1) */ |
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{ |
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register int n; |
389 |
|
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n = (int)(argument(1) + .5); |
391 |
if (n == 0) |
392 |
return(nargum()-1); |
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if (n < 1 || n > nargum()-1) { |
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errno = EDOM; |
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return(0.0); |
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} |
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return(argument(n+1)); |
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} |
399 |
|
400 |
|
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static double |
402 |
l_rand(char *nm) /* random function between 0 and 1 */ |
403 |
{ |
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double x; |
405 |
|
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x = argument(1); |
407 |
x *= 1.0/(1.0 + x*x) + 2.71828182845904; |
408 |
x += .785398163397447 - floor(x); |
409 |
x = 1e5 / x; |
410 |
return(x - floor(x)); |
411 |
} |
412 |
|
413 |
|
414 |
static double |
415 |
l_floor(char *nm) /* return largest integer not greater than arg1 */ |
416 |
{ |
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return(floor(argument(1))); |
418 |
} |
419 |
|
420 |
|
421 |
static double |
422 |
l_ceil(char *nm) /* return smallest integer not less than arg1 */ |
423 |
{ |
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return(ceil(argument(1))); |
425 |
} |
426 |
|
427 |
|
428 |
static double |
429 |
l_sqrt(char *nm) |
430 |
{ |
431 |
return(sqrt(argument(1))); |
432 |
} |
433 |
|
434 |
|
435 |
static double |
436 |
l_sin(char *nm) |
437 |
{ |
438 |
return(sin(argument(1))); |
439 |
} |
440 |
|
441 |
|
442 |
static double |
443 |
l_cos(char *nm) |
444 |
{ |
445 |
return(cos(argument(1))); |
446 |
} |
447 |
|
448 |
|
449 |
static double |
450 |
l_tan(char *nm) |
451 |
{ |
452 |
return(tan(argument(1))); |
453 |
} |
454 |
|
455 |
|
456 |
static double |
457 |
l_asin(char *nm) |
458 |
{ |
459 |
return(asin(argument(1))); |
460 |
} |
461 |
|
462 |
|
463 |
static double |
464 |
l_acos(char *nm) |
465 |
{ |
466 |
return(acos(argument(1))); |
467 |
} |
468 |
|
469 |
|
470 |
static double |
471 |
l_atan(char *nm) |
472 |
{ |
473 |
return(atan(argument(1))); |
474 |
} |
475 |
|
476 |
|
477 |
static double |
478 |
l_atan2(char *nm) |
479 |
{ |
480 |
return(atan2(argument(1), argument(2))); |
481 |
} |
482 |
|
483 |
|
484 |
static double |
485 |
l_exp(char *nm) |
486 |
{ |
487 |
return(exp(argument(1))); |
488 |
} |
489 |
|
490 |
|
491 |
static double |
492 |
l_log(char *nm) |
493 |
{ |
494 |
return(log(argument(1))); |
495 |
} |
496 |
|
497 |
|
498 |
static double |
499 |
l_log10(char *nm) |
500 |
{ |
501 |
return(log10(argument(1))); |
502 |
} |