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/* Copyright(c) 1986 Association of Universities for Research in Astronomy Inc.
*/
#include <stdio.h>
#include <stdlib.h>
#include <ctype.h>
#define import_spp
#define import_kernel
#define import_knames
#include <iraf.h>
static char *_ev_scaniraf (char *envvar);
static int _ev_loadcache (char *fname);
static int _ev_streq (char *s1, char *s2, int n);
/* ZGTENV -- Get the value of a host system environment variable. Look first
* in the process environment. If no entry is found there and the variable is
* one of the standard named variables, get the system wide default value from
* the file <iraf.h>, which is assumed to be located in /usr/include.
*/
int
ZGTENV (
PKCHAR *envvar, /* name of variable to be fetched */
PKCHAR *outstr, /* output string */
XINT *maxch,
XINT *status
)
{
register char *ip, *op;
register int n;
char *getenv();
op = (char *)outstr;
if ((ip = getenv ((char *)envvar)) == NULL)
ip = _ev_scaniraf ((char *)envvar);
if (ip == NULL) {
*op = EOS;
*status = XERR;
} else {
*status = 0;
op[*maxch] = EOS;
for (n = *maxch; --n >= 0 && (*op++ = *ip++); )
(*status)++;
}
return (XOK);
}
/*
* Code to bootstrap the IRAF environment list for UNIX.
*/
#define TABLE "/usr/include/iraf.h" /* table file */
#define DELIM "/* ###" /* delimits defs area */
#define NENV 3 /* n variables */
#define SZ_NAME 10
#define SZ_VALUE 80
struct env {
char ev_name[SZ_NAME+1];
char ev_value[SZ_VALUE+1];
};
int ev_cacheloaded = 0;
struct env ev_table[NENV] = {
{ "host", ""},
{ "iraf", ""},
{ "tmp", ""}
};
/* SCANIRAF -- If the referenced environment variable is a well known standard
* variable, scan the file <iraf.h> for its system wide default value. This
* is done at run time rather than compile time to make it possible to make
* changes to these variables (e.g., relocate iraf to a different root
* directory) without recompiling major parts of the system.
*
* Virtually all IRAF environment variables are defined in the source code and
* are portable. In particular, virtually all source directories are defined
* relative to the IRAF root directory "iraf$". Only those definitions which
* are both necessarily machine dependent and required for operation of the
* bootstrap C programs (e.g., the CL, XC, etc.) are satisfied at this level.
* These variables are the following.
*
* iraf The root directory of IRAF; if this is incorrect,
* bootstrap programs like the CL will not be able
* to find IRAF files.
*
* host The machine dependent subdirectory of iraf$. The
* actual name of this directory varies from system
* to system (to avoid name collisions on tar tapes),
* hence we cannot use "iraf$host/".
* Examples: iraf$unix/, iraf$vms/, iraf$sun/, etc.
*
* tmp The place where IRAF is to put its temporary files.
* This is normally /tmp/ for a UNIX system. TMP
* also serves as the default IMDIR.
*
* The entries for these variables in the <iraf.h> must adhere to a standard
* format, e.g. (substituting @ for *):
*
* /@ ### Start of run time definitions @/
* #define iraf "/iraf/"
* #define host "/iraf/unix/"
* #define tmp "/tmp/"
* /@ ### End of run time definitions @/
*
* Although the definitions are entered as standard C #defines, they should not
* be directly referenced in C programs.
*/
static char *
_ev_scaniraf (char *envvar)
{
int i;
for (i=0; i < NENV; i++)
if (strcmp (ev_table[i].ev_name, envvar) == 0)
break;
if (i >= NENV)
return (NULL);
if (!ev_cacheloaded) {
if (_ev_loadcache (TABLE) == ERR)
return (NULL);
else
ev_cacheloaded++;
}
return (ev_table[i].ev_value);
}
/* _EV_LOADCACHE -- Scan <iraf.h> for the values of the standard variables.
* Cache these in case we are called again (they do not change so often that we
* cannot cache them in memory). Any errors in accessing the table probably
* indicate an error in installing IRAF hence should be reported immediately.
*/
static int
_ev_loadcache (char *fname)
{
register char *ip, *op;
register FILE *fp;
register int n;
static char *home, hpath[SZ_PATHNAME+1];
static char delim[] = DELIM;
char lbuf[SZ_LINE+1];
int len_delim, i;
if ((home = getenv ("HOME"))) {
memset (hpath, 0, SZ_PATHNAME);
sprintf (hpath, "%s/.iraf.h", home);
if ((fp = fopen (hpath, "r")) == NULL) {
/* No personal $HOME/.iraf.h file, try the system request.
*/
if ((fp = fopen (fname, "r")) == NULL) {
fprintf (stderr, "os.zgtenv: cannot open `%s'\n", fname);
return (ERR);
}
}
} else {
/* We should always have a $HOME, but try this to be safe.
*/
if ((fp = fopen (fname, "r")) == NULL) {
fprintf (stderr, "os.zgtenv: cannot open `%s'\n", fname);
return (ERR);
}
}
len_delim = strlen (delim);
while (fgets (lbuf, SZ_LINE, fp) != NULL) {
if (strncmp (lbuf, delim, len_delim) == 0)
break;
}
/* Extract the values of the variables from the table. The format is
* rather rigid; in particular, the variables must be given in the
* table in the same order in which they appear in the in core table,
* i.e., alphabetic order.
*/
for (i=0; i < NENV; i++) {
if (fgets (lbuf, SZ_LINE, fp) == NULL)
goto error;
if (strncmp (lbuf, "#define", 7) != 0)
goto error;
/* Verify the name of the variable. */
ip = ev_table[i].ev_name;
if (!_ev_streq (lbuf+8, ip, strlen(ip)))
goto error;
/* Extract the quoted value string. */
for (ip=lbuf+8; *ip++ != '"'; )
;
op = ev_table[i].ev_value;
for (n=SZ_VALUE; --n >= 0 && (*op = *ip++) != '"'; op++)
;
*op = EOS;
}
if (fgets (lbuf, SZ_LINE, fp) == NULL)
goto error;
if (strncmp (lbuf, delim, len_delim) != 0)
goto error;
fclose (fp);
return (OK);
error:
fprintf (stderr, "os.zgtenv: error scanning `%s'\n", fname);
fclose (fp);
return (ERR);
}
#define to_lower(c) ((c)+'a'-'A')
/* EV_STREQ -- Compare two strings for equality, ignoring case. The logical
* names are given in upper case in <iraf.h> since they are presented as
* macro defines.
*/
static int
_ev_streq (char *s1, char *s2, int n)
{
register int ch1, ch2;
while (--n >= 0) {
ch1 = *s1++;
if (isupper (ch1))
ch1 = to_lower(ch1);
ch2 = *s2++;
if (isupper (ch2))
ch2 = to_lower(ch2);
if (ch1 != ch2)
return (0);
}
return (1);
}
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