408 lines
11 KiB
C
408 lines
11 KiB
C
/* time.c
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Parse a time string into a uuconf_timespan structure.
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Copyright (C) 1992, 1993 Ian Lance Taylor
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This file is part of the Taylor UUCP uuconf library.
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Library General Public License
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as published by the Free Software Foundation; either version 2 of
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the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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The author of the program may be contacted at ian@airs.com or
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c/o Cygnus Support, Building 200, 1 Kendall Square, Cambridge, MA 02139.
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*/
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#include "uucnfi.h"
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#if USE_RCS_ID
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const char _uuconf_time_rcsid[] = "$Id: time.c,v 1.2 1994/10/24 22:25:07 jtc Exp $";
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#endif
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#include <ctype.h>
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#include <errno.h>
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static int itadd_span P((struct sglobal *qglobal, int istart, int iend,
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long ival, int cretry,
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int (*picmp) P((long, long)),
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struct uuconf_timespan **pqspan,
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pointer pblock));
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static int itnew P((struct sglobal *qglobal, struct uuconf_timespan **pqset,
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struct uuconf_timespan *qnext, int istart, int iend,
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long ival, int cretry, pointer pblock));
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/* An array of weekday abbreviations. The code below assumes that
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each one starts with a lower case letter. */
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static const struct
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{
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const char *zname;
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int imin;
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int imax;
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} asTdays[] =
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{
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{ "any", 0, 6 },
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{ "wk", 1, 5 },
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{ "su", 0, 0 },
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{ "mo", 1, 1 },
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{ "tu", 2, 2 },
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{ "we", 3, 3 },
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{ "th", 4, 4 },
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{ "fr", 5, 5 },
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{ "sa", 6, 6 },
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{ "never", -1, -2 },
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{ "none", -1, -2 },
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{ NULL, 0, 0 }
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};
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/* Parse a time string and add it to a span list. This function is
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given the value, the retry time, and the comparison function to
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use. */
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int
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_uuconf_itime_parse (qglobal, ztime, ival, cretry, picmp, pqspan, pblock)
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struct sglobal *qglobal;
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char *ztime;
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long ival;
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int cretry;
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int (*picmp) P((long, long));
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struct uuconf_timespan **pqspan;
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pointer pblock;
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{
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struct uuconf_timespan *qlist;
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char bfirst;
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const char *z;
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qlist = *pqspan;
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if (qlist == (struct uuconf_timespan *) &_uuconf_unset)
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qlist = NULL;
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/* Expand the string using a timetable. Keep rechecking the string
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until it does not match. */
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while (TRUE)
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{
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char **pz;
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char *zfound;
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bfirst = *ztime;
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if (isupper (BUCHAR (bfirst)))
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bfirst = tolower (BUCHAR (bfirst));
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zfound = NULL;
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pz = qglobal->qprocess->pztimetables;
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/* We want the last timetable to have been defined with this
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name, so we always look through the entire table. */
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while (*pz != NULL)
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{
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if ((bfirst == (*pz)[0]
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|| (isupper (BUCHAR ((*pz)[0]))
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&& (int) bfirst == (int) tolower (BUCHAR ((*pz)[0]))))
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&& strcasecmp (ztime, *pz) == 0)
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zfound = pz[1];
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pz += 2;
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}
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if (zfound == NULL)
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break;
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ztime = zfound;
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}
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/* Look through the time string. */
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z = ztime;
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while (*z != '\0')
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{
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int iday;
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boolean afday[7];
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int istart, iend;
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if (*z == ',' || *z == '|')
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++z;
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if (*z == '\0' || *z == ';')
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break;
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for (iday = 0; iday < 7; iday++)
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afday[iday] = FALSE;
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/* Get the days. */
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do
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{
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bfirst = *z;
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if (isupper (BUCHAR (bfirst)))
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bfirst = tolower (BUCHAR (bfirst));
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for (iday = 0; asTdays[iday].zname != NULL; iday++)
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{
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size_t clen;
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if (bfirst != asTdays[iday].zname[0])
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continue;
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clen = strlen (asTdays[iday].zname);
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if (strncasecmp (z, asTdays[iday].zname, clen) == 0)
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{
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int iset;
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for (iset = asTdays[iday].imin;
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iset <= asTdays[iday].imax;
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iset++)
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afday[iset] = TRUE;
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z += clen;
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break;
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}
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}
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if (asTdays[iday].zname == NULL)
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return UUCONF_SYNTAX_ERROR;
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}
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while (isalpha (BUCHAR (*z)));
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/* Get the hours. */
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if (! isdigit (BUCHAR (*z)))
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{
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istart = 0;
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iend = 24 * 60;
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}
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else
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{
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char *zendnum;
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istart = (int) strtol ((char *) z, &zendnum, 10);
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if (*zendnum != '-' || ! isdigit (BUCHAR (zendnum[1])))
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return UUCONF_SYNTAX_ERROR;
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z = zendnum + 1;
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iend = (int) strtol ((char *) z, &zendnum, 10);
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z = zendnum;
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istart = (istart / 100) * 60 + istart % 100;
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iend = (iend / 100) * 60 + iend % 100;
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}
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/* Add the times we've found onto the list. */
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for (iday = 0; iday < 7; iday++)
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{
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if (afday[iday])
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{
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int iminute, iret;
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iminute = iday * 24 * 60;
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if (istart < iend)
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iret = itadd_span (qglobal, iminute + istart,
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iminute + iend, ival, cretry, picmp,
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&qlist, pblock);
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else
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{
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/* Wrap around midnight. */
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iret = itadd_span (qglobal, iminute, iminute + iend,
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ival, cretry, picmp, &qlist, pblock);
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if (iret == UUCONF_SUCCESS)
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iret = itadd_span (qglobal, iminute + istart,
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iminute + 24 * 60, ival, cretry,
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picmp, &qlist, pblock);
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}
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if (iret != UUCONF_SUCCESS)
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return iret;
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}
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}
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}
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*pqspan = qlist;
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return UUCONF_SUCCESS;
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}
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/* Add a time span to an existing list of time spans. We keep the
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list sorted by time to make this operation easier. This modifies
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the existing list, and returns the modified version. It takes a
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comparison function which should return < 0 if the first argument
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should take precedence over the second argument and == 0 if they
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are the same (for grades this is igradecmp; for sizes it is minus
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(the binary operator)). */
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static int
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itadd_span (qglobal, istart, iend, ival, cretry, picmp, pqspan, pblock)
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struct sglobal *qglobal;
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int istart;
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int iend;
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long ival;
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int cretry;
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int (*picmp) P((long, long));
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struct uuconf_timespan **pqspan;
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pointer pblock;
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{
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struct uuconf_timespan **pq;
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int iret;
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/* istart < iend */
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for (pq = pqspan; *pq != NULL; pq = &(*pq)->uuconf_qnext)
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{
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int icmp;
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/* Invariant: PREV (*pq) == NULL || PREV (*pq)->iend <= istart */
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/* istart < iend && (*pq)->istart < (*pq)->iend */
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if (iend <= (*pq)->uuconf_istart)
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{
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/* istart < iend <= (*pq)->istart < (*pq)->iend */
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/* No overlap, and we're at the right spot. See if we can
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combine these spans. */
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if (iend == (*pq)->uuconf_istart
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&& cretry == (*pq)->uuconf_cretry
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&& (*picmp) (ival, (*pq)->uuconf_ival) == 0)
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{
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(*pq)->uuconf_istart = istart;
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return UUCONF_SUCCESS;
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}
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/* We couldn't combine them. */
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break;
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}
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if ((*pq)->uuconf_iend <= istart)
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{
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/* (*pq)->istart < (*pq)->iend <= istart < iend */
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/* No overlap. Try attaching this span. */
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if ((*pq)->uuconf_iend == istart
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&& (*pq)->uuconf_cretry == cretry
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&& ((*pq)->uuconf_qnext == NULL
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|| iend <= (*pq)->uuconf_qnext->uuconf_istart)
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&& (*picmp) (ival, (*pq)->uuconf_ival) == 0)
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{
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(*pq)->uuconf_iend = iend;
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return UUCONF_SUCCESS;
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}
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/* Couldn't attach; keep looking for the right spot. We
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might be able to combine part of the new span onto an
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existing span, but it's probably not worth it. */
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continue;
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}
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/* istart < iend
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&& (*pq)->istart < (*pq)->iend
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&& istart < (*pq)->iend
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&& (*pq)->istart < iend */
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/* Overlap. */
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icmp = (*picmp) (ival, (*pq)->uuconf_ival);
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if (icmp == 0)
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{
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/* Just expand the old span to include the new span. */
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if (istart < (*pq)->uuconf_istart)
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(*pq)->uuconf_istart = istart;
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if ((*pq)->uuconf_iend >= iend)
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return UUCONF_SUCCESS;
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if ((*pq)->uuconf_qnext == NULL
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|| iend <= (*pq)->uuconf_qnext->uuconf_istart)
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{
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(*pq)->uuconf_iend = iend;
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return UUCONF_SUCCESS;
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}
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/* The span we are adding overlaps the next span as well.
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Expand the old span up to the next old span, and keep
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trying to add the new span. */
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(*pq)->uuconf_iend = (*pq)->uuconf_qnext->uuconf_istart;
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istart = (*pq)->uuconf_iend;
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}
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else if (icmp < 0)
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{
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/* Replace the old span with the new span. */
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if ((*pq)->uuconf_istart < istart)
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{
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/* Save the initial portion of the old span. */
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iret = itnew (qglobal, pq, *pq, (*pq)->uuconf_istart, istart,
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(*pq)->uuconf_ival, (*pq)->uuconf_cretry,
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pblock);
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if (iret != UUCONF_SUCCESS)
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return iret;
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pq = &(*pq)->uuconf_qnext;
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}
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if (iend < (*pq)->uuconf_iend)
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{
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/* Save the final portion of the old span. */
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iret = itnew (qglobal, &(*pq)->uuconf_qnext,
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(*pq)->uuconf_qnext, iend, (*pq)->uuconf_iend,
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(*pq)->uuconf_ival, (*pq)->uuconf_cretry,
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pblock);
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if (iret != UUCONF_SUCCESS)
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return iret;
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}
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(*pq)->uuconf_ival = ival;
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(*pq)->uuconf_istart = istart;
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(*pq)->uuconf_cretry = cretry;
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if ((*pq)->uuconf_qnext == NULL
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|| iend <= (*pq)->uuconf_qnext->uuconf_istart)
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{
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(*pq)->uuconf_iend = iend;
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return UUCONF_SUCCESS;
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}
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/* Move this span up to the next one, and keep trying to add
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the new span. */
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(*pq)->uuconf_iend = (*pq)->uuconf_qnext->uuconf_istart;
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istart = (*pq)->uuconf_iend;
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}
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else
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{
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/* Leave the old span untouched. */
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if (istart < (*pq)->uuconf_istart)
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{
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/* Put in the initial portion of the new span. */
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iret = itnew (qglobal, pq, *pq, istart, (*pq)->uuconf_istart,
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ival, cretry, pblock);
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if (iret != UUCONF_SUCCESS)
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return iret;
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pq = &(*pq)->uuconf_qnext;
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}
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if (iend <= (*pq)->uuconf_iend)
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return UUCONF_SUCCESS;
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/* Keep trying to add the new span. */
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istart = (*pq)->uuconf_iend;
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}
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}
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/* This is the spot for the new span, and there's no overlap. */
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return itnew (qglobal, pq, *pq, istart, iend, ival, cretry, pblock);
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}
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/* A utility function to create a new uuconf_timespan structure. */
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static int
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itnew (qglobal, pqset, qnext, istart, iend, ival, cretry, pblock)
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struct sglobal *qglobal;
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struct uuconf_timespan **pqset;
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struct uuconf_timespan *qnext;
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int istart;
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int iend;
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long ival;
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int cretry;
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pointer pblock;
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{
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register struct uuconf_timespan *qnew;
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qnew = ((struct uuconf_timespan *)
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uuconf_malloc (pblock, sizeof (struct uuconf_timespan)));
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if (qnew == NULL)
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{
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qglobal->ierrno = errno;
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return UUCONF_MALLOC_FAILED | UUCONF_ERROR_ERRNO;
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}
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qnew->uuconf_qnext = qnext;
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qnew->uuconf_istart = istart;
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qnew->uuconf_iend = iend;
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qnew->uuconf_ival = ival;
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qnew->uuconf_cretry = cretry;
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*pqset = qnew;
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return UUCONF_SUCCESS;
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}
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