292 lines
6.2 KiB
C
292 lines
6.2 KiB
C
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/*****************************************************************************
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*
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* $Id: pktname.c,v 1.16 2007/02/03 12:18:42 mbse Exp $
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* Purpose ...............: BinkleyTerm outbound naming
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*
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*****************************************************************************
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* Copyright (C) 1997-2007
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*
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* Michiel Broek FIDO: 2:280/2802
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* Beekmansbos 10
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* 1971 BV IJmuiden
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* the Netherlands
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*
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* This file is part of MBSE BBS.
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*
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* This BBS is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2, or (at your option) any
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* later version.
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*
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* MBSE BBS 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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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with MBSE BBS; see the file COPYING. If not, write to the Free
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* Software Foundation, 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
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*****************************************************************************/
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#include "../config.h"
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#include "mbselib.h"
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#include "users.h"
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#include "mbsedb.h"
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#ifndef PATH_MAX
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#define PATH_MAX 512
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#endif
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#define ptyp "ut"
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#define ftyp "lo"
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#define ttyp "pk"
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#define rtyp "req"
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#define styp "spl"
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#define btyp "bsy"
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#define qtyp "sts"
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#define ltyp "pol"
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char *prepbuf(faddr *);
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char *prepbuf(faddr *addr)
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{
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static char buf[PATH_MAX];
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char *p, *domain=NULL, zpref[8];
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int i;
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snprintf(buf, PATH_MAX -1, "%s", CFG.outbound);
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if (CFG.addr4d) {
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Syslog('o', "Use 4d addressing, zone is %d", addr->zone);
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if ((addr->zone == 0) || (addr->zone == CFG.aka[0].zone))
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zpref[0] = '\0';
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else
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snprintf(zpref, 8, ".%03x", addr->zone);
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} else {
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/*
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* If we got a 5d address we use the given domain, if
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* we got a 4d address, we look for a matching domain name.
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*/
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if (addr && addr->domain && strlen(addr->domain)) {
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domain = xstrcpy(addr->domain);
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} else {
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domain = xstrcpy(GetFidoDomain(addr->zone));
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}
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/*
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* If we got a 2d address, add the default zone.
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*/
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if (addr->zone == 0 ) {
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addr->zone = CFG.aka[0].zone;
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}
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if ((domain != NULL) && (strlen(CFG.aka[0].domain) != 0) && (strcasecmp(domain,CFG.aka[0].domain) != 0)) {
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if ((p = strrchr(buf,'/')))
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p++;
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else
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p = buf;
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strcpy(p, domain);
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for (; *p; p++)
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*p = tolower(*p);
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for (i = 0; i < 40; i++)
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if ((strlen(CFG.aka[i].domain)) && (strcasecmp(CFG.aka[i].domain, domain) == 0))
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break;
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/*
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* The default zone must be the first one in the
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* setup, other zones get the hexadecimal zone
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* number appended.
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*/
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if (CFG.aka[i].zone == addr->zone)
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zpref[0] = '\0';
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else
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snprintf(zpref, 8, ".%03x", addr->zone);
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} else {
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/*
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* this is our primary domain
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*/
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if ((addr->zone == 0) || (addr->zone == CFG.aka[0].zone))
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zpref[0]='\0';
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else
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snprintf(zpref, 8, ".%03x",addr->zone);
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}
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}
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p = buf + strlen(buf);
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if (addr->point)
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snprintf(p, PATH_MAX -1, "%s/%04x%04x.pnt/%08x.", zpref,addr->net,addr->node,addr->point);
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else
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snprintf(p, PATH_MAX -1, "%s/%04x%04x.",zpref,addr->net,addr->node);
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if (domain)
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free(domain);
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return buf;
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}
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char *pktname(faddr *addr, char flavor)
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{
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static char *p, *q;
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p = prepbuf(addr);
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if (flavor == 'f')
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flavor = 'o';
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if (flavor == 'i')
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flavor = 'd';
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q = p + strlen(p);
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snprintf(q, PATH_MAX -1, "%c%s", flavor, ptyp);
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return p;
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}
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char *floname(faddr *addr, char flavor)
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{
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static char *p, *q;
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p = prepbuf(addr);
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if (flavor == 'o')
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flavor = 'f';
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if (flavor == 'i')
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flavor = 'd';
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q = p + strlen(p);
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snprintf(q, PATH_MAX -1, "%c%s", flavor, ftyp);
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return p;
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}
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char *reqname(faddr *addr)
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{
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static char *p, *q;
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p = prepbuf(addr);
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q = p + strlen(p);
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snprintf(q, PATH_MAX -1, "%s", rtyp);
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return p;
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}
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char *splname(faddr *addr)
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{
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static char *p, *q;
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p = prepbuf(addr);
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q = p + strlen(p);
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snprintf(q, PATH_MAX -1, "%s", styp);
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return p;
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}
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char *bsyname(faddr *addr)
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{
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static char *p, *q;
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p = prepbuf(addr);
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q = p + strlen(p);
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snprintf(q, PATH_MAX -1, "%s", btyp);
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return p;
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}
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char *stsname(faddr *addr)
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{
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static char *p, *q;
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p = prepbuf(addr);
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q = p + strlen(p);
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snprintf(q, PATH_MAX -1, "%s", qtyp);
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return p;
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}
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char *polname(faddr *addr)
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{
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static char *p, *q;
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p = prepbuf(addr);
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q = p + strlen(p);
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snprintf(q, PATH_MAX -1, "%s", ltyp);
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return p;
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}
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static char *dow[] = {(char *)"su", (char *)"mo", (char *)"tu", (char *)"we",
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(char *)"th", (char *)"fr", (char *)"sa"};
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char *dayname(void)
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{
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time_t tt;
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struct tm *ptm;
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static char buf[3];
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tt = time(NULL);
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ptm = localtime(&tt);
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snprintf(buf, 3, "%s", dow[ptm->tm_wday]);
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return buf;
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}
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char *arcname(faddr *addr, unsigned short Zone, int ARCmailCompat)
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{
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static char *buf;
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char *p;
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char *ext;
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time_t tt;
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struct tm *ptm;
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faddr *bestaka;
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tt = time(NULL);
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ptm = localtime(&tt);
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ext = dow[ptm->tm_wday];
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bestaka = bestaka_s(addr);
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buf = prepbuf(addr);
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p = strrchr(buf, '/');
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if (!ARCmailCompat && (Zone != addr->zone)) {
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/*
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* Generate ARCfile name from the CRC of the ASCII string
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* of the node address.
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*/
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snprintf(p, PATH_MAX -1, "/%08x.%s0", StringCRC32(ascfnode(addr, 0x1f)), ext);
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} else {
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if (addr->point) {
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snprintf(p, PATH_MAX -1, "/%04x%04x.%s0",
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((bestaka->net) - (addr->net)) & 0xffff,
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((bestaka->node) - (addr->node) + (addr->point)) & 0xffff,
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ext);
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} else if (bestaka->point) {
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/*
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* Inserted the next code for if we are a point,
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* I hope this is ARCmail 0.60 compliant. 21-May-1999
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*/
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snprintf(p, PATH_MAX -1, "/%04x%04x.%s0", ((bestaka->net) - (addr->net)) & 0xffff,
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((bestaka->node) - (addr->node) - (bestaka->point)) & 0xffff, ext);
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} else {
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snprintf(p, PATH_MAX -1, "/%04x%04x.%s0", ((bestaka->net) - (addr->net)) & 0xffff,
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((bestaka->node) - (addr->node)) &0xffff, ext);
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}
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}
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tidy_faddr(bestaka);
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return buf;
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}
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