660 lines
18 KiB
C
660 lines
18 KiB
C
/*****************************************************************************
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*
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* $Id$
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* Purpose ...............: Fidonet mailer
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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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/* Added modifications made on 9 Jun 1996 by P.Saratxaga
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* - added "Hello" structure (from FTS-0006) so we can more easily
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* parse it.
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* - added domain support in hello packet (in Hello.name, reading after
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* first \0 there is the domain)
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* - added support for 16 bit product code
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*/
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#include "../config.h"
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#include "../lib/mbselib.h"
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#include "../lib/nodelist.h"
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#include "../lib/users.h"
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#include "../lib/mbsedb.h"
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#include "statetbl.h"
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#include "ttyio.h"
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#include "session.h"
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#include "config.h"
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#include "emsi.h"
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#include "hydra.h"
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#include "rdoptions.h"
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#include "wazoo.h"
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#include "dietifna.h"
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#include "yoohoo.h"
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#include "inbound.h"
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#include "callstat.h"
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/*------------------------------------------------------------------------*/
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/* YOOHOO<tm> CAPABILITY VALUES */
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/*------------------------------------------------------------------------*/
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#define Y_DIETIFNA 0x0001 /* Can do fast "FTS-0001" 0000 0000 0000 0001 */
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#define FTB_USER 0x0002 /* Full-Tilt Boogie 0000 0000 0000 0010 */
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#define ZED_ZIPPER 0x0004 /* Does ZModem, 1K blocks 0000 0000 0000 0100 */
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#define ZED_ZAPPER 0x0008 /* Can do ZModem variant 0000 0000 0000 1000 */
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#define DOES_IANUS 0x0010 /* Can do Janus 0000 0000 0001 0000 */
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#define DOES_HYDRA 0x0020 /* Can do Hydra 0000 0000 0010 0000 */
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#define Bit_6 0x0040 /* reserved by FTSC 0000 0000 0100 0000 */
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#define Bit_7 0x0080 /* reserved by FTSC 0000 0000 1000 0000 */
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#define Bit_8 0x0100 /* reserved by FTSC 0000 0001 0000 0000 */
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#define Bit_9 0x0200 /* reserved by FTSC 0000 0010 0000 0000 */
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#define Bit_a 0x0400 /* reserved by FTSC 0000 0100 0000 0000 */
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#define Bit_b 0x0800 /* reserved by FTSC 0000 1000 0000 0000 */
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#define Bit_c 0x1000 /* reserved by FTSC 0001 0000 0000 0000 */
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#define Bit_d 0x2000 /* reserved by FTSC 0010 0000 0000 0000 */
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#define DO_DOMAIN 0x4000 /* Packet contains domain 0100 0000 0000 0000 */
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#define WZ_FREQ 0x8000 /* WZ file req. ok 1000 0000 0000 0000 */
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#define LOCALCAPS (Y_DIETIFNA|ZED_ZIPPER|ZED_ZAPPER|DOES_HYDRA|DO_DOMAIN)
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static int rxyoohoo(void);
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static int txyoohoo(void);
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static void fillhello(unsigned short,char*);
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static int checkhello(void);
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static int y_akas;
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static int iscaller;
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static struct _hello {
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unsigned char data[128];
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unsigned char crc[2];
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} hello;
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typedef struct _Hello {
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unsigned short signal; /* always 'o' (0x6f) */
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unsigned short hello_version; /* currently 1 (0x01) */
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unsigned short product; /* product code */
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unsigned short product_maj; /* major revision of the product */
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unsigned short product_min; /* minor revision of the product */
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unsigned char my_name[60]; /* Other end's name, will include domain */
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/* if DO_DOMAIN is set in capabilities */
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unsigned char sysop[20]; /* sysop's name */
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unsigned short my_zone; /* 0== not supported */
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unsigned short my_net; /* out primary net number */
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unsigned short my_node; /* our primary node number */
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unsigned short my_point; /* 0 == not supported */
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unsigned char my_password[8]; /* This isn't necessarily null-terminated */
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unsigned char reserved2[8]; /* reserved by Opus */
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unsigned short capabilities; /* see below */
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unsigned char reserved3[12]; /* for non-Opus systems with "approval" */
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/* total size 128 bytes */
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} Hello;
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extern int Loaded;
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extern pid_t mypid;
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extern int laststat;
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extern int session_state;
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Hello hello2;
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Hello gethello2(unsigned char[]);
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int rx_yoohoo(void)
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{
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int rc, protect = FALSE;
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unsigned short capabilities,localcaps;
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char *pwd = NULL;
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callstat *cst;
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pwd = NULL;
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y_akas = 0;
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localcaps = LOCALCAPS;
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if (localoptions & NOZMODEM) localcaps &= ~(ZED_ZAPPER|ZED_ZIPPER);
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if (localoptions & NOZEDZAP) localcaps &= ~ZED_ZAPPER;
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if (localoptions & NOHYDRA) localcaps &= ~DOES_HYDRA;
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emsi_local_opts = 0;
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emsi_remote_opts = 0;
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iscaller = 0;
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if ((rc = rxyoohoo()) == 0) {
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Loaded = checkhello();
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if (y_akas == 0) {
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Syslog('+', "All akas busy, abort");
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return MBERR_SESSION_ERROR;
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}
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capabilities = hello2.capabilities;
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if (capabilities & WZ_FREQ)
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session_flags |= SESSION_WAZOO;
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else
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session_flags &= ~SESSION_WAZOO;
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localcaps &= capabilities;
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if (localcaps & DOES_HYDRA)
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localcaps &= DOES_HYDRA;
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else if (localcaps & ZED_ZAPPER)
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localcaps &= ZED_ZAPPER;
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else if (localcaps & ZED_ZIPPER)
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localcaps &= ZED_ZIPPER;
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else if (localcaps & FTB_USER)
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localcaps &= FTB_USER;
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else if (localcaps & Y_DIETIFNA)
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localcaps &= Y_DIETIFNA;
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if ((localoptions & NOFREQS) == 0)
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localcaps |= WZ_FREQ;
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else
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emsi_local_opts |= OPT_NRQ;
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if (((nlent=getnlent(remote->addr))) && (nlent->pflag != NL_DUMMY)) {
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Syslog('+', "Remote is a listed system");
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strncpy(history.location, nlent->location, 35);
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UserCity(mypid, nlent->sysop, nlent->location);
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}
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cst = getstatus(remote->addr);
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if (cst->trystat)
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laststat = cst->trystat;
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Syslog('s', "Last session status %d", laststat);
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if (nlent)
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rdoptions(Loaded);
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if (strlen(nodes.Spasswd)) {
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if ((strncasecmp((char*)hello2.my_password, nodes.Spasswd, strlen(nodes.Spasswd)) == 0) &&
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(strlen((char*)hello2.my_password) == strlen(nodes.Spasswd))) {
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Syslog('+', "Password correct, protected mail session");
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protect = TRUE;
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pwd = xstrcpy(nodes.Spasswd);
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} else {
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if (pwd)
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free(pwd);
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pwd = xstrcpy((char *)"BAD_PASS");
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Syslog('?', "Remote password \"%s\", expected \"%s\"", (char*)hello2.my_password, nodes.Spasswd);
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localcaps = 0;
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}
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} else
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Syslog('s', "No YooHoo password check");
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inbound_open(remote->addr, protect, FALSE);
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fillhello(localcaps,pwd);
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rc = txyoohoo();
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if (pwd)
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free(pwd);
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}
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if ((rc == 0) && ((localcaps & LOCALCAPS) == 0)) {
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Syslog('+', "No common protocols or bad password");
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return 0;
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}
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if (rc)
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return MBERR_YOOHOO;
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IsDoing("Inbound %s", ascfnode(remote->addr, 0x0f));
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if (protect)
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session_state = STATE_SECURE;
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else
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session_state = STATE_UNSECURE;
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session_flags |= SESSION_WAZOO;
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if (localcaps & DOES_HYDRA)
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return hydra(0);
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else if ((localcaps & ZED_ZAPPER) || (localcaps & ZED_ZIPPER)) {
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if (localcaps & ZED_ZAPPER)
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emsi_local_protos = PROT_ZAP;
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else
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emsi_local_protos = PROT_ZMO;
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return rxwazoo();
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} else if (localcaps & Y_DIETIFNA)
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return rxdietifna();
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WriteError("YooHoo internal error - no proto for 0x%04xh",localcaps);
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return MBERR_YOOHOO;
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}
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int tx_yoohoo(void)
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{
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int rc;
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unsigned short capabilities;
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char *pwd;
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y_akas = 0;
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if (strlen(nodes.Spasswd))
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pwd = xstrcpy(nodes.Spasswd);
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else
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pwd = NULL;
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capabilities = LOCALCAPS;
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if (localoptions & NOZMODEM)
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capabilities &= ~(ZED_ZAPPER|ZED_ZIPPER);
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if (localoptions & NOZEDZAP)
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capabilities &= ~ZED_ZAPPER;
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if (localoptions & NOHYDRA)
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capabilities &= ~DOES_HYDRA;
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if ((localoptions & NOFREQS) == 0)
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capabilities |= WZ_FREQ;
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else
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emsi_local_opts |= OPT_NRQ;
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fillhello(capabilities,pwd);
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iscaller=1;
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if ((rc = txyoohoo()) == 0) {
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rc = rxyoohoo();
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checkhello();
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capabilities = hello2.capabilities;
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if (capabilities & WZ_FREQ)
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session_flags |= SESSION_WAZOO;
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else
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session_flags &= ~SESSION_WAZOO;
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}
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if (y_akas == 0) {
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Syslog('+', "All akas busy, abort");
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return MBERR_SESSION_ERROR;
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}
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if ((rc == 0) && ((capabilities & LOCALCAPS) == 0)) {
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Syslog('+', "No common protocols");
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return MBERR_SESSION_ERROR;
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}
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if (rc)
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return MBERR_YOOHOO;
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IsDoing("Outbound %s", ascfnode(remote->addr, 0x0f));
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session_state = STATE_SECURE;
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session_flags |= SESSION_WAZOO;
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if (capabilities & DOES_HYDRA)
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return hydra(1);
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else if ((capabilities & ZED_ZAPPER) || (capabilities & ZED_ZIPPER)) {
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if (capabilities & ZED_ZAPPER)
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emsi_local_protos = PROT_ZAP;
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else
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emsi_local_protos = PROT_ZMO;
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return txwazoo();
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} else if (capabilities & Y_DIETIFNA)
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return txdietifna();
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WriteError("YooHoo internal error - no proto for 0x%04xh",capabilities);
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return MBERR_YOOHOO;
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}
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SM_DECL(rxyoohoo,(char *)"rxyoohoo")
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SM_STATES
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sendenq,
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waitchar,
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getpacket,
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sendnak,
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sendack
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SM_NAMES
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(char *)"sendenq",
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(char *)"waitchar",
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(char *)"getpacket",
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(char *)"sendnak",
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(char *)"sendack"
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SM_EDECL
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int c, count=0;
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unsigned short lcrc, rcrc;
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SM_START(sendenq)
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SM_STATE(sendenq)
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if (count++ > 12) {
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Syslog('+', "Too many tries to get YooHoo hello packet");
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SM_ERROR;
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}
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PUTCHAR(ENQ);
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SM_PROCEED(waitchar)
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SM_STATE(waitchar)
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c=GETCHAR(10);
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if (c == TIMEOUT) {
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SM_PROCEED(sendenq);
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} else if (c < 0) {
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SM_ERROR;
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} else switch (c) {
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case 0x1f: SM_PROCEED(getpacket);
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break;
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case YOOHOO: SM_PROCEED(sendenq);
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break;
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default: SM_PROCEED(waitchar);
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break;
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}
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SM_STATE(getpacket)
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GET((char*)&hello, sizeof(hello), 30);
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if (STATUS) {
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SM_ERROR;
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}
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lcrc = crc16xmodem((char*)hello.data, sizeof(hello.data));
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rcrc = (hello.crc[0] << 8) + hello.crc[1];
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if (lcrc != rcrc) {
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Syslog('+',"crc does not match in YooHoo hello packet: %04xh/%04xh", rcrc,lcrc);
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SM_PROCEED(sendnak);
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} else {
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SM_PROCEED(sendack);
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}
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SM_STATE(sendnak)
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if (count++ > 9) {
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Syslog('+', "Too many tries to get YooHoo hello packet");
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SM_ERROR;
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}
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PUTCHAR('?');
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SM_PROCEED(waitchar);
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SM_STATE(sendack)
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PUTCHAR(ACK);
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SM_SUCCESS;
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SM_END
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SM_RETURN
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SM_DECL(txyoohoo,(char *)"txyoohoo")
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SM_STATES
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sendyoohoo,
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waitenq,
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sendpkt,
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waitchar
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SM_NAMES
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(char *)"sendyoohoo",
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(char *)"waitenq",
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(char *)"sendpkt",
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(char *)"waitchar"
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SM_EDECL
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int c, count = 0, startstate;
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unsigned short lcrc;
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if (iscaller)
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startstate = sendpkt;
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else
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startstate = sendyoohoo;
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lcrc = crc16xmodem((char*)hello.data, sizeof(hello.data));
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hello.crc[0] = lcrc >> 8;
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hello.crc[1] = lcrc & 0xff;
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SM_START(startstate)
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SM_STATE(sendyoohoo)
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PUTCHAR(YOOHOO);
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SM_PROCEED(waitenq);
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SM_STATE(waitenq)
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c=GETCHAR(10);
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if (c == TIMEOUT) {
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if (count++ > 9) {
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Syslog('+', "Timeout waiting ENQ");
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SM_ERROR;
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} else {
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SM_PROCEED(sendyoohoo);
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}
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} else if (c < 0) {
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SM_ERROR;
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} else switch (c) {
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case ENQ: SM_PROCEED(sendpkt);
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case YOOHOO: SM_PROCEED(waitenq);
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default: Syslog('+',"Got '%s' waiting hello ACK", printablec(c));
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SM_PROCEED(waitchar);
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break;
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}
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SM_STATE(sendpkt)
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if (count++ > 9) {
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Syslog('+', "Too many tries to send YooHoo hello packet");
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SM_ERROR;
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}
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PUTCHAR(0x1f);
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PUT((char*)&hello, sizeof(hello));
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if (STATUS) {
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SM_ERROR;
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}
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SM_PROCEED(waitchar);
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SM_STATE(waitchar)
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c=GETCHAR(30);
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if (c == TIMEOUT) {
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Syslog('+', "Timeout waiting hello ACK");
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SM_ERROR;
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} else if (c < 0) {
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SM_ERROR;
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} else switch (c) {
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case ACK: SM_SUCCESS;
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break;
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case '?': SM_PROCEED(sendpkt);
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break;
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case ENQ: SM_PROCEED(sendpkt);
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break;
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default: SM_PROCEED(waitchar);
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break;
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}
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SM_END
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SM_RETURN
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void fillhello(unsigned short capabilities, char *password)
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{
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faddr *best;
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unsigned short majver, minver;
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best = bestaka_s(remote->addr);
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sscanf(VERSION,"%hd.%hd", &majver, &minver);
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memset(&hello, 0, sizeof(hello));
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hello.data[0] = 'o'; /* signal */
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hello.data[2] = 1; /* hello-version */
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hello.data[4] = (PRODCODE & 0x00ff); /* product code */
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hello.data[5] = (PRODCODE & 0xff00) >> 8; /* product code */
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hello.data[6] = (VERSION_MAJOR & 0x00ff); /* prod-ver-major */
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hello.data[7] = (VERSION_MAJOR & 0xff00) >> 8; /* prod-ver-major */
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hello.data[8] = (VERSION_MINOR & 0x00ff); /* prod-ver-minor */
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hello.data[9] = (VERSION_MINOR & 0xff00) >> 8; /* prod-ver-minor */
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strncpy((char*)hello.data+10, name?name:"Unavailable",59); /* name */
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if (name) {
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hello.data[10+strlen(name)] = '\0';
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strncpy((char*)hello.data+11 + strlen(name),
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best->domain, 58-strlen(name)); /* domain */
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} else
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strncpy((char*)hello.data + 22, best->domain, 47); /* domain */
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strncpy((char*)hello.data+70, CFG.sysop_name,19); /* sysop */
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hello.data[90] = best->zone&0xff; /* zone */
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hello.data[91] = best->zone>>8; /* zone */
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hello.data[92] = best->net&0xff; /* net */
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hello.data[93] = best->net>>8; /* net */
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hello.data[94] = best->node&0xff; /* node */
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hello.data[95] = best->node>>8; /* node */
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hello.data[96] = best->point&0xff; /* point */
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hello.data[97] = best->point>>8; /* point */
|
|
|
|
if (password)
|
|
strncpy((char*)hello.data + 98, password, 8);
|
|
|
|
hello.data[114] = capabilities & 0xff; /* capabilities */
|
|
hello.data[115] = capabilities >> 8; /* capabilities */
|
|
tidy_faddr(best);
|
|
}
|
|
|
|
|
|
|
|
int checkhello(void)
|
|
{
|
|
unsigned short i, majver = 0, minver = 0;
|
|
fa_list **tmpl, *tmpa;
|
|
faddr remaddr;
|
|
char *prodnm, *q;
|
|
int loaded = FALSE;
|
|
|
|
Syslog('s',"check hello \"%s\"",printable((char*)hello.data,128));
|
|
hello2 = gethello2(hello.data);
|
|
|
|
if ((hello2.signal != 0x6f) || (hello2.hello_version != 0x01)) {
|
|
Syslog('+', "Got \"%s\" instead of \"o\\000\\001\000\"", printable((char*)hello.data,3));
|
|
}
|
|
|
|
prodnm = xstrcpy((char *)"<unknown program>");
|
|
for (i = 0; ftscprod[i].name; i++) {
|
|
if (ftscprod[i].code == hello2.product) {
|
|
free(prodnm);
|
|
prodnm = xstrcpy(ftscprod[i].name);
|
|
majver = hello2.product_maj;
|
|
minver = hello2.product_min;
|
|
break;
|
|
}
|
|
}
|
|
|
|
remaddr.zone = hello2.my_zone;
|
|
remaddr.net = hello2.my_net;
|
|
remaddr.node = hello2.my_node;
|
|
remaddr.point = hello2.my_point;
|
|
remaddr.name = NULL;
|
|
remaddr.domain = NULL;
|
|
if (hello2.my_name[0])
|
|
remaddr.domain = (char *)hello2.my_name + (strlen((char *)hello2.my_name)) + 1;
|
|
if (remaddr.domain[0]) {
|
|
if ((q = strchr(remaddr.domain, '.')))
|
|
*q = '\0';
|
|
} else {
|
|
remaddr.domain = NULL;
|
|
}
|
|
if (remote)
|
|
Syslog('s',"Remote known address: %s",ascfnode(remote->addr,0x1f));
|
|
|
|
for (tmpl = &remote; *tmpl; tmpl = &((*tmpl)->next));
|
|
if ((remote == NULL) || (metric(remote->addr, &remaddr) != 0)) {
|
|
(*tmpl) = (fa_list*)malloc(sizeof(fa_list));
|
|
(*tmpl)->next = NULL;
|
|
(*tmpl)->addr = (faddr*)malloc(sizeof(faddr));
|
|
(*tmpl)->addr->zone = remaddr.zone;
|
|
(*tmpl)->addr->net = remaddr.net;
|
|
(*tmpl)->addr->node = remaddr.node;
|
|
(*tmpl)->addr->point = remaddr.point;
|
|
(*tmpl)->addr->domain = xstrcpy(remaddr.domain);
|
|
(*tmpl)->addr->name = NULL; /* Added 15-Dec-1998 */
|
|
} else {
|
|
tmpl=&remote;
|
|
Syslog('s',"Using single remote address");
|
|
}
|
|
|
|
tmpl = &remote;
|
|
while (*tmpl) {
|
|
if (nodelock((*tmpl)->addr, mypid)) {
|
|
Syslog('+', " address: %s is locked, removed from aka list",ascfnode((*tmpl)->addr,0x1f));
|
|
tmpa = *tmpl;
|
|
*tmpl = (*tmpl)->next;
|
|
tidy_faddr(tmpa->addr);
|
|
free(tmpa);
|
|
} else {
|
|
Syslog('+', " address: %s",ascfnode((*tmpl)->addr,0x1f));
|
|
y_akas++;
|
|
/*
|
|
* With the loaded flag we prevent removing the noderecord
|
|
* when the remote presents us an address we don't know about.
|
|
*/
|
|
if (!Loaded) {
|
|
if (noderecord((*tmpl)->addr))
|
|
Loaded = TRUE;
|
|
}
|
|
tmpl = &((*tmpl)->next);
|
|
}
|
|
}
|
|
|
|
if (y_akas) { /* Only set if we have aka's left */
|
|
history.aka.zone = remote->addr->zone;
|
|
history.aka.net = remote->addr->net;
|
|
history.aka.node = remote->addr->node;
|
|
history.aka.point = remote->addr->point;
|
|
}
|
|
|
|
if (hello2.product < 0x0100)
|
|
Syslog('+', " uses: %s [%02X] version %d.%d", prodnm, hello2.product, majver, minver);
|
|
else
|
|
Syslog('+', " uses: %s [%04X] version %d.%d", prodnm, hello2.product, majver, minver);
|
|
Syslog('+', " system: %s",(char*)hello2.my_name);
|
|
strncpy(history.system_name, (char *)hello2.my_name, 35);
|
|
Syslog('+', " sysop: %s",(char*)hello2.sysop);
|
|
strncpy(history.sysop, (char *)hello2.sysop, 35);
|
|
snprintf(history.location, 10, "Somewhere");
|
|
|
|
free(prodnm);
|
|
return loaded;
|
|
}
|
|
|
|
|
|
|
|
Hello gethello2(unsigned char Hellop[])
|
|
{
|
|
int i;
|
|
Hello p;
|
|
|
|
p.signal=Hellop[0]+(Hellop[1]<<8);
|
|
p.hello_version=Hellop[2]+(Hellop[3]<<8);
|
|
p.product=Hellop[4]+(Hellop[5]<<8);
|
|
p.product_maj=Hellop[6]+(Hellop[7]<<8);
|
|
p.product_min=Hellop[8]+(Hellop[9]<<8);
|
|
for (i=0;i<60;i++)
|
|
p.my_name[i]=Hellop[10+i];
|
|
for (i=0;i<20;i++)
|
|
p.sysop[i]=Hellop[70+i];
|
|
p.my_zone=Hellop[90]+(Hellop[91]<<8);
|
|
p.my_net=Hellop[92]+(Hellop[93]<<8);
|
|
p.my_node=Hellop[94]+(Hellop[95]<<8);
|
|
p.my_point=Hellop[96]+(Hellop[97]<<8);
|
|
for (i=0;i<8;i++)
|
|
p.my_password[i]=Hellop[98+i];
|
|
for (i=0;i<8;i++)
|
|
p.reserved2[i]=Hellop[106+i];
|
|
p.capabilities=Hellop[114]+(Hellop[115]<<8);
|
|
for (i=0;i<12;i++)
|
|
p.reserved3[i]=Hellop[116+i];
|
|
|
|
return p;
|
|
}
|
|
|