272 lines
5.7 KiB
C
272 lines
5.7 KiB
C
/* $NetBSD: ip_pptp_pxy.c,v 1.1 2004/10/02 07:51:53 christos Exp $ */
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/*
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* Copyright (C) 2002-2003 by Darren Reed
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*
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* Simple PPTP transparent proxy for in-kernel use. For use with the NAT
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* code.
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*
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* Id: ip_pptp_pxy.c,v 2.10.2.5 2004/06/07 14:20:05 darrenr Exp
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*
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*/
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#define IPF_PPTP_PROXY
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typedef struct pptp_pxy {
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ipnat_t pptp_rule;
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nat_t *pptp_nat;
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ipstate_t *pptp_state;
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int pptp_seencookie;
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u_32_t pptp_cookie;
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} pptp_pxy_t;
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int ippr_pptp_init __P((void));
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void ippr_pptp_fini __P((void));
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int ippr_pptp_new __P((fr_info_t *, ap_session_t *, nat_t *));
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void ippr_pptp_del __P((ap_session_t *));
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int ippr_pptp_inout __P((fr_info_t *, ap_session_t *, nat_t *));
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int ippr_pptp_match __P((fr_info_t *, ap_session_t *, nat_t *));
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static frentry_t pptpfr;
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int pptp_proxy_init = 0;
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/*
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* PPTP application proxy initialization.
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*/
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int ippr_pptp_init()
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{
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bzero((char *)&pptpfr, sizeof(pptpfr));
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pptpfr.fr_ref = 1;
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pptpfr.fr_flags = FR_OUTQUE|FR_PASS|FR_QUICK|FR_KEEPSTATE;
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MUTEX_INIT(&pptpfr.fr_lock, "PPTP proxy rule lock");
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pptp_proxy_init = 1;
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return 0;
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}
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void ippr_pptp_fini()
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{
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if (pptp_proxy_init == 1) {
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MUTEX_DESTROY(&pptpfr.fr_lock);
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pptp_proxy_init = 0;
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}
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}
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/*
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* Setup for a new PPTP proxy.
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*/
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int ippr_pptp_new(fin, aps, nat)
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fr_info_t *fin;
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ap_session_t *aps;
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nat_t *nat;
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{
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pptp_pxy_t *pptp;
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fr_info_t fi;
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ipnat_t *ipn;
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nat_t *nat2;
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int p, off;
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ip_t *ip;
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ip = fin->fin_ip;
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off = fin->fin_hlen + sizeof(udphdr_t);
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if (nat_outlookup(fin, 0, IPPROTO_GRE, nat->nat_inip,
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ip->ip_dst) != NULL)
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return -1;
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aps->aps_psiz = sizeof(*pptp);
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KMALLOCS(aps->aps_data, pptp_pxy_t *, sizeof(*pptp));
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if (aps->aps_data == NULL)
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return -1;
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ip = fin->fin_ip;
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pptp = aps->aps_data;
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bzero((char *)pptp, sizeof(*pptp));
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/*
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* Create NAT rule against which the tunnel/transport mapping is
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* created. This is required because the current NAT rule does not
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* describe GRE but TCP instead.
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*/
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ipn = &pptp->pptp_rule;
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ipn->in_ifps[0] = fin->fin_ifp;
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ipn->in_apr = NULL;
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ipn->in_use = 1;
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ipn->in_hits = 1;
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ipn->in_nip = ntohl(nat->nat_outip.s_addr);
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ipn->in_ippip = 1;
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ipn->in_inip = nat->nat_inip.s_addr;
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ipn->in_inmsk = 0xffffffff;
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ipn->in_outip = fin->fin_saddr;
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ipn->in_outmsk = nat->nat_outip.s_addr;
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ipn->in_srcip = fin->fin_saddr;
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ipn->in_srcmsk = 0xffffffff;
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ipn->in_redir = NAT_MAP;
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bcopy(nat->nat_ptr->in_ifnames[0], ipn->in_ifnames[0],
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sizeof(ipn->in_ifnames[0]));
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ipn->in_p = IPPROTO_GRE;
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bcopy((char *)fin, (char *)&fi, sizeof(fi));
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fi.fin_fi.fi_p = IPPROTO_GRE;
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fi.fin_fr = &pptpfr;
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fi.fin_data[0] = 0;
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fi.fin_data[1] = 0;
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p = ip->ip_p;
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ip->ip_p = IPPROTO_GRE;
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fi.fin_flx &= ~FI_TCPUDP;
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fi.fin_flx |= FI_IGNORE;
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nat2 = nat_new(&fi, ipn, &pptp->pptp_nat, 0, NAT_OUTBOUND);
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pptp->pptp_nat = nat2;
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if (nat2 != NULL) {
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(void) nat_proto(&fi, nat2, 0);
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nat_update(&fi, nat2, nat2->nat_ptr);
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fi.fin_data[0] = 0;
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fi.fin_data[1] = 0;
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pptp->pptp_state = fr_addstate(&fi, &pptp->pptp_state, 0);
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}
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ip->ip_p = p;
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return 0;
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}
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/*
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* For outgoing PPTP packets. refresh timeouts for NAT & state entries, if
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* we can. If they have disappeared, recreate them.
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*/
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int ippr_pptp_inout(fin, aps, nat)
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fr_info_t *fin;
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ap_session_t *aps;
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nat_t *nat;
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{
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pptp_pxy_t *pptp;
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fr_info_t fi;
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nat_t *nat2;
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ip_t *ip;
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int p;
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if ((fin->fin_out == 1) && (nat->nat_dir == NAT_INBOUND))
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return 0;
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if ((fin->fin_out == 0) && (nat->nat_dir == NAT_OUTBOUND))
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return 0;
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pptp = aps->aps_data;
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if (pptp != NULL) {
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ip = fin->fin_ip;
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p = ip->ip_p;
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if ((pptp->pptp_nat == NULL) || (pptp->pptp_state == NULL)) {
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bcopy((char *)fin, (char *)&fi, sizeof(fi));
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fi.fin_fi.fi_p = IPPROTO_GRE;
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fi.fin_fr = &pptpfr;
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fi.fin_data[0] = 0;
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fi.fin_data[1] = 0;
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ip->ip_p = IPPROTO_GRE;
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fi.fin_flx &= ~FI_TCPUDP;
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fi.fin_flx |= FI_IGNORE;
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}
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/*
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* Update NAT timeout/create NAT if missing.
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*/
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if (pptp->pptp_nat != NULL)
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fr_queueback(&pptp->pptp_nat->nat_tqe);
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else {
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nat2 = nat_new(&fi, &pptp->pptp_rule, &pptp->pptp_nat,
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NAT_SLAVE, nat->nat_dir);
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pptp->pptp_nat = nat2;
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if (nat2 != NULL) {
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(void) nat_proto(&fi, nat2, 0);
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nat_update(&fi, nat2, nat2->nat_ptr);
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}
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}
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/*
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* Update state timeout/create state if missing.
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*/
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READ_ENTER(&ipf_state);
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if (pptp->pptp_state != NULL) {
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fr_queueback(&pptp->pptp_state->is_sti);
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RWLOCK_EXIT(&ipf_state);
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} else {
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RWLOCK_EXIT(&ipf_state);
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fi.fin_data[0] = 0;
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fi.fin_data[1] = 0;
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pptp->pptp_state = fr_addstate(&fi, &pptp->pptp_state,
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0);
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}
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ip->ip_p = p;
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}
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return 0;
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}
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/*
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* clean up after ourselves.
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*/
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void ippr_pptp_del(aps)
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ap_session_t *aps;
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{
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pptp_pxy_t *pptp;
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pptp = aps->aps_data;
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if (pptp != NULL) {
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/*
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* Don't bother changing any of the NAT structure details,
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* *_del() is on a callback from aps_free(), from nat_delete()
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*/
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READ_ENTER(&ipf_state);
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if (pptp->pptp_state != NULL) {
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pptp->pptp_state->is_die = fr_ticks + 1;
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pptp->pptp_state->is_me = NULL;
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fr_queuefront(&pptp->pptp_state->is_sti);
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}
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RWLOCK_EXIT(&ipf_state);
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pptp->pptp_state = NULL;
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pptp->pptp_nat = NULL;
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}
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}
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int ippr_pptp_match(fin, aps, nat)
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fr_info_t *fin;
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ap_session_t *aps;
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nat_t *nat;
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{
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pptp_pxy_t *pptp;
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tcphdr_t *tcp;
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u_32_t cookie;
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pptp = aps->aps_data;
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tcp = fin->fin_dp;
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if ((pptp != NULL) && (fin->fin_dlen - (TCP_OFF(tcp) << 2) >= 8)) {
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u_char *cs;
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cs = (u_char *)tcp + (TCP_OFF(tcp) << 2) + 4;
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if (pptp->pptp_seencookie == 0) {
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pptp->pptp_seencookie = 1;
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pptp->pptp_cookie = (cs[0] << 24) | (cs[1] << 16) |
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(cs[2] << 8) | cs[3];
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} else {
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cookie = (cs[0] << 24) | (cs[1] << 16) |
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(cs[2] << 8) | cs[3];
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if (cookie != pptp->pptp_cookie)
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return -1;
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}
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}
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return 0;
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}
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