f3fab3424a
A major unifdef session is sorely tempting but would destroy any remaining chance of tracking the original sources.
259 lines
5.7 KiB
C
259 lines
5.7 KiB
C
/*
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* Simple FTP transparent proxy for in-kernel use. For use with the NAT
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* code.
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*/
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#define isdigit(x) ((x) >= '0' && (x) <= '9')
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#define IPF_FTP_PROXY
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#define IPF_MINPORTLEN 18
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#define IPF_MAXPORTLEN 30
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int ippr_ftp_init __P((fr_info_t *, ip_t *, tcphdr_t *,
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ap_session_t *, nat_t *));
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int ippr_ftp_in __P((fr_info_t *, ip_t *, tcphdr_t *,
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ap_session_t *, nat_t *));
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int ippr_ftp_out __P((fr_info_t *, ip_t *, tcphdr_t *,
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ap_session_t *, nat_t *));
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u_short ipf_ftp_atoi __P((char **));
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/*
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* FTP application proxy initialization.
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*/
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int ippr_ftp_init(fin, ip, tcp, aps, nat)
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fr_info_t *fin;
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ip_t *ip;
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tcphdr_t *tcp;
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ap_session_t *aps;
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nat_t *nat;
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{
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aps->aps_sport = tcp->th_sport;
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aps->aps_dport = tcp->th_dport;
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return 0;
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}
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int ippr_ftp_in(fin, ip, tcp, aps, nat)
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fr_info_t *fin;
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ip_t *ip;
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tcphdr_t *tcp;
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ap_session_t *aps;
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nat_t *nat;
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{
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u_long sum1, sum2;
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short sel;
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if (tcp->th_sport == aps->aps_dport) {
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sum2 = (u_long)ntohl(tcp->th_ack);
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sel = aps->aps_sel;
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if ((aps->aps_after[!sel] > aps->aps_after[sel]) &&
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(sum2 > aps->aps_after[!sel])) {
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sel = aps->aps_sel = !sel; /* switch to other set */
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}
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if (aps->aps_seqoff[sel] && (sum2 > aps->aps_after[sel])) {
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sum1 = (u_long)aps->aps_seqoff[sel];
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tcp->th_ack = htonl(sum2 - sum1);
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return 2;
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}
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}
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return 0;
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}
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/*
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* ipf_ftp_atoi - implement a version of atoi which processes numbers in
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* pairs separated by commas (which are expected to be in the range 0 - 255),
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* returning a 16 bit number combining either side of the , as the MSB and
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* LSB.
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*/
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u_short ipf_ftp_atoi(ptr)
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char **ptr;
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{
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register char *s = *ptr, c;
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register u_char i = 0, j = 0;
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while ((c = *s++) && isdigit(c)) {
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i *= 10;
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i += c - '0';
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}
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if (c != ',') {
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*ptr = NULL;
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return 0;
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}
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while ((c = *s++) && isdigit(c)) {
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j *= 10;
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j += c - '0';
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}
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*ptr = s;
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return (i << 8) | j;
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}
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int ippr_ftp_out(fin, ip, tcp, aps, nat)
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fr_info_t *fin;
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ip_t *ip;
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tcphdr_t *tcp;
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ap_session_t *aps;
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nat_t *nat;
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{
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register u_long sum1, sum2;
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char newbuf[IPF_MAXPORTLEN+1];
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char portbuf[IPF_MAXPORTLEN+1], *s;
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int ch = 0, off = (ip->ip_hl << 2) + (tcp->th_off << 2);
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u_int a1, a2, a3, a4;
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u_short a5, a6;
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int olen, dlen, nlen = 0, inc = 0;
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tcphdr_t tcph, *tcp2 = &tcph;
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void *savep;
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nat_t *ipn;
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struct in_addr swip;
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mb_t *m = *(mb_t **)fin->fin_mp;
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#if SOLARIS
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mb_t *m1;
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/* skip any leading M_PROTOs */
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while(m && (MTYPE(m) != M_DATA))
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m = m->b_cont;
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PANIC((!m),("ippr_ftp_out: no M_DATA"));
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dlen = msgdsize(m) - off;
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bzero(portbuf, sizeof(portbuf));
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copyout_mblk(m, off, MIN(sizeof(portbuf), dlen), portbuf);
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#else
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dlen = mbufchainlen(m) - off;
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bzero(portbuf, sizeof(portbuf));
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m_copydata(m, off, MIN(sizeof(portbuf), dlen), portbuf);
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#endif
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portbuf[IPF_MAXPORTLEN] = '\0';
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if ((dlen < IPF_MINPORTLEN) || strncmp(portbuf, "PORT ", 5))
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goto adjust_seqack;
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/*
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* Skip the PORT command + space
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*/
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s = portbuf + 5;
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/*
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* Pick out the address components, two at a time.
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*/
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(void) ipf_ftp_atoi(&s);
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if (!s)
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goto adjust_seqack;
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(void) ipf_ftp_atoi(&s);
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if (!s)
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goto adjust_seqack;
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a5 = ipf_ftp_atoi(&s);
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if (!s)
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goto adjust_seqack;
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/*
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* check for CR-LF at the end.
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*/
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if (*s != '\n' || *(s - 1) != '\r')
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goto adjust_seqack;
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a6 = a5 & 0xff;
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a5 >>= 8;
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/*
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* Calculate new address parts for PORT command
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*/
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a1 = ntohl(ip->ip_src.s_addr);
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a2 = (a1 >> 16) & 0xff;
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a3 = (a1 >> 8) & 0xff;
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a4 = a1 & 0xff;
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a1 >>= 24;
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olen = s - portbuf + 1;
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(void) sprintf(newbuf, "PORT %d,%d,%d,%d,%d,%d\r\n",
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a1, a2, a3, a4, a5, a6);
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nlen = strlen(newbuf);
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inc = nlen - olen;
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#if SOLARIS
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for (m1 = m; m1->b_cont; m1 = m1->b_cont)
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;
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if (inc > 0) {
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mblk_t *nm;
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/* alloc enough to keep same trailer space for lower driver */
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nm = allocb(nlen + m1->b_datap->db_lim - m1->b_wptr, BPRI_MED);
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PANIC((!nm),("ippr_ftp_out: allocb failed"));
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nm->b_band = m1->b_band;
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nm->b_wptr += nlen;
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m1->b_wptr -= olen;
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PANIC((m1->b_wptr < m1->b_rptr),("ippr_ftp_out: cannot handle fragmented data block"));
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linkb(m1, nm);
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} else {
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m1->b_wptr += inc;
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}
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copyin_mblk(m, off, nlen, newbuf);
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#else
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if (inc < 0)
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m_adj(m, inc);
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/* the mbuf chain will be extended if necessary by m_copyback() */
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m_copyback(m, off, nlen, newbuf);
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#endif
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if (inc) {
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#if SOLARIS || defined(__sgi)
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sum1 = ip->ip_len;
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sum2 = ip->ip_len + inc;
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/* Because ~1 == -2, We really need ~1 == -1 */
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if (sum1 > sum2)
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sum2--;
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sum2 -= sum1;
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sum2 = (sum2 & 0xffff) + (sum2 >> 16);
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fix_outcksum(&ip->ip_sum, sum2);
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#endif
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ip->ip_len += inc;
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}
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ch = 1;
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/*
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* Add skeleton NAT entry for connection which will come back the
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* other way.
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*/
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savep = fin->fin_dp;
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fin->fin_dp = (char *)tcp2;
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bzero((char *)tcp2, sizeof(*tcp2));
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tcp2->th_sport = htons(a5 << 8 | a6);
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tcp2->th_dport = htons(20);
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swip = ip->ip_src;
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ip->ip_src = nat->nat_inip;
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if ((ipn = nat_new(nat->nat_ptr, ip, fin, IPN_TCP, NAT_OUTBOUND)))
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ipn->nat_age = fr_defnatage;
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(void) fr_addstate(ip, fin, FR_INQUE|FR_PASS|FR_QUICK|FR_KEEPSTATE);
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ip->ip_src = swip;
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fin->fin_dp = (char *)savep;
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adjust_seqack:
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if (tcp->th_dport == aps->aps_dport) {
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sum2 = (u_long)ntohl(tcp->th_seq);
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off = aps->aps_sel;
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if ((aps->aps_after[!off] > aps->aps_after[off]) &&
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(sum2 > aps->aps_after[!off])) {
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off = aps->aps_sel = !off; /* switch to other set */
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}
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if (aps->aps_seqoff[off]) {
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sum1 = (u_long)aps->aps_after[off] -
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aps->aps_seqoff[off];
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if (sum2 > sum1) {
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sum1 = (u_long)aps->aps_seqoff[off];
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sum2 += sum1;
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tcp->th_seq = htonl(sum2);
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ch = 1;
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}
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}
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if (inc && (sum2 > aps->aps_after[!off])) {
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aps->aps_after[!off] = sum2 + nlen - 1;
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aps->aps_seqoff[!off] = aps->aps_seqoff[off] + inc;
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}
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}
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return ch ? 2 : 0;
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}
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