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npf_state_tcp.c revision 1.1.2.1
      1  1.1.2.1    mrg /*	$NetBSD: npf_state_tcp.c,v 1.1.2.1 2012/02/18 07:35:38 mrg Exp $	*/
      2      1.1  rmind 
      3      1.1  rmind /*-
      4      1.1  rmind  * Copyright (c) 2010-2011 The NetBSD Foundation, Inc.
      5      1.1  rmind  * All rights reserved.
      6      1.1  rmind  *
      7      1.1  rmind  * This material is based upon work partially supported by The
      8      1.1  rmind  * NetBSD Foundation under a contract with Mindaugas Rasiukevicius.
      9      1.1  rmind  *
     10      1.1  rmind  * Redistribution and use in source and binary forms, with or without
     11      1.1  rmind  * modification, are permitted provided that the following conditions
     12      1.1  rmind  * are met:
     13      1.1  rmind  * 1. Redistributions of source code must retain the above copyright
     14      1.1  rmind  *    notice, this list of conditions and the following disclaimer.
     15      1.1  rmind  * 2. Redistributions in binary form must reproduce the above copyright
     16      1.1  rmind  *    notice, this list of conditions and the following disclaimer in the
     17      1.1  rmind  *    documentation and/or other materials provided with the distribution.
     18      1.1  rmind  *
     19      1.1  rmind  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20      1.1  rmind  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21      1.1  rmind  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22      1.1  rmind  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23      1.1  rmind  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24      1.1  rmind  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25      1.1  rmind  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26      1.1  rmind  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27      1.1  rmind  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28      1.1  rmind  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29      1.1  rmind  * POSSIBILITY OF SUCH DAMAGE.
     30      1.1  rmind  */
     31      1.1  rmind 
     32      1.1  rmind /*
     33      1.1  rmind  * NPF TCP state engine for connection tracking.
     34      1.1  rmind  */
     35      1.1  rmind 
     36      1.1  rmind #include <sys/cdefs.h>
     37  1.1.2.1    mrg __KERNEL_RCSID(0, "$NetBSD: npf_state_tcp.c,v 1.1.2.1 2012/02/18 07:35:38 mrg Exp $");
     38      1.1  rmind 
     39      1.1  rmind #include <sys/param.h>
     40      1.1  rmind #include <sys/types.h>
     41      1.1  rmind 
     42      1.1  rmind #ifndef _KERNEL
     43      1.1  rmind #include <stdio.h>
     44      1.1  rmind #include <stdbool.h>
     45      1.1  rmind #include <inttypes.h>
     46      1.1  rmind #endif
     47      1.1  rmind #include <netinet/in.h>
     48      1.1  rmind #include <netinet/tcp.h>
     49      1.1  rmind #include <netinet/tcp_seq.h>
     50      1.1  rmind 
     51      1.1  rmind #include "npf_impl.h"
     52      1.1  rmind 
     53      1.1  rmind #if defined(_NPF_TESTING)
     54      1.1  rmind void	npf_state_sample(npf_state_t *);
     55      1.1  rmind #define	NPF_TCP_STATE_SAMPLE(nst)	npf_state_sample(nst)
     56      1.1  rmind #else
     57      1.1  rmind #define	NPF_TCP_STATE_SAMPLE(nst)
     58      1.1  rmind #endif
     59      1.1  rmind 
     60      1.1  rmind /*
     61      1.1  rmind  * NPF TCP states.  Note: these states are different from the TCP FSM
     62      1.1  rmind  * states of RFC 793.  Mind that packet filter is a man-in-the-middle.
     63      1.1  rmind  */
     64      1.1  rmind #define NPF_TCPS_OK		(-1)
     65      1.1  rmind #define	NPF_TCPS_CLOSED		0
     66      1.1  rmind #define	NPF_TCPS_SYN_SENT	1
     67      1.1  rmind #define	NPF_TCPS_SIMSYN_SENT	2
     68      1.1  rmind #define	NPF_TCPS_SYN_RECEIVED	3
     69      1.1  rmind #define	NPF_TCPS_ESTABLISHED	4
     70      1.1  rmind #define	NPF_TCPS_FIN_SEEN	5
     71      1.1  rmind #define	NPF_TCPS_CLOSE_WAIT	6
     72      1.1  rmind #define	NPF_TCPS_FIN_WAIT	7
     73      1.1  rmind #define	NPF_TCPS_CLOSING	8
     74      1.1  rmind #define	NPF_TCPS_LAST_ACK	9
     75      1.1  rmind #define	NPF_TCPS_TIME_WAIT	10
     76      1.1  rmind 
     77      1.1  rmind #define	NPF_TCP_NSTATES		11
     78      1.1  rmind 
     79      1.1  rmind /*
     80      1.1  rmind  * TCP connection timeout table (in seconds).
     81      1.1  rmind  */
     82  1.1.2.1    mrg static u_int npf_tcp_timeouts[] __read_mostly = {
     83      1.1  rmind 	/* Closed, timeout nearly immediately. */
     84      1.1  rmind 	[NPF_TCPS_CLOSED]	= 10,
     85      1.1  rmind 	/* Unsynchronised states. */
     86      1.1  rmind 	[NPF_TCPS_SYN_SENT]	= 30,
     87      1.1  rmind 	[NPF_TCPS_SIMSYN_SENT]	= 30,
     88      1.1  rmind 	[NPF_TCPS_SYN_RECEIVED]	= 60,
     89      1.1  rmind 	/* Established, timeout: 24 hours. */
     90      1.1  rmind 	[NPF_TCPS_ESTABLISHED]	= 60 * 60 * 24,
     91      1.1  rmind 	/* Closure cases, timeout: 4 minutes (2 * MSL). */
     92      1.1  rmind 	[NPF_TCPS_FIN_SEEN]	= 60 * 2 * 2,
     93      1.1  rmind 	[NPF_TCPS_CLOSE_WAIT]	= 60 * 2 * 2,
     94      1.1  rmind 	[NPF_TCPS_FIN_WAIT]	= 60 * 2 * 2,
     95      1.1  rmind 	[NPF_TCPS_CLOSING]	= 30,
     96      1.1  rmind 	[NPF_TCPS_LAST_ACK]	= 30,
     97      1.1  rmind 	[NPF_TCPS_TIME_WAIT]	= 60 * 2 * 2,
     98      1.1  rmind };
     99      1.1  rmind 
    100      1.1  rmind #define	NPF_TCP_MAXACKWIN	66000
    101      1.1  rmind 
    102  1.1.2.1    mrg /*
    103  1.1.2.1    mrg  * List of TCP flag cases and conversion of flags to a case (index).
    104  1.1.2.1    mrg  */
    105  1.1.2.1    mrg 
    106  1.1.2.1    mrg #define	TCPFC_INVALID		0
    107  1.1.2.1    mrg #define	TCPFC_SYN		1
    108  1.1.2.1    mrg #define	TCPFC_SYNACK		2
    109  1.1.2.1    mrg #define	TCPFC_ACK		3
    110  1.1.2.1    mrg #define	TCPFC_FIN		4
    111  1.1.2.1    mrg #define	TCPFC_COUNT		5
    112  1.1.2.1    mrg 
    113  1.1.2.1    mrg static inline u_int
    114  1.1.2.1    mrg npf_tcpfl2case(const int tcpfl)
    115  1.1.2.1    mrg {
    116  1.1.2.1    mrg 	u_int i, c;
    117  1.1.2.1    mrg 
    118  1.1.2.1    mrg 	CTASSERT(TH_FIN == 0x01);
    119  1.1.2.1    mrg 	CTASSERT(TH_SYN == 0x02);
    120  1.1.2.1    mrg 	CTASSERT(TH_ACK == 0x10);
    121  1.1.2.1    mrg 
    122  1.1.2.1    mrg 	/*
    123  1.1.2.1    mrg 	 * Flags are shifted to use three least significant bits, thus each
    124  1.1.2.1    mrg 	 * flag combination has a unique number ranging from 0 to 7, e.g.
    125  1.1.2.1    mrg 	 * TH_SYN | TH_ACK has number 6, since (0x02 | (0x10 >> 2)) == 6.
    126  1.1.2.1    mrg 	 * However, the requirement is to have number 0 for invalid cases,
    127  1.1.2.1    mrg 	 * such as TH_SYN | TH_FIN, and to have the same number for TH_FIN
    128  1.1.2.1    mrg 	 * and TH_FIN|TH_ACK cases.  Thus, we generate a mask assigning 3
    129  1.1.2.1    mrg 	 * bits for each number, which contains the actual case numbers:
    130  1.1.2.1    mrg 	 *
    131  1.1.2.1    mrg 	 * TCPFC_SYNACK	<< (6 << 2) == 0x2000000 (6 - SYN,ACK)
    132  1.1.2.1    mrg 	 * TCPFC_FIN	<< (5 << 2) == 0x0400000 (5 - FIN,ACK)
    133  1.1.2.1    mrg 	 * ...
    134  1.1.2.1    mrg 	 *
    135  1.1.2.1    mrg 	 * Hence, OR'ed mask value is 0x2430140.
    136  1.1.2.1    mrg 	 */
    137  1.1.2.1    mrg 	i = (tcpfl & (TH_SYN | TH_FIN)) | ((tcpfl & TH_ACK) >> 2);
    138  1.1.2.1    mrg 	c = (0x2430140 >> (i << 2)) & 7;
    139  1.1.2.1    mrg 
    140  1.1.2.1    mrg 	KASSERT(c < TCPFC_COUNT);
    141  1.1.2.1    mrg 	return c;
    142  1.1.2.1    mrg }
    143      1.1  rmind 
    144      1.1  rmind /*
    145      1.1  rmind  * NPF transition table of a tracked TCP connection.
    146      1.1  rmind  *
    147      1.1  rmind  * There is a single state, which is changed in the following way:
    148      1.1  rmind  *
    149  1.1.2.1    mrg  * new_state = npf_tcp_fsm[old_state][direction][npf_tcpfl2case(tcp_flags)];
    150      1.1  rmind  *
    151      1.1  rmind  * Note that this state is different from the state in each end (host).
    152      1.1  rmind  */
    153      1.1  rmind 
    154  1.1.2.1    mrg static const int npf_tcp_fsm[NPF_TCP_NSTATES][2][TCPFC_COUNT] = {
    155      1.1  rmind 	[NPF_TCPS_CLOSED] = {
    156      1.1  rmind 		[NPF_FLOW_FORW] = {
    157      1.1  rmind 			/* Handshake (1): initial SYN. */
    158  1.1.2.1    mrg 			[TCPFC_SYN]	= NPF_TCPS_SYN_SENT,
    159      1.1  rmind 		},
    160      1.1  rmind 	},
    161      1.1  rmind 	[NPF_TCPS_SYN_SENT] = {
    162      1.1  rmind 		[NPF_FLOW_FORW] = {
    163      1.1  rmind 			/* SYN may be retransmitted. */
    164  1.1.2.1    mrg 			[TCPFC_SYN]	= NPF_TCPS_OK,
    165      1.1  rmind 		},
    166      1.1  rmind 		[NPF_FLOW_BACK] = {
    167      1.1  rmind 			/* Handshake (2): SYN-ACK is expected. */
    168  1.1.2.1    mrg 			[TCPFC_SYNACK]	= NPF_TCPS_SYN_RECEIVED,
    169      1.1  rmind 			/* Simultaneous initiation - SYN. */
    170  1.1.2.1    mrg 			[TCPFC_SYN]	= NPF_TCPS_SIMSYN_SENT,
    171      1.1  rmind 		},
    172      1.1  rmind 	},
    173      1.1  rmind 	[NPF_TCPS_SIMSYN_SENT] = {
    174      1.1  rmind 		[NPF_FLOW_FORW] = {
    175      1.1  rmind 			/* Original SYN re-transmission. */
    176  1.1.2.1    mrg 			[TCPFC_SYN]	= NPF_TCPS_OK,
    177      1.1  rmind 			/* SYN-ACK response to simultaneous SYN. */
    178  1.1.2.1    mrg 			[TCPFC_SYNACK]	= NPF_TCPS_SYN_RECEIVED,
    179      1.1  rmind 		},
    180      1.1  rmind 		[NPF_FLOW_BACK] = {
    181      1.1  rmind 			/* Simultaneous SYN re-transmission.*/
    182  1.1.2.1    mrg 			[TCPFC_SYN]	= NPF_TCPS_OK,
    183      1.1  rmind 			/* SYN-ACK response to original SYN. */
    184  1.1.2.1    mrg 			[TCPFC_SYNACK]	= NPF_TCPS_SYN_RECEIVED,
    185  1.1.2.1    mrg 			/* FIN may be sent early. */
    186  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_FIN_SEEN,
    187      1.1  rmind 		},
    188      1.1  rmind 	},
    189      1.1  rmind 	[NPF_TCPS_SYN_RECEIVED] = {
    190      1.1  rmind 		[NPF_FLOW_FORW] = {
    191      1.1  rmind 			/* Handshake (3): ACK is expected. */
    192  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_ESTABLISHED,
    193  1.1.2.1    mrg 			/* FIN may be sent early. */
    194  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_FIN_SEEN,
    195      1.1  rmind 		},
    196      1.1  rmind 		[NPF_FLOW_BACK] = {
    197      1.1  rmind 			/* SYN-ACK may be retransmitted. */
    198  1.1.2.1    mrg 			[TCPFC_SYNACK]	= NPF_TCPS_OK,
    199      1.1  rmind 			/* XXX: ACK of late SYN in simultaneous case? */
    200  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_OK,
    201  1.1.2.1    mrg 			/* FIN may be sent early. */
    202  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_FIN_SEEN,
    203      1.1  rmind 		},
    204      1.1  rmind 	},
    205      1.1  rmind 	[NPF_TCPS_ESTABLISHED] = {
    206      1.1  rmind 		/*
    207      1.1  rmind 		 * Regular ACKs (data exchange) or FIN.
    208      1.1  rmind 		 * FIN packets may have ACK set.
    209      1.1  rmind 		 */
    210      1.1  rmind 		[NPF_FLOW_FORW] = {
    211  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_OK,
    212      1.1  rmind 			/* FIN by the sender. */
    213  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_FIN_SEEN,
    214      1.1  rmind 		},
    215      1.1  rmind 		[NPF_FLOW_BACK] = {
    216  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_OK,
    217      1.1  rmind 			/* FIN by the receiver. */
    218  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_FIN_SEEN,
    219      1.1  rmind 		},
    220      1.1  rmind 	},
    221      1.1  rmind 	[NPF_TCPS_FIN_SEEN] = {
    222      1.1  rmind 		/*
    223      1.1  rmind 		 * FIN was seen.  If ACK only, connection is half-closed now,
    224      1.1  rmind 		 * need to determine which end is closed (sender or receiver).
    225      1.1  rmind 		 * However, both FIN and FIN-ACK may race here - in which
    226      1.1  rmind 		 * case we are closing immediately.
    227      1.1  rmind 		 */
    228      1.1  rmind 		[NPF_FLOW_FORW] = {
    229  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_CLOSE_WAIT,
    230  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_CLOSING,
    231      1.1  rmind 		},
    232      1.1  rmind 		[NPF_FLOW_BACK] = {
    233  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_FIN_WAIT,
    234  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_CLOSING,
    235      1.1  rmind 		},
    236      1.1  rmind 	},
    237      1.1  rmind 	[NPF_TCPS_CLOSE_WAIT] = {
    238      1.1  rmind 		/* Sender has sent the FIN and closed its end. */
    239      1.1  rmind 		[NPF_FLOW_FORW] = {
    240  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_OK,
    241  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_LAST_ACK,
    242      1.1  rmind 		},
    243      1.1  rmind 		[NPF_FLOW_BACK] = {
    244  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_OK,
    245  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_LAST_ACK,
    246      1.1  rmind 		},
    247      1.1  rmind 	},
    248      1.1  rmind 	[NPF_TCPS_FIN_WAIT] = {
    249      1.1  rmind 		/* Receiver has closed its end. */
    250      1.1  rmind 		[NPF_FLOW_FORW] = {
    251  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_OK,
    252  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_LAST_ACK,
    253      1.1  rmind 		},
    254      1.1  rmind 		[NPF_FLOW_BACK] = {
    255  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_OK,
    256  1.1.2.1    mrg 			[TCPFC_FIN]	= NPF_TCPS_LAST_ACK,
    257      1.1  rmind 		},
    258      1.1  rmind 	},
    259      1.1  rmind 	[NPF_TCPS_CLOSING] = {
    260      1.1  rmind 		/* Race of FINs - expecting ACK. */
    261      1.1  rmind 		[NPF_FLOW_FORW] = {
    262  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_LAST_ACK,
    263      1.1  rmind 		},
    264      1.1  rmind 		[NPF_FLOW_BACK] = {
    265  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_LAST_ACK,
    266      1.1  rmind 		},
    267      1.1  rmind 	},
    268      1.1  rmind 	[NPF_TCPS_LAST_ACK] = {
    269      1.1  rmind 		/* FINs exchanged - expecting last ACK. */
    270      1.1  rmind 		[NPF_FLOW_FORW] = {
    271  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_TIME_WAIT,
    272      1.1  rmind 		},
    273      1.1  rmind 		[NPF_FLOW_BACK] = {
    274  1.1.2.1    mrg 			[TCPFC_ACK]	= NPF_TCPS_TIME_WAIT,
    275      1.1  rmind 		},
    276      1.1  rmind 	},
    277      1.1  rmind 	[NPF_TCPS_TIME_WAIT] = {
    278      1.1  rmind 		/* May re-open the connection as per RFC 1122. */
    279      1.1  rmind 		[NPF_FLOW_FORW] = {
    280  1.1.2.1    mrg 			[TCPFC_SYN]	= NPF_TCPS_SYN_SENT,
    281      1.1  rmind 		},
    282      1.1  rmind 	},
    283      1.1  rmind };
    284      1.1  rmind 
    285      1.1  rmind /*
    286      1.1  rmind  * npf_tcp_inwindow: determine whether the packet is in the TCP window
    287      1.1  rmind  * and thus part of the connection we are tracking.
    288      1.1  rmind  */
    289      1.1  rmind static bool
    290      1.1  rmind npf_tcp_inwindow(const npf_cache_t *npc, nbuf_t *nbuf, npf_state_t *nst,
    291      1.1  rmind     const int di)
    292      1.1  rmind {
    293      1.1  rmind 	const struct tcphdr * const th = &npc->npc_l4.tcp;
    294      1.1  rmind 	const int tcpfl = th->th_flags;
    295      1.1  rmind 	npf_tcpstate_t *fstate, *tstate;
    296      1.1  rmind 	int tcpdlen, wscale, ackskew;
    297      1.1  rmind 	tcp_seq seq, ack, end;
    298      1.1  rmind 	uint32_t win;
    299      1.1  rmind 
    300      1.1  rmind 	KASSERT(npf_iscached(npc, NPC_TCP));
    301      1.1  rmind 	KASSERT(di == NPF_FLOW_FORW || di == NPF_FLOW_BACK);
    302      1.1  rmind 
    303      1.1  rmind 	/*
    304      1.1  rmind 	 * Perform SEQ/ACK numbers check against boundaries.  Reference:
    305      1.1  rmind 	 *
    306      1.1  rmind 	 *	Rooij G., "Real stateful TCP packet filtering in IP Filter",
    307      1.1  rmind 	 *	10th USENIX Security Symposium invited talk, Aug. 2001.
    308      1.1  rmind 	 *
    309  1.1.2.1    mrg 	 * There are four boundaries defined as following:
    310      1.1  rmind 	 *	I)   SEQ + LEN	<= MAX { SND.ACK + MAX(SND.WIN, 1) }
    311  1.1.2.1    mrg 	 *	II)  SEQ	>= MAX { SND.SEQ + SND.LEN - MAX(RCV.WIN, 1) }
    312      1.1  rmind 	 *	III) ACK	<= MAX { RCV.SEQ + RCV.LEN }
    313      1.1  rmind 	 *	IV)  ACK	>= MAX { RCV.SEQ + RCV.LEN } - MAXACKWIN
    314      1.1  rmind 	 *
    315      1.1  rmind 	 * Let these members of npf_tcpstate_t be the maximum seen values of:
    316      1.1  rmind 	 *	nst_end		- SEQ + LEN
    317      1.1  rmind 	 *	nst_maxend	- ACK + MAX(WIN, 1)
    318      1.1  rmind 	 *	nst_maxwin	- MAX(WIN, 1)
    319      1.1  rmind 	 */
    320      1.1  rmind 
    321      1.1  rmind 	tcpdlen = npf_tcpsaw(__UNCONST(npc), &seq, &ack, &win);
    322      1.1  rmind 	end = seq + tcpdlen;
    323      1.1  rmind 	if (tcpfl & TH_SYN) {
    324      1.1  rmind 		end++;
    325      1.1  rmind 	}
    326      1.1  rmind 	if (tcpfl & TH_FIN) {
    327      1.1  rmind 		end++;
    328      1.1  rmind 	}
    329      1.1  rmind 
    330      1.1  rmind 	fstate = &nst->nst_tcpst[di];
    331      1.1  rmind 	tstate = &nst->nst_tcpst[!di];
    332      1.1  rmind 	win = win ? (win << fstate->nst_wscale) : 1;
    333      1.1  rmind 
    334      1.1  rmind 	/*
    335      1.1  rmind 	 * Initialise if the first packet.
    336      1.1  rmind 	 * Note: only case when nst_maxwin is zero.
    337      1.1  rmind 	 */
    338      1.1  rmind 	if (__predict_false(fstate->nst_maxwin == 0)) {
    339      1.1  rmind 		/*
    340      1.1  rmind 		 * Should be first SYN or re-transmission of SYN.  State of
    341      1.1  rmind 		 * other side will get set with a SYN-ACK reply (see below).
    342      1.1  rmind 		 */
    343      1.1  rmind 		fstate->nst_end = end;
    344      1.1  rmind 		fstate->nst_maxend = end;
    345      1.1  rmind 		fstate->nst_maxwin = win;
    346      1.1  rmind 		tstate->nst_end = 0;
    347      1.1  rmind 		tstate->nst_maxend = 0;
    348      1.1  rmind 		tstate->nst_maxwin = 1;
    349      1.1  rmind 
    350      1.1  rmind 		/*
    351      1.1  rmind 		 * Handle TCP Window Scaling (RFC 1323).  Both sides may
    352      1.1  rmind 		 * send this option in their SYN packets.
    353      1.1  rmind 		 */
    354      1.1  rmind 		if (npf_fetch_tcpopts(npc, nbuf, NULL, &wscale)) {
    355      1.1  rmind 			fstate->nst_wscale = wscale;
    356      1.1  rmind 		} else {
    357      1.1  rmind 			fstate->nst_wscale = 0;
    358      1.1  rmind 		}
    359      1.1  rmind 		tstate->nst_wscale = 0;
    360      1.1  rmind 
    361      1.1  rmind 		/* Done. */
    362      1.1  rmind 		return true;
    363      1.1  rmind 	}
    364      1.1  rmind 	if (fstate->nst_end == 0) {
    365      1.1  rmind 		/*
    366      1.1  rmind 		 * Should be a SYN-ACK reply to SYN.  If SYN is not set,
    367      1.1  rmind 		 * then we are in the middle of connection and lost tracking.
    368      1.1  rmind 		 */
    369      1.1  rmind 		fstate->nst_end = end;
    370      1.1  rmind 		fstate->nst_maxend = end + 1;
    371      1.1  rmind 		fstate->nst_maxwin = win;
    372      1.1  rmind 
    373      1.1  rmind 		/* Handle TCP Window Scaling (must be ignored if no SYN). */
    374      1.1  rmind 		if (tcpfl & TH_SYN) {
    375      1.1  rmind 			fstate->nst_wscale =
    376      1.1  rmind 			    npf_fetch_tcpopts(npc, nbuf, NULL, &wscale) ?
    377      1.1  rmind 			    wscale : 0;
    378      1.1  rmind 		}
    379      1.1  rmind 	}
    380      1.1  rmind 	if ((tcpfl & TH_ACK) == 0) {
    381      1.1  rmind 		/* Pretend that an ACK was sent. */
    382      1.1  rmind 		ack = tstate->nst_end;
    383      1.1  rmind 	} else if ((tcpfl & (TH_ACK|TH_RST)) == (TH_ACK|TH_RST) && ack == 0) {
    384      1.1  rmind 		/* Workaround for some TCP stacks. */
    385      1.1  rmind 		ack = tstate->nst_end;
    386      1.1  rmind 	}
    387      1.1  rmind 	if (seq == end) {
    388      1.1  rmind 		/* If packet contains no data - assume it is valid. */
    389      1.1  rmind 		end = fstate->nst_end;
    390      1.1  rmind 		seq = end;
    391      1.1  rmind 	}
    392      1.1  rmind 
    393      1.1  rmind 	NPF_TCP_STATE_SAMPLE(nst);
    394      1.1  rmind #if 0
    395      1.1  rmind 	/* Strict in-order sequence for RST packets. */
    396      1.1  rmind 	if (((tcpfl & TH_RST) != 0) && (fstate->nst_end - seq) > 1) {
    397      1.1  rmind 		return false;
    398      1.1  rmind 	}
    399      1.1  rmind #endif
    400      1.1  rmind 	/*
    401      1.1  rmind 	 * Determine whether the data is within previously noted window,
    402      1.1  rmind 	 * that is, upper boundary for valid data (I).
    403      1.1  rmind 	 */
    404      1.1  rmind 	if (!SEQ_LEQ(end, fstate->nst_maxend)) {
    405      1.1  rmind 		npf_stats_inc(NPF_STAT_INVALID_STATE_TCP1);
    406      1.1  rmind 		return false;
    407      1.1  rmind 	}
    408      1.1  rmind 
    409      1.1  rmind 	/* Lower boundary (II), which is no more than one window back. */
    410      1.1  rmind 	if (!SEQ_GEQ(seq, fstate->nst_end - tstate->nst_maxwin)) {
    411      1.1  rmind 		npf_stats_inc(NPF_STAT_INVALID_STATE_TCP2);
    412      1.1  rmind 		return false;
    413      1.1  rmind 	}
    414      1.1  rmind 
    415      1.1  rmind 	/*
    416      1.1  rmind 	 * Boundaries for valid acknowledgments (III, IV) - on predicted
    417      1.1  rmind 	 * window up or down, since packets may be fragmented.
    418      1.1  rmind 	 */
    419      1.1  rmind 	ackskew = tstate->nst_end - ack;
    420      1.1  rmind 	if (ackskew < -NPF_TCP_MAXACKWIN ||
    421      1.1  rmind 	    ackskew > (NPF_TCP_MAXACKWIN << fstate->nst_wscale)) {
    422      1.1  rmind 		npf_stats_inc(NPF_STAT_INVALID_STATE_TCP3);
    423      1.1  rmind 		return false;
    424      1.1  rmind 	}
    425      1.1  rmind 
    426      1.1  rmind 	/*
    427      1.1  rmind 	 * Packet has been passed.
    428      1.1  rmind 	 *
    429      1.1  rmind 	 * Negative ackskew might be due to fragmented packets.  Since the
    430      1.1  rmind 	 * total length of the packet is unknown - bump the boundary.
    431      1.1  rmind 	 */
    432      1.1  rmind 	if (ackskew < 0) {
    433      1.1  rmind 		tstate->nst_end = end;
    434      1.1  rmind 	}
    435      1.1  rmind 	/* Keep track of the maximum window seen. */
    436      1.1  rmind 	if (fstate->nst_maxwin < win) {
    437      1.1  rmind 		fstate->nst_maxwin = win;
    438      1.1  rmind 	}
    439      1.1  rmind 	if (SEQ_GT(end, fstate->nst_end)) {
    440      1.1  rmind 		fstate->nst_end = end;
    441      1.1  rmind 	}
    442      1.1  rmind 	/* Note the window for upper boundary. */
    443      1.1  rmind 	if (SEQ_GEQ(ack + win, tstate->nst_maxend)) {
    444      1.1  rmind 		tstate->nst_maxend = ack + win;
    445      1.1  rmind 	}
    446      1.1  rmind 	return true;
    447      1.1  rmind }
    448      1.1  rmind 
    449      1.1  rmind bool
    450      1.1  rmind npf_state_tcp(const npf_cache_t *npc, nbuf_t *nbuf, npf_state_t *nst, int di)
    451      1.1  rmind {
    452      1.1  rmind 	const struct tcphdr * const th = &npc->npc_l4.tcp;
    453      1.1  rmind 	const int tcpfl = th->th_flags, state = nst->nst_state;
    454      1.1  rmind 	int nstate;
    455      1.1  rmind 
    456      1.1  rmind 	/* Look for a transition to a new state. */
    457      1.1  rmind 	if (__predict_true((tcpfl & TH_RST) == 0)) {
    458  1.1.2.1    mrg 		const int flagcase = npf_tcpfl2case(tcpfl);
    459  1.1.2.1    mrg 		nstate = npf_tcp_fsm[state][di][flagcase];
    460      1.1  rmind 	} else if (state == NPF_TCPS_TIME_WAIT) {
    461      1.1  rmind 		/* Prevent TIME-WAIT assassination (RFC 1337). */
    462      1.1  rmind 		nstate = NPF_TCPS_OK;
    463      1.1  rmind 	} else {
    464      1.1  rmind 		nstate = NPF_TCPS_CLOSED;
    465      1.1  rmind 	}
    466      1.1  rmind 	/* Determine whether TCP packet really belongs to this connection. */
    467      1.1  rmind 	if (!npf_tcp_inwindow(npc, nbuf, nst, di)) {
    468      1.1  rmind 		return false;
    469      1.1  rmind 	}
    470      1.1  rmind 	if (__predict_true(nstate == NPF_TCPS_OK)) {
    471      1.1  rmind 		return true;
    472      1.1  rmind 	}
    473      1.1  rmind 	nst->nst_state = nstate;
    474      1.1  rmind 	return true;
    475      1.1  rmind }
    476      1.1  rmind 
    477      1.1  rmind int
    478      1.1  rmind npf_state_tcp_timeout(const npf_state_t *nst)
    479      1.1  rmind {
    480      1.1  rmind 	const u_int state = nst->nst_state;
    481      1.1  rmind 
    482      1.1  rmind 	KASSERT(state < NPF_TCP_NSTATES);
    483      1.1  rmind 	return npf_tcp_timeouts[state];
    484      1.1  rmind }
    485