xref: /f-stack/freebsd/netgraph/netflow/netflow.c (revision 22ce4aff)
1a1fd9364Slogwang /*-
2*22ce4affSfengbojiang  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3*22ce4affSfengbojiang  *
4a1fd9364Slogwang  * Copyright (c) 2010-2011 Alexander V. Chernikov <[email protected]>
5a1fd9364Slogwang  * Copyright (c) 2004-2005 Gleb Smirnoff <[email protected]>
6a1fd9364Slogwang  * Copyright (c) 2001-2003 Roman V. Palagin <[email protected]>
7a1fd9364Slogwang  * All rights reserved.
8a1fd9364Slogwang  *
9a1fd9364Slogwang  * Redistribution and use in source and binary forms, with or without
10a1fd9364Slogwang  * modification, are permitted provided that the following conditions
11a1fd9364Slogwang  * are met:
12a1fd9364Slogwang  * 1. Redistributions of source code must retain the above copyright
13a1fd9364Slogwang  *    notice, this list of conditions and the following disclaimer.
14a1fd9364Slogwang  * 2. Redistributions in binary form must reproduce the above copyright
15a1fd9364Slogwang  *    notice, this list of conditions and the following disclaimer in the
16a1fd9364Slogwang  *    documentation and/or other materials provided with the distribution.
17a1fd9364Slogwang  *
18a1fd9364Slogwang  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
19a1fd9364Slogwang  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20a1fd9364Slogwang  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21a1fd9364Slogwang  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
22a1fd9364Slogwang  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23a1fd9364Slogwang  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24a1fd9364Slogwang  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25a1fd9364Slogwang  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26a1fd9364Slogwang  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27a1fd9364Slogwang  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28a1fd9364Slogwang  * SUCH DAMAGE.
29a1fd9364Slogwang  *
30a1fd9364Slogwang  * $SourceForge: netflow.c,v 1.41 2004/09/05 11:41:10 glebius Exp $
31a1fd9364Slogwang  */
32a1fd9364Slogwang 
33a1fd9364Slogwang #include <sys/cdefs.h>
34a1fd9364Slogwang __FBSDID("$FreeBSD$");
35a1fd9364Slogwang 
36*22ce4affSfengbojiang #include "opt_inet.h"
37a1fd9364Slogwang #include "opt_inet6.h"
38a1fd9364Slogwang #include "opt_route.h"
39a1fd9364Slogwang #include <sys/param.h>
40a1fd9364Slogwang #include <sys/bitstring.h>
41a1fd9364Slogwang #include <sys/systm.h>
42a1fd9364Slogwang #include <sys/counter.h>
43a1fd9364Slogwang #include <sys/kernel.h>
44a1fd9364Slogwang #include <sys/ktr.h>
45a1fd9364Slogwang #include <sys/limits.h>
46a1fd9364Slogwang #include <sys/mbuf.h>
47a1fd9364Slogwang #include <sys/syslog.h>
48a1fd9364Slogwang #include <sys/socket.h>
49a1fd9364Slogwang #include <vm/uma.h>
50a1fd9364Slogwang 
51a1fd9364Slogwang #include <net/if.h>
52a1fd9364Slogwang #include <net/if_dl.h>
53a1fd9364Slogwang #include <net/if_var.h>
54a1fd9364Slogwang #include <net/route.h>
55*22ce4affSfengbojiang #include <net/route/nhop.h>
56*22ce4affSfengbojiang #include <net/route/route_ctl.h>
57a1fd9364Slogwang #include <net/ethernet.h>
58a1fd9364Slogwang #include <netinet/in.h>
59*22ce4affSfengbojiang #include <netinet/in_fib.h>
60a1fd9364Slogwang #include <netinet/in_systm.h>
61a1fd9364Slogwang #include <netinet/ip.h>
62a1fd9364Slogwang #include <netinet/ip6.h>
63a1fd9364Slogwang #include <netinet/tcp.h>
64a1fd9364Slogwang #include <netinet/udp.h>
65a1fd9364Slogwang 
66*22ce4affSfengbojiang #include <netinet6/in6_fib.h>
67*22ce4affSfengbojiang 
68a1fd9364Slogwang #include <netgraph/ng_message.h>
69a1fd9364Slogwang #include <netgraph/netgraph.h>
70a1fd9364Slogwang 
71a1fd9364Slogwang #include <netgraph/netflow/netflow.h>
72a1fd9364Slogwang #include <netgraph/netflow/netflow_v9.h>
73a1fd9364Slogwang #include <netgraph/netflow/ng_netflow.h>
74a1fd9364Slogwang 
75a1fd9364Slogwang #define	NBUCKETS	(65536)		/* must be power of 2 */
76a1fd9364Slogwang 
77a1fd9364Slogwang /* This hash is for TCP or UDP packets. */
78a1fd9364Slogwang #define FULL_HASH(addr1, addr2, port1, port2)	\
79a1fd9364Slogwang 	(((addr1 ^ (addr1 >> 16) ^ 		\
80a1fd9364Slogwang 	htons(addr2 ^ (addr2 >> 16))) ^ 	\
81a1fd9364Slogwang 	port1 ^ htons(port2)) &			\
82a1fd9364Slogwang 	(NBUCKETS - 1))
83a1fd9364Slogwang 
84a1fd9364Slogwang /* This hash is for all other IP packets. */
85a1fd9364Slogwang #define ADDR_HASH(addr1, addr2)			\
86a1fd9364Slogwang 	((addr1 ^ (addr1 >> 16) ^ 		\
87a1fd9364Slogwang 	htons(addr2 ^ (addr2 >> 16))) &		\
88a1fd9364Slogwang 	(NBUCKETS - 1))
89a1fd9364Slogwang 
90a1fd9364Slogwang /* Macros to shorten logical constructions */
91a1fd9364Slogwang /* XXX: priv must exist in namespace */
92a1fd9364Slogwang #define	INACTIVE(fle)	(time_uptime - fle->f.last > priv->nfinfo_inact_t)
93a1fd9364Slogwang #define	AGED(fle)	(time_uptime - fle->f.first > priv->nfinfo_act_t)
94a1fd9364Slogwang #define	ISFREE(fle)	(fle->f.packets == 0)
95a1fd9364Slogwang 
96a1fd9364Slogwang /*
97a1fd9364Slogwang  * 4 is a magical number: statistically number of 4-packet flows is
98a1fd9364Slogwang  * bigger than 5,6,7...-packet flows by an order of magnitude. Most UDP/ICMP
99a1fd9364Slogwang  * scans are 1 packet (~ 90% of flow cache). TCP scans are 2-packet in case
100a1fd9364Slogwang  * of reachable host and 4-packet otherwise.
101a1fd9364Slogwang  */
102a1fd9364Slogwang #define	SMALL(fle)	(fle->f.packets <= 4)
103a1fd9364Slogwang 
104a1fd9364Slogwang MALLOC_DEFINE(M_NETFLOW_HASH, "netflow_hash", "NetFlow hash");
105a1fd9364Slogwang 
106a1fd9364Slogwang static int export_add(item_p, struct flow_entry *);
107a1fd9364Slogwang static int export_send(priv_p, fib_export_p, item_p, int);
108a1fd9364Slogwang 
109*22ce4affSfengbojiang #ifdef INET
110a1fd9364Slogwang static int hash_insert(priv_p, struct flow_hash_entry *, struct flow_rec *,
111a1fd9364Slogwang     int, uint8_t, uint8_t);
112*22ce4affSfengbojiang #endif
113a1fd9364Slogwang #ifdef INET6
114a1fd9364Slogwang static int hash6_insert(priv_p, struct flow_hash_entry *, struct flow6_rec *,
115a1fd9364Slogwang     int, uint8_t, uint8_t);
116a1fd9364Slogwang #endif
117a1fd9364Slogwang 
118a1fd9364Slogwang static void expire_flow(priv_p, fib_export_p, struct flow_entry *, int);
119a1fd9364Slogwang 
120a1fd9364Slogwang /*
121a1fd9364Slogwang  * Generate hash for a given flow record.
122a1fd9364Slogwang  *
123a1fd9364Slogwang  * FIB is not used here, because:
124a1fd9364Slogwang  * most VRFS will carry public IPv4 addresses which are unique even
125a1fd9364Slogwang  * without FIB private addresses can overlap, but this is worked out
126a1fd9364Slogwang  * via flow_rec bcmp() containing fib id. In IPv6 world addresses are
127a1fd9364Slogwang  * all globally unique (it's not fully true, there is FC00::/7 for example,
128a1fd9364Slogwang  * but chances of address overlap are MUCH smaller)
129a1fd9364Slogwang  */
130a1fd9364Slogwang static inline uint32_t
ip_hash(struct flow_rec * r)131a1fd9364Slogwang ip_hash(struct flow_rec *r)
132a1fd9364Slogwang {
133a1fd9364Slogwang 
134a1fd9364Slogwang 	switch (r->r_ip_p) {
135a1fd9364Slogwang 	case IPPROTO_TCP:
136a1fd9364Slogwang 	case IPPROTO_UDP:
137a1fd9364Slogwang 		return FULL_HASH(r->r_src.s_addr, r->r_dst.s_addr,
138a1fd9364Slogwang 		    r->r_sport, r->r_dport);
139a1fd9364Slogwang 	default:
140a1fd9364Slogwang 		return ADDR_HASH(r->r_src.s_addr, r->r_dst.s_addr);
141a1fd9364Slogwang 	}
142a1fd9364Slogwang }
143a1fd9364Slogwang 
144a1fd9364Slogwang #ifdef INET6
145a1fd9364Slogwang /* Generate hash for a given flow6 record. Use lower 4 octets from v6 addresses */
146a1fd9364Slogwang static inline uint32_t
ip6_hash(struct flow6_rec * r)147a1fd9364Slogwang ip6_hash(struct flow6_rec *r)
148a1fd9364Slogwang {
149a1fd9364Slogwang 
150a1fd9364Slogwang 	switch (r->r_ip_p) {
151a1fd9364Slogwang 	case IPPROTO_TCP:
152a1fd9364Slogwang 	case IPPROTO_UDP:
153a1fd9364Slogwang 		return FULL_HASH(r->src.r_src6.__u6_addr.__u6_addr32[3],
154a1fd9364Slogwang 		    r->dst.r_dst6.__u6_addr.__u6_addr32[3], r->r_sport,
155a1fd9364Slogwang 		    r->r_dport);
156a1fd9364Slogwang 	default:
157a1fd9364Slogwang 		return ADDR_HASH(r->src.r_src6.__u6_addr.__u6_addr32[3],
158a1fd9364Slogwang 		    r->dst.r_dst6.__u6_addr.__u6_addr32[3]);
159a1fd9364Slogwang  	}
160a1fd9364Slogwang }
161a1fd9364Slogwang 
162a1fd9364Slogwang #endif
163a1fd9364Slogwang 
164a1fd9364Slogwang /*
165a1fd9364Slogwang  * Detach export datagram from priv, if there is any.
166a1fd9364Slogwang  * If there is no, allocate a new one.
167a1fd9364Slogwang  */
168a1fd9364Slogwang static item_p
get_export_dgram(priv_p priv,fib_export_p fe)169a1fd9364Slogwang get_export_dgram(priv_p priv, fib_export_p fe)
170a1fd9364Slogwang {
171a1fd9364Slogwang 	item_p	item = NULL;
172a1fd9364Slogwang 
173a1fd9364Slogwang 	mtx_lock(&fe->export_mtx);
174a1fd9364Slogwang 	if (fe->exp.item != NULL) {
175a1fd9364Slogwang 		item = fe->exp.item;
176a1fd9364Slogwang 		fe->exp.item = NULL;
177a1fd9364Slogwang 	}
178a1fd9364Slogwang 	mtx_unlock(&fe->export_mtx);
179a1fd9364Slogwang 
180a1fd9364Slogwang 	if (item == NULL) {
181a1fd9364Slogwang 		struct netflow_v5_export_dgram *dgram;
182a1fd9364Slogwang 		struct mbuf *m;
183a1fd9364Slogwang 
184a1fd9364Slogwang 		m = m_getcl(M_NOWAIT, MT_DATA, M_PKTHDR);
185a1fd9364Slogwang 		if (m == NULL)
186a1fd9364Slogwang 			return (NULL);
187a1fd9364Slogwang 		item = ng_package_data(m, NG_NOFLAGS);
188a1fd9364Slogwang 		if (item == NULL)
189a1fd9364Slogwang 			return (NULL);
190a1fd9364Slogwang 		dgram = mtod(m, struct netflow_v5_export_dgram *);
191a1fd9364Slogwang 		dgram->header.count = 0;
192a1fd9364Slogwang 		dgram->header.version = htons(NETFLOW_V5);
193a1fd9364Slogwang 		dgram->header.pad = 0;
194a1fd9364Slogwang 	}
195a1fd9364Slogwang 
196a1fd9364Slogwang 	return (item);
197a1fd9364Slogwang }
198a1fd9364Slogwang 
199a1fd9364Slogwang /*
200a1fd9364Slogwang  * Re-attach incomplete datagram back to priv.
201a1fd9364Slogwang  * If there is already another one, then send incomplete. */
202a1fd9364Slogwang static void
return_export_dgram(priv_p priv,fib_export_p fe,item_p item,int flags)203a1fd9364Slogwang return_export_dgram(priv_p priv, fib_export_p fe, item_p item, int flags)
204a1fd9364Slogwang {
205a1fd9364Slogwang 
206a1fd9364Slogwang 	/*
207a1fd9364Slogwang 	 * It may happen on SMP, that some thread has already
208a1fd9364Slogwang 	 * put its item there, in this case we bail out and
209a1fd9364Slogwang 	 * send what we have to collector.
210a1fd9364Slogwang 	 */
211a1fd9364Slogwang 	mtx_lock(&fe->export_mtx);
212a1fd9364Slogwang 	if (fe->exp.item == NULL) {
213a1fd9364Slogwang 		fe->exp.item = item;
214a1fd9364Slogwang 		mtx_unlock(&fe->export_mtx);
215a1fd9364Slogwang 	} else {
216a1fd9364Slogwang 		mtx_unlock(&fe->export_mtx);
217a1fd9364Slogwang 		export_send(priv, fe, item, flags);
218a1fd9364Slogwang 	}
219a1fd9364Slogwang }
220a1fd9364Slogwang 
221a1fd9364Slogwang /*
222a1fd9364Slogwang  * The flow is over. Call export_add() and free it. If datagram is
223a1fd9364Slogwang  * full, then call export_send().
224a1fd9364Slogwang  */
225a1fd9364Slogwang static void
expire_flow(priv_p priv,fib_export_p fe,struct flow_entry * fle,int flags)226a1fd9364Slogwang expire_flow(priv_p priv, fib_export_p fe, struct flow_entry *fle, int flags)
227a1fd9364Slogwang {
228a1fd9364Slogwang 	struct netflow_export_item exp;
229a1fd9364Slogwang 	uint16_t version = fle->f.version;
230a1fd9364Slogwang 
231a1fd9364Slogwang 	if ((priv->export != NULL) && (version == IPVERSION)) {
232a1fd9364Slogwang 		exp.item = get_export_dgram(priv, fe);
233a1fd9364Slogwang 		if (exp.item == NULL) {
234a1fd9364Slogwang 			priv->nfinfo_export_failed++;
235a1fd9364Slogwang 			if (priv->export9 != NULL)
236a1fd9364Slogwang 				priv->nfinfo_export9_failed++;
237a1fd9364Slogwang 			/* fle definitely contains IPv4 flow. */
238a1fd9364Slogwang 			uma_zfree_arg(priv->zone, fle, priv);
239a1fd9364Slogwang 			return;
240a1fd9364Slogwang 		}
241a1fd9364Slogwang 
242a1fd9364Slogwang 		if (export_add(exp.item, fle) > 0)
243a1fd9364Slogwang 			export_send(priv, fe, exp.item, flags);
244a1fd9364Slogwang 		else
245a1fd9364Slogwang 			return_export_dgram(priv, fe, exp.item, NG_QUEUE);
246a1fd9364Slogwang 	}
247a1fd9364Slogwang 
248a1fd9364Slogwang 	if (priv->export9 != NULL) {
249a1fd9364Slogwang 		exp.item9 = get_export9_dgram(priv, fe, &exp.item9_opt);
250a1fd9364Slogwang 		if (exp.item9 == NULL) {
251a1fd9364Slogwang 			priv->nfinfo_export9_failed++;
252a1fd9364Slogwang 			if (version == IPVERSION)
253a1fd9364Slogwang 				uma_zfree_arg(priv->zone, fle, priv);
254a1fd9364Slogwang #ifdef INET6
255a1fd9364Slogwang 			else if (version == IP6VERSION)
256a1fd9364Slogwang 				uma_zfree_arg(priv->zone6, fle, priv);
257a1fd9364Slogwang #endif
258a1fd9364Slogwang 			else
259a1fd9364Slogwang 				panic("ng_netflow: Unknown IP proto: %d",
260a1fd9364Slogwang 				    version);
261a1fd9364Slogwang 			return;
262a1fd9364Slogwang 		}
263a1fd9364Slogwang 
264a1fd9364Slogwang 		if (export9_add(exp.item9, exp.item9_opt, fle) > 0)
265a1fd9364Slogwang 			export9_send(priv, fe, exp.item9, exp.item9_opt, flags);
266a1fd9364Slogwang 		else
267a1fd9364Slogwang 			return_export9_dgram(priv, fe, exp.item9,
268a1fd9364Slogwang 			    exp.item9_opt, NG_QUEUE);
269a1fd9364Slogwang 	}
270a1fd9364Slogwang 
271a1fd9364Slogwang 	if (version == IPVERSION)
272a1fd9364Slogwang 		uma_zfree_arg(priv->zone, fle, priv);
273a1fd9364Slogwang #ifdef INET6
274a1fd9364Slogwang 	else if (version == IP6VERSION)
275a1fd9364Slogwang 		uma_zfree_arg(priv->zone6, fle, priv);
276a1fd9364Slogwang #endif
277a1fd9364Slogwang }
278a1fd9364Slogwang 
279a1fd9364Slogwang /* Get a snapshot of node statistics */
280a1fd9364Slogwang void
ng_netflow_copyinfo(priv_p priv,struct ng_netflow_info * i)281a1fd9364Slogwang ng_netflow_copyinfo(priv_p priv, struct ng_netflow_info *i)
282a1fd9364Slogwang {
283a1fd9364Slogwang 
284a1fd9364Slogwang 	i->nfinfo_bytes = counter_u64_fetch(priv->nfinfo_bytes);
285a1fd9364Slogwang 	i->nfinfo_packets = counter_u64_fetch(priv->nfinfo_packets);
286a1fd9364Slogwang 	i->nfinfo_bytes6 = counter_u64_fetch(priv->nfinfo_bytes6);
287a1fd9364Slogwang 	i->nfinfo_packets6 = counter_u64_fetch(priv->nfinfo_packets6);
288a1fd9364Slogwang 	i->nfinfo_sbytes = counter_u64_fetch(priv->nfinfo_sbytes);
289a1fd9364Slogwang 	i->nfinfo_spackets = counter_u64_fetch(priv->nfinfo_spackets);
290a1fd9364Slogwang 	i->nfinfo_sbytes6 = counter_u64_fetch(priv->nfinfo_sbytes6);
291a1fd9364Slogwang 	i->nfinfo_spackets6 = counter_u64_fetch(priv->nfinfo_spackets6);
292a1fd9364Slogwang 	i->nfinfo_act_exp = counter_u64_fetch(priv->nfinfo_act_exp);
293a1fd9364Slogwang 	i->nfinfo_inact_exp = counter_u64_fetch(priv->nfinfo_inact_exp);
294a1fd9364Slogwang 
295a1fd9364Slogwang 	i->nfinfo_used = uma_zone_get_cur(priv->zone);
296a1fd9364Slogwang #ifdef INET6
297a1fd9364Slogwang 	i->nfinfo_used6 = uma_zone_get_cur(priv->zone6);
298a1fd9364Slogwang #endif
299a1fd9364Slogwang 
300a1fd9364Slogwang 	i->nfinfo_alloc_failed = priv->nfinfo_alloc_failed;
301a1fd9364Slogwang 	i->nfinfo_export_failed = priv->nfinfo_export_failed;
302a1fd9364Slogwang 	i->nfinfo_export9_failed = priv->nfinfo_export9_failed;
303a1fd9364Slogwang 	i->nfinfo_realloc_mbuf = priv->nfinfo_realloc_mbuf;
304a1fd9364Slogwang 	i->nfinfo_alloc_fibs = priv->nfinfo_alloc_fibs;
305a1fd9364Slogwang 	i->nfinfo_inact_t = priv->nfinfo_inact_t;
306a1fd9364Slogwang 	i->nfinfo_act_t = priv->nfinfo_act_t;
307a1fd9364Slogwang }
308a1fd9364Slogwang 
309a1fd9364Slogwang /*
310a1fd9364Slogwang  * Insert a record into defined slot.
311a1fd9364Slogwang  *
312a1fd9364Slogwang  * First we get for us a free flow entry, then fill in all
313a1fd9364Slogwang  * possible fields in it.
314a1fd9364Slogwang  *
315a1fd9364Slogwang  * TODO: consider dropping hash mutex while filling in datagram,
316a1fd9364Slogwang  * as this was done in previous version. Need to test & profile
317a1fd9364Slogwang  * to be sure.
318a1fd9364Slogwang  */
319*22ce4affSfengbojiang #ifdef INET
320a1fd9364Slogwang static int
hash_insert(priv_p priv,struct flow_hash_entry * hsh,struct flow_rec * r,int plen,uint8_t flags,uint8_t tcp_flags)321a1fd9364Slogwang hash_insert(priv_p priv, struct flow_hash_entry *hsh, struct flow_rec *r,
322a1fd9364Slogwang 	int plen, uint8_t flags, uint8_t tcp_flags)
323a1fd9364Slogwang {
324a1fd9364Slogwang 	struct flow_entry *fle;
325a1fd9364Slogwang 
326a1fd9364Slogwang 	mtx_assert(&hsh->mtx, MA_OWNED);
327a1fd9364Slogwang 
328a1fd9364Slogwang 	fle = uma_zalloc_arg(priv->zone, priv, M_NOWAIT);
329a1fd9364Slogwang 	if (fle == NULL) {
330a1fd9364Slogwang 		priv->nfinfo_alloc_failed++;
331a1fd9364Slogwang 		return (ENOMEM);
332a1fd9364Slogwang 	}
333a1fd9364Slogwang 
334a1fd9364Slogwang 	/*
335a1fd9364Slogwang 	 * Now fle is totally ours. It is detached from all lists,
336a1fd9364Slogwang 	 * we can safely edit it.
337a1fd9364Slogwang 	 */
338a1fd9364Slogwang 	fle->f.version = IPVERSION;
339a1fd9364Slogwang 	bcopy(r, &fle->f.r, sizeof(struct flow_rec));
340a1fd9364Slogwang 	fle->f.bytes = plen;
341a1fd9364Slogwang 	fle->f.packets = 1;
342a1fd9364Slogwang 	fle->f.tcp_flags = tcp_flags;
343a1fd9364Slogwang 
344a1fd9364Slogwang 	fle->f.first = fle->f.last = time_uptime;
345a1fd9364Slogwang 
346a1fd9364Slogwang 	/*
347a1fd9364Slogwang 	 * First we do route table lookup on destination address. So we can
348a1fd9364Slogwang 	 * fill in out_ifx, dst_mask, nexthop, and dst_as in future releases.
349a1fd9364Slogwang 	 */
350a1fd9364Slogwang 	if ((flags & NG_NETFLOW_CONF_NODSTLOOKUP) == 0) {
351*22ce4affSfengbojiang 		struct rtentry *rt;
352*22ce4affSfengbojiang 		struct route_nhop_data rnd;
353a1fd9364Slogwang 
354*22ce4affSfengbojiang 		rt = fib4_lookup_rt(r->fib, fle->f.r.r_dst, 0, NHR_NONE, &rnd);
355*22ce4affSfengbojiang 		if (rt != NULL) {
356*22ce4affSfengbojiang 			struct in_addr addr;
357*22ce4affSfengbojiang 			uint32_t scopeid;
358*22ce4affSfengbojiang 			struct nhop_object *nh = nhop_select_func(rnd.rnd_nhop, 0);
359*22ce4affSfengbojiang 			int plen;
360a1fd9364Slogwang 
361*22ce4affSfengbojiang 			rt_get_inet_prefix_plen(rt, &addr, &plen, &scopeid);
362*22ce4affSfengbojiang 			fle->f.fle_o_ifx = nh->nh_ifp->if_index;
363*22ce4affSfengbojiang 			if (nh->gw_sa.sa_len == AF_INET)
364*22ce4affSfengbojiang 				fle->f.next_hop = nh->gw4_sa.sin_addr;
365*22ce4affSfengbojiang 			fle->f.dst_mask = plen;
366a1fd9364Slogwang 		}
367a1fd9364Slogwang 	}
368a1fd9364Slogwang 
369a1fd9364Slogwang 	/* Do route lookup on source address, to fill in src_mask. */
370a1fd9364Slogwang 	if ((flags & NG_NETFLOW_CONF_NOSRCLOOKUP) == 0) {
371*22ce4affSfengbojiang 		struct rtentry *rt;
372*22ce4affSfengbojiang 		struct route_nhop_data rnd;
373a1fd9364Slogwang 
374*22ce4affSfengbojiang 		rt = fib4_lookup_rt(r->fib, fle->f.r.r_src, 0, NHR_NONE, &rnd);
375*22ce4affSfengbojiang 		if (rt != NULL) {
376*22ce4affSfengbojiang 			struct in_addr addr;
377*22ce4affSfengbojiang 			uint32_t scopeid;
378*22ce4affSfengbojiang 			int plen;
379a1fd9364Slogwang 
380*22ce4affSfengbojiang 			rt_get_inet_prefix_plen(rt, &addr, &plen, &scopeid);
381*22ce4affSfengbojiang 			fle->f.src_mask = plen;
382a1fd9364Slogwang 		}
383a1fd9364Slogwang 	}
384a1fd9364Slogwang 
385a1fd9364Slogwang 	/* Push new flow at the and of hash. */
386a1fd9364Slogwang 	TAILQ_INSERT_TAIL(&hsh->head, fle, fle_hash);
387a1fd9364Slogwang 
388a1fd9364Slogwang 	return (0);
389a1fd9364Slogwang }
390*22ce4affSfengbojiang #endif
391a1fd9364Slogwang 
392a1fd9364Slogwang #ifdef INET6
393a1fd9364Slogwang static int
hash6_insert(priv_p priv,struct flow_hash_entry * hsh6,struct flow6_rec * r,int plen,uint8_t flags,uint8_t tcp_flags)394a1fd9364Slogwang hash6_insert(priv_p priv, struct flow_hash_entry *hsh6, struct flow6_rec *r,
395a1fd9364Slogwang 	int plen, uint8_t flags, uint8_t tcp_flags)
396a1fd9364Slogwang {
397a1fd9364Slogwang 	struct flow6_entry *fle6;
398a1fd9364Slogwang 
399a1fd9364Slogwang 	mtx_assert(&hsh6->mtx, MA_OWNED);
400a1fd9364Slogwang 
401a1fd9364Slogwang 	fle6 = uma_zalloc_arg(priv->zone6, priv, M_NOWAIT);
402a1fd9364Slogwang 	if (fle6 == NULL) {
403a1fd9364Slogwang 		priv->nfinfo_alloc_failed++;
404a1fd9364Slogwang 		return (ENOMEM);
405a1fd9364Slogwang 	}
406a1fd9364Slogwang 
407a1fd9364Slogwang 	/*
408a1fd9364Slogwang 	 * Now fle is totally ours. It is detached from all lists,
409a1fd9364Slogwang 	 * we can safely edit it.
410a1fd9364Slogwang 	 */
411a1fd9364Slogwang 
412a1fd9364Slogwang 	fle6->f.version = IP6VERSION;
413a1fd9364Slogwang 	bcopy(r, &fle6->f.r, sizeof(struct flow6_rec));
414a1fd9364Slogwang 	fle6->f.bytes = plen;
415a1fd9364Slogwang 	fle6->f.packets = 1;
416a1fd9364Slogwang 	fle6->f.tcp_flags = tcp_flags;
417a1fd9364Slogwang 
418a1fd9364Slogwang 	fle6->f.first = fle6->f.last = time_uptime;
419a1fd9364Slogwang 
420a1fd9364Slogwang 	/*
421a1fd9364Slogwang 	 * First we do route table lookup on destination address. So we can
422a1fd9364Slogwang 	 * fill in out_ifx, dst_mask, nexthop, and dst_as in future releases.
423a1fd9364Slogwang 	 */
424a1fd9364Slogwang 	if ((flags & NG_NETFLOW_CONF_NODSTLOOKUP) == 0) {
425*22ce4affSfengbojiang 		struct rtentry *rt;
426*22ce4affSfengbojiang 		struct route_nhop_data rnd;
427a1fd9364Slogwang 
428*22ce4affSfengbojiang 		rt = fib6_lookup_rt(r->fib, &fle6->f.r.dst.r_dst6, 0, NHR_NONE, &rnd);
429*22ce4affSfengbojiang 		if (rt != NULL) {
430*22ce4affSfengbojiang 			struct in6_addr addr;
431*22ce4affSfengbojiang 			uint32_t scopeid;
432*22ce4affSfengbojiang 			struct nhop_object *nh = nhop_select_func(rnd.rnd_nhop, 0);
433*22ce4affSfengbojiang 			int plen;
434a1fd9364Slogwang 
435*22ce4affSfengbojiang 			rt_get_inet6_prefix_plen(rt, &addr, &plen, &scopeid);
436*22ce4affSfengbojiang 			fle6->f.fle_o_ifx = nh->nh_ifp->if_index;
437*22ce4affSfengbojiang 			if (nh->gw_sa.sa_len == AF_INET6)
438*22ce4affSfengbojiang 				fle6->f.n.next_hop6 = nh->gw6_sa.sin6_addr;
439*22ce4affSfengbojiang 			fle6->f.dst_mask = plen;
440a1fd9364Slogwang 		}
441a1fd9364Slogwang 	}
442a1fd9364Slogwang 
443a1fd9364Slogwang 	if ((flags & NG_NETFLOW_CONF_NOSRCLOOKUP) == 0) {
444a1fd9364Slogwang 		/* Do route lookup on source address, to fill in src_mask. */
445*22ce4affSfengbojiang 		struct rtentry *rt;
446*22ce4affSfengbojiang 		struct route_nhop_data rnd;
447a1fd9364Slogwang 
448*22ce4affSfengbojiang 		rt = fib6_lookup_rt(r->fib, &fle6->f.r.src.r_src6, 0, NHR_NONE, &rnd);
449*22ce4affSfengbojiang 		if (rt != NULL) {
450*22ce4affSfengbojiang 			struct in6_addr addr;
451*22ce4affSfengbojiang 			uint32_t scopeid;
452*22ce4affSfengbojiang 			int plen;
453a1fd9364Slogwang 
454*22ce4affSfengbojiang 			rt_get_inet6_prefix_plen(rt, &addr, &plen, &scopeid);
455*22ce4affSfengbojiang 			fle6->f.src_mask = plen;
456*22ce4affSfengbojiang 		}
457a1fd9364Slogwang 	}
458a1fd9364Slogwang 
459a1fd9364Slogwang 	/* Push new flow at the and of hash. */
460a1fd9364Slogwang 	TAILQ_INSERT_TAIL(&hsh6->head, (struct flow_entry *)fle6, fle_hash);
461a1fd9364Slogwang 
462a1fd9364Slogwang 	return (0);
463a1fd9364Slogwang }
464a1fd9364Slogwang #endif
465a1fd9364Slogwang 
466a1fd9364Slogwang /*
467a1fd9364Slogwang  * Non-static functions called from ng_netflow.c
468a1fd9364Slogwang  */
469a1fd9364Slogwang 
470a1fd9364Slogwang /* Allocate memory and set up flow cache */
471a1fd9364Slogwang void
ng_netflow_cache_init(priv_p priv)472a1fd9364Slogwang ng_netflow_cache_init(priv_p priv)
473a1fd9364Slogwang {
474a1fd9364Slogwang 	struct flow_hash_entry *hsh;
475a1fd9364Slogwang 	int i;
476a1fd9364Slogwang 
477a1fd9364Slogwang 	/* Initialize cache UMA zone. */
478a1fd9364Slogwang 	priv->zone = uma_zcreate("NetFlow IPv4 cache",
479a1fd9364Slogwang 	    sizeof(struct flow_entry), NULL, NULL, NULL, NULL,
480a1fd9364Slogwang 	    UMA_ALIGN_CACHE, 0);
481a1fd9364Slogwang 	uma_zone_set_max(priv->zone, CACHESIZE);
482a1fd9364Slogwang #ifdef INET6
483a1fd9364Slogwang 	priv->zone6 = uma_zcreate("NetFlow IPv6 cache",
484a1fd9364Slogwang 	    sizeof(struct flow6_entry), NULL, NULL, NULL, NULL,
485a1fd9364Slogwang 	    UMA_ALIGN_CACHE, 0);
486a1fd9364Slogwang 	uma_zone_set_max(priv->zone6, CACHESIZE);
487a1fd9364Slogwang #endif
488a1fd9364Slogwang 
489a1fd9364Slogwang 	/* Allocate hash. */
490a1fd9364Slogwang 	priv->hash = malloc(NBUCKETS * sizeof(struct flow_hash_entry),
491a1fd9364Slogwang 	    M_NETFLOW_HASH, M_WAITOK | M_ZERO);
492a1fd9364Slogwang 
493a1fd9364Slogwang 	/* Initialize hash. */
494a1fd9364Slogwang 	for (i = 0, hsh = priv->hash; i < NBUCKETS; i++, hsh++) {
495a1fd9364Slogwang 		mtx_init(&hsh->mtx, "hash mutex", NULL, MTX_DEF);
496a1fd9364Slogwang 		TAILQ_INIT(&hsh->head);
497a1fd9364Slogwang 	}
498a1fd9364Slogwang 
499a1fd9364Slogwang #ifdef INET6
500a1fd9364Slogwang 	/* Allocate hash. */
501a1fd9364Slogwang 	priv->hash6 = malloc(NBUCKETS * sizeof(struct flow_hash_entry),
502a1fd9364Slogwang 	    M_NETFLOW_HASH, M_WAITOK | M_ZERO);
503a1fd9364Slogwang 
504a1fd9364Slogwang 	/* Initialize hash. */
505a1fd9364Slogwang 	for (i = 0, hsh = priv->hash6; i < NBUCKETS; i++, hsh++) {
506a1fd9364Slogwang 		mtx_init(&hsh->mtx, "hash mutex", NULL, MTX_DEF);
507a1fd9364Slogwang 		TAILQ_INIT(&hsh->head);
508a1fd9364Slogwang 	}
509a1fd9364Slogwang #endif
510a1fd9364Slogwang 
511a1fd9364Slogwang 	priv->nfinfo_bytes = counter_u64_alloc(M_WAITOK);
512a1fd9364Slogwang 	priv->nfinfo_packets = counter_u64_alloc(M_WAITOK);
513a1fd9364Slogwang 	priv->nfinfo_bytes6 = counter_u64_alloc(M_WAITOK);
514a1fd9364Slogwang 	priv->nfinfo_packets6 = counter_u64_alloc(M_WAITOK);
515a1fd9364Slogwang 	priv->nfinfo_sbytes = counter_u64_alloc(M_WAITOK);
516a1fd9364Slogwang 	priv->nfinfo_spackets = counter_u64_alloc(M_WAITOK);
517a1fd9364Slogwang 	priv->nfinfo_sbytes6 = counter_u64_alloc(M_WAITOK);
518a1fd9364Slogwang 	priv->nfinfo_spackets6 = counter_u64_alloc(M_WAITOK);
519a1fd9364Slogwang 	priv->nfinfo_act_exp = counter_u64_alloc(M_WAITOK);
520a1fd9364Slogwang 	priv->nfinfo_inact_exp = counter_u64_alloc(M_WAITOK);
521a1fd9364Slogwang 
522a1fd9364Slogwang 	ng_netflow_v9_cache_init(priv);
523a1fd9364Slogwang 	CTR0(KTR_NET, "ng_netflow startup()");
524a1fd9364Slogwang }
525a1fd9364Slogwang 
526a1fd9364Slogwang /* Initialize new FIB table for v5 and v9 */
527a1fd9364Slogwang int
ng_netflow_fib_init(priv_p priv,int fib)528a1fd9364Slogwang ng_netflow_fib_init(priv_p priv, int fib)
529a1fd9364Slogwang {
530a1fd9364Slogwang 	fib_export_p	fe = priv_to_fib(priv, fib);
531a1fd9364Slogwang 
532a1fd9364Slogwang 	CTR1(KTR_NET, "ng_netflow(): fib init: %d", fib);
533a1fd9364Slogwang 
534a1fd9364Slogwang 	if (fe != NULL)
535a1fd9364Slogwang 		return (0);
536a1fd9364Slogwang 
537a1fd9364Slogwang 	if ((fe = malloc(sizeof(struct fib_export), M_NETGRAPH,
538a1fd9364Slogwang 	    M_NOWAIT | M_ZERO)) == NULL)
539a1fd9364Slogwang 		return (ENOMEM);
540a1fd9364Slogwang 
541a1fd9364Slogwang 	mtx_init(&fe->export_mtx, "export dgram lock", NULL, MTX_DEF);
542a1fd9364Slogwang 	mtx_init(&fe->export9_mtx, "export9 dgram lock", NULL, MTX_DEF);
543a1fd9364Slogwang 	fe->fib = fib;
544a1fd9364Slogwang 	fe->domain_id = fib;
545a1fd9364Slogwang 
546a1fd9364Slogwang 	if (atomic_cmpset_ptr((volatile uintptr_t *)&priv->fib_data[fib],
547a1fd9364Slogwang 	    (uintptr_t)NULL, (uintptr_t)fe) == 0) {
548a1fd9364Slogwang 		/* FIB already set up by other ISR */
549a1fd9364Slogwang 		CTR3(KTR_NET, "ng_netflow(): fib init: %d setup %p but got %p",
550a1fd9364Slogwang 		    fib, fe, priv_to_fib(priv, fib));
551a1fd9364Slogwang 		mtx_destroy(&fe->export_mtx);
552a1fd9364Slogwang 		mtx_destroy(&fe->export9_mtx);
553a1fd9364Slogwang 		free(fe, M_NETGRAPH);
554a1fd9364Slogwang 	} else {
555a1fd9364Slogwang 		/* Increase counter for statistics */
556a1fd9364Slogwang 		CTR3(KTR_NET, "ng_netflow(): fib %d setup to %p (%p)",
557a1fd9364Slogwang 		    fib, fe, priv_to_fib(priv, fib));
558a1fd9364Slogwang 		priv->nfinfo_alloc_fibs++;
559a1fd9364Slogwang 	}
560a1fd9364Slogwang 
561a1fd9364Slogwang 	return (0);
562a1fd9364Slogwang }
563a1fd9364Slogwang 
564a1fd9364Slogwang /* Free all flow cache memory. Called from node close method. */
565a1fd9364Slogwang void
ng_netflow_cache_flush(priv_p priv)566a1fd9364Slogwang ng_netflow_cache_flush(priv_p priv)
567a1fd9364Slogwang {
568a1fd9364Slogwang 	struct flow_entry	*fle, *fle1;
569a1fd9364Slogwang 	struct flow_hash_entry	*hsh;
570a1fd9364Slogwang 	struct netflow_export_item exp;
571a1fd9364Slogwang 	fib_export_p fe;
572a1fd9364Slogwang 	int i;
573a1fd9364Slogwang 
574a1fd9364Slogwang 	bzero(&exp, sizeof(exp));
575a1fd9364Slogwang 
576a1fd9364Slogwang 	/*
577a1fd9364Slogwang 	 * We are going to free probably billable data.
578a1fd9364Slogwang 	 * Expire everything before freeing it.
579a1fd9364Slogwang 	 * No locking is required since callout is already drained.
580a1fd9364Slogwang 	 */
581a1fd9364Slogwang 	for (hsh = priv->hash, i = 0; i < NBUCKETS; hsh++, i++)
582a1fd9364Slogwang 		TAILQ_FOREACH_SAFE(fle, &hsh->head, fle_hash, fle1) {
583a1fd9364Slogwang 			TAILQ_REMOVE(&hsh->head, fle, fle_hash);
584a1fd9364Slogwang 			fe = priv_to_fib(priv, fle->f.r.fib);
585a1fd9364Slogwang 			expire_flow(priv, fe, fle, NG_QUEUE);
586a1fd9364Slogwang 		}
587a1fd9364Slogwang #ifdef INET6
588a1fd9364Slogwang 	for (hsh = priv->hash6, i = 0; i < NBUCKETS; hsh++, i++)
589a1fd9364Slogwang 		TAILQ_FOREACH_SAFE(fle, &hsh->head, fle_hash, fle1) {
590a1fd9364Slogwang 			TAILQ_REMOVE(&hsh->head, fle, fle_hash);
591a1fd9364Slogwang 			fe = priv_to_fib(priv, fle->f.r.fib);
592a1fd9364Slogwang 			expire_flow(priv, fe, fle, NG_QUEUE);
593a1fd9364Slogwang 		}
594a1fd9364Slogwang #endif
595a1fd9364Slogwang 
596a1fd9364Slogwang 	uma_zdestroy(priv->zone);
597a1fd9364Slogwang 	/* Destroy hash mutexes. */
598a1fd9364Slogwang 	for (i = 0, hsh = priv->hash; i < NBUCKETS; i++, hsh++)
599a1fd9364Slogwang 		mtx_destroy(&hsh->mtx);
600a1fd9364Slogwang 
601a1fd9364Slogwang 	/* Free hash memory. */
602a1fd9364Slogwang 	if (priv->hash != NULL)
603a1fd9364Slogwang 		free(priv->hash, M_NETFLOW_HASH);
604a1fd9364Slogwang #ifdef INET6
605a1fd9364Slogwang 	uma_zdestroy(priv->zone6);
606a1fd9364Slogwang 	/* Destroy hash mutexes. */
607a1fd9364Slogwang 	for (i = 0, hsh = priv->hash6; i < NBUCKETS; i++, hsh++)
608a1fd9364Slogwang 		mtx_destroy(&hsh->mtx);
609a1fd9364Slogwang 
610a1fd9364Slogwang 	/* Free hash memory. */
611a1fd9364Slogwang 	if (priv->hash6 != NULL)
612a1fd9364Slogwang 		free(priv->hash6, M_NETFLOW_HASH);
613a1fd9364Slogwang #endif
614a1fd9364Slogwang 
615a1fd9364Slogwang 	for (i = 0; i < priv->maxfibs; i++) {
616a1fd9364Slogwang 		if ((fe = priv_to_fib(priv, i)) == NULL)
617a1fd9364Slogwang 			continue;
618a1fd9364Slogwang 
619a1fd9364Slogwang 		if (fe->exp.item != NULL)
620a1fd9364Slogwang 			export_send(priv, fe, fe->exp.item, NG_QUEUE);
621a1fd9364Slogwang 
622a1fd9364Slogwang 		if (fe->exp.item9 != NULL)
623a1fd9364Slogwang 			export9_send(priv, fe, fe->exp.item9,
624a1fd9364Slogwang 			    fe->exp.item9_opt, NG_QUEUE);
625a1fd9364Slogwang 
626a1fd9364Slogwang 		mtx_destroy(&fe->export_mtx);
627a1fd9364Slogwang 		mtx_destroy(&fe->export9_mtx);
628a1fd9364Slogwang 		free(fe, M_NETGRAPH);
629a1fd9364Slogwang 	}
630a1fd9364Slogwang 
631a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_bytes);
632a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_packets);
633a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_bytes6);
634a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_packets6);
635a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_sbytes);
636a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_spackets);
637a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_sbytes6);
638a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_spackets6);
639a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_act_exp);
640a1fd9364Slogwang 	counter_u64_free(priv->nfinfo_inact_exp);
641a1fd9364Slogwang 
642a1fd9364Slogwang 	ng_netflow_v9_cache_flush(priv);
643a1fd9364Slogwang }
644a1fd9364Slogwang 
645*22ce4affSfengbojiang #ifdef INET
646a1fd9364Slogwang /* Insert packet from into flow cache. */
647a1fd9364Slogwang int
ng_netflow_flow_add(priv_p priv,fib_export_p fe,struct ip * ip,caddr_t upper_ptr,uint8_t upper_proto,uint8_t flags,unsigned int src_if_index)648a1fd9364Slogwang ng_netflow_flow_add(priv_p priv, fib_export_p fe, struct ip *ip,
649a1fd9364Slogwang     caddr_t upper_ptr, uint8_t upper_proto, uint8_t flags,
650a1fd9364Slogwang     unsigned int src_if_index)
651a1fd9364Slogwang {
652a1fd9364Slogwang 	struct flow_entry	*fle, *fle1;
653a1fd9364Slogwang 	struct flow_hash_entry	*hsh;
654a1fd9364Slogwang 	struct flow_rec		r;
655a1fd9364Slogwang 	int			hlen, plen;
656a1fd9364Slogwang 	int			error = 0;
657a1fd9364Slogwang 	uint16_t		eproto;
658a1fd9364Slogwang 	uint8_t			tcp_flags = 0;
659a1fd9364Slogwang 
660a1fd9364Slogwang 	bzero(&r, sizeof(r));
661a1fd9364Slogwang 
662a1fd9364Slogwang 	if (ip->ip_v != IPVERSION)
663a1fd9364Slogwang 		return (EINVAL);
664a1fd9364Slogwang 
665a1fd9364Slogwang 	hlen = ip->ip_hl << 2;
666a1fd9364Slogwang 	if (hlen < sizeof(struct ip))
667a1fd9364Slogwang 		return (EINVAL);
668a1fd9364Slogwang 
669a1fd9364Slogwang 	eproto = ETHERTYPE_IP;
670a1fd9364Slogwang 	/* Assume L4 template by default */
671a1fd9364Slogwang 	r.flow_type = NETFLOW_V9_FLOW_V4_L4;
672a1fd9364Slogwang 
673a1fd9364Slogwang 	r.r_src = ip->ip_src;
674a1fd9364Slogwang 	r.r_dst = ip->ip_dst;
675a1fd9364Slogwang 	r.fib = fe->fib;
676a1fd9364Slogwang 
677a1fd9364Slogwang 	plen = ntohs(ip->ip_len);
678a1fd9364Slogwang 
679a1fd9364Slogwang 	r.r_ip_p = ip->ip_p;
680a1fd9364Slogwang 	r.r_tos = ip->ip_tos;
681a1fd9364Slogwang 
682a1fd9364Slogwang 	r.r_i_ifx = src_if_index;
683a1fd9364Slogwang 
684a1fd9364Slogwang 	/*
685a1fd9364Slogwang 	 * XXX NOTE: only first fragment of fragmented TCP, UDP and
686a1fd9364Slogwang 	 * ICMP packet will be recorded with proper s_port and d_port.
687a1fd9364Slogwang 	 * Following fragments will be recorded simply as IP packet with
688a1fd9364Slogwang 	 * ip_proto = ip->ip_p and s_port, d_port set to zero.
689a1fd9364Slogwang 	 * I know, it looks like bug. But I don't want to re-implement
690a1fd9364Slogwang 	 * ip packet assebmling here. Anyway, (in)famous trafd works this way -
691a1fd9364Slogwang 	 * and nobody complains yet :)
692a1fd9364Slogwang 	 */
693a1fd9364Slogwang 	if ((ip->ip_off & htons(IP_OFFMASK)) == 0)
694a1fd9364Slogwang 		switch(r.r_ip_p) {
695a1fd9364Slogwang 		case IPPROTO_TCP:
696a1fd9364Slogwang 		    {
697a1fd9364Slogwang 			struct tcphdr *tcp;
698a1fd9364Slogwang 
699a1fd9364Slogwang 			tcp = (struct tcphdr *)((caddr_t )ip + hlen);
700a1fd9364Slogwang 			r.r_sport = tcp->th_sport;
701a1fd9364Slogwang 			r.r_dport = tcp->th_dport;
702a1fd9364Slogwang 			tcp_flags = tcp->th_flags;
703a1fd9364Slogwang 			break;
704a1fd9364Slogwang 		    }
705a1fd9364Slogwang 		case IPPROTO_UDP:
706a1fd9364Slogwang 			r.r_ports = *(uint32_t *)((caddr_t )ip + hlen);
707a1fd9364Slogwang 			break;
708a1fd9364Slogwang 		}
709a1fd9364Slogwang 
710a1fd9364Slogwang 	counter_u64_add(priv->nfinfo_packets, 1);
711a1fd9364Slogwang 	counter_u64_add(priv->nfinfo_bytes, plen);
712a1fd9364Slogwang 
713a1fd9364Slogwang 	/* Find hash slot. */
714a1fd9364Slogwang 	hsh = &priv->hash[ip_hash(&r)];
715a1fd9364Slogwang 
716a1fd9364Slogwang 	mtx_lock(&hsh->mtx);
717a1fd9364Slogwang 
718a1fd9364Slogwang 	/*
719a1fd9364Slogwang 	 * Go through hash and find our entry. If we encounter an
720a1fd9364Slogwang 	 * entry, that should be expired, purge it. We do a reverse
721a1fd9364Slogwang 	 * search since most active entries are first, and most
722a1fd9364Slogwang 	 * searches are done on most active entries.
723a1fd9364Slogwang 	 */
724a1fd9364Slogwang 	TAILQ_FOREACH_REVERSE_SAFE(fle, &hsh->head, fhead, fle_hash, fle1) {
725a1fd9364Slogwang 		if (bcmp(&r, &fle->f.r, sizeof(struct flow_rec)) == 0)
726a1fd9364Slogwang 			break;
727a1fd9364Slogwang 		if ((INACTIVE(fle) && SMALL(fle)) || AGED(fle)) {
728a1fd9364Slogwang 			TAILQ_REMOVE(&hsh->head, fle, fle_hash);
729a1fd9364Slogwang 			expire_flow(priv, priv_to_fib(priv, fle->f.r.fib),
730a1fd9364Slogwang 			    fle, NG_QUEUE);
731a1fd9364Slogwang 			counter_u64_add(priv->nfinfo_act_exp, 1);
732a1fd9364Slogwang 		}
733a1fd9364Slogwang 	}
734a1fd9364Slogwang 
735a1fd9364Slogwang 	if (fle) {			/* An existent entry. */
736a1fd9364Slogwang 
737a1fd9364Slogwang 		fle->f.bytes += plen;
738a1fd9364Slogwang 		fle->f.packets ++;
739a1fd9364Slogwang 		fle->f.tcp_flags |= tcp_flags;
740a1fd9364Slogwang 		fle->f.last = time_uptime;
741a1fd9364Slogwang 
742a1fd9364Slogwang 		/*
743a1fd9364Slogwang 		 * We have the following reasons to expire flow in active way:
744a1fd9364Slogwang 		 * - it hit active timeout
745a1fd9364Slogwang 		 * - a TCP connection closed
746a1fd9364Slogwang 		 * - it is going to overflow counter
747a1fd9364Slogwang 		 */
748a1fd9364Slogwang 		if (tcp_flags & TH_FIN || tcp_flags & TH_RST || AGED(fle) ||
749a1fd9364Slogwang 		    (fle->f.bytes >= (CNTR_MAX - IF_MAXMTU)) ) {
750a1fd9364Slogwang 			TAILQ_REMOVE(&hsh->head, fle, fle_hash);
751a1fd9364Slogwang 			expire_flow(priv, priv_to_fib(priv, fle->f.r.fib),
752a1fd9364Slogwang 			    fle, NG_QUEUE);
753a1fd9364Slogwang 			counter_u64_add(priv->nfinfo_act_exp, 1);
754a1fd9364Slogwang 		} else {
755a1fd9364Slogwang 			/*
756a1fd9364Slogwang 			 * It is the newest, move it to the tail,
757a1fd9364Slogwang 			 * if it isn't there already. Next search will
758a1fd9364Slogwang 			 * locate it quicker.
759a1fd9364Slogwang 			 */
760a1fd9364Slogwang 			if (fle != TAILQ_LAST(&hsh->head, fhead)) {
761a1fd9364Slogwang 				TAILQ_REMOVE(&hsh->head, fle, fle_hash);
762a1fd9364Slogwang 				TAILQ_INSERT_TAIL(&hsh->head, fle, fle_hash);
763a1fd9364Slogwang 			}
764a1fd9364Slogwang 		}
765a1fd9364Slogwang 	} else				/* A new flow entry. */
766a1fd9364Slogwang 		error = hash_insert(priv, hsh, &r, plen, flags, tcp_flags);
767a1fd9364Slogwang 
768a1fd9364Slogwang 	mtx_unlock(&hsh->mtx);
769a1fd9364Slogwang 
770a1fd9364Slogwang 	return (error);
771a1fd9364Slogwang }
772*22ce4affSfengbojiang #endif
773a1fd9364Slogwang 
774a1fd9364Slogwang #ifdef INET6
775a1fd9364Slogwang /* Insert IPv6 packet from into flow cache. */
776a1fd9364Slogwang int
ng_netflow_flow6_add(priv_p priv,fib_export_p fe,struct ip6_hdr * ip6,caddr_t upper_ptr,uint8_t upper_proto,uint8_t flags,unsigned int src_if_index)777a1fd9364Slogwang ng_netflow_flow6_add(priv_p priv, fib_export_p fe, struct ip6_hdr *ip6,
778a1fd9364Slogwang     caddr_t upper_ptr, uint8_t upper_proto, uint8_t flags,
779a1fd9364Slogwang     unsigned int src_if_index)
780a1fd9364Slogwang {
781a1fd9364Slogwang 	struct flow_entry	*fle = NULL, *fle1;
782a1fd9364Slogwang 	struct flow6_entry	*fle6;
783a1fd9364Slogwang 	struct flow_hash_entry	*hsh;
784a1fd9364Slogwang 	struct flow6_rec	r;
785a1fd9364Slogwang 	int			plen;
786a1fd9364Slogwang 	int			error = 0;
787a1fd9364Slogwang 	uint8_t			tcp_flags = 0;
788a1fd9364Slogwang 
789a1fd9364Slogwang 	/* check version */
790a1fd9364Slogwang 	if ((ip6->ip6_vfc & IPV6_VERSION_MASK) != IPV6_VERSION)
791a1fd9364Slogwang 		return (EINVAL);
792a1fd9364Slogwang 
793a1fd9364Slogwang 	bzero(&r, sizeof(r));
794a1fd9364Slogwang 
795a1fd9364Slogwang 	r.src.r_src6 = ip6->ip6_src;
796a1fd9364Slogwang 	r.dst.r_dst6 = ip6->ip6_dst;
797a1fd9364Slogwang 	r.fib = fe->fib;
798a1fd9364Slogwang 
799a1fd9364Slogwang 	/* Assume L4 template by default */
800a1fd9364Slogwang 	r.flow_type = NETFLOW_V9_FLOW_V6_L4;
801a1fd9364Slogwang 
802a1fd9364Slogwang 	plen = ntohs(ip6->ip6_plen) + sizeof(struct ip6_hdr);
803a1fd9364Slogwang 
804a1fd9364Slogwang #if 0
805a1fd9364Slogwang 	/* XXX: set DSCP/CoS value */
806a1fd9364Slogwang 	r.r_tos = ip->ip_tos;
807a1fd9364Slogwang #endif
808a1fd9364Slogwang 	if ((flags & NG_NETFLOW_IS_FRAG) == 0) {
809a1fd9364Slogwang 		switch(upper_proto) {
810a1fd9364Slogwang 		case IPPROTO_TCP:
811a1fd9364Slogwang 		    {
812a1fd9364Slogwang 			struct tcphdr *tcp;
813a1fd9364Slogwang 
814a1fd9364Slogwang 			tcp = (struct tcphdr *)upper_ptr;
815a1fd9364Slogwang 			r.r_ports = *(uint32_t *)upper_ptr;
816a1fd9364Slogwang 			tcp_flags = tcp->th_flags;
817a1fd9364Slogwang 			break;
818a1fd9364Slogwang 		    }
819a1fd9364Slogwang  		case IPPROTO_UDP:
820a1fd9364Slogwang 		case IPPROTO_SCTP:
821a1fd9364Slogwang 			r.r_ports = *(uint32_t *)upper_ptr;
822a1fd9364Slogwang 			break;
823a1fd9364Slogwang 		}
824a1fd9364Slogwang 	}
825a1fd9364Slogwang 
826a1fd9364Slogwang 	r.r_ip_p = upper_proto;
827a1fd9364Slogwang 	r.r_i_ifx = src_if_index;
828a1fd9364Slogwang 
829a1fd9364Slogwang 	counter_u64_add(priv->nfinfo_packets6, 1);
830a1fd9364Slogwang 	counter_u64_add(priv->nfinfo_bytes6, plen);
831a1fd9364Slogwang 
832a1fd9364Slogwang 	/* Find hash slot. */
833a1fd9364Slogwang 	hsh = &priv->hash6[ip6_hash(&r)];
834a1fd9364Slogwang 
835a1fd9364Slogwang 	mtx_lock(&hsh->mtx);
836a1fd9364Slogwang 
837a1fd9364Slogwang 	/*
838a1fd9364Slogwang 	 * Go through hash and find our entry. If we encounter an
839a1fd9364Slogwang 	 * entry, that should be expired, purge it. We do a reverse
840a1fd9364Slogwang 	 * search since most active entries are first, and most
841a1fd9364Slogwang 	 * searches are done on most active entries.
842a1fd9364Slogwang 	 */
843a1fd9364Slogwang 	TAILQ_FOREACH_REVERSE_SAFE(fle, &hsh->head, fhead, fle_hash, fle1) {
844a1fd9364Slogwang 		if (fle->f.version != IP6VERSION)
845a1fd9364Slogwang 			continue;
846a1fd9364Slogwang 		fle6 = (struct flow6_entry *)fle;
847a1fd9364Slogwang 		if (bcmp(&r, &fle6->f.r, sizeof(struct flow6_rec)) == 0)
848a1fd9364Slogwang 			break;
849a1fd9364Slogwang 		if ((INACTIVE(fle6) && SMALL(fle6)) || AGED(fle6)) {
850a1fd9364Slogwang 			TAILQ_REMOVE(&hsh->head, fle, fle_hash);
851a1fd9364Slogwang 			expire_flow(priv, priv_to_fib(priv, fle->f.r.fib), fle,
852a1fd9364Slogwang 			    NG_QUEUE);
853a1fd9364Slogwang 			counter_u64_add(priv->nfinfo_act_exp, 1);
854a1fd9364Slogwang 		}
855a1fd9364Slogwang 	}
856a1fd9364Slogwang 
857a1fd9364Slogwang 	if (fle != NULL) {			/* An existent entry. */
858a1fd9364Slogwang 		fle6 = (struct flow6_entry *)fle;
859a1fd9364Slogwang 
860a1fd9364Slogwang 		fle6->f.bytes += plen;
861a1fd9364Slogwang 		fle6->f.packets ++;
862a1fd9364Slogwang 		fle6->f.tcp_flags |= tcp_flags;
863a1fd9364Slogwang 		fle6->f.last = time_uptime;
864a1fd9364Slogwang 
865a1fd9364Slogwang 		/*
866a1fd9364Slogwang 		 * We have the following reasons to expire flow in active way:
867a1fd9364Slogwang 		 * - it hit active timeout
868a1fd9364Slogwang 		 * - a TCP connection closed
869a1fd9364Slogwang 		 * - it is going to overflow counter
870a1fd9364Slogwang 		 */
871a1fd9364Slogwang 		if (tcp_flags & TH_FIN || tcp_flags & TH_RST || AGED(fle6) ||
872a1fd9364Slogwang 		    (fle6->f.bytes >= (CNTR_MAX - IF_MAXMTU)) ) {
873a1fd9364Slogwang 			TAILQ_REMOVE(&hsh->head, fle, fle_hash);
874a1fd9364Slogwang 			expire_flow(priv, priv_to_fib(priv, fle->f.r.fib), fle,
875a1fd9364Slogwang 			    NG_QUEUE);
876a1fd9364Slogwang 			counter_u64_add(priv->nfinfo_act_exp, 1);
877a1fd9364Slogwang 		} else {
878a1fd9364Slogwang 			/*
879a1fd9364Slogwang 			 * It is the newest, move it to the tail,
880a1fd9364Slogwang 			 * if it isn't there already. Next search will
881a1fd9364Slogwang 			 * locate it quicker.
882a1fd9364Slogwang 			 */
883a1fd9364Slogwang 			if (fle != TAILQ_LAST(&hsh->head, fhead)) {
884a1fd9364Slogwang 				TAILQ_REMOVE(&hsh->head, fle, fle_hash);
885a1fd9364Slogwang 				TAILQ_INSERT_TAIL(&hsh->head, fle, fle_hash);
886a1fd9364Slogwang 			}
887a1fd9364Slogwang 		}
888a1fd9364Slogwang 	} else				/* A new flow entry. */
889a1fd9364Slogwang 		error = hash6_insert(priv, hsh, &r, plen, flags, tcp_flags);
890a1fd9364Slogwang 
891a1fd9364Slogwang 	mtx_unlock(&hsh->mtx);
892a1fd9364Slogwang 
893a1fd9364Slogwang 	return (error);
894a1fd9364Slogwang }
895a1fd9364Slogwang #endif
896a1fd9364Slogwang 
897a1fd9364Slogwang /*
898a1fd9364Slogwang  * Return records from cache to userland.
899a1fd9364Slogwang  *
900a1fd9364Slogwang  * TODO: matching particular IP should be done in kernel, here.
901a1fd9364Slogwang  */
902a1fd9364Slogwang int
ng_netflow_flow_show(priv_p priv,struct ngnf_show_header * req,struct ngnf_show_header * resp)903a1fd9364Slogwang ng_netflow_flow_show(priv_p priv, struct ngnf_show_header *req,
904a1fd9364Slogwang struct ngnf_show_header *resp)
905a1fd9364Slogwang {
906a1fd9364Slogwang 	struct flow_hash_entry	*hsh;
907a1fd9364Slogwang 	struct flow_entry	*fle;
908a1fd9364Slogwang 	struct flow_entry_data	*data = (struct flow_entry_data *)(resp + 1);
909a1fd9364Slogwang #ifdef INET6
910a1fd9364Slogwang 	struct flow6_entry_data	*data6 = (struct flow6_entry_data *)(resp + 1);
911a1fd9364Slogwang #endif
912a1fd9364Slogwang 	int	i, max;
913a1fd9364Slogwang 
914a1fd9364Slogwang 	i = req->hash_id;
915a1fd9364Slogwang 	if (i > NBUCKETS-1)
916a1fd9364Slogwang 		return (EINVAL);
917a1fd9364Slogwang 
918a1fd9364Slogwang #ifdef INET6
919a1fd9364Slogwang 	if (req->version == 6) {
920a1fd9364Slogwang 		resp->version = 6;
921a1fd9364Slogwang 		hsh = priv->hash6 + i;
922a1fd9364Slogwang 		max = NREC6_AT_ONCE;
923a1fd9364Slogwang 	} else
924a1fd9364Slogwang #endif
925a1fd9364Slogwang 	if (req->version == 4) {
926a1fd9364Slogwang 		resp->version = 4;
927a1fd9364Slogwang 		hsh = priv->hash + i;
928a1fd9364Slogwang 		max = NREC_AT_ONCE;
929a1fd9364Slogwang 	} else
930a1fd9364Slogwang 		return (EINVAL);
931a1fd9364Slogwang 
932a1fd9364Slogwang 	/*
933a1fd9364Slogwang 	 * We will transfer not more than NREC_AT_ONCE. More data
934a1fd9364Slogwang 	 * will come in next message.
935a1fd9364Slogwang 	 * We send current hash index and current record number in list
936a1fd9364Slogwang 	 * to userland, and userland should return it back to us.
937a1fd9364Slogwang 	 * Then, we will restart with new entry.
938a1fd9364Slogwang 	 *
939a1fd9364Slogwang 	 * The resulting cache snapshot can be inaccurate if flow expiration
940a1fd9364Slogwang 	 * is taking place on hash item between userland data requests for
941a1fd9364Slogwang 	 * this hash item id.
942a1fd9364Slogwang 	 */
943a1fd9364Slogwang 	resp->nentries = 0;
944a1fd9364Slogwang 	for (; i < NBUCKETS; hsh++, i++) {
945a1fd9364Slogwang 		int list_id;
946a1fd9364Slogwang 
947a1fd9364Slogwang 		if (mtx_trylock(&hsh->mtx) == 0) {
948a1fd9364Slogwang 			/*
949a1fd9364Slogwang 			 * Requested hash index is not available,
950a1fd9364Slogwang 			 * relay decision to skip or re-request data
951a1fd9364Slogwang 			 * to userland.
952a1fd9364Slogwang 			 */
953a1fd9364Slogwang 			resp->hash_id = i;
954a1fd9364Slogwang 			resp->list_id = 0;
955a1fd9364Slogwang 			return (0);
956a1fd9364Slogwang 		}
957a1fd9364Slogwang 
958a1fd9364Slogwang 		list_id = 0;
959a1fd9364Slogwang 		TAILQ_FOREACH(fle, &hsh->head, fle_hash) {
960a1fd9364Slogwang 			if (hsh->mtx.mtx_lock & MTX_CONTESTED) {
961a1fd9364Slogwang 				resp->hash_id = i;
962a1fd9364Slogwang 				resp->list_id = list_id;
963a1fd9364Slogwang 				mtx_unlock(&hsh->mtx);
964a1fd9364Slogwang 				return (0);
965a1fd9364Slogwang 			}
966a1fd9364Slogwang 
967a1fd9364Slogwang 			list_id++;
968a1fd9364Slogwang 			/* Search for particular record in list. */
969a1fd9364Slogwang 			if (req->list_id > 0) {
970a1fd9364Slogwang 				if (list_id < req->list_id)
971a1fd9364Slogwang 					continue;
972a1fd9364Slogwang 
973a1fd9364Slogwang 				/* Requested list position found. */
974a1fd9364Slogwang 				req->list_id = 0;
975a1fd9364Slogwang 			}
976a1fd9364Slogwang #ifdef INET6
977a1fd9364Slogwang 			if (req->version == 6) {
978a1fd9364Slogwang 				struct flow6_entry *fle6;
979a1fd9364Slogwang 
980a1fd9364Slogwang 				fle6 = (struct flow6_entry *)fle;
981a1fd9364Slogwang 				bcopy(&fle6->f, data6 + resp->nentries,
982a1fd9364Slogwang 				    sizeof(fle6->f));
983a1fd9364Slogwang 			} else
984a1fd9364Slogwang #endif
985a1fd9364Slogwang 				bcopy(&fle->f, data + resp->nentries,
986a1fd9364Slogwang 				    sizeof(fle->f));
987a1fd9364Slogwang 			resp->nentries++;
988a1fd9364Slogwang 			if (resp->nentries == max) {
989a1fd9364Slogwang 				resp->hash_id = i;
990a1fd9364Slogwang 				/*
991a1fd9364Slogwang 				 * If it was the last item in list
992a1fd9364Slogwang 				 * we simply skip to next hash_id.
993a1fd9364Slogwang 				 */
994a1fd9364Slogwang 				resp->list_id = list_id + 1;
995a1fd9364Slogwang 				mtx_unlock(&hsh->mtx);
996a1fd9364Slogwang 				return (0);
997a1fd9364Slogwang 			}
998a1fd9364Slogwang 		}
999a1fd9364Slogwang 		mtx_unlock(&hsh->mtx);
1000a1fd9364Slogwang 	}
1001a1fd9364Slogwang 
1002a1fd9364Slogwang 	resp->hash_id = resp->list_id = 0;
1003a1fd9364Slogwang 
1004a1fd9364Slogwang 	return (0);
1005a1fd9364Slogwang }
1006a1fd9364Slogwang 
1007a1fd9364Slogwang /* We have full datagram in privdata. Send it to export hook. */
1008a1fd9364Slogwang static int
export_send(priv_p priv,fib_export_p fe,item_p item,int flags)1009a1fd9364Slogwang export_send(priv_p priv, fib_export_p fe, item_p item, int flags)
1010a1fd9364Slogwang {
1011a1fd9364Slogwang 	struct mbuf *m = NGI_M(item);
1012a1fd9364Slogwang 	struct netflow_v5_export_dgram *dgram = mtod(m,
1013a1fd9364Slogwang 					struct netflow_v5_export_dgram *);
1014a1fd9364Slogwang 	struct netflow_v5_header *header = &dgram->header;
1015a1fd9364Slogwang 	struct timespec ts;
1016a1fd9364Slogwang 	int error = 0;
1017a1fd9364Slogwang 
1018a1fd9364Slogwang 	/* Fill mbuf header. */
1019a1fd9364Slogwang 	m->m_len = m->m_pkthdr.len = sizeof(struct netflow_v5_record) *
1020a1fd9364Slogwang 	   header->count + sizeof(struct netflow_v5_header);
1021a1fd9364Slogwang 
1022a1fd9364Slogwang 	/* Fill export header. */
1023a1fd9364Slogwang 	header->sys_uptime = htonl(MILLIUPTIME(time_uptime));
1024a1fd9364Slogwang 	getnanotime(&ts);
1025a1fd9364Slogwang 	header->unix_secs  = htonl(ts.tv_sec);
1026a1fd9364Slogwang 	header->unix_nsecs = htonl(ts.tv_nsec);
1027a1fd9364Slogwang 	header->engine_type = 0;
1028a1fd9364Slogwang 	header->engine_id = fe->domain_id;
1029a1fd9364Slogwang 	header->pad = 0;
1030a1fd9364Slogwang 	header->flow_seq = htonl(atomic_fetchadd_32(&fe->flow_seq,
1031a1fd9364Slogwang 	    header->count));
1032a1fd9364Slogwang 	header->count = htons(header->count);
1033a1fd9364Slogwang 
1034a1fd9364Slogwang 	if (priv->export != NULL)
1035a1fd9364Slogwang 		NG_FWD_ITEM_HOOK_FLAGS(error, item, priv->export, flags);
1036a1fd9364Slogwang 	else
1037a1fd9364Slogwang 		NG_FREE_ITEM(item);
1038a1fd9364Slogwang 
1039a1fd9364Slogwang 	return (error);
1040a1fd9364Slogwang }
1041a1fd9364Slogwang 
1042a1fd9364Slogwang /* Add export record to dgram. */
1043a1fd9364Slogwang static int
export_add(item_p item,struct flow_entry * fle)1044a1fd9364Slogwang export_add(item_p item, struct flow_entry *fle)
1045a1fd9364Slogwang {
1046a1fd9364Slogwang 	struct netflow_v5_export_dgram *dgram = mtod(NGI_M(item),
1047a1fd9364Slogwang 					struct netflow_v5_export_dgram *);
1048a1fd9364Slogwang 	struct netflow_v5_header *header = &dgram->header;
1049a1fd9364Slogwang 	struct netflow_v5_record *rec;
1050a1fd9364Slogwang 
1051a1fd9364Slogwang 	rec = &dgram->r[header->count];
1052a1fd9364Slogwang 	header->count ++;
1053a1fd9364Slogwang 
1054a1fd9364Slogwang 	KASSERT(header->count <= NETFLOW_V5_MAX_RECORDS,
1055a1fd9364Slogwang 	    ("ng_netflow: export too big"));
1056a1fd9364Slogwang 
1057a1fd9364Slogwang 	/* Fill in export record. */
1058a1fd9364Slogwang 	rec->src_addr = fle->f.r.r_src.s_addr;
1059a1fd9364Slogwang 	rec->dst_addr = fle->f.r.r_dst.s_addr;
1060a1fd9364Slogwang 	rec->next_hop = fle->f.next_hop.s_addr;
1061a1fd9364Slogwang 	rec->i_ifx    = htons(fle->f.fle_i_ifx);
1062a1fd9364Slogwang 	rec->o_ifx    = htons(fle->f.fle_o_ifx);
1063a1fd9364Slogwang 	rec->packets  = htonl(fle->f.packets);
1064a1fd9364Slogwang 	rec->octets   = htonl(fle->f.bytes);
1065a1fd9364Slogwang 	rec->first    = htonl(MILLIUPTIME(fle->f.first));
1066a1fd9364Slogwang 	rec->last     = htonl(MILLIUPTIME(fle->f.last));
1067a1fd9364Slogwang 	rec->s_port   = fle->f.r.r_sport;
1068a1fd9364Slogwang 	rec->d_port   = fle->f.r.r_dport;
1069a1fd9364Slogwang 	rec->flags    = fle->f.tcp_flags;
1070a1fd9364Slogwang 	rec->prot     = fle->f.r.r_ip_p;
1071a1fd9364Slogwang 	rec->tos      = fle->f.r.r_tos;
1072a1fd9364Slogwang 	rec->dst_mask = fle->f.dst_mask;
1073a1fd9364Slogwang 	rec->src_mask = fle->f.src_mask;
1074a1fd9364Slogwang 	rec->pad1     = 0;
1075a1fd9364Slogwang 	rec->pad2     = 0;
1076a1fd9364Slogwang 
1077a1fd9364Slogwang 	/* Not supported fields. */
1078a1fd9364Slogwang 	rec->src_as = rec->dst_as = 0;
1079a1fd9364Slogwang 
1080a1fd9364Slogwang 	if (header->count == NETFLOW_V5_MAX_RECORDS)
1081a1fd9364Slogwang 		return (1); /* end of datagram */
1082a1fd9364Slogwang 	else
1083a1fd9364Slogwang 		return (0);
1084a1fd9364Slogwang }
1085a1fd9364Slogwang 
1086a1fd9364Slogwang /* Periodic flow expiry run. */
1087a1fd9364Slogwang void
ng_netflow_expire(void * arg)1088a1fd9364Slogwang ng_netflow_expire(void *arg)
1089a1fd9364Slogwang {
1090a1fd9364Slogwang 	struct flow_entry	*fle, *fle1;
1091a1fd9364Slogwang 	struct flow_hash_entry	*hsh;
1092a1fd9364Slogwang 	priv_p			priv = (priv_p )arg;
1093a1fd9364Slogwang 	int			used, i;
1094a1fd9364Slogwang 
1095a1fd9364Slogwang 	/*
1096a1fd9364Slogwang 	 * Going through all the cache.
1097a1fd9364Slogwang 	 */
1098a1fd9364Slogwang 	used = uma_zone_get_cur(priv->zone);
1099a1fd9364Slogwang 	for (hsh = priv->hash, i = 0; i < NBUCKETS; hsh++, i++) {
1100a1fd9364Slogwang 		/*
1101a1fd9364Slogwang 		 * Skip entries, that are already being worked on.
1102a1fd9364Slogwang 		 */
1103a1fd9364Slogwang 		if (mtx_trylock(&hsh->mtx) == 0)
1104a1fd9364Slogwang 			continue;
1105a1fd9364Slogwang 
1106a1fd9364Slogwang 		TAILQ_FOREACH_SAFE(fle, &hsh->head, fle_hash, fle1) {
1107a1fd9364Slogwang 			/*
1108a1fd9364Slogwang 			 * Interrupt thread wants this entry!
1109a1fd9364Slogwang 			 * Quick! Quick! Bail out!
1110a1fd9364Slogwang 			 */
1111a1fd9364Slogwang 			if (hsh->mtx.mtx_lock & MTX_CONTESTED)
1112a1fd9364Slogwang 				break;
1113a1fd9364Slogwang 
1114a1fd9364Slogwang 			/*
1115a1fd9364Slogwang 			 * Don't expire aggressively while hash collision
1116a1fd9364Slogwang 			 * ratio is predicted small.
1117a1fd9364Slogwang 			 */
1118a1fd9364Slogwang 			if (used <= (NBUCKETS*2) && !INACTIVE(fle))
1119a1fd9364Slogwang 				break;
1120a1fd9364Slogwang 
1121a1fd9364Slogwang 			if ((INACTIVE(fle) && (SMALL(fle) ||
1122a1fd9364Slogwang 			    (used > (NBUCKETS*2)))) || AGED(fle)) {
1123a1fd9364Slogwang 				TAILQ_REMOVE(&hsh->head, fle, fle_hash);
1124a1fd9364Slogwang 				expire_flow(priv, priv_to_fib(priv,
1125a1fd9364Slogwang 				    fle->f.r.fib), fle, NG_NOFLAGS);
1126a1fd9364Slogwang 				used--;
1127a1fd9364Slogwang 				counter_u64_add(priv->nfinfo_inact_exp, 1);
1128a1fd9364Slogwang 			}
1129a1fd9364Slogwang 		}
1130a1fd9364Slogwang 		mtx_unlock(&hsh->mtx);
1131a1fd9364Slogwang 	}
1132a1fd9364Slogwang 
1133a1fd9364Slogwang #ifdef INET6
1134a1fd9364Slogwang 	used = uma_zone_get_cur(priv->zone6);
1135a1fd9364Slogwang 	for (hsh = priv->hash6, i = 0; i < NBUCKETS; hsh++, i++) {
1136a1fd9364Slogwang 		struct flow6_entry	*fle6;
1137a1fd9364Slogwang 
1138a1fd9364Slogwang 		/*
1139a1fd9364Slogwang 		 * Skip entries, that are already being worked on.
1140a1fd9364Slogwang 		 */
1141a1fd9364Slogwang 		if (mtx_trylock(&hsh->mtx) == 0)
1142a1fd9364Slogwang 			continue;
1143a1fd9364Slogwang 
1144a1fd9364Slogwang 		TAILQ_FOREACH_SAFE(fle, &hsh->head, fle_hash, fle1) {
1145a1fd9364Slogwang 			fle6 = (struct flow6_entry *)fle;
1146a1fd9364Slogwang 			/*
1147a1fd9364Slogwang 			 * Interrupt thread wants this entry!
1148a1fd9364Slogwang 			 * Quick! Quick! Bail out!
1149a1fd9364Slogwang 			 */
1150a1fd9364Slogwang 			if (hsh->mtx.mtx_lock & MTX_CONTESTED)
1151a1fd9364Slogwang 				break;
1152a1fd9364Slogwang 
1153a1fd9364Slogwang 			/*
1154a1fd9364Slogwang 			 * Don't expire aggressively while hash collision
1155a1fd9364Slogwang 			 * ratio is predicted small.
1156a1fd9364Slogwang 			 */
1157a1fd9364Slogwang 			if (used <= (NBUCKETS*2) && !INACTIVE(fle6))
1158a1fd9364Slogwang 				break;
1159a1fd9364Slogwang 
1160a1fd9364Slogwang 			if ((INACTIVE(fle6) && (SMALL(fle6) ||
1161a1fd9364Slogwang 			    (used > (NBUCKETS*2)))) || AGED(fle6)) {
1162a1fd9364Slogwang 				TAILQ_REMOVE(&hsh->head, fle, fle_hash);
1163a1fd9364Slogwang 				expire_flow(priv, priv_to_fib(priv,
1164a1fd9364Slogwang 				    fle->f.r.fib), fle, NG_NOFLAGS);
1165a1fd9364Slogwang 				used--;
1166a1fd9364Slogwang 				counter_u64_add(priv->nfinfo_inact_exp, 1);
1167a1fd9364Slogwang 			}
1168a1fd9364Slogwang 		}
1169a1fd9364Slogwang 		mtx_unlock(&hsh->mtx);
1170a1fd9364Slogwang 	}
1171a1fd9364Slogwang #endif
1172a1fd9364Slogwang 
1173a1fd9364Slogwang 	/* Schedule next expire. */
1174a1fd9364Slogwang 	callout_reset(&priv->exp_callout, (1*hz), &ng_netflow_expire,
1175a1fd9364Slogwang 	    (void *)priv);
1176a1fd9364Slogwang }
1177