ip_flow.c revision 1.76 1 1.76 knakahar /* $NetBSD: ip_flow.c,v 1.76 2016/08/01 10:22:53 knakahara Exp $ */
2 1.1 matt
3 1.1 matt /*-
4 1.1 matt * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 1.1 matt * All rights reserved.
6 1.1 matt *
7 1.1 matt * This code is derived from software contributed to The NetBSD Foundation
8 1.1 matt * by the 3am Software Foundry ("3am"). It was developed by Matt Thomas.
9 1.1 matt *
10 1.1 matt * Redistribution and use in source and binary forms, with or without
11 1.1 matt * modification, are permitted provided that the following conditions
12 1.1 matt * are met:
13 1.1 matt * 1. Redistributions of source code must retain the above copyright
14 1.1 matt * notice, this list of conditions and the following disclaimer.
15 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 matt * notice, this list of conditions and the following disclaimer in the
17 1.1 matt * documentation and/or other materials provided with the distribution.
18 1.1 matt *
19 1.1 matt * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 matt * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 matt * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 matt * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 matt * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 matt * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 matt * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 matt * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 matt * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 matt * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 matt * POSSIBILITY OF SUCH DAMAGE.
30 1.1 matt */
31 1.22 lukem
32 1.22 lukem #include <sys/cdefs.h>
33 1.76 knakahar __KERNEL_RCSID(0, "$NetBSD: ip_flow.c,v 1.76 2016/08/01 10:22:53 knakahara Exp $");
34 1.1 matt
35 1.1 matt #include <sys/param.h>
36 1.1 matt #include <sys/systm.h>
37 1.1 matt #include <sys/malloc.h>
38 1.1 matt #include <sys/mbuf.h>
39 1.1 matt #include <sys/domain.h>
40 1.1 matt #include <sys/protosw.h>
41 1.1 matt #include <sys/socket.h>
42 1.1 matt #include <sys/socketvar.h>
43 1.1 matt #include <sys/errno.h>
44 1.1 matt #include <sys/time.h>
45 1.1 matt #include <sys/kernel.h>
46 1.7 thorpej #include <sys/pool.h>
47 1.1 matt #include <sys/sysctl.h>
48 1.73 ozaki #include <sys/workqueue.h>
49 1.74 ozaki #include <sys/atomic.h>
50 1.1 matt
51 1.1 matt #include <net/if.h>
52 1.1 matt #include <net/if_dl.h>
53 1.1 matt #include <net/route.h>
54 1.1 matt #include <net/pfil.h>
55 1.1 matt
56 1.1 matt #include <netinet/in.h>
57 1.1 matt #include <netinet/in_systm.h>
58 1.1 matt #include <netinet/ip.h>
59 1.1 matt #include <netinet/in_pcb.h>
60 1.1 matt #include <netinet/in_var.h>
61 1.1 matt #include <netinet/ip_var.h>
62 1.54 thorpej #include <netinet/ip_private.h>
63 1.1 matt
64 1.44 liamjfoy /*
65 1.44 liamjfoy * Similar code is very well commented in netinet6/ip6_flow.c
66 1.44 liamjfoy */
67 1.44 liamjfoy
68 1.53 thorpej #define IPFLOW_HASHBITS 6 /* should not be a multiple of 8 */
69 1.53 thorpej
70 1.57 pooka static struct pool ipflow_pool;
71 1.7 thorpej
72 1.76 knakahar TAILQ_HEAD(ipflowhead, ipflow);
73 1.5 thorpej
74 1.1 matt #define IPFLOW_TIMER (5 * PR_SLOWHZ)
75 1.43 liamjfoy #define IPFLOW_DEFAULT_HASHSIZE (1 << IPFLOW_HASHBITS)
76 1.5 thorpej
77 1.70 knakahar /*
78 1.70 knakahar * ip_flow.c internal lock.
79 1.70 knakahar * If we use softnet_lock, it would cause recursive lock.
80 1.70 knakahar *
81 1.70 knakahar * This is a tentative workaround.
82 1.70 knakahar * We should make it scalable somehow in the future.
83 1.70 knakahar */
84 1.70 knakahar static kmutex_t ipflow_lock;
85 1.43 liamjfoy static struct ipflowhead *ipflowtable = NULL;
86 1.5 thorpej static struct ipflowhead ipflowlist;
87 1.1 matt static int ipflow_inuse;
88 1.5 thorpej
89 1.76 knakahar #define IPFLOW_INSERT(hashidx, ipf) \
90 1.5 thorpej do { \
91 1.76 knakahar (ipf)->ipf_hashidx = (hashidx); \
92 1.76 knakahar TAILQ_INSERT_HEAD(&ipflowtable[(hashidx)], (ipf), ipf_hash); \
93 1.76 knakahar TAILQ_INSERT_HEAD(&ipflowlist, (ipf), ipf_list); \
94 1.26 perry } while (/*CONSTCOND*/ 0)
95 1.5 thorpej
96 1.76 knakahar #define IPFLOW_REMOVE(hashidx, ipf) \
97 1.5 thorpej do { \
98 1.76 knakahar TAILQ_REMOVE(&ipflowtable[(hashidx)], (ipf), ipf_hash); \
99 1.76 knakahar TAILQ_REMOVE(&ipflowlist, (ipf), ipf_list); \
100 1.26 perry } while (/*CONSTCOND*/ 0)
101 1.5 thorpej
102 1.3 matt #ifndef IPFLOW_MAX
103 1.1 matt #define IPFLOW_MAX 256
104 1.3 matt #endif
105 1.64 rmind static int ip_maxflows = IPFLOW_MAX;
106 1.64 rmind static int ip_hashsize = IPFLOW_DEFAULT_HASHSIZE;
107 1.64 rmind
108 1.69 knakahar static struct ipflow *ipflow_reap(bool);
109 1.64 rmind static void ipflow_sysctl_init(struct sysctllog **);
110 1.1 matt
111 1.73 ozaki static void ipflow_slowtimo_work(struct work *, void *);
112 1.73 ozaki static struct workqueue *ipflow_slowtimo_wq;
113 1.73 ozaki static struct work ipflow_slowtimo_wk;
114 1.73 ozaki
115 1.45 liamjfoy static size_t
116 1.51 dyoung ipflow_hash(const struct ip *ip)
117 1.1 matt {
118 1.45 liamjfoy size_t hash = ip->ip_tos;
119 1.45 liamjfoy size_t idx;
120 1.45 liamjfoy
121 1.45 liamjfoy for (idx = 0; idx < 32; idx += IPFLOW_HASHBITS) {
122 1.45 liamjfoy hash += (ip->ip_dst.s_addr >> (32 - idx)) +
123 1.45 liamjfoy (ip->ip_src.s_addr >> idx);
124 1.45 liamjfoy }
125 1.45 liamjfoy
126 1.43 liamjfoy return hash & (ip_hashsize-1);
127 1.1 matt }
128 1.1 matt
129 1.1 matt static struct ipflow *
130 1.51 dyoung ipflow_lookup(const struct ip *ip)
131 1.1 matt {
132 1.45 liamjfoy size_t hash;
133 1.1 matt struct ipflow *ipf;
134 1.1 matt
135 1.70 knakahar KASSERT(mutex_owned(&ipflow_lock));
136 1.70 knakahar
137 1.45 liamjfoy hash = ipflow_hash(ip);
138 1.1 matt
139 1.76 knakahar TAILQ_FOREACH(ipf, &ipflowtable[hash], ipf_hash) {
140 1.1 matt if (ip->ip_dst.s_addr == ipf->ipf_dst.s_addr
141 1.1 matt && ip->ip_src.s_addr == ipf->ipf_src.s_addr
142 1.1 matt && ip->ip_tos == ipf->ipf_tos)
143 1.1 matt break;
144 1.1 matt }
145 1.1 matt return ipf;
146 1.1 matt }
147 1.1 matt
148 1.57 pooka void
149 1.58 cegger ipflow_poolinit(void)
150 1.57 pooka {
151 1.57 pooka
152 1.57 pooka pool_init(&ipflow_pool, sizeof(struct ipflow), 0, 0, 0, "ipflowpl",
153 1.57 pooka NULL, IPL_NET);
154 1.57 pooka }
155 1.57 pooka
156 1.64 rmind static int
157 1.64 rmind ipflow_reinit(int table_size)
158 1.7 thorpej {
159 1.43 liamjfoy struct ipflowhead *new_table;
160 1.45 liamjfoy size_t i;
161 1.7 thorpej
162 1.70 knakahar KASSERT(mutex_owned(&ipflow_lock));
163 1.70 knakahar
164 1.43 liamjfoy new_table = (struct ipflowhead *)malloc(sizeof(struct ipflowhead) *
165 1.43 liamjfoy table_size, M_RTABLE, M_NOWAIT);
166 1.43 liamjfoy
167 1.43 liamjfoy if (new_table == NULL)
168 1.43 liamjfoy return 1;
169 1.43 liamjfoy
170 1.43 liamjfoy if (ipflowtable != NULL)
171 1.43 liamjfoy free(ipflowtable, M_RTABLE);
172 1.43 liamjfoy
173 1.43 liamjfoy ipflowtable = new_table;
174 1.43 liamjfoy ip_hashsize = table_size;
175 1.43 liamjfoy
176 1.76 knakahar TAILQ_INIT(&ipflowlist);
177 1.43 liamjfoy for (i = 0; i < ip_hashsize; i++)
178 1.76 knakahar TAILQ_INIT(&ipflowtable[i]);
179 1.43 liamjfoy
180 1.43 liamjfoy return 0;
181 1.7 thorpej }
182 1.7 thorpej
183 1.64 rmind void
184 1.64 rmind ipflow_init(void)
185 1.64 rmind {
186 1.73 ozaki int error;
187 1.73 ozaki
188 1.73 ozaki error = workqueue_create(&ipflow_slowtimo_wq, "ipflow_slowtimo",
189 1.73 ozaki ipflow_slowtimo_work, NULL, PRI_SOFTNET, IPL_SOFTNET, WQ_MPSAFE);
190 1.73 ozaki if (error != 0)
191 1.73 ozaki panic("%s: workqueue_create failed (%d)\n", __func__, error);
192 1.70 knakahar
193 1.70 knakahar mutex_init(&ipflow_lock, MUTEX_DEFAULT, IPL_NONE);
194 1.70 knakahar
195 1.70 knakahar mutex_enter(&ipflow_lock);
196 1.64 rmind (void)ipflow_reinit(ip_hashsize);
197 1.70 knakahar mutex_exit(&ipflow_lock);
198 1.64 rmind ipflow_sysctl_init(NULL);
199 1.64 rmind }
200 1.64 rmind
201 1.1 matt int
202 1.29 perry ipflow_fastforward(struct mbuf *m)
203 1.1 matt {
204 1.51 dyoung struct ip *ip;
205 1.51 dyoung struct ip ip_store;
206 1.1 matt struct ipflow *ipf;
207 1.1 matt struct rtentry *rt;
208 1.40 dyoung const struct sockaddr *dst;
209 1.1 matt int error;
210 1.6 sommerfe int iplen;
211 1.67 ozaki struct ifnet *ifp;
212 1.67 ozaki int s;
213 1.70 knakahar int ret = 0;
214 1.1 matt
215 1.70 knakahar mutex_enter(&ipflow_lock);
216 1.1 matt /*
217 1.1 matt * Are we forwarding packets? Big enough for an IP packet?
218 1.1 matt */
219 1.3 matt if (!ipforwarding || ipflow_inuse == 0 || m->m_len < sizeof(struct ip))
220 1.70 knakahar goto out;
221 1.14 sommerfe
222 1.14 sommerfe /*
223 1.19 wiz * Was packet received as a link-level multicast or broadcast?
224 1.14 sommerfe * If so, don't try to fast forward..
225 1.14 sommerfe */
226 1.14 sommerfe if ((m->m_flags & (M_BCAST|M_MCAST)) != 0)
227 1.70 knakahar goto out;
228 1.24 itojun
229 1.1 matt /*
230 1.1 matt * IP header with no option and valid version and length
231 1.1 matt */
232 1.51 dyoung if (IP_HDR_ALIGNED_P(mtod(m, const void *)))
233 1.25 thorpej ip = mtod(m, struct ip *);
234 1.25 thorpej else {
235 1.51 dyoung memcpy(&ip_store, mtod(m, const void *), sizeof(ip_store));
236 1.25 thorpej ip = &ip_store;
237 1.25 thorpej }
238 1.6 sommerfe iplen = ntohs(ip->ip_len);
239 1.5 thorpej if (ip->ip_v != IPVERSION || ip->ip_hl != (sizeof(struct ip) >> 2) ||
240 1.13 proff iplen < sizeof(struct ip) || iplen > m->m_pkthdr.len)
241 1.70 knakahar goto out;
242 1.1 matt /*
243 1.1 matt * Find a flow.
244 1.1 matt */
245 1.1 matt if ((ipf = ipflow_lookup(ip)) == NULL)
246 1.70 knakahar goto out;
247 1.1 matt
248 1.67 ozaki ifp = m_get_rcvif(m, &s);
249 1.1 matt /*
250 1.18 thorpej * Verify the IP header checksum.
251 1.2 thorpej */
252 1.18 thorpej switch (m->m_pkthdr.csum_flags &
253 1.67 ozaki ((ifp->if_csum_flags_rx & M_CSUM_IPv4) |
254 1.18 thorpej M_CSUM_IPv4_BAD)) {
255 1.18 thorpej case M_CSUM_IPv4|M_CSUM_IPv4_BAD:
256 1.67 ozaki m_put_rcvif(ifp, &s);
257 1.70 knakahar goto out;
258 1.18 thorpej
259 1.18 thorpej case M_CSUM_IPv4:
260 1.18 thorpej /* Checksum was okay. */
261 1.18 thorpej break;
262 1.18 thorpej
263 1.18 thorpej default:
264 1.18 thorpej /* Must compute it ourselves. */
265 1.67 ozaki if (in_cksum(m, sizeof(struct ip)) != 0) {
266 1.67 ozaki m_put_rcvif(ifp, &s);
267 1.70 knakahar goto out;
268 1.67 ozaki }
269 1.18 thorpej break;
270 1.18 thorpej }
271 1.67 ozaki m_put_rcvif(ifp, &s);
272 1.2 thorpej
273 1.2 thorpej /*
274 1.1 matt * Route and interface still up?
275 1.1 matt */
276 1.50 dyoung if ((rt = rtcache_validate(&ipf->ipf_ro)) == NULL ||
277 1.66 roy (rt->rt_ifp->if_flags & IFF_UP) == 0 ||
278 1.66 roy (rt->rt_flags & (RTF_BLACKHOLE | RTF_BROADCAST)) != 0)
279 1.70 knakahar goto out;
280 1.1 matt
281 1.1 matt /*
282 1.1 matt * Packet size OK? TTL?
283 1.1 matt */
284 1.1 matt if (m->m_pkthdr.len > rt->rt_ifp->if_mtu || ip->ip_ttl <= IPTTLDEC)
285 1.70 knakahar goto out;
286 1.1 matt
287 1.1 matt /*
288 1.18 thorpej * Clear any in-bound checksum flags for this packet.
289 1.18 thorpej */
290 1.18 thorpej m->m_pkthdr.csum_flags = 0;
291 1.18 thorpej
292 1.18 thorpej /*
293 1.1 matt * Everything checks out and so we can forward this packet.
294 1.1 matt * Modify the TTL and incrementally change the checksum.
295 1.24 itojun *
296 1.9 mycroft * This method of adding the checksum works on either endian CPU.
297 1.9 mycroft * If htons() is inlined, all the arithmetic is folded; otherwise
298 1.32 perry * the htons()s are combined by CSE due to the const attribute.
299 1.18 thorpej *
300 1.18 thorpej * Don't bother using HW checksumming here -- the incremental
301 1.18 thorpej * update is pretty fast.
302 1.1 matt */
303 1.1 matt ip->ip_ttl -= IPTTLDEC;
304 1.12 itohy if (ip->ip_sum >= (u_int16_t) ~htons(IPTTLDEC << 8))
305 1.11 mycroft ip->ip_sum -= ~htons(IPTTLDEC << 8);
306 1.8 mycroft else
307 1.2 thorpej ip->ip_sum += htons(IPTTLDEC << 8);
308 1.25 thorpej
309 1.25 thorpej /*
310 1.25 thorpej * Done modifying the header; copy it back, if necessary.
311 1.51 dyoung *
312 1.51 dyoung * XXX Use m_copyback_cow(9) here? --dyoung
313 1.25 thorpej */
314 1.41 christos if (IP_HDR_ALIGNED_P(mtod(m, void *)) == 0)
315 1.41 christos memcpy(mtod(m, void *), &ip_store, sizeof(ip_store));
316 1.6 sommerfe
317 1.6 sommerfe /*
318 1.24 itojun * Trim the packet in case it's too long..
319 1.6 sommerfe */
320 1.6 sommerfe if (m->m_pkthdr.len > iplen) {
321 1.6 sommerfe if (m->m_len == m->m_pkthdr.len) {
322 1.6 sommerfe m->m_len = iplen;
323 1.6 sommerfe m->m_pkthdr.len = iplen;
324 1.6 sommerfe } else
325 1.6 sommerfe m_adj(m, iplen - m->m_pkthdr.len);
326 1.2 thorpej }
327 1.1 matt
328 1.1 matt /*
329 1.65 snj * Send the packet on its way. All we can get back is ENOBUFS
330 1.1 matt */
331 1.1 matt ipf->ipf_uses++;
332 1.76 knakahar
333 1.76 knakahar #if 0
334 1.76 knakahar /*
335 1.76 knakahar * Sorting list is too heavy for fast path(packet processing path).
336 1.76 knakahar * It degrades about 10% performance. So, we does not sort ipflowtable,
337 1.76 knakahar * and then we use FIFO cache replacement instead fo LRU.
338 1.76 knakahar */
339 1.76 knakahar /* move to head (LRU) for ipflowlist. ipflowtable ooes not care LRU. */
340 1.76 knakahar TAILQ_REMOVE(&ipflowlist, ipf, ipf_list);
341 1.76 knakahar TAILQ_INSERT_HEAD(&ipflowlist, ipf, ipf_list);
342 1.76 knakahar #endif
343 1.76 knakahar
344 1.5 thorpej PRT_SLOW_ARM(ipf->ipf_timer, IPFLOW_TIMER);
345 1.16 thorpej
346 1.16 thorpej if (rt->rt_flags & RTF_GATEWAY)
347 1.16 thorpej dst = rt->rt_gateway;
348 1.16 thorpej else
349 1.40 dyoung dst = rtcache_getdst(&ipf->ipf_ro);
350 1.16 thorpej
351 1.72 knakahar if ((error = if_output_lock(rt->rt_ifp, rt->rt_ifp, m, dst, rt)) != 0) {
352 1.1 matt if (error == ENOBUFS)
353 1.1 matt ipf->ipf_dropped++;
354 1.1 matt else
355 1.1 matt ipf->ipf_errors++;
356 1.1 matt }
357 1.70 knakahar ret = 1;
358 1.70 knakahar out:
359 1.70 knakahar mutex_exit(&ipflow_lock);
360 1.70 knakahar return ret;
361 1.1 matt }
362 1.1 matt
363 1.1 matt static void
365 1.1 matt ipflow_addstats(struct ipflow *ipf)
366 1.49 dyoung {
367 1.54 thorpej struct rtentry *rt;
368 1.49 dyoung uint64_t *ips;
369 1.50 dyoung
370 1.49 dyoung if ((rt = rtcache_validate(&ipf->ipf_ro)) != NULL)
371 1.54 thorpej rt->rt_use += ipf->ipf_uses;
372 1.54 thorpej
373 1.54 thorpej ips = IP_STAT_GETREF();
374 1.54 thorpej ips[IP_STAT_CANTFORWARD] += ipf->ipf_errors + ipf->ipf_dropped;
375 1.54 thorpej ips[IP_STAT_TOTAL] += ipf->ipf_uses;
376 1.54 thorpej ips[IP_STAT_FORWARD] += ipf->ipf_uses;
377 1.54 thorpej ips[IP_STAT_FASTFORWARD] += ipf->ipf_uses;
378 1.1 matt IP_STAT_PUTREF();
379 1.1 matt }
380 1.1 matt
381 1.29 perry static void
382 1.1 matt ipflow_free(struct ipflow *ipf)
383 1.70 knakahar {
384 1.70 knakahar
385 1.70 knakahar KASSERT(mutex_owned(&ipflow_lock));
386 1.1 matt
387 1.1 matt /*
388 1.1 matt * Remove the flow from the hash table (at elevated IPL).
389 1.1 matt * Once it's off the list, we can deal with it at normal
390 1.1 matt * network IPL.
391 1.76 knakahar */
392 1.71 knakahar IPFLOW_REMOVE(ipf->ipf_hashidx, ipf);
393 1.1 matt
394 1.38 joerg ipflow_addstats(ipf);
395 1.1 matt rtcache_free(&ipf->ipf_ro);
396 1.7 thorpej ipflow_inuse--;
397 1.1 matt pool_put(&ipflow_pool, ipf);
398 1.1 matt }
399 1.69 knakahar
400 1.53 thorpej static struct ipflow *
401 1.1 matt ipflow_reap(bool just_one)
402 1.76 knakahar {
403 1.70 knakahar struct ipflow *ipf;
404 1.70 knakahar
405 1.70 knakahar KASSERT(mutex_owned(&ipflow_lock));
406 1.76 knakahar
407 1.76 knakahar /*
408 1.76 knakahar * This case must remove one ipflow. Furthermore, this case is used in
409 1.76 knakahar * fast path(packet processing path). So, simply remove TAILQ_LAST one.
410 1.76 knakahar */
411 1.76 knakahar if (just_one) {
412 1.76 knakahar ipf = TAILQ_LAST(&ipflowlist, ipflowhead);
413 1.76 knakahar KASSERT(ipf != NULL);
414 1.76 knakahar
415 1.76 knakahar IPFLOW_REMOVE(ipf->ipf_hashidx, ipf);
416 1.76 knakahar
417 1.76 knakahar ipflow_addstats(ipf);
418 1.76 knakahar rtcache_free(&ipf->ipf_ro);
419 1.76 knakahar return ipf;
420 1.76 knakahar }
421 1.76 knakahar
422 1.76 knakahar /*
423 1.76 knakahar * This case is used in slow path(sysctl).
424 1.76 knakahar * At first, remove invalid rtcache ipflow, and then remove TAILQ_LAST
425 1.76 knakahar * ipflow if it is ensured least recently used by comparing last_uses.
426 1.76 knakahar */
427 1.76 knakahar while (ipflow_inuse > ip_maxflows) {
428 1.3 matt struct ipflow *maybe_ipf = TAILQ_LAST(&ipflowlist, ipflowhead);
429 1.76 knakahar
430 1.5 thorpej TAILQ_FOREACH(ipf, &ipflowlist, ipf_list) {
431 1.5 thorpej /*
432 1.5 thorpej * If this no longer points to a valid route
433 1.5 thorpej * reclaim it.
434 1.50 dyoung */
435 1.5 thorpej if (rtcache_validate(&ipf->ipf_ro) == NULL)
436 1.5 thorpej goto done;
437 1.5 thorpej /*
438 1.5 thorpej * choose the one that's been least recently
439 1.5 thorpej * used or has had the least uses in the
440 1.5 thorpej * last 1.5 intervals.
441 1.76 knakahar */
442 1.76 knakahar if (ipf->ipf_timer < maybe_ipf->ipf_timer
443 1.76 knakahar || ((ipf->ipf_timer == maybe_ipf->ipf_timer)
444 1.76 knakahar && (ipf->ipf_last_uses + ipf->ipf_uses
445 1.5 thorpej < maybe_ipf->ipf_last_uses + maybe_ipf->ipf_uses)))
446 1.1 matt maybe_ipf = ipf;
447 1.3 matt }
448 1.3 matt ipf = maybe_ipf;
449 1.3 matt done:
450 1.3 matt /*
451 1.3 matt * Remove the entry from the flow table.
452 1.76 knakahar */
453 1.71 knakahar IPFLOW_REMOVE(ipf->ipf_hashidx, ipf);
454 1.3 matt
455 1.38 joerg ipflow_addstats(ipf);
456 1.7 thorpej rtcache_free(&ipf->ipf_ro);
457 1.3 matt pool_put(&ipflow_pool, ipf);
458 1.1 matt ipflow_inuse--;
459 1.3 matt }
460 1.1 matt return NULL;
461 1.1 matt }
462 1.74 ozaki
463 1.73 ozaki static unsigned int ipflow_work_enqueued = 0;
464 1.73 ozaki
465 1.73 ozaki static void
466 1.1 matt ipflow_slowtimo_work(struct work *wk, void *arg)
467 1.49 dyoung {
468 1.5 thorpej struct rtentry *rt;
469 1.54 thorpej struct ipflow *ipf, *next_ipf;
470 1.2 thorpej uint64_t *ips;
471 1.74 ozaki
472 1.74 ozaki /* We can allow enqueuing another work at this point */
473 1.74 ozaki atomic_swap_uint(&ipflow_work_enqueued, 0);
474 1.55 ad
475 1.70 knakahar mutex_enter(softnet_lock);
476 1.55 ad mutex_enter(&ipflow_lock);
477 1.76 knakahar KERNEL_LOCK(1, NULL);
478 1.76 knakahar for (ipf = TAILQ_FIRST(&ipflowlist); ipf != NULL; ipf = next_ipf) {
479 1.37 dyoung next_ipf = TAILQ_NEXT(ipf, ipf_list);
480 1.50 dyoung if (PRT_SLOW_ISEXPIRED(ipf->ipf_timer) ||
481 1.5 thorpej (rt = rtcache_validate(&ipf->ipf_ro)) == NULL) {
482 1.5 thorpej ipflow_free(ipf);
483 1.5 thorpej } else {
484 1.49 dyoung ipf->ipf_last_uses = ipf->ipf_uses;
485 1.54 thorpej rt->rt_use += ipf->ipf_uses;
486 1.54 thorpej ips = IP_STAT_GETREF();
487 1.54 thorpej ips[IP_STAT_TOTAL] += ipf->ipf_uses;
488 1.54 thorpej ips[IP_STAT_FORWARD] += ipf->ipf_uses;
489 1.54 thorpej ips[IP_STAT_FASTFORWARD] += ipf->ipf_uses;
490 1.5 thorpej IP_STAT_PUTREF();
491 1.1 matt ipf->ipf_uses = 0;
492 1.1 matt }
493 1.55 ad }
494 1.70 knakahar KERNEL_UNLOCK_ONE(NULL);
495 1.55 ad mutex_exit(&ipflow_lock);
496 1.1 matt mutex_exit(softnet_lock);
497 1.1 matt }
498 1.1 matt
499 1.73 ozaki void
500 1.73 ozaki ipflow_slowtimo(void)
501 1.73 ozaki {
502 1.73 ozaki
503 1.74 ozaki /* Avoid enqueuing another work when one is already enqueued */
504 1.73 ozaki if (atomic_swap_uint(&ipflow_work_enqueued, 1) == 1)
505 1.73 ozaki return;
506 1.73 ozaki
507 1.73 ozaki workqueue_enqueue(ipflow_slowtimo_wq, &ipflow_slowtimo_wk, NULL);
508 1.73 ozaki }
509 1.73 ozaki
510 1.29 perry void
511 1.1 matt ipflow_create(const struct route *ro, struct mbuf *m)
512 1.51 dyoung {
513 1.1 matt const struct ip *const ip = mtod(m, const struct ip *);
514 1.45 liamjfoy struct ipflow *ipf;
515 1.1 matt size_t hash;
516 1.70 knakahar
517 1.70 knakahar mutex_enter(&ipflow_lock);
518 1.1 matt
519 1.1 matt /*
520 1.1 matt * Don't create cache entries for ICMP messages.
521 1.70 knakahar */
522 1.70 knakahar if (ip_maxflows == 0 || ip->ip_p == IPPROTO_ICMP) {
523 1.1 matt mutex_exit(&ipflow_lock);
524 1.70 knakahar return;
525 1.63 pooka }
526 1.63 pooka
527 1.63 pooka KERNEL_LOCK(1, NULL);
528 1.1 matt
529 1.65 snj /*
530 1.1 matt * See if an existing flow struct exists. If so remove it from its
531 1.1 matt * list and free the old route. If not, try to malloc a new one
532 1.1 matt * (if we aren't at our limit).
533 1.1 matt */
534 1.1 matt ipf = ipflow_lookup(ip);
535 1.3 matt if (ipf == NULL) {
536 1.53 thorpej if (ipflow_inuse >= ip_maxflows) {
537 1.1 matt ipf = ipflow_reap(true);
538 1.7 thorpej } else {
539 1.1 matt ipf = pool_get(&ipflow_pool, PR_NOWAIT);
540 1.63 pooka if (ipf == NULL)
541 1.1 matt goto out;
542 1.1 matt ipflow_inuse++;
543 1.39 dyoung }
544 1.1 matt memset(ipf, 0, sizeof(*ipf));
545 1.76 knakahar } else {
546 1.71 knakahar IPFLOW_REMOVE(ipf->ipf_hashidx, ipf);
547 1.1 matt
548 1.38 joerg ipflow_addstats(ipf);
549 1.1 matt rtcache_free(&ipf->ipf_ro);
550 1.1 matt ipf->ipf_uses = ipf->ipf_last_uses = 0;
551 1.1 matt ipf->ipf_errors = ipf->ipf_dropped = 0;
552 1.1 matt }
553 1.1 matt
554 1.1 matt /*
555 1.1 matt * Fill in the updated information.
556 1.46 dyoung */
557 1.1 matt rtcache_copy(&ipf->ipf_ro, ro);
558 1.1 matt ipf->ipf_dst = ip->ip_dst;
559 1.1 matt ipf->ipf_src = ip->ip_src;
560 1.5 thorpej ipf->ipf_tos = ip->ip_tos;
561 1.60 liamjfoy PRT_SLOW_ARM(ipf->ipf_timer, IPFLOW_TIMER);
562 1.1 matt
563 1.1 matt /*
564 1.1 matt * Insert into the approriate bucket of the flow table.
565 1.45 liamjfoy */
566 1.76 knakahar hash = ipflow_hash(ip);
567 1.63 pooka IPFLOW_INSERT(hash, ipf);
568 1.63 pooka
569 1.63 pooka out:
570 1.70 knakahar KERNEL_UNLOCK_ONE(NULL);
571 1.27 scw mutex_exit(&ipflow_lock);
572 1.27 scw }
573 1.43 liamjfoy
574 1.43 liamjfoy int
575 1.27 scw ipflow_invalidate_all(int new_size)
576 1.27 scw {
577 1.71 knakahar struct ipflow *ipf, *next_ipf;
578 1.27 scw int error;
579 1.43 liamjfoy
580 1.70 knakahar error = 0;
581 1.70 knakahar
582 1.70 knakahar mutex_enter(&ipflow_lock);
583 1.76 knakahar
584 1.76 knakahar for (ipf = TAILQ_FIRST(&ipflowlist); ipf != NULL; ipf = next_ipf) {
585 1.27 scw next_ipf = TAILQ_NEXT(ipf, ipf_list);
586 1.27 scw ipflow_free(ipf);
587 1.43 liamjfoy }
588 1.43 liamjfoy
589 1.64 rmind if (new_size)
590 1.43 liamjfoy error = ipflow_reinit(new_size);
591 1.70 knakahar
592 1.70 knakahar mutex_exit(&ipflow_lock);
593 1.43 liamjfoy
594 1.1 matt return error;
595 1.64 rmind }
596 1.64 rmind
597 1.64 rmind /*
598 1.64 rmind * sysctl helper routine for net.inet.ip.maxflows.
599 1.64 rmind */
600 1.64 rmind static int
601 1.64 rmind sysctl_net_inet_ip_maxflows(SYSCTLFN_ARGS)
602 1.64 rmind {
603 1.64 rmind int error;
604 1.64 rmind
605 1.64 rmind error = sysctl_lookup(SYSCTLFN_CALL(rnode));
606 1.64 rmind if (error || newp == NULL)
607 1.64 rmind return (error);
608 1.64 rmind
609 1.70 knakahar mutex_enter(softnet_lock);
610 1.64 rmind mutex_enter(&ipflow_lock);
611 1.64 rmind KERNEL_LOCK(1, NULL);
612 1.64 rmind
613 1.64 rmind ipflow_reap(false);
614 1.64 rmind
615 1.70 knakahar KERNEL_UNLOCK_ONE(NULL);
616 1.64 rmind mutex_exit(&ipflow_lock);
617 1.64 rmind mutex_exit(softnet_lock);
618 1.64 rmind
619 1.64 rmind return (0);
620 1.64 rmind }
621 1.64 rmind
622 1.64 rmind static int
623 1.64 rmind sysctl_net_inet_ip_hashsize(SYSCTLFN_ARGS)
624 1.64 rmind {
625 1.64 rmind int error, tmp;
626 1.64 rmind struct sysctlnode node;
627 1.64 rmind
628 1.64 rmind node = *rnode;
629 1.64 rmind tmp = ip_hashsize;
630 1.64 rmind node.sysctl_data = &tmp;
631 1.64 rmind error = sysctl_lookup(SYSCTLFN_CALL(&node));
632 1.64 rmind if (error || newp == NULL)
633 1.64 rmind return (error);
634 1.64 rmind
635 1.64 rmind if ((tmp & (tmp - 1)) == 0 && tmp != 0) {
636 1.64 rmind /*
637 1.64 rmind * Can only fail due to malloc()
638 1.64 rmind */
639 1.64 rmind mutex_enter(softnet_lock);
640 1.64 rmind KERNEL_LOCK(1, NULL);
641 1.64 rmind
642 1.64 rmind error = ipflow_invalidate_all(tmp);
643 1.64 rmind
644 1.64 rmind KERNEL_UNLOCK_ONE(NULL);
645 1.64 rmind mutex_exit(softnet_lock);
646 1.64 rmind
647 1.64 rmind } else {
648 1.64 rmind /*
649 1.64 rmind * EINVAL if not a power of 2
650 1.64 rmind */
651 1.64 rmind error = EINVAL;
652 1.64 rmind }
653 1.64 rmind
654 1.64 rmind return error;
655 1.64 rmind }
656 1.64 rmind
657 1.64 rmind static void
658 1.64 rmind ipflow_sysctl_init(struct sysctllog **clog)
659 1.64 rmind {
660 1.64 rmind sysctl_createv(clog, 0, NULL, NULL,
661 1.64 rmind CTLFLAG_PERMANENT,
662 1.64 rmind CTLTYPE_NODE, "inet",
663 1.64 rmind SYSCTL_DESCR("PF_INET related settings"),
664 1.64 rmind NULL, 0, NULL, 0,
665 1.64 rmind CTL_NET, PF_INET, CTL_EOL);
666 1.64 rmind sysctl_createv(clog, 0, NULL, NULL,
667 1.64 rmind CTLFLAG_PERMANENT,
668 1.64 rmind CTLTYPE_NODE, "ip",
669 1.64 rmind SYSCTL_DESCR("IPv4 related settings"),
670 1.64 rmind NULL, 0, NULL, 0,
671 1.64 rmind CTL_NET, PF_INET, IPPROTO_IP, CTL_EOL);
672 1.64 rmind
673 1.64 rmind sysctl_createv(clog, 0, NULL, NULL,
674 1.64 rmind CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
675 1.64 rmind CTLTYPE_INT, "maxflows",
676 1.64 rmind SYSCTL_DESCR("Number of flows for fast forwarding"),
677 1.64 rmind sysctl_net_inet_ip_maxflows, 0, &ip_maxflows, 0,
678 1.64 rmind CTL_NET, PF_INET, IPPROTO_IP,
679 1.64 rmind IPCTL_MAXFLOWS, CTL_EOL);
680 1.64 rmind sysctl_createv(clog, 0, NULL, NULL,
681 1.64 rmind CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
682 1.64 rmind CTLTYPE_INT, "hashsize",
683 1.64 rmind SYSCTL_DESCR("Size of hash table for fast forwarding (IPv4)"),
684 1.64 rmind sysctl_net_inet_ip_hashsize, 0, &ip_hashsize, 0,
685 1.64 rmind CTL_NET, PF_INET, IPPROTO_IP,
686 1.64 rmind CTL_CREATE, CTL_EOL);
687 }
688