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ip6_flow.c revision 1.3.2.1
      1 /*	$NetBSD: ip6_flow.c,v 1.3.2.1 2007/07/11 20:11:41 mjf Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 2007 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by the 3am Software Foundry ("3am").  It was developed by Liam J. Foy
      9  * <liamjfoy (at) netbsd.org> and Matt Thomas <matt (at) netbsd.org>.
     10  *
     11  * Redistribution and use in source and binary forms, with or without
     12  * modification, are permitted provided that the following conditions
     13  * are met:
     14  * 1. Redistributions of source code must retain the above copyright
     15  *    notice, this list of conditions and the following disclaimer.
     16  * 2. Redistributions in binary form must reproduce the above copyright
     17  *    notice, this list of conditions and the following disclaimer in the
     18  *    documentation and/or other materials provided with the distribution.
     19  * 3. All advertising materials mentioning features or use of this software
     20  *    must display the following acknowledgement:
     21  *	This product includes software developed by the NetBSD
     22  *	Foundation, Inc. and its contributors.
     23  * 4. Neither the name of The NetBSD Foundation nor the names of its
     24  *    contributors may be used to endorse or promote products derived
     25  *    from this software without specific prior written permission.
     26  *
     27  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     28  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     29  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     30  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     31  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     32  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     33  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     34  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     35  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     36  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     37  * POSSIBILITY OF SUCH DAMAGE.
     38  *
     39  * IPv6 version was developed by Liam J. Foy. Original source existed in IPv4
     40  * format developed by Matt Thomas. Thanks to Joerg Sonnenberger, Matt
     41  * Thomas and Christos Zoulas.
     42  *
     43  * Thanks to Liverpool John Moores University, especially Dr. David Llewellyn-Jones
     44  * for providing resources (to test) and Professor Madjid Merabti.
     45  */
     46 
     47 #include <sys/cdefs.h>
     48 
     49 #include <sys/param.h>
     50 #include <sys/systm.h>
     51 #include <sys/malloc.h>
     52 #include <sys/mbuf.h>
     53 #include <sys/domain.h>
     54 #include <sys/protosw.h>
     55 #include <sys/socket.h>
     56 #include <sys/socketvar.h>
     57 #include <sys/time.h>
     58 #include <sys/kernel.h>
     59 #include <sys/pool.h>
     60 #include <sys/sysctl.h>
     61 
     62 #include <net/if.h>
     63 #include <net/if_dl.h>
     64 #include <net/route.h>
     65 #include <net/pfil.h>
     66 
     67 #include <netinet/in.h>
     68 #include <netinet6/in6_var.h>
     69 #include <netinet/in_systm.h>
     70 #include <netinet/ip6.h>
     71 #include <netinet6/ip6_var.h>
     72 
     73 /*
     74  * IPv6 Fast Forward caches/hashes flows from one source to destination.
     75  *
     76  * Upon a successful forward IPv6FF caches and hashes details such as the
     77  * route, source and destination. Once another packet is received matching
     78  * the source and destination the packet is forwarded straight onto if_output
     79  * using the cached details.
     80  *
     81  * Example:
     82  * ether/fddi_input -> ip6flow_fastfoward -> if_output
     83  */
     84 
     85 POOL_INIT(ip6flow_pool, sizeof(struct ip6flow), 0, 0, 0, "ip6flowpl", NULL,
     86     IPL_NET);
     87 
     88 LIST_HEAD(ip6flowhead, ip6flow);
     89 
     90 /*
     91  * We could use IPv4 defines (IPFLOW_HASHBITS) but we'll
     92  * use our own (possibly for future expansion).
     93  */
     94 #define	IP6FLOW_TIMER		(5 * PR_SLOWHZ)
     95 #define	IP6FLOW_DEFAULT_HASHSIZE	(1 << IP6FLOW_HASHBITS)
     96 
     97 static struct ip6flowhead *ip6flowtable = NULL;
     98 static struct ip6flowhead ip6flowlist;
     99 static int ip6flow_inuse;
    100 
    101 /*
    102  * Insert an ip6flow into the list.
    103  */
    104 #define	IP6FLOW_INSERT(bucket, ip6f) \
    105 do { \
    106 	LIST_INSERT_HEAD((bucket), (ip6f), ip6f_hash); \
    107 	LIST_INSERT_HEAD(&ip6flowlist, (ip6f), ip6f_list); \
    108 } while (/*CONSTCOND*/ 0)
    109 
    110 /*
    111  * Remove an ip6flow from the list.
    112  */
    113 #define	IP6FLOW_REMOVE(ip6f) \
    114 do { \
    115 	LIST_REMOVE((ip6f), ip6f_hash); \
    116 	LIST_REMOVE((ip6f), ip6f_list); \
    117 } while (/*CONSTCOND*/ 0)
    118 
    119 #ifndef IP6FLOW_DEFAULT
    120 #define	IP6FLOW_DEFAULT		256
    121 #endif
    122 
    123 int ip6_maxflows = IP6FLOW_DEFAULT;
    124 int ip6_hashsize = IP6FLOW_DEFAULT_HASHSIZE;
    125 
    126 /*
    127  * Calculate hash table position.
    128  */
    129 static size_t
    130 ip6flow_hash(struct ip6_hdr *ip6)
    131 {
    132 	size_t hash;
    133 	uint32_t dst_sum, src_sum;
    134 	size_t idx;
    135 
    136 	src_sum = ip6->ip6_src.s6_addr32[0] + ip6->ip6_src.s6_addr32[1]
    137 	    + ip6->ip6_src.s6_addr32[2] + ip6->ip6_src.s6_addr32[3];
    138 	dst_sum = ip6->ip6_dst.s6_addr32[0] + ip6->ip6_dst.s6_addr32[1]
    139 	    + ip6->ip6_dst.s6_addr32[2] + ip6->ip6_dst.s6_addr32[3];
    140 
    141 	hash = ip6->ip6_flow;
    142 
    143 	for (idx = 0; idx < 32; idx += IP6FLOW_HASHBITS)
    144 		hash += (dst_sum >> (32 - idx)) + (src_sum >> idx);
    145 
    146 	return hash & (ip6_hashsize-1);
    147 }
    148 
    149 /*
    150  * Check to see if a flow already exists - if so return it.
    151  */
    152 static struct ip6flow *
    153 ip6flow_lookup(struct ip6_hdr *ip6)
    154 {
    155 	size_t hash;
    156 	struct ip6flow *ip6f;
    157 
    158 	hash = ip6flow_hash(ip6);
    159 
    160 	LIST_FOREACH(ip6f, &ip6flowtable[hash], ip6f_hash) {
    161 		if (IN6_ARE_ADDR_EQUAL(&ip6->ip6_dst, &ip6f->ip6f_dst)
    162 		    && IN6_ARE_ADDR_EQUAL(&ip6->ip6_src, &ip6f->ip6f_src)
    163 		    && ip6f->ip6f_flow == ip6->ip6_flow) {
    164 		    	/* A cached flow has been found. */
    165 			return ip6f;
    166 		}
    167 	}
    168 
    169 	return NULL;
    170 }
    171 
    172 /*
    173  * Allocate memory and initialise lists. This function is called
    174  * from ip6_init and called there after to resize the hash table.
    175  * If a newly sized table cannot be malloc'ed we just continue
    176  * to use the old one.
    177  */
    178 int
    179 ip6flow_init(int table_size)
    180 {
    181 	struct ip6flowhead *new_table;
    182 	size_t i;
    183 
    184 	new_table = (struct ip6flowhead *)malloc(sizeof(struct ip6flowhead) *
    185 	    table_size, M_RTABLE, M_NOWAIT);
    186 
    187 	if (new_table == NULL)
    188 		return 1;
    189 
    190 	if (ip6flowtable != NULL)
    191 		free(ip6flowtable, M_RTABLE);
    192 
    193 	ip6flowtable = new_table;
    194 	ip6_hashsize = table_size;
    195 
    196 	LIST_INIT(&ip6flowlist);
    197 	for (i = 0; i < ip6_hashsize; i++)
    198 		LIST_INIT(&ip6flowtable[i]);
    199 
    200 	return 0;
    201 }
    202 
    203 /*
    204  * IPv6 Fast Forward routine. Attempt to forward the packet -
    205  * if any problems are found return to the main IPv6 input
    206  * routine to deal with.
    207  */
    208 int
    209 ip6flow_fastforward(struct mbuf *m)
    210 {
    211 	struct ip6flow *ip6f;
    212 	struct ip6_hdr *ip6;
    213 	struct rtentry *rt;
    214 	const struct sockaddr *dst;
    215 	int error;
    216 
    217 	/*
    218 	 * Are we forwarding packets and have flows?
    219 	 */
    220 	if (!ip6_forwarding || ip6flow_inuse == 0)
    221 		return 0;
    222 
    223 	/*
    224 	 * At least size of IPv6 Header?
    225 	 */
    226 	if (m->m_len < sizeof(struct ip6_hdr))
    227 		return 0;
    228 	/*
    229 	 * Was packet received as a link-level multicast or broadcast?
    230 	 * If so, don't try to fast forward.
    231 	 */
    232 	if ((m->m_flags & (M_BCAST|M_MCAST)) != 0)
    233 		return 0;
    234 
    235 	if (IP6_HDR_ALIGNED_P(mtod(m, void *)) == 0) {
    236 		if ((m = m_copyup(m, sizeof(struct ip6_hdr),
    237 				(max_linkhdr + 3) & ~3)) == NULL) {
    238 			return 0;
    239 		}
    240 	} else if (__predict_false(m->m_len < sizeof(struct ip6_hdr))) {
    241 		if ((m = m_pullup(m, sizeof(struct ip6_hdr))) == NULL) {
    242 			return 0;
    243 		}
    244 	}
    245 
    246 	ip6 = mtod(m, struct ip6_hdr *);
    247 
    248 	if ((ip6->ip6_vfc & IPV6_VERSION_MASK) != IPV6_VERSION) {
    249 		/* Bad version. */
    250 		return 0;
    251 	}
    252 
    253 	/*
    254 	 * If we have a hop-by-hop extension we must process it.
    255 	 * We just leave this up to ip6_input to deal with.
    256 	 */
    257 	if (ip6->ip6_nxt == IPPROTO_HOPOPTS)
    258 		return 0;
    259 
    260 	/*
    261 	 * Attempt to find a flow.
    262 	 */
    263 	if ((ip6f = ip6flow_lookup(ip6)) == NULL) {
    264 		/* No flow found. */
    265 		return 0;
    266 	}
    267 
    268 	/*
    269 	 * Route and interface still up?
    270 	 */
    271 	rtcache_check(&ip6f->ip6f_ro);
    272 	rt = ip6f->ip6f_ro.ro_rt;
    273 	if (rt == NULL || (rt->rt_ifp->if_flags & IFF_UP) == 0) {
    274 	    	/* Route or interface is down */
    275 		return 0;
    276 	}
    277 
    278 	/*
    279 	 * Packet size greater than MTU?
    280 	 */
    281 	if (m->m_pkthdr.len > rt->rt_ifp->if_mtu) {
    282 		/* Return to main IPv6 input function. */
    283 		return 0;
    284 	}
    285 
    286 	if (ip6->ip6_hlim <= IPV6_HLIMDEC)
    287 		return 0;
    288 
    289 	/* Decrement hop limit (same as TTL) */
    290 	ip6->ip6_hlim -= IPV6_HLIMDEC;
    291 
    292 	if (rt->rt_flags & RTF_GATEWAY)
    293 		dst = rt->rt_gateway;
    294 	else
    295 		dst = rtcache_getdst(&ip6f->ip6f_ro);
    296 
    297 	PRT_SLOW_ARM(ip6f->ip6f_timer, IP6FLOW_TIMER);
    298 
    299 	ip6f->ip6f_uses++;
    300 
    301 	/* Send on its way - straight to the interface output routine. */
    302 	if ((error = (*rt->rt_ifp->if_output)(rt->rt_ifp, m, dst, rt)) != 0) {
    303 		ip6f->ip6f_dropped++;
    304 	} else {
    305 		ip6f->ip6f_forwarded++;
    306 	}
    307 
    308 	return 1;
    309 }
    310 
    311 /*
    312  * Add the IPv6 flow statistics to the main IPv6 statistics.
    313  */
    314 static void
    315 ip6flow_addstats(struct ip6flow *ip6f)
    316 {
    317 	rtcache_check(&ip6f->ip6f_ro);
    318 	if (ip6f->ip6f_ro.ro_rt != NULL)
    319 		ip6f->ip6f_ro.ro_rt->rt_use += ip6f->ip6f_uses;
    320 	ip6stat.ip6s_fastforwardflows = ip6flow_inuse;
    321 	ip6stat.ip6s_cantforward += ip6f->ip6f_dropped;
    322 	ip6stat.ip6s_odropped += ip6f->ip6f_dropped;
    323 	ip6stat.ip6s_total += ip6f->ip6f_uses;
    324 	ip6stat.ip6s_forward += ip6f->ip6f_forwarded;
    325 	ip6stat.ip6s_fastforward += ip6f->ip6f_forwarded;
    326 }
    327 
    328 /*
    329  * Add statistics and free the flow.
    330  */
    331 static void
    332 ip6flow_free(struct ip6flow *ip6f)
    333 {
    334 	int s;
    335 
    336 	/*
    337 	 * Remove the flow from the hash table (at elevated IPL).
    338 	 * Once it's off the list, we can deal with it at normal
    339 	 * network IPL.
    340 	 */
    341 	s = splnet();
    342 	IP6FLOW_REMOVE(ip6f);
    343 	splx(s);
    344 	ip6flow_inuse--;
    345 	ip6flow_addstats(ip6f);
    346 	rtcache_free(&ip6f->ip6f_ro);
    347 	pool_put(&ip6flow_pool, ip6f);
    348 }
    349 
    350 /*
    351  * Reap one or more flows - ip6flow_reap may remove
    352  * multiple flows if net.inet6.ip6.maxflows is reduced.
    353  */
    354 struct ip6flow *
    355 ip6flow_reap(int just_one)
    356 {
    357 	while (just_one || ip6flow_inuse > ip6_maxflows) {
    358 		struct ip6flow *ip6f, *maybe_ip6f = NULL;
    359 		int s;
    360 
    361 		ip6f = LIST_FIRST(&ip6flowlist);
    362 		while (ip6f != NULL) {
    363 			/*
    364 			 * If this no longer points to a valid route -
    365 			 * reclaim it.
    366 			 */
    367 			rtcache_check(&ip6f->ip6f_ro);
    368 			if (ip6f->ip6f_ro.ro_rt == NULL)
    369 				goto done;
    370 			/*
    371 			 * choose the one that's been least recently
    372 			 * used or has had the least uses in the
    373 			 * last 1.5 intervals.
    374 			 */
    375 			if (maybe_ip6f == NULL ||
    376 			    ip6f->ip6f_timer < maybe_ip6f->ip6f_timer ||
    377 			    (ip6f->ip6f_timer == maybe_ip6f->ip6f_timer &&
    378 			     ip6f->ip6f_last_uses + ip6f->ip6f_uses <
    379 			         maybe_ip6f->ip6f_last_uses +
    380 			         maybe_ip6f->ip6f_uses))
    381 				maybe_ip6f = ip6f;
    382 			ip6f = LIST_NEXT(ip6f, ip6f_list);
    383 		}
    384 		ip6f = maybe_ip6f;
    385 	    done:
    386 		/*
    387 		 * Remove the entry from the flow table
    388 		 */
    389 		s = splnet();
    390 		IP6FLOW_REMOVE(ip6f);
    391 		splx(s);
    392 		rtcache_free(&ip6f->ip6f_ro);
    393 		if (just_one) {
    394 			ip6flow_addstats(ip6f);
    395 			return ip6f;
    396 		}
    397 		ip6flow_inuse--;
    398 		ip6flow_addstats(ip6f);
    399 		pool_put(&ip6flow_pool, ip6f);
    400 	}
    401 	return NULL;
    402 }
    403 
    404 void
    405 ip6flow_slowtimo(void)
    406 {
    407 	struct ip6flow *ip6f, *next_ip6f;
    408 
    409 	for (ip6f = LIST_FIRST(&ip6flowlist); ip6f != NULL; ip6f = next_ip6f) {
    410 		next_ip6f = LIST_NEXT(ip6f, ip6f_list);
    411 		rtcache_check(&ip6f->ip6f_ro);
    412 		if (PRT_SLOW_ISEXPIRED(ip6f->ip6f_timer) ||
    413 		    ip6f->ip6f_ro.ro_rt == NULL) {
    414 			ip6flow_free(ip6f);
    415 		} else {
    416 			ip6f->ip6f_last_uses = ip6f->ip6f_uses;
    417 			ip6flow_addstats(ip6f);
    418 			ip6f->ip6f_uses = 0;
    419 			ip6f->ip6f_dropped = 0;
    420 			ip6f->ip6f_forwarded = 0;
    421 		}
    422 	}
    423 }
    424 
    425 /*
    426  * We have successfully forwarded a packet using the normal
    427  * IPv6 stack. Now create/update a flow.
    428  */
    429 void
    430 ip6flow_create(const struct route *ro, struct mbuf *m)
    431 {
    432 	struct ip6_hdr *ip6;
    433 	struct ip6flow *ip6f;
    434 	size_t hash;
    435 	int s;
    436 
    437 	ip6 = mtod(m, struct ip6_hdr *);
    438 
    439 	/*
    440 	 * If IPv6 Fast Forward is disabled, don't create a flow.
    441 	 * It can be disabled by setting net.inet6.ip6.maxflows to 0.
    442 	 *
    443 	 * Don't create a flow for ICMPv6 messages.
    444 	 */
    445 	if (ip6_maxflows == 0 || ip6->ip6_nxt == IPPROTO_IPV6_ICMP)
    446 		return;
    447 
    448 	/*
    449 	 * See if an existing flow exists.  If so:
    450 	 *	- Remove the flow
    451 	 *	- Add flow statistics
    452 	 *	- Free the route
    453 	 *	- Reset statistics
    454 	 *
    455 	 * If a flow doesn't exist allocate a new one if
    456 	 * ip6_maxflows hasn't reached its limit. If it has
    457 	 * been reached, reap some flows.
    458 	 */
    459 	ip6f = ip6flow_lookup(ip6);
    460 	if (ip6f == NULL) {
    461 		if (ip6flow_inuse >= ip6_maxflows) {
    462 			ip6f = ip6flow_reap(1);
    463 		} else {
    464 			ip6f = pool_get(&ip6flow_pool, PR_NOWAIT);
    465 			if (ip6f == NULL)
    466 				return;
    467 			ip6flow_inuse++;
    468 		}
    469 		memset(ip6f, 0, sizeof(*ip6f));
    470 	} else {
    471 		s = splnet();
    472 		IP6FLOW_REMOVE(ip6f);
    473 		splx(s);
    474 		ip6flow_addstats(ip6f);
    475 		rtcache_free(&ip6f->ip6f_ro);
    476 		ip6f->ip6f_uses = 0;
    477 		ip6f->ip6f_last_uses = 0;
    478 		ip6f->ip6f_dropped = 0;
    479 		ip6f->ip6f_forwarded = 0;
    480 	}
    481 
    482 	/*
    483 	 * Fill in the updated/new details.
    484 	 */
    485 	rtcache_copy(&ip6f->ip6f_ro, ro);
    486 	ip6f->ip6f_dst = ip6->ip6_dst;
    487 	ip6f->ip6f_src = ip6->ip6_src;
    488 	ip6f->ip6f_flow = ip6->ip6_flow;
    489 	PRT_SLOW_ARM(ip6f->ip6f_timer, IP6FLOW_TIMER);
    490 	ip6f->ip6f_start = time_uptime;
    491 
    492 	/*
    493 	 * Insert into the approriate bucket of the flow table.
    494 	 */
    495 	hash = ip6flow_hash(ip6);
    496 	s = splnet();
    497 	IP6FLOW_INSERT(&ip6flowtable[hash], ip6f);
    498 	splx(s);
    499 }
    500 
    501 /*
    502  * Invalidate/remove all flows - if new_size is positive we
    503  * resize the hash table.
    504  */
    505 int
    506 ip6flow_invalidate_all(int new_size)
    507 {
    508 	struct ip6flow *ip6f, *next_ip6f;
    509 	int s, error;
    510 
    511 	error = 0;
    512 	s = splnet();
    513 	for (ip6f = LIST_FIRST(&ip6flowlist); ip6f != NULL; ip6f = next_ip6f) {
    514 		next_ip6f = LIST_NEXT(ip6f, ip6f_list);
    515 		ip6flow_free(ip6f);
    516 	}
    517 
    518 	if (new_size)
    519 		error = ip6flow_init(new_size);
    520 	splx(s);
    521 
    522 	return error;
    523 }
    524