11dbefcc0SGleb Smirnoff /*- 21dbefcc0SGleb Smirnoff * Copyright (c) 2015 Gleb Smirnoff <glebius@FreeBSD.org> 31dbefcc0SGleb Smirnoff * Copyright (c) 2015 Adrian Chadd <adrian@FreeBSD.org> 41dbefcc0SGleb Smirnoff * Copyright (c) 1982, 1986, 1988, 1993 51dbefcc0SGleb Smirnoff * The Regents of the University of California. All rights reserved. 61dbefcc0SGleb Smirnoff * 71dbefcc0SGleb Smirnoff * Redistribution and use in source and binary forms, with or without 81dbefcc0SGleb Smirnoff * modification, are permitted provided that the following conditions 91dbefcc0SGleb Smirnoff * are met: 101dbefcc0SGleb Smirnoff * 1. Redistributions of source code must retain the above copyright 111dbefcc0SGleb Smirnoff * notice, this list of conditions and the following disclaimer. 121dbefcc0SGleb Smirnoff * 2. Redistributions in binary form must reproduce the above copyright 131dbefcc0SGleb Smirnoff * notice, this list of conditions and the following disclaimer in the 141dbefcc0SGleb Smirnoff * documentation and/or other materials provided with the distribution. 15fbbd9655SWarner Losh * 3. Neither the name of the University nor the names of its contributors 161dbefcc0SGleb Smirnoff * may be used to endorse or promote products derived from this software 171dbefcc0SGleb Smirnoff * without specific prior written permission. 181dbefcc0SGleb Smirnoff * 191dbefcc0SGleb Smirnoff * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 201dbefcc0SGleb Smirnoff * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 211dbefcc0SGleb Smirnoff * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 221dbefcc0SGleb Smirnoff * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 231dbefcc0SGleb Smirnoff * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 241dbefcc0SGleb Smirnoff * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 251dbefcc0SGleb Smirnoff * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 261dbefcc0SGleb Smirnoff * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 271dbefcc0SGleb Smirnoff * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 281dbefcc0SGleb Smirnoff * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 291dbefcc0SGleb Smirnoff * SUCH DAMAGE. 301dbefcc0SGleb Smirnoff * 311dbefcc0SGleb Smirnoff * @(#)ip_input.c 8.2 (Berkeley) 1/4/94 321dbefcc0SGleb Smirnoff */ 331dbefcc0SGleb Smirnoff 341dbefcc0SGleb Smirnoff #include <sys/cdefs.h> 351dbefcc0SGleb Smirnoff __FBSDID("$FreeBSD$"); 361dbefcc0SGleb Smirnoff 371dbefcc0SGleb Smirnoff #include "opt_rss.h" 381dbefcc0SGleb Smirnoff 391dbefcc0SGleb Smirnoff #include <sys/param.h> 401dbefcc0SGleb Smirnoff #include <sys/systm.h> 411dbefcc0SGleb Smirnoff #include <sys/eventhandler.h> 4204f44499SHans Petter Selasky #include <sys/kernel.h> 43c047fd1bSGleb Smirnoff #include <sys/hash.h> 441dbefcc0SGleb Smirnoff #include <sys/mbuf.h> 451dbefcc0SGleb Smirnoff #include <sys/malloc.h> 46ff790bbaSJonathan T. Looney #include <sys/limits.h> 471dbefcc0SGleb Smirnoff #include <sys/lock.h> 481dbefcc0SGleb Smirnoff #include <sys/mutex.h> 491dbefcc0SGleb Smirnoff #include <sys/sysctl.h> 50a55383e7SHans Petter Selasky #include <sys/socket.h> 511dbefcc0SGleb Smirnoff 52a55383e7SHans Petter Selasky #include <net/if.h> 53a55383e7SHans Petter Selasky #include <net/if_var.h> 541dbefcc0SGleb Smirnoff #include <net/rss_config.h> 553e217461SAdrian Chadd #include <net/netisr.h> 561dbefcc0SGleb Smirnoff #include <net/vnet.h> 571dbefcc0SGleb Smirnoff 581dbefcc0SGleb Smirnoff #include <netinet/in.h> 591dbefcc0SGleb Smirnoff #include <netinet/ip.h> 601dbefcc0SGleb Smirnoff #include <netinet/ip_var.h> 611dbefcc0SGleb Smirnoff #include <netinet/in_rss.h> 621dbefcc0SGleb Smirnoff #ifdef MAC 631dbefcc0SGleb Smirnoff #include <security/mac/mac_framework.h> 641dbefcc0SGleb Smirnoff #endif 651dbefcc0SGleb Smirnoff 661dbefcc0SGleb Smirnoff SYSCTL_DECL(_net_inet_ip); 671dbefcc0SGleb Smirnoff 681dbefcc0SGleb Smirnoff /* 691dbefcc0SGleb Smirnoff * Reassembly headers are stored in hash buckets. 701dbefcc0SGleb Smirnoff */ 71a967df1cSJonathan T. Looney #define IPREASS_NHASH_LOG2 10 721dbefcc0SGleb Smirnoff #define IPREASS_NHASH (1 << IPREASS_NHASH_LOG2) 731dbefcc0SGleb Smirnoff #define IPREASS_HMASK (IPREASS_NHASH - 1) 741dbefcc0SGleb Smirnoff 751dbefcc0SGleb Smirnoff struct ipqbucket { 761dbefcc0SGleb Smirnoff TAILQ_HEAD(ipqhead, ipq) head; 771dbefcc0SGleb Smirnoff struct mtx lock; 78a30cb315SGleb Smirnoff struct callout timer; 79a30cb315SGleb Smirnoff #ifdef VIMAGE 80a30cb315SGleb Smirnoff struct vnet *vnet; 81a30cb315SGleb Smirnoff #endif 82ff790bbaSJonathan T. Looney int count; 831dbefcc0SGleb Smirnoff }; 841dbefcc0SGleb Smirnoff 85*1494f477SGleb Smirnoff VNET_DEFINE_STATIC(struct ipqbucket *, ipq); 861dbefcc0SGleb Smirnoff #define V_ipq VNET(ipq) 875f901c92SAndrew Turner VNET_DEFINE_STATIC(uint32_t, ipq_hashseed); 88c047fd1bSGleb Smirnoff #define V_ipq_hashseed VNET(ipq_hashseed) 89*1494f477SGleb Smirnoff VNET_DEFINE_STATIC(uint32_t, ipq_hashsize); 90*1494f477SGleb Smirnoff #define V_ipq_hashsize VNET(ipq_hashsize) 911dbefcc0SGleb Smirnoff 921dbefcc0SGleb Smirnoff #define IPQ_LOCK(i) mtx_lock(&V_ipq[i].lock) 931dbefcc0SGleb Smirnoff #define IPQ_TRYLOCK(i) mtx_trylock(&V_ipq[i].lock) 941dbefcc0SGleb Smirnoff #define IPQ_UNLOCK(i) mtx_unlock(&V_ipq[i].lock) 951dbefcc0SGleb Smirnoff #define IPQ_LOCK_ASSERT(i) mtx_assert(&V_ipq[i].lock, MA_OWNED) 96a30cb315SGleb Smirnoff #define IPQ_BUCKET_LOCK_ASSERT(b) mtx_assert(&(b)->lock, MA_OWNED) 971dbefcc0SGleb Smirnoff 98ff790bbaSJonathan T. Looney VNET_DEFINE_STATIC(int, ipreass_maxbucketsize); 99ff790bbaSJonathan T. Looney #define V_ipreass_maxbucketsize VNET(ipreass_maxbucketsize) 100ff790bbaSJonathan T. Looney 1011dbefcc0SGleb Smirnoff void ipreass_init(void); 102aea0cd04SGleb Smirnoff void ipreass_vnet_init(void); 1031dbefcc0SGleb Smirnoff #ifdef VIMAGE 1041dbefcc0SGleb Smirnoff void ipreass_destroy(void); 1051dbefcc0SGleb Smirnoff #endif 1061dbefcc0SGleb Smirnoff static int sysctl_maxfragpackets(SYSCTL_HANDLER_ARGS); 107ff790bbaSJonathan T. Looney static int sysctl_maxfragbucketsize(SYSCTL_HANDLER_ARGS); 108a30cb315SGleb Smirnoff static int sysctl_fragttl(SYSCTL_HANDLER_ARGS); 1091dbefcc0SGleb Smirnoff static void ipreass_zone_change(void *); 1101dbefcc0SGleb Smirnoff static void ipreass_drain_tomax(void); 111ff790bbaSJonathan T. Looney static void ipq_free(struct ipqbucket *, struct ipq *); 1121dbefcc0SGleb Smirnoff static struct ipq * ipq_reuse(int); 113a30cb315SGleb Smirnoff static void ipreass_callout(void *); 114a30cb315SGleb Smirnoff static void ipreass_reschedule(struct ipqbucket *); 1151dbefcc0SGleb Smirnoff 1161dbefcc0SGleb Smirnoff static inline void 117ff790bbaSJonathan T. Looney ipq_timeout(struct ipqbucket *bucket, struct ipq *fp) 1181dbefcc0SGleb Smirnoff { 1191dbefcc0SGleb Smirnoff 1201dbefcc0SGleb Smirnoff IPSTAT_ADD(ips_fragtimeout, fp->ipq_nfrags); 121ff790bbaSJonathan T. Looney ipq_free(bucket, fp); 1221dbefcc0SGleb Smirnoff } 1231dbefcc0SGleb Smirnoff 1241dbefcc0SGleb Smirnoff static inline void 125ff790bbaSJonathan T. Looney ipq_drop(struct ipqbucket *bucket, struct ipq *fp) 1261dbefcc0SGleb Smirnoff { 1271dbefcc0SGleb Smirnoff 1281dbefcc0SGleb Smirnoff IPSTAT_ADD(ips_fragdropped, fp->ipq_nfrags); 129ff790bbaSJonathan T. Looney ipq_free(bucket, fp); 130a30cb315SGleb Smirnoff ipreass_reschedule(bucket); 1311dbefcc0SGleb Smirnoff } 1321dbefcc0SGleb Smirnoff 133a967df1cSJonathan T. Looney /* 134a967df1cSJonathan T. Looney * By default, limit the number of IP fragments across all reassembly 135a967df1cSJonathan T. Looney * queues to 1/32 of the total number of mbuf clusters. 136a967df1cSJonathan T. Looney * 137a967df1cSJonathan T. Looney * Limit the total number of reassembly queues per VNET to the 138a967df1cSJonathan T. Looney * IP fragment limit, but ensure the limit will not allow any bucket 139a967df1cSJonathan T. Looney * to grow above 100 items. (The bucket limit is 140*1494f477SGleb Smirnoff * IP_MAXFRAGPACKETS / (V_ipq_hashsize / 2), so the 50 is the correct 141a967df1cSJonathan T. Looney * multiplier to reach a 100-item limit.) 142a967df1cSJonathan T. Looney * The 100-item limit was chosen as brief testing seems to show that 143a967df1cSJonathan T. Looney * this produces "reasonable" performance on some subset of systems 144a967df1cSJonathan T. Looney * under DoS attack. 145a967df1cSJonathan T. Looney */ 146a967df1cSJonathan T. Looney #define IP_MAXFRAGS (nmbclusters / 32) 147*1494f477SGleb Smirnoff #define IP_MAXFRAGPACKETS (imin(IP_MAXFRAGS, V_ipq_hashsize * 50)) 148a967df1cSJonathan T. Looney 1497b9c5eb0SJonathan T. Looney static int maxfrags; 150d2b95af1SMateusz Guzik static u_int __exclusive_cache_line nfrags; 1517b9c5eb0SJonathan T. Looney SYSCTL_INT(_net_inet_ip, OID_AUTO, maxfrags, CTLFLAG_RW, 1527b9c5eb0SJonathan T. Looney &maxfrags, 0, 1537b9c5eb0SJonathan T. Looney "Maximum number of IPv4 fragments allowed across all reassembly queues"); 1547b9c5eb0SJonathan T. Looney SYSCTL_UINT(_net_inet_ip, OID_AUTO, curfrags, CTLFLAG_RD, 155d2b95af1SMateusz Guzik &nfrags, 0, 1567b9c5eb0SJonathan T. Looney "Current number of IPv4 fragments across all reassembly queues"); 1577b9c5eb0SJonathan T. Looney 1585f901c92SAndrew Turner VNET_DEFINE_STATIC(uma_zone_t, ipq_zone); 1591dbefcc0SGleb Smirnoff #define V_ipq_zone VNET(ipq_zone) 160*1494f477SGleb Smirnoff 161*1494f477SGleb Smirnoff SYSCTL_UINT(_net_inet_ip, OID_AUTO, reass_hashsize, 162*1494f477SGleb Smirnoff CTLFLAG_VNET | CTLFLAG_RDTUN, &VNET_NAME(ipq_hashsize), 0, 163*1494f477SGleb Smirnoff "Size of IP fragment reassembly hashtable"); 164*1494f477SGleb Smirnoff 1657029da5cSPawel Biernacki SYSCTL_PROC(_net_inet_ip, OID_AUTO, maxfragpackets, 1667029da5cSPawel Biernacki CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_NEEDGIANT, 1677029da5cSPawel Biernacki NULL, 0, sysctl_maxfragpackets, "I", 1681dbefcc0SGleb Smirnoff "Maximum number of IPv4 fragment reassembly queue entries"); 1691dbefcc0SGleb Smirnoff SYSCTL_UMA_CUR(_net_inet_ip, OID_AUTO, fragpackets, CTLFLAG_VNET, 1701dbefcc0SGleb Smirnoff &VNET_NAME(ipq_zone), 1711dbefcc0SGleb Smirnoff "Current number of IPv4 fragment reassembly queue entries"); 1721dbefcc0SGleb Smirnoff 1735f901c92SAndrew Turner VNET_DEFINE_STATIC(int, noreass); 1741dbefcc0SGleb Smirnoff #define V_noreass VNET(noreass) 1751dbefcc0SGleb Smirnoff 1765f901c92SAndrew Turner VNET_DEFINE_STATIC(int, maxfragsperpacket); 1771dbefcc0SGleb Smirnoff #define V_maxfragsperpacket VNET(maxfragsperpacket) 1781dbefcc0SGleb Smirnoff SYSCTL_INT(_net_inet_ip, OID_AUTO, maxfragsperpacket, CTLFLAG_VNET | CTLFLAG_RW, 1791dbefcc0SGleb Smirnoff &VNET_NAME(maxfragsperpacket), 0, 1801dbefcc0SGleb Smirnoff "Maximum number of IPv4 fragments allowed per packet"); 181ff790bbaSJonathan T. Looney SYSCTL_PROC(_net_inet_ip, OID_AUTO, maxfragbucketsize, 182ff790bbaSJonathan T. Looney CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_MPSAFE | CTLFLAG_RW, NULL, 0, 183ff790bbaSJonathan T. Looney sysctl_maxfragbucketsize, "I", 184ff790bbaSJonathan T. Looney "Maximum number of IPv4 fragment reassembly queue entries per bucket"); 1851dbefcc0SGleb Smirnoff 186a30cb315SGleb Smirnoff VNET_DEFINE_STATIC(u_int, ipfragttl) = 30; 187a30cb315SGleb Smirnoff #define V_ipfragttl VNET(ipfragttl) 188a30cb315SGleb Smirnoff SYSCTL_PROC(_net_inet_ip, OID_AUTO, fragttl, CTLTYPE_INT | CTLFLAG_RW | 189a30cb315SGleb Smirnoff CTLFLAG_MPSAFE | CTLFLAG_VNET, NULL, 0, sysctl_fragttl, "IU", 190a30cb315SGleb Smirnoff "IP fragment life time on reassembly queue (seconds)"); 1918338690aSGleb Smirnoff 1921dbefcc0SGleb Smirnoff /* 1931dbefcc0SGleb Smirnoff * Take incoming datagram fragment and try to reassemble it into 1941dbefcc0SGleb Smirnoff * whole datagram. If the argument is the first fragment or one 1951dbefcc0SGleb Smirnoff * in between the function will return NULL and store the mbuf 1961dbefcc0SGleb Smirnoff * in the fragment chain. If the argument is the last fragment 1971dbefcc0SGleb Smirnoff * the packet will be reassembled and the pointer to the new 1981dbefcc0SGleb Smirnoff * mbuf returned for further processing. Only m_tags attached 1991dbefcc0SGleb Smirnoff * to the first packet/fragment are preserved. 2001dbefcc0SGleb Smirnoff * The IP header is *NOT* adjusted out of iplen. 2011dbefcc0SGleb Smirnoff */ 2021dbefcc0SGleb Smirnoff #define M_IP_FRAG M_PROTO9 2031dbefcc0SGleb Smirnoff struct mbuf * 2041dbefcc0SGleb Smirnoff ip_reass(struct mbuf *m) 2051dbefcc0SGleb Smirnoff { 2061dbefcc0SGleb Smirnoff struct ip *ip; 2071dbefcc0SGleb Smirnoff struct mbuf *p, *q, *nq, *t; 2081dbefcc0SGleb Smirnoff struct ipq *fp; 209a55383e7SHans Petter Selasky struct ifnet *srcifp; 2101dbefcc0SGleb Smirnoff struct ipqhead *head; 2117b9c5eb0SJonathan T. Looney int i, hlen, next, tmpmax; 2121dbefcc0SGleb Smirnoff u_int8_t ecn, ecn0; 2135d9bd455SJonathan T. Looney uint32_t hash, hashkey[3]; 2141dbefcc0SGleb Smirnoff #ifdef RSS 2151dbefcc0SGleb Smirnoff uint32_t rss_hash, rss_type; 2161dbefcc0SGleb Smirnoff #endif 2171dbefcc0SGleb Smirnoff 2181dbefcc0SGleb Smirnoff /* 2191dbefcc0SGleb Smirnoff * If no reassembling or maxfragsperpacket are 0, 2201dbefcc0SGleb Smirnoff * never accept fragments. 2217b9c5eb0SJonathan T. Looney * Also, drop packet if it would exceed the maximum 2227b9c5eb0SJonathan T. Looney * number of fragments. 2231dbefcc0SGleb Smirnoff */ 2247b9c5eb0SJonathan T. Looney tmpmax = maxfrags; 2257b9c5eb0SJonathan T. Looney if (V_noreass == 1 || V_maxfragsperpacket == 0 || 2267b9c5eb0SJonathan T. Looney (tmpmax >= 0 && atomic_load_int(&nfrags) >= (u_int)tmpmax)) { 2271dbefcc0SGleb Smirnoff IPSTAT_INC(ips_fragments); 2281dbefcc0SGleb Smirnoff IPSTAT_INC(ips_fragdropped); 2291dbefcc0SGleb Smirnoff m_freem(m); 2301dbefcc0SGleb Smirnoff return (NULL); 2311dbefcc0SGleb Smirnoff } 2321dbefcc0SGleb Smirnoff 2331dbefcc0SGleb Smirnoff ip = mtod(m, struct ip *); 2341dbefcc0SGleb Smirnoff hlen = ip->ip_hl << 2; 2351dbefcc0SGleb Smirnoff 2361dbefcc0SGleb Smirnoff /* 2371dbefcc0SGleb Smirnoff * Adjust ip_len to not reflect header, 2381dbefcc0SGleb Smirnoff * convert offset of this to bytes. 2391dbefcc0SGleb Smirnoff */ 2401dbefcc0SGleb Smirnoff ip->ip_len = htons(ntohs(ip->ip_len) - hlen); 2411dbefcc0SGleb Smirnoff /* 2421dbefcc0SGleb Smirnoff * Make sure that fragments have a data length 2432157f3c3SJonathan T. Looney * that's a non-zero multiple of 8 bytes, unless 2442157f3c3SJonathan T. Looney * this is the last fragment. 2451dbefcc0SGleb Smirnoff */ 2462157f3c3SJonathan T. Looney if (ip->ip_len == htons(0) || 2472157f3c3SJonathan T. Looney ((ip->ip_off & htons(IP_MF)) && (ntohs(ip->ip_len) & 0x7) != 0)) { 2481dbefcc0SGleb Smirnoff IPSTAT_INC(ips_toosmall); /* XXX */ 2491dbefcc0SGleb Smirnoff IPSTAT_INC(ips_fragdropped); 2501dbefcc0SGleb Smirnoff m_freem(m); 2511dbefcc0SGleb Smirnoff return (NULL); 2521dbefcc0SGleb Smirnoff } 2532157f3c3SJonathan T. Looney if (ip->ip_off & htons(IP_MF)) 2541dbefcc0SGleb Smirnoff m->m_flags |= M_IP_FRAG; 2552157f3c3SJonathan T. Looney else 2561dbefcc0SGleb Smirnoff m->m_flags &= ~M_IP_FRAG; 2571dbefcc0SGleb Smirnoff ip->ip_off = htons(ntohs(ip->ip_off) << 3); 2581dbefcc0SGleb Smirnoff 2591dbefcc0SGleb Smirnoff /* 26086af1d02SMark Johnston * Make sure the fragment lies within a packet of valid size. 26186af1d02SMark Johnston */ 26286af1d02SMark Johnston if (ntohs(ip->ip_len) + ntohs(ip->ip_off) > IP_MAXPACKET) { 26386af1d02SMark Johnston IPSTAT_INC(ips_toolong); 26486af1d02SMark Johnston IPSTAT_INC(ips_fragdropped); 26586af1d02SMark Johnston m_freem(m); 26686af1d02SMark Johnston return (NULL); 26786af1d02SMark Johnston } 26886af1d02SMark Johnston 26986af1d02SMark Johnston /* 270a55383e7SHans Petter Selasky * Store receive network interface pointer for later. 271a55383e7SHans Petter Selasky */ 272a55383e7SHans Petter Selasky srcifp = m->m_pkthdr.rcvif; 273a55383e7SHans Petter Selasky 274a55383e7SHans Petter Selasky /* 2751dbefcc0SGleb Smirnoff * Attempt reassembly; if it succeeds, proceed. 2761dbefcc0SGleb Smirnoff * ip_reass() will return a different mbuf. 2771dbefcc0SGleb Smirnoff */ 2781dbefcc0SGleb Smirnoff IPSTAT_INC(ips_fragments); 2791dbefcc0SGleb Smirnoff m->m_pkthdr.PH_loc.ptr = ip; 2801dbefcc0SGleb Smirnoff 2811dbefcc0SGleb Smirnoff /* 2821dbefcc0SGleb Smirnoff * Presence of header sizes in mbufs 2831dbefcc0SGleb Smirnoff * would confuse code below. 2841dbefcc0SGleb Smirnoff */ 2851dbefcc0SGleb Smirnoff m->m_data += hlen; 2861dbefcc0SGleb Smirnoff m->m_len -= hlen; 2871dbefcc0SGleb Smirnoff 2885d9bd455SJonathan T. Looney hashkey[0] = ip->ip_src.s_addr; 2895d9bd455SJonathan T. Looney hashkey[1] = ip->ip_dst.s_addr; 2905d9bd455SJonathan T. Looney hashkey[2] = (uint32_t)ip->ip_p << 16; 2915d9bd455SJonathan T. Looney hashkey[2] += ip->ip_id; 2925d9bd455SJonathan T. Looney hash = jenkins_hash32(hashkey, nitems(hashkey), V_ipq_hashseed); 2935d9bd455SJonathan T. Looney hash &= IPREASS_HMASK; 2941dbefcc0SGleb Smirnoff head = &V_ipq[hash].head; 2951dbefcc0SGleb Smirnoff IPQ_LOCK(hash); 2961dbefcc0SGleb Smirnoff 2971dbefcc0SGleb Smirnoff /* 2981dbefcc0SGleb Smirnoff * Look for queue of fragments 2991dbefcc0SGleb Smirnoff * of this datagram. 3001dbefcc0SGleb Smirnoff */ 3011dbefcc0SGleb Smirnoff TAILQ_FOREACH(fp, head, ipq_list) 3021dbefcc0SGleb Smirnoff if (ip->ip_id == fp->ipq_id && 3031dbefcc0SGleb Smirnoff ip->ip_src.s_addr == fp->ipq_src.s_addr && 3041dbefcc0SGleb Smirnoff ip->ip_dst.s_addr == fp->ipq_dst.s_addr && 3051dbefcc0SGleb Smirnoff #ifdef MAC 3061dbefcc0SGleb Smirnoff mac_ipq_match(m, fp) && 3071dbefcc0SGleb Smirnoff #endif 3081dbefcc0SGleb Smirnoff ip->ip_p == fp->ipq_p) 3091dbefcc0SGleb Smirnoff break; 3101dbefcc0SGleb Smirnoff /* 3111dbefcc0SGleb Smirnoff * If first fragment to arrive, create a reassembly queue. 3121dbefcc0SGleb Smirnoff */ 3131dbefcc0SGleb Smirnoff if (fp == NULL) { 314ff790bbaSJonathan T. Looney if (V_ipq[hash].count < V_ipreass_maxbucketsize) 3151dbefcc0SGleb Smirnoff fp = uma_zalloc(V_ipq_zone, M_NOWAIT); 3161dbefcc0SGleb Smirnoff if (fp == NULL) 3171dbefcc0SGleb Smirnoff fp = ipq_reuse(hash); 318ff790bbaSJonathan T. Looney if (fp == NULL) 319ff790bbaSJonathan T. Looney goto dropfrag; 3201dbefcc0SGleb Smirnoff #ifdef MAC 3211dbefcc0SGleb Smirnoff if (mac_ipq_init(fp, M_NOWAIT) != 0) { 3221dbefcc0SGleb Smirnoff uma_zfree(V_ipq_zone, fp); 3231dbefcc0SGleb Smirnoff fp = NULL; 3241dbefcc0SGleb Smirnoff goto dropfrag; 3251dbefcc0SGleb Smirnoff } 3261dbefcc0SGleb Smirnoff mac_ipq_create(m, fp); 3271dbefcc0SGleb Smirnoff #endif 3281dbefcc0SGleb Smirnoff TAILQ_INSERT_HEAD(head, fp, ipq_list); 329ff790bbaSJonathan T. Looney V_ipq[hash].count++; 3301dbefcc0SGleb Smirnoff fp->ipq_nfrags = 1; 3317b9c5eb0SJonathan T. Looney atomic_add_int(&nfrags, 1); 332a30cb315SGleb Smirnoff fp->ipq_expire = time_uptime + V_ipfragttl; 3331dbefcc0SGleb Smirnoff fp->ipq_p = ip->ip_p; 3341dbefcc0SGleb Smirnoff fp->ipq_id = ip->ip_id; 3351dbefcc0SGleb Smirnoff fp->ipq_src = ip->ip_src; 3361dbefcc0SGleb Smirnoff fp->ipq_dst = ip->ip_dst; 3371dbefcc0SGleb Smirnoff fp->ipq_frags = m; 3382157f3c3SJonathan T. Looney if (m->m_flags & M_IP_FRAG) 3392157f3c3SJonathan T. Looney fp->ipq_maxoff = -1; 3402157f3c3SJonathan T. Looney else 3412157f3c3SJonathan T. Looney fp->ipq_maxoff = ntohs(ip->ip_off) + ntohs(ip->ip_len); 3421dbefcc0SGleb Smirnoff m->m_nextpkt = NULL; 343a30cb315SGleb Smirnoff if (fp == TAILQ_LAST(head, ipqhead)) 344a30cb315SGleb Smirnoff callout_reset_sbt(&V_ipq[hash].timer, 345a30cb315SGleb Smirnoff SBT_1S * V_ipfragttl, SBT_1S, ipreass_callout, 346a30cb315SGleb Smirnoff &V_ipq[hash], 0); 347a30cb315SGleb Smirnoff else 348a30cb315SGleb Smirnoff MPASS(callout_active(&V_ipq[hash].timer)); 3491dbefcc0SGleb Smirnoff goto done; 3501dbefcc0SGleb Smirnoff } else { 3512157f3c3SJonathan T. Looney /* 3522157f3c3SJonathan T. Looney * If we already saw the last fragment, make sure 3532157f3c3SJonathan T. Looney * this fragment's offset looks sane. Otherwise, if 3542157f3c3SJonathan T. Looney * this is the last fragment, record its endpoint. 3552157f3c3SJonathan T. Looney */ 3562157f3c3SJonathan T. Looney if (fp->ipq_maxoff > 0) { 3572157f3c3SJonathan T. Looney i = ntohs(ip->ip_off) + ntohs(ip->ip_len); 3582157f3c3SJonathan T. Looney if (((m->m_flags & M_IP_FRAG) && i >= fp->ipq_maxoff) || 3592157f3c3SJonathan T. Looney ((m->m_flags & M_IP_FRAG) == 0 && 3602157f3c3SJonathan T. Looney i != fp->ipq_maxoff)) { 3612157f3c3SJonathan T. Looney fp = NULL; 3622157f3c3SJonathan T. Looney goto dropfrag; 3632157f3c3SJonathan T. Looney } 3642157f3c3SJonathan T. Looney } else if ((m->m_flags & M_IP_FRAG) == 0) 3652157f3c3SJonathan T. Looney fp->ipq_maxoff = ntohs(ip->ip_off) + ntohs(ip->ip_len); 3661dbefcc0SGleb Smirnoff fp->ipq_nfrags++; 3677b9c5eb0SJonathan T. Looney atomic_add_int(&nfrags, 1); 3681dbefcc0SGleb Smirnoff #ifdef MAC 3691dbefcc0SGleb Smirnoff mac_ipq_update(m, fp); 3701dbefcc0SGleb Smirnoff #endif 3711dbefcc0SGleb Smirnoff } 3721dbefcc0SGleb Smirnoff 3731dbefcc0SGleb Smirnoff #define GETIP(m) ((struct ip*)((m)->m_pkthdr.PH_loc.ptr)) 3741dbefcc0SGleb Smirnoff 3751dbefcc0SGleb Smirnoff /* 3761dbefcc0SGleb Smirnoff * Handle ECN by comparing this segment with the first one; 3771dbefcc0SGleb Smirnoff * if CE is set, do not lose CE. 3781dbefcc0SGleb Smirnoff * drop if CE and not-ECT are mixed for the same packet. 3791dbefcc0SGleb Smirnoff */ 3801dbefcc0SGleb Smirnoff ecn = ip->ip_tos & IPTOS_ECN_MASK; 3811dbefcc0SGleb Smirnoff ecn0 = GETIP(fp->ipq_frags)->ip_tos & IPTOS_ECN_MASK; 3821dbefcc0SGleb Smirnoff if (ecn == IPTOS_ECN_CE) { 3831dbefcc0SGleb Smirnoff if (ecn0 == IPTOS_ECN_NOTECT) 3841dbefcc0SGleb Smirnoff goto dropfrag; 3851dbefcc0SGleb Smirnoff if (ecn0 != IPTOS_ECN_CE) 3861dbefcc0SGleb Smirnoff GETIP(fp->ipq_frags)->ip_tos |= IPTOS_ECN_CE; 3871dbefcc0SGleb Smirnoff } 3881dbefcc0SGleb Smirnoff if (ecn == IPTOS_ECN_NOTECT && ecn0 != IPTOS_ECN_NOTECT) 3891dbefcc0SGleb Smirnoff goto dropfrag; 3901dbefcc0SGleb Smirnoff 3911dbefcc0SGleb Smirnoff /* 3921dbefcc0SGleb Smirnoff * Find a segment which begins after this one does. 3931dbefcc0SGleb Smirnoff */ 3941dbefcc0SGleb Smirnoff for (p = NULL, q = fp->ipq_frags; q; p = q, q = q->m_nextpkt) 3951dbefcc0SGleb Smirnoff if (ntohs(GETIP(q)->ip_off) > ntohs(ip->ip_off)) 3961dbefcc0SGleb Smirnoff break; 3971dbefcc0SGleb Smirnoff 3981dbefcc0SGleb Smirnoff /* 3991dbefcc0SGleb Smirnoff * If there is a preceding segment, it may provide some of 4001dbefcc0SGleb Smirnoff * our data already. If so, drop the data from the incoming 4011dbefcc0SGleb Smirnoff * segment. If it provides all of our data, drop us, otherwise 4021dbefcc0SGleb Smirnoff * stick new segment in the proper place. 4031dbefcc0SGleb Smirnoff * 4041dbefcc0SGleb Smirnoff * If some of the data is dropped from the preceding 4051dbefcc0SGleb Smirnoff * segment, then it's checksum is invalidated. 4061dbefcc0SGleb Smirnoff */ 4071dbefcc0SGleb Smirnoff if (p) { 4081dbefcc0SGleb Smirnoff i = ntohs(GETIP(p)->ip_off) + ntohs(GETIP(p)->ip_len) - 4091dbefcc0SGleb Smirnoff ntohs(ip->ip_off); 4101dbefcc0SGleb Smirnoff if (i > 0) { 4111dbefcc0SGleb Smirnoff if (i >= ntohs(ip->ip_len)) 4121dbefcc0SGleb Smirnoff goto dropfrag; 4131dbefcc0SGleb Smirnoff m_adj(m, i); 4141dbefcc0SGleb Smirnoff m->m_pkthdr.csum_flags = 0; 4151dbefcc0SGleb Smirnoff ip->ip_off = htons(ntohs(ip->ip_off) + i); 4161dbefcc0SGleb Smirnoff ip->ip_len = htons(ntohs(ip->ip_len) - i); 4171dbefcc0SGleb Smirnoff } 4181dbefcc0SGleb Smirnoff m->m_nextpkt = p->m_nextpkt; 4191dbefcc0SGleb Smirnoff p->m_nextpkt = m; 4201dbefcc0SGleb Smirnoff } else { 4211dbefcc0SGleb Smirnoff m->m_nextpkt = fp->ipq_frags; 4221dbefcc0SGleb Smirnoff fp->ipq_frags = m; 4231dbefcc0SGleb Smirnoff } 4241dbefcc0SGleb Smirnoff 4251dbefcc0SGleb Smirnoff /* 4261dbefcc0SGleb Smirnoff * While we overlap succeeding segments trim them or, 4271dbefcc0SGleb Smirnoff * if they are completely covered, dequeue them. 4281dbefcc0SGleb Smirnoff */ 4291dbefcc0SGleb Smirnoff for (; q != NULL && ntohs(ip->ip_off) + ntohs(ip->ip_len) > 4301dbefcc0SGleb Smirnoff ntohs(GETIP(q)->ip_off); q = nq) { 4311dbefcc0SGleb Smirnoff i = (ntohs(ip->ip_off) + ntohs(ip->ip_len)) - 4321dbefcc0SGleb Smirnoff ntohs(GETIP(q)->ip_off); 4331dbefcc0SGleb Smirnoff if (i < ntohs(GETIP(q)->ip_len)) { 4341dbefcc0SGleb Smirnoff GETIP(q)->ip_len = htons(ntohs(GETIP(q)->ip_len) - i); 4351dbefcc0SGleb Smirnoff GETIP(q)->ip_off = htons(ntohs(GETIP(q)->ip_off) + i); 4361dbefcc0SGleb Smirnoff m_adj(q, i); 4371dbefcc0SGleb Smirnoff q->m_pkthdr.csum_flags = 0; 4381dbefcc0SGleb Smirnoff break; 4391dbefcc0SGleb Smirnoff } 4401dbefcc0SGleb Smirnoff nq = q->m_nextpkt; 4411dbefcc0SGleb Smirnoff m->m_nextpkt = nq; 4421dbefcc0SGleb Smirnoff IPSTAT_INC(ips_fragdropped); 4431dbefcc0SGleb Smirnoff fp->ipq_nfrags--; 4447b9c5eb0SJonathan T. Looney atomic_subtract_int(&nfrags, 1); 4451dbefcc0SGleb Smirnoff m_freem(q); 4461dbefcc0SGleb Smirnoff } 4471dbefcc0SGleb Smirnoff 4481dbefcc0SGleb Smirnoff /* 4491dbefcc0SGleb Smirnoff * Check for complete reassembly and perform frag per packet 4501dbefcc0SGleb Smirnoff * limiting. 4511dbefcc0SGleb Smirnoff * 4521dbefcc0SGleb Smirnoff * Frag limiting is performed here so that the nth frag has 4531dbefcc0SGleb Smirnoff * a chance to complete the packet before we drop the packet. 4541dbefcc0SGleb Smirnoff * As a result, n+1 frags are actually allowed per packet, but 4551dbefcc0SGleb Smirnoff * only n will ever be stored. (n = maxfragsperpacket.) 4561dbefcc0SGleb Smirnoff * 4571dbefcc0SGleb Smirnoff */ 4581dbefcc0SGleb Smirnoff next = 0; 4591dbefcc0SGleb Smirnoff for (p = NULL, q = fp->ipq_frags; q; p = q, q = q->m_nextpkt) { 4601dbefcc0SGleb Smirnoff if (ntohs(GETIP(q)->ip_off) != next) { 4611dbefcc0SGleb Smirnoff if (fp->ipq_nfrags > V_maxfragsperpacket) 462ff790bbaSJonathan T. Looney ipq_drop(&V_ipq[hash], fp); 4631dbefcc0SGleb Smirnoff goto done; 4641dbefcc0SGleb Smirnoff } 4651dbefcc0SGleb Smirnoff next += ntohs(GETIP(q)->ip_len); 4661dbefcc0SGleb Smirnoff } 4671dbefcc0SGleb Smirnoff /* Make sure the last packet didn't have the IP_MF flag */ 4681dbefcc0SGleb Smirnoff if (p->m_flags & M_IP_FRAG) { 4691dbefcc0SGleb Smirnoff if (fp->ipq_nfrags > V_maxfragsperpacket) 470ff790bbaSJonathan T. Looney ipq_drop(&V_ipq[hash], fp); 4711dbefcc0SGleb Smirnoff goto done; 4721dbefcc0SGleb Smirnoff } 4731dbefcc0SGleb Smirnoff 4741dbefcc0SGleb Smirnoff /* 4751dbefcc0SGleb Smirnoff * Reassembly is complete. Make sure the packet is a sane size. 4761dbefcc0SGleb Smirnoff */ 4771dbefcc0SGleb Smirnoff q = fp->ipq_frags; 4781dbefcc0SGleb Smirnoff ip = GETIP(q); 4791dbefcc0SGleb Smirnoff if (next + (ip->ip_hl << 2) > IP_MAXPACKET) { 4801dbefcc0SGleb Smirnoff IPSTAT_INC(ips_toolong); 481ff790bbaSJonathan T. Looney ipq_drop(&V_ipq[hash], fp); 4821dbefcc0SGleb Smirnoff goto done; 4831dbefcc0SGleb Smirnoff } 4841dbefcc0SGleb Smirnoff 4851dbefcc0SGleb Smirnoff /* 4861dbefcc0SGleb Smirnoff * Concatenate fragments. 4871dbefcc0SGleb Smirnoff */ 4881dbefcc0SGleb Smirnoff m = q; 4891dbefcc0SGleb Smirnoff t = m->m_next; 4901dbefcc0SGleb Smirnoff m->m_next = NULL; 4911dbefcc0SGleb Smirnoff m_cat(m, t); 4921dbefcc0SGleb Smirnoff nq = q->m_nextpkt; 4931dbefcc0SGleb Smirnoff q->m_nextpkt = NULL; 4941dbefcc0SGleb Smirnoff for (q = nq; q != NULL; q = nq) { 4951dbefcc0SGleb Smirnoff nq = q->m_nextpkt; 4961dbefcc0SGleb Smirnoff q->m_nextpkt = NULL; 4971dbefcc0SGleb Smirnoff m->m_pkthdr.csum_flags &= q->m_pkthdr.csum_flags; 4981dbefcc0SGleb Smirnoff m->m_pkthdr.csum_data += q->m_pkthdr.csum_data; 49909b0b8c0SNavdeep Parhar m_demote_pkthdr(q); 5001dbefcc0SGleb Smirnoff m_cat(m, q); 5011dbefcc0SGleb Smirnoff } 5021dbefcc0SGleb Smirnoff /* 5031dbefcc0SGleb Smirnoff * In order to do checksumming faster we do 'end-around carry' here 5041dbefcc0SGleb Smirnoff * (and not in for{} loop), though it implies we are not going to 5051dbefcc0SGleb Smirnoff * reassemble more than 64k fragments. 5061dbefcc0SGleb Smirnoff */ 5071dbefcc0SGleb Smirnoff while (m->m_pkthdr.csum_data & 0xffff0000) 5081dbefcc0SGleb Smirnoff m->m_pkthdr.csum_data = (m->m_pkthdr.csum_data & 0xffff) + 5091dbefcc0SGleb Smirnoff (m->m_pkthdr.csum_data >> 16); 5107b9c5eb0SJonathan T. Looney atomic_subtract_int(&nfrags, fp->ipq_nfrags); 5111dbefcc0SGleb Smirnoff #ifdef MAC 5121dbefcc0SGleb Smirnoff mac_ipq_reassemble(fp, m); 5131dbefcc0SGleb Smirnoff mac_ipq_destroy(fp); 5141dbefcc0SGleb Smirnoff #endif 5151dbefcc0SGleb Smirnoff 5161dbefcc0SGleb Smirnoff /* 5171dbefcc0SGleb Smirnoff * Create header for new ip packet by modifying header of first 5181dbefcc0SGleb Smirnoff * packet; dequeue and discard fragment reassembly header. 5191dbefcc0SGleb Smirnoff * Make header visible. 5201dbefcc0SGleb Smirnoff */ 5211dbefcc0SGleb Smirnoff ip->ip_len = htons((ip->ip_hl << 2) + next); 5221dbefcc0SGleb Smirnoff ip->ip_src = fp->ipq_src; 5231dbefcc0SGleb Smirnoff ip->ip_dst = fp->ipq_dst; 5241dbefcc0SGleb Smirnoff TAILQ_REMOVE(head, fp, ipq_list); 525ff790bbaSJonathan T. Looney V_ipq[hash].count--; 5261dbefcc0SGleb Smirnoff uma_zfree(V_ipq_zone, fp); 5271dbefcc0SGleb Smirnoff m->m_len += (ip->ip_hl << 2); 5281dbefcc0SGleb Smirnoff m->m_data -= (ip->ip_hl << 2); 5291dbefcc0SGleb Smirnoff /* some debugging cruft by sklower, below, will go away soon */ 530a55383e7SHans Petter Selasky if (m->m_flags & M_PKTHDR) { /* XXX this should be done elsewhere */ 5311dbefcc0SGleb Smirnoff m_fixhdr(m); 532a55383e7SHans Petter Selasky /* set valid receive interface pointer */ 533a55383e7SHans Petter Selasky m->m_pkthdr.rcvif = srcifp; 534a55383e7SHans Petter Selasky } 5351dbefcc0SGleb Smirnoff IPSTAT_INC(ips_reassembled); 536a30cb315SGleb Smirnoff ipreass_reschedule(&V_ipq[hash]); 5371dbefcc0SGleb Smirnoff IPQ_UNLOCK(hash); 5381dbefcc0SGleb Smirnoff 5391dbefcc0SGleb Smirnoff #ifdef RSS 5401dbefcc0SGleb Smirnoff /* 5411dbefcc0SGleb Smirnoff * Query the RSS layer for the flowid / flowtype for the 5421dbefcc0SGleb Smirnoff * mbuf payload. 5431dbefcc0SGleb Smirnoff * 5441dbefcc0SGleb Smirnoff * For now, just assume we have to calculate a new one. 5451dbefcc0SGleb Smirnoff * Later on we should check to see if the assigned flowid matches 5461dbefcc0SGleb Smirnoff * what RSS wants for the given IP protocol and if so, just keep it. 5471dbefcc0SGleb Smirnoff * 5481dbefcc0SGleb Smirnoff * We then queue into the relevant netisr so it can be dispatched 5491dbefcc0SGleb Smirnoff * to the correct CPU. 5501dbefcc0SGleb Smirnoff * 5511dbefcc0SGleb Smirnoff * Note - this may return 1, which means the flowid in the mbuf 5521dbefcc0SGleb Smirnoff * is correct for the configured RSS hash types and can be used. 5531dbefcc0SGleb Smirnoff */ 5541dbefcc0SGleb Smirnoff if (rss_mbuf_software_hash_v4(m, 0, &rss_hash, &rss_type) == 0) { 5551dbefcc0SGleb Smirnoff m->m_pkthdr.flowid = rss_hash; 5561dbefcc0SGleb Smirnoff M_HASHTYPE_SET(m, rss_type); 5571dbefcc0SGleb Smirnoff } 5581dbefcc0SGleb Smirnoff 5591dbefcc0SGleb Smirnoff /* 5601dbefcc0SGleb Smirnoff * Queue/dispatch for reprocessing. 5611dbefcc0SGleb Smirnoff * 5621dbefcc0SGleb Smirnoff * Note: this is much slower than just handling the frame in the 5631dbefcc0SGleb Smirnoff * current receive context. It's likely worth investigating 5641dbefcc0SGleb Smirnoff * why this is. 5651dbefcc0SGleb Smirnoff */ 5661dbefcc0SGleb Smirnoff netisr_dispatch(NETISR_IP_DIRECT, m); 5671dbefcc0SGleb Smirnoff return (NULL); 5681dbefcc0SGleb Smirnoff #endif 5691dbefcc0SGleb Smirnoff 5701dbefcc0SGleb Smirnoff /* Handle in-line */ 5711dbefcc0SGleb Smirnoff return (m); 5721dbefcc0SGleb Smirnoff 5731dbefcc0SGleb Smirnoff dropfrag: 5741dbefcc0SGleb Smirnoff IPSTAT_INC(ips_fragdropped); 5757b9c5eb0SJonathan T. Looney if (fp != NULL) { 5761dbefcc0SGleb Smirnoff fp->ipq_nfrags--; 5777b9c5eb0SJonathan T. Looney atomic_subtract_int(&nfrags, 1); 5787b9c5eb0SJonathan T. Looney } 5791dbefcc0SGleb Smirnoff m_freem(m); 5801dbefcc0SGleb Smirnoff done: 5811dbefcc0SGleb Smirnoff IPQ_UNLOCK(hash); 5821dbefcc0SGleb Smirnoff return (NULL); 5831dbefcc0SGleb Smirnoff 5841dbefcc0SGleb Smirnoff #undef GETIP 5851dbefcc0SGleb Smirnoff } 5861dbefcc0SGleb Smirnoff 5871dbefcc0SGleb Smirnoff /* 588a30cb315SGleb Smirnoff * Timer expired on a bucket. 589a30cb315SGleb Smirnoff * There should be at least one ipq to be timed out. 590160f01f0SGleb Smirnoff */ 591160f01f0SGleb Smirnoff static void 592a30cb315SGleb Smirnoff ipreass_callout(void *arg) 593160f01f0SGleb Smirnoff { 594a30cb315SGleb Smirnoff struct ipqbucket *bucket = arg; 595a30cb315SGleb Smirnoff struct ipq *fp; 596160f01f0SGleb Smirnoff 597a30cb315SGleb Smirnoff IPQ_BUCKET_LOCK_ASSERT(bucket); 598a30cb315SGleb Smirnoff MPASS(atomic_load_int(&nfrags) > 0); 599160f01f0SGleb Smirnoff 600a30cb315SGleb Smirnoff CURVNET_SET(bucket->vnet); 601a30cb315SGleb Smirnoff fp = TAILQ_LAST(&bucket->head, ipqhead); 602a30cb315SGleb Smirnoff KASSERT(fp != NULL && fp->ipq_expire >= time_uptime, 603a30cb315SGleb Smirnoff ("%s: stray callout on bucket %p", __func__, bucket)); 604a30cb315SGleb Smirnoff 605a30cb315SGleb Smirnoff while (fp != NULL && fp->ipq_expire >= time_uptime) { 606a30cb315SGleb Smirnoff ipq_timeout(bucket, fp); 607a30cb315SGleb Smirnoff fp = TAILQ_LAST(&bucket->head, ipqhead); 608160f01f0SGleb Smirnoff } 609a30cb315SGleb Smirnoff ipreass_reschedule(bucket); 610160f01f0SGleb Smirnoff CURVNET_RESTORE(); 611160f01f0SGleb Smirnoff } 612160f01f0SGleb Smirnoff 613160f01f0SGleb Smirnoff static void 614a30cb315SGleb Smirnoff ipreass_reschedule(struct ipqbucket *bucket) 615160f01f0SGleb Smirnoff { 616a30cb315SGleb Smirnoff struct ipq *fp; 617160f01f0SGleb Smirnoff 618a30cb315SGleb Smirnoff IPQ_BUCKET_LOCK_ASSERT(bucket); 619a30cb315SGleb Smirnoff 620a30cb315SGleb Smirnoff if ((fp = TAILQ_LAST(&bucket->head, ipqhead)) != NULL) { 621a30cb315SGleb Smirnoff time_t t; 622a30cb315SGleb Smirnoff 623a30cb315SGleb Smirnoff /* Protect against time_uptime tick. */ 624a30cb315SGleb Smirnoff t = fp->ipq_expire - time_uptime; 625a30cb315SGleb Smirnoff t = (t > 0) ? t : 1; 626a30cb315SGleb Smirnoff callout_reset_sbt(&bucket->timer, SBT_1S * t, SBT_1S, 627a30cb315SGleb Smirnoff ipreass_callout, bucket, 0); 628a30cb315SGleb Smirnoff } else 629a30cb315SGleb Smirnoff callout_stop(&bucket->timer); 630160f01f0SGleb Smirnoff } 63164981536SGleb Smirnoff 63264981536SGleb Smirnoff static void 63364981536SGleb Smirnoff ipreass_drain_vnet(void) 63464981536SGleb Smirnoff { 63564981536SGleb Smirnoff 636*1494f477SGleb Smirnoff for (int i = 0; i < V_ipq_hashsize; i++) { 63764981536SGleb Smirnoff IPQ_LOCK(i); 63864981536SGleb Smirnoff while(!TAILQ_EMPTY(&V_ipq[i].head)) 63964981536SGleb Smirnoff ipq_drop(&V_ipq[i], TAILQ_FIRST(&V_ipq[i].head)); 64064981536SGleb Smirnoff KASSERT(V_ipq[i].count == 0, 64164981536SGleb Smirnoff ("%s: V_ipq[%d] count %d (V_ipq=%p)", __func__, i, 64264981536SGleb Smirnoff V_ipq[i].count, V_ipq)); 64364981536SGleb Smirnoff IPQ_UNLOCK(i); 64464981536SGleb Smirnoff } 64564981536SGleb Smirnoff } 646160f01f0SGleb Smirnoff 647160f01f0SGleb Smirnoff /* 64881a34d37SGleb Smirnoff * Drain off all datagram fragments. 64981a34d37SGleb Smirnoff */ 65081a34d37SGleb Smirnoff static void 65181a34d37SGleb Smirnoff ipreass_drain(void) 65281a34d37SGleb Smirnoff { 65381a34d37SGleb Smirnoff VNET_ITERATOR_DECL(vnet_iter); 65481a34d37SGleb Smirnoff 65581a34d37SGleb Smirnoff VNET_FOREACH(vnet_iter) { 65681a34d37SGleb Smirnoff CURVNET_SET(vnet_iter); 65764981536SGleb Smirnoff ipreass_drain_vnet(); 65881a34d37SGleb Smirnoff CURVNET_RESTORE(); 65981a34d37SGleb Smirnoff } 66081a34d37SGleb Smirnoff } 66181a34d37SGleb Smirnoff 66281a34d37SGleb Smirnoff 66381a34d37SGleb Smirnoff /* 6641dbefcc0SGleb Smirnoff * Initialize IP reassembly structures. 6651dbefcc0SGleb Smirnoff */ 666*1494f477SGleb Smirnoff MALLOC_DEFINE(M_IPREASS_HASH, "IP reass", "IP packet reassembly hash headers"); 6671dbefcc0SGleb Smirnoff void 668aea0cd04SGleb Smirnoff ipreass_vnet_init(void) 6691dbefcc0SGleb Smirnoff { 670ff790bbaSJonathan T. Looney int max; 6711dbefcc0SGleb Smirnoff 672*1494f477SGleb Smirnoff V_ipq_hashsize = IPREASS_NHASH; 673*1494f477SGleb Smirnoff TUNABLE_INT_FETCH("net.inet.ip.reass_hashsize", &V_ipq_hashsize); 674*1494f477SGleb Smirnoff V_ipq = malloc(sizeof(struct ipqbucket) * V_ipq_hashsize, 675*1494f477SGleb Smirnoff M_IPREASS_HASH, M_WAITOK); 676*1494f477SGleb Smirnoff 677*1494f477SGleb Smirnoff for (int i = 0; i < V_ipq_hashsize; i++) { 6781dbefcc0SGleb Smirnoff TAILQ_INIT(&V_ipq[i].head); 6791dbefcc0SGleb Smirnoff mtx_init(&V_ipq[i].lock, "IP reassembly", NULL, 680*1494f477SGleb Smirnoff MTX_DEF | MTX_DUPOK | MTX_NEW); 681a30cb315SGleb Smirnoff callout_init_mtx(&V_ipq[i].timer, &V_ipq[i].lock, 0); 682ff790bbaSJonathan T. Looney V_ipq[i].count = 0; 683a30cb315SGleb Smirnoff #ifdef VIMAGE 684a30cb315SGleb Smirnoff V_ipq[i].vnet = curvnet; 685a30cb315SGleb Smirnoff #endif 6861dbefcc0SGleb Smirnoff } 687c047fd1bSGleb Smirnoff V_ipq_hashseed = arc4random(); 6881dbefcc0SGleb Smirnoff V_maxfragsperpacket = 16; 6891dbefcc0SGleb Smirnoff V_ipq_zone = uma_zcreate("ipq", sizeof(struct ipq), NULL, NULL, NULL, 6901dbefcc0SGleb Smirnoff NULL, UMA_ALIGN_PTR, 0); 691a967df1cSJonathan T. Looney max = IP_MAXFRAGPACKETS; 692ff790bbaSJonathan T. Looney max = uma_zone_set_max(V_ipq_zone, max); 693*1494f477SGleb Smirnoff V_ipreass_maxbucketsize = imax(max / (V_ipq_hashsize / 2), 1); 694aea0cd04SGleb Smirnoff } 6951dbefcc0SGleb Smirnoff 696aea0cd04SGleb Smirnoff void 697aea0cd04SGleb Smirnoff ipreass_init(void) 698aea0cd04SGleb Smirnoff { 699aea0cd04SGleb Smirnoff 700a967df1cSJonathan T. Looney maxfrags = IP_MAXFRAGS; 7011dbefcc0SGleb Smirnoff EVENTHANDLER_REGISTER(nmbclusters_change, ipreass_zone_change, 7021dbefcc0SGleb Smirnoff NULL, EVENTHANDLER_PRI_ANY); 70381a34d37SGleb Smirnoff EVENTHANDLER_REGISTER(vm_lowmem, ipreass_drain, NULL, 70481a34d37SGleb Smirnoff LOWMEM_PRI_DEFAULT); 70581a34d37SGleb Smirnoff EVENTHANDLER_REGISTER(mbuf_lowmem, ipreass_drain, NULL, 70681a34d37SGleb Smirnoff LOWMEM_PRI_DEFAULT); 7071dbefcc0SGleb Smirnoff } 7081dbefcc0SGleb Smirnoff 709a55383e7SHans Petter Selasky /* 710a55383e7SHans Petter Selasky * Drain off all datagram fragments belonging to 711a55383e7SHans Petter Selasky * the given network interface. 712a55383e7SHans Petter Selasky */ 713a55383e7SHans Petter Selasky static void 714a55383e7SHans Petter Selasky ipreass_cleanup(void *arg __unused, struct ifnet *ifp) 715a55383e7SHans Petter Selasky { 716a55383e7SHans Petter Selasky struct ipq *fp, *temp; 717a55383e7SHans Petter Selasky struct mbuf *m; 718a55383e7SHans Petter Selasky int i; 719a55383e7SHans Petter Selasky 720a55383e7SHans Petter Selasky KASSERT(ifp != NULL, ("%s: ifp is NULL", __func__)); 721a55383e7SHans Petter Selasky 7226e6b5143SBjoern A. Zeeb CURVNET_SET_QUIET(ifp->if_vnet); 7236e6b5143SBjoern A. Zeeb 724a55383e7SHans Petter Selasky /* 725a55383e7SHans Petter Selasky * Skip processing if IPv4 reassembly is not initialised or 726a55383e7SHans Petter Selasky * torn down by ipreass_destroy(). 727a55383e7SHans Petter Selasky */ 7286e6b5143SBjoern A. Zeeb if (V_ipq_zone == NULL) { 7296e6b5143SBjoern A. Zeeb CURVNET_RESTORE(); 730a55383e7SHans Petter Selasky return; 7316e6b5143SBjoern A. Zeeb } 732a55383e7SHans Petter Selasky 733*1494f477SGleb Smirnoff for (i = 0; i < V_ipq_hashsize; i++) { 734a55383e7SHans Petter Selasky IPQ_LOCK(i); 735a55383e7SHans Petter Selasky /* Scan fragment list. */ 736a55383e7SHans Petter Selasky TAILQ_FOREACH_SAFE(fp, &V_ipq[i].head, ipq_list, temp) { 737a55383e7SHans Petter Selasky for (m = fp->ipq_frags; m != NULL; m = m->m_nextpkt) { 738a55383e7SHans Petter Selasky /* clear no longer valid rcvif pointer */ 739a55383e7SHans Petter Selasky if (m->m_pkthdr.rcvif == ifp) 740a55383e7SHans Petter Selasky m->m_pkthdr.rcvif = NULL; 741a55383e7SHans Petter Selasky } 742a55383e7SHans Petter Selasky } 743a55383e7SHans Petter Selasky IPQ_UNLOCK(i); 744a55383e7SHans Petter Selasky } 745a55383e7SHans Petter Selasky CURVNET_RESTORE(); 746a55383e7SHans Petter Selasky } 747a55383e7SHans Petter Selasky EVENTHANDLER_DEFINE(ifnet_departure_event, ipreass_cleanup, NULL, 0); 748a55383e7SHans Petter Selasky 7491dbefcc0SGleb Smirnoff #ifdef VIMAGE 7501dbefcc0SGleb Smirnoff /* 7511dbefcc0SGleb Smirnoff * Destroy IP reassembly structures. 7521dbefcc0SGleb Smirnoff */ 7531dbefcc0SGleb Smirnoff void 7541dbefcc0SGleb Smirnoff ipreass_destroy(void) 7551dbefcc0SGleb Smirnoff { 7561dbefcc0SGleb Smirnoff 75764981536SGleb Smirnoff ipreass_drain_vnet(); 7581dbefcc0SGleb Smirnoff uma_zdestroy(V_ipq_zone); 759a55383e7SHans Petter Selasky V_ipq_zone = NULL; 760*1494f477SGleb Smirnoff for (int i = 0; i < V_ipq_hashsize; i++) 7611dbefcc0SGleb Smirnoff mtx_destroy(&V_ipq[i].lock); 7621dbefcc0SGleb Smirnoff } 7631dbefcc0SGleb Smirnoff #endif 7641dbefcc0SGleb Smirnoff 7651dbefcc0SGleb Smirnoff /* 7661dbefcc0SGleb Smirnoff * After maxnipq has been updated, propagate the change to UMA. The UMA zone 7671dbefcc0SGleb Smirnoff * max has slightly different semantics than the sysctl, for historical 7681dbefcc0SGleb Smirnoff * reasons. 7691dbefcc0SGleb Smirnoff */ 7701dbefcc0SGleb Smirnoff static void 7711dbefcc0SGleb Smirnoff ipreass_drain_tomax(void) 7721dbefcc0SGleb Smirnoff { 773ff790bbaSJonathan T. Looney struct ipq *fp; 7741dbefcc0SGleb Smirnoff int target; 7751dbefcc0SGleb Smirnoff 7761dbefcc0SGleb Smirnoff /* 777ff790bbaSJonathan T. Looney * Make sure each bucket is under the new limit. If 778ff790bbaSJonathan T. Looney * necessary, drop enough of the oldest elements from 779ff790bbaSJonathan T. Looney * each bucket to get under the new limit. 780ff790bbaSJonathan T. Looney */ 781*1494f477SGleb Smirnoff for (int i = 0; i < V_ipq_hashsize; i++) { 782ff790bbaSJonathan T. Looney IPQ_LOCK(i); 783ff790bbaSJonathan T. Looney while (V_ipq[i].count > V_ipreass_maxbucketsize && 784ff790bbaSJonathan T. Looney (fp = TAILQ_LAST(&V_ipq[i].head, ipqhead)) != NULL) 785ff790bbaSJonathan T. Looney ipq_timeout(&V_ipq[i], fp); 786a30cb315SGleb Smirnoff ipreass_reschedule(&V_ipq[i]); 787ff790bbaSJonathan T. Looney IPQ_UNLOCK(i); 788ff790bbaSJonathan T. Looney } 789ff790bbaSJonathan T. Looney 790ff790bbaSJonathan T. Looney /* 7911dbefcc0SGleb Smirnoff * If we are over the maximum number of fragments, 7921dbefcc0SGleb Smirnoff * drain off enough to get down to the new limit, 7931dbefcc0SGleb Smirnoff * stripping off last elements on queues. Every 7941dbefcc0SGleb Smirnoff * run we strip the oldest element from each bucket. 7951dbefcc0SGleb Smirnoff */ 7961dbefcc0SGleb Smirnoff target = uma_zone_get_max(V_ipq_zone); 7971dbefcc0SGleb Smirnoff while (uma_zone_get_cur(V_ipq_zone) > target) { 798*1494f477SGleb Smirnoff for (int i = 0; i < V_ipq_hashsize; i++) { 7991dbefcc0SGleb Smirnoff IPQ_LOCK(i); 8001dbefcc0SGleb Smirnoff fp = TAILQ_LAST(&V_ipq[i].head, ipqhead); 801a30cb315SGleb Smirnoff if (fp != NULL) { 802ff790bbaSJonathan T. Looney ipq_timeout(&V_ipq[i], fp); 803a30cb315SGleb Smirnoff ipreass_reschedule(&V_ipq[i]); 804a30cb315SGleb Smirnoff } 8051dbefcc0SGleb Smirnoff IPQ_UNLOCK(i); 8061dbefcc0SGleb Smirnoff } 8071dbefcc0SGleb Smirnoff } 8081dbefcc0SGleb Smirnoff } 8091dbefcc0SGleb Smirnoff 8101dbefcc0SGleb Smirnoff static void 8111dbefcc0SGleb Smirnoff ipreass_zone_change(void *tag) 8121dbefcc0SGleb Smirnoff { 8137b9c5eb0SJonathan T. Looney VNET_ITERATOR_DECL(vnet_iter); 8147b9c5eb0SJonathan T. Looney int max; 8151dbefcc0SGleb Smirnoff 816a967df1cSJonathan T. Looney maxfrags = IP_MAXFRAGS; 817a967df1cSJonathan T. Looney max = IP_MAXFRAGPACKETS; 8187b9c5eb0SJonathan T. Looney VNET_LIST_RLOCK_NOSLEEP(); 8197b9c5eb0SJonathan T. Looney VNET_FOREACH(vnet_iter) { 8207b9c5eb0SJonathan T. Looney CURVNET_SET(vnet_iter); 821ff790bbaSJonathan T. Looney max = uma_zone_set_max(V_ipq_zone, max); 822*1494f477SGleb Smirnoff V_ipreass_maxbucketsize = imax(max / (V_ipq_hashsize / 2), 1); 8231dbefcc0SGleb Smirnoff ipreass_drain_tomax(); 8247b9c5eb0SJonathan T. Looney CURVNET_RESTORE(); 8257b9c5eb0SJonathan T. Looney } 8267b9c5eb0SJonathan T. Looney VNET_LIST_RUNLOCK_NOSLEEP(); 8271dbefcc0SGleb Smirnoff } 8281dbefcc0SGleb Smirnoff 8291dbefcc0SGleb Smirnoff /* 8301dbefcc0SGleb Smirnoff * Change the limit on the UMA zone, or disable the fragment allocation 8311dbefcc0SGleb Smirnoff * at all. Since 0 and -1 is a special values here, we need our own handler, 8321dbefcc0SGleb Smirnoff * instead of sysctl_handle_uma_zone_max(). 8331dbefcc0SGleb Smirnoff */ 8341dbefcc0SGleb Smirnoff static int 8351dbefcc0SGleb Smirnoff sysctl_maxfragpackets(SYSCTL_HANDLER_ARGS) 8361dbefcc0SGleb Smirnoff { 8371dbefcc0SGleb Smirnoff int error, max; 8381dbefcc0SGleb Smirnoff 8391dbefcc0SGleb Smirnoff if (V_noreass == 0) { 8401dbefcc0SGleb Smirnoff max = uma_zone_get_max(V_ipq_zone); 8411dbefcc0SGleb Smirnoff if (max == 0) 8421dbefcc0SGleb Smirnoff max = -1; 8431dbefcc0SGleb Smirnoff } else 8441dbefcc0SGleb Smirnoff max = 0; 8451dbefcc0SGleb Smirnoff error = sysctl_handle_int(oidp, &max, 0, req); 8461dbefcc0SGleb Smirnoff if (error || !req->newptr) 8471dbefcc0SGleb Smirnoff return (error); 8481dbefcc0SGleb Smirnoff if (max > 0) { 8491dbefcc0SGleb Smirnoff /* 8501dbefcc0SGleb Smirnoff * XXXRW: Might be a good idea to sanity check the argument 8511dbefcc0SGleb Smirnoff * and place an extreme upper bound. 8521dbefcc0SGleb Smirnoff */ 8531dbefcc0SGleb Smirnoff max = uma_zone_set_max(V_ipq_zone, max); 854*1494f477SGleb Smirnoff V_ipreass_maxbucketsize = imax(max / (V_ipq_hashsize / 2), 1); 8551dbefcc0SGleb Smirnoff ipreass_drain_tomax(); 8561dbefcc0SGleb Smirnoff V_noreass = 0; 8571dbefcc0SGleb Smirnoff } else if (max == 0) { 8581dbefcc0SGleb Smirnoff V_noreass = 1; 8591dbefcc0SGleb Smirnoff ipreass_drain(); 8601dbefcc0SGleb Smirnoff } else if (max == -1) { 8611dbefcc0SGleb Smirnoff V_noreass = 0; 8621dbefcc0SGleb Smirnoff uma_zone_set_max(V_ipq_zone, 0); 863ff790bbaSJonathan T. Looney V_ipreass_maxbucketsize = INT_MAX; 8641dbefcc0SGleb Smirnoff } else 8651dbefcc0SGleb Smirnoff return (EINVAL); 8661dbefcc0SGleb Smirnoff return (0); 8671dbefcc0SGleb Smirnoff } 8681dbefcc0SGleb Smirnoff 8691dbefcc0SGleb Smirnoff /* 8701dbefcc0SGleb Smirnoff * Seek for old fragment queue header that can be reused. Try to 8711dbefcc0SGleb Smirnoff * reuse a header from currently locked hash bucket. 8721dbefcc0SGleb Smirnoff */ 8731dbefcc0SGleb Smirnoff static struct ipq * 8741dbefcc0SGleb Smirnoff ipq_reuse(int start) 8751dbefcc0SGleb Smirnoff { 8761dbefcc0SGleb Smirnoff struct ipq *fp; 877ff790bbaSJonathan T. Looney int bucket, i; 8781dbefcc0SGleb Smirnoff 8791dbefcc0SGleb Smirnoff IPQ_LOCK_ASSERT(start); 8801dbefcc0SGleb Smirnoff 881*1494f477SGleb Smirnoff for (i = 0; i < V_ipq_hashsize; i++) { 882*1494f477SGleb Smirnoff bucket = (start + i) % V_ipq_hashsize; 883ff790bbaSJonathan T. Looney if (bucket != start && IPQ_TRYLOCK(bucket) == 0) 8841dbefcc0SGleb Smirnoff continue; 885ff790bbaSJonathan T. Looney fp = TAILQ_LAST(&V_ipq[bucket].head, ipqhead); 8861dbefcc0SGleb Smirnoff if (fp) { 8871dbefcc0SGleb Smirnoff struct mbuf *m; 8881dbefcc0SGleb Smirnoff 8891dbefcc0SGleb Smirnoff IPSTAT_ADD(ips_fragtimeout, fp->ipq_nfrags); 8907b9c5eb0SJonathan T. Looney atomic_subtract_int(&nfrags, fp->ipq_nfrags); 8911dbefcc0SGleb Smirnoff while (fp->ipq_frags) { 8921dbefcc0SGleb Smirnoff m = fp->ipq_frags; 8931dbefcc0SGleb Smirnoff fp->ipq_frags = m->m_nextpkt; 8941dbefcc0SGleb Smirnoff m_freem(m); 8951dbefcc0SGleb Smirnoff } 896ff790bbaSJonathan T. Looney TAILQ_REMOVE(&V_ipq[bucket].head, fp, ipq_list); 897ff790bbaSJonathan T. Looney V_ipq[bucket].count--; 898a30cb315SGleb Smirnoff ipreass_reschedule(&V_ipq[bucket]); 899ff790bbaSJonathan T. Looney if (bucket != start) 900ff790bbaSJonathan T. Looney IPQ_UNLOCK(bucket); 901ff790bbaSJonathan T. Looney break; 902ff790bbaSJonathan T. Looney } 903ff790bbaSJonathan T. Looney if (bucket != start) 904ff790bbaSJonathan T. Looney IPQ_UNLOCK(bucket); 905ff790bbaSJonathan T. Looney } 9061dbefcc0SGleb Smirnoff IPQ_LOCK_ASSERT(start); 9071dbefcc0SGleb Smirnoff return (fp); 9081dbefcc0SGleb Smirnoff } 9091dbefcc0SGleb Smirnoff 9101dbefcc0SGleb Smirnoff /* 9111dbefcc0SGleb Smirnoff * Free a fragment reassembly header and all associated datagrams. 9121dbefcc0SGleb Smirnoff */ 9131dbefcc0SGleb Smirnoff static void 914ff790bbaSJonathan T. Looney ipq_free(struct ipqbucket *bucket, struct ipq *fp) 9151dbefcc0SGleb Smirnoff { 9161dbefcc0SGleb Smirnoff struct mbuf *q; 9171dbefcc0SGleb Smirnoff 9187b9c5eb0SJonathan T. Looney atomic_subtract_int(&nfrags, fp->ipq_nfrags); 9191dbefcc0SGleb Smirnoff while (fp->ipq_frags) { 9201dbefcc0SGleb Smirnoff q = fp->ipq_frags; 9211dbefcc0SGleb Smirnoff fp->ipq_frags = q->m_nextpkt; 9221dbefcc0SGleb Smirnoff m_freem(q); 9231dbefcc0SGleb Smirnoff } 924ff790bbaSJonathan T. Looney TAILQ_REMOVE(&bucket->head, fp, ipq_list); 925ff790bbaSJonathan T. Looney bucket->count--; 9261dbefcc0SGleb Smirnoff uma_zfree(V_ipq_zone, fp); 9271dbefcc0SGleb Smirnoff } 928ff790bbaSJonathan T. Looney 929ff790bbaSJonathan T. Looney /* 930ff790bbaSJonathan T. Looney * Get or set the maximum number of reassembly queues per bucket. 931ff790bbaSJonathan T. Looney */ 932ff790bbaSJonathan T. Looney static int 933ff790bbaSJonathan T. Looney sysctl_maxfragbucketsize(SYSCTL_HANDLER_ARGS) 934ff790bbaSJonathan T. Looney { 935ff790bbaSJonathan T. Looney int error, max; 936ff790bbaSJonathan T. Looney 937ff790bbaSJonathan T. Looney max = V_ipreass_maxbucketsize; 938ff790bbaSJonathan T. Looney error = sysctl_handle_int(oidp, &max, 0, req); 939ff790bbaSJonathan T. Looney if (error || !req->newptr) 940ff790bbaSJonathan T. Looney return (error); 941ff790bbaSJonathan T. Looney if (max <= 0) 942ff790bbaSJonathan T. Looney return (EINVAL); 943ff790bbaSJonathan T. Looney V_ipreass_maxbucketsize = max; 944ff790bbaSJonathan T. Looney ipreass_drain_tomax(); 945ff790bbaSJonathan T. Looney return (0); 946ff790bbaSJonathan T. Looney } 947a30cb315SGleb Smirnoff 948a30cb315SGleb Smirnoff /* 949a30cb315SGleb Smirnoff * Get or set the IP fragment time to live. 950a30cb315SGleb Smirnoff */ 951a30cb315SGleb Smirnoff static int 952a30cb315SGleb Smirnoff sysctl_fragttl(SYSCTL_HANDLER_ARGS) 953a30cb315SGleb Smirnoff { 954a30cb315SGleb Smirnoff u_int ttl; 955a30cb315SGleb Smirnoff int error; 956a30cb315SGleb Smirnoff 957a30cb315SGleb Smirnoff ttl = V_ipfragttl; 958a30cb315SGleb Smirnoff error = sysctl_handle_int(oidp, &ttl, 0, req); 959a30cb315SGleb Smirnoff if (error || !req->newptr) 960a30cb315SGleb Smirnoff return (error); 961a30cb315SGleb Smirnoff 962a30cb315SGleb Smirnoff if (ttl < 1 || ttl > MAXTTL) 963a30cb315SGleb Smirnoff return (EINVAL); 964a30cb315SGleb Smirnoff 965a30cb315SGleb Smirnoff atomic_store_int(&V_ipfragttl, ttl); 966a30cb315SGleb Smirnoff return (0); 967a30cb315SGleb Smirnoff } 968