1c398230bSWarner Losh /*- 251369649SPedro F. Giffuni * SPDX-License-Identifier: BSD-3-Clause 351369649SPedro F. Giffuni * 42469dd60SGarrett Wollman * Copyright (c) 1982, 1986, 1991, 1993, 1995 5497057eeSRobert Watson * The Regents of the University of California. 6111d57a6SRobert Watson * Copyright (c) 2007-2009 Robert N. M. Watson 779bdc6e5SRobert Watson * Copyright (c) 2010-2011 Juniper Networks, Inc. 8497057eeSRobert Watson * All rights reserved. 9df8bae1dSRodney W. Grimes * 1079bdc6e5SRobert Watson * Portions of this software were developed by Robert N. M. Watson under 1179bdc6e5SRobert Watson * contract to Juniper Networks, Inc. 1279bdc6e5SRobert Watson * 13df8bae1dSRodney W. Grimes * Redistribution and use in source and binary forms, with or without 14df8bae1dSRodney W. Grimes * modification, are permitted provided that the following conditions 15df8bae1dSRodney W. Grimes * are met: 16df8bae1dSRodney W. Grimes * 1. Redistributions of source code must retain the above copyright 17df8bae1dSRodney W. Grimes * notice, this list of conditions and the following disclaimer. 18df8bae1dSRodney W. Grimes * 2. Redistributions in binary form must reproduce the above copyright 19df8bae1dSRodney W. Grimes * notice, this list of conditions and the following disclaimer in the 20df8bae1dSRodney W. Grimes * documentation and/or other materials provided with the distribution. 21fbbd9655SWarner Losh * 3. Neither the name of the University nor the names of its contributors 22df8bae1dSRodney W. Grimes * may be used to endorse or promote products derived from this software 23df8bae1dSRodney W. Grimes * without specific prior written permission. 24df8bae1dSRodney W. Grimes * 25df8bae1dSRodney W. Grimes * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 26df8bae1dSRodney W. Grimes * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 27df8bae1dSRodney W. Grimes * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 28df8bae1dSRodney W. Grimes * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 29df8bae1dSRodney W. Grimes * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 30df8bae1dSRodney W. Grimes * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 31df8bae1dSRodney W. Grimes * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 32df8bae1dSRodney W. Grimes * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 33df8bae1dSRodney W. Grimes * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 34df8bae1dSRodney W. Grimes * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 35df8bae1dSRodney W. Grimes * SUCH DAMAGE. 36df8bae1dSRodney W. Grimes * 372469dd60SGarrett Wollman * @(#)in_pcb.c 8.4 (Berkeley) 5/24/95 38df8bae1dSRodney W. Grimes */ 39df8bae1dSRodney W. Grimes 404b421e2dSMike Silbersack #include <sys/cdefs.h> 414b421e2dSMike Silbersack __FBSDID("$FreeBSD$"); 424b421e2dSMike Silbersack 43497057eeSRobert Watson #include "opt_ddb.h" 446a800098SYoshinobu Inoue #include "opt_ipsec.h" 45efc76f72SBjoern A. Zeeb #include "opt_inet.h" 46cfa1ca9dSYoshinobu Inoue #include "opt_inet6.h" 47f3e7afe2SHans Petter Selasky #include "opt_ratelimit.h" 480c325f53SAlexander V. Chernikov #include "opt_route.h" 497527624eSRobert Watson #include "opt_rss.h" 50cfa1ca9dSYoshinobu Inoue 51df8bae1dSRodney W. Grimes #include <sys/param.h> 52a0577692SGleb Smirnoff #include <sys/hash.h> 53df8bae1dSRodney W. Grimes #include <sys/systm.h> 54a0577692SGleb Smirnoff #include <sys/libkern.h> 55cc0a3c8cSAndrey V. Elsukov #include <sys/lock.h> 56df8bae1dSRodney W. Grimes #include <sys/malloc.h> 57df8bae1dSRodney W. Grimes #include <sys/mbuf.h> 58aae49dd3SBjoern A. Zeeb #include <sys/callout.h> 59ea8d1492SAlexander V. Chernikov #include <sys/eventhandler.h> 60cfa1ca9dSYoshinobu Inoue #include <sys/domain.h> 61df8bae1dSRodney W. Grimes #include <sys/protosw.h> 623ee9c3c4SRandall Stewart #include <sys/smp.h> 63df8bae1dSRodney W. Grimes #include <sys/socket.h> 64df8bae1dSRodney W. Grimes #include <sys/socketvar.h> 65f3e7afe2SHans Petter Selasky #include <sys/sockio.h> 66acd3428bSRobert Watson #include <sys/priv.h> 67df8bae1dSRodney W. Grimes #include <sys/proc.h> 6879bdc6e5SRobert Watson #include <sys/refcount.h> 6975c13541SPoul-Henning Kamp #include <sys/jail.h> 70101f9fc8SPeter Wemm #include <sys/kernel.h> 71101f9fc8SPeter Wemm #include <sys/sysctl.h> 728781d8e9SBruce Evans 73497057eeSRobert Watson #ifdef DDB 74497057eeSRobert Watson #include <ddb/ddb.h> 75497057eeSRobert Watson #endif 76497057eeSRobert Watson 7769c2d429SJeff Roberson #include <vm/uma.h> 78a034518aSAndrew Gallatin #include <vm/vm.h> 79df8bae1dSRodney W. Grimes 80df8bae1dSRodney W. Grimes #include <net/if.h> 8176039bc8SGleb Smirnoff #include <net/if_var.h> 82cfa1ca9dSYoshinobu Inoue #include <net/if_types.h> 836d768226SGeorge V. Neville-Neil #include <net/if_llatbl.h> 84df8bae1dSRodney W. Grimes #include <net/route.h> 85b2bdc62aSAdrian Chadd #include <net/rss_config.h> 86530c0060SRobert Watson #include <net/vnet.h> 87df8bae1dSRodney W. Grimes 8867107f45SBjoern A. Zeeb #if defined(INET) || defined(INET6) 89df8bae1dSRodney W. Grimes #include <netinet/in.h> 90df8bae1dSRodney W. Grimes #include <netinet/in_pcb.h> 910f617ae4SGleb Smirnoff #include <netinet/in_pcb_var.h> 9259854ecfSHans Petter Selasky #ifdef INET 9359854ecfSHans Petter Selasky #include <netinet/in_var.h> 949ac7c6cfSAlexander V. Chernikov #include <netinet/in_fib.h> 9559854ecfSHans Petter Selasky #endif 96df8bae1dSRodney W. Grimes #include <netinet/ip_var.h> 97340c35deSJonathan Lemon #include <netinet/tcp_var.h> 983ee9c3c4SRandall Stewart #ifdef TCPHPTS 993ee9c3c4SRandall Stewart #include <netinet/tcp_hpts.h> 1003ee9c3c4SRandall Stewart #endif 1015f311da2SMike Silbersack #include <netinet/udp.h> 1025f311da2SMike Silbersack #include <netinet/udp_var.h> 103cfa1ca9dSYoshinobu Inoue #ifdef INET6 104cfa1ca9dSYoshinobu Inoue #include <netinet/ip6.h> 105efc76f72SBjoern A. Zeeb #include <netinet6/in6_pcb.h> 10667107f45SBjoern A. Zeeb #include <netinet6/in6_var.h> 10767107f45SBjoern A. Zeeb #include <netinet6/ip6_var.h> 108cfa1ca9dSYoshinobu Inoue #endif /* INET6 */ 1099ac7c6cfSAlexander V. Chernikov #include <net/route/nhop.h> 11059854ecfSHans Petter Selasky #endif 111cfa1ca9dSYoshinobu Inoue 112fcf59617SAndrey V. Elsukov #include <netipsec/ipsec_support.h> 113b9234fafSSam Leffler 114aed55708SRobert Watson #include <security/mac/mac_framework.h> 115aed55708SRobert Watson 1161a43cff9SSean Bruno #define INPCBLBGROUP_SIZMIN 8 1171a43cff9SSean Bruno #define INPCBLBGROUP_SIZMAX 256 118db0ac6deSCy Schubert #define INP_FREED 0x00000200 /* See in_pcb.h. */ 1191a43cff9SSean Bruno 120aae49dd3SBjoern A. Zeeb static struct callout ipport_tick_callout; 121aae49dd3SBjoern A. Zeeb 122101f9fc8SPeter Wemm /* 123101f9fc8SPeter Wemm * These configure the range of local port addresses assigned to 124101f9fc8SPeter Wemm * "unspecified" outgoing connections/packets/whatever. 125101f9fc8SPeter Wemm */ 126eddfbb76SRobert Watson VNET_DEFINE(int, ipport_lowfirstauto) = IPPORT_RESERVED - 1; /* 1023 */ 127eddfbb76SRobert Watson VNET_DEFINE(int, ipport_lowlastauto) = IPPORT_RESERVEDSTART; /* 600 */ 128eddfbb76SRobert Watson VNET_DEFINE(int, ipport_firstauto) = IPPORT_EPHEMERALFIRST; /* 10000 */ 129eddfbb76SRobert Watson VNET_DEFINE(int, ipport_lastauto) = IPPORT_EPHEMERALLAST; /* 65535 */ 130eddfbb76SRobert Watson VNET_DEFINE(int, ipport_hifirstauto) = IPPORT_HIFIRSTAUTO; /* 49152 */ 131eddfbb76SRobert Watson VNET_DEFINE(int, ipport_hilastauto) = IPPORT_HILASTAUTO; /* 65535 */ 132101f9fc8SPeter Wemm 133b0d22693SCrist J. Clark /* 134b0d22693SCrist J. Clark * Reserved ports accessible only to root. There are significant 135b0d22693SCrist J. Clark * security considerations that must be accounted for when changing these, 136b0d22693SCrist J. Clark * but the security benefits can be great. Please be careful. 137b0d22693SCrist J. Clark */ 138eddfbb76SRobert Watson VNET_DEFINE(int, ipport_reservedhigh) = IPPORT_RESERVED - 1; /* 1023 */ 139eddfbb76SRobert Watson VNET_DEFINE(int, ipport_reservedlow); 140b0d22693SCrist J. Clark 1415f311da2SMike Silbersack /* Variables dealing with random ephemeral port allocation. */ 142eddfbb76SRobert Watson VNET_DEFINE(int, ipport_randomized) = 1; /* user controlled via sysctl */ 143eddfbb76SRobert Watson VNET_DEFINE(int, ipport_randomcps) = 10; /* user controlled via sysctl */ 144eddfbb76SRobert Watson VNET_DEFINE(int, ipport_randomtime) = 45; /* user controlled via sysctl */ 145eddfbb76SRobert Watson VNET_DEFINE(int, ipport_stoprandom); /* toggled by ipport_tick */ 146eddfbb76SRobert Watson VNET_DEFINE(int, ipport_tcpallocs); 1475f901c92SAndrew Turner VNET_DEFINE_STATIC(int, ipport_tcplastcount); 148eddfbb76SRobert Watson 1491e77c105SRobert Watson #define V_ipport_tcplastcount VNET(ipport_tcplastcount) 1506ac48b74SMike Silbersack 151d2025bd0SBjoern A. Zeeb #ifdef INET 152fa046d87SRobert Watson static struct inpcb *in_pcblookup_hash_locked(struct inpcbinfo *pcbinfo, 153fa046d87SRobert Watson struct in_addr faddr, u_int fport_arg, 154fa046d87SRobert Watson struct in_addr laddr, u_int lport_arg, 155a034518aSAndrew Gallatin int lookupflags, struct ifnet *ifp, 156a034518aSAndrew Gallatin uint8_t numa_domain); 15767107f45SBjoern A. Zeeb 158bbd42ad0SPeter Wemm #define RANGECHK(var, min, max) \ 159bbd42ad0SPeter Wemm if ((var) < (min)) { (var) = (min); } \ 160bbd42ad0SPeter Wemm else if ((var) > (max)) { (var) = (max); } 161bbd42ad0SPeter Wemm 162bbd42ad0SPeter Wemm static int 16382d9ae4eSPoul-Henning Kamp sysctl_net_ipport_check(SYSCTL_HANDLER_ARGS) 164bbd42ad0SPeter Wemm { 16530a4ab08SBruce Evans int error; 16630a4ab08SBruce Evans 167f6dfe47aSMarko Zec error = sysctl_handle_int(oidp, arg1, arg2, req); 16830a4ab08SBruce Evans if (error == 0) { 169603724d3SBjoern A. Zeeb RANGECHK(V_ipport_lowfirstauto, 1, IPPORT_RESERVED - 1); 170603724d3SBjoern A. Zeeb RANGECHK(V_ipport_lowlastauto, 1, IPPORT_RESERVED - 1); 171603724d3SBjoern A. Zeeb RANGECHK(V_ipport_firstauto, IPPORT_RESERVED, IPPORT_MAX); 172603724d3SBjoern A. Zeeb RANGECHK(V_ipport_lastauto, IPPORT_RESERVED, IPPORT_MAX); 173603724d3SBjoern A. Zeeb RANGECHK(V_ipport_hifirstauto, IPPORT_RESERVED, IPPORT_MAX); 174603724d3SBjoern A. Zeeb RANGECHK(V_ipport_hilastauto, IPPORT_RESERVED, IPPORT_MAX); 175bbd42ad0SPeter Wemm } 17630a4ab08SBruce Evans return (error); 177bbd42ad0SPeter Wemm } 178bbd42ad0SPeter Wemm 179bbd42ad0SPeter Wemm #undef RANGECHK 180bbd42ad0SPeter Wemm 1817029da5cSPawel Biernacki static SYSCTL_NODE(_net_inet_ip, IPPROTO_IP, portrange, 1827029da5cSPawel Biernacki CTLFLAG_RW | CTLFLAG_MPSAFE, 0, 1836472ac3dSEd Schouten "IP Ports"); 18433b3ac06SPeter Wemm 1856df8a710SGleb Smirnoff SYSCTL_PROC(_net_inet_ip_portrange, OID_AUTO, lowfirst, 1867029da5cSPawel Biernacki CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_NEEDGIANT, 1877029da5cSPawel Biernacki &VNET_NAME(ipport_lowfirstauto), 0, &sysctl_net_ipport_check, "I", 1887029da5cSPawel Biernacki ""); 1896df8a710SGleb Smirnoff SYSCTL_PROC(_net_inet_ip_portrange, OID_AUTO, lowlast, 1907029da5cSPawel Biernacki CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_NEEDGIANT, 1917029da5cSPawel Biernacki &VNET_NAME(ipport_lowlastauto), 0, &sysctl_net_ipport_check, "I", 1927029da5cSPawel Biernacki ""); 1936df8a710SGleb Smirnoff SYSCTL_PROC(_net_inet_ip_portrange, OID_AUTO, first, 1947029da5cSPawel Biernacki CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_NEEDGIANT, 1957029da5cSPawel Biernacki &VNET_NAME(ipport_firstauto), 0, &sysctl_net_ipport_check, "I", 1967029da5cSPawel Biernacki ""); 1976df8a710SGleb Smirnoff SYSCTL_PROC(_net_inet_ip_portrange, OID_AUTO, last, 1987029da5cSPawel Biernacki CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_NEEDGIANT, 1997029da5cSPawel Biernacki &VNET_NAME(ipport_lastauto), 0, &sysctl_net_ipport_check, "I", 2007029da5cSPawel Biernacki ""); 2016df8a710SGleb Smirnoff SYSCTL_PROC(_net_inet_ip_portrange, OID_AUTO, hifirst, 2027029da5cSPawel Biernacki CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_NEEDGIANT, 2037029da5cSPawel Biernacki &VNET_NAME(ipport_hifirstauto), 0, &sysctl_net_ipport_check, "I", 2047029da5cSPawel Biernacki ""); 2056df8a710SGleb Smirnoff SYSCTL_PROC(_net_inet_ip_portrange, OID_AUTO, hilast, 2067029da5cSPawel Biernacki CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_NEEDGIANT, 2077029da5cSPawel Biernacki &VNET_NAME(ipport_hilastauto), 0, &sysctl_net_ipport_check, "I", 2087029da5cSPawel Biernacki ""); 2096df8a710SGleb Smirnoff SYSCTL_INT(_net_inet_ip_portrange, OID_AUTO, reservedhigh, 2106df8a710SGleb Smirnoff CTLFLAG_VNET | CTLFLAG_RW | CTLFLAG_SECURE, 2116df8a710SGleb Smirnoff &VNET_NAME(ipport_reservedhigh), 0, ""); 2126df8a710SGleb Smirnoff SYSCTL_INT(_net_inet_ip_portrange, OID_AUTO, reservedlow, 213eddfbb76SRobert Watson CTLFLAG_RW|CTLFLAG_SECURE, &VNET_NAME(ipport_reservedlow), 0, ""); 2146df8a710SGleb Smirnoff SYSCTL_INT(_net_inet_ip_portrange, OID_AUTO, randomized, 2156df8a710SGleb Smirnoff CTLFLAG_VNET | CTLFLAG_RW, 216eddfbb76SRobert Watson &VNET_NAME(ipport_randomized), 0, "Enable random port allocation"); 2176df8a710SGleb Smirnoff SYSCTL_INT(_net_inet_ip_portrange, OID_AUTO, randomcps, 2186df8a710SGleb Smirnoff CTLFLAG_VNET | CTLFLAG_RW, 219eddfbb76SRobert Watson &VNET_NAME(ipport_randomcps), 0, "Maximum number of random port " 22027c4abc7SGordon Bergling "allocations before switching to a sequential one"); 2216df8a710SGleb Smirnoff SYSCTL_INT(_net_inet_ip_portrange, OID_AUTO, randomtime, 2226df8a710SGleb Smirnoff CTLFLAG_VNET | CTLFLAG_RW, 223eddfbb76SRobert Watson &VNET_NAME(ipport_randomtime), 0, 22427c4abc7SGordon Bergling "Minimum time to keep sequential port " 2256ee79c59SMaxim Konovalov "allocation before switching to a random one"); 22620abea66SRandall Stewart 22720abea66SRandall Stewart #ifdef RATELIMIT 2281a714ff2SRandall Stewart counter_u64_t rate_limit_new; 2291a714ff2SRandall Stewart counter_u64_t rate_limit_chg; 23020abea66SRandall Stewart counter_u64_t rate_limit_active; 23120abea66SRandall Stewart counter_u64_t rate_limit_alloc_fail; 23220abea66SRandall Stewart counter_u64_t rate_limit_set_ok; 23320abea66SRandall Stewart 2347029da5cSPawel Biernacki static SYSCTL_NODE(_net_inet_ip, OID_AUTO, rl, CTLFLAG_RD | CTLFLAG_MPSAFE, 0, 23520abea66SRandall Stewart "IP Rate Limiting"); 23620abea66SRandall Stewart SYSCTL_COUNTER_U64(_net_inet_ip_rl, OID_AUTO, active, CTLFLAG_RD, 23720abea66SRandall Stewart &rate_limit_active, "Active rate limited connections"); 23820abea66SRandall Stewart SYSCTL_COUNTER_U64(_net_inet_ip_rl, OID_AUTO, alloc_fail, CTLFLAG_RD, 23920abea66SRandall Stewart &rate_limit_alloc_fail, "Rate limited connection failures"); 24020abea66SRandall Stewart SYSCTL_COUNTER_U64(_net_inet_ip_rl, OID_AUTO, set_ok, CTLFLAG_RD, 24120abea66SRandall Stewart &rate_limit_set_ok, "Rate limited setting succeeded"); 2421a714ff2SRandall Stewart SYSCTL_COUNTER_U64(_net_inet_ip_rl, OID_AUTO, newrl, CTLFLAG_RD, 2431a714ff2SRandall Stewart &rate_limit_new, "Total Rate limit new attempts"); 2441a714ff2SRandall Stewart SYSCTL_COUNTER_U64(_net_inet_ip_rl, OID_AUTO, chgrl, CTLFLAG_RD, 2451a714ff2SRandall Stewart &rate_limit_chg, "Total Rate limited change attempts"); 2461a714ff2SRandall Stewart 24720abea66SRandall Stewart #endif /* RATELIMIT */ 24820abea66SRandall Stewart 24983e521ecSBjoern A. Zeeb #endif /* INET */ 2500312fbe9SPoul-Henning Kamp 251a0577692SGleb Smirnoff VNET_DEFINE(uint32_t, in_pcbhashseed); 252a0577692SGleb Smirnoff static void 253a0577692SGleb Smirnoff in_pcbhashseed_init(void) 254a0577692SGleb Smirnoff { 255a0577692SGleb Smirnoff 256a0577692SGleb Smirnoff V_in_pcbhashseed = arc4random(); 257a0577692SGleb Smirnoff } 258a0577692SGleb Smirnoff VNET_SYSINIT(in_pcbhashseed_init, SI_SUB_PROTO_DOMAIN, SI_ORDER_FIRST, 259a0577692SGleb Smirnoff in_pcbhashseed_init, 0); 260a0577692SGleb Smirnoff 2613ba34b07SGleb Smirnoff static void in_pcbremhash(struct inpcb *); 2623ba34b07SGleb Smirnoff 263c3229e05SDavid Greenman /* 264c3229e05SDavid Greenman * in_pcb.c: manage the Protocol Control Blocks. 265c3229e05SDavid Greenman * 266de35559fSRobert Watson * NOTE: It is assumed that most of these functions will be called with 267de35559fSRobert Watson * the pcbinfo lock held, and often, the inpcb lock held, as these utility 268de35559fSRobert Watson * functions often modify hash chains or addresses in pcbs. 269c3229e05SDavid Greenman */ 270c3229e05SDavid Greenman 2711a43cff9SSean Bruno static struct inpcblbgroup * 2721a43cff9SSean Bruno in_pcblbgroup_alloc(struct inpcblbgrouphead *hdr, u_char vflag, 273a034518aSAndrew Gallatin uint16_t port, const union in_dependaddr *addr, int size, 274a034518aSAndrew Gallatin uint8_t numa_domain) 2751a43cff9SSean Bruno { 2761a43cff9SSean Bruno struct inpcblbgroup *grp; 2771a43cff9SSean Bruno size_t bytes; 2781a43cff9SSean Bruno 2791a43cff9SSean Bruno bytes = __offsetof(struct inpcblbgroup, il_inp[size]); 2801a43cff9SSean Bruno grp = malloc(bytes, M_PCB, M_ZERO | M_NOWAIT); 2811a43cff9SSean Bruno if (!grp) 2821a43cff9SSean Bruno return (NULL); 2831a43cff9SSean Bruno grp->il_vflag = vflag; 2841a43cff9SSean Bruno grp->il_lport = port; 285a034518aSAndrew Gallatin grp->il_numa_domain = numa_domain; 2861a43cff9SSean Bruno grp->il_dependladdr = *addr; 2871a43cff9SSean Bruno grp->il_inpsiz = size; 28854af3d0dSMark Johnston CK_LIST_INSERT_HEAD(hdr, grp, il_list); 2891a43cff9SSean Bruno return (grp); 2901a43cff9SSean Bruno } 2911a43cff9SSean Bruno 2921a43cff9SSean Bruno static void 29354af3d0dSMark Johnston in_pcblbgroup_free_deferred(epoch_context_t ctx) 29454af3d0dSMark Johnston { 29554af3d0dSMark Johnston struct inpcblbgroup *grp; 29654af3d0dSMark Johnston 29754af3d0dSMark Johnston grp = __containerof(ctx, struct inpcblbgroup, il_epoch_ctx); 29854af3d0dSMark Johnston free(grp, M_PCB); 29954af3d0dSMark Johnston } 30054af3d0dSMark Johnston 30154af3d0dSMark Johnston static void 3021a43cff9SSean Bruno in_pcblbgroup_free(struct inpcblbgroup *grp) 3031a43cff9SSean Bruno { 3041a43cff9SSean Bruno 30554af3d0dSMark Johnston CK_LIST_REMOVE(grp, il_list); 3062a4bd982SGleb Smirnoff NET_EPOCH_CALL(in_pcblbgroup_free_deferred, &grp->il_epoch_ctx); 3071a43cff9SSean Bruno } 3081a43cff9SSean Bruno 3091a43cff9SSean Bruno static struct inpcblbgroup * 3101a43cff9SSean Bruno in_pcblbgroup_resize(struct inpcblbgrouphead *hdr, 3111a43cff9SSean Bruno struct inpcblbgroup *old_grp, int size) 3121a43cff9SSean Bruno { 3131a43cff9SSean Bruno struct inpcblbgroup *grp; 3141a43cff9SSean Bruno int i; 3151a43cff9SSean Bruno 3161a43cff9SSean Bruno grp = in_pcblbgroup_alloc(hdr, old_grp->il_vflag, 317a034518aSAndrew Gallatin old_grp->il_lport, &old_grp->il_dependladdr, size, 318a034518aSAndrew Gallatin old_grp->il_numa_domain); 31979ee680bSMark Johnston if (grp == NULL) 3201a43cff9SSean Bruno return (NULL); 3211a43cff9SSean Bruno 3221a43cff9SSean Bruno KASSERT(old_grp->il_inpcnt < grp->il_inpsiz, 3231a43cff9SSean Bruno ("invalid new local group size %d and old local group count %d", 3241a43cff9SSean Bruno grp->il_inpsiz, old_grp->il_inpcnt)); 3251a43cff9SSean Bruno 3261a43cff9SSean Bruno for (i = 0; i < old_grp->il_inpcnt; ++i) 3271a43cff9SSean Bruno grp->il_inp[i] = old_grp->il_inp[i]; 3281a43cff9SSean Bruno grp->il_inpcnt = old_grp->il_inpcnt; 3291a43cff9SSean Bruno in_pcblbgroup_free(old_grp); 3301a43cff9SSean Bruno return (grp); 3311a43cff9SSean Bruno } 3321a43cff9SSean Bruno 3331a43cff9SSean Bruno /* 3341a43cff9SSean Bruno * PCB at index 'i' is removed from the group. Pull up the ones below il_inp[i] 3351a43cff9SSean Bruno * and shrink group if possible. 3361a43cff9SSean Bruno */ 3371a43cff9SSean Bruno static void 3381a43cff9SSean Bruno in_pcblbgroup_reorder(struct inpcblbgrouphead *hdr, struct inpcblbgroup **grpp, 3391a43cff9SSean Bruno int i) 3401a43cff9SSean Bruno { 34179ee680bSMark Johnston struct inpcblbgroup *grp, *new_grp; 3421a43cff9SSean Bruno 34379ee680bSMark Johnston grp = *grpp; 3441a43cff9SSean Bruno for (; i + 1 < grp->il_inpcnt; ++i) 3451a43cff9SSean Bruno grp->il_inp[i] = grp->il_inp[i + 1]; 3461a43cff9SSean Bruno grp->il_inpcnt--; 3471a43cff9SSean Bruno 3481a43cff9SSean Bruno if (grp->il_inpsiz > INPCBLBGROUP_SIZMIN && 34979ee680bSMark Johnston grp->il_inpcnt <= grp->il_inpsiz / 4) { 3501a43cff9SSean Bruno /* Shrink this group. */ 35179ee680bSMark Johnston new_grp = in_pcblbgroup_resize(hdr, grp, grp->il_inpsiz / 2); 35279ee680bSMark Johnston if (new_grp != NULL) 3531a43cff9SSean Bruno *grpp = new_grp; 3541a43cff9SSean Bruno } 3551a43cff9SSean Bruno } 3561a43cff9SSean Bruno 3571a43cff9SSean Bruno /* 3581a43cff9SSean Bruno * Add PCB to load balance group for SO_REUSEPORT_LB option. 3591a43cff9SSean Bruno */ 3601a43cff9SSean Bruno static int 361a034518aSAndrew Gallatin in_pcbinslbgrouphash(struct inpcb *inp, uint8_t numa_domain) 3621a43cff9SSean Bruno { 363a7026c7fSMark Johnston const static struct timeval interval = { 60, 0 }; 364a7026c7fSMark Johnston static struct timeval lastprint; 3651a43cff9SSean Bruno struct inpcbinfo *pcbinfo; 3661a43cff9SSean Bruno struct inpcblbgrouphead *hdr; 3671a43cff9SSean Bruno struct inpcblbgroup *grp; 36879ee680bSMark Johnston uint32_t idx; 3691a43cff9SSean Bruno 3701a43cff9SSean Bruno pcbinfo = inp->inp_pcbinfo; 3711a43cff9SSean Bruno 3721a43cff9SSean Bruno INP_WLOCK_ASSERT(inp); 3731a43cff9SSean Bruno INP_HASH_WLOCK_ASSERT(pcbinfo); 3741a43cff9SSean Bruno 3751a43cff9SSean Bruno /* 3761a43cff9SSean Bruno * Don't allow jailed socket to join local group. 3771a43cff9SSean Bruno */ 37879ee680bSMark Johnston if (inp->inp_socket != NULL && jailed(inp->inp_socket->so_cred)) 3791a43cff9SSean Bruno return (0); 3801a43cff9SSean Bruno 3811a43cff9SSean Bruno #ifdef INET6 3821a43cff9SSean Bruno /* 3831a43cff9SSean Bruno * Don't allow IPv4 mapped INET6 wild socket. 3841a43cff9SSean Bruno */ 3851a43cff9SSean Bruno if ((inp->inp_vflag & INP_IPV4) && 3861a43cff9SSean Bruno inp->inp_laddr.s_addr == INADDR_ANY && 3871a43cff9SSean Bruno INP_CHECK_SOCKAF(inp->inp_socket, AF_INET6)) { 3881a43cff9SSean Bruno return (0); 3891a43cff9SSean Bruno } 3901a43cff9SSean Bruno #endif 3911a43cff9SSean Bruno 3929d2877fcSMark Johnston idx = INP_PCBPORTHASH(inp->inp_lport, pcbinfo->ipi_lbgrouphashmask); 39379ee680bSMark Johnston hdr = &pcbinfo->ipi_lbgrouphashbase[idx]; 39454af3d0dSMark Johnston CK_LIST_FOREACH(grp, hdr, il_list) { 3951a43cff9SSean Bruno if (grp->il_vflag == inp->inp_vflag && 3961a43cff9SSean Bruno grp->il_lport == inp->inp_lport && 397a034518aSAndrew Gallatin grp->il_numa_domain == numa_domain && 3981a43cff9SSean Bruno memcmp(&grp->il_dependladdr, 3991a43cff9SSean Bruno &inp->inp_inc.inc_ie.ie_dependladdr, 40079ee680bSMark Johnston sizeof(grp->il_dependladdr)) == 0) 4011a43cff9SSean Bruno break; 4021a43cff9SSean Bruno } 4031a43cff9SSean Bruno if (grp == NULL) { 4041a43cff9SSean Bruno /* Create new load balance group. */ 4051a43cff9SSean Bruno grp = in_pcblbgroup_alloc(hdr, inp->inp_vflag, 4061a43cff9SSean Bruno inp->inp_lport, &inp->inp_inc.inc_ie.ie_dependladdr, 407a034518aSAndrew Gallatin INPCBLBGROUP_SIZMIN, numa_domain); 40879ee680bSMark Johnston if (grp == NULL) 4091a43cff9SSean Bruno return (ENOBUFS); 4101a43cff9SSean Bruno } else if (grp->il_inpcnt == grp->il_inpsiz) { 4111a43cff9SSean Bruno if (grp->il_inpsiz >= INPCBLBGROUP_SIZMAX) { 412a7026c7fSMark Johnston if (ratecheck(&lastprint, &interval)) 4131a43cff9SSean Bruno printf("lb group port %d, limit reached\n", 4141a43cff9SSean Bruno ntohs(grp->il_lport)); 4151a43cff9SSean Bruno return (0); 4161a43cff9SSean Bruno } 4171a43cff9SSean Bruno 4181a43cff9SSean Bruno /* Expand this local group. */ 4191a43cff9SSean Bruno grp = in_pcblbgroup_resize(hdr, grp, grp->il_inpsiz * 2); 42079ee680bSMark Johnston if (grp == NULL) 4211a43cff9SSean Bruno return (ENOBUFS); 4221a43cff9SSean Bruno } 4231a43cff9SSean Bruno 4241a43cff9SSean Bruno KASSERT(grp->il_inpcnt < grp->il_inpsiz, 42579ee680bSMark Johnston ("invalid local group size %d and count %d", grp->il_inpsiz, 42679ee680bSMark Johnston grp->il_inpcnt)); 4271a43cff9SSean Bruno 4281a43cff9SSean Bruno grp->il_inp[grp->il_inpcnt] = inp; 4291a43cff9SSean Bruno grp->il_inpcnt++; 4301a43cff9SSean Bruno return (0); 4311a43cff9SSean Bruno } 4321a43cff9SSean Bruno 4331a43cff9SSean Bruno /* 4341a43cff9SSean Bruno * Remove PCB from load balance group. 4351a43cff9SSean Bruno */ 4361a43cff9SSean Bruno static void 4371a43cff9SSean Bruno in_pcbremlbgrouphash(struct inpcb *inp) 4381a43cff9SSean Bruno { 4391a43cff9SSean Bruno struct inpcbinfo *pcbinfo; 4401a43cff9SSean Bruno struct inpcblbgrouphead *hdr; 4411a43cff9SSean Bruno struct inpcblbgroup *grp; 4421a43cff9SSean Bruno int i; 4431a43cff9SSean Bruno 4441a43cff9SSean Bruno pcbinfo = inp->inp_pcbinfo; 4451a43cff9SSean Bruno 4461a43cff9SSean Bruno INP_WLOCK_ASSERT(inp); 4471a43cff9SSean Bruno INP_HASH_WLOCK_ASSERT(pcbinfo); 4481a43cff9SSean Bruno 4491a43cff9SSean Bruno hdr = &pcbinfo->ipi_lbgrouphashbase[ 4509d2877fcSMark Johnston INP_PCBPORTHASH(inp->inp_lport, pcbinfo->ipi_lbgrouphashmask)]; 45154af3d0dSMark Johnston CK_LIST_FOREACH(grp, hdr, il_list) { 4521a43cff9SSean Bruno for (i = 0; i < grp->il_inpcnt; ++i) { 4531a43cff9SSean Bruno if (grp->il_inp[i] != inp) 4541a43cff9SSean Bruno continue; 4551a43cff9SSean Bruno 4561a43cff9SSean Bruno if (grp->il_inpcnt == 1) { 4571a43cff9SSean Bruno /* We are the last, free this local group. */ 4581a43cff9SSean Bruno in_pcblbgroup_free(grp); 4591a43cff9SSean Bruno } else { 4601a43cff9SSean Bruno /* Pull up inpcbs, shrink group if possible. */ 4611a43cff9SSean Bruno in_pcblbgroup_reorder(hdr, &grp, i); 4621a43cff9SSean Bruno } 4631a43cff9SSean Bruno return; 4641a43cff9SSean Bruno } 4651a43cff9SSean Bruno } 4661a43cff9SSean Bruno } 4671a43cff9SSean Bruno 468a034518aSAndrew Gallatin int 469a034518aSAndrew Gallatin in_pcblbgroup_numa(struct inpcb *inp, int arg) 470a034518aSAndrew Gallatin { 471a034518aSAndrew Gallatin struct inpcbinfo *pcbinfo; 472a034518aSAndrew Gallatin struct inpcblbgrouphead *hdr; 473a034518aSAndrew Gallatin struct inpcblbgroup *grp; 474a034518aSAndrew Gallatin int err, i; 475a034518aSAndrew Gallatin uint8_t numa_domain; 476a034518aSAndrew Gallatin 477a034518aSAndrew Gallatin switch (arg) { 478a034518aSAndrew Gallatin case TCP_REUSPORT_LB_NUMA_NODOM: 479a034518aSAndrew Gallatin numa_domain = M_NODOM; 480a034518aSAndrew Gallatin break; 481a034518aSAndrew Gallatin case TCP_REUSPORT_LB_NUMA_CURDOM: 482a034518aSAndrew Gallatin numa_domain = PCPU_GET(domain); 483a034518aSAndrew Gallatin break; 484a034518aSAndrew Gallatin default: 485a034518aSAndrew Gallatin if (arg < 0 || arg >= vm_ndomains) 486a034518aSAndrew Gallatin return (EINVAL); 487a034518aSAndrew Gallatin numa_domain = arg; 488a034518aSAndrew Gallatin } 489a034518aSAndrew Gallatin 490a034518aSAndrew Gallatin err = 0; 491a034518aSAndrew Gallatin pcbinfo = inp->inp_pcbinfo; 492a034518aSAndrew Gallatin INP_WLOCK_ASSERT(inp); 493a034518aSAndrew Gallatin INP_HASH_WLOCK(pcbinfo); 494a034518aSAndrew Gallatin hdr = &pcbinfo->ipi_lbgrouphashbase[ 495a034518aSAndrew Gallatin INP_PCBPORTHASH(inp->inp_lport, pcbinfo->ipi_lbgrouphashmask)]; 496a034518aSAndrew Gallatin CK_LIST_FOREACH(grp, hdr, il_list) { 497a034518aSAndrew Gallatin for (i = 0; i < grp->il_inpcnt; ++i) { 498a034518aSAndrew Gallatin if (grp->il_inp[i] != inp) 499a034518aSAndrew Gallatin continue; 500a034518aSAndrew Gallatin 501a034518aSAndrew Gallatin if (grp->il_numa_domain == numa_domain) { 502a034518aSAndrew Gallatin goto abort_with_hash_wlock; 503a034518aSAndrew Gallatin } 504a034518aSAndrew Gallatin 505a034518aSAndrew Gallatin /* Remove it from the old group. */ 506a034518aSAndrew Gallatin in_pcbremlbgrouphash(inp); 507a034518aSAndrew Gallatin 508a034518aSAndrew Gallatin /* Add it to the new group based on numa domain. */ 509a034518aSAndrew Gallatin in_pcbinslbgrouphash(inp, numa_domain); 510a034518aSAndrew Gallatin goto abort_with_hash_wlock; 511a034518aSAndrew Gallatin } 512a034518aSAndrew Gallatin } 513a034518aSAndrew Gallatin err = ENOENT; 514a034518aSAndrew Gallatin abort_with_hash_wlock: 515a034518aSAndrew Gallatin INP_HASH_WUNLOCK(pcbinfo); 516a034518aSAndrew Gallatin return (err); 517a034518aSAndrew Gallatin } 518a034518aSAndrew Gallatin 519db0ac6deSCy Schubert /* Make sure it is safe to use hashinit(9) on CK_LIST. */ 520db0ac6deSCy Schubert CTASSERT(sizeof(struct inpcbhead) == sizeof(LIST_HEAD(, inpcb))); 521db0ac6deSCy Schubert 522cc487c16SGleb Smirnoff /* 523fec8a8c7SGleb Smirnoff * Initialize an inpcbinfo - a per-VNET instance of connections db. 5249bcd427bSRobert Watson */ 5259bcd427bSRobert Watson void 526fec8a8c7SGleb Smirnoff in_pcbinfo_init(struct inpcbinfo *pcbinfo, struct inpcbstorage *pcbstor, 527fec8a8c7SGleb Smirnoff u_int hash_nelements, u_int porthash_nelements) 5289bcd427bSRobert Watson { 5299bcd427bSRobert Watson 530fec8a8c7SGleb Smirnoff mtx_init(&pcbinfo->ipi_lock, pcbstor->ips_infolock_name, NULL, MTX_DEF); 531fec8a8c7SGleb Smirnoff mtx_init(&pcbinfo->ipi_hash_lock, pcbstor->ips_hashlock_name, 532fec8a8c7SGleb Smirnoff NULL, MTX_DEF); 5339bcd427bSRobert Watson #ifdef VIMAGE 5349bcd427bSRobert Watson pcbinfo->ipi_vnet = curvnet; 5359bcd427bSRobert Watson #endif 536db0ac6deSCy Schubert CK_LIST_INIT(&pcbinfo->ipi_listhead); 537fa046d87SRobert Watson pcbinfo->ipi_count = 0; 5389bcd427bSRobert Watson pcbinfo->ipi_hashbase = hashinit(hash_nelements, M_PCB, 5399bcd427bSRobert Watson &pcbinfo->ipi_hashmask); 540db0ac6deSCy Schubert porthash_nelements = imin(porthash_nelements, IPPORT_MAX + 1); 5419bcd427bSRobert Watson pcbinfo->ipi_porthashbase = hashinit(porthash_nelements, M_PCB, 5429bcd427bSRobert Watson &pcbinfo->ipi_porthashmask); 5439d2877fcSMark Johnston pcbinfo->ipi_lbgrouphashbase = hashinit(porthash_nelements, M_PCB, 5441a43cff9SSean Bruno &pcbinfo->ipi_lbgrouphashmask); 545fec8a8c7SGleb Smirnoff pcbinfo->ipi_zone = pcbstor->ips_zone; 546fec8a8c7SGleb Smirnoff pcbinfo->ipi_portzone = pcbstor->ips_portzone; 547db0ac6deSCy Schubert pcbinfo->ipi_smr = uma_zone_get_smr(pcbinfo->ipi_zone); 5489bcd427bSRobert Watson } 5499bcd427bSRobert Watson 5509bcd427bSRobert Watson /* 5519bcd427bSRobert Watson * Destroy an inpcbinfo. 5529bcd427bSRobert Watson */ 5539bcd427bSRobert Watson void 5549bcd427bSRobert Watson in_pcbinfo_destroy(struct inpcbinfo *pcbinfo) 5559bcd427bSRobert Watson { 5569bcd427bSRobert Watson 557fa046d87SRobert Watson KASSERT(pcbinfo->ipi_count == 0, 558fa046d87SRobert Watson ("%s: ipi_count = %u", __func__, pcbinfo->ipi_count)); 559fa046d87SRobert Watson 5609bcd427bSRobert Watson hashdestroy(pcbinfo->ipi_hashbase, M_PCB, pcbinfo->ipi_hashmask); 5619bcd427bSRobert Watson hashdestroy(pcbinfo->ipi_porthashbase, M_PCB, 5629bcd427bSRobert Watson pcbinfo->ipi_porthashmask); 5631a43cff9SSean Bruno hashdestroy(pcbinfo->ipi_lbgrouphashbase, M_PCB, 5641a43cff9SSean Bruno pcbinfo->ipi_lbgrouphashmask); 565db0ac6deSCy Schubert mtx_destroy(&pcbinfo->ipi_hash_lock); 566db0ac6deSCy Schubert mtx_destroy(&pcbinfo->ipi_lock); 5679bcd427bSRobert Watson } 5689bcd427bSRobert Watson 5699bcd427bSRobert Watson /* 570fec8a8c7SGleb Smirnoff * Initialize a pcbstorage - per protocol zones to allocate inpcbs. 571fec8a8c7SGleb Smirnoff */ 572fec8a8c7SGleb Smirnoff static void inpcb_dtor(void *, int, void *); 573fec8a8c7SGleb Smirnoff static void inpcb_fini(void *, int); 574fec8a8c7SGleb Smirnoff void 575fec8a8c7SGleb Smirnoff in_pcbstorage_init(void *arg) 576fec8a8c7SGleb Smirnoff { 577fec8a8c7SGleb Smirnoff struct inpcbstorage *pcbstor = arg; 578fec8a8c7SGleb Smirnoff 579fec8a8c7SGleb Smirnoff pcbstor->ips_zone = uma_zcreate(pcbstor->ips_zone_name, 580fec8a8c7SGleb Smirnoff sizeof(struct inpcb), NULL, inpcb_dtor, pcbstor->ips_pcbinit, 581fec8a8c7SGleb Smirnoff inpcb_fini, UMA_ALIGN_PTR, UMA_ZONE_SMR); 582fec8a8c7SGleb Smirnoff pcbstor->ips_portzone = uma_zcreate(pcbstor->ips_portzone_name, 583fec8a8c7SGleb Smirnoff sizeof(struct inpcbport), NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, 0); 584fec8a8c7SGleb Smirnoff uma_zone_set_smr(pcbstor->ips_portzone, 585fec8a8c7SGleb Smirnoff uma_zone_get_smr(pcbstor->ips_zone)); 586fec8a8c7SGleb Smirnoff } 587fec8a8c7SGleb Smirnoff 588fec8a8c7SGleb Smirnoff /* 589fec8a8c7SGleb Smirnoff * Destroy a pcbstorage - used by unloadable protocols. 590fec8a8c7SGleb Smirnoff */ 591fec8a8c7SGleb Smirnoff void 592fec8a8c7SGleb Smirnoff in_pcbstorage_destroy(void *arg) 593fec8a8c7SGleb Smirnoff { 594fec8a8c7SGleb Smirnoff struct inpcbstorage *pcbstor = arg; 595fec8a8c7SGleb Smirnoff 596fec8a8c7SGleb Smirnoff uma_zdestroy(pcbstor->ips_zone); 597fec8a8c7SGleb Smirnoff uma_zdestroy(pcbstor->ips_portzone); 598fec8a8c7SGleb Smirnoff } 599fec8a8c7SGleb Smirnoff 600fec8a8c7SGleb Smirnoff /* 601c3229e05SDavid Greenman * Allocate a PCB and associate it with the socket. 602d915b280SStephan Uphoff * On success return with the PCB locked. 603c3229e05SDavid Greenman */ 604df8bae1dSRodney W. Grimes int 605d915b280SStephan Uphoff in_pcballoc(struct socket *so, struct inpcbinfo *pcbinfo) 606df8bae1dSRodney W. Grimes { 607136d4f1cSRobert Watson struct inpcb *inp; 608fe5324acSJohn Baldwin #if defined(IPSEC) || defined(IPSEC_SUPPORT) || defined(MAC) 60913cf67f3SHajimu UMEMOTO int error; 610fe5324acSJohn Baldwin #endif 611a557af22SRobert Watson 612db0ac6deSCy Schubert inp = uma_zalloc_smr(pcbinfo->ipi_zone, M_NOWAIT); 613df8bae1dSRodney W. Grimes if (inp == NULL) 614df8bae1dSRodney W. Grimes return (ENOBUFS); 6156a6cefacSGleb Smirnoff bzero(&inp->inp_start_zero, inp_zero_size); 61650575ce1SAndrew Gallatin #ifdef NUMA 61750575ce1SAndrew Gallatin inp->inp_numa_domain = M_NODOM; 61850575ce1SAndrew Gallatin #endif 61915bd2b43SDavid Greenman inp->inp_pcbinfo = pcbinfo; 620df8bae1dSRodney W. Grimes inp->inp_socket = so; 62186d02c5cSBjoern A. Zeeb inp->inp_cred = crhold(so->so_cred); 6228b07e49aSJulian Elischer inp->inp_inc.inc_fibnum = so->so_fibnum; 623a557af22SRobert Watson #ifdef MAC 62430d239bcSRobert Watson error = mac_inpcb_init(inp, M_NOWAIT); 625a557af22SRobert Watson if (error != 0) 626a557af22SRobert Watson goto out; 62730d239bcSRobert Watson mac_inpcb_create(so, inp); 628a557af22SRobert Watson #endif 629fcf59617SAndrey V. Elsukov #if defined(IPSEC) || defined(IPSEC_SUPPORT) 630fcf59617SAndrey V. Elsukov error = ipsec_init_pcbpolicy(inp); 6310bffde27SRobert Watson if (error != 0) { 6320bffde27SRobert Watson #ifdef MAC 6330bffde27SRobert Watson mac_inpcb_destroy(inp); 6340bffde27SRobert Watson #endif 635a557af22SRobert Watson goto out; 6360bffde27SRobert Watson } 637b2630c29SGeorge V. Neville-Neil #endif /*IPSEC*/ 638e3fd5ffdSRobert Watson #ifdef INET6 639340c35deSJonathan Lemon if (INP_SOCKAF(so) == AF_INET6) { 640c7a62c92SGleb Smirnoff inp->inp_vflag |= INP_IPV6PROTO | INP_IPV6; 641603724d3SBjoern A. Zeeb if (V_ip6_v6only) 64233841545SHajimu UMEMOTO inp->inp_flags |= IN6P_IPV6_V6ONLY; 643c7a62c92SGleb Smirnoff #ifdef INET 644c7a62c92SGleb Smirnoff else 645c7a62c92SGleb Smirnoff inp->inp_vflag |= INP_IPV4; 646c7a62c92SGleb Smirnoff #endif 647603724d3SBjoern A. Zeeb if (V_ip6_auto_flowlabel) 64833841545SHajimu UMEMOTO inp->inp_flags |= IN6P_AUTOFLOWLABEL; 649c7a62c92SGleb Smirnoff inp->in6p_hops = -1; /* use kernel default */ 650c7a62c92SGleb Smirnoff } 651c7a62c92SGleb Smirnoff #endif 652c7a62c92SGleb Smirnoff #if defined(INET) && defined(INET6) 653c7a62c92SGleb Smirnoff else 654c7a62c92SGleb Smirnoff #endif 655c7a62c92SGleb Smirnoff #ifdef INET 656c7a62c92SGleb Smirnoff inp->inp_vflag |= INP_IPV4; 65733841545SHajimu UMEMOTO #endif 6588c1960d5SMike Karels /* 6598c1960d5SMike Karels * Routes in inpcb's can cache L2 as well; they are guaranteed 6608c1960d5SMike Karels * to be cleaned up. 6618c1960d5SMike Karels */ 6628c1960d5SMike Karels inp->inp_route.ro_flags = RT_LLE_CACHE; 663db0ac6deSCy Schubert #ifdef TCPHPTS 664db0ac6deSCy Schubert /* 665db0ac6deSCy Schubert * If using hpts lets drop a random number in so 666db0ac6deSCy Schubert * not all new connections fall on the same CPU. 667db0ac6deSCy Schubert */ 668a370832bSGleb Smirnoff inp->inp_hpts_cpu = hpts_random_cpu(inp); 669db0ac6deSCy Schubert #endif 670db0ac6deSCy Schubert refcount_init(&inp->inp_refcount, 1); /* Reference from socket. */ 671db0ac6deSCy Schubert INP_WLOCK(inp); 672db0ac6deSCy Schubert INP_INFO_WLOCK(pcbinfo); 673db0ac6deSCy Schubert pcbinfo->ipi_count++; 674db0ac6deSCy Schubert inp->inp_gencnt = ++pcbinfo->ipi_gencnt; 675db0ac6deSCy Schubert CK_LIST_INSERT_HEAD(&pcbinfo->ipi_listhead, inp, inp_list); 676db0ac6deSCy Schubert INP_INFO_WUNLOCK(pcbinfo); 677db0ac6deSCy Schubert so->so_pcb = inp; 678db0ac6deSCy Schubert 679db0ac6deSCy Schubert return (0); 680db0ac6deSCy Schubert 6817a60a910SAndrey V. Elsukov #if defined(IPSEC) || defined(IPSEC_SUPPORT) || defined(MAC) 682a557af22SRobert Watson out: 683db0ac6deSCy Schubert uma_zfree_smr(pcbinfo->ipi_zone, inp); 684266f97b5SCy Schubert return (error); 685db0ac6deSCy Schubert #endif 686df8bae1dSRodney W. Grimes } 687df8bae1dSRodney W. Grimes 68867107f45SBjoern A. Zeeb #ifdef INET 689df8bae1dSRodney W. Grimes int 690136d4f1cSRobert Watson in_pcbbind(struct inpcb *inp, struct sockaddr *nam, struct ucred *cred) 691df8bae1dSRodney W. Grimes { 6924b932371SIan Dowse int anonport, error; 6934b932371SIan Dowse 694f161d294SMark Johnston KASSERT(nam == NULL || nam->sa_family == AF_INET, 695f161d294SMark Johnston ("%s: invalid address family for %p", __func__, nam)); 696f161d294SMark Johnston KASSERT(nam == NULL || nam->sa_len == sizeof(struct sockaddr_in), 697f161d294SMark Johnston ("%s: invalid address length for %p", __func__, nam)); 6988501a69cSRobert Watson INP_WLOCK_ASSERT(inp); 699fa046d87SRobert Watson INP_HASH_WLOCK_ASSERT(inp->inp_pcbinfo); 70059daba27SSam Leffler 7014b932371SIan Dowse if (inp->inp_lport != 0 || inp->inp_laddr.s_addr != INADDR_ANY) 7024b932371SIan Dowse return (EINVAL); 7035cd3dcaaSNavdeep Parhar anonport = nam == NULL || ((struct sockaddr_in *)nam)->sin_port == 0; 7044b932371SIan Dowse error = in_pcbbind_setup(inp, nam, &inp->inp_laddr.s_addr, 705b0330ed9SPawel Jakub Dawidek &inp->inp_lport, cred); 7064b932371SIan Dowse if (error) 7074b932371SIan Dowse return (error); 7084b932371SIan Dowse if (in_pcbinshash(inp) != 0) { 7094b932371SIan Dowse inp->inp_laddr.s_addr = INADDR_ANY; 7104b932371SIan Dowse inp->inp_lport = 0; 7114b932371SIan Dowse return (EAGAIN); 7124b932371SIan Dowse } 7134b932371SIan Dowse if (anonport) 7144b932371SIan Dowse inp->inp_flags |= INP_ANONPORT; 7154b932371SIan Dowse return (0); 7164b932371SIan Dowse } 71767107f45SBjoern A. Zeeb #endif 7184b932371SIan Dowse 719efc76f72SBjoern A. Zeeb #if defined(INET) || defined(INET6) 72025102351SMike Karels /* 72125102351SMike Karels * Assign a local port like in_pcb_lport(), but also used with connect() 72225102351SMike Karels * and a foreign address and port. If fsa is non-NULL, choose a local port 72325102351SMike Karels * that is unused with those, otherwise one that is completely unused. 7242fdbcbeaSMike Karels * lsa can be NULL for IPv6. 72525102351SMike Karels */ 726efc76f72SBjoern A. Zeeb int 72725102351SMike Karels in_pcb_lport_dest(struct inpcb *inp, struct sockaddr *lsa, u_short *lportp, 72825102351SMike Karels struct sockaddr *fsa, u_short fport, struct ucred *cred, int lookupflags) 729efc76f72SBjoern A. Zeeb { 730efc76f72SBjoern A. Zeeb struct inpcbinfo *pcbinfo; 731efc76f72SBjoern A. Zeeb struct inpcb *tmpinp; 732efc76f72SBjoern A. Zeeb unsigned short *lastport; 733efc76f72SBjoern A. Zeeb int count, dorandom, error; 734efc76f72SBjoern A. Zeeb u_short aux, first, last, lport; 735efc76f72SBjoern A. Zeeb #ifdef INET 73625102351SMike Karels struct in_addr laddr, faddr; 73725102351SMike Karels #endif 73825102351SMike Karels #ifdef INET6 73925102351SMike Karels struct in6_addr *laddr6, *faddr6; 740efc76f72SBjoern A. Zeeb #endif 741efc76f72SBjoern A. Zeeb 742efc76f72SBjoern A. Zeeb pcbinfo = inp->inp_pcbinfo; 743efc76f72SBjoern A. Zeeb 744efc76f72SBjoern A. Zeeb /* 745efc76f72SBjoern A. Zeeb * Because no actual state changes occur here, a global write lock on 746efc76f72SBjoern A. Zeeb * the pcbinfo isn't required. 747efc76f72SBjoern A. Zeeb */ 748efc76f72SBjoern A. Zeeb INP_LOCK_ASSERT(inp); 749fa046d87SRobert Watson INP_HASH_LOCK_ASSERT(pcbinfo); 750efc76f72SBjoern A. Zeeb 751efc76f72SBjoern A. Zeeb if (inp->inp_flags & INP_HIGHPORT) { 752efc76f72SBjoern A. Zeeb first = V_ipport_hifirstauto; /* sysctl */ 753efc76f72SBjoern A. Zeeb last = V_ipport_hilastauto; 754efc76f72SBjoern A. Zeeb lastport = &pcbinfo->ipi_lasthi; 755efc76f72SBjoern A. Zeeb } else if (inp->inp_flags & INP_LOWPORT) { 756cc426dd3SMateusz Guzik error = priv_check_cred(cred, PRIV_NETINET_RESERVEDPORT); 757efc76f72SBjoern A. Zeeb if (error) 758efc76f72SBjoern A. Zeeb return (error); 759efc76f72SBjoern A. Zeeb first = V_ipport_lowfirstauto; /* 1023 */ 760efc76f72SBjoern A. Zeeb last = V_ipport_lowlastauto; /* 600 */ 761efc76f72SBjoern A. Zeeb lastport = &pcbinfo->ipi_lastlow; 762efc76f72SBjoern A. Zeeb } else { 763efc76f72SBjoern A. Zeeb first = V_ipport_firstauto; /* sysctl */ 764efc76f72SBjoern A. Zeeb last = V_ipport_lastauto; 765efc76f72SBjoern A. Zeeb lastport = &pcbinfo->ipi_lastport; 766efc76f72SBjoern A. Zeeb } 767efc76f72SBjoern A. Zeeb /* 768e06e816fSKevin Lo * For UDP(-Lite), use random port allocation as long as the user 769efc76f72SBjoern A. Zeeb * allows it. For TCP (and as of yet unknown) connections, 770efc76f72SBjoern A. Zeeb * use random port allocation only if the user allows it AND 771efc76f72SBjoern A. Zeeb * ipport_tick() allows it. 772efc76f72SBjoern A. Zeeb */ 773efc76f72SBjoern A. Zeeb if (V_ipport_randomized && 774e06e816fSKevin Lo (!V_ipport_stoprandom || pcbinfo == &V_udbinfo || 775e06e816fSKevin Lo pcbinfo == &V_ulitecbinfo)) 776efc76f72SBjoern A. Zeeb dorandom = 1; 777efc76f72SBjoern A. Zeeb else 778efc76f72SBjoern A. Zeeb dorandom = 0; 779efc76f72SBjoern A. Zeeb /* 780efc76f72SBjoern A. Zeeb * It makes no sense to do random port allocation if 781efc76f72SBjoern A. Zeeb * we have the only port available. 782efc76f72SBjoern A. Zeeb */ 783efc76f72SBjoern A. Zeeb if (first == last) 784efc76f72SBjoern A. Zeeb dorandom = 0; 785e06e816fSKevin Lo /* Make sure to not include UDP(-Lite) packets in the count. */ 78613e3f334SPeter Lei if (pcbinfo != &V_udbinfo && pcbinfo != &V_ulitecbinfo) 787efc76f72SBjoern A. Zeeb V_ipport_tcpallocs++; 788efc76f72SBjoern A. Zeeb /* 789efc76f72SBjoern A. Zeeb * Instead of having two loops further down counting up or down 790efc76f72SBjoern A. Zeeb * make sure that first is always <= last and go with only one 791efc76f72SBjoern A. Zeeb * code path implementing all logic. 792efc76f72SBjoern A. Zeeb */ 793efc76f72SBjoern A. Zeeb if (first > last) { 794efc76f72SBjoern A. Zeeb aux = first; 795efc76f72SBjoern A. Zeeb first = last; 796efc76f72SBjoern A. Zeeb last = aux; 797efc76f72SBjoern A. Zeeb } 798efc76f72SBjoern A. Zeeb 799efc76f72SBjoern A. Zeeb #ifdef INET 800637f317cSMike Karels laddr.s_addr = INADDR_ANY; /* used by INET6+INET below too */ 8014d457387SBjoern A. Zeeb if ((inp->inp_vflag & (INP_IPV4|INP_IPV6)) == INP_IPV4) { 8022fdbcbeaSMike Karels if (lsa != NULL) 80325102351SMike Karels laddr = ((struct sockaddr_in *)lsa)->sin_addr; 80425102351SMike Karels if (fsa != NULL) 80525102351SMike Karels faddr = ((struct sockaddr_in *)fsa)->sin_addr; 806efc76f72SBjoern A. Zeeb } 807efc76f72SBjoern A. Zeeb #endif 80825102351SMike Karels #ifdef INET6 8092fdbcbeaSMike Karels laddr6 = NULL; 8102fdbcbeaSMike Karels if ((inp->inp_vflag & INP_IPV6) != 0) { 8112fdbcbeaSMike Karels if (lsa != NULL) 81225102351SMike Karels laddr6 = &((struct sockaddr_in6 *)lsa)->sin6_addr; 81325102351SMike Karels if (fsa != NULL) 81425102351SMike Karels faddr6 = &((struct sockaddr_in6 *)fsa)->sin6_addr; 81525102351SMike Karels } 81625102351SMike Karels #endif 81725102351SMike Karels 81825102351SMike Karels tmpinp = NULL; 819efc76f72SBjoern A. Zeeb lport = *lportp; 820efc76f72SBjoern A. Zeeb 821efc76f72SBjoern A. Zeeb if (dorandom) 822efc76f72SBjoern A. Zeeb *lastport = first + (arc4random() % (last - first)); 823efc76f72SBjoern A. Zeeb 824efc76f72SBjoern A. Zeeb count = last - first; 825efc76f72SBjoern A. Zeeb 826efc76f72SBjoern A. Zeeb do { 827efc76f72SBjoern A. Zeeb if (count-- < 0) /* completely used? */ 828efc76f72SBjoern A. Zeeb return (EADDRNOTAVAIL); 829efc76f72SBjoern A. Zeeb ++*lastport; 830efc76f72SBjoern A. Zeeb if (*lastport < first || *lastport > last) 831efc76f72SBjoern A. Zeeb *lastport = first; 832efc76f72SBjoern A. Zeeb lport = htons(*lastport); 833efc76f72SBjoern A. Zeeb 83425102351SMike Karels if (fsa != NULL) { 83525102351SMike Karels #ifdef INET 83625102351SMike Karels if (lsa->sa_family == AF_INET) { 83725102351SMike Karels tmpinp = in_pcblookup_hash_locked(pcbinfo, 83825102351SMike Karels faddr, fport, laddr, lport, lookupflags, 839a034518aSAndrew Gallatin NULL, M_NODOM); 84025102351SMike Karels } 84125102351SMike Karels #endif 84225102351SMike Karels #ifdef INET6 84325102351SMike Karels if (lsa->sa_family == AF_INET6) { 84425102351SMike Karels tmpinp = in6_pcblookup_hash_locked(pcbinfo, 84525102351SMike Karels faddr6, fport, laddr6, lport, lookupflags, 846a034518aSAndrew Gallatin NULL, M_NODOM); 84725102351SMike Karels } 84825102351SMike Karels #endif 84925102351SMike Karels } else { 850efc76f72SBjoern A. Zeeb #ifdef INET6 851637f317cSMike Karels if ((inp->inp_vflag & INP_IPV6) != 0) { 852efc76f72SBjoern A. Zeeb tmpinp = in6_pcblookup_local(pcbinfo, 85368e0d7e0SRobert Watson &inp->in6p_laddr, lport, lookupflags, cred); 854637f317cSMike Karels #ifdef INET 855637f317cSMike Karels if (tmpinp == NULL && 856637f317cSMike Karels (inp->inp_vflag & INP_IPV4)) 857637f317cSMike Karels tmpinp = in_pcblookup_local(pcbinfo, 858637f317cSMike Karels laddr, lport, lookupflags, cred); 859637f317cSMike Karels #endif 860637f317cSMike Karels } 861efc76f72SBjoern A. Zeeb #endif 862efc76f72SBjoern A. Zeeb #if defined(INET) && defined(INET6) 863efc76f72SBjoern A. Zeeb else 864efc76f72SBjoern A. Zeeb #endif 865efc76f72SBjoern A. Zeeb #ifdef INET 866efc76f72SBjoern A. Zeeb tmpinp = in_pcblookup_local(pcbinfo, laddr, 86768e0d7e0SRobert Watson lport, lookupflags, cred); 868efc76f72SBjoern A. Zeeb #endif 86925102351SMike Karels } 870efc76f72SBjoern A. Zeeb } while (tmpinp != NULL); 871efc76f72SBjoern A. Zeeb 872efc76f72SBjoern A. Zeeb *lportp = lport; 873efc76f72SBjoern A. Zeeb 874efc76f72SBjoern A. Zeeb return (0); 875efc76f72SBjoern A. Zeeb } 876efdf104bSMikolaj Golub 877efdf104bSMikolaj Golub /* 87825102351SMike Karels * Select a local port (number) to use. 87925102351SMike Karels */ 88025102351SMike Karels int 88125102351SMike Karels in_pcb_lport(struct inpcb *inp, struct in_addr *laddrp, u_short *lportp, 88225102351SMike Karels struct ucred *cred, int lookupflags) 88325102351SMike Karels { 88425102351SMike Karels struct sockaddr_in laddr; 88525102351SMike Karels 88625102351SMike Karels if (laddrp) { 88725102351SMike Karels bzero(&laddr, sizeof(laddr)); 88825102351SMike Karels laddr.sin_family = AF_INET; 88925102351SMike Karels laddr.sin_addr = *laddrp; 89025102351SMike Karels } 89125102351SMike Karels return (in_pcb_lport_dest(inp, laddrp ? (struct sockaddr *) &laddr : 89225102351SMike Karels NULL, lportp, NULL, 0, cred, lookupflags)); 89325102351SMike Karels } 89425102351SMike Karels 89525102351SMike Karels /* 896efdf104bSMikolaj Golub * Return cached socket options. 897efdf104bSMikolaj Golub */ 8981a43cff9SSean Bruno int 899efdf104bSMikolaj Golub inp_so_options(const struct inpcb *inp) 900efdf104bSMikolaj Golub { 9011a43cff9SSean Bruno int so_options; 902efdf104bSMikolaj Golub 903efdf104bSMikolaj Golub so_options = 0; 904efdf104bSMikolaj Golub 9051a43cff9SSean Bruno if ((inp->inp_flags2 & INP_REUSEPORT_LB) != 0) 9061a43cff9SSean Bruno so_options |= SO_REUSEPORT_LB; 907efdf104bSMikolaj Golub if ((inp->inp_flags2 & INP_REUSEPORT) != 0) 908efdf104bSMikolaj Golub so_options |= SO_REUSEPORT; 909efdf104bSMikolaj Golub if ((inp->inp_flags2 & INP_REUSEADDR) != 0) 910efdf104bSMikolaj Golub so_options |= SO_REUSEADDR; 911efdf104bSMikolaj Golub return (so_options); 912efdf104bSMikolaj Golub } 913efc76f72SBjoern A. Zeeb #endif /* INET || INET6 */ 914efc76f72SBjoern A. Zeeb 9154b932371SIan Dowse /* 9160a100a6fSAdrian Chadd * Check if a new BINDMULTI socket is allowed to be created. 9170a100a6fSAdrian Chadd * 9180a100a6fSAdrian Chadd * ni points to the new inp. 919942e8cabSGordon Bergling * oi points to the existing inp. 9200a100a6fSAdrian Chadd * 9210a100a6fSAdrian Chadd * This checks whether the existing inp also has BINDMULTI and 9220a100a6fSAdrian Chadd * whether the credentials match. 9230a100a6fSAdrian Chadd */ 924d5bb8bd3SAdrian Chadd int 9250a100a6fSAdrian Chadd in_pcbbind_check_bindmulti(const struct inpcb *ni, const struct inpcb *oi) 9260a100a6fSAdrian Chadd { 9270a100a6fSAdrian Chadd /* Check permissions match */ 9280a100a6fSAdrian Chadd if ((ni->inp_flags2 & INP_BINDMULTI) && 9290a100a6fSAdrian Chadd (ni->inp_cred->cr_uid != 9300a100a6fSAdrian Chadd oi->inp_cred->cr_uid)) 9310a100a6fSAdrian Chadd return (0); 9320a100a6fSAdrian Chadd 9330a100a6fSAdrian Chadd /* Check the existing inp has BINDMULTI set */ 9340a100a6fSAdrian Chadd if ((ni->inp_flags2 & INP_BINDMULTI) && 9350a100a6fSAdrian Chadd ((oi->inp_flags2 & INP_BINDMULTI) == 0)) 9360a100a6fSAdrian Chadd return (0); 9370a100a6fSAdrian Chadd 9380a100a6fSAdrian Chadd /* 9390a100a6fSAdrian Chadd * We're okay - either INP_BINDMULTI isn't set on ni, or 9400a100a6fSAdrian Chadd * it is and it matches the checks. 9410a100a6fSAdrian Chadd */ 9420a100a6fSAdrian Chadd return (1); 9430a100a6fSAdrian Chadd } 9440a100a6fSAdrian Chadd 945d5bb8bd3SAdrian Chadd #ifdef INET 9460a100a6fSAdrian Chadd /* 9474b932371SIan Dowse * Set up a bind operation on a PCB, performing port allocation 9484b932371SIan Dowse * as required, but do not actually modify the PCB. Callers can 9494b932371SIan Dowse * either complete the bind by setting inp_laddr/inp_lport and 9504b932371SIan Dowse * calling in_pcbinshash(), or they can just use the resulting 9514b932371SIan Dowse * port and address to authorise the sending of a once-off packet. 9524b932371SIan Dowse * 9534b932371SIan Dowse * On error, the values of *laddrp and *lportp are not changed. 9544b932371SIan Dowse */ 9554b932371SIan Dowse int 956136d4f1cSRobert Watson in_pcbbind_setup(struct inpcb *inp, struct sockaddr *nam, in_addr_t *laddrp, 957136d4f1cSRobert Watson u_short *lportp, struct ucred *cred) 9584b932371SIan Dowse { 9594b932371SIan Dowse struct socket *so = inp->inp_socket; 96015bd2b43SDavid Greenman struct sockaddr_in *sin; 961c3229e05SDavid Greenman struct inpcbinfo *pcbinfo = inp->inp_pcbinfo; 9624b932371SIan Dowse struct in_addr laddr; 963df8bae1dSRodney W. Grimes u_short lport = 0; 96468e0d7e0SRobert Watson int lookupflags = 0, reuseport = (so->so_options & SO_REUSEPORT); 965413628a7SBjoern A. Zeeb int error; 966df8bae1dSRodney W. Grimes 9678501a69cSRobert Watson /* 9681a43cff9SSean Bruno * XXX: Maybe we could let SO_REUSEPORT_LB set SO_REUSEPORT bit here 9691a43cff9SSean Bruno * so that we don't have to add to the (already messy) code below. 9701a43cff9SSean Bruno */ 9711a43cff9SSean Bruno int reuseport_lb = (so->so_options & SO_REUSEPORT_LB); 9721a43cff9SSean Bruno 9731a43cff9SSean Bruno /* 974fa046d87SRobert Watson * No state changes, so read locks are sufficient here. 9758501a69cSRobert Watson */ 97659daba27SSam Leffler INP_LOCK_ASSERT(inp); 977fa046d87SRobert Watson INP_HASH_LOCK_ASSERT(pcbinfo); 97859daba27SSam Leffler 9794b932371SIan Dowse laddr.s_addr = *laddrp; 9804b932371SIan Dowse if (nam != NULL && laddr.s_addr != INADDR_ANY) 981df8bae1dSRodney W. Grimes return (EINVAL); 9821a43cff9SSean Bruno if ((so->so_options & (SO_REUSEADDR|SO_REUSEPORT|SO_REUSEPORT_LB)) == 0) 98368e0d7e0SRobert Watson lookupflags = INPLOOKUP_WILDCARD; 9844616026fSErmal Luçi if (nam == NULL) { 9857c2f3cb9SJamie Gritton if ((error = prison_local_ip4(cred, &laddr)) != 0) 9867c2f3cb9SJamie Gritton return (error); 9877c2f3cb9SJamie Gritton } else { 98857bf258eSGarrett Wollman sin = (struct sockaddr_in *)nam; 989f161d294SMark Johnston KASSERT(sin->sin_family == AF_INET, 990f161d294SMark Johnston ("%s: invalid family for address %p", __func__, sin)); 991f161d294SMark Johnston KASSERT(sin->sin_len == sizeof(*sin), 992f161d294SMark Johnston ("%s: invalid length for address %p", __func__, sin)); 993f161d294SMark Johnston 994b89e82ddSJamie Gritton error = prison_local_ip4(cred, &sin->sin_addr); 995b89e82ddSJamie Gritton if (error) 996b89e82ddSJamie Gritton return (error); 9974b932371SIan Dowse if (sin->sin_port != *lportp) { 9984b932371SIan Dowse /* Don't allow the port to change. */ 9994b932371SIan Dowse if (*lportp != 0) 10004b932371SIan Dowse return (EINVAL); 1001df8bae1dSRodney W. Grimes lport = sin->sin_port; 10024b932371SIan Dowse } 10034b932371SIan Dowse /* NB: lport is left as 0 if the port isn't being changed. */ 1004df8bae1dSRodney W. Grimes if (IN_MULTICAST(ntohl(sin->sin_addr.s_addr))) { 1005df8bae1dSRodney W. Grimes /* 1006df8bae1dSRodney W. Grimes * Treat SO_REUSEADDR as SO_REUSEPORT for multicast; 1007df8bae1dSRodney W. Grimes * allow complete duplication of binding if 1008df8bae1dSRodney W. Grimes * SO_REUSEPORT is set, or if SO_REUSEADDR is set 1009df8bae1dSRodney W. Grimes * and a multicast address is bound on both 1010df8bae1dSRodney W. Grimes * new and duplicated sockets. 1011df8bae1dSRodney W. Grimes */ 1012f122b319SMikolaj Golub if ((so->so_options & (SO_REUSEADDR|SO_REUSEPORT)) != 0) 1013df8bae1dSRodney W. Grimes reuseport = SO_REUSEADDR|SO_REUSEPORT; 10141a43cff9SSean Bruno /* 10151a43cff9SSean Bruno * XXX: How to deal with SO_REUSEPORT_LB here? 10161a43cff9SSean Bruno * Treat same as SO_REUSEPORT for now. 10171a43cff9SSean Bruno */ 10181a43cff9SSean Bruno if ((so->so_options & 10191a43cff9SSean Bruno (SO_REUSEADDR|SO_REUSEPORT_LB)) != 0) 10201a43cff9SSean Bruno reuseport_lb = SO_REUSEADDR|SO_REUSEPORT_LB; 1021df8bae1dSRodney W. Grimes } else if (sin->sin_addr.s_addr != INADDR_ANY) { 1022df8bae1dSRodney W. Grimes sin->sin_port = 0; /* yech... */ 102383103a73SAndrew R. Reiter bzero(&sin->sin_zero, sizeof(sin->sin_zero)); 10244209e01aSAdrian Chadd /* 10254209e01aSAdrian Chadd * Is the address a local IP address? 1026f44270e7SPawel Jakub Dawidek * If INP_BINDANY is set, then the socket may be bound 10278696873dSAdrian Chadd * to any endpoint address, local or not. 10284209e01aSAdrian Chadd */ 1029f44270e7SPawel Jakub Dawidek if ((inp->inp_flags & INP_BINDANY) == 0 && 10308896f83aSRobert Watson ifa_ifwithaddr_check((struct sockaddr *)sin) == 0) 1031df8bae1dSRodney W. Grimes return (EADDRNOTAVAIL); 1032df8bae1dSRodney W. Grimes } 10334b932371SIan Dowse laddr = sin->sin_addr; 1034df8bae1dSRodney W. Grimes if (lport) { 1035df8bae1dSRodney W. Grimes struct inpcb *t; 1036ae0e7143SRobert Watson 1037df8bae1dSRodney W. Grimes /* GROSS */ 1038603724d3SBjoern A. Zeeb if (ntohs(lport) <= V_ipport_reservedhigh && 1039603724d3SBjoern A. Zeeb ntohs(lport) >= V_ipport_reservedlow && 1040cc426dd3SMateusz Guzik priv_check_cred(cred, PRIV_NETINET_RESERVEDPORT)) 10412469dd60SGarrett Wollman return (EACCES); 1042835d4b89SPawel Jakub Dawidek if (!IN_MULTICAST(ntohl(sin->sin_addr.s_addr)) && 1043cc426dd3SMateusz Guzik priv_check_cred(inp->inp_cred, PRIV_NETINET_REUSEPORT) != 0) { 1044078b7042SBjoern A. Zeeb t = in_pcblookup_local(pcbinfo, sin->sin_addr, 1045413628a7SBjoern A. Zeeb lport, INPLOOKUP_WILDCARD, cred); 1046340c35deSJonathan Lemon /* 1047340c35deSJonathan Lemon * XXX 1048340c35deSJonathan Lemon * This entire block sorely needs a rewrite. 1049340c35deSJonathan Lemon */ 10504cc20ab1SSeigo Tanimura if (t && 10510a100a6fSAdrian Chadd ((inp->inp_flags2 & INP_BINDMULTI) == 0) && 10524658dc83SYaroslav Tykhiy (so->so_type != SOCK_STREAM || 10534658dc83SYaroslav Tykhiy ntohl(t->inp_faddr.s_addr) == INADDR_ANY) && 10544cc20ab1SSeigo Tanimura (ntohl(sin->sin_addr.s_addr) != INADDR_ANY || 105552b65dbeSBill Fenner ntohl(t->inp_laddr.s_addr) != INADDR_ANY || 10561a43cff9SSean Bruno (t->inp_flags2 & INP_REUSEPORT) || 10571a43cff9SSean Bruno (t->inp_flags2 & INP_REUSEPORT_LB) == 0) && 105886d02c5cSBjoern A. Zeeb (inp->inp_cred->cr_uid != 105986d02c5cSBjoern A. Zeeb t->inp_cred->cr_uid)) 10604049a042SGuido van Rooij return (EADDRINUSE); 10610a100a6fSAdrian Chadd 10620a100a6fSAdrian Chadd /* 10630a100a6fSAdrian Chadd * If the socket is a BINDMULTI socket, then 10640a100a6fSAdrian Chadd * the credentials need to match and the 10650a100a6fSAdrian Chadd * original socket also has to have been bound 10660a100a6fSAdrian Chadd * with BINDMULTI. 10670a100a6fSAdrian Chadd */ 10680a100a6fSAdrian Chadd if (t && (! in_pcbbind_check_bindmulti(inp, t))) 10690a100a6fSAdrian Chadd return (EADDRINUSE); 10704049a042SGuido van Rooij } 1071c3229e05SDavid Greenman t = in_pcblookup_local(pcbinfo, sin->sin_addr, 107268e0d7e0SRobert Watson lport, lookupflags, cred); 10730d744519SGleb Smirnoff if (t && ((inp->inp_flags2 & INP_BINDMULTI) == 0) && 10741a43cff9SSean Bruno (reuseport & inp_so_options(t)) == 0 && 10751a43cff9SSean Bruno (reuseport_lb & inp_so_options(t)) == 0) { 1076e3fd5ffdSRobert Watson #ifdef INET6 107733841545SHajimu UMEMOTO if (ntohl(sin->sin_addr.s_addr) != 1078cfa1ca9dSYoshinobu Inoue INADDR_ANY || 1079cfa1ca9dSYoshinobu Inoue ntohl(t->inp_laddr.s_addr) != 1080cfa1ca9dSYoshinobu Inoue INADDR_ANY || 1081fc06cd42SMikolaj Golub (inp->inp_vflag & INP_IPV6PROTO) == 0 || 1082fc06cd42SMikolaj Golub (t->inp_vflag & INP_IPV6PROTO) == 0) 1083e3fd5ffdSRobert Watson #endif 1084df8bae1dSRodney W. Grimes return (EADDRINUSE); 10850a100a6fSAdrian Chadd if (t && (! in_pcbbind_check_bindmulti(inp, t))) 10860a100a6fSAdrian Chadd return (EADDRINUSE); 1087df8bae1dSRodney W. Grimes } 1088cfa1ca9dSYoshinobu Inoue } 1089df8bae1dSRodney W. Grimes } 10904b932371SIan Dowse if (*lportp != 0) 10914b932371SIan Dowse lport = *lportp; 109233b3ac06SPeter Wemm if (lport == 0) { 10934616026fSErmal Luçi error = in_pcb_lport(inp, &laddr, &lport, cred, lookupflags); 1094efc76f72SBjoern A. Zeeb if (error != 0) 1095efc76f72SBjoern A. Zeeb return (error); 109633b3ac06SPeter Wemm } 10974b932371SIan Dowse *laddrp = laddr.s_addr; 10984b932371SIan Dowse *lportp = lport; 1099df8bae1dSRodney W. Grimes return (0); 1100df8bae1dSRodney W. Grimes } 1101df8bae1dSRodney W. Grimes 1102999f1343SGarrett Wollman /* 11035200e00eSIan Dowse * Connect from a socket to a specified address. 11045200e00eSIan Dowse * Both address and port must be specified in argument sin. 11055200e00eSIan Dowse * If don't have a local address for this socket yet, 11065200e00eSIan Dowse * then pick one. 1107999f1343SGarrett Wollman */ 1108999f1343SGarrett Wollman int 1109db0ac6deSCy Schubert in_pcbconnect(struct inpcb *inp, struct sockaddr *nam, struct ucred *cred, 1110db0ac6deSCy Schubert bool rehash) 1111999f1343SGarrett Wollman { 11125200e00eSIan Dowse u_short lport, fport; 11135200e00eSIan Dowse in_addr_t laddr, faddr; 11145200e00eSIan Dowse int anonport, error; 1115df8bae1dSRodney W. Grimes 11168501a69cSRobert Watson INP_WLOCK_ASSERT(inp); 1117fa046d87SRobert Watson INP_HASH_WLOCK_ASSERT(inp->inp_pcbinfo); 111827f74fd0SRobert Watson 11195200e00eSIan Dowse lport = inp->inp_lport; 11205200e00eSIan Dowse laddr = inp->inp_laddr.s_addr; 11215200e00eSIan Dowse anonport = (lport == 0); 11225200e00eSIan Dowse error = in_pcbconnect_setup(inp, nam, &laddr, &lport, &faddr, &fport, 1123b0330ed9SPawel Jakub Dawidek NULL, cred); 11245200e00eSIan Dowse if (error) 11255200e00eSIan Dowse return (error); 11265200e00eSIan Dowse 11275200e00eSIan Dowse /* Do the initial binding of the local address if required. */ 11285200e00eSIan Dowse if (inp->inp_laddr.s_addr == INADDR_ANY && inp->inp_lport == 0) { 1129fe1274eeSMichael Tuexen KASSERT(rehash == true, 1130fe1274eeSMichael Tuexen ("Rehashing required for unbound inps")); 11315200e00eSIan Dowse inp->inp_lport = lport; 11325200e00eSIan Dowse inp->inp_laddr.s_addr = laddr; 11335200e00eSIan Dowse if (in_pcbinshash(inp) != 0) { 11345200e00eSIan Dowse inp->inp_laddr.s_addr = INADDR_ANY; 11355200e00eSIan Dowse inp->inp_lport = 0; 11365200e00eSIan Dowse return (EAGAIN); 11375200e00eSIan Dowse } 11385200e00eSIan Dowse } 11395200e00eSIan Dowse 11405200e00eSIan Dowse /* Commit the remaining changes. */ 11415200e00eSIan Dowse inp->inp_lport = lport; 11425200e00eSIan Dowse inp->inp_laddr.s_addr = laddr; 11435200e00eSIan Dowse inp->inp_faddr.s_addr = faddr; 11445200e00eSIan Dowse inp->inp_fport = fport; 1145fe1274eeSMichael Tuexen if (rehash) { 1146db0ac6deSCy Schubert in_pcbrehash(inp); 1147fe1274eeSMichael Tuexen } else { 1148db0ac6deSCy Schubert in_pcbinshash(inp); 1149fe1274eeSMichael Tuexen } 11502cb64cb2SGeorge V. Neville-Neil 11515200e00eSIan Dowse if (anonport) 11525200e00eSIan Dowse inp->inp_flags |= INP_ANONPORT; 11535200e00eSIan Dowse return (0); 11545200e00eSIan Dowse } 11555200e00eSIan Dowse 11565200e00eSIan Dowse /* 11570895aec3SBjoern A. Zeeb * Do proper source address selection on an unbound socket in case 11580895aec3SBjoern A. Zeeb * of connect. Take jails into account as well. 11590895aec3SBjoern A. Zeeb */ 1160ae190832SSteven Hartland int 11610895aec3SBjoern A. Zeeb in_pcbladdr(struct inpcb *inp, struct in_addr *faddr, struct in_addr *laddr, 11620895aec3SBjoern A. Zeeb struct ucred *cred) 11630895aec3SBjoern A. Zeeb { 11640895aec3SBjoern A. Zeeb struct ifaddr *ifa; 11650895aec3SBjoern A. Zeeb struct sockaddr *sa; 11669ac7c6cfSAlexander V. Chernikov struct sockaddr_in *sin, dst; 11679ac7c6cfSAlexander V. Chernikov struct nhop_object *nh; 11680895aec3SBjoern A. Zeeb int error; 11690895aec3SBjoern A. Zeeb 1170c1604fe4SGleb Smirnoff NET_EPOCH_ASSERT(); 1171413628a7SBjoern A. Zeeb KASSERT(laddr != NULL, ("%s: laddr NULL", __func__)); 1172592bcae8SBjoern A. Zeeb /* 1173592bcae8SBjoern A. Zeeb * Bypass source address selection and use the primary jail IP 1174592bcae8SBjoern A. Zeeb * if requested. 1175592bcae8SBjoern A. Zeeb */ 1176592bcae8SBjoern A. Zeeb if (cred != NULL && !prison_saddrsel_ip4(cred, laddr)) 1177592bcae8SBjoern A. Zeeb return (0); 1178592bcae8SBjoern A. Zeeb 11790895aec3SBjoern A. Zeeb error = 0; 11800895aec3SBjoern A. Zeeb 11819ac7c6cfSAlexander V. Chernikov nh = NULL; 11829ac7c6cfSAlexander V. Chernikov bzero(&dst, sizeof(dst)); 11839ac7c6cfSAlexander V. Chernikov sin = &dst; 11840895aec3SBjoern A. Zeeb sin->sin_family = AF_INET; 11850895aec3SBjoern A. Zeeb sin->sin_len = sizeof(struct sockaddr_in); 11860895aec3SBjoern A. Zeeb sin->sin_addr.s_addr = faddr->s_addr; 11870895aec3SBjoern A. Zeeb 11880895aec3SBjoern A. Zeeb /* 11890895aec3SBjoern A. Zeeb * If route is known our src addr is taken from the i/f, 11900895aec3SBjoern A. Zeeb * else punt. 11910895aec3SBjoern A. Zeeb * 11920895aec3SBjoern A. Zeeb * Find out route to destination. 11930895aec3SBjoern A. Zeeb */ 11940895aec3SBjoern A. Zeeb if ((inp->inp_socket->so_options & SO_DONTROUTE) == 0) 11959ac7c6cfSAlexander V. Chernikov nh = fib4_lookup(inp->inp_inc.inc_fibnum, *faddr, 11969ac7c6cfSAlexander V. Chernikov 0, NHR_NONE, 0); 11970895aec3SBjoern A. Zeeb 11980895aec3SBjoern A. Zeeb /* 11990895aec3SBjoern A. Zeeb * If we found a route, use the address corresponding to 12000895aec3SBjoern A. Zeeb * the outgoing interface. 12010895aec3SBjoern A. Zeeb * 12020895aec3SBjoern A. Zeeb * Otherwise assume faddr is reachable on a directly connected 12030895aec3SBjoern A. Zeeb * network and try to find a corresponding interface to take 12040895aec3SBjoern A. Zeeb * the source address from. 12050895aec3SBjoern A. Zeeb */ 12069ac7c6cfSAlexander V. Chernikov if (nh == NULL || nh->nh_ifp == NULL) { 12078c0fec80SRobert Watson struct in_ifaddr *ia; 12080895aec3SBjoern A. Zeeb struct ifnet *ifp; 12090895aec3SBjoern A. Zeeb 12104f8585e0SAlan Somers ia = ifatoia(ifa_ifwithdstaddr((struct sockaddr *)sin, 121158a39d8cSAlan Somers inp->inp_socket->so_fibnum)); 12124f6c66ccSMatt Macy if (ia == NULL) { 12134f8585e0SAlan Somers ia = ifatoia(ifa_ifwithnet((struct sockaddr *)sin, 0, 121458a39d8cSAlan Somers inp->inp_socket->so_fibnum)); 12154f6c66ccSMatt Macy } 12160895aec3SBjoern A. Zeeb if (ia == NULL) { 12170895aec3SBjoern A. Zeeb error = ENETUNREACH; 12180895aec3SBjoern A. Zeeb goto done; 12190895aec3SBjoern A. Zeeb } 12200895aec3SBjoern A. Zeeb 12210304c731SJamie Gritton if (cred == NULL || !prison_flag(cred, PR_IP4)) { 12220895aec3SBjoern A. Zeeb laddr->s_addr = ia->ia_addr.sin_addr.s_addr; 12230895aec3SBjoern A. Zeeb goto done; 12240895aec3SBjoern A. Zeeb } 12250895aec3SBjoern A. Zeeb 12260895aec3SBjoern A. Zeeb ifp = ia->ia_ifp; 12270895aec3SBjoern A. Zeeb ia = NULL; 1228d7c5a620SMatt Macy CK_STAILQ_FOREACH(ifa, &ifp->if_addrhead, ifa_link) { 12290895aec3SBjoern A. Zeeb sa = ifa->ifa_addr; 12300895aec3SBjoern A. Zeeb if (sa->sa_family != AF_INET) 12310895aec3SBjoern A. Zeeb continue; 12320895aec3SBjoern A. Zeeb sin = (struct sockaddr_in *)sa; 1233b89e82ddSJamie Gritton if (prison_check_ip4(cred, &sin->sin_addr) == 0) { 12340895aec3SBjoern A. Zeeb ia = (struct in_ifaddr *)ifa; 12350895aec3SBjoern A. Zeeb break; 12360895aec3SBjoern A. Zeeb } 12370895aec3SBjoern A. Zeeb } 12380895aec3SBjoern A. Zeeb if (ia != NULL) { 12390895aec3SBjoern A. Zeeb laddr->s_addr = ia->ia_addr.sin_addr.s_addr; 12400895aec3SBjoern A. Zeeb goto done; 12410895aec3SBjoern A. Zeeb } 12420895aec3SBjoern A. Zeeb 12430895aec3SBjoern A. Zeeb /* 3. As a last resort return the 'default' jail address. */ 1244b89e82ddSJamie Gritton error = prison_get_ip4(cred, laddr); 12450895aec3SBjoern A. Zeeb goto done; 12460895aec3SBjoern A. Zeeb } 12470895aec3SBjoern A. Zeeb 12480895aec3SBjoern A. Zeeb /* 12490895aec3SBjoern A. Zeeb * If the outgoing interface on the route found is not 12500895aec3SBjoern A. Zeeb * a loopback interface, use the address from that interface. 12510895aec3SBjoern A. Zeeb * In case of jails do those three steps: 12520895aec3SBjoern A. Zeeb * 1. check if the interface address belongs to the jail. If so use it. 12530895aec3SBjoern A. Zeeb * 2. check if we have any address on the outgoing interface 12540895aec3SBjoern A. Zeeb * belonging to this jail. If so use it. 12550895aec3SBjoern A. Zeeb * 3. as a last resort return the 'default' jail address. 12560895aec3SBjoern A. Zeeb */ 12579ac7c6cfSAlexander V. Chernikov if ((nh->nh_ifp->if_flags & IFF_LOOPBACK) == 0) { 12588c0fec80SRobert Watson struct in_ifaddr *ia; 12599317b04eSRobert Watson struct ifnet *ifp; 12600895aec3SBjoern A. Zeeb 12610895aec3SBjoern A. Zeeb /* If not jailed, use the default returned. */ 12620304c731SJamie Gritton if (cred == NULL || !prison_flag(cred, PR_IP4)) { 12639ac7c6cfSAlexander V. Chernikov ia = (struct in_ifaddr *)nh->nh_ifa; 12640895aec3SBjoern A. Zeeb laddr->s_addr = ia->ia_addr.sin_addr.s_addr; 12650895aec3SBjoern A. Zeeb goto done; 12660895aec3SBjoern A. Zeeb } 12670895aec3SBjoern A. Zeeb 12680895aec3SBjoern A. Zeeb /* Jailed. */ 12690895aec3SBjoern A. Zeeb /* 1. Check if the iface address belongs to the jail. */ 12709ac7c6cfSAlexander V. Chernikov sin = (struct sockaddr_in *)nh->nh_ifa->ifa_addr; 1271b89e82ddSJamie Gritton if (prison_check_ip4(cred, &sin->sin_addr) == 0) { 12729ac7c6cfSAlexander V. Chernikov ia = (struct in_ifaddr *)nh->nh_ifa; 12730895aec3SBjoern A. Zeeb laddr->s_addr = ia->ia_addr.sin_addr.s_addr; 12740895aec3SBjoern A. Zeeb goto done; 12750895aec3SBjoern A. Zeeb } 12760895aec3SBjoern A. Zeeb 12770895aec3SBjoern A. Zeeb /* 12780895aec3SBjoern A. Zeeb * 2. Check if we have any address on the outgoing interface 12790895aec3SBjoern A. Zeeb * belonging to this jail. 12800895aec3SBjoern A. Zeeb */ 12818c0fec80SRobert Watson ia = NULL; 12829ac7c6cfSAlexander V. Chernikov ifp = nh->nh_ifp; 1283d7c5a620SMatt Macy CK_STAILQ_FOREACH(ifa, &ifp->if_addrhead, ifa_link) { 12840895aec3SBjoern A. Zeeb sa = ifa->ifa_addr; 12850895aec3SBjoern A. Zeeb if (sa->sa_family != AF_INET) 12860895aec3SBjoern A. Zeeb continue; 12870895aec3SBjoern A. Zeeb sin = (struct sockaddr_in *)sa; 1288b89e82ddSJamie Gritton if (prison_check_ip4(cred, &sin->sin_addr) == 0) { 12890895aec3SBjoern A. Zeeb ia = (struct in_ifaddr *)ifa; 12900895aec3SBjoern A. Zeeb break; 12910895aec3SBjoern A. Zeeb } 12920895aec3SBjoern A. Zeeb } 12930895aec3SBjoern A. Zeeb if (ia != NULL) { 12940895aec3SBjoern A. Zeeb laddr->s_addr = ia->ia_addr.sin_addr.s_addr; 12950895aec3SBjoern A. Zeeb goto done; 12960895aec3SBjoern A. Zeeb } 12970895aec3SBjoern A. Zeeb 12980895aec3SBjoern A. Zeeb /* 3. As a last resort return the 'default' jail address. */ 1299b89e82ddSJamie Gritton error = prison_get_ip4(cred, laddr); 13000895aec3SBjoern A. Zeeb goto done; 13010895aec3SBjoern A. Zeeb } 13020895aec3SBjoern A. Zeeb 13030895aec3SBjoern A. Zeeb /* 13040895aec3SBjoern A. Zeeb * The outgoing interface is marked with 'loopback net', so a route 13050895aec3SBjoern A. Zeeb * to ourselves is here. 13060895aec3SBjoern A. Zeeb * Try to find the interface of the destination address and then 13070895aec3SBjoern A. Zeeb * take the address from there. That interface is not necessarily 13080895aec3SBjoern A. Zeeb * a loopback interface. 13090895aec3SBjoern A. Zeeb * In case of jails, check that it is an address of the jail 13100895aec3SBjoern A. Zeeb * and if we cannot find, fall back to the 'default' jail address. 13110895aec3SBjoern A. Zeeb */ 13129ac7c6cfSAlexander V. Chernikov if ((nh->nh_ifp->if_flags & IFF_LOOPBACK) != 0) { 13138c0fec80SRobert Watson struct in_ifaddr *ia; 13140895aec3SBjoern A. Zeeb 13159ac7c6cfSAlexander V. Chernikov ia = ifatoia(ifa_ifwithdstaddr(sintosa(&dst), 131658a39d8cSAlan Somers inp->inp_socket->so_fibnum)); 13170895aec3SBjoern A. Zeeb if (ia == NULL) 13189ac7c6cfSAlexander V. Chernikov ia = ifatoia(ifa_ifwithnet(sintosa(&dst), 0, 131958a39d8cSAlan Somers inp->inp_socket->so_fibnum)); 1320f0bb05fcSQing Li if (ia == NULL) 13219ac7c6cfSAlexander V. Chernikov ia = ifatoia(ifa_ifwithaddr(sintosa(&dst))); 13220895aec3SBjoern A. Zeeb 13230304c731SJamie Gritton if (cred == NULL || !prison_flag(cred, PR_IP4)) { 13240895aec3SBjoern A. Zeeb if (ia == NULL) { 13250895aec3SBjoern A. Zeeb error = ENETUNREACH; 13260895aec3SBjoern A. Zeeb goto done; 13270895aec3SBjoern A. Zeeb } 13280895aec3SBjoern A. Zeeb laddr->s_addr = ia->ia_addr.sin_addr.s_addr; 13290895aec3SBjoern A. Zeeb goto done; 13300895aec3SBjoern A. Zeeb } 13310895aec3SBjoern A. Zeeb 13320895aec3SBjoern A. Zeeb /* Jailed. */ 13330895aec3SBjoern A. Zeeb if (ia != NULL) { 13340895aec3SBjoern A. Zeeb struct ifnet *ifp; 13350895aec3SBjoern A. Zeeb 13360895aec3SBjoern A. Zeeb ifp = ia->ia_ifp; 13370895aec3SBjoern A. Zeeb ia = NULL; 1338d7c5a620SMatt Macy CK_STAILQ_FOREACH(ifa, &ifp->if_addrhead, ifa_link) { 13390895aec3SBjoern A. Zeeb sa = ifa->ifa_addr; 13400895aec3SBjoern A. Zeeb if (sa->sa_family != AF_INET) 13410895aec3SBjoern A. Zeeb continue; 13420895aec3SBjoern A. Zeeb sin = (struct sockaddr_in *)sa; 1343b89e82ddSJamie Gritton if (prison_check_ip4(cred, 1344b89e82ddSJamie Gritton &sin->sin_addr) == 0) { 13450895aec3SBjoern A. Zeeb ia = (struct in_ifaddr *)ifa; 13460895aec3SBjoern A. Zeeb break; 13470895aec3SBjoern A. Zeeb } 13480895aec3SBjoern A. Zeeb } 13490895aec3SBjoern A. Zeeb if (ia != NULL) { 13500895aec3SBjoern A. Zeeb laddr->s_addr = ia->ia_addr.sin_addr.s_addr; 13510895aec3SBjoern A. Zeeb goto done; 13520895aec3SBjoern A. Zeeb } 13530895aec3SBjoern A. Zeeb } 13540895aec3SBjoern A. Zeeb 13550895aec3SBjoern A. Zeeb /* 3. As a last resort return the 'default' jail address. */ 1356b89e82ddSJamie Gritton error = prison_get_ip4(cred, laddr); 13570895aec3SBjoern A. Zeeb goto done; 13580895aec3SBjoern A. Zeeb } 13590895aec3SBjoern A. Zeeb 13600895aec3SBjoern A. Zeeb done: 13610895aec3SBjoern A. Zeeb return (error); 13620895aec3SBjoern A. Zeeb } 13630895aec3SBjoern A. Zeeb 13640895aec3SBjoern A. Zeeb /* 13655200e00eSIan Dowse * Set up for a connect from a socket to the specified address. 13665200e00eSIan Dowse * On entry, *laddrp and *lportp should contain the current local 13675200e00eSIan Dowse * address and port for the PCB; these are updated to the values 13685200e00eSIan Dowse * that should be placed in inp_laddr and inp_lport to complete 13695200e00eSIan Dowse * the connect. 13705200e00eSIan Dowse * 13715200e00eSIan Dowse * On success, *faddrp and *fportp will be set to the remote address 13725200e00eSIan Dowse * and port. These are not updated in the error case. 13735200e00eSIan Dowse * 13745200e00eSIan Dowse * If the operation fails because the connection already exists, 13755200e00eSIan Dowse * *oinpp will be set to the PCB of that connection so that the 13765200e00eSIan Dowse * caller can decide to override it. In all other cases, *oinpp 13775200e00eSIan Dowse * is set to NULL. 13785200e00eSIan Dowse */ 13795200e00eSIan Dowse int 1380136d4f1cSRobert Watson in_pcbconnect_setup(struct inpcb *inp, struct sockaddr *nam, 1381136d4f1cSRobert Watson in_addr_t *laddrp, u_short *lportp, in_addr_t *faddrp, u_short *fportp, 1382136d4f1cSRobert Watson struct inpcb **oinpp, struct ucred *cred) 13835200e00eSIan Dowse { 13845200e00eSIan Dowse struct sockaddr_in *sin = (struct sockaddr_in *)nam; 13855200e00eSIan Dowse struct in_ifaddr *ia; 13865200e00eSIan Dowse struct inpcb *oinp; 1387b89e82ddSJamie Gritton struct in_addr laddr, faddr; 13885200e00eSIan Dowse u_short lport, fport; 13895200e00eSIan Dowse int error; 13905200e00eSIan Dowse 1391f161d294SMark Johnston KASSERT(sin->sin_family == AF_INET, 1392f161d294SMark Johnston ("%s: invalid address family for %p", __func__, sin)); 1393f161d294SMark Johnston KASSERT(sin->sin_len == sizeof(*sin), 1394f161d294SMark Johnston ("%s: invalid address length for %p", __func__, sin)); 1395f161d294SMark Johnston 13968501a69cSRobert Watson /* 13978501a69cSRobert Watson * Because a global state change doesn't actually occur here, a read 13988501a69cSRobert Watson * lock is sufficient. 13998501a69cSRobert Watson */ 1400c1604fe4SGleb Smirnoff NET_EPOCH_ASSERT(); 140127f74fd0SRobert Watson INP_LOCK_ASSERT(inp); 1402fa046d87SRobert Watson INP_HASH_LOCK_ASSERT(inp->inp_pcbinfo); 140327f74fd0SRobert Watson 14045200e00eSIan Dowse if (oinpp != NULL) 14055200e00eSIan Dowse *oinpp = NULL; 1406df8bae1dSRodney W. Grimes if (sin->sin_port == 0) 1407df8bae1dSRodney W. Grimes return (EADDRNOTAVAIL); 14085200e00eSIan Dowse laddr.s_addr = *laddrp; 14095200e00eSIan Dowse lport = *lportp; 14105200e00eSIan Dowse faddr = sin->sin_addr; 14115200e00eSIan Dowse fport = sin->sin_port; 14120c325f53SAlexander V. Chernikov #ifdef ROUTE_MPATH 14130c325f53SAlexander V. Chernikov if (CALC_FLOWID_OUTBOUND) { 14140c325f53SAlexander V. Chernikov uint32_t hash_val, hash_type; 14150895aec3SBjoern A. Zeeb 14160c325f53SAlexander V. Chernikov hash_val = fib4_calc_software_hash(laddr, faddr, 0, fport, 14170c325f53SAlexander V. Chernikov inp->inp_socket->so_proto->pr_protocol, &hash_type); 14180c325f53SAlexander V. Chernikov 14190c325f53SAlexander V. Chernikov inp->inp_flowid = hash_val; 14200c325f53SAlexander V. Chernikov inp->inp_flowtype = hash_type; 14210c325f53SAlexander V. Chernikov } 14220c325f53SAlexander V. Chernikov #endif 1423d7c5a620SMatt Macy if (!CK_STAILQ_EMPTY(&V_in_ifaddrhead)) { 1424df8bae1dSRodney W. Grimes /* 1425df8bae1dSRodney W. Grimes * If the destination address is INADDR_ANY, 1426df8bae1dSRodney W. Grimes * use the primary local address. 1427df8bae1dSRodney W. Grimes * If the supplied address is INADDR_BROADCAST, 1428df8bae1dSRodney W. Grimes * and the primary interface supports broadcast, 1429df8bae1dSRodney W. Grimes * choose the broadcast address for that interface. 1430df8bae1dSRodney W. Grimes */ 1431413628a7SBjoern A. Zeeb if (faddr.s_addr == INADDR_ANY) { 1432413628a7SBjoern A. Zeeb faddr = 1433d7c5a620SMatt Macy IA_SIN(CK_STAILQ_FIRST(&V_in_ifaddrhead))->sin_addr; 1434b89e82ddSJamie Gritton if (cred != NULL && 1435b89e82ddSJamie Gritton (error = prison_get_ip4(cred, &faddr)) != 0) 1436b89e82ddSJamie Gritton return (error); 14372d9cfabaSRobert Watson } else if (faddr.s_addr == (u_long)INADDR_BROADCAST) { 1438d7c5a620SMatt Macy if (CK_STAILQ_FIRST(&V_in_ifaddrhead)->ia_ifp->if_flags & 14392d9cfabaSRobert Watson IFF_BROADCAST) 1440d7c5a620SMatt Macy faddr = satosin(&CK_STAILQ_FIRST( 1441603724d3SBjoern A. Zeeb &V_in_ifaddrhead)->ia_broadaddr)->sin_addr; 14422d9cfabaSRobert Watson } 1443df8bae1dSRodney W. Grimes } 14445200e00eSIan Dowse if (laddr.s_addr == INADDR_ANY) { 1445d79fdd98SDaniel Eischen error = in_pcbladdr(inp, &faddr, &laddr, cred); 1446df8bae1dSRodney W. Grimes /* 1447df8bae1dSRodney W. Grimes * If the destination address is multicast and an outgoing 1448d79fdd98SDaniel Eischen * interface has been set as a multicast option, prefer the 1449df8bae1dSRodney W. Grimes * address of that interface as our source address. 1450df8bae1dSRodney W. Grimes */ 14515200e00eSIan Dowse if (IN_MULTICAST(ntohl(faddr.s_addr)) && 1452df8bae1dSRodney W. Grimes inp->inp_moptions != NULL) { 1453df8bae1dSRodney W. Grimes struct ip_moptions *imo; 1454df8bae1dSRodney W. Grimes struct ifnet *ifp; 1455df8bae1dSRodney W. Grimes 1456df8bae1dSRodney W. Grimes imo = inp->inp_moptions; 1457df8bae1dSRodney W. Grimes if (imo->imo_multicast_ifp != NULL) { 1458df8bae1dSRodney W. Grimes ifp = imo->imo_multicast_ifp; 1459d7c5a620SMatt Macy CK_STAILQ_FOREACH(ia, &V_in_ifaddrhead, ia_link) { 1460e691be70SDaniel Eischen if ((ia->ia_ifp == ifp) && 1461e691be70SDaniel Eischen (cred == NULL || 1462e691be70SDaniel Eischen prison_check_ip4(cred, 1463e691be70SDaniel Eischen &ia->ia_addr.sin_addr) == 0)) 1464df8bae1dSRodney W. Grimes break; 1465e691be70SDaniel Eischen } 1466e691be70SDaniel Eischen if (ia == NULL) 1467d79fdd98SDaniel Eischen error = EADDRNOTAVAIL; 1468e691be70SDaniel Eischen else { 14695200e00eSIan Dowse laddr = ia->ia_addr.sin_addr; 1470d79fdd98SDaniel Eischen error = 0; 1471999f1343SGarrett Wollman } 1472d79fdd98SDaniel Eischen } 1473d79fdd98SDaniel Eischen } 147404215ed2SRandall Stewart if (error) 147504215ed2SRandall Stewart return (error); 14760895aec3SBjoern A. Zeeb } 1477a034518aSAndrew Gallatin 147825102351SMike Karels if (lport != 0) { 147925102351SMike Karels oinp = in_pcblookup_hash_locked(inp->inp_pcbinfo, faddr, 1480a034518aSAndrew Gallatin fport, laddr, lport, 0, NULL, M_NODOM); 14815200e00eSIan Dowse if (oinp != NULL) { 14825200e00eSIan Dowse if (oinpp != NULL) 14835200e00eSIan Dowse *oinpp = oinp; 1484df8bae1dSRodney W. Grimes return (EADDRINUSE); 1485c3229e05SDavid Greenman } 148625102351SMike Karels } else { 148725102351SMike Karels struct sockaddr_in lsin, fsin; 148825102351SMike Karels 148925102351SMike Karels bzero(&lsin, sizeof(lsin)); 149025102351SMike Karels bzero(&fsin, sizeof(fsin)); 149125102351SMike Karels lsin.sin_family = AF_INET; 149225102351SMike Karels lsin.sin_addr = laddr; 149325102351SMike Karels fsin.sin_family = AF_INET; 149425102351SMike Karels fsin.sin_addr = faddr; 149525102351SMike Karels error = in_pcb_lport_dest(inp, (struct sockaddr *) &lsin, 149625102351SMike Karels &lport, (struct sockaddr *)& fsin, fport, cred, 149725102351SMike Karels INPLOOKUP_WILDCARD); 14985a903f8dSPierre Beyssac if (error) 14995a903f8dSPierre Beyssac return (error); 15005a903f8dSPierre Beyssac } 15015200e00eSIan Dowse *laddrp = laddr.s_addr; 15025200e00eSIan Dowse *lportp = lport; 15035200e00eSIan Dowse *faddrp = faddr.s_addr; 15045200e00eSIan Dowse *fportp = fport; 1505df8bae1dSRodney W. Grimes return (0); 1506df8bae1dSRodney W. Grimes } 1507df8bae1dSRodney W. Grimes 150826f9a767SRodney W. Grimes void 1509136d4f1cSRobert Watson in_pcbdisconnect(struct inpcb *inp) 1510df8bae1dSRodney W. Grimes { 15116b348152SRobert Watson 15128501a69cSRobert Watson INP_WLOCK_ASSERT(inp); 1513fa046d87SRobert Watson INP_HASH_WLOCK_ASSERT(inp->inp_pcbinfo); 1514df8bae1dSRodney W. Grimes 1515df8bae1dSRodney W. Grimes inp->inp_faddr.s_addr = INADDR_ANY; 1516df8bae1dSRodney W. Grimes inp->inp_fport = 0; 151715bd2b43SDavid Greenman in_pcbrehash(inp); 1518df8bae1dSRodney W. Grimes } 151983e521ecSBjoern A. Zeeb #endif /* INET */ 1520df8bae1dSRodney W. Grimes 15214c7c478dSRobert Watson /* 152228696211SRobert Watson * in_pcbdetach() is responsibe for disassociating a socket from an inpcb. 1523c0a211c5SRobert Watson * For most protocols, this will be invoked immediately prior to calling 152428696211SRobert Watson * in_pcbfree(). However, with TCP the inpcb may significantly outlive the 152528696211SRobert Watson * socket, in which case in_pcbfree() is deferred. 15264c7c478dSRobert Watson */ 152726f9a767SRodney W. Grimes void 1528136d4f1cSRobert Watson in_pcbdetach(struct inpcb *inp) 1529df8bae1dSRodney W. Grimes { 15304c7c478dSRobert Watson 1531a7df09e8SBjoern A. Zeeb KASSERT(inp->inp_socket != NULL, ("%s: inp_socket == NULL", __func__)); 1532c0a211c5SRobert Watson 1533f3e7afe2SHans Petter Selasky #ifdef RATELIMIT 1534f3e7afe2SHans Petter Selasky if (inp->inp_snd_tag != NULL) 1535f3e7afe2SHans Petter Selasky in_pcbdetach_txrtlmt(inp); 1536f3e7afe2SHans Petter Selasky #endif 15374c7c478dSRobert Watson inp->inp_socket->so_pcb = NULL; 15384c7c478dSRobert Watson inp->inp_socket = NULL; 15394c7c478dSRobert Watson } 15404c7c478dSRobert Watson 1541c0a211c5SRobert Watson /* 1542db0ac6deSCy Schubert * inpcb hash lookups are protected by SMR section. 1543db0ac6deSCy Schubert * 1544db0ac6deSCy Schubert * Once desired pcb has been found, switching from SMR section to a pcb 1545db0ac6deSCy Schubert * lock is performed with inp_smr_lock(). We can not use INP_(W|R)LOCK 1546db0ac6deSCy Schubert * here because SMR is a critical section. 1547db0ac6deSCy Schubert * In 99%+ cases inp_smr_lock() would obtain the lock immediately. 1548db0ac6deSCy Schubert */ 1549db0ac6deSCy Schubert static inline void 1550db0ac6deSCy Schubert inp_lock(struct inpcb *inp, const inp_lookup_t lock) 1551db0ac6deSCy Schubert { 1552db0ac6deSCy Schubert 1553db0ac6deSCy Schubert lock == INPLOOKUP_RLOCKPCB ? 1554db0ac6deSCy Schubert rw_rlock(&inp->inp_lock) : rw_wlock(&inp->inp_lock); 1555db0ac6deSCy Schubert } 1556db0ac6deSCy Schubert 1557db0ac6deSCy Schubert static inline void 1558db0ac6deSCy Schubert inp_unlock(struct inpcb *inp, const inp_lookup_t lock) 1559db0ac6deSCy Schubert { 1560db0ac6deSCy Schubert 1561db0ac6deSCy Schubert lock == INPLOOKUP_RLOCKPCB ? 1562db0ac6deSCy Schubert rw_runlock(&inp->inp_lock) : rw_wunlock(&inp->inp_lock); 1563db0ac6deSCy Schubert } 1564db0ac6deSCy Schubert 1565db0ac6deSCy Schubert static inline int 1566db0ac6deSCy Schubert inp_trylock(struct inpcb *inp, const inp_lookup_t lock) 1567db0ac6deSCy Schubert { 1568db0ac6deSCy Schubert 1569db0ac6deSCy Schubert return (lock == INPLOOKUP_RLOCKPCB ? 1570db0ac6deSCy Schubert rw_try_rlock(&inp->inp_lock) : rw_try_wlock(&inp->inp_lock)); 1571db0ac6deSCy Schubert } 1572db0ac6deSCy Schubert 1573db0ac6deSCy Schubert static inline bool 1574db0ac6deSCy Schubert in_pcbrele(struct inpcb *inp, const inp_lookup_t lock) 1575db0ac6deSCy Schubert { 1576db0ac6deSCy Schubert 1577db0ac6deSCy Schubert return (lock == INPLOOKUP_RLOCKPCB ? 1578db0ac6deSCy Schubert in_pcbrele_rlocked(inp) : in_pcbrele_wlocked(inp)); 1579db0ac6deSCy Schubert } 1580db0ac6deSCy Schubert 1581db0ac6deSCy Schubert bool 1582db0ac6deSCy Schubert inp_smr_lock(struct inpcb *inp, const inp_lookup_t lock) 1583db0ac6deSCy Schubert { 1584db0ac6deSCy Schubert 1585db0ac6deSCy Schubert MPASS(lock == INPLOOKUP_RLOCKPCB || lock == INPLOOKUP_WLOCKPCB); 1586db0ac6deSCy Schubert SMR_ASSERT_ENTERED(inp->inp_pcbinfo->ipi_smr); 1587db0ac6deSCy Schubert 1588db0ac6deSCy Schubert if (__predict_true(inp_trylock(inp, lock))) { 1589db0ac6deSCy Schubert if (__predict_false(inp->inp_flags & INP_FREED)) { 1590db0ac6deSCy Schubert smr_exit(inp->inp_pcbinfo->ipi_smr); 1591db0ac6deSCy Schubert inp_unlock(inp, lock); 1592db0ac6deSCy Schubert return (false); 1593db0ac6deSCy Schubert } 1594db0ac6deSCy Schubert smr_exit(inp->inp_pcbinfo->ipi_smr); 1595db0ac6deSCy Schubert return (true); 1596db0ac6deSCy Schubert } 1597db0ac6deSCy Schubert 1598db0ac6deSCy Schubert if (__predict_true(refcount_acquire_if_not_zero(&inp->inp_refcount))) { 1599db0ac6deSCy Schubert smr_exit(inp->inp_pcbinfo->ipi_smr); 1600db0ac6deSCy Schubert inp_lock(inp, lock); 1601db0ac6deSCy Schubert if (__predict_false(in_pcbrele(inp, lock))) 1602db0ac6deSCy Schubert return (false); 1603db0ac6deSCy Schubert /* 1604db0ac6deSCy Schubert * inp acquired through refcount & lock for sure didn't went 1605db0ac6deSCy Schubert * through uma_zfree(). However, it may have already went 1606db0ac6deSCy Schubert * through in_pcbfree() and has another reference, that 1607db0ac6deSCy Schubert * prevented its release by our in_pcbrele(). 1608db0ac6deSCy Schubert */ 1609db0ac6deSCy Schubert if (__predict_false(inp->inp_flags & INP_FREED)) { 1610db0ac6deSCy Schubert inp_unlock(inp, lock); 1611db0ac6deSCy Schubert return (false); 1612db0ac6deSCy Schubert } 1613db0ac6deSCy Schubert return (true); 1614db0ac6deSCy Schubert } else { 1615db0ac6deSCy Schubert smr_exit(inp->inp_pcbinfo->ipi_smr); 1616db0ac6deSCy Schubert return (false); 1617db0ac6deSCy Schubert } 1618db0ac6deSCy Schubert } 1619db0ac6deSCy Schubert 1620db0ac6deSCy Schubert /* 1621db0ac6deSCy Schubert * inp_next() - inpcb hash/list traversal iterator 1622db0ac6deSCy Schubert * 1623db0ac6deSCy Schubert * Requires initialized struct inpcb_iterator for context. 1624db0ac6deSCy Schubert * The structure can be initialized with INP_ITERATOR() or INP_ALL_ITERATOR(). 1625db0ac6deSCy Schubert * 1626db0ac6deSCy Schubert * - Iterator can have either write-lock or read-lock semantics, that can not 1627db0ac6deSCy Schubert * be changed later. 1628db0ac6deSCy Schubert * - Iterator can iterate either over all pcbs list (INP_ALL_LIST), or through 1629db0ac6deSCy Schubert * a single hash slot. Note: only rip_input() does the latter. 1630db0ac6deSCy Schubert * - Iterator may have optional bool matching function. The matching function 1631db0ac6deSCy Schubert * will be executed for each inpcb in the SMR context, so it can not acquire 1632db0ac6deSCy Schubert * locks and can safely access only immutable fields of inpcb. 1633db0ac6deSCy Schubert * 1634db0ac6deSCy Schubert * A fresh initialized iterator has NULL inpcb in its context and that 1635db0ac6deSCy Schubert * means that inp_next() call would return the very first inpcb on the list 1636db0ac6deSCy Schubert * locked with desired semantic. In all following calls the context pointer 1637db0ac6deSCy Schubert * shall hold the current inpcb pointer. The KPI user is not supposed to 1638db0ac6deSCy Schubert * unlock the current inpcb! Upon end of traversal inp_next() will return NULL 1639db0ac6deSCy Schubert * and write NULL to its context. After end of traversal an iterator can be 1640db0ac6deSCy Schubert * reused. 1641db0ac6deSCy Schubert * 1642db0ac6deSCy Schubert * List traversals have the following features/constraints: 1643db0ac6deSCy Schubert * - New entries won't be seen, as they are always added to the head of a list. 1644db0ac6deSCy Schubert * - Removed entries won't stop traversal as long as they are not added to 1645db0ac6deSCy Schubert * a different list. This is violated by in_pcbrehash(). 1646db0ac6deSCy Schubert */ 1647db0ac6deSCy Schubert #define II_LIST_FIRST(ipi, hash) \ 1648db0ac6deSCy Schubert (((hash) == INP_ALL_LIST) ? \ 1649db0ac6deSCy Schubert CK_LIST_FIRST(&(ipi)->ipi_listhead) : \ 1650db0ac6deSCy Schubert CK_LIST_FIRST(&(ipi)->ipi_hashbase[(hash)])) 1651db0ac6deSCy Schubert #define II_LIST_NEXT(inp, hash) \ 1652db0ac6deSCy Schubert (((hash) == INP_ALL_LIST) ? \ 1653db0ac6deSCy Schubert CK_LIST_NEXT((inp), inp_list) : \ 1654db0ac6deSCy Schubert CK_LIST_NEXT((inp), inp_hash)) 1655db0ac6deSCy Schubert #define II_LOCK_ASSERT(inp, lock) \ 1656db0ac6deSCy Schubert rw_assert(&(inp)->inp_lock, \ 1657db0ac6deSCy Schubert (lock) == INPLOOKUP_RLOCKPCB ? RA_RLOCKED : RA_WLOCKED ) 1658db0ac6deSCy Schubert struct inpcb * 1659db0ac6deSCy Schubert inp_next(struct inpcb_iterator *ii) 1660db0ac6deSCy Schubert { 1661db0ac6deSCy Schubert const struct inpcbinfo *ipi = ii->ipi; 1662db0ac6deSCy Schubert inp_match_t *match = ii->match; 1663db0ac6deSCy Schubert void *ctx = ii->ctx; 1664db0ac6deSCy Schubert inp_lookup_t lock = ii->lock; 1665db0ac6deSCy Schubert int hash = ii->hash; 1666db0ac6deSCy Schubert struct inpcb *inp; 1667db0ac6deSCy Schubert 1668db0ac6deSCy Schubert if (ii->inp == NULL) { /* First call. */ 1669db0ac6deSCy Schubert smr_enter(ipi->ipi_smr); 1670db0ac6deSCy Schubert /* This is unrolled CK_LIST_FOREACH(). */ 1671db0ac6deSCy Schubert for (inp = II_LIST_FIRST(ipi, hash); 1672db0ac6deSCy Schubert inp != NULL; 1673db0ac6deSCy Schubert inp = II_LIST_NEXT(inp, hash)) { 1674db0ac6deSCy Schubert if (match != NULL && (match)(inp, ctx) == false) 1675db0ac6deSCy Schubert continue; 1676db0ac6deSCy Schubert if (__predict_true(inp_smr_lock(inp, lock))) 1677db0ac6deSCy Schubert break; 1678db0ac6deSCy Schubert else { 1679db0ac6deSCy Schubert smr_enter(ipi->ipi_smr); 1680db0ac6deSCy Schubert MPASS(inp != II_LIST_FIRST(ipi, hash)); 1681db0ac6deSCy Schubert inp = II_LIST_FIRST(ipi, hash); 1682430df2abSMichael Tuexen if (inp == NULL) 1683430df2abSMichael Tuexen break; 1684db0ac6deSCy Schubert } 1685db0ac6deSCy Schubert } 1686db0ac6deSCy Schubert 1687db0ac6deSCy Schubert if (inp == NULL) 1688db0ac6deSCy Schubert smr_exit(ipi->ipi_smr); 1689db0ac6deSCy Schubert else 1690db0ac6deSCy Schubert ii->inp = inp; 1691db0ac6deSCy Schubert 1692db0ac6deSCy Schubert return (inp); 1693db0ac6deSCy Schubert } 1694db0ac6deSCy Schubert 1695db0ac6deSCy Schubert /* Not a first call. */ 1696db0ac6deSCy Schubert smr_enter(ipi->ipi_smr); 1697db0ac6deSCy Schubert restart: 1698db0ac6deSCy Schubert inp = ii->inp; 1699db0ac6deSCy Schubert II_LOCK_ASSERT(inp, lock); 1700db0ac6deSCy Schubert next: 1701db0ac6deSCy Schubert inp = II_LIST_NEXT(inp, hash); 1702db0ac6deSCy Schubert if (inp == NULL) { 1703db0ac6deSCy Schubert smr_exit(ipi->ipi_smr); 1704db0ac6deSCy Schubert goto found; 1705db0ac6deSCy Schubert } 1706db0ac6deSCy Schubert 1707db0ac6deSCy Schubert if (match != NULL && (match)(inp, ctx) == false) 1708db0ac6deSCy Schubert goto next; 1709db0ac6deSCy Schubert 1710db0ac6deSCy Schubert if (__predict_true(inp_trylock(inp, lock))) { 1711db0ac6deSCy Schubert if (__predict_false(inp->inp_flags & INP_FREED)) { 1712db0ac6deSCy Schubert /* 1713db0ac6deSCy Schubert * Entries are never inserted in middle of a list, thus 1714db0ac6deSCy Schubert * as long as we are in SMR, we can continue traversal. 1715db0ac6deSCy Schubert * Jump to 'restart' should yield in the same result, 1716db0ac6deSCy Schubert * but could produce unnecessary looping. Could this 1717db0ac6deSCy Schubert * looping be unbound? 1718db0ac6deSCy Schubert */ 1719db0ac6deSCy Schubert inp_unlock(inp, lock); 1720db0ac6deSCy Schubert goto next; 1721db0ac6deSCy Schubert } else { 1722db0ac6deSCy Schubert smr_exit(ipi->ipi_smr); 1723db0ac6deSCy Schubert goto found; 1724db0ac6deSCy Schubert } 1725db0ac6deSCy Schubert } 1726db0ac6deSCy Schubert 1727db0ac6deSCy Schubert /* 1728db0ac6deSCy Schubert * Can't obtain lock immediately, thus going hard. Once we exit the 1729db0ac6deSCy Schubert * SMR section we can no longer jump to 'next', and our only stable 1730db0ac6deSCy Schubert * anchoring point is ii->inp, which we keep locked for this case, so 1731db0ac6deSCy Schubert * we jump to 'restart'. 1732db0ac6deSCy Schubert */ 1733db0ac6deSCy Schubert if (__predict_true(refcount_acquire_if_not_zero(&inp->inp_refcount))) { 1734db0ac6deSCy Schubert smr_exit(ipi->ipi_smr); 1735db0ac6deSCy Schubert inp_lock(inp, lock); 1736db0ac6deSCy Schubert if (__predict_false(in_pcbrele(inp, lock))) { 1737db0ac6deSCy Schubert smr_enter(ipi->ipi_smr); 1738db0ac6deSCy Schubert goto restart; 1739db0ac6deSCy Schubert } 1740db0ac6deSCy Schubert /* 1741db0ac6deSCy Schubert * See comment in inp_smr_lock(). 1742db0ac6deSCy Schubert */ 1743db0ac6deSCy Schubert if (__predict_false(inp->inp_flags & INP_FREED)) { 1744db0ac6deSCy Schubert inp_unlock(inp, lock); 1745db0ac6deSCy Schubert smr_enter(ipi->ipi_smr); 1746db0ac6deSCy Schubert goto restart; 1747db0ac6deSCy Schubert } 1748db0ac6deSCy Schubert } else 1749db0ac6deSCy Schubert goto next; 1750db0ac6deSCy Schubert 1751db0ac6deSCy Schubert found: 1752db0ac6deSCy Schubert inp_unlock(ii->inp, lock); 1753db0ac6deSCy Schubert ii->inp = inp; 1754db0ac6deSCy Schubert 1755db0ac6deSCy Schubert return (ii->inp); 1756db0ac6deSCy Schubert } 1757db0ac6deSCy Schubert 1758db0ac6deSCy Schubert /* 175979bdc6e5SRobert Watson * in_pcbref() bumps the reference count on an inpcb in order to maintain 1760db0ac6deSCy Schubert * stability of an inpcb pointer despite the inpcb lock being released or 1761db0ac6deSCy Schubert * SMR section exited. 176279bdc6e5SRobert Watson * 1763db0ac6deSCy Schubert * To free a reference later in_pcbrele_(r|w)locked() must be performed. 1764c0a211c5SRobert Watson */ 176579bdc6e5SRobert Watson void 176679bdc6e5SRobert Watson in_pcbref(struct inpcb *inp) 17674c7c478dSRobert Watson { 1768db0ac6deSCy Schubert u_int old __diagused; 1769df8bae1dSRodney W. Grimes 1770db0ac6deSCy Schubert old = refcount_acquire(&inp->inp_refcount); 1771db0ac6deSCy Schubert KASSERT(old > 0, ("%s: refcount 0", __func__)); 177279bdc6e5SRobert Watson } 177379bdc6e5SRobert Watson 177479bdc6e5SRobert Watson /* 1775db0ac6deSCy Schubert * Drop a refcount on an inpcb elevated using in_pcbref(), potentially 1776db0ac6deSCy Schubert * freeing the pcb, if the reference was very last. 177779bdc6e5SRobert Watson */ 1778db0ac6deSCy Schubert bool 177979bdc6e5SRobert Watson in_pcbrele_rlocked(struct inpcb *inp) 178079bdc6e5SRobert Watson { 178179bdc6e5SRobert Watson 178279bdc6e5SRobert Watson INP_RLOCK_ASSERT(inp); 178379bdc6e5SRobert Watson 1784db0ac6deSCy Schubert if (refcount_release(&inp->inp_refcount) == 0) 1785db0ac6deSCy Schubert return (false); 1786db0ac6deSCy Schubert 1787db0ac6deSCy Schubert MPASS(inp->inp_flags & INP_FREED); 1788db0ac6deSCy Schubert MPASS(inp->inp_socket == NULL); 1789db0ac6deSCy Schubert MPASS(inp->inp_in_hpts == 0); 1790df4e91d3SGleb Smirnoff INP_RUNLOCK(inp); 1791db0ac6deSCy Schubert uma_zfree_smr(inp->inp_pcbinfo->ipi_zone, inp); 1792db0ac6deSCy Schubert return (true); 1793df4e91d3SGleb Smirnoff } 179479bdc6e5SRobert Watson 1795db0ac6deSCy Schubert bool 179679bdc6e5SRobert Watson in_pcbrele_wlocked(struct inpcb *inp) 179779bdc6e5SRobert Watson { 179879bdc6e5SRobert Watson 179979bdc6e5SRobert Watson INP_WLOCK_ASSERT(inp); 180079bdc6e5SRobert Watson 1801db0ac6deSCy Schubert if (refcount_release(&inp->inp_refcount) == 0) 1802db0ac6deSCy Schubert return (false); 1803db0ac6deSCy Schubert 1804db0ac6deSCy Schubert MPASS(inp->inp_flags & INP_FREED); 1805db0ac6deSCy Schubert MPASS(inp->inp_socket == NULL); 1806db0ac6deSCy Schubert MPASS(inp->inp_in_hpts == 0); 1807edd0e0b0SFabien Thomas INP_WUNLOCK(inp); 1808db0ac6deSCy Schubert uma_zfree_smr(inp->inp_pcbinfo->ipi_zone, inp); 1809db0ac6deSCy Schubert return (true); 1810addf2b20SMatt Macy } 1811addf2b20SMatt Macy 181279bdc6e5SRobert Watson /* 181379bdc6e5SRobert Watson * Unconditionally schedule an inpcb to be freed by decrementing its 181479bdc6e5SRobert Watson * reference count, which should occur only after the inpcb has been detached 181579bdc6e5SRobert Watson * from its socket. If another thread holds a temporary reference (acquired 181679bdc6e5SRobert Watson * using in_pcbref()) then the free is deferred until that reference is 1817db0ac6deSCy Schubert * released using in_pcbrele_(r|w)locked(), but the inpcb is still unlocked. 1818db0ac6deSCy Schubert * Almost all work, including removal from global lists, is done in this 1819db0ac6deSCy Schubert * context, where the pcbinfo lock is held. 182079bdc6e5SRobert Watson */ 182179bdc6e5SRobert Watson void 182279bdc6e5SRobert Watson in_pcbfree(struct inpcb *inp) 182379bdc6e5SRobert Watson { 1824f42a83f2SMatt Macy struct inpcbinfo *pcbinfo = inp->inp_pcbinfo; 1825db0ac6deSCy Schubert #ifdef INET 1826db0ac6deSCy Schubert struct ip_moptions *imo; 1827db0ac6deSCy Schubert #endif 1828db0ac6deSCy Schubert #ifdef INET6 1829db0ac6deSCy Schubert struct ip6_moptions *im6o; 1830db0ac6deSCy Schubert #endif 183145a48d07SJonathan T. Looney 183279bdc6e5SRobert Watson INP_WLOCK_ASSERT(inp); 1833db0ac6deSCy Schubert KASSERT(inp->inp_socket == NULL, ("%s: inp_socket != NULL", __func__)); 1834db0ac6deSCy Schubert KASSERT((inp->inp_flags & INP_FREED) == 0, 1835db0ac6deSCy Schubert ("%s: called twice for pcb %p", __func__, inp)); 1836db0ac6deSCy Schubert 1837db0ac6deSCy Schubert inp->inp_flags |= INP_FREED; 1838db0ac6deSCy Schubert INP_INFO_WLOCK(pcbinfo); 1839db0ac6deSCy Schubert inp->inp_gencnt = ++pcbinfo->ipi_gencnt; 1840db0ac6deSCy Schubert pcbinfo->ipi_count--; 1841db0ac6deSCy Schubert CK_LIST_REMOVE(inp, inp_list); 1842db0ac6deSCy Schubert INP_INFO_WUNLOCK(pcbinfo); 1843db0ac6deSCy Schubert 18443ba34b07SGleb Smirnoff if (inp->inp_flags & INP_INHASHLIST) 18453ba34b07SGleb Smirnoff in_pcbremhash(inp); 1846db0ac6deSCy Schubert 1847fc21c53fSRyan Stone RO_INVALIDATE_CACHE(&inp->inp_route); 1848db0ac6deSCy Schubert #ifdef MAC 1849db0ac6deSCy Schubert mac_inpcb_destroy(inp); 1850db0ac6deSCy Schubert #endif 1851db0ac6deSCy Schubert #if defined(IPSEC) || defined(IPSEC_SUPPORT) 1852db0ac6deSCy Schubert if (inp->inp_sp != NULL) 1853db0ac6deSCy Schubert ipsec_delete_pcbpolicy(inp); 1854db0ac6deSCy Schubert #endif 1855db0ac6deSCy Schubert #ifdef INET 1856db0ac6deSCy Schubert if (inp->inp_options) 1857db0ac6deSCy Schubert (void)m_free(inp->inp_options); 1858db0ac6deSCy Schubert imo = inp->inp_moptions; 1859db0ac6deSCy Schubert #endif 1860db0ac6deSCy Schubert #ifdef INET6 1861db0ac6deSCy Schubert if (inp->inp_vflag & INP_IPV6PROTO) { 1862db0ac6deSCy Schubert ip6_freepcbopts(inp->in6p_outputopts); 1863db0ac6deSCy Schubert im6o = inp->in6p_moptions; 1864db0ac6deSCy Schubert } else 1865db0ac6deSCy Schubert im6o = NULL; 1866db0ac6deSCy Schubert #endif 1867db0ac6deSCy Schubert 1868db0ac6deSCy Schubert if (__predict_false(in_pcbrele_wlocked(inp) == false)) { 1869cb6bb230SMatt Macy INP_WUNLOCK(inp); 1870db0ac6deSCy Schubert } 1871db0ac6deSCy Schubert #ifdef INET6 1872db0ac6deSCy Schubert ip6_freemoptions(im6o); 1873db0ac6deSCy Schubert #endif 1874db0ac6deSCy Schubert #ifdef INET 1875db0ac6deSCy Schubert inp_freemoptions(imo); 1876db0ac6deSCy Schubert #endif 1877eb93b99dSGleb Smirnoff /* Destruction is finalized in inpcb_dtor(). */ 1878eb93b99dSGleb Smirnoff } 1879eb93b99dSGleb Smirnoff 1880eb93b99dSGleb Smirnoff static void 1881eb93b99dSGleb Smirnoff inpcb_dtor(void *mem, int size, void *arg) 1882eb93b99dSGleb Smirnoff { 1883eb93b99dSGleb Smirnoff struct inpcb *inp = mem; 1884eb93b99dSGleb Smirnoff 1885eb93b99dSGleb Smirnoff crfree(inp->inp_cred); 1886eb93b99dSGleb Smirnoff #ifdef INVARIANTS 1887eb93b99dSGleb Smirnoff inp->inp_cred = NULL; 1888eb93b99dSGleb Smirnoff #endif 1889eb93b99dSGleb Smirnoff } 1890eb93b99dSGleb Smirnoff 1891eb93b99dSGleb Smirnoff /* 1892eb93b99dSGleb Smirnoff * Different protocols initialize their inpcbs differently - giving 1893eb93b99dSGleb Smirnoff * different name to the lock. But they all are disposed the same. 1894eb93b99dSGleb Smirnoff */ 1895eb93b99dSGleb Smirnoff static void 1896eb93b99dSGleb Smirnoff inpcb_fini(void *mem, int size) 1897eb93b99dSGleb Smirnoff { 1898eb93b99dSGleb Smirnoff struct inpcb *inp = mem; 1899eb93b99dSGleb Smirnoff 1900eb93b99dSGleb Smirnoff INP_LOCK_DESTROY(inp); 190128696211SRobert Watson } 190228696211SRobert Watson 190328696211SRobert Watson /* 1904c0a211c5SRobert Watson * in_pcbdrop() removes an inpcb from hashed lists, releasing its address and 1905c0a211c5SRobert Watson * port reservation, and preventing it from being returned by inpcb lookups. 1906c0a211c5SRobert Watson * 1907c0a211c5SRobert Watson * It is used by TCP to mark an inpcb as unused and avoid future packet 1908c0a211c5SRobert Watson * delivery or event notification when a socket remains open but TCP has 1909c0a211c5SRobert Watson * closed. This might occur as a result of a shutdown()-initiated TCP close 1910c0a211c5SRobert Watson * or a RST on the wire, and allows the port binding to be reused while still 1911c0a211c5SRobert Watson * maintaining the invariant that so_pcb always points to a valid inpcb until 1912c0a211c5SRobert Watson * in_pcbdetach(). 1913c0a211c5SRobert Watson * 1914c0a211c5SRobert Watson * XXXRW: Possibly in_pcbdrop() should also prevent future notifications by 1915c0a211c5SRobert Watson * in_pcbnotifyall() and in_pcbpurgeif0()? 191610702a28SRobert Watson */ 191710702a28SRobert Watson void 191810702a28SRobert Watson in_pcbdrop(struct inpcb *inp) 191910702a28SRobert Watson { 192010702a28SRobert Watson 19218501a69cSRobert Watson INP_WLOCK_ASSERT(inp); 19226573d758SMatt Macy #ifdef INVARIANTS 19236573d758SMatt Macy if (inp->inp_socket != NULL && inp->inp_ppcb != NULL) 19246573d758SMatt Macy MPASS(inp->inp_refcount > 1); 19256573d758SMatt Macy #endif 192610702a28SRobert Watson 1927ad71fe3cSRobert Watson inp->inp_flags |= INP_DROPPED; 19283ba34b07SGleb Smirnoff if (inp->inp_flags & INP_INHASHLIST) 19293ba34b07SGleb Smirnoff in_pcbremhash(inp); 193010702a28SRobert Watson } 193110702a28SRobert Watson 193267107f45SBjoern A. Zeeb #ifdef INET 193354d642bbSRobert Watson /* 193454d642bbSRobert Watson * Common routines to return the socket addresses associated with inpcbs. 193554d642bbSRobert Watson */ 193626ef6ac4SDon Lewis struct sockaddr * 1937136d4f1cSRobert Watson in_sockaddr(in_port_t port, struct in_addr *addr_p) 193826ef6ac4SDon Lewis { 193926ef6ac4SDon Lewis struct sockaddr_in *sin; 194026ef6ac4SDon Lewis 19411ede983cSDag-Erling Smørgrav sin = malloc(sizeof *sin, M_SONAME, 1942a163d034SWarner Losh M_WAITOK | M_ZERO); 194326ef6ac4SDon Lewis sin->sin_family = AF_INET; 194426ef6ac4SDon Lewis sin->sin_len = sizeof(*sin); 194526ef6ac4SDon Lewis sin->sin_addr = *addr_p; 194626ef6ac4SDon Lewis sin->sin_port = port; 194726ef6ac4SDon Lewis 194826ef6ac4SDon Lewis return (struct sockaddr *)sin; 194926ef6ac4SDon Lewis } 195026ef6ac4SDon Lewis 1951117bcae7SGarrett Wollman int 195254d642bbSRobert Watson in_getsockaddr(struct socket *so, struct sockaddr **nam) 1953df8bae1dSRodney W. Grimes { 1954136d4f1cSRobert Watson struct inpcb *inp; 195526ef6ac4SDon Lewis struct in_addr addr; 195626ef6ac4SDon Lewis in_port_t port; 195742fa505bSDavid Greenman 1958fdc984f7STor Egge inp = sotoinpcb(so); 195954d642bbSRobert Watson KASSERT(inp != NULL, ("in_getsockaddr: inp == NULL")); 19606466b28aSRobert Watson 1961a69042a5SRobert Watson INP_RLOCK(inp); 196226ef6ac4SDon Lewis port = inp->inp_lport; 196326ef6ac4SDon Lewis addr = inp->inp_laddr; 1964a69042a5SRobert Watson INP_RUNLOCK(inp); 196542fa505bSDavid Greenman 196626ef6ac4SDon Lewis *nam = in_sockaddr(port, &addr); 1967117bcae7SGarrett Wollman return 0; 1968df8bae1dSRodney W. Grimes } 1969df8bae1dSRodney W. Grimes 1970117bcae7SGarrett Wollman int 197154d642bbSRobert Watson in_getpeeraddr(struct socket *so, struct sockaddr **nam) 1972df8bae1dSRodney W. Grimes { 1973136d4f1cSRobert Watson struct inpcb *inp; 197426ef6ac4SDon Lewis struct in_addr addr; 197526ef6ac4SDon Lewis in_port_t port; 197642fa505bSDavid Greenman 1977fdc984f7STor Egge inp = sotoinpcb(so); 197854d642bbSRobert Watson KASSERT(inp != NULL, ("in_getpeeraddr: inp == NULL")); 19796466b28aSRobert Watson 1980a69042a5SRobert Watson INP_RLOCK(inp); 198126ef6ac4SDon Lewis port = inp->inp_fport; 198226ef6ac4SDon Lewis addr = inp->inp_faddr; 1983a69042a5SRobert Watson INP_RUNLOCK(inp); 198442fa505bSDavid Greenman 198526ef6ac4SDon Lewis *nam = in_sockaddr(port, &addr); 1986117bcae7SGarrett Wollman return 0; 1987df8bae1dSRodney W. Grimes } 1988df8bae1dSRodney W. Grimes 198926f9a767SRodney W. Grimes void 1990136d4f1cSRobert Watson in_pcbnotifyall(struct inpcbinfo *pcbinfo, struct in_addr faddr, int errno, 1991136d4f1cSRobert Watson struct inpcb *(*notify)(struct inpcb *, int)) 1992d1c54148SJesper Skriver { 1993f457d580SRobert Watson struct inpcb *inp, *inp_temp; 1994d1c54148SJesper Skriver 19953dc7ebf9SJeffrey Hsu INP_INFO_WLOCK(pcbinfo); 1996db0ac6deSCy Schubert CK_LIST_FOREACH_SAFE(inp, &pcbinfo->ipi_listhead, inp_list, inp_temp) { 19978501a69cSRobert Watson INP_WLOCK(inp); 1998d1c54148SJesper Skriver #ifdef INET6 1999f76fcf6dSJeffrey Hsu if ((inp->inp_vflag & INP_IPV4) == 0) { 20008501a69cSRobert Watson INP_WUNLOCK(inp); 2001d1c54148SJesper Skriver continue; 2002f76fcf6dSJeffrey Hsu } 2003d1c54148SJesper Skriver #endif 2004d1c54148SJesper Skriver if (inp->inp_faddr.s_addr != faddr.s_addr || 2005f76fcf6dSJeffrey Hsu inp->inp_socket == NULL) { 20068501a69cSRobert Watson INP_WUNLOCK(inp); 2007d1c54148SJesper Skriver continue; 2008d1c54148SJesper Skriver } 20093dc7ebf9SJeffrey Hsu if ((*notify)(inp, errno)) 20108501a69cSRobert Watson INP_WUNLOCK(inp); 2011f76fcf6dSJeffrey Hsu } 20123dc7ebf9SJeffrey Hsu INP_INFO_WUNLOCK(pcbinfo); 2013d1c54148SJesper Skriver } 2014d1c54148SJesper Skriver 2015db0ac6deSCy Schubert static bool 2016db0ac6deSCy Schubert inp_v4_multi_match(const struct inpcb *inp, void *v __unused) 2017db0ac6deSCy Schubert { 2018db0ac6deSCy Schubert 2019db0ac6deSCy Schubert if ((inp->inp_vflag & INP_IPV4) && inp->inp_moptions != NULL) 2020db0ac6deSCy Schubert return (true); 2021db0ac6deSCy Schubert else 2022db0ac6deSCy Schubert return (false); 2023db0ac6deSCy Schubert } 2024db0ac6deSCy Schubert 2025e43cc4aeSHajimu UMEMOTO void 2026136d4f1cSRobert Watson in_pcbpurgeif0(struct inpcbinfo *pcbinfo, struct ifnet *ifp) 2027e43cc4aeSHajimu UMEMOTO { 2028db0ac6deSCy Schubert struct inpcb_iterator inpi = INP_ITERATOR(pcbinfo, INPLOOKUP_WLOCKPCB, 2029db0ac6deSCy Schubert inp_v4_multi_match, NULL); 2030e43cc4aeSHajimu UMEMOTO struct inpcb *inp; 203159854ecfSHans Petter Selasky struct in_multi *inm; 203259854ecfSHans Petter Selasky struct in_mfilter *imf; 2033e43cc4aeSHajimu UMEMOTO struct ip_moptions *imo; 2034e43cc4aeSHajimu UMEMOTO 2035db0ac6deSCy Schubert IN_MULTI_LOCK_ASSERT(); 2036db0ac6deSCy Schubert 2037db0ac6deSCy Schubert while ((inp = inp_next(&inpi)) != NULL) { 2038db0ac6deSCy Schubert INP_WLOCK_ASSERT(inp); 2039db0ac6deSCy Schubert 2040e43cc4aeSHajimu UMEMOTO imo = inp->inp_moptions; 2041e43cc4aeSHajimu UMEMOTO /* 2042e43cc4aeSHajimu UMEMOTO * Unselect the outgoing interface if it is being 2043e43cc4aeSHajimu UMEMOTO * detached. 2044e43cc4aeSHajimu UMEMOTO */ 2045e43cc4aeSHajimu UMEMOTO if (imo->imo_multicast_ifp == ifp) 2046e43cc4aeSHajimu UMEMOTO imo->imo_multicast_ifp = NULL; 2047e43cc4aeSHajimu UMEMOTO 2048e43cc4aeSHajimu UMEMOTO /* 2049e43cc4aeSHajimu UMEMOTO * Drop multicast group membership if we joined 2050e43cc4aeSHajimu UMEMOTO * through the interface being detached. 2051cb6bb230SMatt Macy * 2052cb6bb230SMatt Macy * XXX This can all be deferred to an epoch_call 2053e43cc4aeSHajimu UMEMOTO */ 205459854ecfSHans Petter Selasky restart: 205559854ecfSHans Petter Selasky IP_MFILTER_FOREACH(imf, &imo->imo_head) { 205659854ecfSHans Petter Selasky if ((inm = imf->imf_inm) == NULL) 205759854ecfSHans Petter Selasky continue; 205859854ecfSHans Petter Selasky if (inm->inm_ifp != ifp) 205959854ecfSHans Petter Selasky continue; 206059854ecfSHans Petter Selasky ip_mfilter_remove(&imo->imo_head, imf); 206159854ecfSHans Petter Selasky in_leavegroup_locked(inm, NULL); 206259854ecfSHans Petter Selasky ip_mfilter_free(imf); 206359854ecfSHans Petter Selasky goto restart; 2064e43cc4aeSHajimu UMEMOTO } 2065e43cc4aeSHajimu UMEMOTO } 2066e43cc4aeSHajimu UMEMOTO } 2067e43cc4aeSHajimu UMEMOTO 2068df8bae1dSRodney W. Grimes /* 2069fa046d87SRobert Watson * Lookup a PCB based on the local address and port. Caller must hold the 2070fa046d87SRobert Watson * hash lock. No inpcb locks or references are acquired. 2071c3229e05SDavid Greenman */ 2072d5e8a67eSHajimu UMEMOTO #define INP_LOOKUP_MAPPED_PCB_COST 3 2073df8bae1dSRodney W. Grimes struct inpcb * 2074136d4f1cSRobert Watson in_pcblookup_local(struct inpcbinfo *pcbinfo, struct in_addr laddr, 207568e0d7e0SRobert Watson u_short lport, int lookupflags, struct ucred *cred) 2076df8bae1dSRodney W. Grimes { 2077136d4f1cSRobert Watson struct inpcb *inp; 2078d5e8a67eSHajimu UMEMOTO #ifdef INET6 2079d5e8a67eSHajimu UMEMOTO int matchwild = 3 + INP_LOOKUP_MAPPED_PCB_COST; 2080d5e8a67eSHajimu UMEMOTO #else 2081d5e8a67eSHajimu UMEMOTO int matchwild = 3; 2082d5e8a67eSHajimu UMEMOTO #endif 2083d5e8a67eSHajimu UMEMOTO int wildcard; 20847bc4aca7SDavid Greenman 208568e0d7e0SRobert Watson KASSERT((lookupflags & ~(INPLOOKUP_WILDCARD)) == 0, 208668e0d7e0SRobert Watson ("%s: invalid lookup flags %d", __func__, lookupflags)); 2087fa046d87SRobert Watson INP_HASH_LOCK_ASSERT(pcbinfo); 20881b73ca0bSSam Leffler 208968e0d7e0SRobert Watson if ((lookupflags & INPLOOKUP_WILDCARD) == 0) { 2090c3229e05SDavid Greenman struct inpcbhead *head; 2091c3229e05SDavid Greenman /* 2092c3229e05SDavid Greenman * Look for an unconnected (wildcard foreign addr) PCB that 2093c3229e05SDavid Greenman * matches the local address and port we're looking for. 2094c3229e05SDavid Greenman */ 2095a0577692SGleb Smirnoff head = &pcbinfo->ipi_hashbase[INP_PCBHASH_WILD(lport, 2096a0577692SGleb Smirnoff pcbinfo->ipi_hashmask)]; 2097b872626dSMatt Macy CK_LIST_FOREACH(inp, head, inp_hash) { 2098cfa1ca9dSYoshinobu Inoue #ifdef INET6 2099413628a7SBjoern A. Zeeb /* XXX inp locking */ 2100369dc8ceSEivind Eklund if ((inp->inp_vflag & INP_IPV4) == 0) 2101cfa1ca9dSYoshinobu Inoue continue; 2102cfa1ca9dSYoshinobu Inoue #endif 2103c3229e05SDavid Greenman if (inp->inp_faddr.s_addr == INADDR_ANY && 2104c3229e05SDavid Greenman inp->inp_laddr.s_addr == laddr.s_addr && 2105c3229e05SDavid Greenman inp->inp_lport == lport) { 2106c3229e05SDavid Greenman /* 2107413628a7SBjoern A. Zeeb * Found? 2108c3229e05SDavid Greenman */ 2109413628a7SBjoern A. Zeeb if (cred == NULL || 21100304c731SJamie Gritton prison_equal_ip4(cred->cr_prison, 21110304c731SJamie Gritton inp->inp_cred->cr_prison)) 2112c3229e05SDavid Greenman return (inp); 2113df8bae1dSRodney W. Grimes } 2114c3229e05SDavid Greenman } 2115c3229e05SDavid Greenman /* 2116c3229e05SDavid Greenman * Not found. 2117c3229e05SDavid Greenman */ 2118c3229e05SDavid Greenman return (NULL); 2119c3229e05SDavid Greenman } else { 2120c3229e05SDavid Greenman struct inpcbporthead *porthash; 2121c3229e05SDavid Greenman struct inpcbport *phd; 2122c3229e05SDavid Greenman struct inpcb *match = NULL; 2123c3229e05SDavid Greenman /* 2124c3229e05SDavid Greenman * Best fit PCB lookup. 2125c3229e05SDavid Greenman * 2126c3229e05SDavid Greenman * First see if this local port is in use by looking on the 2127c3229e05SDavid Greenman * port hash list. 2128c3229e05SDavid Greenman */ 2129712fc218SRobert Watson porthash = &pcbinfo->ipi_porthashbase[INP_PCBPORTHASH(lport, 2130712fc218SRobert Watson pcbinfo->ipi_porthashmask)]; 2131b872626dSMatt Macy CK_LIST_FOREACH(phd, porthash, phd_hash) { 2132c3229e05SDavid Greenman if (phd->phd_port == lport) 2133c3229e05SDavid Greenman break; 2134c3229e05SDavid Greenman } 2135c3229e05SDavid Greenman if (phd != NULL) { 2136c3229e05SDavid Greenman /* 2137c3229e05SDavid Greenman * Port is in use by one or more PCBs. Look for best 2138c3229e05SDavid Greenman * fit. 2139c3229e05SDavid Greenman */ 2140b872626dSMatt Macy CK_LIST_FOREACH(inp, &phd->phd_pcblist, inp_portlist) { 2141c3229e05SDavid Greenman wildcard = 0; 2142413628a7SBjoern A. Zeeb if (cred != NULL && 21430304c731SJamie Gritton !prison_equal_ip4(inp->inp_cred->cr_prison, 21440304c731SJamie Gritton cred->cr_prison)) 2145413628a7SBjoern A. Zeeb continue; 2146cfa1ca9dSYoshinobu Inoue #ifdef INET6 2147413628a7SBjoern A. Zeeb /* XXX inp locking */ 2148369dc8ceSEivind Eklund if ((inp->inp_vflag & INP_IPV4) == 0) 2149cfa1ca9dSYoshinobu Inoue continue; 2150d5e8a67eSHajimu UMEMOTO /* 2151d5e8a67eSHajimu UMEMOTO * We never select the PCB that has 2152d5e8a67eSHajimu UMEMOTO * INP_IPV6 flag and is bound to :: if 2153d5e8a67eSHajimu UMEMOTO * we have another PCB which is bound 2154d5e8a67eSHajimu UMEMOTO * to 0.0.0.0. If a PCB has the 2155d5e8a67eSHajimu UMEMOTO * INP_IPV6 flag, then we set its cost 2156d5e8a67eSHajimu UMEMOTO * higher than IPv4 only PCBs. 2157d5e8a67eSHajimu UMEMOTO * 2158d5e8a67eSHajimu UMEMOTO * Note that the case only happens 2159d5e8a67eSHajimu UMEMOTO * when a socket is bound to ::, under 2160d5e8a67eSHajimu UMEMOTO * the condition that the use of the 2161d5e8a67eSHajimu UMEMOTO * mapped address is allowed. 2162d5e8a67eSHajimu UMEMOTO */ 2163d5e8a67eSHajimu UMEMOTO if ((inp->inp_vflag & INP_IPV6) != 0) 2164d5e8a67eSHajimu UMEMOTO wildcard += INP_LOOKUP_MAPPED_PCB_COST; 2165cfa1ca9dSYoshinobu Inoue #endif 2166c3229e05SDavid Greenman if (inp->inp_faddr.s_addr != INADDR_ANY) 2167c3229e05SDavid Greenman wildcard++; 216815bd2b43SDavid Greenman if (inp->inp_laddr.s_addr != INADDR_ANY) { 216915bd2b43SDavid Greenman if (laddr.s_addr == INADDR_ANY) 217015bd2b43SDavid Greenman wildcard++; 217115bd2b43SDavid Greenman else if (inp->inp_laddr.s_addr != laddr.s_addr) 217215bd2b43SDavid Greenman continue; 217315bd2b43SDavid Greenman } else { 217415bd2b43SDavid Greenman if (laddr.s_addr != INADDR_ANY) 217515bd2b43SDavid Greenman wildcard++; 217615bd2b43SDavid Greenman } 2177df8bae1dSRodney W. Grimes if (wildcard < matchwild) { 2178df8bae1dSRodney W. Grimes match = inp; 2179df8bae1dSRodney W. Grimes matchwild = wildcard; 2180413628a7SBjoern A. Zeeb if (matchwild == 0) 2181df8bae1dSRodney W. Grimes break; 2182df8bae1dSRodney W. Grimes } 2183df8bae1dSRodney W. Grimes } 21843dbdc25cSDavid Greenman } 2185df8bae1dSRodney W. Grimes return (match); 2186df8bae1dSRodney W. Grimes } 2187c3229e05SDavid Greenman } 2188d5e8a67eSHajimu UMEMOTO #undef INP_LOOKUP_MAPPED_PCB_COST 218915bd2b43SDavid Greenman 21901a43cff9SSean Bruno static struct inpcb * 21911a43cff9SSean Bruno in_pcblookup_lbgroup(const struct inpcbinfo *pcbinfo, 21921a43cff9SSean Bruno const struct in_addr *laddr, uint16_t lport, const struct in_addr *faddr, 2193a034518aSAndrew Gallatin uint16_t fport, int lookupflags, int numa_domain) 21941a43cff9SSean Bruno { 2195a034518aSAndrew Gallatin struct inpcb *local_wild, *numa_wild; 21961a43cff9SSean Bruno const struct inpcblbgrouphead *hdr; 21971a43cff9SSean Bruno struct inpcblbgroup *grp; 21988be02ee4SMark Johnston uint32_t idx; 21991a43cff9SSean Bruno 22001a43cff9SSean Bruno INP_HASH_LOCK_ASSERT(pcbinfo); 22011a43cff9SSean Bruno 22029d2877fcSMark Johnston hdr = &pcbinfo->ipi_lbgrouphashbase[ 22039d2877fcSMark Johnston INP_PCBPORTHASH(lport, pcbinfo->ipi_lbgrouphashmask)]; 22041a43cff9SSean Bruno 22051a43cff9SSean Bruno /* 22061a43cff9SSean Bruno * Order of socket selection: 22071a43cff9SSean Bruno * 1. non-wild. 22081a43cff9SSean Bruno * 2. wild (if lookupflags contains INPLOOKUP_WILDCARD). 22091a43cff9SSean Bruno * 22101a43cff9SSean Bruno * NOTE: 22111a43cff9SSean Bruno * - Load balanced group does not contain jailed sockets 22121a43cff9SSean Bruno * - Load balanced group does not contain IPv4 mapped INET6 wild sockets 22131a43cff9SSean Bruno */ 22148be02ee4SMark Johnston local_wild = NULL; 2215a034518aSAndrew Gallatin numa_wild = NULL; 221654af3d0dSMark Johnston CK_LIST_FOREACH(grp, hdr, il_list) { 22171a43cff9SSean Bruno #ifdef INET6 22181a43cff9SSean Bruno if (!(grp->il_vflag & INP_IPV4)) 22191a43cff9SSean Bruno continue; 22201a43cff9SSean Bruno #endif 22218be02ee4SMark Johnston if (grp->il_lport != lport) 22228be02ee4SMark Johnston continue; 22231a43cff9SSean Bruno 2224a0577692SGleb Smirnoff idx = INP_PCBLBGROUP_PKTHASH(faddr, lport, fport) % 22258be02ee4SMark Johnston grp->il_inpcnt; 2226a034518aSAndrew Gallatin if (grp->il_laddr.s_addr == laddr->s_addr) { 2227a034518aSAndrew Gallatin if (numa_domain == M_NODOM || 2228a034518aSAndrew Gallatin grp->il_numa_domain == numa_domain) { 22291a43cff9SSean Bruno return (grp->il_inp[idx]); 2230a034518aSAndrew Gallatin } else { 2231a034518aSAndrew Gallatin numa_wild = grp->il_inp[idx]; 2232a034518aSAndrew Gallatin } 2233a034518aSAndrew Gallatin } 22341a43cff9SSean Bruno if (grp->il_laddr.s_addr == INADDR_ANY && 2235a034518aSAndrew Gallatin (lookupflags & INPLOOKUP_WILDCARD) != 0 && 2236a034518aSAndrew Gallatin (local_wild == NULL || numa_domain == M_NODOM || 2237a034518aSAndrew Gallatin grp->il_numa_domain == numa_domain)) { 22381a43cff9SSean Bruno local_wild = grp->il_inp[idx]; 22391a43cff9SSean Bruno } 2240a034518aSAndrew Gallatin } 2241a034518aSAndrew Gallatin if (numa_wild != NULL) 2242a034518aSAndrew Gallatin return (numa_wild); 2243a034518aSAndrew Gallatin 22441a43cff9SSean Bruno return (local_wild); 22451a43cff9SSean Bruno } 22461a43cff9SSean Bruno 224715bd2b43SDavid Greenman /* 2248fa046d87SRobert Watson * Lookup PCB in hash list, using pcbinfo tables. This variation assumes 2249db0ac6deSCy Schubert * that the caller has either locked the hash list, which usually happens 2250db0ac6deSCy Schubert * for bind(2) operations, or is in SMR section, which happens when sorting 2251db0ac6deSCy Schubert * out incoming packets. 225215bd2b43SDavid Greenman */ 2253fa046d87SRobert Watson static struct inpcb * 2254fa046d87SRobert Watson in_pcblookup_hash_locked(struct inpcbinfo *pcbinfo, struct in_addr faddr, 225568e0d7e0SRobert Watson u_int fport_arg, struct in_addr laddr, u_int lport_arg, int lookupflags, 2256a034518aSAndrew Gallatin struct ifnet *ifp, uint8_t numa_domain) 225715bd2b43SDavid Greenman { 225815bd2b43SDavid Greenman struct inpcbhead *head; 2259413628a7SBjoern A. Zeeb struct inpcb *inp, *tmpinp; 226015bd2b43SDavid Greenman u_short fport = fport_arg, lport = lport_arg; 226115bd2b43SDavid Greenman 226268e0d7e0SRobert Watson KASSERT((lookupflags & ~(INPLOOKUP_WILDCARD)) == 0, 226368e0d7e0SRobert Watson ("%s: invalid lookup flags %d", __func__, lookupflags)); 2264d797164aSGleb Smirnoff INP_HASH_LOCK_ASSERT(pcbinfo); 2265d797164aSGleb Smirnoff 226615bd2b43SDavid Greenman /* 226715bd2b43SDavid Greenman * First look for an exact match. 226815bd2b43SDavid Greenman */ 2269413628a7SBjoern A. Zeeb tmpinp = NULL; 2270a0577692SGleb Smirnoff head = &pcbinfo->ipi_hashbase[INP_PCBHASH(&faddr, lport, fport, 2271712fc218SRobert Watson pcbinfo->ipi_hashmask)]; 2272b872626dSMatt Macy CK_LIST_FOREACH(inp, head, inp_hash) { 2273cfa1ca9dSYoshinobu Inoue #ifdef INET6 2274413628a7SBjoern A. Zeeb /* XXX inp locking */ 2275369dc8ceSEivind Eklund if ((inp->inp_vflag & INP_IPV4) == 0) 2276cfa1ca9dSYoshinobu Inoue continue; 2277cfa1ca9dSYoshinobu Inoue #endif 22786d6a026bSDavid Greenman if (inp->inp_faddr.s_addr == faddr.s_addr && 2279ca98b82cSDavid Greenman inp->inp_laddr.s_addr == laddr.s_addr && 2280ca98b82cSDavid Greenman inp->inp_fport == fport && 2281413628a7SBjoern A. Zeeb inp->inp_lport == lport) { 2282413628a7SBjoern A. Zeeb /* 2283413628a7SBjoern A. Zeeb * XXX We should be able to directly return 2284413628a7SBjoern A. Zeeb * the inp here, without any checks. 2285413628a7SBjoern A. Zeeb * Well unless both bound with SO_REUSEPORT? 2286413628a7SBjoern A. Zeeb */ 22870304c731SJamie Gritton if (prison_flag(inp->inp_cred, PR_IP4)) 2288c3229e05SDavid Greenman return (inp); 2289413628a7SBjoern A. Zeeb if (tmpinp == NULL) 2290413628a7SBjoern A. Zeeb tmpinp = inp; 2291c3229e05SDavid Greenman } 2292413628a7SBjoern A. Zeeb } 2293413628a7SBjoern A. Zeeb if (tmpinp != NULL) 2294413628a7SBjoern A. Zeeb return (tmpinp); 2295e3fd5ffdSRobert Watson 2296e3fd5ffdSRobert Watson /* 22971a43cff9SSean Bruno * Then look in lb group (for wildcard match). 22981a43cff9SSean Bruno */ 2299d9ff5789SMark Johnston if ((lookupflags & INPLOOKUP_WILDCARD) != 0) { 23001a43cff9SSean Bruno inp = in_pcblookup_lbgroup(pcbinfo, &laddr, lport, &faddr, 2301a034518aSAndrew Gallatin fport, lookupflags, numa_domain); 2302d9ff5789SMark Johnston if (inp != NULL) 23031a43cff9SSean Bruno return (inp); 23041a43cff9SSean Bruno } 23051a43cff9SSean Bruno 23061a43cff9SSean Bruno /* 2307e3fd5ffdSRobert Watson * Then look for a wildcard match, if requested. 2308e3fd5ffdSRobert Watson */ 230968e0d7e0SRobert Watson if ((lookupflags & INPLOOKUP_WILDCARD) != 0) { 2310413628a7SBjoern A. Zeeb struct inpcb *local_wild = NULL, *local_exact = NULL; 2311e3fd5ffdSRobert Watson #ifdef INET6 2312cfa1ca9dSYoshinobu Inoue struct inpcb *local_wild_mapped = NULL; 2313e3fd5ffdSRobert Watson #endif 2314413628a7SBjoern A. Zeeb struct inpcb *jail_wild = NULL; 2315413628a7SBjoern A. Zeeb int injail; 2316413628a7SBjoern A. Zeeb 2317413628a7SBjoern A. Zeeb /* 2318413628a7SBjoern A. Zeeb * Order of socket selection - we always prefer jails. 2319413628a7SBjoern A. Zeeb * 1. jailed, non-wild. 2320413628a7SBjoern A. Zeeb * 2. jailed, wild. 2321413628a7SBjoern A. Zeeb * 3. non-jailed, non-wild. 2322413628a7SBjoern A. Zeeb * 4. non-jailed, wild. 2323413628a7SBjoern A. Zeeb */ 23246d6a026bSDavid Greenman 2325a0577692SGleb Smirnoff head = &pcbinfo->ipi_hashbase[INP_PCBHASH_WILD(lport, 2326a0577692SGleb Smirnoff pcbinfo->ipi_hashmask)]; 2327b872626dSMatt Macy CK_LIST_FOREACH(inp, head, inp_hash) { 2328cfa1ca9dSYoshinobu Inoue #ifdef INET6 2329413628a7SBjoern A. Zeeb /* XXX inp locking */ 2330369dc8ceSEivind Eklund if ((inp->inp_vflag & INP_IPV4) == 0) 2331cfa1ca9dSYoshinobu Inoue continue; 2332cfa1ca9dSYoshinobu Inoue #endif 2333413628a7SBjoern A. Zeeb if (inp->inp_faddr.s_addr != INADDR_ANY || 2334413628a7SBjoern A. Zeeb inp->inp_lport != lport) 2335413628a7SBjoern A. Zeeb continue; 2336413628a7SBjoern A. Zeeb 23370304c731SJamie Gritton injail = prison_flag(inp->inp_cred, PR_IP4); 2338413628a7SBjoern A. Zeeb if (injail) { 2339185e659cSGleb Smirnoff if (prison_check_ip4_locked( 2340185e659cSGleb Smirnoff inp->inp_cred->cr_prison, &laddr) != 0) 2341413628a7SBjoern A. Zeeb continue; 2342413628a7SBjoern A. Zeeb } else { 2343413628a7SBjoern A. Zeeb if (local_exact != NULL) 2344413628a7SBjoern A. Zeeb continue; 2345413628a7SBjoern A. Zeeb } 2346413628a7SBjoern A. Zeeb 2347413628a7SBjoern A. Zeeb if (inp->inp_laddr.s_addr == laddr.s_addr) { 2348413628a7SBjoern A. Zeeb if (injail) 2349c3229e05SDavid Greenman return (inp); 2350413628a7SBjoern A. Zeeb else 2351413628a7SBjoern A. Zeeb local_exact = inp; 2352413628a7SBjoern A. Zeeb } else if (inp->inp_laddr.s_addr == INADDR_ANY) { 2353e3fd5ffdSRobert Watson #ifdef INET6 2354413628a7SBjoern A. Zeeb /* XXX inp locking, NULL check */ 23555cd54324SBjoern A. Zeeb if (inp->inp_vflag & INP_IPV6PROTO) 2356cfa1ca9dSYoshinobu Inoue local_wild_mapped = inp; 2357cfa1ca9dSYoshinobu Inoue else 235883e521ecSBjoern A. Zeeb #endif 2359413628a7SBjoern A. Zeeb if (injail) 2360413628a7SBjoern A. Zeeb jail_wild = inp; 2361413628a7SBjoern A. Zeeb else 23626d6a026bSDavid Greenman local_wild = inp; 23636d6a026bSDavid Greenman } 2364413628a7SBjoern A. Zeeb } /* LIST_FOREACH */ 2365413628a7SBjoern A. Zeeb if (jail_wild != NULL) 2366413628a7SBjoern A. Zeeb return (jail_wild); 2367413628a7SBjoern A. Zeeb if (local_exact != NULL) 2368413628a7SBjoern A. Zeeb return (local_exact); 2369413628a7SBjoern A. Zeeb if (local_wild != NULL) 2370c3229e05SDavid Greenman return (local_wild); 2371413628a7SBjoern A. Zeeb #ifdef INET6 2372413628a7SBjoern A. Zeeb if (local_wild_mapped != NULL) 2373413628a7SBjoern A. Zeeb return (local_wild_mapped); 237483e521ecSBjoern A. Zeeb #endif 237568e0d7e0SRobert Watson } /* if ((lookupflags & INPLOOKUP_WILDCARD) != 0) */ 2376413628a7SBjoern A. Zeeb 23776d6a026bSDavid Greenman return (NULL); 237815bd2b43SDavid Greenman } 2379fa046d87SRobert Watson 2380fa046d87SRobert Watson /* 2381fa046d87SRobert Watson * Lookup PCB in hash list, using pcbinfo tables. This variation locks the 2382fa046d87SRobert Watson * hash list lock, and will return the inpcb locked (i.e., requires 2383fa046d87SRobert Watson * INPLOOKUP_LOCKPCB). 2384fa046d87SRobert Watson */ 2385fa046d87SRobert Watson static struct inpcb * 2386fa046d87SRobert Watson in_pcblookup_hash(struct inpcbinfo *pcbinfo, struct in_addr faddr, 2387fa046d87SRobert Watson u_int fport, struct in_addr laddr, u_int lport, int lookupflags, 2388a034518aSAndrew Gallatin struct ifnet *ifp, uint8_t numa_domain) 2389fa046d87SRobert Watson { 2390fa046d87SRobert Watson struct inpcb *inp; 2391fa046d87SRobert Watson 2392db0ac6deSCy Schubert smr_enter(pcbinfo->ipi_smr); 2393fa046d87SRobert Watson inp = in_pcblookup_hash_locked(pcbinfo, faddr, fport, laddr, lport, 239408d9c920SGleb Smirnoff lookupflags & INPLOOKUP_WILDCARD, ifp, numa_domain); 2395fa046d87SRobert Watson if (inp != NULL) { 2396db0ac6deSCy Schubert if (__predict_false(inp_smr_lock(inp, 2397db0ac6deSCy Schubert (lookupflags & INPLOOKUP_LOCKMASK)) == false)) 2398266f97b5SCy Schubert inp = NULL; 2399db0ac6deSCy Schubert } else 2400db0ac6deSCy Schubert smr_exit(pcbinfo->ipi_smr); 2401d797164aSGleb Smirnoff 2402fa046d87SRobert Watson return (inp); 2403fa046d87SRobert Watson } 2404fa046d87SRobert Watson 2405fa046d87SRobert Watson /* 2406d3c1f003SRobert Watson * Public inpcb lookup routines, accepting a 4-tuple, and optionally, an mbuf 2407d3c1f003SRobert Watson * from which a pre-calculated hash value may be extracted. 2408fa046d87SRobert Watson */ 2409fa046d87SRobert Watson struct inpcb * 2410fa046d87SRobert Watson in_pcblookup(struct inpcbinfo *pcbinfo, struct in_addr faddr, u_int fport, 2411fa046d87SRobert Watson struct in_addr laddr, u_int lport, int lookupflags, struct ifnet *ifp) 2412fa046d87SRobert Watson { 2413fa046d87SRobert Watson 2414fa046d87SRobert Watson KASSERT((lookupflags & ~INPLOOKUP_MASK) == 0, 2415fa046d87SRobert Watson ("%s: invalid lookup flags %d", __func__, lookupflags)); 24161db08fbeSGleb Smirnoff KASSERT((lookupflags & (INPLOOKUP_RLOCKPCB | INPLOOKUP_WLOCKPCB)) != 0, 24171db08fbeSGleb Smirnoff ("%s: LOCKPCB not set", __func__)); 2418fa046d87SRobert Watson 2419fa046d87SRobert Watson return (in_pcblookup_hash(pcbinfo, faddr, fport, laddr, lport, 2420a034518aSAndrew Gallatin lookupflags, ifp, M_NODOM)); 2421fa046d87SRobert Watson } 2422d3c1f003SRobert Watson 2423d3c1f003SRobert Watson struct inpcb * 2424d3c1f003SRobert Watson in_pcblookup_mbuf(struct inpcbinfo *pcbinfo, struct in_addr faddr, 2425d3c1f003SRobert Watson u_int fport, struct in_addr laddr, u_int lport, int lookupflags, 2426d3c1f003SRobert Watson struct ifnet *ifp, struct mbuf *m) 2427d3c1f003SRobert Watson { 2428d3c1f003SRobert Watson 2429d3c1f003SRobert Watson KASSERT((lookupflags & ~INPLOOKUP_MASK) == 0, 2430d3c1f003SRobert Watson ("%s: invalid lookup flags %d", __func__, lookupflags)); 24311db08fbeSGleb Smirnoff KASSERT((lookupflags & (INPLOOKUP_RLOCKPCB | INPLOOKUP_WLOCKPCB)) != 0, 24321db08fbeSGleb Smirnoff ("%s: LOCKPCB not set", __func__)); 2433d3c1f003SRobert Watson 2434d3c1f003SRobert Watson return (in_pcblookup_hash(pcbinfo, faddr, fport, laddr, lport, 2435a034518aSAndrew Gallatin lookupflags, ifp, m->m_pkthdr.numa_domain)); 2436d3c1f003SRobert Watson } 243767107f45SBjoern A. Zeeb #endif /* INET */ 243815bd2b43SDavid Greenman 24397bc4aca7SDavid Greenman /* 2440c3229e05SDavid Greenman * Insert PCB onto various hash lists. 24417bc4aca7SDavid Greenman */ 2442db0ac6deSCy Schubert int 2443db0ac6deSCy Schubert in_pcbinshash(struct inpcb *inp) 244415bd2b43SDavid Greenman { 2445c3229e05SDavid Greenman struct inpcbhead *pcbhash; 2446c3229e05SDavid Greenman struct inpcbporthead *pcbporthash; 2447c3229e05SDavid Greenman struct inpcbinfo *pcbinfo = inp->inp_pcbinfo; 2448c3229e05SDavid Greenman struct inpcbport *phd; 24491a43cff9SSean Bruno int so_options; 245015bd2b43SDavid Greenman 24518501a69cSRobert Watson INP_WLOCK_ASSERT(inp); 2452fa046d87SRobert Watson INP_HASH_WLOCK_ASSERT(pcbinfo); 2453fa046d87SRobert Watson 2454111d57a6SRobert Watson KASSERT((inp->inp_flags & INP_INHASHLIST) == 0, 2455111d57a6SRobert Watson ("in_pcbinshash: INP_INHASHLIST")); 2456602cc7f1SRobert Watson 2457cfa1ca9dSYoshinobu Inoue #ifdef INET6 2458cfa1ca9dSYoshinobu Inoue if (inp->inp_vflag & INP_IPV6) 2459a0577692SGleb Smirnoff pcbhash = &pcbinfo->ipi_hashbase[INP6_PCBHASH(&inp->in6p_faddr, 2460a0577692SGleb Smirnoff inp->inp_lport, inp->inp_fport, pcbinfo->ipi_hashmask)]; 2461cfa1ca9dSYoshinobu Inoue else 246283e521ecSBjoern A. Zeeb #endif 2463a0577692SGleb Smirnoff pcbhash = &pcbinfo->ipi_hashbase[INP_PCBHASH(&inp->inp_faddr, 2464712fc218SRobert Watson inp->inp_lport, inp->inp_fport, pcbinfo->ipi_hashmask)]; 246515bd2b43SDavid Greenman 2466712fc218SRobert Watson pcbporthash = &pcbinfo->ipi_porthashbase[ 2467712fc218SRobert Watson INP_PCBPORTHASH(inp->inp_lport, pcbinfo->ipi_porthashmask)]; 2468c3229e05SDavid Greenman 2469c3229e05SDavid Greenman /* 24701a43cff9SSean Bruno * Add entry to load balance group. 24711a43cff9SSean Bruno * Only do this if SO_REUSEPORT_LB is set. 24721a43cff9SSean Bruno */ 24731a43cff9SSean Bruno so_options = inp_so_options(inp); 24741a43cff9SSean Bruno if (so_options & SO_REUSEPORT_LB) { 2475a034518aSAndrew Gallatin int ret = in_pcbinslbgrouphash(inp, M_NODOM); 24761a43cff9SSean Bruno if (ret) { 24771a43cff9SSean Bruno /* pcb lb group malloc fail (ret=ENOBUFS). */ 24781a43cff9SSean Bruno return (ret); 24791a43cff9SSean Bruno } 24801a43cff9SSean Bruno } 24811a43cff9SSean Bruno 24821a43cff9SSean Bruno /* 2483c3229e05SDavid Greenman * Go through port list and look for a head for this lport. 2484c3229e05SDavid Greenman */ 2485b872626dSMatt Macy CK_LIST_FOREACH(phd, pcbporthash, phd_hash) { 2486c3229e05SDavid Greenman if (phd->phd_port == inp->inp_lport) 2487c3229e05SDavid Greenman break; 2488c3229e05SDavid Greenman } 2489c3229e05SDavid Greenman /* 2490c3229e05SDavid Greenman * If none exists, malloc one and tack it on. 2491c3229e05SDavid Greenman */ 2492c3229e05SDavid Greenman if (phd == NULL) { 2493db0ac6deSCy Schubert phd = uma_zalloc_smr(pcbinfo->ipi_portzone, M_NOWAIT); 2494c3229e05SDavid Greenman if (phd == NULL) { 2495c3229e05SDavid Greenman return (ENOBUFS); /* XXX */ 2496c3229e05SDavid Greenman } 2497c3229e05SDavid Greenman phd->phd_port = inp->inp_lport; 2498b872626dSMatt Macy CK_LIST_INIT(&phd->phd_pcblist); 2499b872626dSMatt Macy CK_LIST_INSERT_HEAD(pcbporthash, phd, phd_hash); 2500c3229e05SDavid Greenman } 2501c3229e05SDavid Greenman inp->inp_phd = phd; 2502b872626dSMatt Macy CK_LIST_INSERT_HEAD(&phd->phd_pcblist, inp, inp_portlist); 2503b872626dSMatt Macy CK_LIST_INSERT_HEAD(pcbhash, inp, inp_hash); 2504111d57a6SRobert Watson inp->inp_flags |= INP_INHASHLIST; 2505db0ac6deSCy Schubert 2506c3229e05SDavid Greenman return (0); 250715bd2b43SDavid Greenman } 250815bd2b43SDavid Greenman 25093ba34b07SGleb Smirnoff static void 25103ba34b07SGleb Smirnoff in_pcbremhash(struct inpcb *inp) 25113ba34b07SGleb Smirnoff { 25123ba34b07SGleb Smirnoff struct inpcbport *phd = inp->inp_phd; 25133ba34b07SGleb Smirnoff 25143ba34b07SGleb Smirnoff INP_WLOCK_ASSERT(inp); 25153ba34b07SGleb Smirnoff MPASS(inp->inp_flags & INP_INHASHLIST); 25163ba34b07SGleb Smirnoff 25173ba34b07SGleb Smirnoff INP_HASH_WLOCK(inp->inp_pcbinfo); 25183ba34b07SGleb Smirnoff /* XXX: Only do if SO_REUSEPORT_LB set? */ 25193ba34b07SGleb Smirnoff in_pcbremlbgrouphash(inp); 25203ba34b07SGleb Smirnoff CK_LIST_REMOVE(inp, inp_hash); 25213ba34b07SGleb Smirnoff CK_LIST_REMOVE(inp, inp_portlist); 25223ba34b07SGleb Smirnoff if (CK_LIST_FIRST(&phd->phd_pcblist) == NULL) { 25233ba34b07SGleb Smirnoff CK_LIST_REMOVE(phd, phd_hash); 25243ba34b07SGleb Smirnoff uma_zfree_smr(inp->inp_pcbinfo->ipi_portzone, phd); 25253ba34b07SGleb Smirnoff } 25263ba34b07SGleb Smirnoff INP_HASH_WUNLOCK(inp->inp_pcbinfo); 25273ba34b07SGleb Smirnoff inp->inp_flags &= ~INP_INHASHLIST; 25283ba34b07SGleb Smirnoff } 25293ba34b07SGleb Smirnoff 253052cd27cbSRobert Watson /* 2531c3229e05SDavid Greenman * Move PCB to the proper hash bucket when { faddr, fport } have been 2532c3229e05SDavid Greenman * changed. NOTE: This does not handle the case of the lport changing (the 2533c3229e05SDavid Greenman * hashed port list would have to be updated as well), so the lport must 2534c3229e05SDavid Greenman * not change after in_pcbinshash() has been called. 2535db0ac6deSCy Schubert * 2536db0ac6deSCy Schubert * XXXGL: a race between this function and SMR-protected hash iterator 2537db0ac6deSCy Schubert * will lead to iterator traversing a possibly wrong hash list. However, 2538db0ac6deSCy Schubert * this race should have been here since change from rwlock to epoch. 2539c3229e05SDavid Greenman */ 254015bd2b43SDavid Greenman void 2541db0ac6deSCy Schubert in_pcbrehash(struct inpcb *inp) 254215bd2b43SDavid Greenman { 254359daba27SSam Leffler struct inpcbinfo *pcbinfo = inp->inp_pcbinfo; 254415bd2b43SDavid Greenman struct inpcbhead *head; 254515bd2b43SDavid Greenman 25468501a69cSRobert Watson INP_WLOCK_ASSERT(inp); 2547fa046d87SRobert Watson INP_HASH_WLOCK_ASSERT(pcbinfo); 2548fa046d87SRobert Watson 2549111d57a6SRobert Watson KASSERT(inp->inp_flags & INP_INHASHLIST, 2550111d57a6SRobert Watson ("in_pcbrehash: !INP_INHASHLIST")); 2551602cc7f1SRobert Watson 2552cfa1ca9dSYoshinobu Inoue #ifdef INET6 2553cfa1ca9dSYoshinobu Inoue if (inp->inp_vflag & INP_IPV6) 2554a0577692SGleb Smirnoff head = &pcbinfo->ipi_hashbase[INP6_PCBHASH(&inp->in6p_faddr, 2555a0577692SGleb Smirnoff inp->inp_lport, inp->inp_fport, pcbinfo->ipi_hashmask)]; 2556cfa1ca9dSYoshinobu Inoue else 255783e521ecSBjoern A. Zeeb #endif 2558a0577692SGleb Smirnoff head = &pcbinfo->ipi_hashbase[INP_PCBHASH(&inp->inp_faddr, 2559712fc218SRobert Watson inp->inp_lport, inp->inp_fport, pcbinfo->ipi_hashmask)]; 256015bd2b43SDavid Greenman 2561b872626dSMatt Macy CK_LIST_REMOVE(inp, inp_hash); 2562b872626dSMatt Macy CK_LIST_INSERT_HEAD(head, inp, inp_hash); 2563c3229e05SDavid Greenman } 2564c3229e05SDavid Greenman 2565c3229e05SDavid Greenman /* 256684cc0778SGeorge V. Neville-Neil * Check for alternatives when higher level complains 256784cc0778SGeorge V. Neville-Neil * about service problems. For now, invalidate cached 256884cc0778SGeorge V. Neville-Neil * routing information. If the route was created dynamically 256984cc0778SGeorge V. Neville-Neil * (by a redirect), time to try a default gateway again. 257084cc0778SGeorge V. Neville-Neil */ 257184cc0778SGeorge V. Neville-Neil void 257284cc0778SGeorge V. Neville-Neil in_losing(struct inpcb *inp) 257384cc0778SGeorge V. Neville-Neil { 257484cc0778SGeorge V. Neville-Neil 2575fc21c53fSRyan Stone RO_INVALIDATE_CACHE(&inp->inp_route); 257684cc0778SGeorge V. Neville-Neil return; 257784cc0778SGeorge V. Neville-Neil } 257884cc0778SGeorge V. Neville-Neil 257984cc0778SGeorge V. Neville-Neil /* 2580a557af22SRobert Watson * A set label operation has occurred at the socket layer, propagate the 2581a557af22SRobert Watson * label change into the in_pcb for the socket. 2582a557af22SRobert Watson */ 2583a557af22SRobert Watson void 2584136d4f1cSRobert Watson in_pcbsosetlabel(struct socket *so) 2585a557af22SRobert Watson { 2586a557af22SRobert Watson #ifdef MAC 2587a557af22SRobert Watson struct inpcb *inp; 2588a557af22SRobert Watson 25894c7c478dSRobert Watson inp = sotoinpcb(so); 25904c7c478dSRobert Watson KASSERT(inp != NULL, ("in_pcbsosetlabel: so->so_pcb == NULL")); 2591602cc7f1SRobert Watson 25928501a69cSRobert Watson INP_WLOCK(inp); 2593310e7cebSRobert Watson SOCK_LOCK(so); 2594a557af22SRobert Watson mac_inpcb_sosetlabel(so, inp); 2595310e7cebSRobert Watson SOCK_UNLOCK(so); 25968501a69cSRobert Watson INP_WUNLOCK(inp); 2597a557af22SRobert Watson #endif 2598a557af22SRobert Watson } 25995f311da2SMike Silbersack 26005f311da2SMike Silbersack /* 2601ad3a630fSRobert Watson * ipport_tick runs once per second, determining if random port allocation 2602ad3a630fSRobert Watson * should be continued. If more than ipport_randomcps ports have been 2603ad3a630fSRobert Watson * allocated in the last second, then we return to sequential port 2604ad3a630fSRobert Watson * allocation. We return to random allocation only once we drop below 2605ad3a630fSRobert Watson * ipport_randomcps for at least ipport_randomtime seconds. 26065f311da2SMike Silbersack */ 2607aae49dd3SBjoern A. Zeeb static void 2608136d4f1cSRobert Watson ipport_tick(void *xtp) 26095f311da2SMike Silbersack { 26108b615593SMarko Zec VNET_ITERATOR_DECL(vnet_iter); 2611ad3a630fSRobert Watson 26125ee847d3SRobert Watson VNET_LIST_RLOCK_NOSLEEP(); 26138b615593SMarko Zec VNET_FOREACH(vnet_iter) { 26148b615593SMarko Zec CURVNET_SET(vnet_iter); /* XXX appease INVARIANTS here */ 26154c018b5aSPeter Lei if (V_ipport_tcpallocs - V_ipport_tcplastcount <= 26164c018b5aSPeter Lei V_ipport_randomcps) { 2617603724d3SBjoern A. Zeeb if (V_ipport_stoprandom > 0) 2618603724d3SBjoern A. Zeeb V_ipport_stoprandom--; 2619ad3a630fSRobert Watson } else 2620603724d3SBjoern A. Zeeb V_ipport_stoprandom = V_ipport_randomtime; 2621603724d3SBjoern A. Zeeb V_ipport_tcplastcount = V_ipport_tcpallocs; 26228b615593SMarko Zec CURVNET_RESTORE(); 26238b615593SMarko Zec } 26245ee847d3SRobert Watson VNET_LIST_RUNLOCK_NOSLEEP(); 26255f311da2SMike Silbersack callout_reset(&ipport_tick_callout, hz, ipport_tick, NULL); 26265f311da2SMike Silbersack } 2627497057eeSRobert Watson 2628aae49dd3SBjoern A. Zeeb static void 2629aae49dd3SBjoern A. Zeeb ip_fini(void *xtp) 2630aae49dd3SBjoern A. Zeeb { 2631aae49dd3SBjoern A. Zeeb 2632aae49dd3SBjoern A. Zeeb callout_stop(&ipport_tick_callout); 2633aae49dd3SBjoern A. Zeeb } 2634aae49dd3SBjoern A. Zeeb 2635aae49dd3SBjoern A. Zeeb /* 2636aae49dd3SBjoern A. Zeeb * The ipport_callout should start running at about the time we attach the 2637aae49dd3SBjoern A. Zeeb * inet or inet6 domains. 2638aae49dd3SBjoern A. Zeeb */ 2639aae49dd3SBjoern A. Zeeb static void 2640aae49dd3SBjoern A. Zeeb ipport_tick_init(const void *unused __unused) 2641aae49dd3SBjoern A. Zeeb { 2642aae49dd3SBjoern A. Zeeb 2643aae49dd3SBjoern A. Zeeb /* Start ipport_tick. */ 2644fd90e2edSJung-uk Kim callout_init(&ipport_tick_callout, 1); 2645aae49dd3SBjoern A. Zeeb callout_reset(&ipport_tick_callout, 1, ipport_tick, NULL); 2646aae49dd3SBjoern A. Zeeb EVENTHANDLER_REGISTER(shutdown_pre_sync, ip_fini, NULL, 2647aae49dd3SBjoern A. Zeeb SHUTDOWN_PRI_DEFAULT); 2648aae49dd3SBjoern A. Zeeb } 2649aae49dd3SBjoern A. Zeeb SYSINIT(ipport_tick_init, SI_SUB_PROTO_DOMAIN, SI_ORDER_MIDDLE, 2650aae49dd3SBjoern A. Zeeb ipport_tick_init, NULL); 2651aae49dd3SBjoern A. Zeeb 26523d585327SKip Macy void 26533d585327SKip Macy inp_wlock(struct inpcb *inp) 26543d585327SKip Macy { 26553d585327SKip Macy 26568501a69cSRobert Watson INP_WLOCK(inp); 26573d585327SKip Macy } 26583d585327SKip Macy 26593d585327SKip Macy void 26603d585327SKip Macy inp_wunlock(struct inpcb *inp) 26613d585327SKip Macy { 26623d585327SKip Macy 26638501a69cSRobert Watson INP_WUNLOCK(inp); 26643d585327SKip Macy } 26653d585327SKip Macy 26663d585327SKip Macy void 26673d585327SKip Macy inp_rlock(struct inpcb *inp) 26683d585327SKip Macy { 26693d585327SKip Macy 2670a69042a5SRobert Watson INP_RLOCK(inp); 26713d585327SKip Macy } 26723d585327SKip Macy 26733d585327SKip Macy void 26743d585327SKip Macy inp_runlock(struct inpcb *inp) 26753d585327SKip Macy { 26763d585327SKip Macy 2677a69042a5SRobert Watson INP_RUNLOCK(inp); 26783d585327SKip Macy } 26793d585327SKip Macy 2680c75e2666SGleb Smirnoff #ifdef INVARIANT_SUPPORT 26813d585327SKip Macy void 2682e79dd20dSKip Macy inp_lock_assert(struct inpcb *inp) 26833d585327SKip Macy { 26843d585327SKip Macy 26858501a69cSRobert Watson INP_WLOCK_ASSERT(inp); 26863d585327SKip Macy } 26873d585327SKip Macy 26883d585327SKip Macy void 2689e79dd20dSKip Macy inp_unlock_assert(struct inpcb *inp) 26903d585327SKip Macy { 26913d585327SKip Macy 26923d585327SKip Macy INP_UNLOCK_ASSERT(inp); 26933d585327SKip Macy } 26943d585327SKip Macy #endif 26953d585327SKip Macy 26969378e437SKip Macy void 2697*24cf7a8dSGleb Smirnoff inp_apply_all(struct inpcbinfo *pcbinfo, 2698*24cf7a8dSGleb Smirnoff void (*func)(struct inpcb *, void *), void *arg) 26999378e437SKip Macy { 2700*24cf7a8dSGleb Smirnoff struct inpcb_iterator inpi = INP_ALL_ITERATOR(pcbinfo, 2701db0ac6deSCy Schubert INPLOOKUP_WLOCKPCB); 27029378e437SKip Macy struct inpcb *inp; 27039378e437SKip Macy 2704db0ac6deSCy Schubert while ((inp = inp_next(&inpi)) != NULL) 27059378e437SKip Macy func(inp, arg); 27069378e437SKip Macy } 27079378e437SKip Macy 27089378e437SKip Macy struct socket * 27099378e437SKip Macy inp_inpcbtosocket(struct inpcb *inp) 27109378e437SKip Macy { 27119378e437SKip Macy 27129378e437SKip Macy INP_WLOCK_ASSERT(inp); 27139378e437SKip Macy return (inp->inp_socket); 27149378e437SKip Macy } 27159378e437SKip Macy 27169378e437SKip Macy struct tcpcb * 27179378e437SKip Macy inp_inpcbtotcpcb(struct inpcb *inp) 27189378e437SKip Macy { 27199378e437SKip Macy 27209378e437SKip Macy INP_WLOCK_ASSERT(inp); 27219378e437SKip Macy return ((struct tcpcb *)inp->inp_ppcb); 27229378e437SKip Macy } 27239378e437SKip Macy 27249378e437SKip Macy int 27259378e437SKip Macy inp_ip_tos_get(const struct inpcb *inp) 27269378e437SKip Macy { 27279378e437SKip Macy 27289378e437SKip Macy return (inp->inp_ip_tos); 27299378e437SKip Macy } 27309378e437SKip Macy 27319378e437SKip Macy void 27329378e437SKip Macy inp_ip_tos_set(struct inpcb *inp, int val) 27339378e437SKip Macy { 27349378e437SKip Macy 27359378e437SKip Macy inp->inp_ip_tos = val; 27369378e437SKip Macy } 27379378e437SKip Macy 27389378e437SKip Macy void 2739df9cf830STai-hwa Liang inp_4tuple_get(struct inpcb *inp, uint32_t *laddr, uint16_t *lp, 27409d29c635SKip Macy uint32_t *faddr, uint16_t *fp) 27419378e437SKip Macy { 27429378e437SKip Macy 27439d29c635SKip Macy INP_LOCK_ASSERT(inp); 2744df9cf830STai-hwa Liang *laddr = inp->inp_laddr.s_addr; 2745df9cf830STai-hwa Liang *faddr = inp->inp_faddr.s_addr; 27469378e437SKip Macy *lp = inp->inp_lport; 27479378e437SKip Macy *fp = inp->inp_fport; 27489378e437SKip Macy } 27499378e437SKip Macy 2750dd0e6c38SKip Macy struct inpcb * 2751dd0e6c38SKip Macy so_sotoinpcb(struct socket *so) 2752dd0e6c38SKip Macy { 2753dd0e6c38SKip Macy 2754dd0e6c38SKip Macy return (sotoinpcb(so)); 2755dd0e6c38SKip Macy } 2756dd0e6c38SKip Macy 2757cc65eb4eSGleb Smirnoff /* 2758cc65eb4eSGleb Smirnoff * Create an external-format (``xinpcb'') structure using the information in 2759cc65eb4eSGleb Smirnoff * the kernel-format in_pcb structure pointed to by inp. This is done to 2760cc65eb4eSGleb Smirnoff * reduce the spew of irrelevant information over this interface, to isolate 2761cc65eb4eSGleb Smirnoff * user code from changes in the kernel structure, and potentially to provide 2762cc65eb4eSGleb Smirnoff * information-hiding if we decide that some of this information should be 2763cc65eb4eSGleb Smirnoff * hidden from users. 2764cc65eb4eSGleb Smirnoff */ 2765cc65eb4eSGleb Smirnoff void 2766cc65eb4eSGleb Smirnoff in_pcbtoxinpcb(const struct inpcb *inp, struct xinpcb *xi) 2767cc65eb4eSGleb Smirnoff { 2768cc65eb4eSGleb Smirnoff 276979db6fe7SMark Johnston bzero(xi, sizeof(*xi)); 2770cc65eb4eSGleb Smirnoff xi->xi_len = sizeof(struct xinpcb); 2771cc65eb4eSGleb Smirnoff if (inp->inp_socket) 2772cc65eb4eSGleb Smirnoff sotoxsocket(inp->inp_socket, &xi->xi_socket); 2773cc65eb4eSGleb Smirnoff bcopy(&inp->inp_inc, &xi->inp_inc, sizeof(struct in_conninfo)); 2774cc65eb4eSGleb Smirnoff xi->inp_gencnt = inp->inp_gencnt; 27753a20f06aSBrooks Davis xi->inp_ppcb = (uintptr_t)inp->inp_ppcb; 2776cc65eb4eSGleb Smirnoff xi->inp_flow = inp->inp_flow; 2777cc65eb4eSGleb Smirnoff xi->inp_flowid = inp->inp_flowid; 2778cc65eb4eSGleb Smirnoff xi->inp_flowtype = inp->inp_flowtype; 2779cc65eb4eSGleb Smirnoff xi->inp_flags = inp->inp_flags; 2780cc65eb4eSGleb Smirnoff xi->inp_flags2 = inp->inp_flags2; 2781cc65eb4eSGleb Smirnoff xi->inp_rss_listen_bucket = inp->inp_rss_listen_bucket; 2782cc65eb4eSGleb Smirnoff xi->in6p_cksum = inp->in6p_cksum; 2783cc65eb4eSGleb Smirnoff xi->in6p_hops = inp->in6p_hops; 2784cc65eb4eSGleb Smirnoff xi->inp_ip_tos = inp->inp_ip_tos; 2785cc65eb4eSGleb Smirnoff xi->inp_vflag = inp->inp_vflag; 2786cc65eb4eSGleb Smirnoff xi->inp_ip_ttl = inp->inp_ip_ttl; 2787cc65eb4eSGleb Smirnoff xi->inp_ip_p = inp->inp_ip_p; 2788cc65eb4eSGleb Smirnoff xi->inp_ip_minttl = inp->inp_ip_minttl; 2789cc65eb4eSGleb Smirnoff } 2790cc65eb4eSGleb Smirnoff 2791a35bdd44SMichael Tuexen int 2792a35bdd44SMichael Tuexen sysctl_setsockopt(SYSCTL_HANDLER_ARGS, struct inpcbinfo *pcbinfo, 2793a35bdd44SMichael Tuexen int (*ctloutput_set)(struct inpcb *, struct sockopt *)) 2794a35bdd44SMichael Tuexen { 2795a35bdd44SMichael Tuexen struct sockopt sopt; 2796a35bdd44SMichael Tuexen struct inpcb_iterator inpi = INP_ALL_ITERATOR(pcbinfo, 2797a35bdd44SMichael Tuexen INPLOOKUP_WLOCKPCB); 2798a35bdd44SMichael Tuexen struct inpcb *inp; 2799a35bdd44SMichael Tuexen struct sockopt_parameters *params; 2800a35bdd44SMichael Tuexen struct socket *so; 2801a35bdd44SMichael Tuexen int error; 2802a35bdd44SMichael Tuexen char buf[1024]; 2803a35bdd44SMichael Tuexen 2804a35bdd44SMichael Tuexen if (req->oldptr != NULL || req->oldlen != 0) 2805a35bdd44SMichael Tuexen return (EINVAL); 2806a35bdd44SMichael Tuexen if (req->newptr == NULL) 2807a35bdd44SMichael Tuexen return (EPERM); 2808a35bdd44SMichael Tuexen if (req->newlen > sizeof(buf)) 2809a35bdd44SMichael Tuexen return (ENOMEM); 2810a35bdd44SMichael Tuexen error = SYSCTL_IN(req, buf, req->newlen); 2811a35bdd44SMichael Tuexen if (error != 0) 2812a35bdd44SMichael Tuexen return (error); 2813a35bdd44SMichael Tuexen if (req->newlen < sizeof(struct sockopt_parameters)) 2814a35bdd44SMichael Tuexen return (EINVAL); 2815a35bdd44SMichael Tuexen params = (struct sockopt_parameters *)buf; 2816a35bdd44SMichael Tuexen sopt.sopt_level = params->sop_level; 2817a35bdd44SMichael Tuexen sopt.sopt_name = params->sop_optname; 2818a35bdd44SMichael Tuexen sopt.sopt_dir = SOPT_SET; 2819a35bdd44SMichael Tuexen sopt.sopt_val = params->sop_optval; 2820a35bdd44SMichael Tuexen sopt.sopt_valsize = req->newlen - sizeof(struct sockopt_parameters); 2821a35bdd44SMichael Tuexen sopt.sopt_td = NULL; 2822a0aeb1ceSMichael Tuexen #ifdef INET6 2823a35bdd44SMichael Tuexen if (params->sop_inc.inc_flags & INC_ISIPV6) { 2824a35bdd44SMichael Tuexen if (IN6_IS_SCOPE_LINKLOCAL(¶ms->sop_inc.inc6_laddr)) 2825a35bdd44SMichael Tuexen params->sop_inc.inc6_laddr.s6_addr16[1] = 2826a35bdd44SMichael Tuexen htons(params->sop_inc.inc6_zoneid & 0xffff); 2827a35bdd44SMichael Tuexen if (IN6_IS_SCOPE_LINKLOCAL(¶ms->sop_inc.inc6_faddr)) 2828a35bdd44SMichael Tuexen params->sop_inc.inc6_faddr.s6_addr16[1] = 2829a35bdd44SMichael Tuexen htons(params->sop_inc.inc6_zoneid & 0xffff); 2830a35bdd44SMichael Tuexen } 2831a0aeb1ceSMichael Tuexen #endif 2832a35bdd44SMichael Tuexen if (params->sop_inc.inc_lport != htons(0)) { 2833a35bdd44SMichael Tuexen if (params->sop_inc.inc_fport == htons(0)) 2834a35bdd44SMichael Tuexen inpi.hash = INP_PCBHASH_WILD(params->sop_inc.inc_lport, 2835a35bdd44SMichael Tuexen pcbinfo->ipi_hashmask); 2836a35bdd44SMichael Tuexen else 2837a0aeb1ceSMichael Tuexen #ifdef INET6 2838a35bdd44SMichael Tuexen if (params->sop_inc.inc_flags & INC_ISIPV6) 2839a35bdd44SMichael Tuexen inpi.hash = INP6_PCBHASH( 2840a35bdd44SMichael Tuexen ¶ms->sop_inc.inc6_faddr, 2841a35bdd44SMichael Tuexen params->sop_inc.inc_lport, 2842a35bdd44SMichael Tuexen params->sop_inc.inc_fport, 2843a35bdd44SMichael Tuexen pcbinfo->ipi_hashmask); 2844a35bdd44SMichael Tuexen else 2845a0aeb1ceSMichael Tuexen #endif 2846a35bdd44SMichael Tuexen inpi.hash = INP_PCBHASH( 2847a35bdd44SMichael Tuexen ¶ms->sop_inc.inc_faddr, 2848a35bdd44SMichael Tuexen params->sop_inc.inc_lport, 2849a35bdd44SMichael Tuexen params->sop_inc.inc_fport, 2850a35bdd44SMichael Tuexen pcbinfo->ipi_hashmask); 2851a35bdd44SMichael Tuexen } 2852a35bdd44SMichael Tuexen while ((inp = inp_next(&inpi)) != NULL) 2853a35bdd44SMichael Tuexen if (inp->inp_gencnt == params->sop_id) { 285453af6903SGleb Smirnoff if (inp->inp_flags & INP_DROPPED) { 2855a35bdd44SMichael Tuexen INP_WUNLOCK(inp); 2856a35bdd44SMichael Tuexen return (ECONNRESET); 2857a35bdd44SMichael Tuexen } 2858a35bdd44SMichael Tuexen so = inp->inp_socket; 2859a35bdd44SMichael Tuexen KASSERT(so != NULL, ("inp_socket == NULL")); 2860a35bdd44SMichael Tuexen soref(so); 2861a35bdd44SMichael Tuexen error = (*ctloutput_set)(inp, &sopt); 2862a35bdd44SMichael Tuexen sorele(so); 2863a35bdd44SMichael Tuexen break; 2864a35bdd44SMichael Tuexen } 2865a35bdd44SMichael Tuexen if (inp == NULL) 2866a35bdd44SMichael Tuexen error = ESRCH; 2867a35bdd44SMichael Tuexen return (error); 2868a35bdd44SMichael Tuexen } 2869a35bdd44SMichael Tuexen 2870497057eeSRobert Watson #ifdef DDB 2871497057eeSRobert Watson static void 2872497057eeSRobert Watson db_print_indent(int indent) 2873497057eeSRobert Watson { 2874497057eeSRobert Watson int i; 2875497057eeSRobert Watson 2876497057eeSRobert Watson for (i = 0; i < indent; i++) 2877497057eeSRobert Watson db_printf(" "); 2878497057eeSRobert Watson } 2879497057eeSRobert Watson 2880497057eeSRobert Watson static void 2881497057eeSRobert Watson db_print_inconninfo(struct in_conninfo *inc, const char *name, int indent) 2882497057eeSRobert Watson { 2883497057eeSRobert Watson char faddr_str[48], laddr_str[48]; 2884497057eeSRobert Watson 2885497057eeSRobert Watson db_print_indent(indent); 2886497057eeSRobert Watson db_printf("%s at %p\n", name, inc); 2887497057eeSRobert Watson 2888497057eeSRobert Watson indent += 2; 2889497057eeSRobert Watson 289003dc38a4SRobert Watson #ifdef INET6 2891dcdb4371SBjoern A. Zeeb if (inc->inc_flags & INC_ISIPV6) { 2892497057eeSRobert Watson /* IPv6. */ 2893497057eeSRobert Watson ip6_sprintf(laddr_str, &inc->inc6_laddr); 2894497057eeSRobert Watson ip6_sprintf(faddr_str, &inc->inc6_faddr); 289583e521ecSBjoern A. Zeeb } else 289603dc38a4SRobert Watson #endif 289783e521ecSBjoern A. Zeeb { 2898497057eeSRobert Watson /* IPv4. */ 2899497057eeSRobert Watson inet_ntoa_r(inc->inc_laddr, laddr_str); 2900497057eeSRobert Watson inet_ntoa_r(inc->inc_faddr, faddr_str); 2901497057eeSRobert Watson } 2902497057eeSRobert Watson db_print_indent(indent); 2903497057eeSRobert Watson db_printf("inc_laddr %s inc_lport %u\n", laddr_str, 2904497057eeSRobert Watson ntohs(inc->inc_lport)); 2905497057eeSRobert Watson db_print_indent(indent); 2906497057eeSRobert Watson db_printf("inc_faddr %s inc_fport %u\n", faddr_str, 2907497057eeSRobert Watson ntohs(inc->inc_fport)); 2908497057eeSRobert Watson } 2909497057eeSRobert Watson 2910497057eeSRobert Watson static void 2911497057eeSRobert Watson db_print_inpflags(int inp_flags) 2912497057eeSRobert Watson { 2913497057eeSRobert Watson int comma; 2914497057eeSRobert Watson 2915497057eeSRobert Watson comma = 0; 2916497057eeSRobert Watson if (inp_flags & INP_RECVOPTS) { 2917497057eeSRobert Watson db_printf("%sINP_RECVOPTS", comma ? ", " : ""); 2918497057eeSRobert Watson comma = 1; 2919497057eeSRobert Watson } 2920497057eeSRobert Watson if (inp_flags & INP_RECVRETOPTS) { 2921497057eeSRobert Watson db_printf("%sINP_RECVRETOPTS", comma ? ", " : ""); 2922497057eeSRobert Watson comma = 1; 2923497057eeSRobert Watson } 2924497057eeSRobert Watson if (inp_flags & INP_RECVDSTADDR) { 2925497057eeSRobert Watson db_printf("%sINP_RECVDSTADDR", comma ? ", " : ""); 2926497057eeSRobert Watson comma = 1; 2927497057eeSRobert Watson } 2928dce33a45SErmal Luçi if (inp_flags & INP_ORIGDSTADDR) { 2929dce33a45SErmal Luçi db_printf("%sINP_ORIGDSTADDR", comma ? ", " : ""); 2930dce33a45SErmal Luçi comma = 1; 2931dce33a45SErmal Luçi } 2932497057eeSRobert Watson if (inp_flags & INP_HDRINCL) { 2933497057eeSRobert Watson db_printf("%sINP_HDRINCL", comma ? ", " : ""); 2934497057eeSRobert Watson comma = 1; 2935497057eeSRobert Watson } 2936497057eeSRobert Watson if (inp_flags & INP_HIGHPORT) { 2937497057eeSRobert Watson db_printf("%sINP_HIGHPORT", comma ? ", " : ""); 2938497057eeSRobert Watson comma = 1; 2939497057eeSRobert Watson } 2940497057eeSRobert Watson if (inp_flags & INP_LOWPORT) { 2941497057eeSRobert Watson db_printf("%sINP_LOWPORT", comma ? ", " : ""); 2942497057eeSRobert Watson comma = 1; 2943497057eeSRobert Watson } 2944497057eeSRobert Watson if (inp_flags & INP_ANONPORT) { 2945497057eeSRobert Watson db_printf("%sINP_ANONPORT", comma ? ", " : ""); 2946497057eeSRobert Watson comma = 1; 2947497057eeSRobert Watson } 2948497057eeSRobert Watson if (inp_flags & INP_RECVIF) { 2949497057eeSRobert Watson db_printf("%sINP_RECVIF", comma ? ", " : ""); 2950497057eeSRobert Watson comma = 1; 2951497057eeSRobert Watson } 2952497057eeSRobert Watson if (inp_flags & INP_MTUDISC) { 2953497057eeSRobert Watson db_printf("%sINP_MTUDISC", comma ? ", " : ""); 2954497057eeSRobert Watson comma = 1; 2955497057eeSRobert Watson } 2956497057eeSRobert Watson if (inp_flags & INP_RECVTTL) { 2957497057eeSRobert Watson db_printf("%sINP_RECVTTL", comma ? ", " : ""); 2958497057eeSRobert Watson comma = 1; 2959497057eeSRobert Watson } 2960497057eeSRobert Watson if (inp_flags & INP_DONTFRAG) { 2961497057eeSRobert Watson db_printf("%sINP_DONTFRAG", comma ? ", " : ""); 2962497057eeSRobert Watson comma = 1; 2963497057eeSRobert Watson } 29643cca425bSMichael Tuexen if (inp_flags & INP_RECVTOS) { 29653cca425bSMichael Tuexen db_printf("%sINP_RECVTOS", comma ? ", " : ""); 29663cca425bSMichael Tuexen comma = 1; 29673cca425bSMichael Tuexen } 2968497057eeSRobert Watson if (inp_flags & IN6P_IPV6_V6ONLY) { 2969497057eeSRobert Watson db_printf("%sIN6P_IPV6_V6ONLY", comma ? ", " : ""); 2970497057eeSRobert Watson comma = 1; 2971497057eeSRobert Watson } 2972497057eeSRobert Watson if (inp_flags & IN6P_PKTINFO) { 2973497057eeSRobert Watson db_printf("%sIN6P_PKTINFO", comma ? ", " : ""); 2974497057eeSRobert Watson comma = 1; 2975497057eeSRobert Watson } 2976497057eeSRobert Watson if (inp_flags & IN6P_HOPLIMIT) { 2977497057eeSRobert Watson db_printf("%sIN6P_HOPLIMIT", comma ? ", " : ""); 2978497057eeSRobert Watson comma = 1; 2979497057eeSRobert Watson } 2980497057eeSRobert Watson if (inp_flags & IN6P_HOPOPTS) { 2981497057eeSRobert Watson db_printf("%sIN6P_HOPOPTS", comma ? ", " : ""); 2982497057eeSRobert Watson comma = 1; 2983497057eeSRobert Watson } 2984497057eeSRobert Watson if (inp_flags & IN6P_DSTOPTS) { 2985497057eeSRobert Watson db_printf("%sIN6P_DSTOPTS", comma ? ", " : ""); 2986497057eeSRobert Watson comma = 1; 2987497057eeSRobert Watson } 2988497057eeSRobert Watson if (inp_flags & IN6P_RTHDR) { 2989497057eeSRobert Watson db_printf("%sIN6P_RTHDR", comma ? ", " : ""); 2990497057eeSRobert Watson comma = 1; 2991497057eeSRobert Watson } 2992497057eeSRobert Watson if (inp_flags & IN6P_RTHDRDSTOPTS) { 2993497057eeSRobert Watson db_printf("%sIN6P_RTHDRDSTOPTS", comma ? ", " : ""); 2994497057eeSRobert Watson comma = 1; 2995497057eeSRobert Watson } 2996497057eeSRobert Watson if (inp_flags & IN6P_TCLASS) { 2997497057eeSRobert Watson db_printf("%sIN6P_TCLASS", comma ? ", " : ""); 2998497057eeSRobert Watson comma = 1; 2999497057eeSRobert Watson } 3000497057eeSRobert Watson if (inp_flags & IN6P_AUTOFLOWLABEL) { 3001497057eeSRobert Watson db_printf("%sIN6P_AUTOFLOWLABEL", comma ? ", " : ""); 3002497057eeSRobert Watson comma = 1; 3003497057eeSRobert Watson } 3004ad71fe3cSRobert Watson if (inp_flags & INP_ONESBCAST) { 3005ad71fe3cSRobert Watson db_printf("%sINP_ONESBCAST", comma ? ", " : ""); 3006ad71fe3cSRobert Watson comma = 1; 3007ad71fe3cSRobert Watson } 3008ad71fe3cSRobert Watson if (inp_flags & INP_DROPPED) { 3009ad71fe3cSRobert Watson db_printf("%sINP_DROPPED", comma ? ", " : ""); 3010ad71fe3cSRobert Watson comma = 1; 3011ad71fe3cSRobert Watson } 3012ad71fe3cSRobert Watson if (inp_flags & INP_SOCKREF) { 3013ad71fe3cSRobert Watson db_printf("%sINP_SOCKREF", comma ? ", " : ""); 3014ad71fe3cSRobert Watson comma = 1; 3015ad71fe3cSRobert Watson } 3016497057eeSRobert Watson if (inp_flags & IN6P_RFC2292) { 3017497057eeSRobert Watson db_printf("%sIN6P_RFC2292", comma ? ", " : ""); 3018497057eeSRobert Watson comma = 1; 3019497057eeSRobert Watson } 3020497057eeSRobert Watson if (inp_flags & IN6P_MTU) { 3021497057eeSRobert Watson db_printf("IN6P_MTU%s", comma ? ", " : ""); 3022497057eeSRobert Watson comma = 1; 3023497057eeSRobert Watson } 3024497057eeSRobert Watson } 3025497057eeSRobert Watson 3026497057eeSRobert Watson static void 3027497057eeSRobert Watson db_print_inpvflag(u_char inp_vflag) 3028497057eeSRobert Watson { 3029497057eeSRobert Watson int comma; 3030497057eeSRobert Watson 3031497057eeSRobert Watson comma = 0; 3032497057eeSRobert Watson if (inp_vflag & INP_IPV4) { 3033497057eeSRobert Watson db_printf("%sINP_IPV4", comma ? ", " : ""); 3034497057eeSRobert Watson comma = 1; 3035497057eeSRobert Watson } 3036497057eeSRobert Watson if (inp_vflag & INP_IPV6) { 3037497057eeSRobert Watson db_printf("%sINP_IPV6", comma ? ", " : ""); 3038497057eeSRobert Watson comma = 1; 3039497057eeSRobert Watson } 3040497057eeSRobert Watson if (inp_vflag & INP_IPV6PROTO) { 3041497057eeSRobert Watson db_printf("%sINP_IPV6PROTO", comma ? ", " : ""); 3042497057eeSRobert Watson comma = 1; 3043497057eeSRobert Watson } 3044497057eeSRobert Watson } 3045497057eeSRobert Watson 30466d888973SRobert Watson static void 3047497057eeSRobert Watson db_print_inpcb(struct inpcb *inp, const char *name, int indent) 3048497057eeSRobert Watson { 3049497057eeSRobert Watson 3050497057eeSRobert Watson db_print_indent(indent); 3051497057eeSRobert Watson db_printf("%s at %p\n", name, inp); 3052497057eeSRobert Watson 3053497057eeSRobert Watson indent += 2; 3054497057eeSRobert Watson 3055497057eeSRobert Watson db_print_indent(indent); 3056497057eeSRobert Watson db_printf("inp_flow: 0x%x\n", inp->inp_flow); 3057497057eeSRobert Watson 3058497057eeSRobert Watson db_print_inconninfo(&inp->inp_inc, "inp_conninfo", indent); 3059497057eeSRobert Watson 3060497057eeSRobert Watson db_print_indent(indent); 3061497057eeSRobert Watson db_printf("inp_ppcb: %p inp_pcbinfo: %p inp_socket: %p\n", 3062497057eeSRobert Watson inp->inp_ppcb, inp->inp_pcbinfo, inp->inp_socket); 3063497057eeSRobert Watson 3064497057eeSRobert Watson db_print_indent(indent); 3065497057eeSRobert Watson db_printf("inp_label: %p inp_flags: 0x%x (", 3066497057eeSRobert Watson inp->inp_label, inp->inp_flags); 3067497057eeSRobert Watson db_print_inpflags(inp->inp_flags); 3068497057eeSRobert Watson db_printf(")\n"); 3069497057eeSRobert Watson 3070497057eeSRobert Watson db_print_indent(indent); 3071497057eeSRobert Watson db_printf("inp_sp: %p inp_vflag: 0x%x (", inp->inp_sp, 3072497057eeSRobert Watson inp->inp_vflag); 3073497057eeSRobert Watson db_print_inpvflag(inp->inp_vflag); 3074497057eeSRobert Watson db_printf(")\n"); 3075497057eeSRobert Watson 3076497057eeSRobert Watson db_print_indent(indent); 3077497057eeSRobert Watson db_printf("inp_ip_ttl: %d inp_ip_p: %d inp_ip_minttl: %d\n", 3078497057eeSRobert Watson inp->inp_ip_ttl, inp->inp_ip_p, inp->inp_ip_minttl); 3079497057eeSRobert Watson 3080497057eeSRobert Watson db_print_indent(indent); 3081497057eeSRobert Watson #ifdef INET6 3082497057eeSRobert Watson if (inp->inp_vflag & INP_IPV6) { 3083497057eeSRobert Watson db_printf("in6p_options: %p in6p_outputopts: %p " 3084497057eeSRobert Watson "in6p_moptions: %p\n", inp->in6p_options, 3085497057eeSRobert Watson inp->in6p_outputopts, inp->in6p_moptions); 3086497057eeSRobert Watson db_printf("in6p_icmp6filt: %p in6p_cksum %d " 3087497057eeSRobert Watson "in6p_hops %u\n", inp->in6p_icmp6filt, inp->in6p_cksum, 3088497057eeSRobert Watson inp->in6p_hops); 3089497057eeSRobert Watson } else 3090497057eeSRobert Watson #endif 3091497057eeSRobert Watson { 3092497057eeSRobert Watson db_printf("inp_ip_tos: %d inp_ip_options: %p " 3093497057eeSRobert Watson "inp_ip_moptions: %p\n", inp->inp_ip_tos, 3094497057eeSRobert Watson inp->inp_options, inp->inp_moptions); 3095497057eeSRobert Watson } 3096497057eeSRobert Watson 3097497057eeSRobert Watson db_print_indent(indent); 3098497057eeSRobert Watson db_printf("inp_phd: %p inp_gencnt: %ju\n", inp->inp_phd, 3099497057eeSRobert Watson (uintmax_t)inp->inp_gencnt); 3100497057eeSRobert Watson } 3101497057eeSRobert Watson 3102497057eeSRobert Watson DB_SHOW_COMMAND(inpcb, db_show_inpcb) 3103497057eeSRobert Watson { 3104497057eeSRobert Watson struct inpcb *inp; 3105497057eeSRobert Watson 3106497057eeSRobert Watson if (!have_addr) { 3107497057eeSRobert Watson db_printf("usage: show inpcb <addr>\n"); 3108497057eeSRobert Watson return; 3109497057eeSRobert Watson } 3110497057eeSRobert Watson inp = (struct inpcb *)addr; 3111497057eeSRobert Watson 3112497057eeSRobert Watson db_print_inpcb(inp, "inpcb", 0); 3113497057eeSRobert Watson } 311483e521ecSBjoern A. Zeeb #endif /* DDB */ 3115f3e7afe2SHans Petter Selasky 3116f3e7afe2SHans Petter Selasky #ifdef RATELIMIT 3117f3e7afe2SHans Petter Selasky /* 3118f3e7afe2SHans Petter Selasky * Modify TX rate limit based on the existing "inp->inp_snd_tag", 3119f3e7afe2SHans Petter Selasky * if any. 3120f3e7afe2SHans Petter Selasky */ 3121f3e7afe2SHans Petter Selasky int 3122f3e7afe2SHans Petter Selasky in_pcbmodify_txrtlmt(struct inpcb *inp, uint32_t max_pacing_rate) 3123f3e7afe2SHans Petter Selasky { 3124f3e7afe2SHans Petter Selasky union if_snd_tag_modify_params params = { 3125f3e7afe2SHans Petter Selasky .rate_limit.max_rate = max_pacing_rate, 312620abea66SRandall Stewart .rate_limit.flags = M_NOWAIT, 3127f3e7afe2SHans Petter Selasky }; 3128f3e7afe2SHans Petter Selasky struct m_snd_tag *mst; 3129f3e7afe2SHans Petter Selasky int error; 3130f3e7afe2SHans Petter Selasky 3131f3e7afe2SHans Petter Selasky mst = inp->inp_snd_tag; 3132f3e7afe2SHans Petter Selasky if (mst == NULL) 3133f3e7afe2SHans Petter Selasky return (EINVAL); 3134f3e7afe2SHans Petter Selasky 3135c782ea8bSJohn Baldwin if (mst->sw->snd_tag_modify == NULL) { 3136f3e7afe2SHans Petter Selasky error = EOPNOTSUPP; 3137f3e7afe2SHans Petter Selasky } else { 3138c782ea8bSJohn Baldwin error = mst->sw->snd_tag_modify(mst, ¶ms); 3139f3e7afe2SHans Petter Selasky } 3140f3e7afe2SHans Petter Selasky return (error); 3141f3e7afe2SHans Petter Selasky } 3142f3e7afe2SHans Petter Selasky 3143f3e7afe2SHans Petter Selasky /* 3144f3e7afe2SHans Petter Selasky * Query existing TX rate limit based on the existing 3145f3e7afe2SHans Petter Selasky * "inp->inp_snd_tag", if any. 3146f3e7afe2SHans Petter Selasky */ 3147f3e7afe2SHans Petter Selasky int 3148f3e7afe2SHans Petter Selasky in_pcbquery_txrtlmt(struct inpcb *inp, uint32_t *p_max_pacing_rate) 3149f3e7afe2SHans Petter Selasky { 3150f3e7afe2SHans Petter Selasky union if_snd_tag_query_params params = { }; 3151f3e7afe2SHans Petter Selasky struct m_snd_tag *mst; 3152f3e7afe2SHans Petter Selasky int error; 3153f3e7afe2SHans Petter Selasky 3154f3e7afe2SHans Petter Selasky mst = inp->inp_snd_tag; 3155f3e7afe2SHans Petter Selasky if (mst == NULL) 3156f3e7afe2SHans Petter Selasky return (EINVAL); 3157f3e7afe2SHans Petter Selasky 3158c782ea8bSJohn Baldwin if (mst->sw->snd_tag_query == NULL) { 3159f3e7afe2SHans Petter Selasky error = EOPNOTSUPP; 3160f3e7afe2SHans Petter Selasky } else { 3161c782ea8bSJohn Baldwin error = mst->sw->snd_tag_query(mst, ¶ms); 3162f3e7afe2SHans Petter Selasky if (error == 0 && p_max_pacing_rate != NULL) 3163f3e7afe2SHans Petter Selasky *p_max_pacing_rate = params.rate_limit.max_rate; 3164f3e7afe2SHans Petter Selasky } 3165f3e7afe2SHans Petter Selasky return (error); 3166f3e7afe2SHans Petter Selasky } 3167f3e7afe2SHans Petter Selasky 3168f3e7afe2SHans Petter Selasky /* 316995ed5015SHans Petter Selasky * Query existing TX queue level based on the existing 317095ed5015SHans Petter Selasky * "inp->inp_snd_tag", if any. 317195ed5015SHans Petter Selasky */ 317295ed5015SHans Petter Selasky int 317395ed5015SHans Petter Selasky in_pcbquery_txrlevel(struct inpcb *inp, uint32_t *p_txqueue_level) 317495ed5015SHans Petter Selasky { 317595ed5015SHans Petter Selasky union if_snd_tag_query_params params = { }; 317695ed5015SHans Petter Selasky struct m_snd_tag *mst; 317795ed5015SHans Petter Selasky int error; 317895ed5015SHans Petter Selasky 317995ed5015SHans Petter Selasky mst = inp->inp_snd_tag; 318095ed5015SHans Petter Selasky if (mst == NULL) 318195ed5015SHans Petter Selasky return (EINVAL); 318295ed5015SHans Petter Selasky 3183c782ea8bSJohn Baldwin if (mst->sw->snd_tag_query == NULL) 318495ed5015SHans Petter Selasky return (EOPNOTSUPP); 318595ed5015SHans Petter Selasky 3186c782ea8bSJohn Baldwin error = mst->sw->snd_tag_query(mst, ¶ms); 318795ed5015SHans Petter Selasky if (error == 0 && p_txqueue_level != NULL) 318895ed5015SHans Petter Selasky *p_txqueue_level = params.rate_limit.queue_level; 318995ed5015SHans Petter Selasky return (error); 319095ed5015SHans Petter Selasky } 319195ed5015SHans Petter Selasky 319295ed5015SHans Petter Selasky /* 3193f3e7afe2SHans Petter Selasky * Allocate a new TX rate limit send tag from the network interface 3194f3e7afe2SHans Petter Selasky * given by the "ifp" argument and save it in "inp->inp_snd_tag": 3195f3e7afe2SHans Petter Selasky */ 3196f3e7afe2SHans Petter Selasky int 3197f3e7afe2SHans Petter Selasky in_pcbattach_txrtlmt(struct inpcb *inp, struct ifnet *ifp, 319820abea66SRandall Stewart uint32_t flowtype, uint32_t flowid, uint32_t max_pacing_rate, struct m_snd_tag **st) 319920abea66SRandall Stewart 3200f3e7afe2SHans Petter Selasky { 3201f3e7afe2SHans Petter Selasky union if_snd_tag_alloc_params params = { 320295ed5015SHans Petter Selasky .rate_limit.hdr.type = (max_pacing_rate == -1U) ? 320395ed5015SHans Petter Selasky IF_SND_TAG_TYPE_UNLIMITED : IF_SND_TAG_TYPE_RATE_LIMIT, 3204f3e7afe2SHans Petter Selasky .rate_limit.hdr.flowid = flowid, 3205f3e7afe2SHans Petter Selasky .rate_limit.hdr.flowtype = flowtype, 320698085baeSAndrew Gallatin .rate_limit.hdr.numa_domain = inp->inp_numa_domain, 3207f3e7afe2SHans Petter Selasky .rate_limit.max_rate = max_pacing_rate, 320820abea66SRandall Stewart .rate_limit.flags = M_NOWAIT, 3209f3e7afe2SHans Petter Selasky }; 3210f3e7afe2SHans Petter Selasky int error; 3211f3e7afe2SHans Petter Selasky 3212f3e7afe2SHans Petter Selasky INP_WLOCK_ASSERT(inp); 3213f3e7afe2SHans Petter Selasky 321485d8d30fSHans Petter Selasky /* 321585d8d30fSHans Petter Selasky * If there is already a send tag, or the INP is being torn 321685d8d30fSHans Petter Selasky * down, allocating a new send tag is not allowed. Else send 321785d8d30fSHans Petter Selasky * tags may leak. 321885d8d30fSHans Petter Selasky */ 321953af6903SGleb Smirnoff if (*st != NULL || (inp->inp_flags & INP_DROPPED) != 0) 3220f3e7afe2SHans Petter Selasky return (EINVAL); 3221f3e7afe2SHans Petter Selasky 322236e0a362SJohn Baldwin error = m_snd_tag_alloc(ifp, ¶ms, st); 3223903c4ee6SXin LI #ifdef INET 322420abea66SRandall Stewart if (error == 0) { 322520abea66SRandall Stewart counter_u64_add(rate_limit_set_ok, 1); 322620abea66SRandall Stewart counter_u64_add(rate_limit_active, 1); 322736e0a362SJohn Baldwin } else if (error != EOPNOTSUPP) 322820abea66SRandall Stewart counter_u64_add(rate_limit_alloc_fail, 1); 3229903c4ee6SXin LI #endif 3230f3e7afe2SHans Petter Selasky return (error); 3231f3e7afe2SHans Petter Selasky } 3232f3e7afe2SHans Petter Selasky 323320abea66SRandall Stewart void 323498d7a8d9SJohn Baldwin in_pcbdetach_tag(struct m_snd_tag *mst) 323520abea66SRandall Stewart { 323620abea66SRandall Stewart 323798d7a8d9SJohn Baldwin m_snd_tag_rele(mst); 3238903c4ee6SXin LI #ifdef INET 323920abea66SRandall Stewart counter_u64_add(rate_limit_active, -1); 3240903c4ee6SXin LI #endif 324120abea66SRandall Stewart } 324220abea66SRandall Stewart 3243f3e7afe2SHans Petter Selasky /* 3244f3e7afe2SHans Petter Selasky * Free an existing TX rate limit tag based on the "inp->inp_snd_tag", 3245f3e7afe2SHans Petter Selasky * if any: 3246f3e7afe2SHans Petter Selasky */ 3247f3e7afe2SHans Petter Selasky void 3248f3e7afe2SHans Petter Selasky in_pcbdetach_txrtlmt(struct inpcb *inp) 3249f3e7afe2SHans Petter Selasky { 3250f3e7afe2SHans Petter Selasky struct m_snd_tag *mst; 3251f3e7afe2SHans Petter Selasky 3252f3e7afe2SHans Petter Selasky INP_WLOCK_ASSERT(inp); 3253f3e7afe2SHans Petter Selasky 3254f3e7afe2SHans Petter Selasky mst = inp->inp_snd_tag; 3255f3e7afe2SHans Petter Selasky inp->inp_snd_tag = NULL; 3256f3e7afe2SHans Petter Selasky 3257f3e7afe2SHans Petter Selasky if (mst == NULL) 3258f3e7afe2SHans Petter Selasky return; 3259f3e7afe2SHans Petter Selasky 3260fb3bc596SJohn Baldwin m_snd_tag_rele(mst); 3261093e7231SHans Petter Selasky #ifdef INET 3262093e7231SHans Petter Selasky counter_u64_add(rate_limit_active, -1); 3263093e7231SHans Petter Selasky #endif 3264f3e7afe2SHans Petter Selasky } 3265f3e7afe2SHans Petter Selasky 326620abea66SRandall Stewart int 326720abea66SRandall Stewart in_pcboutput_txrtlmt_locked(struct inpcb *inp, struct ifnet *ifp, struct mbuf *mb, uint32_t max_pacing_rate) 326820abea66SRandall Stewart { 326920abea66SRandall Stewart int error; 327020abea66SRandall Stewart 327120abea66SRandall Stewart /* 327220abea66SRandall Stewart * If the existing send tag is for the wrong interface due to 327320abea66SRandall Stewart * a route change, first drop the existing tag. Set the 327420abea66SRandall Stewart * CHANGED flag so that we will keep trying to allocate a new 327520abea66SRandall Stewart * tag if we fail to allocate one this time. 327620abea66SRandall Stewart */ 327720abea66SRandall Stewart if (inp->inp_snd_tag != NULL && inp->inp_snd_tag->ifp != ifp) { 327820abea66SRandall Stewart in_pcbdetach_txrtlmt(inp); 327920abea66SRandall Stewart inp->inp_flags2 |= INP_RATE_LIMIT_CHANGED; 328020abea66SRandall Stewart } 328120abea66SRandall Stewart 328220abea66SRandall Stewart /* 328320abea66SRandall Stewart * NOTE: When attaching to a network interface a reference is 328420abea66SRandall Stewart * made to ensure the network interface doesn't go away until 328520abea66SRandall Stewart * all ratelimit connections are gone. The network interface 328620abea66SRandall Stewart * pointers compared below represent valid network interfaces, 328720abea66SRandall Stewart * except when comparing towards NULL. 328820abea66SRandall Stewart */ 328920abea66SRandall Stewart if (max_pacing_rate == 0 && inp->inp_snd_tag == NULL) { 329020abea66SRandall Stewart error = 0; 329120abea66SRandall Stewart } else if (!(ifp->if_capenable & IFCAP_TXRTLMT)) { 329220abea66SRandall Stewart if (inp->inp_snd_tag != NULL) 329320abea66SRandall Stewart in_pcbdetach_txrtlmt(inp); 329420abea66SRandall Stewart error = 0; 329520abea66SRandall Stewart } else if (inp->inp_snd_tag == NULL) { 329620abea66SRandall Stewart /* 329720abea66SRandall Stewart * In order to utilize packet pacing with RSS, we need 329820abea66SRandall Stewart * to wait until there is a valid RSS hash before we 329920abea66SRandall Stewart * can proceed: 330020abea66SRandall Stewart */ 330120abea66SRandall Stewart if (M_HASHTYPE_GET(mb) == M_HASHTYPE_NONE) { 330220abea66SRandall Stewart error = EAGAIN; 330320abea66SRandall Stewart } else { 330420abea66SRandall Stewart error = in_pcbattach_txrtlmt(inp, ifp, M_HASHTYPE_GET(mb), 330520abea66SRandall Stewart mb->m_pkthdr.flowid, max_pacing_rate, &inp->inp_snd_tag); 330620abea66SRandall Stewart } 330720abea66SRandall Stewart } else { 330820abea66SRandall Stewart error = in_pcbmodify_txrtlmt(inp, max_pacing_rate); 330920abea66SRandall Stewart } 331020abea66SRandall Stewart if (error == 0 || error == EOPNOTSUPP) 331120abea66SRandall Stewart inp->inp_flags2 &= ~INP_RATE_LIMIT_CHANGED; 331220abea66SRandall Stewart 331320abea66SRandall Stewart return (error); 331420abea66SRandall Stewart } 331520abea66SRandall Stewart 3316f3e7afe2SHans Petter Selasky /* 3317f3e7afe2SHans Petter Selasky * This function should be called when the INP_RATE_LIMIT_CHANGED flag 3318f3e7afe2SHans Petter Selasky * is set in the fast path and will attach/detach/modify the TX rate 3319f3e7afe2SHans Petter Selasky * limit send tag based on the socket's so_max_pacing_rate value. 3320f3e7afe2SHans Petter Selasky */ 3321f3e7afe2SHans Petter Selasky void 3322f3e7afe2SHans Petter Selasky in_pcboutput_txrtlmt(struct inpcb *inp, struct ifnet *ifp, struct mbuf *mb) 3323f3e7afe2SHans Petter Selasky { 3324f3e7afe2SHans Petter Selasky struct socket *socket; 3325f3e7afe2SHans Petter Selasky uint32_t max_pacing_rate; 3326f3e7afe2SHans Petter Selasky bool did_upgrade; 3327f3e7afe2SHans Petter Selasky 3328f3e7afe2SHans Petter Selasky if (inp == NULL) 3329f3e7afe2SHans Petter Selasky return; 3330f3e7afe2SHans Petter Selasky 3331f3e7afe2SHans Petter Selasky socket = inp->inp_socket; 3332f3e7afe2SHans Petter Selasky if (socket == NULL) 3333f3e7afe2SHans Petter Selasky return; 3334f3e7afe2SHans Petter Selasky 3335f3e7afe2SHans Petter Selasky if (!INP_WLOCKED(inp)) { 3336f3e7afe2SHans Petter Selasky /* 3337f3e7afe2SHans Petter Selasky * NOTE: If the write locking fails, we need to bail 3338f3e7afe2SHans Petter Selasky * out and use the non-ratelimited ring for the 3339f3e7afe2SHans Petter Selasky * transmit until there is a new chance to get the 3340f3e7afe2SHans Petter Selasky * write lock. 3341f3e7afe2SHans Petter Selasky */ 3342f3e7afe2SHans Petter Selasky if (!INP_TRY_UPGRADE(inp)) 3343f3e7afe2SHans Petter Selasky return; 3344f3e7afe2SHans Petter Selasky did_upgrade = 1; 3345f3e7afe2SHans Petter Selasky } else { 3346f3e7afe2SHans Petter Selasky did_upgrade = 0; 3347f3e7afe2SHans Petter Selasky } 3348f3e7afe2SHans Petter Selasky 3349f3e7afe2SHans Petter Selasky /* 3350f3e7afe2SHans Petter Selasky * NOTE: The so_max_pacing_rate value is read unlocked, 3351f3e7afe2SHans Petter Selasky * because atomic updates are not required since the variable 3352f3e7afe2SHans Petter Selasky * is checked at every mbuf we send. It is assumed that the 3353f3e7afe2SHans Petter Selasky * variable read itself will be atomic. 3354f3e7afe2SHans Petter Selasky */ 3355f3e7afe2SHans Petter Selasky max_pacing_rate = socket->so_max_pacing_rate; 3356f3e7afe2SHans Petter Selasky 3357bab34d63SJohn Baldwin in_pcboutput_txrtlmt_locked(inp, ifp, mb, max_pacing_rate); 3358fb3bc596SJohn Baldwin 3359f3e7afe2SHans Petter Selasky if (did_upgrade) 3360f3e7afe2SHans Petter Selasky INP_DOWNGRADE(inp); 3361f3e7afe2SHans Petter Selasky } 3362f3e7afe2SHans Petter Selasky 3363f3e7afe2SHans Petter Selasky /* 3364f3e7afe2SHans Petter Selasky * Track route changes for TX rate limiting. 3365f3e7afe2SHans Petter Selasky */ 3366f3e7afe2SHans Petter Selasky void 3367f3e7afe2SHans Petter Selasky in_pcboutput_eagain(struct inpcb *inp) 3368f3e7afe2SHans Petter Selasky { 3369f3e7afe2SHans Petter Selasky bool did_upgrade; 3370f3e7afe2SHans Petter Selasky 3371f3e7afe2SHans Petter Selasky if (inp == NULL) 3372f3e7afe2SHans Petter Selasky return; 3373f3e7afe2SHans Petter Selasky 3374f3e7afe2SHans Petter Selasky if (inp->inp_snd_tag == NULL) 3375f3e7afe2SHans Petter Selasky return; 3376f3e7afe2SHans Petter Selasky 3377f3e7afe2SHans Petter Selasky if (!INP_WLOCKED(inp)) { 3378f3e7afe2SHans Petter Selasky /* 3379f3e7afe2SHans Petter Selasky * NOTE: If the write locking fails, we need to bail 3380f3e7afe2SHans Petter Selasky * out and use the non-ratelimited ring for the 3381f3e7afe2SHans Petter Selasky * transmit until there is a new chance to get the 3382f3e7afe2SHans Petter Selasky * write lock. 3383f3e7afe2SHans Petter Selasky */ 3384f3e7afe2SHans Petter Selasky if (!INP_TRY_UPGRADE(inp)) 3385f3e7afe2SHans Petter Selasky return; 3386f3e7afe2SHans Petter Selasky did_upgrade = 1; 3387f3e7afe2SHans Petter Selasky } else { 3388f3e7afe2SHans Petter Selasky did_upgrade = 0; 3389f3e7afe2SHans Petter Selasky } 3390f3e7afe2SHans Petter Selasky 3391f3e7afe2SHans Petter Selasky /* detach rate limiting */ 3392f3e7afe2SHans Petter Selasky in_pcbdetach_txrtlmt(inp); 3393f3e7afe2SHans Petter Selasky 3394f3e7afe2SHans Petter Selasky /* make sure new mbuf send tag allocation is made */ 3395f3e7afe2SHans Petter Selasky inp->inp_flags2 |= INP_RATE_LIMIT_CHANGED; 3396f3e7afe2SHans Petter Selasky 3397f3e7afe2SHans Petter Selasky if (did_upgrade) 3398f3e7afe2SHans Petter Selasky INP_DOWNGRADE(inp); 3399f3e7afe2SHans Petter Selasky } 340020abea66SRandall Stewart 3401903c4ee6SXin LI #ifdef INET 340220abea66SRandall Stewart static void 340320abea66SRandall Stewart rl_init(void *st) 340420abea66SRandall Stewart { 34051a714ff2SRandall Stewart rate_limit_new = counter_u64_alloc(M_WAITOK); 34061a714ff2SRandall Stewart rate_limit_chg = counter_u64_alloc(M_WAITOK); 340720abea66SRandall Stewart rate_limit_active = counter_u64_alloc(M_WAITOK); 340820abea66SRandall Stewart rate_limit_alloc_fail = counter_u64_alloc(M_WAITOK); 340920abea66SRandall Stewart rate_limit_set_ok = counter_u64_alloc(M_WAITOK); 341020abea66SRandall Stewart } 341120abea66SRandall Stewart 341220abea66SRandall Stewart SYSINIT(rl, SI_SUB_PROTO_DOMAININIT, SI_ORDER_ANY, rl_init, NULL); 3413903c4ee6SXin LI #endif 3414f3e7afe2SHans Petter Selasky #endif /* RATELIMIT */ 3415