13b0b41e6SRandall Stewart /*- 23b0b41e6SRandall Stewart * Copyright (c) 2016-2018 33b0b41e6SRandall Stewart * Netflix Inc. 43b0b41e6SRandall Stewart * All rights reserved. 53b0b41e6SRandall Stewart * 63b0b41e6SRandall Stewart * Redistribution and use in source and binary forms, with or without 73b0b41e6SRandall Stewart * modification, are permitted provided that the following conditions 83b0b41e6SRandall Stewart * are met: 93b0b41e6SRandall Stewart * 1. Redistributions of source code must retain the above copyright 103b0b41e6SRandall Stewart * notice, this list of conditions and the following disclaimer. 113b0b41e6SRandall Stewart * 2. Redistributions in binary form must reproduce the above copyright 123b0b41e6SRandall Stewart * notice, this list of conditions and the following disclaimer in the 133b0b41e6SRandall Stewart * documentation and/or other materials provided with the distribution. 143b0b41e6SRandall Stewart * 153b0b41e6SRandall Stewart * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 163b0b41e6SRandall Stewart * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 173b0b41e6SRandall Stewart * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 183b0b41e6SRandall Stewart * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 193b0b41e6SRandall Stewart * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 203b0b41e6SRandall Stewart * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 213b0b41e6SRandall Stewart * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 223b0b41e6SRandall Stewart * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 233b0b41e6SRandall Stewart * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 243b0b41e6SRandall Stewart * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 253b0b41e6SRandall Stewart * SUCH DAMAGE. 263b0b41e6SRandall Stewart * 273b0b41e6SRandall Stewart */ 283b0b41e6SRandall Stewart /* 293b0b41e6SRandall Stewart * Author: Randall Stewart <rrs@netflix.com> 303b0b41e6SRandall Stewart * This work is based on the ACM Queue paper 313b0b41e6SRandall Stewart * BBR - Congestion Based Congestion Control 323b0b41e6SRandall Stewart * and also numerous discussions with Neal, Yuchung and Van. 333b0b41e6SRandall Stewart */ 343b0b41e6SRandall Stewart 353b0b41e6SRandall Stewart #include <sys/cdefs.h> 363b0b41e6SRandall Stewart __FBSDID("$FreeBSD$"); 373b0b41e6SRandall Stewart 383b0b41e6SRandall Stewart #include "opt_inet.h" 393b0b41e6SRandall Stewart #include "opt_inet6.h" 403b0b41e6SRandall Stewart #include "opt_ipsec.h" 413b0b41e6SRandall Stewart #include "opt_tcpdebug.h" 423b0b41e6SRandall Stewart #include "opt_ratelimit.h" 433b0b41e6SRandall Stewart /*#include "opt_kern_tls.h"*/ 443b0b41e6SRandall Stewart #include <sys/param.h> 453b0b41e6SRandall Stewart #include <sys/module.h> 463b0b41e6SRandall Stewart #include <sys/kernel.h> 473b0b41e6SRandall Stewart #ifdef TCP_HHOOK 483b0b41e6SRandall Stewart #include <sys/hhook.h> 493b0b41e6SRandall Stewart #endif 503b0b41e6SRandall Stewart #include <sys/malloc.h> 513b0b41e6SRandall Stewart #include <sys/mbuf.h> 523b0b41e6SRandall Stewart #include <sys/proc.h> 533b0b41e6SRandall Stewart #include <sys/socket.h> 543b0b41e6SRandall Stewart #include <sys/socketvar.h> 553b0b41e6SRandall Stewart #ifdef KERN_TLS 563b0b41e6SRandall Stewart #include <sys/sockbuf_tls.h> 573b0b41e6SRandall Stewart #endif 583b0b41e6SRandall Stewart #include <sys/sysctl.h> 593b0b41e6SRandall Stewart #include <sys/systm.h> 603b0b41e6SRandall Stewart #include <sys/tree.h> 613b0b41e6SRandall Stewart #include <sys/refcount.h> 623b0b41e6SRandall Stewart #include <sys/queue.h> 633b0b41e6SRandall Stewart #include <sys/smp.h> 643b0b41e6SRandall Stewart #include <sys/kthread.h> 653b0b41e6SRandall Stewart #include <sys/lock.h> 663b0b41e6SRandall Stewart #include <sys/mutex.h> 673b0b41e6SRandall Stewart #include <sys/time.h> 683b0b41e6SRandall Stewart #include <vm/uma.h> 693b0b41e6SRandall Stewart #include <sys/kern_prefetch.h> 703b0b41e6SRandall Stewart 713b0b41e6SRandall Stewart #include <net/route.h> 723b0b41e6SRandall Stewart #include <net/vnet.h> 733b0b41e6SRandall Stewart #include <net/ethernet.h> 743b0b41e6SRandall Stewart #include <net/bpf.h> 753b0b41e6SRandall Stewart 763b0b41e6SRandall Stewart #define TCPSTATES /* for logging */ 773b0b41e6SRandall Stewart 783b0b41e6SRandall Stewart #include <netinet/in.h> 793b0b41e6SRandall Stewart #include <netinet/in_kdtrace.h> 803b0b41e6SRandall Stewart #include <netinet/in_pcb.h> 813b0b41e6SRandall Stewart #include <netinet/ip.h> 823b0b41e6SRandall Stewart #include <netinet/ip_icmp.h> /* required for icmp_var.h */ 833b0b41e6SRandall Stewart #include <netinet/icmp_var.h> /* for ICMP_BANDLIM */ 843b0b41e6SRandall Stewart #include <netinet/ip_var.h> 853b0b41e6SRandall Stewart #include <netinet/ip6.h> 863b0b41e6SRandall Stewart #include <netinet6/in6_pcb.h> 873b0b41e6SRandall Stewart #include <netinet6/ip6_var.h> 883b0b41e6SRandall Stewart #include <netinet/tcp.h> 893b0b41e6SRandall Stewart #include <netinet/tcp_fsm.h> 903b0b41e6SRandall Stewart #include <netinet/tcp_seq.h> 913b0b41e6SRandall Stewart #include <netinet/tcp_timer.h> 923b0b41e6SRandall Stewart #include <netinet/tcp_var.h> 933b0b41e6SRandall Stewart #include <netinet/tcpip.h> 943b0b41e6SRandall Stewart #include <netinet/tcp_hpts.h> 953b0b41e6SRandall Stewart #include <netinet/cc/cc.h> 963b0b41e6SRandall Stewart #include <netinet/tcp_log_buf.h> 973b0b41e6SRandall Stewart #ifdef TCPDEBUG 983b0b41e6SRandall Stewart #include <netinet/tcp_debug.h> 993b0b41e6SRandall Stewart #endif /* TCPDEBUG */ 1003b0b41e6SRandall Stewart #ifdef TCP_OFFLOAD 1013b0b41e6SRandall Stewart #include <netinet/tcp_offload.h> 1023b0b41e6SRandall Stewart #endif 1033b0b41e6SRandall Stewart #ifdef INET6 1043b0b41e6SRandall Stewart #include <netinet6/tcp6_var.h> 1053b0b41e6SRandall Stewart #endif 1063b0b41e6SRandall Stewart #include <netinet/tcp_fastopen.h> 1073b0b41e6SRandall Stewart 1083b0b41e6SRandall Stewart #include <netipsec/ipsec_support.h> 1093b0b41e6SRandall Stewart #include <net/if.h> 1103b0b41e6SRandall Stewart #include <net/if_var.h> 1113b0b41e6SRandall Stewart 1123b0b41e6SRandall Stewart #if defined(IPSEC) || defined(IPSEC_SUPPORT) 1133b0b41e6SRandall Stewart #include <netipsec/ipsec.h> 1143b0b41e6SRandall Stewart #include <netipsec/ipsec6.h> 1153b0b41e6SRandall Stewart #endif /* IPSEC */ 1163b0b41e6SRandall Stewart 1173b0b41e6SRandall Stewart #include <netinet/udp.h> 1183b0b41e6SRandall Stewart #include <netinet/udp_var.h> 1193b0b41e6SRandall Stewart #include <machine/in_cksum.h> 1203b0b41e6SRandall Stewart 1213b0b41e6SRandall Stewart #ifdef MAC 1223b0b41e6SRandall Stewart #include <security/mac/mac_framework.h> 1233b0b41e6SRandall Stewart #endif 1243b0b41e6SRandall Stewart #include "rack_bbr_common.h" 1253b0b41e6SRandall Stewart 1263b0b41e6SRandall Stewart /* 1273b0b41e6SRandall Stewart * Common TCP Functions - These are shared by borth 1283b0b41e6SRandall Stewart * rack and BBR. 1293b0b41e6SRandall Stewart */ 1303b0b41e6SRandall Stewart 1313b0b41e6SRandall Stewart 1323b0b41e6SRandall Stewart #ifdef KERN_TLS 1333b0b41e6SRandall Stewart uint32_t 1343b0b41e6SRandall Stewart ctf_get_opt_tls_size(struct socket *so, uint32_t rwnd) 1353b0b41e6SRandall Stewart { 1363b0b41e6SRandall Stewart struct sbtls_info *tls; 1373b0b41e6SRandall Stewart uint32_t len; 1383b0b41e6SRandall Stewart 1393b0b41e6SRandall Stewart again: 1403b0b41e6SRandall Stewart tls = so->so_snd.sb_tls_info; 1413b0b41e6SRandall Stewart len = tls->sb_params.sb_maxlen; /* max tls payload */ 1423b0b41e6SRandall Stewart len += tls->sb_params.sb_tls_hlen; /* tls header len */ 1433b0b41e6SRandall Stewart len += tls->sb_params.sb_tls_tlen; /* tls trailer len */ 1443b0b41e6SRandall Stewart if ((len * 4) > rwnd) { 1453b0b41e6SRandall Stewart /* 1463b0b41e6SRandall Stewart * Stroke this will suck counter and what 1473b0b41e6SRandall Stewart * else should we do Drew? From the 1483b0b41e6SRandall Stewart * TCP perspective I am not sure 1493b0b41e6SRandall Stewart * what should be done... 1503b0b41e6SRandall Stewart */ 1513b0b41e6SRandall Stewart if (tls->sb_params.sb_maxlen > 4096) { 1523b0b41e6SRandall Stewart tls->sb_params.sb_maxlen -= 4096; 1533b0b41e6SRandall Stewart if (tls->sb_params.sb_maxlen < 4096) 1543b0b41e6SRandall Stewart tls->sb_params.sb_maxlen = 4096; 1553b0b41e6SRandall Stewart goto again; 1563b0b41e6SRandall Stewart } 1573b0b41e6SRandall Stewart } 1583b0b41e6SRandall Stewart return (len); 1593b0b41e6SRandall Stewart } 1603b0b41e6SRandall Stewart #endif 1613b0b41e6SRandall Stewart 162*e57b2d0eSRandall Stewart 163*e57b2d0eSRandall Stewart /* 164*e57b2d0eSRandall Stewart * The function ctf_process_inbound_raw() is used by 165*e57b2d0eSRandall Stewart * transport developers to do the steps needed to 166*e57b2d0eSRandall Stewart * support MBUF Queuing i.e. the flags in 167*e57b2d0eSRandall Stewart * inp->inp_flags2: 168*e57b2d0eSRandall Stewart * 169*e57b2d0eSRandall Stewart * - INP_SUPPORTS_MBUFQ 170*e57b2d0eSRandall Stewart * - INP_MBUF_QUEUE_READY 171*e57b2d0eSRandall Stewart * - INP_DONT_SACK_QUEUE 172*e57b2d0eSRandall Stewart * 173*e57b2d0eSRandall Stewart * These flags help control how LRO will deliver 174*e57b2d0eSRandall Stewart * packets to the transport. You first set in inp_flags2 175*e57b2d0eSRandall Stewart * the INP_SUPPORTS_MBUFQ to tell the LRO code that you 176*e57b2d0eSRandall Stewart * will gladly take a queue of packets instead of a compressed 177*e57b2d0eSRandall Stewart * single packet. You also set in your t_fb pointer the 178*e57b2d0eSRandall Stewart * tfb_do_queued_segments to point to ctf_process_inbound_raw. 179*e57b2d0eSRandall Stewart * 180*e57b2d0eSRandall Stewart * This then gets you lists of inbound ACK's/Data instead 181*e57b2d0eSRandall Stewart * of a condensed compressed ACK/DATA packet. Why would you 182*e57b2d0eSRandall Stewart * want that? This will get you access to all the arrival 183*e57b2d0eSRandall Stewart * times of at least LRO and possibly at the Hardware (if 184*e57b2d0eSRandall Stewart * the interface card supports that) of the actual ACK/DATA. 185*e57b2d0eSRandall Stewart * In some transport designs this is important since knowing 186*e57b2d0eSRandall Stewart * the actual time we got the packet is useful information. 187*e57b2d0eSRandall Stewart * 188*e57b2d0eSRandall Stewart * Now there are some interesting Caveats that the transport 189*e57b2d0eSRandall Stewart * designer needs to take into account when using this feature. 190*e57b2d0eSRandall Stewart * 191*e57b2d0eSRandall Stewart * 1) It is used with HPTS and pacing, when the pacing timer 192*e57b2d0eSRandall Stewart * for output calls it will first call the input. 193*e57b2d0eSRandall Stewart * 2) When you set INP_MBUF_QUEUE_READY this tells LRO 194*e57b2d0eSRandall Stewart * queue normal packets, I am busy pacing out data and 195*e57b2d0eSRandall Stewart * will process the queued packets before my tfb_tcp_output 196*e57b2d0eSRandall Stewart * call from pacing. If a non-normal packet arrives, (e.g. sack) 197*e57b2d0eSRandall Stewart * you will be awoken immediately. 198*e57b2d0eSRandall Stewart * 3) Finally you can add the INP_DONT_SACK_QUEUE to not even 199*e57b2d0eSRandall Stewart * be awoken if a SACK has arrived. You would do this when 200*e57b2d0eSRandall Stewart * you were not only running a pacing for output timer 201*e57b2d0eSRandall Stewart * but a Rack timer as well i.e. you know you are in recovery 202*e57b2d0eSRandall Stewart * and are in the process (via the timers) of dealing with 203*e57b2d0eSRandall Stewart * the loss. 204*e57b2d0eSRandall Stewart * 205*e57b2d0eSRandall Stewart * Now a critical thing you must be aware of here is that the 206*e57b2d0eSRandall Stewart * use of the flags has a far greater scope then just your 207*e57b2d0eSRandall Stewart * typical LRO. Why? Well thats because in the normal compressed 208*e57b2d0eSRandall Stewart * LRO case at the end of a driver interupt all packets are going 209*e57b2d0eSRandall Stewart * to get presented to the transport no matter if there is one 210*e57b2d0eSRandall Stewart * or 100. With the MBUF_QUEUE model, this is not true. You will 211*e57b2d0eSRandall Stewart * only be awoken to process the queue of packets when: 212*e57b2d0eSRandall Stewart * a) The flags discussed above allow it. 213*e57b2d0eSRandall Stewart * <or> 214*e57b2d0eSRandall Stewart * b) You exceed a ack or data limit (by default the 215*e57b2d0eSRandall Stewart * ack limit is infinity (64k acks) and the data 216*e57b2d0eSRandall Stewart * limit is 64k of new TCP data) 217*e57b2d0eSRandall Stewart * <or> 218*e57b2d0eSRandall Stewart * c) The push bit has been set by the peer 219*e57b2d0eSRandall Stewart */ 220*e57b2d0eSRandall Stewart 2213b0b41e6SRandall Stewart int 2223b0b41e6SRandall Stewart ctf_process_inbound_raw(struct tcpcb *tp, struct socket *so, struct mbuf *m, int has_pkt) 2233b0b41e6SRandall Stewart { 2243b0b41e6SRandall Stewart /* 2253b0b41e6SRandall Stewart * We are passed a raw change of mbuf packets 2263b0b41e6SRandall Stewart * that arrived in LRO. They are linked via 2273b0b41e6SRandall Stewart * the m_nextpkt link in the pkt-headers. 2283b0b41e6SRandall Stewart * 2293b0b41e6SRandall Stewart * We process each one by: 2303b0b41e6SRandall Stewart * a) saving off the next 2313b0b41e6SRandall Stewart * b) stripping off the ether-header 2323b0b41e6SRandall Stewart * c) formulating the arguments for 2333b0b41e6SRandall Stewart * the tfb_tcp_hpts_do_segment 2343b0b41e6SRandall Stewart * d) calling each mbuf to tfb_tcp_hpts_do_segment 2353b0b41e6SRandall Stewart * after adjusting the time to match the arrival time. 2363b0b41e6SRandall Stewart * Note that the LRO code assures no IP options are present. 2373b0b41e6SRandall Stewart * 2383b0b41e6SRandall Stewart * The symantics for calling tfb_tcp_hpts_do_segment are the 2393b0b41e6SRandall Stewart * following: 2403b0b41e6SRandall Stewart * 1) It returns 0 if all went well and you (the caller) need 2413b0b41e6SRandall Stewart * to release the lock. 2423b0b41e6SRandall Stewart * 2) If nxt_pkt is set, then the function will surpress calls 2433b0b41e6SRandall Stewart * to tfb_tcp_output() since you are promising to call again 2443b0b41e6SRandall Stewart * with another packet. 2453b0b41e6SRandall Stewart * 3) If it returns 1, then you must free all the packets being 2463b0b41e6SRandall Stewart * shipped in, the tcb has been destroyed (or about to be destroyed). 2473b0b41e6SRandall Stewart */ 2483b0b41e6SRandall Stewart struct mbuf *m_save; 2493b0b41e6SRandall Stewart struct ether_header *eh; 2503b0b41e6SRandall Stewart struct epoch_tracker et; 2513b0b41e6SRandall Stewart struct tcphdr *th; 2523b0b41e6SRandall Stewart #ifdef INET6 2533b0b41e6SRandall Stewart struct ip6_hdr *ip6 = NULL; /* Keep compiler happy. */ 2543b0b41e6SRandall Stewart #endif 2553b0b41e6SRandall Stewart #ifdef INET 2563b0b41e6SRandall Stewart struct ip *ip = NULL; /* Keep compiler happy. */ 2573b0b41e6SRandall Stewart #endif 2583b0b41e6SRandall Stewart struct ifnet *ifp; 2593b0b41e6SRandall Stewart struct timeval tv; 2603b0b41e6SRandall Stewart int32_t retval, nxt_pkt, tlen, off; 2613b0b41e6SRandall Stewart uint16_t etype; 2623b0b41e6SRandall Stewart uint16_t drop_hdrlen; 2633b0b41e6SRandall Stewart uint8_t iptos, no_vn=0, bpf_req=0; 2643b0b41e6SRandall Stewart 2653b0b41e6SRandall Stewart /* 2663b0b41e6SRandall Stewart * This is a bit deceptive, we get the 2673b0b41e6SRandall Stewart * "info epoch" which is really the network 2683b0b41e6SRandall Stewart * epoch. This covers us on both any INP 2693b0b41e6SRandall Stewart * type change but also if the ifp goes 2703b0b41e6SRandall Stewart * away it covers us as well. 2713b0b41e6SRandall Stewart */ 2723b0b41e6SRandall Stewart INP_INFO_RLOCK_ET(&V_tcbinfo, et); 2733b0b41e6SRandall Stewart if (m && m->m_pkthdr.rcvif) 2743b0b41e6SRandall Stewart ifp = m->m_pkthdr.rcvif; 2753b0b41e6SRandall Stewart else 2763b0b41e6SRandall Stewart ifp = NULL; 2773b0b41e6SRandall Stewart if (ifp) { 2783b0b41e6SRandall Stewart bpf_req = bpf_peers_present(ifp->if_bpf); 2793b0b41e6SRandall Stewart } else { 2803b0b41e6SRandall Stewart /* 2813b0b41e6SRandall Stewart * We probably should not work around 2823b0b41e6SRandall Stewart * but kassert, since lro alwasy sets rcvif. 2833b0b41e6SRandall Stewart */ 2843b0b41e6SRandall Stewart no_vn = 1; 2853b0b41e6SRandall Stewart goto skip_vnet; 2863b0b41e6SRandall Stewart } 2873b0b41e6SRandall Stewart CURVNET_SET(ifp->if_vnet); 2883b0b41e6SRandall Stewart skip_vnet: 2893b0b41e6SRandall Stewart while (m) { 2903b0b41e6SRandall Stewart m_save = m->m_nextpkt; 2913b0b41e6SRandall Stewart m->m_nextpkt = NULL; 2923b0b41e6SRandall Stewart /* Now lets get the ether header */ 2933b0b41e6SRandall Stewart eh = mtod(m, struct ether_header *); 2943b0b41e6SRandall Stewart etype = ntohs(eh->ether_type); 2953b0b41e6SRandall Stewart /* Let the BPF see the packet */ 2963b0b41e6SRandall Stewart if (bpf_req && ifp) 2973b0b41e6SRandall Stewart ETHER_BPF_MTAP(ifp, m); 2983b0b41e6SRandall Stewart m_adj(m, sizeof(*eh)); 2993b0b41e6SRandall Stewart /* Trim off the ethernet header */ 3003b0b41e6SRandall Stewart switch (etype) { 3013b0b41e6SRandall Stewart #ifdef INET6 3023b0b41e6SRandall Stewart case ETHERTYPE_IPV6: 3033b0b41e6SRandall Stewart { 3043b0b41e6SRandall Stewart if (m->m_len < (sizeof(*ip6) + sizeof(*th))) { 3053b0b41e6SRandall Stewart m = m_pullup(m, sizeof(*ip6) + sizeof(*th)); 3063b0b41e6SRandall Stewart if (m == NULL) { 3073b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvshort); 3083b0b41e6SRandall Stewart m_freem(m); 3093b0b41e6SRandall Stewart goto skipped_pkt; 3103b0b41e6SRandall Stewart } 3113b0b41e6SRandall Stewart } 3123b0b41e6SRandall Stewart ip6 = (struct ip6_hdr *)(eh + 1); 3133b0b41e6SRandall Stewart th = (struct tcphdr *)(ip6 + 1); 3143b0b41e6SRandall Stewart tlen = ntohs(ip6->ip6_plen); 3153b0b41e6SRandall Stewart drop_hdrlen = sizeof(*ip6); 3163b0b41e6SRandall Stewart if (m->m_pkthdr.csum_flags & CSUM_DATA_VALID_IPV6) { 3173b0b41e6SRandall Stewart if (m->m_pkthdr.csum_flags & CSUM_PSEUDO_HDR) 3183b0b41e6SRandall Stewart th->th_sum = m->m_pkthdr.csum_data; 3193b0b41e6SRandall Stewart else 3203b0b41e6SRandall Stewart th->th_sum = in6_cksum_pseudo(ip6, tlen, 3213b0b41e6SRandall Stewart IPPROTO_TCP, m->m_pkthdr.csum_data); 3223b0b41e6SRandall Stewart th->th_sum ^= 0xffff; 3233b0b41e6SRandall Stewart } else 3243b0b41e6SRandall Stewart th->th_sum = in6_cksum(m, IPPROTO_TCP, drop_hdrlen, tlen); 3253b0b41e6SRandall Stewart if (th->th_sum) { 3263b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvbadsum); 3273b0b41e6SRandall Stewart m_freem(m); 3283b0b41e6SRandall Stewart goto skipped_pkt; 3293b0b41e6SRandall Stewart } 3303b0b41e6SRandall Stewart /* 3313b0b41e6SRandall Stewart * Be proactive about unspecified IPv6 address in source. 3323b0b41e6SRandall Stewart * As we use all-zero to indicate unbounded/unconnected pcb, 3333b0b41e6SRandall Stewart * unspecified IPv6 address can be used to confuse us. 3343b0b41e6SRandall Stewart * 3353b0b41e6SRandall Stewart * Note that packets with unspecified IPv6 destination is 3363b0b41e6SRandall Stewart * already dropped in ip6_input. 3373b0b41e6SRandall Stewart */ 3383b0b41e6SRandall Stewart if (IN6_IS_ADDR_UNSPECIFIED(&ip6->ip6_src)) { 3393b0b41e6SRandall Stewart /* XXX stat */ 3403b0b41e6SRandall Stewart m_freem(m); 3413b0b41e6SRandall Stewart goto skipped_pkt; 3423b0b41e6SRandall Stewart } 3433b0b41e6SRandall Stewart iptos = (ntohl(ip6->ip6_flow) >> 20) & 0xff; 3443b0b41e6SRandall Stewart break; 3453b0b41e6SRandall Stewart } 3463b0b41e6SRandall Stewart #endif 3473b0b41e6SRandall Stewart #ifdef INET 3483b0b41e6SRandall Stewart case ETHERTYPE_IP: 3493b0b41e6SRandall Stewart { 3503b0b41e6SRandall Stewart if (m->m_len < sizeof (struct tcpiphdr)) { 3513b0b41e6SRandall Stewart if ((m = m_pullup(m, sizeof (struct tcpiphdr))) 3523b0b41e6SRandall Stewart == NULL) { 3533b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvshort); 3543b0b41e6SRandall Stewart m_freem(m); 3553b0b41e6SRandall Stewart goto skipped_pkt; 3563b0b41e6SRandall Stewart } 3573b0b41e6SRandall Stewart } 3583b0b41e6SRandall Stewart ip = (struct ip *)(eh + 1); 3593b0b41e6SRandall Stewart th = (struct tcphdr *)(ip + 1); 3603b0b41e6SRandall Stewart drop_hdrlen = sizeof(*ip); 3613b0b41e6SRandall Stewart iptos = ip->ip_tos; 3623b0b41e6SRandall Stewart tlen = ntohs(ip->ip_len) - sizeof(struct ip); 3633b0b41e6SRandall Stewart if (m->m_pkthdr.csum_flags & CSUM_DATA_VALID) { 3643b0b41e6SRandall Stewart if (m->m_pkthdr.csum_flags & CSUM_PSEUDO_HDR) 3653b0b41e6SRandall Stewart th->th_sum = m->m_pkthdr.csum_data; 3663b0b41e6SRandall Stewart else 3673b0b41e6SRandall Stewart th->th_sum = in_pseudo(ip->ip_src.s_addr, 3683b0b41e6SRandall Stewart ip->ip_dst.s_addr, 3693b0b41e6SRandall Stewart htonl(m->m_pkthdr.csum_data + tlen + 3703b0b41e6SRandall Stewart IPPROTO_TCP)); 3713b0b41e6SRandall Stewart th->th_sum ^= 0xffff; 3723b0b41e6SRandall Stewart } else { 3733b0b41e6SRandall Stewart int len; 3743b0b41e6SRandall Stewart struct ipovly *ipov = (struct ipovly *)ip; 3753b0b41e6SRandall Stewart /* 3763b0b41e6SRandall Stewart * Checksum extended TCP header and data. 3773b0b41e6SRandall Stewart */ 3783b0b41e6SRandall Stewart len = drop_hdrlen + tlen; 3793b0b41e6SRandall Stewart bzero(ipov->ih_x1, sizeof(ipov->ih_x1)); 3803b0b41e6SRandall Stewart ipov->ih_len = htons(tlen); 3813b0b41e6SRandall Stewart th->th_sum = in_cksum(m, len); 3823b0b41e6SRandall Stewart /* Reset length for SDT probes. */ 3833b0b41e6SRandall Stewart ip->ip_len = htons(len); 3843b0b41e6SRandall Stewart /* Reset TOS bits */ 3853b0b41e6SRandall Stewart ip->ip_tos = iptos; 3863b0b41e6SRandall Stewart /* Re-initialization for later version check */ 3873b0b41e6SRandall Stewart ip->ip_v = IPVERSION; 3883b0b41e6SRandall Stewart ip->ip_hl = sizeof(*ip) >> 2; 3893b0b41e6SRandall Stewart } 3903b0b41e6SRandall Stewart if (th->th_sum) { 3913b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvbadsum); 3923b0b41e6SRandall Stewart m_freem(m); 3933b0b41e6SRandall Stewart goto skipped_pkt; 3943b0b41e6SRandall Stewart } 3953b0b41e6SRandall Stewart break; 3963b0b41e6SRandall Stewart } 3973b0b41e6SRandall Stewart #endif 3983b0b41e6SRandall Stewart } 3993b0b41e6SRandall Stewart /* 4003b0b41e6SRandall Stewart * Convert TCP protocol specific fields to host format. 4013b0b41e6SRandall Stewart */ 4023b0b41e6SRandall Stewart tcp_fields_to_host(th); 4033b0b41e6SRandall Stewart 4043b0b41e6SRandall Stewart off = th->th_off << 2; 4053b0b41e6SRandall Stewart if (off < sizeof (struct tcphdr) || off > tlen) { 4063b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvbadoff); 4073b0b41e6SRandall Stewart m_freem(m); 4083b0b41e6SRandall Stewart goto skipped_pkt; 4093b0b41e6SRandall Stewart } 4103b0b41e6SRandall Stewart tlen -= off; 4113b0b41e6SRandall Stewart drop_hdrlen += off; 4123b0b41e6SRandall Stewart /* 4133b0b41e6SRandall Stewart * Now lets setup the timeval to be when we should 4143b0b41e6SRandall Stewart * have been called (if we can). 4153b0b41e6SRandall Stewart */ 4163b0b41e6SRandall Stewart m->m_pkthdr.lro_nsegs = 1; 4173b0b41e6SRandall Stewart tcp_get_usecs(&tv); 4183b0b41e6SRandall Stewart /* Now what about next packet? */ 4193b0b41e6SRandall Stewart if (m_save || has_pkt) 4203b0b41e6SRandall Stewart nxt_pkt = 1; 4213b0b41e6SRandall Stewart else 4223b0b41e6SRandall Stewart nxt_pkt = 0; 4233b0b41e6SRandall Stewart retval = (*tp->t_fb->tfb_do_segment_nounlock)(m, th, so, tp, drop_hdrlen, tlen, 4243b0b41e6SRandall Stewart iptos, nxt_pkt, &tv); 4253b0b41e6SRandall Stewart if (retval) { 4263b0b41e6SRandall Stewart /* We lost the lock and tcb probably */ 4273b0b41e6SRandall Stewart m = m_save; 4283b0b41e6SRandall Stewart while (m) { 4293b0b41e6SRandall Stewart m_save = m->m_nextpkt; 4303b0b41e6SRandall Stewart m->m_nextpkt = NULL; 4313b0b41e6SRandall Stewart m_freem(m); 4323b0b41e6SRandall Stewart m = m_save; 4333b0b41e6SRandall Stewart } 4343b0b41e6SRandall Stewart if (no_vn == 0) 4353b0b41e6SRandall Stewart CURVNET_RESTORE(); 4363b0b41e6SRandall Stewart INP_INFO_RUNLOCK_ET(&V_tcbinfo, et); 4373b0b41e6SRandall Stewart return (retval); 4383b0b41e6SRandall Stewart } 4393b0b41e6SRandall Stewart skipped_pkt: 4403b0b41e6SRandall Stewart m = m_save; 4413b0b41e6SRandall Stewart } 4423b0b41e6SRandall Stewart if (no_vn == 0) 4433b0b41e6SRandall Stewart CURVNET_RESTORE(); 4443b0b41e6SRandall Stewart INP_INFO_RUNLOCK_ET(&V_tcbinfo, et); 4453b0b41e6SRandall Stewart return (retval); 4463b0b41e6SRandall Stewart } 4473b0b41e6SRandall Stewart 4483b0b41e6SRandall Stewart int 4493b0b41e6SRandall Stewart ctf_do_queued_segments(struct socket *so, struct tcpcb *tp, int have_pkt) 4503b0b41e6SRandall Stewart { 4513b0b41e6SRandall Stewart struct mbuf *m; 4523b0b41e6SRandall Stewart 4533b0b41e6SRandall Stewart /* First lets see if we have old packets */ 4543b0b41e6SRandall Stewart if (tp->t_in_pkt) { 4553b0b41e6SRandall Stewart m = tp->t_in_pkt; 4563b0b41e6SRandall Stewart tp->t_in_pkt = NULL; 4573b0b41e6SRandall Stewart tp->t_tail_pkt = NULL; 4583b0b41e6SRandall Stewart if (ctf_process_inbound_raw(tp, so, m, have_pkt)) { 4593b0b41e6SRandall Stewart /* We lost the tcpcb (maybe a RST came in)? */ 4603b0b41e6SRandall Stewart return (1); 4613b0b41e6SRandall Stewart } 4623b0b41e6SRandall Stewart } 4633b0b41e6SRandall Stewart return (0); 4643b0b41e6SRandall Stewart } 4653b0b41e6SRandall Stewart 4663b0b41e6SRandall Stewart uint32_t 4673b0b41e6SRandall Stewart ctf_outstanding(struct tcpcb *tp) 4683b0b41e6SRandall Stewart { 4693b0b41e6SRandall Stewart return (tp->snd_max - tp->snd_una); 4703b0b41e6SRandall Stewart } 4713b0b41e6SRandall Stewart 4723b0b41e6SRandall Stewart uint32_t 4733b0b41e6SRandall Stewart ctf_flight_size(struct tcpcb *tp, uint32_t rc_sacked) 4743b0b41e6SRandall Stewart { 4753b0b41e6SRandall Stewart if (rc_sacked <= ctf_outstanding(tp)) 4763b0b41e6SRandall Stewart return (ctf_outstanding(tp) - rc_sacked); 4773b0b41e6SRandall Stewart else { 4783b0b41e6SRandall Stewart /* TSNH */ 4793b0b41e6SRandall Stewart #ifdef INVARIANTS 4803b0b41e6SRandall Stewart panic("tp:%p rc_sacked:%d > out:%d", 4813b0b41e6SRandall Stewart tp, rc_sacked, ctf_outstanding(tp)); 4823b0b41e6SRandall Stewart #endif 4833b0b41e6SRandall Stewart return (0); 4843b0b41e6SRandall Stewart } 4853b0b41e6SRandall Stewart } 4863b0b41e6SRandall Stewart 4873b0b41e6SRandall Stewart void 4883b0b41e6SRandall Stewart ctf_do_dropwithreset(struct mbuf *m, struct tcpcb *tp, struct tcphdr *th, 4893b0b41e6SRandall Stewart int32_t rstreason, int32_t tlen) 4903b0b41e6SRandall Stewart { 4913b0b41e6SRandall Stewart if (tp != NULL) { 4923b0b41e6SRandall Stewart tcp_dropwithreset(m, th, tp, tlen, rstreason); 4933b0b41e6SRandall Stewart INP_WUNLOCK(tp->t_inpcb); 4943b0b41e6SRandall Stewart } else 4953b0b41e6SRandall Stewart tcp_dropwithreset(m, th, NULL, tlen, rstreason); 4963b0b41e6SRandall Stewart } 4973b0b41e6SRandall Stewart 4983b0b41e6SRandall Stewart /* 4993b0b41e6SRandall Stewart * ctf_drop_checks returns 1 for you should not proceed. It places 5003b0b41e6SRandall Stewart * in ret_val what should be returned 1/0 by the caller. The 1 indicates 5013b0b41e6SRandall Stewart * that the TCB is unlocked and probably dropped. The 0 indicates the 5023b0b41e6SRandall Stewart * TCB is still valid and locked. 5033b0b41e6SRandall Stewart */ 5043b0b41e6SRandall Stewart int 5053b0b41e6SRandall Stewart ctf_drop_checks(struct tcpopt *to, struct mbuf *m, struct tcphdr *th, struct tcpcb *tp, int32_t * tlenp, int32_t * thf, int32_t * drop_hdrlen, int32_t * ret_val) 5063b0b41e6SRandall Stewart { 5073b0b41e6SRandall Stewart int32_t todrop; 5083b0b41e6SRandall Stewart int32_t thflags; 5093b0b41e6SRandall Stewart int32_t tlen; 5103b0b41e6SRandall Stewart 5113b0b41e6SRandall Stewart thflags = *thf; 5123b0b41e6SRandall Stewart tlen = *tlenp; 5133b0b41e6SRandall Stewart todrop = tp->rcv_nxt - th->th_seq; 5143b0b41e6SRandall Stewart if (todrop > 0) { 5153b0b41e6SRandall Stewart if (thflags & TH_SYN) { 5163b0b41e6SRandall Stewart thflags &= ~TH_SYN; 5173b0b41e6SRandall Stewart th->th_seq++; 5183b0b41e6SRandall Stewart if (th->th_urp > 1) 5193b0b41e6SRandall Stewart th->th_urp--; 5203b0b41e6SRandall Stewart else 5213b0b41e6SRandall Stewart thflags &= ~TH_URG; 5223b0b41e6SRandall Stewart todrop--; 5233b0b41e6SRandall Stewart } 5243b0b41e6SRandall Stewart /* 5253b0b41e6SRandall Stewart * Following if statement from Stevens, vol. 2, p. 960. 5263b0b41e6SRandall Stewart */ 5273b0b41e6SRandall Stewart if (todrop > tlen 5283b0b41e6SRandall Stewart || (todrop == tlen && (thflags & TH_FIN) == 0)) { 5293b0b41e6SRandall Stewart /* 5303b0b41e6SRandall Stewart * Any valid FIN must be to the left of the window. 5313b0b41e6SRandall Stewart * At this point the FIN must be a duplicate or out 5323b0b41e6SRandall Stewart * of sequence; drop it. 5333b0b41e6SRandall Stewart */ 5343b0b41e6SRandall Stewart thflags &= ~TH_FIN; 5353b0b41e6SRandall Stewart /* 5363b0b41e6SRandall Stewart * Send an ACK to resynchronize and drop any data. 5373b0b41e6SRandall Stewart * But keep on processing for RST or ACK. 5383b0b41e6SRandall Stewart */ 5393b0b41e6SRandall Stewart tp->t_flags |= TF_ACKNOW; 5403b0b41e6SRandall Stewart todrop = tlen; 5413b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvduppack); 5423b0b41e6SRandall Stewart TCPSTAT_ADD(tcps_rcvdupbyte, todrop); 5433b0b41e6SRandall Stewart } else { 5443b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvpartduppack); 5453b0b41e6SRandall Stewart TCPSTAT_ADD(tcps_rcvpartdupbyte, todrop); 5463b0b41e6SRandall Stewart } 5473b0b41e6SRandall Stewart /* 5483b0b41e6SRandall Stewart * DSACK - add SACK block for dropped range 5493b0b41e6SRandall Stewart */ 5503b0b41e6SRandall Stewart if (tp->t_flags & TF_SACK_PERMIT) { 551fe5dee73SMichael Tuexen tcp_update_sack_list(tp, th->th_seq, 552fe5dee73SMichael Tuexen th->th_seq + todrop); 5533b0b41e6SRandall Stewart /* 5543b0b41e6SRandall Stewart * ACK now, as the next in-sequence segment 5553b0b41e6SRandall Stewart * will clear the DSACK block again 5563b0b41e6SRandall Stewart */ 5573b0b41e6SRandall Stewart tp->t_flags |= TF_ACKNOW; 5583b0b41e6SRandall Stewart } 5593b0b41e6SRandall Stewart *drop_hdrlen += todrop; /* drop from the top afterwards */ 5603b0b41e6SRandall Stewart th->th_seq += todrop; 5613b0b41e6SRandall Stewart tlen -= todrop; 5623b0b41e6SRandall Stewart if (th->th_urp > todrop) 5633b0b41e6SRandall Stewart th->th_urp -= todrop; 5643b0b41e6SRandall Stewart else { 5653b0b41e6SRandall Stewart thflags &= ~TH_URG; 5663b0b41e6SRandall Stewart th->th_urp = 0; 5673b0b41e6SRandall Stewart } 5683b0b41e6SRandall Stewart } 5693b0b41e6SRandall Stewart /* 5703b0b41e6SRandall Stewart * If segment ends after window, drop trailing data (and PUSH and 5713b0b41e6SRandall Stewart * FIN); if nothing left, just ACK. 5723b0b41e6SRandall Stewart */ 5733b0b41e6SRandall Stewart todrop = (th->th_seq + tlen) - (tp->rcv_nxt + tp->rcv_wnd); 5743b0b41e6SRandall Stewart if (todrop > 0) { 5753b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvpackafterwin); 5763b0b41e6SRandall Stewart if (todrop >= tlen) { 5773b0b41e6SRandall Stewart TCPSTAT_ADD(tcps_rcvbyteafterwin, tlen); 5783b0b41e6SRandall Stewart /* 5793b0b41e6SRandall Stewart * If window is closed can only take segments at 5803b0b41e6SRandall Stewart * window edge, and have to drop data and PUSH from 5813b0b41e6SRandall Stewart * incoming segments. Continue processing, but 5823b0b41e6SRandall Stewart * remember to ack. Otherwise, drop segment and 5833b0b41e6SRandall Stewart * ack. 5843b0b41e6SRandall Stewart */ 5853b0b41e6SRandall Stewart if (tp->rcv_wnd == 0 && th->th_seq == tp->rcv_nxt) { 5863b0b41e6SRandall Stewart tp->t_flags |= TF_ACKNOW; 5873b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvwinprobe); 5883b0b41e6SRandall Stewart } else { 5893b0b41e6SRandall Stewart ctf_do_dropafterack(m, tp, th, thflags, tlen, ret_val); 5903b0b41e6SRandall Stewart return (1); 5913b0b41e6SRandall Stewart } 5923b0b41e6SRandall Stewart } else 5933b0b41e6SRandall Stewart TCPSTAT_ADD(tcps_rcvbyteafterwin, todrop); 5943b0b41e6SRandall Stewart m_adj(m, -todrop); 5953b0b41e6SRandall Stewart tlen -= todrop; 5963b0b41e6SRandall Stewart thflags &= ~(TH_PUSH | TH_FIN); 5973b0b41e6SRandall Stewart } 5983b0b41e6SRandall Stewart *thf = thflags; 5993b0b41e6SRandall Stewart *tlenp = tlen; 6003b0b41e6SRandall Stewart return (0); 6013b0b41e6SRandall Stewart } 6023b0b41e6SRandall Stewart 6033b0b41e6SRandall Stewart /* 6043b0b41e6SRandall Stewart * The value in ret_val informs the caller 6053b0b41e6SRandall Stewart * if we dropped the tcb (and lock) or not. 6063b0b41e6SRandall Stewart * 1 = we dropped it, 0 = the TCB is still locked 6073b0b41e6SRandall Stewart * and valid. 6083b0b41e6SRandall Stewart */ 6093b0b41e6SRandall Stewart void 6103b0b41e6SRandall Stewart ctf_do_dropafterack(struct mbuf *m, struct tcpcb *tp, struct tcphdr *th, int32_t thflags, int32_t tlen, int32_t * ret_val) 6113b0b41e6SRandall Stewart { 6123b0b41e6SRandall Stewart /* 6133b0b41e6SRandall Stewart * Generate an ACK dropping incoming segment if it occupies sequence 6143b0b41e6SRandall Stewart * space, where the ACK reflects our state. 6153b0b41e6SRandall Stewart * 6163b0b41e6SRandall Stewart * We can now skip the test for the RST flag since all paths to this 6173b0b41e6SRandall Stewart * code happen after packets containing RST have been dropped. 6183b0b41e6SRandall Stewart * 6193b0b41e6SRandall Stewart * In the SYN-RECEIVED state, don't send an ACK unless the segment 6203b0b41e6SRandall Stewart * we received passes the SYN-RECEIVED ACK test. If it fails send a 6213b0b41e6SRandall Stewart * RST. This breaks the loop in the "LAND" DoS attack, and also 6223b0b41e6SRandall Stewart * prevents an ACK storm between two listening ports that have been 6233b0b41e6SRandall Stewart * sent forged SYN segments, each with the source address of the 6243b0b41e6SRandall Stewart * other. 6253b0b41e6SRandall Stewart */ 6263b0b41e6SRandall Stewart if (tp->t_state == TCPS_SYN_RECEIVED && (thflags & TH_ACK) && 6273b0b41e6SRandall Stewart (SEQ_GT(tp->snd_una, th->th_ack) || 6283b0b41e6SRandall Stewart SEQ_GT(th->th_ack, tp->snd_max))) { 6293b0b41e6SRandall Stewart *ret_val = 1; 6303b0b41e6SRandall Stewart ctf_do_dropwithreset(m, tp, th, BANDLIM_RST_OPENPORT, tlen); 6313b0b41e6SRandall Stewart return; 6323b0b41e6SRandall Stewart } else 6333b0b41e6SRandall Stewart *ret_val = 0; 6343b0b41e6SRandall Stewart tp->t_flags |= TF_ACKNOW; 6353b0b41e6SRandall Stewart if (m) 6363b0b41e6SRandall Stewart m_freem(m); 6373b0b41e6SRandall Stewart } 6383b0b41e6SRandall Stewart 6393b0b41e6SRandall Stewart void 6403b0b41e6SRandall Stewart ctf_do_drop(struct mbuf *m, struct tcpcb *tp) 6413b0b41e6SRandall Stewart { 6423b0b41e6SRandall Stewart 6433b0b41e6SRandall Stewart /* 6443b0b41e6SRandall Stewart * Drop space held by incoming segment and return. 6453b0b41e6SRandall Stewart */ 6463b0b41e6SRandall Stewart if (tp != NULL) 6473b0b41e6SRandall Stewart INP_WUNLOCK(tp->t_inpcb); 6483b0b41e6SRandall Stewart if (m) 6493b0b41e6SRandall Stewart m_freem(m); 6503b0b41e6SRandall Stewart } 6513b0b41e6SRandall Stewart 6523b0b41e6SRandall Stewart int 6533b0b41e6SRandall Stewart ctf_process_rst(struct mbuf *m, struct tcphdr *th, struct socket *so, struct tcpcb *tp) 6543b0b41e6SRandall Stewart { 6553b0b41e6SRandall Stewart /* 6563b0b41e6SRandall Stewart * RFC5961 Section 3.2 6573b0b41e6SRandall Stewart * 6583b0b41e6SRandall Stewart * - RST drops connection only if SEG.SEQ == RCV.NXT. - If RST is in 6593b0b41e6SRandall Stewart * window, we send challenge ACK. 6603b0b41e6SRandall Stewart * 6613b0b41e6SRandall Stewart * Note: to take into account delayed ACKs, we should test against 6623b0b41e6SRandall Stewart * last_ack_sent instead of rcv_nxt. Note 2: we handle special case 6633b0b41e6SRandall Stewart * of closed window, not covered by the RFC. 6643b0b41e6SRandall Stewart */ 6653b0b41e6SRandall Stewart int dropped = 0; 6663b0b41e6SRandall Stewart 6673b0b41e6SRandall Stewart if ((SEQ_GEQ(th->th_seq, (tp->last_ack_sent - 1)) && 6683b0b41e6SRandall Stewart SEQ_LT(th->th_seq, tp->last_ack_sent + tp->rcv_wnd)) || 6693b0b41e6SRandall Stewart (tp->rcv_wnd == 0 && tp->last_ack_sent == th->th_seq)) { 6703b0b41e6SRandall Stewart 6713b0b41e6SRandall Stewart INP_INFO_RLOCK_ASSERT(&V_tcbinfo); 6723b0b41e6SRandall Stewart KASSERT(tp->t_state != TCPS_SYN_SENT, 6733b0b41e6SRandall Stewart ("%s: TH_RST for TCPS_SYN_SENT th %p tp %p", 6743b0b41e6SRandall Stewart __func__, th, tp)); 6753b0b41e6SRandall Stewart 6763b0b41e6SRandall Stewart if (V_tcp_insecure_rst || 6773b0b41e6SRandall Stewart (tp->last_ack_sent == th->th_seq) || 6783b0b41e6SRandall Stewart (tp->rcv_nxt == th->th_seq) || 6793b0b41e6SRandall Stewart ((tp->last_ack_sent - 1) == th->th_seq)) { 6803b0b41e6SRandall Stewart TCPSTAT_INC(tcps_drops); 6813b0b41e6SRandall Stewart /* Drop the connection. */ 6823b0b41e6SRandall Stewart switch (tp->t_state) { 6833b0b41e6SRandall Stewart case TCPS_SYN_RECEIVED: 6843b0b41e6SRandall Stewart so->so_error = ECONNREFUSED; 6853b0b41e6SRandall Stewart goto close; 6863b0b41e6SRandall Stewart case TCPS_ESTABLISHED: 6873b0b41e6SRandall Stewart case TCPS_FIN_WAIT_1: 6883b0b41e6SRandall Stewart case TCPS_FIN_WAIT_2: 6893b0b41e6SRandall Stewart case TCPS_CLOSE_WAIT: 6903b0b41e6SRandall Stewart case TCPS_CLOSING: 6913b0b41e6SRandall Stewart case TCPS_LAST_ACK: 6923b0b41e6SRandall Stewart so->so_error = ECONNRESET; 6933b0b41e6SRandall Stewart close: 6943b0b41e6SRandall Stewart tcp_state_change(tp, TCPS_CLOSED); 6953b0b41e6SRandall Stewart /* FALLTHROUGH */ 6963b0b41e6SRandall Stewart default: 6973b0b41e6SRandall Stewart tp = tcp_close(tp); 6983b0b41e6SRandall Stewart } 6993b0b41e6SRandall Stewart dropped = 1; 7003b0b41e6SRandall Stewart ctf_do_drop(m, tp); 7013b0b41e6SRandall Stewart } else { 7023b0b41e6SRandall Stewart TCPSTAT_INC(tcps_badrst); 7033b0b41e6SRandall Stewart /* Send challenge ACK. */ 7043b0b41e6SRandall Stewart tcp_respond(tp, mtod(m, void *), th, m, 7053b0b41e6SRandall Stewart tp->rcv_nxt, tp->snd_nxt, TH_ACK); 7063b0b41e6SRandall Stewart tp->last_ack_sent = tp->rcv_nxt; 7073b0b41e6SRandall Stewart } 7083b0b41e6SRandall Stewart } else { 7093b0b41e6SRandall Stewart m_freem(m); 7103b0b41e6SRandall Stewart } 7113b0b41e6SRandall Stewart return (dropped); 7123b0b41e6SRandall Stewart } 7133b0b41e6SRandall Stewart 7143b0b41e6SRandall Stewart /* 7153b0b41e6SRandall Stewart * The value in ret_val informs the caller 7163b0b41e6SRandall Stewart * if we dropped the tcb (and lock) or not. 7173b0b41e6SRandall Stewart * 1 = we dropped it, 0 = the TCB is still locked 7183b0b41e6SRandall Stewart * and valid. 7193b0b41e6SRandall Stewart */ 7203b0b41e6SRandall Stewart void 7213b0b41e6SRandall Stewart ctf_challenge_ack(struct mbuf *m, struct tcphdr *th, struct tcpcb *tp, int32_t * ret_val) 7223b0b41e6SRandall Stewart { 7233b0b41e6SRandall Stewart INP_INFO_RLOCK_ASSERT(&V_tcbinfo); 7243b0b41e6SRandall Stewart 7253b0b41e6SRandall Stewart TCPSTAT_INC(tcps_badsyn); 7263b0b41e6SRandall Stewart if (V_tcp_insecure_syn && 7273b0b41e6SRandall Stewart SEQ_GEQ(th->th_seq, tp->last_ack_sent) && 7283b0b41e6SRandall Stewart SEQ_LT(th->th_seq, tp->last_ack_sent + tp->rcv_wnd)) { 7293b0b41e6SRandall Stewart tp = tcp_drop(tp, ECONNRESET); 7303b0b41e6SRandall Stewart *ret_val = 1; 7313b0b41e6SRandall Stewart ctf_do_drop(m, tp); 7323b0b41e6SRandall Stewart } else { 7333b0b41e6SRandall Stewart /* Send challenge ACK. */ 7343b0b41e6SRandall Stewart tcp_respond(tp, mtod(m, void *), th, m, tp->rcv_nxt, 7353b0b41e6SRandall Stewart tp->snd_nxt, TH_ACK); 7363b0b41e6SRandall Stewart tp->last_ack_sent = tp->rcv_nxt; 7373b0b41e6SRandall Stewart m = NULL; 7383b0b41e6SRandall Stewart *ret_val = 0; 7393b0b41e6SRandall Stewart ctf_do_drop(m, NULL); 7403b0b41e6SRandall Stewart } 7413b0b41e6SRandall Stewart } 7423b0b41e6SRandall Stewart 7433b0b41e6SRandall Stewart /* 7443b0b41e6SRandall Stewart * bbr_ts_check returns 1 for you should not proceed, the state 7453b0b41e6SRandall Stewart * machine should return. It places in ret_val what should 7463b0b41e6SRandall Stewart * be returned 1/0 by the caller (hpts_do_segment). The 1 indicates 7473b0b41e6SRandall Stewart * that the TCB is unlocked and probably dropped. The 0 indicates the 7483b0b41e6SRandall Stewart * TCB is still valid and locked. 7493b0b41e6SRandall Stewart */ 7503b0b41e6SRandall Stewart int 7513b0b41e6SRandall Stewart ctf_ts_check(struct mbuf *m, struct tcphdr *th, struct tcpcb *tp, 7523b0b41e6SRandall Stewart int32_t tlen, int32_t thflags, int32_t * ret_val) 7533b0b41e6SRandall Stewart { 7543b0b41e6SRandall Stewart 7553b0b41e6SRandall Stewart if (tcp_ts_getticks() - tp->ts_recent_age > TCP_PAWS_IDLE) { 7563b0b41e6SRandall Stewart /* 7573b0b41e6SRandall Stewart * Invalidate ts_recent. If this segment updates ts_recent, 7583b0b41e6SRandall Stewart * the age will be reset later and ts_recent will get a 7593b0b41e6SRandall Stewart * valid value. If it does not, setting ts_recent to zero 7603b0b41e6SRandall Stewart * will at least satisfy the requirement that zero be placed 7613b0b41e6SRandall Stewart * in the timestamp echo reply when ts_recent isn't valid. 7623b0b41e6SRandall Stewart * The age isn't reset until we get a valid ts_recent 7633b0b41e6SRandall Stewart * because we don't want out-of-order segments to be dropped 7643b0b41e6SRandall Stewart * when ts_recent is old. 7653b0b41e6SRandall Stewart */ 7663b0b41e6SRandall Stewart tp->ts_recent = 0; 7673b0b41e6SRandall Stewart } else { 7683b0b41e6SRandall Stewart TCPSTAT_INC(tcps_rcvduppack); 7693b0b41e6SRandall Stewart TCPSTAT_ADD(tcps_rcvdupbyte, tlen); 7703b0b41e6SRandall Stewart TCPSTAT_INC(tcps_pawsdrop); 7713b0b41e6SRandall Stewart *ret_val = 0; 7723b0b41e6SRandall Stewart if (tlen) { 7733b0b41e6SRandall Stewart ctf_do_dropafterack(m, tp, th, thflags, tlen, ret_val); 7743b0b41e6SRandall Stewart } else { 7753b0b41e6SRandall Stewart ctf_do_drop(m, NULL); 7763b0b41e6SRandall Stewart } 7773b0b41e6SRandall Stewart return (1); 7783b0b41e6SRandall Stewart } 7793b0b41e6SRandall Stewart return (0); 7803b0b41e6SRandall Stewart } 7813b0b41e6SRandall Stewart 7823b0b41e6SRandall Stewart void 7833b0b41e6SRandall Stewart ctf_calc_rwin(struct socket *so, struct tcpcb *tp) 7843b0b41e6SRandall Stewart { 7853b0b41e6SRandall Stewart int32_t win; 7863b0b41e6SRandall Stewart 7873b0b41e6SRandall Stewart /* 7883b0b41e6SRandall Stewart * Calculate amount of space in receive window, and then do TCP 7893b0b41e6SRandall Stewart * input processing. Receive window is amount of space in rcv queue, 7903b0b41e6SRandall Stewart * but not less than advertised window. 7913b0b41e6SRandall Stewart */ 7923b0b41e6SRandall Stewart win = sbspace(&so->so_rcv); 7933b0b41e6SRandall Stewart if (win < 0) 7943b0b41e6SRandall Stewart win = 0; 7953b0b41e6SRandall Stewart tp->rcv_wnd = imax(win, (int)(tp->rcv_adv - tp->rcv_nxt)); 7963b0b41e6SRandall Stewart } 7973b0b41e6SRandall Stewart 7983b0b41e6SRandall Stewart void 7993b0b41e6SRandall Stewart ctf_do_dropwithreset_conn(struct mbuf *m, struct tcpcb *tp, struct tcphdr *th, 8003b0b41e6SRandall Stewart int32_t rstreason, int32_t tlen) 8013b0b41e6SRandall Stewart { 8023b0b41e6SRandall Stewart 8033b0b41e6SRandall Stewart if (tp->t_inpcb) { 8043b0b41e6SRandall Stewart tcp_set_inp_to_drop(tp->t_inpcb, ETIMEDOUT); 8053b0b41e6SRandall Stewart } 8063b0b41e6SRandall Stewart tcp_dropwithreset(m, th, tp, tlen, rstreason); 8073b0b41e6SRandall Stewart INP_WUNLOCK(tp->t_inpcb); 8083b0b41e6SRandall Stewart } 8093b0b41e6SRandall Stewart 8103b0b41e6SRandall Stewart uint32_t 8113b0b41e6SRandall Stewart ctf_fixed_maxseg(struct tcpcb *tp) 8123b0b41e6SRandall Stewart { 8133b0b41e6SRandall Stewart int optlen; 8143b0b41e6SRandall Stewart 8153b0b41e6SRandall Stewart if (tp->t_flags & TF_NOOPT) 8163b0b41e6SRandall Stewart return (tp->t_maxseg); 8173b0b41e6SRandall Stewart 8183b0b41e6SRandall Stewart /* 8193b0b41e6SRandall Stewart * Here we have a simplified code from tcp_addoptions(), 8203b0b41e6SRandall Stewart * without a proper loop, and having most of paddings hardcoded. 8213b0b41e6SRandall Stewart * We only consider fixed options that we would send every 8223b0b41e6SRandall Stewart * time I.e. SACK is not considered. 8233b0b41e6SRandall Stewart * 8243b0b41e6SRandall Stewart */ 8253b0b41e6SRandall Stewart #define PAD(len) ((((len) / 4) + !!((len) % 4)) * 4) 8263b0b41e6SRandall Stewart if (TCPS_HAVEESTABLISHED(tp->t_state)) { 8273b0b41e6SRandall Stewart if (tp->t_flags & TF_RCVD_TSTMP) 8283b0b41e6SRandall Stewart optlen = TCPOLEN_TSTAMP_APPA; 8293b0b41e6SRandall Stewart else 8303b0b41e6SRandall Stewart optlen = 0; 8313b0b41e6SRandall Stewart #if defined(IPSEC_SUPPORT) || defined(TCP_SIGNATURE) 8323b0b41e6SRandall Stewart if (tp->t_flags & TF_SIGNATURE) 8333b0b41e6SRandall Stewart optlen += PAD(TCPOLEN_SIGNATURE); 8343b0b41e6SRandall Stewart #endif 8353b0b41e6SRandall Stewart } else { 8363b0b41e6SRandall Stewart if (tp->t_flags & TF_REQ_TSTMP) 8373b0b41e6SRandall Stewart optlen = TCPOLEN_TSTAMP_APPA; 8383b0b41e6SRandall Stewart else 8393b0b41e6SRandall Stewart optlen = PAD(TCPOLEN_MAXSEG); 8403b0b41e6SRandall Stewart if (tp->t_flags & TF_REQ_SCALE) 8413b0b41e6SRandall Stewart optlen += PAD(TCPOLEN_WINDOW); 8423b0b41e6SRandall Stewart #if defined(IPSEC_SUPPORT) || defined(TCP_SIGNATURE) 8433b0b41e6SRandall Stewart if (tp->t_flags & TF_SIGNATURE) 8443b0b41e6SRandall Stewart optlen += PAD(TCPOLEN_SIGNATURE); 8453b0b41e6SRandall Stewart #endif 8463b0b41e6SRandall Stewart if (tp->t_flags & TF_SACK_PERMIT) 8473b0b41e6SRandall Stewart optlen += PAD(TCPOLEN_SACK_PERMITTED); 8483b0b41e6SRandall Stewart } 8493b0b41e6SRandall Stewart #undef PAD 8503b0b41e6SRandall Stewart optlen = min(optlen, TCP_MAXOLEN); 8513b0b41e6SRandall Stewart return (tp->t_maxseg - optlen); 8523b0b41e6SRandall Stewart } 8533b0b41e6SRandall Stewart 8543b0b41e6SRandall Stewart void 8553b0b41e6SRandall Stewart ctf_log_sack_filter(struct tcpcb *tp, int num_sack_blks, struct sackblk *sack_blocks) 8563b0b41e6SRandall Stewart { 8573b0b41e6SRandall Stewart if (tp->t_logstate != TCP_LOG_STATE_OFF) { 8583b0b41e6SRandall Stewart union tcp_log_stackspecific log; 8593b0b41e6SRandall Stewart struct timeval tv; 8603b0b41e6SRandall Stewart 8613b0b41e6SRandall Stewart memset(&log, 0, sizeof(log)); 8623b0b41e6SRandall Stewart log.u_bbr.timeStamp = tcp_get_usecs(&tv); 8633b0b41e6SRandall Stewart log.u_bbr.flex8 = num_sack_blks; 8643b0b41e6SRandall Stewart if (num_sack_blks > 0) { 8653b0b41e6SRandall Stewart log.u_bbr.flex1 = sack_blocks[0].start; 8663b0b41e6SRandall Stewart log.u_bbr.flex2 = sack_blocks[0].end; 8673b0b41e6SRandall Stewart } 8683b0b41e6SRandall Stewart if (num_sack_blks > 1) { 8693b0b41e6SRandall Stewart log.u_bbr.flex3 = sack_blocks[1].start; 8703b0b41e6SRandall Stewart log.u_bbr.flex4 = sack_blocks[1].end; 8713b0b41e6SRandall Stewart } 8723b0b41e6SRandall Stewart if (num_sack_blks > 2) { 8733b0b41e6SRandall Stewart log.u_bbr.flex5 = sack_blocks[2].start; 8743b0b41e6SRandall Stewart log.u_bbr.flex6 = sack_blocks[2].end; 8753b0b41e6SRandall Stewart } 8763b0b41e6SRandall Stewart if (num_sack_blks > 3) { 8773b0b41e6SRandall Stewart log.u_bbr.applimited = sack_blocks[3].start; 8783b0b41e6SRandall Stewart log.u_bbr.pkts_out = sack_blocks[3].end; 8793b0b41e6SRandall Stewart } 8803b0b41e6SRandall Stewart TCP_LOG_EVENTP(tp, NULL, 8813b0b41e6SRandall Stewart &tp->t_inpcb->inp_socket->so_rcv, 8823b0b41e6SRandall Stewart &tp->t_inpcb->inp_socket->so_snd, 8833b0b41e6SRandall Stewart TCP_SACK_FILTER_RES, 0, 8843b0b41e6SRandall Stewart 0, &log, false, &tv); 8853b0b41e6SRandall Stewart } 8863b0b41e6SRandall Stewart } 8873b0b41e6SRandall Stewart 8883b0b41e6SRandall Stewart uint32_t 8893b0b41e6SRandall Stewart ctf_decay_count(uint32_t count, uint32_t decay) 8903b0b41e6SRandall Stewart { 8913b0b41e6SRandall Stewart /* 8923b0b41e6SRandall Stewart * Given a count, decay it by a set percentage. The 8933b0b41e6SRandall Stewart * percentage is in thousands i.e. 100% = 1000, 8943b0b41e6SRandall Stewart * 19.3% = 193. 8953b0b41e6SRandall Stewart */ 8963b0b41e6SRandall Stewart uint64_t perc_count, decay_per; 8973b0b41e6SRandall Stewart uint32_t decayed_count; 8983b0b41e6SRandall Stewart if (decay > 1000) { 8993b0b41e6SRandall Stewart /* We don't raise it */ 9003b0b41e6SRandall Stewart return (count); 9013b0b41e6SRandall Stewart } 9023b0b41e6SRandall Stewart perc_count = count; 9033b0b41e6SRandall Stewart decay_per = decay; 9043b0b41e6SRandall Stewart perc_count *= decay_per; 9053b0b41e6SRandall Stewart perc_count /= 1000; 9063b0b41e6SRandall Stewart /* 9073b0b41e6SRandall Stewart * So now perc_count holds the 9083b0b41e6SRandall Stewart * count decay value. 9093b0b41e6SRandall Stewart */ 9103b0b41e6SRandall Stewart decayed_count = count - (uint32_t)perc_count; 9113b0b41e6SRandall Stewart return (decayed_count); 9123b0b41e6SRandall Stewart } 913