xref: /freebsd/sys/netinet/tcp_stacks/rack_bbr_common.c (revision 83c1ec92e454a7592dd15b15b738d18ae36575e0)
13b0b41e6SRandall Stewart /*-
2963fb2adSRandall Stewart  * Copyright (c) 2016-2020 Netflix, Inc.
33b0b41e6SRandall Stewart  *
43b0b41e6SRandall Stewart  * Redistribution and use in source and binary forms, with or without
53b0b41e6SRandall Stewart  * modification, are permitted provided that the following conditions
63b0b41e6SRandall Stewart  * are met:
73b0b41e6SRandall Stewart  * 1. Redistributions of source code must retain the above copyright
83b0b41e6SRandall Stewart  *    notice, this list of conditions and the following disclaimer.
93b0b41e6SRandall Stewart  * 2. Redistributions in binary form must reproduce the above copyright
103b0b41e6SRandall Stewart  *    notice, this list of conditions and the following disclaimer in the
113b0b41e6SRandall Stewart  *    documentation and/or other materials provided with the distribution.
123b0b41e6SRandall Stewart  *
133b0b41e6SRandall Stewart  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
143b0b41e6SRandall Stewart  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
153b0b41e6SRandall Stewart  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
163b0b41e6SRandall Stewart  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
173b0b41e6SRandall Stewart  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
183b0b41e6SRandall Stewart  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
193b0b41e6SRandall Stewart  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
203b0b41e6SRandall Stewart  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
213b0b41e6SRandall Stewart  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
223b0b41e6SRandall Stewart  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
233b0b41e6SRandall Stewart  * SUCH DAMAGE.
243b0b41e6SRandall Stewart  *
253b0b41e6SRandall Stewart  */
263b0b41e6SRandall Stewart /*
273b0b41e6SRandall Stewart  * Author: Randall Stewart <rrs@netflix.com>
283b0b41e6SRandall Stewart  * This work is based on the ACM Queue paper
293b0b41e6SRandall Stewart  * BBR - Congestion Based Congestion Control
303b0b41e6SRandall Stewart  * and also numerous discussions with Neal, Yuchung and Van.
313b0b41e6SRandall Stewart  */
323b0b41e6SRandall Stewart 
333b0b41e6SRandall Stewart #include <sys/cdefs.h>
343b0b41e6SRandall Stewart __FBSDID("$FreeBSD$");
353b0b41e6SRandall Stewart 
363b0b41e6SRandall Stewart #include "opt_inet.h"
373b0b41e6SRandall Stewart #include "opt_inet6.h"
383b0b41e6SRandall Stewart #include "opt_ipsec.h"
393b0b41e6SRandall Stewart #include "opt_tcpdebug.h"
403b0b41e6SRandall Stewart #include "opt_ratelimit.h"
4135c7bb34SRandall Stewart #include "opt_kern_tls.h"
423b0b41e6SRandall Stewart #include <sys/param.h>
431cf55767SRandall Stewart #include <sys/arb.h>
443b0b41e6SRandall Stewart #include <sys/module.h>
453b0b41e6SRandall Stewart #include <sys/kernel.h>
463b0b41e6SRandall Stewart #ifdef TCP_HHOOK
473b0b41e6SRandall Stewart #include <sys/hhook.h>
483b0b41e6SRandall Stewart #endif
493b0b41e6SRandall Stewart #include <sys/malloc.h>
503b0b41e6SRandall Stewart #include <sys/mbuf.h>
513b0b41e6SRandall Stewart #include <sys/proc.h>
5235c7bb34SRandall Stewart #include <sys/qmath.h>
533b0b41e6SRandall Stewart #include <sys/socket.h>
543b0b41e6SRandall Stewart #include <sys/socketvar.h>
553b0b41e6SRandall Stewart #ifdef KERN_TLS
5635c7bb34SRandall Stewart #include <sys/ktls.h>
573b0b41e6SRandall Stewart #endif
583b0b41e6SRandall Stewart #include <sys/sysctl.h>
593b0b41e6SRandall Stewart #include <sys/systm.h>
603b0b41e6SRandall Stewart #include <sys/tree.h>
6135c7bb34SRandall Stewart #ifdef NETFLIX_STATS
6235c7bb34SRandall Stewart #include <sys/stats.h> /* Must come after qmath.h and tree.h */
6335c7bb34SRandall Stewart #endif
643b0b41e6SRandall Stewart #include <sys/refcount.h>
653b0b41e6SRandall Stewart #include <sys/queue.h>
663b0b41e6SRandall Stewart #include <sys/smp.h>
673b0b41e6SRandall Stewart #include <sys/kthread.h>
683b0b41e6SRandall Stewart #include <sys/lock.h>
693b0b41e6SRandall Stewart #include <sys/mutex.h>
7035c7bb34SRandall Stewart #include <sys/tim_filter.h>
713b0b41e6SRandall Stewart #include <sys/time.h>
723b0b41e6SRandall Stewart #include <vm/uma.h>
733b0b41e6SRandall Stewart #include <sys/kern_prefetch.h>
743b0b41e6SRandall Stewart 
753b0b41e6SRandall Stewart #include <net/route.h>
763b0b41e6SRandall Stewart #include <net/vnet.h>
773b0b41e6SRandall Stewart #include <net/ethernet.h>
783b0b41e6SRandall Stewart #include <net/bpf.h>
793b0b41e6SRandall Stewart 
803b0b41e6SRandall Stewart #define TCPSTATES		/* for logging */
813b0b41e6SRandall Stewart 
823b0b41e6SRandall Stewart #include <netinet/in.h>
833b0b41e6SRandall Stewart #include <netinet/in_kdtrace.h>
843b0b41e6SRandall Stewart #include <netinet/in_pcb.h>
853b0b41e6SRandall Stewart #include <netinet/ip.h>
863b0b41e6SRandall Stewart #include <netinet/ip_icmp.h>	/* required for icmp_var.h */
873b0b41e6SRandall Stewart #include <netinet/icmp_var.h>	/* for ICMP_BANDLIM */
883b0b41e6SRandall Stewart #include <netinet/ip_var.h>
893b0b41e6SRandall Stewart #include <netinet/ip6.h>
903b0b41e6SRandall Stewart #include <netinet6/in6_pcb.h>
913b0b41e6SRandall Stewart #include <netinet6/ip6_var.h>
923b0b41e6SRandall Stewart #include <netinet/tcp.h>
933b0b41e6SRandall Stewart #include <netinet/tcp_fsm.h>
943b0b41e6SRandall Stewart #include <netinet/tcp_seq.h>
953b0b41e6SRandall Stewart #include <netinet/tcp_timer.h>
963b0b41e6SRandall Stewart #include <netinet/tcp_var.h>
973b0b41e6SRandall Stewart #include <netinet/tcpip.h>
98*83c1ec92SRichard Scheffenegger #include <netinet/tcp_ecn.h>
993b0b41e6SRandall Stewart #include <netinet/tcp_hpts.h>
1005d8fd932SRandall Stewart #include <netinet/tcp_lro.h>
1013b0b41e6SRandall Stewart #include <netinet/cc/cc.h>
1023b0b41e6SRandall Stewart #include <netinet/tcp_log_buf.h>
1033b0b41e6SRandall Stewart #ifdef TCPDEBUG
1043b0b41e6SRandall Stewart #include <netinet/tcp_debug.h>
1053b0b41e6SRandall Stewart #endif				/* TCPDEBUG */
1063b0b41e6SRandall Stewart #ifdef TCP_OFFLOAD
1073b0b41e6SRandall Stewart #include <netinet/tcp_offload.h>
1083b0b41e6SRandall Stewart #endif
1093b0b41e6SRandall Stewart #ifdef INET6
1103b0b41e6SRandall Stewart #include <netinet6/tcp6_var.h>
1113b0b41e6SRandall Stewart #endif
1123b0b41e6SRandall Stewart #include <netinet/tcp_fastopen.h>
1133b0b41e6SRandall Stewart 
1143b0b41e6SRandall Stewart #include <netipsec/ipsec_support.h>
1153b0b41e6SRandall Stewart #include <net/if.h>
1163b0b41e6SRandall Stewart #include <net/if_var.h>
1173b0b41e6SRandall Stewart 
1183b0b41e6SRandall Stewart #if defined(IPSEC) || defined(IPSEC_SUPPORT)
1193b0b41e6SRandall Stewart #include <netipsec/ipsec.h>
1203b0b41e6SRandall Stewart #include <netipsec/ipsec6.h>
1213b0b41e6SRandall Stewart #endif				/* IPSEC */
1223b0b41e6SRandall Stewart 
1233b0b41e6SRandall Stewart #include <netinet/udp.h>
1243b0b41e6SRandall Stewart #include <netinet/udp_var.h>
1253b0b41e6SRandall Stewart #include <machine/in_cksum.h>
1263b0b41e6SRandall Stewart 
1273b0b41e6SRandall Stewart #ifdef MAC
1283b0b41e6SRandall Stewart #include <security/mac/mac_framework.h>
1293b0b41e6SRandall Stewart #endif
1303b0b41e6SRandall Stewart #include "rack_bbr_common.h"
1313b0b41e6SRandall Stewart 
1323b0b41e6SRandall Stewart /*
1333b0b41e6SRandall Stewart  * Common TCP Functions - These are shared by borth
1343b0b41e6SRandall Stewart  * rack and BBR.
1353b0b41e6SRandall Stewart  */
1363b0b41e6SRandall Stewart #ifdef KERN_TLS
1373b0b41e6SRandall Stewart uint32_t
1383b0b41e6SRandall Stewart ctf_get_opt_tls_size(struct socket *so, uint32_t rwnd)
1393b0b41e6SRandall Stewart {
14035c7bb34SRandall Stewart 	struct ktls_session *tls;
1413b0b41e6SRandall Stewart 	uint32_t len;
1423b0b41e6SRandall Stewart 
1433b0b41e6SRandall Stewart again:
1443b0b41e6SRandall Stewart 	tls = so->so_snd.sb_tls_info;
14535c7bb34SRandall Stewart 	len = tls->params.max_frame_len;         /* max tls payload */
14635c7bb34SRandall Stewart 	len += tls->params.tls_hlen;      /* tls header len  */
14735c7bb34SRandall Stewart 	len += tls->params.tls_tlen;      /* tls trailer len */
1483b0b41e6SRandall Stewart 	if ((len * 4) > rwnd) {
1493b0b41e6SRandall Stewart 		/*
1503b0b41e6SRandall Stewart 		 * Stroke this will suck counter and what
1513b0b41e6SRandall Stewart 		 * else should we do Drew? From the
1523b0b41e6SRandall Stewart 		 * TCP perspective I am not sure
1533b0b41e6SRandall Stewart 		 * what should be done...
1543b0b41e6SRandall Stewart 		 */
15535c7bb34SRandall Stewart 		if (tls->params.max_frame_len > 4096) {
15635c7bb34SRandall Stewart 			tls->params.max_frame_len -= 4096;
15735c7bb34SRandall Stewart 			if (tls->params.max_frame_len < 4096)
15835c7bb34SRandall Stewart 				tls->params.max_frame_len = 4096;
1593b0b41e6SRandall Stewart 			goto again;
1603b0b41e6SRandall Stewart 		}
1613b0b41e6SRandall Stewart 	}
1623b0b41e6SRandall Stewart 	return (len);
1633b0b41e6SRandall Stewart }
1643b0b41e6SRandall Stewart #endif
1653b0b41e6SRandall Stewart 
1665d8fd932SRandall Stewart static int
1675d8fd932SRandall Stewart ctf_get_enet_type(struct ifnet *ifp, struct mbuf *m)
1685d8fd932SRandall Stewart {
1695d8fd932SRandall Stewart 	struct ether_header *eh;
1705d8fd932SRandall Stewart #ifdef INET6
1715d8fd932SRandall Stewart 	struct ip6_hdr *ip6 = NULL;	/* Keep compiler happy. */
1725d8fd932SRandall Stewart #endif
1735d8fd932SRandall Stewart #ifdef INET
1745d8fd932SRandall Stewart 	struct ip *ip = NULL;		/* Keep compiler happy. */
1755d8fd932SRandall Stewart #endif
176b1e806c0SAndrew Gallatin #if defined(INET) || defined(INET6)
177b1e806c0SAndrew Gallatin 	struct tcphdr *th;
1785d8fd932SRandall Stewart 	int32_t tlen;
1795d8fd932SRandall Stewart 	uint16_t drop_hdrlen;
180b1e806c0SAndrew Gallatin #endif
1815d8fd932SRandall Stewart 	uint16_t etype;
182b1e806c0SAndrew Gallatin #ifdef INET
1835d8fd932SRandall Stewart 	uint8_t iptos;
184b1e806c0SAndrew Gallatin #endif
1855d8fd932SRandall Stewart 
1865d8fd932SRandall Stewart 	/* Is it the easy way? */
1875d8fd932SRandall Stewart 	if (m->m_flags & M_LRO_EHDRSTRP)
1885d8fd932SRandall Stewart 		return (m->m_pkthdr.lro_etype);
1895d8fd932SRandall Stewart 	/*
1905d8fd932SRandall Stewart 	 * Ok this is the old style call, the ethernet header is here.
1915d8fd932SRandall Stewart 	 * This also means no checksum or BPF were done. This
1925d8fd932SRandall Stewart 	 * can happen if the race to setup the inp fails and
1935d8fd932SRandall Stewart 	 * LRO sees no INP at packet input, but by the time
1945d8fd932SRandall Stewart 	 * we queue the packets an INP gets there. Its rare
1955d8fd932SRandall Stewart 	 * but it can occur so we will handle it. Note that
1965d8fd932SRandall Stewart 	 * this means duplicated work but with the rarity of it
1975d8fd932SRandall Stewart 	 * its not worth worrying about.
1985d8fd932SRandall Stewart 	 */
1995d8fd932SRandall Stewart 	/* Let the BPF see the packet */
2005d8fd932SRandall Stewart 	if (bpf_peers_present(ifp->if_bpf))
2015d8fd932SRandall Stewart 		ETHER_BPF_MTAP(ifp, m);
2025d8fd932SRandall Stewart 	/* Now the csum */
2035d8fd932SRandall Stewart 	eh = mtod(m, struct ether_header *);
2045d8fd932SRandall Stewart 	etype = ntohs(eh->ether_type);
2055d8fd932SRandall Stewart 	m_adj(m,  sizeof(*eh));
2065d8fd932SRandall Stewart 	switch (etype) {
2075d8fd932SRandall Stewart #ifdef INET6
2085d8fd932SRandall Stewart 		case ETHERTYPE_IPV6:
2095d8fd932SRandall Stewart 		{
2105d8fd932SRandall Stewart 			if (m->m_len < (sizeof(*ip6) + sizeof(*th))) {
2115d8fd932SRandall Stewart 				m = m_pullup(m, sizeof(*ip6) + sizeof(*th));
2125d8fd932SRandall Stewart 				if (m == NULL) {
2135d8fd932SRandall Stewart 					KMOD_TCPSTAT_INC(tcps_rcvshort);
2145d8fd932SRandall Stewart 					return (-1);
2155d8fd932SRandall Stewart 				}
2165d8fd932SRandall Stewart 			}
2175d8fd932SRandall Stewart 			ip6 = (struct ip6_hdr *)(eh + 1);
2185d8fd932SRandall Stewart 			th = (struct tcphdr *)(ip6 + 1);
2195d8fd932SRandall Stewart 			drop_hdrlen = sizeof(*ip6);
2205d8fd932SRandall Stewart 			tlen = ntohs(ip6->ip6_plen);
2215d8fd932SRandall Stewart 			if (m->m_pkthdr.csum_flags & CSUM_DATA_VALID_IPV6) {
2225d8fd932SRandall Stewart 				if (m->m_pkthdr.csum_flags & CSUM_PSEUDO_HDR)
2235d8fd932SRandall Stewart 					th->th_sum = m->m_pkthdr.csum_data;
2245d8fd932SRandall Stewart 				else
2255d8fd932SRandall Stewart 					th->th_sum = in6_cksum_pseudo(ip6, tlen,
2265d8fd932SRandall Stewart 								      IPPROTO_TCP,
2275d8fd932SRandall Stewart 								      m->m_pkthdr.csum_data);
2285d8fd932SRandall Stewart 				th->th_sum ^= 0xffff;
2295d8fd932SRandall Stewart 			} else
2305d8fd932SRandall Stewart 				th->th_sum = in6_cksum(m, IPPROTO_TCP, drop_hdrlen, tlen);
2315d8fd932SRandall Stewart 			if (th->th_sum) {
2325d8fd932SRandall Stewart 				KMOD_TCPSTAT_INC(tcps_rcvbadsum);
2335d8fd932SRandall Stewart 				m_freem(m);
2345d8fd932SRandall Stewart 				return (-1);
2355d8fd932SRandall Stewart 			}
2365d8fd932SRandall Stewart 			return (etype);
2375d8fd932SRandall Stewart 		}
2385d8fd932SRandall Stewart #endif
2395d8fd932SRandall Stewart #ifdef INET
2405d8fd932SRandall Stewart 		case ETHERTYPE_IP:
2415d8fd932SRandall Stewart 		{
2425d8fd932SRandall Stewart 			if (m->m_len < sizeof (struct tcpiphdr)) {
2435d8fd932SRandall Stewart 				m = m_pullup(m, sizeof (struct tcpiphdr));
2445d8fd932SRandall Stewart 				if (m == NULL) {
2455d8fd932SRandall Stewart 					KMOD_TCPSTAT_INC(tcps_rcvshort);
2465d8fd932SRandall Stewart 					return (-1);
2475d8fd932SRandall Stewart 				}
2485d8fd932SRandall Stewart 			}
2495d8fd932SRandall Stewart 			ip = (struct ip *)(eh + 1);
2505d8fd932SRandall Stewart 			th = (struct tcphdr *)(ip + 1);
2515d8fd932SRandall Stewart 			drop_hdrlen = sizeof(*ip);
2525d8fd932SRandall Stewart 			iptos = ip->ip_tos;
2535d8fd932SRandall Stewart 			tlen = ntohs(ip->ip_len) - sizeof(struct ip);
2545d8fd932SRandall Stewart 			if (m->m_pkthdr.csum_flags & CSUM_DATA_VALID) {
2555d8fd932SRandall Stewart 				if (m->m_pkthdr.csum_flags & CSUM_PSEUDO_HDR)
2565d8fd932SRandall Stewart 					th->th_sum = m->m_pkthdr.csum_data;
2575d8fd932SRandall Stewart 				else
2585d8fd932SRandall Stewart 					th->th_sum = in_pseudo(ip->ip_src.s_addr,
2595d8fd932SRandall Stewart 							       ip->ip_dst.s_addr,
2605d8fd932SRandall Stewart 							       htonl(m->m_pkthdr.csum_data + tlen + IPPROTO_TCP));
2615d8fd932SRandall Stewart 				th->th_sum ^= 0xffff;
2625d8fd932SRandall Stewart 			} else {
2635d8fd932SRandall Stewart 				int len;
2645d8fd932SRandall Stewart 				struct ipovly *ipov = (struct ipovly *)ip;
2655d8fd932SRandall Stewart 				/*
2665d8fd932SRandall Stewart 				 * Checksum extended TCP header and data.
2675d8fd932SRandall Stewart 				 */
2685d8fd932SRandall Stewart 				len = drop_hdrlen + tlen;
2695d8fd932SRandall Stewart 				bzero(ipov->ih_x1, sizeof(ipov->ih_x1));
2705d8fd932SRandall Stewart 				ipov->ih_len = htons(tlen);
2715d8fd932SRandall Stewart 				th->th_sum = in_cksum(m, len);
2725d8fd932SRandall Stewart 				/* Reset length for SDT probes. */
2735d8fd932SRandall Stewart 				ip->ip_len = htons(len);
2745d8fd932SRandall Stewart 				/* Reset TOS bits */
2755d8fd932SRandall Stewart 				ip->ip_tos = iptos;
2765d8fd932SRandall Stewart 				/* Re-initialization for later version check */
2775d8fd932SRandall Stewart 				ip->ip_v = IPVERSION;
2785d8fd932SRandall Stewart 				ip->ip_hl = sizeof(*ip) >> 2;
2795d8fd932SRandall Stewart 			}
2805d8fd932SRandall Stewart 			if (th->th_sum) {
2815d8fd932SRandall Stewart 				KMOD_TCPSTAT_INC(tcps_rcvbadsum);
2825d8fd932SRandall Stewart 				m_freem(m);
2835d8fd932SRandall Stewart 				return (-1);
2845d8fd932SRandall Stewart 			}
2855d8fd932SRandall Stewart 			break;
2865d8fd932SRandall Stewart 		}
2875d8fd932SRandall Stewart #endif
2885d8fd932SRandall Stewart 	};
2895d8fd932SRandall Stewart 	return (etype);
2905d8fd932SRandall Stewart }
2915d8fd932SRandall Stewart 
292e57b2d0eSRandall Stewart /*
293e57b2d0eSRandall Stewart  * The function ctf_process_inbound_raw() is used by
294e57b2d0eSRandall Stewart  * transport developers to do the steps needed to
295e57b2d0eSRandall Stewart  * support MBUF Queuing i.e. the flags in
296e57b2d0eSRandall Stewart  * inp->inp_flags2:
297e57b2d0eSRandall Stewart  *
298e57b2d0eSRandall Stewart  * - INP_SUPPORTS_MBUFQ
299e57b2d0eSRandall Stewart  * - INP_MBUF_QUEUE_READY
300e57b2d0eSRandall Stewart  * - INP_DONT_SACK_QUEUE
3015d8fd932SRandall Stewart  * - INP_MBUF_ACKCMP
302e57b2d0eSRandall Stewart  *
303e57b2d0eSRandall Stewart  * These flags help control how LRO will deliver
304e57b2d0eSRandall Stewart  * packets to the transport. You first set in inp_flags2
305e57b2d0eSRandall Stewart  * the INP_SUPPORTS_MBUFQ to tell the LRO code that you
306e57b2d0eSRandall Stewart  * will gladly take a queue of packets instead of a compressed
307e57b2d0eSRandall Stewart  * single packet. You also set in your t_fb pointer the
308e57b2d0eSRandall Stewart  * tfb_do_queued_segments to point to ctf_process_inbound_raw.
309e57b2d0eSRandall Stewart  *
310e57b2d0eSRandall Stewart  * This then gets you lists of inbound ACK's/Data instead
311e57b2d0eSRandall Stewart  * of a condensed compressed ACK/DATA packet. Why would you
312e57b2d0eSRandall Stewart  * want that? This will get you access to all the arrival
313e57b2d0eSRandall Stewart  * times of at least LRO and possibly at the Hardware (if
314e57b2d0eSRandall Stewart  * the interface card supports that) of the actual ACK/DATA.
315e57b2d0eSRandall Stewart  * In some transport designs this is important since knowing
316e57b2d0eSRandall Stewart  * the actual time we got the packet is useful information.
317e57b2d0eSRandall Stewart  *
3185d8fd932SRandall Stewart  * A new special type of mbuf may also be supported by the transport
3195d8fd932SRandall Stewart  * if it has set the INP_MBUF_ACKCMP flag. If its set, LRO will
3205d8fd932SRandall Stewart  * possibly create a M_ACKCMP type mbuf. This is a mbuf with
3215d8fd932SRandall Stewart  * an array of "acks". One thing also to note is that when this
3225d8fd932SRandall Stewart  * occurs a subsequent LRO may find at the back of the untouched
3235d8fd932SRandall Stewart  * mbuf queue chain a M_ACKCMP and append on to it. This means
3245d8fd932SRandall Stewart  * that until the transport pulls in the mbuf chain queued
3255d8fd932SRandall Stewart  * for it more ack's may get on the mbufs that were already
3265d8fd932SRandall Stewart  * delivered. There currently is a limit of 6 acks condensed
3275d8fd932SRandall Stewart  * into 1 mbuf which means often when this is occuring, we
3285d8fd932SRandall Stewart  * don't get that effect but it does happen.
3295d8fd932SRandall Stewart  *
330e57b2d0eSRandall Stewart  * Now there are some interesting Caveats that the transport
331e57b2d0eSRandall Stewart  * designer needs to take into account when using this feature.
332e57b2d0eSRandall Stewart  *
333e57b2d0eSRandall Stewart  * 1) It is used with HPTS and pacing, when the pacing timer
334e57b2d0eSRandall Stewart  *    for output calls it will first call the input.
335e57b2d0eSRandall Stewart  * 2) When you set INP_MBUF_QUEUE_READY this tells LRO
336e57b2d0eSRandall Stewart  *    queue normal packets, I am busy pacing out data and
337e57b2d0eSRandall Stewart  *    will process the queued packets before my tfb_tcp_output
338e57b2d0eSRandall Stewart  *    call from pacing. If a non-normal packet arrives, (e.g. sack)
339e57b2d0eSRandall Stewart  *    you will be awoken immediately.
340e57b2d0eSRandall Stewart  * 3) Finally you can add the INP_DONT_SACK_QUEUE to not even
341e57b2d0eSRandall Stewart  *    be awoken if a SACK has arrived. You would do this when
342e57b2d0eSRandall Stewart  *    you were not only running a pacing for output timer
343e57b2d0eSRandall Stewart  *    but a Rack timer as well i.e. you know you are in recovery
344e57b2d0eSRandall Stewart  *    and are in the process (via the timers) of dealing with
345e57b2d0eSRandall Stewart  *    the loss.
346e57b2d0eSRandall Stewart  *
347e57b2d0eSRandall Stewart  * Now a critical thing you must be aware of here is that the
348e57b2d0eSRandall Stewart  * use of the flags has a far greater scope then just your
349e57b2d0eSRandall Stewart  * typical LRO. Why? Well thats because in the normal compressed
350e57b2d0eSRandall Stewart  * LRO case at the end of a driver interupt all packets are going
351e57b2d0eSRandall Stewart  * to get presented to the transport no matter if there is one
352e57b2d0eSRandall Stewart  * or 100. With the MBUF_QUEUE model, this is not true. You will
353e57b2d0eSRandall Stewart  * only be awoken to process the queue of packets when:
354e57b2d0eSRandall Stewart  *     a) The flags discussed above allow it.
355e57b2d0eSRandall Stewart  *          <or>
356e57b2d0eSRandall Stewart  *     b) You exceed a ack or data limit (by default the
357e57b2d0eSRandall Stewart  *        ack limit is infinity (64k acks) and the data
358e57b2d0eSRandall Stewart  *        limit is 64k of new TCP data)
359e57b2d0eSRandall Stewart  *         <or>
360e57b2d0eSRandall Stewart  *     c) The push bit has been set by the peer
361e57b2d0eSRandall Stewart  */
362e57b2d0eSRandall Stewart 
3633b0b41e6SRandall Stewart int
3643b0b41e6SRandall Stewart ctf_process_inbound_raw(struct tcpcb *tp, struct socket *so, struct mbuf *m, int has_pkt)
3653b0b41e6SRandall Stewart {
3663b0b41e6SRandall Stewart 	/*
3673b0b41e6SRandall Stewart 	 * We are passed a raw change of mbuf packets
3683b0b41e6SRandall Stewart 	 * that arrived in LRO. They are linked via
3693b0b41e6SRandall Stewart 	 * the m_nextpkt link in the pkt-headers.
3703b0b41e6SRandall Stewart 	 *
3713b0b41e6SRandall Stewart 	 * We process each one by:
3723b0b41e6SRandall Stewart 	 * a) saving off the next
3733b0b41e6SRandall Stewart 	 * b) stripping off the ether-header
3743b0b41e6SRandall Stewart 	 * c) formulating the arguments for
3753b0b41e6SRandall Stewart 	 *    the tfb_tcp_hpts_do_segment
3763b0b41e6SRandall Stewart 	 * d) calling each mbuf to tfb_tcp_hpts_do_segment
3773b0b41e6SRandall Stewart 	 *    after adjusting the time to match the arrival time.
3783b0b41e6SRandall Stewart 	 * Note that the LRO code assures no IP options are present.
3793b0b41e6SRandall Stewart 	 *
3803b0b41e6SRandall Stewart 	 * The symantics for calling tfb_tcp_hpts_do_segment are the
3813b0b41e6SRandall Stewart 	 * following:
3823b0b41e6SRandall Stewart 	 * 1) It returns 0 if all went well and you (the caller) need
3833b0b41e6SRandall Stewart 	 *    to release the lock.
3843b0b41e6SRandall Stewart 	 * 2) If nxt_pkt is set, then the function will surpress calls
38540fa3e40SGleb Smirnoff 	 *    to tcp_output() since you are promising to call again
3863b0b41e6SRandall Stewart 	 *    with another packet.
3873b0b41e6SRandall Stewart 	 * 3) If it returns 1, then you must free all the packets being
3883b0b41e6SRandall Stewart 	 *    shipped in, the tcb has been destroyed (or about to be destroyed).
3893b0b41e6SRandall Stewart 	 */
3903b0b41e6SRandall Stewart 	struct mbuf *m_save;
3913b0b41e6SRandall Stewart 	struct tcphdr *th;
3923b0b41e6SRandall Stewart #ifdef INET6
3933b0b41e6SRandall Stewart 	struct ip6_hdr *ip6 = NULL;	/* Keep compiler happy. */
3943b0b41e6SRandall Stewart #endif
3953b0b41e6SRandall Stewart #ifdef INET
3963b0b41e6SRandall Stewart 	struct ip *ip = NULL;		/* Keep compiler happy. */
3973b0b41e6SRandall Stewart #endif
3983b0b41e6SRandall Stewart 	struct ifnet *ifp;
3993b0b41e6SRandall Stewart 	struct timeval tv;
4000fd5c299SMateusz Guzik 	struct inpcb *inp __diagused;
4013b0b41e6SRandall Stewart 	int32_t retval, nxt_pkt, tlen, off;
4025d8fd932SRandall Stewart 	int etype = 0;
4033b0b41e6SRandall Stewart 	uint16_t drop_hdrlen;
4045d8fd932SRandall Stewart 	uint8_t iptos, no_vn=0;
4053b0b41e6SRandall Stewart 
406d40c0d47SGleb Smirnoff 	NET_EPOCH_ASSERT();
4075d8fd932SRandall Stewart 	if (m)
4085d8fd932SRandall Stewart 		ifp = m_rcvif(m);
4093b0b41e6SRandall Stewart 	else
4103b0b41e6SRandall Stewart 		ifp = NULL;
4115d8fd932SRandall Stewart 	if (ifp == NULL) {
4123b0b41e6SRandall Stewart 		/*
4133b0b41e6SRandall Stewart 		 * We probably should not work around
4143b0b41e6SRandall Stewart 		 * but kassert, since lro alwasy sets rcvif.
4153b0b41e6SRandall Stewart 		 */
4163b0b41e6SRandall Stewart 		no_vn = 1;
4173b0b41e6SRandall Stewart 		goto skip_vnet;
4183b0b41e6SRandall Stewart 	}
4193b0b41e6SRandall Stewart 	CURVNET_SET(ifp->if_vnet);
4203b0b41e6SRandall Stewart skip_vnet:
4215d8fd932SRandall Stewart 	tcp_get_usecs(&tv);
4223b0b41e6SRandall Stewart 	while (m) {
4233b0b41e6SRandall Stewart 		m_save = m->m_nextpkt;
4243b0b41e6SRandall Stewart 		m->m_nextpkt = NULL;
4255d8fd932SRandall Stewart 		if ((m->m_flags & M_ACKCMP) == 0) {
4263b0b41e6SRandall Stewart 			/* Now lets get the ether header */
4275d8fd932SRandall Stewart 			etype = ctf_get_enet_type(ifp, m);
4285d8fd932SRandall Stewart 			if (etype == -1) {
4295d8fd932SRandall Stewart 				/* Skip this packet it was freed by checksum */
4305d8fd932SRandall Stewart 				goto skipped_pkt;
4315d8fd932SRandall Stewart 			}
4325d8fd932SRandall Stewart 			KASSERT(((etype == ETHERTYPE_IPV6) || (etype == ETHERTYPE_IP)),
4335d8fd932SRandall Stewart 				("tp:%p m:%p etype:0x%x -- not IP or IPv6", tp, m, etype));
4343b0b41e6SRandall Stewart 			/* Trim off the ethernet header */
4353b0b41e6SRandall Stewart 			switch (etype) {
4363b0b41e6SRandall Stewart #ifdef INET6
4373b0b41e6SRandall Stewart 			case ETHERTYPE_IPV6:
4385d8fd932SRandall Stewart 				ip6 = mtod(m, struct ip6_hdr *);
4393b0b41e6SRandall Stewart 				th = (struct tcphdr *)(ip6 + 1);
4403b0b41e6SRandall Stewart 				tlen = ntohs(ip6->ip6_plen);
4413b0b41e6SRandall Stewart 				drop_hdrlen = sizeof(*ip6);
4425d8fd932SRandall Stewart 				iptos = (ntohl(ip6->ip6_flow) >> 20) & 0xff;
4433b0b41e6SRandall Stewart 				break;
4443b0b41e6SRandall Stewart #endif
4453b0b41e6SRandall Stewart #ifdef INET
4463b0b41e6SRandall Stewart 			case ETHERTYPE_IP:
4475d8fd932SRandall Stewart 				ip = mtod(m, struct ip *);
4483b0b41e6SRandall Stewart 				th = (struct tcphdr *)(ip + 1);
4493b0b41e6SRandall Stewart 				drop_hdrlen = sizeof(*ip);
4503b0b41e6SRandall Stewart 				iptos = ip->ip_tos;
4513b0b41e6SRandall Stewart 				tlen = ntohs(ip->ip_len) - sizeof(struct ip);
4523b0b41e6SRandall Stewart 				break;
4533b0b41e6SRandall Stewart #endif
4545d8fd932SRandall Stewart 			} /* end switch */
4553b0b41e6SRandall Stewart 			/*
4563b0b41e6SRandall Stewart 			 * Convert TCP protocol specific fields to host format.
4573b0b41e6SRandall Stewart 			 */
4583b0b41e6SRandall Stewart 			tcp_fields_to_host(th);
4593b0b41e6SRandall Stewart 			off = th->th_off << 2;
4603b0b41e6SRandall Stewart 			if (off < sizeof (struct tcphdr) || off > tlen) {
4615d8fd932SRandall Stewart 				printf("off:%d < hdrlen:%zu || > tlen:%u -- dump\n",
4625d8fd932SRandall Stewart 				       off,
4635d8fd932SRandall Stewart 				       sizeof(struct tcphdr),
4645d8fd932SRandall Stewart 				       tlen);
4657ca6e296SMichael Tuexen 				KMOD_TCPSTAT_INC(tcps_rcvbadoff);
4663b0b41e6SRandall Stewart 				m_freem(m);
4673b0b41e6SRandall Stewart 				goto skipped_pkt;
4683b0b41e6SRandall Stewart 			}
4693b0b41e6SRandall Stewart 			tlen -= off;
4703b0b41e6SRandall Stewart 			drop_hdrlen += off;
4713b0b41e6SRandall Stewart 			/*
4723b0b41e6SRandall Stewart 			 * Now lets setup the timeval to be when we should
4733b0b41e6SRandall Stewart 			 * have been called (if we can).
4743b0b41e6SRandall Stewart 			 */
4753b0b41e6SRandall Stewart 			m->m_pkthdr.lro_nsegs = 1;
4763b0b41e6SRandall Stewart 			/* Now what about next packet? */
4775d8fd932SRandall Stewart 		} else {
4785d8fd932SRandall Stewart 			/*
4795d8fd932SRandall Stewart 			 * This mbuf is an array of acks that have
4805d8fd932SRandall Stewart 			 * been compressed. We assert the inp has
4815d8fd932SRandall Stewart 			 * the flag set to enable this!
4825d8fd932SRandall Stewart 			 */
4835d8fd932SRandall Stewart 			KASSERT((tp->t_inpcb->inp_flags2 & INP_MBUF_ACKCMP),
4845d8fd932SRandall Stewart 				("tp:%p inp:%p no INP_MBUF_ACKCMP flags?", tp, tp->t_inpcb));
4855d8fd932SRandall Stewart 			tlen = 0;
4865d8fd932SRandall Stewart 			drop_hdrlen = 0;
4875d8fd932SRandall Stewart 			th = NULL;
4885d8fd932SRandall Stewart 			iptos = 0;
4895d8fd932SRandall Stewart 		}
4905d8fd932SRandall Stewart 		tcp_get_usecs(&tv);
4913b0b41e6SRandall Stewart 		if (m_save || has_pkt)
4923b0b41e6SRandall Stewart 			nxt_pkt = 1;
4933b0b41e6SRandall Stewart 		else
4943b0b41e6SRandall Stewart 			nxt_pkt = 0;
4955d8fd932SRandall Stewart 		if ((m->m_flags & M_ACKCMP) == 0)
496963fb2adSRandall Stewart 			KMOD_TCPSTAT_INC(tcps_rcvtotal);
4975d8fd932SRandall Stewart 		else
4985d8fd932SRandall Stewart 			KMOD_TCPSTAT_ADD(tcps_rcvtotal, (m->m_len / sizeof(struct tcp_ackent)));
4995d8fd932SRandall Stewart 		inp = tp->t_inpcb;
5005d8fd932SRandall Stewart 		INP_WLOCK_ASSERT(inp);
5013b0b41e6SRandall Stewart 		retval = (*tp->t_fb->tfb_do_segment_nounlock)(m, th, so, tp, drop_hdrlen, tlen,
5023b0b41e6SRandall Stewart 							      iptos, nxt_pkt, &tv);
5033b0b41e6SRandall Stewart 		if (retval) {
5043b0b41e6SRandall Stewart 			/* We lost the lock and tcb probably */
5053b0b41e6SRandall Stewart 			m = m_save;
5063b0b41e6SRandall Stewart 			while(m) {
5073b0b41e6SRandall Stewart 				m_save = m->m_nextpkt;
5083b0b41e6SRandall Stewart 				m->m_nextpkt = NULL;
5093b0b41e6SRandall Stewart 				m_freem(m);
5103b0b41e6SRandall Stewart 				m = m_save;
5113b0b41e6SRandall Stewart 			}
512a730d823SMichael Tuexen 			if (no_vn == 0) {
5133b0b41e6SRandall Stewart 				CURVNET_RESTORE();
514a730d823SMichael Tuexen 			}
5155d8fd932SRandall Stewart 			INP_UNLOCK_ASSERT(inp);
5163b0b41e6SRandall Stewart 			return(retval);
5173b0b41e6SRandall Stewart 		}
5183b0b41e6SRandall Stewart skipped_pkt:
5193b0b41e6SRandall Stewart 		m = m_save;
5203b0b41e6SRandall Stewart 	}
521a730d823SMichael Tuexen 	if (no_vn == 0) {
5223b0b41e6SRandall Stewart 		CURVNET_RESTORE();
523a730d823SMichael Tuexen 	}
5243b0b41e6SRandall Stewart 	return(retval);
5253b0b41e6SRandall Stewart }
5263b0b41e6SRandall Stewart 
5273b0b41e6SRandall Stewart int
5283b0b41e6SRandall Stewart ctf_do_queued_segments(struct socket *so, struct tcpcb *tp, int have_pkt)
5293b0b41e6SRandall Stewart {
5303b0b41e6SRandall Stewart 	struct mbuf *m;
5313b0b41e6SRandall Stewart 
5323b0b41e6SRandall Stewart 	/* First lets see if we have old packets */
5333b0b41e6SRandall Stewart 	if (tp->t_in_pkt) {
5343b0b41e6SRandall Stewart 		m = tp->t_in_pkt;
5353b0b41e6SRandall Stewart 		tp->t_in_pkt = NULL;
5363b0b41e6SRandall Stewart 		tp->t_tail_pkt = NULL;
5373b0b41e6SRandall Stewart 		if (ctf_process_inbound_raw(tp, so, m, have_pkt)) {
5383b0b41e6SRandall Stewart 			/* We lost the tcpcb (maybe a RST came in)? */
5393b0b41e6SRandall Stewart 			return(1);
5403b0b41e6SRandall Stewart 		}
5413b0b41e6SRandall Stewart 	}
5423b0b41e6SRandall Stewart 	return (0);
5433b0b41e6SRandall Stewart }
5443b0b41e6SRandall Stewart 
5453b0b41e6SRandall Stewart uint32_t
5463b0b41e6SRandall Stewart ctf_outstanding(struct tcpcb *tp)
5473b0b41e6SRandall Stewart {
548777b88d6SRandall Stewart 	uint32_t bytes_out;
549777b88d6SRandall Stewart 
550777b88d6SRandall Stewart 	bytes_out = tp->snd_max - tp->snd_una;
551777b88d6SRandall Stewart 	if (tp->t_state < TCPS_ESTABLISHED)
552777b88d6SRandall Stewart 		bytes_out++;
553777b88d6SRandall Stewart 	if (tp->t_flags & TF_SENTFIN)
554777b88d6SRandall Stewart 		bytes_out++;
555777b88d6SRandall Stewart 	return (bytes_out);
5563b0b41e6SRandall Stewart }
5573b0b41e6SRandall Stewart 
5583b0b41e6SRandall Stewart uint32_t
5593b0b41e6SRandall Stewart ctf_flight_size(struct tcpcb *tp, uint32_t rc_sacked)
5603b0b41e6SRandall Stewart {
5613b0b41e6SRandall Stewart 	if (rc_sacked <= ctf_outstanding(tp))
5623b0b41e6SRandall Stewart 		return(ctf_outstanding(tp) - rc_sacked);
5633b0b41e6SRandall Stewart 	else {
5643b0b41e6SRandall Stewart 		return (0);
5653b0b41e6SRandall Stewart 	}
5663b0b41e6SRandall Stewart }
5673b0b41e6SRandall Stewart 
5683b0b41e6SRandall Stewart void
5693b0b41e6SRandall Stewart ctf_do_dropwithreset(struct mbuf *m, struct tcpcb *tp, struct tcphdr *th,
5703b0b41e6SRandall Stewart     int32_t rstreason, int32_t tlen)
5713b0b41e6SRandall Stewart {
5723b0b41e6SRandall Stewart 	if (tp != NULL) {
5733b0b41e6SRandall Stewart 		tcp_dropwithreset(m, th, tp, tlen, rstreason);
5743b0b41e6SRandall Stewart 		INP_WUNLOCK(tp->t_inpcb);
5753b0b41e6SRandall Stewart 	} else
5763b0b41e6SRandall Stewart 		tcp_dropwithreset(m, th, NULL, tlen, rstreason);
5773b0b41e6SRandall Stewart }
5783b0b41e6SRandall Stewart 
5795d8fd932SRandall Stewart void
5805d8fd932SRandall Stewart ctf_ack_war_checks(struct tcpcb *tp, uint32_t *ts, uint32_t *cnt)
5815d8fd932SRandall Stewart {
5825d8fd932SRandall Stewart 	if ((ts != NULL) && (cnt != NULL) &&
5835d8fd932SRandall Stewart 	    (tcp_ack_war_time_window > 0) &&
5845d8fd932SRandall Stewart 	    (tcp_ack_war_cnt > 0)) {
5855d8fd932SRandall Stewart 		/* We are possibly doing ack war prevention */
5865d8fd932SRandall Stewart 		uint32_t cts;
5875d8fd932SRandall Stewart 
5885d8fd932SRandall Stewart 		/*
5895d8fd932SRandall Stewart 		 * We use a msec tick here which gives us
5905d8fd932SRandall Stewart 		 * roughly 49 days. We don't need the
5915d8fd932SRandall Stewart 		 * precision of a microsecond timestamp which
5925d8fd932SRandall Stewart 		 * would only give us hours.
5935d8fd932SRandall Stewart 		 */
5945d8fd932SRandall Stewart 		cts = tcp_ts_getticks();
5955d8fd932SRandall Stewart 		if (TSTMP_LT((*ts), cts)) {
5965d8fd932SRandall Stewart 			/* Timestamp is in the past */
5975d8fd932SRandall Stewart 			*cnt = 0;
5985d8fd932SRandall Stewart 			*ts = (cts + tcp_ack_war_time_window);
5995d8fd932SRandall Stewart 		}
6005d8fd932SRandall Stewart 		if (*cnt < tcp_ack_war_cnt) {
6015d8fd932SRandall Stewart 			*cnt = (*cnt + 1);
6025d8fd932SRandall Stewart 			tp->t_flags |= TF_ACKNOW;
6035d8fd932SRandall Stewart 		} else
6045d8fd932SRandall Stewart 			tp->t_flags &= ~TF_ACKNOW;
6055d8fd932SRandall Stewart 	} else
6065d8fd932SRandall Stewart 		tp->t_flags |= TF_ACKNOW;
6075d8fd932SRandall Stewart }
6085d8fd932SRandall Stewart 
6093b0b41e6SRandall Stewart /*
6103b0b41e6SRandall Stewart  * ctf_drop_checks returns 1 for you should not proceed. It places
6113b0b41e6SRandall Stewart  * in ret_val what should be returned 1/0 by the caller. The 1 indicates
6123b0b41e6SRandall Stewart  * that the TCB is unlocked and probably dropped. The 0 indicates the
6133b0b41e6SRandall Stewart  * TCB is still valid and locked.
6143b0b41e6SRandall Stewart  */
6153b0b41e6SRandall Stewart int
6165d8fd932SRandall Stewart _ctf_drop_checks(struct tcpopt *to, struct mbuf *m, struct tcphdr *th,
6175d8fd932SRandall Stewart 		 struct tcpcb *tp, int32_t *tlenp,
6185d8fd932SRandall Stewart 		 int32_t *thf, int32_t *drop_hdrlen, int32_t *ret_val,
6195d8fd932SRandall Stewart 		 uint32_t *ts, uint32_t *cnt)
6203b0b41e6SRandall Stewart {
6213b0b41e6SRandall Stewart 	int32_t todrop;
6223b0b41e6SRandall Stewart 	int32_t thflags;
6233b0b41e6SRandall Stewart 	int32_t tlen;
6243b0b41e6SRandall Stewart 
6253b0b41e6SRandall Stewart 	thflags = *thf;
6263b0b41e6SRandall Stewart 	tlen = *tlenp;
6273b0b41e6SRandall Stewart 	todrop = tp->rcv_nxt - th->th_seq;
6283b0b41e6SRandall Stewart 	if (todrop > 0) {
6293b0b41e6SRandall Stewart 		if (thflags & TH_SYN) {
6303b0b41e6SRandall Stewart 			thflags &= ~TH_SYN;
6313b0b41e6SRandall Stewart 			th->th_seq++;
6323b0b41e6SRandall Stewart 			if (th->th_urp > 1)
6333b0b41e6SRandall Stewart 				th->th_urp--;
6343b0b41e6SRandall Stewart 			else
6353b0b41e6SRandall Stewart 				thflags &= ~TH_URG;
6363b0b41e6SRandall Stewart 			todrop--;
6373b0b41e6SRandall Stewart 		}
6383b0b41e6SRandall Stewart 		/*
6393b0b41e6SRandall Stewart 		 * Following if statement from Stevens, vol. 2, p. 960.
6403b0b41e6SRandall Stewart 		 */
6413b0b41e6SRandall Stewart 		if (todrop > tlen
6423b0b41e6SRandall Stewart 		    || (todrop == tlen && (thflags & TH_FIN) == 0)) {
6433b0b41e6SRandall Stewart 			/*
6443b0b41e6SRandall Stewart 			 * Any valid FIN must be to the left of the window.
6453b0b41e6SRandall Stewart 			 * At this point the FIN must be a duplicate or out
6463b0b41e6SRandall Stewart 			 * of sequence; drop it.
6473b0b41e6SRandall Stewart 			 */
6483b0b41e6SRandall Stewart 			thflags &= ~TH_FIN;
6493b0b41e6SRandall Stewart 			/*
6503b0b41e6SRandall Stewart 			 * Send an ACK to resynchronize and drop any data.
6513b0b41e6SRandall Stewart 			 * But keep on processing for RST or ACK.
6523b0b41e6SRandall Stewart 			 */
6535d8fd932SRandall Stewart 			ctf_ack_war_checks(tp, ts, cnt);
6543b0b41e6SRandall Stewart 			todrop = tlen;
6557ca6e296SMichael Tuexen 			KMOD_TCPSTAT_INC(tcps_rcvduppack);
6567ca6e296SMichael Tuexen 			KMOD_TCPSTAT_ADD(tcps_rcvdupbyte, todrop);
6573b0b41e6SRandall Stewart 		} else {
6587ca6e296SMichael Tuexen 			KMOD_TCPSTAT_INC(tcps_rcvpartduppack);
6597ca6e296SMichael Tuexen 			KMOD_TCPSTAT_ADD(tcps_rcvpartdupbyte, todrop);
6603b0b41e6SRandall Stewart 		}
6613b0b41e6SRandall Stewart 		/*
6623b0b41e6SRandall Stewart 		 * DSACK - add SACK block for dropped range
6633b0b41e6SRandall Stewart 		 */
6648f63a52bSMichael Tuexen 		if ((todrop > 0) && (tp->t_flags & TF_SACK_PERMIT)) {
6653b0b41e6SRandall Stewart 			/*
6663b0b41e6SRandall Stewart 			 * ACK now, as the next in-sequence segment
6673b0b41e6SRandall Stewart 			 * will clear the DSACK block again
6683b0b41e6SRandall Stewart 			 */
6695d8fd932SRandall Stewart 			ctf_ack_war_checks(tp, ts, cnt);
6705d8fd932SRandall Stewart 			if (tp->t_flags & TF_ACKNOW)
6715d8fd932SRandall Stewart 				tcp_update_sack_list(tp, th->th_seq,
6725d8fd932SRandall Stewart 						     th->th_seq + todrop);
6733b0b41e6SRandall Stewart 		}
6743b0b41e6SRandall Stewart 		*drop_hdrlen += todrop;	/* drop from the top afterwards */
6753b0b41e6SRandall Stewart 		th->th_seq += todrop;
6763b0b41e6SRandall Stewart 		tlen -= todrop;
6773b0b41e6SRandall Stewart 		if (th->th_urp > todrop)
6783b0b41e6SRandall Stewart 			th->th_urp -= todrop;
6793b0b41e6SRandall Stewart 		else {
6803b0b41e6SRandall Stewart 			thflags &= ~TH_URG;
6813b0b41e6SRandall Stewart 			th->th_urp = 0;
6823b0b41e6SRandall Stewart 		}
6833b0b41e6SRandall Stewart 	}
6843b0b41e6SRandall Stewart 	/*
6853b0b41e6SRandall Stewart 	 * If segment ends after window, drop trailing data (and PUSH and
6863b0b41e6SRandall Stewart 	 * FIN); if nothing left, just ACK.
6873b0b41e6SRandall Stewart 	 */
6883b0b41e6SRandall Stewart 	todrop = (th->th_seq + tlen) - (tp->rcv_nxt + tp->rcv_wnd);
6893b0b41e6SRandall Stewart 	if (todrop > 0) {
6907ca6e296SMichael Tuexen 		KMOD_TCPSTAT_INC(tcps_rcvpackafterwin);
6913b0b41e6SRandall Stewart 		if (todrop >= tlen) {
6927ca6e296SMichael Tuexen 			KMOD_TCPSTAT_ADD(tcps_rcvbyteafterwin, tlen);
6933b0b41e6SRandall Stewart 			/*
6943b0b41e6SRandall Stewart 			 * If window is closed can only take segments at
6953b0b41e6SRandall Stewart 			 * window edge, and have to drop data and PUSH from
6963b0b41e6SRandall Stewart 			 * incoming segments.  Continue processing, but
6973b0b41e6SRandall Stewart 			 * remember to ack.  Otherwise, drop segment and
6983b0b41e6SRandall Stewart 			 * ack.
6993b0b41e6SRandall Stewart 			 */
7003b0b41e6SRandall Stewart 			if (tp->rcv_wnd == 0 && th->th_seq == tp->rcv_nxt) {
7015d8fd932SRandall Stewart 				ctf_ack_war_checks(tp, ts, cnt);
7027ca6e296SMichael Tuexen 				KMOD_TCPSTAT_INC(tcps_rcvwinprobe);
7033b0b41e6SRandall Stewart 			} else {
7045d8fd932SRandall Stewart 				__ctf_do_dropafterack(m, tp, th, thflags, tlen, ret_val, ts, cnt);
7053b0b41e6SRandall Stewart 				return (1);
7063b0b41e6SRandall Stewart 			}
7073b0b41e6SRandall Stewart 		} else
7087ca6e296SMichael Tuexen 			KMOD_TCPSTAT_ADD(tcps_rcvbyteafterwin, todrop);
7093b0b41e6SRandall Stewart 		m_adj(m, -todrop);
7103b0b41e6SRandall Stewart 		tlen -= todrop;
7113b0b41e6SRandall Stewart 		thflags &= ~(TH_PUSH | TH_FIN);
7123b0b41e6SRandall Stewart 	}
7133b0b41e6SRandall Stewart 	*thf = thflags;
7143b0b41e6SRandall Stewart 	*tlenp = tlen;
7153b0b41e6SRandall Stewart 	return (0);
7163b0b41e6SRandall Stewart }
7173b0b41e6SRandall Stewart 
7183b0b41e6SRandall Stewart /*
7193b0b41e6SRandall Stewart  * The value in ret_val informs the caller
7203b0b41e6SRandall Stewart  * if we dropped the tcb (and lock) or not.
7213b0b41e6SRandall Stewart  * 1 = we dropped it, 0 = the TCB is still locked
7223b0b41e6SRandall Stewart  * and valid.
7233b0b41e6SRandall Stewart  */
7243b0b41e6SRandall Stewart void
7255d8fd932SRandall Stewart __ctf_do_dropafterack(struct mbuf *m, struct tcpcb *tp, struct tcphdr *th, int32_t thflags, int32_t tlen, int32_t *ret_val, uint32_t *ts, uint32_t *cnt)
7263b0b41e6SRandall Stewart {
7273b0b41e6SRandall Stewart 	/*
7283b0b41e6SRandall Stewart 	 * Generate an ACK dropping incoming segment if it occupies sequence
7293b0b41e6SRandall Stewart 	 * space, where the ACK reflects our state.
7303b0b41e6SRandall Stewart 	 *
7313b0b41e6SRandall Stewart 	 * We can now skip the test for the RST flag since all paths to this
7323b0b41e6SRandall Stewart 	 * code happen after packets containing RST have been dropped.
7333b0b41e6SRandall Stewart 	 *
7343b0b41e6SRandall Stewart 	 * In the SYN-RECEIVED state, don't send an ACK unless the segment
7353b0b41e6SRandall Stewart 	 * we received passes the SYN-RECEIVED ACK test. If it fails send a
7363b0b41e6SRandall Stewart 	 * RST.  This breaks the loop in the "LAND" DoS attack, and also
7373b0b41e6SRandall Stewart 	 * prevents an ACK storm between two listening ports that have been
7383b0b41e6SRandall Stewart 	 * sent forged SYN segments, each with the source address of the
7393b0b41e6SRandall Stewart 	 * other.
7403b0b41e6SRandall Stewart 	 */
7413b0b41e6SRandall Stewart 	if (tp->t_state == TCPS_SYN_RECEIVED && (thflags & TH_ACK) &&
7423b0b41e6SRandall Stewart 	    (SEQ_GT(tp->snd_una, th->th_ack) ||
7433b0b41e6SRandall Stewart 	    SEQ_GT(th->th_ack, tp->snd_max))) {
7443b0b41e6SRandall Stewart 		*ret_val = 1;
7453b0b41e6SRandall Stewart 		ctf_do_dropwithreset(m, tp, th, BANDLIM_RST_OPENPORT, tlen);
7463b0b41e6SRandall Stewart 		return;
7473b0b41e6SRandall Stewart 	} else
7483b0b41e6SRandall Stewart 		*ret_val = 0;
7495d8fd932SRandall Stewart 	ctf_ack_war_checks(tp, ts, cnt);
7503b0b41e6SRandall Stewart 	if (m)
7513b0b41e6SRandall Stewart 		m_freem(m);
7523b0b41e6SRandall Stewart }
7533b0b41e6SRandall Stewart 
7543b0b41e6SRandall Stewart void
7553b0b41e6SRandall Stewart ctf_do_drop(struct mbuf *m, struct tcpcb *tp)
7563b0b41e6SRandall Stewart {
7573b0b41e6SRandall Stewart 
7583b0b41e6SRandall Stewart 	/*
7593b0b41e6SRandall Stewart 	 * Drop space held by incoming segment and return.
7603b0b41e6SRandall Stewart 	 */
7613b0b41e6SRandall Stewart 	if (tp != NULL)
7623b0b41e6SRandall Stewart 		INP_WUNLOCK(tp->t_inpcb);
7633b0b41e6SRandall Stewart 	if (m)
7643b0b41e6SRandall Stewart 		m_freem(m);
7653b0b41e6SRandall Stewart }
7663b0b41e6SRandall Stewart 
7673b0b41e6SRandall Stewart int
76897e28f0fSRandall Stewart __ctf_process_rst(struct mbuf *m, struct tcphdr *th, struct socket *so,
76997e28f0fSRandall Stewart 		struct tcpcb *tp, uint32_t *ts, uint32_t *cnt)
7703b0b41e6SRandall Stewart {
7713b0b41e6SRandall Stewart 	/*
7723b0b41e6SRandall Stewart 	 * RFC5961 Section 3.2
7733b0b41e6SRandall Stewart 	 *
7743b0b41e6SRandall Stewart 	 * - RST drops connection only if SEG.SEQ == RCV.NXT. - If RST is in
7753b0b41e6SRandall Stewart 	 * window, we send challenge ACK.
7763b0b41e6SRandall Stewart 	 *
7773b0b41e6SRandall Stewart 	 * Note: to take into account delayed ACKs, we should test against
7783b0b41e6SRandall Stewart 	 * last_ack_sent instead of rcv_nxt. Note 2: we handle special case
7793b0b41e6SRandall Stewart 	 * of closed window, not covered by the RFC.
7803b0b41e6SRandall Stewart 	 */
7813b0b41e6SRandall Stewart 	int dropped = 0;
7823b0b41e6SRandall Stewart 
7835d8fd932SRandall Stewart 	if ((SEQ_GEQ(th->th_seq, tp->last_ack_sent) &&
7843b0b41e6SRandall Stewart 	    SEQ_LT(th->th_seq, tp->last_ack_sent + tp->rcv_wnd)) ||
7853b0b41e6SRandall Stewart 	    (tp->rcv_wnd == 0 && tp->last_ack_sent == th->th_seq)) {
7863b0b41e6SRandall Stewart 		KASSERT(tp->t_state != TCPS_SYN_SENT,
7873b0b41e6SRandall Stewart 		    ("%s: TH_RST for TCPS_SYN_SENT th %p tp %p",
7883b0b41e6SRandall Stewart 		    __func__, th, tp));
7893b0b41e6SRandall Stewart 
7903b0b41e6SRandall Stewart 		if (V_tcp_insecure_rst ||
7913b0b41e6SRandall Stewart 		    (tp->last_ack_sent == th->th_seq) ||
7925d8fd932SRandall Stewart 		    (tp->rcv_nxt == th->th_seq)) {
7937ca6e296SMichael Tuexen 			KMOD_TCPSTAT_INC(tcps_drops);
7943b0b41e6SRandall Stewart 			/* Drop the connection. */
7953b0b41e6SRandall Stewart 			switch (tp->t_state) {
7963b0b41e6SRandall Stewart 			case TCPS_SYN_RECEIVED:
7973b0b41e6SRandall Stewart 				so->so_error = ECONNREFUSED;
7983b0b41e6SRandall Stewart 				goto close;
7993b0b41e6SRandall Stewart 			case TCPS_ESTABLISHED:
8003b0b41e6SRandall Stewart 			case TCPS_FIN_WAIT_1:
8013b0b41e6SRandall Stewart 			case TCPS_FIN_WAIT_2:
8023b0b41e6SRandall Stewart 			case TCPS_CLOSE_WAIT:
8033b0b41e6SRandall Stewart 			case TCPS_CLOSING:
8043b0b41e6SRandall Stewart 			case TCPS_LAST_ACK:
8053b0b41e6SRandall Stewart 				so->so_error = ECONNRESET;
8063b0b41e6SRandall Stewart 		close:
8073b0b41e6SRandall Stewart 				tcp_state_change(tp, TCPS_CLOSED);
8083b0b41e6SRandall Stewart 				/* FALLTHROUGH */
8093b0b41e6SRandall Stewart 			default:
810963fb2adSRandall Stewart 				tcp_log_end_status(tp, TCP_EI_STATUS_CLIENT_RST);
8113b0b41e6SRandall Stewart 				tp = tcp_close(tp);
8123b0b41e6SRandall Stewart 			}
8133b0b41e6SRandall Stewart 			dropped = 1;
8143b0b41e6SRandall Stewart 			ctf_do_drop(m, tp);
8153b0b41e6SRandall Stewart 		} else {
81697e28f0fSRandall Stewart 			int send_challenge;
81797e28f0fSRandall Stewart 
8187ca6e296SMichael Tuexen 			KMOD_TCPSTAT_INC(tcps_badrst);
81997e28f0fSRandall Stewart 			if ((ts != NULL) && (cnt != NULL) &&
82097e28f0fSRandall Stewart 			    (tcp_ack_war_time_window > 0) &&
82197e28f0fSRandall Stewart 			    (tcp_ack_war_cnt > 0)) {
82297e28f0fSRandall Stewart 				/* We are possibly preventing an  ack-rst  war prevention */
82397e28f0fSRandall Stewart 				uint32_t cts;
82497e28f0fSRandall Stewart 
82597e28f0fSRandall Stewart 				/*
82697e28f0fSRandall Stewart 				 * We use a msec tick here which gives us
82797e28f0fSRandall Stewart 				 * roughly 49 days. We don't need the
82897e28f0fSRandall Stewart 				 * precision of a microsecond timestamp which
82997e28f0fSRandall Stewart 				 * would only give us hours.
83097e28f0fSRandall Stewart 				 */
83197e28f0fSRandall Stewart 				cts = tcp_ts_getticks();
83297e28f0fSRandall Stewart 				if (TSTMP_LT((*ts), cts)) {
83397e28f0fSRandall Stewart 					/* Timestamp is in the past */
83497e28f0fSRandall Stewart 					*cnt = 0;
83597e28f0fSRandall Stewart 					*ts = (cts + tcp_ack_war_time_window);
83697e28f0fSRandall Stewart 				}
83797e28f0fSRandall Stewart 				if (*cnt < tcp_ack_war_cnt) {
83897e28f0fSRandall Stewart 					*cnt = (*cnt + 1);
83997e28f0fSRandall Stewart 					send_challenge = 1;
84097e28f0fSRandall Stewart 				} else
84197e28f0fSRandall Stewart 					send_challenge = 0;
84297e28f0fSRandall Stewart 			} else
84397e28f0fSRandall Stewart 				send_challenge = 1;
84497e28f0fSRandall Stewart 			if (send_challenge) {
8453b0b41e6SRandall Stewart 				/* Send challenge ACK. */
8463b0b41e6SRandall Stewart 				tcp_respond(tp, mtod(m, void *), th, m,
8473b0b41e6SRandall Stewart 					    tp->rcv_nxt, tp->snd_nxt, TH_ACK);
8483b0b41e6SRandall Stewart 				tp->last_ack_sent = tp->rcv_nxt;
8493b0b41e6SRandall Stewart 			}
85097e28f0fSRandall Stewart 		}
8513b0b41e6SRandall Stewart 	} else {
8523b0b41e6SRandall Stewart 		m_freem(m);
8533b0b41e6SRandall Stewart 	}
8543b0b41e6SRandall Stewart 	return (dropped);
8553b0b41e6SRandall Stewart }
8563b0b41e6SRandall Stewart 
8573b0b41e6SRandall Stewart /*
8583b0b41e6SRandall Stewart  * The value in ret_val informs the caller
8593b0b41e6SRandall Stewart  * if we dropped the tcb (and lock) or not.
8603b0b41e6SRandall Stewart  * 1 = we dropped it, 0 = the TCB is still locked
8613b0b41e6SRandall Stewart  * and valid.
8623b0b41e6SRandall Stewart  */
8633b0b41e6SRandall Stewart void
864*83c1ec92SRichard Scheffenegger ctf_challenge_ack(struct mbuf *m, struct tcphdr *th, struct tcpcb *tp, uint8_t iptos, int32_t * ret_val)
8653b0b41e6SRandall Stewart {
866d40c0d47SGleb Smirnoff 
867d40c0d47SGleb Smirnoff 	NET_EPOCH_ASSERT();
8683b0b41e6SRandall Stewart 
8697ca6e296SMichael Tuexen 	KMOD_TCPSTAT_INC(tcps_badsyn);
8703b0b41e6SRandall Stewart 	if (V_tcp_insecure_syn &&
8713b0b41e6SRandall Stewart 	    SEQ_GEQ(th->th_seq, tp->last_ack_sent) &&
8723b0b41e6SRandall Stewart 	    SEQ_LT(th->th_seq, tp->last_ack_sent + tp->rcv_wnd)) {
8733b0b41e6SRandall Stewart 		tp = tcp_drop(tp, ECONNRESET);
8743b0b41e6SRandall Stewart 		*ret_val = 1;
8753b0b41e6SRandall Stewart 		ctf_do_drop(m, tp);
8763b0b41e6SRandall Stewart 	} else {
877*83c1ec92SRichard Scheffenegger 		tcp_ecn_input_syn_sent(tp, tcp_get_flags(th), iptos);
8783b0b41e6SRandall Stewart 		/* Send challenge ACK. */
8793b0b41e6SRandall Stewart 		tcp_respond(tp, mtod(m, void *), th, m, tp->rcv_nxt,
8803b0b41e6SRandall Stewart 		    tp->snd_nxt, TH_ACK);
8813b0b41e6SRandall Stewart 		tp->last_ack_sent = tp->rcv_nxt;
8823b0b41e6SRandall Stewart 		m = NULL;
8833b0b41e6SRandall Stewart 		*ret_val = 0;
8843b0b41e6SRandall Stewart 		ctf_do_drop(m, NULL);
8853b0b41e6SRandall Stewart 	}
8863b0b41e6SRandall Stewart }
8873b0b41e6SRandall Stewart 
8883b0b41e6SRandall Stewart /*
8895d8fd932SRandall Stewart  * ctf_ts_check returns 1 for you should not proceed, the state
8903b0b41e6SRandall Stewart  * machine should return. It places in ret_val what should
8913b0b41e6SRandall Stewart  * be returned 1/0 by the caller (hpts_do_segment). The 1 indicates
8923b0b41e6SRandall Stewart  * that the TCB is unlocked and probably dropped. The 0 indicates the
8933b0b41e6SRandall Stewart  * TCB is still valid and locked.
8943b0b41e6SRandall Stewart  */
8953b0b41e6SRandall Stewart int
8963b0b41e6SRandall Stewart ctf_ts_check(struct mbuf *m, struct tcphdr *th, struct tcpcb *tp,
8973b0b41e6SRandall Stewart     int32_t tlen, int32_t thflags, int32_t * ret_val)
8983b0b41e6SRandall Stewart {
8993b0b41e6SRandall Stewart 
9003b0b41e6SRandall Stewart 	if (tcp_ts_getticks() - tp->ts_recent_age > TCP_PAWS_IDLE) {
9013b0b41e6SRandall Stewart 		/*
9023b0b41e6SRandall Stewart 		 * Invalidate ts_recent.  If this segment updates ts_recent,
9033b0b41e6SRandall Stewart 		 * the age will be reset later and ts_recent will get a
9043b0b41e6SRandall Stewart 		 * valid value.  If it does not, setting ts_recent to zero
9053b0b41e6SRandall Stewart 		 * will at least satisfy the requirement that zero be placed
9063b0b41e6SRandall Stewart 		 * in the timestamp echo reply when ts_recent isn't valid.
9073b0b41e6SRandall Stewart 		 * The age isn't reset until we get a valid ts_recent
9083b0b41e6SRandall Stewart 		 * because we don't want out-of-order segments to be dropped
9093b0b41e6SRandall Stewart 		 * when ts_recent is old.
9103b0b41e6SRandall Stewart 		 */
9113b0b41e6SRandall Stewart 		tp->ts_recent = 0;
9123b0b41e6SRandall Stewart 	} else {
9137ca6e296SMichael Tuexen 		KMOD_TCPSTAT_INC(tcps_rcvduppack);
9147ca6e296SMichael Tuexen 		KMOD_TCPSTAT_ADD(tcps_rcvdupbyte, tlen);
9157ca6e296SMichael Tuexen 		KMOD_TCPSTAT_INC(tcps_pawsdrop);
9163b0b41e6SRandall Stewart 		*ret_val = 0;
9173b0b41e6SRandall Stewart 		if (tlen) {
9183b0b41e6SRandall Stewart 			ctf_do_dropafterack(m, tp, th, thflags, tlen, ret_val);
9193b0b41e6SRandall Stewart 		} else {
9203b0b41e6SRandall Stewart 			ctf_do_drop(m, NULL);
9213b0b41e6SRandall Stewart 		}
9223b0b41e6SRandall Stewart 		return (1);
9233b0b41e6SRandall Stewart 	}
9243b0b41e6SRandall Stewart 	return (0);
9253b0b41e6SRandall Stewart }
9263b0b41e6SRandall Stewart 
9275d8fd932SRandall Stewart int
9285d8fd932SRandall Stewart ctf_ts_check_ac(struct tcpcb *tp, int32_t thflags)
9295d8fd932SRandall Stewart {
9305d8fd932SRandall Stewart 
9315d8fd932SRandall Stewart 	if (tcp_ts_getticks() - tp->ts_recent_age > TCP_PAWS_IDLE) {
9325d8fd932SRandall Stewart 		/*
9335d8fd932SRandall Stewart 		 * Invalidate ts_recent.  If this segment updates ts_recent,
9345d8fd932SRandall Stewart 		 * the age will be reset later and ts_recent will get a
9355d8fd932SRandall Stewart 		 * valid value.  If it does not, setting ts_recent to zero
9365d8fd932SRandall Stewart 		 * will at least satisfy the requirement that zero be placed
9375d8fd932SRandall Stewart 		 * in the timestamp echo reply when ts_recent isn't valid.
9385d8fd932SRandall Stewart 		 * The age isn't reset until we get a valid ts_recent
9395d8fd932SRandall Stewart 		 * because we don't want out-of-order segments to be dropped
9405d8fd932SRandall Stewart 		 * when ts_recent is old.
9415d8fd932SRandall Stewart 		 */
9425d8fd932SRandall Stewart 		tp->ts_recent = 0;
9435d8fd932SRandall Stewart 	} else {
9445d8fd932SRandall Stewart 		KMOD_TCPSTAT_INC(tcps_rcvduppack);
9455d8fd932SRandall Stewart 		KMOD_TCPSTAT_INC(tcps_pawsdrop);
9465d8fd932SRandall Stewart 		return (1);
9475d8fd932SRandall Stewart 	}
9485d8fd932SRandall Stewart 	return (0);
9495d8fd932SRandall Stewart }
9505d8fd932SRandall Stewart 
9515d8fd932SRandall Stewart 
9525d8fd932SRandall Stewart 
9533b0b41e6SRandall Stewart void
9543b0b41e6SRandall Stewart ctf_calc_rwin(struct socket *so, struct tcpcb *tp)
9553b0b41e6SRandall Stewart {
9563b0b41e6SRandall Stewart 	int32_t win;
9573b0b41e6SRandall Stewart 
9583b0b41e6SRandall Stewart 	/*
9593b0b41e6SRandall Stewart 	 * Calculate amount of space in receive window, and then do TCP
9603b0b41e6SRandall Stewart 	 * input processing. Receive window is amount of space in rcv queue,
9613b0b41e6SRandall Stewart 	 * but not less than advertised window.
9623b0b41e6SRandall Stewart 	 */
9633b0b41e6SRandall Stewart 	win = sbspace(&so->so_rcv);
9643b0b41e6SRandall Stewart 	if (win < 0)
9653b0b41e6SRandall Stewart 		win = 0;
9663b0b41e6SRandall Stewart 	tp->rcv_wnd = imax(win, (int)(tp->rcv_adv - tp->rcv_nxt));
9673b0b41e6SRandall Stewart }
9683b0b41e6SRandall Stewart 
9693b0b41e6SRandall Stewart void
9703b0b41e6SRandall Stewart ctf_do_dropwithreset_conn(struct mbuf *m, struct tcpcb *tp, struct tcphdr *th,
9713b0b41e6SRandall Stewart     int32_t rstreason, int32_t tlen)
9723b0b41e6SRandall Stewart {
9733b0b41e6SRandall Stewart 
9743b0b41e6SRandall Stewart 	tcp_dropwithreset(m, th, tp, tlen, rstreason);
97517ac6b1cSGleb Smirnoff 	tp = tcp_drop(tp, ETIMEDOUT);
97617ac6b1cSGleb Smirnoff 	if (tp)
9773b0b41e6SRandall Stewart 		INP_WUNLOCK(tp->t_inpcb);
9783b0b41e6SRandall Stewart }
9793b0b41e6SRandall Stewart 
9803b0b41e6SRandall Stewart uint32_t
9813b0b41e6SRandall Stewart ctf_fixed_maxseg(struct tcpcb *tp)
9823b0b41e6SRandall Stewart {
9835d8fd932SRandall Stewart 	return (tcp_fixed_maxseg(tp));
9843b0b41e6SRandall Stewart }
9853b0b41e6SRandall Stewart 
9863b0b41e6SRandall Stewart void
9873b0b41e6SRandall Stewart ctf_log_sack_filter(struct tcpcb *tp, int num_sack_blks, struct sackblk *sack_blocks)
9883b0b41e6SRandall Stewart {
9893b0b41e6SRandall Stewart 	if (tp->t_logstate != TCP_LOG_STATE_OFF) {
9903b0b41e6SRandall Stewart 		union tcp_log_stackspecific log;
9913b0b41e6SRandall Stewart 		struct timeval tv;
9923b0b41e6SRandall Stewart 
9933b0b41e6SRandall Stewart 		memset(&log, 0, sizeof(log));
9943b0b41e6SRandall Stewart 		log.u_bbr.timeStamp = tcp_get_usecs(&tv);
9953b0b41e6SRandall Stewart 		log.u_bbr.flex8 = num_sack_blks;
9963b0b41e6SRandall Stewart 		if (num_sack_blks > 0) {
9973b0b41e6SRandall Stewart 			log.u_bbr.flex1 = sack_blocks[0].start;
9983b0b41e6SRandall Stewart 			log.u_bbr.flex2 = sack_blocks[0].end;
9993b0b41e6SRandall Stewart 		}
10003b0b41e6SRandall Stewart 		if (num_sack_blks > 1) {
10013b0b41e6SRandall Stewart 			log.u_bbr.flex3 = sack_blocks[1].start;
10023b0b41e6SRandall Stewart 			log.u_bbr.flex4 = sack_blocks[1].end;
10033b0b41e6SRandall Stewart 		}
10043b0b41e6SRandall Stewart 		if (num_sack_blks > 2) {
10053b0b41e6SRandall Stewart 			log.u_bbr.flex5 = sack_blocks[2].start;
10063b0b41e6SRandall Stewart 			log.u_bbr.flex6 = sack_blocks[2].end;
10073b0b41e6SRandall Stewart 		}
10083b0b41e6SRandall Stewart 		if (num_sack_blks > 3) {
10093b0b41e6SRandall Stewart 			log.u_bbr.applimited = sack_blocks[3].start;
10103b0b41e6SRandall Stewart 			log.u_bbr.pkts_out = sack_blocks[3].end;
10113b0b41e6SRandall Stewart 		}
10123b0b41e6SRandall Stewart 		TCP_LOG_EVENTP(tp, NULL,
10133b0b41e6SRandall Stewart 		    &tp->t_inpcb->inp_socket->so_rcv,
10143b0b41e6SRandall Stewart 		    &tp->t_inpcb->inp_socket->so_snd,
10153b0b41e6SRandall Stewart 		    TCP_SACK_FILTER_RES, 0,
10163b0b41e6SRandall Stewart 		    0, &log, false, &tv);
10173b0b41e6SRandall Stewart 	}
10183b0b41e6SRandall Stewart }
10193b0b41e6SRandall Stewart 
10203b0b41e6SRandall Stewart uint32_t
10213b0b41e6SRandall Stewart ctf_decay_count(uint32_t count, uint32_t decay)
10223b0b41e6SRandall Stewart {
10233b0b41e6SRandall Stewart 	/*
10243b0b41e6SRandall Stewart 	 * Given a count, decay it by a set percentage. The
10253b0b41e6SRandall Stewart 	 * percentage is in thousands i.e. 100% = 1000,
10263b0b41e6SRandall Stewart 	 * 19.3% = 193.
10273b0b41e6SRandall Stewart 	 */
10283b0b41e6SRandall Stewart 	uint64_t perc_count, decay_per;
10293b0b41e6SRandall Stewart 	uint32_t decayed_count;
10303b0b41e6SRandall Stewart 	if (decay > 1000) {
10313b0b41e6SRandall Stewart 		/* We don't raise it */
10323b0b41e6SRandall Stewart 		return (count);
10333b0b41e6SRandall Stewart 	}
10343b0b41e6SRandall Stewart 	perc_count = count;
10353b0b41e6SRandall Stewart 	decay_per = decay;
10363b0b41e6SRandall Stewart 	perc_count *= decay_per;
10373b0b41e6SRandall Stewart 	perc_count /= 1000;
10383b0b41e6SRandall Stewart 	/*
10393b0b41e6SRandall Stewart 	 * So now perc_count holds the
10403b0b41e6SRandall Stewart 	 * count decay value.
10413b0b41e6SRandall Stewart 	 */
10423b0b41e6SRandall Stewart 	decayed_count = count - (uint32_t)perc_count;
10433b0b41e6SRandall Stewart 	return(decayed_count);
10443b0b41e6SRandall Stewart }
1045963fb2adSRandall Stewart 
1046963fb2adSRandall Stewart int32_t
1047963fb2adSRandall Stewart ctf_progress_timeout_check(struct tcpcb *tp, bool log)
1048963fb2adSRandall Stewart {
1049963fb2adSRandall Stewart 	if (tp->t_maxunacktime && tp->t_acktime && TSTMP_GT(ticks, tp->t_acktime)) {
1050963fb2adSRandall Stewart 		if ((ticks - tp->t_acktime) >= tp->t_maxunacktime) {
1051963fb2adSRandall Stewart 			/*
1052963fb2adSRandall Stewart 			 * There is an assumption that the caller
1053963fb2adSRandall Stewart 			 * will drop the connection so we will
1054963fb2adSRandall Stewart 			 * increment the counters here.
1055963fb2adSRandall Stewart 			 */
1056963fb2adSRandall Stewart 			if (log)
1057963fb2adSRandall Stewart 				tcp_log_end_status(tp, TCP_EI_STATUS_PROGRESS);
1058963fb2adSRandall Stewart #ifdef NETFLIX_STATS
1059963fb2adSRandall Stewart 			KMOD_TCPSTAT_INC(tcps_progdrops);
1060963fb2adSRandall Stewart #endif
1061963fb2adSRandall Stewart 			return (1);
1062963fb2adSRandall Stewart 		}
1063963fb2adSRandall Stewart 	}
1064963fb2adSRandall Stewart 	return (0);
1065963fb2adSRandall Stewart }
1066