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1c79356b | 1 | /* |
f427ee49 | 2 | * Copyright (c) 2000-2020 Apple Inc. All rights reserved. |
5d5c5d0d | 3 | * |
2d21ac55 | 4 | * @APPLE_OSREFERENCE_LICENSE_HEADER_START@ |
39037602 | 5 | * |
2d21ac55 A |
6 | * This file contains Original Code and/or Modifications of Original Code |
7 | * as defined in and that are subject to the Apple Public Source License | |
8 | * Version 2.0 (the 'License'). You may not use this file except in | |
9 | * compliance with the License. The rights granted to you under the License | |
10 | * may not be used to create, or enable the creation or redistribution of, | |
11 | * unlawful or unlicensed copies of an Apple operating system, or to | |
12 | * circumvent, violate, or enable the circumvention or violation of, any | |
13 | * terms of an Apple operating system software license agreement. | |
39037602 | 14 | * |
2d21ac55 A |
15 | * Please obtain a copy of the License at |
16 | * http://www.opensource.apple.com/apsl/ and read it before using this file. | |
39037602 | 17 | * |
2d21ac55 A |
18 | * The Original Code and all software distributed under the License are |
19 | * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER | |
8f6c56a5 A |
20 | * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES, |
21 | * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY, | |
2d21ac55 A |
22 | * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT. |
23 | * Please see the License for the specific language governing rights and | |
24 | * limitations under the License. | |
39037602 | 25 | * |
2d21ac55 | 26 | * @APPLE_OSREFERENCE_LICENSE_HEADER_END@ |
1c79356b A |
27 | */ |
28 | /* | |
29 | * Copyright (c) 1982, 1986, 1988, 1990, 1993, 1995 | |
30 | * The Regents of the University of California. All rights reserved. | |
31 | * | |
32 | * Redistribution and use in source and binary forms, with or without | |
33 | * modification, are permitted provided that the following conditions | |
34 | * are met: | |
35 | * 1. Redistributions of source code must retain the above copyright | |
36 | * notice, this list of conditions and the following disclaimer. | |
37 | * 2. Redistributions in binary form must reproduce the above copyright | |
38 | * notice, this list of conditions and the following disclaimer in the | |
39 | * documentation and/or other materials provided with the distribution. | |
40 | * 3. All advertising materials mentioning features or use of this software | |
41 | * must display the following acknowledgement: | |
42 | * This product includes software developed by the University of | |
43 | * California, Berkeley and its contributors. | |
44 | * 4. Neither the name of the University nor the names of its contributors | |
45 | * may be used to endorse or promote products derived from this software | |
46 | * without specific prior written permission. | |
47 | * | |
48 | * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND | |
49 | * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | |
50 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | |
51 | * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE | |
52 | * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL | |
53 | * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS | |
54 | * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) | |
55 | * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT | |
56 | * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY | |
57 | * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF | |
58 | * SUCH DAMAGE. | |
59 | * | |
60 | * @(#)tcp_subr.c 8.2 (Berkeley) 5/24/95 | |
61 | */ | |
2d21ac55 A |
62 | /* |
63 | * NOTICE: This file was modified by SPARTA, Inc. in 2005 to introduce | |
64 | * support for mandatory and extensible security protections. This notice | |
65 | * is included in support of clause 2.2 (b) of the Apple Public License, | |
66 | * Version 2.0. | |
67 | */ | |
1c79356b A |
68 | |
69 | #include <sys/param.h> | |
70 | #include <sys/systm.h> | |
71 | #include <sys/kernel.h> | |
72 | #include <sys/sysctl.h> | |
73 | #include <sys/malloc.h> | |
74 | #include <sys/mbuf.h> | |
75 | #include <sys/domain.h> | |
9bccf70c | 76 | #include <sys/proc.h> |
91447636 | 77 | #include <sys/kauth.h> |
1c79356b A |
78 | #include <sys/socket.h> |
79 | #include <sys/socketvar.h> | |
80 | #include <sys/protosw.h> | |
9bccf70c | 81 | #include <sys/random.h> |
1c79356b | 82 | #include <sys/syslog.h> |
6d2010ae | 83 | #include <sys/mcache.h> |
91447636 | 84 | #include <kern/locks.h> |
2d21ac55 | 85 | #include <kern/zalloc.h> |
1c79356b | 86 | |
39236c6e A |
87 | #include <dev/random/randomdev.h> |
88 | ||
1c79356b A |
89 | #include <net/route.h> |
90 | #include <net/if.h> | |
fe8ab488 | 91 | #include <net/content_filter.h> |
d9a64523 | 92 | #include <net/ntstat.h> |
cb323159 | 93 | #include <net/multi_layer_pkt_log.h> |
1c79356b | 94 | |
0a7de745 A |
95 | #define tcp_minmssoverload fring |
96 | #define _IP_VHL | |
1c79356b A |
97 | #include <netinet/in.h> |
98 | #include <netinet/in_systm.h> | |
99 | #include <netinet/ip.h> | |
b0d623f7 | 100 | #include <netinet/ip_icmp.h> |
9bccf70c | 101 | #include <netinet/ip6.h> |
5ba3f43e | 102 | #include <netinet/icmp6.h> |
1c79356b | 103 | #include <netinet/in_pcb.h> |
9bccf70c | 104 | #include <netinet6/in6_pcb.h> |
1c79356b A |
105 | #include <netinet/in_var.h> |
106 | #include <netinet/ip_var.h> | |
b0d623f7 | 107 | #include <netinet/icmp_var.h> |
1c79356b | 108 | #include <netinet6/ip6_var.h> |
5ba3f43e | 109 | #include <netinet/mptcp_var.h> |
1c79356b A |
110 | #include <netinet/tcp.h> |
111 | #include <netinet/tcp_fsm.h> | |
112 | #include <netinet/tcp_seq.h> | |
113 | #include <netinet/tcp_timer.h> | |
114 | #include <netinet/tcp_var.h> | |
6d2010ae | 115 | #include <netinet/tcp_cc.h> |
3e170ce0 | 116 | #include <netinet/tcp_cache.h> |
6d2010ae A |
117 | #include <kern/thread_call.h> |
118 | ||
9bccf70c | 119 | #include <netinet6/tcp6_var.h> |
1c79356b A |
120 | #include <netinet/tcpip.h> |
121 | #if TCPDEBUG | |
122 | #include <netinet/tcp_debug.h> | |
123 | #endif | |
cb323159 A |
124 | #include <netinet/tcp_log.h> |
125 | ||
1c79356b A |
126 | #include <netinet6/ip6protosw.h> |
127 | ||
128 | #if IPSEC | |
129 | #include <netinet6/ipsec.h> | |
9bccf70c | 130 | #include <netinet6/ipsec6.h> |
39037602 | 131 | #endif /* IPSEC */ |
1c79356b | 132 | |
fe8ab488 A |
133 | #if NECP |
134 | #include <net/necp.h> | |
135 | #endif /* NECP */ | |
136 | ||
b0d623f7 A |
137 | #undef tcp_minmssoverload |
138 | ||
3e170ce0 A |
139 | #include <corecrypto/ccaes.h> |
140 | #include <libkern/crypto/aes.h> | |
2d21ac55 | 141 | #include <libkern/crypto/md5.h> |
1c79356b | 142 | #include <sys/kdebug.h> |
6d2010ae | 143 | #include <mach/sdt.h> |
cb323159 A |
144 | #include <atm/atm_internal.h> |
145 | #include <pexpert/pexpert.h> | |
1c79356b | 146 | |
0a7de745 | 147 | #define DBG_FNC_TCP_CLOSE NETDBG_CODE(DBG_NETTCP, ((5 << 8) | 2)) |
1c79356b | 148 | |
5ba3f43e | 149 | static tcp_cc tcp_ccgen; |
1c79356b | 150 | |
39236c6e A |
151 | extern struct tcptimerlist tcp_timer_list; |
152 | extern struct tcptailq tcp_tw_tailq; | |
9bccf70c | 153 | |
5ba3f43e | 154 | SYSCTL_SKMEM_TCP_INT(TCPCTL_MSSDFLT, mssdflt, CTLFLAG_RW | CTLFLAG_LOCKED, |
0a7de745 | 155 | int, tcp_mssdflt, TCP_MSS, "Default TCP Maximum Segment Size"); |
1c79356b | 156 | |
5ba3f43e | 157 | SYSCTL_SKMEM_TCP_INT(TCPCTL_V6MSSDFLT, v6mssdflt, |
0a7de745 A |
158 | CTLFLAG_RW | CTLFLAG_LOCKED, int, tcp_v6mssdflt, TCP6_MSS, |
159 | "Default TCP Maximum Segment Size for IPv6"); | |
1c79356b | 160 | |
39037602 | 161 | int tcp_sysctl_fastopenkey(struct sysctl_oid *, void *, int, |
3e170ce0 | 162 | struct sysctl_req *); |
39037602 | 163 | SYSCTL_PROC(_net_inet_tcp, OID_AUTO, fastopen_key, CTLTYPE_STRING | CTLFLAG_WR, |
0a7de745 | 164 | 0, 0, tcp_sysctl_fastopenkey, "S", "TCP Fastopen key"); |
3e170ce0 A |
165 | |
166 | /* Current count of half-open TFO connections */ | |
0a7de745 | 167 | int tcp_tfo_halfcnt = 0; |
3e170ce0 A |
168 | |
169 | /* Maximum of half-open TFO connection backlog */ | |
5ba3f43e | 170 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, fastopen_backlog, |
0a7de745 A |
171 | CTLFLAG_RW | CTLFLAG_LOCKED, int, tcp_tfo_backlog, 10, |
172 | "Backlog queue for half-open TFO connections"); | |
3e170ce0 | 173 | |
5ba3f43e | 174 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, fastopen, CTLFLAG_RW | CTLFLAG_LOCKED, |
0a7de745 A |
175 | int, tcp_fastopen, TCP_FASTOPEN_CLIENT | TCP_FASTOPEN_SERVER, |
176 | "Enable TCP Fastopen (RFC 7413)"); | |
5ba3f43e A |
177 | |
178 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, now_init, CTLFLAG_RD | CTLFLAG_LOCKED, | |
0a7de745 | 179 | uint32_t, tcp_now_init, 0, "Initial tcp now value"); |
3e170ce0 | 180 | |
5ba3f43e | 181 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, microuptime_init, CTLFLAG_RD | CTLFLAG_LOCKED, |
0a7de745 | 182 | uint32_t, tcp_microuptime_init, 0, "Initial tcp uptime value in micro seconds"); |
3e170ce0 | 183 | |
e5568f75 A |
184 | /* |
185 | * Minimum MSS we accept and use. This prevents DoS attacks where | |
186 | * we are forced to a ridiculous low MSS like 20 and send hundreds | |
187 | * of packets instead of one. The effect scales with the available | |
188 | * bandwidth and quickly saturates the CPU and network interface | |
189 | * with packet generation and sending. Set to zero to disable MINMSS | |
190 | * checking. This setting prevents us from sending too small packets. | |
191 | */ | |
5ba3f43e | 192 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, minmss, CTLFLAG_RW | CTLFLAG_LOCKED, |
0a7de745 | 193 | int, tcp_minmss, TCP_MINMSS, "Minmum TCP Maximum Segment Size"); |
1c79356b | 194 | |
39037602 | 195 | SYSCTL_INT(_net_inet_tcp, OID_AUTO, pcbcount, CTLFLAG_RD | CTLFLAG_LOCKED, |
0a7de745 | 196 | &tcbinfo.ipi_count, 0, "Number of active PCBs"); |
1c79356b | 197 | |
39037602 | 198 | SYSCTL_INT(_net_inet_tcp, OID_AUTO, tw_pcbcount, CTLFLAG_RD | CTLFLAG_LOCKED, |
0a7de745 | 199 | &tcbinfo.ipi_twcount, 0, "Number of pcbs in time-wait state"); |
39236c6e | 200 | |
5ba3f43e | 201 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, icmp_may_rst, CTLFLAG_RW | CTLFLAG_LOCKED, |
0a7de745 A |
202 | static int, icmp_may_rst, 1, |
203 | "Certain ICMP unreachable messages may abort connections in SYN_SENT"); | |
1c79356b | 204 | |
0a7de745 A |
205 | static int tcp_strict_rfc1948 = 0; |
206 | static int tcp_isn_reseed_interval = 0; | |
3e170ce0 | 207 | #if (DEVELOPMENT || DEBUG) |
39037602 | 208 | SYSCTL_INT(_net_inet_tcp, OID_AUTO, strict_rfc1948, CTLFLAG_RW | CTLFLAG_LOCKED, |
0a7de745 | 209 | &tcp_strict_rfc1948, 0, "Determines if RFC1948 is followed exactly"); |
9bccf70c | 210 | |
3e170ce0 | 211 | SYSCTL_INT(_net_inet_tcp, OID_AUTO, isn_reseed_interval, |
0a7de745 A |
212 | CTLFLAG_RW | CTLFLAG_LOCKED, |
213 | &tcp_isn_reseed_interval, 0, "Seconds between reseeding of ISN secret"); | |
3e170ce0 | 214 | #endif /* (DEVELOPMENT || DEBUG) */ |
2d21ac55 | 215 | |
5ba3f43e | 216 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, rtt_min, CTLFLAG_RW | CTLFLAG_LOCKED, |
0a7de745 | 217 | int, tcp_TCPTV_MIN, 100, "min rtt value allowed"); |
9bccf70c | 218 | |
5ba3f43e | 219 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, rexmt_slop, CTLFLAG_RW, |
0a7de745 | 220 | int, tcp_rexmt_slop, TCPTV_REXMTSLOP, "Slop added to retransmit timeout"); |
6d2010ae | 221 | |
5ba3f43e | 222 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, randomize_ports, CTLFLAG_RW | CTLFLAG_LOCKED, |
0a7de745 A |
223 | __private_extern__ int, tcp_use_randomport, 0, |
224 | "Randomize TCP port numbers"); | |
b0d623f7 | 225 | |
5ba3f43e | 226 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, win_scale_factor, CTLFLAG_RW | CTLFLAG_LOCKED, |
0a7de745 | 227 | __private_extern__ int, tcp_win_scale, 3, "Window scaling factor"); |
316670eb | 228 | |
cb323159 A |
229 | #if (DEVELOPMENT || DEBUG) |
230 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, init_rtt_from_cache, | |
231 | CTLFLAG_RW | CTLFLAG_LOCKED, static int, tcp_init_rtt_from_cache, 1, | |
232 | "Initalize RTT from route cache"); | |
233 | #else | |
234 | SYSCTL_SKMEM_TCP_INT(OID_AUTO, init_rtt_from_cache, | |
235 | CTLFLAG_RD | CTLFLAG_LOCKED, static int, tcp_init_rtt_from_cache, 1, | |
236 | "Initalize RTT from route cache"); | |
237 | #endif /* (DEVELOPMENT || DEBUG) */ | |
238 | ||
f427ee49 A |
239 | static int tso_debug = 0; |
240 | SYSCTL_INT(_net_inet_tcp, OID_AUTO, tso_debug, CTLFLAG_RW | CTLFLAG_LOCKED, | |
241 | &tso_debug, 0, "TSO verbosity"); | |
242 | ||
0a7de745 | 243 | static void tcp_notify(struct inpcb *, int); |
6d2010ae | 244 | |
0a7de745 A |
245 | struct zone *sack_hole_zone; |
246 | struct zone *tcp_reass_zone; | |
247 | struct zone *tcp_bwmeas_zone; | |
248 | struct zone *tcp_rxt_seg_zone; | |
1c79356b | 249 | |
0a7de745 | 250 | extern int slowlink_wsize; /* window correction for slow links */ |
2d21ac55 A |
251 | extern int path_mtu_discovery; |
252 | ||
316670eb A |
253 | static void tcp_sbrcv_grow_rwin(struct tcpcb *tp, struct sockbuf *sb); |
254 | ||
0a7de745 A |
255 | #define TCP_BWMEAS_BURST_MINSIZE 6 |
256 | #define TCP_BWMEAS_BURST_MAXSIZE 25 | |
316670eb | 257 | |
1c79356b A |
258 | /* |
259 | * Target size of TCP PCB hash tables. Must be a power of two. | |
260 | * | |
261 | * Note that this can be overridden by the kernel environment | |
262 | * variable net.inet.tcp.tcbhashsize | |
263 | */ | |
264 | #ifndef TCBHASHSIZE | |
0a7de745 | 265 | #define TCBHASHSIZE CONFIG_TCBHASHSIZE |
1c79356b A |
266 | #endif |
267 | ||
0a7de745 | 268 | __private_extern__ int tcp_tcbhashsize = TCBHASHSIZE; |
6d2010ae | 269 | SYSCTL_INT(_net_inet_tcp, OID_AUTO, tcbhashsize, CTLFLAG_RD | CTLFLAG_LOCKED, |
0a7de745 | 270 | &tcp_tcbhashsize, 0, "Size of TCP control-block hashtable"); |
b0d623f7 | 271 | |
1c79356b A |
272 | /* |
273 | * This is the actual shape of what we allocate using the zone | |
274 | * allocator. Doing it this way allows us to protect both structures | |
275 | * using the same generation count, and also eliminates the overhead | |
276 | * of allocating tcpcbs separately. By hiding the structure here, | |
277 | * we avoid changing most of the rest of the code (although it needs | |
278 | * to be changed, eventually, for greater efficiency). | |
279 | */ | |
0a7de745 A |
280 | #define ALIGNMENT 32 |
281 | struct inp_tp { | |
282 | struct inpcb inp; | |
283 | struct tcpcb tcb __attribute__((aligned(ALIGNMENT))); | |
1c79356b A |
284 | }; |
285 | #undef ALIGNMENT | |
1c79356b | 286 | |
2d21ac55 A |
287 | int get_inpcb_str_size(void); |
288 | int get_tcp_str_size(void); | |
1c79356b | 289 | |
cb323159 A |
290 | os_log_t tcp_mpkl_log_object = NULL; |
291 | ||
b0d623f7 | 292 | static void tcpcb_to_otcpcb(struct tcpcb *, struct otcpcb *); |
2d21ac55 | 293 | |
39037602 A |
294 | static lck_attr_t *tcp_uptime_mtx_attr = NULL; |
295 | static lck_grp_t *tcp_uptime_mtx_grp = NULL; | |
296 | static lck_grp_attr_t *tcp_uptime_mtx_grp_attr = NULL; | |
316670eb | 297 | int tcp_notsent_lowat_check(struct socket *so); |
5ba3f43e A |
298 | static void tcp_flow_lim_stats(struct ifnet_stats_per_flow *ifs, |
299 | struct if_lim_perf_stat *stat); | |
300 | static void tcp_flow_ecn_perf_stats(struct ifnet_stats_per_flow *ifs, | |
301 | struct if_tcp_ecn_perf_stat *stat); | |
6d2010ae | 302 | |
3e170ce0 A |
303 | static aes_encrypt_ctx tfo_ctx; /* Crypto-context for TFO */ |
304 | ||
305 | void | |
306 | tcp_tfo_gen_cookie(struct inpcb *inp, u_char *out, size_t blk_size) | |
307 | { | |
308 | u_char in[CCAES_BLOCK_SIZE]; | |
3e170ce0 | 309 | int isipv6 = inp->inp_vflag & INP_IPV6; |
3e170ce0 A |
310 | |
311 | VERIFY(blk_size == CCAES_BLOCK_SIZE); | |
312 | ||
313 | bzero(&in[0], CCAES_BLOCK_SIZE); | |
314 | bzero(&out[0], CCAES_BLOCK_SIZE); | |
315 | ||
0a7de745 | 316 | if (isipv6) { |
3e170ce0 | 317 | memcpy(in, &inp->in6p_faddr, sizeof(struct in6_addr)); |
f427ee49 A |
318 | } else { |
319 | memcpy(in, &inp->inp_faddr, sizeof(struct in_addr)); | |
320 | } | |
3e170ce0 A |
321 | |
322 | aes_encrypt_cbc(in, NULL, 1, out, &tfo_ctx); | |
323 | } | |
324 | ||
325 | __private_extern__ int | |
326 | tcp_sysctl_fastopenkey(__unused struct sysctl_oid *oidp, __unused void *arg1, | |
327 | __unused int arg2, struct sysctl_req *req) | |
328 | { | |
329 | int error = 0; | |
39037602 A |
330 | /* |
331 | * TFO-key is expressed as a string in hex format | |
332 | * (+1 to account for \0 char) | |
333 | */ | |
3e170ce0 A |
334 | char keystring[TCP_FASTOPEN_KEYLEN * 2 + 1]; |
335 | u_int32_t key[TCP_FASTOPEN_KEYLEN / sizeof(u_int32_t)]; | |
336 | int i; | |
337 | ||
338 | /* -1, because newlen is len without the terminating \0 character */ | |
339 | if (req->newlen != (sizeof(keystring) - 1)) { | |
340 | error = EINVAL; | |
341 | goto exit; | |
342 | } | |
343 | ||
39037602 A |
344 | /* |
345 | * sysctl_io_string copies keystring into the oldptr of the sysctl_req. | |
3e170ce0 A |
346 | * Make sure everything is zero, to avoid putting garbage in there or |
347 | * leaking the stack. | |
348 | */ | |
349 | bzero(keystring, sizeof(keystring)); | |
350 | ||
351 | error = sysctl_io_string(req, keystring, sizeof(keystring), 0, NULL); | |
0a7de745 | 352 | if (error) { |
3e170ce0 | 353 | goto exit; |
0a7de745 | 354 | } |
3e170ce0 A |
355 | |
356 | for (i = 0; i < (TCP_FASTOPEN_KEYLEN / sizeof(u_int32_t)); i++) { | |
39037602 A |
357 | /* |
358 | * We jump over the keystring in 8-character (4 byte in hex) | |
359 | * steps | |
360 | */ | |
3e170ce0 A |
361 | if (sscanf(&keystring[i * 8], "%8x", &key[i]) != 1) { |
362 | error = EINVAL; | |
363 | goto exit; | |
364 | } | |
365 | } | |
366 | ||
367 | aes_encrypt_key128((u_char *)key, &tfo_ctx); | |
368 | ||
369 | exit: | |
0a7de745 | 370 | return error; |
3e170ce0 A |
371 | } |
372 | ||
39037602 A |
373 | int |
374 | get_inpcb_str_size(void) | |
1c79356b | 375 | { |
0a7de745 | 376 | return sizeof(struct inpcb); |
1c79356b A |
377 | } |
378 | ||
39037602 A |
379 | int |
380 | get_tcp_str_size(void) | |
1c79356b | 381 | { |
0a7de745 | 382 | return sizeof(struct tcpcb); |
1c79356b A |
383 | } |
384 | ||
fe8ab488 A |
385 | static int scale_to_powerof2(int size); |
386 | ||
6d2010ae | 387 | /* |
fe8ab488 | 388 | * This helper routine returns one of the following scaled value of size: |
39037602 | 389 | * 1. Rounded down power of two value of size if the size value passed as |
fe8ab488 A |
390 | * argument is not a power of two and the rounded up value overflows. |
391 | * OR | |
39037602 A |
392 | * 2. Rounded up power of two value of size if the size value passed as |
393 | * argument is not a power of two and the rounded up value does not overflow | |
fe8ab488 A |
394 | * OR |
395 | * 3. Same value as argument size if it is already a power of two. | |
39037602 A |
396 | */ |
397 | static int | |
0a7de745 A |
398 | scale_to_powerof2(int size) |
399 | { | |
fe8ab488 A |
400 | /* Handle special case of size = 0 */ |
401 | int ret = size ? size : 1; | |
402 | ||
403 | if (!powerof2(ret)) { | |
39037602 A |
404 | while (!powerof2(size)) { |
405 | /* | |
fe8ab488 A |
406 | * Clear out least significant |
407 | * set bit till size is left with | |
408 | * its highest set bit at which point | |
409 | * it is rounded down power of two. | |
39037602 | 410 | */ |
0a7de745 | 411 | size = size & (size - 1); |
fe8ab488 | 412 | } |
6d2010ae | 413 | |
fe8ab488 A |
414 | /* Check for overflow when rounding up */ |
415 | if (0 == (size << 1)) { | |
416 | ret = size; | |
417 | } else { | |
418 | ret = size << 1; | |
419 | } | |
420 | } | |
421 | ||
0a7de745 | 422 | return ret; |
6d2010ae | 423 | } |
1c79356b | 424 | |
3e170ce0 | 425 | static void |
39037602 | 426 | tcp_tfo_init(void) |
3e170ce0 A |
427 | { |
428 | u_char key[TCP_FASTOPEN_KEYLEN]; | |
429 | ||
5ba3f43e | 430 | read_frandom(key, sizeof(key)); |
3e170ce0 A |
431 | aes_encrypt_key128(key, &tfo_ctx); |
432 | } | |
433 | ||
1c79356b A |
434 | /* |
435 | * Tcp initialization | |
436 | */ | |
437 | void | |
39236c6e | 438 | tcp_init(struct protosw *pp, struct domain *dp) |
1c79356b | 439 | { |
39236c6e A |
440 | #pragma unused(dp) |
441 | static int tcp_initialized = 0; | |
39037602 | 442 | vm_size_t str_size; |
39236c6e | 443 | struct inpcbinfo *pcbinfo; |
cb323159 | 444 | uint32_t logging_config; |
39236c6e | 445 | |
0a7de745 | 446 | VERIFY((pp->pr_flags & (PR_INITIALIZED | PR_ATTACHED)) == PR_ATTACHED); |
39236c6e | 447 | |
0a7de745 | 448 | if (tcp_initialized) { |
39236c6e | 449 | return; |
0a7de745 | 450 | } |
39236c6e A |
451 | tcp_initialized = 1; |
452 | ||
1c79356b | 453 | tcp_ccgen = 1; |
9bccf70c A |
454 | tcp_keepinit = TCPTV_KEEP_INIT; |
455 | tcp_keepidle = TCPTV_KEEP_IDLE; | |
456 | tcp_keepintvl = TCPTV_KEEPINTVL; | |
39236c6e | 457 | tcp_keepcnt = TCPTV_KEEPCNT; |
9bccf70c A |
458 | tcp_maxpersistidle = TCPTV_KEEP_IDLE; |
459 | tcp_msl = TCPTV_MSL; | |
d7e50217 | 460 | |
6d2010ae | 461 | microuptime(&tcp_uptime); |
5ba3f43e | 462 | read_frandom(&tcp_now, sizeof(tcp_now)); |
39037602 A |
463 | |
464 | /* Starts tcp internal clock at a random value */ | |
465 | tcp_now = tcp_now & 0x3fffffff; | |
9bccf70c | 466 | |
5ba3f43e A |
467 | /* expose initial uptime/now via systcl for utcp to keep time sync */ |
468 | tcp_now_init = tcp_now; | |
a39ff7e2 | 469 | tcp_microuptime_init = |
f427ee49 | 470 | (uint32_t)(tcp_uptime.tv_usec + (tcp_uptime.tv_sec * USEC_PER_SEC)); |
5ba3f43e A |
471 | SYSCTL_SKMEM_UPDATE_FIELD(tcp.microuptime_init, tcp_microuptime_init); |
472 | SYSCTL_SKMEM_UPDATE_FIELD(tcp.now_init, tcp_now_init); | |
473 | ||
3e170ce0 A |
474 | tcp_tfo_init(); |
475 | ||
1c79356b | 476 | LIST_INIT(&tcb); |
39236c6e A |
477 | tcbinfo.ipi_listhead = &tcb; |
478 | ||
91447636 | 479 | pcbinfo = &tcbinfo; |
39236c6e A |
480 | /* |
481 | * allocate lock group attribute and group for tcp pcb mutexes | |
482 | */ | |
483 | pcbinfo->ipi_lock_grp_attr = lck_grp_attr_alloc_init(); | |
39037602 A |
484 | pcbinfo->ipi_lock_grp = lck_grp_alloc_init("tcppcb", |
485 | pcbinfo->ipi_lock_grp_attr); | |
39236c6e A |
486 | |
487 | /* | |
488 | * allocate the lock attribute for tcp pcb mutexes | |
489 | */ | |
490 | pcbinfo->ipi_lock_attr = lck_attr_alloc_init(); | |
491 | ||
492 | if ((pcbinfo->ipi_lock = lck_rw_alloc_init(pcbinfo->ipi_lock_grp, | |
493 | pcbinfo->ipi_lock_attr)) == NULL) { | |
494 | panic("%s: unable to allocate PCB lock\n", __func__); | |
495 | /* NOTREACHED */ | |
496 | } | |
497 | ||
fe8ab488 A |
498 | if (tcp_tcbhashsize == 0) { |
499 | /* Set to default */ | |
500 | tcp_tcbhashsize = 512; | |
501 | } | |
502 | ||
b0d623f7 | 503 | if (!powerof2(tcp_tcbhashsize)) { |
fe8ab488 A |
504 | int old_hash_size = tcp_tcbhashsize; |
505 | tcp_tcbhashsize = scale_to_powerof2(tcp_tcbhashsize); | |
506 | /* Lower limit of 16 */ | |
507 | if (tcp_tcbhashsize < 16) { | |
508 | tcp_tcbhashsize = 16; | |
509 | } | |
510 | printf("WARNING: TCB hash size not a power of 2, " | |
0a7de745 A |
511 | "scaled from %d to %d.\n", |
512 | old_hash_size, | |
513 | tcp_tcbhashsize); | |
1c79356b | 514 | } |
fe8ab488 | 515 | |
39037602 A |
516 | tcbinfo.ipi_hashbase = hashinit(tcp_tcbhashsize, M_PCB, |
517 | &tcbinfo.ipi_hashmask); | |
39236c6e | 518 | tcbinfo.ipi_porthashbase = hashinit(tcp_tcbhashsize, M_PCB, |
0a7de745 | 519 | &tcbinfo.ipi_porthashmask); |
f427ee49 A |
520 | str_size = (vm_size_t)P2ROUNDUP(sizeof(struct inp_tp), sizeof(u_int64_t)); |
521 | tcbinfo.ipi_zone = zone_create("tcpcb", str_size, ZC_NONE); | |
6d2010ae | 522 | |
39236c6e | 523 | tcbinfo.ipi_gc = tcp_gc; |
3e170ce0 | 524 | tcbinfo.ipi_timer = tcp_itimer; |
39236c6e A |
525 | in_pcbinfo_attach(&tcbinfo); |
526 | ||
f427ee49 A |
527 | str_size = (vm_size_t)P2ROUNDUP(sizeof(struct sackhole), sizeof(u_int64_t)); |
528 | sack_hole_zone = zone_create("sack_hole zone", str_size, ZC_NONE); | |
e5568f75 | 529 | |
f427ee49 A |
530 | str_size = (vm_size_t)P2ROUNDUP(sizeof(struct tseg_qent), sizeof(u_int64_t)); |
531 | tcp_reass_zone = zone_create("tcp_reass_zone", str_size, ZC_NONE); | |
532 | ||
533 | str_size = (vm_size_t)P2ROUNDUP(sizeof(struct bwmeas), sizeof(u_int64_t)); | |
534 | tcp_bwmeas_zone = zone_create("tcp_bwmeas_zone", str_size, ZC_ZFREE_CLEARMEM); | |
316670eb | 535 | |
f427ee49 A |
536 | str_size = (vm_size_t)P2ROUNDUP(sizeof(struct tcp_ccstate), sizeof(u_int64_t)); |
537 | tcp_cc_zone = zone_create("tcp_cc_zone", str_size, ZC_NONE); | |
fe8ab488 | 538 | |
f427ee49 A |
539 | str_size = (vm_size_t)P2ROUNDUP(sizeof(struct tcp_rxt_seg), sizeof(u_int64_t)); |
540 | tcp_rxt_seg_zone = zone_create("tcp_rxt_seg_zone", str_size, ZC_NONE); | |
3e170ce0 | 541 | |
0a7de745 | 542 | #define TCP_MINPROTOHDR (sizeof(struct ip6_hdr) + sizeof(struct tcphdr)) |
316670eb A |
543 | if (max_protohdr < TCP_MINPROTOHDR) { |
544 | _max_protohdr = TCP_MINPROTOHDR; | |
f427ee49 | 545 | _max_protohdr = (int)max_protohdr; /* round it up */ |
316670eb | 546 | } |
0a7de745 | 547 | if (max_linkhdr + max_protohdr > MCLBYTES) { |
1c79356b | 548 | panic("tcp_init"); |
0a7de745 | 549 | } |
9bccf70c | 550 | #undef TCP_MINPROTOHDR |
91447636 | 551 | |
39236c6e A |
552 | /* Initialize time wait and timer lists */ |
553 | TAILQ_INIT(&tcp_tw_tailq); | |
2d21ac55 | 554 | |
6d2010ae A |
555 | bzero(&tcp_timer_list, sizeof(tcp_timer_list)); |
556 | LIST_INIT(&tcp_timer_list.lhead); | |
557 | /* | |
39037602 A |
558 | * allocate lock group attribute, group and attribute for |
559 | * the tcp timer list | |
6d2010ae A |
560 | */ |
561 | tcp_timer_list.mtx_grp_attr = lck_grp_attr_alloc_init(); | |
39037602 A |
562 | tcp_timer_list.mtx_grp = lck_grp_alloc_init("tcptimerlist", |
563 | tcp_timer_list.mtx_grp_attr); | |
6d2010ae | 564 | tcp_timer_list.mtx_attr = lck_attr_alloc_init(); |
39037602 A |
565 | if ((tcp_timer_list.mtx = lck_mtx_alloc_init(tcp_timer_list.mtx_grp, |
566 | tcp_timer_list.mtx_attr)) == NULL) { | |
6d2010ae | 567 | panic("failed to allocate memory for tcp_timer_list.mtx\n"); |
0a7de745 A |
568 | } |
569 | ; | |
39037602 A |
570 | tcp_timer_list.call = thread_call_allocate(tcp_run_timerlist, NULL); |
571 | if (tcp_timer_list.call == NULL) { | |
6d2010ae A |
572 | panic("failed to allocate call entry 1 in tcp_init\n"); |
573 | } | |
574 | ||
575 | /* | |
39037602 A |
576 | * allocate lock group attribute, group and attribute for |
577 | * tcp_uptime_lock | |
6d2010ae A |
578 | */ |
579 | tcp_uptime_mtx_grp_attr = lck_grp_attr_alloc_init(); | |
39037602 A |
580 | tcp_uptime_mtx_grp = lck_grp_alloc_init("tcpuptime", |
581 | tcp_uptime_mtx_grp_attr); | |
6d2010ae | 582 | tcp_uptime_mtx_attr = lck_attr_alloc_init(); |
39037602 A |
583 | tcp_uptime_lock = lck_spin_alloc_init(tcp_uptime_mtx_grp, |
584 | tcp_uptime_mtx_attr); | |
6d2010ae | 585 | |
3e170ce0 A |
586 | /* Initialize TCP Cache */ |
587 | tcp_cache_init(); | |
588 | ||
cb323159 A |
589 | tcp_mpkl_log_object = MPKL_CREATE_LOGOBJECT("com.apple.xnu.tcp"); |
590 | if (tcp_mpkl_log_object == NULL) { | |
591 | panic("MPKL_CREATE_LOGOBJECT failed"); | |
592 | } | |
593 | ||
594 | logging_config = atm_get_diagnostic_config(); | |
595 | if (logging_config & 0x80000000) { | |
596 | tcp_log_privacy = 1; | |
597 | } | |
598 | ||
599 | PE_parse_boot_argn("tcp_log", &tcp_log_enable_flags, sizeof(tcp_log_enable_flags)); | |
600 | ||
fe8ab488 | 601 | /* |
f427ee49 | 602 | * If more than 4GB of actual memory is available, increase the |
fe8ab488 A |
603 | * maximum allowed receive and send socket buffer size. |
604 | */ | |
f427ee49 A |
605 | if (mem_actual >= (1ULL << (GBSHIFT + 2))) { |
606 | tcp_autorcvbuf_max = 4 * 1024 * 1024; | |
607 | tcp_autosndbuf_max = 4 * 1024 * 1024; | |
d9a64523 | 608 | |
5ba3f43e A |
609 | SYSCTL_SKMEM_UPDATE_FIELD(tcp.autorcvbufmax, tcp_autorcvbuf_max); |
610 | SYSCTL_SKMEM_UPDATE_FIELD(tcp.autosndbufmax, tcp_autosndbuf_max); | |
fe8ab488 | 611 | } |
9bccf70c A |
612 | } |
613 | ||
614 | /* | |
615 | * Fill in the IP and TCP headers for an outgoing packet, given the tcpcb. | |
616 | * tcp_template used to store this data in mbufs, but we now recopy it out | |
617 | * of the tcpcb each time to conserve mbufs. | |
618 | */ | |
619 | void | |
39037602 | 620 | tcp_fillheaders(struct tcpcb *tp, void *ip_ptr, void *tcp_ptr) |
9bccf70c A |
621 | { |
622 | struct inpcb *inp = tp->t_inpcb; | |
623 | struct tcphdr *tcp_hdr = (struct tcphdr *)tcp_ptr; | |
624 | ||
9bccf70c A |
625 | if ((inp->inp_vflag & INP_IPV6) != 0) { |
626 | struct ip6_hdr *ip6; | |
627 | ||
628 | ip6 = (struct ip6_hdr *)ip_ptr; | |
629 | ip6->ip6_flow = (ip6->ip6_flow & ~IPV6_FLOWINFO_MASK) | | |
0a7de745 | 630 | (inp->inp_flow & IPV6_FLOWINFO_MASK); |
9bccf70c | 631 | ip6->ip6_vfc = (ip6->ip6_vfc & ~IPV6_VERSION_MASK) | |
0a7de745 | 632 | (IPV6_VERSION & IPV6_VERSION_MASK); |
39037602 | 633 | ip6->ip6_plen = htons(sizeof(struct tcphdr)); |
9bccf70c | 634 | ip6->ip6_nxt = IPPROTO_TCP; |
39037602 | 635 | ip6->ip6_hlim = 0; |
9bccf70c A |
636 | ip6->ip6_src = inp->in6p_laddr; |
637 | ip6->ip6_dst = inp->in6p_faddr; | |
39236c6e | 638 | tcp_hdr->th_sum = in6_pseudo(&inp->in6p_laddr, &inp->in6p_faddr, |
0a7de745 | 639 | htonl(sizeof(struct tcphdr) + IPPROTO_TCP)); |
f427ee49 | 640 | } else { |
39037602 A |
641 | struct ip *ip = (struct ip *) ip_ptr; |
642 | ||
643 | ip->ip_vhl = IP_VHL_BORING; | |
644 | ip->ip_tos = 0; | |
645 | ip->ip_len = 0; | |
646 | ip->ip_id = 0; | |
647 | ip->ip_off = 0; | |
648 | ip->ip_ttl = 0; | |
649 | ip->ip_sum = 0; | |
650 | ip->ip_p = IPPROTO_TCP; | |
651 | ip->ip_src = inp->inp_laddr; | |
652 | ip->ip_dst = inp->inp_faddr; | |
653 | tcp_hdr->th_sum = | |
654 | in_pseudo(ip->ip_src.s_addr, ip->ip_dst.s_addr, | |
655 | htons(sizeof(struct tcphdr) + IPPROTO_TCP)); | |
9bccf70c A |
656 | } |
657 | ||
658 | tcp_hdr->th_sport = inp->inp_lport; | |
659 | tcp_hdr->th_dport = inp->inp_fport; | |
660 | tcp_hdr->th_seq = 0; | |
661 | tcp_hdr->th_ack = 0; | |
662 | tcp_hdr->th_x2 = 0; | |
663 | tcp_hdr->th_off = 5; | |
664 | tcp_hdr->th_flags = 0; | |
665 | tcp_hdr->th_win = 0; | |
666 | tcp_hdr->th_urp = 0; | |
1c79356b A |
667 | } |
668 | ||
669 | /* | |
670 | * Create template to be used to send tcp packets on a connection. | |
9bccf70c A |
671 | * Allocates an mbuf and fills in a skeletal tcp/ip header. The only |
672 | * use for this function is in keepalives, which use tcp_respond. | |
1c79356b A |
673 | */ |
674 | struct tcptemp * | |
39037602 | 675 | tcp_maketemplate(struct tcpcb *tp) |
1c79356b | 676 | { |
9bccf70c A |
677 | struct mbuf *m; |
678 | struct tcptemp *n; | |
1c79356b | 679 | |
9bccf70c | 680 | m = m_get(M_DONTWAIT, MT_HEADER); |
0a7de745 | 681 | if (m == NULL) { |
f427ee49 | 682 | return NULL; |
0a7de745 | 683 | } |
9bccf70c A |
684 | m->m_len = sizeof(struct tcptemp); |
685 | n = mtod(m, struct tcptemp *); | |
0b4e3aa0 | 686 | |
9bccf70c | 687 | tcp_fillheaders(tp, (void *)&n->tt_ipgen, (void *)&n->tt_t); |
0a7de745 | 688 | return n; |
1c79356b A |
689 | } |
690 | ||
691 | /* | |
692 | * Send a single message to the TCP at address specified by | |
693 | * the given TCP/IP header. If m == 0, then we make a copy | |
694 | * of the tcpiphdr at ti and send directly to the addressed host. | |
695 | * This is used to force keep alive messages out using the TCP | |
9bccf70c A |
696 | * template for a connection. If flags are given then we send |
697 | * a message back to the TCP which originated the * segment ti, | |
698 | * and discard the mbuf containing it and any other attached mbufs. | |
1c79356b A |
699 | * |
700 | * In any case the ack and sequence number of the transmitted | |
701 | * segment are as specified by the parameters. | |
702 | * | |
703 | * NOTE: If m != NULL, then ti must point to *inside* the mbuf. | |
704 | */ | |
705 | void | |
fe8ab488 | 706 | tcp_respond(struct tcpcb *tp, void *ipgen, struct tcphdr *th, struct mbuf *m, |
f427ee49 | 707 | tcp_seq ack, tcp_seq seq, uint8_t flags, struct tcp_respond_args *tra) |
1c79356b | 708 | { |
f427ee49 | 709 | uint16_t tlen; |
1c79356b A |
710 | int win = 0; |
711 | struct route *ro = 0; | |
712 | struct route sro; | |
9bccf70c | 713 | struct ip *ip; |
1c79356b | 714 | struct tcphdr *nth; |
1c79356b A |
715 | struct route_in6 *ro6 = 0; |
716 | struct route_in6 sro6; | |
9bccf70c A |
717 | struct ip6_hdr *ip6; |
718 | int isipv6; | |
316670eb | 719 | struct ifnet *outif; |
39037602 | 720 | int sotc = SO_TC_UNSPEC; |
f427ee49 | 721 | bool check_qos_marking_again = FALSE; |
9bccf70c | 722 | |
9bccf70c A |
723 | isipv6 = IP_VHL_V(((struct ip *)ipgen)->ip_vhl) == 6; |
724 | ip6 = ipgen; | |
9bccf70c | 725 | ip = ipgen; |
1c79356b A |
726 | |
727 | if (tp) { | |
f427ee49 | 728 | check_qos_marking_again = tp->t_inpcb->inp_socket->so_flags1 & SOF1_QOSMARKING_POLICY_OVERRIDE ? FALSE : TRUE; |
9bccf70c | 729 | if (!(flags & TH_RST)) { |
2d21ac55 | 730 | win = tcp_sbspace(tp); |
0a7de745 | 731 | if (win > (int32_t)TCP_MAXWIN << tp->rcv_scale) { |
b0d623f7 | 732 | win = (int32_t)TCP_MAXWIN << tp->rcv_scale; |
0a7de745 | 733 | } |
9bccf70c | 734 | } |
0a7de745 | 735 | if (isipv6) { |
1c79356b | 736 | ro6 = &tp->t_inpcb->in6p_route; |
f427ee49 A |
737 | } else { |
738 | ro = &tp->t_inpcb->inp_route; | |
739 | } | |
1c79356b | 740 | } else { |
1c79356b A |
741 | if (isipv6) { |
742 | ro6 = &sro6; | |
39037602 | 743 | bzero(ro6, sizeof(*ro6)); |
f427ee49 | 744 | } else { |
9bccf70c | 745 | ro = &sro; |
39037602 | 746 | bzero(ro, sizeof(*ro)); |
1c79356b | 747 | } |
1c79356b A |
748 | } |
749 | if (m == 0) { | |
0a7de745 A |
750 | m = m_gethdr(M_DONTWAIT, MT_HEADER); /* MAC-OK */ |
751 | if (m == NULL) { | |
1c79356b | 752 | return; |
0a7de745 | 753 | } |
1c79356b | 754 | tlen = 0; |
1c79356b | 755 | m->m_data += max_linkhdr; |
1c79356b | 756 | if (isipv6) { |
39236c6e | 757 | VERIFY((MHLEN - max_linkhdr) >= |
0a7de745 | 758 | (sizeof(*ip6) + sizeof(*nth))); |
39037602 A |
759 | bcopy((caddr_t)ip6, mtod(m, caddr_t), |
760 | sizeof(struct ip6_hdr)); | |
9bccf70c | 761 | ip6 = mtod(m, struct ip6_hdr *); |
316670eb | 762 | nth = (struct tcphdr *)(void *)(ip6 + 1); |
f427ee49 | 763 | } else { |
39236c6e | 764 | VERIFY((MHLEN - max_linkhdr) >= |
0a7de745 | 765 | (sizeof(*ip) + sizeof(*nth))); |
9bccf70c A |
766 | bcopy((caddr_t)ip, mtod(m, caddr_t), sizeof(struct ip)); |
767 | ip = mtod(m, struct ip *); | |
316670eb | 768 | nth = (struct tcphdr *)(void *)(ip + 1); |
1c79356b | 769 | } |
1c79356b | 770 | bcopy((caddr_t)th, (caddr_t)nth, sizeof(struct tcphdr)); |
39236c6e | 771 | #if MPTCP |
0a7de745 | 772 | if ((tp) && (tp->t_mpflags & TMPF_RESET)) { |
39236c6e | 773 | flags = (TH_RST | TH_ACK); |
0a7de745 | 774 | } else |
39236c6e | 775 | #endif |
1c79356b A |
776 | flags = TH_ACK; |
777 | } else { | |
778 | m_freem(m->m_next); | |
779 | m->m_next = 0; | |
9bccf70c | 780 | m->m_data = (caddr_t)ipgen; |
1c79356b A |
781 | /* m_len is set later */ |
782 | tlen = 0; | |
0a7de745 | 783 | #define xchg(a, b, type) { type t; t = a; a = b; b = t; } |
1c79356b | 784 | if (isipv6) { |
316670eb A |
785 | /* Expect 32-bit aligned IP on strict-align platforms */ |
786 | IP6_HDR_STRICT_ALIGNMENT_CHECK(ip6); | |
9bccf70c | 787 | xchg(ip6->ip6_dst, ip6->ip6_src, struct in6_addr); |
316670eb | 788 | nth = (struct tcphdr *)(void *)(ip6 + 1); |
f427ee49 | 789 | } else { |
39037602 A |
790 | /* Expect 32-bit aligned IP on strict-align platforms */ |
791 | IP_HDR_STRICT_ALIGNMENT_CHECK(ip); | |
792 | xchg(ip->ip_dst.s_addr, ip->ip_src.s_addr, n_long); | |
793 | nth = (struct tcphdr *)(void *)(ip + 1); | |
794 | } | |
9bccf70c A |
795 | if (th != nth) { |
796 | /* | |
797 | * this is usually a case when an extension header | |
798 | * exists between the IPv6 header and the | |
799 | * TCP header. | |
800 | */ | |
801 | nth->th_sport = th->th_sport; | |
802 | nth->th_dport = th->th_dport; | |
1c79356b | 803 | } |
1c79356b A |
804 | xchg(nth->th_dport, nth->th_sport, n_short); |
805 | #undef xchg | |
806 | } | |
9bccf70c | 807 | if (isipv6) { |
0a7de745 A |
808 | ip6->ip6_plen = htons((u_short)(sizeof(struct tcphdr) + |
809 | tlen)); | |
810 | tlen += sizeof(struct ip6_hdr) + sizeof(struct tcphdr); | |
f427ee49 | 811 | } else { |
0a7de745 | 812 | tlen += sizeof(struct tcpiphdr); |
39037602 | 813 | ip->ip_len = tlen; |
f427ee49 | 814 | ip->ip_ttl = (uint8_t)ip_defttl; |
39037602 | 815 | } |
9bccf70c A |
816 | m->m_len = tlen; |
817 | m->m_pkthdr.len = tlen; | |
91447636 | 818 | m->m_pkthdr.rcvif = 0; |
cb323159 A |
819 | if (tra->keep_alive) { |
820 | m->m_pkthdr.pkt_flags |= PKTF_KEEPALIVE; | |
821 | } | |
b0d623f7 | 822 | |
1c79356b A |
823 | nth->th_seq = htonl(seq); |
824 | nth->th_ack = htonl(ack); | |
825 | nth->th_x2 = 0; | |
0a7de745 | 826 | nth->th_off = sizeof(struct tcphdr) >> 2; |
1c79356b | 827 | nth->th_flags = flags; |
0a7de745 | 828 | if (tp) { |
1c79356b | 829 | nth->th_win = htons((u_short) (win >> tp->rcv_scale)); |
0a7de745 | 830 | } else { |
1c79356b | 831 | nth->th_win = htons((u_short)win); |
0a7de745 | 832 | } |
1c79356b | 833 | nth->th_urp = 0; |
1c79356b | 834 | if (isipv6) { |
9bccf70c | 835 | nth->th_sum = 0; |
39236c6e | 836 | nth->th_sum = in6_pseudo(&ip6->ip6_src, &ip6->ip6_dst, |
0a7de745 | 837 | htonl((tlen - sizeof(struct ip6_hdr)) + IPPROTO_TCP)); |
6d2010ae A |
838 | m->m_pkthdr.csum_flags = CSUM_TCPIPV6; |
839 | m->m_pkthdr.csum_data = offsetof(struct tcphdr, th_sum); | |
1c79356b | 840 | ip6->ip6_hlim = in6_selecthlim(tp ? tp->t_inpcb : NULL, |
39037602 | 841 | ro6 && ro6->ro_rt ? ro6->ro_rt->rt_ifp : NULL); |
f427ee49 | 842 | } else { |
9bccf70c | 843 | nth->th_sum = in_pseudo(ip->ip_src.s_addr, ip->ip_dst.s_addr, |
0a7de745 | 844 | htons((u_short)(tlen - sizeof(struct ip) + ip->ip_p))); |
9bccf70c A |
845 | m->m_pkthdr.csum_flags = CSUM_TCP; |
846 | m->m_pkthdr.csum_data = offsetof(struct tcphdr, th_sum); | |
1c79356b | 847 | } |
1c79356b | 848 | #if TCPDEBUG |
0a7de745 | 849 | if (tp == NULL || (tp->t_inpcb->inp_socket->so_options & SO_DEBUG)) { |
9bccf70c | 850 | tcp_trace(TA_OUTPUT, 0, tp, mtod(m, void *), th, 0); |
0a7de745 | 851 | } |
1c79356b | 852 | #endif |
fe8ab488 A |
853 | |
854 | #if NECP | |
f427ee49 | 855 | necp_mark_packet_from_socket(m, tp ? tp->t_inpcb : NULL, 0, 0, 0, 0); |
fe8ab488 | 856 | #endif /* NECP */ |
3e170ce0 | 857 | |
1c79356b | 858 | #if IPSEC |
fe8ab488 | 859 | if (tp != NULL && tp->t_inpcb->inp_sp != NULL && |
0a7de745 | 860 | ipsec_setsocket(m, tp ? tp->t_inpcb->inp_socket : NULL) != 0) { |
9bccf70c A |
861 | m_freem(m); |
862 | return; | |
863 | } | |
864 | #endif | |
6d2010ae | 865 | |
316670eb A |
866 | if (tp != NULL) { |
867 | u_int32_t svc_flags = 0; | |
868 | if (isipv6) { | |
869 | svc_flags |= PKT_SCF_IPV6; | |
870 | } | |
39037602 | 871 | sotc = tp->t_inpcb->inp_socket->so_traffic_class; |
f427ee49 A |
872 | if ((flags & TH_RST) == 0) { |
873 | set_packet_service_class(m, tp->t_inpcb->inp_socket, | |
874 | sotc, svc_flags); | |
875 | } else { | |
876 | m_set_service_class(m, MBUF_SC_BK_SYS); | |
877 | } | |
316670eb A |
878 | |
879 | /* Embed flowhash and flow control flags */ | |
39236c6e A |
880 | m->m_pkthdr.pkt_flowsrc = FLOWSRC_INPCB; |
881 | m->m_pkthdr.pkt_flowid = tp->t_inpcb->inp_flowhash; | |
5ba3f43e | 882 | m->m_pkthdr.pkt_flags |= (PKTF_FLOW_ID | PKTF_FLOW_LOCALSRC | PKTF_FLOW_ADV); |
39236c6e | 883 | m->m_pkthdr.pkt_proto = IPPROTO_TCP; |
d9a64523 A |
884 | m->m_pkthdr.tx_tcp_pid = tp->t_inpcb->inp_socket->last_pid; |
885 | m->m_pkthdr.tx_tcp_e_pid = tp->t_inpcb->inp_socket->e_pid; | |
f427ee49 A |
886 | |
887 | if (flags & TH_RST) { | |
888 | m->m_pkthdr.comp_gencnt = tp->t_comp_gencnt; | |
889 | } | |
890 | } else { | |
891 | if (flags & TH_RST) { | |
892 | m->m_pkthdr.comp_gencnt = TCP_ACK_COMPRESSION_DUMMY; | |
893 | m_set_service_class(m, MBUF_SC_BK_SYS); | |
894 | } | |
316670eb | 895 | } |
6d2010ae | 896 | |
1c79356b | 897 | if (isipv6) { |
a39ff7e2 A |
898 | struct ip6_out_args ip6oa; |
899 | bzero(&ip6oa, sizeof(ip6oa)); | |
900 | ip6oa.ip6oa_boundif = tra->ifscope; | |
901 | ip6oa.ip6oa_flags = IP6OAF_SELECT_SRCIF | IP6OAF_BOUND_SRCADDR; | |
902 | ip6oa.ip6oa_sotc = SO_TC_UNSPEC; | |
903 | ip6oa.ip6oa_netsvctype = _NET_SERVICE_TYPE_UNSPEC; | |
316670eb | 904 | |
0a7de745 | 905 | if (tra->ifscope != IFSCOPE_NONE) { |
316670eb | 906 | ip6oa.ip6oa_flags |= IP6OAF_BOUND_IF; |
0a7de745 A |
907 | } |
908 | if (tra->nocell) { | |
316670eb | 909 | ip6oa.ip6oa_flags |= IP6OAF_NO_CELLULAR; |
0a7de745 A |
910 | } |
911 | if (tra->noexpensive) { | |
fe8ab488 | 912 | ip6oa.ip6oa_flags |= IP6OAF_NO_EXPENSIVE; |
0a7de745 | 913 | } |
cb323159 A |
914 | if (tra->noconstrained) { |
915 | ip6oa.ip6oa_flags |= IP6OAF_NO_CONSTRAINED; | |
916 | } | |
0a7de745 | 917 | if (tra->awdl_unrestricted) { |
fe8ab488 | 918 | ip6oa.ip6oa_flags |= IP6OAF_AWDL_UNRESTRICTED; |
0a7de745 A |
919 | } |
920 | if (tra->intcoproc_allowed) { | |
39037602 | 921 | ip6oa.ip6oa_flags |= IP6OAF_INTCOPROC_ALLOWED; |
0a7de745 | 922 | } |
39037602 A |
923 | ip6oa.ip6oa_sotc = sotc; |
924 | if (tp != NULL) { | |
0a7de745 | 925 | if ((tp->t_inpcb->inp_socket->so_flags1 & SOF1_QOSMARKING_ALLOWED)) { |
39037602 | 926 | ip6oa.ip6oa_flags |= IP6OAF_QOSMARKING_ALLOWED; |
0a7de745 | 927 | } |
f427ee49 A |
928 | ip6oa.qos_marking_gencount = tp->t_inpcb->inp_policyresult.results.qos_marking_gencount; |
929 | if (check_qos_marking_again) { | |
930 | ip6oa.ip6oa_flags |= IP6OAF_REDO_QOSMARKING_POLICY; | |
931 | } | |
39037602 A |
932 | ip6oa.ip6oa_netsvctype = tp->t_inpcb->inp_socket->so_netsvctype; |
933 | } | |
6d2010ae A |
934 | (void) ip6_output(m, NULL, ro6, IPV6_OUTARGS, NULL, |
935 | NULL, &ip6oa); | |
39236c6e | 936 | |
f427ee49 A |
937 | if (check_qos_marking_again) { |
938 | struct inpcb *inp = tp->t_inpcb; | |
939 | inp->inp_policyresult.results.qos_marking_gencount = ip6oa.qos_marking_gencount; | |
940 | if (ip6oa.ip6oa_flags & IP6OAF_QOSMARKING_ALLOWED) { | |
941 | inp->inp_socket->so_flags1 |= SOF1_QOSMARKING_ALLOWED; | |
942 | } else { | |
943 | inp->inp_socket->so_flags1 &= ~SOF1_QOSMARKING_ALLOWED; | |
944 | } | |
945 | } | |
946 | ||
39236c6e A |
947 | if (tp != NULL && ro6 != NULL && ro6->ro_rt != NULL && |
948 | (outif = ro6->ro_rt->rt_ifp) != | |
5ba3f43e | 949 | tp->t_inpcb->in6p_last_outifp) { |
39236c6e | 950 | tp->t_inpcb->in6p_last_outifp = outif; |
5ba3f43e | 951 | } |
39236c6e | 952 | |
0a7de745 | 953 | if (ro6 == &sro6) { |
39236c6e | 954 | ROUTE_RELEASE(ro6); |
0a7de745 | 955 | } |
f427ee49 | 956 | } else { |
a39ff7e2 A |
957 | struct ip_out_args ipoa; |
958 | bzero(&ipoa, sizeof(ipoa)); | |
959 | ipoa.ipoa_boundif = tra->ifscope; | |
960 | ipoa.ipoa_flags = IPOAF_SELECT_SRCIF | IPOAF_BOUND_SRCADDR; | |
961 | ipoa.ipoa_sotc = SO_TC_UNSPEC; | |
962 | ipoa.ipoa_netsvctype = _NET_SERVICE_TYPE_UNSPEC; | |
316670eb | 963 | |
0a7de745 | 964 | if (tra->ifscope != IFSCOPE_NONE) { |
316670eb | 965 | ipoa.ipoa_flags |= IPOAF_BOUND_IF; |
0a7de745 A |
966 | } |
967 | if (tra->nocell) { | |
316670eb | 968 | ipoa.ipoa_flags |= IPOAF_NO_CELLULAR; |
0a7de745 A |
969 | } |
970 | if (tra->noexpensive) { | |
fe8ab488 | 971 | ipoa.ipoa_flags |= IPOAF_NO_EXPENSIVE; |
0a7de745 | 972 | } |
cb323159 A |
973 | if (tra->noconstrained) { |
974 | ipoa.ipoa_flags |= IPOAF_NO_CONSTRAINED; | |
975 | } | |
0a7de745 | 976 | if (tra->awdl_unrestricted) { |
fe8ab488 | 977 | ipoa.ipoa_flags |= IPOAF_AWDL_UNRESTRICTED; |
0a7de745 | 978 | } |
39037602 A |
979 | ipoa.ipoa_sotc = sotc; |
980 | if (tp != NULL) { | |
0a7de745 | 981 | if ((tp->t_inpcb->inp_socket->so_flags1 & SOF1_QOSMARKING_ALLOWED)) { |
39037602 | 982 | ipoa.ipoa_flags |= IPOAF_QOSMARKING_ALLOWED; |
0a7de745 | 983 | } |
f427ee49 A |
984 | if (!(tp->t_inpcb->inp_socket->so_flags1 & SOF1_QOSMARKING_POLICY_OVERRIDE)) { |
985 | ipoa.ipoa_flags |= IPOAF_REDO_QOSMARKING_POLICY; | |
986 | } | |
987 | ipoa.qos_marking_gencount = tp->t_inpcb->inp_policyresult.results.qos_marking_gencount; | |
39037602 A |
988 | ipoa.ipoa_netsvctype = tp->t_inpcb->inp_socket->so_netsvctype; |
989 | } | |
b0d623f7 A |
990 | if (ro != &sro) { |
991 | /* Copy the cached route and take an extra reference */ | |
992 | inp_route_copyout(tp->t_inpcb, &sro); | |
993 | } | |
994 | /* | |
995 | * For consistency, pass a local route copy. | |
996 | */ | |
997 | (void) ip_output(m, NULL, &sro, IP_OUTARGS, NULL, &ipoa); | |
c910b4d9 | 998 | |
f427ee49 A |
999 | if (check_qos_marking_again) { |
1000 | struct inpcb *inp = tp->t_inpcb; | |
1001 | inp->inp_policyresult.results.qos_marking_gencount = ipoa.qos_marking_gencount; | |
1002 | if (ipoa.ipoa_flags & IPOAF_QOSMARKING_ALLOWED) { | |
1003 | inp->inp_socket->so_flags1 |= SOF1_QOSMARKING_ALLOWED; | |
1004 | } else { | |
1005 | inp->inp_socket->so_flags1 &= ~SOF1_QOSMARKING_ALLOWED; | |
1006 | } | |
1007 | } | |
39236c6e A |
1008 | if (tp != NULL && sro.ro_rt != NULL && |
1009 | (outif = sro.ro_rt->rt_ifp) != | |
5ba3f43e | 1010 | tp->t_inpcb->inp_last_outifp) { |
39236c6e | 1011 | tp->t_inpcb->inp_last_outifp = outif; |
5ba3f43e | 1012 | } |
b0d623f7 A |
1013 | if (ro != &sro) { |
1014 | /* Synchronize cached PCB route */ | |
1015 | inp_route_copyin(tp->t_inpcb, &sro); | |
39236c6e A |
1016 | } else { |
1017 | ROUTE_RELEASE(&sro); | |
9bccf70c | 1018 | } |
1c79356b | 1019 | } |
1c79356b A |
1020 | } |
1021 | ||
1022 | /* | |
1023 | * Create a new TCP control block, making an | |
1024 | * empty reassembly queue and hooking it to the argument | |
1025 | * protocol control block. The `inp' parameter must have | |
1026 | * come from the zone allocator set up in tcp_init(). | |
1027 | */ | |
1028 | struct tcpcb * | |
39037602 | 1029 | tcp_newtcpcb(struct inpcb *inp) |
1c79356b A |
1030 | { |
1031 | struct inp_tp *it; | |
39037602 A |
1032 | struct tcpcb *tp; |
1033 | struct socket *so = inp->inp_socket; | |
9bccf70c | 1034 | int isipv6 = (inp->inp_vflag & INP_IPV6) != 0; |
1c79356b | 1035 | |
6d2010ae A |
1036 | calculate_tcp_clock(); |
1037 | ||
3e170ce0 | 1038 | if ((so->so_flags1 & SOF1_CACHED_IN_SOCK_LAYER) == 0) { |
0a7de745 A |
1039 | it = (struct inp_tp *)(void *)inp; |
1040 | tp = &it->tcb; | |
39236c6e | 1041 | } else { |
0a7de745 | 1042 | tp = (struct tcpcb *)(void *)inp->inp_saved_ppcb; |
39236c6e | 1043 | } |
39037602 | 1044 | |
1c79356b | 1045 | bzero((char *) tp, sizeof(struct tcpcb)); |
9bccf70c | 1046 | LIST_INIT(&tp->t_segq); |
f427ee49 | 1047 | tp->t_maxseg = tp->t_maxopd = isipv6 ? tcp_v6mssdflt : tcp_mssdflt; |
9bccf70c | 1048 | |
f427ee49 A |
1049 | tp->t_flags = (TF_REQ_SCALE | TF_REQ_TSTMP); |
1050 | tp->t_flagsext |= TF_SACK_ENABLE; | |
39236c6e | 1051 | |
8ad349bb | 1052 | TAILQ_INIT(&tp->snd_holes); |
3e170ce0 | 1053 | SLIST_INIT(&tp->t_rxt_segments); |
39037602 A |
1054 | SLIST_INIT(&tp->t_notify_ack); |
1055 | tp->t_inpcb = inp; | |
1c79356b A |
1056 | /* |
1057 | * Init srtt to TCPTV_SRTTBASE (0), so we can tell that we have no | |
1058 | * rtt estimate. Set rttvar so that srtt + 4 * rttvar gives | |
1059 | * reasonable initial retransmit time. | |
1060 | */ | |
1061 | tp->t_srtt = TCPTV_SRTTBASE; | |
39037602 A |
1062 | tp->t_rttvar = |
1063 | ((TCPTV_RTOBASE - TCPTV_SRTTBASE) << TCP_RTTVAR_SHIFT) / 4; | |
2d21ac55 | 1064 | tp->t_rttmin = tcp_TCPTV_MIN; |
1c79356b | 1065 | tp->t_rxtcur = TCPTV_RTOBASE; |
6d2010ae | 1066 | |
0a7de745 | 1067 | if (tcp_use_newreno) { |
fe8ab488 A |
1068 | /* use newreno by default */ |
1069 | tp->tcp_cc_index = TCP_CC_ALGO_NEWRENO_INDEX; | |
0a7de745 | 1070 | } else { |
fe8ab488 | 1071 | tp->tcp_cc_index = TCP_CC_ALGO_CUBIC_INDEX; |
0a7de745 | 1072 | } |
fe8ab488 A |
1073 | |
1074 | tcp_cc_allocate_state(tp); | |
1075 | ||
0a7de745 | 1076 | if (CC_ALGO(tp)->init != NULL) { |
6d2010ae | 1077 | CC_ALGO(tp)->init(tp); |
0a7de745 | 1078 | } |
6d2010ae | 1079 | |
f427ee49 | 1080 | tp->snd_cwnd = tcp_initial_cwnd(tp); |
1c79356b | 1081 | tp->snd_ssthresh = TCP_MAXWIN << TCP_MAX_WINSHIFT; |
cf7d32b8 | 1082 | tp->snd_ssthresh_prev = TCP_MAXWIN << TCP_MAX_WINSHIFT; |
6d2010ae | 1083 | tp->t_rcvtime = tcp_now; |
6d2010ae | 1084 | tp->tentry.timer_start = tcp_now; |
cb323159 | 1085 | tp->rcv_unackwin = tcp_now; |
6d2010ae A |
1086 | tp->t_persist_timeout = tcp_max_persist_timeout; |
1087 | tp->t_persist_stop = 0; | |
1088 | tp->t_flagsext |= TF_RCVUNACK_WAITSS; | |
f427ee49 A |
1089 | tp->t_rexmtthresh = (uint8_t)tcprexmtthresh; |
1090 | tp->rfbuf_ts = tcp_now; | |
1091 | tp->rfbuf_space = tcp_initial_cwnd(tp); | |
1092 | tp->t_forced_acks = TCP_FORCED_ACKS_COUNT; | |
39236c6e | 1093 | |
5ba3f43e A |
1094 | /* Enable bandwidth measurement on this connection */ |
1095 | tp->t_flagsext |= TF_MEASURESNDBW; | |
1096 | if (tp->t_bwmeas == NULL) { | |
1097 | tp->t_bwmeas = tcp_bwmeas_alloc(tp); | |
0a7de745 | 1098 | if (tp->t_bwmeas == NULL) { |
5ba3f43e | 1099 | tp->t_flagsext &= ~TF_MEASURESNDBW; |
0a7de745 | 1100 | } |
5ba3f43e A |
1101 | } |
1102 | ||
39236c6e A |
1103 | /* Clear time wait tailq entry */ |
1104 | tp->t_twentry.tqe_next = NULL; | |
1105 | tp->t_twentry.tqe_prev = NULL; | |
1106 | ||
f427ee49 A |
1107 | if (__probable(tcp_do_ack_compression)) { |
1108 | read_frandom(&tp->t_comp_gencnt, sizeof(tp->t_comp_gencnt)); | |
1109 | if (tp->t_comp_gencnt <= TCP_ACK_COMPRESSION_DUMMY) { | |
1110 | tp->t_comp_gencnt = TCP_ACK_COMPRESSION_DUMMY + 1; | |
1111 | } | |
1112 | tp->t_comp_lastinc = tcp_now; | |
1113 | } | |
1114 | ||
8ad349bb | 1115 | /* |
1c79356b A |
1116 | * IPv4 TTL initialization is necessary for an IPv6 socket as well, |
1117 | * because the socket may be bound to an IPv6 wildcard address, | |
1118 | * which may match an IPv4-mapped IPv6 address. | |
1c79356b | 1119 | */ |
f427ee49 | 1120 | inp->inp_ip_ttl = (uint8_t)ip_defttl; |
1c79356b | 1121 | inp->inp_ppcb = (caddr_t)tp; |
0a7de745 | 1122 | return tp; /* XXX */ |
1c79356b A |
1123 | } |
1124 | ||
1125 | /* | |
1126 | * Drop a TCP connection, reporting | |
1127 | * the specified error. If connection is synchronized, | |
1128 | * then send a RST to peer. | |
1129 | */ | |
1130 | struct tcpcb * | |
39037602 | 1131 | tcp_drop(struct tcpcb *tp, int errno) |
1c79356b A |
1132 | { |
1133 | struct socket *so = tp->t_inpcb->inp_socket; | |
6d2010ae A |
1134 | #if CONFIG_DTRACE |
1135 | struct inpcb *inp = tp->t_inpcb; | |
316670eb | 1136 | #endif |
6d2010ae | 1137 | |
1c79356b | 1138 | if (TCPS_HAVERCVDSYN(tp->t_state)) { |
6d2010ae | 1139 | DTRACE_TCP4(state__change, void, NULL, struct inpcb *, inp, |
0a7de745 | 1140 | struct tcpcb *, tp, int32_t, TCPS_CLOSED); |
1c79356b A |
1141 | tp->t_state = TCPS_CLOSED; |
1142 | (void) tcp_output(tp); | |
1143 | tcpstat.tcps_drops++; | |
0a7de745 | 1144 | } else { |
1c79356b | 1145 | tcpstat.tcps_conndrops++; |
0a7de745 A |
1146 | } |
1147 | if (errno == ETIMEDOUT && tp->t_softerror) { | |
1c79356b | 1148 | errno = tp->t_softerror; |
0a7de745 | 1149 | } |
f427ee49 | 1150 | so->so_error = (u_short)errno; |
cb323159 A |
1151 | |
1152 | TCP_LOG_CONNECTION_SUMMARY(tp); | |
1153 | ||
0a7de745 | 1154 | return tcp_close(tp); |
1c79356b A |
1155 | } |
1156 | ||
316670eb | 1157 | void |
39037602 | 1158 | tcp_getrt_rtt(struct tcpcb *tp, struct rtentry *rt) |
316670eb A |
1159 | { |
1160 | u_int32_t rtt = rt->rt_rmx.rmx_rtt; | |
1161 | int isnetlocal = (tp->t_flags & TF_LOCAL); | |
1162 | ||
cb323159 A |
1163 | TCP_LOG_RTM_RTT(tp, rt); |
1164 | ||
1165 | if (rtt != 0 && tcp_init_rtt_from_cache != 0) { | |
316670eb A |
1166 | /* |
1167 | * XXX the lock bit for RTT indicates that the value | |
1168 | * is also a minimum value; this is subject to time. | |
1169 | */ | |
0a7de745 | 1170 | if (rt->rt_rmx.rmx_locks & RTV_RTT) { |
316670eb | 1171 | tp->t_rttmin = rtt / (RTM_RTTUNIT / TCP_RETRANSHZ); |
0a7de745 | 1172 | } else { |
39037602 A |
1173 | tp->t_rttmin = isnetlocal ? tcp_TCPTV_MIN : |
1174 | TCPTV_REXMTMIN; | |
0a7de745 | 1175 | } |
cb323159 | 1176 | |
39037602 A |
1177 | tp->t_srtt = |
1178 | rtt / (RTM_RTTUNIT / (TCP_RETRANSHZ * TCP_RTT_SCALE)); | |
316670eb | 1179 | tcpstat.tcps_usedrtt++; |
cb323159 | 1180 | |
316670eb A |
1181 | if (rt->rt_rmx.rmx_rttvar) { |
1182 | tp->t_rttvar = rt->rt_rmx.rmx_rttvar / | |
39037602 | 1183 | (RTM_RTTUNIT / (TCP_RETRANSHZ * TCP_RTTVAR_SCALE)); |
316670eb A |
1184 | tcpstat.tcps_usedrttvar++; |
1185 | } else { | |
1186 | /* default variation is +- 1 rtt */ | |
1187 | tp->t_rttvar = | |
39037602 | 1188 | tp->t_srtt * TCP_RTTVAR_SCALE / TCP_RTT_SCALE; |
316670eb | 1189 | } |
cb323159 A |
1190 | |
1191 | /* | |
1192 | * The RTO formula in the route metric case is based on: | |
1193 | * 4 * srtt + 8 * rttvar | |
1194 | * modulo the min, max and slop | |
1195 | */ | |
316670eb | 1196 | TCPT_RANGESET(tp->t_rxtcur, |
0a7de745 A |
1197 | ((tp->t_srtt >> 2) + tp->t_rttvar) >> 1, |
1198 | tp->t_rttmin, TCPTV_REXMTMAX, | |
1199 | TCP_ADD_REXMTSLOP(tp)); | |
316670eb | 1200 | } |
cb323159 A |
1201 | |
1202 | TCP_LOG_RTT_INFO(tp); | |
316670eb A |
1203 | } |
1204 | ||
4bd07ac2 | 1205 | static inline void |
5ba3f43e A |
1206 | tcp_create_ifnet_stats_per_flow(struct tcpcb *tp, |
1207 | struct ifnet_stats_per_flow *ifs) | |
1208 | { | |
1209 | struct inpcb *inp; | |
1210 | struct socket *so; | |
0a7de745 | 1211 | if (tp == NULL || ifs == NULL) { |
5ba3f43e | 1212 | return; |
0a7de745 | 1213 | } |
5ba3f43e A |
1214 | |
1215 | bzero(ifs, sizeof(*ifs)); | |
1216 | inp = tp->t_inpcb; | |
1217 | so = inp->inp_socket; | |
1218 | ||
1219 | ifs->ipv4 = (inp->inp_vflag & INP_IPV6) ? 0 : 1; | |
1220 | ifs->local = (tp->t_flags & TF_LOCAL) ? 1 : 0; | |
1221 | ifs->connreset = (so->so_error == ECONNRESET) ? 1 : 0; | |
1222 | ifs->conntimeout = (so->so_error == ETIMEDOUT) ? 1 : 0; | |
1223 | ifs->ecn_flags = tp->ecn_flags; | |
1224 | ifs->txretransmitbytes = tp->t_stat.txretransmitbytes; | |
1225 | ifs->rxoutoforderbytes = tp->t_stat.rxoutoforderbytes; | |
1226 | ifs->rxmitpkts = tp->t_stat.rxmitpkts; | |
1227 | ifs->rcvoopack = tp->t_rcvoopack; | |
1228 | ifs->pawsdrop = tp->t_pawsdrop; | |
1229 | ifs->sack_recovery_episodes = tp->t_sack_recovery_episode; | |
1230 | ifs->reordered_pkts = tp->t_reordered_pkts; | |
1231 | ifs->dsack_sent = tp->t_dsack_sent; | |
1232 | ifs->dsack_recvd = tp->t_dsack_recvd; | |
1233 | ifs->srtt = tp->t_srtt; | |
1234 | ifs->rttupdated = tp->t_rttupdated; | |
1235 | ifs->rttvar = tp->t_rttvar; | |
1236 | ifs->rttmin = get_base_rtt(tp); | |
1237 | if (tp->t_bwmeas != NULL && tp->t_bwmeas->bw_sndbw_max > 0) { | |
1238 | ifs->bw_sndbw_max = tp->t_bwmeas->bw_sndbw_max; | |
1239 | } else { | |
1240 | ifs->bw_sndbw_max = 0; | |
1241 | } | |
0a7de745 | 1242 | if (tp->t_bwmeas != NULL && tp->t_bwmeas->bw_rcvbw_max > 0) { |
5ba3f43e A |
1243 | ifs->bw_rcvbw_max = tp->t_bwmeas->bw_rcvbw_max; |
1244 | } else { | |
1245 | ifs->bw_rcvbw_max = 0; | |
1246 | } | |
1247 | ifs->bk_txpackets = so->so_tc_stats[MBUF_TC_BK].txpackets; | |
1248 | ifs->txpackets = inp->inp_stat->txpackets; | |
1249 | ifs->rxpackets = inp->inp_stat->rxpackets; | |
1250 | } | |
1251 | ||
1252 | static inline void | |
1253 | tcp_flow_ecn_perf_stats(struct ifnet_stats_per_flow *ifs, | |
4bd07ac2 A |
1254 | struct if_tcp_ecn_perf_stat *stat) |
1255 | { | |
1256 | u_int64_t curval, oldval; | |
5ba3f43e A |
1257 | stat->total_txpkts += ifs->txpackets; |
1258 | stat->total_rxpkts += ifs->rxpackets; | |
1259 | stat->total_rxmitpkts += ifs->rxmitpkts; | |
1260 | stat->total_oopkts += ifs->rcvoopack; | |
1261 | stat->total_reorderpkts += (ifs->reordered_pkts + | |
1262 | ifs->pawsdrop + ifs->dsack_sent + ifs->dsack_recvd); | |
4bd07ac2 A |
1263 | |
1264 | /* Average RTT */ | |
5ba3f43e A |
1265 | curval = ifs->srtt >> TCP_RTT_SHIFT; |
1266 | if (curval > 0 && ifs->rttupdated >= 16) { | |
4bd07ac2 A |
1267 | if (stat->rtt_avg == 0) { |
1268 | stat->rtt_avg = curval; | |
1269 | } else { | |
1270 | oldval = stat->rtt_avg; | |
5ba3f43e | 1271 | stat->rtt_avg = ((oldval << 4) - oldval + curval) >> 4; |
4bd07ac2 A |
1272 | } |
1273 | } | |
1274 | ||
1275 | /* RTT variance */ | |
5ba3f43e A |
1276 | curval = ifs->rttvar >> TCP_RTTVAR_SHIFT; |
1277 | if (curval > 0 && ifs->rttupdated >= 16) { | |
4bd07ac2 A |
1278 | if (stat->rtt_var == 0) { |
1279 | stat->rtt_var = curval; | |
1280 | } else { | |
1281 | oldval = stat->rtt_var; | |
1282 | stat->rtt_var = | |
1283 | ((oldval << 4) - oldval + curval) >> 4; | |
1284 | } | |
1285 | } | |
1286 | ||
5ba3f43e A |
1287 | /* SACK episodes */ |
1288 | stat->sack_episodes += ifs->sack_recovery_episodes; | |
0a7de745 | 1289 | if (ifs->connreset) { |
490019cf | 1290 | stat->rst_drop++; |
0a7de745 | 1291 | } |
4bd07ac2 A |
1292 | } |
1293 | ||
5ba3f43e A |
1294 | static inline void |
1295 | tcp_flow_lim_stats(struct ifnet_stats_per_flow *ifs, | |
1296 | struct if_lim_perf_stat *stat) | |
1297 | { | |
1298 | u_int64_t curval, oldval; | |
1299 | ||
1300 | stat->lim_total_txpkts += ifs->txpackets; | |
1301 | stat->lim_total_rxpkts += ifs->rxpackets; | |
1302 | stat->lim_total_retxpkts += ifs->rxmitpkts; | |
1303 | stat->lim_total_oopkts += ifs->rcvoopack; | |
1304 | ||
1305 | if (ifs->bw_sndbw_max > 0) { | |
1306 | /* convert from bytes per ms to bits per second */ | |
1307 | ifs->bw_sndbw_max *= 8000; | |
f427ee49 | 1308 | stat->lim_ul_max_bandwidth = MAX(stat->lim_ul_max_bandwidth, |
5ba3f43e A |
1309 | ifs->bw_sndbw_max); |
1310 | } | |
1311 | ||
1312 | if (ifs->bw_rcvbw_max > 0) { | |
1313 | /* convert from bytes per ms to bits per second */ | |
1314 | ifs->bw_rcvbw_max *= 8000; | |
f427ee49 | 1315 | stat->lim_dl_max_bandwidth = MAX(stat->lim_dl_max_bandwidth, |
5ba3f43e A |
1316 | ifs->bw_rcvbw_max); |
1317 | } | |
1318 | ||
1319 | /* Average RTT */ | |
1320 | curval = ifs->srtt >> TCP_RTT_SHIFT; | |
1321 | if (curval > 0 && ifs->rttupdated >= 16) { | |
1322 | if (stat->lim_rtt_average == 0) { | |
1323 | stat->lim_rtt_average = curval; | |
1324 | } else { | |
1325 | oldval = stat->lim_rtt_average; | |
1326 | stat->lim_rtt_average = | |
1327 | ((oldval << 4) - oldval + curval) >> 4; | |
1328 | } | |
1329 | } | |
1330 | ||
1331 | /* RTT variance */ | |
1332 | curval = ifs->rttvar >> TCP_RTTVAR_SHIFT; | |
1333 | if (curval > 0 && ifs->rttupdated >= 16) { | |
1334 | if (stat->lim_rtt_variance == 0) { | |
1335 | stat->lim_rtt_variance = curval; | |
1336 | } else { | |
1337 | oldval = stat->lim_rtt_variance; | |
1338 | stat->lim_rtt_variance = | |
1339 | ((oldval << 4) - oldval + curval) >> 4; | |
1340 | } | |
1341 | } | |
1342 | ||
1343 | if (stat->lim_rtt_min == 0) { | |
1344 | stat->lim_rtt_min = ifs->rttmin; | |
1345 | } else { | |
f427ee49 | 1346 | stat->lim_rtt_min = MIN(stat->lim_rtt_min, ifs->rttmin); |
5ba3f43e A |
1347 | } |
1348 | ||
1349 | /* connection timeouts */ | |
1350 | stat->lim_conn_attempts++; | |
0a7de745 | 1351 | if (ifs->conntimeout) { |
5ba3f43e | 1352 | stat->lim_conn_timeouts++; |
0a7de745 | 1353 | } |
5ba3f43e A |
1354 | |
1355 | /* bytes sent using background delay-based algorithms */ | |
1356 | stat->lim_bk_txpkts += ifs->bk_txpackets; | |
5ba3f43e A |
1357 | } |
1358 | ||
1c79356b A |
1359 | /* |
1360 | * Close a TCP control block: | |
1361 | * discard all space held by the tcp | |
1362 | * discard internet protocol block | |
1363 | * wake up any sleepers | |
1364 | */ | |
1365 | struct tcpcb * | |
39037602 | 1366 | tcp_close(struct tcpcb *tp) |
1c79356b | 1367 | { |
1c79356b A |
1368 | struct inpcb *inp = tp->t_inpcb; |
1369 | struct socket *so = inp->inp_socket; | |
9bccf70c | 1370 | int isipv6 = (inp->inp_vflag & INP_IPV6) != 0; |
39236c6e | 1371 | struct route *ro; |
b0d623f7 | 1372 | struct rtentry *rt; |
1c79356b | 1373 | int dosavessthresh; |
5ba3f43e | 1374 | struct ifnet_stats_per_flow ifs; |
1c79356b | 1375 | |
39236c6e | 1376 | /* tcp_close was called previously, bail */ |
0a7de745 A |
1377 | if (inp->inp_ppcb == NULL) { |
1378 | return NULL; | |
1379 | } | |
1c79356b | 1380 | |
f427ee49 A |
1381 | tcp_del_fsw_flow(tp); |
1382 | ||
6d2010ae | 1383 | tcp_canceltimers(tp); |
39037602 | 1384 | KERNEL_DEBUG(DBG_FNC_TCP_CLOSE | DBG_FUNC_START, tp, 0, 0, 0, 0); |
1c79356b | 1385 | |
2d21ac55 A |
1386 | /* |
1387 | * If another thread for this tcp is currently in ip (indicated by | |
1388 | * the TF_SENDINPROG flag), defer the cleanup until after it returns | |
1389 | * back to tcp. This is done to serialize the close until after all | |
1390 | * pending output is finished, in order to avoid having the PCB be | |
1391 | * detached and the cached route cleaned, only for ip to cache the | |
1392 | * route back into the PCB again. Note that we've cleared all the | |
1393 | * timers at this point. Set TF_CLOSING to indicate to tcp_output() | |
1394 | * that is should call us again once it returns from ip; at that | |
1395 | * point both flags should be cleared and we can proceed further | |
1396 | * with the cleanup. | |
1397 | */ | |
316670eb | 1398 | if ((tp->t_flags & TF_CLOSING) || |
0a7de745 | 1399 | inp->inp_sndinprog_cnt > 0) { |
2d21ac55 | 1400 | tp->t_flags |= TF_CLOSING; |
0a7de745 | 1401 | return NULL; |
2d21ac55 | 1402 | } |
1c79356b | 1403 | |
cb323159 A |
1404 | TCP_LOG_CONNECTION_SUMMARY(tp); |
1405 | ||
39236c6e | 1406 | DTRACE_TCP4(state__change, void, NULL, struct inpcb *, inp, |
0a7de745 | 1407 | struct tcpcb *, tp, int32_t, TCPS_CLOSED); |
39236c6e | 1408 | |
39236c6e | 1409 | ro = (isipv6 ? (struct route *)&inp->in6p_route : &inp->inp_route); |
39236c6e | 1410 | rt = ro->ro_rt; |
0a7de745 | 1411 | if (rt != NULL) { |
b0d623f7 | 1412 | RT_LOCK_SPIN(rt); |
0a7de745 | 1413 | } |
b0d623f7 | 1414 | |
1c79356b A |
1415 | /* |
1416 | * If we got enough samples through the srtt filter, | |
1417 | * save the rtt and rttvar in the routing entry. | |
1418 | * 'Enough' is arbitrarily defined as the 16 samples. | |
1419 | * 16 samples is enough for the srtt filter to converge | |
1420 | * to within 5% of the correct value; fewer samples and | |
1421 | * we could save a very bogus rtt. | |
1422 | * | |
1423 | * Don't update the default route's characteristics and don't | |
1424 | * update anything that the user "locked". | |
1425 | */ | |
1426 | if (tp->t_rttupdated >= 16) { | |
39037602 | 1427 | u_int32_t i = 0; |
cb323159 | 1428 | bool log_rtt = false; |
2d21ac55 | 1429 | |
1c79356b A |
1430 | if (isipv6) { |
1431 | struct sockaddr_in6 *sin6; | |
1432 | ||
0a7de745 | 1433 | if (rt == NULL) { |
1c79356b | 1434 | goto no_valid_rt; |
0a7de745 | 1435 | } |
316670eb | 1436 | sin6 = (struct sockaddr_in6 *)(void *)rt_key(rt); |
0a7de745 | 1437 | if (IN6_IS_ADDR_UNSPECIFIED(&sin6->sin6_addr)) { |
1c79356b | 1438 | goto no_valid_rt; |
0a7de745 | 1439 | } |
f427ee49 | 1440 | } else if (ROUTE_UNUSABLE(ro) || |
39236c6e | 1441 | SIN(rt_key(rt))->sin_addr.s_addr == INADDR_ANY) { |
fe8ab488 A |
1442 | DTRACE_TCP4(state__change, void, NULL, |
1443 | struct inpcb *, inp, struct tcpcb *, tp, | |
1444 | int32_t, TCPS_CLOSED); | |
1445 | tp->t_state = TCPS_CLOSED; | |
1c79356b | 1446 | goto no_valid_rt; |
55e303ae | 1447 | } |
1c79356b | 1448 | |
b0d623f7 | 1449 | RT_LOCK_ASSERT_HELD(rt); |
1c79356b A |
1450 | if ((rt->rt_rmx.rmx_locks & RTV_RTT) == 0) { |
1451 | i = tp->t_srtt * | |
2d21ac55 | 1452 | (RTM_RTTUNIT / (TCP_RETRANSHZ * TCP_RTT_SCALE)); |
0a7de745 | 1453 | if (rt->rt_rmx.rmx_rtt && i) { |
1c79356b A |
1454 | /* |
1455 | * filter this update to half the old & half | |
1456 | * the new values, converting scale. | |
1457 | * See route.h and tcp_var.h for a | |
1458 | * description of the scaling constants. | |
1459 | */ | |
1460 | rt->rt_rmx.rmx_rtt = | |
1461 | (rt->rt_rmx.rmx_rtt + i) / 2; | |
0a7de745 | 1462 | } else { |
1c79356b | 1463 | rt->rt_rmx.rmx_rtt = i; |
0a7de745 | 1464 | } |
1c79356b | 1465 | tcpstat.tcps_cachedrtt++; |
cb323159 | 1466 | log_rtt = true; |
1c79356b A |
1467 | } |
1468 | if ((rt->rt_rmx.rmx_locks & RTV_RTTVAR) == 0) { | |
1469 | i = tp->t_rttvar * | |
2d21ac55 | 1470 | (RTM_RTTUNIT / (TCP_RETRANSHZ * TCP_RTTVAR_SCALE)); |
0a7de745 | 1471 | if (rt->rt_rmx.rmx_rttvar && i) { |
1c79356b A |
1472 | rt->rt_rmx.rmx_rttvar = |
1473 | (rt->rt_rmx.rmx_rttvar + i) / 2; | |
0a7de745 | 1474 | } else { |
1c79356b | 1475 | rt->rt_rmx.rmx_rttvar = i; |
0a7de745 | 1476 | } |
1c79356b | 1477 | tcpstat.tcps_cachedrttvar++; |
cb323159 A |
1478 | log_rtt = true; |
1479 | } | |
1480 | if (log_rtt) { | |
1481 | TCP_LOG_RTM_RTT(tp, rt); | |
1482 | TCP_LOG_RTT_INFO(tp); | |
1c79356b A |
1483 | } |
1484 | /* | |
1485 | * The old comment here said: | |
1486 | * update the pipelimit (ssthresh) if it has been updated | |
1487 | * already or if a pipesize was specified & the threshhold | |
1488 | * got below half the pipesize. I.e., wait for bad news | |
1489 | * before we start updating, then update on both good | |
1490 | * and bad news. | |
1491 | * | |
1492 | * But we want to save the ssthresh even if no pipesize is | |
1493 | * specified explicitly in the route, because such | |
1494 | * connections still have an implicit pipesize specified | |
1495 | * by the global tcp_sendspace. In the absence of a reliable | |
1496 | * way to calculate the pipesize, it will have to do. | |
1497 | */ | |
1498 | i = tp->snd_ssthresh; | |
0a7de745 | 1499 | if (rt->rt_rmx.rmx_sendpipe != 0) { |
1c79356b | 1500 | dosavessthresh = (i < rt->rt_rmx.rmx_sendpipe / 2); |
0a7de745 | 1501 | } else { |
1c79356b | 1502 | dosavessthresh = (i < so->so_snd.sb_hiwat / 2); |
0a7de745 | 1503 | } |
1c79356b | 1504 | if (((rt->rt_rmx.rmx_locks & RTV_SSTHRESH) == 0 && |
39037602 A |
1505 | i != 0 && rt->rt_rmx.rmx_ssthresh != 0) || |
1506 | dosavessthresh) { | |
1c79356b A |
1507 | /* |
1508 | * convert the limit from user data bytes to | |
1509 | * packets then to packet data bytes. | |
1510 | */ | |
1511 | i = (i + tp->t_maxseg / 2) / tp->t_maxseg; | |
0a7de745 | 1512 | if (i < 2) { |
1c79356b | 1513 | i = 2; |
0a7de745 | 1514 | } |
b0d623f7 | 1515 | i *= (u_int32_t)(tp->t_maxseg + |
0a7de745 A |
1516 | isipv6 ? sizeof(struct ip6_hdr) + |
1517 | sizeof(struct tcphdr) : | |
0a7de745 A |
1518 | sizeof(struct tcpiphdr)); |
1519 | if (rt->rt_rmx.rmx_ssthresh) { | |
1c79356b A |
1520 | rt->rt_rmx.rmx_ssthresh = |
1521 | (rt->rt_rmx.rmx_ssthresh + i) / 2; | |
0a7de745 | 1522 | } else { |
1c79356b | 1523 | rt->rt_rmx.rmx_ssthresh = i; |
0a7de745 | 1524 | } |
1c79356b A |
1525 | tcpstat.tcps_cachedssthresh++; |
1526 | } | |
1527 | } | |
b0d623f7 A |
1528 | |
1529 | /* | |
1530 | * Mark route for deletion if no information is cached. | |
1531 | */ | |
f427ee49 | 1532 | if (rt != NULL && (so->so_flags & SOF_OVERFLOW)) { |
b0d623f7 A |
1533 | if (!(rt->rt_rmx.rmx_locks & RTV_RTT) && |
1534 | rt->rt_rmx.rmx_rtt == 0) { | |
1535 | rt->rt_flags |= RTF_DELCLONE; | |
9bccf70c A |
1536 | } |
1537 | } | |
2d21ac55 | 1538 | |
b0d623f7 | 1539 | no_valid_rt: |
0a7de745 | 1540 | if (rt != NULL) { |
b0d623f7 | 1541 | RT_UNLOCK(rt); |
0a7de745 | 1542 | } |
b0d623f7 A |
1543 | |
1544 | /* free the reassembly queue, if any */ | |
1c79356b | 1545 | (void) tcp_freeq(tp); |
4bd07ac2 | 1546 | |
5ba3f43e A |
1547 | /* performance stats per interface */ |
1548 | tcp_create_ifnet_stats_per_flow(tp, &ifs); | |
1549 | tcp_update_stats_per_flow(&ifs, inp->inp_last_outifp); | |
1c79356b | 1550 | |
8ad349bb | 1551 | tcp_free_sackholes(tp); |
39037602 A |
1552 | tcp_notify_ack_free(tp); |
1553 | ||
1554 | inp_decr_sndbytes_allunsent(so, tp->snd_una); | |
1555 | ||
316670eb A |
1556 | if (tp->t_bwmeas != NULL) { |
1557 | tcp_bwmeas_free(tp); | |
1558 | } | |
3e170ce0 | 1559 | tcp_rxtseg_clean(tp); |
2d21ac55 | 1560 | /* Free the packet list */ |
0a7de745 | 1561 | if (tp->t_pktlist_head != NULL) { |
2d21ac55 | 1562 | m_freem_list(tp->t_pktlist_head); |
0a7de745 | 1563 | } |
2d21ac55 A |
1564 | TCP_PKTLIST_CLEAR(tp); |
1565 | ||
0a7de745 A |
1566 | if (so->so_flags1 & SOF1_CACHED_IN_SOCK_LAYER) { |
1567 | inp->inp_saved_ppcb = (caddr_t) tp; | |
1568 | } | |
39236c6e | 1569 | |
fe8ab488 A |
1570 | tp->t_state = TCPS_CLOSED; |
1571 | ||
39037602 A |
1572 | /* |
1573 | * Issue a wakeup before detach so that we don't miss | |
6d2010ae A |
1574 | * a wakeup |
1575 | */ | |
1576 | sodisconnectwakeup(so); | |
1c79356b | 1577 | |
cb323159 A |
1578 | /* |
1579 | * Make sure to clear the TCP Keep Alive Offload as it is | |
1580 | * ref counted on the interface | |
1581 | */ | |
1582 | tcp_clear_keep_alive_offload(so); | |
fe8ab488 A |
1583 | |
1584 | /* | |
1585 | * If this is a socket that does not want to wakeup the device | |
1586 | * for it's traffic, the application might need to know that the | |
1587 | * socket is closed, send a notification. | |
1588 | */ | |
1589 | if ((so->so_options & SO_NOWAKEFROMSLEEP) && | |
1590 | inp->inp_state != INPCB_STATE_DEAD && | |
0a7de745 | 1591 | !(inp->inp_flags2 & INP2_TIMEWAIT)) { |
fe8ab488 | 1592 | socket_post_kev_msg_closed(so); |
0a7de745 | 1593 | } |
fe8ab488 A |
1594 | |
1595 | if (CC_ALGO(tp)->cleanup != NULL) { | |
1596 | CC_ALGO(tp)->cleanup(tp); | |
1597 | } | |
1598 | ||
1599 | if (tp->t_ccstate != NULL) { | |
1600 | zfree(tcp_cc_zone, tp->t_ccstate); | |
1601 | tp->t_ccstate = NULL; | |
1602 | } | |
1603 | tp->tcp_cc_index = TCP_CC_ALGO_NONE; | |
1604 | ||
3e170ce0 A |
1605 | /* Can happen if we close the socket before receiving the third ACK */ |
1606 | if ((tp->t_tfo_flags & TFO_F_COOKIE_VALID)) { | |
1607 | OSDecrementAtomic(&tcp_tfo_halfcnt); | |
1608 | ||
1609 | /* Panic if something has gone terribly wrong. */ | |
1610 | VERIFY(tcp_tfo_halfcnt >= 0); | |
1611 | ||
1612 | tp->t_tfo_flags &= ~TFO_F_COOKIE_VALID; | |
1613 | } | |
1614 | ||
0a7de745 | 1615 | if (SOCK_CHECK_DOM(so, PF_INET6)) { |
1c79356b | 1616 | in6_pcbdetach(inp); |
f427ee49 A |
1617 | } else { |
1618 | in_pcbdetach(inp); | |
1619 | } | |
6d2010ae | 1620 | |
39037602 A |
1621 | /* |
1622 | * Call soisdisconnected after detach because it might unlock the socket | |
1623 | */ | |
6d2010ae | 1624 | soisdisconnected(so); |
1c79356b | 1625 | tcpstat.tcps_closed++; |
fe8ab488 A |
1626 | KERNEL_DEBUG(DBG_FNC_TCP_CLOSE | DBG_FUNC_END, |
1627 | tcpstat.tcps_closed, 0, 0, 0, 0); | |
0a7de745 | 1628 | return NULL; |
1c79356b A |
1629 | } |
1630 | ||
1631 | int | |
39037602 | 1632 | tcp_freeq(struct tcpcb *tp) |
1c79356b | 1633 | { |
39037602 | 1634 | struct tseg_qent *q; |
1c79356b A |
1635 | int rv = 0; |
1636 | ||
39037602 | 1637 | while ((q = LIST_FIRST(&tp->t_segq)) != NULL) { |
9bccf70c A |
1638 | LIST_REMOVE(q, tqe_q); |
1639 | m_freem(q->tqe_m); | |
6d2010ae | 1640 | zfree(tcp_reass_zone, q); |
1c79356b A |
1641 | rv = 1; |
1642 | } | |
fe8ab488 | 1643 | tp->t_reassqlen = 0; |
0a7de745 | 1644 | return rv; |
1c79356b A |
1645 | } |
1646 | ||
3e170ce0 | 1647 | |
1c79356b | 1648 | void |
39037602 | 1649 | tcp_drain(void) |
1c79356b | 1650 | { |
3e170ce0 A |
1651 | struct inpcb *inp; |
1652 | struct tcpcb *tp; | |
2d21ac55 | 1653 | |
0a7de745 | 1654 | if (!lck_rw_try_lock_exclusive(tcbinfo.ipi_lock)) { |
3e170ce0 | 1655 | return; |
0a7de745 | 1656 | } |
3e170ce0 A |
1657 | |
1658 | LIST_FOREACH(inp, tcbinfo.ipi_listhead, inp_list) { | |
1659 | if (in_pcb_checkstate(inp, WNT_ACQUIRE, 0) != | |
0a7de745 | 1660 | WNT_STOPUSING) { |
5ba3f43e | 1661 | socket_lock(inp->inp_socket, 1); |
3e170ce0 | 1662 | if (in_pcb_checkstate(inp, WNT_RELEASE, 1) |
0a7de745 | 1663 | == WNT_STOPUSING) { |
3e170ce0 | 1664 | /* lost a race, try the next one */ |
5ba3f43e | 1665 | socket_unlock(inp->inp_socket, 1); |
3e170ce0 | 1666 | continue; |
39037602 | 1667 | } |
3e170ce0 A |
1668 | tp = intotcpcb(inp); |
1669 | ||
3e170ce0 A |
1670 | so_drain_extended_bk_idle(inp->inp_socket); |
1671 | ||
5ba3f43e | 1672 | socket_unlock(inp->inp_socket, 1); |
3e170ce0 | 1673 | } |
9bccf70c | 1674 | } |
3e170ce0 | 1675 | lck_rw_done(tcbinfo.ipi_lock); |
1c79356b A |
1676 | } |
1677 | ||
1678 | /* | |
1679 | * Notify a tcp user of an asynchronous error; | |
1680 | * store error as soft error, but wake up user | |
1681 | * (for now, won't do anything until can select for soft error). | |
9bccf70c A |
1682 | * |
1683 | * Do not wake up user since there currently is no mechanism for | |
1684 | * reporting soft errors (yet - a kqueue filter may be added). | |
1c79356b A |
1685 | */ |
1686 | static void | |
39037602 | 1687 | tcp_notify(struct inpcb *inp, int error) |
1c79356b | 1688 | { |
55e303ae A |
1689 | struct tcpcb *tp; |
1690 | ||
0a7de745 | 1691 | if (inp == NULL || (inp->inp_state == INPCB_STATE_DEAD)) { |
55e303ae | 1692 | return; /* pcb is gone already */ |
0a7de745 | 1693 | } |
55e303ae | 1694 | tp = (struct tcpcb *)inp->inp_ppcb; |
1c79356b | 1695 | |
5ba3f43e | 1696 | VERIFY(tp != NULL); |
1c79356b A |
1697 | /* |
1698 | * Ignore some errors if we are hooked up. | |
1699 | * If connection hasn't completed, has retransmitted several times, | |
1700 | * and receives a second error, give up now. This is better | |
1701 | * than waiting a long time to establish a connection that | |
1702 | * can never complete. | |
1703 | */ | |
1704 | if (tp->t_state == TCPS_ESTABLISHED && | |
39037602 A |
1705 | (error == EHOSTUNREACH || error == ENETUNREACH || |
1706 | error == EHOSTDOWN)) { | |
5ba3f43e A |
1707 | if (inp->inp_route.ro_rt) { |
1708 | rtfree(inp->inp_route.ro_rt); | |
1709 | inp->inp_route.ro_rt = (struct rtentry *)NULL; | |
1710 | } | |
1c79356b | 1711 | } else if (tp->t_state < TCPS_ESTABLISHED && tp->t_rxtshift > 3 && |
0a7de745 | 1712 | tp->t_softerror) { |
9bccf70c | 1713 | tcp_drop(tp, error); |
0a7de745 | 1714 | } else { |
1c79356b | 1715 | tp->t_softerror = error; |
0a7de745 | 1716 | } |
1c79356b A |
1717 | } |
1718 | ||
39037602 | 1719 | struct bwmeas * |
316670eb A |
1720 | tcp_bwmeas_alloc(struct tcpcb *tp) |
1721 | { | |
1722 | struct bwmeas *elm; | |
f427ee49 | 1723 | elm = zalloc_flags(tcp_bwmeas_zone, Z_ZERO | Z_WAITOK); |
316670eb | 1724 | elm->bw_minsizepkts = TCP_BWMEAS_BURST_MINSIZE; |
316670eb | 1725 | elm->bw_minsize = elm->bw_minsizepkts * tp->t_maxseg; |
0a7de745 | 1726 | return elm; |
316670eb A |
1727 | } |
1728 | ||
1729 | void | |
39037602 | 1730 | tcp_bwmeas_free(struct tcpcb *tp) |
316670eb A |
1731 | { |
1732 | zfree(tcp_bwmeas_zone, tp->t_bwmeas); | |
1733 | tp->t_bwmeas = NULL; | |
1734 | tp->t_flagsext &= ~(TF_MEASURESNDBW); | |
1735 | } | |
1736 | ||
39037602 A |
1737 | int |
1738 | get_tcp_inp_list(struct inpcb **inp_list, int n, inp_gen_t gencnt) | |
1739 | { | |
1740 | struct tcpcb *tp; | |
1741 | struct inpcb *inp; | |
1742 | int i = 0; | |
1743 | ||
1744 | LIST_FOREACH(inp, tcbinfo.ipi_listhead, inp_list) { | |
1745 | if (inp->inp_gencnt <= gencnt && | |
0a7de745 | 1746 | inp->inp_state != INPCB_STATE_DEAD) { |
39037602 | 1747 | inp_list[i++] = inp; |
0a7de745 A |
1748 | } |
1749 | if (i >= n) { | |
39037602 | 1750 | break; |
0a7de745 | 1751 | } |
39037602 A |
1752 | } |
1753 | ||
1754 | TAILQ_FOREACH(tp, &tcp_tw_tailq, t_twentry) { | |
1755 | inp = tp->t_inpcb; | |
1756 | if (inp->inp_gencnt <= gencnt && | |
0a7de745 | 1757 | inp->inp_state != INPCB_STATE_DEAD) { |
39037602 | 1758 | inp_list[i++] = inp; |
0a7de745 A |
1759 | } |
1760 | if (i >= n) { | |
39037602 | 1761 | break; |
0a7de745 | 1762 | } |
39037602 | 1763 | } |
0a7de745 | 1764 | return i; |
39037602 A |
1765 | } |
1766 | ||
b0d623f7 A |
1767 | /* |
1768 | * tcpcb_to_otcpcb copies specific bits of a tcpcb to a otcpcb format. | |
1769 | * The otcpcb data structure is passed to user space and must not change. | |
1770 | */ | |
1771 | static void | |
1772 | tcpcb_to_otcpcb(struct tcpcb *tp, struct otcpcb *otp) | |
1773 | { | |
fe8ab488 | 1774 | otp->t_segq = (uint32_t)VM_KERNEL_ADDRPERM(tp->t_segq.lh_first); |
b0d623f7 | 1775 | otp->t_dupacks = tp->t_dupacks; |
fe8ab488 A |
1776 | otp->t_timer[TCPT_REXMT_EXT] = tp->t_timer[TCPT_REXMT]; |
1777 | otp->t_timer[TCPT_PERSIST_EXT] = tp->t_timer[TCPT_PERSIST]; | |
1778 | otp->t_timer[TCPT_KEEP_EXT] = tp->t_timer[TCPT_KEEP]; | |
1779 | otp->t_timer[TCPT_2MSL_EXT] = tp->t_timer[TCPT_2MSL]; | |
39037602 A |
1780 | otp->t_inpcb = |
1781 | (_TCPCB_PTR(struct inpcb *))VM_KERNEL_ADDRPERM(tp->t_inpcb); | |
b0d623f7 A |
1782 | otp->t_state = tp->t_state; |
1783 | otp->t_flags = tp->t_flags; | |
fe8ab488 | 1784 | otp->t_force = (tp->t_flagsext & TF_FORCE) ? 1 : 0; |
b0d623f7 A |
1785 | otp->snd_una = tp->snd_una; |
1786 | otp->snd_max = tp->snd_max; | |
1787 | otp->snd_nxt = tp->snd_nxt; | |
1788 | otp->snd_up = tp->snd_up; | |
1789 | otp->snd_wl1 = tp->snd_wl1; | |
1790 | otp->snd_wl2 = tp->snd_wl2; | |
1791 | otp->iss = tp->iss; | |
1792 | otp->irs = tp->irs; | |
1793 | otp->rcv_nxt = tp->rcv_nxt; | |
1794 | otp->rcv_adv = tp->rcv_adv; | |
1795 | otp->rcv_wnd = tp->rcv_wnd; | |
1796 | otp->rcv_up = tp->rcv_up; | |
1797 | otp->snd_wnd = tp->snd_wnd; | |
1798 | otp->snd_cwnd = tp->snd_cwnd; | |
1799 | otp->snd_ssthresh = tp->snd_ssthresh; | |
1800 | otp->t_maxopd = tp->t_maxopd; | |
1801 | otp->t_rcvtime = tp->t_rcvtime; | |
1802 | otp->t_starttime = tp->t_starttime; | |
1803 | otp->t_rtttime = tp->t_rtttime; | |
1804 | otp->t_rtseq = tp->t_rtseq; | |
1805 | otp->t_rxtcur = tp->t_rxtcur; | |
1806 | otp->t_maxseg = tp->t_maxseg; | |
1807 | otp->t_srtt = tp->t_srtt; | |
1808 | otp->t_rttvar = tp->t_rttvar; | |
1809 | otp->t_rxtshift = tp->t_rxtshift; | |
1810 | otp->t_rttmin = tp->t_rttmin; | |
1811 | otp->t_rttupdated = tp->t_rttupdated; | |
1812 | otp->max_sndwnd = tp->max_sndwnd; | |
1813 | otp->t_softerror = tp->t_softerror; | |
1814 | otp->t_oobflags = tp->t_oobflags; | |
1815 | otp->t_iobc = tp->t_iobc; | |
1816 | otp->snd_scale = tp->snd_scale; | |
1817 | otp->rcv_scale = tp->rcv_scale; | |
1818 | otp->request_r_scale = tp->request_r_scale; | |
1819 | otp->requested_s_scale = tp->requested_s_scale; | |
1820 | otp->ts_recent = tp->ts_recent; | |
1821 | otp->ts_recent_age = tp->ts_recent_age; | |
1822 | otp->last_ack_sent = tp->last_ack_sent; | |
490019cf A |
1823 | otp->cc_send = 0; |
1824 | otp->cc_recv = 0; | |
b0d623f7 A |
1825 | otp->snd_recover = tp->snd_recover; |
1826 | otp->snd_cwnd_prev = tp->snd_cwnd_prev; | |
1827 | otp->snd_ssthresh_prev = tp->snd_ssthresh_prev; | |
39236c6e | 1828 | otp->t_badrxtwin = 0; |
b0d623f7 A |
1829 | } |
1830 | ||
1c79356b A |
1831 | static int |
1832 | tcp_pcblist SYSCTL_HANDLER_ARGS | |
1833 | { | |
2d21ac55 | 1834 | #pragma unused(oidp, arg1, arg2) |
39236c6e | 1835 | int error, i = 0, n; |
39037602 | 1836 | struct inpcb **inp_list; |
1c79356b A |
1837 | inp_gen_t gencnt; |
1838 | struct xinpgen xig; | |
1839 | ||
1840 | /* | |
1841 | * The process of preparing the TCB list is too time-consuming and | |
1842 | * resource-intensive to repeat twice on every request. | |
1843 | */ | |
39236c6e | 1844 | lck_rw_lock_shared(tcbinfo.ipi_lock); |
91447636 | 1845 | if (req->oldptr == USER_ADDR_NULL) { |
1c79356b | 1846 | n = tcbinfo.ipi_count; |
39037602 | 1847 | req->oldidx = 2 * (sizeof(xig)) |
0a7de745 | 1848 | + (n + n / 8) * sizeof(struct xtcpcb); |
39236c6e | 1849 | lck_rw_done(tcbinfo.ipi_lock); |
0a7de745 | 1850 | return 0; |
1c79356b A |
1851 | } |
1852 | ||
91447636 | 1853 | if (req->newptr != USER_ADDR_NULL) { |
39236c6e | 1854 | lck_rw_done(tcbinfo.ipi_lock); |
0a7de745 | 1855 | return EPERM; |
91447636 | 1856 | } |
1c79356b A |
1857 | |
1858 | /* | |
1859 | * OK, now we're committed to doing something. | |
1860 | */ | |
1c79356b A |
1861 | gencnt = tcbinfo.ipi_gencnt; |
1862 | n = tcbinfo.ipi_count; | |
1c79356b | 1863 | |
3a60a9f5 | 1864 | bzero(&xig, sizeof(xig)); |
39037602 | 1865 | xig.xig_len = sizeof(xig); |
1c79356b A |
1866 | xig.xig_count = n; |
1867 | xig.xig_gen = gencnt; | |
1868 | xig.xig_sogen = so_gencnt; | |
39037602 | 1869 | error = SYSCTL_OUT(req, &xig, sizeof(xig)); |
91447636 | 1870 | if (error) { |
39236c6e | 1871 | lck_rw_done(tcbinfo.ipi_lock); |
0a7de745 | 1872 | return error; |
91447636 | 1873 | } |
2d21ac55 A |
1874 | /* |
1875 | * We are done if there is no pcb | |
1876 | */ | |
1877 | if (n == 0) { | |
39236c6e | 1878 | lck_rw_done(tcbinfo.ipi_lock); |
0a7de745 | 1879 | return 0; |
91447636 | 1880 | } |
1c79356b | 1881 | |
0a7de745 | 1882 | inp_list = _MALLOC(n * sizeof(*inp_list), M_TEMP, M_WAITOK); |
91447636 | 1883 | if (inp_list == 0) { |
39236c6e | 1884 | lck_rw_done(tcbinfo.ipi_lock); |
0a7de745 | 1885 | return ENOMEM; |
2d21ac55 A |
1886 | } |
1887 | ||
39037602 | 1888 | n = get_tcp_inp_list(inp_list, n, gencnt); |
1c79356b A |
1889 | |
1890 | error = 0; | |
1891 | for (i = 0; i < n; i++) { | |
39037602 A |
1892 | struct xtcpcb xt; |
1893 | caddr_t inp_ppcb; | |
1894 | struct inpcb *inp; | |
1895 | ||
1c79356b | 1896 | inp = inp_list[i]; |
39037602 | 1897 | |
0a7de745 | 1898 | if (in_pcb_checkstate(inp, WNT_ACQUIRE, 0) == WNT_STOPUSING) { |
39037602 | 1899 | continue; |
0a7de745 | 1900 | } |
5ba3f43e | 1901 | socket_lock(inp->inp_socket, 1); |
39037602 | 1902 | if (in_pcb_checkstate(inp, WNT_RELEASE, 1) == WNT_STOPUSING) { |
5ba3f43e | 1903 | socket_unlock(inp->inp_socket, 1); |
39037602 A |
1904 | continue; |
1905 | } | |
1906 | if (inp->inp_gencnt > gencnt) { | |
5ba3f43e | 1907 | socket_unlock(inp->inp_socket, 1); |
39037602 A |
1908 | continue; |
1909 | } | |
1910 | ||
1911 | bzero(&xt, sizeof(xt)); | |
1912 | xt.xt_len = sizeof(xt); | |
1913 | /* XXX should avoid extra copy */ | |
1914 | inpcb_to_compat(inp, &xt.xt_inp); | |
1915 | inp_ppcb = inp->inp_ppcb; | |
1916 | if (inp_ppcb != NULL) { | |
1917 | tcpcb_to_otcpcb((struct tcpcb *)(void *)inp_ppcb, | |
1918 | &xt.xt_tp); | |
1919 | } else { | |
1920 | bzero((char *) &xt.xt_tp, sizeof(xt.xt_tp)); | |
1c79356b | 1921 | } |
0a7de745 | 1922 | if (inp->inp_socket) { |
39037602 | 1923 | sotoxsocket(inp->inp_socket, &xt.xt_socket); |
0a7de745 | 1924 | } |
39037602 | 1925 | |
5ba3f43e | 1926 | socket_unlock(inp->inp_socket, 1); |
39037602 A |
1927 | |
1928 | error = SYSCTL_OUT(req, &xt, sizeof(xt)); | |
1c79356b A |
1929 | } |
1930 | if (!error) { | |
1931 | /* | |
1932 | * Give the user an updated idea of our state. | |
1933 | * If the generation differs from what we told | |
1934 | * her before, she knows that something happened | |
1935 | * while we were processing this request, and it | |
1936 | * might be necessary to retry. | |
1937 | */ | |
3a60a9f5 | 1938 | bzero(&xig, sizeof(xig)); |
39037602 | 1939 | xig.xig_len = sizeof(xig); |
1c79356b A |
1940 | xig.xig_gen = tcbinfo.ipi_gencnt; |
1941 | xig.xig_sogen = so_gencnt; | |
1942 | xig.xig_count = tcbinfo.ipi_count; | |
39037602 | 1943 | error = SYSCTL_OUT(req, &xig, sizeof(xig)); |
1c79356b A |
1944 | } |
1945 | FREE(inp_list, M_TEMP); | |
39236c6e | 1946 | lck_rw_done(tcbinfo.ipi_lock); |
0a7de745 | 1947 | return error; |
1c79356b A |
1948 | } |
1949 | ||
fe8ab488 | 1950 | SYSCTL_PROC(_net_inet_tcp, TCPCTL_PCBLIST, pcblist, |
0a7de745 A |
1951 | CTLTYPE_STRUCT | CTLFLAG_RD | CTLFLAG_LOCKED, 0, 0, |
1952 | tcp_pcblist, "S,xtcpcb", "List of active TCP connections"); | |
1c79356b | 1953 | |
f427ee49 | 1954 | #if XNU_TARGET_OS_OSX |
b0d623f7 A |
1955 | |
1956 | static void | |
1957 | tcpcb_to_xtcpcb64(struct tcpcb *tp, struct xtcpcb64 *otp) | |
9bccf70c | 1958 | { |
39037602 A |
1959 | otp->t_segq = (uint32_t)VM_KERNEL_ADDRPERM(tp->t_segq.lh_first); |
1960 | otp->t_dupacks = tp->t_dupacks; | |
fe8ab488 A |
1961 | otp->t_timer[TCPT_REXMT_EXT] = tp->t_timer[TCPT_REXMT]; |
1962 | otp->t_timer[TCPT_PERSIST_EXT] = tp->t_timer[TCPT_PERSIST]; | |
1963 | otp->t_timer[TCPT_KEEP_EXT] = tp->t_timer[TCPT_KEEP]; | |
1964 | otp->t_timer[TCPT_2MSL_EXT] = tp->t_timer[TCPT_2MSL]; | |
39037602 A |
1965 | otp->t_state = tp->t_state; |
1966 | otp->t_flags = tp->t_flags; | |
1967 | otp->t_force = (tp->t_flagsext & TF_FORCE) ? 1 : 0; | |
1968 | otp->snd_una = tp->snd_una; | |
1969 | otp->snd_max = tp->snd_max; | |
1970 | otp->snd_nxt = tp->snd_nxt; | |
1971 | otp->snd_up = tp->snd_up; | |
1972 | otp->snd_wl1 = tp->snd_wl1; | |
1973 | otp->snd_wl2 = tp->snd_wl2; | |
1974 | otp->iss = tp->iss; | |
1975 | otp->irs = tp->irs; | |
1976 | otp->rcv_nxt = tp->rcv_nxt; | |
1977 | otp->rcv_adv = tp->rcv_adv; | |
1978 | otp->rcv_wnd = tp->rcv_wnd; | |
1979 | otp->rcv_up = tp->rcv_up; | |
1980 | otp->snd_wnd = tp->snd_wnd; | |
1981 | otp->snd_cwnd = tp->snd_cwnd; | |
1982 | otp->snd_ssthresh = tp->snd_ssthresh; | |
1983 | otp->t_maxopd = tp->t_maxopd; | |
1984 | otp->t_rcvtime = tp->t_rcvtime; | |
1985 | otp->t_starttime = tp->t_starttime; | |
1986 | otp->t_rtttime = tp->t_rtttime; | |
1987 | otp->t_rtseq = tp->t_rtseq; | |
1988 | otp->t_rxtcur = tp->t_rxtcur; | |
1989 | otp->t_maxseg = tp->t_maxseg; | |
1990 | otp->t_srtt = tp->t_srtt; | |
1991 | otp->t_rttvar = tp->t_rttvar; | |
1992 | otp->t_rxtshift = tp->t_rxtshift; | |
1993 | otp->t_rttmin = tp->t_rttmin; | |
1994 | otp->t_rttupdated = tp->t_rttupdated; | |
1995 | otp->max_sndwnd = tp->max_sndwnd; | |
1996 | otp->t_softerror = tp->t_softerror; | |
1997 | otp->t_oobflags = tp->t_oobflags; | |
1998 | otp->t_iobc = tp->t_iobc; | |
1999 | otp->snd_scale = tp->snd_scale; | |
2000 | otp->rcv_scale = tp->rcv_scale; | |
2001 | otp->request_r_scale = tp->request_r_scale; | |
2002 | otp->requested_s_scale = tp->requested_s_scale; | |
2003 | otp->ts_recent = tp->ts_recent; | |
2004 | otp->ts_recent_age = tp->ts_recent_age; | |
2005 | otp->last_ack_sent = tp->last_ack_sent; | |
2006 | otp->cc_send = 0; | |
2007 | otp->cc_recv = 0; | |
2008 | otp->snd_recover = tp->snd_recover; | |
2009 | otp->snd_cwnd_prev = tp->snd_cwnd_prev; | |
2010 | otp->snd_ssthresh_prev = tp->snd_ssthresh_prev; | |
2011 | otp->t_badrxtwin = 0; | |
9bccf70c A |
2012 | } |
2013 | ||
9bccf70c | 2014 | |
9bccf70c | 2015 | static int |
b0d623f7 | 2016 | tcp_pcblist64 SYSCTL_HANDLER_ARGS |
9bccf70c | 2017 | { |
b0d623f7 | 2018 | #pragma unused(oidp, arg1, arg2) |
39037602 A |
2019 | int error, i = 0, n; |
2020 | struct inpcb **inp_list; | |
2021 | inp_gen_t gencnt; | |
2022 | struct xinpgen xig; | |
b0d623f7 | 2023 | |
39037602 A |
2024 | /* |
2025 | * The process of preparing the TCB list is too time-consuming and | |
2026 | * resource-intensive to repeat twice on every request. | |
2027 | */ | |
2028 | lck_rw_lock_shared(tcbinfo.ipi_lock); | |
2029 | if (req->oldptr == USER_ADDR_NULL) { | |
2030 | n = tcbinfo.ipi_count; | |
2031 | req->oldidx = 2 * (sizeof(xig)) | |
0a7de745 | 2032 | + (n + n / 8) * sizeof(struct xtcpcb64); |
39037602 | 2033 | lck_rw_done(tcbinfo.ipi_lock); |
0a7de745 | 2034 | return 0; |
39037602 | 2035 | } |
b0d623f7 | 2036 | |
39037602 A |
2037 | if (req->newptr != USER_ADDR_NULL) { |
2038 | lck_rw_done(tcbinfo.ipi_lock); | |
0a7de745 | 2039 | return EPERM; |
39037602 A |
2040 | } |
2041 | ||
2042 | /* | |
2043 | * OK, now we're committed to doing something. | |
2044 | */ | |
2045 | gencnt = tcbinfo.ipi_gencnt; | |
2046 | n = tcbinfo.ipi_count; | |
2047 | ||
2048 | bzero(&xig, sizeof(xig)); | |
2049 | xig.xig_len = sizeof(xig); | |
2050 | xig.xig_count = n; | |
2051 | xig.xig_gen = gencnt; | |
2052 | xig.xig_sogen = so_gencnt; | |
2053 | error = SYSCTL_OUT(req, &xig, sizeof(xig)); | |
2054 | if (error) { | |
2055 | lck_rw_done(tcbinfo.ipi_lock); | |
0a7de745 | 2056 | return error; |
39037602 A |
2057 | } |
2058 | /* | |
2059 | * We are done if there is no pcb | |
2060 | */ | |
2061 | if (n == 0) { | |
2062 | lck_rw_done(tcbinfo.ipi_lock); | |
0a7de745 | 2063 | return 0; |
39037602 A |
2064 | } |
2065 | ||
0a7de745 | 2066 | inp_list = _MALLOC(n * sizeof(*inp_list), M_TEMP, M_WAITOK); |
39037602 A |
2067 | if (inp_list == 0) { |
2068 | lck_rw_done(tcbinfo.ipi_lock); | |
0a7de745 | 2069 | return ENOMEM; |
39037602 A |
2070 | } |
2071 | ||
2072 | n = get_tcp_inp_list(inp_list, n, gencnt); | |
2073 | ||
2074 | error = 0; | |
2075 | for (i = 0; i < n; i++) { | |
2076 | struct xtcpcb64 xt; | |
2077 | struct inpcb *inp; | |
5ba3f43e | 2078 | |
39037602 A |
2079 | inp = inp_list[i]; |
2080 | ||
0a7de745 | 2081 | if (in_pcb_checkstate(inp, WNT_ACQUIRE, 0) == WNT_STOPUSING) { |
39037602 | 2082 | continue; |
0a7de745 | 2083 | } |
5ba3f43e | 2084 | socket_lock(inp->inp_socket, 1); |
39037602 | 2085 | if (in_pcb_checkstate(inp, WNT_RELEASE, 1) == WNT_STOPUSING) { |
5ba3f43e | 2086 | socket_unlock(inp->inp_socket, 1); |
39037602 A |
2087 | continue; |
2088 | } | |
2089 | if (inp->inp_gencnt > gencnt) { | |
5ba3f43e | 2090 | socket_unlock(inp->inp_socket, 1); |
39037602 A |
2091 | continue; |
2092 | } | |
2093 | ||
2094 | bzero(&xt, sizeof(xt)); | |
2095 | xt.xt_len = sizeof(xt); | |
2096 | inpcb_to_xinpcb64(inp, &xt.xt_inpcb); | |
2097 | xt.xt_inpcb.inp_ppcb = | |
2098 | (uint64_t)VM_KERNEL_ADDRPERM(inp->inp_ppcb); | |
0a7de745 | 2099 | if (inp->inp_ppcb != NULL) { |
39037602 A |
2100 | tcpcb_to_xtcpcb64((struct tcpcb *)inp->inp_ppcb, |
2101 | &xt); | |
0a7de745 A |
2102 | } |
2103 | if (inp->inp_socket) { | |
39037602 A |
2104 | sotoxsocket64(inp->inp_socket, |
2105 | &xt.xt_inpcb.xi_socket); | |
0a7de745 | 2106 | } |
39037602 | 2107 | |
5ba3f43e | 2108 | socket_unlock(inp->inp_socket, 1); |
39037602 A |
2109 | |
2110 | error = SYSCTL_OUT(req, &xt, sizeof(xt)); | |
2111 | } | |
2112 | if (!error) { | |
0a7de745 A |
2113 | /* |
2114 | * Give the user an updated idea of our state. | |
2115 | * If the generation differs from what we told | |
2116 | * her before, she knows that something happened | |
2117 | * while we were processing this request, and it | |
2118 | * might be necessary to retry. | |
2119 | */ | |
2120 | bzero(&xig, sizeof(xig)); | |
2121 | xig.xig_len = sizeof(xig); | |
2122 | xig.xig_gen = tcbinfo.ipi_gencnt; | |
2123 | xig.xig_sogen = so_gencnt; | |
2124 | xig.xig_count = tcbinfo.ipi_count; | |
2125 | error = SYSCTL_OUT(req, &xig, sizeof(xig)); | |
39037602 A |
2126 | } |
2127 | FREE(inp_list, M_TEMP); | |
2128 | lck_rw_done(tcbinfo.ipi_lock); | |
0a7de745 | 2129 | return error; |
b0d623f7 A |
2130 | } |
2131 | ||
fe8ab488 | 2132 | SYSCTL_PROC(_net_inet_tcp, OID_AUTO, pcblist64, |
0a7de745 A |
2133 | CTLTYPE_STRUCT | CTLFLAG_RD | CTLFLAG_LOCKED, 0, 0, |
2134 | tcp_pcblist64, "S,xtcpcb64", "List of active TCP connections"); | |
b0d623f7 | 2135 | |
f427ee49 | 2136 | #endif /* XNU_TARGET_OS_OSX */ |
9bccf70c | 2137 | |
6d2010ae A |
2138 | static int |
2139 | tcp_pcblist_n SYSCTL_HANDLER_ARGS | |
2140 | { | |
2141 | #pragma unused(oidp, arg1, arg2) | |
2142 | int error = 0; | |
39037602 | 2143 | |
6d2010ae | 2144 | error = get_pcblist_n(IPPROTO_TCP, req, &tcbinfo); |
39037602 | 2145 | |
0a7de745 | 2146 | return error; |
6d2010ae A |
2147 | } |
2148 | ||
2149 | ||
fe8ab488 | 2150 | SYSCTL_PROC(_net_inet_tcp, OID_AUTO, pcblist_n, |
0a7de745 A |
2151 | CTLTYPE_STRUCT | CTLFLAG_RD | CTLFLAG_LOCKED, 0, 0, |
2152 | tcp_pcblist_n, "S,xtcpcb_n", "List of active TCP connections"); | |
d9a64523 A |
2153 | |
2154 | static int | |
2155 | tcp_progress_indicators SYSCTL_HANDLER_ARGS | |
2156 | { | |
2157 | #pragma unused(oidp, arg1, arg2) | |
2158 | ||
0a7de745 | 2159 | return ntstat_tcp_progress_indicators(req); |
d9a64523 A |
2160 | } |
2161 | ||
2162 | SYSCTL_PROC(_net_inet_tcp, OID_AUTO, progress, | |
0a7de745 A |
2163 | CTLTYPE_STRUCT | CTLFLAG_RW | CTLFLAG_LOCKED | CTLFLAG_ANYBODY, 0, 0, |
2164 | tcp_progress_indicators, "S", "Various items that indicate the current state of progress on the link"); | |
6d2010ae A |
2165 | |
2166 | ||
316670eb | 2167 | __private_extern__ void |
fe8ab488 | 2168 | tcp_get_ports_used(uint32_t ifindex, int protocol, uint32_t flags, |
39236c6e | 2169 | bitstr_t *bitfield) |
316670eb | 2170 | { |
d9a64523 A |
2171 | inpcb_get_ports_used(ifindex, protocol, flags, bitfield, |
2172 | &tcbinfo); | |
2173 | } | |
316670eb A |
2174 | |
2175 | __private_extern__ uint32_t | |
2176 | tcp_count_opportunistic(unsigned int ifindex, u_int32_t flags) | |
2177 | { | |
0a7de745 | 2178 | return inpcb_count_opportunistic(ifindex, &tcbinfo, flags); |
316670eb A |
2179 | } |
2180 | ||
39236c6e A |
2181 | __private_extern__ uint32_t |
2182 | tcp_find_anypcb_byaddr(struct ifaddr *ifa) | |
2183 | { | |
0a7de745 | 2184 | return inpcb_find_anypcb_byaddr(ifa, &tcbinfo); |
39037602 A |
2185 | } |
2186 | ||
2187 | static void | |
2188 | tcp_handle_msgsize(struct ip *ip, struct inpcb *inp) | |
2189 | { | |
2190 | struct rtentry *rt = NULL; | |
2191 | u_short ifscope = IFSCOPE_NONE; | |
2192 | int mtu; | |
2193 | struct sockaddr_in icmpsrc = { | |
cb323159 A |
2194 | .sin_len = sizeof(struct sockaddr_in), |
2195 | .sin_family = AF_INET, .sin_port = 0, .sin_addr = { .s_addr = 0 }, | |
2196 | .sin_zero = { 0, 0, 0, 0, 0, 0, 0, 0 } | |
0a7de745 | 2197 | }; |
39037602 A |
2198 | struct icmp *icp = NULL; |
2199 | ||
2200 | icp = (struct icmp *)(void *) | |
2201 | ((caddr_t)ip - offsetof(struct icmp, icmp_ip)); | |
2202 | ||
2203 | icmpsrc.sin_addr = icp->icmp_ip.ip_dst; | |
2204 | ||
2205 | /* | |
2206 | * MTU discovery: | |
2207 | * If we got a needfrag and there is a host route to the | |
2208 | * original destination, and the MTU is not locked, then | |
2209 | * set the MTU in the route to the suggested new value | |
2210 | * (if given) and then notify as usual. The ULPs will | |
2211 | * notice that the MTU has changed and adapt accordingly. | |
2212 | * If no new MTU was suggested, then we guess a new one | |
2213 | * less than the current value. If the new MTU is | |
2214 | * unreasonably small (defined by sysctl tcp_minmss), then | |
2215 | * we reset the MTU to the interface value and enable the | |
2216 | * lock bit, indicating that we are no longer doing MTU | |
2217 | * discovery. | |
2218 | */ | |
0a7de745 | 2219 | if (ROUTE_UNUSABLE(&(inp->inp_route)) == false) { |
39037602 | 2220 | rt = inp->inp_route.ro_rt; |
0a7de745 | 2221 | } |
39037602 A |
2222 | |
2223 | /* | |
2224 | * icmp6_mtudisc_update scopes the routing lookup | |
2225 | * to the incoming interface (delivered from mbuf | |
2226 | * packet header. | |
2227 | * That is mostly ok but for asymmetric networks | |
2228 | * that may be an issue. | |
2229 | * Frag needed OR Packet too big really communicates | |
2230 | * MTU for the out data path. | |
2231 | * Take the interface scope from cached route or | |
2232 | * the last outgoing interface from inp | |
2233 | */ | |
0a7de745 | 2234 | if (rt != NULL) { |
39037602 A |
2235 | ifscope = (rt->rt_ifp != NULL) ? |
2236 | rt->rt_ifp->if_index : IFSCOPE_NONE; | |
0a7de745 | 2237 | } else { |
39037602 A |
2238 | ifscope = (inp->inp_last_outifp != NULL) ? |
2239 | inp->inp_last_outifp->if_index : IFSCOPE_NONE; | |
0a7de745 | 2240 | } |
39037602 A |
2241 | |
2242 | if ((rt == NULL) || | |
2243 | !(rt->rt_flags & RTF_HOST) || | |
2244 | (rt->rt_flags & (RTF_CLONING | RTF_PRCLONING))) { | |
2245 | rt = rtalloc1_scoped((struct sockaddr *)&icmpsrc, 0, | |
2246 | RTF_CLONING | RTF_PRCLONING, ifscope); | |
2247 | } else if (rt) { | |
2248 | RT_LOCK(rt); | |
2249 | rtref(rt); | |
2250 | RT_UNLOCK(rt); | |
2251 | } | |
2252 | ||
2253 | if (rt != NULL) { | |
2254 | RT_LOCK(rt); | |
2255 | if ((rt->rt_flags & RTF_HOST) && | |
2256 | !(rt->rt_rmx.rmx_locks & RTV_MTU)) { | |
2257 | mtu = ntohs(icp->icmp_nextmtu); | |
2258 | /* | |
2259 | * XXX Stock BSD has changed the following | |
2260 | * to compare with icp->icmp_ip.ip_len | |
2261 | * to converge faster when sent packet | |
2262 | * < route's MTU. We may want to adopt | |
2263 | * that change. | |
2264 | */ | |
0a7de745 | 2265 | if (mtu == 0) { |
39037602 A |
2266 | mtu = ip_next_mtu(rt->rt_rmx. |
2267 | rmx_mtu, 1); | |
0a7de745 | 2268 | } |
39037602 A |
2269 | #if DEBUG_MTUDISC |
2270 | printf("MTU for %s reduced to %d\n", | |
2271 | inet_ntop(AF_INET, | |
2272 | &icmpsrc.sin_addr, ipv4str, | |
0a7de745 | 2273 | sizeof(ipv4str)), mtu); |
39037602 A |
2274 | #endif |
2275 | if (mtu < max(296, (tcp_minmss + | |
0a7de745 | 2276 | sizeof(struct tcpiphdr)))) { |
39037602 A |
2277 | rt->rt_rmx.rmx_locks |= RTV_MTU; |
2278 | } else if (rt->rt_rmx.rmx_mtu > mtu) { | |
2279 | rt->rt_rmx.rmx_mtu = mtu; | |
2280 | } | |
2281 | } | |
2282 | RT_UNLOCK(rt); | |
2283 | rtfree(rt); | |
2284 | } | |
39236c6e A |
2285 | } |
2286 | ||
1c79356b | 2287 | void |
5ba3f43e | 2288 | tcp_ctlinput(int cmd, struct sockaddr *sa, void *vip, __unused struct ifnet *ifp) |
1c79356b | 2289 | { |
b0d623f7 | 2290 | tcp_seq icmp_tcp_seq; |
9bccf70c | 2291 | struct ip *ip = vip; |
9bccf70c A |
2292 | struct in_addr faddr; |
2293 | struct inpcb *inp; | |
2294 | struct tcpcb *tp; | |
5ba3f43e A |
2295 | struct tcphdr *th; |
2296 | struct icmp *icp; | |
316670eb | 2297 | void (*notify)(struct inpcb *, int) = tcp_notify; |
9bccf70c | 2298 | |
316670eb | 2299 | faddr = ((struct sockaddr_in *)(void *)sa)->sin_addr; |
0a7de745 | 2300 | if (sa->sa_family != AF_INET || faddr.s_addr == INADDR_ANY) { |
9bccf70c | 2301 | return; |
0a7de745 | 2302 | } |
1c79356b | 2303 | |
0a7de745 | 2304 | if ((unsigned)cmd >= PRC_NCMDS) { |
3e170ce0 | 2305 | return; |
0a7de745 | 2306 | } |
3e170ce0 | 2307 | |
5ba3f43e | 2308 | /* Source quench is deprecated */ |
0a7de745 A |
2309 | if (cmd == PRC_QUENCH) { |
2310 | return; | |
2311 | } | |
5ba3f43e | 2312 | |
0a7de745 | 2313 | if (cmd == PRC_MSGSIZE) { |
b0d623f7 | 2314 | notify = tcp_mtudisc; |
0a7de745 A |
2315 | } else if (icmp_may_rst && (cmd == PRC_UNREACH_ADMIN_PROHIB || |
2316 | cmd == PRC_UNREACH_PORT || cmd == PRC_UNREACH_PROTOCOL || | |
2317 | cmd == PRC_TIMXCEED_INTRANS) && ip) { | |
9bccf70c | 2318 | notify = tcp_drop_syn_sent; |
0a7de745 | 2319 | } |
5ba3f43e A |
2320 | /* |
2321 | * Hostdead is ugly because it goes linearly through all PCBs. | |
2322 | * XXX: We never get this from ICMP, otherwise it makes an | |
2323 | * excellent DoS attack on machines with many connections. | |
2324 | */ | |
0a7de745 | 2325 | else if (cmd == PRC_HOSTDEAD) { |
5ba3f43e | 2326 | ip = NULL; |
0a7de745 | 2327 | } else if (inetctlerrmap[cmd] == 0 && !PRC_IS_REDIRECT(cmd)) { |
b0d623f7 | 2328 | return; |
0a7de745 | 2329 | } |
5ba3f43e A |
2330 | |
2331 | ||
2332 | if (ip == NULL) { | |
2333 | in_pcbnotifyall(&tcbinfo, faddr, inetctlerrmap[cmd], notify); | |
1c79356b | 2334 | return; |
5ba3f43e | 2335 | } |
316670eb | 2336 | |
5ba3f43e A |
2337 | icp = (struct icmp *)(void *) |
2338 | ((caddr_t)ip - offsetof(struct icmp, icmp_ip)); | |
2339 | th = (struct tcphdr *)(void *)((caddr_t)ip + (IP_VHL_HL(ip->ip_vhl) << 2)); | |
2340 | icmp_tcp_seq = ntohl(th->th_seq); | |
b0d623f7 | 2341 | |
5ba3f43e A |
2342 | inp = in_pcblookup_hash(&tcbinfo, faddr, th->th_dport, |
2343 | ip->ip_src, th->th_sport, 0, NULL); | |
2344 | ||
2345 | if (inp == NULL || | |
2346 | inp->inp_socket == NULL) { | |
2347 | return; | |
2348 | } | |
2349 | ||
2350 | socket_lock(inp->inp_socket, 1); | |
2351 | if (in_pcb_checkstate(inp, WNT_RELEASE, 1) == | |
2352 | WNT_STOPUSING) { | |
2353 | socket_unlock(inp->inp_socket, 1); | |
2354 | return; | |
2355 | } | |
2356 | ||
2357 | if (PRC_IS_REDIRECT(cmd)) { | |
2358 | /* signal EHOSTDOWN, as it flushes the cached route */ | |
2359 | (*notify)(inp, EHOSTDOWN); | |
2360 | } else { | |
2361 | tp = intotcpcb(inp); | |
2362 | if (SEQ_GEQ(icmp_tcp_seq, tp->snd_una) && | |
2363 | SEQ_LT(icmp_tcp_seq, tp->snd_max)) { | |
0a7de745 | 2364 | if (cmd == PRC_MSGSIZE) { |
5ba3f43e | 2365 | tcp_handle_msgsize(ip, inp); |
0a7de745 | 2366 | } |
5ba3f43e A |
2367 | |
2368 | (*notify)(inp, inetctlerrmap[cmd]); | |
9bccf70c | 2369 | } |
5ba3f43e A |
2370 | } |
2371 | socket_unlock(inp->inp_socket, 1); | |
1c79356b A |
2372 | } |
2373 | ||
1c79356b | 2374 | void |
5ba3f43e | 2375 | tcp6_ctlinput(int cmd, struct sockaddr *sa, void *d, __unused struct ifnet *ifp) |
1c79356b | 2376 | { |
5ba3f43e A |
2377 | tcp_seq icmp_tcp_seq; |
2378 | struct in6_addr *dst; | |
91447636 | 2379 | void (*notify)(struct inpcb *, int) = tcp_notify; |
1c79356b A |
2380 | struct ip6_hdr *ip6; |
2381 | struct mbuf *m; | |
5ba3f43e A |
2382 | struct inpcb *inp; |
2383 | struct tcpcb *tp; | |
2384 | struct icmp6_hdr *icmp6; | |
9bccf70c A |
2385 | struct ip6ctlparam *ip6cp = NULL; |
2386 | const struct sockaddr_in6 *sa6_src = NULL; | |
5ba3f43e A |
2387 | unsigned int mtu; |
2388 | unsigned int off; | |
1c79356b | 2389 | |
0a7de745 A |
2390 | struct tcp_ports { |
2391 | uint16_t th_sport; | |
2392 | uint16_t th_dport; | |
2393 | } t_ports; | |
2394 | ||
1c79356b | 2395 | if (sa->sa_family != AF_INET6 || |
0a7de745 | 2396 | sa->sa_len != sizeof(struct sockaddr_in6)) { |
1c79356b | 2397 | return; |
0a7de745 | 2398 | } |
1c79356b | 2399 | |
5ba3f43e | 2400 | /* Source quench is deprecated */ |
0a7de745 | 2401 | if (cmd == PRC_QUENCH) { |
3e170ce0 | 2402 | return; |
0a7de745 | 2403 | } |
3e170ce0 | 2404 | |
0a7de745 | 2405 | if ((unsigned)cmd >= PRC_NCMDS) { |
b0d623f7 | 2406 | return; |
0a7de745 | 2407 | } |
1c79356b A |
2408 | |
2409 | /* if the parameter is from icmp6, decode it. */ | |
2410 | if (d != NULL) { | |
9bccf70c | 2411 | ip6cp = (struct ip6ctlparam *)d; |
5ba3f43e | 2412 | icmp6 = ip6cp->ip6c_icmp6; |
1c79356b A |
2413 | m = ip6cp->ip6c_m; |
2414 | ip6 = ip6cp->ip6c_ip6; | |
2415 | off = ip6cp->ip6c_off; | |
9bccf70c | 2416 | sa6_src = ip6cp->ip6c_src; |
5ba3f43e | 2417 | dst = ip6cp->ip6c_finaldst; |
1c79356b A |
2418 | } else { |
2419 | m = NULL; | |
2420 | ip6 = NULL; | |
0a7de745 | 2421 | off = 0; /* fool gcc */ |
9bccf70c | 2422 | sa6_src = &sa6_any; |
5ba3f43e | 2423 | dst = NULL; |
1c79356b A |
2424 | } |
2425 | ||
0a7de745 | 2426 | if (cmd == PRC_MSGSIZE) { |
5ba3f43e | 2427 | notify = tcp_mtudisc; |
0a7de745 | 2428 | } else if (icmp_may_rst && (cmd == PRC_UNREACH_ADMIN_PROHIB || |
5ba3f43e | 2429 | cmd == PRC_UNREACH_PORT || cmd == PRC_TIMXCEED_INTRANS) && |
0a7de745 | 2430 | ip6 != NULL) { |
5ba3f43e | 2431 | notify = tcp_drop_syn_sent; |
0a7de745 | 2432 | } |
5ba3f43e A |
2433 | /* |
2434 | * Hostdead is ugly because it goes linearly through all PCBs. | |
2435 | * XXX: We never get this from ICMP, otherwise it makes an | |
2436 | * excellent DoS attack on machines with many connections. | |
2437 | */ | |
0a7de745 | 2438 | else if (cmd == PRC_HOSTDEAD) { |
5ba3f43e | 2439 | ip6 = NULL; |
0a7de745 | 2440 | } else if (inet6ctlerrmap[cmd] == 0 && !PRC_IS_REDIRECT(cmd)) { |
5ba3f43e | 2441 | return; |
0a7de745 | 2442 | } |
5ba3f43e A |
2443 | |
2444 | ||
2445 | if (ip6 == NULL) { | |
2446 | in6_pcbnotify(&tcbinfo, sa, 0, (struct sockaddr *)(size_t)sa6_src, | |
2447 | 0, cmd, NULL, notify); | |
2448 | return; | |
2449 | } | |
2450 | ||
0a7de745 | 2451 | /* Check if we can safely get the ports from the tcp hdr */ |
5ba3f43e | 2452 | if (m == NULL || |
0a7de745 A |
2453 | (m->m_pkthdr.len < |
2454 | (int32_t) (off + sizeof(struct tcp_ports)))) { | |
5ba3f43e | 2455 | return; |
0a7de745 A |
2456 | } |
2457 | bzero(&t_ports, sizeof(struct tcp_ports)); | |
2458 | m_copydata(m, off, sizeof(struct tcp_ports), (caddr_t)&t_ports); | |
5ba3f43e | 2459 | |
0a7de745 A |
2460 | off += sizeof(struct tcp_ports); |
2461 | if (m->m_pkthdr.len < (int32_t) (off + sizeof(tcp_seq))) { | |
2462 | return; | |
2463 | } | |
2464 | m_copydata(m, off, sizeof(tcp_seq), (caddr_t)&icmp_tcp_seq); | |
2465 | icmp_tcp_seq = ntohl(icmp_tcp_seq); | |
5ba3f43e A |
2466 | |
2467 | if (cmd == PRC_MSGSIZE) { | |
2468 | mtu = ntohl(icmp6->icmp6_mtu); | |
1c79356b | 2469 | /* |
5ba3f43e A |
2470 | * If no alternative MTU was proposed, or the proposed |
2471 | * MTU was too small, set to the min. | |
1c79356b | 2472 | */ |
0a7de745 | 2473 | if (mtu < IPV6_MMTU) { |
5ba3f43e | 2474 | mtu = IPV6_MMTU - 8; |
0a7de745 | 2475 | } |
5ba3f43e | 2476 | } |
1c79356b | 2477 | |
0a7de745 A |
2478 | inp = in6_pcblookup_hash(&tcbinfo, &ip6->ip6_dst, t_ports.th_dport, |
2479 | &ip6->ip6_src, t_ports.th_sport, 0, NULL); | |
1c79356b | 2480 | |
5ba3f43e A |
2481 | if (inp == NULL || |
2482 | inp->inp_socket == NULL) { | |
2483 | return; | |
2484 | } | |
1c79356b | 2485 | |
5ba3f43e A |
2486 | socket_lock(inp->inp_socket, 1); |
2487 | if (in_pcb_checkstate(inp, WNT_RELEASE, 1) == | |
2488 | WNT_STOPUSING) { | |
2489 | socket_unlock(inp->inp_socket, 1); | |
2490 | return; | |
2491 | } | |
2492 | ||
2493 | if (PRC_IS_REDIRECT(cmd)) { | |
2494 | /* signal EHOSTDOWN, as it flushes the cached route */ | |
2495 | (*notify)(inp, EHOSTDOWN); | |
b0d623f7 | 2496 | } else { |
5ba3f43e A |
2497 | tp = intotcpcb(inp); |
2498 | if (SEQ_GEQ(icmp_tcp_seq, tp->snd_una) && | |
2499 | SEQ_LT(icmp_tcp_seq, tp->snd_max)) { | |
2500 | if (cmd == PRC_MSGSIZE) { | |
2501 | /* | |
2502 | * Only process the offered MTU if it | |
2503 | * is smaller than the current one. | |
2504 | */ | |
2505 | if (mtu < tp->t_maxseg + | |
0a7de745 | 2506 | (sizeof(struct tcphdr) + sizeof(struct ip6_hdr))) { |
5ba3f43e | 2507 | (*notify)(inp, inetctlerrmap[cmd]); |
0a7de745 A |
2508 | } |
2509 | } else { | |
5ba3f43e | 2510 | (*notify)(inp, inetctlerrmap[cmd]); |
0a7de745 | 2511 | } |
5ba3f43e | 2512 | } |
b0d623f7 | 2513 | } |
5ba3f43e | 2514 | socket_unlock(inp->inp_socket, 1); |
1c79356b | 2515 | } |
1c79356b | 2516 | |
0b4e3aa0 | 2517 | |
9bccf70c A |
2518 | /* |
2519 | * Following is where TCP initial sequence number generation occurs. | |
2520 | * | |
2521 | * There are two places where we must use initial sequence numbers: | |
2522 | * 1. In SYN-ACK packets. | |
2523 | * 2. In SYN packets. | |
2524 | * | |
39037602 | 2525 | * The ISNs in SYN-ACK packets have no monotonicity requirement, |
9bccf70c A |
2526 | * and should be as unpredictable as possible to avoid the possibility |
2527 | * of spoofing and/or connection hijacking. To satisfy this | |
2528 | * requirement, SYN-ACK ISNs are generated via the arc4random() | |
2529 | * function. If exact RFC 1948 compliance is requested via sysctl, | |
2530 | * these ISNs will be generated just like those in SYN packets. | |
2531 | * | |
2532 | * The ISNs in SYN packets must be monotonic; TIME_WAIT recycling | |
2533 | * depends on this property. In addition, these ISNs should be | |
2534 | * unguessable so as to prevent connection hijacking. To satisfy | |
2535 | * the requirements of this situation, the algorithm outlined in | |
2536 | * RFC 1948 is used to generate sequence numbers. | |
2537 | * | |
2538 | * For more information on the theory of operation, please see | |
2539 | * RFC 1948. | |
2540 | * | |
2541 | * Implementation details: | |
2542 | * | |
2543 | * Time is based off the system timer, and is corrected so that it | |
2544 | * increases by one megabyte per second. This allows for proper | |
2545 | * recycling on high speed LANs while still leaving over an hour | |
2546 | * before rollover. | |
2547 | * | |
2548 | * Two sysctls control the generation of ISNs: | |
2549 | * | |
2550 | * net.inet.tcp.isn_reseed_interval controls the number of seconds | |
2551 | * between seeding of isn_secret. This is normally set to zero, | |
2552 | * as reseeding should not be necessary. | |
2553 | * | |
2554 | * net.inet.tcp.strict_rfc1948 controls whether RFC 1948 is followed | |
2555 | * strictly. When strict compliance is requested, reseeding is | |
2556 | * disabled and SYN-ACKs will be generated in the same manner as | |
2557 | * SYNs. Strict mode is disabled by default. | |
2558 | * | |
2559 | */ | |
0b4e3aa0 | 2560 | |
0a7de745 | 2561 | #define ISN_BYTES_PER_SECOND 1048576 |
0b4e3aa0 | 2562 | |
0b4e3aa0 | 2563 | tcp_seq |
39037602 | 2564 | tcp_new_isn(struct tcpcb *tp) |
0b4e3aa0 | 2565 | { |
9bccf70c A |
2566 | u_int32_t md5_buffer[4]; |
2567 | tcp_seq new_isn; | |
8ad349bb | 2568 | struct timeval timenow; |
2d21ac55 | 2569 | u_char isn_secret[32]; |
f427ee49 | 2570 | long isn_last_reseed = 0; |
2d21ac55 | 2571 | MD5_CTX isn_ctx; |
9bccf70c A |
2572 | |
2573 | /* Use arc4random for SYN-ACKs when not in exact RFC1948 mode. */ | |
39037602 A |
2574 | if (((tp->t_state == TCPS_LISTEN) || (tp->t_state == TCPS_TIME_WAIT)) && |
2575 | tcp_strict_rfc1948 == 0) | |
9bccf70c | 2576 | #ifdef __APPLE__ |
0a7de745 | 2577 | { return RandomULong(); } |
9bccf70c | 2578 | #else |
0a7de745 | 2579 | { return arc4random(); } |
9bccf70c | 2580 | #endif |
8ad349bb | 2581 | getmicrotime(&timenow); |
0b4e3aa0 | 2582 | |
9bccf70c A |
2583 | /* Seed if this is the first use, reseed if requested. */ |
2584 | if ((isn_last_reseed == 0) || | |
2585 | ((tcp_strict_rfc1948 == 0) && (tcp_isn_reseed_interval > 0) && | |
0a7de745 A |
2586 | (((u_int)isn_last_reseed + (u_int)tcp_isn_reseed_interval * hz) |
2587 | < (u_int)timenow.tv_sec))) { | |
9bccf70c | 2588 | #ifdef __APPLE__ |
5ba3f43e | 2589 | read_frandom(&isn_secret, sizeof(isn_secret)); |
9bccf70c A |
2590 | #else |
2591 | read_random_unlimited(&isn_secret, sizeof(isn_secret)); | |
2592 | #endif | |
8ad349bb | 2593 | isn_last_reseed = timenow.tv_sec; |
9bccf70c | 2594 | } |
39037602 | 2595 | |
9bccf70c A |
2596 | /* Compute the md5 hash and return the ISN. */ |
2597 | MD5Init(&isn_ctx); | |
39037602 A |
2598 | MD5Update(&isn_ctx, (u_char *) &tp->t_inpcb->inp_fport, |
2599 | sizeof(u_short)); | |
2600 | MD5Update(&isn_ctx, (u_char *) &tp->t_inpcb->inp_lport, | |
2601 | sizeof(u_short)); | |
9bccf70c A |
2602 | if ((tp->t_inpcb->inp_vflag & INP_IPV6) != 0) { |
2603 | MD5Update(&isn_ctx, (u_char *) &tp->t_inpcb->in6p_faddr, | |
39037602 | 2604 | sizeof(struct in6_addr)); |
9bccf70c | 2605 | MD5Update(&isn_ctx, (u_char *) &tp->t_inpcb->in6p_laddr, |
39037602 | 2606 | sizeof(struct in6_addr)); |
f427ee49 | 2607 | } else { |
9bccf70c | 2608 | MD5Update(&isn_ctx, (u_char *) &tp->t_inpcb->inp_faddr, |
39037602 | 2609 | sizeof(struct in_addr)); |
9bccf70c | 2610 | MD5Update(&isn_ctx, (u_char *) &tp->t_inpcb->inp_laddr, |
39037602 | 2611 | sizeof(struct in_addr)); |
9bccf70c A |
2612 | } |
2613 | MD5Update(&isn_ctx, (u_char *) &isn_secret, sizeof(isn_secret)); | |
2614 | MD5Final((u_char *) &md5_buffer, &isn_ctx); | |
2615 | new_isn = (tcp_seq) md5_buffer[0]; | |
8ad349bb | 2616 | new_isn += timenow.tv_sec * (ISN_BYTES_PER_SECOND / hz); |
0a7de745 | 2617 | return new_isn; |
0b4e3aa0 A |
2618 | } |
2619 | ||
1c79356b | 2620 | |
9bccf70c A |
2621 | /* |
2622 | * When a specific ICMP unreachable message is received and the | |
2623 | * connection state is SYN-SENT, drop the connection. This behavior | |
2624 | * is controlled by the icmp_may_rst sysctl. | |
2625 | */ | |
2626 | void | |
39037602 | 2627 | tcp_drop_syn_sent(struct inpcb *inp, int errno) |
9bccf70c A |
2628 | { |
2629 | struct tcpcb *tp = intotcpcb(inp); | |
2630 | ||
0a7de745 | 2631 | if (tp && tp->t_state == TCPS_SYN_SENT) { |
9bccf70c | 2632 | tcp_drop(tp, errno); |
0a7de745 | 2633 | } |
9bccf70c A |
2634 | } |
2635 | ||
1c79356b A |
2636 | /* |
2637 | * When `need fragmentation' ICMP is received, update our idea of the MSS | |
2638 | * based on the new value in the route. Also nudge TCP to send something, | |
2639 | * since we know the packet we just sent was dropped. | |
2640 | * This duplicates some code in the tcp_mss() function in tcp_input.c. | |
2641 | */ | |
2642 | void | |
f427ee49 | 2643 | tcp_mtudisc(struct inpcb *inp, __unused int errno) |
1c79356b A |
2644 | { |
2645 | struct tcpcb *tp = intotcpcb(inp); | |
2646 | struct rtentry *rt; | |
1c79356b | 2647 | struct socket *so = inp->inp_socket; |
1c79356b | 2648 | int mss; |
3e170ce0 | 2649 | u_int32_t mtu; |
0a7de745 | 2650 | u_int32_t protoHdrOverhead = sizeof(struct tcpiphdr); |
9bccf70c | 2651 | int isipv6 = (tp->t_inpcb->inp_vflag & INP_IPV6) != 0; |
39037602 | 2652 | |
cb323159 A |
2653 | /* |
2654 | * Nothing left to send after the socket is defunct or TCP is in the closed state | |
2655 | */ | |
2656 | if ((so->so_state & SS_DEFUNCT) || (tp != NULL && tp->t_state == TCPS_CLOSED)) { | |
2657 | return; | |
2658 | } | |
2659 | ||
0a7de745 | 2660 | if (isipv6) { |
39037602 A |
2661 | protoHdrOverhead = sizeof(struct ip6_hdr) + |
2662 | sizeof(struct tcphdr); | |
0a7de745 | 2663 | } |
1c79356b | 2664 | |
cb323159 | 2665 | if (tp != NULL) { |
0a7de745 | 2666 | if (isipv6) { |
6d2010ae | 2667 | rt = tcp_rtlookup6(inp, IFSCOPE_NONE); |
f427ee49 A |
2668 | } else { |
2669 | rt = tcp_rtlookup(inp, IFSCOPE_NONE); | |
2670 | } | |
1c79356b A |
2671 | if (!rt || !rt->rt_rmx.rmx_mtu) { |
2672 | tp->t_maxopd = tp->t_maxseg = | |
0a7de745 | 2673 | isipv6 ? tcp_v6mssdflt : |
0a7de745 | 2674 | tcp_mssdflt; |
b0d623f7 A |
2675 | |
2676 | /* Route locked during lookup above */ | |
0a7de745 | 2677 | if (rt != NULL) { |
b0d623f7 | 2678 | RT_UNLOCK(rt); |
0a7de745 | 2679 | } |
1c79356b A |
2680 | return; |
2681 | } | |
3e170ce0 A |
2682 | mtu = rt->rt_rmx.rmx_mtu; |
2683 | ||
2684 | /* Route locked during lookup above */ | |
2685 | RT_UNLOCK(rt); | |
2686 | ||
2687 | #if NECP | |
2688 | // Adjust MTU if necessary. | |
2689 | mtu = necp_socket_get_effective_mtu(inp, mtu); | |
2690 | #endif /* NECP */ | |
39037602 | 2691 | mss = mtu - protoHdrOverhead; |
1c79356b | 2692 | |
f427ee49 A |
2693 | if (tp->t_maxopd) { |
2694 | mss = min(mss, tp->t_maxopd); | |
0a7de745 | 2695 | } |
1c79356b A |
2696 | /* |
2697 | * XXX - The above conditional probably violates the TCP | |
2698 | * spec. The problem is that, since we don't know the | |
2699 | * other end's MSS, we are supposed to use a conservative | |
2700 | * default. But, if we do that, then MTU discovery will | |
2701 | * never actually take place, because the conservative | |
2702 | * default is much less than the MTUs typically seen | |
2703 | * on the Internet today. For the moment, we'll sweep | |
2704 | * this under the carpet. | |
2705 | * | |
2706 | * The conservative default might not actually be a problem | |
2707 | * if the only case this occurs is when sending an initial | |
2708 | * SYN with options and data to a host we've never talked | |
2709 | * to before. Then, they will reply with an MSS value which | |
2710 | * will get recorded and the new parameters should get | |
2711 | * recomputed. For Further Study. | |
2712 | */ | |
0a7de745 | 2713 | if (tp->t_maxopd <= mss) { |
1c79356b | 2714 | return; |
0a7de745 | 2715 | } |
1c79356b A |
2716 | tp->t_maxopd = mss; |
2717 | ||
0a7de745 A |
2718 | if ((tp->t_flags & (TF_REQ_TSTMP | TF_NOOPT)) == TF_REQ_TSTMP && |
2719 | (tp->t_flags & TF_RCVD_TSTMP) == TF_RCVD_TSTMP) { | |
1c79356b | 2720 | mss -= TCPOLEN_TSTAMP_APPA; |
0a7de745 | 2721 | } |
55e303ae | 2722 | |
39236c6e A |
2723 | #if MPTCP |
2724 | mss -= mptcp_adj_mss(tp, TRUE); | |
2725 | #endif | |
0a7de745 | 2726 | if (so->so_snd.sb_hiwat < mss) { |
1c79356b | 2727 | mss = so->so_snd.sb_hiwat; |
0a7de745 | 2728 | } |
1c79356b A |
2729 | |
2730 | tp->t_maxseg = mss; | |
2731 | ||
a39ff7e2 A |
2732 | ASSERT(tp->t_maxseg); |
2733 | ||
6d2010ae | 2734 | /* |
39037602 A |
2735 | * Reset the slow-start flight size as it may depends on the |
2736 | * new MSS | |
6d2010ae | 2737 | */ |
0a7de745 | 2738 | if (CC_ALGO(tp)->cwnd_init != NULL) { |
6d2010ae | 2739 | CC_ALGO(tp)->cwnd_init(tp); |
0a7de745 | 2740 | } |
1c79356b | 2741 | tcpstat.tcps_mturesent++; |
9bccf70c | 2742 | tp->t_rtttime = 0; |
1c79356b A |
2743 | tp->snd_nxt = tp->snd_una; |
2744 | tcp_output(tp); | |
2745 | } | |
2746 | } | |
2747 | ||
2748 | /* | |
2749 | * Look-up the routing entry to the peer of this inpcb. If no route | |
b0d623f7 | 2750 | * is found and it cannot be allocated the return NULL. This routine |
1c79356b | 2751 | * is called by TCP routines that access the rmx structure and by tcp_mss |
b0d623f7 A |
2752 | * to get the interface MTU. If a route is found, this routine will |
2753 | * hold the rtentry lock; the caller is responsible for unlocking. | |
1c79356b A |
2754 | */ |
2755 | struct rtentry * | |
39037602 | 2756 | tcp_rtlookup(struct inpcb *inp, unsigned int input_ifscope) |
1c79356b A |
2757 | { |
2758 | struct route *ro; | |
2759 | struct rtentry *rt; | |
2d21ac55 | 2760 | struct tcpcb *tp; |
1c79356b | 2761 | |
5ba3f43e | 2762 | LCK_MTX_ASSERT(rnh_lock, LCK_MTX_ASSERT_NOTOWNED); |
2d21ac55 | 2763 | |
b0d623f7 | 2764 | ro = &inp->inp_route; |
0a7de745 | 2765 | if ((rt = ro->ro_rt) != NULL) { |
b0d623f7 | 2766 | RT_LOCK(rt); |
0a7de745 | 2767 | } |
2d21ac55 | 2768 | |
39236c6e A |
2769 | if (ROUTE_UNUSABLE(ro)) { |
2770 | if (rt != NULL) { | |
2771 | RT_UNLOCK(rt); | |
2772 | rt = NULL; | |
2773 | } | |
2774 | ROUTE_RELEASE(ro); | |
1c79356b A |
2775 | /* No route yet, so try to acquire one */ |
2776 | if (inp->inp_faddr.s_addr != INADDR_ANY) { | |
c910b4d9 A |
2777 | unsigned int ifscope; |
2778 | ||
1c79356b | 2779 | ro->ro_dst.sa_family = AF_INET; |
9bccf70c | 2780 | ro->ro_dst.sa_len = sizeof(struct sockaddr_in); |
316670eb | 2781 | ((struct sockaddr_in *)(void *)&ro->ro_dst)->sin_addr = |
0a7de745 | 2782 | inp->inp_faddr; |
c910b4d9 A |
2783 | |
2784 | /* | |
2785 | * If the socket was bound to an interface, then | |
2786 | * the bound-to-interface takes precedence over | |
2787 | * the inbound interface passed in by the caller | |
2788 | * (if we get here as part of the output path then | |
2789 | * input_ifscope is IFSCOPE_NONE). | |
2790 | */ | |
2791 | ifscope = (inp->inp_flags & INP_BOUND_IF) ? | |
316670eb | 2792 | inp->inp_boundifp->if_index : input_ifscope; |
c910b4d9 | 2793 | |
6d2010ae | 2794 | rtalloc_scoped(ro, ifscope); |
0a7de745 | 2795 | if ((rt = ro->ro_rt) != NULL) { |
b0d623f7 | 2796 | RT_LOCK(rt); |
0a7de745 | 2797 | } |
1c79356b A |
2798 | } |
2799 | } | |
0a7de745 | 2800 | if (rt != NULL) { |
39236c6e | 2801 | RT_LOCK_ASSERT_HELD(rt); |
0a7de745 | 2802 | } |
2d21ac55 A |
2803 | |
2804 | /* | |
2805 | * Update MTU discovery determination. Don't do it if: | |
2806 | * 1) it is disabled via the sysctl | |
2807 | * 2) the route isn't up | |
2808 | * 3) the MTU is locked (if it is, then discovery has been | |
2809 | * disabled) | |
2810 | */ | |
2811 | ||
39037602 | 2812 | tp = intotcpcb(inp); |
2d21ac55 | 2813 | |
39037602 | 2814 | if (!path_mtu_discovery || ((rt != NULL) && |
0a7de745 | 2815 | (!(rt->rt_flags & RTF_UP) || (rt->rt_rmx.rmx_locks & RTV_MTU)))) { |
2d21ac55 | 2816 | tp->t_flags &= ~TF_PMTUD; |
0a7de745 | 2817 | } else { |
2d21ac55 | 2818 | tp->t_flags |= TF_PMTUD; |
0a7de745 | 2819 | } |
2d21ac55 | 2820 | |
b0d623f7 A |
2821 | if (rt != NULL && rt->rt_ifp != NULL) { |
2822 | somultipages(inp->inp_socket, | |
2823 | (rt->rt_ifp->if_hwassist & IFNET_MULTIPAGES)); | |
2824 | tcp_set_tso(tp, rt->rt_ifp); | |
fe8ab488 A |
2825 | soif2kcl(inp->inp_socket, |
2826 | (rt->rt_ifp->if_eflags & IFEF_2KCL)); | |
4bd07ac2 | 2827 | tcp_set_ecn(tp, rt->rt_ifp); |
5ba3f43e | 2828 | if (inp->inp_last_outifp == NULL) { |
39037602 | 2829 | inp->inp_last_outifp = rt->rt_ifp; |
5ba3f43e | 2830 | } |
b0d623f7 A |
2831 | } |
2832 | ||
39236c6e | 2833 | /* Note if the peer is local */ |
fe8ab488 | 2834 | if (rt != NULL && !(rt->rt_ifp->if_flags & IFF_POINTOPOINT) && |
0a7de745 A |
2835 | (rt->rt_gateway->sa_family == AF_LINK || |
2836 | rt->rt_ifp->if_flags & IFF_LOOPBACK || | |
2837 | in_localaddr(inp->inp_faddr))) { | |
39236c6e A |
2838 | tp->t_flags |= TF_LOCAL; |
2839 | } | |
39037602 | 2840 | |
b0d623f7 A |
2841 | /* |
2842 | * Caller needs to call RT_UNLOCK(rt). | |
2843 | */ | |
0a7de745 | 2844 | return rt; |
1c79356b A |
2845 | } |
2846 | ||
1c79356b | 2847 | struct rtentry * |
39037602 | 2848 | tcp_rtlookup6(struct inpcb *inp, unsigned int input_ifscope) |
1c79356b A |
2849 | { |
2850 | struct route_in6 *ro6; | |
2851 | struct rtentry *rt; | |
2d21ac55 A |
2852 | struct tcpcb *tp; |
2853 | ||
5ba3f43e | 2854 | LCK_MTX_ASSERT(rnh_lock, LCK_MTX_ASSERT_NOTOWNED); |
1c79356b A |
2855 | |
2856 | ro6 = &inp->in6p_route; | |
0a7de745 | 2857 | if ((rt = ro6->ro_rt) != NULL) { |
b0d623f7 | 2858 | RT_LOCK(rt); |
0a7de745 | 2859 | } |
b0d623f7 | 2860 | |
39236c6e A |
2861 | if (ROUTE_UNUSABLE(ro6)) { |
2862 | if (rt != NULL) { | |
2863 | RT_UNLOCK(rt); | |
2864 | rt = NULL; | |
2865 | } | |
2866 | ROUTE_RELEASE(ro6); | |
1c79356b A |
2867 | /* No route yet, so try to acquire one */ |
2868 | if (!IN6_IS_ADDR_UNSPECIFIED(&inp->in6p_faddr)) { | |
9bccf70c | 2869 | struct sockaddr_in6 *dst6; |
6d2010ae | 2870 | unsigned int ifscope; |
9bccf70c A |
2871 | |
2872 | dst6 = (struct sockaddr_in6 *)&ro6->ro_dst; | |
2873 | dst6->sin6_family = AF_INET6; | |
2874 | dst6->sin6_len = sizeof(*dst6); | |
2875 | dst6->sin6_addr = inp->in6p_faddr; | |
6d2010ae A |
2876 | |
2877 | /* | |
2878 | * If the socket was bound to an interface, then | |
2879 | * the bound-to-interface takes precedence over | |
2880 | * the inbound interface passed in by the caller | |
2881 | * (if we get here as part of the output path then | |
2882 | * input_ifscope is IFSCOPE_NONE). | |
2883 | */ | |
2884 | ifscope = (inp->inp_flags & INP_BOUND_IF) ? | |
316670eb | 2885 | inp->inp_boundifp->if_index : input_ifscope; |
6d2010ae | 2886 | |
6d2010ae | 2887 | rtalloc_scoped((struct route *)ro6, ifscope); |
0a7de745 | 2888 | if ((rt = ro6->ro_rt) != NULL) { |
b0d623f7 | 2889 | RT_LOCK(rt); |
0a7de745 | 2890 | } |
1c79356b A |
2891 | } |
2892 | } | |
0a7de745 | 2893 | if (rt != NULL) { |
39236c6e | 2894 | RT_LOCK_ASSERT_HELD(rt); |
0a7de745 | 2895 | } |
39236c6e | 2896 | |
2d21ac55 A |
2897 | /* |
2898 | * Update path MTU Discovery determination | |
2899 | * while looking up the route: | |
2900 | * 1) we have a valid route to the destination | |
2901 | * 2) the MTU is not locked (if it is, then discovery has been | |
2902 | * disabled) | |
2903 | */ | |
2904 | ||
2905 | ||
39037602 | 2906 | tp = intotcpcb(inp); |
2d21ac55 A |
2907 | |
2908 | /* | |
2909 | * Update MTU discovery determination. Don't do it if: | |
2910 | * 1) it is disabled via the sysctl | |
2911 | * 2) the route isn't up | |
2912 | * 3) the MTU is locked (if it is, then discovery has been | |
2913 | * disabled) | |
2914 | */ | |
2915 | ||
39037602 | 2916 | if (!path_mtu_discovery || ((rt != NULL) && |
0a7de745 | 2917 | (!(rt->rt_flags & RTF_UP) || (rt->rt_rmx.rmx_locks & RTV_MTU)))) { |
2d21ac55 | 2918 | tp->t_flags &= ~TF_PMTUD; |
0a7de745 | 2919 | } else { |
2d21ac55 | 2920 | tp->t_flags |= TF_PMTUD; |
0a7de745 | 2921 | } |
2d21ac55 | 2922 | |
b0d623f7 A |
2923 | if (rt != NULL && rt->rt_ifp != NULL) { |
2924 | somultipages(inp->inp_socket, | |
2925 | (rt->rt_ifp->if_hwassist & IFNET_MULTIPAGES)); | |
2926 | tcp_set_tso(tp, rt->rt_ifp); | |
fe8ab488 A |
2927 | soif2kcl(inp->inp_socket, |
2928 | (rt->rt_ifp->if_eflags & IFEF_2KCL)); | |
4bd07ac2 | 2929 | tcp_set_ecn(tp, rt->rt_ifp); |
5ba3f43e | 2930 | if (inp->inp_last_outifp == NULL) { |
39037602 | 2931 | inp->inp_last_outifp = rt->rt_ifp; |
5ba3f43e | 2932 | } |
b0d623f7 | 2933 | |
d9a64523 A |
2934 | /* Note if the peer is local */ |
2935 | if (!(rt->rt_ifp->if_flags & IFF_POINTOPOINT) && | |
0a7de745 A |
2936 | (IN6_IS_ADDR_LOOPBACK(&inp->in6p_faddr) || |
2937 | IN6_IS_ADDR_LINKLOCAL(&inp->in6p_faddr) || | |
2938 | rt->rt_gateway->sa_family == AF_LINK || | |
2939 | in6_localaddr(&inp->in6p_faddr))) { | |
d9a64523 A |
2940 | tp->t_flags |= TF_LOCAL; |
2941 | } | |
39236c6e A |
2942 | } |
2943 | ||
b0d623f7 A |
2944 | /* |
2945 | * Caller needs to call RT_UNLOCK(rt). | |
2946 | */ | |
0a7de745 | 2947 | return rt; |
1c79356b | 2948 | } |
1c79356b A |
2949 | |
2950 | #if IPSEC | |
2951 | /* compute ESP/AH header size for TCP, including outer IP header. */ | |
2952 | size_t | |
39037602 | 2953 | ipsec_hdrsiz_tcp(struct tcpcb *tp) |
1c79356b A |
2954 | { |
2955 | struct inpcb *inp; | |
2956 | struct mbuf *m; | |
2957 | size_t hdrsiz; | |
2958 | struct ip *ip; | |
1c79356b | 2959 | struct ip6_hdr *ip6 = NULL; |
1c79356b A |
2960 | struct tcphdr *th; |
2961 | ||
0a7de745 A |
2962 | if ((tp == NULL) || ((inp = tp->t_inpcb) == NULL)) { |
2963 | return 0; | |
2964 | } | |
2965 | MGETHDR(m, M_DONTWAIT, MT_DATA); /* MAC-OK */ | |
2966 | if (!m) { | |
2967 | return 0; | |
2968 | } | |
9bccf70c | 2969 | |
9bccf70c | 2970 | if ((inp->inp_vflag & INP_IPV6) != 0) { |
1c79356b | 2971 | ip6 = mtod(m, struct ip6_hdr *); |
316670eb | 2972 | th = (struct tcphdr *)(void *)(ip6 + 1); |
9bccf70c | 2973 | m->m_pkthdr.len = m->m_len = |
0a7de745 | 2974 | sizeof(struct ip6_hdr) + sizeof(struct tcphdr); |
9bccf70c A |
2975 | tcp_fillheaders(tp, ip6, th); |
2976 | hdrsiz = ipsec6_hdrsiz(m, IPSEC_DIR_OUTBOUND, inp); | |
f427ee49 | 2977 | } else { |
39037602 A |
2978 | ip = mtod(m, struct ip *); |
2979 | th = (struct tcphdr *)(ip + 1); | |
2980 | m->m_pkthdr.len = m->m_len = sizeof(struct tcpiphdr); | |
2981 | tcp_fillheaders(tp, ip, th); | |
2982 | hdrsiz = ipsec4_hdrsiz(m, IPSEC_DIR_OUTBOUND, inp); | |
2983 | } | |
1c79356b | 2984 | m_free(m); |
0a7de745 | 2985 | return hdrsiz; |
1c79356b | 2986 | } |
39037602 | 2987 | #endif /* IPSEC */ |
1c79356b | 2988 | |
91447636 | 2989 | int |
b0d623f7 | 2990 | tcp_lock(struct socket *so, int refcount, void *lr) |
91447636 | 2991 | { |
b0d623f7 A |
2992 | void *lr_saved; |
2993 | ||
0a7de745 | 2994 | if (lr == NULL) { |
b0d623f7 | 2995 | lr_saved = __builtin_return_address(0); |
0a7de745 | 2996 | } else { |
b0d623f7 | 2997 | lr_saved = lr; |
0a7de745 | 2998 | } |
91447636 | 2999 | |
5ba3f43e | 3000 | retry: |
b0d623f7 | 3001 | if (so->so_pcb != NULL) { |
5ba3f43e A |
3002 | if (so->so_flags & SOF_MP_SUBFLOW) { |
3003 | struct mptcb *mp_tp = tptomptp(sototcpcb(so)); | |
cb323159 | 3004 | struct socket *mp_so = mptetoso(mp_tp->mpt_mpte); |
5ba3f43e | 3005 | |
cb323159 | 3006 | socket_lock(mp_so, refcount); |
5ba3f43e A |
3007 | |
3008 | /* | |
3009 | * Check if we became non-MPTCP while waiting for the lock. | |
3010 | * If yes, we have to retry to grab the right lock. | |
3011 | */ | |
3012 | if (!(so->so_flags & SOF_MP_SUBFLOW)) { | |
cb323159 | 3013 | socket_unlock(mp_so, refcount); |
5ba3f43e A |
3014 | goto retry; |
3015 | } | |
3016 | } else { | |
3017 | lck_mtx_lock(&((struct inpcb *)so->so_pcb)->inpcb_mtx); | |
3018 | ||
3019 | if (so->so_flags & SOF_MP_SUBFLOW) { | |
3020 | /* | |
3021 | * While waiting for the lock, we might have | |
3022 | * become MPTCP-enabled (see mptcp_subflow_socreate). | |
3023 | */ | |
3024 | lck_mtx_unlock(&((struct inpcb *)so->so_pcb)->inpcb_mtx); | |
3025 | goto retry; | |
3026 | } | |
3027 | } | |
0a7de745 | 3028 | } else { |
39037602 | 3029 | panic("tcp_lock: so=%p NO PCB! lr=%p lrh= %s\n", |
b0d623f7 A |
3030 | so, lr_saved, solockhistory_nr(so)); |
3031 | /* NOTREACHED */ | |
91447636 | 3032 | } |
91447636 | 3033 | |
b0d623f7 A |
3034 | if (so->so_usecount < 0) { |
3035 | panic("tcp_lock: so=%p so_pcb=%p lr=%p ref=%x lrh= %s\n", | |
39037602 A |
3036 | so, so->so_pcb, lr_saved, so->so_usecount, |
3037 | solockhistory_nr(so)); | |
b0d623f7 A |
3038 | /* NOTREACHED */ |
3039 | } | |
0a7de745 | 3040 | if (refcount) { |
91447636 | 3041 | so->so_usecount++; |
0a7de745 | 3042 | } |
b0d623f7 | 3043 | so->lock_lr[so->next_lock_lr] = lr_saved; |
0a7de745 A |
3044 | so->next_lock_lr = (so->next_lock_lr + 1) % SO_LCKDBG_MAX; |
3045 | return 0; | |
91447636 A |
3046 | } |
3047 | ||
3048 | int | |
b0d623f7 | 3049 | tcp_unlock(struct socket *so, int refcount, void *lr) |
91447636 | 3050 | { |
b0d623f7 A |
3051 | void *lr_saved; |
3052 | ||
0a7de745 | 3053 | if (lr == NULL) { |
b0d623f7 | 3054 | lr_saved = __builtin_return_address(0); |
0a7de745 | 3055 | } else { |
b0d623f7 | 3056 | lr_saved = lr; |
0a7de745 | 3057 | } |
91447636 A |
3058 | |
3059 | #ifdef MORE_TCPLOCK_DEBUG | |
39236c6e A |
3060 | printf("tcp_unlock: so=0x%llx sopcb=0x%llx lock=0x%llx ref=%x " |
3061 | "lr=0x%llx\n", (uint64_t)VM_KERNEL_ADDRPERM(so), | |
3062 | (uint64_t)VM_KERNEL_ADDRPERM(so->so_pcb), | |
3063 | (uint64_t)VM_KERNEL_ADDRPERM(&(sotoinpcb(so)->inpcb_mtx)), | |
3064 | so->so_usecount, (uint64_t)VM_KERNEL_ADDRPERM(lr_saved)); | |
91447636 | 3065 | #endif |
0a7de745 | 3066 | if (refcount) { |
91447636 | 3067 | so->so_usecount--; |
0a7de745 | 3068 | } |
91447636 | 3069 | |
b0d623f7 | 3070 | if (so->so_usecount < 0) { |
39037602 | 3071 | panic("tcp_unlock: so=%p usecount=%x lrh= %s\n", |
b0d623f7 A |
3072 | so, so->so_usecount, solockhistory_nr(so)); |
3073 | /* NOTREACHED */ | |
3074 | } | |
3075 | if (so->so_pcb == NULL) { | |
39037602 | 3076 | panic("tcp_unlock: so=%p NO PCB usecount=%x lr=%p lrh= %s\n", |
b0d623f7 A |
3077 | so, so->so_usecount, lr_saved, solockhistory_nr(so)); |
3078 | /* NOTREACHED */ | |
3079 | } else { | |
b0d623f7 | 3080 | so->unlock_lr[so->next_unlock_lr] = lr_saved; |
0a7de745 | 3081 | so->next_unlock_lr = (so->next_unlock_lr + 1) % SO_LCKDBG_MAX; |
5ba3f43e A |
3082 | |
3083 | if (so->so_flags & SOF_MP_SUBFLOW) { | |
3084 | struct mptcb *mp_tp = tptomptp(sototcpcb(so)); | |
cb323159 | 3085 | struct socket *mp_so = mptetoso(mp_tp->mpt_mpte); |
5ba3f43e | 3086 | |
cb323159 | 3087 | socket_lock_assert_owned(mp_so); |
5ba3f43e | 3088 | |
cb323159 | 3089 | socket_unlock(mp_so, refcount); |
5ba3f43e A |
3090 | } else { |
3091 | LCK_MTX_ASSERT(&((struct inpcb *)so->so_pcb)->inpcb_mtx, | |
3092 | LCK_MTX_ASSERT_OWNED); | |
3093 | lck_mtx_unlock(&((struct inpcb *)so->so_pcb)->inpcb_mtx); | |
3094 | } | |
91447636 | 3095 | } |
0a7de745 | 3096 | return 0; |
91447636 A |
3097 | } |
3098 | ||
3099 | lck_mtx_t * | |
5ba3f43e | 3100 | tcp_getlock(struct socket *so, int flags) |
91447636 A |
3101 | { |
3102 | struct inpcb *inp = sotoinpcb(so); | |
3103 | ||
0a7de745 A |
3104 | if (so->so_pcb) { |
3105 | if (so->so_usecount < 0) { | |
39037602 A |
3106 | panic("tcp_getlock: so=%p usecount=%x lrh= %s\n", |
3107 | so, so->so_usecount, solockhistory_nr(so)); | |
0a7de745 | 3108 | } |
5ba3f43e A |
3109 | |
3110 | if (so->so_flags & SOF_MP_SUBFLOW) { | |
3111 | struct mptcb *mp_tp = tptomptp(sototcpcb(so)); | |
cb323159 | 3112 | struct socket *mp_so = mptetoso(mp_tp->mpt_mpte); |
5ba3f43e | 3113 | |
cb323159 | 3114 | return mp_so->so_proto->pr_getlock(mp_so, flags); |
5ba3f43e | 3115 | } else { |
0a7de745 | 3116 | return &inp->inpcb_mtx; |
5ba3f43e | 3117 | } |
39037602 A |
3118 | } else { |
3119 | panic("tcp_getlock: so=%p NULL so_pcb %s\n", | |
b0d623f7 | 3120 | so, solockhistory_nr(so)); |
0a7de745 | 3121 | return so->so_proto->pr_domain->dom_mtx; |
91447636 A |
3122 | } |
3123 | } | |
b0d623f7 | 3124 | |
39037602 | 3125 | /* |
3e170ce0 | 3126 | * Determine if we can grow the recieve socket buffer to avoid sending |
39037602 | 3127 | * a zero window update to the peer. We allow even socket buffers that |
316670eb A |
3128 | * have fixed size (set by the application) to grow if the resource |
3129 | * constraints are met. They will also be trimmed after the application | |
3130 | * reads data. | |
3131 | */ | |
3132 | static void | |
3e170ce0 A |
3133 | tcp_sbrcv_grow_rwin(struct tcpcb *tp, struct sockbuf *sb) |
3134 | { | |
fe8ab488 | 3135 | u_int32_t rcvbufinc = tp->t_maxseg << 4; |
39236c6e A |
3136 | u_int32_t rcvbuf = sb->sb_hiwat; |
3137 | struct socket *so = tp->t_inpcb->inp_socket; | |
3138 | ||
0a7de745 | 3139 | if (tcp_recv_bg == 1 || IS_TCP_RECV_BG(so)) { |
813fb2f6 | 3140 | return; |
0a7de745 | 3141 | } |
39236c6e | 3142 | |
316670eb | 3143 | if (tcp_do_autorcvbuf == 1 && |
0a7de745 A |
3144 | tcp_cansbgrow(sb) && |
3145 | (tp->t_flags & TF_SLOWLINK) == 0 && | |
3146 | (so->so_flags1 & SOF1_EXTEND_BK_IDLE_WANTED) == 0 && | |
3147 | (rcvbuf - sb->sb_cc) < rcvbufinc && | |
3148 | rcvbuf < tcp_autorcvbuf_max && | |
3149 | (sb->sb_idealsize > 0 && | |
3150 | sb->sb_hiwat <= (sb->sb_idealsize + rcvbufinc))) { | |
fe8ab488 A |
3151 | sbreserve(sb, |
3152 | min((sb->sb_hiwat + rcvbufinc), tcp_autorcvbuf_max)); | |
316670eb A |
3153 | } |
3154 | } | |
3155 | ||
b0d623f7 | 3156 | int32_t |
2d21ac55 A |
3157 | tcp_sbspace(struct tcpcb *tp) |
3158 | { | |
39037602 A |
3159 | struct socket *so = tp->t_inpcb->inp_socket; |
3160 | struct sockbuf *sb = &so->so_rcv; | |
d190cdc3 | 3161 | u_int32_t rcvbuf; |
316670eb | 3162 | int32_t space; |
fe8ab488 | 3163 | int32_t pending = 0; |
39236c6e | 3164 | |
cb323159 A |
3165 | if (so->so_flags & SOF_MP_SUBFLOW) { |
3166 | /* We still need to grow TCP's buffer to have a BDP-estimate */ | |
3167 | tcp_sbrcv_grow_rwin(tp, sb); | |
3168 | ||
3169 | return mptcp_sbspace(tptomptp(tp)); | |
3170 | } | |
3171 | ||
d190cdc3 A |
3172 | tcp_sbrcv_grow_rwin(tp, sb); |
3173 | ||
3174 | /* hiwat might have changed */ | |
3175 | rcvbuf = sb->sb_hiwat; | |
3176 | ||
39236c6e | 3177 | space = ((int32_t) imin((rcvbuf - sb->sb_cc), |
0a7de745 A |
3178 | (sb->sb_mbmax - sb->sb_mbcnt))); |
3179 | if (space < 0) { | |
b0d623f7 | 3180 | space = 0; |
0a7de745 | 3181 | } |
2d21ac55 | 3182 | |
fe8ab488 A |
3183 | #if CONTENT_FILTER |
3184 | /* Compensate for data being processed by content filters */ | |
3185 | pending = cfil_sock_data_space(sb); | |
3186 | #endif /* CONTENT_FILTER */ | |
0a7de745 | 3187 | if (pending > space) { |
fe8ab488 | 3188 | space = 0; |
0a7de745 | 3189 | } else { |
fe8ab488 | 3190 | space -= pending; |
0a7de745 | 3191 | } |
fe8ab488 | 3192 | |
39037602 A |
3193 | /* |
3194 | * Avoid increasing window size if the current window | |
2d21ac55 A |
3195 | * is already very low, we could be in "persist" mode and |
3196 | * we could break some apps (see rdar://5409343) | |
3197 | */ | |
3198 | ||
0a7de745 A |
3199 | if (space < tp->t_maxseg) { |
3200 | return space; | |
3201 | } | |
2d21ac55 | 3202 | |
39037602 | 3203 | /* Clip window size for slower link */ |
2d21ac55 | 3204 | |
0a7de745 A |
3205 | if (((tp->t_flags & TF_SLOWLINK) != 0) && slowlink_wsize > 0) { |
3206 | return imin(space, slowlink_wsize); | |
3207 | } | |
2d21ac55 | 3208 | |
0a7de745 | 3209 | return space; |
2d21ac55 | 3210 | } |
b0d623f7 | 3211 | /* |
fe8ab488 A |
3212 | * Checks TCP Segment Offloading capability for a given connection |
3213 | * and interface pair. | |
b0d623f7 A |
3214 | */ |
3215 | void | |
39236c6e | 3216 | tcp_set_tso(struct tcpcb *tp, struct ifnet *ifp) |
b0d623f7 | 3217 | { |
fe8ab488 A |
3218 | struct inpcb *inp; |
3219 | int isipv6; | |
f427ee49 A |
3220 | struct ifnet *tunnel_ifp = NULL; |
3221 | #define IFNET_TSO_MASK (IFNET_TSO_IPV6 | IFNET_TSO_IPV4) | |
3222 | ||
3223 | tp->t_flags &= ~TF_TSO; | |
3224 | ||
3225 | if (ifp == NULL) { | |
3226 | return; | |
3227 | } | |
3228 | ||
39236c6e A |
3229 | #if MPTCP |
3230 | /* | |
3231 | * We can't use TSO if this tcpcb belongs to an MPTCP session. | |
3232 | */ | |
3233 | if (tp->t_mpflags & TMPF_MPTCP_TRUE) { | |
39236c6e A |
3234 | return; |
3235 | } | |
3236 | #endif | |
fe8ab488 A |
3237 | inp = tp->t_inpcb; |
3238 | isipv6 = (inp->inp_vflag & INP_IPV6) != 0; | |
b0d623f7 | 3239 | |
f427ee49 A |
3240 | /* |
3241 | * We can't use TSO if the TSO capability of the tunnel interface does | |
3242 | * not match the capability of another interface known by TCP | |
3243 | */ | |
3244 | if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL) { | |
3245 | u_int tunnel_if_index = inp->inp_policyresult.results.result_parameter.tunnel_interface_index; | |
3246 | ||
3247 | if (tunnel_if_index != 0) { | |
3248 | ifnet_head_lock_shared(); | |
3249 | tunnel_ifp = ifindex2ifnet[tunnel_if_index]; | |
3250 | ifnet_head_done(); | |
3251 | } | |
3252 | ||
3253 | if (tunnel_ifp == NULL) { | |
3254 | return; | |
3255 | } | |
3256 | ||
3257 | if ((ifp->if_hwassist & IFNET_TSO_MASK) != (tunnel_ifp->if_hwassist & IFNET_TSO_MASK)) { | |
3258 | if (tso_debug > 0) { | |
3259 | os_log(OS_LOG_DEFAULT, | |
3260 | "%s: %u > %u TSO 0 tunnel_ifp %s hwassist mismatch with ifp %s", | |
3261 | __func__, | |
3262 | ntohs(tp->t_inpcb->inp_lport), ntohs(tp->t_inpcb->inp_fport), | |
3263 | tunnel_ifp->if_xname, ifp->if_xname); | |
3264 | } | |
3265 | return; | |
3266 | } | |
3267 | if (inp->inp_last_outifp != NULL && | |
3268 | (inp->inp_last_outifp->if_hwassist & IFNET_TSO_MASK) != (tunnel_ifp->if_hwassist & IFNET_TSO_MASK)) { | |
3269 | if (tso_debug > 0) { | |
3270 | os_log(OS_LOG_DEFAULT, | |
3271 | "%s: %u > %u TSO 0 tunnel_ifp %s hwassist mismatch with inp_last_outifp %s", | |
3272 | __func__, | |
3273 | ntohs(tp->t_inpcb->inp_lport), ntohs(tp->t_inpcb->inp_fport), | |
3274 | tunnel_ifp->if_xname, inp->inp_last_outifp->if_xname); | |
3275 | } | |
3276 | return; | |
3277 | } | |
3278 | if ((inp->inp_flags & INP_BOUND_IF) && inp->inp_boundifp != NULL && | |
3279 | (inp->inp_boundifp->if_hwassist & IFNET_TSO_MASK) != (tunnel_ifp->if_hwassist & IFNET_TSO_MASK)) { | |
3280 | if (tso_debug > 0) { | |
3281 | os_log(OS_LOG_DEFAULT, | |
3282 | "%s: %u > %u TSO 0 tunnel_ifp %s hwassist mismatch with inp_boundifp %s", | |
3283 | __func__, | |
3284 | ntohs(tp->t_inpcb->inp_lport), ntohs(tp->t_inpcb->inp_fport), | |
3285 | tunnel_ifp->if_xname, inp->inp_boundifp->if_xname); | |
3286 | } | |
3287 | return; | |
3288 | } | |
3289 | } | |
3290 | ||
b0d623f7 | 3291 | if (isipv6) { |
f427ee49 | 3292 | if (ifp->if_hwassist & IFNET_TSO_IPV6) { |
b0d623f7 | 3293 | tp->t_flags |= TF_TSO; |
0a7de745 | 3294 | if (ifp->if_tso_v6_mtu != 0) { |
b0d623f7 | 3295 | tp->tso_max_segment_size = ifp->if_tso_v6_mtu; |
0a7de745 | 3296 | } else { |
b0d623f7 | 3297 | tp->tso_max_segment_size = TCP_MAXWIN; |
0a7de745 | 3298 | } |
0a7de745 | 3299 | } |
f427ee49 A |
3300 | } else { |
3301 | if (ifp->if_hwassist & IFNET_TSO_IPV4) { | |
b0d623f7 | 3302 | tp->t_flags |= TF_TSO; |
0a7de745 | 3303 | if (ifp->if_tso_v4_mtu != 0) { |
b0d623f7 | 3304 | tp->tso_max_segment_size = ifp->if_tso_v4_mtu; |
0a7de745 | 3305 | } else { |
b0d623f7 | 3306 | tp->tso_max_segment_size = TCP_MAXWIN; |
0a7de745 | 3307 | } |
f427ee49 A |
3308 | if (INTF_ADJUST_MTU_FOR_CLAT46(ifp)) { |
3309 | tp->tso_max_segment_size -= | |
3310 | CLAT46_HDR_EXPANSION_OVERHD; | |
3311 | } | |
0a7de745 | 3312 | } |
b0d623f7 | 3313 | } |
f427ee49 A |
3314 | |
3315 | if (tso_debug > 1) { | |
3316 | os_log(OS_LOG_DEFAULT, "%s: %u > %u TSO %d ifp %s", | |
3317 | __func__, | |
3318 | ntohs(tp->t_inpcb->inp_lport), | |
3319 | ntohs(tp->t_inpcb->inp_fport), | |
3320 | (tp->t_flags & TF_TSO) != 0, | |
3321 | ifp != NULL ? ifp->if_xname : "<NULL>"); | |
3322 | } | |
b0d623f7 | 3323 | } |
6d2010ae | 3324 | |
f427ee49 A |
3325 | #define TIMEVAL_TO_TCPHZ(_tv_) ((uint32_t)((_tv_).tv_sec * TCP_RETRANSHZ + \ |
3326 | (_tv_).tv_usec / TCP_RETRANSHZ_TO_USEC)) | |
6d2010ae | 3327 | |
39037602 A |
3328 | /* |
3329 | * Function to calculate the tcp clock. The tcp clock will get updated | |
6d2010ae | 3330 | * at the boundaries of the tcp layer. This is done at 3 places: |
39037602 | 3331 | * 1. Right before processing an input tcp packet |
6d2010ae A |
3332 | * 2. Whenever a connection wants to access the network using tcp_usrreqs |
3333 | * 3. When a tcp timer fires or before tcp slow timeout | |
3334 | * | |
3335 | */ | |
3336 | ||
3337 | void | |
39037602 | 3338 | calculate_tcp_clock(void) |
6d2010ae A |
3339 | { |
3340 | struct timeval tv = tcp_uptime; | |
cb323159 | 3341 | struct timeval interval = {.tv_sec = 0, .tv_usec = TCP_RETRANSHZ_TO_USEC}; |
6d2010ae A |
3342 | struct timeval now, hold_now; |
3343 | uint32_t incr = 0; | |
3344 | ||
6d2010ae | 3345 | microuptime(&now); |
39236c6e A |
3346 | |
3347 | /* | |
3348 | * Update coarse-grained networking timestamp (in sec.); the idea | |
3349 | * is to update the counter returnable via net_uptime() when | |
3350 | * we read time. | |
3351 | */ | |
5ba3f43e | 3352 | net_update_uptime_with_time(&now); |
39236c6e A |
3353 | |
3354 | timevaladd(&tv, &interval); | |
6d2010ae A |
3355 | if (timevalcmp(&now, &tv, >)) { |
3356 | /* time to update the clock */ | |
3357 | lck_spin_lock(tcp_uptime_lock); | |
3358 | if (timevalcmp(&tcp_uptime, &now, >=)) { | |
fe8ab488 | 3359 | /* clock got updated while waiting for the lock */ |
6d2010ae A |
3360 | lck_spin_unlock(tcp_uptime_lock); |
3361 | return; | |
fe8ab488 | 3362 | } |
6d2010ae A |
3363 | |
3364 | microuptime(&now); | |
3365 | hold_now = now; | |
3366 | tv = tcp_uptime; | |
3367 | timevalsub(&now, &tv); | |
3368 | ||
3369 | incr = TIMEVAL_TO_TCPHZ(now); | |
3370 | if (incr > 0) { | |
3371 | tcp_uptime = hold_now; | |
3372 | tcp_now += incr; | |
3373 | } | |
3374 | ||
39037602 A |
3375 | lck_spin_unlock(tcp_uptime_lock); |
3376 | } | |
6d2010ae A |
3377 | } |
3378 | ||
39037602 A |
3379 | /* |
3380 | * Compute receive window scaling that we are going to request | |
3381 | * for this connection based on sb_hiwat. Try to leave some | |
3382 | * room to potentially increase the window size upto a maximum | |
316670eb A |
3383 | * defined by the constant tcp_autorcvbuf_max. |
3384 | */ | |
3385 | void | |
f427ee49 | 3386 | tcp_set_max_rwinscale(struct tcpcb *tp, struct socket *so) |
39037602 | 3387 | { |
d9a64523 | 3388 | uint32_t maxsockbufsize; |
d9a64523 | 3389 | |
f427ee49 A |
3390 | tp->request_r_scale = MAX((uint8_t)tcp_win_scale, tp->request_r_scale); |
3391 | maxsockbufsize = ((so->so_rcv.sb_flags & SB_USRSIZE) != 0) ? | |
3392 | so->so_rcv.sb_hiwat : tcp_autorcvbuf_max; | |
316670eb | 3393 | |
d9a64523 | 3394 | /* |
f427ee49 A |
3395 | * Window scale should not exceed what is needed |
3396 | * to send the max receive window size; adding 1 to TCP_MAXWIN | |
3397 | * ensures that. | |
d9a64523 | 3398 | */ |
316670eb | 3399 | while (tp->request_r_scale < TCP_MAX_WINSHIFT && |
f427ee49 | 3400 | ((TCP_MAXWIN + 1) << tp->request_r_scale) < maxsockbufsize) { |
316670eb | 3401 | tp->request_r_scale++; |
0a7de745 | 3402 | } |
f427ee49 | 3403 | tp->request_r_scale = MIN(tp->request_r_scale, TCP_MAX_WINSHIFT); |
316670eb A |
3404 | } |
3405 | ||
3406 | int | |
d9a64523 A |
3407 | tcp_notsent_lowat_check(struct socket *so) |
3408 | { | |
316670eb A |
3409 | struct inpcb *inp = sotoinpcb(so); |
3410 | struct tcpcb *tp = NULL; | |
3411 | int notsent = 0; | |
d9a64523 | 3412 | |
316670eb A |
3413 | if (inp != NULL) { |
3414 | tp = intotcpcb(inp); | |
3415 | } | |
3416 | ||
d9a64523 | 3417 | if (tp == NULL) { |
0a7de745 | 3418 | return 0; |
d9a64523 A |
3419 | } |
3420 | ||
39037602 | 3421 | notsent = so->so_snd.sb_cc - |
0a7de745 | 3422 | (tp->snd_nxt - tp->snd_una); |
316670eb | 3423 | |
39037602 A |
3424 | /* |
3425 | * When we send a FIN or SYN, not_sent can be negative. | |
3426 | * In that case also we need to send a write event to the | |
316670eb A |
3427 | * process if it is waiting. In the FIN case, it will |
3428 | * get an error from send because cantsendmore will be set. | |
3429 | */ | |
3430 | if (notsent <= tp->t_notsent_lowat) { | |
0a7de745 | 3431 | return 1; |
316670eb A |
3432 | } |
3433 | ||
39037602 A |
3434 | /* |
3435 | * When Nagle's algorithm is not disabled, it is better | |
316670eb A |
3436 | * to wakeup the client until there is atleast one |
3437 | * maxseg of data to write. | |
3438 | */ | |
39037602 | 3439 | if ((tp->t_flags & TF_NODELAY) == 0 && |
0a7de745 A |
3440 | notsent > 0 && notsent < tp->t_maxseg) { |
3441 | return 1; | |
316670eb | 3442 | } |
0a7de745 | 3443 | return 0; |
316670eb A |
3444 | } |
3445 | ||
3e170ce0 | 3446 | void |
39037602 A |
3447 | tcp_rxtseg_insert(struct tcpcb *tp, tcp_seq start, tcp_seq end) |
3448 | { | |
3e170ce0 | 3449 | struct tcp_rxt_seg *rxseg = NULL, *prev = NULL, *next = NULL; |
f427ee49 | 3450 | uint16_t rxcount = 0; |
3e170ce0 | 3451 | |
0a7de745 | 3452 | if (SLIST_EMPTY(&tp->t_rxt_segments)) { |
3e170ce0 | 3453 | tp->t_dsack_lastuna = tp->snd_una; |
0a7de745 | 3454 | } |
3e170ce0 A |
3455 | /* |
3456 | * First check if there is a segment already existing for this | |
3457 | * sequence space. | |
3458 | */ | |
3459 | ||
3460 | SLIST_FOREACH(rxseg, &tp->t_rxt_segments, rx_link) { | |
0a7de745 | 3461 | if (SEQ_GT(rxseg->rx_start, start)) { |
3e170ce0 | 3462 | break; |
0a7de745 | 3463 | } |
3e170ce0 A |
3464 | prev = rxseg; |
3465 | } | |
3466 | next = rxseg; | |
3467 | ||
3468 | /* check if prev seg is for this sequence */ | |
3469 | if (prev != NULL && SEQ_LEQ(prev->rx_start, start) && | |
3470 | SEQ_GEQ(prev->rx_end, end)) { | |
3471 | prev->rx_count++; | |
3472 | return; | |
3473 | } | |
3474 | ||
3475 | /* | |
3476 | * There are a couple of possibilities at this point. | |
3477 | * 1. prev overlaps with the beginning of this sequence | |
3478 | * 2. next overlaps with the end of this sequence | |
3479 | * 3. there is no overlap. | |
3480 | */ | |
3481 | ||
3482 | if (prev != NULL && SEQ_GT(prev->rx_end, start)) { | |
3483 | if (prev->rx_start == start && SEQ_GT(end, prev->rx_end)) { | |
3484 | start = prev->rx_end + 1; | |
3485 | prev->rx_count++; | |
3486 | } else { | |
3487 | prev->rx_end = (start - 1); | |
3488 | rxcount = prev->rx_count; | |
3489 | } | |
3490 | } | |
3491 | ||
3492 | if (next != NULL && SEQ_LT(next->rx_start, end)) { | |
3493 | if (SEQ_LEQ(next->rx_end, end)) { | |
3494 | end = next->rx_start - 1; | |
3495 | next->rx_count++; | |
3496 | } else { | |
3497 | next->rx_start = end + 1; | |
3498 | rxcount = next->rx_count; | |
3499 | } | |
3500 | } | |
0a7de745 | 3501 | if (!SEQ_LT(start, end)) { |
3e170ce0 | 3502 | return; |
0a7de745 | 3503 | } |
3e170ce0 A |
3504 | |
3505 | rxseg = (struct tcp_rxt_seg *) zalloc(tcp_rxt_seg_zone); | |
3506 | if (rxseg == NULL) { | |
3507 | return; | |
3508 | } | |
3509 | bzero(rxseg, sizeof(*rxseg)); | |
3510 | rxseg->rx_start = start; | |
3511 | rxseg->rx_end = end; | |
3512 | rxseg->rx_count = rxcount + 1; | |
3513 | ||
3514 | if (prev != NULL) { | |
3515 | SLIST_INSERT_AFTER(prev, rxseg, rx_link); | |
3516 | } else { | |
3517 | SLIST_INSERT_HEAD(&tp->t_rxt_segments, rxseg, rx_link); | |
3518 | } | |
3e170ce0 A |
3519 | } |
3520 | ||
3521 | struct tcp_rxt_seg * | |
3522 | tcp_rxtseg_find(struct tcpcb *tp, tcp_seq start, tcp_seq end) | |
3523 | { | |
3524 | struct tcp_rxt_seg *rxseg; | |
0a7de745 A |
3525 | if (SLIST_EMPTY(&tp->t_rxt_segments)) { |
3526 | return NULL; | |
3527 | } | |
3e170ce0 A |
3528 | |
3529 | SLIST_FOREACH(rxseg, &tp->t_rxt_segments, rx_link) { | |
3530 | if (SEQ_LEQ(rxseg->rx_start, start) && | |
0a7de745 A |
3531 | SEQ_GEQ(rxseg->rx_end, end)) { |
3532 | return rxseg; | |
3533 | } | |
3534 | if (SEQ_GT(rxseg->rx_start, start)) { | |
3e170ce0 | 3535 | break; |
0a7de745 | 3536 | } |
3e170ce0 | 3537 | } |
0a7de745 | 3538 | return NULL; |
3e170ce0 A |
3539 | } |
3540 | ||
f427ee49 A |
3541 | void |
3542 | tcp_rxtseg_set_spurious(struct tcpcb *tp, tcp_seq start, tcp_seq end) | |
3543 | { | |
3544 | struct tcp_rxt_seg *rxseg; | |
3545 | if (SLIST_EMPTY(&tp->t_rxt_segments)) { | |
3546 | return; | |
3547 | } | |
3548 | ||
3549 | SLIST_FOREACH(rxseg, &tp->t_rxt_segments, rx_link) { | |
3550 | if (SEQ_GEQ(rxseg->rx_start, start) && | |
3551 | SEQ_LEQ(rxseg->rx_end, end)) { | |
3552 | /* | |
3553 | * If the segment was retransmitted only once, mark it as | |
3554 | * spurious. | |
3555 | */ | |
3556 | if (rxseg->rx_count == 1) { | |
3557 | rxseg->rx_flags |= TCP_RXT_SPURIOUS; | |
3558 | } | |
3559 | } | |
3560 | ||
3561 | if (SEQ_GEQ(rxseg->rx_start, end)) { | |
3562 | break; | |
3563 | } | |
3564 | } | |
3565 | return; | |
3566 | } | |
3567 | ||
3e170ce0 A |
3568 | void |
3569 | tcp_rxtseg_clean(struct tcpcb *tp) | |
3570 | { | |
3571 | struct tcp_rxt_seg *rxseg, *next; | |
3572 | ||
3573 | SLIST_FOREACH_SAFE(rxseg, &tp->t_rxt_segments, rx_link, next) { | |
3574 | SLIST_REMOVE(&tp->t_rxt_segments, rxseg, | |
3575 | tcp_rxt_seg, rx_link); | |
3576 | zfree(tcp_rxt_seg_zone, rxseg); | |
3577 | } | |
3578 | tp->t_dsack_lastuna = tp->snd_max; | |
3579 | } | |
3580 | ||
3581 | boolean_t | |
3582 | tcp_rxtseg_detect_bad_rexmt(struct tcpcb *tp, tcp_seq th_ack) | |
3583 | { | |
3584 | boolean_t bad_rexmt; | |
3585 | struct tcp_rxt_seg *rxseg; | |
3586 | ||
0a7de745 A |
3587 | if (SLIST_EMPTY(&tp->t_rxt_segments)) { |
3588 | return FALSE; | |
3589 | } | |
3e170ce0 A |
3590 | |
3591 | /* | |
3592 | * If all of the segments in this window are not cumulatively | |
3593 | * acknowledged, then there can still be undetected packet loss. | |
3594 | * Do not restore congestion window in that case. | |
3595 | */ | |
0a7de745 A |
3596 | if (SEQ_LT(th_ack, tp->snd_recover)) { |
3597 | return FALSE; | |
3598 | } | |
3e170ce0 A |
3599 | |
3600 | bad_rexmt = TRUE; | |
3601 | SLIST_FOREACH(rxseg, &tp->t_rxt_segments, rx_link) { | |
f427ee49 | 3602 | if (!(rxseg->rx_flags & TCP_RXT_SPURIOUS)) { |
3e170ce0 A |
3603 | bad_rexmt = FALSE; |
3604 | break; | |
3605 | } | |
3606 | } | |
0a7de745 | 3607 | return bad_rexmt; |
3e170ce0 A |
3608 | } |
3609 | ||
3610 | boolean_t | |
3611 | tcp_rxtseg_dsack_for_tlp(struct tcpcb *tp) | |
3612 | { | |
3613 | boolean_t dsack_for_tlp = FALSE; | |
3614 | struct tcp_rxt_seg *rxseg; | |
0a7de745 A |
3615 | if (SLIST_EMPTY(&tp->t_rxt_segments)) { |
3616 | return FALSE; | |
3617 | } | |
3e170ce0 A |
3618 | |
3619 | SLIST_FOREACH(rxseg, &tp->t_rxt_segments, rx_link) { | |
3620 | if (rxseg->rx_count == 1 && | |
39037602 | 3621 | SLIST_NEXT(rxseg, rx_link) == NULL && |
3e170ce0 A |
3622 | (rxseg->rx_flags & TCP_RXT_DSACK_FOR_TLP)) { |
3623 | dsack_for_tlp = TRUE; | |
3624 | break; | |
3625 | } | |
3626 | } | |
0a7de745 | 3627 | return dsack_for_tlp; |
3e170ce0 A |
3628 | } |
3629 | ||
3630 | u_int32_t | |
39037602 A |
3631 | tcp_rxtseg_total_size(struct tcpcb *tp) |
3632 | { | |
3e170ce0 A |
3633 | struct tcp_rxt_seg *rxseg; |
3634 | u_int32_t total_size = 0; | |
3635 | ||
3636 | SLIST_FOREACH(rxseg, &tp->t_rxt_segments, rx_link) { | |
3637 | total_size += (rxseg->rx_end - rxseg->rx_start) + 1; | |
3638 | } | |
0a7de745 | 3639 | return total_size; |
3e170ce0 A |
3640 | } |
3641 | ||
3642 | void | |
3643 | tcp_get_connectivity_status(struct tcpcb *tp, | |
0a7de745 | 3644 | struct tcp_conn_status *connstatus) |
3e170ce0 | 3645 | { |
0a7de745 | 3646 | if (tp == NULL || connstatus == NULL) { |
3e170ce0 | 3647 | return; |
0a7de745 | 3648 | } |
3e170ce0 A |
3649 | bzero(connstatus, sizeof(*connstatus)); |
3650 | if (tp->t_rxtshift >= TCP_CONNECTIVITY_PROBES_MAX) { | |
3651 | if (TCPS_HAVEESTABLISHED(tp->t_state)) { | |
3652 | connstatus->write_probe_failed = 1; | |
3653 | } else { | |
3654 | connstatus->conn_probe_failed = 1; | |
3655 | } | |
3656 | } | |
0a7de745 | 3657 | if (tp->t_rtimo_probes >= TCP_CONNECTIVITY_PROBES_MAX) { |
3e170ce0 | 3658 | connstatus->read_probe_failed = 1; |
0a7de745 | 3659 | } |
39037602 | 3660 | if (tp->t_inpcb != NULL && tp->t_inpcb->inp_last_outifp != NULL && |
0a7de745 | 3661 | (tp->t_inpcb->inp_last_outifp->if_eflags & IFEF_PROBE_CONNECTIVITY)) { |
3e170ce0 | 3662 | connstatus->probe_activated = 1; |
0a7de745 | 3663 | } |
3e170ce0 A |
3664 | } |
3665 | ||
3666 | boolean_t | |
3667 | tfo_enabled(const struct tcpcb *tp) | |
3668 | { | |
0a7de745 | 3669 | return (tp->t_flagsext & TF_FASTOPEN)? TRUE : FALSE; |
3e170ce0 A |
3670 | } |
3671 | ||
3672 | void | |
3673 | tcp_disable_tfo(struct tcpcb *tp) | |
3674 | { | |
3675 | tp->t_flagsext &= ~TF_FASTOPEN; | |
3676 | } | |
316670eb | 3677 | |
39037602 A |
3678 | static struct mbuf * |
3679 | tcp_make_keepalive_frame(struct tcpcb *tp, struct ifnet *ifp, | |
3680 | boolean_t is_probe) | |
3681 | { | |
3682 | struct inpcb *inp = tp->t_inpcb; | |
3683 | struct tcphdr *th; | |
3684 | u_int8_t *data; | |
3685 | int win = 0; | |
3686 | struct mbuf *m; | |
3687 | ||
3688 | /* | |
3689 | * The code assumes the IP + TCP headers fit in an mbuf packet header | |
3690 | */ | |
3691 | _CASSERT(sizeof(struct ip) + sizeof(struct tcphdr) <= _MHLEN); | |
3692 | _CASSERT(sizeof(struct ip6_hdr) + sizeof(struct tcphdr) <= _MHLEN); | |
3693 | ||
3694 | MGETHDR(m, M_WAIT, MT_HEADER); | |
3695 | if (m == NULL) { | |
0a7de745 | 3696 | return NULL; |
39037602 A |
3697 | } |
3698 | m->m_pkthdr.pkt_proto = IPPROTO_TCP; | |
3699 | ||
3700 | data = mbuf_datastart(m); | |
3701 | ||
3702 | if (inp->inp_vflag & INP_IPV4) { | |
3703 | bzero(data, sizeof(struct ip) + sizeof(struct tcphdr)); | |
3704 | th = (struct tcphdr *)(void *) (data + sizeof(struct ip)); | |
3705 | m->m_len = sizeof(struct ip) + sizeof(struct tcphdr); | |
3706 | m->m_pkthdr.len = m->m_len; | |
3707 | } else { | |
3708 | VERIFY(inp->inp_vflag & INP_IPV6); | |
3709 | ||
3710 | bzero(data, sizeof(struct ip6_hdr) | |
3711 | + sizeof(struct tcphdr)); | |
3712 | th = (struct tcphdr *)(void *)(data + sizeof(struct ip6_hdr)); | |
3713 | m->m_len = sizeof(struct ip6_hdr) + | |
3714 | sizeof(struct tcphdr); | |
3715 | m->m_pkthdr.len = m->m_len; | |
3716 | } | |
3717 | ||
3718 | tcp_fillheaders(tp, data, th); | |
3719 | ||
3720 | if (inp->inp_vflag & INP_IPV4) { | |
3721 | struct ip *ip; | |
3722 | ||
3723 | ip = (__typeof__(ip))(void *)data; | |
3724 | ||
5ba3f43e A |
3725 | ip->ip_id = rfc6864 ? 0 : ip_randomid(); |
3726 | ip->ip_off = htons(IP_DF); | |
39037602 A |
3727 | ip->ip_len = htons(sizeof(struct ip) + sizeof(struct tcphdr)); |
3728 | ip->ip_ttl = inp->inp_ip_ttl; | |
813fb2f6 | 3729 | ip->ip_tos |= (inp->inp_ip_tos & ~IPTOS_ECN_MASK); |
39037602 A |
3730 | ip->ip_sum = in_cksum_hdr(ip); |
3731 | } else { | |
3732 | struct ip6_hdr *ip6; | |
3733 | ||
3734 | ip6 = (__typeof__(ip6))(void *)data; | |
3735 | ||
3736 | ip6->ip6_plen = htons(sizeof(struct tcphdr)); | |
3737 | ip6->ip6_hlim = in6_selecthlim(inp, ifp); | |
813fb2f6 | 3738 | ip6->ip6_flow = ip6->ip6_flow & ~IPV6_FLOW_ECN_MASK; |
39037602 | 3739 | |
0a7de745 | 3740 | if (IN6_IS_SCOPE_EMBED(&ip6->ip6_src)) { |
39037602 | 3741 | ip6->ip6_src.s6_addr16[1] = 0; |
0a7de745 A |
3742 | } |
3743 | if (IN6_IS_SCOPE_EMBED(&ip6->ip6_dst)) { | |
39037602 | 3744 | ip6->ip6_dst.s6_addr16[1] = 0; |
0a7de745 | 3745 | } |
39037602 A |
3746 | } |
3747 | th->th_flags = TH_ACK; | |
3748 | ||
3749 | win = tcp_sbspace(tp); | |
0a7de745 A |
3750 | if (win > ((int32_t)TCP_MAXWIN << tp->rcv_scale)) { |
3751 | win = (int32_t)TCP_MAXWIN << tp->rcv_scale; | |
3752 | } | |
39037602 A |
3753 | th->th_win = htons((u_short) (win >> tp->rcv_scale)); |
3754 | ||
3755 | if (is_probe) { | |
3756 | th->th_seq = htonl(tp->snd_una - 1); | |
3757 | } else { | |
3758 | th->th_seq = htonl(tp->snd_una); | |
3759 | } | |
3760 | th->th_ack = htonl(tp->rcv_nxt); | |
3761 | ||
3762 | /* Force recompute TCP checksum to be the final value */ | |
3763 | th->th_sum = 0; | |
3764 | if (inp->inp_vflag & INP_IPV4) { | |
3765 | th->th_sum = inet_cksum(m, IPPROTO_TCP, | |
3766 | sizeof(struct ip), sizeof(struct tcphdr)); | |
3767 | } else { | |
3768 | th->th_sum = inet6_cksum(m, IPPROTO_TCP, | |
3769 | sizeof(struct ip6_hdr), sizeof(struct tcphdr)); | |
3770 | } | |
3771 | ||
0a7de745 | 3772 | return m; |
39037602 A |
3773 | } |
3774 | ||
3775 | void | |
3776 | tcp_fill_keepalive_offload_frames(ifnet_t ifp, | |
3777 | struct ifnet_keepalive_offload_frame *frames_array, | |
3778 | u_int32_t frames_array_count, size_t frame_data_offset, | |
3779 | u_int32_t *used_frames_count) | |
3780 | { | |
3781 | struct inpcb *inp; | |
3782 | inp_gen_t gencnt; | |
3783 | u_int32_t frame_index = *used_frames_count; | |
3784 | ||
3785 | if (ifp == NULL || frames_array == NULL || | |
3786 | frames_array_count == 0 || | |
3787 | frame_index >= frames_array_count || | |
0a7de745 | 3788 | frame_data_offset >= IFNET_KEEPALIVE_OFFLOAD_FRAME_DATA_SIZE) { |
39037602 | 3789 | return; |
0a7de745 | 3790 | } |
39037602 A |
3791 | |
3792 | /* | |
3793 | * This function is called outside the regular TCP processing | |
3794 | * so we need to update the TCP clock. | |
3795 | */ | |
3796 | calculate_tcp_clock(); | |
3797 | ||
3798 | lck_rw_lock_shared(tcbinfo.ipi_lock); | |
3799 | gencnt = tcbinfo.ipi_gencnt; | |
3800 | LIST_FOREACH(inp, tcbinfo.ipi_listhead, inp_list) { | |
3801 | struct socket *so; | |
3802 | struct ifnet_keepalive_offload_frame *frame; | |
3803 | struct mbuf *m = NULL; | |
3804 | struct tcpcb *tp = intotcpcb(inp); | |
3805 | ||
0a7de745 | 3806 | if (frame_index >= frames_array_count) { |
39037602 | 3807 | break; |
0a7de745 | 3808 | } |
39037602 A |
3809 | |
3810 | if (inp->inp_gencnt > gencnt || | |
0a7de745 | 3811 | inp->inp_state == INPCB_STATE_DEAD) { |
39037602 | 3812 | continue; |
0a7de745 | 3813 | } |
39037602 A |
3814 | |
3815 | if ((so = inp->inp_socket) == NULL || | |
0a7de745 | 3816 | (so->so_state & SS_DEFUNCT)) { |
39037602 | 3817 | continue; |
0a7de745 | 3818 | } |
39037602 A |
3819 | /* |
3820 | * check for keepalive offload flag without socket | |
3821 | * lock to avoid a deadlock | |
3822 | */ | |
3823 | if (!(inp->inp_flags2 & INP2_KEEPALIVE_OFFLOAD)) { | |
3824 | continue; | |
3825 | } | |
3826 | ||
3827 | if (!(inp->inp_vflag & (INP_IPV4 | INP_IPV6))) { | |
3828 | continue; | |
3829 | } | |
3830 | if (inp->inp_ppcb == NULL || | |
0a7de745 | 3831 | in_pcb_checkstate(inp, WNT_ACQUIRE, 0) == WNT_STOPUSING) { |
39037602 | 3832 | continue; |
0a7de745 | 3833 | } |
5ba3f43e | 3834 | socket_lock(so, 1); |
39037602 A |
3835 | /* Release the want count */ |
3836 | if (inp->inp_ppcb == NULL || | |
3837 | (in_pcb_checkstate(inp, WNT_RELEASE, 1) == WNT_STOPUSING)) { | |
5ba3f43e | 3838 | socket_unlock(so, 1); |
39037602 A |
3839 | continue; |
3840 | } | |
3841 | if ((inp->inp_vflag & INP_IPV4) && | |
3842 | (inp->inp_laddr.s_addr == INADDR_ANY || | |
3843 | inp->inp_faddr.s_addr == INADDR_ANY)) { | |
5ba3f43e | 3844 | socket_unlock(so, 1); |
39037602 A |
3845 | continue; |
3846 | } | |
3847 | if ((inp->inp_vflag & INP_IPV6) && | |
3848 | (IN6_IS_ADDR_UNSPECIFIED(&inp->in6p_laddr) || | |
3849 | IN6_IS_ADDR_UNSPECIFIED(&inp->in6p_faddr))) { | |
5ba3f43e | 3850 | socket_unlock(so, 1); |
39037602 A |
3851 | continue; |
3852 | } | |
3853 | if (inp->inp_lport == 0 || inp->inp_fport == 0) { | |
5ba3f43e | 3854 | socket_unlock(so, 1); |
39037602 A |
3855 | continue; |
3856 | } | |
3857 | if (inp->inp_last_outifp == NULL || | |
3858 | inp->inp_last_outifp->if_index != ifp->if_index) { | |
5ba3f43e | 3859 | socket_unlock(so, 1); |
39037602 A |
3860 | continue; |
3861 | } | |
3862 | if ((inp->inp_vflag & INP_IPV4) && frame_data_offset + | |
3863 | sizeof(struct ip) + sizeof(struct tcphdr) > | |
3864 | IFNET_KEEPALIVE_OFFLOAD_FRAME_DATA_SIZE) { | |
5ba3f43e | 3865 | socket_unlock(so, 1); |
39037602 A |
3866 | continue; |
3867 | } else if (!(inp->inp_vflag & INP_IPV4) && frame_data_offset + | |
3868 | sizeof(struct ip6_hdr) + sizeof(struct tcphdr) > | |
3869 | IFNET_KEEPALIVE_OFFLOAD_FRAME_DATA_SIZE) { | |
5ba3f43e | 3870 | socket_unlock(so, 1); |
39037602 A |
3871 | continue; |
3872 | } | |
3873 | /* | |
3874 | * There is no point in waking up the device for connections | |
3875 | * that are not established. Long lived connection are meant | |
3876 | * for processes that will sent and receive data | |
3877 | */ | |
3878 | if (tp->t_state != TCPS_ESTABLISHED) { | |
5ba3f43e | 3879 | socket_unlock(so, 1); |
39037602 A |
3880 | continue; |
3881 | } | |
3882 | /* | |
3883 | * This inp has all the information that is needed to | |
3884 | * generate an offload frame. | |
3885 | */ | |
3886 | frame = &frames_array[frame_index]; | |
3887 | frame->type = IFNET_KEEPALIVE_OFFLOAD_FRAME_TCP; | |
3888 | frame->ether_type = (inp->inp_vflag & INP_IPV4) ? | |
3889 | IFNET_KEEPALIVE_OFFLOAD_FRAME_ETHERTYPE_IPV4 : | |
3890 | IFNET_KEEPALIVE_OFFLOAD_FRAME_ETHERTYPE_IPV6; | |
f427ee49 A |
3891 | frame->interval = (uint16_t)(tp->t_keepidle > 0 ? tp->t_keepidle : |
3892 | tcp_keepidle); | |
3893 | frame->keep_cnt = (uint8_t)TCP_CONN_KEEPCNT(tp); | |
3894 | frame->keep_retry = (uint16_t)TCP_CONN_KEEPINTVL(tp); | |
cb323159 A |
3895 | if (so->so_options & SO_NOWAKEFROMSLEEP) { |
3896 | frame->flags |= | |
3897 | IFNET_KEEPALIVE_OFFLOAD_FLAG_NOWAKEFROMSLEEP; | |
3898 | } | |
39037602 A |
3899 | frame->local_port = ntohs(inp->inp_lport); |
3900 | frame->remote_port = ntohs(inp->inp_fport); | |
3901 | frame->local_seq = tp->snd_nxt; | |
3902 | frame->remote_seq = tp->rcv_nxt; | |
3903 | if (inp->inp_vflag & INP_IPV4) { | |
f427ee49 A |
3904 | ASSERT(frame_data_offset + sizeof(struct ip) + sizeof(struct tcphdr) <= UINT8_MAX); |
3905 | frame->length = (uint8_t)(frame_data_offset + | |
3906 | sizeof(struct ip) + sizeof(struct tcphdr)); | |
39037602 A |
3907 | frame->reply_length = frame->length; |
3908 | ||
3909 | frame->addr_length = sizeof(struct in_addr); | |
3910 | bcopy(&inp->inp_laddr, frame->local_addr, | |
3911 | sizeof(struct in_addr)); | |
3912 | bcopy(&inp->inp_faddr, frame->remote_addr, | |
3913 | sizeof(struct in_addr)); | |
3914 | } else { | |
3915 | struct in6_addr *ip6; | |
3916 | ||
f427ee49 A |
3917 | ASSERT(frame_data_offset + sizeof(struct ip6_hdr) + sizeof(struct tcphdr) <= UINT8_MAX); |
3918 | frame->length = (uint8_t)(frame_data_offset + | |
3919 | sizeof(struct ip6_hdr) + sizeof(struct tcphdr)); | |
39037602 A |
3920 | frame->reply_length = frame->length; |
3921 | ||
3922 | frame->addr_length = sizeof(struct in6_addr); | |
3923 | ip6 = (struct in6_addr *)(void *)frame->local_addr; | |
3924 | bcopy(&inp->in6p_laddr, ip6, sizeof(struct in6_addr)); | |
0a7de745 | 3925 | if (IN6_IS_SCOPE_EMBED(ip6)) { |
39037602 | 3926 | ip6->s6_addr16[1] = 0; |
0a7de745 | 3927 | } |
39037602 A |
3928 | |
3929 | ip6 = (struct in6_addr *)(void *)frame->remote_addr; | |
3930 | bcopy(&inp->in6p_faddr, ip6, sizeof(struct in6_addr)); | |
0a7de745 | 3931 | if (IN6_IS_SCOPE_EMBED(ip6)) { |
39037602 | 3932 | ip6->s6_addr16[1] = 0; |
0a7de745 | 3933 | } |
39037602 A |
3934 | } |
3935 | ||
3936 | /* | |
3937 | * First the probe | |
3938 | */ | |
3939 | m = tcp_make_keepalive_frame(tp, ifp, TRUE); | |
3940 | if (m == NULL) { | |
5ba3f43e | 3941 | socket_unlock(so, 1); |
39037602 A |
3942 | continue; |
3943 | } | |
3944 | bcopy(m->m_data, frame->data + frame_data_offset, | |
3945 | m->m_len); | |
3946 | m_freem(m); | |
3947 | ||
3948 | /* | |
3949 | * Now the response packet to incoming probes | |
3950 | */ | |
3951 | m = tcp_make_keepalive_frame(tp, ifp, FALSE); | |
3952 | if (m == NULL) { | |
5ba3f43e | 3953 | socket_unlock(so, 1); |
39037602 A |
3954 | continue; |
3955 | } | |
3956 | bcopy(m->m_data, frame->reply_data + frame_data_offset, | |
3957 | m->m_len); | |
3958 | m_freem(m); | |
3959 | ||
3960 | frame_index++; | |
5ba3f43e | 3961 | socket_unlock(so, 1); |
39037602 A |
3962 | } |
3963 | lck_rw_done(tcbinfo.ipi_lock); | |
3964 | *used_frames_count = frame_index; | |
3965 | } | |
3966 | ||
cb323159 A |
3967 | static bool |
3968 | inp_matches_kao_frame(ifnet_t ifp, struct ifnet_keepalive_offload_frame *frame, | |
3969 | struct inpcb *inp) | |
3970 | { | |
3971 | if (inp->inp_ppcb == NULL) { | |
3972 | return false; | |
3973 | } | |
3974 | /* Release the want count */ | |
3975 | if (in_pcb_checkstate(inp, WNT_RELEASE, 1) == WNT_STOPUSING) { | |
3976 | return false; | |
3977 | } | |
3978 | if (inp->inp_last_outifp == NULL || | |
3979 | inp->inp_last_outifp->if_index != ifp->if_index) { | |
3980 | return false; | |
3981 | } | |
3982 | if (frame->local_port != ntohs(inp->inp_lport) || | |
3983 | frame->remote_port != ntohs(inp->inp_fport)) { | |
3984 | return false; | |
3985 | } | |
3986 | if (inp->inp_vflag & INP_IPV4) { | |
3987 | if (memcmp(&inp->inp_laddr, frame->local_addr, | |
3988 | sizeof(struct in_addr)) != 0 || | |
3989 | memcmp(&inp->inp_faddr, frame->remote_addr, | |
3990 | sizeof(struct in_addr)) != 0) { | |
3991 | return false; | |
3992 | } | |
3993 | } else if (inp->inp_vflag & INP_IPV6) { | |
3994 | if (memcmp(&inp->inp_laddr, frame->local_addr, | |
3995 | sizeof(struct in6_addr)) != 0 || | |
3996 | memcmp(&inp->inp_faddr, frame->remote_addr, | |
3997 | sizeof(struct in6_addr)) != 0) { | |
3998 | return false; | |
3999 | } | |
4000 | } else { | |
4001 | return false; | |
4002 | } | |
4003 | return true; | |
4004 | } | |
4005 | ||
4006 | int | |
4007 | tcp_notify_kao_timeout(ifnet_t ifp, | |
4008 | struct ifnet_keepalive_offload_frame *frame) | |
4009 | { | |
4010 | struct inpcb *inp = NULL; | |
4011 | struct socket *so = NULL; | |
4012 | bool found = false; | |
4013 | ||
4014 | /* | |
4015 | * Unlock the list before posting event on the matching socket | |
4016 | */ | |
4017 | lck_rw_lock_shared(tcbinfo.ipi_lock); | |
4018 | ||
4019 | LIST_FOREACH(inp, tcbinfo.ipi_listhead, inp_list) { | |
4020 | if ((so = inp->inp_socket) == NULL || | |
4021 | (so->so_state & SS_DEFUNCT)) { | |
4022 | continue; | |
4023 | } | |
4024 | if (!(inp->inp_flags2 & INP2_KEEPALIVE_OFFLOAD)) { | |
4025 | continue; | |
4026 | } | |
4027 | if (!(inp->inp_vflag & (INP_IPV4 | INP_IPV6))) { | |
4028 | continue; | |
4029 | } | |
4030 | if (inp->inp_ppcb == NULL || | |
4031 | in_pcb_checkstate(inp, WNT_ACQUIRE, 0) == WNT_STOPUSING) { | |
4032 | continue; | |
4033 | } | |
4034 | socket_lock(so, 1); | |
4035 | if (inp_matches_kao_frame(ifp, frame, inp)) { | |
4036 | /* | |
4037 | * Keep the matching socket locked | |
4038 | */ | |
4039 | found = true; | |
4040 | break; | |
4041 | } | |
4042 | socket_unlock(so, 1); | |
4043 | } | |
4044 | lck_rw_done(tcbinfo.ipi_lock); | |
4045 | ||
4046 | if (found) { | |
4047 | ASSERT(inp != NULL); | |
4048 | ASSERT(so != NULL); | |
4049 | ASSERT(so == inp->inp_socket); | |
4050 | /* | |
4051 | * Drop the TCP connection like tcptimers() does | |
4052 | */ | |
4053 | struct tcpcb *tp = inp->inp_ppcb; | |
4054 | ||
4055 | tcpstat.tcps_keepdrops++; | |
cb323159 A |
4056 | soevent(so, |
4057 | (SO_FILT_HINT_LOCKED | SO_FILT_HINT_TIMEOUT)); | |
4058 | tp = tcp_drop(tp, ETIMEDOUT); | |
4059 | ||
4060 | tcpstat.tcps_ka_offload_drops++; | |
4061 | os_log_info(OS_LOG_DEFAULT, "%s: dropped lport %u fport %u\n", | |
4062 | __func__, frame->local_port, frame->remote_port); | |
4063 | ||
4064 | socket_unlock(so, 1); | |
4065 | } | |
4066 | ||
4067 | return 0; | |
4068 | } | |
4069 | ||
39037602 A |
4070 | errno_t |
4071 | tcp_notify_ack_id_valid(struct tcpcb *tp, struct socket *so, | |
4072 | u_int32_t notify_id) | |
4073 | { | |
4074 | struct tcp_notify_ack_marker *elm; | |
4075 | ||
0a7de745 A |
4076 | if (so->so_snd.sb_cc == 0) { |
4077 | return ENOBUFS; | |
4078 | } | |
39037602 A |
4079 | |
4080 | SLIST_FOREACH(elm, &tp->t_notify_ack, notify_next) { | |
4081 | /* Duplicate id is not allowed */ | |
0a7de745 A |
4082 | if (elm->notify_id == notify_id) { |
4083 | return EINVAL; | |
4084 | } | |
39037602 | 4085 | /* Duplicate position is not allowed */ |
0a7de745 A |
4086 | if (elm->notify_snd_una == tp->snd_una + so->so_snd.sb_cc) { |
4087 | return EINVAL; | |
4088 | } | |
39037602 | 4089 | } |
0a7de745 | 4090 | return 0; |
39037602 A |
4091 | } |
4092 | ||
4093 | errno_t | |
4094 | tcp_add_notify_ack_marker(struct tcpcb *tp, u_int32_t notify_id) | |
4095 | { | |
4096 | struct tcp_notify_ack_marker *nm, *elm = NULL; | |
4097 | struct socket *so = tp->t_inpcb->inp_socket; | |
4098 | ||
0a7de745 | 4099 | MALLOC(nm, struct tcp_notify_ack_marker *, sizeof(*nm), |
39037602 | 4100 | M_TEMP, M_WAIT | M_ZERO); |
0a7de745 A |
4101 | if (nm == NULL) { |
4102 | return ENOMEM; | |
4103 | } | |
39037602 A |
4104 | nm->notify_id = notify_id; |
4105 | nm->notify_snd_una = tp->snd_una + so->so_snd.sb_cc; | |
4106 | ||
4107 | SLIST_FOREACH(elm, &tp->t_notify_ack, notify_next) { | |
0a7de745 | 4108 | if (SEQ_GT(nm->notify_snd_una, elm->notify_snd_una)) { |
39037602 | 4109 | break; |
0a7de745 | 4110 | } |
39037602 A |
4111 | } |
4112 | ||
4113 | if (elm == NULL) { | |
4114 | VERIFY(SLIST_EMPTY(&tp->t_notify_ack)); | |
4115 | SLIST_INSERT_HEAD(&tp->t_notify_ack, nm, notify_next); | |
4116 | } else { | |
4117 | SLIST_INSERT_AFTER(elm, nm, notify_next); | |
4118 | } | |
4119 | tp->t_notify_ack_count++; | |
0a7de745 | 4120 | return 0; |
39037602 A |
4121 | } |
4122 | ||
4123 | void | |
4124 | tcp_notify_ack_free(struct tcpcb *tp) | |
4125 | { | |
4126 | struct tcp_notify_ack_marker *elm, *next; | |
0a7de745 | 4127 | if (SLIST_EMPTY(&tp->t_notify_ack)) { |
39037602 | 4128 | return; |
0a7de745 | 4129 | } |
39037602 A |
4130 | |
4131 | SLIST_FOREACH_SAFE(elm, &tp->t_notify_ack, notify_next, next) { | |
4132 | SLIST_REMOVE(&tp->t_notify_ack, elm, tcp_notify_ack_marker, | |
4133 | notify_next); | |
4134 | FREE(elm, M_TEMP); | |
4135 | } | |
4136 | SLIST_INIT(&tp->t_notify_ack); | |
4137 | tp->t_notify_ack_count = 0; | |
4138 | } | |
4139 | ||
4140 | inline void | |
4141 | tcp_notify_acknowledgement(struct tcpcb *tp, struct socket *so) | |
4142 | { | |
4143 | struct tcp_notify_ack_marker *elm; | |
4144 | ||
4145 | elm = SLIST_FIRST(&tp->t_notify_ack); | |
4146 | if (SEQ_GEQ(tp->snd_una, elm->notify_snd_una)) { | |
4147 | soevent(so, SO_FILT_HINT_LOCKED | SO_FILT_HINT_NOTIFY_ACK); | |
4148 | } | |
4149 | } | |
4150 | ||
4151 | void | |
4152 | tcp_get_notify_ack_count(struct tcpcb *tp, | |
4153 | struct tcp_notify_ack_complete *retid) | |
4154 | { | |
4155 | struct tcp_notify_ack_marker *elm; | |
f427ee49 | 4156 | uint32_t complete = 0; |
39037602 A |
4157 | |
4158 | SLIST_FOREACH(elm, &tp->t_notify_ack, notify_next) { | |
0a7de745 | 4159 | if (SEQ_GEQ(tp->snd_una, elm->notify_snd_una)) { |
f427ee49 | 4160 | ASSERT(complete < UINT32_MAX); |
39037602 | 4161 | complete++; |
0a7de745 | 4162 | } else { |
39037602 | 4163 | break; |
0a7de745 | 4164 | } |
39037602 A |
4165 | } |
4166 | retid->notify_pending = tp->t_notify_ack_count - complete; | |
4167 | retid->notify_complete_count = min(TCP_MAX_NOTIFY_ACK, complete); | |
4168 | } | |
4169 | ||
4170 | void | |
4171 | tcp_get_notify_ack_ids(struct tcpcb *tp, | |
4172 | struct tcp_notify_ack_complete *retid) | |
4173 | { | |
4174 | size_t i = 0; | |
4175 | struct tcp_notify_ack_marker *elm, *next; | |
4176 | ||
4177 | SLIST_FOREACH_SAFE(elm, &tp->t_notify_ack, notify_next, next) { | |
0a7de745 | 4178 | if (i >= retid->notify_complete_count) { |
39037602 | 4179 | break; |
0a7de745 | 4180 | } |
39037602 A |
4181 | if (SEQ_GEQ(tp->snd_una, elm->notify_snd_una)) { |
4182 | retid->notify_complete_id[i++] = elm->notify_id; | |
4183 | SLIST_REMOVE(&tp->t_notify_ack, elm, | |
4184 | tcp_notify_ack_marker, notify_next); | |
4185 | FREE(elm, M_TEMP); | |
4186 | tp->t_notify_ack_count--; | |
4187 | } else { | |
4188 | break; | |
4189 | } | |
4190 | } | |
4191 | } | |
4192 | ||
4193 | bool | |
4194 | tcp_notify_ack_active(struct socket *so) | |
4195 | { | |
4196 | if ((SOCK_DOM(so) == PF_INET || SOCK_DOM(so) == PF_INET6) && | |
4197 | SOCK_TYPE(so) == SOCK_STREAM) { | |
4198 | struct tcpcb *tp = intotcpcb(sotoinpcb(so)); | |
4199 | ||
4200 | if (!SLIST_EMPTY(&tp->t_notify_ack)) { | |
4201 | struct tcp_notify_ack_marker *elm; | |
4202 | elm = SLIST_FIRST(&tp->t_notify_ack); | |
0a7de745 A |
4203 | if (SEQ_GEQ(tp->snd_una, elm->notify_snd_una)) { |
4204 | return true; | |
4205 | } | |
39037602 A |
4206 | } |
4207 | } | |
0a7de745 | 4208 | return false; |
39037602 A |
4209 | } |
4210 | ||
4211 | inline int32_t | |
4212 | inp_get_sndbytes_allunsent(struct socket *so, u_int32_t th_ack) | |
4213 | { | |
4214 | struct inpcb *inp = sotoinpcb(so); | |
4215 | struct tcpcb *tp = intotcpcb(inp); | |
4216 | ||
4217 | if ((so->so_snd.sb_flags & SB_SNDBYTE_CNT) && | |
4218 | so->so_snd.sb_cc > 0) { | |
4219 | int32_t unsent, sent; | |
4220 | sent = tp->snd_max - th_ack; | |
0a7de745 | 4221 | if (tp->t_flags & TF_SENTFIN) { |
39037602 | 4222 | sent--; |
0a7de745 | 4223 | } |
39037602 | 4224 | unsent = so->so_snd.sb_cc - sent; |
0a7de745 | 4225 | return unsent; |
39037602 | 4226 | } |
0a7de745 | 4227 | return 0; |
39037602 | 4228 | } |
5ba3f43e A |
4229 | |
4230 | #define IFP_PER_FLOW_STAT(_ipv4_, _stat_) { \ | |
4231 | if (_ipv4_) { \ | |
0a7de745 | 4232 | ifp->if_ipv4_stat->_stat_++; \ |
5ba3f43e | 4233 | } else { \ |
0a7de745 | 4234 | ifp->if_ipv6_stat->_stat_++; \ |
5ba3f43e A |
4235 | } \ |
4236 | } | |
4237 | ||
4238 | #define FLOW_ECN_ENABLED(_flags_) \ | |
4239 | ((_flags_ & (TE_ECN_ON)) == (TE_ECN_ON)) | |
4240 | ||
0a7de745 A |
4241 | void |
4242 | tcp_update_stats_per_flow(struct ifnet_stats_per_flow *ifs, | |
5ba3f43e A |
4243 | struct ifnet *ifp) |
4244 | { | |
0a7de745 | 4245 | if (ifp == NULL || !IF_FULLY_ATTACHED(ifp)) { |
5ba3f43e | 4246 | return; |
0a7de745 | 4247 | } |
5ba3f43e A |
4248 | |
4249 | ifnet_lock_shared(ifp); | |
4250 | if (ifs->ecn_flags & TE_SETUPSENT) { | |
4251 | if (ifs->ecn_flags & TE_CLIENT_SETUP) { | |
4252 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_client_setup); | |
4253 | if (FLOW_ECN_ENABLED(ifs->ecn_flags)) { | |
4254 | IFP_PER_FLOW_STAT(ifs->ipv4, | |
4255 | ecn_client_success); | |
4256 | } else if (ifs->ecn_flags & TE_LOST_SYN) { | |
4257 | IFP_PER_FLOW_STAT(ifs->ipv4, | |
4258 | ecn_syn_lost); | |
4259 | } else { | |
4260 | IFP_PER_FLOW_STAT(ifs->ipv4, | |
4261 | ecn_peer_nosupport); | |
4262 | } | |
4263 | } else { | |
4264 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_server_setup); | |
4265 | if (FLOW_ECN_ENABLED(ifs->ecn_flags)) { | |
4266 | IFP_PER_FLOW_STAT(ifs->ipv4, | |
4267 | ecn_server_success); | |
4268 | } else if (ifs->ecn_flags & TE_LOST_SYN) { | |
4269 | IFP_PER_FLOW_STAT(ifs->ipv4, | |
4270 | ecn_synack_lost); | |
4271 | } else { | |
4272 | IFP_PER_FLOW_STAT(ifs->ipv4, | |
4273 | ecn_peer_nosupport); | |
4274 | } | |
4275 | } | |
4276 | } else { | |
4277 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_off_conn); | |
4278 | } | |
4279 | if (FLOW_ECN_ENABLED(ifs->ecn_flags)) { | |
4280 | if (ifs->ecn_flags & TE_RECV_ECN_CE) { | |
4281 | tcpstat.tcps_ecn_conn_recv_ce++; | |
4282 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_conn_recv_ce); | |
4283 | } | |
4284 | if (ifs->ecn_flags & TE_RECV_ECN_ECE) { | |
4285 | tcpstat.tcps_ecn_conn_recv_ece++; | |
4286 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_conn_recv_ece); | |
4287 | } | |
4288 | if (ifs->ecn_flags & (TE_RECV_ECN_CE | TE_RECV_ECN_ECE)) { | |
4289 | if (ifs->txretransmitbytes > 0 || | |
4290 | ifs->rxoutoforderbytes > 0) { | |
4291 | tcpstat.tcps_ecn_conn_pl_ce++; | |
4292 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_conn_plce); | |
4293 | } else { | |
4294 | tcpstat.tcps_ecn_conn_nopl_ce++; | |
4295 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_conn_noplce); | |
4296 | } | |
4297 | } else { | |
4298 | if (ifs->txretransmitbytes > 0 || | |
4299 | ifs->rxoutoforderbytes > 0) { | |
4300 | tcpstat.tcps_ecn_conn_plnoce++; | |
4301 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_conn_plnoce); | |
4302 | } | |
4303 | } | |
4304 | } | |
4305 | ||
4306 | /* Other stats are interesting for non-local connections only */ | |
4307 | if (ifs->local) { | |
4308 | ifnet_lock_done(ifp); | |
4309 | return; | |
4310 | } | |
4311 | ||
4312 | if (ifs->ipv4) { | |
4313 | ifp->if_ipv4_stat->timestamp = net_uptime(); | |
4314 | if (FLOW_ECN_ENABLED(ifs->ecn_flags)) { | |
4315 | tcp_flow_ecn_perf_stats(ifs, &ifp->if_ipv4_stat->ecn_on); | |
4316 | } else { | |
4317 | tcp_flow_ecn_perf_stats(ifs, &ifp->if_ipv4_stat->ecn_off); | |
4318 | } | |
4319 | } else { | |
4320 | ifp->if_ipv6_stat->timestamp = net_uptime(); | |
4321 | if (FLOW_ECN_ENABLED(ifs->ecn_flags)) { | |
4322 | tcp_flow_ecn_perf_stats(ifs, &ifp->if_ipv6_stat->ecn_on); | |
4323 | } else { | |
4324 | tcp_flow_ecn_perf_stats(ifs, &ifp->if_ipv6_stat->ecn_off); | |
4325 | } | |
4326 | } | |
4327 | ||
4328 | if (ifs->rxmit_drop) { | |
4329 | if (FLOW_ECN_ENABLED(ifs->ecn_flags)) { | |
4330 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_on.rxmit_drop); | |
4331 | } else { | |
4332 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_off.rxmit_drop); | |
4333 | } | |
4334 | } | |
0a7de745 | 4335 | if (ifs->ecn_fallback_synloss) { |
5ba3f43e | 4336 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_fallback_synloss); |
0a7de745 A |
4337 | } |
4338 | if (ifs->ecn_fallback_droprst) { | |
5ba3f43e | 4339 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_fallback_droprst); |
0a7de745 A |
4340 | } |
4341 | if (ifs->ecn_fallback_droprxmt) { | |
5ba3f43e | 4342 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_fallback_droprxmt); |
0a7de745 A |
4343 | } |
4344 | if (ifs->ecn_fallback_ce) { | |
5ba3f43e | 4345 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_fallback_ce); |
0a7de745 A |
4346 | } |
4347 | if (ifs->ecn_fallback_reorder) { | |
5ba3f43e | 4348 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_fallback_reorder); |
0a7de745 A |
4349 | } |
4350 | if (ifs->ecn_recv_ce > 0) { | |
5ba3f43e | 4351 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_recv_ce); |
0a7de745 A |
4352 | } |
4353 | if (ifs->ecn_recv_ece > 0) { | |
5ba3f43e | 4354 | IFP_PER_FLOW_STAT(ifs->ipv4, ecn_recv_ece); |
0a7de745 | 4355 | } |
5ba3f43e A |
4356 | |
4357 | tcp_flow_lim_stats(ifs, &ifp->if_lim_stat); | |
4358 | ifnet_lock_done(ifp); | |
4359 | } | |
f427ee49 | 4360 |