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1 /*
2 * Copyright (c) 2012-2017 Apple Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
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
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12 * circumvent, violate, or enable the circumvention or violation of, any
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14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
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20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
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27 */
28
29 #ifndef _NETINET_MPTCP_VAR_H_
30 #define _NETINET_MPTCP_VAR_H_
31
32 #ifdef PRIVATE
33 #include <netinet/in.h>
34 #include <netinet/tcp.h>
35 #endif
36
37 #ifdef BSD_KERNEL_PRIVATE
38 #include <sys/queue.h>
39 #include <sys/protosw.h>
40 #include <kern/locks.h>
41 #include <mach/boolean.h>
42 #include <netinet/mp_pcb.h>
43 #include <netinet/tcp_var.h>
44 #include <os/log.h>
45
46 struct mpt_itf_info {
47 uint32_t ifindex;
48 uint32_t has_v4_conn:1,
49 has_v6_conn:1,
50 no_mptcp_support:1;
51 };
52
53 /*
54 * MPTCP Session
55 *
56 * This is an extension to the multipath PCB specific for MPTCP, protected by
57 * the per-PCB mpp_lock (also the socket's lock);
58 */
59 struct mptses {
60 struct mppcb *mpte_mppcb; /* back ptr to multipath PCB */
61 struct mptcb *mpte_mptcb; /* ptr to MPTCP PCB */
62 TAILQ_HEAD(, mptopt) mpte_sopts; /* list of socket options */
63 TAILQ_HEAD(, mptsub) mpte_subflows; /* list of subflows */
64 uint16_t mpte_numflows; /* # of subflows in list */
65 uint16_t mpte_nummpcapflows; /* # of MP_CAP subflows */
66 sae_associd_t mpte_associd; /* MPTCP association ID */
67 sae_connid_t mpte_connid_last; /* last used connection ID */
68
69 union {
70 /* Source address of initial subflow */
71 struct sockaddr mpte_src;
72 struct sockaddr_in __mpte_src_v4;
73 struct sockaddr_in6 __mpte_src_v6;
74 };
75
76 union {
77 /* Destination address of initial subflow */
78 struct sockaddr mpte_dst;
79 struct sockaddr_in __mpte_dst_v4;
80 struct sockaddr_in6 __mpte_dst_v6;
81 };
82
83 struct sockaddr_in mpte_dst_v4_nat64;
84
85 uint16_t mpte_alternate_port; /* Alternate port for subflow establishment (network-byte-order) */
86
87 struct mptsub *mpte_active_sub; /* ptr to last active subf */
88 uint8_t mpte_flags; /* per mptcp session flags */
89 #define MPTE_SND_REM_ADDR 0x01 /* Send Remove_addr option */
90 #define MPTE_SVCTYPE_CHECKED 0x02 /* Did entitlement-check for service-type */
91 #define MPTE_FIRSTPARTY 0x04 /* First-party app used multipath_extended entitlement */
92 #define MPTE_ACCESS_GRANTED 0x08 /* Access to cellular has been granted for this connection */
93 uint8_t mpte_svctype; /* MPTCP Service type */
94 uint8_t mpte_lost_aid; /* storing lost address id */
95 uint8_t mpte_addrid_last; /* storing address id parm */
96
97 #define MPTE_ITFINFO_SIZE 4
98 uint32_t mpte_itfinfo_size;
99 struct mpt_itf_info _mpte_itfinfo[MPTE_ITFINFO_SIZE];
100 struct mpt_itf_info *mpte_itfinfo;
101
102 struct mbuf *mpte_reinjectq;
103
104 /* The below is used for stats */
105 uint32_t mpte_subflow_switches; /* Number of subflow-switches in sending */
106 uint32_t mpte_used_cell:1,
107 mpte_used_wifi:1,
108 mpte_initial_cell:1,
109 mpte_handshake_success:1;
110
111 struct mptcp_itf_stats mpte_itfstats[MPTCP_ITFSTATS_SIZE];
112 uint64_t mpte_init_txbytes __attribute__((aligned(8)));
113 uint64_t mpte_init_rxbytes __attribute__((aligned(8)));
114 };
115
116 static inline struct socket *
117 mptetoso(struct mptses *mpte)
118 {
119 return (mpte->mpte_mppcb->mpp_socket);
120 }
121
122 static inline struct mptses *
123 mptompte(struct mppcb *mp)
124 {
125 return ((struct mptses *)mp->mpp_pcbe);
126 }
127
128 static inline struct mptses *
129 mpsotompte(struct socket *so)
130 {
131 return (mptompte(mpsotomppcb(so)));
132 }
133
134 static inline void
135 mpp_lock_assert_held(struct mppcb *mp)
136 {
137 #if !MACH_ASSERT
138 #pragma unused(mp)
139 #endif
140 LCK_MTX_ASSERT(&mp->mpp_lock, LCK_MTX_ASSERT_OWNED);
141 }
142
143 static inline void
144 mpp_lock_assert_notheld(struct mppcb *mp)
145 {
146 #if !MACH_ASSERT
147 #pragma unused(mp)
148 #endif
149 LCK_MTX_ASSERT(&mp->mpp_lock, LCK_MTX_ASSERT_NOTOWNED);
150 }
151
152 static inline boolean_t
153 mpp_try_lock(struct mppcb *mp)
154 {
155 if (!lck_mtx_try_lock(&mp->mpp_lock))
156 return false;
157
158 VERIFY(!(mp->mpp_flags & MPP_INSIDE_OUTPUT));
159 VERIFY(!(mp->mpp_flags & MPP_INSIDE_INPUT));
160
161 return true;
162 }
163
164 static inline void
165 mpp_lock(struct mppcb *mp)
166 {
167 lck_mtx_lock(&mp->mpp_lock);
168 VERIFY(!(mp->mpp_flags & MPP_INSIDE_OUTPUT));
169 VERIFY(!(mp->mpp_flags & MPP_INSIDE_INPUT));
170 }
171
172 static inline void
173 mpp_unlock(struct mppcb *mp)
174 {
175 VERIFY(!(mp->mpp_flags & MPP_INSIDE_OUTPUT));
176 VERIFY(!(mp->mpp_flags & MPP_INSIDE_INPUT));
177 lck_mtx_unlock(&mp->mpp_lock);
178 }
179
180 static inline lck_mtx_t *
181 mpp_getlock(struct mppcb *mp, int flags)
182 {
183 if (flags & PR_F_WILLUNLOCK) {
184 VERIFY(!(mp->mpp_flags & MPP_INSIDE_OUTPUT));
185 VERIFY(!(mp->mpp_flags & MPP_INSIDE_INPUT));
186 }
187
188 return (&mp->mpp_lock);
189 }
190
191 static inline void
192 mpte_lock_assert_held(struct mptses *mpte)
193 {
194 mpp_lock_assert_held(mpte->mpte_mppcb);
195 }
196
197 static inline void
198 mpte_lock_assert_notheld(struct mptses *mpte)
199 {
200 mpp_lock_assert_notheld(mpte->mpte_mppcb);
201 }
202
203 static inline boolean_t
204 mpte_try_lock(struct mptses *mpte)
205 {
206 return (mpp_try_lock(mpte->mpte_mppcb));
207 }
208
209 static inline void
210 mpte_lock(struct mptses *mpte)
211 {
212 mpp_lock(mpte->mpte_mppcb);
213 }
214
215 static inline void
216 mpte_unlock(struct mptses *mpte)
217 {
218 mpp_unlock(mpte->mpte_mppcb);
219 }
220
221 static inline lck_mtx_t *
222 mpte_getlock(struct mptses *mpte, int flags)
223 {
224 return mpp_getlock(mpte->mpte_mppcb, flags);
225 }
226
227 static inline int
228 mptcp_subflow_cwnd_space(struct socket *so)
229 {
230 struct tcpcb *tp = sototcpcb(so);
231 int cwnd = min(tp->snd_wnd, tp->snd_cwnd) - (so->so_snd.sb_cc);
232
233 return (min(cwnd, sbspace(&so->so_snd)));
234 }
235
236
237 /*
238 * MPTCP socket options
239 */
240 struct mptopt {
241 TAILQ_ENTRY(mptopt) mpo_entry; /* glue to other options */
242 uint32_t mpo_flags; /* see flags below */
243 int mpo_level; /* sopt_level */
244 int mpo_name; /* sopt_name */
245 int mpo_intval; /* sopt_val */
246 };
247
248 #define MPOF_ATTACHED 0x1 /* attached to MP socket */
249 #define MPOF_SUBFLOW_OK 0x2 /* can be issued on subflow socket */
250 #define MPOF_INTERIM 0x4 /* has not been issued on any subflow */
251
252 /*
253 * MPTCP subflow
254 *
255 * Note that mpts_flags and mpts_evctl are modified via atomic operations.
256 */
257 struct mptsub {
258 TAILQ_ENTRY(mptsub) mpts_entry; /* glue to peer subflows */
259 uint32_t mpts_refcnt; /* reference count */
260 uint32_t mpts_flags; /* see flags below */
261 uint32_t mpts_evctl; /* subflow control events */
262 sae_connid_t mpts_connid; /* subflow connection ID */
263 int mpts_oldintval; /* sopt_val before sosetopt */
264 struct mptses *mpts_mpte; /* back ptr to MPTCP session */
265 struct socket *mpts_socket; /* subflow socket */
266 struct sockaddr *mpts_src; /* source address */
267
268 union {
269 /* destination address */
270 struct sockaddr mpts_dst;
271 struct sockaddr_in __mpts_dst_v4;
272 struct sockaddr_in6 __mpts_dst_v6;
273 };
274
275 u_int32_t mpts_rel_seq; /* running count of subflow # */
276 u_int32_t mpts_iss; /* Initial sequence number, taking TFO into account */
277 u_int32_t mpts_ifscope; /* scoped to the interface */
278 uint32_t mpts_probesoon; /* send probe after probeto */
279 uint32_t mpts_probecnt; /* number of probes sent */
280 uint32_t mpts_maxseg; /* cached value of t_maxseg */
281 };
282
283 /*
284 * Valid values for mpts_flags. In particular:
285 *
286 * - MP_CAPABLE means that the connection is successfully established as
287 * MPTCP and data transfer may occur, but is not yet ready for multipath-
288 * related semantics until MP_READY. I.e. if this is on the first subflow,
289 * it causes the MPTCP socket to transition to a connected state, except
290 * that additional subflows will not be established; they will be marked
291 * with PENDING and will be processed when the first subflow is marked
292 * with MP_READY.
293 *
294 * - MP_READY implies that an MP_CAPABLE connection has been confirmed as
295 * an MPTCP connection. See notes above.
296 *
297 * - MP_DEGRADED implies that the connection has lost its MPTCP capabilities
298 * but data transfer on the MPTCP socket is unaffected. Any existing
299 * PENDING subflows will be disconnected, and further attempts to connect
300 * additional subflows will be rejected.
301 *
302 * Note that these are per-subflow flags. The setting and clearing of MP_READY
303 * reflects the state of the MPTCP connection with regards to its multipath
304 * semantics, via the MPTCPF_JOIN_READY flag. Until that flag is set (meaning
305 * until at least a subflow is marked with MP_READY), further connectx(2)
306 * attempts to join will be queued. When the flag is cleared (after it has
307 * been set), further connectx(2) will fail (and existing queued ones will be
308 * aborted) and the MPTCP connection loses all of its multipath semantics.
309 *
310 * Keep in sync with bsd/dev/dtrace/scripts/mptcp.d.
311 */
312 #define MPTSF_ATTACHED 0x00000001 /* attached to MPTCP PCB */
313 #define MPTSF_CONNECTING 0x00000002 /* connection was attempted */
314 #define MPTSF_CONNECT_PENDING 0x00000004 /* will connect when MPTCP is ready */
315 #define MPTSF_CONNECTED 0x00000008 /* connection is established */
316 #define MPTSF_DISCONNECTING 0x00000010 /* disconnection was attempted */
317 #define MPTSF_DISCONNECTED 0x00000020 /* has been disconnected */
318 #define MPTSF_MP_CAPABLE 0x00000040 /* connected as a MPTCP subflow */
319 #define MPTSF_MP_READY 0x00000080 /* MPTCP has been confirmed */
320 #define MPTSF_MP_DEGRADED 0x00000100 /* has lost its MPTCP capabilities */
321 #define MPTSF_PREFERRED 0x00000200 /* primary/preferred subflow */
322 #define MPTSF_SOPT_OLDVAL 0x00000400 /* old option value is valid */
323 #define MPTSF_SOPT_INPROG 0x00000800 /* sosetopt in progress */
324 #define MPTSF_FAILINGOVER 0x00001000 /* subflow not used for output */
325 #define MPTSF_ACTIVE 0x00002000 /* subflow currently in use */
326 #define MPTSF_MPCAP_CTRSET 0x00004000 /* mpcap counter */
327 #define MPTSF_CLOSED 0x00008000 /* soclose_locked has been called on this subflow */
328 #define MPTSF_TFO_REQD 0x00010000 /* TFO requested */
329 #define MPTSF_CLOSE_REQD 0x00020000 /* A close has been requested from NECP */
330 #define MPTSF_INITIAL_SUB 0x00040000 /* This is the initial subflow */
331 #define MPTSF_READ_STALL 0x00080000 /* A read-stall has been detected */
332 #define MPTSF_WRITE_STALL 0x00100000 /* A write-stall has been detected */
333 #define MPTSF_CONFIRMED 0x00200000 /* Subflow confirmed to be MPTCP-capable */
334
335 #define MPTSF_BITS \
336 "\020\1ATTACHED\2CONNECTING\3PENDING\4CONNECTED\5DISCONNECTING" \
337 "\6DISCONNECTED\7MP_CAPABLE\10MP_READY\11MP_DEGRADED" \
338 "\12PREFERRED\13SOPT_OLDVAL" \
339 "\14SOPT_INPROG\15FAILINGOVER\16ACTIVE\17MPCAP_CTRSET" \
340 "\20CLOSED\21TFO_REQD\22CLOSEREQD\23INITIALSUB\24READ_STALL" \
341 "\25WRITE_STALL\26CONFIRMED"
342
343 /*
344 * MPTCP states
345 * Keep in sync with bsd/dev/dtrace/mptcp.d
346 */
347 typedef enum mptcp_state {
348 MPTCPS_CLOSED = 0, /* closed */
349 MPTCPS_LISTEN = 1, /* not yet implemented */
350 MPTCPS_ESTABLISHED = 2, /* MPTCP connection established */
351 MPTCPS_CLOSE_WAIT = 3, /* rcvd DFIN, waiting for close */
352 MPTCPS_FIN_WAIT_1 = 4, /* have closed, sent DFIN */
353 MPTCPS_CLOSING = 5, /* closed xchd DFIN, waiting DFIN ACK */
354 MPTCPS_LAST_ACK = 6, /* had DFIN and close; await DFIN ACK */
355 MPTCPS_FIN_WAIT_2 = 7, /* have closed, DFIN is acked */
356 MPTCPS_TIME_WAIT = 8, /* in 2*MSL quiet wait after close */
357 MPTCPS_TERMINATE = 9, /* terminal state */
358 } mptcp_state_t;
359
360 typedef u_int64_t mptcp_key_t;
361 typedef u_int32_t mptcp_token_t;
362 typedef u_int8_t mptcp_addr_id;
363
364
365 /* Address ID list */
366 struct mptcp_subf_auth_entry {
367 LIST_ENTRY(mptcp_subf_auth_entry) msae_next;
368 u_int32_t msae_laddr_rand; /* Local nonce */
369 u_int32_t msae_raddr_rand; /* Remote nonce */
370 mptcp_addr_id msae_laddr_id; /* Local addr ID */
371 mptcp_addr_id msae_raddr_id; /* Remote addr ID */
372 };
373
374 /*
375 * MPTCP Protocol Control Block
376 *
377 * Protected by per-MPTCP mpt_lock.
378 * Keep in sync with bsd/dev/dtrace/scripts/mptcp.d.
379 */
380 struct mptcb {
381 struct mptses *mpt_mpte; /* back ptr to MPTCP session */
382 mptcp_state_t mpt_state; /* MPTCP state */
383 u_int32_t mpt_flags; /* see flags below */
384 u_int32_t mpt_version; /* MPTCP proto version */
385 int mpt_softerror; /* error not yet reported */
386 /*
387 * Authentication and metadata invariants
388 */
389 mptcp_key_t mpt_localkey; /* in network byte order */
390 mptcp_key_t mpt_remotekey; /* in network byte order */
391 mptcp_token_t mpt_localtoken; /* HMAC SHA1 of local key */
392 mptcp_token_t mpt_remotetoken; /* HMAC SHA1 of remote key */
393
394 /*
395 * Timer vars for scenarios where subflow level acks arrive, but
396 * Data ACKs do not.
397 */
398 int mpt_rxtshift; /* num of consecutive retrans */
399 u_int32_t mpt_rxtstart; /* time at which rxt started */
400 u_int64_t mpt_rtseq; /* seq # being tracked */
401 u_int32_t mpt_timer_vals; /* timer related values */
402 u_int32_t mpt_timewait; /* timewait */
403 /*
404 * Sending side
405 */
406 u_int64_t mpt_snduna; /* DSN of last unacked byte */
407 u_int64_t mpt_sndnxt; /* DSN of next byte to send */
408 u_int64_t mpt_sndmax; /* DSN of max byte sent */
409 u_int64_t mpt_local_idsn; /* First byte's DSN */
410 u_int32_t mpt_sndwnd;
411 u_int64_t mpt_sndwl1;
412 u_int64_t mpt_sndwl2;
413 /*
414 * Receiving side
415 */
416 u_int64_t mpt_rcvnxt; /* Next expected DSN */
417 u_int64_t mpt_remote_idsn; /* Peer's IDSN */
418 u_int32_t mpt_rcvwnd;
419 LIST_HEAD(, mptcp_subf_auth_entry) mpt_subauth_list; /* address IDs */
420 /*
421 * Fastclose
422 */
423 u_int64_t mpt_dsn_at_csum_fail; /* MPFail Opt DSN */
424 u_int32_t mpt_ssn_at_csum_fail; /* MPFail Subflow Seq */
425 /*
426 * Zombie handling
427 */
428 #define MPT_GC_TICKS (30)
429 #define MPT_GC_TICKS_FAST (10)
430 int32_t mpt_gc_ticks; /* Used for zombie deletion */
431
432 u_int32_t mpt_notsent_lowat; /* TCP_NOTSENT_LOWAT support */
433 u_int32_t mpt_peer_version; /* Version from peer */
434
435 struct tsegqe_head mpt_segq;
436 u_int16_t mpt_reassqlen; /* length of reassembly queue */
437 };
438
439 /* valid values for mpt_flags (see also notes on mpts_flags above) */
440 #define MPTCPF_CHECKSUM 0x001 /* checksum DSS option */
441 #define MPTCPF_FALLBACK_TO_TCP 0x002 /* Fallback to TCP */
442 #define MPTCPF_JOIN_READY 0x004 /* Ready to start 2 or more subflows */
443 #define MPTCPF_RECVD_MPFAIL 0x008 /* Received MP_FAIL option */
444 #define MPTCPF_SND_64BITDSN 0x010 /* Send full 64-bit DSN */
445 #define MPTCPF_SND_64BITACK 0x020 /* Send 64-bit ACK response */
446 #define MPTCPF_RCVD_64BITACK 0x040 /* Received 64-bit Data ACK */
447 #define MPTCPF_POST_FALLBACK_SYNC 0x080 /* Post fallback resend data */
448 #define MPTCPF_FALLBACK_HEURISTIC 0x100 /* Send SYN without MP_CAPABLE due to heuristic */
449 #define MPTCPF_HEURISTIC_TRAC 0x200 /* Tracked this connection in the heuristics as a failure */
450 #define MPTCPF_REASS_INPROG 0x400 /* Reassembly is in progress */
451
452 #define MPTCPF_BITS \
453 "\020\1CHECKSUM\2FALLBACK_TO_TCP\3JOIN_READY\4RECVD_MPFAIL" \
454 "\5SND_64BITDSN\6SND_64BITACK\7RCVD_64BITACK\10POST_FALLBACK_SYNC" \
455 "\11FALLBACK_HEURISTIC\12HEURISTIC_TRAC\13REASS_INPROG"
456
457 /* valid values for mpt_timer_vals */
458 #define MPTT_REXMT 0x01 /* Starting Retransmit Timer */
459 #define MPTT_TW 0x02 /* Starting Timewait Timer */
460 #define MPTT_FASTCLOSE 0x04 /* Starting Fastclose wait timer */
461
462 /* events for close FSM */
463 #define MPCE_CLOSE 0x1
464 #define MPCE_RECV_DATA_ACK 0x2
465 #define MPCE_RECV_DATA_FIN 0x4
466
467 /* mptcb manipulation */
468 static inline struct mptcb *tptomptp(struct tcpcb *tp)
469 {
470 return (tp->t_mptcb);
471 }
472
473 /*
474 * MPTCP control block and state structures are allocated along with
475 * the MP protocol control block; the folllowing represents the layout.
476 */
477 struct mpp_mtp {
478 struct mppcb mpp; /* Multipath PCB */
479 struct mptses mpp_ses; /* MPTCP session */
480 struct mptcb mtcb; /* MPTCP PCB */
481 };
482
483 #ifdef SYSCTL_DECL
484 SYSCTL_DECL(_net_inet_mptcp);
485 #endif /* SYSCTL_DECL */
486
487 extern struct mppcbinfo mtcbinfo;
488 extern struct pr_usrreqs mptcp_usrreqs;
489 extern os_log_t mptcp_log_handle;
490
491 /* Encryption algorithm related definitions */
492 #define SHA1_TRUNCATED 8
493
494 /* MPTCP Debugging Levels */
495 #define MPTCP_LOGLVL_NONE 0x0 /* No debug logging */
496 #define MPTCP_LOGLVL_ERR 0x1 /* Errors in execution are logged */
497 #define MPTCP_LOGLVL_LOG 0x2 /* Important logs */
498 #define MPTCP_LOGLVL_VERBOSE 0x4 /* Verbose logs */
499
500 /* MPTCP sub-components for debug logging */
501 #define MPTCP_NO_DBG 0x00 /* No areas are logged */
502 #define MPTCP_STATE_DBG 0x01 /* State machine logging */
503 #define MPTCP_SOCKET_DBG 0x02 /* Socket call logging */
504 #define MPTCP_SENDER_DBG 0x04 /* Sender side logging */
505 #define MPTCP_RECEIVER_DBG 0x08 /* Receiver logging */
506 #define MPTCP_EVENTS_DBG 0x10 /* Subflow events logging */
507
508 /* Mask to obtain 32-bit portion of data sequence number */
509 #define MPTCP_DATASEQ_LOW32_MASK (0xffffffff)
510 #define MPTCP_DATASEQ_LOW32(seq) (seq & MPTCP_DATASEQ_LOW32_MASK)
511
512 /* Mask to obtain upper 32-bit portion of data sequence number */
513 #define MPTCP_DATASEQ_HIGH32_MASK (0xffffffff00000000)
514 #define MPTCP_DATASEQ_HIGH32(seq) (seq & MPTCP_DATASEQ_HIGH32_MASK)
515
516 /* Mask to obtain 32-bit portion of data ack */
517 #define MPTCP_DATAACK_LOW32_MASK (0xffffffff)
518 #define MPTCP_DATAACK_LOW32(ack) (ack & MPTCP_DATAACK_LOW32_MASK)
519
520 /* Mask to obtain upper 32-bit portion of data ack */
521 #define MPTCP_DATAACK_HIGH32_MASK (0xffffffff00000000)
522 #define MPTCP_DATAACK_HIGH32(ack) (ack & MPTCP_DATAACK_HIGH32_MASK)
523
524 /*
525 * x is the 64-bit data sequence number, y the 32-bit data seq number to be
526 * extended. z is y extended to the appropriate 64-bit value.
527 * This algorithm is based on the fact that subflow level window sizes are
528 * at the maximum 2**30 (in reality, they are a lot lesser). A high throughput
529 * application sending on a large number of subflows can in theory have very
530 * large MPTCP level send and receive windows. In which case, 64 bit DSNs
531 * must be sent in place of 32 bit DSNs on wire. For us, with 2 subflows at
532 * 512K each, sequence wraparound detection can be done by checking whether
533 * the 32-bit value obtained on wire is 2**31 bytes apart from the stored
534 * lower 32-bits of the Data Sequence Number. Bogus DSNs are dropped by
535 * comparing against rwnd. Bogus DSNs within rwnd cannot be protected against
536 * and are as weak as bogus TCP sequence numbers.
537 */
538 #define MPTCP_EXTEND_DSN(x, y, z) { \
539 if ((MPTCP_DATASEQ_LOW32(x) > y) && \
540 ((((u_int32_t)MPTCP_DATASEQ_LOW32(x)) - (u_int32_t)y) >= \
541 (u_int32_t)(1 << 31))) { \
542 /* \
543 * y wrapped around and x and y are 2**31 bytes apart \
544 */ \
545 z = MPTCP_DATASEQ_HIGH32(x) + 0x100000000; \
546 z |= y; \
547 } else if ((MPTCP_DATASEQ_LOW32(x) < y) && \
548 (((u_int32_t)y - \
549 ((u_int32_t)MPTCP_DATASEQ_LOW32(x))) >= \
550 (u_int32_t)(1 << 31))) { \
551 /* \
552 * x wrapped around and x and y are 2**31 apart \
553 */ \
554 z = MPTCP_DATASEQ_HIGH32(x) - 0x100000000; \
555 z |= y; \
556 } else { \
557 z = MPTCP_DATASEQ_HIGH32(x) | y; \
558 } \
559 }
560
561 #define mptcplog(x, y, z) do { \
562 if ((mptcp_dbg_area & y) && (mptcp_dbg_level & z)) \
563 log x; \
564 } while (0)
565
566 extern int mptcp_enable; /* Multipath TCP */
567 extern int mptcp_mpcap_retries; /* Multipath TCP retries */
568 extern int mptcp_join_retries; /* Multipath TCP Join retries */
569 extern int mptcp_dss_csum; /* Multipath DSS Option checksum */
570 extern int mptcp_fail_thresh; /* Multipath failover thresh of retransmits */
571 extern int mptcp_subflow_keeptime; /* Multipath subflow TCP_KEEPALIVE opt */
572 extern uint32_t mptcp_dbg_level; /* Multipath TCP debugging level */
573 extern uint32_t mptcp_dbg_area; /* Multipath TCP debugging area */
574 extern int mptcp_developer_mode; /* Allow aggregation mode */
575
576 extern int tcp_jack_rxmt; /* Join ACK retransmission value in msecs */
577
578 __BEGIN_DECLS
579 extern void mptcp_init(struct protosw *, struct domain *);
580 extern int mptcp_ctloutput(struct socket *, struct sockopt *);
581 extern int mptcp_sescreate(struct mppcb *);
582 extern void mptcp_check_subflows_and_add(struct mptses *);
583 extern int mptcp_get_statsindex(struct mptcp_itf_stats *stats,
584 const struct mptsub *mpts);
585 extern void mptcpstats_inc_switch(struct mptses *, const struct mptsub *);
586 extern struct mptses *mptcp_drop(struct mptses *, struct mptcb *, int);
587 extern struct mptses *mptcp_close(struct mptses *, struct mptcb *);
588 extern int mptcp_lock(struct socket *, int, void *);
589 extern int mptcp_unlock(struct socket *, int, void *);
590 extern lck_mtx_t *mptcp_getlock(struct socket *, int);
591 extern void mptcp_subflow_workloop(struct mptses *);
592
593 extern void mptcp_sched_create_subflows(struct mptses *);
594
595 extern void mptcp_finish_usrclosed(struct mptses *mpte);
596 extern struct mptopt *mptcp_sopt_alloc(int);
597 extern const char *mptcp_sopt2str(int, int);
598 extern void mptcp_sopt_free(struct mptopt *);
599 extern void mptcp_sopt_insert(struct mptses *, struct mptopt *);
600 extern void mptcp_sopt_remove(struct mptses *, struct mptopt *);
601 extern struct mptopt *mptcp_sopt_find(struct mptses *, struct sockopt *);
602
603 extern int mptcp_subflow_add(struct mptses *, struct sockaddr *,
604 struct sockaddr *, uint32_t, sae_connid_t *);
605 extern void mptcpstats_update(struct mptcp_itf_stats *stats, struct mptsub *mpts);
606 extern void mptcp_subflow_del(struct mptses *, struct mptsub *);
607
608 #define MPTCP_SUBOUT_PROBING 0x01
609 extern int mptcp_subflow_output(struct mptses *mpte, struct mptsub *mpts, int flags);
610 extern void mptcp_clean_reinjectq(struct mptses *mpte);
611 extern void mptcp_subflow_shutdown(struct mptses *, struct mptsub *);
612 extern void mptcp_subflow_disconnect(struct mptses *, struct mptsub *);
613 extern int mptcp_subflow_sosetopt(struct mptses *, struct mptsub *,
614 struct mptopt *);
615 extern int mptcp_subflow_sogetopt(struct mptses *, struct socket *,
616 struct mptopt *);
617
618 extern void mptcp_input(struct mptses *, struct mbuf *);
619 extern boolean_t mptcp_can_send_more(struct mptcb *mp_tp, boolean_t ignore_reinject);
620 extern int mptcp_output(struct mptses *);
621 extern void mptcp_close_fsm(struct mptcb *, uint32_t);
622
623 extern void mptcp_hmac_sha1(mptcp_key_t, mptcp_key_t, u_int32_t, u_int32_t,
624 u_char*);
625 extern void mptcp_get_hmac(mptcp_addr_id, struct mptcb *, u_char *);
626 extern void mptcp_get_rands(mptcp_addr_id, struct mptcb *, u_int32_t *,
627 u_int32_t *);
628 extern void mptcp_set_raddr_rand(mptcp_addr_id, struct mptcb *, mptcp_addr_id,
629 u_int32_t);
630 extern int mptcp_init_remote_parms(struct mptcb *);
631 extern boolean_t mptcp_ok_to_keepalive(struct mptcb *);
632 extern void mptcp_insert_dsn(struct mppcb *, struct mbuf *);
633 extern void mptcp_output_getm_dsnmap32(struct socket *so, int off,
634 uint32_t *dsn, uint32_t *relseq,
635 uint16_t *data_len, uint16_t *dss_csum);
636 extern void mptcp_output_getm_dsnmap64(struct socket *so, int off,
637 uint64_t *dsn, uint32_t *relseq,
638 uint16_t *data_len, uint16_t *dss_csum);
639 extern void mptcp_act_on_txfail(struct socket *);
640 extern struct mptsub *mptcp_get_subflow(struct mptses *, struct mptsub *,
641 struct mptsub **);
642 extern int mptcp_get_map_for_dsn(struct socket *, u_int64_t, u_int32_t *);
643 extern int32_t mptcp_adj_sendlen(struct socket *so, int32_t off);
644 extern void mptcp_sbrcv_grow(struct mptcb *mp_tp);
645 extern int32_t mptcp_sbspace(struct mptcb *);
646 extern void mptcp_notify_mpready(struct socket *);
647 extern void mptcp_notify_mpfail(struct socket *);
648 extern void mptcp_notify_close(struct socket *);
649 extern boolean_t mptcp_no_rto_spike(struct socket*);
650 extern int mptcp_set_notsent_lowat(struct mptses *mpte, int optval);
651 extern u_int32_t mptcp_get_notsent_lowat(struct mptses *mpte);
652 extern int mptcp_notsent_lowat_check(struct socket *so);
653 extern void mptcp_ask_symptoms(struct mptses *mpte);
654 extern void mptcp_control_register(void);
655 extern int mptcp_is_wifi_unusable(void);
656 extern void mptcp_ask_for_nat64(struct ifnet *ifp);
657 extern void mptcp_session_necp_cb(void *, int, struct necp_client_flow *);
658 extern void mptcp_set_restrictions(struct socket *mp_so);
659 extern int mptcp_freeq(struct mptcb *);
660 extern void mptcp_set_cellicon(struct mptses *mpte);
661 extern void mptcp_unset_cellicon(void);
662 extern void mptcp_reset_rexmit_state(struct tcpcb *tp);
663 extern void mptcp_reset_keepalive(struct tcpcb *tp);
664 extern int mptcp_validate_csum(struct tcpcb *tp, struct mbuf *m, uint64_t dsn,
665 uint32_t sseq, uint16_t dlen, uint16_t csum,
666 uint16_t dfin);
667 __END_DECLS
668
669 #endif /* BSD_KERNEL_PRIVATE */
670 #ifdef PRIVATE
671
672 typedef struct mptcp_flow {
673 size_t flow_len;
674 size_t flow_tcpci_offset;
675 uint32_t flow_flags;
676 sae_connid_t flow_cid;
677 struct sockaddr_storage flow_src;
678 struct sockaddr_storage flow_dst;
679 uint32_t flow_relseq; /* last subflow rel seq# */
680 int32_t flow_soerror; /* subflow level error */
681 uint32_t flow_probecnt; /* number of probes sent */
682 conninfo_tcp_t flow_ci; /* must be the last field */
683 } mptcp_flow_t;
684
685 typedef struct conninfo_mptcp {
686 size_t mptcpci_len;
687 size_t mptcpci_flow_offset; /* offsetof first flow */
688 size_t mptcpci_nflows; /* number of subflows */
689 uint32_t mptcpci_state; /* MPTCP level state */
690 uint32_t mptcpci_mpte_flags; /* Session flags */
691 uint32_t mptcpci_flags; /* MPTCB flags */
692 uint32_t mptcpci_ltoken; /* local token */
693 uint32_t mptcpci_rtoken; /* remote token */
694 uint32_t mptcpci_notsent_lowat; /* NOTSENT_LOWAT */
695
696 /* Send side */
697 uint64_t mptcpci_snduna; /* DSN of last unacked byte */
698 uint64_t mptcpci_sndnxt; /* DSN of next byte to send */
699 uint64_t mptcpci_sndmax; /* DSN of max byte sent */
700 uint64_t mptcpci_lidsn; /* Local IDSN */
701 uint32_t mptcpci_sndwnd; /* Send window snapshot */
702
703 /* Receive side */
704 uint64_t mptcpci_rcvnxt; /* Next expected DSN */
705 uint64_t mptcpci_rcvatmark; /* Session level rcvnxt */
706 uint64_t mptcpci_ridsn; /* Peer's IDSN */
707 uint32_t mptcpci_rcvwnd; /* Receive window */
708
709 uint8_t mptcpci_mpte_addrid; /* last addr id */
710
711 mptcp_flow_t mptcpci_flows[1];
712 } conninfo_mptcp_t;
713
714 /* Use SymptomsD notifications of wifi and cell status in subflow selection */
715 #define MPTCP_KERN_CTL_NAME "com.apple.network.advisory"
716 typedef struct symptoms_advisory {
717 union {
718 uint32_t sa_nwk_status_int;
719 struct {
720 union {
721 #define SYMPTOMS_ADVISORY_NOCOMMENT 0x0000
722 #define SYMPTOMS_ADVISORY_USEAPP 0xFFFF /* Very ugly workaround to avoid breaking backwards compatibility - ToDo: Fix it in +1 */
723 uint16_t sa_nwk_status;
724 struct {
725 #define SYMPTOMS_ADVISORY_WIFI_BAD 0x01
726 #define SYMPTOMS_ADVISORY_WIFI_OK 0x02
727 uint8_t sa_wifi_status;
728 #define SYMPTOMS_ADVISORY_CELL_BAD 0x01
729 #define SYMPTOMS_ADVISORY_CELL_OK 0x02
730 uint8_t sa_cell_status;
731 };
732 };
733 uint16_t sa_unused;
734 };
735 };
736 } symptoms_advisory_t;
737
738 struct mptcp_symptoms_ask_uuid {
739 uint32_t cmd;
740 #define MPTCP_SYMPTOMS_ASK_UUID 1
741 uuid_t uuid;
742 uint32_t priority;
743 #define MPTCP_SYMPTOMS_UNKNOWN 0
744 #define MPTCP_SYMPTOMS_BACKGROUND 1
745 #define MPTCP_SYMPTOMS_FOREGROUND 2
746 };
747
748 struct kev_mptcp_data {
749 int value;
750 };
751
752 #endif /* PRIVATE */
753 #endif /* _NETINET_MPTCP_VAR_H_ */