1 // SPDX-License-Identifier: GPL-2.0 2 /* Multipath TCP 3 * 4 * Copyright (c) 2020, Red Hat, Inc. 5 */ 6 7 #define pr_fmt(fmt) "MPTCP: " fmt 8 9 #include <linux/inet.h> 10 #include <linux/kernel.h> 11 #include <net/inet_common.h> 12 #include <net/netns/generic.h> 13 #include <net/mptcp.h> 14 15 #include "protocol.h" 16 #include "mib.h" 17 #include "mptcp_pm_gen.h" 18 19 static int pm_nl_pernet_id; 20 21 struct mptcp_pm_add_entry { 22 struct list_head list; 23 struct mptcp_addr_info addr; 24 u8 retrans_times; 25 struct timer_list add_timer; 26 struct mptcp_sock *sock; 27 }; 28 29 struct pm_nl_pernet { 30 /* protects pernet updates */ 31 spinlock_t lock; 32 struct list_head local_addr_list; 33 unsigned int addrs; 34 unsigned int stale_loss_cnt; 35 unsigned int add_addr_signal_max; 36 unsigned int add_addr_accept_max; 37 unsigned int local_addr_max; 38 unsigned int subflows_max; 39 unsigned int next_id; 40 DECLARE_BITMAP(id_bitmap, MPTCP_PM_MAX_ADDR_ID + 1); 41 }; 42 43 #define MPTCP_PM_ADDR_MAX 8 44 #define ADD_ADDR_RETRANS_MAX 3 45 46 static struct pm_nl_pernet *pm_nl_get_pernet(const struct net *net) 47 { 48 return net_generic(net, pm_nl_pernet_id); 49 } 50 51 static struct pm_nl_pernet * 52 pm_nl_get_pernet_from_msk(const struct mptcp_sock *msk) 53 { 54 return pm_nl_get_pernet(sock_net((struct sock *)msk)); 55 } 56 57 bool mptcp_addresses_equal(const struct mptcp_addr_info *a, 58 const struct mptcp_addr_info *b, bool use_port) 59 { 60 bool addr_equals = false; 61 62 if (a->family == b->family) { 63 if (a->family == AF_INET) 64 addr_equals = a->addr.s_addr == b->addr.s_addr; 65 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 66 else 67 addr_equals = !ipv6_addr_cmp(&a->addr6, &b->addr6); 68 } else if (a->family == AF_INET) { 69 if (ipv6_addr_v4mapped(&b->addr6)) 70 addr_equals = a->addr.s_addr == b->addr6.s6_addr32[3]; 71 } else if (b->family == AF_INET) { 72 if (ipv6_addr_v4mapped(&a->addr6)) 73 addr_equals = a->addr6.s6_addr32[3] == b->addr.s_addr; 74 #endif 75 } 76 77 if (!addr_equals) 78 return false; 79 if (!use_port) 80 return true; 81 82 return a->port == b->port; 83 } 84 85 void mptcp_local_address(const struct sock_common *skc, struct mptcp_addr_info *addr) 86 { 87 addr->family = skc->skc_family; 88 addr->port = htons(skc->skc_num); 89 if (addr->family == AF_INET) 90 addr->addr.s_addr = skc->skc_rcv_saddr; 91 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 92 else if (addr->family == AF_INET6) 93 addr->addr6 = skc->skc_v6_rcv_saddr; 94 #endif 95 } 96 97 static void remote_address(const struct sock_common *skc, 98 struct mptcp_addr_info *addr) 99 { 100 addr->family = skc->skc_family; 101 addr->port = skc->skc_dport; 102 if (addr->family == AF_INET) 103 addr->addr.s_addr = skc->skc_daddr; 104 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 105 else if (addr->family == AF_INET6) 106 addr->addr6 = skc->skc_v6_daddr; 107 #endif 108 } 109 110 bool mptcp_lookup_subflow_by_saddr(const struct list_head *list, 111 const struct mptcp_addr_info *saddr) 112 { 113 struct mptcp_subflow_context *subflow; 114 struct mptcp_addr_info cur; 115 struct sock_common *skc; 116 117 list_for_each_entry(subflow, list, node) { 118 skc = (struct sock_common *)mptcp_subflow_tcp_sock(subflow); 119 120 mptcp_local_address(skc, &cur); 121 if (mptcp_addresses_equal(&cur, saddr, saddr->port)) 122 return true; 123 } 124 125 return false; 126 } 127 128 static bool lookup_subflow_by_daddr(const struct list_head *list, 129 const struct mptcp_addr_info *daddr) 130 { 131 struct mptcp_subflow_context *subflow; 132 struct mptcp_addr_info cur; 133 134 list_for_each_entry(subflow, list, node) { 135 struct sock *ssk = mptcp_subflow_tcp_sock(subflow); 136 137 if (!((1 << inet_sk_state_load(ssk)) & 138 (TCPF_ESTABLISHED | TCPF_SYN_SENT | TCPF_SYN_RECV))) 139 continue; 140 141 remote_address((struct sock_common *)ssk, &cur); 142 if (mptcp_addresses_equal(&cur, daddr, daddr->port)) 143 return true; 144 } 145 146 return false; 147 } 148 149 static bool 150 select_local_address(const struct pm_nl_pernet *pernet, 151 const struct mptcp_sock *msk, 152 struct mptcp_pm_local *new_local) 153 { 154 struct mptcp_pm_addr_entry *entry; 155 bool found = false; 156 157 msk_owned_by_me(msk); 158 159 rcu_read_lock(); 160 list_for_each_entry_rcu(entry, &pernet->local_addr_list, list) { 161 if (!(entry->flags & MPTCP_PM_ADDR_FLAG_SUBFLOW)) 162 continue; 163 164 if (!test_bit(entry->addr.id, msk->pm.id_avail_bitmap)) 165 continue; 166 167 new_local->addr = entry->addr; 168 new_local->flags = entry->flags; 169 new_local->ifindex = entry->ifindex; 170 found = true; 171 break; 172 } 173 rcu_read_unlock(); 174 175 return found; 176 } 177 178 static bool 179 select_signal_address(struct pm_nl_pernet *pernet, const struct mptcp_sock *msk, 180 struct mptcp_pm_local *new_local) 181 { 182 struct mptcp_pm_addr_entry *entry; 183 bool found = false; 184 185 rcu_read_lock(); 186 /* do not keep any additional per socket state, just signal 187 * the address list in order. 188 * Note: removal from the local address list during the msk life-cycle 189 * can lead to additional addresses not being announced. 190 */ 191 list_for_each_entry_rcu(entry, &pernet->local_addr_list, list) { 192 if (!test_bit(entry->addr.id, msk->pm.id_avail_bitmap)) 193 continue; 194 195 if (!(entry->flags & MPTCP_PM_ADDR_FLAG_SIGNAL)) 196 continue; 197 198 new_local->addr = entry->addr; 199 new_local->flags = entry->flags; 200 new_local->ifindex = entry->ifindex; 201 found = true; 202 break; 203 } 204 rcu_read_unlock(); 205 206 return found; 207 } 208 209 unsigned int mptcp_pm_get_add_addr_signal_max(const struct mptcp_sock *msk) 210 { 211 const struct pm_nl_pernet *pernet = pm_nl_get_pernet_from_msk(msk); 212 213 return READ_ONCE(pernet->add_addr_signal_max); 214 } 215 EXPORT_SYMBOL_GPL(mptcp_pm_get_add_addr_signal_max); 216 217 unsigned int mptcp_pm_get_add_addr_accept_max(const struct mptcp_sock *msk) 218 { 219 struct pm_nl_pernet *pernet = pm_nl_get_pernet_from_msk(msk); 220 221 return READ_ONCE(pernet->add_addr_accept_max); 222 } 223 EXPORT_SYMBOL_GPL(mptcp_pm_get_add_addr_accept_max); 224 225 unsigned int mptcp_pm_get_subflows_max(const struct mptcp_sock *msk) 226 { 227 struct pm_nl_pernet *pernet = pm_nl_get_pernet_from_msk(msk); 228 229 return READ_ONCE(pernet->subflows_max); 230 } 231 EXPORT_SYMBOL_GPL(mptcp_pm_get_subflows_max); 232 233 unsigned int mptcp_pm_get_local_addr_max(const struct mptcp_sock *msk) 234 { 235 struct pm_nl_pernet *pernet = pm_nl_get_pernet_from_msk(msk); 236 237 return READ_ONCE(pernet->local_addr_max); 238 } 239 EXPORT_SYMBOL_GPL(mptcp_pm_get_local_addr_max); 240 241 bool mptcp_pm_nl_check_work_pending(struct mptcp_sock *msk) 242 { 243 struct pm_nl_pernet *pernet = pm_nl_get_pernet_from_msk(msk); 244 245 if (msk->pm.subflows == mptcp_pm_get_subflows_max(msk) || 246 (find_next_and_bit(pernet->id_bitmap, msk->pm.id_avail_bitmap, 247 MPTCP_PM_MAX_ADDR_ID + 1, 0) == MPTCP_PM_MAX_ADDR_ID + 1)) { 248 WRITE_ONCE(msk->pm.work_pending, false); 249 return false; 250 } 251 return true; 252 } 253 254 struct mptcp_pm_add_entry * 255 mptcp_lookup_anno_list_by_saddr(const struct mptcp_sock *msk, 256 const struct mptcp_addr_info *addr) 257 { 258 struct mptcp_pm_add_entry *entry; 259 260 lockdep_assert_held(&msk->pm.lock); 261 262 list_for_each_entry(entry, &msk->pm.anno_list, list) { 263 if (mptcp_addresses_equal(&entry->addr, addr, true)) 264 return entry; 265 } 266 267 return NULL; 268 } 269 270 bool mptcp_pm_sport_in_anno_list(struct mptcp_sock *msk, const struct sock *sk) 271 { 272 struct mptcp_pm_add_entry *entry; 273 struct mptcp_addr_info saddr; 274 bool ret = false; 275 276 mptcp_local_address((struct sock_common *)sk, &saddr); 277 278 spin_lock_bh(&msk->pm.lock); 279 list_for_each_entry(entry, &msk->pm.anno_list, list) { 280 if (mptcp_addresses_equal(&entry->addr, &saddr, true)) { 281 ret = true; 282 goto out; 283 } 284 } 285 286 out: 287 spin_unlock_bh(&msk->pm.lock); 288 return ret; 289 } 290 291 static void mptcp_pm_add_timer(struct timer_list *timer) 292 { 293 struct mptcp_pm_add_entry *entry = from_timer(entry, timer, add_timer); 294 struct mptcp_sock *msk = entry->sock; 295 struct sock *sk = (struct sock *)msk; 296 297 pr_debug("msk=%p\n", msk); 298 299 if (!msk) 300 return; 301 302 if (inet_sk_state_load(sk) == TCP_CLOSE) 303 return; 304 305 if (!entry->addr.id) 306 return; 307 308 if (mptcp_pm_should_add_signal_addr(msk)) { 309 sk_reset_timer(sk, timer, jiffies + TCP_RTO_MAX / 8); 310 goto out; 311 } 312 313 spin_lock_bh(&msk->pm.lock); 314 315 if (!mptcp_pm_should_add_signal_addr(msk)) { 316 pr_debug("retransmit ADD_ADDR id=%d\n", entry->addr.id); 317 mptcp_pm_announce_addr(msk, &entry->addr, false); 318 mptcp_pm_add_addr_send_ack(msk); 319 entry->retrans_times++; 320 } 321 322 if (entry->retrans_times < ADD_ADDR_RETRANS_MAX) 323 sk_reset_timer(sk, timer, 324 jiffies + mptcp_get_add_addr_timeout(sock_net(sk))); 325 326 spin_unlock_bh(&msk->pm.lock); 327 328 if (entry->retrans_times == ADD_ADDR_RETRANS_MAX) 329 mptcp_pm_subflow_established(msk); 330 331 out: 332 __sock_put(sk); 333 } 334 335 struct mptcp_pm_add_entry * 336 mptcp_pm_del_add_timer(struct mptcp_sock *msk, 337 const struct mptcp_addr_info *addr, bool check_id) 338 { 339 struct mptcp_pm_add_entry *entry; 340 struct sock *sk = (struct sock *)msk; 341 struct timer_list *add_timer = NULL; 342 343 spin_lock_bh(&msk->pm.lock); 344 entry = mptcp_lookup_anno_list_by_saddr(msk, addr); 345 if (entry && (!check_id || entry->addr.id == addr->id)) { 346 entry->retrans_times = ADD_ADDR_RETRANS_MAX; 347 add_timer = &entry->add_timer; 348 } 349 if (!check_id && entry) 350 list_del(&entry->list); 351 spin_unlock_bh(&msk->pm.lock); 352 353 /* no lock, because sk_stop_timer_sync() is calling del_timer_sync() */ 354 if (add_timer) 355 sk_stop_timer_sync(sk, add_timer); 356 357 return entry; 358 } 359 360 bool mptcp_pm_alloc_anno_list(struct mptcp_sock *msk, 361 const struct mptcp_addr_info *addr) 362 { 363 struct mptcp_pm_add_entry *add_entry = NULL; 364 struct sock *sk = (struct sock *)msk; 365 struct net *net = sock_net(sk); 366 367 lockdep_assert_held(&msk->pm.lock); 368 369 add_entry = mptcp_lookup_anno_list_by_saddr(msk, addr); 370 371 if (add_entry) { 372 if (WARN_ON_ONCE(mptcp_pm_is_kernel(msk))) 373 return false; 374 375 sk_reset_timer(sk, &add_entry->add_timer, 376 jiffies + mptcp_get_add_addr_timeout(net)); 377 return true; 378 } 379 380 add_entry = kmalloc(sizeof(*add_entry), GFP_ATOMIC); 381 if (!add_entry) 382 return false; 383 384 list_add(&add_entry->list, &msk->pm.anno_list); 385 386 add_entry->addr = *addr; 387 add_entry->sock = msk; 388 add_entry->retrans_times = 0; 389 390 timer_setup(&add_entry->add_timer, mptcp_pm_add_timer, 0); 391 sk_reset_timer(sk, &add_entry->add_timer, 392 jiffies + mptcp_get_add_addr_timeout(net)); 393 394 return true; 395 } 396 397 void mptcp_pm_free_anno_list(struct mptcp_sock *msk) 398 { 399 struct mptcp_pm_add_entry *entry, *tmp; 400 struct sock *sk = (struct sock *)msk; 401 LIST_HEAD(free_list); 402 403 pr_debug("msk=%p\n", msk); 404 405 spin_lock_bh(&msk->pm.lock); 406 list_splice_init(&msk->pm.anno_list, &free_list); 407 spin_unlock_bh(&msk->pm.lock); 408 409 list_for_each_entry_safe(entry, tmp, &free_list, list) { 410 sk_stop_timer_sync(sk, &entry->add_timer); 411 kfree(entry); 412 } 413 } 414 415 /* Fill all the remote addresses into the array addrs[], 416 * and return the array size. 417 */ 418 static unsigned int fill_remote_addresses_vec(struct mptcp_sock *msk, 419 struct mptcp_addr_info *local, 420 bool fullmesh, 421 struct mptcp_addr_info *addrs) 422 { 423 bool deny_id0 = READ_ONCE(msk->pm.remote_deny_join_id0); 424 struct sock *sk = (struct sock *)msk, *ssk; 425 struct mptcp_subflow_context *subflow; 426 struct mptcp_addr_info remote = { 0 }; 427 unsigned int subflows_max; 428 int i = 0; 429 430 subflows_max = mptcp_pm_get_subflows_max(msk); 431 remote_address((struct sock_common *)sk, &remote); 432 433 /* Non-fullmesh endpoint, fill in the single entry 434 * corresponding to the primary MPC subflow remote address 435 */ 436 if (!fullmesh) { 437 if (deny_id0) 438 return 0; 439 440 if (!mptcp_pm_addr_families_match(sk, local, &remote)) 441 return 0; 442 443 msk->pm.subflows++; 444 addrs[i++] = remote; 445 } else { 446 DECLARE_BITMAP(unavail_id, MPTCP_PM_MAX_ADDR_ID + 1); 447 448 /* Forbid creation of new subflows matching existing 449 * ones, possibly already created by incoming ADD_ADDR 450 */ 451 bitmap_zero(unavail_id, MPTCP_PM_MAX_ADDR_ID + 1); 452 mptcp_for_each_subflow(msk, subflow) 453 if (READ_ONCE(subflow->local_id) == local->id) 454 __set_bit(subflow->remote_id, unavail_id); 455 456 mptcp_for_each_subflow(msk, subflow) { 457 ssk = mptcp_subflow_tcp_sock(subflow); 458 remote_address((struct sock_common *)ssk, &addrs[i]); 459 addrs[i].id = READ_ONCE(subflow->remote_id); 460 if (deny_id0 && !addrs[i].id) 461 continue; 462 463 if (test_bit(addrs[i].id, unavail_id)) 464 continue; 465 466 if (!mptcp_pm_addr_families_match(sk, local, &addrs[i])) 467 continue; 468 469 if (msk->pm.subflows < subflows_max) { 470 /* forbid creating multiple address towards 471 * this id 472 */ 473 __set_bit(addrs[i].id, unavail_id); 474 msk->pm.subflows++; 475 i++; 476 } 477 } 478 } 479 480 return i; 481 } 482 483 static void __mptcp_pm_send_ack(struct mptcp_sock *msk, struct mptcp_subflow_context *subflow, 484 bool prio, bool backup) 485 { 486 struct sock *ssk = mptcp_subflow_tcp_sock(subflow); 487 bool slow; 488 489 pr_debug("send ack for %s\n", 490 prio ? "mp_prio" : (mptcp_pm_should_add_signal(msk) ? "add_addr" : "rm_addr")); 491 492 slow = lock_sock_fast(ssk); 493 if (prio) { 494 subflow->send_mp_prio = 1; 495 subflow->request_bkup = backup; 496 } 497 498 __mptcp_subflow_send_ack(ssk); 499 unlock_sock_fast(ssk, slow); 500 } 501 502 static void mptcp_pm_send_ack(struct mptcp_sock *msk, struct mptcp_subflow_context *subflow, 503 bool prio, bool backup) 504 { 505 spin_unlock_bh(&msk->pm.lock); 506 __mptcp_pm_send_ack(msk, subflow, prio, backup); 507 spin_lock_bh(&msk->pm.lock); 508 } 509 510 static struct mptcp_pm_addr_entry * 511 __lookup_addr_by_id(struct pm_nl_pernet *pernet, unsigned int id) 512 { 513 struct mptcp_pm_addr_entry *entry; 514 515 list_for_each_entry_rcu(entry, &pernet->local_addr_list, list, 516 lockdep_is_held(&pernet->lock)) { 517 if (entry->addr.id == id) 518 return entry; 519 } 520 return NULL; 521 } 522 523 static struct mptcp_pm_addr_entry * 524 __lookup_addr(struct pm_nl_pernet *pernet, const struct mptcp_addr_info *info) 525 { 526 struct mptcp_pm_addr_entry *entry; 527 528 list_for_each_entry_rcu(entry, &pernet->local_addr_list, list, 529 lockdep_is_held(&pernet->lock)) { 530 if (mptcp_addresses_equal(&entry->addr, info, entry->addr.port)) 531 return entry; 532 } 533 return NULL; 534 } 535 536 static void mptcp_pm_create_subflow_or_signal_addr(struct mptcp_sock *msk) 537 { 538 struct sock *sk = (struct sock *)msk; 539 unsigned int add_addr_signal_max; 540 bool signal_and_subflow = false; 541 unsigned int local_addr_max; 542 struct pm_nl_pernet *pernet; 543 struct mptcp_pm_local local; 544 unsigned int subflows_max; 545 546 pernet = pm_nl_get_pernet(sock_net(sk)); 547 548 add_addr_signal_max = mptcp_pm_get_add_addr_signal_max(msk); 549 local_addr_max = mptcp_pm_get_local_addr_max(msk); 550 subflows_max = mptcp_pm_get_subflows_max(msk); 551 552 /* do lazy endpoint usage accounting for the MPC subflows */ 553 if (unlikely(!(msk->pm.status & BIT(MPTCP_PM_MPC_ENDPOINT_ACCOUNTED))) && msk->first) { 554 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(msk->first); 555 struct mptcp_pm_addr_entry *entry; 556 struct mptcp_addr_info mpc_addr; 557 bool backup = false; 558 559 mptcp_local_address((struct sock_common *)msk->first, &mpc_addr); 560 rcu_read_lock(); 561 entry = __lookup_addr(pernet, &mpc_addr); 562 if (entry) { 563 __clear_bit(entry->addr.id, msk->pm.id_avail_bitmap); 564 msk->mpc_endpoint_id = entry->addr.id; 565 backup = !!(entry->flags & MPTCP_PM_ADDR_FLAG_BACKUP); 566 } 567 rcu_read_unlock(); 568 569 if (backup) 570 mptcp_pm_send_ack(msk, subflow, true, backup); 571 572 msk->pm.status |= BIT(MPTCP_PM_MPC_ENDPOINT_ACCOUNTED); 573 } 574 575 pr_debug("local %d:%d signal %d:%d subflows %d:%d\n", 576 msk->pm.local_addr_used, local_addr_max, 577 msk->pm.add_addr_signaled, add_addr_signal_max, 578 msk->pm.subflows, subflows_max); 579 580 /* check first for announce */ 581 if (msk->pm.add_addr_signaled < add_addr_signal_max) { 582 /* due to racing events on both ends we can reach here while 583 * previous add address is still running: if we invoke now 584 * mptcp_pm_announce_addr(), that will fail and the 585 * corresponding id will be marked as used. 586 * Instead let the PM machinery reschedule us when the 587 * current address announce will be completed. 588 */ 589 if (msk->pm.addr_signal & BIT(MPTCP_ADD_ADDR_SIGNAL)) 590 return; 591 592 if (!select_signal_address(pernet, msk, &local)) 593 goto subflow; 594 595 /* If the alloc fails, we are on memory pressure, not worth 596 * continuing, and trying to create subflows. 597 */ 598 if (!mptcp_pm_alloc_anno_list(msk, &local.addr)) 599 return; 600 601 __clear_bit(local.addr.id, msk->pm.id_avail_bitmap); 602 msk->pm.add_addr_signaled++; 603 604 /* Special case for ID0: set the correct ID */ 605 if (local.addr.id == msk->mpc_endpoint_id) 606 local.addr.id = 0; 607 608 mptcp_pm_announce_addr(msk, &local.addr, false); 609 mptcp_pm_nl_addr_send_ack(msk); 610 611 if (local.flags & MPTCP_PM_ADDR_FLAG_SUBFLOW) 612 signal_and_subflow = true; 613 } 614 615 subflow: 616 /* check if should create a new subflow */ 617 while (msk->pm.local_addr_used < local_addr_max && 618 msk->pm.subflows < subflows_max) { 619 struct mptcp_addr_info addrs[MPTCP_PM_ADDR_MAX]; 620 bool fullmesh; 621 int i, nr; 622 623 if (signal_and_subflow) 624 signal_and_subflow = false; 625 else if (!select_local_address(pernet, msk, &local)) 626 break; 627 628 fullmesh = !!(local.flags & MPTCP_PM_ADDR_FLAG_FULLMESH); 629 630 __clear_bit(local.addr.id, msk->pm.id_avail_bitmap); 631 632 /* Special case for ID0: set the correct ID */ 633 if (local.addr.id == msk->mpc_endpoint_id) 634 local.addr.id = 0; 635 else /* local_addr_used is not decr for ID 0 */ 636 msk->pm.local_addr_used++; 637 638 nr = fill_remote_addresses_vec(msk, &local.addr, fullmesh, addrs); 639 if (nr == 0) 640 continue; 641 642 spin_unlock_bh(&msk->pm.lock); 643 for (i = 0; i < nr; i++) 644 __mptcp_subflow_connect(sk, &local, &addrs[i]); 645 spin_lock_bh(&msk->pm.lock); 646 } 647 mptcp_pm_nl_check_work_pending(msk); 648 } 649 650 static void mptcp_pm_nl_fully_established(struct mptcp_sock *msk) 651 { 652 mptcp_pm_create_subflow_or_signal_addr(msk); 653 } 654 655 static void mptcp_pm_nl_subflow_established(struct mptcp_sock *msk) 656 { 657 mptcp_pm_create_subflow_or_signal_addr(msk); 658 } 659 660 /* Fill all the local addresses into the array addrs[], 661 * and return the array size. 662 */ 663 static unsigned int fill_local_addresses_vec(struct mptcp_sock *msk, 664 struct mptcp_addr_info *remote, 665 struct mptcp_pm_local *locals) 666 { 667 struct sock *sk = (struct sock *)msk; 668 struct mptcp_pm_addr_entry *entry; 669 struct mptcp_addr_info mpc_addr; 670 struct pm_nl_pernet *pernet; 671 unsigned int subflows_max; 672 int i = 0; 673 674 pernet = pm_nl_get_pernet_from_msk(msk); 675 subflows_max = mptcp_pm_get_subflows_max(msk); 676 677 mptcp_local_address((struct sock_common *)msk, &mpc_addr); 678 679 rcu_read_lock(); 680 list_for_each_entry_rcu(entry, &pernet->local_addr_list, list) { 681 if (!(entry->flags & MPTCP_PM_ADDR_FLAG_FULLMESH)) 682 continue; 683 684 if (!mptcp_pm_addr_families_match(sk, &entry->addr, remote)) 685 continue; 686 687 if (msk->pm.subflows < subflows_max) { 688 locals[i].addr = entry->addr; 689 locals[i].flags = entry->flags; 690 locals[i].ifindex = entry->ifindex; 691 692 /* Special case for ID0: set the correct ID */ 693 if (mptcp_addresses_equal(&locals[i].addr, &mpc_addr, locals[i].addr.port)) 694 locals[i].addr.id = 0; 695 696 msk->pm.subflows++; 697 i++; 698 } 699 } 700 rcu_read_unlock(); 701 702 /* If the array is empty, fill in the single 703 * 'IPADDRANY' local address 704 */ 705 if (!i) { 706 memset(&locals[i], 0, sizeof(locals[i])); 707 locals[i].addr.family = 708 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 709 remote->family == AF_INET6 && 710 ipv6_addr_v4mapped(&remote->addr6) ? AF_INET : 711 #endif 712 remote->family; 713 714 if (!mptcp_pm_addr_families_match(sk, &locals[i].addr, remote)) 715 return 0; 716 717 msk->pm.subflows++; 718 i++; 719 } 720 721 return i; 722 } 723 724 static void mptcp_pm_nl_add_addr_received(struct mptcp_sock *msk) 725 { 726 struct mptcp_pm_local locals[MPTCP_PM_ADDR_MAX]; 727 struct sock *sk = (struct sock *)msk; 728 unsigned int add_addr_accept_max; 729 struct mptcp_addr_info remote; 730 unsigned int subflows_max; 731 bool sf_created = false; 732 int i, nr; 733 734 add_addr_accept_max = mptcp_pm_get_add_addr_accept_max(msk); 735 subflows_max = mptcp_pm_get_subflows_max(msk); 736 737 pr_debug("accepted %d:%d remote family %d\n", 738 msk->pm.add_addr_accepted, add_addr_accept_max, 739 msk->pm.remote.family); 740 741 remote = msk->pm.remote; 742 mptcp_pm_announce_addr(msk, &remote, true); 743 mptcp_pm_nl_addr_send_ack(msk); 744 745 if (lookup_subflow_by_daddr(&msk->conn_list, &remote)) 746 return; 747 748 /* pick id 0 port, if none is provided the remote address */ 749 if (!remote.port) 750 remote.port = sk->sk_dport; 751 752 /* connect to the specified remote address, using whatever 753 * local address the routing configuration will pick. 754 */ 755 nr = fill_local_addresses_vec(msk, &remote, locals); 756 if (nr == 0) 757 return; 758 759 spin_unlock_bh(&msk->pm.lock); 760 for (i = 0; i < nr; i++) 761 if (__mptcp_subflow_connect(sk, &locals[i], &remote) == 0) 762 sf_created = true; 763 spin_lock_bh(&msk->pm.lock); 764 765 if (sf_created) { 766 /* add_addr_accepted is not decr for ID 0 */ 767 if (remote.id) 768 msk->pm.add_addr_accepted++; 769 if (msk->pm.add_addr_accepted >= add_addr_accept_max || 770 msk->pm.subflows >= subflows_max) 771 WRITE_ONCE(msk->pm.accept_addr, false); 772 } 773 } 774 775 bool mptcp_pm_nl_is_init_remote_addr(struct mptcp_sock *msk, 776 const struct mptcp_addr_info *remote) 777 { 778 struct mptcp_addr_info mpc_remote; 779 780 remote_address((struct sock_common *)msk, &mpc_remote); 781 return mptcp_addresses_equal(&mpc_remote, remote, remote->port); 782 } 783 784 void mptcp_pm_nl_addr_send_ack(struct mptcp_sock *msk) 785 { 786 struct mptcp_subflow_context *subflow, *alt = NULL; 787 788 msk_owned_by_me(msk); 789 lockdep_assert_held(&msk->pm.lock); 790 791 if (!mptcp_pm_should_add_signal(msk) && 792 !mptcp_pm_should_rm_signal(msk)) 793 return; 794 795 mptcp_for_each_subflow(msk, subflow) { 796 if (__mptcp_subflow_active(subflow)) { 797 if (!subflow->stale) { 798 mptcp_pm_send_ack(msk, subflow, false, false); 799 return; 800 } 801 802 if (!alt) 803 alt = subflow; 804 } 805 } 806 807 if (alt) 808 mptcp_pm_send_ack(msk, alt, false, false); 809 } 810 811 int mptcp_pm_nl_mp_prio_send_ack(struct mptcp_sock *msk, 812 struct mptcp_addr_info *addr, 813 struct mptcp_addr_info *rem, 814 u8 bkup) 815 { 816 struct mptcp_subflow_context *subflow; 817 818 pr_debug("bkup=%d\n", bkup); 819 820 mptcp_for_each_subflow(msk, subflow) { 821 struct sock *ssk = mptcp_subflow_tcp_sock(subflow); 822 struct mptcp_addr_info local, remote; 823 824 mptcp_local_address((struct sock_common *)ssk, &local); 825 if (!mptcp_addresses_equal(&local, addr, addr->port)) 826 continue; 827 828 if (rem && rem->family != AF_UNSPEC) { 829 remote_address((struct sock_common *)ssk, &remote); 830 if (!mptcp_addresses_equal(&remote, rem, rem->port)) 831 continue; 832 } 833 834 __mptcp_pm_send_ack(msk, subflow, true, bkup); 835 return 0; 836 } 837 838 return -EINVAL; 839 } 840 841 static void mptcp_pm_nl_rm_addr_or_subflow(struct mptcp_sock *msk, 842 const struct mptcp_rm_list *rm_list, 843 enum linux_mptcp_mib_field rm_type) 844 { 845 struct mptcp_subflow_context *subflow, *tmp; 846 struct sock *sk = (struct sock *)msk; 847 u8 i; 848 849 pr_debug("%s rm_list_nr %d\n", 850 rm_type == MPTCP_MIB_RMADDR ? "address" : "subflow", rm_list->nr); 851 852 msk_owned_by_me(msk); 853 854 if (sk->sk_state == TCP_LISTEN) 855 return; 856 857 if (!rm_list->nr) 858 return; 859 860 if (list_empty(&msk->conn_list)) 861 return; 862 863 for (i = 0; i < rm_list->nr; i++) { 864 u8 rm_id = rm_list->ids[i]; 865 bool removed = false; 866 867 mptcp_for_each_subflow_safe(msk, subflow, tmp) { 868 struct sock *ssk = mptcp_subflow_tcp_sock(subflow); 869 u8 remote_id = READ_ONCE(subflow->remote_id); 870 int how = RCV_SHUTDOWN | SEND_SHUTDOWN; 871 u8 id = subflow_get_local_id(subflow); 872 873 if ((1 << inet_sk_state_load(ssk)) & 874 (TCPF_FIN_WAIT1 | TCPF_FIN_WAIT2 | TCPF_CLOSING | TCPF_CLOSE)) 875 continue; 876 if (rm_type == MPTCP_MIB_RMADDR && remote_id != rm_id) 877 continue; 878 if (rm_type == MPTCP_MIB_RMSUBFLOW && id != rm_id) 879 continue; 880 881 pr_debug(" -> %s rm_list_ids[%d]=%u local_id=%u remote_id=%u mpc_id=%u\n", 882 rm_type == MPTCP_MIB_RMADDR ? "address" : "subflow", 883 i, rm_id, id, remote_id, msk->mpc_endpoint_id); 884 spin_unlock_bh(&msk->pm.lock); 885 mptcp_subflow_shutdown(sk, ssk, how); 886 removed |= subflow->request_join; 887 888 /* the following takes care of updating the subflows counter */ 889 mptcp_close_ssk(sk, ssk, subflow); 890 spin_lock_bh(&msk->pm.lock); 891 892 if (rm_type == MPTCP_MIB_RMSUBFLOW) 893 __MPTCP_INC_STATS(sock_net(sk), rm_type); 894 } 895 896 if (rm_type == MPTCP_MIB_RMADDR) 897 __MPTCP_INC_STATS(sock_net(sk), rm_type); 898 899 if (!removed) 900 continue; 901 902 if (!mptcp_pm_is_kernel(msk)) 903 continue; 904 905 if (rm_type == MPTCP_MIB_RMADDR && rm_id && 906 !WARN_ON_ONCE(msk->pm.add_addr_accepted == 0)) { 907 /* Note: if the subflow has been closed before, this 908 * add_addr_accepted counter will not be decremented. 909 */ 910 if (--msk->pm.add_addr_accepted < mptcp_pm_get_add_addr_accept_max(msk)) 911 WRITE_ONCE(msk->pm.accept_addr, true); 912 } 913 } 914 } 915 916 static void mptcp_pm_nl_rm_addr_received(struct mptcp_sock *msk) 917 { 918 mptcp_pm_nl_rm_addr_or_subflow(msk, &msk->pm.rm_list_rx, MPTCP_MIB_RMADDR); 919 } 920 921 static void mptcp_pm_nl_rm_subflow_received(struct mptcp_sock *msk, 922 const struct mptcp_rm_list *rm_list) 923 { 924 mptcp_pm_nl_rm_addr_or_subflow(msk, rm_list, MPTCP_MIB_RMSUBFLOW); 925 } 926 927 void mptcp_pm_nl_work(struct mptcp_sock *msk) 928 { 929 struct mptcp_pm_data *pm = &msk->pm; 930 931 msk_owned_by_me(msk); 932 933 if (!(pm->status & MPTCP_PM_WORK_MASK)) 934 return; 935 936 spin_lock_bh(&msk->pm.lock); 937 938 pr_debug("msk=%p status=%x\n", msk, pm->status); 939 if (pm->status & BIT(MPTCP_PM_ADD_ADDR_RECEIVED)) { 940 pm->status &= ~BIT(MPTCP_PM_ADD_ADDR_RECEIVED); 941 mptcp_pm_nl_add_addr_received(msk); 942 } 943 if (pm->status & BIT(MPTCP_PM_ADD_ADDR_SEND_ACK)) { 944 pm->status &= ~BIT(MPTCP_PM_ADD_ADDR_SEND_ACK); 945 mptcp_pm_nl_addr_send_ack(msk); 946 } 947 if (pm->status & BIT(MPTCP_PM_RM_ADDR_RECEIVED)) { 948 pm->status &= ~BIT(MPTCP_PM_RM_ADDR_RECEIVED); 949 mptcp_pm_nl_rm_addr_received(msk); 950 } 951 if (pm->status & BIT(MPTCP_PM_ESTABLISHED)) { 952 pm->status &= ~BIT(MPTCP_PM_ESTABLISHED); 953 mptcp_pm_nl_fully_established(msk); 954 } 955 if (pm->status & BIT(MPTCP_PM_SUBFLOW_ESTABLISHED)) { 956 pm->status &= ~BIT(MPTCP_PM_SUBFLOW_ESTABLISHED); 957 mptcp_pm_nl_subflow_established(msk); 958 } 959 960 spin_unlock_bh(&msk->pm.lock); 961 } 962 963 static bool address_use_port(struct mptcp_pm_addr_entry *entry) 964 { 965 return (entry->flags & 966 (MPTCP_PM_ADDR_FLAG_SIGNAL | MPTCP_PM_ADDR_FLAG_SUBFLOW)) == 967 MPTCP_PM_ADDR_FLAG_SIGNAL; 968 } 969 970 /* caller must ensure the RCU grace period is already elapsed */ 971 static void __mptcp_pm_release_addr_entry(struct mptcp_pm_addr_entry *entry) 972 { 973 if (entry->lsk) 974 sock_release(entry->lsk); 975 kfree(entry); 976 } 977 978 static int mptcp_pm_nl_append_new_local_addr(struct pm_nl_pernet *pernet, 979 struct mptcp_pm_addr_entry *entry, 980 bool needs_id) 981 { 982 struct mptcp_pm_addr_entry *cur, *del_entry = NULL; 983 unsigned int addr_max; 984 int ret = -EINVAL; 985 986 spin_lock_bh(&pernet->lock); 987 /* to keep the code simple, don't do IDR-like allocation for address ID, 988 * just bail when we exceed limits 989 */ 990 if (pernet->next_id == MPTCP_PM_MAX_ADDR_ID) 991 pernet->next_id = 1; 992 if (pernet->addrs >= MPTCP_PM_ADDR_MAX) { 993 ret = -ERANGE; 994 goto out; 995 } 996 if (test_bit(entry->addr.id, pernet->id_bitmap)) { 997 ret = -EBUSY; 998 goto out; 999 } 1000 1001 /* do not insert duplicate address, differentiate on port only 1002 * singled addresses 1003 */ 1004 if (!address_use_port(entry)) 1005 entry->addr.port = 0; 1006 list_for_each_entry(cur, &pernet->local_addr_list, list) { 1007 if (mptcp_addresses_equal(&cur->addr, &entry->addr, 1008 cur->addr.port || entry->addr.port)) { 1009 /* allow replacing the exiting endpoint only if such 1010 * endpoint is an implicit one and the user-space 1011 * did not provide an endpoint id 1012 */ 1013 if (!(cur->flags & MPTCP_PM_ADDR_FLAG_IMPLICIT)) { 1014 ret = -EEXIST; 1015 goto out; 1016 } 1017 if (entry->addr.id) 1018 goto out; 1019 1020 pernet->addrs--; 1021 entry->addr.id = cur->addr.id; 1022 list_del_rcu(&cur->list); 1023 del_entry = cur; 1024 break; 1025 } 1026 } 1027 1028 if (!entry->addr.id && needs_id) { 1029 find_next: 1030 entry->addr.id = find_next_zero_bit(pernet->id_bitmap, 1031 MPTCP_PM_MAX_ADDR_ID + 1, 1032 pernet->next_id); 1033 if (!entry->addr.id && pernet->next_id != 1) { 1034 pernet->next_id = 1; 1035 goto find_next; 1036 } 1037 } 1038 1039 if (!entry->addr.id && needs_id) 1040 goto out; 1041 1042 __set_bit(entry->addr.id, pernet->id_bitmap); 1043 if (entry->addr.id > pernet->next_id) 1044 pernet->next_id = entry->addr.id; 1045 1046 if (entry->flags & MPTCP_PM_ADDR_FLAG_SIGNAL) { 1047 addr_max = pernet->add_addr_signal_max; 1048 WRITE_ONCE(pernet->add_addr_signal_max, addr_max + 1); 1049 } 1050 if (entry->flags & MPTCP_PM_ADDR_FLAG_SUBFLOW) { 1051 addr_max = pernet->local_addr_max; 1052 WRITE_ONCE(pernet->local_addr_max, addr_max + 1); 1053 } 1054 1055 pernet->addrs++; 1056 if (!entry->addr.port) 1057 list_add_tail_rcu(&entry->list, &pernet->local_addr_list); 1058 else 1059 list_add_rcu(&entry->list, &pernet->local_addr_list); 1060 ret = entry->addr.id; 1061 1062 out: 1063 spin_unlock_bh(&pernet->lock); 1064 1065 /* just replaced an existing entry, free it */ 1066 if (del_entry) { 1067 synchronize_rcu(); 1068 __mptcp_pm_release_addr_entry(del_entry); 1069 } 1070 return ret; 1071 } 1072 1073 static struct lock_class_key mptcp_slock_keys[2]; 1074 static struct lock_class_key mptcp_keys[2]; 1075 1076 static int mptcp_pm_nl_create_listen_socket(struct sock *sk, 1077 struct mptcp_pm_addr_entry *entry) 1078 { 1079 bool is_ipv6 = sk->sk_family == AF_INET6; 1080 int addrlen = sizeof(struct sockaddr_in); 1081 struct sockaddr_storage addr; 1082 struct sock *newsk, *ssk; 1083 int backlog = 1024; 1084 int err; 1085 1086 err = sock_create_kern(sock_net(sk), entry->addr.family, 1087 SOCK_STREAM, IPPROTO_MPTCP, &entry->lsk); 1088 if (err) 1089 return err; 1090 1091 newsk = entry->lsk->sk; 1092 if (!newsk) 1093 return -EINVAL; 1094 1095 /* The subflow socket lock is acquired in a nested to the msk one 1096 * in several places, even by the TCP stack, and this msk is a kernel 1097 * socket: lockdep complains. Instead of propagating the _nested 1098 * modifiers in several places, re-init the lock class for the msk 1099 * socket to an mptcp specific one. 1100 */ 1101 sock_lock_init_class_and_name(newsk, 1102 is_ipv6 ? "mlock-AF_INET6" : "mlock-AF_INET", 1103 &mptcp_slock_keys[is_ipv6], 1104 is_ipv6 ? "msk_lock-AF_INET6" : "msk_lock-AF_INET", 1105 &mptcp_keys[is_ipv6]); 1106 1107 lock_sock(newsk); 1108 ssk = __mptcp_nmpc_sk(mptcp_sk(newsk)); 1109 release_sock(newsk); 1110 if (IS_ERR(ssk)) 1111 return PTR_ERR(ssk); 1112 1113 mptcp_info2sockaddr(&entry->addr, &addr, entry->addr.family); 1114 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 1115 if (entry->addr.family == AF_INET6) 1116 addrlen = sizeof(struct sockaddr_in6); 1117 #endif 1118 if (ssk->sk_family == AF_INET) 1119 err = inet_bind_sk(ssk, (struct sockaddr *)&addr, addrlen); 1120 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 1121 else if (ssk->sk_family == AF_INET6) 1122 err = inet6_bind_sk(ssk, (struct sockaddr *)&addr, addrlen); 1123 #endif 1124 if (err) 1125 return err; 1126 1127 /* We don't use mptcp_set_state() here because it needs to be called 1128 * under the msk socket lock. For the moment, that will not bring 1129 * anything more than only calling inet_sk_state_store(), because the 1130 * old status is known (TCP_CLOSE). 1131 */ 1132 inet_sk_state_store(newsk, TCP_LISTEN); 1133 lock_sock(ssk); 1134 WRITE_ONCE(mptcp_subflow_ctx(ssk)->pm_listener, true); 1135 err = __inet_listen_sk(ssk, backlog); 1136 if (!err) 1137 mptcp_event_pm_listener(ssk, MPTCP_EVENT_LISTENER_CREATED); 1138 release_sock(ssk); 1139 return err; 1140 } 1141 1142 int mptcp_pm_nl_get_local_id(struct mptcp_sock *msk, struct mptcp_addr_info *skc) 1143 { 1144 struct mptcp_pm_addr_entry *entry; 1145 struct pm_nl_pernet *pernet; 1146 int ret; 1147 1148 pernet = pm_nl_get_pernet_from_msk(msk); 1149 1150 rcu_read_lock(); 1151 entry = __lookup_addr(pernet, skc); 1152 ret = entry ? entry->addr.id : -1; 1153 rcu_read_unlock(); 1154 if (ret >= 0) 1155 return ret; 1156 1157 /* address not found, add to local list */ 1158 entry = kmalloc(sizeof(*entry), GFP_ATOMIC); 1159 if (!entry) 1160 return -ENOMEM; 1161 1162 entry->addr = *skc; 1163 entry->addr.id = 0; 1164 entry->addr.port = 0; 1165 entry->ifindex = 0; 1166 entry->flags = MPTCP_PM_ADDR_FLAG_IMPLICIT; 1167 entry->lsk = NULL; 1168 ret = mptcp_pm_nl_append_new_local_addr(pernet, entry, true); 1169 if (ret < 0) 1170 kfree(entry); 1171 1172 return ret; 1173 } 1174 1175 bool mptcp_pm_nl_is_backup(struct mptcp_sock *msk, struct mptcp_addr_info *skc) 1176 { 1177 struct pm_nl_pernet *pernet = pm_nl_get_pernet_from_msk(msk); 1178 struct mptcp_pm_addr_entry *entry; 1179 bool backup; 1180 1181 rcu_read_lock(); 1182 entry = __lookup_addr(pernet, skc); 1183 backup = entry && !!(entry->flags & MPTCP_PM_ADDR_FLAG_BACKUP); 1184 rcu_read_unlock(); 1185 1186 return backup; 1187 } 1188 1189 #define MPTCP_PM_CMD_GRP_OFFSET 0 1190 #define MPTCP_PM_EV_GRP_OFFSET 1 1191 1192 static const struct genl_multicast_group mptcp_pm_mcgrps[] = { 1193 [MPTCP_PM_CMD_GRP_OFFSET] = { .name = MPTCP_PM_CMD_GRP_NAME, }, 1194 [MPTCP_PM_EV_GRP_OFFSET] = { .name = MPTCP_PM_EV_GRP_NAME, 1195 .flags = GENL_MCAST_CAP_NET_ADMIN, 1196 }, 1197 }; 1198 1199 void mptcp_pm_nl_subflow_chk_stale(const struct mptcp_sock *msk, struct sock *ssk) 1200 { 1201 struct mptcp_subflow_context *iter, *subflow = mptcp_subflow_ctx(ssk); 1202 struct sock *sk = (struct sock *)msk; 1203 unsigned int active_max_loss_cnt; 1204 struct net *net = sock_net(sk); 1205 unsigned int stale_loss_cnt; 1206 bool slow; 1207 1208 stale_loss_cnt = mptcp_stale_loss_cnt(net); 1209 if (subflow->stale || !stale_loss_cnt || subflow->stale_count <= stale_loss_cnt) 1210 return; 1211 1212 /* look for another available subflow not in loss state */ 1213 active_max_loss_cnt = max_t(int, stale_loss_cnt - 1, 1); 1214 mptcp_for_each_subflow(msk, iter) { 1215 if (iter != subflow && mptcp_subflow_active(iter) && 1216 iter->stale_count < active_max_loss_cnt) { 1217 /* we have some alternatives, try to mark this subflow as idle ...*/ 1218 slow = lock_sock_fast(ssk); 1219 if (!tcp_rtx_and_write_queues_empty(ssk)) { 1220 subflow->stale = 1; 1221 __mptcp_retransmit_pending_data(sk); 1222 MPTCP_INC_STATS(net, MPTCP_MIB_SUBFLOWSTALE); 1223 } 1224 unlock_sock_fast(ssk, slow); 1225 1226 /* always try to push the pending data regardless of re-injections: 1227 * we can possibly use backup subflows now, and subflow selection 1228 * is cheap under the msk socket lock 1229 */ 1230 __mptcp_push_pending(sk, 0); 1231 return; 1232 } 1233 } 1234 } 1235 1236 static int mptcp_pm_family_to_addr(int family) 1237 { 1238 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 1239 if (family == AF_INET6) 1240 return MPTCP_PM_ADDR_ATTR_ADDR6; 1241 #endif 1242 return MPTCP_PM_ADDR_ATTR_ADDR4; 1243 } 1244 1245 static int mptcp_pm_parse_pm_addr_attr(struct nlattr *tb[], 1246 const struct nlattr *attr, 1247 struct genl_info *info, 1248 struct mptcp_addr_info *addr, 1249 bool require_family) 1250 { 1251 int err, addr_addr; 1252 1253 if (!attr) { 1254 GENL_SET_ERR_MSG(info, "missing address info"); 1255 return -EINVAL; 1256 } 1257 1258 /* no validation needed - was already done via nested policy */ 1259 err = nla_parse_nested_deprecated(tb, MPTCP_PM_ADDR_ATTR_MAX, attr, 1260 mptcp_pm_address_nl_policy, info->extack); 1261 if (err) 1262 return err; 1263 1264 if (tb[MPTCP_PM_ADDR_ATTR_ID]) 1265 addr->id = nla_get_u8(tb[MPTCP_PM_ADDR_ATTR_ID]); 1266 1267 if (!tb[MPTCP_PM_ADDR_ATTR_FAMILY]) { 1268 if (!require_family) 1269 return 0; 1270 1271 NL_SET_ERR_MSG_ATTR(info->extack, attr, 1272 "missing family"); 1273 return -EINVAL; 1274 } 1275 1276 addr->family = nla_get_u16(tb[MPTCP_PM_ADDR_ATTR_FAMILY]); 1277 if (addr->family != AF_INET 1278 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 1279 && addr->family != AF_INET6 1280 #endif 1281 ) { 1282 NL_SET_ERR_MSG_ATTR(info->extack, attr, 1283 "unknown address family"); 1284 return -EINVAL; 1285 } 1286 addr_addr = mptcp_pm_family_to_addr(addr->family); 1287 if (!tb[addr_addr]) { 1288 NL_SET_ERR_MSG_ATTR(info->extack, attr, 1289 "missing address data"); 1290 return -EINVAL; 1291 } 1292 1293 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 1294 if (addr->family == AF_INET6) 1295 addr->addr6 = nla_get_in6_addr(tb[addr_addr]); 1296 else 1297 #endif 1298 addr->addr.s_addr = nla_get_in_addr(tb[addr_addr]); 1299 1300 if (tb[MPTCP_PM_ADDR_ATTR_PORT]) 1301 addr->port = htons(nla_get_u16(tb[MPTCP_PM_ADDR_ATTR_PORT])); 1302 1303 return 0; 1304 } 1305 1306 int mptcp_pm_parse_addr(struct nlattr *attr, struct genl_info *info, 1307 struct mptcp_addr_info *addr) 1308 { 1309 struct nlattr *tb[MPTCP_PM_ADDR_ATTR_MAX + 1]; 1310 1311 memset(addr, 0, sizeof(*addr)); 1312 1313 return mptcp_pm_parse_pm_addr_attr(tb, attr, info, addr, true); 1314 } 1315 1316 int mptcp_pm_parse_entry(struct nlattr *attr, struct genl_info *info, 1317 bool require_family, 1318 struct mptcp_pm_addr_entry *entry) 1319 { 1320 struct nlattr *tb[MPTCP_PM_ADDR_ATTR_MAX + 1]; 1321 int err; 1322 1323 memset(entry, 0, sizeof(*entry)); 1324 1325 err = mptcp_pm_parse_pm_addr_attr(tb, attr, info, &entry->addr, require_family); 1326 if (err) 1327 return err; 1328 1329 if (tb[MPTCP_PM_ADDR_ATTR_IF_IDX]) { 1330 u32 val = nla_get_s32(tb[MPTCP_PM_ADDR_ATTR_IF_IDX]); 1331 1332 entry->ifindex = val; 1333 } 1334 1335 if (tb[MPTCP_PM_ADDR_ATTR_FLAGS]) 1336 entry->flags = nla_get_u32(tb[MPTCP_PM_ADDR_ATTR_FLAGS]); 1337 1338 if (tb[MPTCP_PM_ADDR_ATTR_PORT]) 1339 entry->addr.port = htons(nla_get_u16(tb[MPTCP_PM_ADDR_ATTR_PORT])); 1340 1341 return 0; 1342 } 1343 1344 static struct pm_nl_pernet *genl_info_pm_nl(struct genl_info *info) 1345 { 1346 return pm_nl_get_pernet(genl_info_net(info)); 1347 } 1348 1349 static int mptcp_nl_add_subflow_or_signal_addr(struct net *net, 1350 struct mptcp_addr_info *addr) 1351 { 1352 struct mptcp_sock *msk; 1353 long s_slot = 0, s_num = 0; 1354 1355 while ((msk = mptcp_token_iter_next(net, &s_slot, &s_num)) != NULL) { 1356 struct sock *sk = (struct sock *)msk; 1357 struct mptcp_addr_info mpc_addr; 1358 1359 if (!READ_ONCE(msk->fully_established) || 1360 mptcp_pm_is_userspace(msk)) 1361 goto next; 1362 1363 /* if the endp linked to the init sf is re-added with a != ID */ 1364 mptcp_local_address((struct sock_common *)msk, &mpc_addr); 1365 1366 lock_sock(sk); 1367 spin_lock_bh(&msk->pm.lock); 1368 if (mptcp_addresses_equal(addr, &mpc_addr, addr->port)) 1369 msk->mpc_endpoint_id = addr->id; 1370 mptcp_pm_create_subflow_or_signal_addr(msk); 1371 spin_unlock_bh(&msk->pm.lock); 1372 release_sock(sk); 1373 1374 next: 1375 sock_put(sk); 1376 cond_resched(); 1377 } 1378 1379 return 0; 1380 } 1381 1382 static bool mptcp_pm_has_addr_attr_id(const struct nlattr *attr, 1383 struct genl_info *info) 1384 { 1385 struct nlattr *tb[MPTCP_PM_ADDR_ATTR_MAX + 1]; 1386 1387 if (!nla_parse_nested_deprecated(tb, MPTCP_PM_ADDR_ATTR_MAX, attr, 1388 mptcp_pm_address_nl_policy, info->extack) && 1389 tb[MPTCP_PM_ADDR_ATTR_ID]) 1390 return true; 1391 return false; 1392 } 1393 1394 int mptcp_pm_nl_add_addr_doit(struct sk_buff *skb, struct genl_info *info) 1395 { 1396 struct nlattr *attr = info->attrs[MPTCP_PM_ENDPOINT_ADDR]; 1397 struct pm_nl_pernet *pernet = genl_info_pm_nl(info); 1398 struct mptcp_pm_addr_entry addr, *entry; 1399 int ret; 1400 1401 ret = mptcp_pm_parse_entry(attr, info, true, &addr); 1402 if (ret < 0) 1403 return ret; 1404 1405 if (addr.addr.port && !address_use_port(&addr)) { 1406 GENL_SET_ERR_MSG(info, "flags must have signal and not subflow when using port"); 1407 return -EINVAL; 1408 } 1409 1410 if (addr.flags & MPTCP_PM_ADDR_FLAG_SIGNAL && 1411 addr.flags & MPTCP_PM_ADDR_FLAG_FULLMESH) { 1412 GENL_SET_ERR_MSG(info, "flags mustn't have both signal and fullmesh"); 1413 return -EINVAL; 1414 } 1415 1416 if (addr.flags & MPTCP_PM_ADDR_FLAG_IMPLICIT) { 1417 GENL_SET_ERR_MSG(info, "can't create IMPLICIT endpoint"); 1418 return -EINVAL; 1419 } 1420 1421 entry = kzalloc(sizeof(*entry), GFP_KERNEL_ACCOUNT); 1422 if (!entry) { 1423 GENL_SET_ERR_MSG(info, "can't allocate addr"); 1424 return -ENOMEM; 1425 } 1426 1427 *entry = addr; 1428 if (entry->addr.port) { 1429 ret = mptcp_pm_nl_create_listen_socket(skb->sk, entry); 1430 if (ret) { 1431 GENL_SET_ERR_MSG_FMT(info, "create listen socket error: %d", ret); 1432 goto out_free; 1433 } 1434 } 1435 ret = mptcp_pm_nl_append_new_local_addr(pernet, entry, 1436 !mptcp_pm_has_addr_attr_id(attr, info)); 1437 if (ret < 0) { 1438 GENL_SET_ERR_MSG_FMT(info, "too many addresses or duplicate one: %d", ret); 1439 goto out_free; 1440 } 1441 1442 mptcp_nl_add_subflow_or_signal_addr(sock_net(skb->sk), &entry->addr); 1443 return 0; 1444 1445 out_free: 1446 __mptcp_pm_release_addr_entry(entry); 1447 return ret; 1448 } 1449 1450 bool mptcp_remove_anno_list_by_saddr(struct mptcp_sock *msk, 1451 const struct mptcp_addr_info *addr) 1452 { 1453 struct mptcp_pm_add_entry *entry; 1454 1455 entry = mptcp_pm_del_add_timer(msk, addr, false); 1456 if (entry) { 1457 kfree(entry); 1458 return true; 1459 } 1460 1461 return false; 1462 } 1463 1464 static u8 mptcp_endp_get_local_id(struct mptcp_sock *msk, 1465 const struct mptcp_addr_info *addr) 1466 { 1467 return msk->mpc_endpoint_id == addr->id ? 0 : addr->id; 1468 } 1469 1470 static bool mptcp_pm_remove_anno_addr(struct mptcp_sock *msk, 1471 const struct mptcp_addr_info *addr, 1472 bool force) 1473 { 1474 struct mptcp_rm_list list = { .nr = 0 }; 1475 bool ret; 1476 1477 list.ids[list.nr++] = mptcp_endp_get_local_id(msk, addr); 1478 1479 ret = mptcp_remove_anno_list_by_saddr(msk, addr); 1480 if (ret || force) { 1481 spin_lock_bh(&msk->pm.lock); 1482 if (ret) { 1483 __set_bit(addr->id, msk->pm.id_avail_bitmap); 1484 msk->pm.add_addr_signaled--; 1485 } 1486 mptcp_pm_remove_addr(msk, &list); 1487 spin_unlock_bh(&msk->pm.lock); 1488 } 1489 return ret; 1490 } 1491 1492 static void __mark_subflow_endp_available(struct mptcp_sock *msk, u8 id) 1493 { 1494 /* If it was marked as used, and not ID 0, decrement local_addr_used */ 1495 if (!__test_and_set_bit(id ? : msk->mpc_endpoint_id, msk->pm.id_avail_bitmap) && 1496 id && !WARN_ON_ONCE(msk->pm.local_addr_used == 0)) 1497 msk->pm.local_addr_used--; 1498 } 1499 1500 static int mptcp_nl_remove_subflow_and_signal_addr(struct net *net, 1501 const struct mptcp_pm_addr_entry *entry) 1502 { 1503 const struct mptcp_addr_info *addr = &entry->addr; 1504 struct mptcp_rm_list list = { .nr = 1 }; 1505 long s_slot = 0, s_num = 0; 1506 struct mptcp_sock *msk; 1507 1508 pr_debug("remove_id=%d\n", addr->id); 1509 1510 while ((msk = mptcp_token_iter_next(net, &s_slot, &s_num)) != NULL) { 1511 struct sock *sk = (struct sock *)msk; 1512 bool remove_subflow; 1513 1514 if (mptcp_pm_is_userspace(msk)) 1515 goto next; 1516 1517 if (list_empty(&msk->conn_list)) { 1518 mptcp_pm_remove_anno_addr(msk, addr, false); 1519 goto next; 1520 } 1521 1522 lock_sock(sk); 1523 remove_subflow = mptcp_lookup_subflow_by_saddr(&msk->conn_list, addr); 1524 mptcp_pm_remove_anno_addr(msk, addr, remove_subflow && 1525 !(entry->flags & MPTCP_PM_ADDR_FLAG_IMPLICIT)); 1526 1527 list.ids[0] = mptcp_endp_get_local_id(msk, addr); 1528 if (remove_subflow) { 1529 spin_lock_bh(&msk->pm.lock); 1530 mptcp_pm_nl_rm_subflow_received(msk, &list); 1531 spin_unlock_bh(&msk->pm.lock); 1532 } 1533 1534 if (entry->flags & MPTCP_PM_ADDR_FLAG_SUBFLOW) { 1535 spin_lock_bh(&msk->pm.lock); 1536 __mark_subflow_endp_available(msk, list.ids[0]); 1537 spin_unlock_bh(&msk->pm.lock); 1538 } 1539 1540 if (msk->mpc_endpoint_id == entry->addr.id) 1541 msk->mpc_endpoint_id = 0; 1542 release_sock(sk); 1543 1544 next: 1545 sock_put(sk); 1546 cond_resched(); 1547 } 1548 1549 return 0; 1550 } 1551 1552 static int mptcp_nl_remove_id_zero_address(struct net *net, 1553 struct mptcp_addr_info *addr) 1554 { 1555 struct mptcp_rm_list list = { .nr = 0 }; 1556 long s_slot = 0, s_num = 0; 1557 struct mptcp_sock *msk; 1558 1559 list.ids[list.nr++] = 0; 1560 1561 while ((msk = mptcp_token_iter_next(net, &s_slot, &s_num)) != NULL) { 1562 struct sock *sk = (struct sock *)msk; 1563 struct mptcp_addr_info msk_local; 1564 1565 if (list_empty(&msk->conn_list) || mptcp_pm_is_userspace(msk)) 1566 goto next; 1567 1568 mptcp_local_address((struct sock_common *)msk, &msk_local); 1569 if (!mptcp_addresses_equal(&msk_local, addr, addr->port)) 1570 goto next; 1571 1572 lock_sock(sk); 1573 spin_lock_bh(&msk->pm.lock); 1574 mptcp_pm_remove_addr(msk, &list); 1575 mptcp_pm_nl_rm_subflow_received(msk, &list); 1576 __mark_subflow_endp_available(msk, 0); 1577 spin_unlock_bh(&msk->pm.lock); 1578 release_sock(sk); 1579 1580 next: 1581 sock_put(sk); 1582 cond_resched(); 1583 } 1584 1585 return 0; 1586 } 1587 1588 int mptcp_pm_nl_del_addr_doit(struct sk_buff *skb, struct genl_info *info) 1589 { 1590 struct nlattr *attr = info->attrs[MPTCP_PM_ENDPOINT_ADDR]; 1591 struct pm_nl_pernet *pernet = genl_info_pm_nl(info); 1592 struct mptcp_pm_addr_entry addr, *entry; 1593 unsigned int addr_max; 1594 int ret; 1595 1596 ret = mptcp_pm_parse_entry(attr, info, false, &addr); 1597 if (ret < 0) 1598 return ret; 1599 1600 /* the zero id address is special: the first address used by the msk 1601 * always gets such an id, so different subflows can have different zero 1602 * id addresses. Additionally zero id is not accounted for in id_bitmap. 1603 * Let's use an 'mptcp_rm_list' instead of the common remove code. 1604 */ 1605 if (addr.addr.id == 0) 1606 return mptcp_nl_remove_id_zero_address(sock_net(skb->sk), &addr.addr); 1607 1608 spin_lock_bh(&pernet->lock); 1609 entry = __lookup_addr_by_id(pernet, addr.addr.id); 1610 if (!entry) { 1611 GENL_SET_ERR_MSG(info, "address not found"); 1612 spin_unlock_bh(&pernet->lock); 1613 return -EINVAL; 1614 } 1615 if (entry->flags & MPTCP_PM_ADDR_FLAG_SIGNAL) { 1616 addr_max = pernet->add_addr_signal_max; 1617 WRITE_ONCE(pernet->add_addr_signal_max, addr_max - 1); 1618 } 1619 if (entry->flags & MPTCP_PM_ADDR_FLAG_SUBFLOW) { 1620 addr_max = pernet->local_addr_max; 1621 WRITE_ONCE(pernet->local_addr_max, addr_max - 1); 1622 } 1623 1624 pernet->addrs--; 1625 list_del_rcu(&entry->list); 1626 __clear_bit(entry->addr.id, pernet->id_bitmap); 1627 spin_unlock_bh(&pernet->lock); 1628 1629 mptcp_nl_remove_subflow_and_signal_addr(sock_net(skb->sk), entry); 1630 synchronize_rcu(); 1631 __mptcp_pm_release_addr_entry(entry); 1632 1633 return ret; 1634 } 1635 1636 static void mptcp_pm_flush_addrs_and_subflows(struct mptcp_sock *msk, 1637 struct list_head *rm_list) 1638 { 1639 struct mptcp_rm_list alist = { .nr = 0 }, slist = { .nr = 0 }; 1640 struct mptcp_pm_addr_entry *entry; 1641 1642 list_for_each_entry(entry, rm_list, list) { 1643 if (slist.nr < MPTCP_RM_IDS_MAX && 1644 mptcp_lookup_subflow_by_saddr(&msk->conn_list, &entry->addr)) 1645 slist.ids[slist.nr++] = mptcp_endp_get_local_id(msk, &entry->addr); 1646 1647 if (alist.nr < MPTCP_RM_IDS_MAX && 1648 mptcp_remove_anno_list_by_saddr(msk, &entry->addr)) 1649 alist.ids[alist.nr++] = mptcp_endp_get_local_id(msk, &entry->addr); 1650 } 1651 1652 spin_lock_bh(&msk->pm.lock); 1653 if (alist.nr) { 1654 msk->pm.add_addr_signaled -= alist.nr; 1655 mptcp_pm_remove_addr(msk, &alist); 1656 } 1657 if (slist.nr) 1658 mptcp_pm_nl_rm_subflow_received(msk, &slist); 1659 /* Reset counters: maybe some subflows have been removed before */ 1660 bitmap_fill(msk->pm.id_avail_bitmap, MPTCP_PM_MAX_ADDR_ID + 1); 1661 msk->pm.local_addr_used = 0; 1662 spin_unlock_bh(&msk->pm.lock); 1663 } 1664 1665 static void mptcp_nl_flush_addrs_list(struct net *net, 1666 struct list_head *rm_list) 1667 { 1668 long s_slot = 0, s_num = 0; 1669 struct mptcp_sock *msk; 1670 1671 if (list_empty(rm_list)) 1672 return; 1673 1674 while ((msk = mptcp_token_iter_next(net, &s_slot, &s_num)) != NULL) { 1675 struct sock *sk = (struct sock *)msk; 1676 1677 if (!mptcp_pm_is_userspace(msk)) { 1678 lock_sock(sk); 1679 mptcp_pm_flush_addrs_and_subflows(msk, rm_list); 1680 release_sock(sk); 1681 } 1682 1683 sock_put(sk); 1684 cond_resched(); 1685 } 1686 } 1687 1688 /* caller must ensure the RCU grace period is already elapsed */ 1689 static void __flush_addrs(struct list_head *list) 1690 { 1691 while (!list_empty(list)) { 1692 struct mptcp_pm_addr_entry *cur; 1693 1694 cur = list_entry(list->next, 1695 struct mptcp_pm_addr_entry, list); 1696 list_del_rcu(&cur->list); 1697 __mptcp_pm_release_addr_entry(cur); 1698 } 1699 } 1700 1701 static void __reset_counters(struct pm_nl_pernet *pernet) 1702 { 1703 WRITE_ONCE(pernet->add_addr_signal_max, 0); 1704 WRITE_ONCE(pernet->add_addr_accept_max, 0); 1705 WRITE_ONCE(pernet->local_addr_max, 0); 1706 pernet->addrs = 0; 1707 } 1708 1709 int mptcp_pm_nl_flush_addrs_doit(struct sk_buff *skb, struct genl_info *info) 1710 { 1711 struct pm_nl_pernet *pernet = genl_info_pm_nl(info); 1712 LIST_HEAD(free_list); 1713 1714 spin_lock_bh(&pernet->lock); 1715 list_splice_init(&pernet->local_addr_list, &free_list); 1716 __reset_counters(pernet); 1717 pernet->next_id = 1; 1718 bitmap_zero(pernet->id_bitmap, MPTCP_PM_MAX_ADDR_ID + 1); 1719 spin_unlock_bh(&pernet->lock); 1720 mptcp_nl_flush_addrs_list(sock_net(skb->sk), &free_list); 1721 synchronize_rcu(); 1722 __flush_addrs(&free_list); 1723 return 0; 1724 } 1725 1726 int mptcp_nl_fill_addr(struct sk_buff *skb, 1727 struct mptcp_pm_addr_entry *entry) 1728 { 1729 struct mptcp_addr_info *addr = &entry->addr; 1730 struct nlattr *attr; 1731 1732 attr = nla_nest_start(skb, MPTCP_PM_ATTR_ADDR); 1733 if (!attr) 1734 return -EMSGSIZE; 1735 1736 if (nla_put_u16(skb, MPTCP_PM_ADDR_ATTR_FAMILY, addr->family)) 1737 goto nla_put_failure; 1738 if (nla_put_u16(skb, MPTCP_PM_ADDR_ATTR_PORT, ntohs(addr->port))) 1739 goto nla_put_failure; 1740 if (nla_put_u8(skb, MPTCP_PM_ADDR_ATTR_ID, addr->id)) 1741 goto nla_put_failure; 1742 if (nla_put_u32(skb, MPTCP_PM_ADDR_ATTR_FLAGS, entry->flags)) 1743 goto nla_put_failure; 1744 if (entry->ifindex && 1745 nla_put_s32(skb, MPTCP_PM_ADDR_ATTR_IF_IDX, entry->ifindex)) 1746 goto nla_put_failure; 1747 1748 if (addr->family == AF_INET && 1749 nla_put_in_addr(skb, MPTCP_PM_ADDR_ATTR_ADDR4, 1750 addr->addr.s_addr)) 1751 goto nla_put_failure; 1752 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 1753 else if (addr->family == AF_INET6 && 1754 nla_put_in6_addr(skb, MPTCP_PM_ADDR_ATTR_ADDR6, &addr->addr6)) 1755 goto nla_put_failure; 1756 #endif 1757 nla_nest_end(skb, attr); 1758 return 0; 1759 1760 nla_put_failure: 1761 nla_nest_cancel(skb, attr); 1762 return -EMSGSIZE; 1763 } 1764 1765 int mptcp_pm_nl_get_addr(struct sk_buff *skb, struct genl_info *info) 1766 { 1767 struct nlattr *attr = info->attrs[MPTCP_PM_ENDPOINT_ADDR]; 1768 struct pm_nl_pernet *pernet = genl_info_pm_nl(info); 1769 struct mptcp_pm_addr_entry addr, *entry; 1770 struct sk_buff *msg; 1771 void *reply; 1772 int ret; 1773 1774 ret = mptcp_pm_parse_entry(attr, info, false, &addr); 1775 if (ret < 0) 1776 return ret; 1777 1778 msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL); 1779 if (!msg) 1780 return -ENOMEM; 1781 1782 reply = genlmsg_put_reply(msg, info, &mptcp_genl_family, 0, 1783 info->genlhdr->cmd); 1784 if (!reply) { 1785 GENL_SET_ERR_MSG(info, "not enough space in Netlink message"); 1786 ret = -EMSGSIZE; 1787 goto fail; 1788 } 1789 1790 rcu_read_lock(); 1791 entry = __lookup_addr_by_id(pernet, addr.addr.id); 1792 if (!entry) { 1793 GENL_SET_ERR_MSG(info, "address not found"); 1794 ret = -EINVAL; 1795 goto unlock_fail; 1796 } 1797 1798 ret = mptcp_nl_fill_addr(msg, entry); 1799 if (ret) 1800 goto unlock_fail; 1801 1802 genlmsg_end(msg, reply); 1803 ret = genlmsg_reply(msg, info); 1804 rcu_read_unlock(); 1805 return ret; 1806 1807 unlock_fail: 1808 rcu_read_unlock(); 1809 1810 fail: 1811 nlmsg_free(msg); 1812 return ret; 1813 } 1814 1815 int mptcp_pm_nl_get_addr_doit(struct sk_buff *skb, struct genl_info *info) 1816 { 1817 return mptcp_pm_get_addr(skb, info); 1818 } 1819 1820 int mptcp_pm_nl_dump_addr(struct sk_buff *msg, 1821 struct netlink_callback *cb) 1822 { 1823 struct net *net = sock_net(msg->sk); 1824 struct mptcp_pm_addr_entry *entry; 1825 struct pm_nl_pernet *pernet; 1826 int id = cb->args[0]; 1827 void *hdr; 1828 int i; 1829 1830 pernet = pm_nl_get_pernet(net); 1831 1832 rcu_read_lock(); 1833 for (i = id; i < MPTCP_PM_MAX_ADDR_ID + 1; i++) { 1834 if (test_bit(i, pernet->id_bitmap)) { 1835 entry = __lookup_addr_by_id(pernet, i); 1836 if (!entry) 1837 break; 1838 1839 if (entry->addr.id <= id) 1840 continue; 1841 1842 hdr = genlmsg_put(msg, NETLINK_CB(cb->skb).portid, 1843 cb->nlh->nlmsg_seq, &mptcp_genl_family, 1844 NLM_F_MULTI, MPTCP_PM_CMD_GET_ADDR); 1845 if (!hdr) 1846 break; 1847 1848 if (mptcp_nl_fill_addr(msg, entry) < 0) { 1849 genlmsg_cancel(msg, hdr); 1850 break; 1851 } 1852 1853 id = entry->addr.id; 1854 genlmsg_end(msg, hdr); 1855 } 1856 } 1857 rcu_read_unlock(); 1858 1859 cb->args[0] = id; 1860 return msg->len; 1861 } 1862 1863 int mptcp_pm_nl_get_addr_dumpit(struct sk_buff *msg, 1864 struct netlink_callback *cb) 1865 { 1866 return mptcp_pm_dump_addr(msg, cb); 1867 } 1868 1869 static int parse_limit(struct genl_info *info, int id, unsigned int *limit) 1870 { 1871 struct nlattr *attr = info->attrs[id]; 1872 1873 if (!attr) 1874 return 0; 1875 1876 *limit = nla_get_u32(attr); 1877 if (*limit > MPTCP_PM_ADDR_MAX) { 1878 GENL_SET_ERR_MSG(info, "limit greater than maximum"); 1879 return -EINVAL; 1880 } 1881 return 0; 1882 } 1883 1884 int mptcp_pm_nl_set_limits_doit(struct sk_buff *skb, struct genl_info *info) 1885 { 1886 struct pm_nl_pernet *pernet = genl_info_pm_nl(info); 1887 unsigned int rcv_addrs, subflows; 1888 int ret; 1889 1890 spin_lock_bh(&pernet->lock); 1891 rcv_addrs = pernet->add_addr_accept_max; 1892 ret = parse_limit(info, MPTCP_PM_ATTR_RCV_ADD_ADDRS, &rcv_addrs); 1893 if (ret) 1894 goto unlock; 1895 1896 subflows = pernet->subflows_max; 1897 ret = parse_limit(info, MPTCP_PM_ATTR_SUBFLOWS, &subflows); 1898 if (ret) 1899 goto unlock; 1900 1901 WRITE_ONCE(pernet->add_addr_accept_max, rcv_addrs); 1902 WRITE_ONCE(pernet->subflows_max, subflows); 1903 1904 unlock: 1905 spin_unlock_bh(&pernet->lock); 1906 return ret; 1907 } 1908 1909 int mptcp_pm_nl_get_limits_doit(struct sk_buff *skb, struct genl_info *info) 1910 { 1911 struct pm_nl_pernet *pernet = genl_info_pm_nl(info); 1912 struct sk_buff *msg; 1913 void *reply; 1914 1915 msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL); 1916 if (!msg) 1917 return -ENOMEM; 1918 1919 reply = genlmsg_put_reply(msg, info, &mptcp_genl_family, 0, 1920 MPTCP_PM_CMD_GET_LIMITS); 1921 if (!reply) 1922 goto fail; 1923 1924 if (nla_put_u32(msg, MPTCP_PM_ATTR_RCV_ADD_ADDRS, 1925 READ_ONCE(pernet->add_addr_accept_max))) 1926 goto fail; 1927 1928 if (nla_put_u32(msg, MPTCP_PM_ATTR_SUBFLOWS, 1929 READ_ONCE(pernet->subflows_max))) 1930 goto fail; 1931 1932 genlmsg_end(msg, reply); 1933 return genlmsg_reply(msg, info); 1934 1935 fail: 1936 GENL_SET_ERR_MSG(info, "not enough space in Netlink message"); 1937 nlmsg_free(msg); 1938 return -EMSGSIZE; 1939 } 1940 1941 static void mptcp_pm_nl_fullmesh(struct mptcp_sock *msk, 1942 struct mptcp_addr_info *addr) 1943 { 1944 struct mptcp_rm_list list = { .nr = 0 }; 1945 1946 list.ids[list.nr++] = mptcp_endp_get_local_id(msk, addr); 1947 1948 spin_lock_bh(&msk->pm.lock); 1949 mptcp_pm_nl_rm_subflow_received(msk, &list); 1950 __mark_subflow_endp_available(msk, list.ids[0]); 1951 mptcp_pm_create_subflow_or_signal_addr(msk); 1952 spin_unlock_bh(&msk->pm.lock); 1953 } 1954 1955 static int mptcp_nl_set_flags(struct net *net, 1956 struct mptcp_addr_info *addr, 1957 u8 bkup, u8 changed) 1958 { 1959 long s_slot = 0, s_num = 0; 1960 struct mptcp_sock *msk; 1961 int ret = -EINVAL; 1962 1963 while ((msk = mptcp_token_iter_next(net, &s_slot, &s_num)) != NULL) { 1964 struct sock *sk = (struct sock *)msk; 1965 1966 if (list_empty(&msk->conn_list) || mptcp_pm_is_userspace(msk)) 1967 goto next; 1968 1969 lock_sock(sk); 1970 if (changed & MPTCP_PM_ADDR_FLAG_BACKUP) 1971 ret = mptcp_pm_nl_mp_prio_send_ack(msk, addr, NULL, bkup); 1972 if (changed & MPTCP_PM_ADDR_FLAG_FULLMESH) 1973 mptcp_pm_nl_fullmesh(msk, addr); 1974 release_sock(sk); 1975 1976 next: 1977 sock_put(sk); 1978 cond_resched(); 1979 } 1980 1981 return ret; 1982 } 1983 1984 int mptcp_pm_nl_set_flags(struct sk_buff *skb, struct genl_info *info) 1985 { 1986 struct mptcp_pm_addr_entry addr = { .addr = { .family = AF_UNSPEC }, }; 1987 struct nlattr *attr = info->attrs[MPTCP_PM_ATTR_ADDR]; 1988 u8 changed, mask = MPTCP_PM_ADDR_FLAG_BACKUP | 1989 MPTCP_PM_ADDR_FLAG_FULLMESH; 1990 struct net *net = sock_net(skb->sk); 1991 struct mptcp_pm_addr_entry *entry; 1992 struct pm_nl_pernet *pernet; 1993 u8 lookup_by_id = 0; 1994 u8 bkup = 0; 1995 int ret; 1996 1997 pernet = pm_nl_get_pernet(net); 1998 1999 ret = mptcp_pm_parse_entry(attr, info, false, &addr); 2000 if (ret < 0) 2001 return ret; 2002 2003 if (addr.addr.family == AF_UNSPEC) { 2004 lookup_by_id = 1; 2005 if (!addr.addr.id) { 2006 GENL_SET_ERR_MSG(info, "missing required inputs"); 2007 return -EOPNOTSUPP; 2008 } 2009 } 2010 2011 if (addr.flags & MPTCP_PM_ADDR_FLAG_BACKUP) 2012 bkup = 1; 2013 2014 spin_lock_bh(&pernet->lock); 2015 entry = lookup_by_id ? __lookup_addr_by_id(pernet, addr.addr.id) : 2016 __lookup_addr(pernet, &addr.addr); 2017 if (!entry) { 2018 spin_unlock_bh(&pernet->lock); 2019 GENL_SET_ERR_MSG(info, "address not found"); 2020 return -EINVAL; 2021 } 2022 if ((addr.flags & MPTCP_PM_ADDR_FLAG_FULLMESH) && 2023 (entry->flags & MPTCP_PM_ADDR_FLAG_SIGNAL)) { 2024 spin_unlock_bh(&pernet->lock); 2025 GENL_SET_ERR_MSG(info, "invalid addr flags"); 2026 return -EINVAL; 2027 } 2028 2029 changed = (addr.flags ^ entry->flags) & mask; 2030 entry->flags = (entry->flags & ~mask) | (addr.flags & mask); 2031 addr = *entry; 2032 spin_unlock_bh(&pernet->lock); 2033 2034 mptcp_nl_set_flags(net, &addr.addr, bkup, changed); 2035 return 0; 2036 } 2037 2038 int mptcp_pm_nl_set_flags_doit(struct sk_buff *skb, struct genl_info *info) 2039 { 2040 return mptcp_pm_set_flags(skb, info); 2041 } 2042 2043 static void mptcp_nl_mcast_send(struct net *net, struct sk_buff *nlskb, gfp_t gfp) 2044 { 2045 genlmsg_multicast_netns(&mptcp_genl_family, net, 2046 nlskb, 0, MPTCP_PM_EV_GRP_OFFSET, gfp); 2047 } 2048 2049 bool mptcp_userspace_pm_active(const struct mptcp_sock *msk) 2050 { 2051 return genl_has_listeners(&mptcp_genl_family, 2052 sock_net((const struct sock *)msk), 2053 MPTCP_PM_EV_GRP_OFFSET); 2054 } 2055 2056 static int mptcp_event_add_subflow(struct sk_buff *skb, const struct sock *ssk) 2057 { 2058 const struct inet_sock *issk = inet_sk(ssk); 2059 const struct mptcp_subflow_context *sf; 2060 2061 if (nla_put_u16(skb, MPTCP_ATTR_FAMILY, ssk->sk_family)) 2062 return -EMSGSIZE; 2063 2064 switch (ssk->sk_family) { 2065 case AF_INET: 2066 if (nla_put_in_addr(skb, MPTCP_ATTR_SADDR4, issk->inet_saddr)) 2067 return -EMSGSIZE; 2068 if (nla_put_in_addr(skb, MPTCP_ATTR_DADDR4, issk->inet_daddr)) 2069 return -EMSGSIZE; 2070 break; 2071 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 2072 case AF_INET6: { 2073 const struct ipv6_pinfo *np = inet6_sk(ssk); 2074 2075 if (nla_put_in6_addr(skb, MPTCP_ATTR_SADDR6, &np->saddr)) 2076 return -EMSGSIZE; 2077 if (nla_put_in6_addr(skb, MPTCP_ATTR_DADDR6, &ssk->sk_v6_daddr)) 2078 return -EMSGSIZE; 2079 break; 2080 } 2081 #endif 2082 default: 2083 WARN_ON_ONCE(1); 2084 return -EMSGSIZE; 2085 } 2086 2087 if (nla_put_be16(skb, MPTCP_ATTR_SPORT, issk->inet_sport)) 2088 return -EMSGSIZE; 2089 if (nla_put_be16(skb, MPTCP_ATTR_DPORT, issk->inet_dport)) 2090 return -EMSGSIZE; 2091 2092 sf = mptcp_subflow_ctx(ssk); 2093 if (WARN_ON_ONCE(!sf)) 2094 return -EINVAL; 2095 2096 if (nla_put_u8(skb, MPTCP_ATTR_LOC_ID, subflow_get_local_id(sf))) 2097 return -EMSGSIZE; 2098 2099 if (nla_put_u8(skb, MPTCP_ATTR_REM_ID, sf->remote_id)) 2100 return -EMSGSIZE; 2101 2102 return 0; 2103 } 2104 2105 static int mptcp_event_put_token_and_ssk(struct sk_buff *skb, 2106 const struct mptcp_sock *msk, 2107 const struct sock *ssk) 2108 { 2109 const struct sock *sk = (const struct sock *)msk; 2110 const struct mptcp_subflow_context *sf; 2111 u8 sk_err; 2112 2113 if (nla_put_u32(skb, MPTCP_ATTR_TOKEN, READ_ONCE(msk->token))) 2114 return -EMSGSIZE; 2115 2116 if (mptcp_event_add_subflow(skb, ssk)) 2117 return -EMSGSIZE; 2118 2119 sf = mptcp_subflow_ctx(ssk); 2120 if (WARN_ON_ONCE(!sf)) 2121 return -EINVAL; 2122 2123 if (nla_put_u8(skb, MPTCP_ATTR_BACKUP, sf->backup)) 2124 return -EMSGSIZE; 2125 2126 if (ssk->sk_bound_dev_if && 2127 nla_put_s32(skb, MPTCP_ATTR_IF_IDX, ssk->sk_bound_dev_if)) 2128 return -EMSGSIZE; 2129 2130 sk_err = READ_ONCE(ssk->sk_err); 2131 if (sk_err && sk->sk_state == TCP_ESTABLISHED && 2132 nla_put_u8(skb, MPTCP_ATTR_ERROR, sk_err)) 2133 return -EMSGSIZE; 2134 2135 return 0; 2136 } 2137 2138 static int mptcp_event_sub_established(struct sk_buff *skb, 2139 const struct mptcp_sock *msk, 2140 const struct sock *ssk) 2141 { 2142 return mptcp_event_put_token_and_ssk(skb, msk, ssk); 2143 } 2144 2145 static int mptcp_event_sub_closed(struct sk_buff *skb, 2146 const struct mptcp_sock *msk, 2147 const struct sock *ssk) 2148 { 2149 const struct mptcp_subflow_context *sf; 2150 2151 if (mptcp_event_put_token_and_ssk(skb, msk, ssk)) 2152 return -EMSGSIZE; 2153 2154 sf = mptcp_subflow_ctx(ssk); 2155 if (!sf->reset_seen) 2156 return 0; 2157 2158 if (nla_put_u32(skb, MPTCP_ATTR_RESET_REASON, sf->reset_reason)) 2159 return -EMSGSIZE; 2160 2161 if (nla_put_u32(skb, MPTCP_ATTR_RESET_FLAGS, sf->reset_transient)) 2162 return -EMSGSIZE; 2163 2164 return 0; 2165 } 2166 2167 static int mptcp_event_created(struct sk_buff *skb, 2168 const struct mptcp_sock *msk, 2169 const struct sock *ssk) 2170 { 2171 int err = nla_put_u32(skb, MPTCP_ATTR_TOKEN, READ_ONCE(msk->token)); 2172 2173 if (err) 2174 return err; 2175 2176 if (nla_put_u8(skb, MPTCP_ATTR_SERVER_SIDE, READ_ONCE(msk->pm.server_side))) 2177 return -EMSGSIZE; 2178 2179 return mptcp_event_add_subflow(skb, ssk); 2180 } 2181 2182 void mptcp_event_addr_removed(const struct mptcp_sock *msk, uint8_t id) 2183 { 2184 struct net *net = sock_net((const struct sock *)msk); 2185 struct nlmsghdr *nlh; 2186 struct sk_buff *skb; 2187 2188 if (!genl_has_listeners(&mptcp_genl_family, net, MPTCP_PM_EV_GRP_OFFSET)) 2189 return; 2190 2191 skb = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_ATOMIC); 2192 if (!skb) 2193 return; 2194 2195 nlh = genlmsg_put(skb, 0, 0, &mptcp_genl_family, 0, MPTCP_EVENT_REMOVED); 2196 if (!nlh) 2197 goto nla_put_failure; 2198 2199 if (nla_put_u32(skb, MPTCP_ATTR_TOKEN, READ_ONCE(msk->token))) 2200 goto nla_put_failure; 2201 2202 if (nla_put_u8(skb, MPTCP_ATTR_REM_ID, id)) 2203 goto nla_put_failure; 2204 2205 genlmsg_end(skb, nlh); 2206 mptcp_nl_mcast_send(net, skb, GFP_ATOMIC); 2207 return; 2208 2209 nla_put_failure: 2210 nlmsg_free(skb); 2211 } 2212 2213 void mptcp_event_addr_announced(const struct sock *ssk, 2214 const struct mptcp_addr_info *info) 2215 { 2216 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk); 2217 struct mptcp_sock *msk = mptcp_sk(subflow->conn); 2218 struct net *net = sock_net(ssk); 2219 struct nlmsghdr *nlh; 2220 struct sk_buff *skb; 2221 2222 if (!genl_has_listeners(&mptcp_genl_family, net, MPTCP_PM_EV_GRP_OFFSET)) 2223 return; 2224 2225 skb = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_ATOMIC); 2226 if (!skb) 2227 return; 2228 2229 nlh = genlmsg_put(skb, 0, 0, &mptcp_genl_family, 0, 2230 MPTCP_EVENT_ANNOUNCED); 2231 if (!nlh) 2232 goto nla_put_failure; 2233 2234 if (nla_put_u32(skb, MPTCP_ATTR_TOKEN, READ_ONCE(msk->token))) 2235 goto nla_put_failure; 2236 2237 if (nla_put_u8(skb, MPTCP_ATTR_REM_ID, info->id)) 2238 goto nla_put_failure; 2239 2240 if (nla_put_be16(skb, MPTCP_ATTR_DPORT, 2241 info->port == 0 ? 2242 inet_sk(ssk)->inet_dport : 2243 info->port)) 2244 goto nla_put_failure; 2245 2246 switch (info->family) { 2247 case AF_INET: 2248 if (nla_put_in_addr(skb, MPTCP_ATTR_DADDR4, info->addr.s_addr)) 2249 goto nla_put_failure; 2250 break; 2251 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 2252 case AF_INET6: 2253 if (nla_put_in6_addr(skb, MPTCP_ATTR_DADDR6, &info->addr6)) 2254 goto nla_put_failure; 2255 break; 2256 #endif 2257 default: 2258 WARN_ON_ONCE(1); 2259 goto nla_put_failure; 2260 } 2261 2262 genlmsg_end(skb, nlh); 2263 mptcp_nl_mcast_send(net, skb, GFP_ATOMIC); 2264 return; 2265 2266 nla_put_failure: 2267 nlmsg_free(skb); 2268 } 2269 2270 void mptcp_event_pm_listener(const struct sock *ssk, 2271 enum mptcp_event_type event) 2272 { 2273 const struct inet_sock *issk = inet_sk(ssk); 2274 struct net *net = sock_net(ssk); 2275 struct nlmsghdr *nlh; 2276 struct sk_buff *skb; 2277 2278 if (!genl_has_listeners(&mptcp_genl_family, net, MPTCP_PM_EV_GRP_OFFSET)) 2279 return; 2280 2281 skb = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL); 2282 if (!skb) 2283 return; 2284 2285 nlh = genlmsg_put(skb, 0, 0, &mptcp_genl_family, 0, event); 2286 if (!nlh) 2287 goto nla_put_failure; 2288 2289 if (nla_put_u16(skb, MPTCP_ATTR_FAMILY, ssk->sk_family)) 2290 goto nla_put_failure; 2291 2292 if (nla_put_be16(skb, MPTCP_ATTR_SPORT, issk->inet_sport)) 2293 goto nla_put_failure; 2294 2295 switch (ssk->sk_family) { 2296 case AF_INET: 2297 if (nla_put_in_addr(skb, MPTCP_ATTR_SADDR4, issk->inet_saddr)) 2298 goto nla_put_failure; 2299 break; 2300 #if IS_ENABLED(CONFIG_MPTCP_IPV6) 2301 case AF_INET6: { 2302 const struct ipv6_pinfo *np = inet6_sk(ssk); 2303 2304 if (nla_put_in6_addr(skb, MPTCP_ATTR_SADDR6, &np->saddr)) 2305 goto nla_put_failure; 2306 break; 2307 } 2308 #endif 2309 default: 2310 WARN_ON_ONCE(1); 2311 goto nla_put_failure; 2312 } 2313 2314 genlmsg_end(skb, nlh); 2315 mptcp_nl_mcast_send(net, skb, GFP_KERNEL); 2316 return; 2317 2318 nla_put_failure: 2319 nlmsg_free(skb); 2320 } 2321 2322 void mptcp_event(enum mptcp_event_type type, const struct mptcp_sock *msk, 2323 const struct sock *ssk, gfp_t gfp) 2324 { 2325 struct net *net = sock_net((const struct sock *)msk); 2326 struct nlmsghdr *nlh; 2327 struct sk_buff *skb; 2328 2329 if (!genl_has_listeners(&mptcp_genl_family, net, MPTCP_PM_EV_GRP_OFFSET)) 2330 return; 2331 2332 skb = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp); 2333 if (!skb) 2334 return; 2335 2336 nlh = genlmsg_put(skb, 0, 0, &mptcp_genl_family, 0, type); 2337 if (!nlh) 2338 goto nla_put_failure; 2339 2340 switch (type) { 2341 case MPTCP_EVENT_UNSPEC: 2342 WARN_ON_ONCE(1); 2343 break; 2344 case MPTCP_EVENT_CREATED: 2345 case MPTCP_EVENT_ESTABLISHED: 2346 if (mptcp_event_created(skb, msk, ssk) < 0) 2347 goto nla_put_failure; 2348 break; 2349 case MPTCP_EVENT_CLOSED: 2350 if (nla_put_u32(skb, MPTCP_ATTR_TOKEN, READ_ONCE(msk->token)) < 0) 2351 goto nla_put_failure; 2352 break; 2353 case MPTCP_EVENT_ANNOUNCED: 2354 case MPTCP_EVENT_REMOVED: 2355 /* call mptcp_event_addr_announced()/removed instead */ 2356 WARN_ON_ONCE(1); 2357 break; 2358 case MPTCP_EVENT_SUB_ESTABLISHED: 2359 case MPTCP_EVENT_SUB_PRIORITY: 2360 if (mptcp_event_sub_established(skb, msk, ssk) < 0) 2361 goto nla_put_failure; 2362 break; 2363 case MPTCP_EVENT_SUB_CLOSED: 2364 if (mptcp_event_sub_closed(skb, msk, ssk) < 0) 2365 goto nla_put_failure; 2366 break; 2367 case MPTCP_EVENT_LISTENER_CREATED: 2368 case MPTCP_EVENT_LISTENER_CLOSED: 2369 break; 2370 } 2371 2372 genlmsg_end(skb, nlh); 2373 mptcp_nl_mcast_send(net, skb, gfp); 2374 return; 2375 2376 nla_put_failure: 2377 nlmsg_free(skb); 2378 } 2379 2380 struct genl_family mptcp_genl_family __ro_after_init = { 2381 .name = MPTCP_PM_NAME, 2382 .version = MPTCP_PM_VER, 2383 .netnsok = true, 2384 .module = THIS_MODULE, 2385 .ops = mptcp_pm_nl_ops, 2386 .n_ops = ARRAY_SIZE(mptcp_pm_nl_ops), 2387 .resv_start_op = MPTCP_PM_CMD_SUBFLOW_DESTROY + 1, 2388 .mcgrps = mptcp_pm_mcgrps, 2389 .n_mcgrps = ARRAY_SIZE(mptcp_pm_mcgrps), 2390 }; 2391 2392 static int __net_init pm_nl_init_net(struct net *net) 2393 { 2394 struct pm_nl_pernet *pernet = pm_nl_get_pernet(net); 2395 2396 INIT_LIST_HEAD_RCU(&pernet->local_addr_list); 2397 2398 /* Cit. 2 subflows ought to be enough for anybody. */ 2399 pernet->subflows_max = 2; 2400 pernet->next_id = 1; 2401 pernet->stale_loss_cnt = 4; 2402 spin_lock_init(&pernet->lock); 2403 2404 /* No need to initialize other pernet fields, the struct is zeroed at 2405 * allocation time. 2406 */ 2407 2408 return 0; 2409 } 2410 2411 static void __net_exit pm_nl_exit_net(struct list_head *net_list) 2412 { 2413 struct net *net; 2414 2415 list_for_each_entry(net, net_list, exit_list) { 2416 struct pm_nl_pernet *pernet = pm_nl_get_pernet(net); 2417 2418 /* net is removed from namespace list, can't race with 2419 * other modifiers, also netns core already waited for a 2420 * RCU grace period. 2421 */ 2422 __flush_addrs(&pernet->local_addr_list); 2423 } 2424 } 2425 2426 static struct pernet_operations mptcp_pm_pernet_ops = { 2427 .init = pm_nl_init_net, 2428 .exit_batch = pm_nl_exit_net, 2429 .id = &pm_nl_pernet_id, 2430 .size = sizeof(struct pm_nl_pernet), 2431 }; 2432 2433 void __init mptcp_pm_nl_init(void) 2434 { 2435 if (register_pernet_subsys(&mptcp_pm_pernet_ops) < 0) 2436 panic("Failed to register MPTCP PM pernet subsystem.\n"); 2437 2438 if (genl_register_family(&mptcp_genl_family)) 2439 panic("Failed to register MPTCP PM netlink family\n"); 2440 } 2441