1 // SPDX-License-Identifier: GPL-2.0-only 2 /* L2TP core. 3 * 4 * Copyright (c) 2008,2009,2010 Katalix Systems Ltd 5 * 6 * This file contains some code of the original L2TPv2 pppol2tp 7 * driver, which has the following copyright: 8 * 9 * Authors: Martijn van Oosterhout <kleptog@svana.org> 10 * James Chapman (jchapman@katalix.com) 11 * Contributors: 12 * Michal Ostrowski <mostrows@speakeasy.net> 13 * Arnaldo Carvalho de Melo <acme@xconectiva.com.br> 14 * David S. Miller (davem@redhat.com) 15 */ 16 17 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 18 19 #include <linux/module.h> 20 #include <linux/string.h> 21 #include <linux/list.h> 22 #include <linux/rculist.h> 23 #include <linux/uaccess.h> 24 25 #include <linux/kernel.h> 26 #include <linux/spinlock.h> 27 #include <linux/kthread.h> 28 #include <linux/sched.h> 29 #include <linux/slab.h> 30 #include <linux/errno.h> 31 #include <linux/jiffies.h> 32 33 #include <linux/netdevice.h> 34 #include <linux/net.h> 35 #include <linux/inetdevice.h> 36 #include <linux/skbuff.h> 37 #include <linux/init.h> 38 #include <linux/in.h> 39 #include <linux/ip.h> 40 #include <linux/udp.h> 41 #include <linux/l2tp.h> 42 #include <linux/hash.h> 43 #include <linux/sort.h> 44 #include <linux/file.h> 45 #include <linux/nsproxy.h> 46 #include <net/net_namespace.h> 47 #include <net/netns/generic.h> 48 #include <net/dst.h> 49 #include <net/ip.h> 50 #include <net/udp.h> 51 #include <net/udp_tunnel.h> 52 #include <net/inet_common.h> 53 #include <net/xfrm.h> 54 #include <net/protocol.h> 55 #include <net/inet6_connection_sock.h> 56 #include <net/inet_ecn.h> 57 #include <net/ip6_route.h> 58 #include <net/ip6_checksum.h> 59 60 #include <asm/byteorder.h> 61 #include <linux/atomic.h> 62 63 #include "l2tp_core.h" 64 65 #define L2TP_DRV_VERSION "V2.0" 66 67 /* L2TP header constants */ 68 #define L2TP_HDRFLAG_T 0x8000 69 #define L2TP_HDRFLAG_L 0x4000 70 #define L2TP_HDRFLAG_S 0x0800 71 #define L2TP_HDRFLAG_O 0x0200 72 #define L2TP_HDRFLAG_P 0x0100 73 74 #define L2TP_HDR_VER_MASK 0x000F 75 #define L2TP_HDR_VER_2 0x0002 76 #define L2TP_HDR_VER_3 0x0003 77 78 /* L2TPv3 default L2-specific sublayer */ 79 #define L2TP_SLFLAG_S 0x40000000 80 #define L2TP_SL_SEQ_MASK 0x00ffffff 81 82 #define L2TP_HDR_SIZE_MAX 14 83 84 /* Default trace flags */ 85 #define L2TP_DEFAULT_DEBUG_FLAGS 0 86 87 /* Private data stored for received packets in the skb. 88 */ 89 struct l2tp_skb_cb { 90 u32 ns; 91 u16 has_seq; 92 u16 length; 93 unsigned long expires; 94 }; 95 96 #define L2TP_SKB_CB(skb) ((struct l2tp_skb_cb *)&(skb)->cb[sizeof(struct inet_skb_parm)]) 97 98 static struct workqueue_struct *l2tp_wq; 99 100 /* per-net private data for this module */ 101 static unsigned int l2tp_net_id; 102 struct l2tp_net { 103 struct list_head l2tp_tunnel_list; 104 /* Lock for write access to l2tp_tunnel_list */ 105 spinlock_t l2tp_tunnel_list_lock; 106 struct hlist_head l2tp_session_hlist[L2TP_HASH_SIZE_2]; 107 /* Lock for write access to l2tp_session_hlist */ 108 spinlock_t l2tp_session_hlist_lock; 109 }; 110 111 #if IS_ENABLED(CONFIG_IPV6) 112 static bool l2tp_sk_is_v6(struct sock *sk) 113 { 114 return sk->sk_family == PF_INET6 && 115 !ipv6_addr_v4mapped(&sk->sk_v6_daddr); 116 } 117 #endif 118 119 static inline struct l2tp_tunnel *l2tp_tunnel(struct sock *sk) 120 { 121 return sk->sk_user_data; 122 } 123 124 static inline struct l2tp_net *l2tp_pernet(const struct net *net) 125 { 126 return net_generic(net, l2tp_net_id); 127 } 128 129 /* Session hash global list for L2TPv3. 130 * The session_id SHOULD be random according to RFC3931, but several 131 * L2TP implementations use incrementing session_ids. So we do a real 132 * hash on the session_id, rather than a simple bitmask. 133 */ 134 static inline struct hlist_head * 135 l2tp_session_id_hash_2(struct l2tp_net *pn, u32 session_id) 136 { 137 return &pn->l2tp_session_hlist[hash_32(session_id, L2TP_HASH_BITS_2)]; 138 } 139 140 /* Session hash list. 141 * The session_id SHOULD be random according to RFC2661, but several 142 * L2TP implementations (Cisco and Microsoft) use incrementing 143 * session_ids. So we do a real hash on the session_id, rather than a 144 * simple bitmask. 145 */ 146 static inline struct hlist_head * 147 l2tp_session_id_hash(struct l2tp_tunnel *tunnel, u32 session_id) 148 { 149 return &tunnel->session_hlist[hash_32(session_id, L2TP_HASH_BITS)]; 150 } 151 152 void l2tp_tunnel_free(struct l2tp_tunnel *tunnel) 153 { 154 sock_put(tunnel->sock); 155 /* the tunnel is freed in the socket destructor */ 156 } 157 EXPORT_SYMBOL(l2tp_tunnel_free); 158 159 /* Lookup a tunnel. A new reference is held on the returned tunnel. */ 160 struct l2tp_tunnel *l2tp_tunnel_get(const struct net *net, u32 tunnel_id) 161 { 162 const struct l2tp_net *pn = l2tp_pernet(net); 163 struct l2tp_tunnel *tunnel; 164 165 rcu_read_lock_bh(); 166 list_for_each_entry_rcu(tunnel, &pn->l2tp_tunnel_list, list) { 167 if (tunnel->tunnel_id == tunnel_id && 168 refcount_inc_not_zero(&tunnel->ref_count)) { 169 rcu_read_unlock_bh(); 170 171 return tunnel; 172 } 173 } 174 rcu_read_unlock_bh(); 175 176 return NULL; 177 } 178 EXPORT_SYMBOL_GPL(l2tp_tunnel_get); 179 180 struct l2tp_tunnel *l2tp_tunnel_get_nth(const struct net *net, int nth) 181 { 182 const struct l2tp_net *pn = l2tp_pernet(net); 183 struct l2tp_tunnel *tunnel; 184 int count = 0; 185 186 rcu_read_lock_bh(); 187 list_for_each_entry_rcu(tunnel, &pn->l2tp_tunnel_list, list) { 188 if (++count > nth && 189 refcount_inc_not_zero(&tunnel->ref_count)) { 190 rcu_read_unlock_bh(); 191 return tunnel; 192 } 193 } 194 rcu_read_unlock_bh(); 195 196 return NULL; 197 } 198 EXPORT_SYMBOL_GPL(l2tp_tunnel_get_nth); 199 200 struct l2tp_session *l2tp_tunnel_get_session(struct l2tp_tunnel *tunnel, 201 u32 session_id) 202 { 203 struct hlist_head *session_list; 204 struct l2tp_session *session; 205 206 session_list = l2tp_session_id_hash(tunnel, session_id); 207 208 read_lock_bh(&tunnel->hlist_lock); 209 hlist_for_each_entry(session, session_list, hlist) 210 if (session->session_id == session_id) { 211 l2tp_session_inc_refcount(session); 212 read_unlock_bh(&tunnel->hlist_lock); 213 214 return session; 215 } 216 read_unlock_bh(&tunnel->hlist_lock); 217 218 return NULL; 219 } 220 EXPORT_SYMBOL_GPL(l2tp_tunnel_get_session); 221 222 struct l2tp_session *l2tp_session_get(const struct net *net, u32 session_id) 223 { 224 struct hlist_head *session_list; 225 struct l2tp_session *session; 226 227 session_list = l2tp_session_id_hash_2(l2tp_pernet(net), session_id); 228 229 rcu_read_lock_bh(); 230 hlist_for_each_entry_rcu(session, session_list, global_hlist) 231 if (session->session_id == session_id) { 232 l2tp_session_inc_refcount(session); 233 rcu_read_unlock_bh(); 234 235 return session; 236 } 237 rcu_read_unlock_bh(); 238 239 return NULL; 240 } 241 EXPORT_SYMBOL_GPL(l2tp_session_get); 242 243 struct l2tp_session *l2tp_session_get_nth(struct l2tp_tunnel *tunnel, int nth) 244 { 245 int hash; 246 struct l2tp_session *session; 247 int count = 0; 248 249 read_lock_bh(&tunnel->hlist_lock); 250 for (hash = 0; hash < L2TP_HASH_SIZE; hash++) { 251 hlist_for_each_entry(session, &tunnel->session_hlist[hash], hlist) { 252 if (++count > nth) { 253 l2tp_session_inc_refcount(session); 254 read_unlock_bh(&tunnel->hlist_lock); 255 return session; 256 } 257 } 258 } 259 260 read_unlock_bh(&tunnel->hlist_lock); 261 262 return NULL; 263 } 264 EXPORT_SYMBOL_GPL(l2tp_session_get_nth); 265 266 /* Lookup a session by interface name. 267 * This is very inefficient but is only used by management interfaces. 268 */ 269 struct l2tp_session *l2tp_session_get_by_ifname(const struct net *net, 270 const char *ifname) 271 { 272 struct l2tp_net *pn = l2tp_pernet(net); 273 int hash; 274 struct l2tp_session *session; 275 276 rcu_read_lock_bh(); 277 for (hash = 0; hash < L2TP_HASH_SIZE_2; hash++) { 278 hlist_for_each_entry_rcu(session, &pn->l2tp_session_hlist[hash], global_hlist) { 279 if (!strcmp(session->ifname, ifname)) { 280 l2tp_session_inc_refcount(session); 281 rcu_read_unlock_bh(); 282 283 return session; 284 } 285 } 286 } 287 288 rcu_read_unlock_bh(); 289 290 return NULL; 291 } 292 EXPORT_SYMBOL_GPL(l2tp_session_get_by_ifname); 293 294 int l2tp_session_register(struct l2tp_session *session, 295 struct l2tp_tunnel *tunnel) 296 { 297 struct l2tp_session *session_walk; 298 struct hlist_head *g_head; 299 struct hlist_head *head; 300 struct l2tp_net *pn; 301 int err; 302 303 head = l2tp_session_id_hash(tunnel, session->session_id); 304 305 write_lock_bh(&tunnel->hlist_lock); 306 if (!tunnel->acpt_newsess) { 307 err = -ENODEV; 308 goto err_tlock; 309 } 310 311 hlist_for_each_entry(session_walk, head, hlist) 312 if (session_walk->session_id == session->session_id) { 313 err = -EEXIST; 314 goto err_tlock; 315 } 316 317 if (tunnel->version == L2TP_HDR_VER_3) { 318 pn = l2tp_pernet(tunnel->l2tp_net); 319 g_head = l2tp_session_id_hash_2(pn, session->session_id); 320 321 spin_lock_bh(&pn->l2tp_session_hlist_lock); 322 323 /* IP encap expects session IDs to be globally unique, while 324 * UDP encap doesn't. 325 */ 326 hlist_for_each_entry(session_walk, g_head, global_hlist) 327 if (session_walk->session_id == session->session_id && 328 (session_walk->tunnel->encap == L2TP_ENCAPTYPE_IP || 329 tunnel->encap == L2TP_ENCAPTYPE_IP)) { 330 err = -EEXIST; 331 goto err_tlock_pnlock; 332 } 333 334 l2tp_tunnel_inc_refcount(tunnel); 335 hlist_add_head_rcu(&session->global_hlist, g_head); 336 337 spin_unlock_bh(&pn->l2tp_session_hlist_lock); 338 } else { 339 l2tp_tunnel_inc_refcount(tunnel); 340 } 341 342 hlist_add_head(&session->hlist, head); 343 write_unlock_bh(&tunnel->hlist_lock); 344 345 return 0; 346 347 err_tlock_pnlock: 348 spin_unlock_bh(&pn->l2tp_session_hlist_lock); 349 err_tlock: 350 write_unlock_bh(&tunnel->hlist_lock); 351 352 return err; 353 } 354 EXPORT_SYMBOL_GPL(l2tp_session_register); 355 356 /***************************************************************************** 357 * Receive data handling 358 *****************************************************************************/ 359 360 /* Queue a skb in order. We come here only if the skb has an L2TP sequence 361 * number. 362 */ 363 static void l2tp_recv_queue_skb(struct l2tp_session *session, struct sk_buff *skb) 364 { 365 struct sk_buff *skbp; 366 struct sk_buff *tmp; 367 u32 ns = L2TP_SKB_CB(skb)->ns; 368 369 spin_lock_bh(&session->reorder_q.lock); 370 skb_queue_walk_safe(&session->reorder_q, skbp, tmp) { 371 if (L2TP_SKB_CB(skbp)->ns > ns) { 372 __skb_queue_before(&session->reorder_q, skbp, skb); 373 l2tp_dbg(session, L2TP_MSG_SEQ, 374 "%s: pkt %hu, inserted before %hu, reorder_q len=%d\n", 375 session->name, ns, L2TP_SKB_CB(skbp)->ns, 376 skb_queue_len(&session->reorder_q)); 377 atomic_long_inc(&session->stats.rx_oos_packets); 378 goto out; 379 } 380 } 381 382 __skb_queue_tail(&session->reorder_q, skb); 383 384 out: 385 spin_unlock_bh(&session->reorder_q.lock); 386 } 387 388 /* Dequeue a single skb. 389 */ 390 static void l2tp_recv_dequeue_skb(struct l2tp_session *session, struct sk_buff *skb) 391 { 392 struct l2tp_tunnel *tunnel = session->tunnel; 393 int length = L2TP_SKB_CB(skb)->length; 394 395 /* We're about to requeue the skb, so return resources 396 * to its current owner (a socket receive buffer). 397 */ 398 skb_orphan(skb); 399 400 atomic_long_inc(&tunnel->stats.rx_packets); 401 atomic_long_add(length, &tunnel->stats.rx_bytes); 402 atomic_long_inc(&session->stats.rx_packets); 403 atomic_long_add(length, &session->stats.rx_bytes); 404 405 if (L2TP_SKB_CB(skb)->has_seq) { 406 /* Bump our Nr */ 407 session->nr++; 408 session->nr &= session->nr_max; 409 410 l2tp_dbg(session, L2TP_MSG_SEQ, "%s: updated nr to %hu\n", 411 session->name, session->nr); 412 } 413 414 /* call private receive handler */ 415 if (session->recv_skb) 416 (*session->recv_skb)(session, skb, L2TP_SKB_CB(skb)->length); 417 else 418 kfree_skb(skb); 419 } 420 421 /* Dequeue skbs from the session's reorder_q, subject to packet order. 422 * Skbs that have been in the queue for too long are simply discarded. 423 */ 424 static void l2tp_recv_dequeue(struct l2tp_session *session) 425 { 426 struct sk_buff *skb; 427 struct sk_buff *tmp; 428 429 /* If the pkt at the head of the queue has the nr that we 430 * expect to send up next, dequeue it and any other 431 * in-sequence packets behind it. 432 */ 433 start: 434 spin_lock_bh(&session->reorder_q.lock); 435 skb_queue_walk_safe(&session->reorder_q, skb, tmp) { 436 if (time_after(jiffies, L2TP_SKB_CB(skb)->expires)) { 437 atomic_long_inc(&session->stats.rx_seq_discards); 438 atomic_long_inc(&session->stats.rx_errors); 439 l2tp_dbg(session, L2TP_MSG_SEQ, 440 "%s: oos pkt %u len %d discarded (too old), waiting for %u, reorder_q_len=%d\n", 441 session->name, L2TP_SKB_CB(skb)->ns, 442 L2TP_SKB_CB(skb)->length, session->nr, 443 skb_queue_len(&session->reorder_q)); 444 session->reorder_skip = 1; 445 __skb_unlink(skb, &session->reorder_q); 446 kfree_skb(skb); 447 continue; 448 } 449 450 if (L2TP_SKB_CB(skb)->has_seq) { 451 if (session->reorder_skip) { 452 l2tp_dbg(session, L2TP_MSG_SEQ, 453 "%s: advancing nr to next pkt: %u -> %u", 454 session->name, session->nr, 455 L2TP_SKB_CB(skb)->ns); 456 session->reorder_skip = 0; 457 session->nr = L2TP_SKB_CB(skb)->ns; 458 } 459 if (L2TP_SKB_CB(skb)->ns != session->nr) { 460 l2tp_dbg(session, L2TP_MSG_SEQ, 461 "%s: holding oos pkt %u len %d, waiting for %u, reorder_q_len=%d\n", 462 session->name, L2TP_SKB_CB(skb)->ns, 463 L2TP_SKB_CB(skb)->length, session->nr, 464 skb_queue_len(&session->reorder_q)); 465 goto out; 466 } 467 } 468 __skb_unlink(skb, &session->reorder_q); 469 470 /* Process the skb. We release the queue lock while we 471 * do so to let other contexts process the queue. 472 */ 473 spin_unlock_bh(&session->reorder_q.lock); 474 l2tp_recv_dequeue_skb(session, skb); 475 goto start; 476 } 477 478 out: 479 spin_unlock_bh(&session->reorder_q.lock); 480 } 481 482 static int l2tp_seq_check_rx_window(struct l2tp_session *session, u32 nr) 483 { 484 u32 nws; 485 486 if (nr >= session->nr) 487 nws = nr - session->nr; 488 else 489 nws = (session->nr_max + 1) - (session->nr - nr); 490 491 return nws < session->nr_window_size; 492 } 493 494 /* If packet has sequence numbers, queue it if acceptable. Returns 0 if 495 * acceptable, else non-zero. 496 */ 497 static int l2tp_recv_data_seq(struct l2tp_session *session, struct sk_buff *skb) 498 { 499 if (!l2tp_seq_check_rx_window(session, L2TP_SKB_CB(skb)->ns)) { 500 /* Packet sequence number is outside allowed window. 501 * Discard it. 502 */ 503 l2tp_dbg(session, L2TP_MSG_SEQ, 504 "%s: pkt %u len %d discarded, outside window, nr=%u\n", 505 session->name, L2TP_SKB_CB(skb)->ns, 506 L2TP_SKB_CB(skb)->length, session->nr); 507 goto discard; 508 } 509 510 if (session->reorder_timeout != 0) { 511 /* Packet reordering enabled. Add skb to session's 512 * reorder queue, in order of ns. 513 */ 514 l2tp_recv_queue_skb(session, skb); 515 goto out; 516 } 517 518 /* Packet reordering disabled. Discard out-of-sequence packets, while 519 * tracking the number if in-sequence packets after the first OOS packet 520 * is seen. After nr_oos_count_max in-sequence packets, reset the 521 * sequence number to re-enable packet reception. 522 */ 523 if (L2TP_SKB_CB(skb)->ns == session->nr) { 524 skb_queue_tail(&session->reorder_q, skb); 525 } else { 526 u32 nr_oos = L2TP_SKB_CB(skb)->ns; 527 u32 nr_next = (session->nr_oos + 1) & session->nr_max; 528 529 if (nr_oos == nr_next) 530 session->nr_oos_count++; 531 else 532 session->nr_oos_count = 0; 533 534 session->nr_oos = nr_oos; 535 if (session->nr_oos_count > session->nr_oos_count_max) { 536 session->reorder_skip = 1; 537 l2tp_dbg(session, L2TP_MSG_SEQ, 538 "%s: %d oos packets received. Resetting sequence numbers\n", 539 session->name, session->nr_oos_count); 540 } 541 if (!session->reorder_skip) { 542 atomic_long_inc(&session->stats.rx_seq_discards); 543 l2tp_dbg(session, L2TP_MSG_SEQ, 544 "%s: oos pkt %u len %d discarded, waiting for %u, reorder_q_len=%d\n", 545 session->name, L2TP_SKB_CB(skb)->ns, 546 L2TP_SKB_CB(skb)->length, session->nr, 547 skb_queue_len(&session->reorder_q)); 548 goto discard; 549 } 550 skb_queue_tail(&session->reorder_q, skb); 551 } 552 553 out: 554 return 0; 555 556 discard: 557 return 1; 558 } 559 560 /* Do receive processing of L2TP data frames. We handle both L2TPv2 561 * and L2TPv3 data frames here. 562 * 563 * L2TPv2 Data Message Header 564 * 565 * 0 1 2 3 566 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 567 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 568 * |T|L|x|x|S|x|O|P|x|x|x|x| Ver | Length (opt) | 569 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 570 * | Tunnel ID | Session ID | 571 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 572 * | Ns (opt) | Nr (opt) | 573 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 574 * | Offset Size (opt) | Offset pad... (opt) 575 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 576 * 577 * Data frames are marked by T=0. All other fields are the same as 578 * those in L2TP control frames. 579 * 580 * L2TPv3 Data Message Header 581 * 582 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 583 * | L2TP Session Header | 584 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 585 * | L2-Specific Sublayer | 586 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 587 * | Tunnel Payload ... 588 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 589 * 590 * L2TPv3 Session Header Over IP 591 * 592 * 0 1 2 3 593 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 594 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 595 * | Session ID | 596 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 597 * | Cookie (optional, maximum 64 bits)... 598 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 599 * | 600 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 601 * 602 * L2TPv3 L2-Specific Sublayer Format 603 * 604 * 0 1 2 3 605 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 606 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 607 * |x|S|x|x|x|x|x|x| Sequence Number | 608 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ 609 * 610 * Cookie value and sublayer format are negotiated with the peer when 611 * the session is set up. Unlike L2TPv2, we do not need to parse the 612 * packet header to determine if optional fields are present. 613 * 614 * Caller must already have parsed the frame and determined that it is 615 * a data (not control) frame before coming here. Fields up to the 616 * session-id have already been parsed and ptr points to the data 617 * after the session-id. 618 */ 619 void l2tp_recv_common(struct l2tp_session *session, struct sk_buff *skb, 620 unsigned char *ptr, unsigned char *optr, u16 hdrflags, 621 int length) 622 { 623 struct l2tp_tunnel *tunnel = session->tunnel; 624 u32 ns = 0, nr = 0; 625 int offset; 626 627 /* Parse and check optional cookie */ 628 if (session->peer_cookie_len > 0) { 629 if (memcmp(ptr, &session->peer_cookie[0], session->peer_cookie_len)) { 630 l2tp_info(tunnel, L2TP_MSG_DATA, 631 "%s: cookie mismatch (%u/%u). Discarding.\n", 632 tunnel->name, tunnel->tunnel_id, 633 session->session_id); 634 atomic_long_inc(&session->stats.rx_cookie_discards); 635 goto discard; 636 } 637 ptr += session->peer_cookie_len; 638 } 639 640 /* Handle the optional sequence numbers. Sequence numbers are 641 * in different places for L2TPv2 and L2TPv3. 642 * 643 * If we are the LAC, enable/disable sequence numbers under 644 * the control of the LNS. If no sequence numbers present but 645 * we were expecting them, discard frame. 646 */ 647 L2TP_SKB_CB(skb)->has_seq = 0; 648 if (tunnel->version == L2TP_HDR_VER_2) { 649 if (hdrflags & L2TP_HDRFLAG_S) { 650 ns = ntohs(*(__be16 *)ptr); 651 ptr += 2; 652 nr = ntohs(*(__be16 *)ptr); 653 ptr += 2; 654 655 /* Store L2TP info in the skb */ 656 L2TP_SKB_CB(skb)->ns = ns; 657 L2TP_SKB_CB(skb)->has_seq = 1; 658 659 l2tp_dbg(session, L2TP_MSG_SEQ, 660 "%s: recv data ns=%u, nr=%u, session nr=%u\n", 661 session->name, ns, nr, session->nr); 662 } 663 } else if (session->l2specific_type == L2TP_L2SPECTYPE_DEFAULT) { 664 u32 l2h = ntohl(*(__be32 *)ptr); 665 666 if (l2h & 0x40000000) { 667 ns = l2h & 0x00ffffff; 668 669 /* Store L2TP info in the skb */ 670 L2TP_SKB_CB(skb)->ns = ns; 671 L2TP_SKB_CB(skb)->has_seq = 1; 672 673 l2tp_dbg(session, L2TP_MSG_SEQ, 674 "%s: recv data ns=%u, session nr=%u\n", 675 session->name, ns, session->nr); 676 } 677 ptr += 4; 678 } 679 680 if (L2TP_SKB_CB(skb)->has_seq) { 681 /* Received a packet with sequence numbers. If we're the LAC, 682 * check if we sre sending sequence numbers and if not, 683 * configure it so. 684 */ 685 if (!session->lns_mode && !session->send_seq) { 686 l2tp_info(session, L2TP_MSG_SEQ, 687 "%s: requested to enable seq numbers by LNS\n", 688 session->name); 689 session->send_seq = 1; 690 l2tp_session_set_header_len(session, tunnel->version); 691 } 692 } else { 693 /* No sequence numbers. 694 * If user has configured mandatory sequence numbers, discard. 695 */ 696 if (session->recv_seq) { 697 l2tp_warn(session, L2TP_MSG_SEQ, 698 "%s: recv data has no seq numbers when required. Discarding.\n", 699 session->name); 700 atomic_long_inc(&session->stats.rx_seq_discards); 701 goto discard; 702 } 703 704 /* If we're the LAC and we're sending sequence numbers, the 705 * LNS has requested that we no longer send sequence numbers. 706 * If we're the LNS and we're sending sequence numbers, the 707 * LAC is broken. Discard the frame. 708 */ 709 if (!session->lns_mode && session->send_seq) { 710 l2tp_info(session, L2TP_MSG_SEQ, 711 "%s: requested to disable seq numbers by LNS\n", 712 session->name); 713 session->send_seq = 0; 714 l2tp_session_set_header_len(session, tunnel->version); 715 } else if (session->send_seq) { 716 l2tp_warn(session, L2TP_MSG_SEQ, 717 "%s: recv data has no seq numbers when required. Discarding.\n", 718 session->name); 719 atomic_long_inc(&session->stats.rx_seq_discards); 720 goto discard; 721 } 722 } 723 724 /* Session data offset is defined only for L2TPv2 and is 725 * indicated by an optional 16-bit value in the header. 726 */ 727 if (tunnel->version == L2TP_HDR_VER_2) { 728 /* If offset bit set, skip it. */ 729 if (hdrflags & L2TP_HDRFLAG_O) { 730 offset = ntohs(*(__be16 *)ptr); 731 ptr += 2 + offset; 732 } 733 } 734 735 offset = ptr - optr; 736 if (!pskb_may_pull(skb, offset)) 737 goto discard; 738 739 __skb_pull(skb, offset); 740 741 /* Prepare skb for adding to the session's reorder_q. Hold 742 * packets for max reorder_timeout or 1 second if not 743 * reordering. 744 */ 745 L2TP_SKB_CB(skb)->length = length; 746 L2TP_SKB_CB(skb)->expires = jiffies + 747 (session->reorder_timeout ? session->reorder_timeout : HZ); 748 749 /* Add packet to the session's receive queue. Reordering is done here, if 750 * enabled. Saved L2TP protocol info is stored in skb->sb[]. 751 */ 752 if (L2TP_SKB_CB(skb)->has_seq) { 753 if (l2tp_recv_data_seq(session, skb)) 754 goto discard; 755 } else { 756 /* No sequence numbers. Add the skb to the tail of the 757 * reorder queue. This ensures that it will be 758 * delivered after all previous sequenced skbs. 759 */ 760 skb_queue_tail(&session->reorder_q, skb); 761 } 762 763 /* Try to dequeue as many skbs from reorder_q as we can. */ 764 l2tp_recv_dequeue(session); 765 766 return; 767 768 discard: 769 atomic_long_inc(&session->stats.rx_errors); 770 kfree_skb(skb); 771 } 772 EXPORT_SYMBOL(l2tp_recv_common); 773 774 /* Drop skbs from the session's reorder_q 775 */ 776 static void l2tp_session_queue_purge(struct l2tp_session *session) 777 { 778 struct sk_buff *skb = NULL; 779 780 if (WARN_ON(session->magic != L2TP_SESSION_MAGIC)) 781 return; 782 783 while ((skb = skb_dequeue(&session->reorder_q))) { 784 atomic_long_inc(&session->stats.rx_errors); 785 kfree_skb(skb); 786 } 787 } 788 789 /* Internal UDP receive frame. Do the real work of receiving an L2TP data frame 790 * here. The skb is not on a list when we get here. 791 * Returns 0 if the packet was a data packet and was successfully passed on. 792 * Returns 1 if the packet was not a good data packet and could not be 793 * forwarded. All such packets are passed up to userspace to deal with. 794 */ 795 static int l2tp_udp_recv_core(struct l2tp_tunnel *tunnel, struct sk_buff *skb) 796 { 797 struct l2tp_session *session = NULL; 798 unsigned char *ptr, *optr; 799 u16 hdrflags; 800 u32 tunnel_id, session_id; 801 u16 version; 802 int length; 803 804 /* UDP has verifed checksum */ 805 806 /* UDP always verifies the packet length. */ 807 __skb_pull(skb, sizeof(struct udphdr)); 808 809 /* Short packet? */ 810 if (!pskb_may_pull(skb, L2TP_HDR_SIZE_MAX)) { 811 l2tp_info(tunnel, L2TP_MSG_DATA, 812 "%s: recv short packet (len=%d)\n", 813 tunnel->name, skb->len); 814 goto error; 815 } 816 817 /* Trace packet contents, if enabled */ 818 if (tunnel->debug & L2TP_MSG_DATA) { 819 length = min(32u, skb->len); 820 if (!pskb_may_pull(skb, length)) 821 goto error; 822 823 pr_debug("%s: recv\n", tunnel->name); 824 print_hex_dump_bytes("", DUMP_PREFIX_OFFSET, skb->data, length); 825 } 826 827 /* Point to L2TP header */ 828 optr = skb->data; 829 ptr = skb->data; 830 831 /* Get L2TP header flags */ 832 hdrflags = ntohs(*(__be16 *)ptr); 833 834 /* Check protocol version */ 835 version = hdrflags & L2TP_HDR_VER_MASK; 836 if (version != tunnel->version) { 837 l2tp_info(tunnel, L2TP_MSG_DATA, 838 "%s: recv protocol version mismatch: got %d expected %d\n", 839 tunnel->name, version, tunnel->version); 840 goto error; 841 } 842 843 /* Get length of L2TP packet */ 844 length = skb->len; 845 846 /* If type is control packet, it is handled by userspace. */ 847 if (hdrflags & L2TP_HDRFLAG_T) { 848 l2tp_dbg(tunnel, L2TP_MSG_DATA, 849 "%s: recv control packet, len=%d\n", 850 tunnel->name, length); 851 goto error; 852 } 853 854 /* Skip flags */ 855 ptr += 2; 856 857 if (tunnel->version == L2TP_HDR_VER_2) { 858 /* If length is present, skip it */ 859 if (hdrflags & L2TP_HDRFLAG_L) 860 ptr += 2; 861 862 /* Extract tunnel and session ID */ 863 tunnel_id = ntohs(*(__be16 *)ptr); 864 ptr += 2; 865 session_id = ntohs(*(__be16 *)ptr); 866 ptr += 2; 867 } else { 868 ptr += 2; /* skip reserved bits */ 869 tunnel_id = tunnel->tunnel_id; 870 session_id = ntohl(*(__be32 *)ptr); 871 ptr += 4; 872 } 873 874 /* Find the session context */ 875 session = l2tp_tunnel_get_session(tunnel, session_id); 876 if (!session || !session->recv_skb) { 877 if (session) 878 l2tp_session_dec_refcount(session); 879 880 /* Not found? Pass to userspace to deal with */ 881 l2tp_info(tunnel, L2TP_MSG_DATA, 882 "%s: no session found (%u/%u). Passing up.\n", 883 tunnel->name, tunnel_id, session_id); 884 goto error; 885 } 886 887 if (tunnel->version == L2TP_HDR_VER_3 && 888 l2tp_v3_ensure_opt_in_linear(session, skb, &ptr, &optr)) 889 goto error; 890 891 l2tp_recv_common(session, skb, ptr, optr, hdrflags, length); 892 l2tp_session_dec_refcount(session); 893 894 return 0; 895 896 error: 897 /* Put UDP header back */ 898 __skb_push(skb, sizeof(struct udphdr)); 899 900 return 1; 901 } 902 903 /* UDP encapsulation receive handler. See net/ipv4/udp.c. 904 * Return codes: 905 * 0 : success. 906 * <0: error 907 * >0: skb should be passed up to userspace as UDP. 908 */ 909 int l2tp_udp_encap_recv(struct sock *sk, struct sk_buff *skb) 910 { 911 struct l2tp_tunnel *tunnel; 912 913 tunnel = rcu_dereference_sk_user_data(sk); 914 if (!tunnel) 915 goto pass_up; 916 917 l2tp_dbg(tunnel, L2TP_MSG_DATA, "%s: received %d bytes\n", 918 tunnel->name, skb->len); 919 920 if (l2tp_udp_recv_core(tunnel, skb)) 921 goto pass_up; 922 923 return 0; 924 925 pass_up: 926 return 1; 927 } 928 EXPORT_SYMBOL_GPL(l2tp_udp_encap_recv); 929 930 /************************************************************************ 931 * Transmit handling 932 ***********************************************************************/ 933 934 /* Build an L2TP header for the session into the buffer provided. 935 */ 936 static int l2tp_build_l2tpv2_header(struct l2tp_session *session, void *buf) 937 { 938 struct l2tp_tunnel *tunnel = session->tunnel; 939 __be16 *bufp = buf; 940 __be16 *optr = buf; 941 u16 flags = L2TP_HDR_VER_2; 942 u32 tunnel_id = tunnel->peer_tunnel_id; 943 u32 session_id = session->peer_session_id; 944 945 if (session->send_seq) 946 flags |= L2TP_HDRFLAG_S; 947 948 /* Setup L2TP header. */ 949 *bufp++ = htons(flags); 950 *bufp++ = htons(tunnel_id); 951 *bufp++ = htons(session_id); 952 if (session->send_seq) { 953 *bufp++ = htons(session->ns); 954 *bufp++ = 0; 955 session->ns++; 956 session->ns &= 0xffff; 957 l2tp_dbg(session, L2TP_MSG_SEQ, "%s: updated ns to %u\n", 958 session->name, session->ns); 959 } 960 961 return bufp - optr; 962 } 963 964 static int l2tp_build_l2tpv3_header(struct l2tp_session *session, void *buf) 965 { 966 struct l2tp_tunnel *tunnel = session->tunnel; 967 char *bufp = buf; 968 char *optr = bufp; 969 970 /* Setup L2TP header. The header differs slightly for UDP and 971 * IP encapsulations. For UDP, there is 4 bytes of flags. 972 */ 973 if (tunnel->encap == L2TP_ENCAPTYPE_UDP) { 974 u16 flags = L2TP_HDR_VER_3; 975 *((__be16 *)bufp) = htons(flags); 976 bufp += 2; 977 *((__be16 *)bufp) = 0; 978 bufp += 2; 979 } 980 981 *((__be32 *)bufp) = htonl(session->peer_session_id); 982 bufp += 4; 983 if (session->cookie_len) { 984 memcpy(bufp, &session->cookie[0], session->cookie_len); 985 bufp += session->cookie_len; 986 } 987 if (session->l2specific_type == L2TP_L2SPECTYPE_DEFAULT) { 988 u32 l2h = 0; 989 990 if (session->send_seq) { 991 l2h = 0x40000000 | session->ns; 992 session->ns++; 993 session->ns &= 0xffffff; 994 l2tp_dbg(session, L2TP_MSG_SEQ, 995 "%s: updated ns to %u\n", 996 session->name, session->ns); 997 } 998 999 *((__be32 *)bufp) = htonl(l2h); 1000 bufp += 4; 1001 } 1002 1003 return bufp - optr; 1004 } 1005 1006 static void l2tp_xmit_core(struct l2tp_session *session, struct sk_buff *skb, 1007 struct flowi *fl, size_t data_len) 1008 { 1009 struct l2tp_tunnel *tunnel = session->tunnel; 1010 unsigned int len = skb->len; 1011 int error; 1012 1013 /* Debug */ 1014 if (session->send_seq) 1015 l2tp_dbg(session, L2TP_MSG_DATA, "%s: send %zd bytes, ns=%u\n", 1016 session->name, data_len, session->ns - 1); 1017 else 1018 l2tp_dbg(session, L2TP_MSG_DATA, "%s: send %zd bytes\n", 1019 session->name, data_len); 1020 1021 if (session->debug & L2TP_MSG_DATA) { 1022 int uhlen = (tunnel->encap == L2TP_ENCAPTYPE_UDP) ? sizeof(struct udphdr) : 0; 1023 unsigned char *datap = skb->data + uhlen; 1024 1025 pr_debug("%s: xmit\n", session->name); 1026 print_hex_dump_bytes("", DUMP_PREFIX_OFFSET, 1027 datap, min_t(size_t, 32, len - uhlen)); 1028 } 1029 1030 /* Queue the packet to IP for output */ 1031 skb->ignore_df = 1; 1032 skb_dst_drop(skb); 1033 #if IS_ENABLED(CONFIG_IPV6) 1034 if (l2tp_sk_is_v6(tunnel->sock)) 1035 error = inet6_csk_xmit(tunnel->sock, skb, NULL); 1036 else 1037 #endif 1038 error = ip_queue_xmit(tunnel->sock, skb, fl); 1039 1040 /* Update stats */ 1041 if (error >= 0) { 1042 atomic_long_inc(&tunnel->stats.tx_packets); 1043 atomic_long_add(len, &tunnel->stats.tx_bytes); 1044 atomic_long_inc(&session->stats.tx_packets); 1045 atomic_long_add(len, &session->stats.tx_bytes); 1046 } else { 1047 atomic_long_inc(&tunnel->stats.tx_errors); 1048 atomic_long_inc(&session->stats.tx_errors); 1049 } 1050 } 1051 1052 /* If caller requires the skb to have a ppp header, the header must be 1053 * inserted in the skb data before calling this function. 1054 */ 1055 int l2tp_xmit_skb(struct l2tp_session *session, struct sk_buff *skb, int hdr_len) 1056 { 1057 int data_len = skb->len; 1058 struct l2tp_tunnel *tunnel = session->tunnel; 1059 struct sock *sk = tunnel->sock; 1060 struct flowi *fl; 1061 struct udphdr *uh; 1062 struct inet_sock *inet; 1063 int headroom; 1064 int uhlen = (tunnel->encap == L2TP_ENCAPTYPE_UDP) ? sizeof(struct udphdr) : 0; 1065 int udp_len; 1066 int ret = NET_XMIT_SUCCESS; 1067 1068 /* Check that there's enough headroom in the skb to insert IP, 1069 * UDP and L2TP headers. If not enough, expand it to 1070 * make room. Adjust truesize. 1071 */ 1072 headroom = NET_SKB_PAD + sizeof(struct iphdr) + 1073 uhlen + hdr_len; 1074 if (skb_cow_head(skb, headroom)) { 1075 kfree_skb(skb); 1076 return NET_XMIT_DROP; 1077 } 1078 1079 /* Setup L2TP header */ 1080 session->build_header(session, __skb_push(skb, hdr_len)); 1081 1082 /* Reset skb netfilter state */ 1083 memset(&(IPCB(skb)->opt), 0, sizeof(IPCB(skb)->opt)); 1084 IPCB(skb)->flags &= ~(IPSKB_XFRM_TUNNEL_SIZE | IPSKB_XFRM_TRANSFORMED | 1085 IPSKB_REROUTED); 1086 nf_reset_ct(skb); 1087 1088 bh_lock_sock(sk); 1089 if (sock_owned_by_user(sk)) { 1090 kfree_skb(skb); 1091 ret = NET_XMIT_DROP; 1092 goto out_unlock; 1093 } 1094 1095 /* The user-space may change the connection status for the user-space 1096 * provided socket at run time: we must check it under the socket lock 1097 */ 1098 if (tunnel->fd >= 0 && sk->sk_state != TCP_ESTABLISHED) { 1099 kfree_skb(skb); 1100 ret = NET_XMIT_DROP; 1101 goto out_unlock; 1102 } 1103 1104 inet = inet_sk(sk); 1105 fl = &inet->cork.fl; 1106 switch (tunnel->encap) { 1107 case L2TP_ENCAPTYPE_UDP: 1108 /* Setup UDP header */ 1109 __skb_push(skb, sizeof(*uh)); 1110 skb_reset_transport_header(skb); 1111 uh = udp_hdr(skb); 1112 uh->source = inet->inet_sport; 1113 uh->dest = inet->inet_dport; 1114 udp_len = uhlen + hdr_len + data_len; 1115 uh->len = htons(udp_len); 1116 1117 /* Calculate UDP checksum if configured to do so */ 1118 #if IS_ENABLED(CONFIG_IPV6) 1119 if (l2tp_sk_is_v6(sk)) 1120 udp6_set_csum(udp_get_no_check6_tx(sk), 1121 skb, &inet6_sk(sk)->saddr, 1122 &sk->sk_v6_daddr, udp_len); 1123 else 1124 #endif 1125 udp_set_csum(sk->sk_no_check_tx, skb, inet->inet_saddr, 1126 inet->inet_daddr, udp_len); 1127 break; 1128 1129 case L2TP_ENCAPTYPE_IP: 1130 break; 1131 } 1132 1133 l2tp_xmit_core(session, skb, fl, data_len); 1134 out_unlock: 1135 bh_unlock_sock(sk); 1136 1137 return ret; 1138 } 1139 EXPORT_SYMBOL_GPL(l2tp_xmit_skb); 1140 1141 /***************************************************************************** 1142 * Tinnel and session create/destroy. 1143 *****************************************************************************/ 1144 1145 /* Tunnel socket destruct hook. 1146 * The tunnel context is deleted only when all session sockets have been 1147 * closed. 1148 */ 1149 static void l2tp_tunnel_destruct(struct sock *sk) 1150 { 1151 struct l2tp_tunnel *tunnel = l2tp_tunnel(sk); 1152 1153 if (!tunnel) 1154 goto end; 1155 1156 l2tp_info(tunnel, L2TP_MSG_CONTROL, "%s: closing...\n", tunnel->name); 1157 1158 /* Disable udp encapsulation */ 1159 switch (tunnel->encap) { 1160 case L2TP_ENCAPTYPE_UDP: 1161 /* No longer an encapsulation socket. See net/ipv4/udp.c */ 1162 (udp_sk(sk))->encap_type = 0; 1163 (udp_sk(sk))->encap_rcv = NULL; 1164 (udp_sk(sk))->encap_destroy = NULL; 1165 break; 1166 case L2TP_ENCAPTYPE_IP: 1167 break; 1168 } 1169 1170 /* Remove hooks into tunnel socket */ 1171 sk->sk_destruct = tunnel->old_sk_destruct; 1172 sk->sk_user_data = NULL; 1173 1174 /* Call the original destructor */ 1175 if (sk->sk_destruct) 1176 (*sk->sk_destruct)(sk); 1177 1178 kfree_rcu(tunnel, rcu); 1179 end: 1180 return; 1181 } 1182 1183 /* When the tunnel is closed, all the attached sessions need to go too. 1184 */ 1185 static void l2tp_tunnel_closeall(struct l2tp_tunnel *tunnel) 1186 { 1187 int hash; 1188 struct hlist_node *walk; 1189 struct hlist_node *tmp; 1190 struct l2tp_session *session; 1191 1192 l2tp_info(tunnel, L2TP_MSG_CONTROL, "%s: closing all sessions...\n", 1193 tunnel->name); 1194 1195 write_lock_bh(&tunnel->hlist_lock); 1196 tunnel->acpt_newsess = false; 1197 for (hash = 0; hash < L2TP_HASH_SIZE; hash++) { 1198 again: 1199 hlist_for_each_safe(walk, tmp, &tunnel->session_hlist[hash]) { 1200 session = hlist_entry(walk, struct l2tp_session, hlist); 1201 1202 l2tp_info(session, L2TP_MSG_CONTROL, 1203 "%s: closing session\n", session->name); 1204 1205 hlist_del_init(&session->hlist); 1206 1207 if (test_and_set_bit(0, &session->dead)) 1208 goto again; 1209 1210 write_unlock_bh(&tunnel->hlist_lock); 1211 1212 __l2tp_session_unhash(session); 1213 l2tp_session_queue_purge(session); 1214 1215 if (session->session_close) 1216 (*session->session_close)(session); 1217 1218 l2tp_session_dec_refcount(session); 1219 1220 write_lock_bh(&tunnel->hlist_lock); 1221 1222 /* Now restart from the beginning of this hash 1223 * chain. We always remove a session from the 1224 * list so we are guaranteed to make forward 1225 * progress. 1226 */ 1227 goto again; 1228 } 1229 } 1230 write_unlock_bh(&tunnel->hlist_lock); 1231 } 1232 1233 /* Tunnel socket destroy hook for UDP encapsulation */ 1234 static void l2tp_udp_encap_destroy(struct sock *sk) 1235 { 1236 struct l2tp_tunnel *tunnel = l2tp_tunnel(sk); 1237 1238 if (tunnel) 1239 l2tp_tunnel_delete(tunnel); 1240 } 1241 1242 /* Workqueue tunnel deletion function */ 1243 static void l2tp_tunnel_del_work(struct work_struct *work) 1244 { 1245 struct l2tp_tunnel *tunnel = container_of(work, struct l2tp_tunnel, 1246 del_work); 1247 struct sock *sk = tunnel->sock; 1248 struct socket *sock = sk->sk_socket; 1249 struct l2tp_net *pn; 1250 1251 l2tp_tunnel_closeall(tunnel); 1252 1253 /* If the tunnel socket was created within the kernel, use 1254 * the sk API to release it here. 1255 */ 1256 if (tunnel->fd < 0) { 1257 if (sock) { 1258 kernel_sock_shutdown(sock, SHUT_RDWR); 1259 sock_release(sock); 1260 } 1261 } 1262 1263 /* Remove the tunnel struct from the tunnel list */ 1264 pn = l2tp_pernet(tunnel->l2tp_net); 1265 spin_lock_bh(&pn->l2tp_tunnel_list_lock); 1266 list_del_rcu(&tunnel->list); 1267 spin_unlock_bh(&pn->l2tp_tunnel_list_lock); 1268 1269 /* drop initial ref */ 1270 l2tp_tunnel_dec_refcount(tunnel); 1271 1272 /* drop workqueue ref */ 1273 l2tp_tunnel_dec_refcount(tunnel); 1274 } 1275 1276 /* Create a socket for the tunnel, if one isn't set up by 1277 * userspace. This is used for static tunnels where there is no 1278 * managing L2TP daemon. 1279 * 1280 * Since we don't want these sockets to keep a namespace alive by 1281 * themselves, we drop the socket's namespace refcount after creation. 1282 * These sockets are freed when the namespace exits using the pernet 1283 * exit hook. 1284 */ 1285 static int l2tp_tunnel_sock_create(struct net *net, 1286 u32 tunnel_id, 1287 u32 peer_tunnel_id, 1288 struct l2tp_tunnel_cfg *cfg, 1289 struct socket **sockp) 1290 { 1291 int err = -EINVAL; 1292 struct socket *sock = NULL; 1293 struct udp_port_cfg udp_conf; 1294 1295 switch (cfg->encap) { 1296 case L2TP_ENCAPTYPE_UDP: 1297 memset(&udp_conf, 0, sizeof(udp_conf)); 1298 1299 #if IS_ENABLED(CONFIG_IPV6) 1300 if (cfg->local_ip6 && cfg->peer_ip6) { 1301 udp_conf.family = AF_INET6; 1302 memcpy(&udp_conf.local_ip6, cfg->local_ip6, 1303 sizeof(udp_conf.local_ip6)); 1304 memcpy(&udp_conf.peer_ip6, cfg->peer_ip6, 1305 sizeof(udp_conf.peer_ip6)); 1306 udp_conf.use_udp6_tx_checksums = 1307 !cfg->udp6_zero_tx_checksums; 1308 udp_conf.use_udp6_rx_checksums = 1309 !cfg->udp6_zero_rx_checksums; 1310 } else 1311 #endif 1312 { 1313 udp_conf.family = AF_INET; 1314 udp_conf.local_ip = cfg->local_ip; 1315 udp_conf.peer_ip = cfg->peer_ip; 1316 udp_conf.use_udp_checksums = cfg->use_udp_checksums; 1317 } 1318 1319 udp_conf.local_udp_port = htons(cfg->local_udp_port); 1320 udp_conf.peer_udp_port = htons(cfg->peer_udp_port); 1321 1322 err = udp_sock_create(net, &udp_conf, &sock); 1323 if (err < 0) 1324 goto out; 1325 1326 break; 1327 1328 case L2TP_ENCAPTYPE_IP: 1329 #if IS_ENABLED(CONFIG_IPV6) 1330 if (cfg->local_ip6 && cfg->peer_ip6) { 1331 struct sockaddr_l2tpip6 ip6_addr = {0}; 1332 1333 err = sock_create_kern(net, AF_INET6, SOCK_DGRAM, 1334 IPPROTO_L2TP, &sock); 1335 if (err < 0) 1336 goto out; 1337 1338 ip6_addr.l2tp_family = AF_INET6; 1339 memcpy(&ip6_addr.l2tp_addr, cfg->local_ip6, 1340 sizeof(ip6_addr.l2tp_addr)); 1341 ip6_addr.l2tp_conn_id = tunnel_id; 1342 err = kernel_bind(sock, (struct sockaddr *)&ip6_addr, 1343 sizeof(ip6_addr)); 1344 if (err < 0) 1345 goto out; 1346 1347 ip6_addr.l2tp_family = AF_INET6; 1348 memcpy(&ip6_addr.l2tp_addr, cfg->peer_ip6, 1349 sizeof(ip6_addr.l2tp_addr)); 1350 ip6_addr.l2tp_conn_id = peer_tunnel_id; 1351 err = kernel_connect(sock, 1352 (struct sockaddr *)&ip6_addr, 1353 sizeof(ip6_addr), 0); 1354 if (err < 0) 1355 goto out; 1356 } else 1357 #endif 1358 { 1359 struct sockaddr_l2tpip ip_addr = {0}; 1360 1361 err = sock_create_kern(net, AF_INET, SOCK_DGRAM, 1362 IPPROTO_L2TP, &sock); 1363 if (err < 0) 1364 goto out; 1365 1366 ip_addr.l2tp_family = AF_INET; 1367 ip_addr.l2tp_addr = cfg->local_ip; 1368 ip_addr.l2tp_conn_id = tunnel_id; 1369 err = kernel_bind(sock, (struct sockaddr *)&ip_addr, 1370 sizeof(ip_addr)); 1371 if (err < 0) 1372 goto out; 1373 1374 ip_addr.l2tp_family = AF_INET; 1375 ip_addr.l2tp_addr = cfg->peer_ip; 1376 ip_addr.l2tp_conn_id = peer_tunnel_id; 1377 err = kernel_connect(sock, (struct sockaddr *)&ip_addr, 1378 sizeof(ip_addr), 0); 1379 if (err < 0) 1380 goto out; 1381 } 1382 break; 1383 1384 default: 1385 goto out; 1386 } 1387 1388 out: 1389 *sockp = sock; 1390 if (err < 0 && sock) { 1391 kernel_sock_shutdown(sock, SHUT_RDWR); 1392 sock_release(sock); 1393 *sockp = NULL; 1394 } 1395 1396 return err; 1397 } 1398 1399 static struct lock_class_key l2tp_socket_class; 1400 1401 int l2tp_tunnel_create(struct net *net, int fd, int version, u32 tunnel_id, u32 peer_tunnel_id, 1402 struct l2tp_tunnel_cfg *cfg, struct l2tp_tunnel **tunnelp) 1403 { 1404 struct l2tp_tunnel *tunnel = NULL; 1405 int err; 1406 enum l2tp_encap_type encap = L2TP_ENCAPTYPE_UDP; 1407 1408 if (cfg) 1409 encap = cfg->encap; 1410 1411 tunnel = kzalloc(sizeof(*tunnel), GFP_KERNEL); 1412 if (!tunnel) { 1413 err = -ENOMEM; 1414 goto err; 1415 } 1416 1417 tunnel->version = version; 1418 tunnel->tunnel_id = tunnel_id; 1419 tunnel->peer_tunnel_id = peer_tunnel_id; 1420 tunnel->debug = L2TP_DEFAULT_DEBUG_FLAGS; 1421 1422 tunnel->magic = L2TP_TUNNEL_MAGIC; 1423 sprintf(&tunnel->name[0], "tunl %u", tunnel_id); 1424 rwlock_init(&tunnel->hlist_lock); 1425 tunnel->acpt_newsess = true; 1426 1427 if (cfg) 1428 tunnel->debug = cfg->debug; 1429 1430 tunnel->encap = encap; 1431 1432 refcount_set(&tunnel->ref_count, 1); 1433 tunnel->fd = fd; 1434 1435 /* Init delete workqueue struct */ 1436 INIT_WORK(&tunnel->del_work, l2tp_tunnel_del_work); 1437 1438 INIT_LIST_HEAD(&tunnel->list); 1439 1440 err = 0; 1441 err: 1442 if (tunnelp) 1443 *tunnelp = tunnel; 1444 1445 return err; 1446 } 1447 EXPORT_SYMBOL_GPL(l2tp_tunnel_create); 1448 1449 static int l2tp_validate_socket(const struct sock *sk, const struct net *net, 1450 enum l2tp_encap_type encap) 1451 { 1452 if (!net_eq(sock_net(sk), net)) 1453 return -EINVAL; 1454 1455 if (sk->sk_type != SOCK_DGRAM) 1456 return -EPROTONOSUPPORT; 1457 1458 if (sk->sk_family != PF_INET && sk->sk_family != PF_INET6) 1459 return -EPROTONOSUPPORT; 1460 1461 if ((encap == L2TP_ENCAPTYPE_UDP && sk->sk_protocol != IPPROTO_UDP) || 1462 (encap == L2TP_ENCAPTYPE_IP && sk->sk_protocol != IPPROTO_L2TP)) 1463 return -EPROTONOSUPPORT; 1464 1465 if (sk->sk_user_data) 1466 return -EBUSY; 1467 1468 return 0; 1469 } 1470 1471 int l2tp_tunnel_register(struct l2tp_tunnel *tunnel, struct net *net, 1472 struct l2tp_tunnel_cfg *cfg) 1473 { 1474 struct l2tp_tunnel *tunnel_walk; 1475 struct l2tp_net *pn; 1476 struct socket *sock; 1477 struct sock *sk; 1478 int ret; 1479 1480 if (tunnel->fd < 0) { 1481 ret = l2tp_tunnel_sock_create(net, tunnel->tunnel_id, 1482 tunnel->peer_tunnel_id, cfg, 1483 &sock); 1484 if (ret < 0) 1485 goto err; 1486 } else { 1487 sock = sockfd_lookup(tunnel->fd, &ret); 1488 if (!sock) 1489 goto err; 1490 1491 ret = l2tp_validate_socket(sock->sk, net, tunnel->encap); 1492 if (ret < 0) 1493 goto err_sock; 1494 } 1495 1496 tunnel->l2tp_net = net; 1497 pn = l2tp_pernet(net); 1498 1499 spin_lock_bh(&pn->l2tp_tunnel_list_lock); 1500 list_for_each_entry(tunnel_walk, &pn->l2tp_tunnel_list, list) { 1501 if (tunnel_walk->tunnel_id == tunnel->tunnel_id) { 1502 spin_unlock_bh(&pn->l2tp_tunnel_list_lock); 1503 1504 ret = -EEXIST; 1505 goto err_sock; 1506 } 1507 } 1508 list_add_rcu(&tunnel->list, &pn->l2tp_tunnel_list); 1509 spin_unlock_bh(&pn->l2tp_tunnel_list_lock); 1510 1511 sk = sock->sk; 1512 sock_hold(sk); 1513 tunnel->sock = sk; 1514 1515 if (tunnel->encap == L2TP_ENCAPTYPE_UDP) { 1516 struct udp_tunnel_sock_cfg udp_cfg = { 1517 .sk_user_data = tunnel, 1518 .encap_type = UDP_ENCAP_L2TPINUDP, 1519 .encap_rcv = l2tp_udp_encap_recv, 1520 .encap_destroy = l2tp_udp_encap_destroy, 1521 }; 1522 1523 setup_udp_tunnel_sock(net, sock, &udp_cfg); 1524 } else { 1525 sk->sk_user_data = tunnel; 1526 } 1527 1528 tunnel->old_sk_destruct = sk->sk_destruct; 1529 sk->sk_destruct = &l2tp_tunnel_destruct; 1530 lockdep_set_class_and_name(&sk->sk_lock.slock, &l2tp_socket_class, 1531 "l2tp_sock"); 1532 sk->sk_allocation = GFP_ATOMIC; 1533 1534 if (tunnel->fd >= 0) 1535 sockfd_put(sock); 1536 1537 return 0; 1538 1539 err_sock: 1540 if (tunnel->fd < 0) 1541 sock_release(sock); 1542 else 1543 sockfd_put(sock); 1544 err: 1545 return ret; 1546 } 1547 EXPORT_SYMBOL_GPL(l2tp_tunnel_register); 1548 1549 /* This function is used by the netlink TUNNEL_DELETE command. 1550 */ 1551 void l2tp_tunnel_delete(struct l2tp_tunnel *tunnel) 1552 { 1553 if (!test_and_set_bit(0, &tunnel->dead)) { 1554 l2tp_tunnel_inc_refcount(tunnel); 1555 queue_work(l2tp_wq, &tunnel->del_work); 1556 } 1557 } 1558 EXPORT_SYMBOL_GPL(l2tp_tunnel_delete); 1559 1560 /* Really kill the session. 1561 */ 1562 void l2tp_session_free(struct l2tp_session *session) 1563 { 1564 struct l2tp_tunnel *tunnel = session->tunnel; 1565 1566 if (tunnel) { 1567 if (WARN_ON(tunnel->magic != L2TP_TUNNEL_MAGIC)) 1568 goto out; 1569 l2tp_tunnel_dec_refcount(tunnel); 1570 } 1571 1572 out: 1573 kfree(session); 1574 } 1575 EXPORT_SYMBOL_GPL(l2tp_session_free); 1576 1577 /* Remove an l2tp session from l2tp_core's hash lists. 1578 * Provides a tidyup interface for pseudowire code which can't just route all 1579 * shutdown via. l2tp_session_delete and a pseudowire-specific session_close 1580 * callback. 1581 */ 1582 void __l2tp_session_unhash(struct l2tp_session *session) 1583 { 1584 struct l2tp_tunnel *tunnel = session->tunnel; 1585 1586 /* Remove the session from core hashes */ 1587 if (tunnel) { 1588 /* Remove from the per-tunnel hash */ 1589 write_lock_bh(&tunnel->hlist_lock); 1590 hlist_del_init(&session->hlist); 1591 write_unlock_bh(&tunnel->hlist_lock); 1592 1593 /* For L2TPv3 we have a per-net hash: remove from there, too */ 1594 if (tunnel->version != L2TP_HDR_VER_2) { 1595 struct l2tp_net *pn = l2tp_pernet(tunnel->l2tp_net); 1596 1597 spin_lock_bh(&pn->l2tp_session_hlist_lock); 1598 hlist_del_init_rcu(&session->global_hlist); 1599 spin_unlock_bh(&pn->l2tp_session_hlist_lock); 1600 synchronize_rcu(); 1601 } 1602 } 1603 } 1604 EXPORT_SYMBOL_GPL(__l2tp_session_unhash); 1605 1606 /* This function is used by the netlink SESSION_DELETE command and by 1607 * pseudowire modules. 1608 */ 1609 int l2tp_session_delete(struct l2tp_session *session) 1610 { 1611 if (test_and_set_bit(0, &session->dead)) 1612 return 0; 1613 1614 __l2tp_session_unhash(session); 1615 l2tp_session_queue_purge(session); 1616 if (session->session_close) 1617 (*session->session_close)(session); 1618 1619 l2tp_session_dec_refcount(session); 1620 1621 return 0; 1622 } 1623 EXPORT_SYMBOL_GPL(l2tp_session_delete); 1624 1625 /* We come here whenever a session's send_seq, cookie_len or 1626 * l2specific_type parameters are set. 1627 */ 1628 void l2tp_session_set_header_len(struct l2tp_session *session, int version) 1629 { 1630 if (version == L2TP_HDR_VER_2) { 1631 session->hdr_len = 6; 1632 if (session->send_seq) 1633 session->hdr_len += 4; 1634 } else { 1635 session->hdr_len = 4 + session->cookie_len; 1636 session->hdr_len += l2tp_get_l2specific_len(session); 1637 if (session->tunnel->encap == L2TP_ENCAPTYPE_UDP) 1638 session->hdr_len += 4; 1639 } 1640 } 1641 EXPORT_SYMBOL_GPL(l2tp_session_set_header_len); 1642 1643 struct l2tp_session *l2tp_session_create(int priv_size, struct l2tp_tunnel *tunnel, u32 session_id, 1644 u32 peer_session_id, struct l2tp_session_cfg *cfg) 1645 { 1646 struct l2tp_session *session; 1647 1648 session = kzalloc(sizeof(*session) + priv_size, GFP_KERNEL); 1649 if (session) { 1650 session->magic = L2TP_SESSION_MAGIC; 1651 session->tunnel = tunnel; 1652 1653 session->session_id = session_id; 1654 session->peer_session_id = peer_session_id; 1655 session->nr = 0; 1656 if (tunnel->version == L2TP_HDR_VER_2) 1657 session->nr_max = 0xffff; 1658 else 1659 session->nr_max = 0xffffff; 1660 session->nr_window_size = session->nr_max / 2; 1661 session->nr_oos_count_max = 4; 1662 1663 /* Use NR of first received packet */ 1664 session->reorder_skip = 1; 1665 1666 sprintf(&session->name[0], "sess %u/%u", 1667 tunnel->tunnel_id, session->session_id); 1668 1669 skb_queue_head_init(&session->reorder_q); 1670 1671 INIT_HLIST_NODE(&session->hlist); 1672 INIT_HLIST_NODE(&session->global_hlist); 1673 1674 /* Inherit debug options from tunnel */ 1675 session->debug = tunnel->debug; 1676 1677 if (cfg) { 1678 session->pwtype = cfg->pw_type; 1679 session->debug = cfg->debug; 1680 session->send_seq = cfg->send_seq; 1681 session->recv_seq = cfg->recv_seq; 1682 session->lns_mode = cfg->lns_mode; 1683 session->reorder_timeout = cfg->reorder_timeout; 1684 session->l2specific_type = cfg->l2specific_type; 1685 session->cookie_len = cfg->cookie_len; 1686 memcpy(&session->cookie[0], &cfg->cookie[0], cfg->cookie_len); 1687 session->peer_cookie_len = cfg->peer_cookie_len; 1688 memcpy(&session->peer_cookie[0], &cfg->peer_cookie[0], cfg->peer_cookie_len); 1689 } 1690 1691 if (tunnel->version == L2TP_HDR_VER_2) 1692 session->build_header = l2tp_build_l2tpv2_header; 1693 else 1694 session->build_header = l2tp_build_l2tpv3_header; 1695 1696 l2tp_session_set_header_len(session, tunnel->version); 1697 1698 refcount_set(&session->ref_count, 1); 1699 1700 return session; 1701 } 1702 1703 return ERR_PTR(-ENOMEM); 1704 } 1705 EXPORT_SYMBOL_GPL(l2tp_session_create); 1706 1707 /***************************************************************************** 1708 * Init and cleanup 1709 *****************************************************************************/ 1710 1711 static __net_init int l2tp_init_net(struct net *net) 1712 { 1713 struct l2tp_net *pn = net_generic(net, l2tp_net_id); 1714 int hash; 1715 1716 INIT_LIST_HEAD(&pn->l2tp_tunnel_list); 1717 spin_lock_init(&pn->l2tp_tunnel_list_lock); 1718 1719 for (hash = 0; hash < L2TP_HASH_SIZE_2; hash++) 1720 INIT_HLIST_HEAD(&pn->l2tp_session_hlist[hash]); 1721 1722 spin_lock_init(&pn->l2tp_session_hlist_lock); 1723 1724 return 0; 1725 } 1726 1727 static __net_exit void l2tp_exit_net(struct net *net) 1728 { 1729 struct l2tp_net *pn = l2tp_pernet(net); 1730 struct l2tp_tunnel *tunnel = NULL; 1731 int hash; 1732 1733 rcu_read_lock_bh(); 1734 list_for_each_entry_rcu(tunnel, &pn->l2tp_tunnel_list, list) { 1735 l2tp_tunnel_delete(tunnel); 1736 } 1737 rcu_read_unlock_bh(); 1738 1739 if (l2tp_wq) 1740 flush_workqueue(l2tp_wq); 1741 rcu_barrier(); 1742 1743 for (hash = 0; hash < L2TP_HASH_SIZE_2; hash++) 1744 WARN_ON_ONCE(!hlist_empty(&pn->l2tp_session_hlist[hash])); 1745 } 1746 1747 static struct pernet_operations l2tp_net_ops = { 1748 .init = l2tp_init_net, 1749 .exit = l2tp_exit_net, 1750 .id = &l2tp_net_id, 1751 .size = sizeof(struct l2tp_net), 1752 }; 1753 1754 static int __init l2tp_init(void) 1755 { 1756 int rc = 0; 1757 1758 rc = register_pernet_device(&l2tp_net_ops); 1759 if (rc) 1760 goto out; 1761 1762 l2tp_wq = alloc_workqueue("l2tp", WQ_UNBOUND, 0); 1763 if (!l2tp_wq) { 1764 pr_err("alloc_workqueue failed\n"); 1765 unregister_pernet_device(&l2tp_net_ops); 1766 rc = -ENOMEM; 1767 goto out; 1768 } 1769 1770 pr_info("L2TP core driver, %s\n", L2TP_DRV_VERSION); 1771 1772 out: 1773 return rc; 1774 } 1775 1776 static void __exit l2tp_exit(void) 1777 { 1778 unregister_pernet_device(&l2tp_net_ops); 1779 if (l2tp_wq) { 1780 destroy_workqueue(l2tp_wq); 1781 l2tp_wq = NULL; 1782 } 1783 } 1784 1785 module_init(l2tp_init); 1786 module_exit(l2tp_exit); 1787 1788 MODULE_AUTHOR("James Chapman <jchapman@katalix.com>"); 1789 MODULE_DESCRIPTION("L2TP core"); 1790 MODULE_LICENSE("GPL"); 1791 MODULE_VERSION(L2TP_DRV_VERSION); 1792