1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * TUN - Universal TUN/TAP device driver. 4 * Copyright (C) 1999-2002 Maxim Krasnyansky <maxk@qualcomm.com> 5 * 6 * $Id: tun.c,v 1.15 2002/03/01 02:44:24 maxk Exp $ 7 */ 8 9 /* 10 * Changes: 11 * 12 * Mike Kershaw <dragorn@kismetwireless.net> 2005/08/14 13 * Add TUNSETLINK ioctl to set the link encapsulation 14 * 15 * Mark Smith <markzzzsmith@yahoo.com.au> 16 * Use eth_random_addr() for tap MAC address. 17 * 18 * Harald Roelle <harald.roelle@ifi.lmu.de> 2004/04/20 19 * Fixes in packet dropping, queue length setting and queue wakeup. 20 * Increased default tx queue length. 21 * Added ethtool API. 22 * Minor cleanups 23 * 24 * Daniel Podlejski <underley@underley.eu.org> 25 * Modifications for 2.3.99-pre5 kernel. 26 */ 27 28 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 29 30 #define DRV_NAME "tun" 31 #define DRV_VERSION "1.6" 32 #define DRV_DESCRIPTION "Universal TUN/TAP device driver" 33 #define DRV_COPYRIGHT "(C) 1999-2004 Max Krasnyansky <maxk@qualcomm.com>" 34 35 #include <linux/module.h> 36 #include <linux/errno.h> 37 #include <linux/kernel.h> 38 #include <linux/sched/signal.h> 39 #include <linux/major.h> 40 #include <linux/slab.h> 41 #include <linux/poll.h> 42 #include <linux/fcntl.h> 43 #include <linux/init.h> 44 #include <linux/skbuff.h> 45 #include <linux/netdevice.h> 46 #include <linux/etherdevice.h> 47 #include <linux/miscdevice.h> 48 #include <linux/ethtool.h> 49 #include <linux/rtnetlink.h> 50 #include <linux/compat.h> 51 #include <linux/if.h> 52 #include <linux/if_arp.h> 53 #include <linux/if_ether.h> 54 #include <linux/if_tun.h> 55 #include <linux/if_vlan.h> 56 #include <linux/crc32.h> 57 #include <linux/math.h> 58 #include <linux/nsproxy.h> 59 #include <linux/virtio_net.h> 60 #include <linux/rcupdate.h> 61 #include <net/net_namespace.h> 62 #include <net/netns/generic.h> 63 #include <net/rtnetlink.h> 64 #include <net/sock.h> 65 #include <net/xdp.h> 66 #include <net/ip_tunnels.h> 67 #include <linux/seq_file.h> 68 #include <linux/uio.h> 69 #include <linux/skb_array.h> 70 #include <linux/bpf.h> 71 #include <linux/bpf_trace.h> 72 #include <linux/mutex.h> 73 #include <linux/ieee802154.h> 74 #include <uapi/linux/if_ltalk.h> 75 #include <uapi/linux/if_fddi.h> 76 #include <uapi/linux/if_hippi.h> 77 #include <uapi/linux/if_fc.h> 78 #include <net/ax25.h> 79 #include <net/rose.h> 80 #include <net/6lowpan.h> 81 #include <net/rps.h> 82 83 #include <linux/uaccess.h> 84 #include <linux/proc_fs.h> 85 86 #include "tun_vnet.h" 87 88 static void tun_default_link_ksettings(struct net_device *dev, 89 struct ethtool_link_ksettings *cmd); 90 91 #define TUN_RX_PAD (NET_IP_ALIGN + NET_SKB_PAD) 92 93 /* TUN device flags */ 94 95 /* IFF_ATTACH_QUEUE is never stored in device flags, 96 * overload it to mean fasync when stored there. 97 */ 98 #define TUN_FASYNC IFF_ATTACH_QUEUE 99 100 #define TUN_FEATURES (IFF_NO_PI | IFF_ONE_QUEUE | IFF_VNET_HDR | \ 101 IFF_MULTI_QUEUE | IFF_NAPI | IFF_NAPI_FRAGS) 102 103 #define GOODCOPY_LEN 128 104 105 #define FLT_EXACT_COUNT 8 106 struct tap_filter { 107 unsigned int count; /* Number of addrs. Zero means disabled */ 108 u32 mask[2]; /* Mask of the hashed addrs */ 109 unsigned char addr[FLT_EXACT_COUNT][ETH_ALEN]; 110 }; 111 112 /* MAX_TAP_QUEUES 256 is chosen to allow rx/tx queues to be equal 113 * to max number of VCPUs in guest. */ 114 #define MAX_TAP_QUEUES 256 115 #define MAX_TAP_FLOWS 4096 116 117 #define TUN_FLOW_EXPIRE (3 * HZ) 118 119 /* A tun_file connects an open character device to a tuntap netdevice. It 120 * also contains all socket related structures (except sock_fprog and tap_filter) 121 * to serve as one transmit queue for tuntap device. The sock_fprog and 122 * tap_filter were kept in tun_struct since they were used for filtering for the 123 * netdevice not for a specific queue (at least I didn't see the requirement for 124 * this). 125 * 126 * RCU usage: 127 * The tun_file and tun_struct are loosely coupled, the pointer from one to the 128 * other can only be read while rcu_read_lock or rtnl_lock is held. 129 */ 130 struct tun_file { 131 struct sock sk; 132 struct socket socket; 133 struct tun_struct __rcu *tun; 134 struct fasync_struct *fasync; 135 /* only used for fasnyc */ 136 unsigned int flags; 137 union { 138 u16 queue_index; 139 unsigned int ifindex; 140 }; 141 struct napi_struct napi; 142 bool napi_enabled; 143 bool napi_frags_enabled; 144 struct mutex napi_mutex; /* Protects access to the above napi */ 145 struct list_head next; 146 struct tun_struct *detached; 147 struct ptr_ring tx_ring; 148 struct xdp_rxq_info xdp_rxq; 149 }; 150 151 struct tun_page { 152 struct page *page; 153 int count; 154 }; 155 156 struct tun_flow_entry { 157 struct hlist_node hash_link; 158 struct rcu_head rcu; 159 struct tun_struct *tun; 160 161 u32 rxhash; 162 u32 rps_rxhash; 163 int queue_index; 164 unsigned long updated ____cacheline_aligned_in_smp; 165 }; 166 167 #define TUN_NUM_FLOW_ENTRIES 1024 168 #define TUN_MASK_FLOW_ENTRIES (TUN_NUM_FLOW_ENTRIES - 1) 169 170 struct tun_prog { 171 struct rcu_head rcu; 172 struct bpf_prog *prog; 173 }; 174 175 /* Since the socket were moved to tun_file, to preserve the behavior of persist 176 * device, socket filter, sndbuf and vnet header size were restore when the 177 * file were attached to a persist device. 178 */ 179 struct tun_struct { 180 struct tun_file __rcu *tfiles[MAX_TAP_QUEUES]; 181 unsigned int numqueues; 182 unsigned int flags; 183 kuid_t owner; 184 kgid_t group; 185 186 struct net_device *dev; 187 netdev_features_t set_features; 188 #define TUN_USER_FEATURES (NETIF_F_HW_CSUM|NETIF_F_TSO_ECN|NETIF_F_TSO| \ 189 NETIF_F_TSO6 | NETIF_F_GSO_UDP_L4 | \ 190 NETIF_F_GSO_UDP_TUNNEL | NETIF_F_GSO_UDP_TUNNEL_CSUM) 191 192 int align; 193 int vnet_hdr_sz; 194 int sndbuf; 195 struct tap_filter txflt; 196 struct sock_fprog fprog; 197 /* protected by rtnl lock */ 198 bool filter_attached; 199 u32 msg_enable; 200 spinlock_t lock; 201 struct hlist_head flows[TUN_NUM_FLOW_ENTRIES]; 202 struct timer_list flow_gc_timer; 203 unsigned long ageing_time; 204 unsigned int numdisabled; 205 struct list_head disabled; 206 void *security; 207 u32 flow_count; 208 u32 rx_batched; 209 atomic_long_t rx_frame_errors; 210 struct bpf_prog __rcu *xdp_prog; 211 struct tun_prog __rcu *steering_prog; 212 struct tun_prog __rcu *filter_prog; 213 struct ethtool_link_ksettings link_ksettings; 214 /* init args */ 215 struct file *file; 216 struct ifreq *ifr; 217 }; 218 219 struct veth { 220 __be16 h_vlan_proto; 221 __be16 h_vlan_TCI; 222 }; 223 224 static void tun_flow_init(struct tun_struct *tun); 225 static void tun_flow_uninit(struct tun_struct *tun); 226 227 static int tun_napi_receive(struct napi_struct *napi, int budget) 228 { 229 struct tun_file *tfile = container_of(napi, struct tun_file, napi); 230 struct sk_buff_head *queue = &tfile->sk.sk_write_queue; 231 struct sk_buff_head process_queue; 232 struct sk_buff *skb; 233 int received = 0; 234 235 __skb_queue_head_init(&process_queue); 236 237 spin_lock(&queue->lock); 238 skb_queue_splice_tail_init(queue, &process_queue); 239 spin_unlock(&queue->lock); 240 241 while (received < budget && (skb = __skb_dequeue(&process_queue))) { 242 napi_gro_receive(napi, skb); 243 ++received; 244 } 245 246 if (!skb_queue_empty(&process_queue)) { 247 spin_lock(&queue->lock); 248 skb_queue_splice(&process_queue, queue); 249 spin_unlock(&queue->lock); 250 } 251 252 return received; 253 } 254 255 static int tun_napi_poll(struct napi_struct *napi, int budget) 256 { 257 unsigned int received; 258 259 received = tun_napi_receive(napi, budget); 260 261 if (received < budget) 262 napi_complete_done(napi, received); 263 264 return received; 265 } 266 267 static void tun_napi_init(struct tun_struct *tun, struct tun_file *tfile, 268 bool napi_en, bool napi_frags) 269 { 270 tfile->napi_enabled = napi_en; 271 tfile->napi_frags_enabled = napi_en && napi_frags; 272 if (napi_en) { 273 netif_napi_add_tx(tun->dev, &tfile->napi, tun_napi_poll); 274 napi_enable(&tfile->napi); 275 } 276 } 277 278 static void tun_napi_enable(struct tun_file *tfile) 279 { 280 if (tfile->napi_enabled) 281 napi_enable(&tfile->napi); 282 } 283 284 static void tun_napi_disable(struct tun_file *tfile) 285 { 286 if (tfile->napi_enabled) 287 napi_disable(&tfile->napi); 288 } 289 290 static void tun_napi_del(struct tun_file *tfile) 291 { 292 if (tfile->napi_enabled) 293 netif_napi_del(&tfile->napi); 294 } 295 296 static bool tun_napi_frags_enabled(const struct tun_file *tfile) 297 { 298 return tfile->napi_frags_enabled; 299 } 300 301 static inline u32 tun_hashfn(u32 rxhash) 302 { 303 return rxhash & TUN_MASK_FLOW_ENTRIES; 304 } 305 306 static struct tun_flow_entry *tun_flow_find(struct hlist_head *head, u32 rxhash) 307 { 308 struct tun_flow_entry *e; 309 310 hlist_for_each_entry_rcu(e, head, hash_link) { 311 if (e->rxhash == rxhash) 312 return e; 313 } 314 return NULL; 315 } 316 317 static struct tun_flow_entry *tun_flow_create(struct tun_struct *tun, 318 struct hlist_head *head, 319 u32 rxhash, u16 queue_index) 320 { 321 struct tun_flow_entry *e = kmalloc_obj(*e, GFP_ATOMIC); 322 323 if (e) { 324 netif_info(tun, tx_queued, tun->dev, 325 "create flow: hash %u index %u\n", 326 rxhash, queue_index); 327 e->updated = jiffies; 328 e->rxhash = rxhash; 329 e->rps_rxhash = 0; 330 e->queue_index = queue_index; 331 e->tun = tun; 332 hlist_add_head_rcu(&e->hash_link, head); 333 ++tun->flow_count; 334 } 335 return e; 336 } 337 338 static void tun_flow_delete(struct tun_struct *tun, struct tun_flow_entry *e) 339 { 340 netif_info(tun, tx_queued, tun->dev, "delete flow: hash %u index %u\n", 341 e->rxhash, e->queue_index); 342 hlist_del_rcu(&e->hash_link); 343 kfree_rcu(e, rcu); 344 --tun->flow_count; 345 } 346 347 static void tun_flow_flush(struct tun_struct *tun) 348 { 349 int i; 350 351 spin_lock_bh(&tun->lock); 352 for (i = 0; i < TUN_NUM_FLOW_ENTRIES; i++) { 353 struct tun_flow_entry *e; 354 struct hlist_node *n; 355 356 hlist_for_each_entry_safe(e, n, &tun->flows[i], hash_link) 357 tun_flow_delete(tun, e); 358 } 359 spin_unlock_bh(&tun->lock); 360 } 361 362 static void tun_flow_delete_by_queue(struct tun_struct *tun, u16 queue_index) 363 { 364 int i; 365 366 spin_lock_bh(&tun->lock); 367 for (i = 0; i < TUN_NUM_FLOW_ENTRIES; i++) { 368 struct tun_flow_entry *e; 369 struct hlist_node *n; 370 371 hlist_for_each_entry_safe(e, n, &tun->flows[i], hash_link) { 372 if (e->queue_index == queue_index) 373 tun_flow_delete(tun, e); 374 } 375 } 376 spin_unlock_bh(&tun->lock); 377 } 378 379 static void tun_flow_cleanup(struct timer_list *t) 380 { 381 struct tun_struct *tun = timer_container_of(tun, t, flow_gc_timer); 382 unsigned long delay = tun->ageing_time; 383 unsigned long next_timer = jiffies + delay; 384 unsigned long count = 0; 385 int i; 386 387 spin_lock(&tun->lock); 388 for (i = 0; i < TUN_NUM_FLOW_ENTRIES; i++) { 389 struct tun_flow_entry *e; 390 struct hlist_node *n; 391 392 hlist_for_each_entry_safe(e, n, &tun->flows[i], hash_link) { 393 unsigned long this_timer; 394 395 this_timer = e->updated + delay; 396 if (time_before_eq(this_timer, jiffies)) { 397 tun_flow_delete(tun, e); 398 continue; 399 } 400 count++; 401 if (time_before(this_timer, next_timer)) 402 next_timer = this_timer; 403 } 404 } 405 406 if (count) 407 mod_timer(&tun->flow_gc_timer, round_jiffies_up(next_timer)); 408 spin_unlock(&tun->lock); 409 } 410 411 static void tun_flow_update(struct tun_struct *tun, u32 rxhash, 412 struct tun_file *tfile) 413 { 414 struct hlist_head *head; 415 struct tun_flow_entry *e; 416 unsigned long delay = tun->ageing_time; 417 u16 queue_index = tfile->queue_index; 418 419 head = &tun->flows[tun_hashfn(rxhash)]; 420 421 rcu_read_lock(); 422 423 e = tun_flow_find(head, rxhash); 424 if (likely(e)) { 425 /* TODO: keep queueing to old queue until it's empty? */ 426 if (READ_ONCE(e->queue_index) != queue_index) 427 WRITE_ONCE(e->queue_index, queue_index); 428 if (e->updated != jiffies) 429 e->updated = jiffies; 430 sock_rps_record_flow_hash(e->rps_rxhash); 431 } else { 432 spin_lock_bh(&tun->lock); 433 if (!tun_flow_find(head, rxhash) && 434 tun->flow_count < MAX_TAP_FLOWS) 435 tun_flow_create(tun, head, rxhash, queue_index); 436 437 if (!timer_pending(&tun->flow_gc_timer)) 438 mod_timer(&tun->flow_gc_timer, 439 round_jiffies_up(jiffies + delay)); 440 spin_unlock_bh(&tun->lock); 441 } 442 443 rcu_read_unlock(); 444 } 445 446 /* Save the hash received in the stack receive path and update the 447 * flow_hash table accordingly. 448 */ 449 static inline void tun_flow_save_rps_rxhash(struct tun_flow_entry *e, u32 hash) 450 { 451 if (unlikely(e->rps_rxhash != hash)) 452 e->rps_rxhash = hash; 453 } 454 455 /* We try to identify a flow through its rxhash. The reason that 456 * we do not check rxq no. is because some cards(e.g 82599), chooses 457 * the rxq based on the txq where the last packet of the flow comes. As 458 * the userspace application move between processors, we may get a 459 * different rxq no. here. 460 */ 461 static u16 tun_automq_select_queue(struct tun_struct *tun, struct sk_buff *skb) 462 { 463 struct tun_flow_entry *e; 464 u32 txq, numqueues; 465 466 numqueues = READ_ONCE(tun->numqueues); 467 468 txq = __skb_get_hash_symmetric(skb); 469 e = tun_flow_find(&tun->flows[tun_hashfn(txq)], txq); 470 if (e) { 471 tun_flow_save_rps_rxhash(e, txq); 472 txq = e->queue_index; 473 } else { 474 txq = reciprocal_scale(txq, numqueues); 475 } 476 477 return txq; 478 } 479 480 static u16 tun_ebpf_select_queue(struct tun_struct *tun, struct sk_buff *skb) 481 { 482 struct tun_prog *prog; 483 u32 numqueues; 484 u16 ret = 0; 485 486 numqueues = READ_ONCE(tun->numqueues); 487 if (!numqueues) 488 return 0; 489 490 prog = rcu_dereference(tun->steering_prog); 491 if (prog) 492 ret = bpf_prog_run_clear_cb(prog->prog, skb); 493 494 return ret % numqueues; 495 } 496 497 static u16 tun_select_queue(struct net_device *dev, struct sk_buff *skb, 498 struct net_device *sb_dev) 499 { 500 struct tun_struct *tun = netdev_priv(dev); 501 u16 ret; 502 503 rcu_read_lock(); 504 if (rcu_dereference(tun->steering_prog)) 505 ret = tun_ebpf_select_queue(tun, skb); 506 else 507 ret = tun_automq_select_queue(tun, skb); 508 rcu_read_unlock(); 509 510 return ret; 511 } 512 513 static inline bool tun_not_capable(struct tun_struct *tun) 514 { 515 const struct cred *cred = current_cred(); 516 struct net *net = dev_net(tun->dev); 517 518 return ((uid_valid(tun->owner) && !uid_eq(cred->euid, tun->owner)) || 519 (gid_valid(tun->group) && !in_egroup_p(tun->group))) && 520 !ns_capable(net->user_ns, CAP_NET_ADMIN); 521 } 522 523 static void tun_set_real_num_queues(struct tun_struct *tun) 524 { 525 netif_set_real_num_tx_queues(tun->dev, tun->numqueues); 526 netif_set_real_num_rx_queues(tun->dev, tun->numqueues); 527 } 528 529 static void tun_disable_queue(struct tun_struct *tun, struct tun_file *tfile) 530 { 531 tfile->detached = tun; 532 list_add_tail(&tfile->next, &tun->disabled); 533 ++tun->numdisabled; 534 } 535 536 static struct tun_struct *tun_enable_queue(struct tun_file *tfile) 537 { 538 struct tun_struct *tun = tfile->detached; 539 540 tfile->detached = NULL; 541 list_del_init(&tfile->next); 542 --tun->numdisabled; 543 return tun; 544 } 545 546 void tun_ptr_free(void *ptr) 547 { 548 if (!ptr) 549 return; 550 if (tun_is_xdp_frame(ptr)) { 551 struct xdp_frame *xdpf = tun_ptr_to_xdp(ptr); 552 553 xdp_return_frame(xdpf); 554 } else { 555 __skb_array_destroy_skb(ptr); 556 } 557 } 558 EXPORT_SYMBOL_GPL(tun_ptr_free); 559 560 static void tun_queue_purge(struct tun_file *tfile) 561 { 562 void *ptr; 563 564 while ((ptr = ptr_ring_consume(&tfile->tx_ring)) != NULL) 565 tun_ptr_free(ptr); 566 567 skb_queue_purge(&tfile->sk.sk_write_queue); 568 skb_queue_purge(&tfile->sk.sk_error_queue); 569 } 570 571 static void __tun_detach(struct tun_file *tfile, bool clean) 572 { 573 struct tun_file *ntfile; 574 struct tun_struct *tun; 575 576 tun = rtnl_dereference(tfile->tun); 577 578 if (tun && clean) { 579 if (!tfile->detached) 580 tun_napi_disable(tfile); 581 tun_napi_del(tfile); 582 } 583 584 if (tun && !tfile->detached) { 585 u16 index = tfile->queue_index; 586 BUG_ON(index >= tun->numqueues); 587 588 rcu_assign_pointer(tun->tfiles[index], 589 tun->tfiles[tun->numqueues - 1]); 590 ntfile = rtnl_dereference(tun->tfiles[index]); 591 ntfile->queue_index = index; 592 ntfile->xdp_rxq.queue_index = index; 593 rcu_assign_pointer(tun->tfiles[tun->numqueues - 1], 594 NULL); 595 596 --tun->numqueues; 597 if (clean) { 598 RCU_INIT_POINTER(tfile->tun, NULL); 599 sock_put(&tfile->sk); 600 } else { 601 tun_disable_queue(tun, tfile); 602 tun_napi_disable(tfile); 603 } 604 605 synchronize_net(); 606 tun_flow_delete_by_queue(tun, tun->numqueues + 1); 607 /* Drop read queue */ 608 tun_queue_purge(tfile); 609 tun_set_real_num_queues(tun); 610 } else if (tfile->detached && clean) { 611 tun = tun_enable_queue(tfile); 612 sock_put(&tfile->sk); 613 } 614 615 if (clean) { 616 if (tun && tun->numqueues == 0 && tun->numdisabled == 0) { 617 netif_carrier_off(tun->dev); 618 619 if (!(tun->flags & IFF_PERSIST) && 620 tun->dev->reg_state == NETREG_REGISTERED) 621 unregister_netdevice(tun->dev); 622 } 623 if (tun) 624 xdp_rxq_info_unreg(&tfile->xdp_rxq); 625 ptr_ring_cleanup(&tfile->tx_ring, tun_ptr_free); 626 } 627 } 628 629 static void tun_detach(struct tun_file *tfile, bool clean) 630 { 631 struct tun_struct *tun; 632 struct net_device *dev; 633 634 rtnl_lock(); 635 tun = rtnl_dereference(tfile->tun); 636 dev = tun ? tun->dev : NULL; 637 __tun_detach(tfile, clean); 638 if (dev) 639 netdev_state_change(dev); 640 rtnl_unlock(); 641 642 if (clean) 643 sock_put(&tfile->sk); 644 } 645 646 static void tun_detach_all(struct net_device *dev) 647 { 648 struct tun_struct *tun = netdev_priv(dev); 649 struct tun_file *tfile, *tmp; 650 int i, n = tun->numqueues; 651 652 for (i = 0; i < n; i++) { 653 tfile = rtnl_dereference(tun->tfiles[i]); 654 BUG_ON(!tfile); 655 tun_napi_disable(tfile); 656 tfile->socket.sk->sk_shutdown = RCV_SHUTDOWN; 657 tfile->socket.sk->sk_data_ready(tfile->socket.sk); 658 RCU_INIT_POINTER(tfile->tun, NULL); 659 --tun->numqueues; 660 } 661 list_for_each_entry(tfile, &tun->disabled, next) { 662 tfile->socket.sk->sk_shutdown = RCV_SHUTDOWN; 663 tfile->socket.sk->sk_data_ready(tfile->socket.sk); 664 RCU_INIT_POINTER(tfile->tun, NULL); 665 } 666 BUG_ON(tun->numqueues != 0); 667 668 synchronize_net(); 669 for (i = 0; i < n; i++) { 670 tfile = rtnl_dereference(tun->tfiles[i]); 671 tun_napi_del(tfile); 672 /* Drop read queue */ 673 tun_queue_purge(tfile); 674 xdp_rxq_info_unreg(&tfile->xdp_rxq); 675 sock_put(&tfile->sk); 676 } 677 list_for_each_entry_safe(tfile, tmp, &tun->disabled, next) { 678 tun_napi_del(tfile); 679 tun_enable_queue(tfile); 680 tun_queue_purge(tfile); 681 xdp_rxq_info_unreg(&tfile->xdp_rxq); 682 sock_put(&tfile->sk); 683 } 684 BUG_ON(tun->numdisabled != 0); 685 686 if (tun->flags & IFF_PERSIST) 687 module_put(THIS_MODULE); 688 } 689 690 static int tun_attach(struct tun_struct *tun, struct file *file, 691 bool skip_filter, bool napi, bool napi_frags, 692 bool publish_tun) 693 { 694 struct tun_file *tfile = file->private_data; 695 struct net_device *dev = tun->dev; 696 int err; 697 698 err = security_tun_dev_attach(tfile->socket.sk, tun->security); 699 if (err < 0) 700 goto out; 701 702 err = -EINVAL; 703 if (rtnl_dereference(tfile->tun) && !tfile->detached) 704 goto out; 705 706 err = -EBUSY; 707 if (!(tun->flags & IFF_MULTI_QUEUE) && tun->numqueues == 1) 708 goto out; 709 710 err = -E2BIG; 711 if (!tfile->detached && 712 tun->numqueues + tun->numdisabled == MAX_TAP_QUEUES) 713 goto out; 714 715 err = 0; 716 717 /* Re-attach the filter to persist device */ 718 if (!skip_filter && (tun->filter_attached == true)) { 719 lock_sock(tfile->socket.sk); 720 err = sk_attach_filter(&tun->fprog, tfile->socket.sk); 721 release_sock(tfile->socket.sk); 722 if (!err) 723 goto out; 724 } 725 726 if (!tfile->detached && 727 ptr_ring_resize(&tfile->tx_ring, dev->tx_queue_len, 728 GFP_KERNEL, tun_ptr_free)) { 729 err = -ENOMEM; 730 goto out; 731 } 732 733 tfile->queue_index = tun->numqueues; 734 tfile->socket.sk->sk_shutdown &= ~RCV_SHUTDOWN; 735 736 if (tfile->detached) { 737 /* Re-attach detached tfile, updating XDP queue_index */ 738 WARN_ON(!xdp_rxq_info_is_reg(&tfile->xdp_rxq)); 739 740 if (tfile->xdp_rxq.queue_index != tfile->queue_index) 741 tfile->xdp_rxq.queue_index = tfile->queue_index; 742 } else { 743 /* Setup XDP RX-queue info, for new tfile getting attached */ 744 err = xdp_rxq_info_reg(&tfile->xdp_rxq, 745 tun->dev, tfile->queue_index, 0); 746 if (err < 0) 747 goto out; 748 err = xdp_rxq_info_reg_mem_model(&tfile->xdp_rxq, 749 MEM_TYPE_PAGE_SHARED, NULL); 750 if (err < 0) { 751 xdp_rxq_info_unreg(&tfile->xdp_rxq); 752 goto out; 753 } 754 err = 0; 755 } 756 757 if (tfile->detached) { 758 tun_enable_queue(tfile); 759 tun_napi_enable(tfile); 760 } else { 761 sock_hold(&tfile->sk); 762 tun_napi_init(tun, tfile, napi, napi_frags); 763 } 764 765 if (rtnl_dereference(tun->xdp_prog)) 766 sock_set_flag(&tfile->sk, SOCK_XDP); 767 768 /* device is allowed to go away first, so no need to hold extra 769 * refcnt. 770 */ 771 772 /* Publish tfile->tun and tun->tfiles only after we've fully 773 * initialized tfile; otherwise we risk using half-initialized 774 * object. 775 */ 776 if (publish_tun) 777 rcu_assign_pointer(tfile->tun, tun); 778 rcu_assign_pointer(tun->tfiles[tun->numqueues], tfile); 779 tun->numqueues++; 780 tun_set_real_num_queues(tun); 781 out: 782 return err; 783 } 784 785 static struct tun_struct *tun_get(struct tun_file *tfile) 786 { 787 struct tun_struct *tun; 788 789 rcu_read_lock(); 790 tun = rcu_dereference(tfile->tun); 791 if (tun) 792 dev_hold(tun->dev); 793 rcu_read_unlock(); 794 795 return tun; 796 } 797 798 static void tun_put(struct tun_struct *tun) 799 { 800 dev_put(tun->dev); 801 } 802 803 /* TAP filtering */ 804 static void addr_hash_set(u32 *mask, const u8 *addr) 805 { 806 int n = ether_crc(ETH_ALEN, addr) >> 26; 807 mask[n >> 5] |= (1 << (n & 31)); 808 } 809 810 static unsigned int addr_hash_test(const u32 *mask, const u8 *addr) 811 { 812 int n = ether_crc(ETH_ALEN, addr) >> 26; 813 return mask[n >> 5] & (1 << (n & 31)); 814 } 815 816 static int update_filter(struct tap_filter *filter, void __user *arg) 817 { 818 struct { u8 u[ETH_ALEN]; } *addr; 819 struct tun_filter uf; 820 int err, alen, n, nexact; 821 822 if (copy_from_user(&uf, arg, sizeof(uf))) 823 return -EFAULT; 824 825 if (!uf.count) { 826 /* Disabled */ 827 filter->count = 0; 828 return 0; 829 } 830 831 alen = ETH_ALEN * uf.count; 832 addr = memdup_user(arg + sizeof(uf), alen); 833 if (IS_ERR(addr)) 834 return PTR_ERR(addr); 835 836 /* The filter is updated without holding any locks. Which is 837 * perfectly safe. We disable it first and in the worst 838 * case we'll accept a few undesired packets. */ 839 filter->count = 0; 840 wmb(); 841 842 /* Use first set of addresses as an exact filter */ 843 for (n = 0; n < uf.count && n < FLT_EXACT_COUNT; n++) 844 memcpy(filter->addr[n], addr[n].u, ETH_ALEN); 845 846 nexact = n; 847 848 /* Remaining multicast addresses are hashed, 849 * unicast will leave the filter disabled. */ 850 memset(filter->mask, 0, sizeof(filter->mask)); 851 for (; n < uf.count; n++) { 852 if (!is_multicast_ether_addr(addr[n].u)) { 853 err = 0; /* no filter */ 854 goto free_addr; 855 } 856 addr_hash_set(filter->mask, addr[n].u); 857 } 858 859 /* For ALLMULTI just set the mask to all ones. 860 * This overrides the mask populated above. */ 861 if ((uf.flags & TUN_FLT_ALLMULTI)) 862 memset(filter->mask, ~0, sizeof(filter->mask)); 863 864 /* Now enable the filter */ 865 wmb(); 866 filter->count = nexact; 867 868 /* Return the number of exact filters */ 869 err = nexact; 870 free_addr: 871 kfree(addr); 872 return err; 873 } 874 875 /* Returns: 0 - drop, !=0 - accept */ 876 static int run_filter(struct tap_filter *filter, const struct sk_buff *skb) 877 { 878 /* Cannot use eth_hdr(skb) here because skb_mac_hdr() is incorrect 879 * at this point. */ 880 struct ethhdr *eh = (struct ethhdr *) skb->data; 881 int i; 882 883 /* Exact match */ 884 for (i = 0; i < filter->count; i++) 885 if (ether_addr_equal(eh->h_dest, filter->addr[i])) 886 return 1; 887 888 /* Inexact match (multicast only) */ 889 if (is_multicast_ether_addr(eh->h_dest)) 890 return addr_hash_test(filter->mask, eh->h_dest); 891 892 return 0; 893 } 894 895 /* 896 * Checks whether the packet is accepted or not. 897 * Returns: 0 - drop, !=0 - accept 898 */ 899 static int check_filter(struct tap_filter *filter, const struct sk_buff *skb) 900 { 901 if (!filter->count) 902 return 1; 903 904 return run_filter(filter, skb); 905 } 906 907 /* Network device part of the driver */ 908 909 static const struct ethtool_ops tun_ethtool_ops; 910 911 static int tun_net_init(struct net_device *dev) 912 { 913 struct tun_struct *tun = netdev_priv(dev); 914 struct ifreq *ifr = tun->ifr; 915 int err; 916 917 spin_lock_init(&tun->lock); 918 919 err = security_tun_dev_alloc_security(&tun->security); 920 if (err < 0) 921 return err; 922 923 tun_flow_init(tun); 924 925 dev->pcpu_stat_type = NETDEV_PCPU_STAT_TSTATS; 926 dev->hw_features = NETIF_F_SG | NETIF_F_FRAGLIST | 927 TUN_USER_FEATURES | NETIF_F_HW_VLAN_CTAG_TX | 928 NETIF_F_HW_VLAN_STAG_TX; 929 dev->hw_enc_features = dev->hw_features; 930 dev->features = dev->hw_features; 931 dev->vlan_features = dev->features & 932 ~(NETIF_F_HW_VLAN_CTAG_TX | 933 NETIF_F_HW_VLAN_STAG_TX); 934 dev->lltx = true; 935 936 tun->flags = (tun->flags & ~TUN_FEATURES) | 937 (ifr->ifr_flags & TUN_FEATURES); 938 939 INIT_LIST_HEAD(&tun->disabled); 940 err = tun_attach(tun, tun->file, false, ifr->ifr_flags & IFF_NAPI, 941 ifr->ifr_flags & IFF_NAPI_FRAGS, false); 942 if (err < 0) { 943 tun_flow_uninit(tun); 944 security_tun_dev_free_security(tun->security); 945 return err; 946 } 947 return 0; 948 } 949 950 /* Net device detach from fd. */ 951 static void tun_net_uninit(struct net_device *dev) 952 { 953 tun_detach_all(dev); 954 } 955 956 /* Net device open. */ 957 static int tun_net_open(struct net_device *dev) 958 { 959 netif_tx_start_all_queues(dev); 960 961 return 0; 962 } 963 964 /* Net device close. */ 965 static int tun_net_close(struct net_device *dev) 966 { 967 netif_tx_stop_all_queues(dev); 968 return 0; 969 } 970 971 /* Net device start xmit */ 972 static void tun_automq_xmit(struct tun_struct *tun, struct sk_buff *skb) 973 { 974 #ifdef CONFIG_RPS 975 if (tun->numqueues == 1 && static_branch_unlikely(&rps_needed)) { 976 /* Select queue was not called for the skbuff, so we extract the 977 * RPS hash and save it into the flow_table here. 978 */ 979 struct tun_flow_entry *e; 980 __u32 rxhash; 981 982 rxhash = __skb_get_hash_symmetric(skb); 983 e = tun_flow_find(&tun->flows[tun_hashfn(rxhash)], rxhash); 984 if (e) 985 tun_flow_save_rps_rxhash(e, rxhash); 986 } 987 #endif 988 } 989 990 static unsigned int run_ebpf_filter(struct tun_struct *tun, 991 struct sk_buff *skb, 992 int len) 993 { 994 struct tun_prog *prog = rcu_dereference(tun->filter_prog); 995 996 if (prog) 997 len = bpf_prog_run_clear_cb(prog->prog, skb); 998 999 return len; 1000 } 1001 1002 /* Net device start xmit */ 1003 static netdev_tx_t tun_net_xmit(struct sk_buff *skb, struct net_device *dev) 1004 { 1005 enum skb_drop_reason drop_reason = SKB_DROP_REASON_NOT_SPECIFIED; 1006 struct tun_struct *tun = netdev_priv(dev); 1007 int txq = skb->queue_mapping; 1008 struct netdev_queue *queue; 1009 struct tun_file *tfile; 1010 int len = skb->len; 1011 1012 rcu_read_lock(); 1013 tfile = rcu_dereference(tun->tfiles[txq]); 1014 1015 /* Drop packet if interface is not attached */ 1016 if (!tfile) { 1017 drop_reason = SKB_DROP_REASON_DEV_READY; 1018 goto drop; 1019 } 1020 1021 if (!rcu_dereference(tun->steering_prog)) 1022 tun_automq_xmit(tun, skb); 1023 1024 netif_info(tun, tx_queued, tun->dev, "%s %d\n", __func__, skb->len); 1025 1026 /* Drop if the filter does not like it. 1027 * This is a noop if the filter is disabled. 1028 * Filter can be enabled only for the TAP devices. */ 1029 if (!check_filter(&tun->txflt, skb)) { 1030 drop_reason = SKB_DROP_REASON_TAP_TXFILTER; 1031 goto drop; 1032 } 1033 1034 if (tfile->socket.sk->sk_filter) { 1035 drop_reason = sk_filter_reason(tfile->socket.sk, skb); 1036 if (drop_reason) 1037 goto drop; 1038 } 1039 1040 len = run_ebpf_filter(tun, skb, len); 1041 if (len == 0) { 1042 drop_reason = SKB_DROP_REASON_TAP_FILTER; 1043 goto drop; 1044 } 1045 1046 if (pskb_trim(skb, len)) { 1047 drop_reason = SKB_DROP_REASON_NOMEM; 1048 goto drop; 1049 } 1050 1051 if (unlikely(skb_orphan_frags_rx(skb, GFP_ATOMIC))) { 1052 drop_reason = SKB_DROP_REASON_SKB_UCOPY_FAULT; 1053 goto drop; 1054 } 1055 1056 skb_tx_timestamp(skb); 1057 1058 /* Orphan the skb - required as we might hang on to it 1059 * for indefinite time. 1060 */ 1061 skb_orphan(skb); 1062 1063 nf_reset_ct(skb); 1064 1065 if (ptr_ring_produce(&tfile->tx_ring, skb)) { 1066 drop_reason = SKB_DROP_REASON_FULL_RING; 1067 goto drop; 1068 } 1069 1070 /* dev->lltx requires to do our own update of trans_start */ 1071 queue = netdev_get_tx_queue(dev, txq); 1072 txq_trans_cond_update(queue); 1073 1074 /* Notify and wake up reader process */ 1075 if (tfile->flags & TUN_FASYNC) 1076 kill_fasync(&tfile->fasync, SIGIO, POLL_IN); 1077 tfile->socket.sk->sk_data_ready(tfile->socket.sk); 1078 1079 rcu_read_unlock(); 1080 return NETDEV_TX_OK; 1081 1082 drop: 1083 dev_core_stats_tx_dropped_inc(dev); 1084 skb_tx_error(skb); 1085 kfree_skb_reason(skb, drop_reason); 1086 rcu_read_unlock(); 1087 return NET_XMIT_DROP; 1088 } 1089 1090 static void tun_net_mclist(struct net_device *dev) 1091 { 1092 /* 1093 * This callback is supposed to deal with mc filter in 1094 * _rx_ path and has nothing to do with the _tx_ path. 1095 * In rx path we always accept everything userspace gives us. 1096 */ 1097 } 1098 1099 static netdev_features_t tun_net_fix_features(struct net_device *dev, 1100 netdev_features_t features) 1101 { 1102 struct tun_struct *tun = netdev_priv(dev); 1103 1104 return (features & tun->set_features) | (features & ~TUN_USER_FEATURES); 1105 } 1106 1107 static void tun_set_headroom(struct net_device *dev, int new_hr) 1108 { 1109 struct tun_struct *tun = netdev_priv(dev); 1110 size_t max_headroom; 1111 1112 max_headroom = min_t(size_t, SKB_MAX_HEAD(0), U16_MAX - 1); 1113 1114 if ((tun->flags & TUN_TYPE_MASK) == IFF_TAP) 1115 max_headroom -= ETH_HLEN + NET_IP_ALIGN; 1116 else 1117 max_headroom -= 1; 1118 1119 tun->align = clamp_t(int, new_hr, NET_SKB_PAD, max_headroom); 1120 } 1121 1122 static void 1123 tun_net_get_stats64(struct net_device *dev, struct rtnl_link_stats64 *stats) 1124 { 1125 struct tun_struct *tun = netdev_priv(dev); 1126 1127 dev_get_tstats64(dev, stats); 1128 1129 stats->rx_frame_errors += 1130 (unsigned long)atomic_long_read(&tun->rx_frame_errors); 1131 } 1132 1133 static int tun_xdp_set(struct net_device *dev, struct bpf_prog *prog, 1134 struct netlink_ext_ack *extack) 1135 { 1136 struct tun_struct *tun = netdev_priv(dev); 1137 struct tun_file *tfile; 1138 struct bpf_prog *old_prog; 1139 int i; 1140 1141 old_prog = rtnl_dereference(tun->xdp_prog); 1142 rcu_assign_pointer(tun->xdp_prog, prog); 1143 if (old_prog) 1144 bpf_prog_put(old_prog); 1145 1146 for (i = 0; i < tun->numqueues; i++) { 1147 tfile = rtnl_dereference(tun->tfiles[i]); 1148 if (prog) 1149 sock_set_flag(&tfile->sk, SOCK_XDP); 1150 else 1151 sock_reset_flag(&tfile->sk, SOCK_XDP); 1152 } 1153 list_for_each_entry(tfile, &tun->disabled, next) { 1154 if (prog) 1155 sock_set_flag(&tfile->sk, SOCK_XDP); 1156 else 1157 sock_reset_flag(&tfile->sk, SOCK_XDP); 1158 } 1159 1160 return 0; 1161 } 1162 1163 static int tun_xdp(struct net_device *dev, struct netdev_bpf *xdp) 1164 { 1165 switch (xdp->command) { 1166 case XDP_SETUP_PROG: 1167 return tun_xdp_set(dev, xdp->prog, xdp->extack); 1168 default: 1169 return -EINVAL; 1170 } 1171 } 1172 1173 static int tun_net_change_carrier(struct net_device *dev, bool new_carrier) 1174 { 1175 if (new_carrier) { 1176 struct tun_struct *tun = netdev_priv(dev); 1177 1178 if (!tun->numqueues) 1179 return -EPERM; 1180 1181 netif_carrier_on(dev); 1182 } else { 1183 netif_carrier_off(dev); 1184 } 1185 return 0; 1186 } 1187 1188 static const struct net_device_ops tun_netdev_ops = { 1189 .ndo_init = tun_net_init, 1190 .ndo_uninit = tun_net_uninit, 1191 .ndo_open = tun_net_open, 1192 .ndo_stop = tun_net_close, 1193 .ndo_start_xmit = tun_net_xmit, 1194 .ndo_fix_features = tun_net_fix_features, 1195 .ndo_select_queue = tun_select_queue, 1196 .ndo_set_rx_headroom = tun_set_headroom, 1197 .ndo_get_stats64 = tun_net_get_stats64, 1198 .ndo_change_carrier = tun_net_change_carrier, 1199 }; 1200 1201 static void __tun_xdp_flush_tfile(struct tun_file *tfile) 1202 { 1203 /* Notify and wake up reader process */ 1204 if (tfile->flags & TUN_FASYNC) 1205 kill_fasync(&tfile->fasync, SIGIO, POLL_IN); 1206 tfile->socket.sk->sk_data_ready(tfile->socket.sk); 1207 } 1208 1209 static int tun_xdp_xmit(struct net_device *dev, int n, 1210 struct xdp_frame **frames, u32 flags) 1211 { 1212 struct tun_struct *tun = netdev_priv(dev); 1213 struct tun_file *tfile; 1214 u32 numqueues; 1215 int nxmit = 0; 1216 int i; 1217 1218 if (unlikely(flags & ~XDP_XMIT_FLAGS_MASK)) 1219 return -EINVAL; 1220 1221 rcu_read_lock(); 1222 1223 resample: 1224 numqueues = READ_ONCE(tun->numqueues); 1225 if (!numqueues) { 1226 rcu_read_unlock(); 1227 return -ENXIO; /* Caller will free/return all frames */ 1228 } 1229 1230 tfile = rcu_dereference(tun->tfiles[smp_processor_id() % 1231 numqueues]); 1232 if (unlikely(!tfile)) 1233 goto resample; 1234 1235 spin_lock(&tfile->tx_ring.producer_lock); 1236 for (i = 0; i < n; i++) { 1237 struct xdp_frame *xdp = frames[i]; 1238 /* Encode the XDP flag into lowest bit for consumer to differ 1239 * XDP buffer from sk_buff. 1240 */ 1241 void *frame = tun_xdp_to_ptr(xdp); 1242 1243 if (__ptr_ring_produce(&tfile->tx_ring, frame)) { 1244 dev_core_stats_tx_dropped_inc(dev); 1245 break; 1246 } 1247 nxmit++; 1248 } 1249 spin_unlock(&tfile->tx_ring.producer_lock); 1250 1251 if (flags & XDP_XMIT_FLUSH) 1252 __tun_xdp_flush_tfile(tfile); 1253 1254 rcu_read_unlock(); 1255 return nxmit; 1256 } 1257 1258 static int tun_xdp_tx(struct net_device *dev, struct xdp_buff *xdp) 1259 { 1260 struct xdp_frame *frame = xdp_convert_buff_to_frame(xdp); 1261 int nxmit; 1262 1263 if (unlikely(!frame)) 1264 return -EOVERFLOW; 1265 1266 nxmit = tun_xdp_xmit(dev, 1, &frame, XDP_XMIT_FLUSH); 1267 if (!nxmit) 1268 xdp_return_frame_rx_napi(frame); 1269 return nxmit; 1270 } 1271 1272 static const struct net_device_ops tap_netdev_ops = { 1273 .ndo_init = tun_net_init, 1274 .ndo_uninit = tun_net_uninit, 1275 .ndo_open = tun_net_open, 1276 .ndo_stop = tun_net_close, 1277 .ndo_start_xmit = tun_net_xmit, 1278 .ndo_fix_features = tun_net_fix_features, 1279 .ndo_set_rx_mode = tun_net_mclist, 1280 .ndo_set_mac_address = eth_mac_addr, 1281 .ndo_validate_addr = eth_validate_addr, 1282 .ndo_select_queue = tun_select_queue, 1283 .ndo_features_check = passthru_features_check, 1284 .ndo_set_rx_headroom = tun_set_headroom, 1285 .ndo_bpf = tun_xdp, 1286 .ndo_xdp_xmit = tun_xdp_xmit, 1287 .ndo_change_carrier = tun_net_change_carrier, 1288 }; 1289 1290 static void tun_flow_init(struct tun_struct *tun) 1291 { 1292 int i; 1293 1294 for (i = 0; i < TUN_NUM_FLOW_ENTRIES; i++) 1295 INIT_HLIST_HEAD(&tun->flows[i]); 1296 1297 tun->ageing_time = TUN_FLOW_EXPIRE; 1298 timer_setup(&tun->flow_gc_timer, tun_flow_cleanup, 0); 1299 mod_timer(&tun->flow_gc_timer, 1300 round_jiffies_up(jiffies + tun->ageing_time)); 1301 } 1302 1303 static void tun_flow_uninit(struct tun_struct *tun) 1304 { 1305 timer_delete_sync(&tun->flow_gc_timer); 1306 tun_flow_flush(tun); 1307 } 1308 1309 #define MIN_MTU 68 1310 #define MAX_MTU 65535 1311 1312 /* Initialize net device. */ 1313 static void tun_net_initialize(struct net_device *dev) 1314 { 1315 struct tun_struct *tun = netdev_priv(dev); 1316 1317 switch (tun->flags & TUN_TYPE_MASK) { 1318 case IFF_TUN: 1319 dev->netdev_ops = &tun_netdev_ops; 1320 dev->header_ops = &ip_tunnel_header_ops; 1321 1322 /* Point-to-Point TUN Device */ 1323 dev->hard_header_len = 0; 1324 dev->addr_len = 0; 1325 dev->mtu = 1500; 1326 1327 /* Zero header length */ 1328 dev->type = ARPHRD_NONE; 1329 dev->flags = IFF_POINTOPOINT | IFF_NOARP | IFF_MULTICAST; 1330 break; 1331 1332 case IFF_TAP: 1333 dev->netdev_ops = &tap_netdev_ops; 1334 /* Ethernet TAP Device */ 1335 ether_setup(dev); 1336 dev->priv_flags &= ~IFF_TX_SKB_SHARING; 1337 dev->priv_flags |= IFF_LIVE_ADDR_CHANGE; 1338 1339 eth_hw_addr_random(dev); 1340 1341 /* Currently tun does not support XDP, only tap does. */ 1342 dev->xdp_features = NETDEV_XDP_ACT_BASIC | 1343 NETDEV_XDP_ACT_REDIRECT | 1344 NETDEV_XDP_ACT_NDO_XMIT; 1345 1346 break; 1347 } 1348 1349 dev->min_mtu = MIN_MTU; 1350 dev->max_mtu = MAX_MTU - dev->hard_header_len; 1351 } 1352 1353 static bool tun_sock_writeable(struct tun_struct *tun, struct tun_file *tfile) 1354 { 1355 struct sock *sk = tfile->socket.sk; 1356 1357 return (tun->dev->flags & IFF_UP) && sock_writeable(sk); 1358 } 1359 1360 /* Character device part */ 1361 1362 /* Poll */ 1363 static __poll_t tun_chr_poll(struct file *file, poll_table *wait) 1364 { 1365 struct tun_file *tfile = file->private_data; 1366 struct tun_struct *tun = tun_get(tfile); 1367 struct sock *sk; 1368 __poll_t mask = 0; 1369 1370 if (!tun) 1371 return EPOLLERR; 1372 1373 sk = tfile->socket.sk; 1374 1375 poll_wait(file, sk_sleep(sk), wait); 1376 1377 if (!ptr_ring_empty(&tfile->tx_ring)) 1378 mask |= EPOLLIN | EPOLLRDNORM; 1379 1380 /* Make sure SOCKWQ_ASYNC_NOSPACE is set if not writable to 1381 * guarantee EPOLLOUT to be raised by either here or 1382 * tun_sock_write_space(). Then process could get notification 1383 * after it writes to a down device and meets -EIO. 1384 */ 1385 if (tun_sock_writeable(tun, tfile) || 1386 (!test_and_set_bit(SOCKWQ_ASYNC_NOSPACE, &sk->sk_socket->flags) && 1387 tun_sock_writeable(tun, tfile))) 1388 mask |= EPOLLOUT | EPOLLWRNORM; 1389 1390 if (tun->dev->reg_state != NETREG_REGISTERED) 1391 mask = EPOLLERR; 1392 1393 tun_put(tun); 1394 return mask; 1395 } 1396 1397 static struct sk_buff *tun_napi_alloc_frags(struct tun_file *tfile, 1398 size_t len, 1399 const struct iov_iter *it) 1400 { 1401 struct sk_buff *skb; 1402 size_t linear; 1403 int err; 1404 int i; 1405 1406 if (it->nr_segs > MAX_SKB_FRAGS + 1 || 1407 len > (ETH_MAX_MTU - NET_SKB_PAD - NET_IP_ALIGN)) 1408 return ERR_PTR(-EMSGSIZE); 1409 1410 local_bh_disable(); 1411 skb = napi_get_frags(&tfile->napi); 1412 local_bh_enable(); 1413 if (!skb) 1414 return ERR_PTR(-ENOMEM); 1415 1416 linear = iov_iter_single_seg_count(it); 1417 err = __skb_grow(skb, linear); 1418 if (err) 1419 goto free; 1420 1421 skb->len = len; 1422 skb->data_len = len - linear; 1423 skb->truesize += skb->data_len; 1424 1425 for (i = 1; i < it->nr_segs; i++) { 1426 const struct iovec *iov = iter_iov(it) + i; 1427 size_t fragsz = iov->iov_len; 1428 struct page *page; 1429 void *frag; 1430 1431 if (fragsz == 0 || fragsz > PAGE_SIZE) { 1432 err = -EINVAL; 1433 goto free; 1434 } 1435 frag = netdev_alloc_frag(fragsz); 1436 if (!frag) { 1437 err = -ENOMEM; 1438 goto free; 1439 } 1440 page = virt_to_head_page(frag); 1441 skb_fill_page_desc(skb, i - 1, page, 1442 frag - page_address(page), fragsz); 1443 } 1444 1445 return skb; 1446 free: 1447 /* frees skb and all frags allocated with napi_alloc_frag() */ 1448 napi_free_frags(&tfile->napi); 1449 return ERR_PTR(err); 1450 } 1451 1452 /* prepad is the amount to reserve at front. len is length after that. 1453 * linear is a hint as to how much to copy (usually headers). */ 1454 static struct sk_buff *tun_alloc_skb(struct tun_file *tfile, 1455 size_t prepad, size_t len, 1456 size_t linear, int noblock) 1457 { 1458 struct sock *sk = tfile->socket.sk; 1459 struct sk_buff *skb; 1460 int err; 1461 1462 /* Under a page? Don't bother with paged skb. */ 1463 if (prepad + len < PAGE_SIZE) 1464 linear = len; 1465 1466 if (len - linear > MAX_SKB_FRAGS * (PAGE_SIZE << PAGE_ALLOC_COSTLY_ORDER)) 1467 linear = len - MAX_SKB_FRAGS * (PAGE_SIZE << PAGE_ALLOC_COSTLY_ORDER); 1468 skb = sock_alloc_send_pskb(sk, prepad + linear, len - linear, noblock, 1469 &err, PAGE_ALLOC_COSTLY_ORDER); 1470 if (!skb) 1471 return ERR_PTR(err); 1472 1473 skb_reserve(skb, prepad); 1474 skb_put(skb, linear); 1475 skb->data_len = len - linear; 1476 skb->len += len - linear; 1477 1478 return skb; 1479 } 1480 1481 static void tun_rx_batched(struct tun_struct *tun, struct tun_file *tfile, 1482 struct sk_buff *skb, int more) 1483 { 1484 struct sk_buff_head *queue = &tfile->sk.sk_write_queue; 1485 struct sk_buff_head process_queue; 1486 u32 rx_batched = tun->rx_batched; 1487 bool rcv = false; 1488 1489 if (!rx_batched || (!more && skb_queue_empty(queue))) { 1490 local_bh_disable(); 1491 skb_record_rx_queue(skb, tfile->queue_index); 1492 netif_receive_skb(skb); 1493 local_bh_enable(); 1494 return; 1495 } 1496 1497 spin_lock(&queue->lock); 1498 if (!more || skb_queue_len(queue) == rx_batched) { 1499 __skb_queue_head_init(&process_queue); 1500 skb_queue_splice_tail_init(queue, &process_queue); 1501 rcv = true; 1502 } else { 1503 __skb_queue_tail(queue, skb); 1504 } 1505 spin_unlock(&queue->lock); 1506 1507 if (rcv) { 1508 struct sk_buff *nskb; 1509 1510 local_bh_disable(); 1511 while ((nskb = __skb_dequeue(&process_queue))) { 1512 skb_record_rx_queue(nskb, tfile->queue_index); 1513 netif_receive_skb(nskb); 1514 } 1515 skb_record_rx_queue(skb, tfile->queue_index); 1516 netif_receive_skb(skb); 1517 local_bh_enable(); 1518 } 1519 } 1520 1521 static bool tun_can_build_skb(struct tun_struct *tun, struct tun_file *tfile, 1522 int len, int noblock, bool zerocopy) 1523 { 1524 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP) 1525 return false; 1526 1527 if (tfile->socket.sk->sk_sndbuf != INT_MAX) 1528 return false; 1529 1530 if (!noblock) 1531 return false; 1532 1533 if (zerocopy) 1534 return false; 1535 1536 if (SKB_DATA_ALIGN(len + TUN_RX_PAD + XDP_PACKET_HEADROOM) + 1537 SKB_DATA_ALIGN(sizeof(struct skb_shared_info)) > PAGE_SIZE) 1538 return false; 1539 1540 return true; 1541 } 1542 1543 static struct sk_buff *__tun_build_skb(struct tun_file *tfile, 1544 struct page_frag *alloc_frag, char *buf, 1545 int buflen, int len, int pad, 1546 int metasize) 1547 { 1548 struct sk_buff *skb = build_skb(buf, buflen); 1549 1550 if (!skb) 1551 return ERR_PTR(-ENOMEM); 1552 1553 skb_reserve(skb, pad); 1554 skb_put(skb, len); 1555 if (metasize) 1556 skb_metadata_set(skb, metasize); 1557 skb_set_owner_w(skb, tfile->socket.sk); 1558 1559 get_page(alloc_frag->page); 1560 alloc_frag->offset += buflen; 1561 1562 return skb; 1563 } 1564 1565 static int tun_xdp_act(struct tun_struct *tun, struct bpf_prog *xdp_prog, 1566 struct xdp_buff *xdp, u32 act) 1567 { 1568 int err; 1569 1570 switch (act) { 1571 case XDP_REDIRECT: 1572 err = xdp_do_redirect(tun->dev, xdp, xdp_prog); 1573 if (err) { 1574 dev_core_stats_rx_dropped_inc(tun->dev); 1575 return err; 1576 } 1577 dev_sw_netstats_rx_add(tun->dev, xdp->data_end - xdp->data); 1578 break; 1579 case XDP_TX: 1580 err = tun_xdp_tx(tun->dev, xdp); 1581 if (err < 0) { 1582 dev_core_stats_rx_dropped_inc(tun->dev); 1583 return err; 1584 } 1585 dev_sw_netstats_rx_add(tun->dev, xdp->data_end - xdp->data); 1586 break; 1587 case XDP_PASS: 1588 break; 1589 default: 1590 bpf_warn_invalid_xdp_action(tun->dev, xdp_prog, act); 1591 fallthrough; 1592 case XDP_ABORTED: 1593 trace_xdp_exception(tun->dev, xdp_prog, act); 1594 fallthrough; 1595 case XDP_DROP: 1596 dev_core_stats_rx_dropped_inc(tun->dev); 1597 break; 1598 } 1599 1600 return act; 1601 } 1602 1603 static struct sk_buff *tun_build_skb(struct tun_struct *tun, 1604 struct tun_file *tfile, 1605 struct iov_iter *from, 1606 struct virtio_net_hdr *hdr, 1607 int len, int *skb_xdp) 1608 { 1609 struct page_frag *alloc_frag = ¤t->task_frag; 1610 struct bpf_net_context __bpf_net_ctx, *bpf_net_ctx; 1611 struct bpf_prog *xdp_prog; 1612 int buflen = SKB_DATA_ALIGN(sizeof(struct skb_shared_info)); 1613 char *buf; 1614 size_t copied; 1615 int pad = TUN_RX_PAD; 1616 int metasize = 0; 1617 int err = 0; 1618 1619 rcu_read_lock(); 1620 xdp_prog = rcu_dereference(tun->xdp_prog); 1621 if (xdp_prog) 1622 pad += XDP_PACKET_HEADROOM; 1623 buflen += SKB_DATA_ALIGN(len + pad); 1624 rcu_read_unlock(); 1625 1626 alloc_frag->offset = ALIGN((u64)alloc_frag->offset, SMP_CACHE_BYTES); 1627 if (unlikely(!skb_page_frag_refill(buflen, alloc_frag, GFP_KERNEL))) 1628 return ERR_PTR(-ENOMEM); 1629 1630 buf = (char *)page_address(alloc_frag->page) + alloc_frag->offset; 1631 copied = copy_page_from_iter(alloc_frag->page, 1632 alloc_frag->offset + pad, 1633 len, from); 1634 if (copied != len) 1635 return ERR_PTR(-EFAULT); 1636 1637 /* There's a small window that XDP may be set after the check 1638 * of xdp_prog above, this should be rare and for simplicity 1639 * we do XDP on skb in case the headroom is not enough. 1640 */ 1641 if (hdr->gso_type || !xdp_prog) { 1642 *skb_xdp = 1; 1643 return __tun_build_skb(tfile, alloc_frag, buf, buflen, len, 1644 pad, metasize); 1645 } 1646 1647 *skb_xdp = 0; 1648 1649 local_bh_disable(); 1650 rcu_read_lock(); 1651 bpf_net_ctx = bpf_net_ctx_set(&__bpf_net_ctx); 1652 xdp_prog = rcu_dereference(tun->xdp_prog); 1653 if (xdp_prog) { 1654 struct xdp_buff xdp; 1655 u32 act; 1656 1657 xdp_init_buff(&xdp, buflen, &tfile->xdp_rxq); 1658 xdp_prepare_buff(&xdp, buf, pad, len, true); 1659 1660 act = bpf_prog_run_xdp(xdp_prog, &xdp); 1661 if (act == XDP_REDIRECT || act == XDP_TX) { 1662 get_page(alloc_frag->page); 1663 alloc_frag->offset += buflen; 1664 } 1665 err = tun_xdp_act(tun, xdp_prog, &xdp, act); 1666 if (err < 0) { 1667 if (act == XDP_REDIRECT || act == XDP_TX) 1668 put_page(alloc_frag->page); 1669 goto out; 1670 } 1671 1672 if (err == XDP_REDIRECT) 1673 xdp_do_flush(); 1674 if (err != XDP_PASS) 1675 goto out; 1676 1677 pad = xdp.data - xdp.data_hard_start; 1678 len = xdp.data_end - xdp.data; 1679 1680 /* It is known that the xdp_buff was prepared with metadata 1681 * support, so the metasize will never be negative. 1682 */ 1683 metasize = xdp.data - xdp.data_meta; 1684 } 1685 bpf_net_ctx_clear(bpf_net_ctx); 1686 rcu_read_unlock(); 1687 local_bh_enable(); 1688 1689 return __tun_build_skb(tfile, alloc_frag, buf, buflen, len, pad, 1690 metasize); 1691 1692 out: 1693 bpf_net_ctx_clear(bpf_net_ctx); 1694 rcu_read_unlock(); 1695 local_bh_enable(); 1696 return NULL; 1697 } 1698 1699 /* Get packet from user space buffer */ 1700 static ssize_t tun_get_user(struct tun_struct *tun, struct tun_file *tfile, 1701 void *msg_control, struct iov_iter *from, 1702 int noblock, bool more) 1703 { 1704 struct tun_pi pi = { 0, cpu_to_be16(ETH_P_IP) }; 1705 struct sk_buff *skb; 1706 size_t total_len = iov_iter_count(from); 1707 size_t len = total_len, align = tun->align, linear; 1708 struct virtio_net_hdr_v1_hash_tunnel hdr; 1709 struct virtio_net_hdr *gso; 1710 int good_linear; 1711 int copylen; 1712 int hdr_len = 0; 1713 bool zerocopy = false; 1714 int err; 1715 u32 rxhash = 0; 1716 int skb_xdp = 1; 1717 bool frags = tun_napi_frags_enabled(tfile); 1718 enum skb_drop_reason drop_reason = SKB_DROP_REASON_NOT_SPECIFIED; 1719 netdev_features_t features = 0; 1720 1721 /* 1722 * Keep it easy and always zero the whole buffer, even if the 1723 * tunnel-related field will be touched only when the feature 1724 * is enabled and the hdr size id compatible. 1725 */ 1726 memset(&hdr, 0, sizeof(hdr)); 1727 gso = (struct virtio_net_hdr *)&hdr; 1728 1729 if (!(tun->flags & IFF_NO_PI)) { 1730 if (len < sizeof(pi)) 1731 return -EINVAL; 1732 len -= sizeof(pi); 1733 1734 if (!copy_from_iter_full(&pi, sizeof(pi), from)) 1735 return -EFAULT; 1736 } 1737 1738 if (tun->flags & IFF_VNET_HDR) { 1739 int vnet_hdr_sz = READ_ONCE(tun->vnet_hdr_sz); 1740 1741 features = tun_vnet_hdr_guest_features(vnet_hdr_sz); 1742 hdr_len = __tun_vnet_hdr_get(vnet_hdr_sz, tun->flags, 1743 features, from, gso); 1744 if (hdr_len < 0) 1745 return hdr_len; 1746 1747 len -= vnet_hdr_sz; 1748 } 1749 1750 if ((tun->flags & TUN_TYPE_MASK) == IFF_TAP) { 1751 align += NET_IP_ALIGN; 1752 if (unlikely(len < ETH_HLEN || (hdr_len && hdr_len < ETH_HLEN))) 1753 return -EINVAL; 1754 } 1755 1756 good_linear = SKB_MAX_HEAD(align); 1757 1758 if (msg_control) { 1759 struct iov_iter i = *from; 1760 1761 /* There are 256 bytes to be copied in skb, so there is 1762 * enough room for skb expand head in case it is used. 1763 * The rest of the buffer is mapped from userspace. 1764 */ 1765 copylen = min(hdr_len ? hdr_len : GOODCOPY_LEN, good_linear); 1766 linear = copylen; 1767 iov_iter_advance(&i, copylen); 1768 if (iov_iter_npages(&i, INT_MAX) <= MAX_SKB_FRAGS) 1769 zerocopy = true; 1770 } 1771 1772 if (!frags && tun_can_build_skb(tun, tfile, len, noblock, zerocopy)) { 1773 /* For the packet that is not easy to be processed 1774 * (e.g gso or jumbo packet), we will do it at after 1775 * skb was created with generic XDP routine. 1776 */ 1777 skb = tun_build_skb(tun, tfile, from, gso, len, &skb_xdp); 1778 err = PTR_ERR_OR_ZERO(skb); 1779 if (err) 1780 goto drop; 1781 if (!skb) 1782 return total_len; 1783 } else { 1784 if (!zerocopy) { 1785 copylen = len; 1786 linear = min(hdr_len, good_linear); 1787 } 1788 1789 if (frags) { 1790 mutex_lock(&tfile->napi_mutex); 1791 skb = tun_napi_alloc_frags(tfile, copylen, from); 1792 /* tun_napi_alloc_frags() enforces a layout for the skb. 1793 * If zerocopy is enabled, then this layout will be 1794 * overwritten by zerocopy_sg_from_iter(). 1795 */ 1796 zerocopy = false; 1797 } else { 1798 if (!linear) 1799 linear = min_t(size_t, good_linear, copylen); 1800 1801 skb = tun_alloc_skb(tfile, align, copylen, linear, 1802 noblock); 1803 } 1804 1805 err = PTR_ERR_OR_ZERO(skb); 1806 if (err) 1807 goto drop; 1808 1809 if (zerocopy) 1810 err = zerocopy_sg_from_iter(skb, from); 1811 else 1812 err = skb_copy_datagram_from_iter(skb, 0, from, len); 1813 1814 if (err) { 1815 err = -EFAULT; 1816 drop_reason = SKB_DROP_REASON_SKB_UCOPY_FAULT; 1817 goto drop; 1818 } 1819 } 1820 1821 if (tun_vnet_hdr_tnl_to_skb(tun->flags, features, skb, &hdr)) { 1822 atomic_long_inc(&tun->rx_frame_errors); 1823 err = -EINVAL; 1824 goto free_skb; 1825 } 1826 1827 switch (tun->flags & TUN_TYPE_MASK) { 1828 case IFF_TUN: 1829 if (tun->flags & IFF_NO_PI) { 1830 u8 ip_version; 1831 1832 if (!pskb_may_pull(skb, 1)) { 1833 err = -EINVAL; 1834 goto drop; 1835 } 1836 ip_version = skb->data[0] >> 4; 1837 1838 switch (ip_version) { 1839 case 4: 1840 pi.proto = htons(ETH_P_IP); 1841 break; 1842 case 6: 1843 pi.proto = htons(ETH_P_IPV6); 1844 break; 1845 default: 1846 err = -EINVAL; 1847 goto drop; 1848 } 1849 } 1850 1851 skb_reset_mac_header(skb); 1852 skb->protocol = pi.proto; 1853 skb->dev = tun->dev; 1854 break; 1855 case IFF_TAP: 1856 if (!pskb_may_pull(skb, ETH_HLEN)) { 1857 err = -ENOMEM; 1858 drop_reason = SKB_DROP_REASON_HDR_TRUNC; 1859 goto drop; 1860 } 1861 skb->protocol = eth_type_trans(skb, tun->dev); 1862 break; 1863 } 1864 1865 /* copy skb_ubuf_info for callback when skb has no error */ 1866 if (zerocopy) { 1867 skb_zcopy_init(skb, msg_control); 1868 } else if (msg_control) { 1869 struct ubuf_info *uarg = msg_control; 1870 uarg->ops->complete(NULL, uarg, false); 1871 } 1872 1873 skb_reset_network_header(skb); 1874 skb_probe_transport_header(skb); 1875 skb_record_rx_queue(skb, tfile->queue_index); 1876 1877 if (skb_xdp) { 1878 struct bpf_prog *xdp_prog; 1879 int ret; 1880 1881 local_bh_disable(); 1882 rcu_read_lock(); 1883 xdp_prog = rcu_dereference(tun->xdp_prog); 1884 if (xdp_prog) { 1885 ret = do_xdp_generic(xdp_prog, &skb); 1886 if (ret != XDP_PASS) { 1887 rcu_read_unlock(); 1888 local_bh_enable(); 1889 goto unlock_frags; 1890 } 1891 1892 if (frags && skb != tfile->napi.skb) 1893 tfile->napi.skb = skb; 1894 } 1895 rcu_read_unlock(); 1896 local_bh_enable(); 1897 } 1898 1899 /* Compute the costly rx hash only if needed for flow updates. 1900 * We may get a very small possibility of OOO during switching, not 1901 * worth to optimize. 1902 */ 1903 if (!rcu_access_pointer(tun->steering_prog) && tun->numqueues > 1 && 1904 !tfile->detached) 1905 rxhash = __skb_get_hash_symmetric(skb); 1906 1907 rcu_read_lock(); 1908 if (unlikely(!(tun->dev->flags & IFF_UP))) { 1909 err = -EIO; 1910 rcu_read_unlock(); 1911 drop_reason = SKB_DROP_REASON_DEV_READY; 1912 goto drop; 1913 } 1914 1915 if (frags) { 1916 u32 headlen; 1917 1918 /* Exercise flow dissector code path. */ 1919 skb_push(skb, ETH_HLEN); 1920 headlen = eth_get_headlen(tun->dev, skb->data, 1921 skb_headlen(skb)); 1922 1923 if (unlikely(headlen > skb_headlen(skb))) { 1924 WARN_ON_ONCE(1); 1925 err = -ENOMEM; 1926 dev_core_stats_rx_dropped_inc(tun->dev); 1927 napi_busy: 1928 napi_free_frags(&tfile->napi); 1929 rcu_read_unlock(); 1930 mutex_unlock(&tfile->napi_mutex); 1931 return err; 1932 } 1933 1934 if (likely(napi_schedule_prep(&tfile->napi))) { 1935 local_bh_disable(); 1936 napi_gro_frags(&tfile->napi); 1937 napi_complete(&tfile->napi); 1938 local_bh_enable(); 1939 } else { 1940 err = -EBUSY; 1941 goto napi_busy; 1942 } 1943 mutex_unlock(&tfile->napi_mutex); 1944 } else if (tfile->napi_enabled) { 1945 struct sk_buff_head *queue = &tfile->sk.sk_write_queue; 1946 int queue_len; 1947 1948 spin_lock_bh(&queue->lock); 1949 1950 if (unlikely(tfile->detached)) { 1951 spin_unlock_bh(&queue->lock); 1952 rcu_read_unlock(); 1953 err = -EBUSY; 1954 goto free_skb; 1955 } 1956 1957 __skb_queue_tail(queue, skb); 1958 queue_len = skb_queue_len(queue); 1959 spin_unlock(&queue->lock); 1960 1961 if (!more || queue_len > NAPI_POLL_WEIGHT) 1962 napi_schedule(&tfile->napi); 1963 1964 local_bh_enable(); 1965 } else if (!IS_ENABLED(CONFIG_4KSTACKS)) { 1966 tun_rx_batched(tun, tfile, skb, more); 1967 } else { 1968 netif_rx(skb); 1969 } 1970 rcu_read_unlock(); 1971 1972 preempt_disable(); 1973 dev_sw_netstats_rx_add(tun->dev, len); 1974 preempt_enable(); 1975 1976 if (rxhash) 1977 tun_flow_update(tun, rxhash, tfile); 1978 1979 return total_len; 1980 1981 drop: 1982 if (err != -EAGAIN) 1983 dev_core_stats_rx_dropped_inc(tun->dev); 1984 1985 free_skb: 1986 if (!IS_ERR_OR_NULL(skb)) 1987 kfree_skb_reason(skb, drop_reason); 1988 1989 unlock_frags: 1990 if (frags) { 1991 tfile->napi.skb = NULL; 1992 mutex_unlock(&tfile->napi_mutex); 1993 } 1994 1995 return err ?: total_len; 1996 } 1997 1998 static ssize_t tun_chr_write_iter(struct kiocb *iocb, struct iov_iter *from) 1999 { 2000 struct file *file = iocb->ki_filp; 2001 struct tun_file *tfile = file->private_data; 2002 struct tun_struct *tun = tun_get(tfile); 2003 ssize_t result; 2004 int noblock = 0; 2005 2006 if (!tun) 2007 return -EBADFD; 2008 2009 if ((file->f_flags & O_NONBLOCK) || (iocb->ki_flags & IOCB_NOWAIT)) 2010 noblock = 1; 2011 2012 result = tun_get_user(tun, tfile, NULL, from, noblock, false); 2013 2014 tun_put(tun); 2015 return result; 2016 } 2017 2018 static ssize_t tun_put_user_xdp(struct tun_struct *tun, 2019 struct tun_file *tfile, 2020 struct xdp_frame *xdp_frame, 2021 struct iov_iter *iter) 2022 { 2023 int vnet_hdr_sz = 0; 2024 size_t size = xdp_frame->len; 2025 ssize_t ret; 2026 2027 if (tun->flags & IFF_VNET_HDR) { 2028 struct virtio_net_hdr gso = { 0 }; 2029 2030 vnet_hdr_sz = READ_ONCE(tun->vnet_hdr_sz); 2031 ret = tun_vnet_hdr_put(vnet_hdr_sz, iter, &gso); 2032 if (ret) 2033 return ret; 2034 } 2035 2036 ret = copy_to_iter(xdp_frame->data, size, iter) + vnet_hdr_sz; 2037 2038 preempt_disable(); 2039 dev_sw_netstats_tx_add(tun->dev, 1, ret); 2040 preempt_enable(); 2041 2042 return ret; 2043 } 2044 2045 /* Put packet to the user space buffer */ 2046 static ssize_t tun_put_user(struct tun_struct *tun, 2047 struct tun_file *tfile, 2048 struct sk_buff *skb, 2049 struct iov_iter *iter) 2050 { 2051 struct tun_pi pi = { 0, skb->protocol }; 2052 ssize_t total; 2053 int vlan_offset = 0; 2054 int vlan_hlen = 0; 2055 int vnet_hdr_sz = 0; 2056 int ret; 2057 2058 if (skb_vlan_tag_present(skb)) 2059 vlan_hlen = VLAN_HLEN; 2060 2061 if (tun->flags & IFF_VNET_HDR) 2062 vnet_hdr_sz = READ_ONCE(tun->vnet_hdr_sz); 2063 2064 total = skb->len + vlan_hlen + vnet_hdr_sz; 2065 2066 if (!(tun->flags & IFF_NO_PI)) { 2067 if (iov_iter_count(iter) < sizeof(pi)) 2068 return -EINVAL; 2069 2070 total += sizeof(pi); 2071 if (iov_iter_count(iter) < total) { 2072 /* Packet will be striped */ 2073 pi.flags |= TUN_PKT_STRIP; 2074 } 2075 2076 if (copy_to_iter(&pi, sizeof(pi), iter) != sizeof(pi)) 2077 return -EFAULT; 2078 } 2079 2080 if (vnet_hdr_sz) { 2081 struct virtio_net_hdr_v1_hash_tunnel hdr; 2082 struct virtio_net_hdr *gso; 2083 2084 memset(&hdr, 0, sizeof(hdr)); 2085 ret = tun_vnet_hdr_tnl_from_skb(tun->flags, tun->dev, skb, 2086 &hdr); 2087 if (ret) 2088 return ret; 2089 2090 /* 2091 * Drop the packet if the configured header size is too small 2092 * WRT the enabled offloads. 2093 */ 2094 gso = (struct virtio_net_hdr *)&hdr; 2095 ret = __tun_vnet_hdr_put(vnet_hdr_sz, tun->dev->features, 2096 iter, gso); 2097 if (ret) 2098 return ret; 2099 } 2100 2101 if (vlan_hlen) { 2102 int ret; 2103 struct veth veth; 2104 2105 veth.h_vlan_proto = skb->vlan_proto; 2106 veth.h_vlan_TCI = htons(skb_vlan_tag_get(skb)); 2107 2108 vlan_offset = offsetof(struct vlan_ethhdr, h_vlan_proto); 2109 2110 ret = skb_copy_datagram_iter(skb, 0, iter, vlan_offset); 2111 if (ret || !iov_iter_count(iter)) 2112 goto done; 2113 2114 ret = copy_to_iter(&veth, sizeof(veth), iter); 2115 if (ret != sizeof(veth) || !iov_iter_count(iter)) 2116 goto done; 2117 } 2118 2119 skb_copy_datagram_iter(skb, vlan_offset, iter, skb->len - vlan_offset); 2120 2121 done: 2122 /* caller is in process context, */ 2123 preempt_disable(); 2124 dev_sw_netstats_tx_add(tun->dev, 1, skb->len + vlan_hlen); 2125 preempt_enable(); 2126 2127 return total; 2128 } 2129 2130 static void *tun_ring_recv(struct tun_file *tfile, int noblock, int *err) 2131 { 2132 DECLARE_WAITQUEUE(wait, current); 2133 void *ptr = NULL; 2134 int error = 0; 2135 2136 ptr = ptr_ring_consume(&tfile->tx_ring); 2137 if (ptr) 2138 goto out; 2139 if (noblock) { 2140 error = -EAGAIN; 2141 goto out; 2142 } 2143 2144 add_wait_queue(&tfile->socket.wq.wait, &wait); 2145 2146 while (1) { 2147 set_current_state(TASK_INTERRUPTIBLE); 2148 ptr = ptr_ring_consume(&tfile->tx_ring); 2149 if (ptr) 2150 break; 2151 if (signal_pending(current)) { 2152 error = -ERESTARTSYS; 2153 break; 2154 } 2155 if (tfile->socket.sk->sk_shutdown & RCV_SHUTDOWN) { 2156 error = -EFAULT; 2157 break; 2158 } 2159 2160 schedule(); 2161 } 2162 2163 __set_current_state(TASK_RUNNING); 2164 remove_wait_queue(&tfile->socket.wq.wait, &wait); 2165 2166 out: 2167 *err = error; 2168 return ptr; 2169 } 2170 2171 static ssize_t tun_do_read(struct tun_struct *tun, struct tun_file *tfile, 2172 struct iov_iter *to, 2173 int noblock, void *ptr) 2174 { 2175 ssize_t ret; 2176 int err; 2177 2178 if (!iov_iter_count(to)) { 2179 tun_ptr_free(ptr); 2180 return 0; 2181 } 2182 2183 if (!ptr) { 2184 /* Read frames from ring */ 2185 ptr = tun_ring_recv(tfile, noblock, &err); 2186 if (!ptr) 2187 return err; 2188 } 2189 2190 if (tun_is_xdp_frame(ptr)) { 2191 struct xdp_frame *xdpf = tun_ptr_to_xdp(ptr); 2192 2193 ret = tun_put_user_xdp(tun, tfile, xdpf, to); 2194 xdp_return_frame(xdpf); 2195 } else { 2196 struct sk_buff *skb = ptr; 2197 2198 ret = tun_put_user(tun, tfile, skb, to); 2199 if (unlikely(ret < 0)) 2200 kfree_skb(skb); 2201 else 2202 consume_skb(skb); 2203 } 2204 2205 return ret; 2206 } 2207 2208 static ssize_t tun_chr_read_iter(struct kiocb *iocb, struct iov_iter *to) 2209 { 2210 struct file *file = iocb->ki_filp; 2211 struct tun_file *tfile = file->private_data; 2212 struct tun_struct *tun = tun_get(tfile); 2213 ssize_t len = iov_iter_count(to), ret; 2214 int noblock = 0; 2215 2216 if (!tun) 2217 return -EBADFD; 2218 2219 if ((file->f_flags & O_NONBLOCK) || (iocb->ki_flags & IOCB_NOWAIT)) 2220 noblock = 1; 2221 2222 ret = tun_do_read(tun, tfile, to, noblock, NULL); 2223 ret = min_t(ssize_t, ret, len); 2224 if (ret > 0) 2225 iocb->ki_pos = ret; 2226 tun_put(tun); 2227 return ret; 2228 } 2229 2230 static void tun_prog_free(struct rcu_head *rcu) 2231 { 2232 struct tun_prog *prog = container_of(rcu, struct tun_prog, rcu); 2233 2234 bpf_prog_destroy(prog->prog); 2235 kfree(prog); 2236 } 2237 2238 static int __tun_set_ebpf(struct tun_struct *tun, 2239 struct tun_prog __rcu **prog_p, 2240 struct bpf_prog *prog) 2241 { 2242 struct tun_prog *old, *new = NULL; 2243 2244 if (prog) { 2245 new = kmalloc_obj(*new); 2246 if (!new) 2247 return -ENOMEM; 2248 new->prog = prog; 2249 } 2250 2251 spin_lock_bh(&tun->lock); 2252 old = rcu_dereference_protected(*prog_p, 2253 lockdep_is_held(&tun->lock)); 2254 rcu_assign_pointer(*prog_p, new); 2255 spin_unlock_bh(&tun->lock); 2256 2257 if (old) 2258 call_rcu(&old->rcu, tun_prog_free); 2259 2260 return 0; 2261 } 2262 2263 static void tun_free_netdev(struct net_device *dev) 2264 { 2265 struct tun_struct *tun = netdev_priv(dev); 2266 2267 BUG_ON(!(list_empty(&tun->disabled))); 2268 2269 tun_flow_uninit(tun); 2270 security_tun_dev_free_security(tun->security); 2271 __tun_set_ebpf(tun, &tun->steering_prog, NULL); 2272 __tun_set_ebpf(tun, &tun->filter_prog, NULL); 2273 } 2274 2275 static void tun_setup(struct net_device *dev) 2276 { 2277 struct tun_struct *tun = netdev_priv(dev); 2278 2279 tun->owner = INVALID_UID; 2280 tun->group = INVALID_GID; 2281 tun_default_link_ksettings(dev, &tun->link_ksettings); 2282 2283 dev->ethtool_ops = &tun_ethtool_ops; 2284 dev->needs_free_netdev = true; 2285 dev->priv_destructor = tun_free_netdev; 2286 /* We prefer our own queue length */ 2287 dev->tx_queue_len = TUN_READQ_SIZE; 2288 } 2289 2290 /* Trivial set of netlink ops to allow deleting tun or tap 2291 * device with netlink. 2292 */ 2293 static int tun_validate(struct nlattr *tb[], struct nlattr *data[], 2294 struct netlink_ext_ack *extack) 2295 { 2296 NL_SET_ERR_MSG(extack, 2297 "tun/tap creation via rtnetlink is not supported."); 2298 return -EOPNOTSUPP; 2299 } 2300 2301 static size_t tun_get_size(const struct net_device *dev) 2302 { 2303 BUILD_BUG_ON(sizeof(u32) != sizeof(uid_t)); 2304 BUILD_BUG_ON(sizeof(u32) != sizeof(gid_t)); 2305 2306 return nla_total_size(sizeof(uid_t)) + /* OWNER */ 2307 nla_total_size(sizeof(gid_t)) + /* GROUP */ 2308 nla_total_size(sizeof(u8)) + /* TYPE */ 2309 nla_total_size(sizeof(u8)) + /* PI */ 2310 nla_total_size(sizeof(u8)) + /* VNET_HDR */ 2311 nla_total_size(sizeof(u8)) + /* PERSIST */ 2312 nla_total_size(sizeof(u8)) + /* MULTI_QUEUE */ 2313 nla_total_size(sizeof(u32)) + /* NUM_QUEUES */ 2314 nla_total_size(sizeof(u32)) + /* NUM_DISABLED_QUEUES */ 2315 0; 2316 } 2317 2318 static int tun_fill_info(struct sk_buff *skb, const struct net_device *dev) 2319 { 2320 struct tun_struct *tun = netdev_priv(dev); 2321 2322 if (nla_put_u8(skb, IFLA_TUN_TYPE, tun->flags & TUN_TYPE_MASK)) 2323 goto nla_put_failure; 2324 if (uid_valid(tun->owner) && 2325 nla_put_u32(skb, IFLA_TUN_OWNER, 2326 from_kuid_munged(current_user_ns(), tun->owner))) 2327 goto nla_put_failure; 2328 if (gid_valid(tun->group) && 2329 nla_put_u32(skb, IFLA_TUN_GROUP, 2330 from_kgid_munged(current_user_ns(), tun->group))) 2331 goto nla_put_failure; 2332 if (nla_put_u8(skb, IFLA_TUN_PI, !(tun->flags & IFF_NO_PI))) 2333 goto nla_put_failure; 2334 if (nla_put_u8(skb, IFLA_TUN_VNET_HDR, !!(tun->flags & IFF_VNET_HDR))) 2335 goto nla_put_failure; 2336 if (nla_put_u8(skb, IFLA_TUN_PERSIST, !!(tun->flags & IFF_PERSIST))) 2337 goto nla_put_failure; 2338 if (nla_put_u8(skb, IFLA_TUN_MULTI_QUEUE, 2339 !!(tun->flags & IFF_MULTI_QUEUE))) 2340 goto nla_put_failure; 2341 if (tun->flags & IFF_MULTI_QUEUE) { 2342 if (nla_put_u32(skb, IFLA_TUN_NUM_QUEUES, tun->numqueues)) 2343 goto nla_put_failure; 2344 if (nla_put_u32(skb, IFLA_TUN_NUM_DISABLED_QUEUES, 2345 tun->numdisabled)) 2346 goto nla_put_failure; 2347 } 2348 2349 return 0; 2350 2351 nla_put_failure: 2352 return -EMSGSIZE; 2353 } 2354 2355 static struct rtnl_link_ops tun_link_ops __read_mostly = { 2356 .kind = DRV_NAME, 2357 .priv_size = sizeof(struct tun_struct), 2358 .setup = tun_setup, 2359 .validate = tun_validate, 2360 .get_size = tun_get_size, 2361 .fill_info = tun_fill_info, 2362 }; 2363 2364 static void tun_sock_write_space(struct sock *sk) 2365 { 2366 struct tun_file *tfile; 2367 wait_queue_head_t *wqueue; 2368 2369 if (!sock_writeable(sk)) 2370 return; 2371 2372 if (!test_and_clear_bit(SOCKWQ_ASYNC_NOSPACE, &sk->sk_socket->flags)) 2373 return; 2374 2375 wqueue = sk_sleep(sk); 2376 if (wqueue && waitqueue_active(wqueue)) 2377 wake_up_interruptible_sync_poll(wqueue, EPOLLOUT | 2378 EPOLLWRNORM | EPOLLWRBAND); 2379 2380 tfile = container_of(sk, struct tun_file, sk); 2381 kill_fasync(&tfile->fasync, SIGIO, POLL_OUT); 2382 } 2383 2384 static void tun_put_page(struct tun_page *tpage) 2385 { 2386 if (tpage->page) 2387 __page_frag_cache_drain(tpage->page, tpage->count); 2388 } 2389 2390 static int tun_xdp_one(struct tun_struct *tun, 2391 struct tun_file *tfile, 2392 struct xdp_buff *xdp, int *flush, 2393 struct tun_page *tpage) 2394 { 2395 unsigned int datasize = xdp->data_end - xdp->data; 2396 struct virtio_net_hdr *gso = xdp->data_hard_start; 2397 struct virtio_net_hdr_v1_hash_tunnel *tnl_hdr; 2398 struct bpf_prog *xdp_prog; 2399 struct sk_buff *skb = NULL; 2400 struct sk_buff_head *queue; 2401 netdev_features_t features; 2402 u32 rxhash = 0, act; 2403 int buflen = xdp->frame_sz; 2404 int metasize = 0; 2405 int ret = 0; 2406 bool skb_xdp = false; 2407 struct page *page; 2408 2409 if (unlikely(datasize < ETH_HLEN)) { 2410 put_page(virt_to_head_page(xdp->data)); 2411 return -EINVAL; 2412 } 2413 2414 xdp_prog = rcu_dereference(tun->xdp_prog); 2415 if (xdp_prog) { 2416 if (gso->gso_type) { 2417 skb_xdp = true; 2418 goto build; 2419 } 2420 2421 xdp_init_buff(xdp, buflen, &tfile->xdp_rxq); 2422 2423 act = bpf_prog_run_xdp(xdp_prog, xdp); 2424 ret = tun_xdp_act(tun, xdp_prog, xdp, act); 2425 if (ret < 0) { 2426 put_page(virt_to_head_page(xdp->data)); 2427 return ret; 2428 } 2429 2430 switch (ret) { 2431 case XDP_REDIRECT: 2432 *flush = true; 2433 fallthrough; 2434 case XDP_TX: 2435 return 0; 2436 case XDP_PASS: 2437 break; 2438 default: 2439 page = virt_to_head_page(xdp->data); 2440 if (tpage->page == page) { 2441 ++tpage->count; 2442 } else { 2443 tun_put_page(tpage); 2444 tpage->page = page; 2445 tpage->count = 1; 2446 } 2447 return 0; 2448 } 2449 } 2450 2451 build: 2452 skb = build_skb(xdp->data_hard_start, buflen); 2453 if (!skb) { 2454 put_page(virt_to_head_page(xdp->data)); 2455 ret = -ENOMEM; 2456 goto out; 2457 } 2458 2459 skb_reserve(skb, xdp->data - xdp->data_hard_start); 2460 skb_put(skb, xdp->data_end - xdp->data); 2461 2462 /* The externally provided xdp_buff may have no metadata support, which 2463 * is marked by xdp->data_meta being xdp->data + 1. This will lead to a 2464 * metasize of -1 and is the reason why the condition checks for > 0. 2465 */ 2466 metasize = xdp->data - xdp->data_meta; 2467 if (metasize > 0) 2468 skb_metadata_set(skb, metasize); 2469 2470 features = tun_vnet_hdr_guest_features(READ_ONCE(tun->vnet_hdr_sz)); 2471 tnl_hdr = (struct virtio_net_hdr_v1_hash_tunnel *)gso; 2472 if (tun_vnet_hdr_tnl_to_skb(tun->flags, features, skb, tnl_hdr)) { 2473 atomic_long_inc(&tun->rx_frame_errors); 2474 kfree_skb(skb); 2475 ret = -EINVAL; 2476 goto out; 2477 } 2478 2479 skb->protocol = eth_type_trans(skb, tun->dev); 2480 skb_reset_network_header(skb); 2481 skb_probe_transport_header(skb); 2482 skb_record_rx_queue(skb, tfile->queue_index); 2483 2484 if (skb_xdp) { 2485 ret = do_xdp_generic(xdp_prog, &skb); 2486 if (ret != XDP_PASS) { 2487 ret = 0; 2488 goto out; 2489 } 2490 } 2491 2492 if (!rcu_dereference(tun->steering_prog) && tun->numqueues > 1 && 2493 !tfile->detached) 2494 rxhash = __skb_get_hash_symmetric(skb); 2495 2496 if (tfile->napi_enabled) { 2497 queue = &tfile->sk.sk_write_queue; 2498 spin_lock(&queue->lock); 2499 2500 if (unlikely(tfile->detached)) { 2501 spin_unlock(&queue->lock); 2502 kfree_skb(skb); 2503 return -EBUSY; 2504 } 2505 2506 __skb_queue_tail(queue, skb); 2507 spin_unlock(&queue->lock); 2508 ret = 1; 2509 } else { 2510 netif_receive_skb(skb); 2511 ret = 0; 2512 } 2513 2514 /* No need to disable preemption here since this function is 2515 * always called with bh disabled 2516 */ 2517 dev_sw_netstats_rx_add(tun->dev, datasize); 2518 2519 if (rxhash) 2520 tun_flow_update(tun, rxhash, tfile); 2521 2522 out: 2523 return ret; 2524 } 2525 2526 static int tun_sendmsg(struct socket *sock, struct msghdr *m, size_t total_len) 2527 { 2528 int ret, i; 2529 struct tun_file *tfile = container_of(sock, struct tun_file, socket); 2530 struct tun_struct *tun = tun_get(tfile); 2531 struct tun_msg_ctl *ctl = m->msg_control; 2532 struct xdp_buff *xdp; 2533 2534 if (!tun) 2535 return -EBADFD; 2536 2537 if (m->msg_controllen == sizeof(struct tun_msg_ctl) && 2538 ctl && ctl->type == TUN_MSG_PTR) { 2539 struct bpf_net_context __bpf_net_ctx, *bpf_net_ctx; 2540 struct tun_page tpage; 2541 int n = ctl->num; 2542 int flush = 0, queued = 0; 2543 2544 memset(&tpage, 0, sizeof(tpage)); 2545 2546 local_bh_disable(); 2547 rcu_read_lock(); 2548 bpf_net_ctx = bpf_net_ctx_set(&__bpf_net_ctx); 2549 2550 for (i = 0; i < n; i++) { 2551 xdp = &((struct xdp_buff *)ctl->ptr)[i]; 2552 ret = tun_xdp_one(tun, tfile, xdp, &flush, &tpage); 2553 if (ret > 0) 2554 queued += ret; 2555 } 2556 2557 if (flush) 2558 xdp_do_flush(); 2559 2560 if (tfile->napi_enabled && queued > 0) 2561 napi_schedule(&tfile->napi); 2562 2563 bpf_net_ctx_clear(bpf_net_ctx); 2564 rcu_read_unlock(); 2565 local_bh_enable(); 2566 2567 tun_put_page(&tpage); 2568 2569 ret = total_len; 2570 goto out; 2571 } 2572 2573 ret = tun_get_user(tun, tfile, ctl ? ctl->ptr : NULL, &m->msg_iter, 2574 m->msg_flags & MSG_DONTWAIT, 2575 m->msg_flags & MSG_MORE); 2576 out: 2577 tun_put(tun); 2578 return ret; 2579 } 2580 2581 static int tun_recvmsg(struct socket *sock, struct msghdr *m, size_t total_len, 2582 int flags) 2583 { 2584 struct tun_file *tfile = container_of(sock, struct tun_file, socket); 2585 struct tun_struct *tun = tun_get(tfile); 2586 void *ptr = m->msg_control; 2587 int ret; 2588 2589 if (!tun) { 2590 ret = -EBADFD; 2591 goto out_free; 2592 } 2593 2594 if (flags & ~(MSG_DONTWAIT|MSG_TRUNC|MSG_ERRQUEUE)) { 2595 ret = -EINVAL; 2596 goto out_put_tun; 2597 } 2598 if (flags & MSG_ERRQUEUE) { 2599 ret = sock_recv_errqueue(sock->sk, m, total_len, 2600 SOL_PACKET, TUN_TX_TIMESTAMP); 2601 goto out; 2602 } 2603 ret = tun_do_read(tun, tfile, &m->msg_iter, flags & MSG_DONTWAIT, ptr); 2604 if (ret > (ssize_t)total_len) { 2605 m->msg_flags |= MSG_TRUNC; 2606 ret = flags & MSG_TRUNC ? ret : total_len; 2607 } 2608 out: 2609 tun_put(tun); 2610 return ret; 2611 2612 out_put_tun: 2613 tun_put(tun); 2614 out_free: 2615 tun_ptr_free(ptr); 2616 return ret; 2617 } 2618 2619 static int tun_ptr_peek_len(void *ptr) 2620 { 2621 if (likely(ptr)) { 2622 if (tun_is_xdp_frame(ptr)) { 2623 struct xdp_frame *xdpf = tun_ptr_to_xdp(ptr); 2624 2625 return xdpf->len; 2626 } 2627 return __skb_array_len_with_tag(ptr); 2628 } else { 2629 return 0; 2630 } 2631 } 2632 2633 static int tun_peek_len(struct socket *sock) 2634 { 2635 struct tun_file *tfile = container_of(sock, struct tun_file, socket); 2636 struct tun_struct *tun; 2637 int ret = 0; 2638 2639 tun = tun_get(tfile); 2640 if (!tun) 2641 return 0; 2642 2643 ret = PTR_RING_PEEK_CALL(&tfile->tx_ring, tun_ptr_peek_len); 2644 tun_put(tun); 2645 2646 return ret; 2647 } 2648 2649 /* Ops structure to mimic raw sockets with tun */ 2650 static const struct proto_ops tun_socket_ops = { 2651 .peek_len = tun_peek_len, 2652 .sendmsg = tun_sendmsg, 2653 .recvmsg = tun_recvmsg, 2654 }; 2655 2656 static struct proto tun_proto = { 2657 .name = "tun", 2658 .owner = THIS_MODULE, 2659 .obj_size = sizeof(struct tun_file), 2660 }; 2661 2662 static int tun_flags(struct tun_struct *tun) 2663 { 2664 return tun->flags & (TUN_FEATURES | IFF_PERSIST | IFF_TUN | IFF_TAP); 2665 } 2666 2667 static ssize_t tun_flags_show(struct device *dev, struct device_attribute *attr, 2668 char *buf) 2669 { 2670 struct tun_struct *tun = netdev_priv(to_net_dev(dev)); 2671 return sysfs_emit(buf, "0x%x\n", tun_flags(tun)); 2672 } 2673 2674 static ssize_t owner_show(struct device *dev, struct device_attribute *attr, 2675 char *buf) 2676 { 2677 struct tun_struct *tun = netdev_priv(to_net_dev(dev)); 2678 return uid_valid(tun->owner)? 2679 sysfs_emit(buf, "%u\n", 2680 from_kuid_munged(current_user_ns(), tun->owner)) : 2681 sysfs_emit(buf, "-1\n"); 2682 } 2683 2684 static ssize_t group_show(struct device *dev, struct device_attribute *attr, 2685 char *buf) 2686 { 2687 struct tun_struct *tun = netdev_priv(to_net_dev(dev)); 2688 return gid_valid(tun->group) ? 2689 sysfs_emit(buf, "%u\n", 2690 from_kgid_munged(current_user_ns(), tun->group)) : 2691 sysfs_emit(buf, "-1\n"); 2692 } 2693 2694 static DEVICE_ATTR_RO(tun_flags); 2695 static DEVICE_ATTR_RO(owner); 2696 static DEVICE_ATTR_RO(group); 2697 2698 static struct attribute *tun_dev_attrs[] = { 2699 &dev_attr_tun_flags.attr, 2700 &dev_attr_owner.attr, 2701 &dev_attr_group.attr, 2702 NULL 2703 }; 2704 2705 static const struct attribute_group tun_attr_group = { 2706 .attrs = tun_dev_attrs 2707 }; 2708 2709 static int tun_set_iff(struct net *net, struct file *file, struct ifreq *ifr) 2710 { 2711 struct tun_struct *tun; 2712 struct tun_file *tfile = file->private_data; 2713 struct net_device *dev; 2714 int err; 2715 2716 if (tfile->detached) 2717 return -EINVAL; 2718 2719 if ((ifr->ifr_flags & IFF_NAPI_FRAGS)) { 2720 if (!capable(CAP_NET_ADMIN)) 2721 return -EPERM; 2722 2723 if (!(ifr->ifr_flags & IFF_NAPI) || 2724 (ifr->ifr_flags & TUN_TYPE_MASK) != IFF_TAP) 2725 return -EINVAL; 2726 } 2727 2728 dev = __dev_get_by_name(net, ifr->ifr_name); 2729 if (dev) { 2730 if (ifr->ifr_flags & IFF_TUN_EXCL) 2731 return -EBUSY; 2732 if ((ifr->ifr_flags & IFF_TUN) && dev->netdev_ops == &tun_netdev_ops) 2733 tun = netdev_priv(dev); 2734 else if ((ifr->ifr_flags & IFF_TAP) && dev->netdev_ops == &tap_netdev_ops) 2735 tun = netdev_priv(dev); 2736 else 2737 return -EINVAL; 2738 2739 if (!!(ifr->ifr_flags & IFF_MULTI_QUEUE) != 2740 !!(tun->flags & IFF_MULTI_QUEUE)) 2741 return -EINVAL; 2742 2743 if (tun_not_capable(tun)) 2744 return -EPERM; 2745 err = security_tun_dev_open(tun->security); 2746 if (err < 0) 2747 return err; 2748 2749 err = tun_attach(tun, file, ifr->ifr_flags & IFF_NOFILTER, 2750 ifr->ifr_flags & IFF_NAPI, 2751 ifr->ifr_flags & IFF_NAPI_FRAGS, true); 2752 if (err < 0) 2753 return err; 2754 2755 if (tun->flags & IFF_MULTI_QUEUE && 2756 (tun->numqueues + tun->numdisabled > 1)) { 2757 /* One or more queue has already been attached, no need 2758 * to initialize the device again. 2759 */ 2760 netdev_state_change(dev); 2761 return 0; 2762 } 2763 2764 tun->flags = (tun->flags & ~TUN_FEATURES) | 2765 (ifr->ifr_flags & TUN_FEATURES); 2766 2767 netdev_state_change(dev); 2768 } else { 2769 char *name; 2770 unsigned long flags = 0; 2771 int queues = ifr->ifr_flags & IFF_MULTI_QUEUE ? 2772 MAX_TAP_QUEUES : 1; 2773 2774 if (!ns_capable(net->user_ns, CAP_NET_ADMIN)) 2775 return -EPERM; 2776 err = security_tun_dev_create(); 2777 if (err < 0) 2778 return err; 2779 2780 /* Set dev type */ 2781 if (ifr->ifr_flags & IFF_TUN) { 2782 /* TUN device */ 2783 flags |= IFF_TUN; 2784 name = "tun%d"; 2785 } else if (ifr->ifr_flags & IFF_TAP) { 2786 /* TAP device */ 2787 flags |= IFF_TAP; 2788 name = "tap%d"; 2789 } else 2790 return -EINVAL; 2791 2792 if (*ifr->ifr_name) 2793 name = ifr->ifr_name; 2794 2795 dev = alloc_netdev_mqs(sizeof(struct tun_struct), name, 2796 NET_NAME_UNKNOWN, tun_setup, queues, 2797 queues); 2798 2799 if (!dev) 2800 return -ENOMEM; 2801 2802 dev_net_set(dev, net); 2803 dev->rtnl_link_ops = &tun_link_ops; 2804 dev->ifindex = tfile->ifindex; 2805 dev->sysfs_groups[0] = &tun_attr_group; 2806 2807 tun = netdev_priv(dev); 2808 tun->dev = dev; 2809 tun->flags = flags; 2810 tun->txflt.count = 0; 2811 tun->vnet_hdr_sz = sizeof(struct virtio_net_hdr); 2812 2813 tun->align = NET_SKB_PAD; 2814 tun->filter_attached = false; 2815 tun->sndbuf = tfile->socket.sk->sk_sndbuf; 2816 tun->rx_batched = 0; 2817 RCU_INIT_POINTER(tun->steering_prog, NULL); 2818 2819 tun->ifr = ifr; 2820 tun->file = file; 2821 2822 tun_net_initialize(dev); 2823 2824 err = register_netdevice(tun->dev); 2825 if (err < 0) { 2826 free_netdev(dev); 2827 return err; 2828 } 2829 /* free_netdev() won't check refcnt, to avoid race 2830 * with dev_put() we need publish tun after registration. 2831 */ 2832 rcu_assign_pointer(tfile->tun, tun); 2833 } 2834 2835 if (ifr->ifr_flags & IFF_NO_CARRIER) 2836 netif_carrier_off(tun->dev); 2837 else 2838 netif_carrier_on(tun->dev); 2839 2840 /* Make sure persistent devices do not get stuck in 2841 * xoff state. 2842 */ 2843 if (netif_running(tun->dev)) 2844 netif_tx_wake_all_queues(tun->dev); 2845 2846 strscpy(ifr->ifr_name, tun->dev->name); 2847 return 0; 2848 } 2849 2850 static void tun_get_iff(struct tun_struct *tun, struct ifreq *ifr) 2851 { 2852 strscpy(ifr->ifr_name, tun->dev->name); 2853 2854 ifr->ifr_flags = tun_flags(tun); 2855 2856 } 2857 2858 #define PLAIN_GSO (NETIF_F_GSO_UDP_L4 | NETIF_F_TSO | NETIF_F_TSO6) 2859 2860 /* This is like a cut-down ethtool ops, except done via tun fd so no 2861 * privs required. */ 2862 static int set_offload(struct tun_struct *tun, unsigned long arg) 2863 { 2864 netdev_features_t features = 0; 2865 2866 if (arg & TUN_F_CSUM) { 2867 features |= NETIF_F_HW_CSUM; 2868 arg &= ~TUN_F_CSUM; 2869 2870 if (arg & (TUN_F_TSO4|TUN_F_TSO6)) { 2871 if (arg & TUN_F_TSO_ECN) { 2872 features |= NETIF_F_TSO_ECN; 2873 arg &= ~TUN_F_TSO_ECN; 2874 } 2875 if (arg & TUN_F_TSO4) 2876 features |= NETIF_F_TSO; 2877 if (arg & TUN_F_TSO6) 2878 features |= NETIF_F_TSO6; 2879 arg &= ~(TUN_F_TSO4|TUN_F_TSO6); 2880 } 2881 2882 arg &= ~TUN_F_UFO; 2883 2884 /* TODO: for now USO4 and USO6 should work simultaneously */ 2885 if (arg & TUN_F_USO4 && arg & TUN_F_USO6) { 2886 features |= NETIF_F_GSO_UDP_L4; 2887 arg &= ~(TUN_F_USO4 | TUN_F_USO6); 2888 } 2889 2890 /* 2891 * Tunnel offload is allowed only if some plain offload is 2892 * available, too. 2893 */ 2894 if (features & PLAIN_GSO && arg & TUN_F_UDP_TUNNEL_GSO) { 2895 features |= NETIF_F_GSO_UDP_TUNNEL; 2896 if (arg & TUN_F_UDP_TUNNEL_GSO_CSUM) 2897 features |= NETIF_F_GSO_UDP_TUNNEL_CSUM; 2898 arg &= ~(TUN_F_UDP_TUNNEL_GSO | 2899 TUN_F_UDP_TUNNEL_GSO_CSUM); 2900 } 2901 } 2902 2903 /* This gives the user a way to test for new features in future by 2904 * trying to set them. */ 2905 if (arg) 2906 return -EINVAL; 2907 2908 tun->set_features = features; 2909 tun->dev->wanted_features &= ~TUN_USER_FEATURES; 2910 tun->dev->wanted_features |= features; 2911 netdev_update_features(tun->dev); 2912 2913 return 0; 2914 } 2915 2916 static void tun_detach_filter(struct tun_struct *tun, int n) 2917 { 2918 int i; 2919 struct tun_file *tfile; 2920 2921 for (i = 0; i < n; i++) { 2922 tfile = rtnl_dereference(tun->tfiles[i]); 2923 lock_sock(tfile->socket.sk); 2924 sk_detach_filter(tfile->socket.sk); 2925 release_sock(tfile->socket.sk); 2926 } 2927 2928 tun->filter_attached = false; 2929 } 2930 2931 static int tun_attach_filter(struct tun_struct *tun) 2932 { 2933 int i, ret = 0; 2934 struct tun_file *tfile; 2935 2936 for (i = 0; i < tun->numqueues; i++) { 2937 tfile = rtnl_dereference(tun->tfiles[i]); 2938 lock_sock(tfile->socket.sk); 2939 ret = sk_attach_filter(&tun->fprog, tfile->socket.sk); 2940 release_sock(tfile->socket.sk); 2941 if (ret) { 2942 tun_detach_filter(tun, i); 2943 return ret; 2944 } 2945 } 2946 2947 tun->filter_attached = true; 2948 return ret; 2949 } 2950 2951 static void tun_set_sndbuf(struct tun_struct *tun) 2952 { 2953 struct tun_file *tfile; 2954 int i; 2955 2956 for (i = 0; i < tun->numqueues; i++) { 2957 tfile = rtnl_dereference(tun->tfiles[i]); 2958 tfile->socket.sk->sk_sndbuf = tun->sndbuf; 2959 } 2960 } 2961 2962 static int tun_set_queue(struct file *file, struct ifreq *ifr) 2963 { 2964 struct tun_file *tfile = file->private_data; 2965 struct tun_struct *tun; 2966 int ret = 0; 2967 2968 rtnl_lock(); 2969 2970 if (ifr->ifr_flags & IFF_ATTACH_QUEUE) { 2971 tun = tfile->detached; 2972 if (!tun) { 2973 ret = -EINVAL; 2974 goto unlock; 2975 } 2976 ret = security_tun_dev_attach_queue(tun->security); 2977 if (ret < 0) 2978 goto unlock; 2979 ret = tun_attach(tun, file, false, tun->flags & IFF_NAPI, 2980 tun->flags & IFF_NAPI_FRAGS, true); 2981 } else if (ifr->ifr_flags & IFF_DETACH_QUEUE) { 2982 tun = rtnl_dereference(tfile->tun); 2983 if (!tun || !(tun->flags & IFF_MULTI_QUEUE) || tfile->detached) 2984 ret = -EINVAL; 2985 else 2986 __tun_detach(tfile, false); 2987 } else 2988 ret = -EINVAL; 2989 2990 if (ret >= 0) 2991 netdev_state_change(tun->dev); 2992 2993 unlock: 2994 rtnl_unlock(); 2995 return ret; 2996 } 2997 2998 static int tun_set_ebpf(struct tun_struct *tun, struct tun_prog __rcu **prog_p, 2999 void __user *data) 3000 { 3001 struct bpf_prog *prog; 3002 int fd; 3003 3004 if (copy_from_user(&fd, data, sizeof(fd))) 3005 return -EFAULT; 3006 3007 if (fd == -1) { 3008 prog = NULL; 3009 } else { 3010 prog = bpf_prog_get_type(fd, BPF_PROG_TYPE_SOCKET_FILTER); 3011 if (IS_ERR(prog)) 3012 return PTR_ERR(prog); 3013 } 3014 3015 return __tun_set_ebpf(tun, prog_p, prog); 3016 } 3017 3018 /* Return correct value for tun->dev->addr_len based on tun->dev->type. */ 3019 static unsigned char tun_get_addr_len(unsigned short type) 3020 { 3021 switch (type) { 3022 case ARPHRD_IP6GRE: 3023 case ARPHRD_TUNNEL6: 3024 return sizeof(struct in6_addr); 3025 case ARPHRD_IPGRE: 3026 case ARPHRD_TUNNEL: 3027 case ARPHRD_SIT: 3028 return 4; 3029 case ARPHRD_ETHER: 3030 return ETH_ALEN; 3031 case ARPHRD_IEEE802154: 3032 case ARPHRD_IEEE802154_MONITOR: 3033 return IEEE802154_EXTENDED_ADDR_LEN; 3034 case ARPHRD_PHONET_PIPE: 3035 case ARPHRD_PPP: 3036 case ARPHRD_NONE: 3037 return 0; 3038 case ARPHRD_6LOWPAN: 3039 return EUI64_ADDR_LEN; 3040 case ARPHRD_FDDI: 3041 return FDDI_K_ALEN; 3042 case ARPHRD_HIPPI: 3043 return HIPPI_ALEN; 3044 case ARPHRD_IEEE802: 3045 return FC_ALEN; 3046 case ARPHRD_ROSE: 3047 return ROSE_ADDR_LEN; 3048 case ARPHRD_NETROM: 3049 return AX25_ADDR_LEN; 3050 case ARPHRD_LOCALTLK: 3051 return LTALK_ALEN; 3052 default: 3053 return 0; 3054 } 3055 } 3056 3057 static long __tun_chr_ioctl(struct file *file, unsigned int cmd, 3058 unsigned long arg, int ifreq_len) 3059 { 3060 struct tun_file *tfile = file->private_data; 3061 struct net *net = sock_net(&tfile->sk); 3062 struct tun_struct *tun; 3063 void __user* argp = (void __user*)arg; 3064 unsigned int carrier; 3065 struct ifreq ifr; 3066 kuid_t owner; 3067 kgid_t group; 3068 int ifindex; 3069 int sndbuf; 3070 int ret; 3071 bool do_notify = false; 3072 3073 if (cmd == TUNSETIFF || cmd == TUNSETQUEUE || 3074 (_IOC_TYPE(cmd) == SOCK_IOC_TYPE && cmd != SIOCGSKNS)) { 3075 if (copy_from_user(&ifr, argp, ifreq_len)) 3076 return -EFAULT; 3077 } else { 3078 memset(&ifr, 0, sizeof(ifr)); 3079 } 3080 if (cmd == TUNGETFEATURES) { 3081 /* Currently this just means: "what IFF flags are valid?". 3082 * This is needed because we never checked for invalid flags on 3083 * TUNSETIFF. 3084 */ 3085 return put_user(IFF_TUN | IFF_TAP | IFF_NO_CARRIER | 3086 TUN_FEATURES, (unsigned int __user*)argp); 3087 } else if (cmd == TUNSETQUEUE) { 3088 return tun_set_queue(file, &ifr); 3089 } else if (cmd == SIOCGSKNS) { 3090 if (!ns_capable(net->user_ns, CAP_NET_ADMIN)) 3091 return -EPERM; 3092 return open_related_ns(&net->ns, get_net_ns); 3093 } 3094 3095 rtnl_lock(); 3096 3097 tun = tun_get(tfile); 3098 if (cmd == TUNSETIFF) { 3099 ret = -EEXIST; 3100 if (tun) 3101 goto unlock; 3102 3103 ifr.ifr_name[IFNAMSIZ-1] = '\0'; 3104 3105 ret = tun_set_iff(net, file, &ifr); 3106 3107 if (ret) 3108 goto unlock; 3109 3110 if (copy_to_user(argp, &ifr, ifreq_len)) 3111 ret = -EFAULT; 3112 goto unlock; 3113 } 3114 if (cmd == TUNSETIFINDEX) { 3115 ret = -EPERM; 3116 if (tun) 3117 goto unlock; 3118 3119 ret = -EFAULT; 3120 if (copy_from_user(&ifindex, argp, sizeof(ifindex))) 3121 goto unlock; 3122 ret = -EINVAL; 3123 if (ifindex < 0) 3124 goto unlock; 3125 ret = 0; 3126 tfile->ifindex = ifindex; 3127 goto unlock; 3128 } 3129 3130 ret = -EBADFD; 3131 if (!tun) 3132 goto unlock; 3133 3134 netif_info(tun, drv, tun->dev, "tun_chr_ioctl cmd %u\n", cmd); 3135 3136 net = dev_net(tun->dev); 3137 ret = 0; 3138 switch (cmd) { 3139 case TUNGETIFF: 3140 tun_get_iff(tun, &ifr); 3141 3142 if (tfile->detached) 3143 ifr.ifr_flags |= IFF_DETACH_QUEUE; 3144 if (!tfile->socket.sk->sk_filter) 3145 ifr.ifr_flags |= IFF_NOFILTER; 3146 3147 if (copy_to_user(argp, &ifr, ifreq_len)) 3148 ret = -EFAULT; 3149 break; 3150 3151 case TUNSETNOCSUM: 3152 /* Disable/Enable checksum */ 3153 3154 /* [unimplemented] */ 3155 netif_info(tun, drv, tun->dev, "ignored: set checksum %s\n", 3156 arg ? "disabled" : "enabled"); 3157 break; 3158 3159 case TUNSETPERSIST: 3160 /* Disable/Enable persist mode. Keep an extra reference to the 3161 * module to prevent the module being unprobed. 3162 */ 3163 if (arg && !(tun->flags & IFF_PERSIST)) { 3164 tun->flags |= IFF_PERSIST; 3165 __module_get(THIS_MODULE); 3166 do_notify = true; 3167 } 3168 if (!arg && (tun->flags & IFF_PERSIST)) { 3169 tun->flags &= ~IFF_PERSIST; 3170 module_put(THIS_MODULE); 3171 do_notify = true; 3172 } 3173 3174 netif_info(tun, drv, tun->dev, "persist %s\n", 3175 arg ? "enabled" : "disabled"); 3176 break; 3177 3178 case TUNSETOWNER: 3179 /* Set owner of the device */ 3180 owner = make_kuid(current_user_ns(), arg); 3181 if (!uid_valid(owner)) { 3182 ret = -EINVAL; 3183 break; 3184 } 3185 tun->owner = owner; 3186 do_notify = true; 3187 netif_info(tun, drv, tun->dev, "owner set to %u\n", 3188 from_kuid(&init_user_ns, tun->owner)); 3189 break; 3190 3191 case TUNSETGROUP: 3192 /* Set group of the device */ 3193 group = make_kgid(current_user_ns(), arg); 3194 if (!gid_valid(group)) { 3195 ret = -EINVAL; 3196 break; 3197 } 3198 tun->group = group; 3199 do_notify = true; 3200 netif_info(tun, drv, tun->dev, "group set to %u\n", 3201 from_kgid(&init_user_ns, tun->group)); 3202 break; 3203 3204 case TUNSETLINK: 3205 /* Only allow setting the type when the interface is down */ 3206 if (tun->dev->flags & IFF_UP) { 3207 netif_info(tun, drv, tun->dev, 3208 "Linktype set failed because interface is up\n"); 3209 ret = -EBUSY; 3210 } else { 3211 ret = call_netdevice_notifiers(NETDEV_PRE_TYPE_CHANGE, 3212 tun->dev); 3213 ret = notifier_to_errno(ret); 3214 if (ret) { 3215 netif_info(tun, drv, tun->dev, 3216 "Refused to change device type\n"); 3217 break; 3218 } 3219 tun->dev->type = (int) arg; 3220 tun->dev->addr_len = tun_get_addr_len(tun->dev->type); 3221 netif_info(tun, drv, tun->dev, "linktype set to %d\n", 3222 tun->dev->type); 3223 call_netdevice_notifiers(NETDEV_POST_TYPE_CHANGE, 3224 tun->dev); 3225 } 3226 break; 3227 3228 case TUNSETDEBUG: 3229 tun->msg_enable = (u32)arg; 3230 break; 3231 3232 case TUNSETOFFLOAD: 3233 ret = set_offload(tun, arg); 3234 break; 3235 3236 case TUNSETTXFILTER: 3237 /* Can be set only for TAPs */ 3238 ret = -EINVAL; 3239 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP) 3240 break; 3241 ret = update_filter(&tun->txflt, (void __user *)arg); 3242 break; 3243 3244 case SIOCGIFHWADDR: 3245 /* Get hw address */ 3246 netif_get_mac_address(&ifr.ifr_hwaddr, net, tun->dev->name); 3247 if (copy_to_user(argp, &ifr, ifreq_len)) 3248 ret = -EFAULT; 3249 break; 3250 3251 case SIOCSIFHWADDR: 3252 /* Set hw address */ 3253 if (tun->dev->addr_len > sizeof(ifr.ifr_hwaddr)) { 3254 ret = -EINVAL; 3255 break; 3256 } 3257 ret = dev_set_mac_address_user(tun->dev, 3258 (struct sockaddr_storage *)&ifr.ifr_hwaddr, 3259 NULL); 3260 break; 3261 3262 case TUNGETSNDBUF: 3263 sndbuf = tfile->socket.sk->sk_sndbuf; 3264 if (copy_to_user(argp, &sndbuf, sizeof(sndbuf))) 3265 ret = -EFAULT; 3266 break; 3267 3268 case TUNSETSNDBUF: 3269 if (copy_from_user(&sndbuf, argp, sizeof(sndbuf))) { 3270 ret = -EFAULT; 3271 break; 3272 } 3273 if (sndbuf <= 0) { 3274 ret = -EINVAL; 3275 break; 3276 } 3277 3278 tun->sndbuf = sndbuf; 3279 tun_set_sndbuf(tun); 3280 break; 3281 3282 case TUNATTACHFILTER: 3283 /* Can be set only for TAPs */ 3284 ret = -EINVAL; 3285 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP) 3286 break; 3287 ret = -EFAULT; 3288 if (copy_from_user(&tun->fprog, argp, sizeof(tun->fprog))) 3289 break; 3290 3291 ret = tun_attach_filter(tun); 3292 break; 3293 3294 case TUNDETACHFILTER: 3295 /* Can be set only for TAPs */ 3296 ret = -EINVAL; 3297 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP) 3298 break; 3299 ret = 0; 3300 tun_detach_filter(tun, tun->numqueues); 3301 break; 3302 3303 case TUNGETFILTER: 3304 ret = -EINVAL; 3305 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP) 3306 break; 3307 ret = -EFAULT; 3308 if (copy_to_user(argp, &tun->fprog, sizeof(tun->fprog))) 3309 break; 3310 ret = 0; 3311 break; 3312 3313 case TUNSETSTEERINGEBPF: 3314 ret = tun_set_ebpf(tun, &tun->steering_prog, argp); 3315 break; 3316 3317 case TUNSETFILTEREBPF: 3318 ret = tun_set_ebpf(tun, &tun->filter_prog, argp); 3319 break; 3320 3321 case TUNSETCARRIER: 3322 ret = -EFAULT; 3323 if (copy_from_user(&carrier, argp, sizeof(carrier))) 3324 goto unlock; 3325 3326 ret = tun_net_change_carrier(tun->dev, (bool)carrier); 3327 break; 3328 3329 case TUNGETDEVNETNS: 3330 ret = -EPERM; 3331 if (!ns_capable(net->user_ns, CAP_NET_ADMIN)) 3332 goto unlock; 3333 ret = open_related_ns(&net->ns, get_net_ns); 3334 break; 3335 3336 default: 3337 ret = tun_vnet_ioctl(&tun->vnet_hdr_sz, &tun->flags, cmd, argp); 3338 break; 3339 } 3340 3341 if (do_notify) 3342 netdev_state_change(tun->dev); 3343 3344 unlock: 3345 rtnl_unlock(); 3346 if (tun) 3347 tun_put(tun); 3348 return ret; 3349 } 3350 3351 static long tun_chr_ioctl(struct file *file, 3352 unsigned int cmd, unsigned long arg) 3353 { 3354 return __tun_chr_ioctl(file, cmd, arg, sizeof (struct ifreq)); 3355 } 3356 3357 #ifdef CONFIG_COMPAT 3358 static long tun_chr_compat_ioctl(struct file *file, 3359 unsigned int cmd, unsigned long arg) 3360 { 3361 switch (cmd) { 3362 case TUNSETIFF: 3363 case TUNGETIFF: 3364 case TUNSETTXFILTER: 3365 case TUNGETSNDBUF: 3366 case TUNSETSNDBUF: 3367 case SIOCGIFHWADDR: 3368 case SIOCSIFHWADDR: 3369 arg = (unsigned long)compat_ptr(arg); 3370 break; 3371 default: 3372 arg = (compat_ulong_t)arg; 3373 break; 3374 } 3375 3376 /* 3377 * compat_ifreq is shorter than ifreq, so we must not access beyond 3378 * the end of that structure. All fields that are used in this 3379 * driver are compatible though, we don't need to convert the 3380 * contents. 3381 */ 3382 return __tun_chr_ioctl(file, cmd, arg, sizeof(struct compat_ifreq)); 3383 } 3384 #endif /* CONFIG_COMPAT */ 3385 3386 static int tun_chr_fasync(int fd, struct file *file, int on) 3387 { 3388 struct tun_file *tfile = file->private_data; 3389 int ret; 3390 3391 if (on) { 3392 ret = file_f_owner_allocate(file); 3393 if (ret) 3394 goto out; 3395 } 3396 3397 if ((ret = fasync_helper(fd, file, on, &tfile->fasync)) < 0) 3398 goto out; 3399 3400 if (on) { 3401 __f_setown(file, task_pid(current), PIDTYPE_TGID, 0); 3402 tfile->flags |= TUN_FASYNC; 3403 } else 3404 tfile->flags &= ~TUN_FASYNC; 3405 ret = 0; 3406 out: 3407 return ret; 3408 } 3409 3410 static int tun_chr_open(struct inode *inode, struct file * file) 3411 { 3412 struct net *net = current->nsproxy->net_ns; 3413 struct tun_file *tfile; 3414 3415 tfile = (struct tun_file *)sk_alloc(net, AF_UNSPEC, GFP_KERNEL, 3416 &tun_proto, 0); 3417 if (!tfile) 3418 return -ENOMEM; 3419 if (ptr_ring_init(&tfile->tx_ring, 0, GFP_KERNEL)) { 3420 sk_free(&tfile->sk); 3421 return -ENOMEM; 3422 } 3423 3424 mutex_init(&tfile->napi_mutex); 3425 RCU_INIT_POINTER(tfile->tun, NULL); 3426 tfile->flags = 0; 3427 tfile->ifindex = 0; 3428 3429 init_waitqueue_head(&tfile->socket.wq.wait); 3430 3431 tfile->socket.file = file; 3432 tfile->socket.ops = &tun_socket_ops; 3433 3434 sock_init_data_uid(&tfile->socket, &tfile->sk, current_fsuid()); 3435 3436 tfile->sk.sk_write_space = tun_sock_write_space; 3437 tfile->sk.sk_sndbuf = INT_MAX; 3438 3439 file->private_data = tfile; 3440 INIT_LIST_HEAD(&tfile->next); 3441 3442 sock_set_flag(&tfile->sk, SOCK_ZEROCOPY); 3443 3444 /* tun groks IOCB_NOWAIT just fine, mark it as such */ 3445 file->f_mode |= FMODE_NOWAIT; 3446 return 0; 3447 } 3448 3449 static int tun_chr_close(struct inode *inode, struct file *file) 3450 { 3451 struct tun_file *tfile = file->private_data; 3452 3453 tun_detach(tfile, true); 3454 3455 return 0; 3456 } 3457 3458 #ifdef CONFIG_PROC_FS 3459 static void tun_chr_show_fdinfo(struct seq_file *m, struct file *file) 3460 { 3461 struct tun_file *tfile = file->private_data; 3462 struct tun_struct *tun; 3463 struct ifreq ifr; 3464 3465 memset(&ifr, 0, sizeof(ifr)); 3466 3467 rtnl_lock(); 3468 tun = tun_get(tfile); 3469 if (tun) 3470 tun_get_iff(tun, &ifr); 3471 rtnl_unlock(); 3472 3473 if (tun) 3474 tun_put(tun); 3475 3476 seq_printf(m, "iff:\t%s\n", ifr.ifr_name); 3477 } 3478 #endif 3479 3480 static const struct file_operations tun_fops = { 3481 .owner = THIS_MODULE, 3482 .read_iter = tun_chr_read_iter, 3483 .write_iter = tun_chr_write_iter, 3484 .poll = tun_chr_poll, 3485 .unlocked_ioctl = tun_chr_ioctl, 3486 #ifdef CONFIG_COMPAT 3487 .compat_ioctl = tun_chr_compat_ioctl, 3488 #endif 3489 .open = tun_chr_open, 3490 .release = tun_chr_close, 3491 .fasync = tun_chr_fasync, 3492 #ifdef CONFIG_PROC_FS 3493 .show_fdinfo = tun_chr_show_fdinfo, 3494 #endif 3495 }; 3496 3497 static struct miscdevice tun_miscdev = { 3498 .minor = TUN_MINOR, 3499 .name = "tun", 3500 .nodename = "net/tun", 3501 .fops = &tun_fops, 3502 }; 3503 3504 /* ethtool interface */ 3505 3506 static void tun_default_link_ksettings(struct net_device *dev, 3507 struct ethtool_link_ksettings *cmd) 3508 { 3509 ethtool_link_ksettings_zero_link_mode(cmd, supported); 3510 ethtool_link_ksettings_zero_link_mode(cmd, advertising); 3511 cmd->base.speed = SPEED_10000; 3512 cmd->base.duplex = DUPLEX_FULL; 3513 cmd->base.port = PORT_TP; 3514 cmd->base.phy_address = 0; 3515 cmd->base.autoneg = AUTONEG_DISABLE; 3516 } 3517 3518 static int tun_get_link_ksettings(struct net_device *dev, 3519 struct ethtool_link_ksettings *cmd) 3520 { 3521 struct tun_struct *tun = netdev_priv(dev); 3522 3523 memcpy(cmd, &tun->link_ksettings, sizeof(*cmd)); 3524 return 0; 3525 } 3526 3527 static int tun_set_link_ksettings(struct net_device *dev, 3528 const struct ethtool_link_ksettings *cmd) 3529 { 3530 struct tun_struct *tun = netdev_priv(dev); 3531 3532 memcpy(&tun->link_ksettings, cmd, sizeof(*cmd)); 3533 return 0; 3534 } 3535 3536 static void tun_get_drvinfo(struct net_device *dev, struct ethtool_drvinfo *info) 3537 { 3538 struct tun_struct *tun = netdev_priv(dev); 3539 3540 strscpy(info->driver, DRV_NAME, sizeof(info->driver)); 3541 strscpy(info->version, DRV_VERSION, sizeof(info->version)); 3542 3543 switch (tun->flags & TUN_TYPE_MASK) { 3544 case IFF_TUN: 3545 strscpy(info->bus_info, "tun", sizeof(info->bus_info)); 3546 break; 3547 case IFF_TAP: 3548 strscpy(info->bus_info, "tap", sizeof(info->bus_info)); 3549 break; 3550 } 3551 } 3552 3553 static u32 tun_get_msglevel(struct net_device *dev) 3554 { 3555 struct tun_struct *tun = netdev_priv(dev); 3556 3557 return tun->msg_enable; 3558 } 3559 3560 static void tun_set_msglevel(struct net_device *dev, u32 value) 3561 { 3562 struct tun_struct *tun = netdev_priv(dev); 3563 3564 tun->msg_enable = value; 3565 } 3566 3567 static int tun_get_coalesce(struct net_device *dev, 3568 struct ethtool_coalesce *ec, 3569 struct kernel_ethtool_coalesce *kernel_coal, 3570 struct netlink_ext_ack *extack) 3571 { 3572 struct tun_struct *tun = netdev_priv(dev); 3573 3574 ec->rx_max_coalesced_frames = tun->rx_batched; 3575 3576 return 0; 3577 } 3578 3579 static int tun_set_coalesce(struct net_device *dev, 3580 struct ethtool_coalesce *ec, 3581 struct kernel_ethtool_coalesce *kernel_coal, 3582 struct netlink_ext_ack *extack) 3583 { 3584 struct tun_struct *tun = netdev_priv(dev); 3585 3586 if (ec->rx_max_coalesced_frames > NAPI_POLL_WEIGHT) 3587 tun->rx_batched = NAPI_POLL_WEIGHT; 3588 else 3589 tun->rx_batched = ec->rx_max_coalesced_frames; 3590 3591 return 0; 3592 } 3593 3594 static void tun_get_channels(struct net_device *dev, 3595 struct ethtool_channels *channels) 3596 { 3597 struct tun_struct *tun = netdev_priv(dev); 3598 3599 channels->combined_count = tun->numqueues; 3600 channels->max_combined = tun->flags & IFF_MULTI_QUEUE ? MAX_TAP_QUEUES : 1; 3601 } 3602 3603 static const struct ethtool_ops tun_ethtool_ops = { 3604 .supported_coalesce_params = ETHTOOL_COALESCE_RX_MAX_FRAMES, 3605 .get_drvinfo = tun_get_drvinfo, 3606 .get_msglevel = tun_get_msglevel, 3607 .set_msglevel = tun_set_msglevel, 3608 .get_link = ethtool_op_get_link, 3609 .get_channels = tun_get_channels, 3610 .get_ts_info = ethtool_op_get_ts_info, 3611 .get_coalesce = tun_get_coalesce, 3612 .set_coalesce = tun_set_coalesce, 3613 .get_link_ksettings = tun_get_link_ksettings, 3614 .set_link_ksettings = tun_set_link_ksettings, 3615 }; 3616 3617 static int tun_queue_resize(struct tun_struct *tun) 3618 { 3619 struct net_device *dev = tun->dev; 3620 struct tun_file *tfile; 3621 struct ptr_ring **rings; 3622 int n = tun->numqueues + tun->numdisabled; 3623 int ret, i; 3624 3625 rings = kmalloc_objs(*rings, n); 3626 if (!rings) 3627 return -ENOMEM; 3628 3629 for (i = 0; i < tun->numqueues; i++) { 3630 tfile = rtnl_dereference(tun->tfiles[i]); 3631 rings[i] = &tfile->tx_ring; 3632 } 3633 list_for_each_entry(tfile, &tun->disabled, next) 3634 rings[i++] = &tfile->tx_ring; 3635 3636 ret = ptr_ring_resize_multiple_bh(rings, n, 3637 dev->tx_queue_len, GFP_KERNEL, 3638 tun_ptr_free); 3639 3640 kfree(rings); 3641 return ret; 3642 } 3643 3644 static int tun_device_event(struct notifier_block *unused, 3645 unsigned long event, void *ptr) 3646 { 3647 struct net_device *dev = netdev_notifier_info_to_dev(ptr); 3648 struct tun_struct *tun = netdev_priv(dev); 3649 int i; 3650 3651 if (dev->rtnl_link_ops != &tun_link_ops) 3652 return NOTIFY_DONE; 3653 3654 switch (event) { 3655 case NETDEV_CHANGE_TX_QUEUE_LEN: 3656 if (tun_queue_resize(tun)) 3657 return NOTIFY_BAD; 3658 break; 3659 case NETDEV_UP: 3660 for (i = 0; i < tun->numqueues; i++) { 3661 struct tun_file *tfile; 3662 3663 tfile = rtnl_dereference(tun->tfiles[i]); 3664 tfile->socket.sk->sk_write_space(tfile->socket.sk); 3665 } 3666 break; 3667 default: 3668 break; 3669 } 3670 3671 return NOTIFY_DONE; 3672 } 3673 3674 static struct notifier_block tun_notifier_block __read_mostly = { 3675 .notifier_call = tun_device_event, 3676 }; 3677 3678 static int __init tun_init(void) 3679 { 3680 int ret = 0; 3681 3682 pr_info("%s, %s\n", DRV_DESCRIPTION, DRV_VERSION); 3683 3684 ret = rtnl_link_register(&tun_link_ops); 3685 if (ret) { 3686 pr_err("Can't register link_ops\n"); 3687 goto err_linkops; 3688 } 3689 3690 ret = misc_register(&tun_miscdev); 3691 if (ret) { 3692 pr_err("Can't register misc device %d\n", TUN_MINOR); 3693 goto err_misc; 3694 } 3695 3696 ret = register_netdevice_notifier(&tun_notifier_block); 3697 if (ret) { 3698 pr_err("Can't register netdevice notifier\n"); 3699 goto err_notifier; 3700 } 3701 3702 return 0; 3703 3704 err_notifier: 3705 misc_deregister(&tun_miscdev); 3706 err_misc: 3707 rtnl_link_unregister(&tun_link_ops); 3708 err_linkops: 3709 return ret; 3710 } 3711 3712 static void __exit tun_cleanup(void) 3713 { 3714 misc_deregister(&tun_miscdev); 3715 rtnl_link_unregister(&tun_link_ops); 3716 unregister_netdevice_notifier(&tun_notifier_block); 3717 } 3718 3719 /* Get an underlying socket object from tun file. Returns error unless file is 3720 * attached to a device. The returned object works like a packet socket, it 3721 * can be used for sock_sendmsg/sock_recvmsg. The caller is responsible for 3722 * holding a reference to the file for as long as the socket is in use. */ 3723 struct socket *tun_get_socket(struct file *file) 3724 { 3725 struct tun_file *tfile; 3726 if (file->f_op != &tun_fops) 3727 return ERR_PTR(-EINVAL); 3728 tfile = file->private_data; 3729 if (!tfile) 3730 return ERR_PTR(-EBADFD); 3731 return &tfile->socket; 3732 } 3733 EXPORT_SYMBOL_GPL(tun_get_socket); 3734 3735 struct ptr_ring *tun_get_tx_ring(struct file *file) 3736 { 3737 struct tun_file *tfile; 3738 3739 if (file->f_op != &tun_fops) 3740 return ERR_PTR(-EINVAL); 3741 tfile = file->private_data; 3742 if (!tfile) 3743 return ERR_PTR(-EBADFD); 3744 return &tfile->tx_ring; 3745 } 3746 EXPORT_SYMBOL_GPL(tun_get_tx_ring); 3747 3748 module_init(tun_init); 3749 module_exit(tun_cleanup); 3750 MODULE_DESCRIPTION(DRV_DESCRIPTION); 3751 MODULE_AUTHOR(DRV_COPYRIGHT); 3752 MODULE_LICENSE("GPL"); 3753 MODULE_ALIAS_MISCDEV(TUN_MINOR); 3754 MODULE_ALIAS("devname:net/tun"); 3755 MODULE_IMPORT_NS("NETDEV_INTERNAL"); 3756