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
tun_napi_receive(struct napi_struct * napi,int budget)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
tun_napi_poll(struct napi_struct * napi,int budget)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
tun_napi_init(struct tun_struct * tun,struct tun_file * tfile,bool napi_en,bool napi_frags)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
tun_napi_enable(struct tun_file * tfile)278 static void tun_napi_enable(struct tun_file *tfile)
279 {
280 if (tfile->napi_enabled)
281 napi_enable(&tfile->napi);
282 }
283
tun_napi_disable(struct tun_file * tfile)284 static void tun_napi_disable(struct tun_file *tfile)
285 {
286 if (tfile->napi_enabled)
287 napi_disable(&tfile->napi);
288 }
289
tun_napi_del(struct tun_file * tfile)290 static void tun_napi_del(struct tun_file *tfile)
291 {
292 if (tfile->napi_enabled)
293 netif_napi_del(&tfile->napi);
294 }
295
tun_napi_frags_enabled(const struct tun_file * tfile)296 static bool tun_napi_frags_enabled(const struct tun_file *tfile)
297 {
298 return tfile->napi_frags_enabled;
299 }
300
tun_hashfn(u32 rxhash)301 static inline u32 tun_hashfn(u32 rxhash)
302 {
303 return rxhash & TUN_MASK_FLOW_ENTRIES;
304 }
305
tun_flow_find(struct hlist_head * head,u32 rxhash)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
tun_flow_create(struct tun_struct * tun,struct hlist_head * head,u32 rxhash,u16 queue_index)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
tun_flow_delete(struct tun_struct * tun,struct tun_flow_entry * e)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
tun_flow_flush(struct tun_struct * tun)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
tun_flow_delete_by_queue(struct tun_struct * tun,u16 queue_index)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
tun_flow_cleanup(struct timer_list * t)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
tun_flow_update(struct tun_struct * tun,u32 rxhash,struct tun_file * tfile)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 */
tun_flow_save_rps_rxhash(struct tun_flow_entry * e,u32 hash)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 */
tun_automq_select_queue(struct tun_struct * tun,struct sk_buff * skb)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
tun_ebpf_select_queue(struct tun_struct * tun,struct sk_buff * skb)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
tun_select_queue(struct net_device * dev,struct sk_buff * skb,struct net_device * sb_dev)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
tun_not_capable(struct tun_struct * tun)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
tun_set_real_num_queues(struct tun_struct * tun)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
tun_disable_queue(struct tun_struct * tun,struct tun_file * tfile)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
tun_enable_queue(struct tun_file * tfile)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
tun_ptr_free(void * ptr)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
tun_queue_purge(struct tun_file * tfile)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
__tun_detach(struct tun_file * tfile,bool clean)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
tun_detach(struct tun_file * tfile,bool clean)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
tun_detach_all(struct net_device * dev)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
tun_attach(struct tun_struct * tun,struct file * file,bool skip_filter,bool napi,bool napi_frags,bool publish_tun)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
tun_get(struct tun_file * tfile)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
tun_put(struct tun_struct * tun)798 static void tun_put(struct tun_struct *tun)
799 {
800 dev_put(tun->dev);
801 }
802
803 /* TAP filtering */
addr_hash_set(u32 * mask,const u8 * addr)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
addr_hash_test(const u32 * mask,const u8 * addr)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
update_filter(struct tap_filter * filter,void __user * arg)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 */
run_filter(struct tap_filter * filter,const struct sk_buff * skb)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 */
check_filter(struct tap_filter * filter,const struct sk_buff * skb)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
tun_net_init(struct net_device * dev)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. */
tun_net_uninit(struct net_device * dev)951 static void tun_net_uninit(struct net_device *dev)
952 {
953 tun_detach_all(dev);
954 }
955
956 /* Net device open. */
tun_net_open(struct net_device * dev)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. */
tun_net_close(struct net_device * dev)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 */
tun_automq_xmit(struct tun_struct * tun,struct sk_buff * skb)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
run_ebpf_filter(struct tun_struct * tun,struct sk_buff * skb,int len)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 */
tun_net_xmit(struct sk_buff * skb,struct net_device * dev)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
tun_net_mclist(struct net_device * dev)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
tun_net_fix_features(struct net_device * dev,netdev_features_t features)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
tun_set_headroom(struct net_device * dev,int new_hr)1107 static void tun_set_headroom(struct net_device *dev, int new_hr)
1108 {
1109 struct tun_struct *tun = netdev_priv(dev);
1110
1111 if (new_hr < NET_SKB_PAD)
1112 new_hr = NET_SKB_PAD;
1113
1114 tun->align = new_hr;
1115 }
1116
1117 static void
tun_net_get_stats64(struct net_device * dev,struct rtnl_link_stats64 * stats)1118 tun_net_get_stats64(struct net_device *dev, struct rtnl_link_stats64 *stats)
1119 {
1120 struct tun_struct *tun = netdev_priv(dev);
1121
1122 dev_get_tstats64(dev, stats);
1123
1124 stats->rx_frame_errors +=
1125 (unsigned long)atomic_long_read(&tun->rx_frame_errors);
1126 }
1127
tun_xdp_set(struct net_device * dev,struct bpf_prog * prog,struct netlink_ext_ack * extack)1128 static int tun_xdp_set(struct net_device *dev, struct bpf_prog *prog,
1129 struct netlink_ext_ack *extack)
1130 {
1131 struct tun_struct *tun = netdev_priv(dev);
1132 struct tun_file *tfile;
1133 struct bpf_prog *old_prog;
1134 int i;
1135
1136 old_prog = rtnl_dereference(tun->xdp_prog);
1137 rcu_assign_pointer(tun->xdp_prog, prog);
1138 if (old_prog)
1139 bpf_prog_put(old_prog);
1140
1141 for (i = 0; i < tun->numqueues; i++) {
1142 tfile = rtnl_dereference(tun->tfiles[i]);
1143 if (prog)
1144 sock_set_flag(&tfile->sk, SOCK_XDP);
1145 else
1146 sock_reset_flag(&tfile->sk, SOCK_XDP);
1147 }
1148 list_for_each_entry(tfile, &tun->disabled, next) {
1149 if (prog)
1150 sock_set_flag(&tfile->sk, SOCK_XDP);
1151 else
1152 sock_reset_flag(&tfile->sk, SOCK_XDP);
1153 }
1154
1155 return 0;
1156 }
1157
tun_xdp(struct net_device * dev,struct netdev_bpf * xdp)1158 static int tun_xdp(struct net_device *dev, struct netdev_bpf *xdp)
1159 {
1160 switch (xdp->command) {
1161 case XDP_SETUP_PROG:
1162 return tun_xdp_set(dev, xdp->prog, xdp->extack);
1163 default:
1164 return -EINVAL;
1165 }
1166 }
1167
tun_net_change_carrier(struct net_device * dev,bool new_carrier)1168 static int tun_net_change_carrier(struct net_device *dev, bool new_carrier)
1169 {
1170 if (new_carrier) {
1171 struct tun_struct *tun = netdev_priv(dev);
1172
1173 if (!tun->numqueues)
1174 return -EPERM;
1175
1176 netif_carrier_on(dev);
1177 } else {
1178 netif_carrier_off(dev);
1179 }
1180 return 0;
1181 }
1182
1183 static const struct net_device_ops tun_netdev_ops = {
1184 .ndo_init = tun_net_init,
1185 .ndo_uninit = tun_net_uninit,
1186 .ndo_open = tun_net_open,
1187 .ndo_stop = tun_net_close,
1188 .ndo_start_xmit = tun_net_xmit,
1189 .ndo_fix_features = tun_net_fix_features,
1190 .ndo_select_queue = tun_select_queue,
1191 .ndo_set_rx_headroom = tun_set_headroom,
1192 .ndo_get_stats64 = tun_net_get_stats64,
1193 .ndo_change_carrier = tun_net_change_carrier,
1194 };
1195
__tun_xdp_flush_tfile(struct tun_file * tfile)1196 static void __tun_xdp_flush_tfile(struct tun_file *tfile)
1197 {
1198 /* Notify and wake up reader process */
1199 if (tfile->flags & TUN_FASYNC)
1200 kill_fasync(&tfile->fasync, SIGIO, POLL_IN);
1201 tfile->socket.sk->sk_data_ready(tfile->socket.sk);
1202 }
1203
tun_xdp_xmit(struct net_device * dev,int n,struct xdp_frame ** frames,u32 flags)1204 static int tun_xdp_xmit(struct net_device *dev, int n,
1205 struct xdp_frame **frames, u32 flags)
1206 {
1207 struct tun_struct *tun = netdev_priv(dev);
1208 struct tun_file *tfile;
1209 u32 numqueues;
1210 int nxmit = 0;
1211 int i;
1212
1213 if (unlikely(flags & ~XDP_XMIT_FLAGS_MASK))
1214 return -EINVAL;
1215
1216 rcu_read_lock();
1217
1218 resample:
1219 numqueues = READ_ONCE(tun->numqueues);
1220 if (!numqueues) {
1221 rcu_read_unlock();
1222 return -ENXIO; /* Caller will free/return all frames */
1223 }
1224
1225 tfile = rcu_dereference(tun->tfiles[smp_processor_id() %
1226 numqueues]);
1227 if (unlikely(!tfile))
1228 goto resample;
1229
1230 spin_lock(&tfile->tx_ring.producer_lock);
1231 for (i = 0; i < n; i++) {
1232 struct xdp_frame *xdp = frames[i];
1233 /* Encode the XDP flag into lowest bit for consumer to differ
1234 * XDP buffer from sk_buff.
1235 */
1236 void *frame = tun_xdp_to_ptr(xdp);
1237
1238 if (__ptr_ring_produce(&tfile->tx_ring, frame)) {
1239 dev_core_stats_tx_dropped_inc(dev);
1240 break;
1241 }
1242 nxmit++;
1243 }
1244 spin_unlock(&tfile->tx_ring.producer_lock);
1245
1246 if (flags & XDP_XMIT_FLUSH)
1247 __tun_xdp_flush_tfile(tfile);
1248
1249 rcu_read_unlock();
1250 return nxmit;
1251 }
1252
tun_xdp_tx(struct net_device * dev,struct xdp_buff * xdp)1253 static int tun_xdp_tx(struct net_device *dev, struct xdp_buff *xdp)
1254 {
1255 struct xdp_frame *frame = xdp_convert_buff_to_frame(xdp);
1256 int nxmit;
1257
1258 if (unlikely(!frame))
1259 return -EOVERFLOW;
1260
1261 nxmit = tun_xdp_xmit(dev, 1, &frame, XDP_XMIT_FLUSH);
1262 if (!nxmit)
1263 xdp_return_frame_rx_napi(frame);
1264 return nxmit;
1265 }
1266
1267 static const struct net_device_ops tap_netdev_ops = {
1268 .ndo_init = tun_net_init,
1269 .ndo_uninit = tun_net_uninit,
1270 .ndo_open = tun_net_open,
1271 .ndo_stop = tun_net_close,
1272 .ndo_start_xmit = tun_net_xmit,
1273 .ndo_fix_features = tun_net_fix_features,
1274 .ndo_set_rx_mode = tun_net_mclist,
1275 .ndo_set_mac_address = eth_mac_addr,
1276 .ndo_validate_addr = eth_validate_addr,
1277 .ndo_select_queue = tun_select_queue,
1278 .ndo_features_check = passthru_features_check,
1279 .ndo_set_rx_headroom = tun_set_headroom,
1280 .ndo_bpf = tun_xdp,
1281 .ndo_xdp_xmit = tun_xdp_xmit,
1282 .ndo_change_carrier = tun_net_change_carrier,
1283 };
1284
tun_flow_init(struct tun_struct * tun)1285 static void tun_flow_init(struct tun_struct *tun)
1286 {
1287 int i;
1288
1289 for (i = 0; i < TUN_NUM_FLOW_ENTRIES; i++)
1290 INIT_HLIST_HEAD(&tun->flows[i]);
1291
1292 tun->ageing_time = TUN_FLOW_EXPIRE;
1293 timer_setup(&tun->flow_gc_timer, tun_flow_cleanup, 0);
1294 mod_timer(&tun->flow_gc_timer,
1295 round_jiffies_up(jiffies + tun->ageing_time));
1296 }
1297
tun_flow_uninit(struct tun_struct * tun)1298 static void tun_flow_uninit(struct tun_struct *tun)
1299 {
1300 timer_delete_sync(&tun->flow_gc_timer);
1301 tun_flow_flush(tun);
1302 }
1303
1304 #define MIN_MTU 68
1305 #define MAX_MTU 65535
1306
1307 /* Initialize net device. */
tun_net_initialize(struct net_device * dev)1308 static void tun_net_initialize(struct net_device *dev)
1309 {
1310 struct tun_struct *tun = netdev_priv(dev);
1311
1312 switch (tun->flags & TUN_TYPE_MASK) {
1313 case IFF_TUN:
1314 dev->netdev_ops = &tun_netdev_ops;
1315 dev->header_ops = &ip_tunnel_header_ops;
1316
1317 /* Point-to-Point TUN Device */
1318 dev->hard_header_len = 0;
1319 dev->addr_len = 0;
1320 dev->mtu = 1500;
1321
1322 /* Zero header length */
1323 dev->type = ARPHRD_NONE;
1324 dev->flags = IFF_POINTOPOINT | IFF_NOARP | IFF_MULTICAST;
1325 break;
1326
1327 case IFF_TAP:
1328 dev->netdev_ops = &tap_netdev_ops;
1329 /* Ethernet TAP Device */
1330 ether_setup(dev);
1331 dev->priv_flags &= ~IFF_TX_SKB_SHARING;
1332 dev->priv_flags |= IFF_LIVE_ADDR_CHANGE;
1333
1334 eth_hw_addr_random(dev);
1335
1336 /* Currently tun does not support XDP, only tap does. */
1337 dev->xdp_features = NETDEV_XDP_ACT_BASIC |
1338 NETDEV_XDP_ACT_REDIRECT |
1339 NETDEV_XDP_ACT_NDO_XMIT;
1340
1341 break;
1342 }
1343
1344 dev->min_mtu = MIN_MTU;
1345 dev->max_mtu = MAX_MTU - dev->hard_header_len;
1346 }
1347
tun_sock_writeable(struct tun_struct * tun,struct tun_file * tfile)1348 static bool tun_sock_writeable(struct tun_struct *tun, struct tun_file *tfile)
1349 {
1350 struct sock *sk = tfile->socket.sk;
1351
1352 return (tun->dev->flags & IFF_UP) && sock_writeable(sk);
1353 }
1354
1355 /* Character device part */
1356
1357 /* Poll */
tun_chr_poll(struct file * file,poll_table * wait)1358 static __poll_t tun_chr_poll(struct file *file, poll_table *wait)
1359 {
1360 struct tun_file *tfile = file->private_data;
1361 struct tun_struct *tun = tun_get(tfile);
1362 struct sock *sk;
1363 __poll_t mask = 0;
1364
1365 if (!tun)
1366 return EPOLLERR;
1367
1368 sk = tfile->socket.sk;
1369
1370 poll_wait(file, sk_sleep(sk), wait);
1371
1372 if (!ptr_ring_empty(&tfile->tx_ring))
1373 mask |= EPOLLIN | EPOLLRDNORM;
1374
1375 /* Make sure SOCKWQ_ASYNC_NOSPACE is set if not writable to
1376 * guarantee EPOLLOUT to be raised by either here or
1377 * tun_sock_write_space(). Then process could get notification
1378 * after it writes to a down device and meets -EIO.
1379 */
1380 if (tun_sock_writeable(tun, tfile) ||
1381 (!test_and_set_bit(SOCKWQ_ASYNC_NOSPACE, &sk->sk_socket->flags) &&
1382 tun_sock_writeable(tun, tfile)))
1383 mask |= EPOLLOUT | EPOLLWRNORM;
1384
1385 if (tun->dev->reg_state != NETREG_REGISTERED)
1386 mask = EPOLLERR;
1387
1388 tun_put(tun);
1389 return mask;
1390 }
1391
tun_napi_alloc_frags(struct tun_file * tfile,size_t len,const struct iov_iter * it)1392 static struct sk_buff *tun_napi_alloc_frags(struct tun_file *tfile,
1393 size_t len,
1394 const struct iov_iter *it)
1395 {
1396 struct sk_buff *skb;
1397 size_t linear;
1398 int err;
1399 int i;
1400
1401 if (it->nr_segs > MAX_SKB_FRAGS + 1 ||
1402 len > (ETH_MAX_MTU - NET_SKB_PAD - NET_IP_ALIGN))
1403 return ERR_PTR(-EMSGSIZE);
1404
1405 local_bh_disable();
1406 skb = napi_get_frags(&tfile->napi);
1407 local_bh_enable();
1408 if (!skb)
1409 return ERR_PTR(-ENOMEM);
1410
1411 linear = iov_iter_single_seg_count(it);
1412 err = __skb_grow(skb, linear);
1413 if (err)
1414 goto free;
1415
1416 skb->len = len;
1417 skb->data_len = len - linear;
1418 skb->truesize += skb->data_len;
1419
1420 for (i = 1; i < it->nr_segs; i++) {
1421 const struct iovec *iov = iter_iov(it) + i;
1422 size_t fragsz = iov->iov_len;
1423 struct page *page;
1424 void *frag;
1425
1426 if (fragsz == 0 || fragsz > PAGE_SIZE) {
1427 err = -EINVAL;
1428 goto free;
1429 }
1430 frag = netdev_alloc_frag(fragsz);
1431 if (!frag) {
1432 err = -ENOMEM;
1433 goto free;
1434 }
1435 page = virt_to_head_page(frag);
1436 skb_fill_page_desc(skb, i - 1, page,
1437 frag - page_address(page), fragsz);
1438 }
1439
1440 return skb;
1441 free:
1442 /* frees skb and all frags allocated with napi_alloc_frag() */
1443 napi_free_frags(&tfile->napi);
1444 return ERR_PTR(err);
1445 }
1446
1447 /* prepad is the amount to reserve at front. len is length after that.
1448 * linear is a hint as to how much to copy (usually headers). */
tun_alloc_skb(struct tun_file * tfile,size_t prepad,size_t len,size_t linear,int noblock)1449 static struct sk_buff *tun_alloc_skb(struct tun_file *tfile,
1450 size_t prepad, size_t len,
1451 size_t linear, int noblock)
1452 {
1453 struct sock *sk = tfile->socket.sk;
1454 struct sk_buff *skb;
1455 int err;
1456
1457 /* Under a page? Don't bother with paged skb. */
1458 if (prepad + len < PAGE_SIZE)
1459 linear = len;
1460
1461 if (len - linear > MAX_SKB_FRAGS * (PAGE_SIZE << PAGE_ALLOC_COSTLY_ORDER))
1462 linear = len - MAX_SKB_FRAGS * (PAGE_SIZE << PAGE_ALLOC_COSTLY_ORDER);
1463 skb = sock_alloc_send_pskb(sk, prepad + linear, len - linear, noblock,
1464 &err, PAGE_ALLOC_COSTLY_ORDER);
1465 if (!skb)
1466 return ERR_PTR(err);
1467
1468 skb_reserve(skb, prepad);
1469 skb_put(skb, linear);
1470 skb->data_len = len - linear;
1471 skb->len += len - linear;
1472
1473 return skb;
1474 }
1475
tun_rx_batched(struct tun_struct * tun,struct tun_file * tfile,struct sk_buff * skb,int more)1476 static void tun_rx_batched(struct tun_struct *tun, struct tun_file *tfile,
1477 struct sk_buff *skb, int more)
1478 {
1479 struct sk_buff_head *queue = &tfile->sk.sk_write_queue;
1480 struct sk_buff_head process_queue;
1481 u32 rx_batched = tun->rx_batched;
1482 bool rcv = false;
1483
1484 if (!rx_batched || (!more && skb_queue_empty(queue))) {
1485 local_bh_disable();
1486 skb_record_rx_queue(skb, tfile->queue_index);
1487 netif_receive_skb(skb);
1488 local_bh_enable();
1489 return;
1490 }
1491
1492 spin_lock(&queue->lock);
1493 if (!more || skb_queue_len(queue) == rx_batched) {
1494 __skb_queue_head_init(&process_queue);
1495 skb_queue_splice_tail_init(queue, &process_queue);
1496 rcv = true;
1497 } else {
1498 __skb_queue_tail(queue, skb);
1499 }
1500 spin_unlock(&queue->lock);
1501
1502 if (rcv) {
1503 struct sk_buff *nskb;
1504
1505 local_bh_disable();
1506 while ((nskb = __skb_dequeue(&process_queue))) {
1507 skb_record_rx_queue(nskb, tfile->queue_index);
1508 netif_receive_skb(nskb);
1509 }
1510 skb_record_rx_queue(skb, tfile->queue_index);
1511 netif_receive_skb(skb);
1512 local_bh_enable();
1513 }
1514 }
1515
tun_can_build_skb(struct tun_struct * tun,struct tun_file * tfile,int len,int noblock,bool zerocopy)1516 static bool tun_can_build_skb(struct tun_struct *tun, struct tun_file *tfile,
1517 int len, int noblock, bool zerocopy)
1518 {
1519 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP)
1520 return false;
1521
1522 if (tfile->socket.sk->sk_sndbuf != INT_MAX)
1523 return false;
1524
1525 if (!noblock)
1526 return false;
1527
1528 if (zerocopy)
1529 return false;
1530
1531 if (SKB_DATA_ALIGN(len + TUN_RX_PAD + XDP_PACKET_HEADROOM) +
1532 SKB_DATA_ALIGN(sizeof(struct skb_shared_info)) > PAGE_SIZE)
1533 return false;
1534
1535 return true;
1536 }
1537
__tun_build_skb(struct tun_file * tfile,struct page_frag * alloc_frag,char * buf,int buflen,int len,int pad,int metasize)1538 static struct sk_buff *__tun_build_skb(struct tun_file *tfile,
1539 struct page_frag *alloc_frag, char *buf,
1540 int buflen, int len, int pad,
1541 int metasize)
1542 {
1543 struct sk_buff *skb = build_skb(buf, buflen);
1544
1545 if (!skb)
1546 return ERR_PTR(-ENOMEM);
1547
1548 skb_reserve(skb, pad);
1549 skb_put(skb, len);
1550 if (metasize)
1551 skb_metadata_set(skb, metasize);
1552 skb_set_owner_w(skb, tfile->socket.sk);
1553
1554 get_page(alloc_frag->page);
1555 alloc_frag->offset += buflen;
1556
1557 return skb;
1558 }
1559
tun_xdp_act(struct tun_struct * tun,struct bpf_prog * xdp_prog,struct xdp_buff * xdp,u32 act)1560 static int tun_xdp_act(struct tun_struct *tun, struct bpf_prog *xdp_prog,
1561 struct xdp_buff *xdp, u32 act)
1562 {
1563 int err;
1564
1565 switch (act) {
1566 case XDP_REDIRECT:
1567 err = xdp_do_redirect(tun->dev, xdp, xdp_prog);
1568 if (err) {
1569 dev_core_stats_rx_dropped_inc(tun->dev);
1570 return err;
1571 }
1572 dev_sw_netstats_rx_add(tun->dev, xdp->data_end - xdp->data);
1573 break;
1574 case XDP_TX:
1575 err = tun_xdp_tx(tun->dev, xdp);
1576 if (err < 0) {
1577 dev_core_stats_rx_dropped_inc(tun->dev);
1578 return err;
1579 }
1580 dev_sw_netstats_rx_add(tun->dev, xdp->data_end - xdp->data);
1581 break;
1582 case XDP_PASS:
1583 break;
1584 default:
1585 bpf_warn_invalid_xdp_action(tun->dev, xdp_prog, act);
1586 fallthrough;
1587 case XDP_ABORTED:
1588 trace_xdp_exception(tun->dev, xdp_prog, act);
1589 fallthrough;
1590 case XDP_DROP:
1591 dev_core_stats_rx_dropped_inc(tun->dev);
1592 break;
1593 }
1594
1595 return act;
1596 }
1597
tun_build_skb(struct tun_struct * tun,struct tun_file * tfile,struct iov_iter * from,struct virtio_net_hdr * hdr,int len,int * skb_xdp)1598 static struct sk_buff *tun_build_skb(struct tun_struct *tun,
1599 struct tun_file *tfile,
1600 struct iov_iter *from,
1601 struct virtio_net_hdr *hdr,
1602 int len, int *skb_xdp)
1603 {
1604 struct page_frag *alloc_frag = ¤t->task_frag;
1605 struct bpf_net_context __bpf_net_ctx, *bpf_net_ctx;
1606 struct bpf_prog *xdp_prog;
1607 int buflen = SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
1608 char *buf;
1609 size_t copied;
1610 int pad = TUN_RX_PAD;
1611 int metasize = 0;
1612 int err = 0;
1613
1614 rcu_read_lock();
1615 xdp_prog = rcu_dereference(tun->xdp_prog);
1616 if (xdp_prog)
1617 pad += XDP_PACKET_HEADROOM;
1618 buflen += SKB_DATA_ALIGN(len + pad);
1619 rcu_read_unlock();
1620
1621 alloc_frag->offset = ALIGN((u64)alloc_frag->offset, SMP_CACHE_BYTES);
1622 if (unlikely(!skb_page_frag_refill(buflen, alloc_frag, GFP_KERNEL)))
1623 return ERR_PTR(-ENOMEM);
1624
1625 buf = (char *)page_address(alloc_frag->page) + alloc_frag->offset;
1626 copied = copy_page_from_iter(alloc_frag->page,
1627 alloc_frag->offset + pad,
1628 len, from);
1629 if (copied != len)
1630 return ERR_PTR(-EFAULT);
1631
1632 /* There's a small window that XDP may be set after the check
1633 * of xdp_prog above, this should be rare and for simplicity
1634 * we do XDP on skb in case the headroom is not enough.
1635 */
1636 if (hdr->gso_type || !xdp_prog) {
1637 *skb_xdp = 1;
1638 return __tun_build_skb(tfile, alloc_frag, buf, buflen, len,
1639 pad, metasize);
1640 }
1641
1642 *skb_xdp = 0;
1643
1644 local_bh_disable();
1645 rcu_read_lock();
1646 bpf_net_ctx = bpf_net_ctx_set(&__bpf_net_ctx);
1647 xdp_prog = rcu_dereference(tun->xdp_prog);
1648 if (xdp_prog) {
1649 struct xdp_buff xdp;
1650 u32 act;
1651
1652 xdp_init_buff(&xdp, buflen, &tfile->xdp_rxq);
1653 xdp_prepare_buff(&xdp, buf, pad, len, true);
1654
1655 act = bpf_prog_run_xdp(xdp_prog, &xdp);
1656 if (act == XDP_REDIRECT || act == XDP_TX) {
1657 get_page(alloc_frag->page);
1658 alloc_frag->offset += buflen;
1659 }
1660 err = tun_xdp_act(tun, xdp_prog, &xdp, act);
1661 if (err < 0) {
1662 if (act == XDP_REDIRECT || act == XDP_TX)
1663 put_page(alloc_frag->page);
1664 goto out;
1665 }
1666
1667 if (err == XDP_REDIRECT)
1668 xdp_do_flush();
1669 if (err != XDP_PASS)
1670 goto out;
1671
1672 pad = xdp.data - xdp.data_hard_start;
1673 len = xdp.data_end - xdp.data;
1674
1675 /* It is known that the xdp_buff was prepared with metadata
1676 * support, so the metasize will never be negative.
1677 */
1678 metasize = xdp.data - xdp.data_meta;
1679 }
1680 bpf_net_ctx_clear(bpf_net_ctx);
1681 rcu_read_unlock();
1682 local_bh_enable();
1683
1684 return __tun_build_skb(tfile, alloc_frag, buf, buflen, len, pad,
1685 metasize);
1686
1687 out:
1688 bpf_net_ctx_clear(bpf_net_ctx);
1689 rcu_read_unlock();
1690 local_bh_enable();
1691 return NULL;
1692 }
1693
1694 /* Get packet from user space buffer */
tun_get_user(struct tun_struct * tun,struct tun_file * tfile,void * msg_control,struct iov_iter * from,int noblock,bool more)1695 static ssize_t tun_get_user(struct tun_struct *tun, struct tun_file *tfile,
1696 void *msg_control, struct iov_iter *from,
1697 int noblock, bool more)
1698 {
1699 struct tun_pi pi = { 0, cpu_to_be16(ETH_P_IP) };
1700 struct sk_buff *skb;
1701 size_t total_len = iov_iter_count(from);
1702 size_t len = total_len, align = tun->align, linear;
1703 struct virtio_net_hdr_v1_hash_tunnel hdr;
1704 struct virtio_net_hdr *gso;
1705 int good_linear;
1706 int copylen;
1707 int hdr_len = 0;
1708 bool zerocopy = false;
1709 int err;
1710 u32 rxhash = 0;
1711 int skb_xdp = 1;
1712 bool frags = tun_napi_frags_enabled(tfile);
1713 enum skb_drop_reason drop_reason = SKB_DROP_REASON_NOT_SPECIFIED;
1714 netdev_features_t features = 0;
1715
1716 /*
1717 * Keep it easy and always zero the whole buffer, even if the
1718 * tunnel-related field will be touched only when the feature
1719 * is enabled and the hdr size id compatible.
1720 */
1721 memset(&hdr, 0, sizeof(hdr));
1722 gso = (struct virtio_net_hdr *)&hdr;
1723
1724 if (!(tun->flags & IFF_NO_PI)) {
1725 if (len < sizeof(pi))
1726 return -EINVAL;
1727 len -= sizeof(pi);
1728
1729 if (!copy_from_iter_full(&pi, sizeof(pi), from))
1730 return -EFAULT;
1731 }
1732
1733 if (tun->flags & IFF_VNET_HDR) {
1734 int vnet_hdr_sz = READ_ONCE(tun->vnet_hdr_sz);
1735
1736 features = tun_vnet_hdr_guest_features(vnet_hdr_sz);
1737 hdr_len = __tun_vnet_hdr_get(vnet_hdr_sz, tun->flags,
1738 features, from, gso);
1739 if (hdr_len < 0)
1740 return hdr_len;
1741
1742 len -= vnet_hdr_sz;
1743 }
1744
1745 if ((tun->flags & TUN_TYPE_MASK) == IFF_TAP) {
1746 align += NET_IP_ALIGN;
1747 if (unlikely(len < ETH_HLEN || (hdr_len && hdr_len < ETH_HLEN)))
1748 return -EINVAL;
1749 }
1750
1751 good_linear = SKB_MAX_HEAD(align);
1752
1753 if (msg_control) {
1754 struct iov_iter i = *from;
1755
1756 /* There are 256 bytes to be copied in skb, so there is
1757 * enough room for skb expand head in case it is used.
1758 * The rest of the buffer is mapped from userspace.
1759 */
1760 copylen = min(hdr_len ? hdr_len : GOODCOPY_LEN, good_linear);
1761 linear = copylen;
1762 iov_iter_advance(&i, copylen);
1763 if (iov_iter_npages(&i, INT_MAX) <= MAX_SKB_FRAGS)
1764 zerocopy = true;
1765 }
1766
1767 if (!frags && tun_can_build_skb(tun, tfile, len, noblock, zerocopy)) {
1768 /* For the packet that is not easy to be processed
1769 * (e.g gso or jumbo packet), we will do it at after
1770 * skb was created with generic XDP routine.
1771 */
1772 skb = tun_build_skb(tun, tfile, from, gso, len, &skb_xdp);
1773 err = PTR_ERR_OR_ZERO(skb);
1774 if (err)
1775 goto drop;
1776 if (!skb)
1777 return total_len;
1778 } else {
1779 if (!zerocopy) {
1780 copylen = len;
1781 linear = min(hdr_len, good_linear);
1782 }
1783
1784 if (frags) {
1785 mutex_lock(&tfile->napi_mutex);
1786 skb = tun_napi_alloc_frags(tfile, copylen, from);
1787 /* tun_napi_alloc_frags() enforces a layout for the skb.
1788 * If zerocopy is enabled, then this layout will be
1789 * overwritten by zerocopy_sg_from_iter().
1790 */
1791 zerocopy = false;
1792 } else {
1793 if (!linear)
1794 linear = min_t(size_t, good_linear, copylen);
1795
1796 skb = tun_alloc_skb(tfile, align, copylen, linear,
1797 noblock);
1798 }
1799
1800 err = PTR_ERR_OR_ZERO(skb);
1801 if (err)
1802 goto drop;
1803
1804 if (zerocopy)
1805 err = zerocopy_sg_from_iter(skb, from);
1806 else
1807 err = skb_copy_datagram_from_iter(skb, 0, from, len);
1808
1809 if (err) {
1810 err = -EFAULT;
1811 drop_reason = SKB_DROP_REASON_SKB_UCOPY_FAULT;
1812 goto drop;
1813 }
1814 }
1815
1816 if (tun_vnet_hdr_tnl_to_skb(tun->flags, features, skb, &hdr)) {
1817 atomic_long_inc(&tun->rx_frame_errors);
1818 err = -EINVAL;
1819 goto free_skb;
1820 }
1821
1822 switch (tun->flags & TUN_TYPE_MASK) {
1823 case IFF_TUN:
1824 if (tun->flags & IFF_NO_PI) {
1825 u8 ip_version = skb->len ? (skb->data[0] >> 4) : 0;
1826
1827 switch (ip_version) {
1828 case 4:
1829 pi.proto = htons(ETH_P_IP);
1830 break;
1831 case 6:
1832 pi.proto = htons(ETH_P_IPV6);
1833 break;
1834 default:
1835 err = -EINVAL;
1836 goto drop;
1837 }
1838 }
1839
1840 skb_reset_mac_header(skb);
1841 skb->protocol = pi.proto;
1842 skb->dev = tun->dev;
1843 break;
1844 case IFF_TAP:
1845 if (frags && !pskb_may_pull(skb, ETH_HLEN)) {
1846 err = -ENOMEM;
1847 drop_reason = SKB_DROP_REASON_HDR_TRUNC;
1848 goto drop;
1849 }
1850 skb->protocol = eth_type_trans(skb, tun->dev);
1851 break;
1852 }
1853
1854 /* copy skb_ubuf_info for callback when skb has no error */
1855 if (zerocopy) {
1856 skb_zcopy_init(skb, msg_control);
1857 } else if (msg_control) {
1858 struct ubuf_info *uarg = msg_control;
1859 uarg->ops->complete(NULL, uarg, false);
1860 }
1861
1862 skb_reset_network_header(skb);
1863 skb_probe_transport_header(skb);
1864 skb_record_rx_queue(skb, tfile->queue_index);
1865
1866 if (skb_xdp) {
1867 struct bpf_prog *xdp_prog;
1868 int ret;
1869
1870 local_bh_disable();
1871 rcu_read_lock();
1872 xdp_prog = rcu_dereference(tun->xdp_prog);
1873 if (xdp_prog) {
1874 ret = do_xdp_generic(xdp_prog, &skb);
1875 if (ret != XDP_PASS) {
1876 rcu_read_unlock();
1877 local_bh_enable();
1878 goto unlock_frags;
1879 }
1880
1881 if (frags && skb != tfile->napi.skb)
1882 tfile->napi.skb = skb;
1883 }
1884 rcu_read_unlock();
1885 local_bh_enable();
1886 }
1887
1888 /* Compute the costly rx hash only if needed for flow updates.
1889 * We may get a very small possibility of OOO during switching, not
1890 * worth to optimize.
1891 */
1892 if (!rcu_access_pointer(tun->steering_prog) && tun->numqueues > 1 &&
1893 !tfile->detached)
1894 rxhash = __skb_get_hash_symmetric(skb);
1895
1896 rcu_read_lock();
1897 if (unlikely(!(tun->dev->flags & IFF_UP))) {
1898 err = -EIO;
1899 rcu_read_unlock();
1900 drop_reason = SKB_DROP_REASON_DEV_READY;
1901 goto drop;
1902 }
1903
1904 if (frags) {
1905 u32 headlen;
1906
1907 /* Exercise flow dissector code path. */
1908 skb_push(skb, ETH_HLEN);
1909 headlen = eth_get_headlen(tun->dev, skb->data,
1910 skb_headlen(skb));
1911
1912 if (unlikely(headlen > skb_headlen(skb))) {
1913 WARN_ON_ONCE(1);
1914 err = -ENOMEM;
1915 dev_core_stats_rx_dropped_inc(tun->dev);
1916 napi_busy:
1917 napi_free_frags(&tfile->napi);
1918 rcu_read_unlock();
1919 mutex_unlock(&tfile->napi_mutex);
1920 return err;
1921 }
1922
1923 if (likely(napi_schedule_prep(&tfile->napi))) {
1924 local_bh_disable();
1925 napi_gro_frags(&tfile->napi);
1926 napi_complete(&tfile->napi);
1927 local_bh_enable();
1928 } else {
1929 err = -EBUSY;
1930 goto napi_busy;
1931 }
1932 mutex_unlock(&tfile->napi_mutex);
1933 } else if (tfile->napi_enabled) {
1934 struct sk_buff_head *queue = &tfile->sk.sk_write_queue;
1935 int queue_len;
1936
1937 spin_lock_bh(&queue->lock);
1938
1939 if (unlikely(tfile->detached)) {
1940 spin_unlock_bh(&queue->lock);
1941 rcu_read_unlock();
1942 err = -EBUSY;
1943 goto free_skb;
1944 }
1945
1946 __skb_queue_tail(queue, skb);
1947 queue_len = skb_queue_len(queue);
1948 spin_unlock(&queue->lock);
1949
1950 if (!more || queue_len > NAPI_POLL_WEIGHT)
1951 napi_schedule(&tfile->napi);
1952
1953 local_bh_enable();
1954 } else if (!IS_ENABLED(CONFIG_4KSTACKS)) {
1955 tun_rx_batched(tun, tfile, skb, more);
1956 } else {
1957 netif_rx(skb);
1958 }
1959 rcu_read_unlock();
1960
1961 preempt_disable();
1962 dev_sw_netstats_rx_add(tun->dev, len);
1963 preempt_enable();
1964
1965 if (rxhash)
1966 tun_flow_update(tun, rxhash, tfile);
1967
1968 return total_len;
1969
1970 drop:
1971 if (err != -EAGAIN)
1972 dev_core_stats_rx_dropped_inc(tun->dev);
1973
1974 free_skb:
1975 if (!IS_ERR_OR_NULL(skb))
1976 kfree_skb_reason(skb, drop_reason);
1977
1978 unlock_frags:
1979 if (frags) {
1980 tfile->napi.skb = NULL;
1981 mutex_unlock(&tfile->napi_mutex);
1982 }
1983
1984 return err ?: total_len;
1985 }
1986
tun_chr_write_iter(struct kiocb * iocb,struct iov_iter * from)1987 static ssize_t tun_chr_write_iter(struct kiocb *iocb, struct iov_iter *from)
1988 {
1989 struct file *file = iocb->ki_filp;
1990 struct tun_file *tfile = file->private_data;
1991 struct tun_struct *tun = tun_get(tfile);
1992 ssize_t result;
1993 int noblock = 0;
1994
1995 if (!tun)
1996 return -EBADFD;
1997
1998 if ((file->f_flags & O_NONBLOCK) || (iocb->ki_flags & IOCB_NOWAIT))
1999 noblock = 1;
2000
2001 result = tun_get_user(tun, tfile, NULL, from, noblock, false);
2002
2003 tun_put(tun);
2004 return result;
2005 }
2006
tun_put_user_xdp(struct tun_struct * tun,struct tun_file * tfile,struct xdp_frame * xdp_frame,struct iov_iter * iter)2007 static ssize_t tun_put_user_xdp(struct tun_struct *tun,
2008 struct tun_file *tfile,
2009 struct xdp_frame *xdp_frame,
2010 struct iov_iter *iter)
2011 {
2012 int vnet_hdr_sz = 0;
2013 size_t size = xdp_frame->len;
2014 ssize_t ret;
2015
2016 if (tun->flags & IFF_VNET_HDR) {
2017 struct virtio_net_hdr gso = { 0 };
2018
2019 vnet_hdr_sz = READ_ONCE(tun->vnet_hdr_sz);
2020 ret = tun_vnet_hdr_put(vnet_hdr_sz, iter, &gso);
2021 if (ret)
2022 return ret;
2023 }
2024
2025 ret = copy_to_iter(xdp_frame->data, size, iter) + vnet_hdr_sz;
2026
2027 preempt_disable();
2028 dev_sw_netstats_tx_add(tun->dev, 1, ret);
2029 preempt_enable();
2030
2031 return ret;
2032 }
2033
2034 /* Put packet to the user space buffer */
tun_put_user(struct tun_struct * tun,struct tun_file * tfile,struct sk_buff * skb,struct iov_iter * iter)2035 static ssize_t tun_put_user(struct tun_struct *tun,
2036 struct tun_file *tfile,
2037 struct sk_buff *skb,
2038 struct iov_iter *iter)
2039 {
2040 struct tun_pi pi = { 0, skb->protocol };
2041 ssize_t total;
2042 int vlan_offset = 0;
2043 int vlan_hlen = 0;
2044 int vnet_hdr_sz = 0;
2045 int ret;
2046
2047 if (skb_vlan_tag_present(skb))
2048 vlan_hlen = VLAN_HLEN;
2049
2050 if (tun->flags & IFF_VNET_HDR)
2051 vnet_hdr_sz = READ_ONCE(tun->vnet_hdr_sz);
2052
2053 total = skb->len + vlan_hlen + vnet_hdr_sz;
2054
2055 if (!(tun->flags & IFF_NO_PI)) {
2056 if (iov_iter_count(iter) < sizeof(pi))
2057 return -EINVAL;
2058
2059 total += sizeof(pi);
2060 if (iov_iter_count(iter) < total) {
2061 /* Packet will be striped */
2062 pi.flags |= TUN_PKT_STRIP;
2063 }
2064
2065 if (copy_to_iter(&pi, sizeof(pi), iter) != sizeof(pi))
2066 return -EFAULT;
2067 }
2068
2069 if (vnet_hdr_sz) {
2070 struct virtio_net_hdr_v1_hash_tunnel hdr;
2071 struct virtio_net_hdr *gso;
2072
2073 ret = tun_vnet_hdr_tnl_from_skb(tun->flags, tun->dev, skb,
2074 &hdr);
2075 if (ret)
2076 return ret;
2077
2078 /*
2079 * Drop the packet if the configured header size is too small
2080 * WRT the enabled offloads.
2081 */
2082 gso = (struct virtio_net_hdr *)&hdr;
2083 ret = __tun_vnet_hdr_put(vnet_hdr_sz, tun->dev->features,
2084 iter, gso);
2085 if (ret)
2086 return ret;
2087 }
2088
2089 if (vlan_hlen) {
2090 int ret;
2091 struct veth veth;
2092
2093 veth.h_vlan_proto = skb->vlan_proto;
2094 veth.h_vlan_TCI = htons(skb_vlan_tag_get(skb));
2095
2096 vlan_offset = offsetof(struct vlan_ethhdr, h_vlan_proto);
2097
2098 ret = skb_copy_datagram_iter(skb, 0, iter, vlan_offset);
2099 if (ret || !iov_iter_count(iter))
2100 goto done;
2101
2102 ret = copy_to_iter(&veth, sizeof(veth), iter);
2103 if (ret != sizeof(veth) || !iov_iter_count(iter))
2104 goto done;
2105 }
2106
2107 skb_copy_datagram_iter(skb, vlan_offset, iter, skb->len - vlan_offset);
2108
2109 done:
2110 /* caller is in process context, */
2111 preempt_disable();
2112 dev_sw_netstats_tx_add(tun->dev, 1, skb->len + vlan_hlen);
2113 preempt_enable();
2114
2115 return total;
2116 }
2117
tun_ring_recv(struct tun_file * tfile,int noblock,int * err)2118 static void *tun_ring_recv(struct tun_file *tfile, int noblock, int *err)
2119 {
2120 DECLARE_WAITQUEUE(wait, current);
2121 void *ptr = NULL;
2122 int error = 0;
2123
2124 ptr = ptr_ring_consume(&tfile->tx_ring);
2125 if (ptr)
2126 goto out;
2127 if (noblock) {
2128 error = -EAGAIN;
2129 goto out;
2130 }
2131
2132 add_wait_queue(&tfile->socket.wq.wait, &wait);
2133
2134 while (1) {
2135 set_current_state(TASK_INTERRUPTIBLE);
2136 ptr = ptr_ring_consume(&tfile->tx_ring);
2137 if (ptr)
2138 break;
2139 if (signal_pending(current)) {
2140 error = -ERESTARTSYS;
2141 break;
2142 }
2143 if (tfile->socket.sk->sk_shutdown & RCV_SHUTDOWN) {
2144 error = -EFAULT;
2145 break;
2146 }
2147
2148 schedule();
2149 }
2150
2151 __set_current_state(TASK_RUNNING);
2152 remove_wait_queue(&tfile->socket.wq.wait, &wait);
2153
2154 out:
2155 *err = error;
2156 return ptr;
2157 }
2158
tun_do_read(struct tun_struct * tun,struct tun_file * tfile,struct iov_iter * to,int noblock,void * ptr)2159 static ssize_t tun_do_read(struct tun_struct *tun, struct tun_file *tfile,
2160 struct iov_iter *to,
2161 int noblock, void *ptr)
2162 {
2163 ssize_t ret;
2164 int err;
2165
2166 if (!iov_iter_count(to)) {
2167 tun_ptr_free(ptr);
2168 return 0;
2169 }
2170
2171 if (!ptr) {
2172 /* Read frames from ring */
2173 ptr = tun_ring_recv(tfile, noblock, &err);
2174 if (!ptr)
2175 return err;
2176 }
2177
2178 if (tun_is_xdp_frame(ptr)) {
2179 struct xdp_frame *xdpf = tun_ptr_to_xdp(ptr);
2180
2181 ret = tun_put_user_xdp(tun, tfile, xdpf, to);
2182 xdp_return_frame(xdpf);
2183 } else {
2184 struct sk_buff *skb = ptr;
2185
2186 ret = tun_put_user(tun, tfile, skb, to);
2187 if (unlikely(ret < 0))
2188 kfree_skb(skb);
2189 else
2190 consume_skb(skb);
2191 }
2192
2193 return ret;
2194 }
2195
tun_chr_read_iter(struct kiocb * iocb,struct iov_iter * to)2196 static ssize_t tun_chr_read_iter(struct kiocb *iocb, struct iov_iter *to)
2197 {
2198 struct file *file = iocb->ki_filp;
2199 struct tun_file *tfile = file->private_data;
2200 struct tun_struct *tun = tun_get(tfile);
2201 ssize_t len = iov_iter_count(to), ret;
2202 int noblock = 0;
2203
2204 if (!tun)
2205 return -EBADFD;
2206
2207 if ((file->f_flags & O_NONBLOCK) || (iocb->ki_flags & IOCB_NOWAIT))
2208 noblock = 1;
2209
2210 ret = tun_do_read(tun, tfile, to, noblock, NULL);
2211 ret = min_t(ssize_t, ret, len);
2212 if (ret > 0)
2213 iocb->ki_pos = ret;
2214 tun_put(tun);
2215 return ret;
2216 }
2217
tun_prog_free(struct rcu_head * rcu)2218 static void tun_prog_free(struct rcu_head *rcu)
2219 {
2220 struct tun_prog *prog = container_of(rcu, struct tun_prog, rcu);
2221
2222 bpf_prog_destroy(prog->prog);
2223 kfree(prog);
2224 }
2225
__tun_set_ebpf(struct tun_struct * tun,struct tun_prog __rcu ** prog_p,struct bpf_prog * prog)2226 static int __tun_set_ebpf(struct tun_struct *tun,
2227 struct tun_prog __rcu **prog_p,
2228 struct bpf_prog *prog)
2229 {
2230 struct tun_prog *old, *new = NULL;
2231
2232 if (prog) {
2233 new = kmalloc_obj(*new);
2234 if (!new)
2235 return -ENOMEM;
2236 new->prog = prog;
2237 }
2238
2239 spin_lock_bh(&tun->lock);
2240 old = rcu_dereference_protected(*prog_p,
2241 lockdep_is_held(&tun->lock));
2242 rcu_assign_pointer(*prog_p, new);
2243 spin_unlock_bh(&tun->lock);
2244
2245 if (old)
2246 call_rcu(&old->rcu, tun_prog_free);
2247
2248 return 0;
2249 }
2250
tun_free_netdev(struct net_device * dev)2251 static void tun_free_netdev(struct net_device *dev)
2252 {
2253 struct tun_struct *tun = netdev_priv(dev);
2254
2255 BUG_ON(!(list_empty(&tun->disabled)));
2256
2257 tun_flow_uninit(tun);
2258 security_tun_dev_free_security(tun->security);
2259 __tun_set_ebpf(tun, &tun->steering_prog, NULL);
2260 __tun_set_ebpf(tun, &tun->filter_prog, NULL);
2261 }
2262
tun_setup(struct net_device * dev)2263 static void tun_setup(struct net_device *dev)
2264 {
2265 struct tun_struct *tun = netdev_priv(dev);
2266
2267 tun->owner = INVALID_UID;
2268 tun->group = INVALID_GID;
2269 tun_default_link_ksettings(dev, &tun->link_ksettings);
2270
2271 dev->ethtool_ops = &tun_ethtool_ops;
2272 dev->needs_free_netdev = true;
2273 dev->priv_destructor = tun_free_netdev;
2274 /* We prefer our own queue length */
2275 dev->tx_queue_len = TUN_READQ_SIZE;
2276 }
2277
2278 /* Trivial set of netlink ops to allow deleting tun or tap
2279 * device with netlink.
2280 */
tun_validate(struct nlattr * tb[],struct nlattr * data[],struct netlink_ext_ack * extack)2281 static int tun_validate(struct nlattr *tb[], struct nlattr *data[],
2282 struct netlink_ext_ack *extack)
2283 {
2284 NL_SET_ERR_MSG(extack,
2285 "tun/tap creation via rtnetlink is not supported.");
2286 return -EOPNOTSUPP;
2287 }
2288
tun_get_size(const struct net_device * dev)2289 static size_t tun_get_size(const struct net_device *dev)
2290 {
2291 BUILD_BUG_ON(sizeof(u32) != sizeof(uid_t));
2292 BUILD_BUG_ON(sizeof(u32) != sizeof(gid_t));
2293
2294 return nla_total_size(sizeof(uid_t)) + /* OWNER */
2295 nla_total_size(sizeof(gid_t)) + /* GROUP */
2296 nla_total_size(sizeof(u8)) + /* TYPE */
2297 nla_total_size(sizeof(u8)) + /* PI */
2298 nla_total_size(sizeof(u8)) + /* VNET_HDR */
2299 nla_total_size(sizeof(u8)) + /* PERSIST */
2300 nla_total_size(sizeof(u8)) + /* MULTI_QUEUE */
2301 nla_total_size(sizeof(u32)) + /* NUM_QUEUES */
2302 nla_total_size(sizeof(u32)) + /* NUM_DISABLED_QUEUES */
2303 0;
2304 }
2305
tun_fill_info(struct sk_buff * skb,const struct net_device * dev)2306 static int tun_fill_info(struct sk_buff *skb, const struct net_device *dev)
2307 {
2308 struct tun_struct *tun = netdev_priv(dev);
2309
2310 if (nla_put_u8(skb, IFLA_TUN_TYPE, tun->flags & TUN_TYPE_MASK))
2311 goto nla_put_failure;
2312 if (uid_valid(tun->owner) &&
2313 nla_put_u32(skb, IFLA_TUN_OWNER,
2314 from_kuid_munged(current_user_ns(), tun->owner)))
2315 goto nla_put_failure;
2316 if (gid_valid(tun->group) &&
2317 nla_put_u32(skb, IFLA_TUN_GROUP,
2318 from_kgid_munged(current_user_ns(), tun->group)))
2319 goto nla_put_failure;
2320 if (nla_put_u8(skb, IFLA_TUN_PI, !(tun->flags & IFF_NO_PI)))
2321 goto nla_put_failure;
2322 if (nla_put_u8(skb, IFLA_TUN_VNET_HDR, !!(tun->flags & IFF_VNET_HDR)))
2323 goto nla_put_failure;
2324 if (nla_put_u8(skb, IFLA_TUN_PERSIST, !!(tun->flags & IFF_PERSIST)))
2325 goto nla_put_failure;
2326 if (nla_put_u8(skb, IFLA_TUN_MULTI_QUEUE,
2327 !!(tun->flags & IFF_MULTI_QUEUE)))
2328 goto nla_put_failure;
2329 if (tun->flags & IFF_MULTI_QUEUE) {
2330 if (nla_put_u32(skb, IFLA_TUN_NUM_QUEUES, tun->numqueues))
2331 goto nla_put_failure;
2332 if (nla_put_u32(skb, IFLA_TUN_NUM_DISABLED_QUEUES,
2333 tun->numdisabled))
2334 goto nla_put_failure;
2335 }
2336
2337 return 0;
2338
2339 nla_put_failure:
2340 return -EMSGSIZE;
2341 }
2342
2343 static struct rtnl_link_ops tun_link_ops __read_mostly = {
2344 .kind = DRV_NAME,
2345 .priv_size = sizeof(struct tun_struct),
2346 .setup = tun_setup,
2347 .validate = tun_validate,
2348 .get_size = tun_get_size,
2349 .fill_info = tun_fill_info,
2350 };
2351
tun_sock_write_space(struct sock * sk)2352 static void tun_sock_write_space(struct sock *sk)
2353 {
2354 struct tun_file *tfile;
2355 wait_queue_head_t *wqueue;
2356
2357 if (!sock_writeable(sk))
2358 return;
2359
2360 if (!test_and_clear_bit(SOCKWQ_ASYNC_NOSPACE, &sk->sk_socket->flags))
2361 return;
2362
2363 wqueue = sk_sleep(sk);
2364 if (wqueue && waitqueue_active(wqueue))
2365 wake_up_interruptible_sync_poll(wqueue, EPOLLOUT |
2366 EPOLLWRNORM | EPOLLWRBAND);
2367
2368 tfile = container_of(sk, struct tun_file, sk);
2369 kill_fasync(&tfile->fasync, SIGIO, POLL_OUT);
2370 }
2371
tun_put_page(struct tun_page * tpage)2372 static void tun_put_page(struct tun_page *tpage)
2373 {
2374 if (tpage->page)
2375 __page_frag_cache_drain(tpage->page, tpage->count);
2376 }
2377
tun_xdp_one(struct tun_struct * tun,struct tun_file * tfile,struct xdp_buff * xdp,int * flush,struct tun_page * tpage)2378 static int tun_xdp_one(struct tun_struct *tun,
2379 struct tun_file *tfile,
2380 struct xdp_buff *xdp, int *flush,
2381 struct tun_page *tpage)
2382 {
2383 unsigned int datasize = xdp->data_end - xdp->data;
2384 struct virtio_net_hdr *gso = xdp->data_hard_start;
2385 struct virtio_net_hdr_v1_hash_tunnel *tnl_hdr;
2386 struct bpf_prog *xdp_prog;
2387 struct sk_buff *skb = NULL;
2388 struct sk_buff_head *queue;
2389 netdev_features_t features;
2390 u32 rxhash = 0, act;
2391 int buflen = xdp->frame_sz;
2392 int metasize = 0;
2393 int ret = 0;
2394 bool skb_xdp = false;
2395 struct page *page;
2396
2397 if (unlikely(datasize < ETH_HLEN)) {
2398 put_page(virt_to_head_page(xdp->data));
2399 return -EINVAL;
2400 }
2401
2402 xdp_prog = rcu_dereference(tun->xdp_prog);
2403 if (xdp_prog) {
2404 if (gso->gso_type) {
2405 skb_xdp = true;
2406 goto build;
2407 }
2408
2409 xdp_init_buff(xdp, buflen, &tfile->xdp_rxq);
2410
2411 act = bpf_prog_run_xdp(xdp_prog, xdp);
2412 ret = tun_xdp_act(tun, xdp_prog, xdp, act);
2413 if (ret < 0) {
2414 put_page(virt_to_head_page(xdp->data));
2415 return ret;
2416 }
2417
2418 switch (ret) {
2419 case XDP_REDIRECT:
2420 *flush = true;
2421 fallthrough;
2422 case XDP_TX:
2423 return 0;
2424 case XDP_PASS:
2425 break;
2426 default:
2427 page = virt_to_head_page(xdp->data);
2428 if (tpage->page == page) {
2429 ++tpage->count;
2430 } else {
2431 tun_put_page(tpage);
2432 tpage->page = page;
2433 tpage->count = 1;
2434 }
2435 return 0;
2436 }
2437 }
2438
2439 build:
2440 skb = build_skb(xdp->data_hard_start, buflen);
2441 if (!skb) {
2442 put_page(virt_to_head_page(xdp->data));
2443 ret = -ENOMEM;
2444 goto out;
2445 }
2446
2447 skb_reserve(skb, xdp->data - xdp->data_hard_start);
2448 skb_put(skb, xdp->data_end - xdp->data);
2449
2450 /* The externally provided xdp_buff may have no metadata support, which
2451 * is marked by xdp->data_meta being xdp->data + 1. This will lead to a
2452 * metasize of -1 and is the reason why the condition checks for > 0.
2453 */
2454 metasize = xdp->data - xdp->data_meta;
2455 if (metasize > 0)
2456 skb_metadata_set(skb, metasize);
2457
2458 features = tun_vnet_hdr_guest_features(READ_ONCE(tun->vnet_hdr_sz));
2459 tnl_hdr = (struct virtio_net_hdr_v1_hash_tunnel *)gso;
2460 if (tun_vnet_hdr_tnl_to_skb(tun->flags, features, skb, tnl_hdr)) {
2461 atomic_long_inc(&tun->rx_frame_errors);
2462 kfree_skb(skb);
2463 ret = -EINVAL;
2464 goto out;
2465 }
2466
2467 skb->protocol = eth_type_trans(skb, tun->dev);
2468 skb_reset_network_header(skb);
2469 skb_probe_transport_header(skb);
2470 skb_record_rx_queue(skb, tfile->queue_index);
2471
2472 if (skb_xdp) {
2473 ret = do_xdp_generic(xdp_prog, &skb);
2474 if (ret != XDP_PASS) {
2475 ret = 0;
2476 goto out;
2477 }
2478 }
2479
2480 if (!rcu_dereference(tun->steering_prog) && tun->numqueues > 1 &&
2481 !tfile->detached)
2482 rxhash = __skb_get_hash_symmetric(skb);
2483
2484 if (tfile->napi_enabled) {
2485 queue = &tfile->sk.sk_write_queue;
2486 spin_lock(&queue->lock);
2487
2488 if (unlikely(tfile->detached)) {
2489 spin_unlock(&queue->lock);
2490 kfree_skb(skb);
2491 return -EBUSY;
2492 }
2493
2494 __skb_queue_tail(queue, skb);
2495 spin_unlock(&queue->lock);
2496 ret = 1;
2497 } else {
2498 netif_receive_skb(skb);
2499 ret = 0;
2500 }
2501
2502 /* No need to disable preemption here since this function is
2503 * always called with bh disabled
2504 */
2505 dev_sw_netstats_rx_add(tun->dev, datasize);
2506
2507 if (rxhash)
2508 tun_flow_update(tun, rxhash, tfile);
2509
2510 out:
2511 return ret;
2512 }
2513
tun_sendmsg(struct socket * sock,struct msghdr * m,size_t total_len)2514 static int tun_sendmsg(struct socket *sock, struct msghdr *m, size_t total_len)
2515 {
2516 int ret, i;
2517 struct tun_file *tfile = container_of(sock, struct tun_file, socket);
2518 struct tun_struct *tun = tun_get(tfile);
2519 struct tun_msg_ctl *ctl = m->msg_control;
2520 struct xdp_buff *xdp;
2521
2522 if (!tun)
2523 return -EBADFD;
2524
2525 if (m->msg_controllen == sizeof(struct tun_msg_ctl) &&
2526 ctl && ctl->type == TUN_MSG_PTR) {
2527 struct bpf_net_context __bpf_net_ctx, *bpf_net_ctx;
2528 struct tun_page tpage;
2529 int n = ctl->num;
2530 int flush = 0, queued = 0;
2531
2532 memset(&tpage, 0, sizeof(tpage));
2533
2534 local_bh_disable();
2535 rcu_read_lock();
2536 bpf_net_ctx = bpf_net_ctx_set(&__bpf_net_ctx);
2537
2538 for (i = 0; i < n; i++) {
2539 xdp = &((struct xdp_buff *)ctl->ptr)[i];
2540 ret = tun_xdp_one(tun, tfile, xdp, &flush, &tpage);
2541 if (ret > 0)
2542 queued += ret;
2543 }
2544
2545 if (flush)
2546 xdp_do_flush();
2547
2548 if (tfile->napi_enabled && queued > 0)
2549 napi_schedule(&tfile->napi);
2550
2551 bpf_net_ctx_clear(bpf_net_ctx);
2552 rcu_read_unlock();
2553 local_bh_enable();
2554
2555 tun_put_page(&tpage);
2556
2557 ret = total_len;
2558 goto out;
2559 }
2560
2561 ret = tun_get_user(tun, tfile, ctl ? ctl->ptr : NULL, &m->msg_iter,
2562 m->msg_flags & MSG_DONTWAIT,
2563 m->msg_flags & MSG_MORE);
2564 out:
2565 tun_put(tun);
2566 return ret;
2567 }
2568
tun_recvmsg(struct socket * sock,struct msghdr * m,size_t total_len,int flags)2569 static int tun_recvmsg(struct socket *sock, struct msghdr *m, size_t total_len,
2570 int flags)
2571 {
2572 struct tun_file *tfile = container_of(sock, struct tun_file, socket);
2573 struct tun_struct *tun = tun_get(tfile);
2574 void *ptr = m->msg_control;
2575 int ret;
2576
2577 if (!tun) {
2578 ret = -EBADFD;
2579 goto out_free;
2580 }
2581
2582 if (flags & ~(MSG_DONTWAIT|MSG_TRUNC|MSG_ERRQUEUE)) {
2583 ret = -EINVAL;
2584 goto out_put_tun;
2585 }
2586 if (flags & MSG_ERRQUEUE) {
2587 ret = sock_recv_errqueue(sock->sk, m, total_len,
2588 SOL_PACKET, TUN_TX_TIMESTAMP);
2589 goto out;
2590 }
2591 ret = tun_do_read(tun, tfile, &m->msg_iter, flags & MSG_DONTWAIT, ptr);
2592 if (ret > (ssize_t)total_len) {
2593 m->msg_flags |= MSG_TRUNC;
2594 ret = flags & MSG_TRUNC ? ret : total_len;
2595 }
2596 out:
2597 tun_put(tun);
2598 return ret;
2599
2600 out_put_tun:
2601 tun_put(tun);
2602 out_free:
2603 tun_ptr_free(ptr);
2604 return ret;
2605 }
2606
tun_ptr_peek_len(void * ptr)2607 static int tun_ptr_peek_len(void *ptr)
2608 {
2609 if (likely(ptr)) {
2610 if (tun_is_xdp_frame(ptr)) {
2611 struct xdp_frame *xdpf = tun_ptr_to_xdp(ptr);
2612
2613 return xdpf->len;
2614 }
2615 return __skb_array_len_with_tag(ptr);
2616 } else {
2617 return 0;
2618 }
2619 }
2620
tun_peek_len(struct socket * sock)2621 static int tun_peek_len(struct socket *sock)
2622 {
2623 struct tun_file *tfile = container_of(sock, struct tun_file, socket);
2624 struct tun_struct *tun;
2625 int ret = 0;
2626
2627 tun = tun_get(tfile);
2628 if (!tun)
2629 return 0;
2630
2631 ret = PTR_RING_PEEK_CALL(&tfile->tx_ring, tun_ptr_peek_len);
2632 tun_put(tun);
2633
2634 return ret;
2635 }
2636
2637 /* Ops structure to mimic raw sockets with tun */
2638 static const struct proto_ops tun_socket_ops = {
2639 .peek_len = tun_peek_len,
2640 .sendmsg = tun_sendmsg,
2641 .recvmsg = tun_recvmsg,
2642 };
2643
2644 static struct proto tun_proto = {
2645 .name = "tun",
2646 .owner = THIS_MODULE,
2647 .obj_size = sizeof(struct tun_file),
2648 };
2649
tun_flags(struct tun_struct * tun)2650 static int tun_flags(struct tun_struct *tun)
2651 {
2652 return tun->flags & (TUN_FEATURES | IFF_PERSIST | IFF_TUN | IFF_TAP);
2653 }
2654
tun_flags_show(struct device * dev,struct device_attribute * attr,char * buf)2655 static ssize_t tun_flags_show(struct device *dev, struct device_attribute *attr,
2656 char *buf)
2657 {
2658 struct tun_struct *tun = netdev_priv(to_net_dev(dev));
2659 return sysfs_emit(buf, "0x%x\n", tun_flags(tun));
2660 }
2661
owner_show(struct device * dev,struct device_attribute * attr,char * buf)2662 static ssize_t owner_show(struct device *dev, struct device_attribute *attr,
2663 char *buf)
2664 {
2665 struct tun_struct *tun = netdev_priv(to_net_dev(dev));
2666 return uid_valid(tun->owner)?
2667 sysfs_emit(buf, "%u\n",
2668 from_kuid_munged(current_user_ns(), tun->owner)) :
2669 sysfs_emit(buf, "-1\n");
2670 }
2671
group_show(struct device * dev,struct device_attribute * attr,char * buf)2672 static ssize_t group_show(struct device *dev, struct device_attribute *attr,
2673 char *buf)
2674 {
2675 struct tun_struct *tun = netdev_priv(to_net_dev(dev));
2676 return gid_valid(tun->group) ?
2677 sysfs_emit(buf, "%u\n",
2678 from_kgid_munged(current_user_ns(), tun->group)) :
2679 sysfs_emit(buf, "-1\n");
2680 }
2681
2682 static DEVICE_ATTR_RO(tun_flags);
2683 static DEVICE_ATTR_RO(owner);
2684 static DEVICE_ATTR_RO(group);
2685
2686 static struct attribute *tun_dev_attrs[] = {
2687 &dev_attr_tun_flags.attr,
2688 &dev_attr_owner.attr,
2689 &dev_attr_group.attr,
2690 NULL
2691 };
2692
2693 static const struct attribute_group tun_attr_group = {
2694 .attrs = tun_dev_attrs
2695 };
2696
tun_set_iff(struct net * net,struct file * file,struct ifreq * ifr)2697 static int tun_set_iff(struct net *net, struct file *file, struct ifreq *ifr)
2698 {
2699 struct tun_struct *tun;
2700 struct tun_file *tfile = file->private_data;
2701 struct net_device *dev;
2702 int err;
2703
2704 if (tfile->detached)
2705 return -EINVAL;
2706
2707 if ((ifr->ifr_flags & IFF_NAPI_FRAGS)) {
2708 if (!capable(CAP_NET_ADMIN))
2709 return -EPERM;
2710
2711 if (!(ifr->ifr_flags & IFF_NAPI) ||
2712 (ifr->ifr_flags & TUN_TYPE_MASK) != IFF_TAP)
2713 return -EINVAL;
2714 }
2715
2716 dev = __dev_get_by_name(net, ifr->ifr_name);
2717 if (dev) {
2718 if (ifr->ifr_flags & IFF_TUN_EXCL)
2719 return -EBUSY;
2720 if ((ifr->ifr_flags & IFF_TUN) && dev->netdev_ops == &tun_netdev_ops)
2721 tun = netdev_priv(dev);
2722 else if ((ifr->ifr_flags & IFF_TAP) && dev->netdev_ops == &tap_netdev_ops)
2723 tun = netdev_priv(dev);
2724 else
2725 return -EINVAL;
2726
2727 if (!!(ifr->ifr_flags & IFF_MULTI_QUEUE) !=
2728 !!(tun->flags & IFF_MULTI_QUEUE))
2729 return -EINVAL;
2730
2731 if (tun_not_capable(tun))
2732 return -EPERM;
2733 err = security_tun_dev_open(tun->security);
2734 if (err < 0)
2735 return err;
2736
2737 err = tun_attach(tun, file, ifr->ifr_flags & IFF_NOFILTER,
2738 ifr->ifr_flags & IFF_NAPI,
2739 ifr->ifr_flags & IFF_NAPI_FRAGS, true);
2740 if (err < 0)
2741 return err;
2742
2743 if (tun->flags & IFF_MULTI_QUEUE &&
2744 (tun->numqueues + tun->numdisabled > 1)) {
2745 /* One or more queue has already been attached, no need
2746 * to initialize the device again.
2747 */
2748 netdev_state_change(dev);
2749 return 0;
2750 }
2751
2752 tun->flags = (tun->flags & ~TUN_FEATURES) |
2753 (ifr->ifr_flags & TUN_FEATURES);
2754
2755 netdev_state_change(dev);
2756 } else {
2757 char *name;
2758 unsigned long flags = 0;
2759 int queues = ifr->ifr_flags & IFF_MULTI_QUEUE ?
2760 MAX_TAP_QUEUES : 1;
2761
2762 if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
2763 return -EPERM;
2764 err = security_tun_dev_create();
2765 if (err < 0)
2766 return err;
2767
2768 /* Set dev type */
2769 if (ifr->ifr_flags & IFF_TUN) {
2770 /* TUN device */
2771 flags |= IFF_TUN;
2772 name = "tun%d";
2773 } else if (ifr->ifr_flags & IFF_TAP) {
2774 /* TAP device */
2775 flags |= IFF_TAP;
2776 name = "tap%d";
2777 } else
2778 return -EINVAL;
2779
2780 if (*ifr->ifr_name)
2781 name = ifr->ifr_name;
2782
2783 dev = alloc_netdev_mqs(sizeof(struct tun_struct), name,
2784 NET_NAME_UNKNOWN, tun_setup, queues,
2785 queues);
2786
2787 if (!dev)
2788 return -ENOMEM;
2789
2790 dev_net_set(dev, net);
2791 dev->rtnl_link_ops = &tun_link_ops;
2792 dev->ifindex = tfile->ifindex;
2793 dev->sysfs_groups[0] = &tun_attr_group;
2794
2795 tun = netdev_priv(dev);
2796 tun->dev = dev;
2797 tun->flags = flags;
2798 tun->txflt.count = 0;
2799 tun->vnet_hdr_sz = sizeof(struct virtio_net_hdr);
2800
2801 tun->align = NET_SKB_PAD;
2802 tun->filter_attached = false;
2803 tun->sndbuf = tfile->socket.sk->sk_sndbuf;
2804 tun->rx_batched = 0;
2805 RCU_INIT_POINTER(tun->steering_prog, NULL);
2806
2807 tun->ifr = ifr;
2808 tun->file = file;
2809
2810 tun_net_initialize(dev);
2811
2812 err = register_netdevice(tun->dev);
2813 if (err < 0) {
2814 free_netdev(dev);
2815 return err;
2816 }
2817 /* free_netdev() won't check refcnt, to avoid race
2818 * with dev_put() we need publish tun after registration.
2819 */
2820 rcu_assign_pointer(tfile->tun, tun);
2821 }
2822
2823 if (ifr->ifr_flags & IFF_NO_CARRIER)
2824 netif_carrier_off(tun->dev);
2825 else
2826 netif_carrier_on(tun->dev);
2827
2828 /* Make sure persistent devices do not get stuck in
2829 * xoff state.
2830 */
2831 if (netif_running(tun->dev))
2832 netif_tx_wake_all_queues(tun->dev);
2833
2834 strscpy(ifr->ifr_name, tun->dev->name);
2835 return 0;
2836 }
2837
tun_get_iff(struct tun_struct * tun,struct ifreq * ifr)2838 static void tun_get_iff(struct tun_struct *tun, struct ifreq *ifr)
2839 {
2840 strscpy(ifr->ifr_name, tun->dev->name);
2841
2842 ifr->ifr_flags = tun_flags(tun);
2843
2844 }
2845
2846 #define PLAIN_GSO (NETIF_F_GSO_UDP_L4 | NETIF_F_TSO | NETIF_F_TSO6)
2847
2848 /* This is like a cut-down ethtool ops, except done via tun fd so no
2849 * privs required. */
set_offload(struct tun_struct * tun,unsigned long arg)2850 static int set_offload(struct tun_struct *tun, unsigned long arg)
2851 {
2852 netdev_features_t features = 0;
2853
2854 if (arg & TUN_F_CSUM) {
2855 features |= NETIF_F_HW_CSUM;
2856 arg &= ~TUN_F_CSUM;
2857
2858 if (arg & (TUN_F_TSO4|TUN_F_TSO6)) {
2859 if (arg & TUN_F_TSO_ECN) {
2860 features |= NETIF_F_TSO_ECN;
2861 arg &= ~TUN_F_TSO_ECN;
2862 }
2863 if (arg & TUN_F_TSO4)
2864 features |= NETIF_F_TSO;
2865 if (arg & TUN_F_TSO6)
2866 features |= NETIF_F_TSO6;
2867 arg &= ~(TUN_F_TSO4|TUN_F_TSO6);
2868 }
2869
2870 arg &= ~TUN_F_UFO;
2871
2872 /* TODO: for now USO4 and USO6 should work simultaneously */
2873 if (arg & TUN_F_USO4 && arg & TUN_F_USO6) {
2874 features |= NETIF_F_GSO_UDP_L4;
2875 arg &= ~(TUN_F_USO4 | TUN_F_USO6);
2876 }
2877
2878 /*
2879 * Tunnel offload is allowed only if some plain offload is
2880 * available, too.
2881 */
2882 if (features & PLAIN_GSO && arg & TUN_F_UDP_TUNNEL_GSO) {
2883 features |= NETIF_F_GSO_UDP_TUNNEL;
2884 if (arg & TUN_F_UDP_TUNNEL_GSO_CSUM)
2885 features |= NETIF_F_GSO_UDP_TUNNEL_CSUM;
2886 arg &= ~(TUN_F_UDP_TUNNEL_GSO |
2887 TUN_F_UDP_TUNNEL_GSO_CSUM);
2888 }
2889 }
2890
2891 /* This gives the user a way to test for new features in future by
2892 * trying to set them. */
2893 if (arg)
2894 return -EINVAL;
2895
2896 tun->set_features = features;
2897 tun->dev->wanted_features &= ~TUN_USER_FEATURES;
2898 tun->dev->wanted_features |= features;
2899 netdev_update_features(tun->dev);
2900
2901 return 0;
2902 }
2903
tun_detach_filter(struct tun_struct * tun,int n)2904 static void tun_detach_filter(struct tun_struct *tun, int n)
2905 {
2906 int i;
2907 struct tun_file *tfile;
2908
2909 for (i = 0; i < n; i++) {
2910 tfile = rtnl_dereference(tun->tfiles[i]);
2911 lock_sock(tfile->socket.sk);
2912 sk_detach_filter(tfile->socket.sk);
2913 release_sock(tfile->socket.sk);
2914 }
2915
2916 tun->filter_attached = false;
2917 }
2918
tun_attach_filter(struct tun_struct * tun)2919 static int tun_attach_filter(struct tun_struct *tun)
2920 {
2921 int i, ret = 0;
2922 struct tun_file *tfile;
2923
2924 for (i = 0; i < tun->numqueues; i++) {
2925 tfile = rtnl_dereference(tun->tfiles[i]);
2926 lock_sock(tfile->socket.sk);
2927 ret = sk_attach_filter(&tun->fprog, tfile->socket.sk);
2928 release_sock(tfile->socket.sk);
2929 if (ret) {
2930 tun_detach_filter(tun, i);
2931 return ret;
2932 }
2933 }
2934
2935 tun->filter_attached = true;
2936 return ret;
2937 }
2938
tun_set_sndbuf(struct tun_struct * tun)2939 static void tun_set_sndbuf(struct tun_struct *tun)
2940 {
2941 struct tun_file *tfile;
2942 int i;
2943
2944 for (i = 0; i < tun->numqueues; i++) {
2945 tfile = rtnl_dereference(tun->tfiles[i]);
2946 tfile->socket.sk->sk_sndbuf = tun->sndbuf;
2947 }
2948 }
2949
tun_set_queue(struct file * file,struct ifreq * ifr)2950 static int tun_set_queue(struct file *file, struct ifreq *ifr)
2951 {
2952 struct tun_file *tfile = file->private_data;
2953 struct tun_struct *tun;
2954 int ret = 0;
2955
2956 rtnl_lock();
2957
2958 if (ifr->ifr_flags & IFF_ATTACH_QUEUE) {
2959 tun = tfile->detached;
2960 if (!tun) {
2961 ret = -EINVAL;
2962 goto unlock;
2963 }
2964 ret = security_tun_dev_attach_queue(tun->security);
2965 if (ret < 0)
2966 goto unlock;
2967 ret = tun_attach(tun, file, false, tun->flags & IFF_NAPI,
2968 tun->flags & IFF_NAPI_FRAGS, true);
2969 } else if (ifr->ifr_flags & IFF_DETACH_QUEUE) {
2970 tun = rtnl_dereference(tfile->tun);
2971 if (!tun || !(tun->flags & IFF_MULTI_QUEUE) || tfile->detached)
2972 ret = -EINVAL;
2973 else
2974 __tun_detach(tfile, false);
2975 } else
2976 ret = -EINVAL;
2977
2978 if (ret >= 0)
2979 netdev_state_change(tun->dev);
2980
2981 unlock:
2982 rtnl_unlock();
2983 return ret;
2984 }
2985
tun_set_ebpf(struct tun_struct * tun,struct tun_prog __rcu ** prog_p,void __user * data)2986 static int tun_set_ebpf(struct tun_struct *tun, struct tun_prog __rcu **prog_p,
2987 void __user *data)
2988 {
2989 struct bpf_prog *prog;
2990 int fd;
2991
2992 if (copy_from_user(&fd, data, sizeof(fd)))
2993 return -EFAULT;
2994
2995 if (fd == -1) {
2996 prog = NULL;
2997 } else {
2998 prog = bpf_prog_get_type(fd, BPF_PROG_TYPE_SOCKET_FILTER);
2999 if (IS_ERR(prog))
3000 return PTR_ERR(prog);
3001 }
3002
3003 return __tun_set_ebpf(tun, prog_p, prog);
3004 }
3005
3006 /* Return correct value for tun->dev->addr_len based on tun->dev->type. */
tun_get_addr_len(unsigned short type)3007 static unsigned char tun_get_addr_len(unsigned short type)
3008 {
3009 switch (type) {
3010 case ARPHRD_IP6GRE:
3011 case ARPHRD_TUNNEL6:
3012 return sizeof(struct in6_addr);
3013 case ARPHRD_IPGRE:
3014 case ARPHRD_TUNNEL:
3015 case ARPHRD_SIT:
3016 return 4;
3017 case ARPHRD_ETHER:
3018 return ETH_ALEN;
3019 case ARPHRD_IEEE802154:
3020 case ARPHRD_IEEE802154_MONITOR:
3021 return IEEE802154_EXTENDED_ADDR_LEN;
3022 case ARPHRD_PHONET_PIPE:
3023 case ARPHRD_PPP:
3024 case ARPHRD_NONE:
3025 return 0;
3026 case ARPHRD_6LOWPAN:
3027 return EUI64_ADDR_LEN;
3028 case ARPHRD_FDDI:
3029 return FDDI_K_ALEN;
3030 case ARPHRD_HIPPI:
3031 return HIPPI_ALEN;
3032 case ARPHRD_IEEE802:
3033 return FC_ALEN;
3034 case ARPHRD_ROSE:
3035 return ROSE_ADDR_LEN;
3036 case ARPHRD_NETROM:
3037 return AX25_ADDR_LEN;
3038 case ARPHRD_LOCALTLK:
3039 return LTALK_ALEN;
3040 default:
3041 return 0;
3042 }
3043 }
3044
__tun_chr_ioctl(struct file * file,unsigned int cmd,unsigned long arg,int ifreq_len)3045 static long __tun_chr_ioctl(struct file *file, unsigned int cmd,
3046 unsigned long arg, int ifreq_len)
3047 {
3048 struct tun_file *tfile = file->private_data;
3049 struct net *net = sock_net(&tfile->sk);
3050 struct tun_struct *tun;
3051 void __user* argp = (void __user*)arg;
3052 unsigned int carrier;
3053 struct ifreq ifr;
3054 kuid_t owner;
3055 kgid_t group;
3056 int ifindex;
3057 int sndbuf;
3058 int ret;
3059 bool do_notify = false;
3060
3061 if (cmd == TUNSETIFF || cmd == TUNSETQUEUE ||
3062 (_IOC_TYPE(cmd) == SOCK_IOC_TYPE && cmd != SIOCGSKNS)) {
3063 if (copy_from_user(&ifr, argp, ifreq_len))
3064 return -EFAULT;
3065 } else {
3066 memset(&ifr, 0, sizeof(ifr));
3067 }
3068 if (cmd == TUNGETFEATURES) {
3069 /* Currently this just means: "what IFF flags are valid?".
3070 * This is needed because we never checked for invalid flags on
3071 * TUNSETIFF.
3072 */
3073 return put_user(IFF_TUN | IFF_TAP | IFF_NO_CARRIER |
3074 TUN_FEATURES, (unsigned int __user*)argp);
3075 } else if (cmd == TUNSETQUEUE) {
3076 return tun_set_queue(file, &ifr);
3077 } else if (cmd == SIOCGSKNS) {
3078 if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
3079 return -EPERM;
3080 return open_related_ns(&net->ns, get_net_ns);
3081 }
3082
3083 rtnl_lock();
3084
3085 tun = tun_get(tfile);
3086 if (cmd == TUNSETIFF) {
3087 ret = -EEXIST;
3088 if (tun)
3089 goto unlock;
3090
3091 ifr.ifr_name[IFNAMSIZ-1] = '\0';
3092
3093 ret = tun_set_iff(net, file, &ifr);
3094
3095 if (ret)
3096 goto unlock;
3097
3098 if (copy_to_user(argp, &ifr, ifreq_len))
3099 ret = -EFAULT;
3100 goto unlock;
3101 }
3102 if (cmd == TUNSETIFINDEX) {
3103 ret = -EPERM;
3104 if (tun)
3105 goto unlock;
3106
3107 ret = -EFAULT;
3108 if (copy_from_user(&ifindex, argp, sizeof(ifindex)))
3109 goto unlock;
3110 ret = -EINVAL;
3111 if (ifindex < 0)
3112 goto unlock;
3113 ret = 0;
3114 tfile->ifindex = ifindex;
3115 goto unlock;
3116 }
3117
3118 ret = -EBADFD;
3119 if (!tun)
3120 goto unlock;
3121
3122 netif_info(tun, drv, tun->dev, "tun_chr_ioctl cmd %u\n", cmd);
3123
3124 net = dev_net(tun->dev);
3125 ret = 0;
3126 switch (cmd) {
3127 case TUNGETIFF:
3128 tun_get_iff(tun, &ifr);
3129
3130 if (tfile->detached)
3131 ifr.ifr_flags |= IFF_DETACH_QUEUE;
3132 if (!tfile->socket.sk->sk_filter)
3133 ifr.ifr_flags |= IFF_NOFILTER;
3134
3135 if (copy_to_user(argp, &ifr, ifreq_len))
3136 ret = -EFAULT;
3137 break;
3138
3139 case TUNSETNOCSUM:
3140 /* Disable/Enable checksum */
3141
3142 /* [unimplemented] */
3143 netif_info(tun, drv, tun->dev, "ignored: set checksum %s\n",
3144 arg ? "disabled" : "enabled");
3145 break;
3146
3147 case TUNSETPERSIST:
3148 /* Disable/Enable persist mode. Keep an extra reference to the
3149 * module to prevent the module being unprobed.
3150 */
3151 if (arg && !(tun->flags & IFF_PERSIST)) {
3152 tun->flags |= IFF_PERSIST;
3153 __module_get(THIS_MODULE);
3154 do_notify = true;
3155 }
3156 if (!arg && (tun->flags & IFF_PERSIST)) {
3157 tun->flags &= ~IFF_PERSIST;
3158 module_put(THIS_MODULE);
3159 do_notify = true;
3160 }
3161
3162 netif_info(tun, drv, tun->dev, "persist %s\n",
3163 arg ? "enabled" : "disabled");
3164 break;
3165
3166 case TUNSETOWNER:
3167 /* Set owner of the device */
3168 owner = make_kuid(current_user_ns(), arg);
3169 if (!uid_valid(owner)) {
3170 ret = -EINVAL;
3171 break;
3172 }
3173 tun->owner = owner;
3174 do_notify = true;
3175 netif_info(tun, drv, tun->dev, "owner set to %u\n",
3176 from_kuid(&init_user_ns, tun->owner));
3177 break;
3178
3179 case TUNSETGROUP:
3180 /* Set group of the device */
3181 group = make_kgid(current_user_ns(), arg);
3182 if (!gid_valid(group)) {
3183 ret = -EINVAL;
3184 break;
3185 }
3186 tun->group = group;
3187 do_notify = true;
3188 netif_info(tun, drv, tun->dev, "group set to %u\n",
3189 from_kgid(&init_user_ns, tun->group));
3190 break;
3191
3192 case TUNSETLINK:
3193 /* Only allow setting the type when the interface is down */
3194 if (tun->dev->flags & IFF_UP) {
3195 netif_info(tun, drv, tun->dev,
3196 "Linktype set failed because interface is up\n");
3197 ret = -EBUSY;
3198 } else {
3199 ret = call_netdevice_notifiers(NETDEV_PRE_TYPE_CHANGE,
3200 tun->dev);
3201 ret = notifier_to_errno(ret);
3202 if (ret) {
3203 netif_info(tun, drv, tun->dev,
3204 "Refused to change device type\n");
3205 break;
3206 }
3207 tun->dev->type = (int) arg;
3208 tun->dev->addr_len = tun_get_addr_len(tun->dev->type);
3209 netif_info(tun, drv, tun->dev, "linktype set to %d\n",
3210 tun->dev->type);
3211 call_netdevice_notifiers(NETDEV_POST_TYPE_CHANGE,
3212 tun->dev);
3213 }
3214 break;
3215
3216 case TUNSETDEBUG:
3217 tun->msg_enable = (u32)arg;
3218 break;
3219
3220 case TUNSETOFFLOAD:
3221 ret = set_offload(tun, arg);
3222 break;
3223
3224 case TUNSETTXFILTER:
3225 /* Can be set only for TAPs */
3226 ret = -EINVAL;
3227 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP)
3228 break;
3229 ret = update_filter(&tun->txflt, (void __user *)arg);
3230 break;
3231
3232 case SIOCGIFHWADDR:
3233 /* Get hw address */
3234 netif_get_mac_address(&ifr.ifr_hwaddr, net, tun->dev->name);
3235 if (copy_to_user(argp, &ifr, ifreq_len))
3236 ret = -EFAULT;
3237 break;
3238
3239 case SIOCSIFHWADDR:
3240 /* Set hw address */
3241 if (tun->dev->addr_len > sizeof(ifr.ifr_hwaddr)) {
3242 ret = -EINVAL;
3243 break;
3244 }
3245 ret = dev_set_mac_address_user(tun->dev,
3246 (struct sockaddr_storage *)&ifr.ifr_hwaddr,
3247 NULL);
3248 break;
3249
3250 case TUNGETSNDBUF:
3251 sndbuf = tfile->socket.sk->sk_sndbuf;
3252 if (copy_to_user(argp, &sndbuf, sizeof(sndbuf)))
3253 ret = -EFAULT;
3254 break;
3255
3256 case TUNSETSNDBUF:
3257 if (copy_from_user(&sndbuf, argp, sizeof(sndbuf))) {
3258 ret = -EFAULT;
3259 break;
3260 }
3261 if (sndbuf <= 0) {
3262 ret = -EINVAL;
3263 break;
3264 }
3265
3266 tun->sndbuf = sndbuf;
3267 tun_set_sndbuf(tun);
3268 break;
3269
3270 case TUNATTACHFILTER:
3271 /* Can be set only for TAPs */
3272 ret = -EINVAL;
3273 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP)
3274 break;
3275 ret = -EFAULT;
3276 if (copy_from_user(&tun->fprog, argp, sizeof(tun->fprog)))
3277 break;
3278
3279 ret = tun_attach_filter(tun);
3280 break;
3281
3282 case TUNDETACHFILTER:
3283 /* Can be set only for TAPs */
3284 ret = -EINVAL;
3285 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP)
3286 break;
3287 ret = 0;
3288 tun_detach_filter(tun, tun->numqueues);
3289 break;
3290
3291 case TUNGETFILTER:
3292 ret = -EINVAL;
3293 if ((tun->flags & TUN_TYPE_MASK) != IFF_TAP)
3294 break;
3295 ret = -EFAULT;
3296 if (copy_to_user(argp, &tun->fprog, sizeof(tun->fprog)))
3297 break;
3298 ret = 0;
3299 break;
3300
3301 case TUNSETSTEERINGEBPF:
3302 ret = tun_set_ebpf(tun, &tun->steering_prog, argp);
3303 break;
3304
3305 case TUNSETFILTEREBPF:
3306 ret = tun_set_ebpf(tun, &tun->filter_prog, argp);
3307 break;
3308
3309 case TUNSETCARRIER:
3310 ret = -EFAULT;
3311 if (copy_from_user(&carrier, argp, sizeof(carrier)))
3312 goto unlock;
3313
3314 ret = tun_net_change_carrier(tun->dev, (bool)carrier);
3315 break;
3316
3317 case TUNGETDEVNETNS:
3318 ret = -EPERM;
3319 if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
3320 goto unlock;
3321 ret = open_related_ns(&net->ns, get_net_ns);
3322 break;
3323
3324 default:
3325 ret = tun_vnet_ioctl(&tun->vnet_hdr_sz, &tun->flags, cmd, argp);
3326 break;
3327 }
3328
3329 if (do_notify)
3330 netdev_state_change(tun->dev);
3331
3332 unlock:
3333 rtnl_unlock();
3334 if (tun)
3335 tun_put(tun);
3336 return ret;
3337 }
3338
tun_chr_ioctl(struct file * file,unsigned int cmd,unsigned long arg)3339 static long tun_chr_ioctl(struct file *file,
3340 unsigned int cmd, unsigned long arg)
3341 {
3342 return __tun_chr_ioctl(file, cmd, arg, sizeof (struct ifreq));
3343 }
3344
3345 #ifdef CONFIG_COMPAT
tun_chr_compat_ioctl(struct file * file,unsigned int cmd,unsigned long arg)3346 static long tun_chr_compat_ioctl(struct file *file,
3347 unsigned int cmd, unsigned long arg)
3348 {
3349 switch (cmd) {
3350 case TUNSETIFF:
3351 case TUNGETIFF:
3352 case TUNSETTXFILTER:
3353 case TUNGETSNDBUF:
3354 case TUNSETSNDBUF:
3355 case SIOCGIFHWADDR:
3356 case SIOCSIFHWADDR:
3357 arg = (unsigned long)compat_ptr(arg);
3358 break;
3359 default:
3360 arg = (compat_ulong_t)arg;
3361 break;
3362 }
3363
3364 /*
3365 * compat_ifreq is shorter than ifreq, so we must not access beyond
3366 * the end of that structure. All fields that are used in this
3367 * driver are compatible though, we don't need to convert the
3368 * contents.
3369 */
3370 return __tun_chr_ioctl(file, cmd, arg, sizeof(struct compat_ifreq));
3371 }
3372 #endif /* CONFIG_COMPAT */
3373
tun_chr_fasync(int fd,struct file * file,int on)3374 static int tun_chr_fasync(int fd, struct file *file, int on)
3375 {
3376 struct tun_file *tfile = file->private_data;
3377 int ret;
3378
3379 if (on) {
3380 ret = file_f_owner_allocate(file);
3381 if (ret)
3382 goto out;
3383 }
3384
3385 if ((ret = fasync_helper(fd, file, on, &tfile->fasync)) < 0)
3386 goto out;
3387
3388 if (on) {
3389 __f_setown(file, task_pid(current), PIDTYPE_TGID, 0);
3390 tfile->flags |= TUN_FASYNC;
3391 } else
3392 tfile->flags &= ~TUN_FASYNC;
3393 ret = 0;
3394 out:
3395 return ret;
3396 }
3397
tun_chr_open(struct inode * inode,struct file * file)3398 static int tun_chr_open(struct inode *inode, struct file * file)
3399 {
3400 struct net *net = current->nsproxy->net_ns;
3401 struct tun_file *tfile;
3402
3403 tfile = (struct tun_file *)sk_alloc(net, AF_UNSPEC, GFP_KERNEL,
3404 &tun_proto, 0);
3405 if (!tfile)
3406 return -ENOMEM;
3407 if (ptr_ring_init(&tfile->tx_ring, 0, GFP_KERNEL)) {
3408 sk_free(&tfile->sk);
3409 return -ENOMEM;
3410 }
3411
3412 mutex_init(&tfile->napi_mutex);
3413 RCU_INIT_POINTER(tfile->tun, NULL);
3414 tfile->flags = 0;
3415 tfile->ifindex = 0;
3416
3417 init_waitqueue_head(&tfile->socket.wq.wait);
3418
3419 tfile->socket.file = file;
3420 tfile->socket.ops = &tun_socket_ops;
3421
3422 sock_init_data_uid(&tfile->socket, &tfile->sk, current_fsuid());
3423
3424 tfile->sk.sk_write_space = tun_sock_write_space;
3425 tfile->sk.sk_sndbuf = INT_MAX;
3426
3427 file->private_data = tfile;
3428 INIT_LIST_HEAD(&tfile->next);
3429
3430 sock_set_flag(&tfile->sk, SOCK_ZEROCOPY);
3431
3432 /* tun groks IOCB_NOWAIT just fine, mark it as such */
3433 file->f_mode |= FMODE_NOWAIT;
3434 return 0;
3435 }
3436
tun_chr_close(struct inode * inode,struct file * file)3437 static int tun_chr_close(struct inode *inode, struct file *file)
3438 {
3439 struct tun_file *tfile = file->private_data;
3440
3441 tun_detach(tfile, true);
3442
3443 return 0;
3444 }
3445
3446 #ifdef CONFIG_PROC_FS
tun_chr_show_fdinfo(struct seq_file * m,struct file * file)3447 static void tun_chr_show_fdinfo(struct seq_file *m, struct file *file)
3448 {
3449 struct tun_file *tfile = file->private_data;
3450 struct tun_struct *tun;
3451 struct ifreq ifr;
3452
3453 memset(&ifr, 0, sizeof(ifr));
3454
3455 rtnl_lock();
3456 tun = tun_get(tfile);
3457 if (tun)
3458 tun_get_iff(tun, &ifr);
3459 rtnl_unlock();
3460
3461 if (tun)
3462 tun_put(tun);
3463
3464 seq_printf(m, "iff:\t%s\n", ifr.ifr_name);
3465 }
3466 #endif
3467
3468 static const struct file_operations tun_fops = {
3469 .owner = THIS_MODULE,
3470 .read_iter = tun_chr_read_iter,
3471 .write_iter = tun_chr_write_iter,
3472 .poll = tun_chr_poll,
3473 .unlocked_ioctl = tun_chr_ioctl,
3474 #ifdef CONFIG_COMPAT
3475 .compat_ioctl = tun_chr_compat_ioctl,
3476 #endif
3477 .open = tun_chr_open,
3478 .release = tun_chr_close,
3479 .fasync = tun_chr_fasync,
3480 #ifdef CONFIG_PROC_FS
3481 .show_fdinfo = tun_chr_show_fdinfo,
3482 #endif
3483 };
3484
3485 static struct miscdevice tun_miscdev = {
3486 .minor = TUN_MINOR,
3487 .name = "tun",
3488 .nodename = "net/tun",
3489 .fops = &tun_fops,
3490 };
3491
3492 /* ethtool interface */
3493
tun_default_link_ksettings(struct net_device * dev,struct ethtool_link_ksettings * cmd)3494 static void tun_default_link_ksettings(struct net_device *dev,
3495 struct ethtool_link_ksettings *cmd)
3496 {
3497 ethtool_link_ksettings_zero_link_mode(cmd, supported);
3498 ethtool_link_ksettings_zero_link_mode(cmd, advertising);
3499 cmd->base.speed = SPEED_10000;
3500 cmd->base.duplex = DUPLEX_FULL;
3501 cmd->base.port = PORT_TP;
3502 cmd->base.phy_address = 0;
3503 cmd->base.autoneg = AUTONEG_DISABLE;
3504 }
3505
tun_get_link_ksettings(struct net_device * dev,struct ethtool_link_ksettings * cmd)3506 static int tun_get_link_ksettings(struct net_device *dev,
3507 struct ethtool_link_ksettings *cmd)
3508 {
3509 struct tun_struct *tun = netdev_priv(dev);
3510
3511 memcpy(cmd, &tun->link_ksettings, sizeof(*cmd));
3512 return 0;
3513 }
3514
tun_set_link_ksettings(struct net_device * dev,const struct ethtool_link_ksettings * cmd)3515 static int tun_set_link_ksettings(struct net_device *dev,
3516 const struct ethtool_link_ksettings *cmd)
3517 {
3518 struct tun_struct *tun = netdev_priv(dev);
3519
3520 memcpy(&tun->link_ksettings, cmd, sizeof(*cmd));
3521 return 0;
3522 }
3523
tun_get_drvinfo(struct net_device * dev,struct ethtool_drvinfo * info)3524 static void tun_get_drvinfo(struct net_device *dev, struct ethtool_drvinfo *info)
3525 {
3526 struct tun_struct *tun = netdev_priv(dev);
3527
3528 strscpy(info->driver, DRV_NAME, sizeof(info->driver));
3529 strscpy(info->version, DRV_VERSION, sizeof(info->version));
3530
3531 switch (tun->flags & TUN_TYPE_MASK) {
3532 case IFF_TUN:
3533 strscpy(info->bus_info, "tun", sizeof(info->bus_info));
3534 break;
3535 case IFF_TAP:
3536 strscpy(info->bus_info, "tap", sizeof(info->bus_info));
3537 break;
3538 }
3539 }
3540
tun_get_msglevel(struct net_device * dev)3541 static u32 tun_get_msglevel(struct net_device *dev)
3542 {
3543 struct tun_struct *tun = netdev_priv(dev);
3544
3545 return tun->msg_enable;
3546 }
3547
tun_set_msglevel(struct net_device * dev,u32 value)3548 static void tun_set_msglevel(struct net_device *dev, u32 value)
3549 {
3550 struct tun_struct *tun = netdev_priv(dev);
3551
3552 tun->msg_enable = value;
3553 }
3554
tun_get_coalesce(struct net_device * dev,struct ethtool_coalesce * ec,struct kernel_ethtool_coalesce * kernel_coal,struct netlink_ext_ack * extack)3555 static int tun_get_coalesce(struct net_device *dev,
3556 struct ethtool_coalesce *ec,
3557 struct kernel_ethtool_coalesce *kernel_coal,
3558 struct netlink_ext_ack *extack)
3559 {
3560 struct tun_struct *tun = netdev_priv(dev);
3561
3562 ec->rx_max_coalesced_frames = tun->rx_batched;
3563
3564 return 0;
3565 }
3566
tun_set_coalesce(struct net_device * dev,struct ethtool_coalesce * ec,struct kernel_ethtool_coalesce * kernel_coal,struct netlink_ext_ack * extack)3567 static int tun_set_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 if (ec->rx_max_coalesced_frames > NAPI_POLL_WEIGHT)
3575 tun->rx_batched = NAPI_POLL_WEIGHT;
3576 else
3577 tun->rx_batched = ec->rx_max_coalesced_frames;
3578
3579 return 0;
3580 }
3581
tun_get_channels(struct net_device * dev,struct ethtool_channels * channels)3582 static void tun_get_channels(struct net_device *dev,
3583 struct ethtool_channels *channels)
3584 {
3585 struct tun_struct *tun = netdev_priv(dev);
3586
3587 channels->combined_count = tun->numqueues;
3588 channels->max_combined = tun->flags & IFF_MULTI_QUEUE ? MAX_TAP_QUEUES : 1;
3589 }
3590
3591 static const struct ethtool_ops tun_ethtool_ops = {
3592 .supported_coalesce_params = ETHTOOL_COALESCE_RX_MAX_FRAMES,
3593 .get_drvinfo = tun_get_drvinfo,
3594 .get_msglevel = tun_get_msglevel,
3595 .set_msglevel = tun_set_msglevel,
3596 .get_link = ethtool_op_get_link,
3597 .get_channels = tun_get_channels,
3598 .get_ts_info = ethtool_op_get_ts_info,
3599 .get_coalesce = tun_get_coalesce,
3600 .set_coalesce = tun_set_coalesce,
3601 .get_link_ksettings = tun_get_link_ksettings,
3602 .set_link_ksettings = tun_set_link_ksettings,
3603 };
3604
tun_queue_resize(struct tun_struct * tun)3605 static int tun_queue_resize(struct tun_struct *tun)
3606 {
3607 struct net_device *dev = tun->dev;
3608 struct tun_file *tfile;
3609 struct ptr_ring **rings;
3610 int n = tun->numqueues + tun->numdisabled;
3611 int ret, i;
3612
3613 rings = kmalloc_objs(*rings, n);
3614 if (!rings)
3615 return -ENOMEM;
3616
3617 for (i = 0; i < tun->numqueues; i++) {
3618 tfile = rtnl_dereference(tun->tfiles[i]);
3619 rings[i] = &tfile->tx_ring;
3620 }
3621 list_for_each_entry(tfile, &tun->disabled, next)
3622 rings[i++] = &tfile->tx_ring;
3623
3624 ret = ptr_ring_resize_multiple_bh(rings, n,
3625 dev->tx_queue_len, GFP_KERNEL,
3626 tun_ptr_free);
3627
3628 kfree(rings);
3629 return ret;
3630 }
3631
tun_device_event(struct notifier_block * unused,unsigned long event,void * ptr)3632 static int tun_device_event(struct notifier_block *unused,
3633 unsigned long event, void *ptr)
3634 {
3635 struct net_device *dev = netdev_notifier_info_to_dev(ptr);
3636 struct tun_struct *tun = netdev_priv(dev);
3637 int i;
3638
3639 if (dev->rtnl_link_ops != &tun_link_ops)
3640 return NOTIFY_DONE;
3641
3642 switch (event) {
3643 case NETDEV_CHANGE_TX_QUEUE_LEN:
3644 if (tun_queue_resize(tun))
3645 return NOTIFY_BAD;
3646 break;
3647 case NETDEV_UP:
3648 for (i = 0; i < tun->numqueues; i++) {
3649 struct tun_file *tfile;
3650
3651 tfile = rtnl_dereference(tun->tfiles[i]);
3652 tfile->socket.sk->sk_write_space(tfile->socket.sk);
3653 }
3654 break;
3655 default:
3656 break;
3657 }
3658
3659 return NOTIFY_DONE;
3660 }
3661
3662 static struct notifier_block tun_notifier_block __read_mostly = {
3663 .notifier_call = tun_device_event,
3664 };
3665
tun_init(void)3666 static int __init tun_init(void)
3667 {
3668 int ret = 0;
3669
3670 pr_info("%s, %s\n", DRV_DESCRIPTION, DRV_VERSION);
3671
3672 ret = rtnl_link_register(&tun_link_ops);
3673 if (ret) {
3674 pr_err("Can't register link_ops\n");
3675 goto err_linkops;
3676 }
3677
3678 ret = misc_register(&tun_miscdev);
3679 if (ret) {
3680 pr_err("Can't register misc device %d\n", TUN_MINOR);
3681 goto err_misc;
3682 }
3683
3684 ret = register_netdevice_notifier(&tun_notifier_block);
3685 if (ret) {
3686 pr_err("Can't register netdevice notifier\n");
3687 goto err_notifier;
3688 }
3689
3690 return 0;
3691
3692 err_notifier:
3693 misc_deregister(&tun_miscdev);
3694 err_misc:
3695 rtnl_link_unregister(&tun_link_ops);
3696 err_linkops:
3697 return ret;
3698 }
3699
tun_cleanup(void)3700 static void __exit tun_cleanup(void)
3701 {
3702 misc_deregister(&tun_miscdev);
3703 rtnl_link_unregister(&tun_link_ops);
3704 unregister_netdevice_notifier(&tun_notifier_block);
3705 }
3706
3707 /* Get an underlying socket object from tun file. Returns error unless file is
3708 * attached to a device. The returned object works like a packet socket, it
3709 * can be used for sock_sendmsg/sock_recvmsg. The caller is responsible for
3710 * holding a reference to the file for as long as the socket is in use. */
tun_get_socket(struct file * file)3711 struct socket *tun_get_socket(struct file *file)
3712 {
3713 struct tun_file *tfile;
3714 if (file->f_op != &tun_fops)
3715 return ERR_PTR(-EINVAL);
3716 tfile = file->private_data;
3717 if (!tfile)
3718 return ERR_PTR(-EBADFD);
3719 return &tfile->socket;
3720 }
3721 EXPORT_SYMBOL_GPL(tun_get_socket);
3722
tun_get_tx_ring(struct file * file)3723 struct ptr_ring *tun_get_tx_ring(struct file *file)
3724 {
3725 struct tun_file *tfile;
3726
3727 if (file->f_op != &tun_fops)
3728 return ERR_PTR(-EINVAL);
3729 tfile = file->private_data;
3730 if (!tfile)
3731 return ERR_PTR(-EBADFD);
3732 return &tfile->tx_ring;
3733 }
3734 EXPORT_SYMBOL_GPL(tun_get_tx_ring);
3735
3736 module_init(tun_init);
3737 module_exit(tun_cleanup);
3738 MODULE_DESCRIPTION(DRV_DESCRIPTION);
3739 MODULE_AUTHOR(DRV_COPYRIGHT);
3740 MODULE_LICENSE("GPL");
3741 MODULE_ALIAS_MISCDEV(TUN_MINOR);
3742 MODULE_ALIAS("devname:net/tun");
3743 MODULE_IMPORT_NS("NETDEV_INTERNAL");
3744