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1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * net/sched/act_mirred.c	packet mirroring and redirect actions
4  *
5  * Authors:	Jamal Hadi Salim (2002-4)
6  *
7  * TODO: Add ingress support (and socket redirect support)
8  */
9 
10 #include <linux/types.h>
11 #include <linux/kernel.h>
12 #include <linux/string.h>
13 #include <linux/errno.h>
14 #include <linux/skbuff.h>
15 #include <linux/rtnetlink.h>
16 #include <linux/module.h>
17 #include <linux/init.h>
18 #include <linux/gfp.h>
19 #include <linux/if_arp.h>
20 #include <net/net_namespace.h>
21 #include <net/netlink.h>
22 #include <net/dst.h>
23 #include <net/pkt_sched.h>
24 #include <net/pkt_cls.h>
25 #include <linux/tc_act/tc_mirred.h>
26 #include <net/tc_act/tc_mirred.h>
27 
28 static LIST_HEAD(mirred_list);
29 static DEFINE_SPINLOCK(mirred_list_lock);
30 
31 #define MIRRED_NEST_LIMIT    4
32 static DEFINE_PER_CPU(unsigned int, mirred_nest_level);
33 
tcf_mirred_is_act_redirect(int action)34 static bool tcf_mirred_is_act_redirect(int action)
35 {
36 	return action == TCA_EGRESS_REDIR || action == TCA_INGRESS_REDIR;
37 }
38 
tcf_mirred_act_wants_ingress(int action)39 static bool tcf_mirred_act_wants_ingress(int action)
40 {
41 	switch (action) {
42 	case TCA_EGRESS_REDIR:
43 	case TCA_EGRESS_MIRROR:
44 		return false;
45 	case TCA_INGRESS_REDIR:
46 	case TCA_INGRESS_MIRROR:
47 		return true;
48 	default:
49 		BUG();
50 	}
51 }
52 
tcf_mirred_can_reinsert(int action)53 static bool tcf_mirred_can_reinsert(int action)
54 {
55 	switch (action) {
56 	case TC_ACT_SHOT:
57 	case TC_ACT_STOLEN:
58 	case TC_ACT_QUEUED:
59 	case TC_ACT_TRAP:
60 		return true;
61 	}
62 	return false;
63 }
64 
tcf_mirred_dev_dereference(struct tcf_mirred * m)65 static struct net_device *tcf_mirred_dev_dereference(struct tcf_mirred *m)
66 {
67 	return rcu_dereference_protected(m->tcfm_dev,
68 					 lockdep_is_held(&m->tcf_lock));
69 }
70 
tcf_mirred_release(struct tc_action * a)71 static void tcf_mirred_release(struct tc_action *a)
72 {
73 	struct tcf_mirred *m = to_mirred(a);
74 	struct net_device *dev;
75 
76 	spin_lock(&mirred_list_lock);
77 	list_del(&m->tcfm_list);
78 	spin_unlock(&mirred_list_lock);
79 
80 	/* last reference to action, no need to lock */
81 	dev = rcu_dereference_protected(m->tcfm_dev, 1);
82 	if (dev)
83 		dev_put(dev);
84 }
85 
86 static const struct nla_policy mirred_policy[TCA_MIRRED_MAX + 1] = {
87 	[TCA_MIRRED_PARMS]	= { .len = sizeof(struct tc_mirred) },
88 };
89 
90 static unsigned int mirred_net_id;
91 static struct tc_action_ops act_mirred_ops;
92 
tcf_mirred_init(struct net * net,struct nlattr * nla,struct nlattr * est,struct tc_action ** a,int ovr,int bind,bool rtnl_held,struct tcf_proto * tp,u32 flags,struct netlink_ext_ack * extack)93 static int tcf_mirred_init(struct net *net, struct nlattr *nla,
94 			   struct nlattr *est, struct tc_action **a,
95 			   int ovr, int bind, bool rtnl_held,
96 			   struct tcf_proto *tp,
97 			   u32 flags, struct netlink_ext_ack *extack)
98 {
99 	struct tc_action_net *tn = net_generic(net, mirred_net_id);
100 	struct nlattr *tb[TCA_MIRRED_MAX + 1];
101 	struct tcf_chain *goto_ch = NULL;
102 	bool mac_header_xmit = false;
103 	struct tc_mirred *parm;
104 	struct tcf_mirred *m;
105 	struct net_device *dev;
106 	bool exists = false;
107 	int ret, err;
108 	u32 index;
109 
110 	if (!nla) {
111 		NL_SET_ERR_MSG_MOD(extack, "Mirred requires attributes to be passed");
112 		return -EINVAL;
113 	}
114 	ret = nla_parse_nested_deprecated(tb, TCA_MIRRED_MAX, nla,
115 					  mirred_policy, extack);
116 	if (ret < 0)
117 		return ret;
118 	if (!tb[TCA_MIRRED_PARMS]) {
119 		NL_SET_ERR_MSG_MOD(extack, "Missing required mirred parameters");
120 		return -EINVAL;
121 	}
122 	parm = nla_data(tb[TCA_MIRRED_PARMS]);
123 	index = parm->index;
124 	err = tcf_idr_check_alloc(tn, &index, a, bind);
125 	if (err < 0)
126 		return err;
127 	exists = err;
128 	if (exists && bind)
129 		return 0;
130 
131 	switch (parm->eaction) {
132 	case TCA_EGRESS_MIRROR:
133 	case TCA_EGRESS_REDIR:
134 	case TCA_INGRESS_REDIR:
135 	case TCA_INGRESS_MIRROR:
136 		break;
137 	default:
138 		if (exists)
139 			tcf_idr_release(*a, bind);
140 		else
141 			tcf_idr_cleanup(tn, index);
142 		NL_SET_ERR_MSG_MOD(extack, "Unknown mirred option");
143 		return -EINVAL;
144 	}
145 
146 	if (!exists) {
147 		if (!parm->ifindex) {
148 			tcf_idr_cleanup(tn, index);
149 			NL_SET_ERR_MSG_MOD(extack, "Specified device does not exist");
150 			return -EINVAL;
151 		}
152 		ret = tcf_idr_create_from_flags(tn, index, est, a,
153 						&act_mirred_ops, bind, flags);
154 		if (ret) {
155 			tcf_idr_cleanup(tn, index);
156 			return ret;
157 		}
158 		ret = ACT_P_CREATED;
159 	} else if (!ovr) {
160 		tcf_idr_release(*a, bind);
161 		return -EEXIST;
162 	}
163 
164 	m = to_mirred(*a);
165 	if (ret == ACT_P_CREATED)
166 		INIT_LIST_HEAD(&m->tcfm_list);
167 
168 	err = tcf_action_check_ctrlact(parm->action, tp, &goto_ch, extack);
169 	if (err < 0)
170 		goto release_idr;
171 
172 	spin_lock_bh(&m->tcf_lock);
173 
174 	if (parm->ifindex) {
175 		dev = dev_get_by_index(net, parm->ifindex);
176 		if (!dev) {
177 			spin_unlock_bh(&m->tcf_lock);
178 			err = -ENODEV;
179 			goto put_chain;
180 		}
181 		mac_header_xmit = dev_is_mac_header_xmit(dev);
182 		dev = rcu_replace_pointer(m->tcfm_dev, dev,
183 					  lockdep_is_held(&m->tcf_lock));
184 		if (dev)
185 			dev_put(dev);
186 		m->tcfm_mac_header_xmit = mac_header_xmit;
187 	}
188 	goto_ch = tcf_action_set_ctrlact(*a, parm->action, goto_ch);
189 	m->tcfm_eaction = parm->eaction;
190 	spin_unlock_bh(&m->tcf_lock);
191 	if (goto_ch)
192 		tcf_chain_put_by_act(goto_ch);
193 
194 	if (ret == ACT_P_CREATED) {
195 		spin_lock(&mirred_list_lock);
196 		list_add(&m->tcfm_list, &mirred_list);
197 		spin_unlock(&mirred_list_lock);
198 	}
199 
200 	return ret;
201 put_chain:
202 	if (goto_ch)
203 		tcf_chain_put_by_act(goto_ch);
204 release_idr:
205 	tcf_idr_release(*a, bind);
206 	return err;
207 }
208 
is_mirred_nested(void)209 static bool is_mirred_nested(void)
210 {
211 	return unlikely(__this_cpu_read(mirred_nest_level) > 1);
212 }
213 
tcf_mirred_forward(bool want_ingress,struct sk_buff * skb)214 static int tcf_mirred_forward(bool want_ingress, struct sk_buff *skb)
215 {
216 	int err;
217 
218 	if (!want_ingress)
219 		err = dev_queue_xmit(skb);
220 	else if (is_mirred_nested())
221 		err = netif_rx(skb);
222 	else
223 		err = netif_receive_skb(skb);
224 
225 	return err;
226 }
227 
tcf_mirred_act(struct sk_buff * skb,const struct tc_action * a,struct tcf_result * res)228 static int tcf_mirred_act(struct sk_buff *skb, const struct tc_action *a,
229 			  struct tcf_result *res)
230 {
231 	struct tcf_mirred *m = to_mirred(a);
232 	struct sk_buff *skb2 = skb;
233 	bool m_mac_header_xmit;
234 	struct net_device *dev;
235 	unsigned int nest_level;
236 	int retval, err = 0;
237 	bool use_reinsert;
238 	bool want_ingress;
239 	bool is_redirect;
240 	bool expects_nh;
241 	bool at_ingress;
242 	int m_eaction;
243 	int mac_len;
244 	bool at_nh;
245 
246 	nest_level = __this_cpu_inc_return(mirred_nest_level);
247 	if (unlikely(nest_level > MIRRED_NEST_LIMIT)) {
248 		net_warn_ratelimited("Packet exceeded mirred recursion limit on dev %s\n",
249 				     netdev_name(skb->dev));
250 		__this_cpu_dec(mirred_nest_level);
251 		return TC_ACT_SHOT;
252 	}
253 
254 	tcf_lastuse_update(&m->tcf_tm);
255 	tcf_action_update_bstats(&m->common, skb);
256 
257 	m_mac_header_xmit = READ_ONCE(m->tcfm_mac_header_xmit);
258 	m_eaction = READ_ONCE(m->tcfm_eaction);
259 	retval = READ_ONCE(m->tcf_action);
260 	dev = rcu_dereference_bh(m->tcfm_dev);
261 	if (unlikely(!dev)) {
262 		pr_notice_once("tc mirred: target device is gone\n");
263 		goto out;
264 	}
265 
266 	if (unlikely(!(dev->flags & IFF_UP)) || !netif_carrier_ok(dev)) {
267 		net_notice_ratelimited("tc mirred to Houston: device %s is down\n",
268 				       dev->name);
269 		goto out;
270 	}
271 
272 	/* we could easily avoid the clone only if called by ingress and clsact;
273 	 * since we can't easily detect the clsact caller, skip clone only for
274 	 * ingress - that covers the TC S/W datapath.
275 	 */
276 	is_redirect = tcf_mirred_is_act_redirect(m_eaction);
277 	at_ingress = skb_at_tc_ingress(skb);
278 	use_reinsert = at_ingress && is_redirect &&
279 		       tcf_mirred_can_reinsert(retval);
280 	if (!use_reinsert) {
281 		skb2 = skb_clone(skb, GFP_ATOMIC);
282 		if (!skb2)
283 			goto out;
284 	}
285 
286 	want_ingress = tcf_mirred_act_wants_ingress(m_eaction);
287 
288 	/* All mirred/redirected skbs should clear previous ct info */
289 	nf_reset_ct(skb2);
290 	if (want_ingress && !at_ingress) /* drop dst for egress -> ingress */
291 		skb_dst_drop(skb2);
292 
293 	expects_nh = want_ingress || !m_mac_header_xmit;
294 	at_nh = skb->data == skb_network_header(skb);
295 	if (at_nh != expects_nh) {
296 		mac_len = skb_at_tc_ingress(skb) ? skb->mac_len :
297 			  skb_network_header(skb) - skb_mac_header(skb);
298 		if (expects_nh) {
299 			/* target device/action expect data at nh */
300 			skb_pull_rcsum(skb2, mac_len);
301 		} else {
302 			/* target device/action expect data at mac */
303 			skb_push_rcsum(skb2, mac_len);
304 		}
305 	}
306 
307 	skb2->skb_iif = skb->dev->ifindex;
308 	skb2->dev = dev;
309 
310 	/* mirror is always swallowed */
311 	if (is_redirect) {
312 		skb_set_redirected(skb2, skb2->tc_at_ingress);
313 
314 		/* let's the caller reinsert the packet, if possible */
315 		if (use_reinsert) {
316 			res->ingress = want_ingress;
317 			err = tcf_mirred_forward(res->ingress, skb);
318 			if (err)
319 				tcf_action_inc_overlimit_qstats(&m->common);
320 			__this_cpu_dec(mirred_nest_level);
321 			return TC_ACT_CONSUMED;
322 		}
323 	}
324 
325 	err = tcf_mirred_forward(want_ingress, skb2);
326 	if (err) {
327 out:
328 		tcf_action_inc_overlimit_qstats(&m->common);
329 		if (tcf_mirred_is_act_redirect(m_eaction))
330 			retval = TC_ACT_SHOT;
331 	}
332 	__this_cpu_dec(mirred_nest_level);
333 
334 	return retval;
335 }
336 
tcf_stats_update(struct tc_action * a,u64 bytes,u64 packets,u64 drops,u64 lastuse,bool hw)337 static void tcf_stats_update(struct tc_action *a, u64 bytes, u64 packets,
338 			     u64 drops, u64 lastuse, bool hw)
339 {
340 	struct tcf_mirred *m = to_mirred(a);
341 	struct tcf_t *tm = &m->tcf_tm;
342 
343 	tcf_action_update_stats(a, bytes, packets, drops, hw);
344 	tm->lastuse = max_t(u64, tm->lastuse, lastuse);
345 }
346 
tcf_mirred_dump(struct sk_buff * skb,struct tc_action * a,int bind,int ref)347 static int tcf_mirred_dump(struct sk_buff *skb, struct tc_action *a, int bind,
348 			   int ref)
349 {
350 	unsigned char *b = skb_tail_pointer(skb);
351 	struct tcf_mirred *m = to_mirred(a);
352 	struct tc_mirred opt = {
353 		.index   = m->tcf_index,
354 		.refcnt  = refcount_read(&m->tcf_refcnt) - ref,
355 		.bindcnt = atomic_read(&m->tcf_bindcnt) - bind,
356 	};
357 	struct net_device *dev;
358 	struct tcf_t t;
359 
360 	spin_lock_bh(&m->tcf_lock);
361 	opt.action = m->tcf_action;
362 	opt.eaction = m->tcfm_eaction;
363 	dev = tcf_mirred_dev_dereference(m);
364 	if (dev)
365 		opt.ifindex = dev->ifindex;
366 
367 	if (nla_put(skb, TCA_MIRRED_PARMS, sizeof(opt), &opt))
368 		goto nla_put_failure;
369 
370 	tcf_tm_dump(&t, &m->tcf_tm);
371 	if (nla_put_64bit(skb, TCA_MIRRED_TM, sizeof(t), &t, TCA_MIRRED_PAD))
372 		goto nla_put_failure;
373 	spin_unlock_bh(&m->tcf_lock);
374 
375 	return skb->len;
376 
377 nla_put_failure:
378 	spin_unlock_bh(&m->tcf_lock);
379 	nlmsg_trim(skb, b);
380 	return -1;
381 }
382 
tcf_mirred_walker(struct net * net,struct sk_buff * skb,struct netlink_callback * cb,int type,const struct tc_action_ops * ops,struct netlink_ext_ack * extack)383 static int tcf_mirred_walker(struct net *net, struct sk_buff *skb,
384 			     struct netlink_callback *cb, int type,
385 			     const struct tc_action_ops *ops,
386 			     struct netlink_ext_ack *extack)
387 {
388 	struct tc_action_net *tn = net_generic(net, mirred_net_id);
389 
390 	return tcf_generic_walker(tn, skb, cb, type, ops, extack);
391 }
392 
tcf_mirred_search(struct net * net,struct tc_action ** a,u32 index)393 static int tcf_mirred_search(struct net *net, struct tc_action **a, u32 index)
394 {
395 	struct tc_action_net *tn = net_generic(net, mirred_net_id);
396 
397 	return tcf_idr_search(tn, a, index);
398 }
399 
mirred_device_event(struct notifier_block * unused,unsigned long event,void * ptr)400 static int mirred_device_event(struct notifier_block *unused,
401 			       unsigned long event, void *ptr)
402 {
403 	struct net_device *dev = netdev_notifier_info_to_dev(ptr);
404 	struct tcf_mirred *m;
405 
406 	ASSERT_RTNL();
407 	if (event == NETDEV_UNREGISTER) {
408 		spin_lock(&mirred_list_lock);
409 		list_for_each_entry(m, &mirred_list, tcfm_list) {
410 			spin_lock_bh(&m->tcf_lock);
411 			if (tcf_mirred_dev_dereference(m) == dev) {
412 				dev_put(dev);
413 				/* Note : no rcu grace period necessary, as
414 				 * net_device are already rcu protected.
415 				 */
416 				RCU_INIT_POINTER(m->tcfm_dev, NULL);
417 			}
418 			spin_unlock_bh(&m->tcf_lock);
419 		}
420 		spin_unlock(&mirred_list_lock);
421 	}
422 
423 	return NOTIFY_DONE;
424 }
425 
426 static struct notifier_block mirred_device_notifier = {
427 	.notifier_call = mirred_device_event,
428 };
429 
tcf_mirred_dev_put(void * priv)430 static void tcf_mirred_dev_put(void *priv)
431 {
432 	struct net_device *dev = priv;
433 
434 	dev_put(dev);
435 }
436 
437 static struct net_device *
tcf_mirred_get_dev(const struct tc_action * a,tc_action_priv_destructor * destructor)438 tcf_mirred_get_dev(const struct tc_action *a,
439 		   tc_action_priv_destructor *destructor)
440 {
441 	struct tcf_mirred *m = to_mirred(a);
442 	struct net_device *dev;
443 
444 	rcu_read_lock();
445 	dev = rcu_dereference(m->tcfm_dev);
446 	if (dev) {
447 		dev_hold(dev);
448 		*destructor = tcf_mirred_dev_put;
449 	}
450 	rcu_read_unlock();
451 
452 	return dev;
453 }
454 
tcf_mirred_get_fill_size(const struct tc_action * act)455 static size_t tcf_mirred_get_fill_size(const struct tc_action *act)
456 {
457 	return nla_total_size(sizeof(struct tc_mirred));
458 }
459 
460 static struct tc_action_ops act_mirred_ops = {
461 	.kind		=	"mirred",
462 	.id		=	TCA_ID_MIRRED,
463 	.owner		=	THIS_MODULE,
464 	.act		=	tcf_mirred_act,
465 	.stats_update	=	tcf_stats_update,
466 	.dump		=	tcf_mirred_dump,
467 	.cleanup	=	tcf_mirred_release,
468 	.init		=	tcf_mirred_init,
469 	.walk		=	tcf_mirred_walker,
470 	.lookup		=	tcf_mirred_search,
471 	.get_fill_size	=	tcf_mirred_get_fill_size,
472 	.size		=	sizeof(struct tcf_mirred),
473 	.get_dev	=	tcf_mirred_get_dev,
474 };
475 
mirred_init_net(struct net * net)476 static __net_init int mirred_init_net(struct net *net)
477 {
478 	struct tc_action_net *tn = net_generic(net, mirred_net_id);
479 
480 	return tc_action_net_init(net, tn, &act_mirred_ops);
481 }
482 
mirred_exit_net(struct list_head * net_list)483 static void __net_exit mirred_exit_net(struct list_head *net_list)
484 {
485 	tc_action_net_exit(net_list, mirred_net_id);
486 }
487 
488 static struct pernet_operations mirred_net_ops = {
489 	.init = mirred_init_net,
490 	.exit_batch = mirred_exit_net,
491 	.id   = &mirred_net_id,
492 	.size = sizeof(struct tc_action_net),
493 };
494 
495 MODULE_AUTHOR("Jamal Hadi Salim(2002)");
496 MODULE_DESCRIPTION("Device Mirror/redirect actions");
497 MODULE_LICENSE("GPL");
498 
mirred_init_module(void)499 static int __init mirred_init_module(void)
500 {
501 	int err = register_netdevice_notifier(&mirred_device_notifier);
502 	if (err)
503 		return err;
504 
505 	pr_info("Mirror/redirect action on\n");
506 	err = tcf_register_action(&act_mirred_ops, &mirred_net_ops);
507 	if (err)
508 		unregister_netdevice_notifier(&mirred_device_notifier);
509 
510 	return err;
511 }
512 
mirred_cleanup_module(void)513 static void __exit mirred_cleanup_module(void)
514 {
515 	tcf_unregister_action(&act_mirred_ops, &mirred_net_ops);
516 	unregister_netdevice_notifier(&mirred_device_notifier);
517 }
518 
519 module_init(mirred_init_module);
520 module_exit(mirred_cleanup_module);
521