Merge tag 'gpio-v4.8-1' of git://git.kernel.org/pub/scm/linux/kernel/git/linusw/linux...
[cascardo/linux.git] / net / sched / act_mirred.c
1 /*
2  * net/sched/act_mirred.c       packet mirroring and redirect actions
3  *
4  *              This program is free software; you can redistribute it and/or
5  *              modify it under the terms of the GNU General Public License
6  *              as published by the Free Software Foundation; either version
7  *              2 of the License, or (at your option) any later version.
8  *
9  * Authors:     Jamal Hadi Salim (2002-4)
10  *
11  * TODO: Add ingress support (and socket redirect support)
12  *
13  */
14
15 #include <linux/types.h>
16 #include <linux/kernel.h>
17 #include <linux/string.h>
18 #include <linux/errno.h>
19 #include <linux/skbuff.h>
20 #include <linux/rtnetlink.h>
21 #include <linux/module.h>
22 #include <linux/init.h>
23 #include <linux/gfp.h>
24 #include <net/net_namespace.h>
25 #include <net/netlink.h>
26 #include <net/pkt_sched.h>
27 #include <linux/tc_act/tc_mirred.h>
28 #include <net/tc_act/tc_mirred.h>
29
30 #include <linux/if_arp.h>
31
32 #define MIRRED_TAB_MASK     7
33 static LIST_HEAD(mirred_list);
34 static DEFINE_SPINLOCK(mirred_list_lock);
35
36 static void tcf_mirred_release(struct tc_action *a, int bind)
37 {
38         struct tcf_mirred *m = to_mirred(a);
39         struct net_device *dev;
40
41         /* We could be called either in a RCU callback or with RTNL lock held. */
42         spin_lock_bh(&mirred_list_lock);
43         list_del(&m->tcfm_list);
44         dev = rcu_dereference_protected(m->tcfm_dev, 1);
45         if (dev)
46                 dev_put(dev);
47         spin_unlock_bh(&mirred_list_lock);
48 }
49
50 static const struct nla_policy mirred_policy[TCA_MIRRED_MAX + 1] = {
51         [TCA_MIRRED_PARMS]      = { .len = sizeof(struct tc_mirred) },
52 };
53
54 static int mirred_net_id;
55
56 static int tcf_mirred_init(struct net *net, struct nlattr *nla,
57                            struct nlattr *est, struct tc_action *a, int ovr,
58                            int bind)
59 {
60         struct tc_action_net *tn = net_generic(net, mirred_net_id);
61         struct nlattr *tb[TCA_MIRRED_MAX + 1];
62         struct tc_mirred *parm;
63         struct tcf_mirred *m;
64         struct net_device *dev;
65         int ret, ok_push = 0, exists = 0;
66
67         if (nla == NULL)
68                 return -EINVAL;
69         ret = nla_parse_nested(tb, TCA_MIRRED_MAX, nla, mirred_policy);
70         if (ret < 0)
71                 return ret;
72         if (tb[TCA_MIRRED_PARMS] == NULL)
73                 return -EINVAL;
74         parm = nla_data(tb[TCA_MIRRED_PARMS]);
75
76         exists = tcf_hash_check(tn, parm->index, a, bind);
77         if (exists && bind)
78                 return 0;
79
80         switch (parm->eaction) {
81         case TCA_EGRESS_MIRROR:
82         case TCA_EGRESS_REDIR:
83                 break;
84         default:
85                 if (exists)
86                         tcf_hash_release(a, bind);
87                 return -EINVAL;
88         }
89         if (parm->ifindex) {
90                 dev = __dev_get_by_index(net, parm->ifindex);
91                 if (dev == NULL) {
92                         if (exists)
93                                 tcf_hash_release(a, bind);
94                         return -ENODEV;
95                 }
96                 switch (dev->type) {
97                 case ARPHRD_TUNNEL:
98                 case ARPHRD_TUNNEL6:
99                 case ARPHRD_SIT:
100                 case ARPHRD_IPGRE:
101                 case ARPHRD_VOID:
102                 case ARPHRD_NONE:
103                         ok_push = 0;
104                         break;
105                 default:
106                         ok_push = 1;
107                         break;
108                 }
109         } else {
110                 dev = NULL;
111         }
112
113         if (!exists) {
114                 if (dev == NULL)
115                         return -EINVAL;
116                 ret = tcf_hash_create(tn, parm->index, est, a,
117                                       sizeof(*m), bind, true);
118                 if (ret)
119                         return ret;
120                 ret = ACT_P_CREATED;
121         } else {
122                 tcf_hash_release(a, bind);
123                 if (!ovr)
124                         return -EEXIST;
125         }
126         m = to_mirred(a);
127
128         ASSERT_RTNL();
129         m->tcf_action = parm->action;
130         m->tcfm_eaction = parm->eaction;
131         if (dev != NULL) {
132                 m->tcfm_ifindex = parm->ifindex;
133                 if (ret != ACT_P_CREATED)
134                         dev_put(rcu_dereference_protected(m->tcfm_dev, 1));
135                 dev_hold(dev);
136                 rcu_assign_pointer(m->tcfm_dev, dev);
137                 m->tcfm_ok_push = ok_push;
138         }
139
140         if (ret == ACT_P_CREATED) {
141                 spin_lock_bh(&mirred_list_lock);
142                 list_add(&m->tcfm_list, &mirred_list);
143                 spin_unlock_bh(&mirred_list_lock);
144                 tcf_hash_insert(tn, a);
145         }
146
147         return ret;
148 }
149
150 static int tcf_mirred(struct sk_buff *skb, const struct tc_action *a,
151                       struct tcf_result *res)
152 {
153         struct tcf_mirred *m = a->priv;
154         struct net_device *dev;
155         struct sk_buff *skb2;
156         int retval, err;
157         u32 at;
158
159         tcf_lastuse_update(&m->tcf_tm);
160
161         bstats_cpu_update(this_cpu_ptr(m->common.cpu_bstats), skb);
162
163         rcu_read_lock();
164         retval = READ_ONCE(m->tcf_action);
165         dev = rcu_dereference(m->tcfm_dev);
166         if (unlikely(!dev)) {
167                 pr_notice_once("tc mirred: target device is gone\n");
168                 goto out;
169         }
170
171         if (unlikely(!(dev->flags & IFF_UP))) {
172                 net_notice_ratelimited("tc mirred to Houston: device %s is down\n",
173                                        dev->name);
174                 goto out;
175         }
176
177         at = G_TC_AT(skb->tc_verd);
178         skb2 = skb_clone(skb, GFP_ATOMIC);
179         if (!skb2)
180                 goto out;
181
182         if (!(at & AT_EGRESS)) {
183                 if (m->tcfm_ok_push)
184                         skb_push_rcsum(skb2, skb->mac_len);
185         }
186
187         /* mirror is always swallowed */
188         if (m->tcfm_eaction != TCA_EGRESS_MIRROR)
189                 skb2->tc_verd = SET_TC_FROM(skb2->tc_verd, at);
190
191         skb2->skb_iif = skb->dev->ifindex;
192         skb2->dev = dev;
193         err = dev_queue_xmit(skb2);
194
195         if (err) {
196 out:
197                 qstats_overlimit_inc(this_cpu_ptr(m->common.cpu_qstats));
198                 if (m->tcfm_eaction != TCA_EGRESS_MIRROR)
199                         retval = TC_ACT_SHOT;
200         }
201         rcu_read_unlock();
202
203         return retval;
204 }
205
206 static int tcf_mirred_dump(struct sk_buff *skb, struct tc_action *a, int bind, int ref)
207 {
208         unsigned char *b = skb_tail_pointer(skb);
209         struct tcf_mirred *m = a->priv;
210         struct tc_mirred opt = {
211                 .index   = m->tcf_index,
212                 .action  = m->tcf_action,
213                 .refcnt  = m->tcf_refcnt - ref,
214                 .bindcnt = m->tcf_bindcnt - bind,
215                 .eaction = m->tcfm_eaction,
216                 .ifindex = m->tcfm_ifindex,
217         };
218         struct tcf_t t;
219
220         if (nla_put(skb, TCA_MIRRED_PARMS, sizeof(opt), &opt))
221                 goto nla_put_failure;
222         t.install = jiffies_to_clock_t(jiffies - m->tcf_tm.install);
223         t.lastuse = jiffies_to_clock_t(jiffies - m->tcf_tm.lastuse);
224         t.expires = jiffies_to_clock_t(m->tcf_tm.expires);
225         if (nla_put_64bit(skb, TCA_MIRRED_TM, sizeof(t), &t, TCA_MIRRED_PAD))
226                 goto nla_put_failure;
227         return skb->len;
228
229 nla_put_failure:
230         nlmsg_trim(skb, b);
231         return -1;
232 }
233
234 static int tcf_mirred_walker(struct net *net, struct sk_buff *skb,
235                              struct netlink_callback *cb, int type,
236                              struct tc_action *a)
237 {
238         struct tc_action_net *tn = net_generic(net, mirred_net_id);
239
240         return tcf_generic_walker(tn, skb, cb, type, a);
241 }
242
243 static int tcf_mirred_search(struct net *net, struct tc_action *a, u32 index)
244 {
245         struct tc_action_net *tn = net_generic(net, mirred_net_id);
246
247         return tcf_hash_search(tn, a, index);
248 }
249
250 static int mirred_device_event(struct notifier_block *unused,
251                                unsigned long event, void *ptr)
252 {
253         struct net_device *dev = netdev_notifier_info_to_dev(ptr);
254         struct tcf_mirred *m;
255
256         ASSERT_RTNL();
257         if (event == NETDEV_UNREGISTER) {
258                 spin_lock_bh(&mirred_list_lock);
259                 list_for_each_entry(m, &mirred_list, tcfm_list) {
260                         if (rcu_access_pointer(m->tcfm_dev) == dev) {
261                                 dev_put(dev);
262                                 /* Note : no rcu grace period necessary, as
263                                  * net_device are already rcu protected.
264                                  */
265                                 RCU_INIT_POINTER(m->tcfm_dev, NULL);
266                         }
267                 }
268                 spin_unlock_bh(&mirred_list_lock);
269         }
270
271         return NOTIFY_DONE;
272 }
273
274 static struct notifier_block mirred_device_notifier = {
275         .notifier_call = mirred_device_event,
276 };
277
278 static struct tc_action_ops act_mirred_ops = {
279         .kind           =       "mirred",
280         .type           =       TCA_ACT_MIRRED,
281         .owner          =       THIS_MODULE,
282         .act            =       tcf_mirred,
283         .dump           =       tcf_mirred_dump,
284         .cleanup        =       tcf_mirred_release,
285         .init           =       tcf_mirred_init,
286         .walk           =       tcf_mirred_walker,
287         .lookup         =       tcf_mirred_search,
288 };
289
290 static __net_init int mirred_init_net(struct net *net)
291 {
292         struct tc_action_net *tn = net_generic(net, mirred_net_id);
293
294         return tc_action_net_init(tn, &act_mirred_ops, MIRRED_TAB_MASK);
295 }
296
297 static void __net_exit mirred_exit_net(struct net *net)
298 {
299         struct tc_action_net *tn = net_generic(net, mirred_net_id);
300
301         tc_action_net_exit(tn);
302 }
303
304 static struct pernet_operations mirred_net_ops = {
305         .init = mirred_init_net,
306         .exit = mirred_exit_net,
307         .id   = &mirred_net_id,
308         .size = sizeof(struct tc_action_net),
309 };
310
311 MODULE_AUTHOR("Jamal Hadi Salim(2002)");
312 MODULE_DESCRIPTION("Device Mirror/redirect actions");
313 MODULE_LICENSE("GPL");
314
315 static int __init mirred_init_module(void)
316 {
317         int err = register_netdevice_notifier(&mirred_device_notifier);
318         if (err)
319                 return err;
320
321         pr_info("Mirror/redirect action on\n");
322         return tcf_register_action(&act_mirred_ops, &mirred_net_ops);
323 }
324
325 static void __exit mirred_cleanup_module(void)
326 {
327         tcf_unregister_action(&act_mirred_ops, &mirred_net_ops);
328         unregister_netdevice_notifier(&mirred_device_notifier);
329 }
330
331 module_init(mirred_init_module);
332 module_exit(mirred_cleanup_module);