Merge tag 'gpio-v4.20-1' of git://git.kernel.org/pub/scm/linux/kernel/git/linusw...
[sfrench/cifs-2.6.git] / drivers / net / geneve.c
1 /*
2  * GENEVE: Generic Network Virtualization Encapsulation
3  *
4  * Copyright (c) 2015 Red Hat, Inc.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License version 2 as
8  * published by the Free Software Foundation.
9  */
10
11 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
12
13 #include <linux/kernel.h>
14 #include <linux/module.h>
15 #include <linux/etherdevice.h>
16 #include <linux/hash.h>
17 #include <net/dst_metadata.h>
18 #include <net/gro_cells.h>
19 #include <net/rtnetlink.h>
20 #include <net/geneve.h>
21 #include <net/protocol.h>
22
23 #define GENEVE_NETDEV_VER       "0.6"
24
25 #define GENEVE_UDP_PORT         6081
26
27 #define GENEVE_N_VID            (1u << 24)
28 #define GENEVE_VID_MASK         (GENEVE_N_VID - 1)
29
30 #define VNI_HASH_BITS           10
31 #define VNI_HASH_SIZE           (1<<VNI_HASH_BITS)
32
33 static bool log_ecn_error = true;
34 module_param(log_ecn_error, bool, 0644);
35 MODULE_PARM_DESC(log_ecn_error, "Log packets received with corrupted ECN");
36
37 #define GENEVE_VER 0
38 #define GENEVE_BASE_HLEN (sizeof(struct udphdr) + sizeof(struct genevehdr))
39 #define GENEVE_IPV4_HLEN (ETH_HLEN + sizeof(struct iphdr) + GENEVE_BASE_HLEN)
40 #define GENEVE_IPV6_HLEN (ETH_HLEN + sizeof(struct ipv6hdr) + GENEVE_BASE_HLEN)
41
42 /* per-network namespace private data for this module */
43 struct geneve_net {
44         struct list_head        geneve_list;
45         struct list_head        sock_list;
46 };
47
48 static unsigned int geneve_net_id;
49
50 struct geneve_dev_node {
51         struct hlist_node hlist;
52         struct geneve_dev *geneve;
53 };
54
55 /* Pseudo network device */
56 struct geneve_dev {
57         struct geneve_dev_node hlist4;  /* vni hash table for IPv4 socket */
58 #if IS_ENABLED(CONFIG_IPV6)
59         struct geneve_dev_node hlist6;  /* vni hash table for IPv6 socket */
60 #endif
61         struct net         *net;        /* netns for packet i/o */
62         struct net_device  *dev;        /* netdev for geneve tunnel */
63         struct ip_tunnel_info info;
64         struct geneve_sock __rcu *sock4;        /* IPv4 socket used for geneve tunnel */
65 #if IS_ENABLED(CONFIG_IPV6)
66         struct geneve_sock __rcu *sock6;        /* IPv6 socket used for geneve tunnel */
67 #endif
68         struct list_head   next;        /* geneve's per namespace list */
69         struct gro_cells   gro_cells;
70         bool               collect_md;
71         bool               use_udp6_rx_checksums;
72 };
73
74 struct geneve_sock {
75         bool                    collect_md;
76         struct list_head        list;
77         struct socket           *sock;
78         struct rcu_head         rcu;
79         int                     refcnt;
80         struct hlist_head       vni_list[VNI_HASH_SIZE];
81 };
82
83 static inline __u32 geneve_net_vni_hash(u8 vni[3])
84 {
85         __u32 vnid;
86
87         vnid = (vni[0] << 16) | (vni[1] << 8) | vni[2];
88         return hash_32(vnid, VNI_HASH_BITS);
89 }
90
91 static __be64 vni_to_tunnel_id(const __u8 *vni)
92 {
93 #ifdef __BIG_ENDIAN
94         return (vni[0] << 16) | (vni[1] << 8) | vni[2];
95 #else
96         return (__force __be64)(((__force u64)vni[0] << 40) |
97                                 ((__force u64)vni[1] << 48) |
98                                 ((__force u64)vni[2] << 56));
99 #endif
100 }
101
102 /* Convert 64 bit tunnel ID to 24 bit VNI. */
103 static void tunnel_id_to_vni(__be64 tun_id, __u8 *vni)
104 {
105 #ifdef __BIG_ENDIAN
106         vni[0] = (__force __u8)(tun_id >> 16);
107         vni[1] = (__force __u8)(tun_id >> 8);
108         vni[2] = (__force __u8)tun_id;
109 #else
110         vni[0] = (__force __u8)((__force u64)tun_id >> 40);
111         vni[1] = (__force __u8)((__force u64)tun_id >> 48);
112         vni[2] = (__force __u8)((__force u64)tun_id >> 56);
113 #endif
114 }
115
116 static bool eq_tun_id_and_vni(u8 *tun_id, u8 *vni)
117 {
118         return !memcmp(vni, &tun_id[5], 3);
119 }
120
121 static sa_family_t geneve_get_sk_family(struct geneve_sock *gs)
122 {
123         return gs->sock->sk->sk_family;
124 }
125
126 static struct geneve_dev *geneve_lookup(struct geneve_sock *gs,
127                                         __be32 addr, u8 vni[])
128 {
129         struct hlist_head *vni_list_head;
130         struct geneve_dev_node *node;
131         __u32 hash;
132
133         /* Find the device for this VNI */
134         hash = geneve_net_vni_hash(vni);
135         vni_list_head = &gs->vni_list[hash];
136         hlist_for_each_entry_rcu(node, vni_list_head, hlist) {
137                 if (eq_tun_id_and_vni((u8 *)&node->geneve->info.key.tun_id, vni) &&
138                     addr == node->geneve->info.key.u.ipv4.dst)
139                         return node->geneve;
140         }
141         return NULL;
142 }
143
144 #if IS_ENABLED(CONFIG_IPV6)
145 static struct geneve_dev *geneve6_lookup(struct geneve_sock *gs,
146                                          struct in6_addr addr6, u8 vni[])
147 {
148         struct hlist_head *vni_list_head;
149         struct geneve_dev_node *node;
150         __u32 hash;
151
152         /* Find the device for this VNI */
153         hash = geneve_net_vni_hash(vni);
154         vni_list_head = &gs->vni_list[hash];
155         hlist_for_each_entry_rcu(node, vni_list_head, hlist) {
156                 if (eq_tun_id_and_vni((u8 *)&node->geneve->info.key.tun_id, vni) &&
157                     ipv6_addr_equal(&addr6, &node->geneve->info.key.u.ipv6.dst))
158                         return node->geneve;
159         }
160         return NULL;
161 }
162 #endif
163
164 static inline struct genevehdr *geneve_hdr(const struct sk_buff *skb)
165 {
166         return (struct genevehdr *)(udp_hdr(skb) + 1);
167 }
168
169 static struct geneve_dev *geneve_lookup_skb(struct geneve_sock *gs,
170                                             struct sk_buff *skb)
171 {
172         static u8 zero_vni[3];
173         u8 *vni;
174
175         if (geneve_get_sk_family(gs) == AF_INET) {
176                 struct iphdr *iph;
177                 __be32 addr;
178
179                 iph = ip_hdr(skb); /* outer IP header... */
180
181                 if (gs->collect_md) {
182                         vni = zero_vni;
183                         addr = 0;
184                 } else {
185                         vni = geneve_hdr(skb)->vni;
186                         addr = iph->saddr;
187                 }
188
189                 return geneve_lookup(gs, addr, vni);
190 #if IS_ENABLED(CONFIG_IPV6)
191         } else if (geneve_get_sk_family(gs) == AF_INET6) {
192                 static struct in6_addr zero_addr6;
193                 struct ipv6hdr *ip6h;
194                 struct in6_addr addr6;
195
196                 ip6h = ipv6_hdr(skb); /* outer IPv6 header... */
197
198                 if (gs->collect_md) {
199                         vni = zero_vni;
200                         addr6 = zero_addr6;
201                 } else {
202                         vni = geneve_hdr(skb)->vni;
203                         addr6 = ip6h->saddr;
204                 }
205
206                 return geneve6_lookup(gs, addr6, vni);
207 #endif
208         }
209         return NULL;
210 }
211
212 /* geneve receive/decap routine */
213 static void geneve_rx(struct geneve_dev *geneve, struct geneve_sock *gs,
214                       struct sk_buff *skb)
215 {
216         struct genevehdr *gnvh = geneve_hdr(skb);
217         struct metadata_dst *tun_dst = NULL;
218         struct pcpu_sw_netstats *stats;
219         unsigned int len;
220         int err = 0;
221         void *oiph;
222
223         if (ip_tunnel_collect_metadata() || gs->collect_md) {
224                 __be16 flags;
225
226                 flags = TUNNEL_KEY | TUNNEL_GENEVE_OPT |
227                         (gnvh->oam ? TUNNEL_OAM : 0) |
228                         (gnvh->critical ? TUNNEL_CRIT_OPT : 0);
229
230                 tun_dst = udp_tun_rx_dst(skb, geneve_get_sk_family(gs), flags,
231                                          vni_to_tunnel_id(gnvh->vni),
232                                          gnvh->opt_len * 4);
233                 if (!tun_dst) {
234                         geneve->dev->stats.rx_dropped++;
235                         goto drop;
236                 }
237                 /* Update tunnel dst according to Geneve options. */
238                 ip_tunnel_info_opts_set(&tun_dst->u.tun_info,
239                                         gnvh->options, gnvh->opt_len * 4,
240                                         TUNNEL_GENEVE_OPT);
241         } else {
242                 /* Drop packets w/ critical options,
243                  * since we don't support any...
244                  */
245                 if (gnvh->critical) {
246                         geneve->dev->stats.rx_frame_errors++;
247                         geneve->dev->stats.rx_errors++;
248                         goto drop;
249                 }
250         }
251
252         skb_reset_mac_header(skb);
253         skb->protocol = eth_type_trans(skb, geneve->dev);
254         skb_postpull_rcsum(skb, eth_hdr(skb), ETH_HLEN);
255
256         if (tun_dst)
257                 skb_dst_set(skb, &tun_dst->dst);
258
259         /* Ignore packet loops (and multicast echo) */
260         if (ether_addr_equal(eth_hdr(skb)->h_source, geneve->dev->dev_addr)) {
261                 geneve->dev->stats.rx_errors++;
262                 goto drop;
263         }
264
265         oiph = skb_network_header(skb);
266         skb_reset_network_header(skb);
267
268         if (geneve_get_sk_family(gs) == AF_INET)
269                 err = IP_ECN_decapsulate(oiph, skb);
270 #if IS_ENABLED(CONFIG_IPV6)
271         else
272                 err = IP6_ECN_decapsulate(oiph, skb);
273 #endif
274
275         if (unlikely(err)) {
276                 if (log_ecn_error) {
277                         if (geneve_get_sk_family(gs) == AF_INET)
278                                 net_info_ratelimited("non-ECT from %pI4 "
279                                                      "with TOS=%#x\n",
280                                                      &((struct iphdr *)oiph)->saddr,
281                                                      ((struct iphdr *)oiph)->tos);
282 #if IS_ENABLED(CONFIG_IPV6)
283                         else
284                                 net_info_ratelimited("non-ECT from %pI6\n",
285                                                      &((struct ipv6hdr *)oiph)->saddr);
286 #endif
287                 }
288                 if (err > 1) {
289                         ++geneve->dev->stats.rx_frame_errors;
290                         ++geneve->dev->stats.rx_errors;
291                         goto drop;
292                 }
293         }
294
295         len = skb->len;
296         err = gro_cells_receive(&geneve->gro_cells, skb);
297         if (likely(err == NET_RX_SUCCESS)) {
298                 stats = this_cpu_ptr(geneve->dev->tstats);
299                 u64_stats_update_begin(&stats->syncp);
300                 stats->rx_packets++;
301                 stats->rx_bytes += len;
302                 u64_stats_update_end(&stats->syncp);
303         }
304         return;
305 drop:
306         /* Consume bad packet */
307         kfree_skb(skb);
308 }
309
310 /* Setup stats when device is created */
311 static int geneve_init(struct net_device *dev)
312 {
313         struct geneve_dev *geneve = netdev_priv(dev);
314         int err;
315
316         dev->tstats = netdev_alloc_pcpu_stats(struct pcpu_sw_netstats);
317         if (!dev->tstats)
318                 return -ENOMEM;
319
320         err = gro_cells_init(&geneve->gro_cells, dev);
321         if (err) {
322                 free_percpu(dev->tstats);
323                 return err;
324         }
325
326         err = dst_cache_init(&geneve->info.dst_cache, GFP_KERNEL);
327         if (err) {
328                 free_percpu(dev->tstats);
329                 gro_cells_destroy(&geneve->gro_cells);
330                 return err;
331         }
332         return 0;
333 }
334
335 static void geneve_uninit(struct net_device *dev)
336 {
337         struct geneve_dev *geneve = netdev_priv(dev);
338
339         dst_cache_destroy(&geneve->info.dst_cache);
340         gro_cells_destroy(&geneve->gro_cells);
341         free_percpu(dev->tstats);
342 }
343
344 /* Callback from net/ipv4/udp.c to receive packets */
345 static int geneve_udp_encap_recv(struct sock *sk, struct sk_buff *skb)
346 {
347         struct genevehdr *geneveh;
348         struct geneve_dev *geneve;
349         struct geneve_sock *gs;
350         int opts_len;
351
352         /* Need UDP and Geneve header to be present */
353         if (unlikely(!pskb_may_pull(skb, GENEVE_BASE_HLEN)))
354                 goto drop;
355
356         /* Return packets with reserved bits set */
357         geneveh = geneve_hdr(skb);
358         if (unlikely(geneveh->ver != GENEVE_VER))
359                 goto drop;
360
361         if (unlikely(geneveh->proto_type != htons(ETH_P_TEB)))
362                 goto drop;
363
364         gs = rcu_dereference_sk_user_data(sk);
365         if (!gs)
366                 goto drop;
367
368         geneve = geneve_lookup_skb(gs, skb);
369         if (!geneve)
370                 goto drop;
371
372         opts_len = geneveh->opt_len * 4;
373         if (iptunnel_pull_header(skb, GENEVE_BASE_HLEN + opts_len,
374                                  htons(ETH_P_TEB),
375                                  !net_eq(geneve->net, dev_net(geneve->dev)))) {
376                 geneve->dev->stats.rx_dropped++;
377                 goto drop;
378         }
379
380         geneve_rx(geneve, gs, skb);
381         return 0;
382
383 drop:
384         /* Consume bad packet */
385         kfree_skb(skb);
386         return 0;
387 }
388
389 static struct socket *geneve_create_sock(struct net *net, bool ipv6,
390                                          __be16 port, bool ipv6_rx_csum)
391 {
392         struct socket *sock;
393         struct udp_port_cfg udp_conf;
394         int err;
395
396         memset(&udp_conf, 0, sizeof(udp_conf));
397
398         if (ipv6) {
399                 udp_conf.family = AF_INET6;
400                 udp_conf.ipv6_v6only = 1;
401                 udp_conf.use_udp6_rx_checksums = ipv6_rx_csum;
402         } else {
403                 udp_conf.family = AF_INET;
404                 udp_conf.local_ip.s_addr = htonl(INADDR_ANY);
405         }
406
407         udp_conf.local_udp_port = port;
408
409         /* Open UDP socket */
410         err = udp_sock_create(net, &udp_conf, &sock);
411         if (err < 0)
412                 return ERR_PTR(err);
413
414         return sock;
415 }
416
417 static int geneve_hlen(struct genevehdr *gh)
418 {
419         return sizeof(*gh) + gh->opt_len * 4;
420 }
421
422 static struct sk_buff *geneve_gro_receive(struct sock *sk,
423                                           struct list_head *head,
424                                           struct sk_buff *skb)
425 {
426         struct sk_buff *pp = NULL;
427         struct sk_buff *p;
428         struct genevehdr *gh, *gh2;
429         unsigned int hlen, gh_len, off_gnv;
430         const struct packet_offload *ptype;
431         __be16 type;
432         int flush = 1;
433
434         off_gnv = skb_gro_offset(skb);
435         hlen = off_gnv + sizeof(*gh);
436         gh = skb_gro_header_fast(skb, off_gnv);
437         if (skb_gro_header_hard(skb, hlen)) {
438                 gh = skb_gro_header_slow(skb, hlen, off_gnv);
439                 if (unlikely(!gh))
440                         goto out;
441         }
442
443         if (gh->ver != GENEVE_VER || gh->oam)
444                 goto out;
445         gh_len = geneve_hlen(gh);
446
447         hlen = off_gnv + gh_len;
448         if (skb_gro_header_hard(skb, hlen)) {
449                 gh = skb_gro_header_slow(skb, hlen, off_gnv);
450                 if (unlikely(!gh))
451                         goto out;
452         }
453
454         list_for_each_entry(p, head, list) {
455                 if (!NAPI_GRO_CB(p)->same_flow)
456                         continue;
457
458                 gh2 = (struct genevehdr *)(p->data + off_gnv);
459                 if (gh->opt_len != gh2->opt_len ||
460                     memcmp(gh, gh2, gh_len)) {
461                         NAPI_GRO_CB(p)->same_flow = 0;
462                         continue;
463                 }
464         }
465
466         type = gh->proto_type;
467
468         rcu_read_lock();
469         ptype = gro_find_receive_by_type(type);
470         if (!ptype)
471                 goto out_unlock;
472
473         skb_gro_pull(skb, gh_len);
474         skb_gro_postpull_rcsum(skb, gh, gh_len);
475         pp = call_gro_receive(ptype->callbacks.gro_receive, head, skb);
476         flush = 0;
477
478 out_unlock:
479         rcu_read_unlock();
480 out:
481         skb_gro_flush_final(skb, pp, flush);
482
483         return pp;
484 }
485
486 static int geneve_gro_complete(struct sock *sk, struct sk_buff *skb,
487                                int nhoff)
488 {
489         struct genevehdr *gh;
490         struct packet_offload *ptype;
491         __be16 type;
492         int gh_len;
493         int err = -ENOSYS;
494
495         gh = (struct genevehdr *)(skb->data + nhoff);
496         gh_len = geneve_hlen(gh);
497         type = gh->proto_type;
498
499         rcu_read_lock();
500         ptype = gro_find_complete_by_type(type);
501         if (ptype)
502                 err = ptype->callbacks.gro_complete(skb, nhoff + gh_len);
503
504         rcu_read_unlock();
505
506         skb_set_inner_mac_header(skb, nhoff + gh_len);
507
508         return err;
509 }
510
511 /* Create new listen socket if needed */
512 static struct geneve_sock *geneve_socket_create(struct net *net, __be16 port,
513                                                 bool ipv6, bool ipv6_rx_csum)
514 {
515         struct geneve_net *gn = net_generic(net, geneve_net_id);
516         struct geneve_sock *gs;
517         struct socket *sock;
518         struct udp_tunnel_sock_cfg tunnel_cfg;
519         int h;
520
521         gs = kzalloc(sizeof(*gs), GFP_KERNEL);
522         if (!gs)
523                 return ERR_PTR(-ENOMEM);
524
525         sock = geneve_create_sock(net, ipv6, port, ipv6_rx_csum);
526         if (IS_ERR(sock)) {
527                 kfree(gs);
528                 return ERR_CAST(sock);
529         }
530
531         gs->sock = sock;
532         gs->refcnt = 1;
533         for (h = 0; h < VNI_HASH_SIZE; ++h)
534                 INIT_HLIST_HEAD(&gs->vni_list[h]);
535
536         /* Initialize the geneve udp offloads structure */
537         udp_tunnel_notify_add_rx_port(gs->sock, UDP_TUNNEL_TYPE_GENEVE);
538
539         /* Mark socket as an encapsulation socket */
540         memset(&tunnel_cfg, 0, sizeof(tunnel_cfg));
541         tunnel_cfg.sk_user_data = gs;
542         tunnel_cfg.encap_type = 1;
543         tunnel_cfg.gro_receive = geneve_gro_receive;
544         tunnel_cfg.gro_complete = geneve_gro_complete;
545         tunnel_cfg.encap_rcv = geneve_udp_encap_recv;
546         tunnel_cfg.encap_destroy = NULL;
547         setup_udp_tunnel_sock(net, sock, &tunnel_cfg);
548         list_add(&gs->list, &gn->sock_list);
549         return gs;
550 }
551
552 static void __geneve_sock_release(struct geneve_sock *gs)
553 {
554         if (!gs || --gs->refcnt)
555                 return;
556
557         list_del(&gs->list);
558         udp_tunnel_notify_del_rx_port(gs->sock, UDP_TUNNEL_TYPE_GENEVE);
559         udp_tunnel_sock_release(gs->sock);
560         kfree_rcu(gs, rcu);
561 }
562
563 static void geneve_sock_release(struct geneve_dev *geneve)
564 {
565         struct geneve_sock *gs4 = rtnl_dereference(geneve->sock4);
566 #if IS_ENABLED(CONFIG_IPV6)
567         struct geneve_sock *gs6 = rtnl_dereference(geneve->sock6);
568
569         rcu_assign_pointer(geneve->sock6, NULL);
570 #endif
571
572         rcu_assign_pointer(geneve->sock4, NULL);
573         synchronize_net();
574
575         __geneve_sock_release(gs4);
576 #if IS_ENABLED(CONFIG_IPV6)
577         __geneve_sock_release(gs6);
578 #endif
579 }
580
581 static struct geneve_sock *geneve_find_sock(struct geneve_net *gn,
582                                             sa_family_t family,
583                                             __be16 dst_port)
584 {
585         struct geneve_sock *gs;
586
587         list_for_each_entry(gs, &gn->sock_list, list) {
588                 if (inet_sk(gs->sock->sk)->inet_sport == dst_port &&
589                     geneve_get_sk_family(gs) == family) {
590                         return gs;
591                 }
592         }
593         return NULL;
594 }
595
596 static int geneve_sock_add(struct geneve_dev *geneve, bool ipv6)
597 {
598         struct net *net = geneve->net;
599         struct geneve_net *gn = net_generic(net, geneve_net_id);
600         struct geneve_dev_node *node;
601         struct geneve_sock *gs;
602         __u8 vni[3];
603         __u32 hash;
604
605         gs = geneve_find_sock(gn, ipv6 ? AF_INET6 : AF_INET, geneve->info.key.tp_dst);
606         if (gs) {
607                 gs->refcnt++;
608                 goto out;
609         }
610
611         gs = geneve_socket_create(net, geneve->info.key.tp_dst, ipv6,
612                                   geneve->use_udp6_rx_checksums);
613         if (IS_ERR(gs))
614                 return PTR_ERR(gs);
615
616 out:
617         gs->collect_md = geneve->collect_md;
618 #if IS_ENABLED(CONFIG_IPV6)
619         if (ipv6) {
620                 rcu_assign_pointer(geneve->sock6, gs);
621                 node = &geneve->hlist6;
622         } else
623 #endif
624         {
625                 rcu_assign_pointer(geneve->sock4, gs);
626                 node = &geneve->hlist4;
627         }
628         node->geneve = geneve;
629
630         tunnel_id_to_vni(geneve->info.key.tun_id, vni);
631         hash = geneve_net_vni_hash(vni);
632         hlist_add_head_rcu(&node->hlist, &gs->vni_list[hash]);
633         return 0;
634 }
635
636 static int geneve_open(struct net_device *dev)
637 {
638         struct geneve_dev *geneve = netdev_priv(dev);
639         bool ipv6 = !!(geneve->info.mode & IP_TUNNEL_INFO_IPV6);
640         bool metadata = geneve->collect_md;
641         int ret = 0;
642
643 #if IS_ENABLED(CONFIG_IPV6)
644         if (ipv6 || metadata)
645                 ret = geneve_sock_add(geneve, true);
646 #endif
647         if (!ret && (!ipv6 || metadata))
648                 ret = geneve_sock_add(geneve, false);
649         if (ret < 0)
650                 geneve_sock_release(geneve);
651
652         return ret;
653 }
654
655 static int geneve_stop(struct net_device *dev)
656 {
657         struct geneve_dev *geneve = netdev_priv(dev);
658
659         hlist_del_init_rcu(&geneve->hlist4.hlist);
660 #if IS_ENABLED(CONFIG_IPV6)
661         hlist_del_init_rcu(&geneve->hlist6.hlist);
662 #endif
663         geneve_sock_release(geneve);
664         return 0;
665 }
666
667 static void geneve_build_header(struct genevehdr *geneveh,
668                                 const struct ip_tunnel_info *info)
669 {
670         geneveh->ver = GENEVE_VER;
671         geneveh->opt_len = info->options_len / 4;
672         geneveh->oam = !!(info->key.tun_flags & TUNNEL_OAM);
673         geneveh->critical = !!(info->key.tun_flags & TUNNEL_CRIT_OPT);
674         geneveh->rsvd1 = 0;
675         tunnel_id_to_vni(info->key.tun_id, geneveh->vni);
676         geneveh->proto_type = htons(ETH_P_TEB);
677         geneveh->rsvd2 = 0;
678
679         if (info->key.tun_flags & TUNNEL_GENEVE_OPT)
680                 ip_tunnel_info_opts_get(geneveh->options, info);
681 }
682
683 static int geneve_build_skb(struct dst_entry *dst, struct sk_buff *skb,
684                             const struct ip_tunnel_info *info,
685                             bool xnet, int ip_hdr_len)
686 {
687         bool udp_sum = !!(info->key.tun_flags & TUNNEL_CSUM);
688         struct genevehdr *gnvh;
689         int min_headroom;
690         int err;
691
692         skb_reset_mac_header(skb);
693         skb_scrub_packet(skb, xnet);
694
695         min_headroom = LL_RESERVED_SPACE(dst->dev) + dst->header_len +
696                        GENEVE_BASE_HLEN + info->options_len + ip_hdr_len;
697         err = skb_cow_head(skb, min_headroom);
698         if (unlikely(err))
699                 goto free_dst;
700
701         err = udp_tunnel_handle_offloads(skb, udp_sum);
702         if (err)
703                 goto free_dst;
704
705         gnvh = __skb_push(skb, sizeof(*gnvh) + info->options_len);
706         geneve_build_header(gnvh, info);
707         skb_set_inner_protocol(skb, htons(ETH_P_TEB));
708         return 0;
709
710 free_dst:
711         dst_release(dst);
712         return err;
713 }
714
715 static struct rtable *geneve_get_v4_rt(struct sk_buff *skb,
716                                        struct net_device *dev,
717                                        struct geneve_sock *gs4,
718                                        struct flowi4 *fl4,
719                                        const struct ip_tunnel_info *info)
720 {
721         bool use_cache = ip_tunnel_dst_cache_usable(skb, info);
722         struct geneve_dev *geneve = netdev_priv(dev);
723         struct dst_cache *dst_cache;
724         struct rtable *rt = NULL;
725         __u8 tos;
726
727         if (!gs4)
728                 return ERR_PTR(-EIO);
729
730         memset(fl4, 0, sizeof(*fl4));
731         fl4->flowi4_mark = skb->mark;
732         fl4->flowi4_proto = IPPROTO_UDP;
733         fl4->daddr = info->key.u.ipv4.dst;
734         fl4->saddr = info->key.u.ipv4.src;
735
736         tos = info->key.tos;
737         if ((tos == 1) && !geneve->collect_md) {
738                 tos = ip_tunnel_get_dsfield(ip_hdr(skb), skb);
739                 use_cache = false;
740         }
741         fl4->flowi4_tos = RT_TOS(tos);
742
743         dst_cache = (struct dst_cache *)&info->dst_cache;
744         if (use_cache) {
745                 rt = dst_cache_get_ip4(dst_cache, &fl4->saddr);
746                 if (rt)
747                         return rt;
748         }
749         rt = ip_route_output_key(geneve->net, fl4);
750         if (IS_ERR(rt)) {
751                 netdev_dbg(dev, "no route to %pI4\n", &fl4->daddr);
752                 return ERR_PTR(-ENETUNREACH);
753         }
754         if (rt->dst.dev == dev) { /* is this necessary? */
755                 netdev_dbg(dev, "circular route to %pI4\n", &fl4->daddr);
756                 ip_rt_put(rt);
757                 return ERR_PTR(-ELOOP);
758         }
759         if (use_cache)
760                 dst_cache_set_ip4(dst_cache, &rt->dst, fl4->saddr);
761         return rt;
762 }
763
764 #if IS_ENABLED(CONFIG_IPV6)
765 static struct dst_entry *geneve_get_v6_dst(struct sk_buff *skb,
766                                            struct net_device *dev,
767                                            struct geneve_sock *gs6,
768                                            struct flowi6 *fl6,
769                                            const struct ip_tunnel_info *info)
770 {
771         bool use_cache = ip_tunnel_dst_cache_usable(skb, info);
772         struct geneve_dev *geneve = netdev_priv(dev);
773         struct dst_entry *dst = NULL;
774         struct dst_cache *dst_cache;
775         __u8 prio;
776
777         if (!gs6)
778                 return ERR_PTR(-EIO);
779
780         memset(fl6, 0, sizeof(*fl6));
781         fl6->flowi6_mark = skb->mark;
782         fl6->flowi6_proto = IPPROTO_UDP;
783         fl6->daddr = info->key.u.ipv6.dst;
784         fl6->saddr = info->key.u.ipv6.src;
785         prio = info->key.tos;
786         if ((prio == 1) && !geneve->collect_md) {
787                 prio = ip_tunnel_get_dsfield(ip_hdr(skb), skb);
788                 use_cache = false;
789         }
790
791         fl6->flowlabel = ip6_make_flowinfo(RT_TOS(prio),
792                                            info->key.label);
793         dst_cache = (struct dst_cache *)&info->dst_cache;
794         if (use_cache) {
795                 dst = dst_cache_get_ip6(dst_cache, &fl6->saddr);
796                 if (dst)
797                         return dst;
798         }
799         if (ipv6_stub->ipv6_dst_lookup(geneve->net, gs6->sock->sk, &dst, fl6)) {
800                 netdev_dbg(dev, "no route to %pI6\n", &fl6->daddr);
801                 return ERR_PTR(-ENETUNREACH);
802         }
803         if (dst->dev == dev) { /* is this necessary? */
804                 netdev_dbg(dev, "circular route to %pI6\n", &fl6->daddr);
805                 dst_release(dst);
806                 return ERR_PTR(-ELOOP);
807         }
808
809         if (use_cache)
810                 dst_cache_set_ip6(dst_cache, dst, &fl6->saddr);
811         return dst;
812 }
813 #endif
814
815 static int geneve_xmit_skb(struct sk_buff *skb, struct net_device *dev,
816                            struct geneve_dev *geneve,
817                            const struct ip_tunnel_info *info)
818 {
819         bool xnet = !net_eq(geneve->net, dev_net(geneve->dev));
820         struct geneve_sock *gs4 = rcu_dereference(geneve->sock4);
821         const struct ip_tunnel_key *key = &info->key;
822         struct rtable *rt;
823         struct flowi4 fl4;
824         __u8 tos, ttl;
825         __be16 sport;
826         __be16 df;
827         int err;
828
829         rt = geneve_get_v4_rt(skb, dev, gs4, &fl4, info);
830         if (IS_ERR(rt))
831                 return PTR_ERR(rt);
832
833         skb_tunnel_check_pmtu(skb, &rt->dst,
834                               GENEVE_IPV4_HLEN + info->options_len);
835
836         sport = udp_flow_src_port(geneve->net, skb, 1, USHRT_MAX, true);
837         if (geneve->collect_md) {
838                 tos = ip_tunnel_ecn_encap(key->tos, ip_hdr(skb), skb);
839                 ttl = key->ttl;
840         } else {
841                 tos = ip_tunnel_ecn_encap(fl4.flowi4_tos, ip_hdr(skb), skb);
842                 ttl = key->ttl ? : ip4_dst_hoplimit(&rt->dst);
843         }
844         df = key->tun_flags & TUNNEL_DONT_FRAGMENT ? htons(IP_DF) : 0;
845
846         err = geneve_build_skb(&rt->dst, skb, info, xnet, sizeof(struct iphdr));
847         if (unlikely(err))
848                 return err;
849
850         udp_tunnel_xmit_skb(rt, gs4->sock->sk, skb, fl4.saddr, fl4.daddr,
851                             tos, ttl, df, sport, geneve->info.key.tp_dst,
852                             !net_eq(geneve->net, dev_net(geneve->dev)),
853                             !(info->key.tun_flags & TUNNEL_CSUM));
854         return 0;
855 }
856
857 #if IS_ENABLED(CONFIG_IPV6)
858 static int geneve6_xmit_skb(struct sk_buff *skb, struct net_device *dev,
859                             struct geneve_dev *geneve,
860                             const struct ip_tunnel_info *info)
861 {
862         bool xnet = !net_eq(geneve->net, dev_net(geneve->dev));
863         struct geneve_sock *gs6 = rcu_dereference(geneve->sock6);
864         const struct ip_tunnel_key *key = &info->key;
865         struct dst_entry *dst = NULL;
866         struct flowi6 fl6;
867         __u8 prio, ttl;
868         __be16 sport;
869         int err;
870
871         dst = geneve_get_v6_dst(skb, dev, gs6, &fl6, info);
872         if (IS_ERR(dst))
873                 return PTR_ERR(dst);
874
875         skb_tunnel_check_pmtu(skb, dst, GENEVE_IPV6_HLEN + info->options_len);
876
877         sport = udp_flow_src_port(geneve->net, skb, 1, USHRT_MAX, true);
878         if (geneve->collect_md) {
879                 prio = ip_tunnel_ecn_encap(key->tos, ip_hdr(skb), skb);
880                 ttl = key->ttl;
881         } else {
882                 prio = ip_tunnel_ecn_encap(ip6_tclass(fl6.flowlabel),
883                                            ip_hdr(skb), skb);
884                 ttl = key->ttl ? : ip6_dst_hoplimit(dst);
885         }
886         err = geneve_build_skb(dst, skb, info, xnet, sizeof(struct ipv6hdr));
887         if (unlikely(err))
888                 return err;
889
890         udp_tunnel6_xmit_skb(dst, gs6->sock->sk, skb, dev,
891                              &fl6.saddr, &fl6.daddr, prio, ttl,
892                              info->key.label, sport, geneve->info.key.tp_dst,
893                              !(info->key.tun_flags & TUNNEL_CSUM));
894         return 0;
895 }
896 #endif
897
898 static netdev_tx_t geneve_xmit(struct sk_buff *skb, struct net_device *dev)
899 {
900         struct geneve_dev *geneve = netdev_priv(dev);
901         struct ip_tunnel_info *info = NULL;
902         int err;
903
904         if (geneve->collect_md) {
905                 info = skb_tunnel_info(skb);
906                 if (unlikely(!info || !(info->mode & IP_TUNNEL_INFO_TX))) {
907                         err = -EINVAL;
908                         netdev_dbg(dev, "no tunnel metadata\n");
909                         goto tx_error;
910                 }
911         } else {
912                 info = &geneve->info;
913         }
914
915         rcu_read_lock();
916 #if IS_ENABLED(CONFIG_IPV6)
917         if (info->mode & IP_TUNNEL_INFO_IPV6)
918                 err = geneve6_xmit_skb(skb, dev, geneve, info);
919         else
920 #endif
921                 err = geneve_xmit_skb(skb, dev, geneve, info);
922         rcu_read_unlock();
923
924         if (likely(!err))
925                 return NETDEV_TX_OK;
926 tx_error:
927         dev_kfree_skb(skb);
928
929         if (err == -ELOOP)
930                 dev->stats.collisions++;
931         else if (err == -ENETUNREACH)
932                 dev->stats.tx_carrier_errors++;
933
934         dev->stats.tx_errors++;
935         return NETDEV_TX_OK;
936 }
937
938 static int geneve_change_mtu(struct net_device *dev, int new_mtu)
939 {
940         if (new_mtu > dev->max_mtu)
941                 new_mtu = dev->max_mtu;
942         else if (new_mtu < dev->min_mtu)
943                 new_mtu = dev->min_mtu;
944
945         dev->mtu = new_mtu;
946         return 0;
947 }
948
949 static int geneve_fill_metadata_dst(struct net_device *dev, struct sk_buff *skb)
950 {
951         struct ip_tunnel_info *info = skb_tunnel_info(skb);
952         struct geneve_dev *geneve = netdev_priv(dev);
953
954         if (ip_tunnel_info_af(info) == AF_INET) {
955                 struct rtable *rt;
956                 struct flowi4 fl4;
957                 struct geneve_sock *gs4 = rcu_dereference(geneve->sock4);
958
959                 rt = geneve_get_v4_rt(skb, dev, gs4, &fl4, info);
960                 if (IS_ERR(rt))
961                         return PTR_ERR(rt);
962
963                 ip_rt_put(rt);
964                 info->key.u.ipv4.src = fl4.saddr;
965 #if IS_ENABLED(CONFIG_IPV6)
966         } else if (ip_tunnel_info_af(info) == AF_INET6) {
967                 struct dst_entry *dst;
968                 struct flowi6 fl6;
969                 struct geneve_sock *gs6 = rcu_dereference(geneve->sock6);
970
971                 dst = geneve_get_v6_dst(skb, dev, gs6, &fl6, info);
972                 if (IS_ERR(dst))
973                         return PTR_ERR(dst);
974
975                 dst_release(dst);
976                 info->key.u.ipv6.src = fl6.saddr;
977 #endif
978         } else {
979                 return -EINVAL;
980         }
981
982         info->key.tp_src = udp_flow_src_port(geneve->net, skb,
983                                              1, USHRT_MAX, true);
984         info->key.tp_dst = geneve->info.key.tp_dst;
985         return 0;
986 }
987
988 static const struct net_device_ops geneve_netdev_ops = {
989         .ndo_init               = geneve_init,
990         .ndo_uninit             = geneve_uninit,
991         .ndo_open               = geneve_open,
992         .ndo_stop               = geneve_stop,
993         .ndo_start_xmit         = geneve_xmit,
994         .ndo_get_stats64        = ip_tunnel_get_stats64,
995         .ndo_change_mtu         = geneve_change_mtu,
996         .ndo_validate_addr      = eth_validate_addr,
997         .ndo_set_mac_address    = eth_mac_addr,
998         .ndo_fill_metadata_dst  = geneve_fill_metadata_dst,
999 };
1000
1001 static void geneve_get_drvinfo(struct net_device *dev,
1002                                struct ethtool_drvinfo *drvinfo)
1003 {
1004         strlcpy(drvinfo->version, GENEVE_NETDEV_VER, sizeof(drvinfo->version));
1005         strlcpy(drvinfo->driver, "geneve", sizeof(drvinfo->driver));
1006 }
1007
1008 static const struct ethtool_ops geneve_ethtool_ops = {
1009         .get_drvinfo    = geneve_get_drvinfo,
1010         .get_link       = ethtool_op_get_link,
1011 };
1012
1013 /* Info for udev, that this is a virtual tunnel endpoint */
1014 static struct device_type geneve_type = {
1015         .name = "geneve",
1016 };
1017
1018 /* Calls the ndo_udp_tunnel_add of the caller in order to
1019  * supply the listening GENEVE udp ports. Callers are expected
1020  * to implement the ndo_udp_tunnel_add.
1021  */
1022 static void geneve_offload_rx_ports(struct net_device *dev, bool push)
1023 {
1024         struct net *net = dev_net(dev);
1025         struct geneve_net *gn = net_generic(net, geneve_net_id);
1026         struct geneve_sock *gs;
1027
1028         rcu_read_lock();
1029         list_for_each_entry_rcu(gs, &gn->sock_list, list) {
1030                 if (push) {
1031                         udp_tunnel_push_rx_port(dev, gs->sock,
1032                                                 UDP_TUNNEL_TYPE_GENEVE);
1033                 } else {
1034                         udp_tunnel_drop_rx_port(dev, gs->sock,
1035                                                 UDP_TUNNEL_TYPE_GENEVE);
1036                 }
1037         }
1038         rcu_read_unlock();
1039 }
1040
1041 /* Initialize the device structure. */
1042 static void geneve_setup(struct net_device *dev)
1043 {
1044         ether_setup(dev);
1045
1046         dev->netdev_ops = &geneve_netdev_ops;
1047         dev->ethtool_ops = &geneve_ethtool_ops;
1048         dev->needs_free_netdev = true;
1049
1050         SET_NETDEV_DEVTYPE(dev, &geneve_type);
1051
1052         dev->features    |= NETIF_F_LLTX;
1053         dev->features    |= NETIF_F_SG | NETIF_F_HW_CSUM;
1054         dev->features    |= NETIF_F_RXCSUM;
1055         dev->features    |= NETIF_F_GSO_SOFTWARE;
1056
1057         dev->hw_features |= NETIF_F_SG | NETIF_F_HW_CSUM | NETIF_F_RXCSUM;
1058         dev->hw_features |= NETIF_F_GSO_SOFTWARE;
1059
1060         /* MTU range: 68 - (something less than 65535) */
1061         dev->min_mtu = ETH_MIN_MTU;
1062         /* The max_mtu calculation does not take account of GENEVE
1063          * options, to avoid excluding potentially valid
1064          * configurations. This will be further reduced by IPvX hdr size.
1065          */
1066         dev->max_mtu = IP_MAX_MTU - GENEVE_BASE_HLEN - dev->hard_header_len;
1067
1068         netif_keep_dst(dev);
1069         dev->priv_flags &= ~IFF_TX_SKB_SHARING;
1070         dev->priv_flags |= IFF_LIVE_ADDR_CHANGE | IFF_NO_QUEUE;
1071         eth_hw_addr_random(dev);
1072 }
1073
1074 static const struct nla_policy geneve_policy[IFLA_GENEVE_MAX + 1] = {
1075         [IFLA_GENEVE_ID]                = { .type = NLA_U32 },
1076         [IFLA_GENEVE_REMOTE]            = { .len = FIELD_SIZEOF(struct iphdr, daddr) },
1077         [IFLA_GENEVE_REMOTE6]           = { .len = sizeof(struct in6_addr) },
1078         [IFLA_GENEVE_TTL]               = { .type = NLA_U8 },
1079         [IFLA_GENEVE_TOS]               = { .type = NLA_U8 },
1080         [IFLA_GENEVE_LABEL]             = { .type = NLA_U32 },
1081         [IFLA_GENEVE_PORT]              = { .type = NLA_U16 },
1082         [IFLA_GENEVE_COLLECT_METADATA]  = { .type = NLA_FLAG },
1083         [IFLA_GENEVE_UDP_CSUM]          = { .type = NLA_U8 },
1084         [IFLA_GENEVE_UDP_ZERO_CSUM6_TX] = { .type = NLA_U8 },
1085         [IFLA_GENEVE_UDP_ZERO_CSUM6_RX] = { .type = NLA_U8 },
1086 };
1087
1088 static int geneve_validate(struct nlattr *tb[], struct nlattr *data[],
1089                            struct netlink_ext_ack *extack)
1090 {
1091         if (tb[IFLA_ADDRESS]) {
1092                 if (nla_len(tb[IFLA_ADDRESS]) != ETH_ALEN) {
1093                         NL_SET_ERR_MSG_ATTR(extack, tb[IFLA_ADDRESS],
1094                                             "Provided link layer address is not Ethernet");
1095                         return -EINVAL;
1096                 }
1097
1098                 if (!is_valid_ether_addr(nla_data(tb[IFLA_ADDRESS]))) {
1099                         NL_SET_ERR_MSG_ATTR(extack, tb[IFLA_ADDRESS],
1100                                             "Provided Ethernet address is not unicast");
1101                         return -EADDRNOTAVAIL;
1102                 }
1103         }
1104
1105         if (!data) {
1106                 NL_SET_ERR_MSG(extack,
1107                                "Not enough attributes provided to perform the operation");
1108                 return -EINVAL;
1109         }
1110
1111         if (data[IFLA_GENEVE_ID]) {
1112                 __u32 vni =  nla_get_u32(data[IFLA_GENEVE_ID]);
1113
1114                 if (vni >= GENEVE_N_VID) {
1115                         NL_SET_ERR_MSG_ATTR(extack, data[IFLA_GENEVE_ID],
1116                                             "Geneve ID must be lower than 16777216");
1117                         return -ERANGE;
1118                 }
1119         }
1120
1121         return 0;
1122 }
1123
1124 static struct geneve_dev *geneve_find_dev(struct geneve_net *gn,
1125                                           const struct ip_tunnel_info *info,
1126                                           bool *tun_on_same_port,
1127                                           bool *tun_collect_md)
1128 {
1129         struct geneve_dev *geneve, *t = NULL;
1130
1131         *tun_on_same_port = false;
1132         *tun_collect_md = false;
1133         list_for_each_entry(geneve, &gn->geneve_list, next) {
1134                 if (info->key.tp_dst == geneve->info.key.tp_dst) {
1135                         *tun_collect_md = geneve->collect_md;
1136                         *tun_on_same_port = true;
1137                 }
1138                 if (info->key.tun_id == geneve->info.key.tun_id &&
1139                     info->key.tp_dst == geneve->info.key.tp_dst &&
1140                     !memcmp(&info->key.u, &geneve->info.key.u, sizeof(info->key.u)))
1141                         t = geneve;
1142         }
1143         return t;
1144 }
1145
1146 static bool is_tnl_info_zero(const struct ip_tunnel_info *info)
1147 {
1148         return !(info->key.tun_id || info->key.tun_flags || info->key.tos ||
1149                  info->key.ttl || info->key.label || info->key.tp_src ||
1150                  memchr_inv(&info->key.u, 0, sizeof(info->key.u)));
1151 }
1152
1153 static bool geneve_dst_addr_equal(struct ip_tunnel_info *a,
1154                                   struct ip_tunnel_info *b)
1155 {
1156         if (ip_tunnel_info_af(a) == AF_INET)
1157                 return a->key.u.ipv4.dst == b->key.u.ipv4.dst;
1158         else
1159                 return ipv6_addr_equal(&a->key.u.ipv6.dst, &b->key.u.ipv6.dst);
1160 }
1161
1162 static int geneve_configure(struct net *net, struct net_device *dev,
1163                             struct netlink_ext_ack *extack,
1164                             const struct ip_tunnel_info *info,
1165                             bool metadata, bool ipv6_rx_csum)
1166 {
1167         struct geneve_net *gn = net_generic(net, geneve_net_id);
1168         struct geneve_dev *t, *geneve = netdev_priv(dev);
1169         bool tun_collect_md, tun_on_same_port;
1170         int err, encap_len;
1171
1172         if (metadata && !is_tnl_info_zero(info)) {
1173                 NL_SET_ERR_MSG(extack,
1174                                "Device is externally controlled, so attributes (VNI, Port, and so on) must not be specified");
1175                 return -EINVAL;
1176         }
1177
1178         geneve->net = net;
1179         geneve->dev = dev;
1180
1181         t = geneve_find_dev(gn, info, &tun_on_same_port, &tun_collect_md);
1182         if (t)
1183                 return -EBUSY;
1184
1185         /* make enough headroom for basic scenario */
1186         encap_len = GENEVE_BASE_HLEN + ETH_HLEN;
1187         if (!metadata && ip_tunnel_info_af(info) == AF_INET) {
1188                 encap_len += sizeof(struct iphdr);
1189                 dev->max_mtu -= sizeof(struct iphdr);
1190         } else {
1191                 encap_len += sizeof(struct ipv6hdr);
1192                 dev->max_mtu -= sizeof(struct ipv6hdr);
1193         }
1194         dev->needed_headroom = encap_len + ETH_HLEN;
1195
1196         if (metadata) {
1197                 if (tun_on_same_port) {
1198                         NL_SET_ERR_MSG(extack,
1199                                        "There can be only one externally controlled device on a destination port");
1200                         return -EPERM;
1201                 }
1202         } else {
1203                 if (tun_collect_md) {
1204                         NL_SET_ERR_MSG(extack,
1205                                        "There already exists an externally controlled device on this destination port");
1206                         return -EPERM;
1207                 }
1208         }
1209
1210         dst_cache_reset(&geneve->info.dst_cache);
1211         geneve->info = *info;
1212         geneve->collect_md = metadata;
1213         geneve->use_udp6_rx_checksums = ipv6_rx_csum;
1214
1215         err = register_netdevice(dev);
1216         if (err)
1217                 return err;
1218
1219         list_add(&geneve->next, &gn->geneve_list);
1220         return 0;
1221 }
1222
1223 static void init_tnl_info(struct ip_tunnel_info *info, __u16 dst_port)
1224 {
1225         memset(info, 0, sizeof(*info));
1226         info->key.tp_dst = htons(dst_port);
1227 }
1228
1229 static int geneve_nl2info(struct nlattr *tb[], struct nlattr *data[],
1230                           struct netlink_ext_ack *extack,
1231                           struct ip_tunnel_info *info, bool *metadata,
1232                           bool *use_udp6_rx_checksums, bool changelink)
1233 {
1234         int attrtype;
1235
1236         if (data[IFLA_GENEVE_REMOTE] && data[IFLA_GENEVE_REMOTE6]) {
1237                 NL_SET_ERR_MSG(extack,
1238                                "Cannot specify both IPv4 and IPv6 Remote addresses");
1239                 return -EINVAL;
1240         }
1241
1242         if (data[IFLA_GENEVE_REMOTE]) {
1243                 if (changelink && (ip_tunnel_info_af(info) == AF_INET6)) {
1244                         attrtype = IFLA_GENEVE_REMOTE;
1245                         goto change_notsup;
1246                 }
1247
1248                 info->key.u.ipv4.dst =
1249                         nla_get_in_addr(data[IFLA_GENEVE_REMOTE]);
1250
1251                 if (IN_MULTICAST(ntohl(info->key.u.ipv4.dst))) {
1252                         NL_SET_ERR_MSG_ATTR(extack, data[IFLA_GENEVE_REMOTE],
1253                                             "Remote IPv4 address cannot be Multicast");
1254                         return -EINVAL;
1255                 }
1256         }
1257
1258         if (data[IFLA_GENEVE_REMOTE6]) {
1259 #if IS_ENABLED(CONFIG_IPV6)
1260                 if (changelink && (ip_tunnel_info_af(info) == AF_INET)) {
1261                         attrtype = IFLA_GENEVE_REMOTE6;
1262                         goto change_notsup;
1263                 }
1264
1265                 info->mode = IP_TUNNEL_INFO_IPV6;
1266                 info->key.u.ipv6.dst =
1267                         nla_get_in6_addr(data[IFLA_GENEVE_REMOTE6]);
1268
1269                 if (ipv6_addr_type(&info->key.u.ipv6.dst) &
1270                     IPV6_ADDR_LINKLOCAL) {
1271                         NL_SET_ERR_MSG_ATTR(extack, data[IFLA_GENEVE_REMOTE6],
1272                                             "Remote IPv6 address cannot be link-local");
1273                         return -EINVAL;
1274                 }
1275                 if (ipv6_addr_is_multicast(&info->key.u.ipv6.dst)) {
1276                         NL_SET_ERR_MSG_ATTR(extack, data[IFLA_GENEVE_REMOTE6],
1277                                             "Remote IPv6 address cannot be Multicast");
1278                         return -EINVAL;
1279                 }
1280                 info->key.tun_flags |= TUNNEL_CSUM;
1281                 *use_udp6_rx_checksums = true;
1282 #else
1283                 NL_SET_ERR_MSG_ATTR(extack, data[IFLA_GENEVE_REMOTE6],
1284                                     "IPv6 support not enabled in the kernel");
1285                 return -EPFNOSUPPORT;
1286 #endif
1287         }
1288
1289         if (data[IFLA_GENEVE_ID]) {
1290                 __u32 vni;
1291                 __u8 tvni[3];
1292                 __be64 tunid;
1293
1294                 vni = nla_get_u32(data[IFLA_GENEVE_ID]);
1295                 tvni[0] = (vni & 0x00ff0000) >> 16;
1296                 tvni[1] = (vni & 0x0000ff00) >> 8;
1297                 tvni[2] =  vni & 0x000000ff;
1298
1299                 tunid = vni_to_tunnel_id(tvni);
1300                 if (changelink && (tunid != info->key.tun_id)) {
1301                         attrtype = IFLA_GENEVE_ID;
1302                         goto change_notsup;
1303                 }
1304                 info->key.tun_id = tunid;
1305         }
1306
1307         if (data[IFLA_GENEVE_TTL])
1308                 info->key.ttl = nla_get_u8(data[IFLA_GENEVE_TTL]);
1309
1310         if (data[IFLA_GENEVE_TOS])
1311                 info->key.tos = nla_get_u8(data[IFLA_GENEVE_TOS]);
1312
1313         if (data[IFLA_GENEVE_LABEL]) {
1314                 info->key.label = nla_get_be32(data[IFLA_GENEVE_LABEL]) &
1315                                   IPV6_FLOWLABEL_MASK;
1316                 if (info->key.label && (!(info->mode & IP_TUNNEL_INFO_IPV6))) {
1317                         NL_SET_ERR_MSG_ATTR(extack, data[IFLA_GENEVE_LABEL],
1318                                             "Label attribute only applies for IPv6 Geneve devices");
1319                         return -EINVAL;
1320                 }
1321         }
1322
1323         if (data[IFLA_GENEVE_PORT]) {
1324                 if (changelink) {
1325                         attrtype = IFLA_GENEVE_PORT;
1326                         goto change_notsup;
1327                 }
1328                 info->key.tp_dst = nla_get_be16(data[IFLA_GENEVE_PORT]);
1329         }
1330
1331         if (data[IFLA_GENEVE_COLLECT_METADATA]) {
1332                 if (changelink) {
1333                         attrtype = IFLA_GENEVE_COLLECT_METADATA;
1334                         goto change_notsup;
1335                 }
1336                 *metadata = true;
1337         }
1338
1339         if (data[IFLA_GENEVE_UDP_CSUM]) {
1340                 if (changelink) {
1341                         attrtype = IFLA_GENEVE_UDP_CSUM;
1342                         goto change_notsup;
1343                 }
1344                 if (nla_get_u8(data[IFLA_GENEVE_UDP_CSUM]))
1345                         info->key.tun_flags |= TUNNEL_CSUM;
1346         }
1347
1348         if (data[IFLA_GENEVE_UDP_ZERO_CSUM6_TX]) {
1349 #if IS_ENABLED(CONFIG_IPV6)
1350                 if (changelink) {
1351                         attrtype = IFLA_GENEVE_UDP_ZERO_CSUM6_TX;
1352                         goto change_notsup;
1353                 }
1354                 if (nla_get_u8(data[IFLA_GENEVE_UDP_ZERO_CSUM6_TX]))
1355                         info->key.tun_flags &= ~TUNNEL_CSUM;
1356 #else
1357                 NL_SET_ERR_MSG_ATTR(extack, data[IFLA_GENEVE_UDP_ZERO_CSUM6_TX],
1358                                     "IPv6 support not enabled in the kernel");
1359                 return -EPFNOSUPPORT;
1360 #endif
1361         }
1362
1363         if (data[IFLA_GENEVE_UDP_ZERO_CSUM6_RX]) {
1364 #if IS_ENABLED(CONFIG_IPV6)
1365                 if (changelink) {
1366                         attrtype = IFLA_GENEVE_UDP_ZERO_CSUM6_RX;
1367                         goto change_notsup;
1368                 }
1369                 if (nla_get_u8(data[IFLA_GENEVE_UDP_ZERO_CSUM6_RX]))
1370                         *use_udp6_rx_checksums = false;
1371 #else
1372                 NL_SET_ERR_MSG_ATTR(extack, data[IFLA_GENEVE_UDP_ZERO_CSUM6_RX],
1373                                     "IPv6 support not enabled in the kernel");
1374                 return -EPFNOSUPPORT;
1375 #endif
1376         }
1377
1378         return 0;
1379 change_notsup:
1380         NL_SET_ERR_MSG_ATTR(extack, data[attrtype],
1381                             "Changing VNI, Port, endpoint IP address family, external, and UDP checksum attributes are not supported");
1382         return -EOPNOTSUPP;
1383 }
1384
1385 static void geneve_link_config(struct net_device *dev,
1386                                struct ip_tunnel_info *info, struct nlattr *tb[])
1387 {
1388         struct geneve_dev *geneve = netdev_priv(dev);
1389         int ldev_mtu = 0;
1390
1391         if (tb[IFLA_MTU]) {
1392                 geneve_change_mtu(dev, nla_get_u32(tb[IFLA_MTU]));
1393                 return;
1394         }
1395
1396         switch (ip_tunnel_info_af(info)) {
1397         case AF_INET: {
1398                 struct flowi4 fl4 = { .daddr = info->key.u.ipv4.dst };
1399                 struct rtable *rt = ip_route_output_key(geneve->net, &fl4);
1400
1401                 if (!IS_ERR(rt) && rt->dst.dev) {
1402                         ldev_mtu = rt->dst.dev->mtu - GENEVE_IPV4_HLEN;
1403                         ip_rt_put(rt);
1404                 }
1405                 break;
1406         }
1407 #if IS_ENABLED(CONFIG_IPV6)
1408         case AF_INET6: {
1409                 struct rt6_info *rt = rt6_lookup(geneve->net,
1410                                                  &info->key.u.ipv6.dst, NULL, 0,
1411                                                  NULL, 0);
1412
1413                 if (rt && rt->dst.dev)
1414                         ldev_mtu = rt->dst.dev->mtu - GENEVE_IPV6_HLEN;
1415                 ip6_rt_put(rt);
1416                 break;
1417         }
1418 #endif
1419         }
1420
1421         if (ldev_mtu <= 0)
1422                 return;
1423
1424         geneve_change_mtu(dev, ldev_mtu - info->options_len);
1425 }
1426
1427 static int geneve_newlink(struct net *net, struct net_device *dev,
1428                           struct nlattr *tb[], struct nlattr *data[],
1429                           struct netlink_ext_ack *extack)
1430 {
1431         bool use_udp6_rx_checksums = false;
1432         struct ip_tunnel_info info;
1433         bool metadata = false;
1434         int err;
1435
1436         init_tnl_info(&info, GENEVE_UDP_PORT);
1437         err = geneve_nl2info(tb, data, extack, &info, &metadata,
1438                              &use_udp6_rx_checksums, false);
1439         if (err)
1440                 return err;
1441
1442         err = geneve_configure(net, dev, extack, &info, metadata,
1443                                use_udp6_rx_checksums);
1444         if (err)
1445                 return err;
1446
1447         geneve_link_config(dev, &info, tb);
1448
1449         return 0;
1450 }
1451
1452 /* Quiesces the geneve device data path for both TX and RX.
1453  *
1454  * On transmit geneve checks for non-NULL geneve_sock before it proceeds.
1455  * So, if we set that socket to NULL under RCU and wait for synchronize_net()
1456  * to complete for the existing set of in-flight packets to be transmitted,
1457  * then we would have quiesced the transmit data path. All the future packets
1458  * will get dropped until we unquiesce the data path.
1459  *
1460  * On receive geneve dereference the geneve_sock stashed in the socket. So,
1461  * if we set that to NULL under RCU and wait for synchronize_net() to
1462  * complete, then we would have quiesced the receive data path.
1463  */
1464 static void geneve_quiesce(struct geneve_dev *geneve, struct geneve_sock **gs4,
1465                            struct geneve_sock **gs6)
1466 {
1467         *gs4 = rtnl_dereference(geneve->sock4);
1468         rcu_assign_pointer(geneve->sock4, NULL);
1469         if (*gs4)
1470                 rcu_assign_sk_user_data((*gs4)->sock->sk, NULL);
1471 #if IS_ENABLED(CONFIG_IPV6)
1472         *gs6 = rtnl_dereference(geneve->sock6);
1473         rcu_assign_pointer(geneve->sock6, NULL);
1474         if (*gs6)
1475                 rcu_assign_sk_user_data((*gs6)->sock->sk, NULL);
1476 #else
1477         *gs6 = NULL;
1478 #endif
1479         synchronize_net();
1480 }
1481
1482 /* Resumes the geneve device data path for both TX and RX. */
1483 static void geneve_unquiesce(struct geneve_dev *geneve, struct geneve_sock *gs4,
1484                              struct geneve_sock __maybe_unused *gs6)
1485 {
1486         rcu_assign_pointer(geneve->sock4, gs4);
1487         if (gs4)
1488                 rcu_assign_sk_user_data(gs4->sock->sk, gs4);
1489 #if IS_ENABLED(CONFIG_IPV6)
1490         rcu_assign_pointer(geneve->sock6, gs6);
1491         if (gs6)
1492                 rcu_assign_sk_user_data(gs6->sock->sk, gs6);
1493 #endif
1494         synchronize_net();
1495 }
1496
1497 static int geneve_changelink(struct net_device *dev, struct nlattr *tb[],
1498                              struct nlattr *data[],
1499                              struct netlink_ext_ack *extack)
1500 {
1501         struct geneve_dev *geneve = netdev_priv(dev);
1502         struct geneve_sock *gs4, *gs6;
1503         struct ip_tunnel_info info;
1504         bool metadata;
1505         bool use_udp6_rx_checksums;
1506         int err;
1507
1508         /* If the geneve device is configured for metadata (or externally
1509          * controlled, for example, OVS), then nothing can be changed.
1510          */
1511         if (geneve->collect_md)
1512                 return -EOPNOTSUPP;
1513
1514         /* Start with the existing info. */
1515         memcpy(&info, &geneve->info, sizeof(info));
1516         metadata = geneve->collect_md;
1517         use_udp6_rx_checksums = geneve->use_udp6_rx_checksums;
1518         err = geneve_nl2info(tb, data, extack, &info, &metadata,
1519                              &use_udp6_rx_checksums, true);
1520         if (err)
1521                 return err;
1522
1523         if (!geneve_dst_addr_equal(&geneve->info, &info)) {
1524                 dst_cache_reset(&info.dst_cache);
1525                 geneve_link_config(dev, &info, tb);
1526         }
1527
1528         geneve_quiesce(geneve, &gs4, &gs6);
1529         geneve->info = info;
1530         geneve->collect_md = metadata;
1531         geneve->use_udp6_rx_checksums = use_udp6_rx_checksums;
1532         geneve_unquiesce(geneve, gs4, gs6);
1533
1534         return 0;
1535 }
1536
1537 static void geneve_dellink(struct net_device *dev, struct list_head *head)
1538 {
1539         struct geneve_dev *geneve = netdev_priv(dev);
1540
1541         list_del(&geneve->next);
1542         unregister_netdevice_queue(dev, head);
1543 }
1544
1545 static size_t geneve_get_size(const struct net_device *dev)
1546 {
1547         return nla_total_size(sizeof(__u32)) +  /* IFLA_GENEVE_ID */
1548                 nla_total_size(sizeof(struct in6_addr)) + /* IFLA_GENEVE_REMOTE{6} */
1549                 nla_total_size(sizeof(__u8)) +  /* IFLA_GENEVE_TTL */
1550                 nla_total_size(sizeof(__u8)) +  /* IFLA_GENEVE_TOS */
1551                 nla_total_size(sizeof(__be32)) +  /* IFLA_GENEVE_LABEL */
1552                 nla_total_size(sizeof(__be16)) +  /* IFLA_GENEVE_PORT */
1553                 nla_total_size(0) +      /* IFLA_GENEVE_COLLECT_METADATA */
1554                 nla_total_size(sizeof(__u8)) + /* IFLA_GENEVE_UDP_CSUM */
1555                 nla_total_size(sizeof(__u8)) + /* IFLA_GENEVE_UDP_ZERO_CSUM6_TX */
1556                 nla_total_size(sizeof(__u8)) + /* IFLA_GENEVE_UDP_ZERO_CSUM6_RX */
1557                 0;
1558 }
1559
1560 static int geneve_fill_info(struct sk_buff *skb, const struct net_device *dev)
1561 {
1562         struct geneve_dev *geneve = netdev_priv(dev);
1563         struct ip_tunnel_info *info = &geneve->info;
1564         bool metadata = geneve->collect_md;
1565         __u8 tmp_vni[3];
1566         __u32 vni;
1567
1568         tunnel_id_to_vni(info->key.tun_id, tmp_vni);
1569         vni = (tmp_vni[0] << 16) | (tmp_vni[1] << 8) | tmp_vni[2];
1570         if (nla_put_u32(skb, IFLA_GENEVE_ID, vni))
1571                 goto nla_put_failure;
1572
1573         if (!metadata && ip_tunnel_info_af(info) == AF_INET) {
1574                 if (nla_put_in_addr(skb, IFLA_GENEVE_REMOTE,
1575                                     info->key.u.ipv4.dst))
1576                         goto nla_put_failure;
1577                 if (nla_put_u8(skb, IFLA_GENEVE_UDP_CSUM,
1578                                !!(info->key.tun_flags & TUNNEL_CSUM)))
1579                         goto nla_put_failure;
1580
1581 #if IS_ENABLED(CONFIG_IPV6)
1582         } else if (!metadata) {
1583                 if (nla_put_in6_addr(skb, IFLA_GENEVE_REMOTE6,
1584                                      &info->key.u.ipv6.dst))
1585                         goto nla_put_failure;
1586                 if (nla_put_u8(skb, IFLA_GENEVE_UDP_ZERO_CSUM6_TX,
1587                                !(info->key.tun_flags & TUNNEL_CSUM)))
1588                         goto nla_put_failure;
1589 #endif
1590         }
1591
1592         if (nla_put_u8(skb, IFLA_GENEVE_TTL, info->key.ttl) ||
1593             nla_put_u8(skb, IFLA_GENEVE_TOS, info->key.tos) ||
1594             nla_put_be32(skb, IFLA_GENEVE_LABEL, info->key.label))
1595                 goto nla_put_failure;
1596
1597         if (nla_put_be16(skb, IFLA_GENEVE_PORT, info->key.tp_dst))
1598                 goto nla_put_failure;
1599
1600         if (metadata && nla_put_flag(skb, IFLA_GENEVE_COLLECT_METADATA))
1601                 goto nla_put_failure;
1602
1603 #if IS_ENABLED(CONFIG_IPV6)
1604         if (nla_put_u8(skb, IFLA_GENEVE_UDP_ZERO_CSUM6_RX,
1605                        !geneve->use_udp6_rx_checksums))
1606                 goto nla_put_failure;
1607 #endif
1608
1609         return 0;
1610
1611 nla_put_failure:
1612         return -EMSGSIZE;
1613 }
1614
1615 static struct rtnl_link_ops geneve_link_ops __read_mostly = {
1616         .kind           = "geneve",
1617         .maxtype        = IFLA_GENEVE_MAX,
1618         .policy         = geneve_policy,
1619         .priv_size      = sizeof(struct geneve_dev),
1620         .setup          = geneve_setup,
1621         .validate       = geneve_validate,
1622         .newlink        = geneve_newlink,
1623         .changelink     = geneve_changelink,
1624         .dellink        = geneve_dellink,
1625         .get_size       = geneve_get_size,
1626         .fill_info      = geneve_fill_info,
1627 };
1628
1629 struct net_device *geneve_dev_create_fb(struct net *net, const char *name,
1630                                         u8 name_assign_type, u16 dst_port)
1631 {
1632         struct nlattr *tb[IFLA_MAX + 1];
1633         struct ip_tunnel_info info;
1634         struct net_device *dev;
1635         LIST_HEAD(list_kill);
1636         int err;
1637
1638         memset(tb, 0, sizeof(tb));
1639         dev = rtnl_create_link(net, name, name_assign_type,
1640                                &geneve_link_ops, tb);
1641         if (IS_ERR(dev))
1642                 return dev;
1643
1644         init_tnl_info(&info, dst_port);
1645         err = geneve_configure(net, dev, NULL, &info, true, true);
1646         if (err) {
1647                 free_netdev(dev);
1648                 return ERR_PTR(err);
1649         }
1650
1651         /* openvswitch users expect packet sizes to be unrestricted,
1652          * so set the largest MTU we can.
1653          */
1654         err = geneve_change_mtu(dev, IP_MAX_MTU);
1655         if (err)
1656                 goto err;
1657
1658         err = rtnl_configure_link(dev, NULL);
1659         if (err < 0)
1660                 goto err;
1661
1662         return dev;
1663 err:
1664         geneve_dellink(dev, &list_kill);
1665         unregister_netdevice_many(&list_kill);
1666         return ERR_PTR(err);
1667 }
1668 EXPORT_SYMBOL_GPL(geneve_dev_create_fb);
1669
1670 static int geneve_netdevice_event(struct notifier_block *unused,
1671                                   unsigned long event, void *ptr)
1672 {
1673         struct net_device *dev = netdev_notifier_info_to_dev(ptr);
1674
1675         if (event == NETDEV_UDP_TUNNEL_PUSH_INFO ||
1676             event == NETDEV_UDP_TUNNEL_DROP_INFO) {
1677                 geneve_offload_rx_ports(dev, event == NETDEV_UDP_TUNNEL_PUSH_INFO);
1678         } else if (event == NETDEV_UNREGISTER) {
1679                 geneve_offload_rx_ports(dev, false);
1680         } else if (event == NETDEV_REGISTER) {
1681                 geneve_offload_rx_ports(dev, true);
1682         }
1683
1684         return NOTIFY_DONE;
1685 }
1686
1687 static struct notifier_block geneve_notifier_block __read_mostly = {
1688         .notifier_call = geneve_netdevice_event,
1689 };
1690
1691 static __net_init int geneve_init_net(struct net *net)
1692 {
1693         struct geneve_net *gn = net_generic(net, geneve_net_id);
1694
1695         INIT_LIST_HEAD(&gn->geneve_list);
1696         INIT_LIST_HEAD(&gn->sock_list);
1697         return 0;
1698 }
1699
1700 static void geneve_destroy_tunnels(struct net *net, struct list_head *head)
1701 {
1702         struct geneve_net *gn = net_generic(net, geneve_net_id);
1703         struct geneve_dev *geneve, *next;
1704         struct net_device *dev, *aux;
1705
1706         /* gather any geneve devices that were moved into this ns */
1707         for_each_netdev_safe(net, dev, aux)
1708                 if (dev->rtnl_link_ops == &geneve_link_ops)
1709                         unregister_netdevice_queue(dev, head);
1710
1711         /* now gather any other geneve devices that were created in this ns */
1712         list_for_each_entry_safe(geneve, next, &gn->geneve_list, next) {
1713                 /* If geneve->dev is in the same netns, it was already added
1714                  * to the list by the previous loop.
1715                  */
1716                 if (!net_eq(dev_net(geneve->dev), net))
1717                         unregister_netdevice_queue(geneve->dev, head);
1718         }
1719
1720         WARN_ON_ONCE(!list_empty(&gn->sock_list));
1721 }
1722
1723 static void __net_exit geneve_exit_batch_net(struct list_head *net_list)
1724 {
1725         struct net *net;
1726         LIST_HEAD(list);
1727
1728         rtnl_lock();
1729         list_for_each_entry(net, net_list, exit_list)
1730                 geneve_destroy_tunnels(net, &list);
1731
1732         /* unregister the devices gathered above */
1733         unregister_netdevice_many(&list);
1734         rtnl_unlock();
1735 }
1736
1737 static struct pernet_operations geneve_net_ops = {
1738         .init = geneve_init_net,
1739         .exit_batch = geneve_exit_batch_net,
1740         .id   = &geneve_net_id,
1741         .size = sizeof(struct geneve_net),
1742 };
1743
1744 static int __init geneve_init_module(void)
1745 {
1746         int rc;
1747
1748         rc = register_pernet_subsys(&geneve_net_ops);
1749         if (rc)
1750                 goto out1;
1751
1752         rc = register_netdevice_notifier(&geneve_notifier_block);
1753         if (rc)
1754                 goto out2;
1755
1756         rc = rtnl_link_register(&geneve_link_ops);
1757         if (rc)
1758                 goto out3;
1759
1760         return 0;
1761 out3:
1762         unregister_netdevice_notifier(&geneve_notifier_block);
1763 out2:
1764         unregister_pernet_subsys(&geneve_net_ops);
1765 out1:
1766         return rc;
1767 }
1768 late_initcall(geneve_init_module);
1769
1770 static void __exit geneve_cleanup_module(void)
1771 {
1772         rtnl_link_unregister(&geneve_link_ops);
1773         unregister_netdevice_notifier(&geneve_notifier_block);
1774         unregister_pernet_subsys(&geneve_net_ops);
1775 }
1776 module_exit(geneve_cleanup_module);
1777
1778 MODULE_LICENSE("GPL");
1779 MODULE_VERSION(GENEVE_NETDEV_VER);
1780 MODULE_AUTHOR("John W. Linville <linville@tuxdriver.com>");
1781 MODULE_DESCRIPTION("Interface driver for GENEVE encapsulated traffic");
1782 MODULE_ALIAS_RTNL_LINK("geneve");