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tcp: verify the checksum of the first data segment in a new connection
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CommitLineData
1da177e4
LT
1/*
2 * INET An implementation of the TCP/IP protocol suite for the LINUX
3 * operating system. INET is implemented using the BSD Socket
4 * interface as the means of communication with the user level.
5 *
6 * The User Datagram Protocol (UDP).
7 *
02c30a84 8 * Authors: Ross Biro
1da177e4
LT
9 * Fred N. van Kempen, <waltje@uWalt.NL.Mugnet.ORG>
10 * Arnt Gulbrandsen, <agulbra@nvg.unit.no>
113aa838 11 * Alan Cox, <alan@lxorguk.ukuu.org.uk>
1da177e4
LT
12 * Hirokazu Takahashi, <taka@valinux.co.jp>
13 *
14 * Fixes:
15 * Alan Cox : verify_area() calls
16 * Alan Cox : stopped close while in use off icmp
17 * messages. Not a fix but a botch that
18 * for udp at least is 'valid'.
19 * Alan Cox : Fixed icmp handling properly
20 * Alan Cox : Correct error for oversized datagrams
e905a9ed
YH
21 * Alan Cox : Tidied select() semantics.
22 * Alan Cox : udp_err() fixed properly, also now
1da177e4
LT
23 * select and read wake correctly on errors
24 * Alan Cox : udp_send verify_area moved to avoid mem leak
25 * Alan Cox : UDP can count its memory
26 * Alan Cox : send to an unknown connection causes
27 * an ECONNREFUSED off the icmp, but
28 * does NOT close.
29 * Alan Cox : Switched to new sk_buff handlers. No more backlog!
30 * Alan Cox : Using generic datagram code. Even smaller and the PEEK
31 * bug no longer crashes it.
32 * Fred Van Kempen : Net2e support for sk->broadcast.
33 * Alan Cox : Uses skb_free_datagram
34 * Alan Cox : Added get/set sockopt support.
35 * Alan Cox : Broadcasting without option set returns EACCES.
36 * Alan Cox : No wakeup calls. Instead we now use the callbacks.
37 * Alan Cox : Use ip_tos and ip_ttl
38 * Alan Cox : SNMP Mibs
39 * Alan Cox : MSG_DONTROUTE, and 0.0.0.0 support.
40 * Matt Dillon : UDP length checks.
41 * Alan Cox : Smarter af_inet used properly.
42 * Alan Cox : Use new kernel side addressing.
43 * Alan Cox : Incorrect return on truncated datagram receive.
44 * Arnt Gulbrandsen : New udp_send and stuff
45 * Alan Cox : Cache last socket
46 * Alan Cox : Route cache
47 * Jon Peatfield : Minor efficiency fix to sendto().
48 * Mike Shaver : RFC1122 checks.
49 * Alan Cox : Nonblocking error fix.
50 * Willy Konynenberg : Transparent proxying support.
51 * Mike McLagan : Routing by source
52 * David S. Miller : New socket lookup architecture.
53 * Last socket cache retained as it
54 * does have a high hit rate.
55 * Olaf Kirch : Don't linearise iovec on sendmsg.
56 * Andi Kleen : Some cleanups, cache destination entry
e905a9ed 57 * for connect.
1da177e4
LT
58 * Vitaly E. Lavrov : Transparent proxy revived after year coma.
59 * Melvin Smith : Check msg_name not msg_namelen in sendto(),
60 * return ENOTCONN for unconnected sockets (POSIX)
61 * Janos Farkas : don't deliver multi/broadcasts to a different
62 * bound-to-device socket
63 * Hirokazu Takahashi : HW checksumming for outgoing UDP
64 * datagrams.
65 * Hirokazu Takahashi : sendfile() on UDP works now.
66 * Arnaldo C. Melo : convert /proc/net/udp to seq_file
67 * YOSHIFUJI Hideaki @USAGI and: Support IPV6_V6ONLY socket option, which
68 * Alexey Kuznetsov: allow both IPv4 and IPv6 sockets to bind
69 * a single port at the same time.
70 * Derek Atkins <derek@ihtfp.com>: Add Encapulation Support
342f0234 71 * James Chapman : Add L2TP encapsulation type.
1da177e4
LT
72 *
73 *
74 * This program is free software; you can redistribute it and/or
75 * modify it under the terms of the GNU General Public License
76 * as published by the Free Software Foundation; either version
77 * 2 of the License, or (at your option) any later version.
78 */
e905a9ed 79
afd46503
JP
80#define pr_fmt(fmt) "UDP: " fmt
81
7c0f6ba6 82#include <linux/uaccess.h>
1da177e4 83#include <asm/ioctls.h>
95766fff 84#include <linux/bootmem.h>
8203efb3
ED
85#include <linux/highmem.h>
86#include <linux/swap.h>
1da177e4
LT
87#include <linux/types.h>
88#include <linux/fcntl.h>
89#include <linux/module.h>
90#include <linux/socket.h>
91#include <linux/sockios.h>
14c85021 92#include <linux/igmp.h>
6e540309 93#include <linux/inetdevice.h>
1da177e4
LT
94#include <linux/in.h>
95#include <linux/errno.h>
96#include <linux/timer.h>
97#include <linux/mm.h>
1da177e4 98#include <linux/inet.h>
1da177e4 99#include <linux/netdevice.h>
5a0e3ad6 100#include <linux/slab.h>
c752f073 101#include <net/tcp_states.h>
1da177e4
LT
102#include <linux/skbuff.h>
103#include <linux/proc_fs.h>
104#include <linux/seq_file.h>
457c4cbc 105#include <net/net_namespace.h>
1da177e4 106#include <net/icmp.h>
421b3885 107#include <net/inet_hashtables.h>
1da177e4 108#include <net/route.h>
1da177e4
LT
109#include <net/checksum.h>
110#include <net/xfrm.h>
296f7ea7 111#include <trace/events/udp.h>
447167bf 112#include <linux/static_key.h>
22911fc5 113#include <trace/events/skb.h>
076bb0c8 114#include <net/busy_poll.h>
ba4e58ec 115#include "udp_impl.h"
e32ea7e7 116#include <net/sock_reuseport.h>
217375a0 117#include <net/addrconf.h>
1da177e4 118
f86dcc5a 119struct udp_table udp_table __read_mostly;
645ca708 120EXPORT_SYMBOL(udp_table);
1da177e4 121
8d987e5c 122long sysctl_udp_mem[3] __read_mostly;
95766fff 123EXPORT_SYMBOL(sysctl_udp_mem);
c482c568
ED
124
125int sysctl_udp_rmem_min __read_mostly;
95766fff 126EXPORT_SYMBOL(sysctl_udp_rmem_min);
c482c568
ED
127
128int sysctl_udp_wmem_min __read_mostly;
95766fff
HA
129EXPORT_SYMBOL(sysctl_udp_wmem_min);
130
8d987e5c 131atomic_long_t udp_memory_allocated;
95766fff
HA
132EXPORT_SYMBOL(udp_memory_allocated);
133
f86dcc5a
ED
134#define MAX_UDP_PORTS 65536
135#define PORTS_PER_CHAIN (MAX_UDP_PORTS / UDP_HTABLE_SIZE_MIN)
98322f22 136
63a6fff3
RS
137/* IPCB reference means this can not be used from early demux */
138static bool udp_lib_exact_dif_match(struct net *net, struct sk_buff *skb)
139{
140#if IS_ENABLED(CONFIG_NET_L3_MASTER_DEV)
141 if (!net->ipv4.sysctl_udp_l3mdev_accept &&
142 skb && ipv4_l3mdev_skb(IPCB(skb)->flags))
143 return true;
144#endif
145 return false;
146}
147
f24d43c0 148static int udp_lib_lport_inuse(struct net *net, __u16 num,
645ca708 149 const struct udp_hslot *hslot,
98322f22 150 unsigned long *bitmap,
fe38d2a1 151 struct sock *sk, unsigned int log)
1da177e4 152{
f24d43c0 153 struct sock *sk2;
ba418fa3 154 kuid_t uid = sock_i_uid(sk);
25030a7f 155
ca065d0c 156 sk_for_each(sk2, &hslot->head) {
9d4fb27d
JP
157 if (net_eq(sock_net(sk2), net) &&
158 sk2 != sk &&
d4cada4a 159 (bitmap || udp_sk(sk2)->udp_port_hash == num) &&
9d4fb27d
JP
160 (!sk2->sk_reuse || !sk->sk_reuse) &&
161 (!sk2->sk_bound_dev_if || !sk->sk_bound_dev_if ||
162 sk2->sk_bound_dev_if == sk->sk_bound_dev_if) &&
fe38d2a1 163 inet_rcv_saddr_equal(sk, sk2, true)) {
df560056
EG
164 if (sk2->sk_reuseport && sk->sk_reuseport &&
165 !rcu_access_pointer(sk->sk_reuseport_cb) &&
166 uid_eq(uid, sock_i_uid(sk2))) {
167 if (!bitmap)
168 return 0;
169 } else {
170 if (!bitmap)
171 return 1;
172 __set_bit(udp_sk(sk2)->udp_port_hash >> log,
173 bitmap);
174 }
98322f22 175 }
4243cdc2 176 }
25030a7f
GR
177 return 0;
178}
179
30fff923
ED
180/*
181 * Note: we still hold spinlock of primary hash chain, so no other writer
182 * can insert/delete a socket with local_port == num
183 */
184static int udp_lib_lport_inuse2(struct net *net, __u16 num,
4243cdc2 185 struct udp_hslot *hslot2,
fe38d2a1 186 struct sock *sk)
30fff923
ED
187{
188 struct sock *sk2;
ba418fa3 189 kuid_t uid = sock_i_uid(sk);
30fff923
ED
190 int res = 0;
191
192 spin_lock(&hslot2->lock);
ca065d0c 193 udp_portaddr_for_each_entry(sk2, &hslot2->head) {
9d4fb27d
JP
194 if (net_eq(sock_net(sk2), net) &&
195 sk2 != sk &&
196 (udp_sk(sk2)->udp_port_hash == num) &&
197 (!sk2->sk_reuse || !sk->sk_reuse) &&
198 (!sk2->sk_bound_dev_if || !sk->sk_bound_dev_if ||
199 sk2->sk_bound_dev_if == sk->sk_bound_dev_if) &&
fe38d2a1 200 inet_rcv_saddr_equal(sk, sk2, true)) {
df560056
EG
201 if (sk2->sk_reuseport && sk->sk_reuseport &&
202 !rcu_access_pointer(sk->sk_reuseport_cb) &&
203 uid_eq(uid, sock_i_uid(sk2))) {
204 res = 0;
205 } else {
206 res = 1;
207 }
30fff923
ED
208 break;
209 }
4243cdc2 210 }
30fff923
ED
211 spin_unlock(&hslot2->lock);
212 return res;
213}
214
fe38d2a1 215static int udp_reuseport_add_sock(struct sock *sk, struct udp_hslot *hslot)
e32ea7e7
CG
216{
217 struct net *net = sock_net(sk);
e32ea7e7
CG
218 kuid_t uid = sock_i_uid(sk);
219 struct sock *sk2;
220
ca065d0c 221 sk_for_each(sk2, &hslot->head) {
e32ea7e7
CG
222 if (net_eq(sock_net(sk2), net) &&
223 sk2 != sk &&
224 sk2->sk_family == sk->sk_family &&
225 ipv6_only_sock(sk2) == ipv6_only_sock(sk) &&
226 (udp_sk(sk2)->udp_port_hash == udp_sk(sk)->udp_port_hash) &&
227 (sk2->sk_bound_dev_if == sk->sk_bound_dev_if) &&
228 sk2->sk_reuseport && uid_eq(uid, sock_i_uid(sk2)) &&
fe38d2a1 229 inet_rcv_saddr_equal(sk, sk2, false)) {
e32ea7e7
CG
230 return reuseport_add_sock(sk, sk2);
231 }
232 }
233
1b5f962e 234 return reuseport_alloc(sk);
e32ea7e7
CG
235}
236
25030a7f 237/**
6ba5a3c5 238 * udp_lib_get_port - UDP/-Lite port lookup for IPv4 and IPv6
25030a7f
GR
239 *
240 * @sk: socket struct in question
241 * @snum: port number to look up
25985edc 242 * @hash2_nulladdr: AF-dependent hash value in secondary hash chains,
30fff923 243 * with NULL address
25030a7f 244 */
6ba5a3c5 245int udp_lib_get_port(struct sock *sk, unsigned short snum,
30fff923 246 unsigned int hash2_nulladdr)
25030a7f 247{
512615b6 248 struct udp_hslot *hslot, *hslot2;
645ca708 249 struct udp_table *udptable = sk->sk_prot->h.udp_table;
25030a7f 250 int error = 1;
3b1e0a65 251 struct net *net = sock_net(sk);
1da177e4 252
32c1da70 253 if (!snum) {
9088c560 254 int low, high, remaining;
95c96174 255 unsigned int rand;
98322f22
ED
256 unsigned short first, last;
257 DECLARE_BITMAP(bitmap, PORTS_PER_CHAIN);
32c1da70 258
0bbf87d8 259 inet_get_local_port_range(net, &low, &high);
a25de534 260 remaining = (high - low) + 1;
227b60f5 261
63862b5b 262 rand = prandom_u32();
8fc54f68 263 first = reciprocal_scale(rand, remaining) + low;
98322f22
ED
264 /*
265 * force rand to be an odd multiple of UDP_HTABLE_SIZE
266 */
f86dcc5a 267 rand = (rand | 1) * (udptable->mask + 1);
5781b235
ED
268 last = first + udptable->mask + 1;
269 do {
f86dcc5a 270 hslot = udp_hashslot(udptable, net, first);
98322f22 271 bitmap_zero(bitmap, PORTS_PER_CHAIN);
645ca708 272 spin_lock_bh(&hslot->lock);
98322f22 273 udp_lib_lport_inuse(net, snum, hslot, bitmap, sk,
fe38d2a1 274 udptable->log);
98322f22
ED
275
276 snum = first;
277 /*
278 * Iterate on all possible values of snum for this hash.
279 * Using steps of an odd multiple of UDP_HTABLE_SIZE
280 * give us randomization and full range coverage.
281 */
9088c560 282 do {
98322f22 283 if (low <= snum && snum <= high &&
e3826f1e 284 !test_bit(snum >> udptable->log, bitmap) &&
122ff243 285 !inet_is_local_reserved_port(net, snum))
98322f22
ED
286 goto found;
287 snum += rand;
288 } while (snum != first);
289 spin_unlock_bh(&hslot->lock);
df560056 290 cond_resched();
5781b235 291 } while (++first != last);
98322f22 292 goto fail;
645ca708 293 } else {
f86dcc5a 294 hslot = udp_hashslot(udptable, net, snum);
645ca708 295 spin_lock_bh(&hslot->lock);
30fff923
ED
296 if (hslot->count > 10) {
297 int exist;
298 unsigned int slot2 = udp_sk(sk)->udp_portaddr_hash ^ snum;
299
300 slot2 &= udptable->mask;
301 hash2_nulladdr &= udptable->mask;
302
303 hslot2 = udp_hashslot2(udptable, slot2);
304 if (hslot->count < hslot2->count)
305 goto scan_primary_hash;
306
fe38d2a1 307 exist = udp_lib_lport_inuse2(net, snum, hslot2, sk);
30fff923
ED
308 if (!exist && (hash2_nulladdr != slot2)) {
309 hslot2 = udp_hashslot2(udptable, hash2_nulladdr);
310 exist = udp_lib_lport_inuse2(net, snum, hslot2,
fe38d2a1 311 sk);
30fff923
ED
312 }
313 if (exist)
314 goto fail_unlock;
315 else
316 goto found;
317 }
318scan_primary_hash:
fe38d2a1 319 if (udp_lib_lport_inuse(net, snum, hslot, NULL, sk, 0))
645ca708
ED
320 goto fail_unlock;
321 }
98322f22 322found:
c720c7e8 323 inet_sk(sk)->inet_num = snum;
d4cada4a
ED
324 udp_sk(sk)->udp_port_hash = snum;
325 udp_sk(sk)->udp_portaddr_hash ^= snum;
1da177e4 326 if (sk_unhashed(sk)) {
e32ea7e7 327 if (sk->sk_reuseport &&
fe38d2a1 328 udp_reuseport_add_sock(sk, hslot)) {
e32ea7e7
CG
329 inet_sk(sk)->inet_num = 0;
330 udp_sk(sk)->udp_port_hash = 0;
331 udp_sk(sk)->udp_portaddr_hash ^= snum;
332 goto fail_unlock;
333 }
334
ca065d0c 335 sk_add_node_rcu(sk, &hslot->head);
fdcc8aa9 336 hslot->count++;
c29a0bc4 337 sock_prot_inuse_add(sock_net(sk), sk->sk_prot, 1);
512615b6
ED
338
339 hslot2 = udp_hashslot2(udptable, udp_sk(sk)->udp_portaddr_hash);
340 spin_lock(&hslot2->lock);
d894ba18 341 if (IS_ENABLED(CONFIG_IPV6) && sk->sk_reuseport &&
1602f49b
DM
342 sk->sk_family == AF_INET6)
343 hlist_add_tail_rcu(&udp_sk(sk)->udp_portaddr_node,
344 &hslot2->head);
d894ba18 345 else
1602f49b
DM
346 hlist_add_head_rcu(&udp_sk(sk)->udp_portaddr_node,
347 &hslot2->head);
512615b6
ED
348 hslot2->count++;
349 spin_unlock(&hslot2->lock);
1da177e4 350 }
ca065d0c 351 sock_set_flag(sk, SOCK_RCU_FREE);
25030a7f 352 error = 0;
645ca708
ED
353fail_unlock:
354 spin_unlock_bh(&hslot->lock);
1da177e4 355fail:
25030a7f
GR
356 return error;
357}
c482c568 358EXPORT_SYMBOL(udp_lib_get_port);
25030a7f 359
6eada011
ED
360static u32 udp4_portaddr_hash(const struct net *net, __be32 saddr,
361 unsigned int port)
d4cada4a 362{
0eae88f3 363 return jhash_1word((__force u32)saddr, net_hash_mix(net)) ^ port;
d4cada4a
ED
364}
365
6ba5a3c5 366int udp_v4_get_port(struct sock *sk, unsigned short snum)
db8dac20 367{
30fff923 368 unsigned int hash2_nulladdr =
0eae88f3 369 udp4_portaddr_hash(sock_net(sk), htonl(INADDR_ANY), snum);
30fff923
ED
370 unsigned int hash2_partial =
371 udp4_portaddr_hash(sock_net(sk), inet_sk(sk)->inet_rcv_saddr, 0);
372
d4cada4a 373 /* precompute partial secondary hash */
30fff923 374 udp_sk(sk)->udp_portaddr_hash = hash2_partial;
fe38d2a1 375 return udp_lib_get_port(sk, snum, hash2_nulladdr);
db8dac20
DM
376}
377
d1e37288
SX
378static int compute_score(struct sock *sk, struct net *net,
379 __be32 saddr, __be16 sport,
fb74c277
DA
380 __be32 daddr, unsigned short hnum,
381 int dif, int sdif, bool exact_dif)
645ca708 382{
60c04aec
JP
383 int score;
384 struct inet_sock *inet;
645ca708 385
60c04aec
JP
386 if (!net_eq(sock_net(sk), net) ||
387 udp_sk(sk)->udp_port_hash != hnum ||
388 ipv6_only_sock(sk))
389 return -1;
645ca708 390
60c04aec
JP
391 score = (sk->sk_family == PF_INET) ? 2 : 1;
392 inet = inet_sk(sk);
393
394 if (inet->inet_rcv_saddr) {
395 if (inet->inet_rcv_saddr != daddr)
396 return -1;
397 score += 4;
645ca708 398 }
60c04aec
JP
399
400 if (inet->inet_daddr) {
401 if (inet->inet_daddr != saddr)
402 return -1;
403 score += 4;
404 }
405
406 if (inet->inet_dport) {
407 if (inet->inet_dport != sport)
408 return -1;
409 score += 4;
410 }
411
63a6fff3 412 if (sk->sk_bound_dev_if || exact_dif) {
fb74c277
DA
413 bool dev_match = (sk->sk_bound_dev_if == dif ||
414 sk->sk_bound_dev_if == sdif);
415
720e76c1 416 if (!dev_match)
60c04aec 417 return -1;
720e76c1 418 if (sk->sk_bound_dev_if)
fb74c277 419 score += 4;
60c04aec 420 }
fb74c277 421
70da268b
ED
422 if (sk->sk_incoming_cpu == raw_smp_processor_id())
423 score++;
645ca708
ED
424 return score;
425}
426
6eada011
ED
427static u32 udp_ehashfn(const struct net *net, const __be32 laddr,
428 const __u16 lport, const __be32 faddr,
429 const __be16 fport)
65cd8033 430{
1bbdceef
HFS
431 static u32 udp_ehash_secret __read_mostly;
432
433 net_get_random_once(&udp_ehash_secret, sizeof(udp_ehash_secret));
434
65cd8033 435 return __inet_ehashfn(laddr, lport, faddr, fport,
1bbdceef 436 udp_ehash_secret + net_hash_mix(net));
65cd8033
HFS
437}
438
d1e37288 439/* called with rcu_read_lock() */
5051ebd2 440static struct sock *udp4_lib_lookup2(struct net *net,
fb74c277
DA
441 __be32 saddr, __be16 sport,
442 __be32 daddr, unsigned int hnum,
443 int dif, int sdif, bool exact_dif,
444 struct udp_hslot *hslot2,
445 struct sk_buff *skb)
5051ebd2
ED
446{
447 struct sock *sk, *result;
ba418fa3
TH
448 int score, badness, matches = 0, reuseport = 0;
449 u32 hash = 0;
5051ebd2 450
5051ebd2 451 result = NULL;
ba418fa3 452 badness = 0;
ca065d0c 453 udp_portaddr_for_each_entry_rcu(sk, &hslot2->head) {
d1e37288 454 score = compute_score(sk, net, saddr, sport,
fb74c277 455 daddr, hnum, dif, sdif, exact_dif);
5051ebd2 456 if (score > badness) {
ba418fa3
TH
457 reuseport = sk->sk_reuseport;
458 if (reuseport) {
65cd8033
HFS
459 hash = udp_ehashfn(net, daddr, hnum,
460 saddr, sport);
ca065d0c 461 result = reuseport_select_sock(sk, hash, skb,
ed0dfffd 462 sizeof(struct udphdr));
ca065d0c
ED
463 if (result)
464 return result;
ba418fa3
TH
465 matches = 1;
466 }
ca065d0c
ED
467 badness = score;
468 result = sk;
ba418fa3
TH
469 } else if (score == badness && reuseport) {
470 matches++;
8fc54f68 471 if (reciprocal_scale(hash, matches) == 0)
ba418fa3
TH
472 result = sk;
473 hash = next_pseudo_random32(hash);
5051ebd2
ED
474 }
475 }
5051ebd2
ED
476 return result;
477}
478
db8dac20
DM
479/* UDP is nearly always wildcards out the wazoo, it makes no sense to try
480 * harder than this. -DaveM
481 */
fce82338 482struct sock *__udp4_lib_lookup(struct net *net, __be32 saddr,
fb74c277
DA
483 __be16 sport, __be32 daddr, __be16 dport, int dif,
484 int sdif, struct udp_table *udptable, struct sk_buff *skb)
db8dac20 485{
271b72c7 486 struct sock *sk, *result;
db8dac20 487 unsigned short hnum = ntohs(dport);
5051ebd2
ED
488 unsigned int hash2, slot2, slot = udp_hashfn(net, hnum, udptable->mask);
489 struct udp_hslot *hslot2, *hslot = &udptable->hash[slot];
63a6fff3 490 bool exact_dif = udp_lib_exact_dif_match(net, skb);
ba418fa3
TH
491 int score, badness, matches = 0, reuseport = 0;
492 u32 hash = 0;
645ca708 493
5051ebd2
ED
494 if (hslot->count > 10) {
495 hash2 = udp4_portaddr_hash(net, daddr, hnum);
496 slot2 = hash2 & udptable->mask;
497 hslot2 = &udptable->hash2[slot2];
498 if (hslot->count < hslot2->count)
499 goto begin;
500
501 result = udp4_lib_lookup2(net, saddr, sport,
fb74c277 502 daddr, hnum, dif, sdif,
63a6fff3 503 exact_dif, hslot2, skb);
5051ebd2 504 if (!result) {
d1e37288 505 unsigned int old_slot2 = slot2;
0eae88f3 506 hash2 = udp4_portaddr_hash(net, htonl(INADDR_ANY), hnum);
5051ebd2 507 slot2 = hash2 & udptable->mask;
d1e37288
SX
508 /* avoid searching the same slot again. */
509 if (unlikely(slot2 == old_slot2))
510 return result;
511
5051ebd2
ED
512 hslot2 = &udptable->hash2[slot2];
513 if (hslot->count < hslot2->count)
514 goto begin;
515
1223c67c 516 result = udp4_lib_lookup2(net, saddr, sport,
fb74c277 517 daddr, hnum, dif, sdif,
63a6fff3 518 exact_dif, hslot2, skb);
5051ebd2 519 }
5051ebd2
ED
520 return result;
521 }
271b72c7
ED
522begin:
523 result = NULL;
ba418fa3 524 badness = 0;
ca065d0c 525 sk_for_each_rcu(sk, &hslot->head) {
d1e37288 526 score = compute_score(sk, net, saddr, sport,
fb74c277 527 daddr, hnum, dif, sdif, exact_dif);
645ca708 528 if (score > badness) {
ba418fa3
TH
529 reuseport = sk->sk_reuseport;
530 if (reuseport) {
65cd8033
HFS
531 hash = udp_ehashfn(net, daddr, hnum,
532 saddr, sport);
ca065d0c 533 result = reuseport_select_sock(sk, hash, skb,
538950a1 534 sizeof(struct udphdr));
ca065d0c
ED
535 if (result)
536 return result;
ba418fa3
TH
537 matches = 1;
538 }
ca065d0c
ED
539 result = sk;
540 badness = score;
ba418fa3
TH
541 } else if (score == badness && reuseport) {
542 matches++;
8fc54f68 543 if (reciprocal_scale(hash, matches) == 0)
ba418fa3
TH
544 result = sk;
545 hash = next_pseudo_random32(hash);
db8dac20
DM
546 }
547 }
db8dac20
DM
548 return result;
549}
fce82338 550EXPORT_SYMBOL_GPL(__udp4_lib_lookup);
db8dac20 551
607c4aaf
KK
552static inline struct sock *__udp4_lib_lookup_skb(struct sk_buff *skb,
553 __be16 sport, __be16 dport,
645ca708 554 struct udp_table *udptable)
607c4aaf
KK
555{
556 const struct iphdr *iph = ip_hdr(skb);
557
ed7cbbce 558 return __udp4_lib_lookup(dev_net(skb->dev), iph->saddr, sport,
8afdd99a 559 iph->daddr, dport, inet_iif(skb),
fb74c277 560 inet_sdif(skb), udptable, skb);
607c4aaf
KK
561}
562
63058308
TH
563struct sock *udp4_lib_lookup_skb(struct sk_buff *skb,
564 __be16 sport, __be16 dport)
565{
ed7cbbce 566 return __udp4_lib_lookup_skb(skb, sport, dport, &udp_table);
63058308
TH
567}
568EXPORT_SYMBOL_GPL(udp4_lib_lookup_skb);
569
ca065d0c
ED
570/* Must be called under rcu_read_lock().
571 * Does increment socket refcount.
572 */
573#if IS_ENABLED(CONFIG_NETFILTER_XT_MATCH_SOCKET) || \
30f58158
AB
574 IS_ENABLED(CONFIG_NETFILTER_XT_TARGET_TPROXY) || \
575 IS_ENABLED(CONFIG_NF_SOCKET_IPV4)
bcd41303
KK
576struct sock *udp4_lib_lookup(struct net *net, __be32 saddr, __be16 sport,
577 __be32 daddr, __be16 dport, int dif)
578{
ca065d0c
ED
579 struct sock *sk;
580
581 sk = __udp4_lib_lookup(net, saddr, sport, daddr, dport,
fb74c277 582 dif, 0, &udp_table, NULL);
41c6d650 583 if (sk && !refcount_inc_not_zero(&sk->sk_refcnt))
ca065d0c
ED
584 sk = NULL;
585 return sk;
bcd41303
KK
586}
587EXPORT_SYMBOL_GPL(udp4_lib_lookup);
ca065d0c 588#endif
bcd41303 589
421b3885
SB
590static inline bool __udp_is_mcast_sock(struct net *net, struct sock *sk,
591 __be16 loc_port, __be32 loc_addr,
592 __be16 rmt_port, __be32 rmt_addr,
fb74c277 593 int dif, int sdif, unsigned short hnum)
421b3885
SB
594{
595 struct inet_sock *inet = inet_sk(sk);
596
597 if (!net_eq(sock_net(sk), net) ||
598 udp_sk(sk)->udp_port_hash != hnum ||
599 (inet->inet_daddr && inet->inet_daddr != rmt_addr) ||
600 (inet->inet_dport != rmt_port && inet->inet_dport) ||
601 (inet->inet_rcv_saddr && inet->inet_rcv_saddr != loc_addr) ||
602 ipv6_only_sock(sk) ||
fb74c277
DA
603 (sk->sk_bound_dev_if && sk->sk_bound_dev_if != dif &&
604 sk->sk_bound_dev_if != sdif))
421b3885 605 return false;
60d9b031 606 if (!ip_mc_sf_allow(sk, loc_addr, rmt_addr, dif, sdif))
421b3885
SB
607 return false;
608 return true;
609}
610
db8dac20
DM
611/*
612 * This routine is called by the ICMP module when it gets some
613 * sort of error condition. If err < 0 then the socket should
614 * be closed and the error returned to the user. If err > 0
615 * it's just the icmp type << 8 | icmp code.
616 * Header points to the ip header of the error packet. We move
617 * on past this. Then (as it used to claim before adjustment)
618 * header points to the first 8 bytes of the udp header. We need
619 * to find the appropriate port.
620 */
621
645ca708 622void __udp4_lib_err(struct sk_buff *skb, u32 info, struct udp_table *udptable)
db8dac20
DM
623{
624 struct inet_sock *inet;
b71d1d42 625 const struct iphdr *iph = (const struct iphdr *)skb->data;
c482c568 626 struct udphdr *uh = (struct udphdr *)(skb->data+(iph->ihl<<2));
db8dac20
DM
627 const int type = icmp_hdr(skb)->type;
628 const int code = icmp_hdr(skb)->code;
629 struct sock *sk;
630 int harderr;
631 int err;
fd54d716 632 struct net *net = dev_net(skb->dev);
db8dac20 633
fd54d716 634 sk = __udp4_lib_lookup(net, iph->daddr, uh->dest,
fb74c277
DA
635 iph->saddr, uh->source, skb->dev->ifindex, 0,
636 udptable, NULL);
51456b29 637 if (!sk) {
5d3848bc 638 __ICMP_INC_STATS(net, ICMP_MIB_INERRORS);
db8dac20
DM
639 return; /* No socket for error */
640 }
641
642 err = 0;
643 harderr = 0;
644 inet = inet_sk(sk);
645
646 switch (type) {
647 default:
648 case ICMP_TIME_EXCEEDED:
649 err = EHOSTUNREACH;
650 break;
651 case ICMP_SOURCE_QUENCH:
652 goto out;
653 case ICMP_PARAMETERPROB:
654 err = EPROTO;
655 harderr = 1;
656 break;
657 case ICMP_DEST_UNREACH:
658 if (code == ICMP_FRAG_NEEDED) { /* Path MTU discovery */
36393395 659 ipv4_sk_update_pmtu(skb, sk, info);
db8dac20
DM
660 if (inet->pmtudisc != IP_PMTUDISC_DONT) {
661 err = EMSGSIZE;
662 harderr = 1;
663 break;
664 }
665 goto out;
666 }
667 err = EHOSTUNREACH;
668 if (code <= NR_ICMP_UNREACH) {
669 harderr = icmp_err_convert[code].fatal;
670 err = icmp_err_convert[code].errno;
671 }
672 break;
55be7a9c
DM
673 case ICMP_REDIRECT:
674 ipv4_sk_redirect(skb, sk);
1a462d18 675 goto out;
db8dac20
DM
676 }
677
678 /*
679 * RFC1122: OK. Passes ICMP errors back to application, as per
680 * 4.1.3.3.
681 */
682 if (!inet->recverr) {
683 if (!harderr || sk->sk_state != TCP_ESTABLISHED)
684 goto out;
b1faf566 685 } else
c482c568 686 ip_icmp_error(sk, skb, err, uh->dest, info, (u8 *)(uh+1));
b1faf566 687
db8dac20
DM
688 sk->sk_err = err;
689 sk->sk_error_report(sk);
690out:
ca065d0c 691 return;
db8dac20
DM
692}
693
694void udp_err(struct sk_buff *skb, u32 info)
695{
645ca708 696 __udp4_lib_err(skb, info, &udp_table);
db8dac20
DM
697}
698
699/*
700 * Throw away all pending data and cancel the corking. Socket is locked.
701 */
36d926b9 702void udp_flush_pending_frames(struct sock *sk)
db8dac20
DM
703{
704 struct udp_sock *up = udp_sk(sk);
705
706 if (up->pending) {
707 up->len = 0;
708 up->pending = 0;
709 ip_flush_pending_frames(sk);
710 }
711}
36d926b9 712EXPORT_SYMBOL(udp_flush_pending_frames);
db8dac20
DM
713
714/**
f6b9664f 715 * udp4_hwcsum - handle outgoing HW checksumming
db8dac20
DM
716 * @skb: sk_buff containing the filled-in UDP header
717 * (checksum field must be zeroed out)
f6b9664f
HX
718 * @src: source IP address
719 * @dst: destination IP address
db8dac20 720 */
c26bf4a5 721void udp4_hwcsum(struct sk_buff *skb, __be32 src, __be32 dst)
db8dac20 722{
db8dac20 723 struct udphdr *uh = udp_hdr(skb);
f6b9664f
HX
724 int offset = skb_transport_offset(skb);
725 int len = skb->len - offset;
726 int hlen = len;
db8dac20
DM
727 __wsum csum = 0;
728
ebbe495f 729 if (!skb_has_frag_list(skb)) {
db8dac20
DM
730 /*
731 * Only one fragment on the socket.
732 */
733 skb->csum_start = skb_transport_header(skb) - skb->head;
734 skb->csum_offset = offsetof(struct udphdr, check);
f6b9664f
HX
735 uh->check = ~csum_tcpudp_magic(src, dst, len,
736 IPPROTO_UDP, 0);
db8dac20 737 } else {
ebbe495f
WC
738 struct sk_buff *frags;
739
db8dac20
DM
740 /*
741 * HW-checksum won't work as there are two or more
742 * fragments on the socket so that all csums of sk_buffs
743 * should be together
744 */
ebbe495f 745 skb_walk_frags(skb, frags) {
f6b9664f
HX
746 csum = csum_add(csum, frags->csum);
747 hlen -= frags->len;
ebbe495f 748 }
db8dac20 749
f6b9664f 750 csum = skb_checksum(skb, offset, hlen, csum);
db8dac20
DM
751 skb->ip_summed = CHECKSUM_NONE;
752
db8dac20
DM
753 uh->check = csum_tcpudp_magic(src, dst, len, IPPROTO_UDP, csum);
754 if (uh->check == 0)
755 uh->check = CSUM_MANGLED_0;
756 }
757}
c26bf4a5 758EXPORT_SYMBOL_GPL(udp4_hwcsum);
db8dac20 759
af5fcba7
TH
760/* Function to set UDP checksum for an IPv4 UDP packet. This is intended
761 * for the simple case like when setting the checksum for a UDP tunnel.
762 */
763void udp_set_csum(bool nocheck, struct sk_buff *skb,
764 __be32 saddr, __be32 daddr, int len)
765{
766 struct udphdr *uh = udp_hdr(skb);
767
179bc67f 768 if (nocheck) {
af5fcba7 769 uh->check = 0;
179bc67f 770 } else if (skb_is_gso(skb)) {
af5fcba7 771 uh->check = ~udp_v4_check(len, saddr, daddr, 0);
179bc67f
EC
772 } else if (skb->ip_summed == CHECKSUM_PARTIAL) {
773 uh->check = 0;
774 uh->check = udp_v4_check(len, saddr, daddr, lco_csum(skb));
775 if (uh->check == 0)
776 uh->check = CSUM_MANGLED_0;
d75f1306 777 } else {
af5fcba7
TH
778 skb->ip_summed = CHECKSUM_PARTIAL;
779 skb->csum_start = skb_transport_header(skb) - skb->head;
780 skb->csum_offset = offsetof(struct udphdr, check);
781 uh->check = ~udp_v4_check(len, saddr, daddr, 0);
af5fcba7
TH
782 }
783}
784EXPORT_SYMBOL(udp_set_csum);
785
79ab0531 786static int udp_send_skb(struct sk_buff *skb, struct flowi4 *fl4)
db8dac20 787{
f6b9664f 788 struct sock *sk = skb->sk;
db8dac20 789 struct inet_sock *inet = inet_sk(sk);
db8dac20
DM
790 struct udphdr *uh;
791 int err = 0;
792 int is_udplite = IS_UDPLITE(sk);
f6b9664f
HX
793 int offset = skb_transport_offset(skb);
794 int len = skb->len - offset;
db8dac20
DM
795 __wsum csum = 0;
796
db8dac20
DM
797 /*
798 * Create a UDP header
799 */
800 uh = udp_hdr(skb);
f6b9664f 801 uh->source = inet->inet_sport;
79ab0531 802 uh->dest = fl4->fl4_dport;
f6b9664f 803 uh->len = htons(len);
db8dac20
DM
804 uh->check = 0;
805
806 if (is_udplite) /* UDP-Lite */
f6b9664f 807 csum = udplite_csum(skb);
db8dac20 808
ab2fb7e3 809 else if (sk->sk_no_check_tx) { /* UDP csum off */
db8dac20
DM
810
811 skb->ip_summed = CHECKSUM_NONE;
812 goto send;
813
814 } else if (skb->ip_summed == CHECKSUM_PARTIAL) { /* UDP hardware csum */
815
79ab0531 816 udp4_hwcsum(skb, fl4->saddr, fl4->daddr);
db8dac20
DM
817 goto send;
818
f6b9664f
HX
819 } else
820 csum = udp_csum(skb);
db8dac20
DM
821
822 /* add protocol-dependent pseudo-header */
79ab0531 823 uh->check = csum_tcpudp_magic(fl4->saddr, fl4->daddr, len,
c482c568 824 sk->sk_protocol, csum);
db8dac20
DM
825 if (uh->check == 0)
826 uh->check = CSUM_MANGLED_0;
827
828send:
b5ec8eea 829 err = ip_send_skb(sock_net(sk), skb);
6ce9e7b5
ED
830 if (err) {
831 if (err == -ENOBUFS && !inet->recverr) {
6aef70a8
ED
832 UDP_INC_STATS(sock_net(sk),
833 UDP_MIB_SNDBUFERRORS, is_udplite);
6ce9e7b5
ED
834 err = 0;
835 }
836 } else
6aef70a8
ED
837 UDP_INC_STATS(sock_net(sk),
838 UDP_MIB_OUTDATAGRAMS, is_udplite);
f6b9664f
HX
839 return err;
840}
841
842/*
843 * Push out all pending data as one UDP datagram. Socket is locked.
844 */
8822b64a 845int udp_push_pending_frames(struct sock *sk)
f6b9664f
HX
846{
847 struct udp_sock *up = udp_sk(sk);
848 struct inet_sock *inet = inet_sk(sk);
b6f21b26 849 struct flowi4 *fl4 = &inet->cork.fl.u.ip4;
f6b9664f
HX
850 struct sk_buff *skb;
851 int err = 0;
852
77968b78 853 skb = ip_finish_skb(sk, fl4);
f6b9664f
HX
854 if (!skb)
855 goto out;
856
79ab0531 857 err = udp_send_skb(skb, fl4);
f6b9664f 858
db8dac20
DM
859out:
860 up->len = 0;
861 up->pending = 0;
db8dac20
DM
862 return err;
863}
8822b64a 864EXPORT_SYMBOL(udp_push_pending_frames);
db8dac20 865
1b784140 866int udp_sendmsg(struct sock *sk, struct msghdr *msg, size_t len)
db8dac20
DM
867{
868 struct inet_sock *inet = inet_sk(sk);
869 struct udp_sock *up = udp_sk(sk);
e474995f 870 struct flowi4 fl4_stack;
b6f21b26 871 struct flowi4 *fl4;
db8dac20
DM
872 int ulen = len;
873 struct ipcm_cookie ipc;
874 struct rtable *rt = NULL;
875 int free = 0;
876 int connected = 0;
877 __be32 daddr, faddr, saddr;
878 __be16 dport;
879 u8 tos;
880 int err, is_udplite = IS_UDPLITE(sk);
881 int corkreq = up->corkflag || msg->msg_flags&MSG_MORE;
882 int (*getfrag)(void *, char *, int, int, int, struct sk_buff *);
903ab86d 883 struct sk_buff *skb;
f6d8bd05 884 struct ip_options_data opt_copy;
db8dac20
DM
885
886 if (len > 0xFFFF)
887 return -EMSGSIZE;
888
889 /*
890 * Check the flags.
891 */
892
c482c568 893 if (msg->msg_flags & MSG_OOB) /* Mirror BSD error message compatibility */
db8dac20
DM
894 return -EOPNOTSUPP;
895
896 ipc.opt = NULL;
2244d07b 897 ipc.tx_flags = 0;
aa661581
FF
898 ipc.ttl = 0;
899 ipc.tos = -1;
db8dac20 900
903ab86d
HX
901 getfrag = is_udplite ? udplite_getfrag : ip_generic_getfrag;
902
f5fca608 903 fl4 = &inet->cork.fl.u.ip4;
db8dac20
DM
904 if (up->pending) {
905 /*
906 * There are pending frames.
907 * The socket lock must be held while it's corked.
908 */
909 lock_sock(sk);
910 if (likely(up->pending)) {
911 if (unlikely(up->pending != AF_INET)) {
912 release_sock(sk);
913 return -EINVAL;
914 }
915 goto do_append_data;
916 }
917 release_sock(sk);
918 }
919 ulen += sizeof(struct udphdr);
920
921 /*
922 * Get and verify the address.
923 */
924 if (msg->msg_name) {
342dfc30 925 DECLARE_SOCKADDR(struct sockaddr_in *, usin, msg->msg_name);
db8dac20
DM
926 if (msg->msg_namelen < sizeof(*usin))
927 return -EINVAL;
928 if (usin->sin_family != AF_INET) {
929 if (usin->sin_family != AF_UNSPEC)
930 return -EAFNOSUPPORT;
931 }
932
933 daddr = usin->sin_addr.s_addr;
934 dport = usin->sin_port;
935 if (dport == 0)
936 return -EINVAL;
937 } else {
938 if (sk->sk_state != TCP_ESTABLISHED)
939 return -EDESTADDRREQ;
c720c7e8
ED
940 daddr = inet->inet_daddr;
941 dport = inet->inet_dport;
db8dac20
DM
942 /* Open fast path for connected socket.
943 Route will not be used, if at least one option is set.
944 */
945 connected = 1;
946 }
db8dac20 947
c14ac945
SHY
948 ipc.sockc.tsflags = sk->sk_tsflags;
949 ipc.addr = inet->inet_saddr;
db8dac20 950 ipc.oif = sk->sk_bound_dev_if;
bf84a010 951
db8dac20 952 if (msg->msg_controllen) {
24025c46 953 err = ip_cmsg_send(sk, msg, &ipc, sk->sk_family == AF_INET6);
91948309
ED
954 if (unlikely(err)) {
955 kfree(ipc.opt);
db8dac20 956 return err;
91948309 957 }
db8dac20
DM
958 if (ipc.opt)
959 free = 1;
960 connected = 0;
961 }
f6d8bd05
ED
962 if (!ipc.opt) {
963 struct ip_options_rcu *inet_opt;
964
965 rcu_read_lock();
966 inet_opt = rcu_dereference(inet->inet_opt);
967 if (inet_opt) {
968 memcpy(&opt_copy, inet_opt,
969 sizeof(*inet_opt) + inet_opt->opt.optlen);
970 ipc.opt = &opt_copy.opt;
971 }
972 rcu_read_unlock();
973 }
db8dac20
DM
974
975 saddr = ipc.addr;
976 ipc.addr = faddr = daddr;
977
c14ac945
SHY
978 sock_tx_timestamp(sk, ipc.sockc.tsflags, &ipc.tx_flags);
979
f6d8bd05 980 if (ipc.opt && ipc.opt->opt.srr) {
6c4db23a
AI
981 if (!daddr) {
982 err = -EINVAL;
983 goto out_free;
984 }
f6d8bd05 985 faddr = ipc.opt->opt.faddr;
db8dac20
DM
986 connected = 0;
987 }
aa661581 988 tos = get_rttos(&ipc, inet);
db8dac20
DM
989 if (sock_flag(sk, SOCK_LOCALROUTE) ||
990 (msg->msg_flags & MSG_DONTROUTE) ||
f6d8bd05 991 (ipc.opt && ipc.opt->opt.is_strictroute)) {
db8dac20
DM
992 tos |= RTO_ONLINK;
993 connected = 0;
994 }
995
996 if (ipv4_is_multicast(daddr)) {
997 if (!ipc.oif)
998 ipc.oif = inet->mc_index;
999 if (!saddr)
1000 saddr = inet->mc_addr;
1001 connected = 0;
76e21053
EH
1002 } else if (!ipc.oif)
1003 ipc.oif = inet->uc_index;
db8dac20
DM
1004
1005 if (connected)
c482c568 1006 rt = (struct rtable *)sk_dst_check(sk, 0);
db8dac20 1007
51456b29 1008 if (!rt) {
84a3aa00 1009 struct net *net = sock_net(sk);
9a24abfa 1010 __u8 flow_flags = inet_sk_flowi_flags(sk);
84a3aa00 1011
e474995f 1012 fl4 = &fl4_stack;
9a24abfa 1013
e474995f 1014 flowi4_init_output(fl4, ipc.oif, sk->sk_mark, tos,
c0951cbc 1015 RT_SCOPE_UNIVERSE, sk->sk_protocol,
9a24abfa 1016 flow_flags,
e2d118a1
LC
1017 faddr, saddr, dport, inet->inet_sport,
1018 sk->sk_uid);
c0951cbc 1019
e474995f
DM
1020 security_sk_classify_flow(sk, flowi4_to_flowi(fl4));
1021 rt = ip_route_output_flow(net, fl4, sk);
b23dd4fe
DM
1022 if (IS_ERR(rt)) {
1023 err = PTR_ERR(rt);
06dc94b1 1024 rt = NULL;
db8dac20 1025 if (err == -ENETUNREACH)
f1d8cba6 1026 IP_INC_STATS(net, IPSTATS_MIB_OUTNOROUTES);
db8dac20
DM
1027 goto out;
1028 }
1029
1030 err = -EACCES;
1031 if ((rt->rt_flags & RTCF_BROADCAST) &&
1032 !sock_flag(sk, SOCK_BROADCAST))
1033 goto out;
1034 if (connected)
d8d1f30b 1035 sk_dst_set(sk, dst_clone(&rt->dst));
db8dac20
DM
1036 }
1037
1038 if (msg->msg_flags&MSG_CONFIRM)
1039 goto do_confirm;
1040back_from_confirm:
1041
e474995f 1042 saddr = fl4->saddr;
db8dac20 1043 if (!ipc.addr)
e474995f 1044 daddr = ipc.addr = fl4->daddr;
db8dac20 1045
903ab86d
HX
1046 /* Lockless fast path for the non-corking case. */
1047 if (!corkreq) {
f69e6d13 1048 skb = ip_make_skb(sk, fl4, getfrag, msg, ulen,
903ab86d
HX
1049 sizeof(struct udphdr), &ipc, &rt,
1050 msg->msg_flags);
1051 err = PTR_ERR(skb);
50c3a487 1052 if (!IS_ERR_OR_NULL(skb))
79ab0531 1053 err = udp_send_skb(skb, fl4);
903ab86d
HX
1054 goto out;
1055 }
1056
db8dac20
DM
1057 lock_sock(sk);
1058 if (unlikely(up->pending)) {
1059 /* The socket is already corked while preparing it. */
1060 /* ... which is an evident application bug. --ANK */
1061 release_sock(sk);
1062
197df02c 1063 net_dbg_ratelimited("socket already corked\n");
db8dac20
DM
1064 err = -EINVAL;
1065 goto out;
1066 }
1067 /*
1068 * Now cork the socket to pend data.
1069 */
b6f21b26
DM
1070 fl4 = &inet->cork.fl.u.ip4;
1071 fl4->daddr = daddr;
1072 fl4->saddr = saddr;
9cce96df
DM
1073 fl4->fl4_dport = dport;
1074 fl4->fl4_sport = inet->inet_sport;
db8dac20
DM
1075 up->pending = AF_INET;
1076
1077do_append_data:
1078 up->len += ulen;
f69e6d13 1079 err = ip_append_data(sk, fl4, getfrag, msg, ulen,
f5fca608
DM
1080 sizeof(struct udphdr), &ipc, &rt,
1081 corkreq ? msg->msg_flags|MSG_MORE : msg->msg_flags);
db8dac20
DM
1082 if (err)
1083 udp_flush_pending_frames(sk);
1084 else if (!corkreq)
1085 err = udp_push_pending_frames(sk);
1086 else if (unlikely(skb_queue_empty(&sk->sk_write_queue)))
1087 up->pending = 0;
1088 release_sock(sk);
1089
1090out:
1091 ip_rt_put(rt);
6c4db23a 1092out_free:
db8dac20
DM
1093 if (free)
1094 kfree(ipc.opt);
1095 if (!err)
1096 return len;
1097 /*
1098 * ENOBUFS = no kernel mem, SOCK_NOSPACE = no sndbuf space. Reporting
1099 * ENOBUFS might not be good (it's not tunable per se), but otherwise
1100 * we don't have a good statistic (IpOutDiscards but it can be too many
1101 * things). We could add another new stat but at least for now that
1102 * seems like overkill.
1103 */
1104 if (err == -ENOBUFS || test_bit(SOCK_NOSPACE, &sk->sk_socket->flags)) {
6aef70a8
ED
1105 UDP_INC_STATS(sock_net(sk),
1106 UDP_MIB_SNDBUFERRORS, is_udplite);
db8dac20
DM
1107 }
1108 return err;
1109
1110do_confirm:
0dec879f
JA
1111 if (msg->msg_flags & MSG_PROBE)
1112 dst_confirm_neigh(&rt->dst, &fl4->daddr);
db8dac20
DM
1113 if (!(msg->msg_flags&MSG_PROBE) || len)
1114 goto back_from_confirm;
1115 err = 0;
1116 goto out;
1117}
c482c568 1118EXPORT_SYMBOL(udp_sendmsg);
db8dac20
DM
1119
1120int udp_sendpage(struct sock *sk, struct page *page, int offset,
1121 size_t size, int flags)
1122{
f5fca608 1123 struct inet_sock *inet = inet_sk(sk);
db8dac20
DM
1124 struct udp_sock *up = udp_sk(sk);
1125 int ret;
1126
d3f7d56a
SL
1127 if (flags & MSG_SENDPAGE_NOTLAST)
1128 flags |= MSG_MORE;
1129
db8dac20
DM
1130 if (!up->pending) {
1131 struct msghdr msg = { .msg_flags = flags|MSG_MORE };
1132
1133 /* Call udp_sendmsg to specify destination address which
1134 * sendpage interface can't pass.
1135 * This will succeed only when the socket is connected.
1136 */
1b784140 1137 ret = udp_sendmsg(sk, &msg, 0);
db8dac20
DM
1138 if (ret < 0)
1139 return ret;
1140 }
1141
1142 lock_sock(sk);
1143
1144 if (unlikely(!up->pending)) {
1145 release_sock(sk);
1146
197df02c 1147 net_dbg_ratelimited("cork failed\n");
db8dac20
DM
1148 return -EINVAL;
1149 }
1150
f5fca608
DM
1151 ret = ip_append_page(sk, &inet->cork.fl.u.ip4,
1152 page, offset, size, flags);
db8dac20
DM
1153 if (ret == -EOPNOTSUPP) {
1154 release_sock(sk);
1155 return sock_no_sendpage(sk->sk_socket, page, offset,
1156 size, flags);
1157 }
1158 if (ret < 0) {
1159 udp_flush_pending_frames(sk);
1160 goto out;
1161 }
1162
1163 up->len += size;
1164 if (!(up->corkflag || (flags&MSG_MORE)))
1165 ret = udp_push_pending_frames(sk);
1166 if (!ret)
1167 ret = size;
1168out:
1169 release_sock(sk);
1170 return ret;
1171}
1172
dce4551c
PA
1173#define UDP_SKB_IS_STATELESS 0x80000000
1174
b65ac446
PA
1175static void udp_set_dev_scratch(struct sk_buff *skb)
1176{
dce4551c 1177 struct udp_dev_scratch *scratch = udp_skb_scratch(skb);
b65ac446
PA
1178
1179 BUILD_BUG_ON(sizeof(struct udp_dev_scratch) > sizeof(long));
dce4551c
PA
1180 scratch->_tsize_state = skb->truesize;
1181#if BITS_PER_LONG == 64
b65ac446
PA
1182 scratch->len = skb->len;
1183 scratch->csum_unnecessary = !!skb_csum_unnecessary(skb);
1184 scratch->is_linear = !skb_is_nonlinear(skb);
dce4551c 1185#endif
3bdefdf9
PA
1186 /* all head states execept sp (dst, sk, nf) are always cleared by
1187 * udp_rcv() and we need to preserve secpath, if present, to eventually
1188 * process IP_CMSG_PASSSEC at recvmsg() time
1189 */
1190 if (likely(!skb_sec_path(skb)))
dce4551c 1191 scratch->_tsize_state |= UDP_SKB_IS_STATELESS;
b65ac446
PA
1192}
1193
1194static int udp_skb_truesize(struct sk_buff *skb)
1195{
dce4551c 1196 return udp_skb_scratch(skb)->_tsize_state & ~UDP_SKB_IS_STATELESS;
b65ac446
PA
1197}
1198
dce4551c 1199static bool udp_skb_has_head_state(struct sk_buff *skb)
b65ac446 1200{
dce4551c 1201 return !(udp_skb_scratch(skb)->_tsize_state & UDP_SKB_IS_STATELESS);
b65ac446 1202}
b65ac446 1203
7c13f97f 1204/* fully reclaim rmem/fwd memory allocated for skb */
6dfb4367
PA
1205static void udp_rmem_release(struct sock *sk, int size, int partial,
1206 bool rx_queue_lock_held)
f970bd9e 1207{
6b229cf7 1208 struct udp_sock *up = udp_sk(sk);
2276f58a 1209 struct sk_buff_head *sk_queue;
f970bd9e
PA
1210 int amt;
1211
6b229cf7
ED
1212 if (likely(partial)) {
1213 up->forward_deficit += size;
1214 size = up->forward_deficit;
0d4a6608 1215 if (size < (sk->sk_rcvbuf >> 2))
6b229cf7
ED
1216 return;
1217 } else {
1218 size += up->forward_deficit;
1219 }
1220 up->forward_deficit = 0;
1221
6dfb4367
PA
1222 /* acquire the sk_receive_queue for fwd allocated memory scheduling,
1223 * if the called don't held it already
1224 */
2276f58a 1225 sk_queue = &sk->sk_receive_queue;
6dfb4367
PA
1226 if (!rx_queue_lock_held)
1227 spin_lock(&sk_queue->lock);
1228
2276f58a 1229
f970bd9e
PA
1230 sk->sk_forward_alloc += size;
1231 amt = (sk->sk_forward_alloc - partial) & ~(SK_MEM_QUANTUM - 1);
1232 sk->sk_forward_alloc -= amt;
f970bd9e
PA
1233
1234 if (amt)
1235 __sk_mem_reduce_allocated(sk, amt >> SK_MEM_QUANTUM_SHIFT);
02ab0d13
ED
1236
1237 atomic_sub(size, &sk->sk_rmem_alloc);
2276f58a
PA
1238
1239 /* this can save us from acquiring the rx queue lock on next receive */
1240 skb_queue_splice_tail_init(sk_queue, &up->reader_queue);
1241
6dfb4367
PA
1242 if (!rx_queue_lock_held)
1243 spin_unlock(&sk_queue->lock);
f970bd9e
PA
1244}
1245
2276f58a 1246/* Note: called with reader_queue.lock held.
c84d9490
ED
1247 * Instead of using skb->truesize here, find a copy of it in skb->dev_scratch
1248 * This avoids a cache line miss while receive_queue lock is held.
1249 * Look at __udp_enqueue_schedule_skb() to find where this copy is done.
1250 */
7c13f97f 1251void udp_skb_destructor(struct sock *sk, struct sk_buff *skb)
f970bd9e 1252{
b65ac446
PA
1253 prefetch(&skb->data);
1254 udp_rmem_release(sk, udp_skb_truesize(skb), 1, false);
f970bd9e 1255}
7c13f97f 1256EXPORT_SYMBOL(udp_skb_destructor);
f970bd9e 1257
6dfb4367 1258/* as above, but the caller held the rx queue lock, too */
64f5102d 1259static void udp_skb_dtor_locked(struct sock *sk, struct sk_buff *skb)
6dfb4367 1260{
b65ac446
PA
1261 prefetch(&skb->data);
1262 udp_rmem_release(sk, udp_skb_truesize(skb), 1, true);
6dfb4367
PA
1263}
1264
4b272750
ED
1265/* Idea of busylocks is to let producers grab an extra spinlock
1266 * to relieve pressure on the receive_queue spinlock shared by consumer.
1267 * Under flood, this means that only one producer can be in line
1268 * trying to acquire the receive_queue spinlock.
1269 * These busylock can be allocated on a per cpu manner, instead of a
1270 * per socket one (that would consume a cache line per socket)
1271 */
1272static int udp_busylocks_log __read_mostly;
1273static spinlock_t *udp_busylocks __read_mostly;
1274
1275static spinlock_t *busylock_acquire(void *ptr)
1276{
1277 spinlock_t *busy;
1278
1279 busy = udp_busylocks + hash_ptr(ptr, udp_busylocks_log);
1280 spin_lock(busy);
1281 return busy;
1282}
1283
1284static void busylock_release(spinlock_t *busy)
1285{
1286 if (busy)
1287 spin_unlock(busy);
1288}
1289
f970bd9e
PA
1290int __udp_enqueue_schedule_skb(struct sock *sk, struct sk_buff *skb)
1291{
1292 struct sk_buff_head *list = &sk->sk_receive_queue;
1293 int rmem, delta, amt, err = -ENOMEM;
4b272750 1294 spinlock_t *busy = NULL;
c8c8b127 1295 int size;
f970bd9e
PA
1296
1297 /* try to avoid the costly atomic add/sub pair when the receive
1298 * queue is full; always allow at least a packet
1299 */
1300 rmem = atomic_read(&sk->sk_rmem_alloc);
363dc73a 1301 if (rmem > sk->sk_rcvbuf)
f970bd9e
PA
1302 goto drop;
1303
c8c8b127
ED
1304 /* Under mem pressure, it might be helpful to help udp_recvmsg()
1305 * having linear skbs :
1306 * - Reduce memory overhead and thus increase receive queue capacity
1307 * - Less cache line misses at copyout() time
1308 * - Less work at consume_skb() (less alien page frag freeing)
1309 */
4b272750 1310 if (rmem > (sk->sk_rcvbuf >> 1)) {
c8c8b127 1311 skb_condense(skb);
4b272750
ED
1312
1313 busy = busylock_acquire(sk);
1314 }
c8c8b127 1315 size = skb->truesize;
b65ac446 1316 udp_set_dev_scratch(skb);
c8c8b127 1317
f970bd9e
PA
1318 /* we drop only if the receive buf is full and the receive
1319 * queue contains some other skb
1320 */
1321 rmem = atomic_add_return(size, &sk->sk_rmem_alloc);
363dc73a 1322 if (rmem > (size + sk->sk_rcvbuf))
f970bd9e
PA
1323 goto uncharge_drop;
1324
1325 spin_lock(&list->lock);
1326 if (size >= sk->sk_forward_alloc) {
1327 amt = sk_mem_pages(size);
1328 delta = amt << SK_MEM_QUANTUM_SHIFT;
1329 if (!__sk_mem_raise_allocated(sk, delta, amt, SK_MEM_RECV)) {
1330 err = -ENOBUFS;
1331 spin_unlock(&list->lock);
1332 goto uncharge_drop;
1333 }
1334
1335 sk->sk_forward_alloc += delta;
1336 }
1337
1338 sk->sk_forward_alloc -= size;
1339
7c13f97f
PA
1340 /* no need to setup a destructor, we will explicitly release the
1341 * forward allocated memory on dequeue
1342 */
f970bd9e
PA
1343 sock_skb_set_dropcount(sk, skb);
1344
1345 __skb_queue_tail(list, skb);
1346 spin_unlock(&list->lock);
1347
1348 if (!sock_flag(sk, SOCK_DEAD))
1349 sk->sk_data_ready(sk);
1350
4b272750 1351 busylock_release(busy);
f970bd9e
PA
1352 return 0;
1353
1354uncharge_drop:
1355 atomic_sub(skb->truesize, &sk->sk_rmem_alloc);
1356
1357drop:
1358 atomic_inc(&sk->sk_drops);
4b272750 1359 busylock_release(busy);
f970bd9e
PA
1360 return err;
1361}
1362EXPORT_SYMBOL_GPL(__udp_enqueue_schedule_skb);
1363
c915fe13 1364void udp_destruct_sock(struct sock *sk)
f970bd9e
PA
1365{
1366 /* reclaim completely the forward allocated memory */
2276f58a 1367 struct udp_sock *up = udp_sk(sk);
7c13f97f
PA
1368 unsigned int total = 0;
1369 struct sk_buff *skb;
1370
2276f58a
PA
1371 skb_queue_splice_tail_init(&sk->sk_receive_queue, &up->reader_queue);
1372 while ((skb = __skb_dequeue(&up->reader_queue)) != NULL) {
7c13f97f
PA
1373 total += skb->truesize;
1374 kfree_skb(skb);
1375 }
6dfb4367 1376 udp_rmem_release(sk, total, 0, true);
7c13f97f 1377
f970bd9e
PA
1378 inet_sock_destruct(sk);
1379}
c915fe13 1380EXPORT_SYMBOL_GPL(udp_destruct_sock);
f970bd9e
PA
1381
1382int udp_init_sock(struct sock *sk)
1383{
2276f58a 1384 skb_queue_head_init(&udp_sk(sk)->reader_queue);
f970bd9e
PA
1385 sk->sk_destruct = udp_destruct_sock;
1386 return 0;
1387}
1388EXPORT_SYMBOL_GPL(udp_init_sock);
1389
1390void skb_consume_udp(struct sock *sk, struct sk_buff *skb, int len)
1391{
1392 if (unlikely(READ_ONCE(sk->sk_peek_off) >= 0)) {
1393 bool slow = lock_sock_fast(sk);
1394
1395 sk_peek_offset_bwd(sk, len);
1396 unlock_sock_fast(sk, slow);
1397 }
0a463c78 1398
ca2c1418
PA
1399 if (!skb_unref(skb))
1400 return;
1401
dce4551c
PA
1402 /* In the more common cases we cleared the head states previously,
1403 * see __udp_queue_rcv_skb().
0ddf3fb2 1404 */
dce4551c 1405 if (unlikely(udp_skb_has_head_state(skb)))
0ddf3fb2 1406 skb_release_head_state(skb);
ca2c1418 1407 __consume_stateless_skb(skb);
f970bd9e
PA
1408}
1409EXPORT_SYMBOL_GPL(skb_consume_udp);
1410
2276f58a
PA
1411static struct sk_buff *__first_packet_length(struct sock *sk,
1412 struct sk_buff_head *rcvq,
1413 int *total)
1414{
1415 struct sk_buff *skb;
1416
9bd780f5
PA
1417 while ((skb = skb_peek(rcvq)) != NULL) {
1418 if (udp_lib_checksum_complete(skb)) {
1419 __UDP_INC_STATS(sock_net(sk), UDP_MIB_CSUMERRORS,
1420 IS_UDPLITE(sk));
1421 __UDP_INC_STATS(sock_net(sk), UDP_MIB_INERRORS,
1422 IS_UDPLITE(sk));
1423 atomic_inc(&sk->sk_drops);
1424 __skb_unlink(skb, rcvq);
1425 *total += skb->truesize;
1426 kfree_skb(skb);
1427 } else {
1428 /* the csum related bits could be changed, refresh
1429 * the scratch area
1430 */
1431 udp_set_dev_scratch(skb);
1432 break;
1433 }
2276f58a
PA
1434 }
1435 return skb;
1436}
1437
85584672
ED
1438/**
1439 * first_packet_length - return length of first packet in receive queue
1440 * @sk: socket
1441 *
1442 * Drops all bad checksum frames, until a valid one is found.
e83c6744 1443 * Returns the length of found skb, or -1 if none is found.
85584672 1444 */
e83c6744 1445static int first_packet_length(struct sock *sk)
85584672 1446{
2276f58a
PA
1447 struct sk_buff_head *rcvq = &udp_sk(sk)->reader_queue;
1448 struct sk_buff_head *sk_queue = &sk->sk_receive_queue;
85584672 1449 struct sk_buff *skb;
7c13f97f 1450 int total = 0;
e83c6744 1451 int res;
85584672 1452
85584672 1453 spin_lock_bh(&rcvq->lock);
2276f58a
PA
1454 skb = __first_packet_length(sk, rcvq, &total);
1455 if (!skb && !skb_queue_empty(sk_queue)) {
1456 spin_lock(&sk_queue->lock);
1457 skb_queue_splice_tail_init(sk_queue, rcvq);
1458 spin_unlock(&sk_queue->lock);
1459
1460 skb = __first_packet_length(sk, rcvq, &total);
85584672 1461 }
e83c6744 1462 res = skb ? skb->len : -1;
7c13f97f 1463 if (total)
6dfb4367 1464 udp_rmem_release(sk, total, 1, false);
85584672 1465 spin_unlock_bh(&rcvq->lock);
85584672
ED
1466 return res;
1467}
1468
1da177e4
LT
1469/*
1470 * IOCTL requests applicable to the UDP protocol
1471 */
e905a9ed 1472
1da177e4
LT
1473int udp_ioctl(struct sock *sk, int cmd, unsigned long arg)
1474{
6516c655
SH
1475 switch (cmd) {
1476 case SIOCOUTQ:
1da177e4 1477 {
31e6d363
ED
1478 int amount = sk_wmem_alloc_get(sk);
1479
6516c655
SH
1480 return put_user(amount, (int __user *)arg);
1481 }
1da177e4 1482
6516c655
SH
1483 case SIOCINQ:
1484 {
e83c6744 1485 int amount = max_t(int, 0, first_packet_length(sk));
6516c655 1486
6516c655
SH
1487 return put_user(amount, (int __user *)arg);
1488 }
1da177e4 1489
6516c655
SH
1490 default:
1491 return -ENOIOCTLCMD;
1da177e4 1492 }
6516c655
SH
1493
1494 return 0;
1da177e4 1495}
c482c568 1496EXPORT_SYMBOL(udp_ioctl);
1da177e4 1497
2276f58a
PA
1498struct sk_buff *__skb_recv_udp(struct sock *sk, unsigned int flags,
1499 int noblock, int *peeked, int *off, int *err)
1500{
1501 struct sk_buff_head *sk_queue = &sk->sk_receive_queue;
1502 struct sk_buff_head *queue;
1503 struct sk_buff *last;
1504 long timeo;
1505 int error;
1506
1507 queue = &udp_sk(sk)->reader_queue;
1508 flags |= noblock ? MSG_DONTWAIT : 0;
1509 timeo = sock_rcvtimeo(sk, flags & MSG_DONTWAIT);
1510 do {
1511 struct sk_buff *skb;
1512
1513 error = sock_error(sk);
1514 if (error)
1515 break;
1516
1517 error = -EAGAIN;
1518 *peeked = 0;
1519 do {
2276f58a
PA
1520 spin_lock_bh(&queue->lock);
1521 skb = __skb_try_recv_from_queue(sk, queue, flags,
1522 udp_skb_destructor,
de321ed3 1523 peeked, off, err,
2276f58a
PA
1524 &last);
1525 if (skb) {
1526 spin_unlock_bh(&queue->lock);
2276f58a
PA
1527 return skb;
1528 }
1529
1530 if (skb_queue_empty(sk_queue)) {
1531 spin_unlock_bh(&queue->lock);
1532 goto busy_check;
1533 }
1534
6dfb4367
PA
1535 /* refill the reader queue and walk it again
1536 * keep both queues locked to avoid re-acquiring
1537 * the sk_receive_queue lock if fwd memory scheduling
1538 * is needed.
1539 */
2276f58a
PA
1540 spin_lock(&sk_queue->lock);
1541 skb_queue_splice_tail_init(sk_queue, queue);
2276f58a
PA
1542
1543 skb = __skb_try_recv_from_queue(sk, queue, flags,
6dfb4367 1544 udp_skb_dtor_locked,
de321ed3 1545 peeked, off, err,
2276f58a 1546 &last);
6dfb4367 1547 spin_unlock(&sk_queue->lock);
2276f58a 1548 spin_unlock_bh(&queue->lock);
de321ed3 1549 if (skb)
2276f58a 1550 return skb;
2276f58a
PA
1551
1552busy_check:
1553 if (!sk_can_busy_loop(sk))
1554 break;
1555
1556 sk_busy_loop(sk, flags & MSG_DONTWAIT);
1557 } while (!skb_queue_empty(sk_queue));
1558
1559 /* sk_queue is empty, reader_queue may contain peeked packets */
1560 } while (timeo &&
1561 !__skb_wait_for_more_packets(sk, &error, &timeo,
1562 (struct sk_buff *)sk_queue));
1563
1564 *err = error;
1565 return NULL;
1566}
1567EXPORT_SYMBOL_GPL(__skb_recv_udp);
1568
db8dac20
DM
1569/*
1570 * This should be easy, if there is something there we
1571 * return it, otherwise we block.
1572 */
1573
1b784140
YX
1574int udp_recvmsg(struct sock *sk, struct msghdr *msg, size_t len, int noblock,
1575 int flags, int *addr_len)
db8dac20
DM
1576{
1577 struct inet_sock *inet = inet_sk(sk);
342dfc30 1578 DECLARE_SOCKADDR(struct sockaddr_in *, sin, msg->msg_name);
db8dac20 1579 struct sk_buff *skb;
59c2cdae 1580 unsigned int ulen, copied;
627d2d6b 1581 int peeked, peeking, off;
db8dac20
DM
1582 int err;
1583 int is_udplite = IS_UDPLITE(sk);
197c949e 1584 bool checksum_valid = false;
db8dac20 1585
db8dac20 1586 if (flags & MSG_ERRQUEUE)
85fbaa75 1587 return ip_recv_error(sk, msg, len, addr_len);
db8dac20
DM
1588
1589try_again:
a0917e0b
MD
1590 peeking = flags & MSG_PEEK;
1591 off = sk_peek_offset(sk, flags);
7c13f97f 1592 skb = __skb_recv_udp(sk, flags, noblock, &peeked, &off, &err);
db8dac20 1593 if (!skb)
627d2d6b 1594 return err;
db8dac20 1595
b65ac446 1596 ulen = udp_skb_len(skb);
59c2cdae 1597 copied = len;
627d2d6b 1598 if (copied > ulen - off)
1599 copied = ulen - off;
59c2cdae 1600 else if (copied < ulen)
db8dac20
DM
1601 msg->msg_flags |= MSG_TRUNC;
1602
1603 /*
1604 * If checksum is needed at all, try to do it while copying the
1605 * data. If the data is truncated, or if we only want a partial
1606 * coverage checksum (UDP-Lite), do it before the copy.
1607 */
1608
d21dbdfe
ED
1609 if (copied < ulen || peeking ||
1610 (is_udplite && UDP_SKB_CB(skb)->partial_cov)) {
b65ac446
PA
1611 checksum_valid = udp_skb_csum_unnecessary(skb) ||
1612 !__udp_lib_checksum_complete(skb);
197c949e 1613 if (!checksum_valid)
db8dac20
DM
1614 goto csum_copy_err;
1615 }
1616
b65ac446
PA
1617 if (checksum_valid || udp_skb_csum_unnecessary(skb)) {
1618 if (udp_skb_is_linear(skb))
1619 err = copy_linear_skb(skb, copied, off, &msg->msg_iter);
1620 else
1621 err = skb_copy_datagram_msg(skb, off, msg, copied);
1622 } else {
627d2d6b 1623 err = skb_copy_and_csum_datagram_msg(skb, off, msg);
db8dac20
DM
1624
1625 if (err == -EINVAL)
1626 goto csum_copy_err;
1627 }
1628
22911fc5 1629 if (unlikely(err)) {
979402b1
ED
1630 if (!peeked) {
1631 atomic_inc(&sk->sk_drops);
6aef70a8
ED
1632 UDP_INC_STATS(sock_net(sk),
1633 UDP_MIB_INERRORS, is_udplite);
979402b1 1634 }
850cbadd 1635 kfree_skb(skb);
627d2d6b 1636 return err;
22911fc5 1637 }
db8dac20
DM
1638
1639 if (!peeked)
6aef70a8
ED
1640 UDP_INC_STATS(sock_net(sk),
1641 UDP_MIB_INDATAGRAMS, is_udplite);
db8dac20 1642
3b885787 1643 sock_recv_ts_and_drops(msg, sk, skb);
db8dac20
DM
1644
1645 /* Copy the address. */
c482c568 1646 if (sin) {
db8dac20
DM
1647 sin->sin_family = AF_INET;
1648 sin->sin_port = udp_hdr(skb)->source;
1649 sin->sin_addr.s_addr = ip_hdr(skb)->saddr;
1650 memset(sin->sin_zero, 0, sizeof(sin->sin_zero));
bceaa902 1651 *addr_len = sizeof(*sin);
db8dac20
DM
1652 }
1653 if (inet->cmsg_flags)
ad959036 1654 ip_cmsg_recv_offset(msg, sk, skb, sizeof(struct udphdr), off);
db8dac20 1655
59c2cdae 1656 err = copied;
db8dac20
DM
1657 if (flags & MSG_TRUNC)
1658 err = ulen;
1659
850cbadd 1660 skb_consume_udp(sk, skb, peeking ? -err : err);
db8dac20
DM
1661 return err;
1662
1663csum_copy_err:
2276f58a
PA
1664 if (!__sk_queue_drop_skb(sk, &udp_sk(sk)->reader_queue, skb, flags,
1665 udp_skb_destructor)) {
6aef70a8
ED
1666 UDP_INC_STATS(sock_net(sk), UDP_MIB_CSUMERRORS, is_udplite);
1667 UDP_INC_STATS(sock_net(sk), UDP_MIB_INERRORS, is_udplite);
6a5dc9e5 1668 }
850cbadd 1669 kfree_skb(skb);
db8dac20 1670
beb39db5
ED
1671 /* starting over for a new packet, but check if we need to yield */
1672 cond_resched();
9cfaa8de 1673 msg->msg_flags &= ~MSG_TRUNC;
db8dac20
DM
1674 goto try_again;
1675}
1676
286c72de 1677int __udp_disconnect(struct sock *sk, int flags)
1da177e4
LT
1678{
1679 struct inet_sock *inet = inet_sk(sk);
1680 /*
1681 * 1003.1g - break association.
1682 */
e905a9ed 1683
1da177e4 1684 sk->sk_state = TCP_CLOSE;
c720c7e8
ED
1685 inet->inet_daddr = 0;
1686 inet->inet_dport = 0;
bdeab991 1687 sock_rps_reset_rxhash(sk);
1da177e4
LT
1688 sk->sk_bound_dev_if = 0;
1689 if (!(sk->sk_userlocks & SOCK_BINDADDR_LOCK))
1690 inet_reset_saddr(sk);
1691
1692 if (!(sk->sk_userlocks & SOCK_BINDPORT_LOCK)) {
1693 sk->sk_prot->unhash(sk);
c720c7e8 1694 inet->inet_sport = 0;
1da177e4
LT
1695 }
1696 sk_dst_reset(sk);
1697 return 0;
1698}
286c72de
ED
1699EXPORT_SYMBOL(__udp_disconnect);
1700
1701int udp_disconnect(struct sock *sk, int flags)
1702{
1703 lock_sock(sk);
1704 __udp_disconnect(sk, flags);
1705 release_sock(sk);
1706 return 0;
1707}
c482c568 1708EXPORT_SYMBOL(udp_disconnect);
1da177e4 1709
645ca708
ED
1710void udp_lib_unhash(struct sock *sk)
1711{
723b4610
ED
1712 if (sk_hashed(sk)) {
1713 struct udp_table *udptable = sk->sk_prot->h.udp_table;
512615b6
ED
1714 struct udp_hslot *hslot, *hslot2;
1715
1716 hslot = udp_hashslot(udptable, sock_net(sk),
1717 udp_sk(sk)->udp_port_hash);
1718 hslot2 = udp_hashslot2(udptable, udp_sk(sk)->udp_portaddr_hash);
645ca708 1719
723b4610 1720 spin_lock_bh(&hslot->lock);
e32ea7e7
CG
1721 if (rcu_access_pointer(sk->sk_reuseport_cb))
1722 reuseport_detach_sock(sk);
ca065d0c 1723 if (sk_del_node_init_rcu(sk)) {
fdcc8aa9 1724 hslot->count--;
c720c7e8 1725 inet_sk(sk)->inet_num = 0;
723b4610 1726 sock_prot_inuse_add(sock_net(sk), sk->sk_prot, -1);
512615b6
ED
1727
1728 spin_lock(&hslot2->lock);
ca065d0c 1729 hlist_del_init_rcu(&udp_sk(sk)->udp_portaddr_node);
512615b6
ED
1730 hslot2->count--;
1731 spin_unlock(&hslot2->lock);
723b4610
ED
1732 }
1733 spin_unlock_bh(&hslot->lock);
645ca708 1734 }
645ca708
ED
1735}
1736EXPORT_SYMBOL(udp_lib_unhash);
1737
719f8358
ED
1738/*
1739 * inet_rcv_saddr was changed, we must rehash secondary hash
1740 */
1741void udp_lib_rehash(struct sock *sk, u16 newhash)
1742{
1743 if (sk_hashed(sk)) {
1744 struct udp_table *udptable = sk->sk_prot->h.udp_table;
1745 struct udp_hslot *hslot, *hslot2, *nhslot2;
1746
1747 hslot2 = udp_hashslot2(udptable, udp_sk(sk)->udp_portaddr_hash);
1748 nhslot2 = udp_hashslot2(udptable, newhash);
1749 udp_sk(sk)->udp_portaddr_hash = newhash;
e32ea7e7
CG
1750
1751 if (hslot2 != nhslot2 ||
1752 rcu_access_pointer(sk->sk_reuseport_cb)) {
719f8358
ED
1753 hslot = udp_hashslot(udptable, sock_net(sk),
1754 udp_sk(sk)->udp_port_hash);
1755 /* we must lock primary chain too */
1756 spin_lock_bh(&hslot->lock);
e32ea7e7
CG
1757 if (rcu_access_pointer(sk->sk_reuseport_cb))
1758 reuseport_detach_sock(sk);
1759
1760 if (hslot2 != nhslot2) {
1761 spin_lock(&hslot2->lock);
ca065d0c 1762 hlist_del_init_rcu(&udp_sk(sk)->udp_portaddr_node);
e32ea7e7
CG
1763 hslot2->count--;
1764 spin_unlock(&hslot2->lock);
1765
1766 spin_lock(&nhslot2->lock);
ca065d0c 1767 hlist_add_head_rcu(&udp_sk(sk)->udp_portaddr_node,
e32ea7e7
CG
1768 &nhslot2->head);
1769 nhslot2->count++;
1770 spin_unlock(&nhslot2->lock);
1771 }
719f8358
ED
1772
1773 spin_unlock_bh(&hslot->lock);
1774 }
1775 }
1776}
1777EXPORT_SYMBOL(udp_lib_rehash);
1778
1779static void udp_v4_rehash(struct sock *sk)
1780{
1781 u16 new_hash = udp4_portaddr_hash(sock_net(sk),
1782 inet_sk(sk)->inet_rcv_saddr,
1783 inet_sk(sk)->inet_num);
1784 udp_lib_rehash(sk, new_hash);
1785}
1786
a3f96c47 1787static int __udp_queue_rcv_skb(struct sock *sk, struct sk_buff *skb)
93821778 1788{
fec5e652 1789 int rc;
766e9037 1790
005ec974 1791 if (inet_sk(sk)->inet_daddr) {
bdeab991 1792 sock_rps_save_rxhash(sk, skb);
005ec974 1793 sk_mark_napi_id(sk, skb);
2c8c56e1 1794 sk_incoming_cpu_update(sk);
e68b6e50
ED
1795 } else {
1796 sk_mark_napi_id_once(sk, skb);
005ec974 1797 }
fec5e652 1798
850cbadd 1799 rc = __udp_enqueue_schedule_skb(sk, skb);
766e9037
ED
1800 if (rc < 0) {
1801 int is_udplite = IS_UDPLITE(sk);
93821778 1802
93821778 1803 /* Note that an ENOMEM error is charged twice */
766e9037 1804 if (rc == -ENOMEM)
e61da9e2 1805 UDP_INC_STATS(sock_net(sk), UDP_MIB_RCVBUFERRORS,
02c22347 1806 is_udplite);
e61da9e2 1807 UDP_INC_STATS(sock_net(sk), UDP_MIB_INERRORS, is_udplite);
766e9037 1808 kfree_skb(skb);
296f7ea7 1809 trace_udp_fail_queue_rcv_skb(rc, sk);
766e9037 1810 return -1;
93821778
HX
1811 }
1812
1813 return 0;
93821778
HX
1814}
1815
447167bf
ED
1816static struct static_key udp_encap_needed __read_mostly;
1817void udp_encap_enable(void)
1818{
7a34bcb8 1819 static_key_enable(&udp_encap_needed);
447167bf
ED
1820}
1821EXPORT_SYMBOL(udp_encap_enable);
1822
db8dac20
DM
1823/* returns:
1824 * -1: error
1825 * 0: success
1826 * >0: "udp encap" protocol resubmission
1827 *
1828 * Note that in the success and error cases, the skb is assumed to
1829 * have either been requeued or freed.
1830 */
a3f96c47 1831static int udp_queue_rcv_skb(struct sock *sk, struct sk_buff *skb)
db8dac20
DM
1832{
1833 struct udp_sock *up = udp_sk(sk);
db8dac20
DM
1834 int is_udplite = IS_UDPLITE(sk);
1835
1836 /*
1837 * Charge it to the socket, dropping if the queue is full.
1838 */
1839 if (!xfrm4_policy_check(sk, XFRM_POLICY_IN, skb))
1840 goto drop;
1841 nf_reset(skb);
1842
447167bf 1843 if (static_key_false(&udp_encap_needed) && up->encap_type) {
0ad92ad0
ED
1844 int (*encap_rcv)(struct sock *sk, struct sk_buff *skb);
1845
db8dac20
DM
1846 /*
1847 * This is an encapsulation socket so pass the skb to
1848 * the socket's udp_encap_rcv() hook. Otherwise, just
1849 * fall through and pass this up the UDP socket.
1850 * up->encap_rcv() returns the following value:
1851 * =0 if skb was successfully passed to the encap
1852 * handler or was discarded by it.
1853 * >0 if skb should be passed on to UDP.
1854 * <0 if skb should be resubmitted as proto -N
1855 */
1856
1857 /* if we're overly short, let UDP handle it */
6aa7de05 1858 encap_rcv = READ_ONCE(up->encap_rcv);
e5aed006 1859 if (encap_rcv) {
db8dac20
DM
1860 int ret;
1861
0a80966b
TH
1862 /* Verify checksum before giving to encap */
1863 if (udp_lib_checksum_complete(skb))
1864 goto csum_error;
1865
0ad92ad0 1866 ret = encap_rcv(sk, skb);
db8dac20 1867 if (ret <= 0) {
02c22347
ED
1868 __UDP_INC_STATS(sock_net(sk),
1869 UDP_MIB_INDATAGRAMS,
1870 is_udplite);
db8dac20
DM
1871 return -ret;
1872 }
1873 }
1874
1875 /* FALLTHROUGH -- it's a UDP Packet */
1876 }
1877
1878 /*
1879 * UDP-Lite specific tests, ignored on UDP sockets
1880 */
1881 if ((is_udplite & UDPLITE_RECV_CC) && UDP_SKB_CB(skb)->partial_cov) {
1882
1883 /*
1884 * MIB statistics other than incrementing the error count are
1885 * disabled for the following two types of errors: these depend
1886 * on the application settings, not on the functioning of the
1887 * protocol stack as such.
1888 *
1889 * RFC 3828 here recommends (sec 3.3): "There should also be a
1890 * way ... to ... at least let the receiving application block
1891 * delivery of packets with coverage values less than a value
1892 * provided by the application."
1893 */
1894 if (up->pcrlen == 0) { /* full coverage was set */
ba7a46f1
JP
1895 net_dbg_ratelimited("UDPLite: partial coverage %d while full coverage %d requested\n",
1896 UDP_SKB_CB(skb)->cscov, skb->len);
db8dac20
DM
1897 goto drop;
1898 }
1899 /* The next case involves violating the min. coverage requested
1900 * by the receiver. This is subtle: if receiver wants x and x is
1901 * greater than the buffersize/MTU then receiver will complain
1902 * that it wants x while sender emits packets of smaller size y.
1903 * Therefore the above ...()->partial_cov statement is essential.
1904 */
1905 if (UDP_SKB_CB(skb)->cscov < up->pcrlen) {
ba7a46f1
JP
1906 net_dbg_ratelimited("UDPLite: coverage %d too small, need min %d\n",
1907 UDP_SKB_CB(skb)->cscov, up->pcrlen);
db8dac20
DM
1908 goto drop;
1909 }
1910 }
1911
dd99e425 1912 prefetch(&sk->sk_rmem_alloc);
ce25d66a
ED
1913 if (rcu_access_pointer(sk->sk_filter) &&
1914 udp_lib_checksum_complete(skb))
e6afc8ac 1915 goto csum_error;
ce25d66a 1916
ba66bbe5 1917 if (sk_filter_trim_cap(sk, skb, sizeof(struct udphdr)))
a6127697 1918 goto drop;
db8dac20 1919
e6afc8ac 1920 udp_csum_pull_header(skb);
db8dac20 1921
fbf8866d 1922 ipv4_pktinfo_prepare(sk, skb);
850cbadd 1923 return __udp_queue_rcv_skb(sk, skb);
db8dac20 1924
6a5dc9e5 1925csum_error:
02c22347 1926 __UDP_INC_STATS(sock_net(sk), UDP_MIB_CSUMERRORS, is_udplite);
db8dac20 1927drop:
02c22347 1928 __UDP_INC_STATS(sock_net(sk), UDP_MIB_INERRORS, is_udplite);
8edf19c2 1929 atomic_inc(&sk->sk_drops);
db8dac20
DM
1930 kfree_skb(skb);
1931 return -1;
1932}
1933
97502231 1934/* For TCP sockets, sk_rx_dst is protected by socket lock
e47eb5df 1935 * For UDP, we use xchg() to guard against concurrent changes.
97502231 1936 */
64f0f5d1 1937bool udp_sk_rx_dst_set(struct sock *sk, struct dst_entry *dst)
421b3885 1938{
97502231
ED
1939 struct dst_entry *old;
1940
d24406c8
WW
1941 if (dst_hold_safe(dst)) {
1942 old = xchg(&sk->sk_rx_dst, dst);
1943 dst_release(old);
64f0f5d1 1944 return old != dst;
d24406c8 1945 }
64f0f5d1 1946 return false;
421b3885 1947}
c9f2c1ae 1948EXPORT_SYMBOL(udp_sk_rx_dst_set);
421b3885 1949
db8dac20
DM
1950/*
1951 * Multicasts and broadcasts go to each listener.
1952 *
1240d137 1953 * Note: called only from the BH handler context.
db8dac20 1954 */
e3163493 1955static int __udp4_lib_mcast_deliver(struct net *net, struct sk_buff *skb,
db8dac20
DM
1956 struct udphdr *uh,
1957 __be32 saddr, __be32 daddr,
36cbb245
RJ
1958 struct udp_table *udptable,
1959 int proto)
db8dac20 1960{
ca065d0c 1961 struct sock *sk, *first = NULL;
5cf3d461
DH
1962 unsigned short hnum = ntohs(uh->dest);
1963 struct udp_hslot *hslot = udp_hashslot(udptable, net, hnum);
2dc41cff 1964 unsigned int hash2 = 0, hash2_any = 0, use_hash2 = (hslot->count > 10);
ca065d0c
ED
1965 unsigned int offset = offsetof(typeof(*sk), sk_node);
1966 int dif = skb->dev->ifindex;
fb74c277 1967 int sdif = inet_sdif(skb);
ca065d0c
ED
1968 struct hlist_node *node;
1969 struct sk_buff *nskb;
2dc41cff
DH
1970
1971 if (use_hash2) {
1972 hash2_any = udp4_portaddr_hash(net, htonl(INADDR_ANY), hnum) &
73e2d5e3
PN
1973 udptable->mask;
1974 hash2 = udp4_portaddr_hash(net, daddr, hnum) & udptable->mask;
2dc41cff 1975start_lookup:
73e2d5e3 1976 hslot = &udptable->hash2[hash2];
2dc41cff
DH
1977 offset = offsetof(typeof(*sk), __sk_common.skc_portaddr_node);
1978 }
db8dac20 1979
ca065d0c
ED
1980 sk_for_each_entry_offset_rcu(sk, node, &hslot->head, offset) {
1981 if (!__udp_is_mcast_sock(net, sk, uh->dest, daddr,
fb74c277 1982 uh->source, saddr, dif, sdif, hnum))
ca065d0c
ED
1983 continue;
1984
1985 if (!first) {
1986 first = sk;
1987 continue;
1240d137 1988 }
ca065d0c 1989 nskb = skb_clone(skb, GFP_ATOMIC);
1240d137 1990
ca065d0c
ED
1991 if (unlikely(!nskb)) {
1992 atomic_inc(&sk->sk_drops);
02c22347
ED
1993 __UDP_INC_STATS(net, UDP_MIB_RCVBUFERRORS,
1994 IS_UDPLITE(sk));
1995 __UDP_INC_STATS(net, UDP_MIB_INERRORS,
1996 IS_UDPLITE(sk));
ca065d0c
ED
1997 continue;
1998 }
1999 if (udp_queue_rcv_skb(sk, nskb) > 0)
2000 consume_skb(nskb);
2001 }
1240d137 2002
2dc41cff
DH
2003 /* Also lookup *:port if we are using hash2 and haven't done so yet. */
2004 if (use_hash2 && hash2 != hash2_any) {
2005 hash2 = hash2_any;
2006 goto start_lookup;
2007 }
2008
ca065d0c
ED
2009 if (first) {
2010 if (udp_queue_rcv_skb(first, skb) > 0)
2011 consume_skb(skb);
1240d137 2012 } else {
ca065d0c 2013 kfree_skb(skb);
02c22347
ED
2014 __UDP_INC_STATS(net, UDP_MIB_IGNOREDMULTI,
2015 proto == IPPROTO_UDPLITE);
1240d137 2016 }
db8dac20
DM
2017 return 0;
2018}
2019
2020/* Initialize UDP checksum. If exited with zero value (success),
2021 * CHECKSUM_UNNECESSARY means, that no more checks are required.
2022 * Otherwise, csum completion requires chacksumming packet body,
2023 * including udp header and folding it to skb->csum.
2024 */
2025static inline int udp4_csum_init(struct sk_buff *skb, struct udphdr *uh,
2026 int proto)
2027{
db8dac20
DM
2028 int err;
2029
2030 UDP_SKB_CB(skb)->partial_cov = 0;
2031 UDP_SKB_CB(skb)->cscov = skb->len;
2032
2033 if (proto == IPPROTO_UDPLITE) {
2034 err = udplite_checksum_init(skb, uh);
2035 if (err)
2036 return err;
21cb125b
AK
2037
2038 if (UDP_SKB_CB(skb)->partial_cov) {
2039 skb->csum = inet_compute_pseudo(skb, proto);
2040 return 0;
2041 }
db8dac20
DM
2042 }
2043
b46d9f62
HFS
2044 /* Note, we are only interested in != 0 or == 0, thus the
2045 * force to int.
2046 */
2047 return (__force int)skb_checksum_init_zero_check(skb, proto, uh->check,
2048 inet_compute_pseudo);
db8dac20
DM
2049}
2050
2051/*
2052 * All we need to do is get the socket, and then do a checksum.
2053 */
2054
645ca708 2055int __udp4_lib_rcv(struct sk_buff *skb, struct udp_table *udptable,
db8dac20
DM
2056 int proto)
2057{
2058 struct sock *sk;
7b5e56f9 2059 struct udphdr *uh;
db8dac20 2060 unsigned short ulen;
adf30907 2061 struct rtable *rt = skb_rtable(skb);
2783ef23 2062 __be32 saddr, daddr;
0283328e 2063 struct net *net = dev_net(skb->dev);
db8dac20
DM
2064
2065 /*
2066 * Validate the packet.
2067 */
2068 if (!pskb_may_pull(skb, sizeof(struct udphdr)))
2069 goto drop; /* No space for header. */
2070
7b5e56f9 2071 uh = udp_hdr(skb);
db8dac20 2072 ulen = ntohs(uh->len);
ccc2d97c
BM
2073 saddr = ip_hdr(skb)->saddr;
2074 daddr = ip_hdr(skb)->daddr;
2075
db8dac20
DM
2076 if (ulen > skb->len)
2077 goto short_packet;
2078
2079 if (proto == IPPROTO_UDP) {
2080 /* UDP validates ulen. */
2081 if (ulen < sizeof(*uh) || pskb_trim_rcsum(skb, ulen))
2082 goto short_packet;
2083 uh = udp_hdr(skb);
2084 }
2085
2086 if (udp4_csum_init(skb, uh, proto))
2087 goto csum_error;
2088
8afdd99a
ED
2089 sk = skb_steal_sock(skb);
2090 if (sk) {
97502231 2091 struct dst_entry *dst = skb_dst(skb);
421b3885 2092 int ret;
421b3885 2093
97502231
ED
2094 if (unlikely(sk->sk_rx_dst != dst))
2095 udp_sk_rx_dst_set(sk, dst);
db8dac20 2096
421b3885 2097 ret = udp_queue_rcv_skb(sk, skb);
8afdd99a 2098 sock_put(sk);
421b3885
SB
2099 /* a return value > 0 means to resubmit the input, but
2100 * it wants the return to be -protocol, or 0
2101 */
2102 if (ret > 0)
2103 return -ret;
2104 return 0;
421b3885 2105 }
db8dac20 2106
c18450a5
FF
2107 if (rt->rt_flags & (RTCF_BROADCAST|RTCF_MULTICAST))
2108 return __udp4_lib_mcast_deliver(net, skb, uh,
36cbb245 2109 saddr, daddr, udptable, proto);
c18450a5
FF
2110
2111 sk = __udp4_lib_lookup_skb(skb, uh->source, uh->dest, udptable);
00db4124 2112 if (sk) {
a5b50476
ET
2113 int ret;
2114
224d019c 2115 if (inet_get_convert_csum(sk) && uh->check && !IS_UDPLITE(sk))
2abb7cdc
TH
2116 skb_checksum_try_convert(skb, IPPROTO_UDP, uh->check,
2117 inet_compute_pseudo);
2118
a5b50476 2119 ret = udp_queue_rcv_skb(sk, skb);
db8dac20
DM
2120
2121 /* a return value > 0 means to resubmit the input, but
2122 * it wants the return to be -protocol, or 0
2123 */
2124 if (ret > 0)
2125 return -ret;
2126 return 0;
2127 }
2128
2129 if (!xfrm4_policy_check(NULL, XFRM_POLICY_IN, skb))
2130 goto drop;
2131 nf_reset(skb);
2132
2133 /* No socket. Drop packet silently, if checksum is wrong */
2134 if (udp_lib_checksum_complete(skb))
2135 goto csum_error;
2136
02c22347 2137 __UDP_INC_STATS(net, UDP_MIB_NOPORTS, proto == IPPROTO_UDPLITE);
db8dac20
DM
2138 icmp_send(skb, ICMP_DEST_UNREACH, ICMP_PORT_UNREACH, 0);
2139
2140 /*
2141 * Hmm. We got an UDP packet to a port to which we
2142 * don't wanna listen. Ignore it.
2143 */
2144 kfree_skb(skb);
2145 return 0;
2146
2147short_packet:
ba7a46f1
JP
2148 net_dbg_ratelimited("UDP%s: short packet: From %pI4:%u %d/%d to %pI4:%u\n",
2149 proto == IPPROTO_UDPLITE ? "Lite" : "",
2150 &saddr, ntohs(uh->source),
2151 ulen, skb->len,
2152 &daddr, ntohs(uh->dest));
db8dac20
DM
2153 goto drop;
2154
2155csum_error:
2156 /*
2157 * RFC1122: OK. Discards the bad packet silently (as far as
2158 * the network is concerned, anyway) as per 4.1.3.4 (MUST).
2159 */
ba7a46f1
JP
2160 net_dbg_ratelimited("UDP%s: bad checksum. From %pI4:%u to %pI4:%u ulen %d\n",
2161 proto == IPPROTO_UDPLITE ? "Lite" : "",
2162 &saddr, ntohs(uh->source), &daddr, ntohs(uh->dest),
2163 ulen);
02c22347 2164 __UDP_INC_STATS(net, UDP_MIB_CSUMERRORS, proto == IPPROTO_UDPLITE);
db8dac20 2165drop:
02c22347 2166 __UDP_INC_STATS(net, UDP_MIB_INERRORS, proto == IPPROTO_UDPLITE);
db8dac20
DM
2167 kfree_skb(skb);
2168 return 0;
2169}
2170
421b3885
SB
2171/* We can only early demux multicast if there is a single matching socket.
2172 * If more than one socket found returns NULL
2173 */
2174static struct sock *__udp4_lib_mcast_demux_lookup(struct net *net,
2175 __be16 loc_port, __be32 loc_addr,
2176 __be16 rmt_port, __be32 rmt_addr,
fb74c277 2177 int dif, int sdif)
421b3885
SB
2178{
2179 struct sock *sk, *result;
421b3885 2180 unsigned short hnum = ntohs(loc_port);
ca065d0c 2181 unsigned int slot = udp_hashfn(net, hnum, udp_table.mask);
421b3885
SB
2182 struct udp_hslot *hslot = &udp_table.hash[slot];
2183
63c6f81c
ED
2184 /* Do not bother scanning a too big list */
2185 if (hslot->count > 10)
2186 return NULL;
2187
421b3885 2188 result = NULL;
ca065d0c
ED
2189 sk_for_each_rcu(sk, &hslot->head) {
2190 if (__udp_is_mcast_sock(net, sk, loc_port, loc_addr,
fb74c277 2191 rmt_port, rmt_addr, dif, sdif, hnum)) {
ca065d0c
ED
2192 if (result)
2193 return NULL;
421b3885 2194 result = sk;
421b3885
SB
2195 }
2196 }
ca065d0c 2197
421b3885
SB
2198 return result;
2199}
2200
2201/* For unicast we should only early demux connected sockets or we can
2202 * break forwarding setups. The chains here can be long so only check
2203 * if the first socket is an exact match and if not move on.
2204 */
2205static struct sock *__udp4_lib_demux_lookup(struct net *net,
2206 __be16 loc_port, __be32 loc_addr,
2207 __be16 rmt_port, __be32 rmt_addr,
3fa6f616 2208 int dif, int sdif)
421b3885 2209{
421b3885
SB
2210 unsigned short hnum = ntohs(loc_port);
2211 unsigned int hash2 = udp4_portaddr_hash(net, loc_addr, hnum);
2212 unsigned int slot2 = hash2 & udp_table.mask;
2213 struct udp_hslot *hslot2 = &udp_table.hash2[slot2];
c7228317 2214 INET_ADDR_COOKIE(acookie, rmt_addr, loc_addr);
421b3885 2215 const __portpair ports = INET_COMBINED_PORTS(rmt_port, hnum);
ca065d0c 2216 struct sock *sk;
421b3885 2217
ca065d0c
ED
2218 udp_portaddr_for_each_entry_rcu(sk, &hslot2->head) {
2219 if (INET_MATCH(sk, net, acookie, rmt_addr,
3fa6f616 2220 loc_addr, ports, dif, sdif))
ca065d0c 2221 return sk;
421b3885
SB
2222 /* Only check first socket in chain */
2223 break;
2224 }
ca065d0c 2225 return NULL;
421b3885
SB
2226}
2227
7487449c 2228int udp_v4_early_demux(struct sk_buff *skb)
421b3885 2229{
610438b7 2230 struct net *net = dev_net(skb->dev);
bc044e8d 2231 struct in_device *in_dev = NULL;
610438b7
ED
2232 const struct iphdr *iph;
2233 const struct udphdr *uh;
ca065d0c 2234 struct sock *sk = NULL;
421b3885 2235 struct dst_entry *dst;
421b3885 2236 int dif = skb->dev->ifindex;
fb74c277 2237 int sdif = inet_sdif(skb);
6e540309 2238 int ours;
421b3885
SB
2239
2240 /* validate the packet */
2241 if (!pskb_may_pull(skb, skb_transport_offset(skb) + sizeof(struct udphdr)))
7487449c 2242 return 0;
421b3885 2243
610438b7
ED
2244 iph = ip_hdr(skb);
2245 uh = udp_hdr(skb);
2246
996b44fc 2247 if (skb->pkt_type == PACKET_MULTICAST) {
bc044e8d 2248 in_dev = __in_dev_get_rcu(skb->dev);
6e540309
SB
2249
2250 if (!in_dev)
7487449c 2251 return 0;
6e540309 2252
996b44fc
PA
2253 ours = ip_check_mc_rcu(in_dev, iph->daddr, iph->saddr,
2254 iph->protocol);
2255 if (!ours)
2256 return 0;
ad0ea198 2257
421b3885 2258 sk = __udp4_lib_mcast_demux_lookup(net, uh->dest, iph->daddr,
fb74c277
DA
2259 uh->source, iph->saddr,
2260 dif, sdif);
6e540309 2261 } else if (skb->pkt_type == PACKET_HOST) {
421b3885 2262 sk = __udp4_lib_demux_lookup(net, uh->dest, iph->daddr,
3fa6f616 2263 uh->source, iph->saddr, dif, sdif);
6e540309 2264 }
421b3885 2265
41c6d650 2266 if (!sk || !refcount_inc_not_zero(&sk->sk_refcnt))
7487449c 2267 return 0;
421b3885
SB
2268
2269 skb->sk = sk;
82eabd9e 2270 skb->destructor = sock_efree;
10e2eb87 2271 dst = READ_ONCE(sk->sk_rx_dst);
421b3885
SB
2272
2273 if (dst)
2274 dst = dst_check(dst, 0);
10e2eb87 2275 if (dst) {
bc044e8d
PA
2276 u32 itag = 0;
2277
d24406c8
WW
2278 /* set noref for now.
2279 * any place which wants to hold dst has to call
2280 * dst_hold_safe()
2281 */
2282 skb_dst_set_noref(skb, dst);
bc044e8d
PA
2283
2284 /* for unconnected multicast sockets we need to validate
2285 * the source on each packet
2286 */
2287 if (!inet_sk(sk)->inet_daddr && in_dev)
2288 return ip_mc_validate_source(skb, iph->daddr,
2289 iph->saddr, iph->tos,
2290 skb->dev, in_dev, &itag);
10e2eb87 2291 }
7487449c 2292 return 0;
421b3885
SB
2293}
2294
db8dac20
DM
2295int udp_rcv(struct sk_buff *skb)
2296{
645ca708 2297 return __udp4_lib_rcv(skb, &udp_table, IPPROTO_UDP);
db8dac20
DM
2298}
2299
7d06b2e0 2300void udp_destroy_sock(struct sock *sk)
db8dac20 2301{
44046a59 2302 struct udp_sock *up = udp_sk(sk);
8a74ad60 2303 bool slow = lock_sock_fast(sk);
db8dac20 2304 udp_flush_pending_frames(sk);
8a74ad60 2305 unlock_sock_fast(sk, slow);
44046a59
TP
2306 if (static_key_false(&udp_encap_needed) && up->encap_type) {
2307 void (*encap_destroy)(struct sock *sk);
6aa7de05 2308 encap_destroy = READ_ONCE(up->encap_destroy);
44046a59
TP
2309 if (encap_destroy)
2310 encap_destroy(sk);
2311 }
db8dac20
DM
2312}
2313
1da177e4
LT
2314/*
2315 * Socket option code for UDP
2316 */
4c0a6cb0 2317int udp_lib_setsockopt(struct sock *sk, int level, int optname,
b7058842 2318 char __user *optval, unsigned int optlen,
4c0a6cb0 2319 int (*push_pending_frames)(struct sock *))
1da177e4
LT
2320{
2321 struct udp_sock *up = udp_sk(sk);
1c19448c 2322 int val, valbool;
1da177e4 2323 int err = 0;
b2bf1e26 2324 int is_udplite = IS_UDPLITE(sk);
1da177e4 2325
c482c568 2326 if (optlen < sizeof(int))
1da177e4
LT
2327 return -EINVAL;
2328
2329 if (get_user(val, (int __user *)optval))
2330 return -EFAULT;
2331
1c19448c
TH
2332 valbool = val ? 1 : 0;
2333
6516c655 2334 switch (optname) {
1da177e4
LT
2335 case UDP_CORK:
2336 if (val != 0) {
2337 up->corkflag = 1;
2338 } else {
2339 up->corkflag = 0;
2340 lock_sock(sk);
4243cdc2 2341 push_pending_frames(sk);
1da177e4
LT
2342 release_sock(sk);
2343 }
2344 break;
e905a9ed 2345
1da177e4
LT
2346 case UDP_ENCAP:
2347 switch (val) {
2348 case 0:
2349 case UDP_ENCAP_ESPINUDP:
2350 case UDP_ENCAP_ESPINUDP_NON_IKE:
067b207b
JC
2351 up->encap_rcv = xfrm4_udp_encap_rcv;
2352 /* FALLTHROUGH */
342f0234 2353 case UDP_ENCAP_L2TPINUDP:
1da177e4 2354 up->encap_type = val;
447167bf 2355 udp_encap_enable();
1da177e4
LT
2356 break;
2357 default:
2358 err = -ENOPROTOOPT;
2359 break;
2360 }
2361 break;
2362
1c19448c
TH
2363 case UDP_NO_CHECK6_TX:
2364 up->no_check6_tx = valbool;
2365 break;
2366
2367 case UDP_NO_CHECK6_RX:
2368 up->no_check6_rx = valbool;
2369 break;
2370
ba4e58ec
GR
2371 /*
2372 * UDP-Lite's partial checksum coverage (RFC 3828).
2373 */
2374 /* The sender sets actual checksum coverage length via this option.
2375 * The case coverage > packet length is handled by send module. */
2376 case UDPLITE_SEND_CSCOV:
b2bf1e26 2377 if (!is_udplite) /* Disable the option on UDP sockets */
ba4e58ec
GR
2378 return -ENOPROTOOPT;
2379 if (val != 0 && val < 8) /* Illegal coverage: use default (8) */
2380 val = 8;
4be929be
AD
2381 else if (val > USHRT_MAX)
2382 val = USHRT_MAX;
ba4e58ec
GR
2383 up->pcslen = val;
2384 up->pcflag |= UDPLITE_SEND_CC;
2385 break;
2386
e905a9ed
YH
2387 /* The receiver specifies a minimum checksum coverage value. To make
2388 * sense, this should be set to at least 8 (as done below). If zero is
ba4e58ec
GR
2389 * used, this again means full checksum coverage. */
2390 case UDPLITE_RECV_CSCOV:
b2bf1e26 2391 if (!is_udplite) /* Disable the option on UDP sockets */
ba4e58ec
GR
2392 return -ENOPROTOOPT;
2393 if (val != 0 && val < 8) /* Avoid silly minimal values. */
2394 val = 8;
4be929be
AD
2395 else if (val > USHRT_MAX)
2396 val = USHRT_MAX;
ba4e58ec
GR
2397 up->pcrlen = val;
2398 up->pcflag |= UDPLITE_RECV_CC;
2399 break;
2400
1da177e4
LT
2401 default:
2402 err = -ENOPROTOOPT;
2403 break;
6516c655 2404 }
1da177e4
LT
2405
2406 return err;
2407}
c482c568 2408EXPORT_SYMBOL(udp_lib_setsockopt);
1da177e4 2409
db8dac20 2410int udp_setsockopt(struct sock *sk, int level, int optname,
b7058842 2411 char __user *optval, unsigned int optlen)
db8dac20
DM
2412{
2413 if (level == SOL_UDP || level == SOL_UDPLITE)
2414 return udp_lib_setsockopt(sk, level, optname, optval, optlen,
2415 udp_push_pending_frames);
2416 return ip_setsockopt(sk, level, optname, optval, optlen);
2417}
2418
2419#ifdef CONFIG_COMPAT
2420int compat_udp_setsockopt(struct sock *sk, int level, int optname,
b7058842 2421 char __user *optval, unsigned int optlen)
db8dac20
DM
2422{
2423 if (level == SOL_UDP || level == SOL_UDPLITE)
2424 return udp_lib_setsockopt(sk, level, optname, optval, optlen,
2425 udp_push_pending_frames);
2426 return compat_ip_setsockopt(sk, level, optname, optval, optlen);
2427}
2428#endif
2429
4c0a6cb0
GR
2430int udp_lib_getsockopt(struct sock *sk, int level, int optname,
2431 char __user *optval, int __user *optlen)
1da177e4
LT
2432{
2433 struct udp_sock *up = udp_sk(sk);
2434 int val, len;
2435
c482c568 2436 if (get_user(len, optlen))
1da177e4
LT
2437 return -EFAULT;
2438
2439 len = min_t(unsigned int, len, sizeof(int));
e905a9ed 2440
6516c655 2441 if (len < 0)
1da177e4
LT
2442 return -EINVAL;
2443
6516c655 2444 switch (optname) {
1da177e4
LT
2445 case UDP_CORK:
2446 val = up->corkflag;
2447 break;
2448
2449 case UDP_ENCAP:
2450 val = up->encap_type;
2451 break;
2452
1c19448c
TH
2453 case UDP_NO_CHECK6_TX:
2454 val = up->no_check6_tx;
2455 break;
2456
2457 case UDP_NO_CHECK6_RX:
2458 val = up->no_check6_rx;
2459 break;
2460
ba4e58ec
GR
2461 /* The following two cannot be changed on UDP sockets, the return is
2462 * always 0 (which corresponds to the full checksum coverage of UDP). */
2463 case UDPLITE_SEND_CSCOV:
2464 val = up->pcslen;
2465 break;
2466
2467 case UDPLITE_RECV_CSCOV:
2468 val = up->pcrlen;
2469 break;
2470
1da177e4
LT
2471 default:
2472 return -ENOPROTOOPT;
6516c655 2473 }
1da177e4 2474
6516c655 2475 if (put_user(len, optlen))
e905a9ed 2476 return -EFAULT;
c482c568 2477 if (copy_to_user(optval, &val, len))
1da177e4 2478 return -EFAULT;
e905a9ed 2479 return 0;
1da177e4 2480}
c482c568 2481EXPORT_SYMBOL(udp_lib_getsockopt);
1da177e4 2482
db8dac20
DM
2483int udp_getsockopt(struct sock *sk, int level, int optname,
2484 char __user *optval, int __user *optlen)
2485{
2486 if (level == SOL_UDP || level == SOL_UDPLITE)
2487 return udp_lib_getsockopt(sk, level, optname, optval, optlen);
2488 return ip_getsockopt(sk, level, optname, optval, optlen);
2489}
2490
2491#ifdef CONFIG_COMPAT
2492int compat_udp_getsockopt(struct sock *sk, int level, int optname,
2493 char __user *optval, int __user *optlen)
2494{
2495 if (level == SOL_UDP || level == SOL_UDPLITE)
2496 return udp_lib_getsockopt(sk, level, optname, optval, optlen);
2497 return compat_ip_getsockopt(sk, level, optname, optval, optlen);
2498}
2499#endif
1da177e4
LT
2500/**
2501 * udp_poll - wait for a UDP event.
2502 * @file - file struct
2503 * @sock - socket
2504 * @wait - poll table
2505 *
e905a9ed 2506 * This is same as datagram poll, except for the special case of
1da177e4
LT
2507 * blocking sockets. If application is using a blocking fd
2508 * and a packet with checksum error is in the queue;
2509 * then it could get return from select indicating data available
2510 * but then block when reading it. Add special case code
2511 * to work around these arguably broken applications.
2512 */
2513unsigned int udp_poll(struct file *file, struct socket *sock, poll_table *wait)
2514{
2515 unsigned int mask = datagram_poll(file, sock, wait);
2516 struct sock *sk = sock->sk;
ba4e58ec 2517
2276f58a
PA
2518 if (!skb_queue_empty(&udp_sk(sk)->reader_queue))
2519 mask |= POLLIN | POLLRDNORM;
2520
c3f1dbaf
DM
2521 sock_rps_record_flow(sk);
2522
1da177e4 2523 /* Check for false positives due to checksum errors */
85584672 2524 if ((mask & POLLRDNORM) && !(file->f_flags & O_NONBLOCK) &&
e83c6744 2525 !(sk->sk_shutdown & RCV_SHUTDOWN) && first_packet_length(sk) == -1)
85584672 2526 mask &= ~(POLLIN | POLLRDNORM);
1da177e4
LT
2527
2528 return mask;
e905a9ed 2529
1da177e4 2530}
c482c568 2531EXPORT_SYMBOL(udp_poll);
1da177e4 2532
5d77dca8
DA
2533int udp_abort(struct sock *sk, int err)
2534{
2535 lock_sock(sk);
2536
2537 sk->sk_err = err;
2538 sk->sk_error_report(sk);
286c72de 2539 __udp_disconnect(sk, 0);
5d77dca8
DA
2540
2541 release_sock(sk);
2542
2543 return 0;
2544}
2545EXPORT_SYMBOL_GPL(udp_abort);
2546
db8dac20
DM
2547struct proto udp_prot = {
2548 .name = "UDP",
2549 .owner = THIS_MODULE,
2550 .close = udp_lib_close,
2551 .connect = ip4_datagram_connect,
2552 .disconnect = udp_disconnect,
2553 .ioctl = udp_ioctl,
850cbadd 2554 .init = udp_init_sock,
db8dac20
DM
2555 .destroy = udp_destroy_sock,
2556 .setsockopt = udp_setsockopt,
2557 .getsockopt = udp_getsockopt,
2558 .sendmsg = udp_sendmsg,
2559 .recvmsg = udp_recvmsg,
2560 .sendpage = udp_sendpage,
8141ed9f 2561 .release_cb = ip4_datagram_release_cb,
db8dac20
DM
2562 .hash = udp_lib_hash,
2563 .unhash = udp_lib_unhash,
719f8358 2564 .rehash = udp_v4_rehash,
db8dac20
DM
2565 .get_port = udp_v4_get_port,
2566 .memory_allocated = &udp_memory_allocated,
2567 .sysctl_mem = sysctl_udp_mem,
2568 .sysctl_wmem = &sysctl_udp_wmem_min,
2569 .sysctl_rmem = &sysctl_udp_rmem_min,
2570 .obj_size = sizeof(struct udp_sock),
645ca708 2571 .h.udp_table = &udp_table,
db8dac20
DM
2572#ifdef CONFIG_COMPAT
2573 .compat_setsockopt = compat_udp_setsockopt,
2574 .compat_getsockopt = compat_udp_getsockopt,
2575#endif
5d77dca8 2576 .diag_destroy = udp_abort,
db8dac20 2577};
c482c568 2578EXPORT_SYMBOL(udp_prot);
1da177e4
LT
2579
2580/* ------------------------------------------------------------------------ */
2581#ifdef CONFIG_PROC_FS
2582
645ca708 2583static struct sock *udp_get_first(struct seq_file *seq, int start)
1da177e4
LT
2584{
2585 struct sock *sk;
2586 struct udp_iter_state *state = seq->private;
6f191efe 2587 struct net *net = seq_file_net(seq);
1da177e4 2588
f86dcc5a
ED
2589 for (state->bucket = start; state->bucket <= state->udp_table->mask;
2590 ++state->bucket) {
645ca708 2591 struct udp_hslot *hslot = &state->udp_table->hash[state->bucket];
f86dcc5a 2592
ca065d0c 2593 if (hlist_empty(&hslot->head))
f86dcc5a
ED
2594 continue;
2595
645ca708 2596 spin_lock_bh(&hslot->lock);
ca065d0c 2597 sk_for_each(sk, &hslot->head) {
878628fb 2598 if (!net_eq(sock_net(sk), net))
a91275ef 2599 continue;
1da177e4
LT
2600 if (sk->sk_family == state->family)
2601 goto found;
2602 }
645ca708 2603 spin_unlock_bh(&hslot->lock);
1da177e4
LT
2604 }
2605 sk = NULL;
2606found:
2607 return sk;
2608}
2609
2610static struct sock *udp_get_next(struct seq_file *seq, struct sock *sk)
2611{
2612 struct udp_iter_state *state = seq->private;
6f191efe 2613 struct net *net = seq_file_net(seq);
1da177e4
LT
2614
2615 do {
ca065d0c 2616 sk = sk_next(sk);
878628fb 2617 } while (sk && (!net_eq(sock_net(sk), net) || sk->sk_family != state->family));
1da177e4 2618
645ca708 2619 if (!sk) {
f86dcc5a 2620 if (state->bucket <= state->udp_table->mask)
30842f29 2621 spin_unlock_bh(&state->udp_table->hash[state->bucket].lock);
645ca708 2622 return udp_get_first(seq, state->bucket + 1);
1da177e4
LT
2623 }
2624 return sk;
2625}
2626
2627static struct sock *udp_get_idx(struct seq_file *seq, loff_t pos)
2628{
645ca708 2629 struct sock *sk = udp_get_first(seq, 0);
1da177e4
LT
2630
2631 if (sk)
6516c655 2632 while (pos && (sk = udp_get_next(seq, sk)) != NULL)
1da177e4
LT
2633 --pos;
2634 return pos ? NULL : sk;
2635}
2636
2637static void *udp_seq_start(struct seq_file *seq, loff_t *pos)
2638{
30842f29 2639 struct udp_iter_state *state = seq->private;
f86dcc5a 2640 state->bucket = MAX_UDP_PORTS;
30842f29 2641
b50660f1 2642 return *pos ? udp_get_idx(seq, *pos-1) : SEQ_START_TOKEN;
1da177e4
LT
2643}
2644
2645static void *udp_seq_next(struct seq_file *seq, void *v, loff_t *pos)
2646{
2647 struct sock *sk;
2648
b50660f1 2649 if (v == SEQ_START_TOKEN)
1da177e4
LT
2650 sk = udp_get_idx(seq, 0);
2651 else
2652 sk = udp_get_next(seq, v);
2653
2654 ++*pos;
2655 return sk;
2656}
2657
2658static void udp_seq_stop(struct seq_file *seq, void *v)
2659{
645ca708
ED
2660 struct udp_iter_state *state = seq->private;
2661
f86dcc5a 2662 if (state->bucket <= state->udp_table->mask)
645ca708 2663 spin_unlock_bh(&state->udp_table->hash[state->bucket].lock);
1da177e4
LT
2664}
2665
73cb88ec 2666int udp_seq_open(struct inode *inode, struct file *file)
1da177e4 2667{
d9dda78b 2668 struct udp_seq_afinfo *afinfo = PDE_DATA(inode);
a2be75c1
DL
2669 struct udp_iter_state *s;
2670 int err;
a91275ef 2671
a2be75c1
DL
2672 err = seq_open_net(inode, file, &afinfo->seq_ops,
2673 sizeof(struct udp_iter_state));
2674 if (err < 0)
2675 return err;
a91275ef 2676
a2be75c1 2677 s = ((struct seq_file *)file->private_data)->private;
1da177e4 2678 s->family = afinfo->family;
645ca708 2679 s->udp_table = afinfo->udp_table;
a2be75c1 2680 return err;
a91275ef 2681}
73cb88ec 2682EXPORT_SYMBOL(udp_seq_open);
a91275ef 2683
1da177e4 2684/* ------------------------------------------------------------------------ */
0c96d8c5 2685int udp_proc_register(struct net *net, struct udp_seq_afinfo *afinfo)
1da177e4
LT
2686{
2687 struct proc_dir_entry *p;
2688 int rc = 0;
2689
dda61925
DL
2690 afinfo->seq_ops.start = udp_seq_start;
2691 afinfo->seq_ops.next = udp_seq_next;
2692 afinfo->seq_ops.stop = udp_seq_stop;
2693
84841c3c 2694 p = proc_create_data(afinfo->name, S_IRUGO, net->proc_net,
73cb88ec 2695 afinfo->seq_fops, afinfo);
84841c3c 2696 if (!p)
1da177e4
LT
2697 rc = -ENOMEM;
2698 return rc;
2699}
c482c568 2700EXPORT_SYMBOL(udp_proc_register);
1da177e4 2701
0c96d8c5 2702void udp_proc_unregister(struct net *net, struct udp_seq_afinfo *afinfo)
1da177e4 2703{
ece31ffd 2704 remove_proc_entry(afinfo->name, net->proc_net);
1da177e4 2705}
c482c568 2706EXPORT_SYMBOL(udp_proc_unregister);
db8dac20
DM
2707
2708/* ------------------------------------------------------------------------ */
5e659e4c 2709static void udp4_format_sock(struct sock *sp, struct seq_file *f,
652586df 2710 int bucket)
db8dac20
DM
2711{
2712 struct inet_sock *inet = inet_sk(sp);
c720c7e8
ED
2713 __be32 dest = inet->inet_daddr;
2714 __be32 src = inet->inet_rcv_saddr;
2715 __u16 destp = ntohs(inet->inet_dport);
2716 __u16 srcp = ntohs(inet->inet_sport);
db8dac20 2717
f86dcc5a 2718 seq_printf(f, "%5d: %08X:%04X %08X:%04X"
652586df 2719 " %02X %08X:%08X %02X:%08lX %08X %5u %8d %lu %d %pK %d",
db8dac20 2720 bucket, src, srcp, dest, destp, sp->sk_state,
31e6d363
ED
2721 sk_wmem_alloc_get(sp),
2722 sk_rmem_alloc_get(sp),
a7cb5a49
EB
2723 0, 0L, 0,
2724 from_kuid_munged(seq_user_ns(f), sock_i_uid(sp)),
2725 0, sock_i_ino(sp),
41c6d650 2726 refcount_read(&sp->sk_refcnt), sp,
652586df 2727 atomic_read(&sp->sk_drops));
db8dac20
DM
2728}
2729
2730int udp4_seq_show(struct seq_file *seq, void *v)
2731{
652586df 2732 seq_setwidth(seq, 127);
db8dac20 2733 if (v == SEQ_START_TOKEN)
652586df 2734 seq_puts(seq, " sl local_address rem_address st tx_queue "
db8dac20 2735 "rx_queue tr tm->when retrnsmt uid timeout "
cb61cb9b 2736 "inode ref pointer drops");
db8dac20 2737 else {
db8dac20
DM
2738 struct udp_iter_state *state = seq->private;
2739
652586df 2740 udp4_format_sock(v, seq, state->bucket);
db8dac20 2741 }
652586df 2742 seq_pad(seq, '\n');
db8dac20
DM
2743 return 0;
2744}
2745
73cb88ec
AV
2746static const struct file_operations udp_afinfo_seq_fops = {
2747 .owner = THIS_MODULE,
2748 .open = udp_seq_open,
2749 .read = seq_read,
2750 .llseek = seq_lseek,
2751 .release = seq_release_net
2752};
2753
db8dac20 2754/* ------------------------------------------------------------------------ */
db8dac20 2755static struct udp_seq_afinfo udp4_seq_afinfo = {
db8dac20
DM
2756 .name = "udp",
2757 .family = AF_INET,
645ca708 2758 .udp_table = &udp_table,
73cb88ec 2759 .seq_fops = &udp_afinfo_seq_fops,
dda61925
DL
2760 .seq_ops = {
2761 .show = udp4_seq_show,
2762 },
db8dac20
DM
2763};
2764
2c8c1e72 2765static int __net_init udp4_proc_init_net(struct net *net)
15439feb
PE
2766{
2767 return udp_proc_register(net, &udp4_seq_afinfo);
2768}
2769
2c8c1e72 2770static void __net_exit udp4_proc_exit_net(struct net *net)
15439feb
PE
2771{
2772 udp_proc_unregister(net, &udp4_seq_afinfo);
2773}
2774
2775static struct pernet_operations udp4_net_ops = {
2776 .init = udp4_proc_init_net,
2777 .exit = udp4_proc_exit_net,
2778};
2779
db8dac20
DM
2780int __init udp4_proc_init(void)
2781{
15439feb 2782 return register_pernet_subsys(&udp4_net_ops);
db8dac20
DM
2783}
2784
2785void udp4_proc_exit(void)
2786{
15439feb 2787 unregister_pernet_subsys(&udp4_net_ops);
db8dac20 2788}
1da177e4
LT
2789#endif /* CONFIG_PROC_FS */
2790
f86dcc5a
ED
2791static __initdata unsigned long uhash_entries;
2792static int __init set_uhash_entries(char *str)
645ca708 2793{
413c27d8
EZ
2794 ssize_t ret;
2795
f86dcc5a
ED
2796 if (!str)
2797 return 0;
413c27d8
EZ
2798
2799 ret = kstrtoul(str, 0, &uhash_entries);
2800 if (ret)
2801 return 0;
2802
f86dcc5a
ED
2803 if (uhash_entries && uhash_entries < UDP_HTABLE_SIZE_MIN)
2804 uhash_entries = UDP_HTABLE_SIZE_MIN;
2805 return 1;
2806}
2807__setup("uhash_entries=", set_uhash_entries);
645ca708 2808
f86dcc5a
ED
2809void __init udp_table_init(struct udp_table *table, const char *name)
2810{
2811 unsigned int i;
2812
31fe62b9
TB
2813 table->hash = alloc_large_system_hash(name,
2814 2 * sizeof(struct udp_hslot),
2815 uhash_entries,
2816 21, /* one slot per 2 MB */
2817 0,
2818 &table->log,
2819 &table->mask,
2820 UDP_HTABLE_SIZE_MIN,
2821 64 * 1024);
2822
512615b6 2823 table->hash2 = table->hash + (table->mask + 1);
f86dcc5a 2824 for (i = 0; i <= table->mask; i++) {
ca065d0c 2825 INIT_HLIST_HEAD(&table->hash[i].head);
fdcc8aa9 2826 table->hash[i].count = 0;
645ca708
ED
2827 spin_lock_init(&table->hash[i].lock);
2828 }
512615b6 2829 for (i = 0; i <= table->mask; i++) {
ca065d0c 2830 INIT_HLIST_HEAD(&table->hash2[i].head);
512615b6
ED
2831 table->hash2[i].count = 0;
2832 spin_lock_init(&table->hash2[i].lock);
2833 }
645ca708
ED
2834}
2835
723b8e46
TH
2836u32 udp_flow_hashrnd(void)
2837{
2838 static u32 hashrnd __read_mostly;
2839
2840 net_get_random_once(&hashrnd, sizeof(hashrnd));
2841
2842 return hashrnd;
2843}
2844EXPORT_SYMBOL(udp_flow_hashrnd);
2845
95766fff
HA
2846void __init udp_init(void)
2847{
f03d78db 2848 unsigned long limit;
4b272750 2849 unsigned int i;
95766fff 2850
f86dcc5a 2851 udp_table_init(&udp_table, "UDP");
f03d78db 2852 limit = nr_free_buffer_pages() / 8;
95766fff
HA
2853 limit = max(limit, 128UL);
2854 sysctl_udp_mem[0] = limit / 4 * 3;
2855 sysctl_udp_mem[1] = limit;
2856 sysctl_udp_mem[2] = sysctl_udp_mem[0] * 2;
2857
2858 sysctl_udp_rmem_min = SK_MEM_QUANTUM;
2859 sysctl_udp_wmem_min = SK_MEM_QUANTUM;
4b272750
ED
2860
2861 /* 16 spinlocks per cpu */
2862 udp_busylocks_log = ilog2(nr_cpu_ids) + 4;
2863 udp_busylocks = kmalloc(sizeof(spinlock_t) << udp_busylocks_log,
2864 GFP_KERNEL);
2865 if (!udp_busylocks)
2866 panic("UDP: failed to alloc udp_busylocks\n");
2867 for (i = 0; i < (1U << udp_busylocks_log); i++)
2868 spin_lock_init(udp_busylocks + i);
95766fff 2869}