netvm: allow the use of __GFP_MEMALLOC by specific sockets
[deliverable/linux.git] / include / net / sock.h
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 * Definitions for the AF_INET socket handler.
7 *
8 * Version: @(#)sock.h 1.0.4 05/13/93
9 *
02c30a84 10 * Authors: Ross Biro
1da177e4
LT
11 * Fred N. van Kempen, <waltje@uWalt.NL.Mugnet.ORG>
12 * Corey Minyard <wf-rch!minyard@relay.EU.net>
13 * Florian La Roche <flla@stud.uni-sb.de>
14 *
15 * Fixes:
16 * Alan Cox : Volatiles in skbuff pointers. See
17 * skbuff comments. May be overdone,
18 * better to prove they can be removed
19 * than the reverse.
20 * Alan Cox : Added a zapped field for tcp to note
21 * a socket is reset and must stay shut up
22 * Alan Cox : New fields for options
23 * Pauline Middelink : identd support
24 * Alan Cox : Eliminate low level recv/recvfrom
25 * David S. Miller : New socket lookup architecture.
26 * Steve Whitehouse: Default routines for sock_ops
27 * Arnaldo C. Melo : removed net_pinfo, tp_pinfo and made
28 * protinfo be just a void pointer, as the
29 * protocol specific parts were moved to
30 * respective headers and ipv4/v6, etc now
31 * use private slabcaches for its socks
32 * Pedro Hortas : New flags field for socket options
33 *
34 *
35 * This program is free software; you can redistribute it and/or
36 * modify it under the terms of the GNU General Public License
37 * as published by the Free Software Foundation; either version
38 * 2 of the License, or (at your option) any later version.
39 */
40#ifndef _SOCK_H
41#define _SOCK_H
42
a6b7a407 43#include <linux/hardirq.h>
172589cc 44#include <linux/kernel.h>
1da177e4 45#include <linux/list.h>
88ab1932 46#include <linux/list_nulls.h>
1da177e4
LT
47#include <linux/timer.h>
48#include <linux/cache.h>
3f134619 49#include <linux/bitops.h>
a5b5bb9a 50#include <linux/lockdep.h>
1da177e4
LT
51#include <linux/netdevice.h>
52#include <linux/skbuff.h> /* struct sk_buff */
d7fe0f24 53#include <linux/mm.h>
1da177e4 54#include <linux/security.h>
5a0e3ad6 55#include <linux/slab.h>
c6e1a0d1 56#include <linux/uaccess.h>
180d8cd9 57#include <linux/memcontrol.h>
e1aab161 58#include <linux/res_counter.h>
c5905afb 59#include <linux/static_key.h>
40401530
AV
60#include <linux/aio.h>
61#include <linux/sched.h>
1da177e4
LT
62
63#include <linux/filter.h>
88ab1932 64#include <linux/rculist_nulls.h>
a57de0b4 65#include <linux/poll.h>
1da177e4 66
c31504dc 67#include <linux/atomic.h>
1da177e4
LT
68#include <net/dst.h>
69#include <net/checksum.h>
70
9f048bfb
ED
71struct cgroup;
72struct cgroup_subsys;
c607b2ed 73#ifdef CONFIG_NET
1d62e436
GC
74int mem_cgroup_sockets_init(struct mem_cgroup *memcg, struct cgroup_subsys *ss);
75void mem_cgroup_sockets_destroy(struct mem_cgroup *memcg);
c607b2ed
GC
76#else
77static inline
1d62e436 78int mem_cgroup_sockets_init(struct mem_cgroup *memcg, struct cgroup_subsys *ss)
c607b2ed
GC
79{
80 return 0;
81}
82static inline
1d62e436 83void mem_cgroup_sockets_destroy(struct mem_cgroup *memcg)
c607b2ed
GC
84{
85}
86#endif
1da177e4
LT
87/*
88 * This structure really needs to be cleaned up.
89 * Most of it is for TCP, and not used by any of
90 * the other protocols.
91 */
92
93/* Define this to get the SOCK_DBG debugging facility. */
94#define SOCK_DEBUGGING
95#ifdef SOCK_DEBUGGING
96#define SOCK_DEBUG(sk, msg...) do { if ((sk) && sock_flag((sk), SOCK_DBG)) \
97 printk(KERN_DEBUG msg); } while (0)
98#else
4cd9029d 99/* Validate arguments and do nothing */
b9075fa9 100static inline __printf(2, 3)
dc6b9b78 101void SOCK_DEBUG(const struct sock *sk, const char *msg, ...)
4cd9029d
SH
102{
103}
1da177e4
LT
104#endif
105
106/* This is the per-socket lock. The spinlock provides a synchronization
107 * between user contexts and software interrupt processing, whereas the
108 * mini-semaphore synchronizes multiple users amongst themselves.
109 */
1da177e4
LT
110typedef struct {
111 spinlock_t slock;
d2e9117c 112 int owned;
1da177e4 113 wait_queue_head_t wq;
a5b5bb9a
IM
114 /*
115 * We express the mutex-alike socket_lock semantics
116 * to the lock validator by explicitly managing
117 * the slock as a lock variant (in addition to
118 * the slock itself):
119 */
120#ifdef CONFIG_DEBUG_LOCK_ALLOC
121 struct lockdep_map dep_map;
122#endif
1da177e4
LT
123} socket_lock_t;
124
1da177e4 125struct sock;
8feaf0c0 126struct proto;
0eeb8ffc 127struct net;
1da177e4
LT
128
129/**
4dc3b16b 130 * struct sock_common - minimal network layer representation of sockets
68835aba
ED
131 * @skc_daddr: Foreign IPv4 addr
132 * @skc_rcv_saddr: Bound local IPv4 addr
4dc6dc71 133 * @skc_hash: hash value used with various protocol lookup tables
d4cada4a 134 * @skc_u16hashes: two u16 hash values used by UDP lookup tables
4dc3b16b
PP
135 * @skc_family: network address family
136 * @skc_state: Connection state
137 * @skc_reuse: %SO_REUSEADDR setting
138 * @skc_bound_dev_if: bound device index if != 0
4dc3b16b 139 * @skc_bind_node: bind hash linkage for various protocol lookup tables
512615b6 140 * @skc_portaddr_node: second hash linkage for UDP/UDP-Lite protocol
8feaf0c0 141 * @skc_prot: protocol handlers inside a network family
07feaebf 142 * @skc_net: reference to the network namespace of this socket
68835aba
ED
143 * @skc_node: main hash linkage for various protocol lookup tables
144 * @skc_nulls_node: main hash linkage for TCP/UDP/UDP-Lite protocol
145 * @skc_tx_queue_mapping: tx queue number for this connection
146 * @skc_refcnt: reference count
4dc3b16b
PP
147 *
148 * This is the minimal network layer representation of sockets, the header
8feaf0c0
ACM
149 * for struct sock and struct inet_timewait_sock.
150 */
1da177e4 151struct sock_common {
68835aba
ED
152 /* skc_daddr and skc_rcv_saddr must be grouped :
153 * cf INET_MATCH() and INET_TW_MATCH()
4dc6dc71 154 */
68835aba
ED
155 __be32 skc_daddr;
156 __be32 skc_rcv_saddr;
4dc6dc71 157
d4cada4a
ED
158 union {
159 unsigned int skc_hash;
160 __u16 skc_u16hashes[2];
161 };
4dc6dc71
ED
162 unsigned short skc_family;
163 volatile unsigned char skc_state;
164 unsigned char skc_reuse;
165 int skc_bound_dev_if;
512615b6
ED
166 union {
167 struct hlist_node skc_bind_node;
168 struct hlist_nulls_node skc_portaddr_node;
169 };
8feaf0c0 170 struct proto *skc_prot;
3b1e0a65 171#ifdef CONFIG_NET_NS
07feaebf 172 struct net *skc_net;
3b1e0a65 173#endif
68835aba
ED
174 /*
175 * fields between dontcopy_begin/dontcopy_end
176 * are not copied in sock_copy()
177 */
928c41e7 178 /* private: */
68835aba 179 int skc_dontcopy_begin[0];
928c41e7 180 /* public: */
68835aba
ED
181 union {
182 struct hlist_node skc_node;
183 struct hlist_nulls_node skc_nulls_node;
184 };
185 int skc_tx_queue_mapping;
186 atomic_t skc_refcnt;
928c41e7 187 /* private: */
68835aba 188 int skc_dontcopy_end[0];
928c41e7 189 /* public: */
1da177e4
LT
190};
191
e1aab161 192struct cg_proto;
1da177e4
LT
193/**
194 * struct sock - network layer representation of sockets
8feaf0c0 195 * @__sk_common: shared layout with inet_timewait_sock
4dc3b16b
PP
196 * @sk_shutdown: mask of %SEND_SHUTDOWN and/or %RCV_SHUTDOWN
197 * @sk_userlocks: %SO_SNDBUF and %SO_RCVBUF settings
198 * @sk_lock: synchronizer
199 * @sk_rcvbuf: size of receive buffer in bytes
43815482 200 * @sk_wq: sock wait queue and async head
deaa5854 201 * @sk_rx_dst: receive input route used by early tcp demux
4dc3b16b
PP
202 * @sk_dst_cache: destination cache
203 * @sk_dst_lock: destination cache lock
204 * @sk_policy: flow policy
4dc3b16b
PP
205 * @sk_receive_queue: incoming packets
206 * @sk_wmem_alloc: transmit queue bytes committed
207 * @sk_write_queue: Packet sending queue
97fc2f08 208 * @sk_async_wait_queue: DMA copied packets
4dc3b16b
PP
209 * @sk_omem_alloc: "o" is "option" or "other"
210 * @sk_wmem_queued: persistent queue size
211 * @sk_forward_alloc: space allocated forward
212 * @sk_allocation: allocation mode
213 * @sk_sndbuf: size of send buffer in bytes
33c732c3 214 * @sk_flags: %SO_LINGER (l_onoff), %SO_BROADCAST, %SO_KEEPALIVE,
20d49473 215 * %SO_OOBINLINE settings, %SO_TIMESTAMPING settings
4dc3b16b
PP
216 * @sk_no_check: %SO_NO_CHECK setting, wether or not checkup packets
217 * @sk_route_caps: route capabilities (e.g. %NETIF_F_TSO)
a465419b 218 * @sk_route_nocaps: forbidden route capabilities (e.g NETIF_F_GSO_MASK)
bcd76111 219 * @sk_gso_type: GSO type (e.g. %SKB_GSO_TCPV4)
82cc1a7a 220 * @sk_gso_max_size: Maximum GSO segment size to build
4dc3b16b 221 * @sk_lingertime: %SO_LINGER l_linger setting
4dc3b16b
PP
222 * @sk_backlog: always used with the per-socket spinlock held
223 * @sk_callback_lock: used with the callbacks in the end of this struct
224 * @sk_error_queue: rarely used
33c732c3
WC
225 * @sk_prot_creator: sk_prot of original sock creator (see ipv6_setsockopt,
226 * IPV6_ADDRFORM for instance)
4dc3b16b 227 * @sk_err: last error
33c732c3
WC
228 * @sk_err_soft: errors that don't cause failure but are the cause of a
229 * persistent failure not just 'timed out'
cb61cb9b 230 * @sk_drops: raw/udp drops counter
4dc3b16b
PP
231 * @sk_ack_backlog: current listen backlog
232 * @sk_max_ack_backlog: listen backlog set in listen()
233 * @sk_priority: %SO_PRIORITY setting
1a3bc369 234 * @sk_cgrp_prioidx: socket group's priority map index
4dc3b16b
PP
235 * @sk_type: socket type (%SOCK_STREAM, etc)
236 * @sk_protocol: which protocol this socket belongs in this network family
53c3fa20
RD
237 * @sk_peer_pid: &struct pid for this socket's peer
238 * @sk_peer_cred: %SO_PEERCRED setting
4dc3b16b
PP
239 * @sk_rcvlowat: %SO_RCVLOWAT setting
240 * @sk_rcvtimeo: %SO_RCVTIMEO setting
241 * @sk_sndtimeo: %SO_SNDTIMEO setting
c58dc01b 242 * @sk_rxhash: flow hash received from netif layer
4dc3b16b
PP
243 * @sk_filter: socket filtering instructions
244 * @sk_protinfo: private area, net family specific, when not using slab
245 * @sk_timer: sock cleanup timer
246 * @sk_stamp: time stamp of last packet received
247 * @sk_socket: Identd and reporting IO signals
248 * @sk_user_data: RPC layer private data
249 * @sk_sndmsg_page: cached page for sendmsg
250 * @sk_sndmsg_off: cached offset for sendmsg
d3d4f0a0 251 * @sk_peek_off: current peek_offset value
4dc3b16b 252 * @sk_send_head: front of stuff to transmit
67be2dd1 253 * @sk_security: used by security modules
31729363 254 * @sk_mark: generic packet mark
53c3fa20 255 * @sk_classid: this socket's cgroup classid
e1aab161 256 * @sk_cgrp: this socket's cgroup-specific proto data
4dc3b16b
PP
257 * @sk_write_pending: a write to stream socket waits to start
258 * @sk_state_change: callback to indicate change in the state of the sock
259 * @sk_data_ready: callback to indicate there is data to be processed
260 * @sk_write_space: callback to indicate there is bf sending space available
261 * @sk_error_report: callback to indicate errors (e.g. %MSG_ERRQUEUE)
262 * @sk_backlog_rcv: callback to process the backlog
263 * @sk_destruct: called at sock freeing time, i.e. when all refcnt == 0
1da177e4
LT
264 */
265struct sock {
266 /*
8feaf0c0 267 * Now struct inet_timewait_sock also uses sock_common, so please just
1da177e4
LT
268 * don't add nothing before this first member (__sk_common) --acme
269 */
270 struct sock_common __sk_common;
4dc6dc71
ED
271#define sk_node __sk_common.skc_node
272#define sk_nulls_node __sk_common.skc_nulls_node
273#define sk_refcnt __sk_common.skc_refcnt
e022f0b4 274#define sk_tx_queue_mapping __sk_common.skc_tx_queue_mapping
4dc6dc71 275
68835aba
ED
276#define sk_dontcopy_begin __sk_common.skc_dontcopy_begin
277#define sk_dontcopy_end __sk_common.skc_dontcopy_end
4dc6dc71 278#define sk_hash __sk_common.skc_hash
1da177e4
LT
279#define sk_family __sk_common.skc_family
280#define sk_state __sk_common.skc_state
281#define sk_reuse __sk_common.skc_reuse
282#define sk_bound_dev_if __sk_common.skc_bound_dev_if
1da177e4 283#define sk_bind_node __sk_common.skc_bind_node
8feaf0c0 284#define sk_prot __sk_common.skc_prot
07feaebf 285#define sk_net __sk_common.skc_net
1da177e4 286 socket_lock_t sk_lock;
b178bb3d 287 struct sk_buff_head sk_receive_queue;
fa438ccf
ED
288 /*
289 * The backlog queue is special, it is always used with
290 * the per-socket spinlock held and requires low latency
291 * access. Therefore we special case it's implementation.
b178bb3d
ED
292 * Note : rmem_alloc is in this structure to fill a hole
293 * on 64bit arches, not because its logically part of
294 * backlog.
fa438ccf
ED
295 */
296 struct {
b178bb3d
ED
297 atomic_t rmem_alloc;
298 int len;
299 struct sk_buff *head;
300 struct sk_buff *tail;
fa438ccf 301 } sk_backlog;
b178bb3d
ED
302#define sk_rmem_alloc sk_backlog.rmem_alloc
303 int sk_forward_alloc;
304#ifdef CONFIG_RPS
305 __u32 sk_rxhash;
306#endif
307 atomic_t sk_drops;
308 int sk_rcvbuf;
309
310 struct sk_filter __rcu *sk_filter;
eaefd110 311 struct socket_wq __rcu *sk_wq;
b178bb3d
ED
312
313#ifdef CONFIG_NET_DMA
314 struct sk_buff_head sk_async_wait_queue;
315#endif
316
def8b4fa 317#ifdef CONFIG_XFRM
1da177e4 318 struct xfrm_policy *sk_policy[2];
def8b4fa 319#endif
b178bb3d 320 unsigned long sk_flags;
deaa5854 321 struct dst_entry *sk_rx_dst;
b178bb3d 322 struct dst_entry *sk_dst_cache;
b6c6712a 323 spinlock_t sk_dst_lock;
1da177e4
LT
324 atomic_t sk_wmem_alloc;
325 atomic_t sk_omem_alloc;
4e07a91c 326 int sk_sndbuf;
1da177e4 327 struct sk_buff_head sk_write_queue;
b178bb3d
ED
328 kmemcheck_bitfield_begin(flags);
329 unsigned int sk_shutdown : 2,
330 sk_no_check : 2,
331 sk_userlocks : 4,
332 sk_protocol : 8,
333 sk_type : 16;
334 kmemcheck_bitfield_end(flags);
1da177e4 335 int sk_wmem_queued;
7d877f3b 336 gfp_t sk_allocation;
c8f44aff
MM
337 netdev_features_t sk_route_caps;
338 netdev_features_t sk_route_nocaps;
bcd76111 339 int sk_gso_type;
82cc1a7a 340 unsigned int sk_gso_max_size;
9932cf95 341 int sk_rcvlowat;
1da177e4 342 unsigned long sk_lingertime;
1da177e4 343 struct sk_buff_head sk_error_queue;
476e19cf 344 struct proto *sk_prot_creator;
1da177e4
LT
345 rwlock_t sk_callback_lock;
346 int sk_err,
347 sk_err_soft;
348 unsigned short sk_ack_backlog;
349 unsigned short sk_max_ack_backlog;
350 __u32 sk_priority;
5bc1421e
NH
351#ifdef CONFIG_CGROUPS
352 __u32 sk_cgrp_prioidx;
353#endif
109f6e39
EB
354 struct pid *sk_peer_pid;
355 const struct cred *sk_peer_cred;
1da177e4
LT
356 long sk_rcvtimeo;
357 long sk_sndtimeo;
1da177e4
LT
358 void *sk_protinfo;
359 struct timer_list sk_timer;
b7aa0bf7 360 ktime_t sk_stamp;
1da177e4
LT
361 struct socket *sk_socket;
362 void *sk_user_data;
363 struct page *sk_sndmsg_page;
364 struct sk_buff *sk_send_head;
365 __u32 sk_sndmsg_off;
ef64a54f 366 __s32 sk_peek_off;
1da177e4 367 int sk_write_pending;
d5f64238 368#ifdef CONFIG_SECURITY
1da177e4 369 void *sk_security;
d5f64238 370#endif
4a19ec58 371 __u32 sk_mark;
f8451725 372 u32 sk_classid;
e1aab161 373 struct cg_proto *sk_cgrp;
1da177e4
LT
374 void (*sk_state_change)(struct sock *sk);
375 void (*sk_data_ready)(struct sock *sk, int bytes);
376 void (*sk_write_space)(struct sock *sk);
377 void (*sk_error_report)(struct sock *sk);
dc6b9b78
ED
378 int (*sk_backlog_rcv)(struct sock *sk,
379 struct sk_buff *skb);
1da177e4
LT
380 void (*sk_destruct)(struct sock *sk);
381};
382
4a17fd52
PE
383/*
384 * SK_CAN_REUSE and SK_NO_REUSE on a socket mean that the socket is OK
385 * or not whether his port will be reused by someone else. SK_FORCE_REUSE
386 * on a socket means that the socket will reuse everybody else's port
387 * without looking at the other's sk_reuse value.
388 */
389
390#define SK_NO_REUSE 0
391#define SK_CAN_REUSE 1
392#define SK_FORCE_REUSE 2
393
ef64a54f
PE
394static inline int sk_peek_offset(struct sock *sk, int flags)
395{
396 if ((flags & MSG_PEEK) && (sk->sk_peek_off >= 0))
397 return sk->sk_peek_off;
398 else
399 return 0;
400}
401
402static inline void sk_peek_offset_bwd(struct sock *sk, int val)
403{
404 if (sk->sk_peek_off >= 0) {
405 if (sk->sk_peek_off >= val)
406 sk->sk_peek_off -= val;
407 else
408 sk->sk_peek_off = 0;
409 }
410}
411
412static inline void sk_peek_offset_fwd(struct sock *sk, int val)
413{
414 if (sk->sk_peek_off >= 0)
415 sk->sk_peek_off += val;
416}
417
1da177e4
LT
418/*
419 * Hashed lists helper routines
420 */
c4146644
LZ
421static inline struct sock *sk_entry(const struct hlist_node *node)
422{
423 return hlist_entry(node, struct sock, sk_node);
424}
425
e48c414e 426static inline struct sock *__sk_head(const struct hlist_head *head)
1da177e4
LT
427{
428 return hlist_entry(head->first, struct sock, sk_node);
429}
430
e48c414e 431static inline struct sock *sk_head(const struct hlist_head *head)
1da177e4
LT
432{
433 return hlist_empty(head) ? NULL : __sk_head(head);
434}
435
88ab1932
ED
436static inline struct sock *__sk_nulls_head(const struct hlist_nulls_head *head)
437{
438 return hlist_nulls_entry(head->first, struct sock, sk_nulls_node);
439}
440
441static inline struct sock *sk_nulls_head(const struct hlist_nulls_head *head)
442{
443 return hlist_nulls_empty(head) ? NULL : __sk_nulls_head(head);
444}
445
e48c414e 446static inline struct sock *sk_next(const struct sock *sk)
1da177e4
LT
447{
448 return sk->sk_node.next ?
449 hlist_entry(sk->sk_node.next, struct sock, sk_node) : NULL;
450}
451
88ab1932
ED
452static inline struct sock *sk_nulls_next(const struct sock *sk)
453{
454 return (!is_a_nulls(sk->sk_nulls_node.next)) ?
455 hlist_nulls_entry(sk->sk_nulls_node.next,
456 struct sock, sk_nulls_node) :
457 NULL;
458}
459
dc6b9b78 460static inline bool sk_unhashed(const struct sock *sk)
1da177e4
LT
461{
462 return hlist_unhashed(&sk->sk_node);
463}
464
dc6b9b78 465static inline bool sk_hashed(const struct sock *sk)
1da177e4 466{
da753bea 467 return !sk_unhashed(sk);
1da177e4
LT
468}
469
dc6b9b78 470static inline void sk_node_init(struct hlist_node *node)
1da177e4
LT
471{
472 node->pprev = NULL;
473}
474
dc6b9b78 475static inline void sk_nulls_node_init(struct hlist_nulls_node *node)
88ab1932
ED
476{
477 node->pprev = NULL;
478}
479
dc6b9b78 480static inline void __sk_del_node(struct sock *sk)
1da177e4
LT
481{
482 __hlist_del(&sk->sk_node);
483}
484
808f5114 485/* NB: equivalent to hlist_del_init_rcu */
dc6b9b78 486static inline bool __sk_del_node_init(struct sock *sk)
1da177e4
LT
487{
488 if (sk_hashed(sk)) {
489 __sk_del_node(sk);
490 sk_node_init(&sk->sk_node);
dc6b9b78 491 return true;
1da177e4 492 }
dc6b9b78 493 return false;
1da177e4
LT
494}
495
496/* Grab socket reference count. This operation is valid only
497 when sk is ALREADY grabbed f.e. it is found in hash table
498 or a list and the lookup is made under lock preventing hash table
499 modifications.
500 */
501
502static inline void sock_hold(struct sock *sk)
503{
504 atomic_inc(&sk->sk_refcnt);
505}
506
507/* Ungrab socket in the context, which assumes that socket refcnt
508 cannot hit zero, f.e. it is true in context of any socketcall.
509 */
510static inline void __sock_put(struct sock *sk)
511{
512 atomic_dec(&sk->sk_refcnt);
513}
514
dc6b9b78 515static inline bool sk_del_node_init(struct sock *sk)
1da177e4 516{
dc6b9b78 517 bool rc = __sk_del_node_init(sk);
1da177e4
LT
518
519 if (rc) {
520 /* paranoid for a while -acme */
521 WARN_ON(atomic_read(&sk->sk_refcnt) == 1);
522 __sock_put(sk);
523 }
524 return rc;
525}
808f5114 526#define sk_del_node_init_rcu(sk) sk_del_node_init(sk)
1da177e4 527
dc6b9b78 528static inline bool __sk_nulls_del_node_init_rcu(struct sock *sk)
271b72c7
ED
529{
530 if (sk_hashed(sk)) {
88ab1932 531 hlist_nulls_del_init_rcu(&sk->sk_nulls_node);
dc6b9b78 532 return true;
271b72c7 533 }
dc6b9b78 534 return false;
271b72c7
ED
535}
536
dc6b9b78 537static inline bool sk_nulls_del_node_init_rcu(struct sock *sk)
271b72c7 538{
dc6b9b78 539 bool rc = __sk_nulls_del_node_init_rcu(sk);
271b72c7
ED
540
541 if (rc) {
542 /* paranoid for a while -acme */
543 WARN_ON(atomic_read(&sk->sk_refcnt) == 1);
544 __sock_put(sk);
545 }
546 return rc;
547}
548
dc6b9b78 549static inline void __sk_add_node(struct sock *sk, struct hlist_head *list)
1da177e4
LT
550{
551 hlist_add_head(&sk->sk_node, list);
552}
553
dc6b9b78 554static inline void sk_add_node(struct sock *sk, struct hlist_head *list)
1da177e4
LT
555{
556 sock_hold(sk);
557 __sk_add_node(sk, list);
558}
559
dc6b9b78 560static inline void sk_add_node_rcu(struct sock *sk, struct hlist_head *list)
808f5114 561{
562 sock_hold(sk);
563 hlist_add_head_rcu(&sk->sk_node, list);
564}
565
dc6b9b78 566static inline void __sk_nulls_add_node_rcu(struct sock *sk, struct hlist_nulls_head *list)
271b72c7 567{
88ab1932 568 hlist_nulls_add_head_rcu(&sk->sk_nulls_node, list);
271b72c7
ED
569}
570
dc6b9b78 571static inline void sk_nulls_add_node_rcu(struct sock *sk, struct hlist_nulls_head *list)
271b72c7
ED
572{
573 sock_hold(sk);
88ab1932 574 __sk_nulls_add_node_rcu(sk, list);
271b72c7
ED
575}
576
dc6b9b78 577static inline void __sk_del_bind_node(struct sock *sk)
1da177e4
LT
578{
579 __hlist_del(&sk->sk_bind_node);
580}
581
dc6b9b78 582static inline void sk_add_bind_node(struct sock *sk,
1da177e4
LT
583 struct hlist_head *list)
584{
585 hlist_add_head(&sk->sk_bind_node, list);
586}
587
588#define sk_for_each(__sk, node, list) \
589 hlist_for_each_entry(__sk, node, list, sk_node)
808f5114 590#define sk_for_each_rcu(__sk, node, list) \
591 hlist_for_each_entry_rcu(__sk, node, list, sk_node)
88ab1932
ED
592#define sk_nulls_for_each(__sk, node, list) \
593 hlist_nulls_for_each_entry(__sk, node, list, sk_nulls_node)
594#define sk_nulls_for_each_rcu(__sk, node, list) \
595 hlist_nulls_for_each_entry_rcu(__sk, node, list, sk_nulls_node)
1da177e4
LT
596#define sk_for_each_from(__sk, node) \
597 if (__sk && ({ node = &(__sk)->sk_node; 1; })) \
598 hlist_for_each_entry_from(__sk, node, sk_node)
88ab1932
ED
599#define sk_nulls_for_each_from(__sk, node) \
600 if (__sk && ({ node = &(__sk)->sk_nulls_node; 1; })) \
601 hlist_nulls_for_each_entry_from(__sk, node, sk_nulls_node)
1da177e4
LT
602#define sk_for_each_safe(__sk, node, tmp, list) \
603 hlist_for_each_entry_safe(__sk, node, tmp, list, sk_node)
604#define sk_for_each_bound(__sk, node, list) \
605 hlist_for_each_entry(__sk, node, list, sk_bind_node)
606
607/* Sock flags */
608enum sock_flags {
609 SOCK_DEAD,
610 SOCK_DONE,
611 SOCK_URGINLINE,
612 SOCK_KEEPOPEN,
613 SOCK_LINGER,
614 SOCK_DESTROY,
615 SOCK_BROADCAST,
616 SOCK_TIMESTAMP,
617 SOCK_ZAPPED,
618 SOCK_USE_WRITE_QUEUE, /* whether to call sk->sk_write_space in sock_wfree */
619 SOCK_DBG, /* %SO_DEBUG setting */
620 SOCK_RCVTSTAMP, /* %SO_TIMESTAMP setting */
92f37fd2 621 SOCK_RCVTSTAMPNS, /* %SO_TIMESTAMPNS setting */
1da177e4
LT
622 SOCK_LOCALROUTE, /* route locally only, %SO_DONTROUTE setting */
623 SOCK_QUEUE_SHRUNK, /* write queue has been shrunk recently */
7cb02404 624 SOCK_MEMALLOC, /* VM depends on this socket for swapping */
20d49473
PO
625 SOCK_TIMESTAMPING_TX_HARDWARE, /* %SOF_TIMESTAMPING_TX_HARDWARE */
626 SOCK_TIMESTAMPING_TX_SOFTWARE, /* %SOF_TIMESTAMPING_TX_SOFTWARE */
627 SOCK_TIMESTAMPING_RX_HARDWARE, /* %SOF_TIMESTAMPING_RX_HARDWARE */
628 SOCK_TIMESTAMPING_RX_SOFTWARE, /* %SOF_TIMESTAMPING_RX_SOFTWARE */
629 SOCK_TIMESTAMPING_SOFTWARE, /* %SOF_TIMESTAMPING_SOFTWARE */
630 SOCK_TIMESTAMPING_RAW_HARDWARE, /* %SOF_TIMESTAMPING_RAW_HARDWARE */
631 SOCK_TIMESTAMPING_SYS_HARDWARE, /* %SOF_TIMESTAMPING_SYS_HARDWARE */
bcdce719 632 SOCK_FASYNC, /* fasync() active */
3b885787 633 SOCK_RXQ_OVFL,
1cdebb42 634 SOCK_ZEROCOPY, /* buffers from userspace */
6e3e939f 635 SOCK_WIFI_STATUS, /* push wifi status to userspace */
3bdc0eba
BG
636 SOCK_NOFCS, /* Tell NIC not to do the Ethernet FCS.
637 * Will use last 4 bytes of packet sent from
638 * user-space instead.
639 */
1da177e4
LT
640};
641
53b924b3
RB
642static inline void sock_copy_flags(struct sock *nsk, struct sock *osk)
643{
644 nsk->sk_flags = osk->sk_flags;
645}
646
1da177e4
LT
647static inline void sock_set_flag(struct sock *sk, enum sock_flags flag)
648{
649 __set_bit(flag, &sk->sk_flags);
650}
651
652static inline void sock_reset_flag(struct sock *sk, enum sock_flags flag)
653{
654 __clear_bit(flag, &sk->sk_flags);
655}
656
1b23a5df 657static inline bool sock_flag(const struct sock *sk, enum sock_flags flag)
1da177e4
LT
658{
659 return test_bit(flag, &sk->sk_flags);
660}
661
99a1dec7
MG
662static inline gfp_t sk_gfp_atomic(struct sock *sk, gfp_t gfp_mask)
663{
7cb02404 664 return GFP_ATOMIC | (sk->sk_allocation & __GFP_MEMALLOC);
99a1dec7
MG
665}
666
1da177e4
LT
667static inline void sk_acceptq_removed(struct sock *sk)
668{
669 sk->sk_ack_backlog--;
670}
671
672static inline void sk_acceptq_added(struct sock *sk)
673{
674 sk->sk_ack_backlog++;
675}
676
dc6b9b78 677static inline bool sk_acceptq_is_full(const struct sock *sk)
1da177e4 678{
64a14651 679 return sk->sk_ack_backlog > sk->sk_max_ack_backlog;
1da177e4
LT
680}
681
682/*
683 * Compute minimal free write space needed to queue new packets.
684 */
dc6b9b78 685static inline int sk_stream_min_wspace(const struct sock *sk)
1da177e4 686{
8df09ea3 687 return sk->sk_wmem_queued >> 1;
1da177e4
LT
688}
689
dc6b9b78 690static inline int sk_stream_wspace(const struct sock *sk)
1da177e4
LT
691{
692 return sk->sk_sndbuf - sk->sk_wmem_queued;
693}
694
695extern void sk_stream_write_space(struct sock *sk);
696
dc6b9b78 697static inline bool sk_stream_memory_free(const struct sock *sk)
1da177e4
LT
698{
699 return sk->sk_wmem_queued < sk->sk_sndbuf;
700}
701
8eae939f 702/* OOB backlog add */
a3a858ff 703static inline void __sk_add_backlog(struct sock *sk, struct sk_buff *skb)
9ee6b535 704{
7fee226a
ED
705 /* dont let skb dst not refcounted, we are going to leave rcu lock */
706 skb_dst_force(skb);
707
708 if (!sk->sk_backlog.tail)
709 sk->sk_backlog.head = skb;
710 else
9ee6b535 711 sk->sk_backlog.tail->next = skb;
7fee226a
ED
712
713 sk->sk_backlog.tail = skb;
9ee6b535
SH
714 skb->next = NULL;
715}
1da177e4 716
c377411f
ED
717/*
718 * Take into account size of receive queue and backlog queue
0fd7bac6
ED
719 * Do not take into account this skb truesize,
720 * to allow even a single big packet to come.
c377411f 721 */
f545a38f
ED
722static inline bool sk_rcvqueues_full(const struct sock *sk, const struct sk_buff *skb,
723 unsigned int limit)
c377411f
ED
724{
725 unsigned int qsize = sk->sk_backlog.len + atomic_read(&sk->sk_rmem_alloc);
726
f545a38f 727 return qsize > limit;
c377411f
ED
728}
729
8eae939f 730/* The per-socket spinlock must be held here. */
f545a38f
ED
731static inline __must_check int sk_add_backlog(struct sock *sk, struct sk_buff *skb,
732 unsigned int limit)
8eae939f 733{
f545a38f 734 if (sk_rcvqueues_full(sk, skb, limit))
8eae939f
ZY
735 return -ENOBUFS;
736
a3a858ff 737 __sk_add_backlog(sk, skb);
8eae939f
ZY
738 sk->sk_backlog.len += skb->truesize;
739 return 0;
740}
741
c57943a1
PZ
742static inline int sk_backlog_rcv(struct sock *sk, struct sk_buff *skb)
743{
744 return sk->sk_backlog_rcv(sk, skb);
745}
746
c58dc01b
DM
747static inline void sock_rps_record_flow(const struct sock *sk)
748{
749#ifdef CONFIG_RPS
750 struct rps_sock_flow_table *sock_flow_table;
751
752 rcu_read_lock();
753 sock_flow_table = rcu_dereference(rps_sock_flow_table);
754 rps_record_sock_flow(sock_flow_table, sk->sk_rxhash);
755 rcu_read_unlock();
756#endif
757}
758
759static inline void sock_rps_reset_flow(const struct sock *sk)
760{
761#ifdef CONFIG_RPS
762 struct rps_sock_flow_table *sock_flow_table;
763
764 rcu_read_lock();
765 sock_flow_table = rcu_dereference(rps_sock_flow_table);
766 rps_reset_sock_flow(sock_flow_table, sk->sk_rxhash);
767 rcu_read_unlock();
768#endif
769}
770
bdeab991
TH
771static inline void sock_rps_save_rxhash(struct sock *sk,
772 const struct sk_buff *skb)
c58dc01b
DM
773{
774#ifdef CONFIG_RPS
bdeab991 775 if (unlikely(sk->sk_rxhash != skb->rxhash)) {
c58dc01b 776 sock_rps_reset_flow(sk);
bdeab991 777 sk->sk_rxhash = skb->rxhash;
c58dc01b
DM
778 }
779#endif
780}
781
bdeab991
TH
782static inline void sock_rps_reset_rxhash(struct sock *sk)
783{
784#ifdef CONFIG_RPS
785 sock_rps_reset_flow(sk);
786 sk->sk_rxhash = 0;
787#endif
788}
789
cfcabdcc
SH
790#define sk_wait_event(__sk, __timeo, __condition) \
791 ({ int __rc; \
792 release_sock(__sk); \
793 __rc = __condition; \
794 if (!__rc) { \
795 *(__timeo) = schedule_timeout(*(__timeo)); \
796 } \
797 lock_sock(__sk); \
798 __rc = __condition; \
799 __rc; \
800 })
1da177e4
LT
801
802extern int sk_stream_wait_connect(struct sock *sk, long *timeo_p);
803extern int sk_stream_wait_memory(struct sock *sk, long *timeo_p);
804extern void sk_stream_wait_close(struct sock *sk, long timeo_p);
805extern int sk_stream_error(struct sock *sk, int flags, int err);
806extern void sk_stream_kill_queues(struct sock *sk);
7cb02404
MG
807extern void sk_set_memalloc(struct sock *sk);
808extern void sk_clear_memalloc(struct sock *sk);
1da177e4
LT
809
810extern int sk_wait_data(struct sock *sk, long *timeo);
811
60236fdd 812struct request_sock_ops;
6d6ee43e 813struct timewait_sock_ops;
ab1e0a13 814struct inet_hashinfo;
fc8717ba 815struct raw_hashinfo;
de477254 816struct module;
2e6599cb 817
1da177e4
LT
818/* Networking protocol blocks we attach to sockets.
819 * socket layer -> transport layer interface
820 * transport -> network interface is defined by struct inet_proto
821 */
822struct proto {
dc6b9b78 823 void (*close)(struct sock *sk,
1da177e4
LT
824 long timeout);
825 int (*connect)(struct sock *sk,
dc6b9b78 826 struct sockaddr *uaddr,
1da177e4
LT
827 int addr_len);
828 int (*disconnect)(struct sock *sk, int flags);
829
dc6b9b78 830 struct sock * (*accept)(struct sock *sk, int flags, int *err);
1da177e4
LT
831
832 int (*ioctl)(struct sock *sk, int cmd,
833 unsigned long arg);
834 int (*init)(struct sock *sk);
7d06b2e0 835 void (*destroy)(struct sock *sk);
1da177e4 836 void (*shutdown)(struct sock *sk, int how);
dc6b9b78 837 int (*setsockopt)(struct sock *sk, int level,
1da177e4 838 int optname, char __user *optval,
b7058842 839 unsigned int optlen);
dc6b9b78
ED
840 int (*getsockopt)(struct sock *sk, int level,
841 int optname, char __user *optval,
842 int __user *option);
af01d537 843#ifdef CONFIG_COMPAT
3fdadf7d
DM
844 int (*compat_setsockopt)(struct sock *sk,
845 int level,
846 int optname, char __user *optval,
b7058842 847 unsigned int optlen);
3fdadf7d
DM
848 int (*compat_getsockopt)(struct sock *sk,
849 int level,
850 int optname, char __user *optval,
851 int __user *option);
709b46e8
EB
852 int (*compat_ioctl)(struct sock *sk,
853 unsigned int cmd, unsigned long arg);
af01d537 854#endif
1da177e4
LT
855 int (*sendmsg)(struct kiocb *iocb, struct sock *sk,
856 struct msghdr *msg, size_t len);
857 int (*recvmsg)(struct kiocb *iocb, struct sock *sk,
858 struct msghdr *msg,
dc6b9b78
ED
859 size_t len, int noblock, int flags,
860 int *addr_len);
1da177e4
LT
861 int (*sendpage)(struct sock *sk, struct page *page,
862 int offset, size_t size, int flags);
dc6b9b78 863 int (*bind)(struct sock *sk,
1da177e4
LT
864 struct sockaddr *uaddr, int addr_len);
865
dc6b9b78 866 int (*backlog_rcv) (struct sock *sk,
1da177e4
LT
867 struct sk_buff *skb);
868
46d3ceab 869 void (*release_cb)(struct sock *sk);
563d34d0 870 void (*mtu_reduced)(struct sock *sk);
46d3ceab 871
1da177e4
LT
872 /* Keeping track of sk's, looking them up, and port selection methods. */
873 void (*hash)(struct sock *sk);
874 void (*unhash)(struct sock *sk);
719f8358 875 void (*rehash)(struct sock *sk);
1da177e4 876 int (*get_port)(struct sock *sk, unsigned short snum);
fcbdf09d 877 void (*clear_sk)(struct sock *sk, int size);
1da177e4 878
286ab3d4 879 /* Keeping track of sockets in use */
65f76517 880#ifdef CONFIG_PROC_FS
13ff3d6f 881 unsigned int inuse_idx;
65f76517 882#endif
ebb53d75 883
1da177e4 884 /* Memory pressure */
5c52ba17 885 void (*enter_memory_pressure)(struct sock *sk);
8d987e5c 886 atomic_long_t *memory_allocated; /* Current allocated memory. */
1748376b 887 struct percpu_counter *sockets_allocated; /* Current number of sockets. */
1da177e4
LT
888 /*
889 * Pressure flag: try to collapse.
890 * Technical note: it is used by multiple contexts non atomically.
3ab224be 891 * All the __sk_mem_schedule() is of this nature: accounting
1da177e4
LT
892 * is strict, actions are advisory and have some latency.
893 */
894 int *memory_pressure;
8d987e5c 895 long *sysctl_mem;
1da177e4
LT
896 int *sysctl_wmem;
897 int *sysctl_rmem;
898 int max_header;
7ba42910 899 bool no_autobind;
1da177e4 900
271b72c7 901 struct kmem_cache *slab;
1da177e4 902 unsigned int obj_size;
271b72c7 903 int slab_flags;
1da177e4 904
dd24c001 905 struct percpu_counter *orphan_count;
8feaf0c0 906
60236fdd 907 struct request_sock_ops *rsk_prot;
6d6ee43e 908 struct timewait_sock_ops *twsk_prot;
2e6599cb 909
39d8cda7
PE
910 union {
911 struct inet_hashinfo *hashinfo;
645ca708 912 struct udp_table *udp_table;
fc8717ba 913 struct raw_hashinfo *raw_hash;
39d8cda7 914 } h;
ab1e0a13 915
1da177e4
LT
916 struct module *owner;
917
918 char name[32];
919
920 struct list_head node;
e6848976
ACM
921#ifdef SOCK_REFCNT_DEBUG
922 atomic_t socks;
923#endif
c255a458 924#ifdef CONFIG_MEMCG_KMEM
e1aab161
GC
925 /*
926 * cgroup specific init/deinit functions. Called once for all
927 * protocols that implement it, from cgroups populate function.
928 * This function has to setup any files the protocol want to
929 * appear in the kmem cgroup filesystem.
930 */
1d62e436 931 int (*init_cgroup)(struct mem_cgroup *memcg,
e1aab161 932 struct cgroup_subsys *ss);
1d62e436 933 void (*destroy_cgroup)(struct mem_cgroup *memcg);
e1aab161
GC
934 struct cg_proto *(*proto_cgroup)(struct mem_cgroup *memcg);
935#endif
936};
937
3f134619
GC
938/*
939 * Bits in struct cg_proto.flags
940 */
941enum cg_proto_flags {
942 /* Currently active and new sockets should be assigned to cgroups */
943 MEMCG_SOCK_ACTIVE,
944 /* It was ever activated; we must disarm static keys on destruction */
945 MEMCG_SOCK_ACTIVATED,
946};
947
e1aab161
GC
948struct cg_proto {
949 void (*enter_memory_pressure)(struct sock *sk);
950 struct res_counter *memory_allocated; /* Current allocated memory. */
951 struct percpu_counter *sockets_allocated; /* Current number of sockets. */
952 int *memory_pressure;
953 long *sysctl_mem;
3f134619 954 unsigned long flags;
e1aab161
GC
955 /*
956 * memcg field is used to find which memcg we belong directly
957 * Each memcg struct can hold more than one cg_proto, so container_of
958 * won't really cut.
959 *
960 * The elegant solution would be having an inverse function to
961 * proto_cgroup in struct proto, but that means polluting the structure
962 * for everybody, instead of just for memcg users.
963 */
964 struct mem_cgroup *memcg;
1da177e4
LT
965};
966
967extern int proto_register(struct proto *prot, int alloc_slab);
968extern void proto_unregister(struct proto *prot);
969
3f134619
GC
970static inline bool memcg_proto_active(struct cg_proto *cg_proto)
971{
972 return test_bit(MEMCG_SOCK_ACTIVE, &cg_proto->flags);
973}
974
975static inline bool memcg_proto_activated(struct cg_proto *cg_proto)
976{
977 return test_bit(MEMCG_SOCK_ACTIVATED, &cg_proto->flags);
978}
979
e6848976
ACM
980#ifdef SOCK_REFCNT_DEBUG
981static inline void sk_refcnt_debug_inc(struct sock *sk)
982{
983 atomic_inc(&sk->sk_prot->socks);
984}
985
986static inline void sk_refcnt_debug_dec(struct sock *sk)
987{
988 atomic_dec(&sk->sk_prot->socks);
989 printk(KERN_DEBUG "%s socket %p released, %d are still alive\n",
990 sk->sk_prot->name, sk, atomic_read(&sk->sk_prot->socks));
991}
992
e1aab161 993inline void sk_refcnt_debug_release(const struct sock *sk)
e6848976
ACM
994{
995 if (atomic_read(&sk->sk_refcnt) != 1)
996 printk(KERN_DEBUG "Destruction of the %s socket %p delayed, refcnt=%d\n",
997 sk->sk_prot->name, sk, atomic_read(&sk->sk_refcnt));
998}
999#else /* SOCK_REFCNT_DEBUG */
1000#define sk_refcnt_debug_inc(sk) do { } while (0)
1001#define sk_refcnt_debug_dec(sk) do { } while (0)
1002#define sk_refcnt_debug_release(sk) do { } while (0)
1003#endif /* SOCK_REFCNT_DEBUG */
1004
c255a458 1005#if defined(CONFIG_MEMCG_KMEM) && defined(CONFIG_NET)
c5905afb 1006extern struct static_key memcg_socket_limit_enabled;
e1aab161
GC
1007static inline struct cg_proto *parent_cg_proto(struct proto *proto,
1008 struct cg_proto *cg_proto)
1009{
1010 return proto->proto_cgroup(parent_mem_cgroup(cg_proto->memcg));
1011}
c5905afb 1012#define mem_cgroup_sockets_enabled static_key_false(&memcg_socket_limit_enabled)
e1aab161
GC
1013#else
1014#define mem_cgroup_sockets_enabled 0
1015static inline struct cg_proto *parent_cg_proto(struct proto *proto,
1016 struct cg_proto *cg_proto)
1017{
1018 return NULL;
1019}
1020#endif
1021
1022
180d8cd9
GC
1023static inline bool sk_has_memory_pressure(const struct sock *sk)
1024{
1025 return sk->sk_prot->memory_pressure != NULL;
1026}
1027
1028static inline bool sk_under_memory_pressure(const struct sock *sk)
1029{
1030 if (!sk->sk_prot->memory_pressure)
1031 return false;
e1aab161
GC
1032
1033 if (mem_cgroup_sockets_enabled && sk->sk_cgrp)
1034 return !!*sk->sk_cgrp->memory_pressure;
1035
180d8cd9
GC
1036 return !!*sk->sk_prot->memory_pressure;
1037}
1038
1039static inline void sk_leave_memory_pressure(struct sock *sk)
1040{
1041 int *memory_pressure = sk->sk_prot->memory_pressure;
1042
e1aab161
GC
1043 if (!memory_pressure)
1044 return;
1045
1046 if (*memory_pressure)
180d8cd9 1047 *memory_pressure = 0;
e1aab161
GC
1048
1049 if (mem_cgroup_sockets_enabled && sk->sk_cgrp) {
1050 struct cg_proto *cg_proto = sk->sk_cgrp;
1051 struct proto *prot = sk->sk_prot;
1052
1053 for (; cg_proto; cg_proto = parent_cg_proto(prot, cg_proto))
1054 if (*cg_proto->memory_pressure)
1055 *cg_proto->memory_pressure = 0;
1056 }
1057
180d8cd9
GC
1058}
1059
1060static inline void sk_enter_memory_pressure(struct sock *sk)
1061{
e1aab161
GC
1062 if (!sk->sk_prot->enter_memory_pressure)
1063 return;
1064
1065 if (mem_cgroup_sockets_enabled && sk->sk_cgrp) {
1066 struct cg_proto *cg_proto = sk->sk_cgrp;
1067 struct proto *prot = sk->sk_prot;
1068
1069 for (; cg_proto; cg_proto = parent_cg_proto(prot, cg_proto))
1070 cg_proto->enter_memory_pressure(sk);
1071 }
1072
1073 sk->sk_prot->enter_memory_pressure(sk);
180d8cd9
GC
1074}
1075
1076static inline long sk_prot_mem_limits(const struct sock *sk, int index)
1077{
1078 long *prot = sk->sk_prot->sysctl_mem;
e1aab161
GC
1079 if (mem_cgroup_sockets_enabled && sk->sk_cgrp)
1080 prot = sk->sk_cgrp->sysctl_mem;
180d8cd9
GC
1081 return prot[index];
1082}
1083
e1aab161
GC
1084static inline void memcg_memory_allocated_add(struct cg_proto *prot,
1085 unsigned long amt,
1086 int *parent_status)
1087{
1088 struct res_counter *fail;
1089 int ret;
1090
0e90b31f
GC
1091 ret = res_counter_charge_nofail(prot->memory_allocated,
1092 amt << PAGE_SHIFT, &fail);
e1aab161
GC
1093 if (ret < 0)
1094 *parent_status = OVER_LIMIT;
1095}
1096
1097static inline void memcg_memory_allocated_sub(struct cg_proto *prot,
1098 unsigned long amt)
1099{
1100 res_counter_uncharge(prot->memory_allocated, amt << PAGE_SHIFT);
1101}
1102
1103static inline u64 memcg_memory_allocated_read(struct cg_proto *prot)
1104{
1105 u64 ret;
1106 ret = res_counter_read_u64(prot->memory_allocated, RES_USAGE);
1107 return ret >> PAGE_SHIFT;
1108}
1109
180d8cd9
GC
1110static inline long
1111sk_memory_allocated(const struct sock *sk)
1112{
1113 struct proto *prot = sk->sk_prot;
e1aab161
GC
1114 if (mem_cgroup_sockets_enabled && sk->sk_cgrp)
1115 return memcg_memory_allocated_read(sk->sk_cgrp);
1116
180d8cd9
GC
1117 return atomic_long_read(prot->memory_allocated);
1118}
1119
1120static inline long
e1aab161 1121sk_memory_allocated_add(struct sock *sk, int amt, int *parent_status)
180d8cd9
GC
1122{
1123 struct proto *prot = sk->sk_prot;
e1aab161
GC
1124
1125 if (mem_cgroup_sockets_enabled && sk->sk_cgrp) {
1126 memcg_memory_allocated_add(sk->sk_cgrp, amt, parent_status);
1127 /* update the root cgroup regardless */
1128 atomic_long_add_return(amt, prot->memory_allocated);
1129 return memcg_memory_allocated_read(sk->sk_cgrp);
1130 }
1131
180d8cd9
GC
1132 return atomic_long_add_return(amt, prot->memory_allocated);
1133}
1134
1135static inline void
0e90b31f 1136sk_memory_allocated_sub(struct sock *sk, int amt)
180d8cd9
GC
1137{
1138 struct proto *prot = sk->sk_prot;
e1aab161 1139
0e90b31f 1140 if (mem_cgroup_sockets_enabled && sk->sk_cgrp)
e1aab161
GC
1141 memcg_memory_allocated_sub(sk->sk_cgrp, amt);
1142
180d8cd9
GC
1143 atomic_long_sub(amt, prot->memory_allocated);
1144}
1145
1146static inline void sk_sockets_allocated_dec(struct sock *sk)
1147{
1148 struct proto *prot = sk->sk_prot;
e1aab161
GC
1149
1150 if (mem_cgroup_sockets_enabled && sk->sk_cgrp) {
1151 struct cg_proto *cg_proto = sk->sk_cgrp;
1152
1153 for (; cg_proto; cg_proto = parent_cg_proto(prot, cg_proto))
1154 percpu_counter_dec(cg_proto->sockets_allocated);
1155 }
1156
180d8cd9
GC
1157 percpu_counter_dec(prot->sockets_allocated);
1158}
1159
1160static inline void sk_sockets_allocated_inc(struct sock *sk)
1161{
1162 struct proto *prot = sk->sk_prot;
e1aab161
GC
1163
1164 if (mem_cgroup_sockets_enabled && sk->sk_cgrp) {
1165 struct cg_proto *cg_proto = sk->sk_cgrp;
1166
1167 for (; cg_proto; cg_proto = parent_cg_proto(prot, cg_proto))
1168 percpu_counter_inc(cg_proto->sockets_allocated);
1169 }
1170
180d8cd9
GC
1171 percpu_counter_inc(prot->sockets_allocated);
1172}
1173
1174static inline int
1175sk_sockets_allocated_read_positive(struct sock *sk)
1176{
1177 struct proto *prot = sk->sk_prot;
1178
e1aab161 1179 if (mem_cgroup_sockets_enabled && sk->sk_cgrp)
518fbf9c 1180 return percpu_counter_read_positive(sk->sk_cgrp->sockets_allocated);
e1aab161 1181
518fbf9c 1182 return percpu_counter_read_positive(prot->sockets_allocated);
180d8cd9
GC
1183}
1184
1185static inline int
1186proto_sockets_allocated_sum_positive(struct proto *prot)
1187{
1188 return percpu_counter_sum_positive(prot->sockets_allocated);
1189}
1190
1191static inline long
1192proto_memory_allocated(struct proto *prot)
1193{
1194 return atomic_long_read(prot->memory_allocated);
1195}
1196
1197static inline bool
1198proto_memory_pressure(struct proto *prot)
1199{
1200 if (!prot->memory_pressure)
1201 return false;
1202 return !!*prot->memory_pressure;
1203}
1204
65f76517
ED
1205
1206#ifdef CONFIG_PROC_FS
1da177e4 1207/* Called with local bh disabled */
c29a0bc4
PE
1208extern void sock_prot_inuse_add(struct net *net, struct proto *prot, int inc);
1209extern int sock_prot_inuse_get(struct net *net, struct proto *proto);
65f76517 1210#else
dc6b9b78 1211static inline void sock_prot_inuse_add(struct net *net, struct proto *prot,
c29a0bc4 1212 int inc)
65f76517
ED
1213{
1214}
65f76517
ED
1215#endif
1216
1da177e4 1217
614c6cb4
ACM
1218/* With per-bucket locks this operation is not-atomic, so that
1219 * this version is not worse.
1220 */
1221static inline void __sk_prot_rehash(struct sock *sk)
1222{
1223 sk->sk_prot->unhash(sk);
1224 sk->sk_prot->hash(sk);
1225}
1226
fcbdf09d
OP
1227void sk_prot_clear_portaddr_nulls(struct sock *sk, int size);
1228
1da177e4
LT
1229/* About 10 seconds */
1230#define SOCK_DESTROY_TIME (10*HZ)
1231
1232/* Sockets 0-1023 can't be bound to unless you are superuser */
1233#define PROT_SOCK 1024
1234
1235#define SHUTDOWN_MASK 3
1236#define RCV_SHUTDOWN 1
1237#define SEND_SHUTDOWN 2
1238
1239#define SOCK_SNDBUF_LOCK 1
1240#define SOCK_RCVBUF_LOCK 2
1241#define SOCK_BINDADDR_LOCK 4
1242#define SOCK_BINDPORT_LOCK 8
1243
1244/* sock_iocb: used to kick off async processing of socket ios */
1245struct sock_iocb {
1246 struct list_head list;
1247
1248 int flags;
1249 int size;
1250 struct socket *sock;
1251 struct sock *sk;
1252 struct scm_cookie *scm;
1253 struct msghdr *msg, async_msg;
1da177e4
LT
1254 struct kiocb *kiocb;
1255};
1256
1257static inline struct sock_iocb *kiocb_to_siocb(struct kiocb *iocb)
1258{
1259 return (struct sock_iocb *)iocb->private;
1260}
1261
1262static inline struct kiocb *siocb_to_kiocb(struct sock_iocb *si)
1263{
1264 return si->kiocb;
1265}
1266
1267struct socket_alloc {
1268 struct socket socket;
1269 struct inode vfs_inode;
1270};
1271
1272static inline struct socket *SOCKET_I(struct inode *inode)
1273{
1274 return &container_of(inode, struct socket_alloc, vfs_inode)->socket;
1275}
1276
1277static inline struct inode *SOCK_INODE(struct socket *socket)
1278{
1279 return &container_of(socket, struct socket_alloc, socket)->vfs_inode;
1280}
1281
3ab224be
HA
1282/*
1283 * Functions for memory accounting
1284 */
1285extern int __sk_mem_schedule(struct sock *sk, int size, int kind);
1286extern void __sk_mem_reclaim(struct sock *sk);
1da177e4 1287
3ab224be
HA
1288#define SK_MEM_QUANTUM ((int)PAGE_SIZE)
1289#define SK_MEM_QUANTUM_SHIFT ilog2(SK_MEM_QUANTUM)
1290#define SK_MEM_SEND 0
1291#define SK_MEM_RECV 1
1da177e4 1292
3ab224be 1293static inline int sk_mem_pages(int amt)
1da177e4 1294{
3ab224be 1295 return (amt + SK_MEM_QUANTUM - 1) >> SK_MEM_QUANTUM_SHIFT;
1da177e4
LT
1296}
1297
dc6b9b78 1298static inline bool sk_has_account(struct sock *sk)
1da177e4 1299{
3ab224be
HA
1300 /* return true if protocol supports memory accounting */
1301 return !!sk->sk_prot->memory_allocated;
1da177e4
LT
1302}
1303
dc6b9b78 1304static inline bool sk_wmem_schedule(struct sock *sk, int size)
1da177e4 1305{
3ab224be 1306 if (!sk_has_account(sk))
dc6b9b78 1307 return true;
3ab224be
HA
1308 return size <= sk->sk_forward_alloc ||
1309 __sk_mem_schedule(sk, size, SK_MEM_SEND);
1da177e4
LT
1310}
1311
dc6b9b78 1312static inline bool sk_rmem_schedule(struct sock *sk, int size)
d80d99d6 1313{
3ab224be 1314 if (!sk_has_account(sk))
dc6b9b78 1315 return true;
d80d99d6 1316 return size <= sk->sk_forward_alloc ||
3ab224be
HA
1317 __sk_mem_schedule(sk, size, SK_MEM_RECV);
1318}
1319
1320static inline void sk_mem_reclaim(struct sock *sk)
1321{
1322 if (!sk_has_account(sk))
1323 return;
1324 if (sk->sk_forward_alloc >= SK_MEM_QUANTUM)
1325 __sk_mem_reclaim(sk);
1326}
1327
9993e7d3
DM
1328static inline void sk_mem_reclaim_partial(struct sock *sk)
1329{
1330 if (!sk_has_account(sk))
1331 return;
1332 if (sk->sk_forward_alloc > SK_MEM_QUANTUM)
1333 __sk_mem_reclaim(sk);
1334}
1335
3ab224be
HA
1336static inline void sk_mem_charge(struct sock *sk, int size)
1337{
1338 if (!sk_has_account(sk))
1339 return;
1340 sk->sk_forward_alloc -= size;
1341}
1342
1343static inline void sk_mem_uncharge(struct sock *sk, int size)
1344{
1345 if (!sk_has_account(sk))
1346 return;
1347 sk->sk_forward_alloc += size;
1348}
1349
1350static inline void sk_wmem_free_skb(struct sock *sk, struct sk_buff *skb)
1351{
3ab224be
HA
1352 sock_set_flag(sk, SOCK_QUEUE_SHRUNK);
1353 sk->sk_wmem_queued -= skb->truesize;
1354 sk_mem_uncharge(sk, skb->truesize);
1355 __kfree_skb(skb);
d80d99d6
HX
1356}
1357
1da177e4
LT
1358/* Used by processes to "lock" a socket state, so that
1359 * interrupts and bottom half handlers won't change it
1360 * from under us. It essentially blocks any incoming
1361 * packets, so that we won't get any new data or any
1362 * packets that change the state of the socket.
1363 *
1364 * While locked, BH processing will add new packets to
1365 * the backlog queue. This queue is processed by the
1366 * owner of the socket lock right before it is released.
1367 *
1368 * Since ~2.3.5 it is also exclusive sleep lock serializing
1369 * accesses from user process context.
1370 */
d2e9117c 1371#define sock_owned_by_user(sk) ((sk)->sk_lock.owned)
1da177e4 1372
ed07536e
PZ
1373/*
1374 * Macro so as to not evaluate some arguments when
1375 * lockdep is not enabled.
1376 *
1377 * Mark both the sk_lock and the sk_lock.slock as a
1378 * per-address-family lock class.
1379 */
dc6b9b78 1380#define sock_lock_init_class_and_name(sk, sname, skey, name, key) \
ed07536e 1381do { \
e8f6fbf6 1382 sk->sk_lock.owned = 0; \
ed07536e
PZ
1383 init_waitqueue_head(&sk->sk_lock.wq); \
1384 spin_lock_init(&(sk)->sk_lock.slock); \
1385 debug_check_no_locks_freed((void *)&(sk)->sk_lock, \
1386 sizeof((sk)->sk_lock)); \
1387 lockdep_set_class_and_name(&(sk)->sk_lock.slock, \
dc6b9b78 1388 (skey), (sname)); \
ed07536e
PZ
1389 lockdep_init_map(&(sk)->sk_lock.dep_map, (name), (key), 0); \
1390} while (0)
1391
41380930 1392extern void lock_sock_nested(struct sock *sk, int subclass);
fcc70d5f
PZ
1393
1394static inline void lock_sock(struct sock *sk)
1395{
1396 lock_sock_nested(sk, 0);
1397}
1398
41380930 1399extern void release_sock(struct sock *sk);
1da177e4
LT
1400
1401/* BH context may only use the following locking interface. */
1402#define bh_lock_sock(__sk) spin_lock(&((__sk)->sk_lock.slock))
c6366184
IM
1403#define bh_lock_sock_nested(__sk) \
1404 spin_lock_nested(&((__sk)->sk_lock.slock), \
1405 SINGLE_DEPTH_NESTING)
1da177e4
LT
1406#define bh_unlock_sock(__sk) spin_unlock(&((__sk)->sk_lock.slock))
1407
8a74ad60
ED
1408extern bool lock_sock_fast(struct sock *sk);
1409/**
1410 * unlock_sock_fast - complement of lock_sock_fast
1411 * @sk: socket
1412 * @slow: slow mode
1413 *
1414 * fast unlock socket for user context.
1415 * If slow mode is on, we call regular release_sock()
1416 */
1417static inline void unlock_sock_fast(struct sock *sk, bool slow)
4b0b72f7 1418{
8a74ad60
ED
1419 if (slow)
1420 release_sock(sk);
1421 else
1422 spin_unlock_bh(&sk->sk_lock.slock);
4b0b72f7
ED
1423}
1424
4b0b72f7 1425
1b8d7ae4 1426extern struct sock *sk_alloc(struct net *net, int family,
dd0fc66f 1427 gfp_t priority,
6257ff21 1428 struct proto *prot);
1da177e4 1429extern void sk_free(struct sock *sk);
edf02087 1430extern void sk_release_kernel(struct sock *sk);
e56c57d0
ED
1431extern struct sock *sk_clone_lock(const struct sock *sk,
1432 const gfp_t priority);
1da177e4
LT
1433
1434extern struct sk_buff *sock_wmalloc(struct sock *sk,
1435 unsigned long size, int force,
dd0fc66f 1436 gfp_t priority);
1da177e4
LT
1437extern struct sk_buff *sock_rmalloc(struct sock *sk,
1438 unsigned long size, int force,
dd0fc66f 1439 gfp_t priority);
1da177e4
LT
1440extern void sock_wfree(struct sk_buff *skb);
1441extern void sock_rfree(struct sk_buff *skb);
41063e9d 1442extern void sock_edemux(struct sk_buff *skb);
1da177e4
LT
1443
1444extern int sock_setsockopt(struct socket *sock, int level,
1445 int op, char __user *optval,
b7058842 1446 unsigned int optlen);
1da177e4
LT
1447
1448extern int sock_getsockopt(struct socket *sock, int level,
dc6b9b78 1449 int op, char __user *optval,
1da177e4 1450 int __user *optlen);
dc6b9b78 1451extern struct sk_buff *sock_alloc_send_skb(struct sock *sk,
1da177e4
LT
1452 unsigned long size,
1453 int noblock,
1454 int *errcode);
dc6b9b78 1455extern struct sk_buff *sock_alloc_send_pskb(struct sock *sk,
4cc7f68d
HX
1456 unsigned long header_len,
1457 unsigned long data_len,
1458 int noblock,
1459 int *errcode);
86a76caf 1460extern void *sock_kmalloc(struct sock *sk, int size,
dd0fc66f 1461 gfp_t priority);
1da177e4
LT
1462extern void sock_kfree_s(struct sock *sk, void *mem, int size);
1463extern void sk_send_sigurg(struct sock *sk);
1464
f8451725
HX
1465#ifdef CONFIG_CGROUPS
1466extern void sock_update_classid(struct sock *sk);
1467#else
1468static inline void sock_update_classid(struct sock *sk)
1469{
1470}
1471#endif
1472
1da177e4
LT
1473/*
1474 * Functions to fill in entries in struct proto_ops when a protocol
1475 * does not implement a particular function.
1476 */
dc6b9b78 1477extern int sock_no_bind(struct socket *,
1da177e4
LT
1478 struct sockaddr *, int);
1479extern int sock_no_connect(struct socket *,
1480 struct sockaddr *, int, int);
1481extern int sock_no_socketpair(struct socket *,
1482 struct socket *);
1483extern int sock_no_accept(struct socket *,
1484 struct socket *, int);
1485extern int sock_no_getname(struct socket *,
1486 struct sockaddr *, int *, int);
1487extern unsigned int sock_no_poll(struct file *, struct socket *,
1488 struct poll_table_struct *);
1489extern int sock_no_ioctl(struct socket *, unsigned int,
1490 unsigned long);
1491extern int sock_no_listen(struct socket *, int);
1492extern int sock_no_shutdown(struct socket *, int);
1493extern int sock_no_getsockopt(struct socket *, int , int,
1494 char __user *, int __user *);
1495extern int sock_no_setsockopt(struct socket *, int, int,
b7058842 1496 char __user *, unsigned int);
1da177e4
LT
1497extern int sock_no_sendmsg(struct kiocb *, struct socket *,
1498 struct msghdr *, size_t);
1499extern int sock_no_recvmsg(struct kiocb *, struct socket *,
1500 struct msghdr *, size_t, int);
1501extern int sock_no_mmap(struct file *file,
1502 struct socket *sock,
1503 struct vm_area_struct *vma);
1504extern ssize_t sock_no_sendpage(struct socket *sock,
1505 struct page *page,
dc6b9b78 1506 int offset, size_t size,
1da177e4
LT
1507 int flags);
1508
1509/*
1510 * Functions to fill in entries in struct proto_ops when a protocol
1511 * uses the inet style.
1512 */
1513extern int sock_common_getsockopt(struct socket *sock, int level, int optname,
1514 char __user *optval, int __user *optlen);
1515extern int sock_common_recvmsg(struct kiocb *iocb, struct socket *sock,
1516 struct msghdr *msg, size_t size, int flags);
1517extern int sock_common_setsockopt(struct socket *sock, int level, int optname,
b7058842 1518 char __user *optval, unsigned int optlen);
3fdadf7d
DM
1519extern int compat_sock_common_getsockopt(struct socket *sock, int level,
1520 int optname, char __user *optval, int __user *optlen);
1521extern int compat_sock_common_setsockopt(struct socket *sock, int level,
b7058842 1522 int optname, char __user *optval, unsigned int optlen);
1da177e4
LT
1523
1524extern void sk_common_release(struct sock *sk);
1525
1526/*
1527 * Default socket callbacks and setup code
1528 */
dc6b9b78 1529
1da177e4
LT
1530/* Initialise core socket variables */
1531extern void sock_init_data(struct socket *sock, struct sock *sk);
1532
46bcf14f
ED
1533extern void sk_filter_release_rcu(struct rcu_head *rcu);
1534
dc9b3346 1535/**
1a5778aa 1536 * sk_filter_release - release a socket filter
dc9b3346
PB
1537 * @fp: filter to remove
1538 *
1539 * Remove a filter from a socket and release its resources.
1540 */
1541
309dd5fc
PE
1542static inline void sk_filter_release(struct sk_filter *fp)
1543{
1544 if (atomic_dec_and_test(&fp->refcnt))
80f8f102 1545 call_rcu(&fp->rcu, sk_filter_release_rcu);
309dd5fc
PE
1546}
1547
1548static inline void sk_filter_uncharge(struct sock *sk, struct sk_filter *fp)
1da177e4
LT
1549{
1550 unsigned int size = sk_filter_len(fp);
1551
1552 atomic_sub(size, &sk->sk_omem_alloc);
309dd5fc 1553 sk_filter_release(fp);
1da177e4
LT
1554}
1555
1556static inline void sk_filter_charge(struct sock *sk, struct sk_filter *fp)
1557{
1558 atomic_inc(&fp->refcnt);
1559 atomic_add(sk_filter_len(fp), &sk->sk_omem_alloc);
1560}
1561
1562/*
1563 * Socket reference counting postulates.
1564 *
1565 * * Each user of socket SHOULD hold a reference count.
1566 * * Each access point to socket (an hash table bucket, reference from a list,
1567 * running timer, skb in flight MUST hold a reference count.
1568 * * When reference count hits 0, it means it will never increase back.
1569 * * When reference count hits 0, it means that no references from
1570 * outside exist to this socket and current process on current CPU
1571 * is last user and may/should destroy this socket.
1572 * * sk_free is called from any context: process, BH, IRQ. When
1573 * it is called, socket has no references from outside -> sk_free
1574 * may release descendant resources allocated by the socket, but
1575 * to the time when it is called, socket is NOT referenced by any
1576 * hash tables, lists etc.
1577 * * Packets, delivered from outside (from network or from another process)
1578 * and enqueued on receive/error queues SHOULD NOT grab reference count,
1579 * when they sit in queue. Otherwise, packets will leak to hole, when
1580 * socket is looked up by one cpu and unhasing is made by another CPU.
1581 * It is true for udp/raw, netlink (leak to receive and error queues), tcp
1582 * (leak to backlog). Packet socket does all the processing inside
1583 * BR_NETPROTO_LOCK, so that it has not this race condition. UNIX sockets
1584 * use separate SMP lock, so that they are prone too.
1585 */
1586
1587/* Ungrab socket and destroy it, if it was the last reference. */
1588static inline void sock_put(struct sock *sk)
1589{
1590 if (atomic_dec_and_test(&sk->sk_refcnt))
1591 sk_free(sk);
1592}
1593
58a5a7b9
ACM
1594extern int sk_receive_skb(struct sock *sk, struct sk_buff *skb,
1595 const int nested);
25995ff5 1596
e022f0b4
KK
1597static inline void sk_tx_queue_set(struct sock *sk, int tx_queue)
1598{
1599 sk->sk_tx_queue_mapping = tx_queue;
1600}
1601
1602static inline void sk_tx_queue_clear(struct sock *sk)
1603{
1604 sk->sk_tx_queue_mapping = -1;
1605}
1606
1607static inline int sk_tx_queue_get(const struct sock *sk)
1608{
b0f77d0e 1609 return sk ? sk->sk_tx_queue_mapping : -1;
e022f0b4
KK
1610}
1611
972692e0
DM
1612static inline void sk_set_socket(struct sock *sk, struct socket *sock)
1613{
e022f0b4 1614 sk_tx_queue_clear(sk);
972692e0
DM
1615 sk->sk_socket = sock;
1616}
1617
aa395145
ED
1618static inline wait_queue_head_t *sk_sleep(struct sock *sk)
1619{
eaefd110
ED
1620 BUILD_BUG_ON(offsetof(struct socket_wq, wait) != 0);
1621 return &rcu_dereference_raw(sk->sk_wq)->wait;
aa395145 1622}
1da177e4
LT
1623/* Detach socket from process context.
1624 * Announce socket dead, detach it from wait queue and inode.
1625 * Note that parent inode held reference count on this struct sock,
1626 * we do not release it in this function, because protocol
1627 * probably wants some additional cleanups or even continuing
1628 * to work with this socket (TCP).
1629 */
1630static inline void sock_orphan(struct sock *sk)
1631{
1632 write_lock_bh(&sk->sk_callback_lock);
1633 sock_set_flag(sk, SOCK_DEAD);
972692e0 1634 sk_set_socket(sk, NULL);
43815482 1635 sk->sk_wq = NULL;
1da177e4
LT
1636 write_unlock_bh(&sk->sk_callback_lock);
1637}
1638
1639static inline void sock_graft(struct sock *sk, struct socket *parent)
1640{
1641 write_lock_bh(&sk->sk_callback_lock);
eaefd110 1642 sk->sk_wq = parent->wq;
1da177e4 1643 parent->sk = sk;
972692e0 1644 sk_set_socket(sk, parent);
4237c75c 1645 security_sock_graft(sk, parent);
1da177e4
LT
1646 write_unlock_bh(&sk->sk_callback_lock);
1647}
1648
1649extern int sock_i_uid(struct sock *sk);
1650extern unsigned long sock_i_ino(struct sock *sk);
1651
1652static inline struct dst_entry *
1653__sk_dst_get(struct sock *sk)
1654{
d8bf4ca9 1655 return rcu_dereference_check(sk->sk_dst_cache, sock_owned_by_user(sk) ||
f68c224f 1656 lockdep_is_held(&sk->sk_lock.slock));
1da177e4
LT
1657}
1658
1659static inline struct dst_entry *
1660sk_dst_get(struct sock *sk)
1661{
1662 struct dst_entry *dst;
1663
b6c6712a
ED
1664 rcu_read_lock();
1665 dst = rcu_dereference(sk->sk_dst_cache);
1da177e4
LT
1666 if (dst)
1667 dst_hold(dst);
b6c6712a 1668 rcu_read_unlock();
1da177e4
LT
1669 return dst;
1670}
1671
b6c6712a
ED
1672extern void sk_reset_txq(struct sock *sk);
1673
1674static inline void dst_negative_advice(struct sock *sk)
1675{
1676 struct dst_entry *ndst, *dst = __sk_dst_get(sk);
1677
1678 if (dst && dst->ops->negative_advice) {
1679 ndst = dst->ops->negative_advice(dst);
1680
1681 if (ndst != dst) {
1682 rcu_assign_pointer(sk->sk_dst_cache, ndst);
1683 sk_reset_txq(sk);
1684 }
1685 }
1686}
1687
1da177e4
LT
1688static inline void
1689__sk_dst_set(struct sock *sk, struct dst_entry *dst)
1690{
1691 struct dst_entry *old_dst;
1692
e022f0b4 1693 sk_tx_queue_clear(sk);
0b53ff2e
ED
1694 /*
1695 * This can be called while sk is owned by the caller only,
1696 * with no state that can be checked in a rcu_dereference_check() cond
1697 */
1698 old_dst = rcu_dereference_raw(sk->sk_dst_cache);
b6c6712a 1699 rcu_assign_pointer(sk->sk_dst_cache, dst);
1da177e4
LT
1700 dst_release(old_dst);
1701}
1702
1703static inline void
1704sk_dst_set(struct sock *sk, struct dst_entry *dst)
1705{
b6c6712a 1706 spin_lock(&sk->sk_dst_lock);
1da177e4 1707 __sk_dst_set(sk, dst);
b6c6712a 1708 spin_unlock(&sk->sk_dst_lock);
1da177e4
LT
1709}
1710
1711static inline void
1712__sk_dst_reset(struct sock *sk)
1713{
b6c6712a 1714 __sk_dst_set(sk, NULL);
1da177e4
LT
1715}
1716
1717static inline void
1718sk_dst_reset(struct sock *sk)
1719{
b6c6712a 1720 spin_lock(&sk->sk_dst_lock);
1da177e4 1721 __sk_dst_reset(sk);
b6c6712a 1722 spin_unlock(&sk->sk_dst_lock);
1da177e4
LT
1723}
1724
f0088a50 1725extern struct dst_entry *__sk_dst_check(struct sock *sk, u32 cookie);
1da177e4 1726
f0088a50 1727extern struct dst_entry *sk_dst_check(struct sock *sk, u32 cookie);
1da177e4 1728
dc6b9b78 1729static inline bool sk_can_gso(const struct sock *sk)
bcd76111
HX
1730{
1731 return net_gso_ok(sk->sk_route_caps, sk->sk_gso_type);
1732}
1733
9958089a 1734extern void sk_setup_caps(struct sock *sk, struct dst_entry *dst);
6cbb0df7 1735
c8f44aff 1736static inline void sk_nocaps_add(struct sock *sk, netdev_features_t flags)
a465419b
ED
1737{
1738 sk->sk_route_nocaps |= flags;
1739 sk->sk_route_caps &= ~flags;
1740}
1741
c6e1a0d1
TH
1742static inline int skb_do_copy_data_nocache(struct sock *sk, struct sk_buff *skb,
1743 char __user *from, char *to,
912d398d 1744 int copy, int offset)
c6e1a0d1
TH
1745{
1746 if (skb->ip_summed == CHECKSUM_NONE) {
1747 int err = 0;
1748 __wsum csum = csum_and_copy_from_user(from, to, copy, 0, &err);
1749 if (err)
1750 return err;
912d398d 1751 skb->csum = csum_block_add(skb->csum, csum, offset);
c6e1a0d1
TH
1752 } else if (sk->sk_route_caps & NETIF_F_NOCACHE_COPY) {
1753 if (!access_ok(VERIFY_READ, from, copy) ||
1754 __copy_from_user_nocache(to, from, copy))
1755 return -EFAULT;
1756 } else if (copy_from_user(to, from, copy))
1757 return -EFAULT;
1758
1759 return 0;
1760}
1761
1762static inline int skb_add_data_nocache(struct sock *sk, struct sk_buff *skb,
1763 char __user *from, int copy)
1764{
912d398d 1765 int err, offset = skb->len;
c6e1a0d1 1766
912d398d
WY
1767 err = skb_do_copy_data_nocache(sk, skb, from, skb_put(skb, copy),
1768 copy, offset);
c6e1a0d1 1769 if (err)
912d398d 1770 __skb_trim(skb, offset);
c6e1a0d1
TH
1771
1772 return err;
1773}
1774
1775static inline int skb_copy_to_page_nocache(struct sock *sk, char __user *from,
1776 struct sk_buff *skb,
1777 struct page *page,
1778 int off, int copy)
1779{
1780 int err;
1781
912d398d
WY
1782 err = skb_do_copy_data_nocache(sk, skb, from, page_address(page) + off,
1783 copy, skb->len);
c6e1a0d1
TH
1784 if (err)
1785 return err;
1786
1787 skb->len += copy;
1788 skb->data_len += copy;
1789 skb->truesize += copy;
1790 sk->sk_wmem_queued += copy;
1791 sk_mem_charge(sk, copy);
1792 return 0;
1793}
1794
1da177e4
LT
1795static inline int skb_copy_to_page(struct sock *sk, char __user *from,
1796 struct sk_buff *skb, struct page *page,
1797 int off, int copy)
1798{
1799 if (skb->ip_summed == CHECKSUM_NONE) {
1800 int err = 0;
5084205f 1801 __wsum csum = csum_and_copy_from_user(from,
1da177e4
LT
1802 page_address(page) + off,
1803 copy, 0, &err);
1804 if (err)
1805 return err;
1806 skb->csum = csum_block_add(skb->csum, csum, skb->len);
1807 } else if (copy_from_user(page_address(page) + off, from, copy))
1808 return -EFAULT;
1809
1810 skb->len += copy;
1811 skb->data_len += copy;
1812 skb->truesize += copy;
1813 sk->sk_wmem_queued += copy;
3ab224be 1814 sk_mem_charge(sk, copy);
1da177e4
LT
1815 return 0;
1816}
1817
c564039f
ED
1818/**
1819 * sk_wmem_alloc_get - returns write allocations
1820 * @sk: socket
1821 *
1822 * Returns sk_wmem_alloc minus initial offset of one
1823 */
1824static inline int sk_wmem_alloc_get(const struct sock *sk)
1825{
1826 return atomic_read(&sk->sk_wmem_alloc) - 1;
1827}
1828
1829/**
1830 * sk_rmem_alloc_get - returns read allocations
1831 * @sk: socket
1832 *
1833 * Returns sk_rmem_alloc
1834 */
1835static inline int sk_rmem_alloc_get(const struct sock *sk)
1836{
1837 return atomic_read(&sk->sk_rmem_alloc);
1838}
1839
1840/**
1841 * sk_has_allocations - check if allocations are outstanding
1842 * @sk: socket
1843 *
1844 * Returns true if socket has write or read allocations
1845 */
dc6b9b78 1846static inline bool sk_has_allocations(const struct sock *sk)
c564039f
ED
1847{
1848 return sk_wmem_alloc_get(sk) || sk_rmem_alloc_get(sk);
1849}
1850
a57de0b4 1851/**
43815482 1852 * wq_has_sleeper - check if there are any waiting processes
acfbe96a 1853 * @wq: struct socket_wq
a57de0b4 1854 *
43815482 1855 * Returns true if socket_wq has waiting processes
a57de0b4 1856 *
43815482 1857 * The purpose of the wq_has_sleeper and sock_poll_wait is to wrap the memory
a57de0b4
JO
1858 * barrier call. They were added due to the race found within the tcp code.
1859 *
1860 * Consider following tcp code paths:
1861 *
1862 * CPU1 CPU2
1863 *
1864 * sys_select receive packet
1865 * ... ...
1866 * __add_wait_queue update tp->rcv_nxt
1867 * ... ...
1868 * tp->rcv_nxt check sock_def_readable
1869 * ... {
43815482
ED
1870 * schedule rcu_read_lock();
1871 * wq = rcu_dereference(sk->sk_wq);
1872 * if (wq && waitqueue_active(&wq->wait))
1873 * wake_up_interruptible(&wq->wait)
a57de0b4
JO
1874 * ...
1875 * }
1876 *
1877 * The race for tcp fires when the __add_wait_queue changes done by CPU1 stay
1878 * in its cache, and so does the tp->rcv_nxt update on CPU2 side. The CPU1
1879 * could then endup calling schedule and sleep forever if there are no more
1880 * data on the socket.
ad462769 1881 *
a57de0b4 1882 */
43815482 1883static inline bool wq_has_sleeper(struct socket_wq *wq)
a57de0b4 1884{
dc6b9b78 1885 /* We need to be sure we are in sync with the
a57de0b4
JO
1886 * add_wait_queue modifications to the wait queue.
1887 *
1888 * This memory barrier is paired in the sock_poll_wait.
1889 */
43815482
ED
1890 smp_mb();
1891 return wq && waitqueue_active(&wq->wait);
a57de0b4
JO
1892}
1893
1894/**
1895 * sock_poll_wait - place memory barrier behind the poll_wait call.
1896 * @filp: file
1897 * @wait_address: socket wait queue
1898 * @p: poll_table
1899 *
43815482 1900 * See the comments in the wq_has_sleeper function.
a57de0b4
JO
1901 */
1902static inline void sock_poll_wait(struct file *filp,
1903 wait_queue_head_t *wait_address, poll_table *p)
1904{
626cf236 1905 if (!poll_does_not_wait(p) && wait_address) {
a57de0b4 1906 poll_wait(filp, wait_address, p);
dc6b9b78 1907 /* We need to be sure we are in sync with the
a57de0b4
JO
1908 * socket flags modification.
1909 *
43815482 1910 * This memory barrier is paired in the wq_has_sleeper.
dc6b9b78 1911 */
a57de0b4
JO
1912 smp_mb();
1913 }
1914}
1915
1da177e4 1916/*
dc6b9b78 1917 * Queue a received datagram if it will fit. Stream and sequenced
1da177e4
LT
1918 * protocols can't normally use this as they need to fit buffers in
1919 * and play with them.
1920 *
dc6b9b78 1921 * Inlined as it's very short and called for pretty much every
1da177e4
LT
1922 * packet ever received.
1923 */
1924
1925static inline void skb_set_owner_w(struct sk_buff *skb, struct sock *sk)
1926{
d55d87fd 1927 skb_orphan(skb);
1da177e4
LT
1928 skb->sk = sk;
1929 skb->destructor = sock_wfree;
2b85a34e
ED
1930 /*
1931 * We used to take a refcount on sk, but following operation
1932 * is enough to guarantee sk_free() wont free this sock until
1933 * all in-flight packets are completed
1934 */
1da177e4
LT
1935 atomic_add(skb->truesize, &sk->sk_wmem_alloc);
1936}
1937
1938static inline void skb_set_owner_r(struct sk_buff *skb, struct sock *sk)
1939{
d55d87fd 1940 skb_orphan(skb);
1da177e4
LT
1941 skb->sk = sk;
1942 skb->destructor = sock_rfree;
1943 atomic_add(skb->truesize, &sk->sk_rmem_alloc);
3ab224be 1944 sk_mem_charge(sk, skb->truesize);
1da177e4
LT
1945}
1946
dc6b9b78 1947extern void sk_reset_timer(struct sock *sk, struct timer_list *timer,
1da177e4
LT
1948 unsigned long expires);
1949
dc6b9b78 1950extern void sk_stop_timer(struct sock *sk, struct timer_list *timer);
1da177e4 1951
f0088a50 1952extern int sock_queue_rcv_skb(struct sock *sk, struct sk_buff *skb);
1da177e4 1953
b1faf566 1954extern int sock_queue_err_skb(struct sock *sk, struct sk_buff *skb);
1da177e4
LT
1955
1956/*
1957 * Recover an error report and clear atomically
1958 */
dc6b9b78 1959
1da177e4
LT
1960static inline int sock_error(struct sock *sk)
1961{
c1cbe4b7
BL
1962 int err;
1963 if (likely(!sk->sk_err))
1964 return 0;
1965 err = xchg(&sk->sk_err, 0);
1da177e4
LT
1966 return -err;
1967}
1968
1969static inline unsigned long sock_wspace(struct sock *sk)
1970{
1971 int amt = 0;
1972
1973 if (!(sk->sk_shutdown & SEND_SHUTDOWN)) {
1974 amt = sk->sk_sndbuf - atomic_read(&sk->sk_wmem_alloc);
dc6b9b78 1975 if (amt < 0)
1da177e4
LT
1976 amt = 0;
1977 }
1978 return amt;
1979}
1980
1981static inline void sk_wake_async(struct sock *sk, int how, int band)
1982{
bcdce719 1983 if (sock_flag(sk, SOCK_FASYNC))
1da177e4
LT
1984 sock_wake_async(sk->sk_socket, how, band);
1985}
1986
1987#define SOCK_MIN_SNDBUF 2048
7a91b434
ED
1988/*
1989 * Since sk_rmem_alloc sums skb->truesize, even a small frame might need
1990 * sizeof(sk_buff) + MTU + padding, unless net driver perform copybreak
1991 */
1992#define SOCK_MIN_RCVBUF (2048 + sizeof(struct sk_buff))
1da177e4
LT
1993
1994static inline void sk_stream_moderate_sndbuf(struct sock *sk)
1995{
1996 if (!(sk->sk_userlocks & SOCK_SNDBUF_LOCK)) {
8df09ea3 1997 sk->sk_sndbuf = min(sk->sk_sndbuf, sk->sk_wmem_queued >> 1);
1da177e4
LT
1998 sk->sk_sndbuf = max(sk->sk_sndbuf, SOCK_MIN_SNDBUF);
1999 }
2000}
2001
df97c708 2002struct sk_buff *sk_stream_alloc_skb(struct sock *sk, int size, gfp_t gfp);
1da177e4
LT
2003
2004static inline struct page *sk_stream_alloc_page(struct sock *sk)
2005{
2006 struct page *page = NULL;
2007
ef015786
HX
2008 page = alloc_pages(sk->sk_allocation, 0);
2009 if (!page) {
180d8cd9 2010 sk_enter_memory_pressure(sk);
1da177e4
LT
2011 sk_stream_moderate_sndbuf(sk);
2012 }
2013 return page;
2014}
2015
1da177e4
LT
2016/*
2017 * Default write policy as shown to user space via poll/select/SIGIO
2018 */
dc6b9b78 2019static inline bool sock_writeable(const struct sock *sk)
1da177e4 2020{
8df09ea3 2021 return atomic_read(&sk->sk_wmem_alloc) < (sk->sk_sndbuf >> 1);
1da177e4
LT
2022}
2023
dd0fc66f 2024static inline gfp_t gfp_any(void)
1da177e4 2025{
99709372 2026 return in_softirq() ? GFP_ATOMIC : GFP_KERNEL;
1da177e4
LT
2027}
2028
dc6b9b78 2029static inline long sock_rcvtimeo(const struct sock *sk, bool noblock)
1da177e4
LT
2030{
2031 return noblock ? 0 : sk->sk_rcvtimeo;
2032}
2033
dc6b9b78 2034static inline long sock_sndtimeo(const struct sock *sk, bool noblock)
1da177e4
LT
2035{
2036 return noblock ? 0 : sk->sk_sndtimeo;
2037}
2038
2039static inline int sock_rcvlowat(const struct sock *sk, int waitall, int len)
2040{
2041 return (waitall ? len : min_t(int, sk->sk_rcvlowat, len)) ? : 1;
2042}
2043
2044/* Alas, with timeout socket operations are not restartable.
2045 * Compare this to poll().
2046 */
2047static inline int sock_intr_errno(long timeo)
2048{
2049 return timeo == MAX_SCHEDULE_TIMEOUT ? -ERESTARTSYS : -EINTR;
2050}
2051
92f37fd2
ED
2052extern void __sock_recv_timestamp(struct msghdr *msg, struct sock *sk,
2053 struct sk_buff *skb);
6e3e939f
JB
2054extern void __sock_recv_wifi_status(struct msghdr *msg, struct sock *sk,
2055 struct sk_buff *skb);
92f37fd2 2056
dc6b9b78 2057static inline void
1da177e4
LT
2058sock_recv_timestamp(struct msghdr *msg, struct sock *sk, struct sk_buff *skb)
2059{
b7aa0bf7 2060 ktime_t kt = skb->tstamp;
20d49473 2061 struct skb_shared_hwtstamps *hwtstamps = skb_hwtstamps(skb);
a61bbcf2 2062
20d49473
PO
2063 /*
2064 * generate control messages if
2065 * - receive time stamping in software requested (SOCK_RCVTSTAMP
2066 * or SOCK_TIMESTAMPING_RX_SOFTWARE)
2067 * - software time stamp available and wanted
2068 * (SOCK_TIMESTAMPING_SOFTWARE)
2069 * - hardware time stamps available and wanted
2070 * (SOCK_TIMESTAMPING_SYS_HARDWARE or
2071 * SOCK_TIMESTAMPING_RAW_HARDWARE)
2072 */
2073 if (sock_flag(sk, SOCK_RCVTSTAMP) ||
2074 sock_flag(sk, SOCK_TIMESTAMPING_RX_SOFTWARE) ||
2075 (kt.tv64 && sock_flag(sk, SOCK_TIMESTAMPING_SOFTWARE)) ||
2076 (hwtstamps->hwtstamp.tv64 &&
2077 sock_flag(sk, SOCK_TIMESTAMPING_RAW_HARDWARE)) ||
2078 (hwtstamps->syststamp.tv64 &&
2079 sock_flag(sk, SOCK_TIMESTAMPING_SYS_HARDWARE)))
92f37fd2
ED
2080 __sock_recv_timestamp(msg, sk, skb);
2081 else
b7aa0bf7 2082 sk->sk_stamp = kt;
6e3e939f
JB
2083
2084 if (sock_flag(sk, SOCK_WIFI_STATUS) && skb->wifi_acked_valid)
2085 __sock_recv_wifi_status(msg, sk, skb);
1da177e4
LT
2086}
2087
767dd033
ED
2088extern void __sock_recv_ts_and_drops(struct msghdr *msg, struct sock *sk,
2089 struct sk_buff *skb);
2090
2091static inline void sock_recv_ts_and_drops(struct msghdr *msg, struct sock *sk,
2092 struct sk_buff *skb)
2093{
2094#define FLAGS_TS_OR_DROPS ((1UL << SOCK_RXQ_OVFL) | \
2095 (1UL << SOCK_RCVTSTAMP) | \
2096 (1UL << SOCK_TIMESTAMPING_RX_SOFTWARE) | \
2097 (1UL << SOCK_TIMESTAMPING_SOFTWARE) | \
dc6b9b78 2098 (1UL << SOCK_TIMESTAMPING_RAW_HARDWARE) | \
767dd033
ED
2099 (1UL << SOCK_TIMESTAMPING_SYS_HARDWARE))
2100
2101 if (sk->sk_flags & FLAGS_TS_OR_DROPS)
2102 __sock_recv_ts_and_drops(msg, sk, skb);
2103 else
2104 sk->sk_stamp = skb->tstamp;
2105}
3b885787 2106
20d49473
PO
2107/**
2108 * sock_tx_timestamp - checks whether the outgoing packet is to be time stamped
20d49473 2109 * @sk: socket sending this packet
2244d07b 2110 * @tx_flags: filled with instructions for time stamping
20d49473
PO
2111 *
2112 * Currently only depends on SOCK_TIMESTAMPING* flags. Returns error code if
2113 * parameters are invalid.
2114 */
2244d07b 2115extern int sock_tx_timestamp(struct sock *sk, __u8 *tx_flags);
20d49473 2116
1da177e4
LT
2117/**
2118 * sk_eat_skb - Release a skb if it is no longer needed
4dc3b16b
PP
2119 * @sk: socket to eat this skb from
2120 * @skb: socket buffer to eat
f4b8ea78 2121 * @copied_early: flag indicating whether DMA operations copied this data early
1da177e4
LT
2122 *
2123 * This routine must be called with interrupts disabled or with the socket
2124 * locked so that the sk_buff queue operation is ok.
2125*/
624d1164 2126#ifdef CONFIG_NET_DMA
dc6b9b78 2127static inline void sk_eat_skb(struct sock *sk, struct sk_buff *skb, bool copied_early)
624d1164
CL
2128{
2129 __skb_unlink(skb, &sk->sk_receive_queue);
2130 if (!copied_early)
2131 __kfree_skb(skb);
2132 else
2133 __skb_queue_tail(&sk->sk_async_wait_queue, skb);
2134}
2135#else
dc6b9b78 2136static inline void sk_eat_skb(struct sock *sk, struct sk_buff *skb, bool copied_early)
1da177e4
LT
2137{
2138 __skb_unlink(skb, &sk->sk_receive_queue);
2139 __kfree_skb(skb);
2140}
624d1164 2141#endif
1da177e4 2142
3b1e0a65
YH
2143static inline
2144struct net *sock_net(const struct sock *sk)
2145{
c2d9ba9b 2146 return read_pnet(&sk->sk_net);
3b1e0a65
YH
2147}
2148
2149static inline
f5aa23fd 2150void sock_net_set(struct sock *sk, struct net *net)
3b1e0a65 2151{
c2d9ba9b 2152 write_pnet(&sk->sk_net, net);
3b1e0a65
YH
2153}
2154
edf02087
DL
2155/*
2156 * Kernel sockets, f.e. rtnl or icmp_socket, are a part of a namespace.
25985edc 2157 * They should not hold a reference to a namespace in order to allow
edf02087
DL
2158 * to stop it.
2159 * Sockets after sk_change_net should be released using sk_release_kernel
2160 */
2161static inline void sk_change_net(struct sock *sk, struct net *net)
2162{
3b1e0a65 2163 put_net(sock_net(sk));
65a18ec5 2164 sock_net_set(sk, hold_net(net));
edf02087
DL
2165}
2166
23542618
KK
2167static inline struct sock *skb_steal_sock(struct sk_buff *skb)
2168{
efc27f8c 2169 if (skb->sk) {
23542618
KK
2170 struct sock *sk = skb->sk;
2171
2172 skb->destructor = NULL;
2173 skb->sk = NULL;
2174 return sk;
2175 }
2176 return NULL;
2177}
2178
20d49473 2179extern void sock_enable_timestamp(struct sock *sk, int flag);
1da177e4 2180extern int sock_get_timestamp(struct sock *, struct timeval __user *);
ae40eb1e 2181extern int sock_get_timestampns(struct sock *, struct timespec __user *);
1da177e4 2182
dc6b9b78
ED
2183/*
2184 * Enable debug/info messages
1da177e4 2185 */
a2a316fd
SH
2186extern int net_msg_warn;
2187#define NETDEBUG(fmt, args...) \
2188 do { if (net_msg_warn) printk(fmt,##args); } while (0)
1da177e4 2189
a2a316fd
SH
2190#define LIMIT_NETDEBUG(fmt, args...) \
2191 do { if (net_msg_warn && net_ratelimit()) printk(fmt,##args); } while(0)
1da177e4 2192
1da177e4
LT
2193extern __u32 sysctl_wmem_max;
2194extern __u32 sysctl_rmem_max;
2195
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2196extern void sk_init(void);
2197
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2198extern int sysctl_optmem_max;
2199
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2200extern __u32 sysctl_wmem_default;
2201extern __u32 sysctl_rmem_default;
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1da177e4 2203#endif /* _SOCK_H */
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