Merge git://git.samba.org/sfrench/cifs-2.6
[deliverable/linux.git] / net / ipv4 / inetpeer.c
CommitLineData
1da177e4
LT
1/*
2 * INETPEER - A storage for permanent information about peers
3 *
4 * This source is covered by the GNU GPL, the same as all kernel sources.
5 *
1da177e4
LT
6 * Authors: Andrey V. Savochkin <saw@msu.ru>
7 */
8
9#include <linux/module.h>
10#include <linux/types.h>
11#include <linux/slab.h>
12#include <linux/interrupt.h>
13#include <linux/spinlock.h>
14#include <linux/random.h>
1da177e4
LT
15#include <linux/timer.h>
16#include <linux/time.h>
17#include <linux/kernel.h>
18#include <linux/mm.h>
19#include <linux/net.h>
5faa5df1 20#include <linux/workqueue.h>
20380731 21#include <net/ip.h>
1da177e4 22#include <net/inetpeer.h>
6e5714ea 23#include <net/secure_seq.h>
1da177e4
LT
24
25/*
26 * Theory of operations.
27 * We keep one entry for each peer IP address. The nodes contains long-living
28 * information about the peer which doesn't depend on routes.
29 * At this moment this information consists only of ID field for the next
30 * outgoing IP packet. This field is incremented with each packet as encoded
31 * in inet_getid() function (include/net/inetpeer.h).
32 * At the moment of writing this notes identifier of IP packets is generated
33 * to be unpredictable using this code only for packets subjected
34 * (actually or potentially) to defragmentation. I.e. DF packets less than
35 * PMTU in size uses a constant ID and do not use this code (see
36 * ip_select_ident() in include/net/ip.h).
37 *
38 * Route cache entries hold references to our nodes.
39 * New cache entries get references via lookup by destination IP address in
40 * the avl tree. The reference is grabbed only when it's needed i.e. only
41 * when we try to output IP packet which needs an unpredictable ID (see
42 * __ip_select_ident() in net/ipv4/route.c).
43 * Nodes are removed only when reference counter goes to 0.
44 * When it's happened the node may be removed when a sufficient amount of
45 * time has been passed since its last use. The less-recently-used entry can
46 * also be removed if the pool is overloaded i.e. if the total amount of
47 * entries is greater-or-equal than the threshold.
48 *
49 * Node pool is organised as an AVL tree.
50 * Such an implementation has been chosen not just for fun. It's a way to
51 * prevent easy and efficient DoS attacks by creating hash collisions. A huge
52 * amount of long living nodes in a single hash slot would significantly delay
53 * lookups performed with disabled BHs.
54 *
55 * Serialisation issues.
aa1039e7
ED
56 * 1. Nodes may appear in the tree only with the pool lock held.
57 * 2. Nodes may disappear from the tree only with the pool lock held
1da177e4 58 * AND reference count being 0.
4b9d9be8
ED
59 * 3. Global variable peer_total is modified under the pool lock.
60 * 4. struct inet_peer fields modification:
1da177e4 61 * avl_left, avl_right, avl_parent, avl_height: pool lock
1da177e4
LT
62 * refcnt: atomically against modifications on other CPU;
63 * usually under some other lock to prevent node disappearing
582a72da 64 * daddr: unchangeable
317fe0e6 65 * ip_id_count: atomic value (no lock needed)
1da177e4
LT
66 */
67
e18b890b 68static struct kmem_cache *peer_cachep __read_mostly;
1da177e4 69
5faa5df1
SK
70static LIST_HEAD(gc_list);
71static const int gc_delay = 60 * HZ;
72static struct delayed_work gc_work;
73static DEFINE_SPINLOCK(gc_lock);
74
1da177e4 75#define node_height(x) x->avl_height
d6cc1d64
ED
76
77#define peer_avl_empty ((struct inet_peer *)&peer_fake_node)
b914c4ea 78#define peer_avl_empty_rcu ((struct inet_peer __rcu __force *)&peer_fake_node)
d6cc1d64 79static const struct inet_peer peer_fake_node = {
b914c4ea
ED
80 .avl_left = peer_avl_empty_rcu,
81 .avl_right = peer_avl_empty_rcu,
1da177e4
LT
82 .avl_height = 0
83};
d6cc1d64 84
021e9299 85struct inet_peer_base {
b914c4ea 86 struct inet_peer __rcu *root;
65e8354e 87 seqlock_t lock;
d6cc1d64 88 int total;
021e9299
DM
89};
90
91static struct inet_peer_base v4_peers = {
b914c4ea 92 .root = peer_avl_empty_rcu,
65e8354e 93 .lock = __SEQLOCK_UNLOCKED(v4_peers.lock),
d6cc1d64
ED
94 .total = 0,
95};
021e9299
DM
96
97static struct inet_peer_base v6_peers = {
98 .root = peer_avl_empty_rcu,
65e8354e 99 .lock = __SEQLOCK_UNLOCKED(v6_peers.lock),
021e9299
DM
100 .total = 0,
101};
102
1da177e4
LT
103#define PEER_MAXDEPTH 40 /* sufficient for about 2^27 nodes */
104
1da177e4 105/* Exported for sysctl_net_ipv4. */
243bbcaa 106int inet_peer_threshold __read_mostly = 65536 + 128; /* start to throw entries more
1da177e4 107 * aggressively at this stage */
243bbcaa
ED
108int inet_peer_minttl __read_mostly = 120 * HZ; /* TTL under high load: 120 sec */
109int inet_peer_maxttl __read_mostly = 10 * 60 * HZ; /* usual time to live: 10 min */
1da177e4 110
5faa5df1
SK
111static void inetpeer_gc_worker(struct work_struct *work)
112{
113 struct inet_peer *p, *n;
114 LIST_HEAD(list);
115
116 spin_lock_bh(&gc_lock);
117 list_replace_init(&gc_list, &list);
118 spin_unlock_bh(&gc_lock);
119
120 if (list_empty(&list))
121 return;
122
123 list_for_each_entry_safe(p, n, &list, gc_list) {
124
125 if(need_resched())
126 cond_resched();
127
128 if (p->avl_left != peer_avl_empty) {
129 list_add_tail(&p->avl_left->gc_list, &list);
130 p->avl_left = peer_avl_empty;
131 }
132
133 if (p->avl_right != peer_avl_empty) {
134 list_add_tail(&p->avl_right->gc_list, &list);
135 p->avl_right = peer_avl_empty;
136 }
137
138 n = list_entry(p->gc_list.next, struct inet_peer, gc_list);
139
140 if (!atomic_read(&p->refcnt)) {
141 list_del(&p->gc_list);
142 kmem_cache_free(peer_cachep, p);
143 }
144 }
145
146 if (list_empty(&list))
147 return;
148
149 spin_lock_bh(&gc_lock);
150 list_splice(&list, &gc_list);
151 spin_unlock_bh(&gc_lock);
152
153 schedule_delayed_work(&gc_work, gc_delay);
154}
1da177e4
LT
155
156/* Called from ip_output.c:ip_init */
157void __init inet_initpeers(void)
158{
159 struct sysinfo si;
160
161 /* Use the straight interface to information about memory. */
162 si_meminfo(&si);
163 /* The values below were suggested by Alexey Kuznetsov
164 * <kuznet@ms2.inr.ac.ru>. I don't have any opinion about the values
165 * myself. --SAW
166 */
167 if (si.totalram <= (32768*1024)/PAGE_SIZE)
168 inet_peer_threshold >>= 1; /* max pool size about 1MB on IA32 */
169 if (si.totalram <= (16384*1024)/PAGE_SIZE)
170 inet_peer_threshold >>= 1; /* about 512KB */
171 if (si.totalram <= (8192*1024)/PAGE_SIZE)
172 inet_peer_threshold >>= 2; /* about 128KB */
173
174 peer_cachep = kmem_cache_create("inet_peer_cache",
175 sizeof(struct inet_peer),
317fe0e6 176 0, SLAB_HWCACHE_ALIGN | SLAB_PANIC,
20c2df83 177 NULL);
1da177e4 178
5faa5df1 179 INIT_DELAYED_WORK_DEFERRABLE(&gc_work, inetpeer_gc_worker);
1da177e4
LT
180}
181
8790ca17
DM
182static int addr_compare(const struct inetpeer_addr *a,
183 const struct inetpeer_addr *b)
02663045
DM
184{
185 int i, n = (a->family == AF_INET ? 1 : 4);
186
187 for (i = 0; i < n; i++) {
7a71ed89 188 if (a->addr.a6[i] == b->addr.a6[i])
02663045 189 continue;
747465ef 190 if ((__force u32)a->addr.a6[i] < (__force u32)b->addr.a6[i])
02663045
DM
191 return -1;
192 return 1;
193 }
194
195 return 0;
196}
197
65e8354e
ED
198#define rcu_deref_locked(X, BASE) \
199 rcu_dereference_protected(X, lockdep_is_held(&(BASE)->lock.lock))
200
243bbcaa
ED
201/*
202 * Called with local BH disabled and the pool lock held.
243bbcaa 203 */
98158f5a 204#define lookup(_daddr, _stack, _base) \
1da177e4 205({ \
b914c4ea
ED
206 struct inet_peer *u; \
207 struct inet_peer __rcu **v; \
aa1039e7
ED
208 \
209 stackptr = _stack; \
98158f5a 210 *stackptr++ = &_base->root; \
65e8354e 211 for (u = rcu_deref_locked(_base->root, _base); \
b914c4ea 212 u != peer_avl_empty; ) { \
02663045
DM
213 int cmp = addr_compare(_daddr, &u->daddr); \
214 if (cmp == 0) \
1da177e4 215 break; \
02663045 216 if (cmp == -1) \
1da177e4
LT
217 v = &u->avl_left; \
218 else \
219 v = &u->avl_right; \
aa1039e7 220 *stackptr++ = v; \
65e8354e 221 u = rcu_deref_locked(*v, _base); \
1da177e4
LT
222 } \
223 u; \
224})
225
aa1039e7 226/*
7b46ac4e 227 * Called with rcu_read_lock()
aa1039e7
ED
228 * Because we hold no lock against a writer, its quite possible we fall
229 * in an endless loop.
230 * But every pointer we follow is guaranteed to be valid thanks to RCU.
231 * We exit from this function if number of links exceeds PEER_MAXDEPTH
232 */
7b46ac4e 233static struct inet_peer *lookup_rcu(const struct inetpeer_addr *daddr,
4b9d9be8 234 struct inet_peer_base *base)
aa1039e7 235{
7b46ac4e 236 struct inet_peer *u = rcu_dereference(base->root);
aa1039e7
ED
237 int count = 0;
238
239 while (u != peer_avl_empty) {
02663045
DM
240 int cmp = addr_compare(daddr, &u->daddr);
241 if (cmp == 0) {
5f2f8920 242 /* Before taking a reference, check if this entry was
4b9d9be8 243 * deleted (refcnt=-1)
5f2f8920 244 */
4b9d9be8 245 if (!atomic_add_unless(&u->refcnt, 1, -1))
aa1039e7
ED
246 u = NULL;
247 return u;
248 }
02663045 249 if (cmp == -1)
7b46ac4e 250 u = rcu_dereference(u->avl_left);
aa1039e7 251 else
7b46ac4e 252 u = rcu_dereference(u->avl_right);
aa1039e7
ED
253 if (unlikely(++count == PEER_MAXDEPTH))
254 break;
255 }
256 return NULL;
257}
258
259/* Called with local BH disabled and the pool lock held. */
98158f5a 260#define lookup_rightempty(start, base) \
1da177e4 261({ \
b914c4ea
ED
262 struct inet_peer *u; \
263 struct inet_peer __rcu **v; \
1da177e4
LT
264 *stackptr++ = &start->avl_left; \
265 v = &start->avl_left; \
65e8354e 266 for (u = rcu_deref_locked(*v, base); \
b914c4ea 267 u->avl_right != peer_avl_empty_rcu; ) { \
1da177e4
LT
268 v = &u->avl_right; \
269 *stackptr++ = v; \
65e8354e 270 u = rcu_deref_locked(*v, base); \
1da177e4
LT
271 } \
272 u; \
273})
274
aa1039e7 275/* Called with local BH disabled and the pool lock held.
1da177e4 276 * Variable names are the proof of operation correctness.
aa1039e7
ED
277 * Look into mm/map_avl.c for more detail description of the ideas.
278 */
b914c4ea 279static void peer_avl_rebalance(struct inet_peer __rcu **stack[],
98158f5a
DM
280 struct inet_peer __rcu ***stackend,
281 struct inet_peer_base *base)
1da177e4 282{
b914c4ea
ED
283 struct inet_peer __rcu **nodep;
284 struct inet_peer *node, *l, *r;
1da177e4
LT
285 int lh, rh;
286
287 while (stackend > stack) {
288 nodep = *--stackend;
65e8354e
ED
289 node = rcu_deref_locked(*nodep, base);
290 l = rcu_deref_locked(node->avl_left, base);
291 r = rcu_deref_locked(node->avl_right, base);
1da177e4
LT
292 lh = node_height(l);
293 rh = node_height(r);
294 if (lh > rh + 1) { /* l: RH+2 */
295 struct inet_peer *ll, *lr, *lrl, *lrr;
296 int lrh;
65e8354e
ED
297 ll = rcu_deref_locked(l->avl_left, base);
298 lr = rcu_deref_locked(l->avl_right, base);
1da177e4
LT
299 lrh = node_height(lr);
300 if (lrh <= node_height(ll)) { /* ll: RH+1 */
b914c4ea
ED
301 RCU_INIT_POINTER(node->avl_left, lr); /* lr: RH or RH+1 */
302 RCU_INIT_POINTER(node->avl_right, r); /* r: RH */
1da177e4 303 node->avl_height = lrh + 1; /* RH+1 or RH+2 */
b914c4ea
ED
304 RCU_INIT_POINTER(l->avl_left, ll); /* ll: RH+1 */
305 RCU_INIT_POINTER(l->avl_right, node); /* node: RH+1 or RH+2 */
1da177e4 306 l->avl_height = node->avl_height + 1;
b914c4ea 307 RCU_INIT_POINTER(*nodep, l);
1da177e4 308 } else { /* ll: RH, lr: RH+1 */
65e8354e
ED
309 lrl = rcu_deref_locked(lr->avl_left, base);/* lrl: RH or RH-1 */
310 lrr = rcu_deref_locked(lr->avl_right, base);/* lrr: RH or RH-1 */
b914c4ea
ED
311 RCU_INIT_POINTER(node->avl_left, lrr); /* lrr: RH or RH-1 */
312 RCU_INIT_POINTER(node->avl_right, r); /* r: RH */
1da177e4 313 node->avl_height = rh + 1; /* node: RH+1 */
b914c4ea
ED
314 RCU_INIT_POINTER(l->avl_left, ll); /* ll: RH */
315 RCU_INIT_POINTER(l->avl_right, lrl); /* lrl: RH or RH-1 */
1da177e4 316 l->avl_height = rh + 1; /* l: RH+1 */
b914c4ea
ED
317 RCU_INIT_POINTER(lr->avl_left, l); /* l: RH+1 */
318 RCU_INIT_POINTER(lr->avl_right, node); /* node: RH+1 */
1da177e4 319 lr->avl_height = rh + 2;
b914c4ea 320 RCU_INIT_POINTER(*nodep, lr);
1da177e4
LT
321 }
322 } else if (rh > lh + 1) { /* r: LH+2 */
323 struct inet_peer *rr, *rl, *rlr, *rll;
324 int rlh;
65e8354e
ED
325 rr = rcu_deref_locked(r->avl_right, base);
326 rl = rcu_deref_locked(r->avl_left, base);
1da177e4
LT
327 rlh = node_height(rl);
328 if (rlh <= node_height(rr)) { /* rr: LH+1 */
b914c4ea
ED
329 RCU_INIT_POINTER(node->avl_right, rl); /* rl: LH or LH+1 */
330 RCU_INIT_POINTER(node->avl_left, l); /* l: LH */
1da177e4 331 node->avl_height = rlh + 1; /* LH+1 or LH+2 */
b914c4ea
ED
332 RCU_INIT_POINTER(r->avl_right, rr); /* rr: LH+1 */
333 RCU_INIT_POINTER(r->avl_left, node); /* node: LH+1 or LH+2 */
1da177e4 334 r->avl_height = node->avl_height + 1;
b914c4ea 335 RCU_INIT_POINTER(*nodep, r);
1da177e4 336 } else { /* rr: RH, rl: RH+1 */
65e8354e
ED
337 rlr = rcu_deref_locked(rl->avl_right, base);/* rlr: LH or LH-1 */
338 rll = rcu_deref_locked(rl->avl_left, base);/* rll: LH or LH-1 */
b914c4ea
ED
339 RCU_INIT_POINTER(node->avl_right, rll); /* rll: LH or LH-1 */
340 RCU_INIT_POINTER(node->avl_left, l); /* l: LH */
1da177e4 341 node->avl_height = lh + 1; /* node: LH+1 */
b914c4ea
ED
342 RCU_INIT_POINTER(r->avl_right, rr); /* rr: LH */
343 RCU_INIT_POINTER(r->avl_left, rlr); /* rlr: LH or LH-1 */
1da177e4 344 r->avl_height = lh + 1; /* r: LH+1 */
b914c4ea
ED
345 RCU_INIT_POINTER(rl->avl_right, r); /* r: LH+1 */
346 RCU_INIT_POINTER(rl->avl_left, node); /* node: LH+1 */
1da177e4 347 rl->avl_height = lh + 2;
b914c4ea 348 RCU_INIT_POINTER(*nodep, rl);
1da177e4
LT
349 }
350 } else {
351 node->avl_height = (lh > rh ? lh : rh) + 1;
352 }
353 }
354}
355
aa1039e7 356/* Called with local BH disabled and the pool lock held. */
98158f5a 357#define link_to_pool(n, base) \
1da177e4
LT
358do { \
359 n->avl_height = 1; \
b914c4ea
ED
360 n->avl_left = peer_avl_empty_rcu; \
361 n->avl_right = peer_avl_empty_rcu; \
362 /* lockless readers can catch us now */ \
363 rcu_assign_pointer(**--stackptr, n); \
98158f5a 364 peer_avl_rebalance(stack, stackptr, base); \
d6cc1d64 365} while (0)
1da177e4 366
aa1039e7
ED
367static void inetpeer_free_rcu(struct rcu_head *head)
368{
369 kmem_cache_free(peer_cachep, container_of(head, struct inet_peer, rcu));
370}
371
66944e1c
ED
372static void unlink_from_pool(struct inet_peer *p, struct inet_peer_base *base,
373 struct inet_peer __rcu **stack[PEER_MAXDEPTH])
1da177e4 374{
4b9d9be8
ED
375 struct inet_peer __rcu ***stackptr, ***delp;
376
377 if (lookup(&p->daddr, stack, base) != p)
378 BUG();
379 delp = stackptr - 1; /* *delp[0] == p */
380 if (p->avl_left == peer_avl_empty_rcu) {
381 *delp[0] = p->avl_right;
382 --stackptr;
383 } else {
384 /* look for a node to insert instead of p */
385 struct inet_peer *t;
386 t = lookup_rightempty(p, base);
387 BUG_ON(rcu_deref_locked(*stackptr[-1], base) != t);
388 **--stackptr = t->avl_left;
389 /* t is removed, t->daddr > x->daddr for any
390 * x in p->avl_left subtree.
391 * Put t in the old place of p. */
392 RCU_INIT_POINTER(*delp[0], t);
393 t->avl_left = p->avl_left;
394 t->avl_right = p->avl_right;
395 t->avl_height = p->avl_height;
396 BUG_ON(delp[1] != &p->avl_left);
397 delp[1] = &t->avl_left; /* was &p->avl_left */
1da177e4 398 }
4b9d9be8
ED
399 peer_avl_rebalance(stack, stackptr, base);
400 base->total--;
401 call_rcu(&p->rcu, inetpeer_free_rcu);
1da177e4
LT
402}
403
021e9299
DM
404static struct inet_peer_base *family_to_base(int family)
405{
4b9d9be8 406 return family == AF_INET ? &v4_peers : &v6_peers;
021e9299
DM
407}
408
4b9d9be8
ED
409/* perform garbage collect on all items stacked during a lookup */
410static int inet_peer_gc(struct inet_peer_base *base,
411 struct inet_peer __rcu **stack[PEER_MAXDEPTH],
412 struct inet_peer __rcu ***stackptr)
98158f5a 413{
4b9d9be8
ED
414 struct inet_peer *p, *gchead = NULL;
415 __u32 delta, ttl;
416 int cnt = 0;
d71209de 417
4b9d9be8
ED
418 if (base->total >= inet_peer_threshold)
419 ttl = 0; /* be aggressive */
420 else
421 ttl = inet_peer_maxttl
422 - (inet_peer_maxttl - inet_peer_minttl) / HZ *
423 base->total / inet_peer_threshold * HZ;
424 stackptr--; /* last stack slot is peer_avl_empty */
425 while (stackptr > stack) {
426 stackptr--;
427 p = rcu_deref_locked(**stackptr, base);
6d1a3e04
ED
428 if (atomic_read(&p->refcnt) == 0) {
429 smp_rmb();
430 delta = (__u32)jiffies - p->dtime;
431 if (delta >= ttl &&
432 atomic_cmpxchg(&p->refcnt, 0, -1) == 0) {
433 p->gc_next = gchead;
434 gchead = p;
435 }
1da177e4 436 }
1da177e4 437 }
4b9d9be8
ED
438 while ((p = gchead) != NULL) {
439 gchead = p->gc_next;
440 cnt++;
441 unlink_from_pool(p, base, stack);
442 }
443 return cnt;
1da177e4
LT
444}
445
87c48fa3 446struct inet_peer *inet_getpeer(const struct inetpeer_addr *daddr, int create)
1da177e4 447{
b914c4ea 448 struct inet_peer __rcu **stack[PEER_MAXDEPTH], ***stackptr;
3408404a 449 struct inet_peer_base *base = family_to_base(daddr->family);
98158f5a 450 struct inet_peer *p;
65e8354e 451 unsigned int sequence;
4b9d9be8 452 int invalidated, gccnt = 0;
1da177e4 453
4b9d9be8 454 /* Attempt a lockless lookup first.
aa1039e7
ED
455 * Because of a concurrent writer, we might not find an existing entry.
456 */
7b46ac4e 457 rcu_read_lock();
65e8354e 458 sequence = read_seqbegin(&base->lock);
4b9d9be8 459 p = lookup_rcu(daddr, base);
65e8354e 460 invalidated = read_seqretry(&base->lock, sequence);
7b46ac4e 461 rcu_read_unlock();
aa1039e7 462
4b9d9be8 463 if (p)
aa1039e7 464 return p;
1da177e4 465
65e8354e
ED
466 /* If no writer did a change during our lookup, we can return early. */
467 if (!create && !invalidated)
468 return NULL;
469
aa1039e7
ED
470 /* retry an exact lookup, taking the lock before.
471 * At least, nodes should be hot in our cache.
472 */
65e8354e 473 write_seqlock_bh(&base->lock);
4b9d9be8 474relookup:
02663045 475 p = lookup(daddr, stack, base);
1da177e4 476 if (p != peer_avl_empty) {
4b9d9be8 477 atomic_inc(&p->refcnt);
65e8354e 478 write_sequnlock_bh(&base->lock);
4b9d9be8
ED
479 return p;
480 }
481 if (!gccnt) {
482 gccnt = inet_peer_gc(base, stack, stackptr);
483 if (gccnt && create)
484 goto relookup;
1da177e4 485 }
aa1039e7
ED
486 p = create ? kmem_cache_alloc(peer_cachep, GFP_ATOMIC) : NULL;
487 if (p) {
b534ecf1 488 p->daddr = *daddr;
aa1039e7
ED
489 atomic_set(&p->refcnt, 1);
490 atomic_set(&p->rid, 0);
87c48fa3
ED
491 atomic_set(&p->ip_id_count,
492 (daddr->family == AF_INET) ?
493 secure_ip_id(daddr->addr.a4) :
494 secure_ipv6_id(daddr->addr.a6));
aa1039e7 495 p->tcp_ts_stamp = 0;
144001bd 496 p->metrics[RTAX_LOCK-1] = INETPEER_METRICS_NEW;
92d86829
DM
497 p->rate_tokens = 0;
498 p->rate_last = 0;
ddd4aa42 499 p->pmtu_expires = 0;
46af3180 500 p->pmtu_orig = 0;
ddd4aa42 501 memset(&p->redirect_learned, 0, sizeof(p->redirect_learned));
5faa5df1 502 INIT_LIST_HEAD(&p->gc_list);
aa1039e7
ED
503
504 /* Link the node. */
98158f5a
DM
505 link_to_pool(p, base);
506 base->total++;
aa1039e7 507 }
65e8354e 508 write_sequnlock_bh(&base->lock);
1da177e4 509
1da177e4
LT
510 return p;
511}
b3419363 512EXPORT_SYMBOL_GPL(inet_getpeer);
98158f5a 513
4663afe2
ED
514void inet_putpeer(struct inet_peer *p)
515{
4b9d9be8 516 p->dtime = (__u32)jiffies;
6d1a3e04 517 smp_mb__before_atomic_dec();
4b9d9be8 518 atomic_dec(&p->refcnt);
4663afe2 519}
b3419363 520EXPORT_SYMBOL_GPL(inet_putpeer);
92d86829
DM
521
522/*
523 * Check transmit rate limitation for given message.
524 * The rate information is held in the inet_peer entries now.
525 * This function is generic and could be used for other purposes
526 * too. It uses a Token bucket filter as suggested by Alexey Kuznetsov.
527 *
528 * Note that the same inet_peer fields are modified by functions in
529 * route.c too, but these work for packet destinations while xrlim_allow
530 * works for icmp destinations. This means the rate limiting information
531 * for one "ip object" is shared - and these ICMPs are twice limited:
532 * by source and by destination.
533 *
534 * RFC 1812: 4.3.2.8 SHOULD be able to limit error message rate
535 * SHOULD allow setting of rate limits
536 *
537 * Shared between ICMPv4 and ICMPv6.
538 */
539#define XRLIM_BURST_FACTOR 6
540bool inet_peer_xrlim_allow(struct inet_peer *peer, int timeout)
541{
542 unsigned long now, token;
543 bool rc = false;
544
545 if (!peer)
546 return true;
547
548 token = peer->rate_tokens;
549 now = jiffies;
550 token += now - peer->rate_last;
551 peer->rate_last = now;
552 if (token > XRLIM_BURST_FACTOR * timeout)
553 token = XRLIM_BURST_FACTOR * timeout;
554 if (token >= timeout) {
555 token -= timeout;
556 rc = true;
557 }
558 peer->rate_tokens = token;
559 return rc;
560}
561EXPORT_SYMBOL(inet_peer_xrlim_allow);
5faa5df1
SK
562
563void inetpeer_invalidate_tree(int family)
564{
565 struct inet_peer *old, *new, *prev;
566 struct inet_peer_base *base = family_to_base(family);
567
568 write_seqlock_bh(&base->lock);
569
570 old = base->root;
571 if (old == peer_avl_empty_rcu)
572 goto out;
573
574 new = peer_avl_empty_rcu;
575
576 prev = cmpxchg(&base->root, old, new);
577 if (prev == old) {
578 base->total = 0;
579 spin_lock(&gc_lock);
580 list_add_tail(&prev->gc_list, &gc_list);
581 spin_unlock(&gc_lock);
582 schedule_delayed_work(&gc_work, gc_delay);
583 }
584
585out:
586 write_sequnlock_bh(&base->lock);
587}
588EXPORT_SYMBOL(inetpeer_invalidate_tree);
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