parisc: Use long branch to do_syscall_trace_exit
[linux-2.6-block.git] / include / net / inet_frag.h
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1#ifndef __NET_FRAG_H__
2#define __NET_FRAG_H__
3
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4#include <linux/percpu_counter.h>
5
ac18e750 6struct netns_frags {
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7 /* The percpu_counter "mem" need to be cacheline aligned.
8 * mem.count must not share cacheline with other writers
cd39a789 9 */
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10 struct percpu_counter mem ____cacheline_aligned_in_smp;
11
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12 /* sysctls */
13 int timeout;
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14 int high_thresh;
15 int low_thresh;
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16};
17
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18/**
19 * fragment queue flags
20 *
21 * @INET_FRAG_FIRST_IN: first fragment has arrived
22 * @INET_FRAG_LAST_IN: final fragment has arrived
23 * @INET_FRAG_COMPLETE: frag queue has been processed and is due for destruction
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24 */
25enum {
26 INET_FRAG_FIRST_IN = BIT(0),
27 INET_FRAG_LAST_IN = BIT(1),
28 INET_FRAG_COMPLETE = BIT(2),
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29};
30
31/**
32 * struct inet_frag_queue - fragment queue
33 *
34 * @lock: spinlock protecting the queue
35 * @timer: queue expiration timer
36 * @list: hash bucket list
37 * @refcnt: reference count of the queue
38 * @fragments: received fragments head
39 * @fragments_tail: received fragments tail
40 * @stamp: timestamp of the last received fragment
41 * @len: total length of the original datagram
42 * @meat: length of received fragments so far
43 * @flags: fragment queue flags
d6b915e2 44 * @max_size: maximum received fragment size
1ab1934e 45 * @net: namespace that this frag belongs to
d1fe1944 46 * @list_evictor: list of queues to forcefully evict (e.g. due to low memory)
1ab1934e 47 */
5ab11c98 48struct inet_frag_queue {
5ab11c98 49 spinlock_t lock;
1ab1934e 50 struct timer_list timer;
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51 struct hlist_node list;
52 atomic_t refcnt;
1ab1934e 53 struct sk_buff *fragments;
d6bebca9 54 struct sk_buff *fragments_tail;
5ab11c98 55 ktime_t stamp;
1ab1934e 56 int len;
5ab11c98 57 int meat;
1ab1934e 58 __u8 flags;
5f2d04f1 59 u16 max_size;
6e34a8b3 60 struct netns_frags *net;
d1fe1944 61 struct hlist_node list_evictor;
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62};
63
a4c4009f 64#define INETFRAGS_HASHSZ 1024
7eb95156 65
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66/* averaged:
67 * max_depth = default ipfrag_high_thresh / INETFRAGS_HASHSZ /
68 * rounded up (SKB_TRUELEN(0) + sizeof(struct ipq or
69 * struct frag_queue))
70 */
b13d3cbf 71#define INETFRAGS_MAXDEPTH 128
5a3da1fe 72
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73struct inet_frag_bucket {
74 struct hlist_head chain;
75 spinlock_t chain_lock;
76};
77
7eb95156 78struct inet_frags {
19952cc4 79 struct inet_frag_bucket hash[INETFRAGS_HASHSZ];
7088ad74 80
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81 struct work_struct frags_work;
82 unsigned int next_bucket;
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83 unsigned long last_rebuild_jiffies;
84 bool rebuild;
b13d3cbf 85
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86 /* The first call to hashfn is responsible to initialize
87 * rnd. This is best done with net_get_random_once.
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88 *
89 * rnd_seqlock is used to let hash insertion detect
90 * when it needs to re-lookup the hash chain to use.
7088ad74 91 */
5f8e1e8b 92 u32 rnd;
ab1c724f 93 seqlock_t rnd_seqlock;
5f8e1e8b 94 int qsize;
321a3a99 95
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96 unsigned int (*hashfn)(const struct inet_frag_queue *);
97 bool (*match)(const struct inet_frag_queue *q,
98 const void *arg);
c6fda282 99 void (*constructor)(struct inet_frag_queue *q,
36c77782 100 const void *arg);
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101 void (*destructor)(struct inet_frag_queue *);
102 void (*skb_free)(struct sk_buff *);
e521db9d 103 void (*frag_expire)(unsigned long data);
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104 struct kmem_cache *frags_cachep;
105 const char *frags_cache_name;
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106};
107
d4ad4d22 108int inet_frags_init(struct inet_frags *);
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109void inet_frags_fini(struct inet_frags *);
110
e5a2bb84 111void inet_frags_init_net(struct netns_frags *nf);
81566e83 112void inet_frags_exit_net(struct netns_frags *nf, struct inet_frags *f);
e5a2bb84 113
277e650d 114void inet_frag_kill(struct inet_frag_queue *q, struct inet_frags *f);
3fd588eb 115void inet_frag_destroy(struct inet_frag_queue *q, struct inet_frags *f);
ac18e750 116struct inet_frag_queue *inet_frag_find(struct netns_frags *nf,
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117 struct inet_frags *f, void *key, unsigned int hash);
118
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119void inet_frag_maybe_warn_overflow(struct inet_frag_queue *q,
120 const char *prefix);
277e650d 121
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122static inline void inet_frag_put(struct inet_frag_queue *q, struct inet_frags *f)
123{
124 if (atomic_dec_and_test(&q->refcnt))
3fd588eb 125 inet_frag_destroy(q, f);
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126}
127
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128static inline bool inet_frag_evicting(struct inet_frag_queue *q)
129{
130 return !hlist_unhashed(&q->list_evictor);
131}
132
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133/* Memory Tracking Functions. */
134
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135/* The default percpu_counter batch size is not big enough to scale to
136 * fragmentation mem acct sizes.
137 * The mem size of a 64K fragment is approx:
138 * (44 fragments * 2944 truesize) + frag_queue struct(200) = 129736 bytes
139 */
140static unsigned int frag_percpu_counter_batch = 130000;
141
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142static inline int frag_mem_limit(struct netns_frags *nf)
143{
6d7b857d 144 return percpu_counter_read(&nf->mem);
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145}
146
0e60d245 147static inline void sub_frag_mem_limit(struct netns_frags *nf, int i)
d433673e 148{
0e60d245 149 __percpu_counter_add(&nf->mem, -i, frag_percpu_counter_batch);
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150}
151
0e60d245 152static inline void add_frag_mem_limit(struct netns_frags *nf, int i)
d433673e 153{
0e60d245 154 __percpu_counter_add(&nf->mem, i, frag_percpu_counter_batch);
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155}
156
157static inline void init_frag_mem_limit(struct netns_frags *nf)
158{
908c7f19 159 percpu_counter_init(&nf->mem, 0, GFP_KERNEL);
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160}
161
36c77782 162static inline unsigned int sum_frag_mem_limit(struct netns_frags *nf)
d433673e 163{
36c77782 164 unsigned int res;
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165
166 local_bh_disable();
167 res = percpu_counter_sum_positive(&nf->mem);
168 local_bh_enable();
169
170 return res;
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171}
172
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173/* RFC 3168 support :
174 * We want to check ECN values of all fragments, do detect invalid combinations.
175 * In ipq->ecn, we store the OR value of each ip4_frag_ecn() fragment value.
176 */
177#define IPFRAG_ECN_NOT_ECT 0x01 /* one frag had ECN_NOT_ECT */
178#define IPFRAG_ECN_ECT_1 0x02 /* one frag had ECN_ECT_1 */
179#define IPFRAG_ECN_ECT_0 0x04 /* one frag had ECN_ECT_0 */
180#define IPFRAG_ECN_CE 0x08 /* one frag had ECN_CE */
181
182extern const u8 ip_frag_ecn_table[16];
183
5ab11c98 184#endif