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b2441318 1/* SPDX-License-Identifier: GPL-2.0 */
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2#ifndef __NET_FRAG_H__
3#define __NET_FRAG_H__
4
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5#include <linux/rhashtable.h>
6
ac18e750 7struct netns_frags {
b2fd5321 8 /* sysctls */
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9 long high_thresh;
10 long low_thresh;
b2fd5321 11 int timeout;
0fbf4cb2 12 int max_dist;
9bdf9ca9 13 struct inet_frags *f;
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14
15 struct rhashtable rhashtable ____cacheline_aligned_in_smp;
16
17 /* Keep atomic mem on separate cachelines in structs that include it */
18 atomic_long_t mem ____cacheline_aligned_in_smp;
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19};
20
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21/**
22 * fragment queue flags
23 *
24 * @INET_FRAG_FIRST_IN: first fragment has arrived
25 * @INET_FRAG_LAST_IN: final fragment has arrived
26 * @INET_FRAG_COMPLETE: frag queue has been processed and is due for destruction
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27 */
28enum {
29 INET_FRAG_FIRST_IN = BIT(0),
30 INET_FRAG_LAST_IN = BIT(1),
31 INET_FRAG_COMPLETE = BIT(2),
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32};
33
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34struct frag_v4_compare_key {
35 __be32 saddr;
36 __be32 daddr;
37 u32 user;
38 u32 vif;
39 __be16 id;
40 u16 protocol;
41};
42
43struct frag_v6_compare_key {
44 struct in6_addr saddr;
45 struct in6_addr daddr;
46 u32 user;
47 __be32 id;
48 u32 iif;
49};
50
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51/**
52 * struct inet_frag_queue - fragment queue
53 *
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54 * @node: rhash node
55 * @key: keys identifying this frag.
1ab1934e 56 * @timer: queue expiration timer
4e722036 57 * @lock: spinlock protecting this frag
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58 * @refcnt: reference count of the queue
59 * @fragments: received fragments head
98ca8225 60 * @rb_fragments: received fragments rb-tree root
1ab1934e 61 * @fragments_tail: received fragments tail
98ca8225 62 * @last_run_head: the head of the last "run". see ip_fragment.c
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63 * @stamp: timestamp of the last received fragment
64 * @len: total length of the original datagram
65 * @meat: length of received fragments so far
66 * @flags: fragment queue flags
d6b915e2 67 * @max_size: maximum received fragment size
1ab1934e 68 * @net: namespace that this frag belongs to
4e722036 69 * @rcu: rcu head for freeing deferall
1ab1934e 70 */
5ab11c98 71struct inet_frag_queue {
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72 struct rhash_head node;
73 union {
74 struct frag_v4_compare_key v4;
75 struct frag_v6_compare_key v6;
76 } key;
1ab1934e 77 struct timer_list timer;
4e722036 78 spinlock_t lock;
edcb6918 79 refcount_t refcnt;
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80 struct sk_buff *fragments; /* used in 6lopwpan IPv6. */
81 struct rb_root rb_fragments; /* Used in IPv4/IPv6. */
d6bebca9 82 struct sk_buff *fragments_tail;
98ca8225 83 struct sk_buff *last_run_head;
5ab11c98 84 ktime_t stamp;
1ab1934e 85 int len;
5ab11c98 86 int meat;
1ab1934e 87 __u8 flags;
5f2d04f1 88 u16 max_size;
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89 struct netns_frags *net;
90 struct rcu_head rcu;
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91};
92
7eb95156 93struct inet_frags {
4c0ebd6f 94 unsigned int qsize;
321a3a99 95
c6fda282 96 void (*constructor)(struct inet_frag_queue *q,
36c77782 97 const void *arg);
1e4b8287 98 void (*destructor)(struct inet_frag_queue *);
78802011 99 void (*frag_expire)(struct timer_list *t);
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100 struct kmem_cache *frags_cachep;
101 const char *frags_cache_name;
4e722036 102 struct rhashtable_params rhash_params;
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103};
104
d4ad4d22 105int inet_frags_init(struct inet_frags *);
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106void inet_frags_fini(struct inet_frags *);
107
1f5c60ac 108static inline int inet_frags_init_net(struct netns_frags *nf)
1d6119ba 109{
c88be42e 110 atomic_long_set(&nf->mem, 0);
4e722036 111 return rhashtable_init(&nf->rhashtable, &nf->f->rhash_params);
1d6119ba 112}
9bdf9ca9 113void inet_frags_exit_net(struct netns_frags *nf);
e5a2bb84 114
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115void inet_frag_kill(struct inet_frag_queue *q);
116void inet_frag_destroy(struct inet_frag_queue *q);
4e722036 117struct inet_frag_queue *inet_frag_find(struct netns_frags *nf, void *key);
277e650d 118
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119/* Free all skbs in the queue; return the sum of their truesizes. */
120unsigned int inet_frag_rbtree_purge(struct rb_root *root);
121
9bdf9ca9 122static inline void inet_frag_put(struct inet_frag_queue *q)
762cc408 123{
edcb6918 124 if (refcount_dec_and_test(&q->refcnt))
9bdf9ca9 125 inet_frag_destroy(q);
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126}
127
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128/* Memory Tracking Functions. */
129
c88be42e 130static inline long frag_mem_limit(const struct netns_frags *nf)
d433673e 131{
c88be42e 132 return atomic_long_read(&nf->mem);
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133}
134
c88be42e 135static inline void sub_frag_mem_limit(struct netns_frags *nf, long val)
d433673e 136{
c88be42e 137 atomic_long_sub(val, &nf->mem);
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138}
139
c88be42e 140static inline void add_frag_mem_limit(struct netns_frags *nf, long val)
d433673e 141{
c88be42e 142 atomic_long_add(val, &nf->mem);
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143}
144
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145/* RFC 3168 support :
146 * We want to check ECN values of all fragments, do detect invalid combinations.
147 * In ipq->ecn, we store the OR value of each ip4_frag_ecn() fragment value.
148 */
149#define IPFRAG_ECN_NOT_ECT 0x01 /* one frag had ECN_NOT_ECT */
150#define IPFRAG_ECN_ECT_1 0x02 /* one frag had ECN_ECT_1 */
151#define IPFRAG_ECN_ECT_0 0x04 /* one frag had ECN_ECT_0 */
152#define IPFRAG_ECN_CE 0x08 /* one frag had ECN_CE */
153
154extern const u8 ip_frag_ecn_table[16];
155
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156/* Return values of inet_frag_queue_insert() */
157#define IPFRAG_OK 0
158#define IPFRAG_DUP 1
159#define IPFRAG_OVERLAP 2
160int inet_frag_queue_insert(struct inet_frag_queue *q, struct sk_buff *skb,
161 int offset, int end);
162void *inet_frag_reasm_prepare(struct inet_frag_queue *q, struct sk_buff *skb,
163 struct sk_buff *parent);
164void inet_frag_reasm_finish(struct inet_frag_queue *q, struct sk_buff *head,
165 void *reasm_data);
166struct sk_buff *inet_frag_pull_head(struct inet_frag_queue *q);
167
5ab11c98 168#endif