1 // SPDX-License-Identifier: GPL-2.0-only
5 * SELinux must keep a mapping of Infinband PKEYs to labels/SIDs. This
6 * mapping is maintained as part of the normal policy but a fast cache is
7 * needed to reduce the lookup overhead.
9 * This code is heavily based on the "netif" and "netport" concept originally
11 * James Morris <jmorris@redhat.com> and
12 * Paul Moore <paul@paul-moore.com>
13 * (see security/selinux/netif.c and security/selinux/netport.c for more
18 * (c) Mellanox Technologies, 2016
21 #include <linux/types.h>
22 #include <linux/rcupdate.h>
23 #include <linux/list.h>
24 #include <linux/spinlock.h>
29 #define SEL_PKEY_HASH_SIZE 256
30 #define SEL_PKEY_HASH_BKT_LIMIT 16
32 struct sel_ib_pkey_bkt
{
34 struct list_head list
;
38 struct pkey_security_struct psec
;
39 struct list_head list
;
43 static LIST_HEAD(sel_ib_pkey_list
);
44 static DEFINE_SPINLOCK(sel_ib_pkey_lock
);
45 static struct sel_ib_pkey_bkt sel_ib_pkey_hash
[SEL_PKEY_HASH_SIZE
];
48 * sel_ib_pkey_hashfn - Hashing function for the pkey table
52 * This is the hashing function for the pkey table, it returns the bucket
53 * number for the given pkey.
56 static unsigned int sel_ib_pkey_hashfn(u16 pkey
)
58 return (pkey
& (SEL_PKEY_HASH_SIZE
- 1));
62 * sel_ib_pkey_find - Search for a pkey record
63 * @subnet_prefix: subnet_prefix
67 * Search the pkey table and return the matching record. If an entry
68 * can not be found in the table return NULL.
71 static struct sel_ib_pkey
*sel_ib_pkey_find(u64 subnet_prefix
, u16 pkey_num
)
74 struct sel_ib_pkey
*pkey
;
76 idx
= sel_ib_pkey_hashfn(pkey_num
);
77 list_for_each_entry_rcu(pkey
, &sel_ib_pkey_hash
[idx
].list
, list
) {
78 if (pkey
->psec
.pkey
== pkey_num
&&
79 pkey
->psec
.subnet_prefix
== subnet_prefix
)
87 * sel_ib_pkey_insert - Insert a new pkey into the table
88 * @pkey: the new pkey record
91 * Add a new pkey record to the hash table.
94 static void sel_ib_pkey_insert(struct sel_ib_pkey
*pkey
)
98 /* we need to impose a limit on the growth of the hash table so check
99 * this bucket to make sure it is within the specified bounds
101 idx
= sel_ib_pkey_hashfn(pkey
->psec
.pkey
);
102 list_add_rcu(&pkey
->list
, &sel_ib_pkey_hash
[idx
].list
);
103 if (sel_ib_pkey_hash
[idx
].size
== SEL_PKEY_HASH_BKT_LIMIT
) {
104 struct sel_ib_pkey
*tail
;
107 rcu_dereference_protected(
108 sel_ib_pkey_hash
[idx
].list
.prev
,
109 lockdep_is_held(&sel_ib_pkey_lock
)),
110 struct sel_ib_pkey
, list
);
111 list_del_rcu(&tail
->list
);
112 kfree_rcu(tail
, rcu
);
114 sel_ib_pkey_hash
[idx
].size
++;
119 * sel_ib_pkey_sid_slow - Lookup the SID of a pkey using the policy
120 * @subnet_prefix: subnet prefix
121 * @pkey_num: pkey number
125 * This function determines the SID of a pkey by querying the security
126 * policy. The result is added to the pkey table to speedup future
127 * queries. Returns zero on success, negative values on failure.
130 static int sel_ib_pkey_sid_slow(u64 subnet_prefix
, u16 pkey_num
, u32
*sid
)
133 struct sel_ib_pkey
*pkey
;
134 struct sel_ib_pkey
*new = NULL
;
137 spin_lock_irqsave(&sel_ib_pkey_lock
, flags
);
138 pkey
= sel_ib_pkey_find(subnet_prefix
, pkey_num
);
140 *sid
= pkey
->psec
.sid
;
141 spin_unlock_irqrestore(&sel_ib_pkey_lock
, flags
);
145 ret
= security_ib_pkey_sid(&selinux_state
, subnet_prefix
, pkey_num
,
150 /* If this memory allocation fails still return 0. The SID
151 * is valid, it just won't be added to the cache.
153 new = kzalloc(sizeof(*new), GFP_ATOMIC
);
159 new->psec
.subnet_prefix
= subnet_prefix
;
160 new->psec
.pkey
= pkey_num
;
161 new->psec
.sid
= *sid
;
162 sel_ib_pkey_insert(new);
165 spin_unlock_irqrestore(&sel_ib_pkey_lock
, flags
);
170 * sel_ib_pkey_sid - Lookup the SID of a PKEY
171 * @subnet_prefix: subnet_prefix
172 * @pkey_num: pkey number
176 * This function determines the SID of a PKEY using the fastest method
177 * possible. First the pkey table is queried, but if an entry can't be found
178 * then the policy is queried and the result is added to the table to speedup
179 * future queries. Returns zero on success, negative values on failure.
182 int sel_ib_pkey_sid(u64 subnet_prefix
, u16 pkey_num
, u32
*sid
)
184 struct sel_ib_pkey
*pkey
;
187 pkey
= sel_ib_pkey_find(subnet_prefix
, pkey_num
);
189 *sid
= pkey
->psec
.sid
;
195 return sel_ib_pkey_sid_slow(subnet_prefix
, pkey_num
, sid
);
199 * sel_ib_pkey_flush - Flush the entire pkey table
202 * Remove all entries from the pkey table
205 void sel_ib_pkey_flush(void)
208 struct sel_ib_pkey
*pkey
, *pkey_tmp
;
211 spin_lock_irqsave(&sel_ib_pkey_lock
, flags
);
212 for (idx
= 0; idx
< SEL_PKEY_HASH_SIZE
; idx
++) {
213 list_for_each_entry_safe(pkey
, pkey_tmp
,
214 &sel_ib_pkey_hash
[idx
].list
, list
) {
215 list_del_rcu(&pkey
->list
);
216 kfree_rcu(pkey
, rcu
);
218 sel_ib_pkey_hash
[idx
].size
= 0;
220 spin_unlock_irqrestore(&sel_ib_pkey_lock
, flags
);
223 static __init
int sel_ib_pkey_init(void)
227 if (!selinux_enabled_boot
)
230 for (iter
= 0; iter
< SEL_PKEY_HASH_SIZE
; iter
++) {
231 INIT_LIST_HEAD(&sel_ib_pkey_hash
[iter
].list
);
232 sel_ib_pkey_hash
[iter
].size
= 0;
238 subsys_initcall(sel_ib_pkey_init
);