1 // SPDX-License-Identifier: GPL-2.0
3 * linux/fs/nfs/dns_resolve.c
5 * Copyright (c) 2009 Trond Myklebust <Trond.Myklebust@netapp.com>
7 * Resolves DNS hostnames into valid ip addresses
10 #ifdef CONFIG_NFS_USE_KERNEL_DNS
12 #include <linux/module.h>
13 #include <linux/sunrpc/clnt.h>
14 #include <linux/sunrpc/addr.h>
15 #include <linux/dns_resolver.h>
16 #include "dns_resolve.h"
18 ssize_t
nfs_dns_resolve_name(struct net
*net
, char *name
, size_t namelen
,
19 struct sockaddr
*sa
, size_t salen
)
25 ip_len
= dns_query(net
, NULL
, name
, namelen
, NULL
, &ip_addr
, NULL
,
28 ret
= rpc_pton(net
, ip_addr
, ip_len
, sa
, salen
);
37 #include <linux/module.h>
38 #include <linux/hash.h>
39 #include <linux/string.h>
40 #include <linux/kmod.h>
41 #include <linux/slab.h>
42 #include <linux/socket.h>
43 #include <linux/seq_file.h>
44 #include <linux/inet.h>
45 #include <linux/sunrpc/clnt.h>
46 #include <linux/sunrpc/addr.h>
47 #include <linux/sunrpc/cache.h>
48 #include <linux/sunrpc/svcauth.h>
49 #include <linux/sunrpc/rpc_pipe_fs.h>
50 #include <linux/nfs_fs.h>
53 #include "dns_resolve.h"
54 #include "cache_lib.h"
57 #define NFS_DNS_HASHBITS 4
58 #define NFS_DNS_HASHTBL_SIZE (1 << NFS_DNS_HASHBITS)
66 struct sockaddr_storage addr
;
68 struct rcu_head rcu_head
;
72 static void nfs_dns_ent_update(struct cache_head
*cnew
,
73 struct cache_head
*ckey
)
75 struct nfs_dns_ent
*new;
76 struct nfs_dns_ent
*key
;
78 new = container_of(cnew
, struct nfs_dns_ent
, h
);
79 key
= container_of(ckey
, struct nfs_dns_ent
, h
);
81 memcpy(&new->addr
, &key
->addr
, key
->addrlen
);
82 new->addrlen
= key
->addrlen
;
85 static void nfs_dns_ent_init(struct cache_head
*cnew
,
86 struct cache_head
*ckey
)
88 struct nfs_dns_ent
*new;
89 struct nfs_dns_ent
*key
;
91 new = container_of(cnew
, struct nfs_dns_ent
, h
);
92 key
= container_of(ckey
, struct nfs_dns_ent
, h
);
95 new->hostname
= kmemdup_nul(key
->hostname
, key
->namelen
, GFP_KERNEL
);
97 new->namelen
= key
->namelen
;
98 nfs_dns_ent_update(cnew
, ckey
);
105 static void nfs_dns_ent_free_rcu(struct rcu_head
*head
)
107 struct nfs_dns_ent
*item
;
109 item
= container_of(head
, struct nfs_dns_ent
, rcu_head
);
110 kfree(item
->hostname
);
114 static void nfs_dns_ent_put(struct kref
*ref
)
116 struct nfs_dns_ent
*item
;
118 item
= container_of(ref
, struct nfs_dns_ent
, h
.ref
);
119 call_rcu(&item
->rcu_head
, nfs_dns_ent_free_rcu
);
122 static struct cache_head
*nfs_dns_ent_alloc(void)
124 struct nfs_dns_ent
*item
= kmalloc(sizeof(*item
), GFP_KERNEL
);
127 item
->hostname
= NULL
;
135 static unsigned int nfs_dns_hash(const struct nfs_dns_ent
*key
)
137 return hash_str(key
->hostname
, NFS_DNS_HASHBITS
);
140 static void nfs_dns_request(struct cache_detail
*cd
,
141 struct cache_head
*ch
,
142 char **bpp
, int *blen
)
144 struct nfs_dns_ent
*key
= container_of(ch
, struct nfs_dns_ent
, h
);
146 qword_add(bpp
, blen
, key
->hostname
);
150 static int nfs_dns_upcall(struct cache_detail
*cd
,
151 struct cache_head
*ch
)
153 struct nfs_dns_ent
*key
= container_of(ch
, struct nfs_dns_ent
, h
);
155 if (test_and_set_bit(CACHE_PENDING
, &ch
->flags
))
157 if (!nfs_cache_upcall(cd
, key
->hostname
))
159 clear_bit(CACHE_PENDING
, &ch
->flags
);
160 return sunrpc_cache_pipe_upcall_timeout(cd
, ch
);
163 static int nfs_dns_match(struct cache_head
*ca
,
164 struct cache_head
*cb
)
166 struct nfs_dns_ent
*a
;
167 struct nfs_dns_ent
*b
;
169 a
= container_of(ca
, struct nfs_dns_ent
, h
);
170 b
= container_of(cb
, struct nfs_dns_ent
, h
);
172 if (a
->namelen
== 0 || a
->namelen
!= b
->namelen
)
174 return memcmp(a
->hostname
, b
->hostname
, a
->namelen
) == 0;
177 static int nfs_dns_show(struct seq_file
*m
, struct cache_detail
*cd
,
178 struct cache_head
*h
)
180 struct nfs_dns_ent
*item
;
184 seq_puts(m
, "# ip address hostname ttl\n");
187 item
= container_of(h
, struct nfs_dns_ent
, h
);
188 ttl
= item
->h
.expiry_time
- seconds_since_boot();
192 if (!test_bit(CACHE_NEGATIVE
, &h
->flags
)) {
193 char buf
[INET6_ADDRSTRLEN
+IPV6_SCOPE_ID_LEN
+1];
195 rpc_ntop((struct sockaddr
*)&item
->addr
, buf
, sizeof(buf
));
196 seq_printf(m
, "%15s ", buf
);
198 seq_puts(m
, "<none> ");
199 seq_printf(m
, "%15s %ld\n", item
->hostname
, ttl
);
203 static struct nfs_dns_ent
*nfs_dns_lookup(struct cache_detail
*cd
,
204 struct nfs_dns_ent
*key
)
206 struct cache_head
*ch
;
208 ch
= sunrpc_cache_lookup_rcu(cd
,
213 return container_of(ch
, struct nfs_dns_ent
, h
);
216 static struct nfs_dns_ent
*nfs_dns_update(struct cache_detail
*cd
,
217 struct nfs_dns_ent
*new,
218 struct nfs_dns_ent
*key
)
220 struct cache_head
*ch
;
222 ch
= sunrpc_cache_update(cd
,
227 return container_of(ch
, struct nfs_dns_ent
, h
);
230 static int nfs_dns_parse(struct cache_detail
*cd
, char *buf
, int buflen
)
232 char buf1
[NFS_DNS_HOSTNAME_MAXLEN
+1];
233 struct nfs_dns_ent key
, *item
;
238 if (buf
[buflen
-1] != '\n')
240 buf
[buflen
-1] = '\0';
242 len
= qword_get(&buf
, buf1
, sizeof(buf1
));
245 key
.addrlen
= rpc_pton(cd
->net
, buf1
, len
,
246 (struct sockaddr
*)&key
.addr
,
249 len
= qword_get(&buf
, buf1
, sizeof(buf1
));
255 memset(&key
.h
, 0, sizeof(key
.h
));
257 if (get_uint(&buf
, &ttl
) < 0)
261 key
.h
.expiry_time
= ttl
+ seconds_since_boot();
264 item
= nfs_dns_lookup(cd
, &key
);
268 if (key
.addrlen
== 0)
269 set_bit(CACHE_NEGATIVE
, &key
.h
.flags
);
271 item
= nfs_dns_update(cd
, &key
, item
);
276 cache_put(&item
->h
, cd
);
281 static int do_cache_lookup(struct cache_detail
*cd
,
282 struct nfs_dns_ent
*key
,
283 struct nfs_dns_ent
**item
,
284 struct nfs_cache_defer_req
*dreq
)
288 *item
= nfs_dns_lookup(cd
, key
);
290 ret
= cache_check(cd
, &(*item
)->h
, &dreq
->req
);
297 static int do_cache_lookup_nowait(struct cache_detail
*cd
,
298 struct nfs_dns_ent
*key
,
299 struct nfs_dns_ent
**item
)
303 *item
= nfs_dns_lookup(cd
, key
);
307 if (!test_bit(CACHE_VALID
, &(*item
)->h
.flags
)
308 || (*item
)->h
.expiry_time
< seconds_since_boot()
309 || cd
->flush_time
> (*item
)->h
.last_refresh
)
312 if (test_bit(CACHE_NEGATIVE
, &(*item
)->h
.flags
))
316 cache_put(&(*item
)->h
, cd
);
322 static int do_cache_lookup_wait(struct cache_detail
*cd
,
323 struct nfs_dns_ent
*key
,
324 struct nfs_dns_ent
**item
)
326 struct nfs_cache_defer_req
*dreq
;
329 dreq
= nfs_cache_defer_req_alloc();
332 ret
= do_cache_lookup(cd
, key
, item
, dreq
);
333 if (ret
== -EAGAIN
) {
334 ret
= nfs_cache_wait_for_upcall(dreq
);
336 ret
= do_cache_lookup_nowait(cd
, key
, item
);
338 nfs_cache_defer_req_put(dreq
);
343 ssize_t
nfs_dns_resolve_name(struct net
*net
, char *name
,
344 size_t namelen
, struct sockaddr
*sa
, size_t salen
)
346 struct nfs_dns_ent key
= {
350 struct nfs_dns_ent
*item
= NULL
;
352 struct nfs_net
*nn
= net_generic(net
, nfs_net_id
);
354 ret
= do_cache_lookup_wait(nn
->nfs_dns_resolve
, &key
, &item
);
356 if (salen
>= item
->addrlen
) {
357 memcpy(sa
, &item
->addr
, item
->addrlen
);
361 cache_put(&item
->h
, nn
->nfs_dns_resolve
);
362 } else if (ret
== -ENOENT
)
367 static struct cache_detail nfs_dns_resolve_template
= {
368 .owner
= THIS_MODULE
,
369 .hash_size
= NFS_DNS_HASHTBL_SIZE
,
370 .name
= "dns_resolve",
371 .cache_put
= nfs_dns_ent_put
,
372 .cache_upcall
= nfs_dns_upcall
,
373 .cache_request
= nfs_dns_request
,
374 .cache_parse
= nfs_dns_parse
,
375 .cache_show
= nfs_dns_show
,
376 .match
= nfs_dns_match
,
377 .init
= nfs_dns_ent_init
,
378 .update
= nfs_dns_ent_update
,
379 .alloc
= nfs_dns_ent_alloc
,
383 int nfs_dns_resolver_cache_init(struct net
*net
)
386 struct nfs_net
*nn
= net_generic(net
, nfs_net_id
);
388 nn
->nfs_dns_resolve
= cache_create_net(&nfs_dns_resolve_template
, net
);
389 if (IS_ERR(nn
->nfs_dns_resolve
))
390 return PTR_ERR(nn
->nfs_dns_resolve
);
392 err
= nfs_cache_register_net(net
, nn
->nfs_dns_resolve
);
398 cache_destroy_net(nn
->nfs_dns_resolve
, net
);
402 void nfs_dns_resolver_cache_destroy(struct net
*net
)
404 struct nfs_net
*nn
= net_generic(net
, nfs_net_id
);
406 nfs_cache_unregister_net(net
, nn
->nfs_dns_resolve
);
407 cache_destroy_net(nn
->nfs_dns_resolve
, net
);
410 static int nfs4_dns_net_init(struct net
*net
)
412 return nfs_dns_resolver_cache_init(net
);
415 static void nfs4_dns_net_exit(struct net
*net
)
417 nfs_dns_resolver_cache_destroy(net
);
420 static struct pernet_operations nfs4_dns_resolver_ops
= {
421 .init
= nfs4_dns_net_init
,
422 .exit
= nfs4_dns_net_exit
,
425 static int rpc_pipefs_event(struct notifier_block
*nb
, unsigned long event
,
428 struct super_block
*sb
= ptr
;
429 struct net
*net
= sb
->s_fs_info
;
430 struct nfs_net
*nn
= net_generic(net
, nfs_net_id
);
431 struct cache_detail
*cd
= nn
->nfs_dns_resolve
;
437 if (!try_module_get(THIS_MODULE
))
441 case RPC_PIPEFS_MOUNT
:
442 ret
= nfs_cache_register_sb(sb
, cd
);
444 case RPC_PIPEFS_UMOUNT
:
445 nfs_cache_unregister_sb(sb
, cd
);
451 module_put(THIS_MODULE
);
455 static struct notifier_block nfs_dns_resolver_block
= {
456 .notifier_call
= rpc_pipefs_event
,
459 int nfs_dns_resolver_init(void)
463 err
= register_pernet_subsys(&nfs4_dns_resolver_ops
);
466 err
= rpc_pipefs_notifier_register(&nfs_dns_resolver_block
);
471 unregister_pernet_subsys(&nfs4_dns_resolver_ops
);
476 void nfs_dns_resolver_destroy(void)
478 rpc_pipefs_notifier_unregister(&nfs_dns_resolver_block
);
479 unregister_pernet_subsys(&nfs4_dns_resolver_ops
);