1 // SPDX-License-Identifier: GPL-2.0
3 * Neil Brown <neilb@cse.unsw.edu.au>
4 * J. Bruce Fields <bfields@umich.edu>
5 * Andy Adamson <andros@umich.edu>
6 * Dug Song <dugsong@monkey.org>
8 * RPCSEC_GSS server authentication.
9 * This implements RPCSEC_GSS as defined in rfc2203 (rpcsec_gss) and rfc2078
12 * The RPCSEC_GSS involves three stages:
15 * 3/ context destruction
17 * Context creation is handled largely by upcalls to user-space.
18 * In particular, GSS_Accept_sec_context is handled by an upcall
19 * Data exchange is handled entirely within the kernel
20 * In particular, GSS_GetMIC, GSS_VerifyMIC, GSS_Seal, GSS_Unseal are in-kernel.
21 * Context destruction is handled in-kernel
22 * GSS_Delete_sec_context is in-kernel
24 * Context creation is initiated by a RPCSEC_GSS_INIT request arriving.
25 * The context handle and gss_token are used as a key into the rpcsec_init cache.
26 * The content of this cache includes some of the outputs of GSS_Accept_sec_context,
27 * being major_status, minor_status, context_handle, reply_token.
28 * These are sent back to the client.
29 * Sequence window management is handled by the kernel. The window size if currently
30 * a compile time constant.
32 * When user-space is happy that a context is established, it places an entry
33 * in the rpcsec_context cache. The key for this cache is the context_handle.
34 * The content includes:
35 * uid/gidlist - for determining access rights
37 * mechanism specific information, such as a key
41 #include <linux/slab.h>
42 #include <linux/types.h>
43 #include <linux/module.h>
44 #include <linux/pagemap.h>
45 #include <linux/user_namespace.h>
47 #include <linux/sunrpc/auth_gss.h>
48 #include <linux/sunrpc/gss_err.h>
49 #include <linux/sunrpc/svcauth.h>
50 #include <linux/sunrpc/svcauth_gss.h>
51 #include <linux/sunrpc/cache.h>
53 #include <trace/events/rpcgss.h>
55 #include "gss_rpc_upcall.h"
58 #if IS_ENABLED(CONFIG_SUNRPC_DEBUG)
59 # define RPCDBG_FACILITY RPCDBG_AUTH
62 /* The rpcsec_init cache is used for mapping RPCSEC_GSS_{,CONT_}INIT requests
65 * Key is context handle (\x if empty) and gss_token.
66 * Content is major_status minor_status (integers) context_handle, reply_token.
70 static int netobj_equal(struct xdr_netobj
*a
, struct xdr_netobj
*b
)
72 return a
->len
== b
->len
&& 0 == memcmp(a
->data
, b
->data
, a
->len
);
75 #define RSI_HASHBITS 6
76 #define RSI_HASHMAX (1<<RSI_HASHBITS)
80 struct xdr_netobj in_handle
, in_token
;
81 struct xdr_netobj out_handle
, out_token
;
82 int major_status
, minor_status
;
83 struct rcu_head rcu_head
;
86 static struct rsi
*rsi_update(struct cache_detail
*cd
, struct rsi
*new, struct rsi
*old
);
87 static struct rsi
*rsi_lookup(struct cache_detail
*cd
, struct rsi
*item
);
89 static void rsi_free(struct rsi
*rsii
)
91 kfree(rsii
->in_handle
.data
);
92 kfree(rsii
->in_token
.data
);
93 kfree(rsii
->out_handle
.data
);
94 kfree(rsii
->out_token
.data
);
97 static void rsi_free_rcu(struct rcu_head
*head
)
99 struct rsi
*rsii
= container_of(head
, struct rsi
, rcu_head
);
105 static void rsi_put(struct kref
*ref
)
107 struct rsi
*rsii
= container_of(ref
, struct rsi
, h
.ref
);
109 call_rcu(&rsii
->rcu_head
, rsi_free_rcu
);
112 static inline int rsi_hash(struct rsi
*item
)
114 return hash_mem(item
->in_handle
.data
, item
->in_handle
.len
, RSI_HASHBITS
)
115 ^ hash_mem(item
->in_token
.data
, item
->in_token
.len
, RSI_HASHBITS
);
118 static int rsi_match(struct cache_head
*a
, struct cache_head
*b
)
120 struct rsi
*item
= container_of(a
, struct rsi
, h
);
121 struct rsi
*tmp
= container_of(b
, struct rsi
, h
);
122 return netobj_equal(&item
->in_handle
, &tmp
->in_handle
) &&
123 netobj_equal(&item
->in_token
, &tmp
->in_token
);
126 static int dup_to_netobj(struct xdr_netobj
*dst
, char *src
, int len
)
129 dst
->data
= (len
? kmemdup(src
, len
, GFP_KERNEL
) : NULL
);
130 if (len
&& !dst
->data
)
135 static inline int dup_netobj(struct xdr_netobj
*dst
, struct xdr_netobj
*src
)
137 return dup_to_netobj(dst
, src
->data
, src
->len
);
140 static void rsi_init(struct cache_head
*cnew
, struct cache_head
*citem
)
142 struct rsi
*new = container_of(cnew
, struct rsi
, h
);
143 struct rsi
*item
= container_of(citem
, struct rsi
, h
);
145 new->out_handle
.data
= NULL
;
146 new->out_handle
.len
= 0;
147 new->out_token
.data
= NULL
;
148 new->out_token
.len
= 0;
149 new->in_handle
.len
= item
->in_handle
.len
;
150 item
->in_handle
.len
= 0;
151 new->in_token
.len
= item
->in_token
.len
;
152 item
->in_token
.len
= 0;
153 new->in_handle
.data
= item
->in_handle
.data
;
154 item
->in_handle
.data
= NULL
;
155 new->in_token
.data
= item
->in_token
.data
;
156 item
->in_token
.data
= NULL
;
159 static void update_rsi(struct cache_head
*cnew
, struct cache_head
*citem
)
161 struct rsi
*new = container_of(cnew
, struct rsi
, h
);
162 struct rsi
*item
= container_of(citem
, struct rsi
, h
);
164 BUG_ON(new->out_handle
.data
|| new->out_token
.data
);
165 new->out_handle
.len
= item
->out_handle
.len
;
166 item
->out_handle
.len
= 0;
167 new->out_token
.len
= item
->out_token
.len
;
168 item
->out_token
.len
= 0;
169 new->out_handle
.data
= item
->out_handle
.data
;
170 item
->out_handle
.data
= NULL
;
171 new->out_token
.data
= item
->out_token
.data
;
172 item
->out_token
.data
= NULL
;
174 new->major_status
= item
->major_status
;
175 new->minor_status
= item
->minor_status
;
178 static struct cache_head
*rsi_alloc(void)
180 struct rsi
*rsii
= kmalloc(sizeof(*rsii
), GFP_KERNEL
);
187 static void rsi_request(struct cache_detail
*cd
,
188 struct cache_head
*h
,
189 char **bpp
, int *blen
)
191 struct rsi
*rsii
= container_of(h
, struct rsi
, h
);
193 qword_addhex(bpp
, blen
, rsii
->in_handle
.data
, rsii
->in_handle
.len
);
194 qword_addhex(bpp
, blen
, rsii
->in_token
.data
, rsii
->in_token
.len
);
198 static int rsi_parse(struct cache_detail
*cd
,
199 char *mesg
, int mlen
)
201 /* context token expiry major minor context token */
205 struct rsi rsii
, *rsip
= NULL
;
207 int status
= -EINVAL
;
209 memset(&rsii
, 0, sizeof(rsii
));
211 len
= qword_get(&mesg
, buf
, mlen
);
215 if (dup_to_netobj(&rsii
.in_handle
, buf
, len
))
219 len
= qword_get(&mesg
, buf
, mlen
);
224 if (dup_to_netobj(&rsii
.in_token
, buf
, len
))
227 rsip
= rsi_lookup(cd
, &rsii
);
233 expiry
= get_expiry(&mesg
);
239 len
= qword_get(&mesg
, buf
, mlen
);
242 rsii
.major_status
= simple_strtoul(buf
, &ep
, 10);
245 len
= qword_get(&mesg
, buf
, mlen
);
248 rsii
.minor_status
= simple_strtoul(buf
, &ep
, 10);
253 len
= qword_get(&mesg
, buf
, mlen
);
257 if (dup_to_netobj(&rsii
.out_handle
, buf
, len
))
261 len
= qword_get(&mesg
, buf
, mlen
);
266 if (dup_to_netobj(&rsii
.out_token
, buf
, len
))
268 rsii
.h
.expiry_time
= expiry
;
269 rsip
= rsi_update(cd
, &rsii
, rsip
);
274 cache_put(&rsip
->h
, cd
);
280 static const struct cache_detail rsi_cache_template
= {
281 .owner
= THIS_MODULE
,
282 .hash_size
= RSI_HASHMAX
,
283 .name
= "auth.rpcsec.init",
284 .cache_put
= rsi_put
,
285 .cache_request
= rsi_request
,
286 .cache_parse
= rsi_parse
,
289 .update
= update_rsi
,
293 static struct rsi
*rsi_lookup(struct cache_detail
*cd
, struct rsi
*item
)
295 struct cache_head
*ch
;
296 int hash
= rsi_hash(item
);
298 ch
= sunrpc_cache_lookup_rcu(cd
, &item
->h
, hash
);
300 return container_of(ch
, struct rsi
, h
);
305 static struct rsi
*rsi_update(struct cache_detail
*cd
, struct rsi
*new, struct rsi
*old
)
307 struct cache_head
*ch
;
308 int hash
= rsi_hash(new);
310 ch
= sunrpc_cache_update(cd
, &new->h
,
313 return container_of(ch
, struct rsi
, h
);
320 * The rpcsec_context cache is used to store a context that is
321 * used in data exchange.
322 * The key is a context handle. The content is:
323 * uid, gidlist, mechanism, service-set, mech-specific-data
326 #define RSC_HASHBITS 10
327 #define RSC_HASHMAX (1<<RSC_HASHBITS)
329 #define GSS_SEQ_WIN 128
331 struct gss_svc_seq_data
{
332 /* highest seq number seen so far: */
334 /* for i such that sd_max-GSS_SEQ_WIN < i <= sd_max, the i-th bit of
335 * sd_win is nonzero iff sequence number i has been seen already: */
336 unsigned long sd_win
[GSS_SEQ_WIN
/BITS_PER_LONG
];
342 struct xdr_netobj handle
;
343 struct svc_cred cred
;
344 struct gss_svc_seq_data seqdata
;
345 struct gss_ctx
*mechctx
;
346 struct rcu_head rcu_head
;
349 static struct rsc
*rsc_update(struct cache_detail
*cd
, struct rsc
*new, struct rsc
*old
);
350 static struct rsc
*rsc_lookup(struct cache_detail
*cd
, struct rsc
*item
);
352 static void rsc_free(struct rsc
*rsci
)
354 kfree(rsci
->handle
.data
);
356 gss_delete_sec_context(&rsci
->mechctx
);
357 free_svc_cred(&rsci
->cred
);
360 static void rsc_free_rcu(struct rcu_head
*head
)
362 struct rsc
*rsci
= container_of(head
, struct rsc
, rcu_head
);
364 kfree(rsci
->handle
.data
);
368 static void rsc_put(struct kref
*ref
)
370 struct rsc
*rsci
= container_of(ref
, struct rsc
, h
.ref
);
373 gss_delete_sec_context(&rsci
->mechctx
);
374 free_svc_cred(&rsci
->cred
);
375 call_rcu(&rsci
->rcu_head
, rsc_free_rcu
);
379 rsc_hash(struct rsc
*rsci
)
381 return hash_mem(rsci
->handle
.data
, rsci
->handle
.len
, RSC_HASHBITS
);
385 rsc_match(struct cache_head
*a
, struct cache_head
*b
)
387 struct rsc
*new = container_of(a
, struct rsc
, h
);
388 struct rsc
*tmp
= container_of(b
, struct rsc
, h
);
390 return netobj_equal(&new->handle
, &tmp
->handle
);
394 rsc_init(struct cache_head
*cnew
, struct cache_head
*ctmp
)
396 struct rsc
*new = container_of(cnew
, struct rsc
, h
);
397 struct rsc
*tmp
= container_of(ctmp
, struct rsc
, h
);
399 new->handle
.len
= tmp
->handle
.len
;
401 new->handle
.data
= tmp
->handle
.data
;
402 tmp
->handle
.data
= NULL
;
404 init_svc_cred(&new->cred
);
408 update_rsc(struct cache_head
*cnew
, struct cache_head
*ctmp
)
410 struct rsc
*new = container_of(cnew
, struct rsc
, h
);
411 struct rsc
*tmp
= container_of(ctmp
, struct rsc
, h
);
413 new->mechctx
= tmp
->mechctx
;
415 memset(&new->seqdata
, 0, sizeof(new->seqdata
));
416 spin_lock_init(&new->seqdata
.sd_lock
);
417 new->cred
= tmp
->cred
;
418 init_svc_cred(&tmp
->cred
);
421 static struct cache_head
*
424 struct rsc
*rsci
= kmalloc(sizeof(*rsci
), GFP_KERNEL
);
431 static int rsc_parse(struct cache_detail
*cd
,
432 char *mesg
, int mlen
)
434 /* contexthandle expiry [ uid gid N <n gids> mechname ...mechdata... ] */
438 struct rsc rsci
, *rscp
= NULL
;
440 int status
= -EINVAL
;
441 struct gss_api_mech
*gm
= NULL
;
443 memset(&rsci
, 0, sizeof(rsci
));
445 len
= qword_get(&mesg
, buf
, mlen
);
446 if (len
< 0) goto out
;
448 if (dup_to_netobj(&rsci
.handle
, buf
, len
))
453 expiry
= get_expiry(&mesg
);
458 rscp
= rsc_lookup(cd
, &rsci
);
462 /* uid, or NEGATIVE */
463 rv
= get_int(&mesg
, &id
);
467 set_bit(CACHE_NEGATIVE
, &rsci
.h
.flags
);
472 * NOTE: we skip uid_valid()/gid_valid() checks here:
473 * instead, * -1 id's are later mapped to the
474 * (export-specific) anonymous id by nfsd_setuser.
476 * (But supplementary gid's get no such special
477 * treatment so are checked for validity here.)
480 rsci
.cred
.cr_uid
= make_kuid(current_user_ns(), id
);
483 if (get_int(&mesg
, &id
))
485 rsci
.cred
.cr_gid
= make_kgid(current_user_ns(), id
);
487 /* number of additional gid's */
488 if (get_int(&mesg
, &N
))
490 if (N
< 0 || N
> NGROUPS_MAX
)
493 rsci
.cred
.cr_group_info
= groups_alloc(N
);
494 if (rsci
.cred
.cr_group_info
== NULL
)
499 for (i
=0; i
<N
; i
++) {
501 if (get_int(&mesg
, &id
))
503 kgid
= make_kgid(current_user_ns(), id
);
504 if (!gid_valid(kgid
))
506 rsci
.cred
.cr_group_info
->gid
[i
] = kgid
;
508 groups_sort(rsci
.cred
.cr_group_info
);
511 len
= qword_get(&mesg
, buf
, mlen
);
514 gm
= rsci
.cred
.cr_gss_mech
= gss_mech_get_by_name(buf
);
515 status
= -EOPNOTSUPP
;
520 /* mech-specific data: */
521 len
= qword_get(&mesg
, buf
, mlen
);
524 status
= gss_import_sec_context(buf
, len
, gm
, &rsci
.mechctx
,
529 /* get client name */
530 len
= qword_get(&mesg
, buf
, mlen
);
532 rsci
.cred
.cr_principal
= kstrdup(buf
, GFP_KERNEL
);
533 if (!rsci
.cred
.cr_principal
) {
540 rsci
.h
.expiry_time
= expiry
;
541 rscp
= rsc_update(cd
, &rsci
, rscp
);
546 cache_put(&rscp
->h
, cd
);
552 static const struct cache_detail rsc_cache_template
= {
553 .owner
= THIS_MODULE
,
554 .hash_size
= RSC_HASHMAX
,
555 .name
= "auth.rpcsec.context",
556 .cache_put
= rsc_put
,
557 .cache_parse
= rsc_parse
,
560 .update
= update_rsc
,
564 static struct rsc
*rsc_lookup(struct cache_detail
*cd
, struct rsc
*item
)
566 struct cache_head
*ch
;
567 int hash
= rsc_hash(item
);
569 ch
= sunrpc_cache_lookup_rcu(cd
, &item
->h
, hash
);
571 return container_of(ch
, struct rsc
, h
);
576 static struct rsc
*rsc_update(struct cache_detail
*cd
, struct rsc
*new, struct rsc
*old
)
578 struct cache_head
*ch
;
579 int hash
= rsc_hash(new);
581 ch
= sunrpc_cache_update(cd
, &new->h
,
584 return container_of(ch
, struct rsc
, h
);
591 gss_svc_searchbyctx(struct cache_detail
*cd
, struct xdr_netobj
*handle
)
596 memset(&rsci
, 0, sizeof(rsci
));
597 if (dup_to_netobj(&rsci
.handle
, handle
->data
, handle
->len
))
599 found
= rsc_lookup(cd
, &rsci
);
603 if (cache_check(cd
, &found
->h
, NULL
))
608 /* Implements sequence number algorithm as specified in RFC 2203. */
610 gss_check_seq_num(struct rsc
*rsci
, int seq_num
)
612 struct gss_svc_seq_data
*sd
= &rsci
->seqdata
;
614 spin_lock(&sd
->sd_lock
);
615 if (seq_num
> sd
->sd_max
) {
616 if (seq_num
>= sd
->sd_max
+ GSS_SEQ_WIN
) {
617 memset(sd
->sd_win
,0,sizeof(sd
->sd_win
));
618 sd
->sd_max
= seq_num
;
619 } else while (sd
->sd_max
< seq_num
) {
621 __clear_bit(sd
->sd_max
% GSS_SEQ_WIN
, sd
->sd_win
);
623 __set_bit(seq_num
% GSS_SEQ_WIN
, sd
->sd_win
);
625 } else if (seq_num
<= sd
->sd_max
- GSS_SEQ_WIN
) {
628 /* sd_max - GSS_SEQ_WIN < seq_num <= sd_max */
629 if (__test_and_set_bit(seq_num
% GSS_SEQ_WIN
, sd
->sd_win
))
632 spin_unlock(&sd
->sd_lock
);
635 spin_unlock(&sd
->sd_lock
);
639 static inline u32
round_up_to_quad(u32 i
)
641 return (i
+ 3 ) & ~3;
645 svc_safe_getnetobj(struct kvec
*argv
, struct xdr_netobj
*o
)
649 if (argv
->iov_len
< 4)
651 o
->len
= svc_getnl(argv
);
652 l
= round_up_to_quad(o
->len
);
653 if (argv
->iov_len
< l
)
655 o
->data
= argv
->iov_base
;
662 svc_safe_putnetobj(struct kvec
*resv
, struct xdr_netobj
*o
)
666 if (resv
->iov_len
+ 4 > PAGE_SIZE
)
668 svc_putnl(resv
, o
->len
);
669 p
= resv
->iov_base
+ resv
->iov_len
;
670 resv
->iov_len
+= round_up_to_quad(o
->len
);
671 if (resv
->iov_len
> PAGE_SIZE
)
673 memcpy(p
, o
->data
, o
->len
);
674 memset(p
+ o
->len
, 0, round_up_to_quad(o
->len
) - o
->len
);
679 * Verify the checksum on the header and return SVC_OK on success.
680 * Otherwise, return SVC_DROP (in the case of a bad sequence number)
681 * or return SVC_DENIED and indicate error in authp.
684 gss_verify_header(struct svc_rqst
*rqstp
, struct rsc
*rsci
,
685 __be32
*rpcstart
, struct rpc_gss_wire_cred
*gc
, __be32
*authp
)
687 struct gss_ctx
*ctx_id
= rsci
->mechctx
;
688 struct xdr_buf rpchdr
;
689 struct xdr_netobj checksum
;
691 struct kvec
*argv
= &rqstp
->rq_arg
.head
[0];
694 /* data to compute the checksum over: */
695 iov
.iov_base
= rpcstart
;
696 iov
.iov_len
= (u8
*)argv
->iov_base
- (u8
*)rpcstart
;
697 xdr_buf_from_iov(&iov
, &rpchdr
);
699 *authp
= rpc_autherr_badverf
;
700 if (argv
->iov_len
< 4)
702 flavor
= svc_getnl(argv
);
703 if (flavor
!= RPC_AUTH_GSS
)
705 if (svc_safe_getnetobj(argv
, &checksum
))
708 if (rqstp
->rq_deferred
) /* skip verification of revisited request */
710 if (gss_verify_mic(ctx_id
, &rpchdr
, &checksum
) != GSS_S_COMPLETE
) {
711 *authp
= rpcsec_gsserr_credproblem
;
715 if (gc
->gc_seq
> MAXSEQ
) {
716 dprintk("RPC: svcauth_gss: discarding request with "
717 "large sequence number %d\n", gc
->gc_seq
);
718 *authp
= rpcsec_gsserr_ctxproblem
;
721 if (!gss_check_seq_num(rsci
, gc
->gc_seq
)) {
722 dprintk("RPC: svcauth_gss: discarding request with "
723 "old sequence number %d\n", gc
->gc_seq
);
730 gss_write_null_verf(struct svc_rqst
*rqstp
)
734 svc_putnl(rqstp
->rq_res
.head
, RPC_AUTH_NULL
);
735 p
= rqstp
->rq_res
.head
->iov_base
+ rqstp
->rq_res
.head
->iov_len
;
736 /* don't really need to check if head->iov_len > PAGE_SIZE ... */
738 if (!xdr_ressize_check(rqstp
, p
))
744 gss_write_verf(struct svc_rqst
*rqstp
, struct gss_ctx
*ctx_id
, u32 seq
)
748 struct xdr_buf verf_data
;
749 struct xdr_netobj mic
;
754 svc_putnl(rqstp
->rq_res
.head
, RPC_AUTH_GSS
);
755 xdr_seq
= kmalloc(4, GFP_KERNEL
);
758 *xdr_seq
= htonl(seq
);
760 iov
.iov_base
= xdr_seq
;
762 xdr_buf_from_iov(&iov
, &verf_data
);
763 p
= rqstp
->rq_res
.head
->iov_base
+ rqstp
->rq_res
.head
->iov_len
;
764 mic
.data
= (u8
*)(p
+ 1);
765 maj_stat
= gss_get_mic(ctx_id
, &verf_data
, &mic
);
766 if (maj_stat
!= GSS_S_COMPLETE
)
768 *p
++ = htonl(mic
.len
);
769 memset((u8
*)p
+ mic
.len
, 0, round_up_to_quad(mic
.len
) - mic
.len
);
770 p
+= XDR_QUADLEN(mic
.len
);
771 if (!xdr_ressize_check(rqstp
, p
))
780 struct auth_domain h
;
784 static struct auth_domain
*
785 find_gss_auth_domain(struct gss_ctx
*ctx
, u32 svc
)
789 name
= gss_service_to_auth_domain_name(ctx
->mech_type
, svc
);
792 return auth_domain_find(name
);
795 static struct auth_ops svcauthops_gss
;
797 u32
svcauth_gss_flavor(struct auth_domain
*dom
)
799 struct gss_domain
*gd
= container_of(dom
, struct gss_domain
, h
);
801 return gd
->pseudoflavor
;
804 EXPORT_SYMBOL_GPL(svcauth_gss_flavor
);
807 svcauth_gss_register_pseudoflavor(u32 pseudoflavor
, char * name
)
809 struct gss_domain
*new;
810 struct auth_domain
*test
;
813 new = kmalloc(sizeof(*new), GFP_KERNEL
);
816 kref_init(&new->h
.ref
);
817 new->h
.name
= kstrdup(name
, GFP_KERNEL
);
820 new->h
.flavour
= &svcauthops_gss
;
821 new->pseudoflavor
= pseudoflavor
;
824 test
= auth_domain_lookup(name
, &new->h
);
825 if (test
!= &new->h
) { /* Duplicate registration */
826 auth_domain_put(test
);
838 EXPORT_SYMBOL_GPL(svcauth_gss_register_pseudoflavor
);
841 read_u32_from_xdr_buf(struct xdr_buf
*buf
, int base
, u32
*obj
)
846 status
= read_bytes_from_xdr_buf(buf
, base
, &raw
, sizeof(*obj
));
853 /* It would be nice if this bit of code could be shared with the client.
855 * The client shouldn't malloc(), would have to pass in own memory.
856 * The server uses base of head iovec as read pointer, while the
857 * client uses separate pointer. */
859 unwrap_integ_data(struct svc_rqst
*rqstp
, struct xdr_buf
*buf
, u32 seq
, struct gss_ctx
*ctx
)
862 u32 integ_len
, maj_stat
;
863 struct xdr_netobj mic
;
864 struct xdr_buf integ_buf
;
866 /* NFS READ normally uses splice to send data in-place. However
867 * the data in cache can change after the reply's MIC is computed
868 * but before the RPC reply is sent. To prevent the client from
869 * rejecting the server-computed MIC in this somewhat rare case,
870 * do not use splice with the GSS integrity service.
872 clear_bit(RQ_SPLICE_OK
, &rqstp
->rq_flags
);
874 /* Did we already verify the signature on the original pass through? */
875 if (rqstp
->rq_deferred
)
878 integ_len
= svc_getnl(&buf
->head
[0]);
881 if (integ_len
> buf
->len
)
883 if (xdr_buf_subsegment(buf
, &integ_buf
, 0, integ_len
)) {
887 /* copy out mic... */
888 if (read_u32_from_xdr_buf(buf
, integ_len
, &mic
.len
))
890 if (mic
.len
> RPC_MAX_AUTH_SIZE
)
892 mic
.data
= kmalloc(mic
.len
, GFP_KERNEL
);
895 if (read_bytes_from_xdr_buf(buf
, integ_len
+ 4, mic
.data
, mic
.len
))
897 maj_stat
= gss_verify_mic(ctx
, &integ_buf
, &mic
);
898 if (maj_stat
!= GSS_S_COMPLETE
)
900 if (svc_getnl(&buf
->head
[0]) != seq
)
902 /* trim off the mic and padding at the end before returning */
903 buf
->len
-= 4 + round_up_to_quad(mic
.len
);
911 total_buf_len(struct xdr_buf
*buf
)
913 return buf
->head
[0].iov_len
+ buf
->page_len
+ buf
->tail
[0].iov_len
;
917 fix_priv_head(struct xdr_buf
*buf
, int pad
)
919 if (buf
->page_len
== 0) {
920 /* We need to adjust head and buf->len in tandem in this
921 * case to make svc_defer() work--it finds the original
922 * buffer start using buf->len - buf->head[0].iov_len. */
923 buf
->head
[0].iov_len
-= pad
;
928 unwrap_priv_data(struct svc_rqst
*rqstp
, struct xdr_buf
*buf
, u32 seq
, struct gss_ctx
*ctx
)
930 u32 priv_len
, maj_stat
;
931 int pad
, saved_len
, remaining_len
, offset
;
933 clear_bit(RQ_SPLICE_OK
, &rqstp
->rq_flags
);
935 priv_len
= svc_getnl(&buf
->head
[0]);
936 if (rqstp
->rq_deferred
) {
937 /* Already decrypted last time through! The sequence number
938 * check at out_seq is unnecessary but harmless: */
941 /* buf->len is the number of bytes from the original start of the
942 * request to the end, where head[0].iov_len is just the bytes
943 * not yet read from the head, so these two values are different: */
944 remaining_len
= total_buf_len(buf
);
945 if (priv_len
> remaining_len
)
947 pad
= remaining_len
- priv_len
;
949 fix_priv_head(buf
, pad
);
951 /* Maybe it would be better to give gss_unwrap a length parameter: */
952 saved_len
= buf
->len
;
954 maj_stat
= gss_unwrap(ctx
, 0, buf
);
955 pad
= priv_len
- buf
->len
;
956 buf
->len
= saved_len
;
958 /* The upper layers assume the buffer is aligned on 4-byte boundaries.
959 * In the krb5p case, at least, the data ends up offset, so we need to
961 /* XXX: This is very inefficient. It would be better to either do
962 * this while we encrypt, or maybe in the receive code, if we can peak
963 * ahead and work out the service and mechanism there. */
964 offset
= buf
->head
[0].iov_len
% 4;
966 buf
->buflen
= RPCSVC_MAXPAYLOAD
;
967 xdr_shift_buf(buf
, offset
);
968 fix_priv_head(buf
, pad
);
970 if (maj_stat
!= GSS_S_COMPLETE
)
973 if (svc_getnl(&buf
->head
[0]) != seq
)
978 struct gss_svc_data
{
979 /* decoded gss client cred: */
980 struct rpc_gss_wire_cred clcred
;
981 /* save a pointer to the beginning of the encoded verifier,
982 * for use in encryption/checksumming in svcauth_gss_release: */
988 svcauth_gss_set_client(struct svc_rqst
*rqstp
)
990 struct gss_svc_data
*svcdata
= rqstp
->rq_auth_data
;
991 struct rsc
*rsci
= svcdata
->rsci
;
992 struct rpc_gss_wire_cred
*gc
= &svcdata
->clcred
;
996 * A gss export can be specified either by:
997 * export *(sec=krb5,rw)
999 * export gss/krb5(rw)
1000 * The latter is deprecated; but for backwards compatibility reasons
1001 * the nfsd code will still fall back on trying it if the former
1002 * doesn't work; so we try to make both available to nfsd, below.
1004 rqstp
->rq_gssclient
= find_gss_auth_domain(rsci
->mechctx
, gc
->gc_svc
);
1005 if (rqstp
->rq_gssclient
== NULL
)
1007 stat
= svcauth_unix_set_client(rqstp
);
1008 if (stat
== SVC_DROP
|| stat
== SVC_CLOSE
)
1014 gss_write_init_verf(struct cache_detail
*cd
, struct svc_rqst
*rqstp
,
1015 struct xdr_netobj
*out_handle
, int *major_status
)
1020 if (*major_status
!= GSS_S_COMPLETE
)
1021 return gss_write_null_verf(rqstp
);
1022 rsci
= gss_svc_searchbyctx(cd
, out_handle
);
1024 *major_status
= GSS_S_NO_CONTEXT
;
1025 return gss_write_null_verf(rqstp
);
1027 rc
= gss_write_verf(rqstp
, rsci
->mechctx
, GSS_SEQ_WIN
);
1028 cache_put(&rsci
->h
, cd
);
1033 gss_read_common_verf(struct rpc_gss_wire_cred
*gc
,
1034 struct kvec
*argv
, __be32
*authp
,
1035 struct xdr_netobj
*in_handle
)
1037 /* Read the verifier; should be NULL: */
1038 *authp
= rpc_autherr_badverf
;
1039 if (argv
->iov_len
< 2 * 4)
1041 if (svc_getnl(argv
) != RPC_AUTH_NULL
)
1043 if (svc_getnl(argv
) != 0)
1045 /* Martial context handle and token for upcall: */
1046 *authp
= rpc_autherr_badcred
;
1047 if (gc
->gc_proc
== RPC_GSS_PROC_INIT
&& gc
->gc_ctx
.len
!= 0)
1049 if (dup_netobj(in_handle
, &gc
->gc_ctx
))
1051 *authp
= rpc_autherr_badverf
;
1057 gss_read_verf(struct rpc_gss_wire_cred
*gc
,
1058 struct kvec
*argv
, __be32
*authp
,
1059 struct xdr_netobj
*in_handle
,
1060 struct xdr_netobj
*in_token
)
1062 struct xdr_netobj tmpobj
;
1065 res
= gss_read_common_verf(gc
, argv
, authp
, in_handle
);
1069 if (svc_safe_getnetobj(argv
, &tmpobj
)) {
1070 kfree(in_handle
->data
);
1073 if (dup_netobj(in_token
, &tmpobj
)) {
1074 kfree(in_handle
->data
);
1081 static void gss_free_in_token_pages(struct gssp_in_token
*in_token
)
1087 inlen
= in_token
->page_len
;
1089 if (in_token
->pages
[i
])
1090 put_page(in_token
->pages
[i
]);
1091 inlen
-= inlen
> PAGE_SIZE
? PAGE_SIZE
: inlen
;
1094 kfree(in_token
->pages
);
1095 in_token
->pages
= NULL
;
1098 static int gss_read_proxy_verf(struct svc_rqst
*rqstp
,
1099 struct rpc_gss_wire_cred
*gc
, __be32
*authp
,
1100 struct xdr_netobj
*in_handle
,
1101 struct gssp_in_token
*in_token
)
1103 struct kvec
*argv
= &rqstp
->rq_arg
.head
[0];
1104 unsigned int page_base
, length
;
1108 res
= gss_read_common_verf(gc
, argv
, authp
, in_handle
);
1112 inlen
= svc_getnl(argv
);
1113 if (inlen
> (argv
->iov_len
+ rqstp
->rq_arg
.page_len
))
1116 pages
= DIV_ROUND_UP(inlen
, PAGE_SIZE
);
1117 in_token
->pages
= kcalloc(pages
, sizeof(struct page
*), GFP_KERNEL
);
1118 if (!in_token
->pages
)
1120 in_token
->page_base
= 0;
1121 in_token
->page_len
= inlen
;
1122 for (i
= 0; i
< pages
; i
++) {
1123 in_token
->pages
[i
] = alloc_page(GFP_KERNEL
);
1124 if (!in_token
->pages
[i
]) {
1125 gss_free_in_token_pages(in_token
);
1130 length
= min_t(unsigned int, inlen
, argv
->iov_len
);
1131 memcpy(page_address(in_token
->pages
[0]), argv
->iov_base
, length
);
1135 page_base
= rqstp
->rq_arg
.page_base
;
1137 length
= min_t(unsigned int, inlen
, PAGE_SIZE
);
1138 memcpy(page_address(in_token
->pages
[i
]),
1139 page_address(rqstp
->rq_arg
.pages
[i
]) + page_base
,
1150 gss_write_resv(struct kvec
*resv
, size_t size_limit
,
1151 struct xdr_netobj
*out_handle
, struct xdr_netobj
*out_token
,
1152 int major_status
, int minor_status
)
1154 if (resv
->iov_len
+ 4 > size_limit
)
1156 svc_putnl(resv
, RPC_SUCCESS
);
1157 if (svc_safe_putnetobj(resv
, out_handle
))
1159 if (resv
->iov_len
+ 3 * 4 > size_limit
)
1161 svc_putnl(resv
, major_status
);
1162 svc_putnl(resv
, minor_status
);
1163 svc_putnl(resv
, GSS_SEQ_WIN
);
1164 if (svc_safe_putnetobj(resv
, out_token
))
1170 * Having read the cred already and found we're in the context
1171 * initiation case, read the verifier and initiate (or check the results
1172 * of) upcalls to userspace for help with context initiation. If
1173 * the upcall results are available, write the verifier and result.
1174 * Otherwise, drop the request pending an answer to the upcall.
1176 static int svcauth_gss_legacy_init(struct svc_rqst
*rqstp
,
1177 struct rpc_gss_wire_cred
*gc
, __be32
*authp
)
1179 struct kvec
*argv
= &rqstp
->rq_arg
.head
[0];
1180 struct kvec
*resv
= &rqstp
->rq_res
.head
[0];
1181 struct rsi
*rsip
, rsikey
;
1183 struct sunrpc_net
*sn
= net_generic(SVC_NET(rqstp
), sunrpc_net_id
);
1185 memset(&rsikey
, 0, sizeof(rsikey
));
1186 ret
= gss_read_verf(gc
, argv
, authp
,
1187 &rsikey
.in_handle
, &rsikey
.in_token
);
1191 /* Perform upcall, or find upcall result: */
1192 rsip
= rsi_lookup(sn
->rsi_cache
, &rsikey
);
1196 if (cache_check(sn
->rsi_cache
, &rsip
->h
, &rqstp
->rq_chandle
) < 0)
1197 /* No upcall result: */
1201 /* Got an answer to the upcall; use it: */
1202 if (gss_write_init_verf(sn
->rsc_cache
, rqstp
,
1203 &rsip
->out_handle
, &rsip
->major_status
))
1205 if (gss_write_resv(resv
, PAGE_SIZE
,
1206 &rsip
->out_handle
, &rsip
->out_token
,
1207 rsip
->major_status
, rsip
->minor_status
))
1212 cache_put(&rsip
->h
, sn
->rsi_cache
);
1216 static int gss_proxy_save_rsc(struct cache_detail
*cd
,
1217 struct gssp_upcall_data
*ud
,
1220 struct rsc rsci
, *rscp
= NULL
;
1221 static atomic64_t ctxhctr
;
1223 struct gss_api_mech
*gm
= NULL
;
1225 int status
= -EINVAL
;
1227 memset(&rsci
, 0, sizeof(rsci
));
1228 /* context handle */
1230 /* the handle needs to be just a unique id,
1231 * use a static counter */
1232 ctxh
= atomic64_inc_return(&ctxhctr
);
1234 /* make a copy for the caller */
1237 /* make a copy for the rsc cache */
1238 if (dup_to_netobj(&rsci
.handle
, (char *)handle
, sizeof(uint64_t)))
1240 rscp
= rsc_lookup(cd
, &rsci
);
1245 if (!ud
->found_creds
) {
1246 /* userspace seem buggy, we should always get at least a
1247 * mapping to nobody */
1248 dprintk("RPC: No creds found!\n");
1251 struct timespec64 boot
;
1254 rsci
.cred
= ud
->creds
;
1255 memset(&ud
->creds
, 0, sizeof(struct svc_cred
));
1257 status
= -EOPNOTSUPP
;
1258 /* get mech handle from OID */
1259 gm
= gss_mech_get_by_OID(&ud
->mech_oid
);
1262 rsci
.cred
.cr_gss_mech
= gm
;
1265 /* mech-specific data: */
1266 status
= gss_import_sec_context(ud
->out_handle
.data
,
1269 &expiry
, GFP_KERNEL
);
1273 getboottime64(&boot
);
1274 expiry
-= boot
.tv_sec
;
1277 rsci
.h
.expiry_time
= expiry
;
1278 rscp
= rsc_update(cd
, &rsci
, rscp
);
1283 cache_put(&rscp
->h
, cd
);
1289 static int svcauth_gss_proxy_init(struct svc_rqst
*rqstp
,
1290 struct rpc_gss_wire_cred
*gc
, __be32
*authp
)
1292 struct kvec
*resv
= &rqstp
->rq_res
.head
[0];
1293 struct xdr_netobj cli_handle
;
1294 struct gssp_upcall_data ud
;
1298 struct net
*net
= SVC_NET(rqstp
);
1299 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1301 memset(&ud
, 0, sizeof(ud
));
1302 ret
= gss_read_proxy_verf(rqstp
, gc
, authp
,
1303 &ud
.in_handle
, &ud
.in_token
);
1309 /* Perform synchronous upcall to gss-proxy */
1310 status
= gssp_accept_sec_context_upcall(net
, &ud
);
1314 trace_rpcgss_accept_upcall(rqstp
->rq_xid
, ud
.major_status
,
1317 switch (ud
.major_status
) {
1318 case GSS_S_CONTINUE_NEEDED
:
1319 cli_handle
= ud
.out_handle
;
1321 case GSS_S_COMPLETE
:
1322 status
= gss_proxy_save_rsc(sn
->rsc_cache
, &ud
, &handle
);
1324 pr_info("%s: gss_proxy_save_rsc failed (%d)\n",
1328 cli_handle
.data
= (u8
*)&handle
;
1329 cli_handle
.len
= sizeof(handle
);
1336 /* Got an answer to the upcall; use it: */
1337 if (gss_write_init_verf(sn
->rsc_cache
, rqstp
,
1338 &cli_handle
, &ud
.major_status
)) {
1339 pr_info("%s: gss_write_init_verf failed\n", __func__
);
1342 if (gss_write_resv(resv
, PAGE_SIZE
,
1343 &cli_handle
, &ud
.out_token
,
1344 ud
.major_status
, ud
.minor_status
)) {
1345 pr_info("%s: gss_write_resv failed\n", __func__
);
1351 gss_free_in_token_pages(&ud
.in_token
);
1352 gssp_free_upcall_data(&ud
);
1357 * Try to set the sn->use_gss_proxy variable to a new value. We only allow
1358 * it to be changed if it's currently undefined (-1). If it's any other value
1359 * then return -EBUSY unless the type wouldn't have changed anyway.
1361 static int set_gss_proxy(struct net
*net
, int type
)
1363 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1366 WARN_ON_ONCE(type
!= 0 && type
!= 1);
1367 ret
= cmpxchg(&sn
->use_gss_proxy
, -1, type
);
1368 if (ret
!= -1 && ret
!= type
)
1373 static bool use_gss_proxy(struct net
*net
)
1375 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1377 /* If use_gss_proxy is still undefined, then try to disable it */
1378 if (sn
->use_gss_proxy
== -1)
1379 set_gss_proxy(net
, 0);
1380 return sn
->use_gss_proxy
;
1383 #ifdef CONFIG_PROC_FS
1385 static ssize_t
write_gssp(struct file
*file
, const char __user
*buf
,
1386 size_t count
, loff_t
*ppos
)
1388 struct net
*net
= PDE_DATA(file_inode(file
));
1393 if (*ppos
|| count
> sizeof(tbuf
)-1)
1395 if (copy_from_user(tbuf
, buf
, count
))
1399 res
= kstrtoul(tbuf
, 0, &i
);
1404 res
= set_gssp_clnt(net
);
1407 res
= set_gss_proxy(net
, 1);
1413 static ssize_t
read_gssp(struct file
*file
, char __user
*buf
,
1414 size_t count
, loff_t
*ppos
)
1416 struct net
*net
= PDE_DATA(file_inode(file
));
1417 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1418 unsigned long p
= *ppos
;
1422 snprintf(tbuf
, sizeof(tbuf
), "%d\n", sn
->use_gss_proxy
);
1429 if (copy_to_user(buf
, (void *)(tbuf
+p
), len
))
1435 static const struct file_operations use_gss_proxy_ops
= {
1436 .open
= nonseekable_open
,
1437 .write
= write_gssp
,
1441 static int create_use_gss_proxy_proc_entry(struct net
*net
)
1443 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1444 struct proc_dir_entry
**p
= &sn
->use_gssp_proc
;
1446 sn
->use_gss_proxy
= -1;
1447 *p
= proc_create_data("use-gss-proxy", S_IFREG
| 0600,
1449 &use_gss_proxy_ops
, net
);
1456 static void destroy_use_gss_proxy_proc_entry(struct net
*net
)
1458 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1460 if (sn
->use_gssp_proc
) {
1461 remove_proc_entry("use-gss-proxy", sn
->proc_net_rpc
);
1462 clear_gssp_clnt(sn
);
1465 #else /* CONFIG_PROC_FS */
1467 static int create_use_gss_proxy_proc_entry(struct net
*net
)
1472 static void destroy_use_gss_proxy_proc_entry(struct net
*net
) {}
1474 #endif /* CONFIG_PROC_FS */
1477 * Accept an rpcsec packet.
1478 * If context establishment, punt to user space
1479 * If data exchange, verify/decrypt
1480 * If context destruction, handle here
1481 * In the context establishment and destruction case we encode
1482 * response here and return SVC_COMPLETE.
1485 svcauth_gss_accept(struct svc_rqst
*rqstp
, __be32
*authp
)
1487 struct kvec
*argv
= &rqstp
->rq_arg
.head
[0];
1488 struct kvec
*resv
= &rqstp
->rq_res
.head
[0];
1490 struct gss_svc_data
*svcdata
= rqstp
->rq_auth_data
;
1491 struct rpc_gss_wire_cred
*gc
;
1492 struct rsc
*rsci
= NULL
;
1494 __be32
*reject_stat
= resv
->iov_base
+ resv
->iov_len
;
1496 struct sunrpc_net
*sn
= net_generic(SVC_NET(rqstp
), sunrpc_net_id
);
1498 dprintk("RPC: svcauth_gss: argv->iov_len = %zd\n",
1501 *authp
= rpc_autherr_badcred
;
1503 svcdata
= kmalloc(sizeof(*svcdata
), GFP_KERNEL
);
1506 rqstp
->rq_auth_data
= svcdata
;
1507 svcdata
->verf_start
= NULL
;
1508 svcdata
->rsci
= NULL
;
1509 gc
= &svcdata
->clcred
;
1511 /* start of rpc packet is 7 u32's back from here:
1512 * xid direction rpcversion prog vers proc flavour
1514 rpcstart
= argv
->iov_base
;
1518 * version(==1), proc(0,1,2,3), seq, service (1,2,3), handle
1519 * at least 5 u32s, and is preceded by length, so that makes 6.
1522 if (argv
->iov_len
< 5 * 4)
1524 crlen
= svc_getnl(argv
);
1525 if (svc_getnl(argv
) != RPC_GSS_VERSION
)
1527 gc
->gc_proc
= svc_getnl(argv
);
1528 gc
->gc_seq
= svc_getnl(argv
);
1529 gc
->gc_svc
= svc_getnl(argv
);
1530 if (svc_safe_getnetobj(argv
, &gc
->gc_ctx
))
1532 if (crlen
!= round_up_to_quad(gc
->gc_ctx
.len
) + 5 * 4)
1535 if ((gc
->gc_proc
!= RPC_GSS_PROC_DATA
) && (rqstp
->rq_proc
!= 0))
1538 *authp
= rpc_autherr_badverf
;
1539 switch (gc
->gc_proc
) {
1540 case RPC_GSS_PROC_INIT
:
1541 case RPC_GSS_PROC_CONTINUE_INIT
:
1542 if (use_gss_proxy(SVC_NET(rqstp
)))
1543 return svcauth_gss_proxy_init(rqstp
, gc
, authp
);
1545 return svcauth_gss_legacy_init(rqstp
, gc
, authp
);
1546 case RPC_GSS_PROC_DATA
:
1547 case RPC_GSS_PROC_DESTROY
:
1548 /* Look up the context, and check the verifier: */
1549 *authp
= rpcsec_gsserr_credproblem
;
1550 rsci
= gss_svc_searchbyctx(sn
->rsc_cache
, &gc
->gc_ctx
);
1553 switch (gss_verify_header(rqstp
, rsci
, rpcstart
, gc
, authp
)) {
1563 *authp
= rpc_autherr_rejectedcred
;
1567 /* now act upon the command: */
1568 switch (gc
->gc_proc
) {
1569 case RPC_GSS_PROC_DESTROY
:
1570 if (gss_write_verf(rqstp
, rsci
->mechctx
, gc
->gc_seq
))
1572 /* Delete the entry from the cache_list and call cache_put */
1573 sunrpc_cache_unhash(sn
->rsc_cache
, &rsci
->h
);
1574 if (resv
->iov_len
+ 4 > PAGE_SIZE
)
1576 svc_putnl(resv
, RPC_SUCCESS
);
1578 case RPC_GSS_PROC_DATA
:
1579 *authp
= rpcsec_gsserr_ctxproblem
;
1580 svcdata
->verf_start
= resv
->iov_base
+ resv
->iov_len
;
1581 if (gss_write_verf(rqstp
, rsci
->mechctx
, gc
->gc_seq
))
1583 rqstp
->rq_cred
= rsci
->cred
;
1584 get_group_info(rsci
->cred
.cr_group_info
);
1585 *authp
= rpc_autherr_badcred
;
1586 switch (gc
->gc_svc
) {
1587 case RPC_GSS_SVC_NONE
:
1589 case RPC_GSS_SVC_INTEGRITY
:
1590 /* placeholders for length and seq. number: */
1593 if (unwrap_integ_data(rqstp
, &rqstp
->rq_arg
,
1594 gc
->gc_seq
, rsci
->mechctx
))
1596 rqstp
->rq_auth_slack
= RPC_MAX_AUTH_SIZE
;
1598 case RPC_GSS_SVC_PRIVACY
:
1599 /* placeholders for length and seq. number: */
1602 if (unwrap_priv_data(rqstp
, &rqstp
->rq_arg
,
1603 gc
->gc_seq
, rsci
->mechctx
))
1605 rqstp
->rq_auth_slack
= RPC_MAX_AUTH_SIZE
* 2;
1610 svcdata
->rsci
= rsci
;
1611 cache_get(&rsci
->h
);
1612 rqstp
->rq_cred
.cr_flavor
= gss_svc_to_pseudoflavor(
1613 rsci
->mechctx
->mech_type
,
1623 /* Restore write pointer to its original value: */
1624 xdr_ressize_check(rqstp
, reject_stat
);
1634 cache_put(&rsci
->h
, sn
->rsc_cache
);
1639 svcauth_gss_prepare_to_wrap(struct xdr_buf
*resbuf
, struct gss_svc_data
*gsd
)
1644 p
= gsd
->verf_start
;
1645 gsd
->verf_start
= NULL
;
1647 /* If the reply stat is nonzero, don't wrap: */
1648 if (*(p
-1) != rpc_success
)
1650 /* Skip the verifier: */
1652 verf_len
= ntohl(*p
++);
1653 p
+= XDR_QUADLEN(verf_len
);
1654 /* move accept_stat to right place: */
1655 memcpy(p
, p
+ 2, 4);
1656 /* Also don't wrap if the accept stat is nonzero: */
1657 if (*p
!= rpc_success
) {
1658 resbuf
->head
[0].iov_len
-= 2 * 4;
1666 svcauth_gss_wrap_resp_integ(struct svc_rqst
*rqstp
)
1668 struct gss_svc_data
*gsd
= (struct gss_svc_data
*)rqstp
->rq_auth_data
;
1669 struct rpc_gss_wire_cred
*gc
= &gsd
->clcred
;
1670 struct xdr_buf
*resbuf
= &rqstp
->rq_res
;
1671 struct xdr_buf integ_buf
;
1672 struct xdr_netobj mic
;
1675 int integ_offset
, integ_len
;
1678 p
= svcauth_gss_prepare_to_wrap(resbuf
, gsd
);
1681 integ_offset
= (u8
*)(p
+ 1) - (u8
*)resbuf
->head
[0].iov_base
;
1682 integ_len
= resbuf
->len
- integ_offset
;
1683 BUG_ON(integ_len
% 4);
1684 *p
++ = htonl(integ_len
);
1685 *p
++ = htonl(gc
->gc_seq
);
1686 if (xdr_buf_subsegment(resbuf
, &integ_buf
, integ_offset
, integ_len
)) {
1690 if (resbuf
->tail
[0].iov_base
== NULL
) {
1691 if (resbuf
->head
[0].iov_len
+ RPC_MAX_AUTH_SIZE
> PAGE_SIZE
)
1693 resbuf
->tail
[0].iov_base
= resbuf
->head
[0].iov_base
1694 + resbuf
->head
[0].iov_len
;
1695 resbuf
->tail
[0].iov_len
= 0;
1697 resv
= &resbuf
->tail
[0];
1698 mic
.data
= (u8
*)resv
->iov_base
+ resv
->iov_len
+ 4;
1699 if (gss_get_mic(gsd
->rsci
->mechctx
, &integ_buf
, &mic
))
1701 svc_putnl(resv
, mic
.len
);
1702 memset(mic
.data
+ mic
.len
, 0,
1703 round_up_to_quad(mic
.len
) - mic
.len
);
1704 resv
->iov_len
+= XDR_QUADLEN(mic
.len
) << 2;
1705 /* not strictly required: */
1706 resbuf
->len
+= XDR_QUADLEN(mic
.len
) << 2;
1707 BUG_ON(resv
->iov_len
> PAGE_SIZE
);
1715 svcauth_gss_wrap_resp_priv(struct svc_rqst
*rqstp
)
1717 struct gss_svc_data
*gsd
= (struct gss_svc_data
*)rqstp
->rq_auth_data
;
1718 struct rpc_gss_wire_cred
*gc
= &gsd
->clcred
;
1719 struct xdr_buf
*resbuf
= &rqstp
->rq_res
;
1720 struct page
**inpages
= NULL
;
1725 p
= svcauth_gss_prepare_to_wrap(resbuf
, gsd
);
1729 offset
= (u8
*)p
- (u8
*)resbuf
->head
[0].iov_base
;
1730 *p
++ = htonl(gc
->gc_seq
);
1731 inpages
= resbuf
->pages
;
1732 /* XXX: Would be better to write some xdr helper functions for
1733 * nfs{2,3,4}xdr.c that place the data right, instead of copying: */
1736 * If there is currently tail data, make sure there is
1737 * room for the head, tail, and 2 * RPC_MAX_AUTH_SIZE in
1738 * the page, and move the current tail data such that
1739 * there is RPC_MAX_AUTH_SIZE slack space available in
1740 * both the head and tail.
1742 if (resbuf
->tail
[0].iov_base
) {
1743 BUG_ON(resbuf
->tail
[0].iov_base
>= resbuf
->head
[0].iov_base
1745 BUG_ON(resbuf
->tail
[0].iov_base
< resbuf
->head
[0].iov_base
);
1746 if (resbuf
->tail
[0].iov_len
+ resbuf
->head
[0].iov_len
1747 + 2 * RPC_MAX_AUTH_SIZE
> PAGE_SIZE
)
1749 memmove(resbuf
->tail
[0].iov_base
+ RPC_MAX_AUTH_SIZE
,
1750 resbuf
->tail
[0].iov_base
,
1751 resbuf
->tail
[0].iov_len
);
1752 resbuf
->tail
[0].iov_base
+= RPC_MAX_AUTH_SIZE
;
1755 * If there is no current tail data, make sure there is
1756 * room for the head data, and 2 * RPC_MAX_AUTH_SIZE in the
1757 * allotted page, and set up tail information such that there
1758 * is RPC_MAX_AUTH_SIZE slack space available in both the
1761 if (resbuf
->tail
[0].iov_base
== NULL
) {
1762 if (resbuf
->head
[0].iov_len
+ 2*RPC_MAX_AUTH_SIZE
> PAGE_SIZE
)
1764 resbuf
->tail
[0].iov_base
= resbuf
->head
[0].iov_base
1765 + resbuf
->head
[0].iov_len
+ RPC_MAX_AUTH_SIZE
;
1766 resbuf
->tail
[0].iov_len
= 0;
1768 if (gss_wrap(gsd
->rsci
->mechctx
, offset
, resbuf
, inpages
))
1770 *len
= htonl(resbuf
->len
- offset
);
1771 pad
= 3 - ((resbuf
->len
- offset
- 1)&3);
1772 p
= (__be32
*)(resbuf
->tail
[0].iov_base
+ resbuf
->tail
[0].iov_len
);
1774 resbuf
->tail
[0].iov_len
+= pad
;
1780 svcauth_gss_release(struct svc_rqst
*rqstp
)
1782 struct gss_svc_data
*gsd
= (struct gss_svc_data
*)rqstp
->rq_auth_data
;
1783 struct rpc_gss_wire_cred
*gc
= &gsd
->clcred
;
1784 struct xdr_buf
*resbuf
= &rqstp
->rq_res
;
1786 struct sunrpc_net
*sn
= net_generic(SVC_NET(rqstp
), sunrpc_net_id
);
1788 if (gc
->gc_proc
!= RPC_GSS_PROC_DATA
)
1790 /* Release can be called twice, but we only wrap once. */
1791 if (gsd
->verf_start
== NULL
)
1793 /* normally not set till svc_send, but we need it here: */
1794 /* XXX: what for? Do we mess it up the moment we call svc_putu32
1796 resbuf
->len
= total_buf_len(resbuf
);
1797 switch (gc
->gc_svc
) {
1798 case RPC_GSS_SVC_NONE
:
1800 case RPC_GSS_SVC_INTEGRITY
:
1801 stat
= svcauth_gss_wrap_resp_integ(rqstp
);
1805 case RPC_GSS_SVC_PRIVACY
:
1806 stat
= svcauth_gss_wrap_resp_priv(rqstp
);
1811 * For any other gc_svc value, svcauth_gss_accept() already set
1812 * the auth_error appropriately; just fall through:
1819 if (rqstp
->rq_client
)
1820 auth_domain_put(rqstp
->rq_client
);
1821 rqstp
->rq_client
= NULL
;
1822 if (rqstp
->rq_gssclient
)
1823 auth_domain_put(rqstp
->rq_gssclient
);
1824 rqstp
->rq_gssclient
= NULL
;
1825 if (rqstp
->rq_cred
.cr_group_info
)
1826 put_group_info(rqstp
->rq_cred
.cr_group_info
);
1827 rqstp
->rq_cred
.cr_group_info
= NULL
;
1829 cache_put(&gsd
->rsci
->h
, sn
->rsc_cache
);
1836 svcauth_gss_domain_release_rcu(struct rcu_head
*head
)
1838 struct auth_domain
*dom
= container_of(head
, struct auth_domain
, rcu_head
);
1839 struct gss_domain
*gd
= container_of(dom
, struct gss_domain
, h
);
1846 svcauth_gss_domain_release(struct auth_domain
*dom
)
1848 call_rcu(&dom
->rcu_head
, svcauth_gss_domain_release_rcu
);
1851 static struct auth_ops svcauthops_gss
= {
1852 .name
= "rpcsec_gss",
1853 .owner
= THIS_MODULE
,
1854 .flavour
= RPC_AUTH_GSS
,
1855 .accept
= svcauth_gss_accept
,
1856 .release
= svcauth_gss_release
,
1857 .domain_release
= svcauth_gss_domain_release
,
1858 .set_client
= svcauth_gss_set_client
,
1861 static int rsi_cache_create_net(struct net
*net
)
1863 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1864 struct cache_detail
*cd
;
1867 cd
= cache_create_net(&rsi_cache_template
, net
);
1870 err
= cache_register_net(cd
, net
);
1872 cache_destroy_net(cd
, net
);
1879 static void rsi_cache_destroy_net(struct net
*net
)
1881 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1882 struct cache_detail
*cd
= sn
->rsi_cache
;
1884 sn
->rsi_cache
= NULL
;
1886 cache_unregister_net(cd
, net
);
1887 cache_destroy_net(cd
, net
);
1890 static int rsc_cache_create_net(struct net
*net
)
1892 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1893 struct cache_detail
*cd
;
1896 cd
= cache_create_net(&rsc_cache_template
, net
);
1899 err
= cache_register_net(cd
, net
);
1901 cache_destroy_net(cd
, net
);
1908 static void rsc_cache_destroy_net(struct net
*net
)
1910 struct sunrpc_net
*sn
= net_generic(net
, sunrpc_net_id
);
1911 struct cache_detail
*cd
= sn
->rsc_cache
;
1913 sn
->rsc_cache
= NULL
;
1915 cache_unregister_net(cd
, net
);
1916 cache_destroy_net(cd
, net
);
1920 gss_svc_init_net(struct net
*net
)
1924 rv
= rsc_cache_create_net(net
);
1927 rv
= rsi_cache_create_net(net
);
1930 rv
= create_use_gss_proxy_proc_entry(net
);
1935 destroy_use_gss_proxy_proc_entry(net
);
1937 rsc_cache_destroy_net(net
);
1942 gss_svc_shutdown_net(struct net
*net
)
1944 destroy_use_gss_proxy_proc_entry(net
);
1945 rsi_cache_destroy_net(net
);
1946 rsc_cache_destroy_net(net
);
1952 return svc_auth_register(RPC_AUTH_GSS
, &svcauthops_gss
);
1956 gss_svc_shutdown(void)
1958 svc_auth_unregister(RPC_AUTH_GSS
);