1 // SPDX-License-Identifier: GPL-2.0
2 /*
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>
7 *
8 * RPCSEC_GSS server authentication.
9 * This implements RPCSEC_GSS as defined in rfc2203 (rpcsec_gss) and rfc2078
10 * (gssapi)
11 *
12 * The RPCSEC_GSS involves three stages:
13 * 1/ context creation
14 * 2/ data exchange
15 * 3/ context destruction
16 *
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
23 *
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.
31 *
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
36 * mechanism type
37 * mechanism specific information, such as a key
38 *
39 */
40
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>
46
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>
52 #include <linux/sunrpc/gss_krb5.h>
53
54 #include <trace/events/rpcgss.h>
55
56 #include "gss_rpc_upcall.h"
57
58 /*
59 * Unfortunately there isn't a maximum checksum size exported via the
60 * GSS API. Manufacture one based on GSS mechanisms supported by this
61 * implementation.
62 */
63 #define GSS_MAX_CKSUMSIZE (GSS_KRB5_TOK_HDR_LEN + GSS_KRB5_MAX_CKSUM_LEN)
64
65 /*
66 * This value may be increased in the future to accommodate other
67 * usage of the scratch buffer.
68 */
69 #define GSS_SCRATCH_SIZE GSS_MAX_CKSUMSIZE
70
71 struct gss_svc_data {
72 /* decoded gss client cred: */
73 struct rpc_gss_wire_cred clcred;
74 u32 gsd_databody_offset;
75 struct rsc *rsci;
76
77 /* for temporary results */
78 __be32 gsd_seq_num;
79 u8 gsd_scratch[GSS_SCRATCH_SIZE];
80 };
81
82 /* The rpcsec_init cache is used for mapping RPCSEC_GSS_{,CONT_}INIT requests
83 * into replies.
84 *
85 * Key is context handle (\x if empty) and gss_token.
86 * Content is major_status minor_status (integers) context_handle, reply_token.
87 *
88 */
89
netobj_equal(struct xdr_netobj * a,struct xdr_netobj * b)90 static int netobj_equal(struct xdr_netobj *a, struct xdr_netobj *b)
91 {
92 return a->len == b->len && 0 == memcmp(a->data, b->data, a->len);
93 }
94
95 #define RSI_HASHBITS 6
96 #define RSI_HASHMAX (1<<RSI_HASHBITS)
97
98 struct rsi {
99 struct cache_head h;
100 struct xdr_netobj in_handle, in_token;
101 struct xdr_netobj out_handle, out_token;
102 int major_status, minor_status;
103 struct rcu_head rcu_head;
104 };
105
106 static struct rsi *rsi_update(struct cache_detail *cd, struct rsi *new, struct rsi *old);
107 static struct rsi *rsi_lookup(struct cache_detail *cd, struct rsi *item);
108
rsi_free(struct rsi * rsii)109 static void rsi_free(struct rsi *rsii)
110 {
111 kfree(rsii->in_handle.data);
112 kfree(rsii->in_token.data);
113 kfree(rsii->out_handle.data);
114 kfree(rsii->out_token.data);
115 }
116
rsi_free_rcu(struct rcu_head * head)117 static void rsi_free_rcu(struct rcu_head *head)
118 {
119 struct rsi *rsii = container_of(head, struct rsi, rcu_head);
120
121 rsi_free(rsii);
122 kfree(rsii);
123 }
124
rsi_put(struct kref * ref)125 static void rsi_put(struct kref *ref)
126 {
127 struct rsi *rsii = container_of(ref, struct rsi, h.ref);
128
129 call_rcu(&rsii->rcu_head, rsi_free_rcu);
130 }
131
rsi_hash(struct rsi * item)132 static inline int rsi_hash(struct rsi *item)
133 {
134 return hash_mem(item->in_handle.data, item->in_handle.len, RSI_HASHBITS)
135 ^ hash_mem(item->in_token.data, item->in_token.len, RSI_HASHBITS);
136 }
137
rsi_match(struct cache_head * a,struct cache_head * b)138 static int rsi_match(struct cache_head *a, struct cache_head *b)
139 {
140 struct rsi *item = container_of(a, struct rsi, h);
141 struct rsi *tmp = container_of(b, struct rsi, h);
142 return netobj_equal(&item->in_handle, &tmp->in_handle) &&
143 netobj_equal(&item->in_token, &tmp->in_token);
144 }
145
dup_to_netobj(struct xdr_netobj * dst,char * src,int len)146 static int dup_to_netobj(struct xdr_netobj *dst, char *src, int len)
147 {
148 dst->len = len;
149 dst->data = (len ? kmemdup(src, len, GFP_KERNEL) : NULL);
150 if (len && !dst->data)
151 return -ENOMEM;
152 return 0;
153 }
154
dup_netobj(struct xdr_netobj * dst,struct xdr_netobj * src)155 static inline int dup_netobj(struct xdr_netobj *dst, struct xdr_netobj *src)
156 {
157 return dup_to_netobj(dst, src->data, src->len);
158 }
159
rsi_init(struct cache_head * cnew,struct cache_head * citem)160 static void rsi_init(struct cache_head *cnew, struct cache_head *citem)
161 {
162 struct rsi *new = container_of(cnew, struct rsi, h);
163 struct rsi *item = container_of(citem, struct rsi, h);
164
165 new->out_handle.data = NULL;
166 new->out_handle.len = 0;
167 new->out_token.data = NULL;
168 new->out_token.len = 0;
169 new->in_handle.len = item->in_handle.len;
170 item->in_handle.len = 0;
171 new->in_token.len = item->in_token.len;
172 item->in_token.len = 0;
173 new->in_handle.data = item->in_handle.data;
174 item->in_handle.data = NULL;
175 new->in_token.data = item->in_token.data;
176 item->in_token.data = NULL;
177 }
178
update_rsi(struct cache_head * cnew,struct cache_head * citem)179 static void update_rsi(struct cache_head *cnew, struct cache_head *citem)
180 {
181 struct rsi *new = container_of(cnew, struct rsi, h);
182 struct rsi *item = container_of(citem, struct rsi, h);
183
184 BUG_ON(new->out_handle.data || new->out_token.data);
185 new->out_handle.len = item->out_handle.len;
186 item->out_handle.len = 0;
187 new->out_token.len = item->out_token.len;
188 item->out_token.len = 0;
189 new->out_handle.data = item->out_handle.data;
190 item->out_handle.data = NULL;
191 new->out_token.data = item->out_token.data;
192 item->out_token.data = NULL;
193
194 new->major_status = item->major_status;
195 new->minor_status = item->minor_status;
196 }
197
rsi_alloc(void)198 static struct cache_head *rsi_alloc(void)
199 {
200 struct rsi *rsii = kmalloc_obj(*rsii);
201 if (rsii)
202 return &rsii->h;
203 else
204 return NULL;
205 }
206
rsi_upcall(struct cache_detail * cd,struct cache_head * h)207 static int rsi_upcall(struct cache_detail *cd, struct cache_head *h)
208 {
209 return sunrpc_cache_upcall_warn(cd, h);
210 }
211
rsi_request(struct cache_detail * cd,struct cache_head * h,char ** bpp,int * blen)212 static void rsi_request(struct cache_detail *cd,
213 struct cache_head *h,
214 char **bpp, int *blen)
215 {
216 struct rsi *rsii = container_of(h, struct rsi, h);
217
218 qword_addhex(bpp, blen, rsii->in_handle.data, rsii->in_handle.len);
219 qword_addhex(bpp, blen, rsii->in_token.data, rsii->in_token.len);
220 (*bpp)[-1] = '\n';
221 WARN_ONCE(*blen < 0,
222 "RPCSEC/GSS credential too large - please use gssproxy\n");
223 }
224
rsi_parse(struct cache_detail * cd,char * mesg,int mlen)225 static int rsi_parse(struct cache_detail *cd,
226 char *mesg, int mlen)
227 {
228 /* context token expiry major minor context token */
229 char *buf = mesg;
230 char *ep;
231 int len;
232 struct rsi rsii, *rsip = NULL;
233 time64_t expiry;
234 int status = -EINVAL;
235
236 memset(&rsii, 0, sizeof(rsii));
237 /* handle */
238 len = qword_get(&mesg, buf, mlen);
239 if (len < 0)
240 goto out;
241 status = -ENOMEM;
242 if (dup_to_netobj(&rsii.in_handle, buf, len))
243 goto out;
244
245 /* token */
246 len = qword_get(&mesg, buf, mlen);
247 status = -EINVAL;
248 if (len < 0)
249 goto out;
250 status = -ENOMEM;
251 if (dup_to_netobj(&rsii.in_token, buf, len))
252 goto out;
253
254 rsip = rsi_lookup(cd, &rsii);
255 if (!rsip)
256 goto out;
257
258 rsii.h.flags = 0;
259 /* expiry */
260 status = get_expiry(&mesg, &expiry);
261 if (status)
262 goto out;
263
264 status = -EINVAL;
265 /* major/minor */
266 len = qword_get(&mesg, buf, mlen);
267 if (len <= 0)
268 goto out;
269 rsii.major_status = simple_strtoul(buf, &ep, 10);
270 if (*ep)
271 goto out;
272 len = qword_get(&mesg, buf, mlen);
273 if (len <= 0)
274 goto out;
275 rsii.minor_status = simple_strtoul(buf, &ep, 10);
276 if (*ep)
277 goto out;
278
279 /* out_handle */
280 len = qword_get(&mesg, buf, mlen);
281 if (len < 0)
282 goto out;
283 status = -ENOMEM;
284 if (dup_to_netobj(&rsii.out_handle, buf, len))
285 goto out;
286
287 /* out_token */
288 len = qword_get(&mesg, buf, mlen);
289 status = -EINVAL;
290 if (len < 0)
291 goto out;
292 status = -ENOMEM;
293 if (dup_to_netobj(&rsii.out_token, buf, len))
294 goto out;
295 rsii.h.expiry_time = expiry;
296 rsip = rsi_update(cd, &rsii, rsip);
297 status = 0;
298 out:
299 rsi_free(&rsii);
300 if (rsip)
301 cache_put(&rsip->h, cd);
302 else
303 status = -ENOMEM;
304 return status;
305 }
306
307 static const struct cache_detail rsi_cache_template = {
308 .owner = THIS_MODULE,
309 .hash_size = RSI_HASHMAX,
310 .name = "auth.rpcsec.init",
311 .cache_put = rsi_put,
312 .cache_upcall = rsi_upcall,
313 .cache_request = rsi_request,
314 .cache_parse = rsi_parse,
315 .match = rsi_match,
316 .init = rsi_init,
317 .update = update_rsi,
318 .alloc = rsi_alloc,
319 };
320
rsi_lookup(struct cache_detail * cd,struct rsi * item)321 static struct rsi *rsi_lookup(struct cache_detail *cd, struct rsi *item)
322 {
323 struct cache_head *ch;
324 int hash = rsi_hash(item);
325
326 ch = sunrpc_cache_lookup_rcu(cd, &item->h, hash);
327 if (ch)
328 return container_of(ch, struct rsi, h);
329 else
330 return NULL;
331 }
332
rsi_update(struct cache_detail * cd,struct rsi * new,struct rsi * old)333 static struct rsi *rsi_update(struct cache_detail *cd, struct rsi *new, struct rsi *old)
334 {
335 struct cache_head *ch;
336 int hash = rsi_hash(new);
337
338 ch = sunrpc_cache_update(cd, &new->h,
339 &old->h, hash);
340 if (ch)
341 return container_of(ch, struct rsi, h);
342 else
343 return NULL;
344 }
345
346
347 /*
348 * The rpcsec_context cache is used to store a context that is
349 * used in data exchange.
350 * The key is a context handle. The content is:
351 * uid, gidlist, mechanism, service-set, mech-specific-data
352 */
353
354 #define RSC_HASHBITS 10
355 #define RSC_HASHMAX (1<<RSC_HASHBITS)
356
357 #define GSS_SEQ_WIN 128
358
359 struct gss_svc_seq_data {
360 /* highest seq number seen so far: */
361 u32 sd_max;
362 /* for i such that sd_max-GSS_SEQ_WIN < i <= sd_max, the i-th bit of
363 * sd_win is nonzero iff sequence number i has been seen already: */
364 unsigned long sd_win[GSS_SEQ_WIN/BITS_PER_LONG];
365 spinlock_t sd_lock;
366 };
367
368 struct rsc {
369 struct cache_head h;
370 struct xdr_netobj handle;
371 struct svc_cred cred;
372 struct gss_svc_seq_data seqdata;
373 struct gss_ctx *mechctx;
374 struct rcu_head rcu_head;
375 };
376
377 static struct rsc *rsc_update(struct cache_detail *cd, struct rsc *new, struct rsc *old);
378 static struct rsc *rsc_lookup(struct cache_detail *cd, struct rsc *item);
379
rsc_free(struct rsc * rsci)380 static void rsc_free(struct rsc *rsci)
381 {
382 kfree(rsci->handle.data);
383 if (rsci->mechctx)
384 gss_delete_sec_context(&rsci->mechctx);
385 free_svc_cred(&rsci->cred);
386 }
387
rsc_free_rcu(struct rcu_head * head)388 static void rsc_free_rcu(struct rcu_head *head)
389 {
390 struct rsc *rsci = container_of(head, struct rsc, rcu_head);
391
392 kfree(rsci->handle.data);
393 kfree(rsci);
394 }
395
rsc_put(struct kref * ref)396 static void rsc_put(struct kref *ref)
397 {
398 struct rsc *rsci = container_of(ref, struct rsc, h.ref);
399
400 if (rsci->mechctx)
401 gss_delete_sec_context(&rsci->mechctx);
402 free_svc_cred(&rsci->cred);
403 call_rcu(&rsci->rcu_head, rsc_free_rcu);
404 }
405
406 static inline int
rsc_hash(struct rsc * rsci)407 rsc_hash(struct rsc *rsci)
408 {
409 return hash_mem(rsci->handle.data, rsci->handle.len, RSC_HASHBITS);
410 }
411
412 static int
rsc_match(struct cache_head * a,struct cache_head * b)413 rsc_match(struct cache_head *a, struct cache_head *b)
414 {
415 struct rsc *new = container_of(a, struct rsc, h);
416 struct rsc *tmp = container_of(b, struct rsc, h);
417
418 return netobj_equal(&new->handle, &tmp->handle);
419 }
420
421 static void
rsc_init(struct cache_head * cnew,struct cache_head * ctmp)422 rsc_init(struct cache_head *cnew, struct cache_head *ctmp)
423 {
424 struct rsc *new = container_of(cnew, struct rsc, h);
425 struct rsc *tmp = container_of(ctmp, struct rsc, h);
426
427 new->handle.len = tmp->handle.len;
428 tmp->handle.len = 0;
429 new->handle.data = tmp->handle.data;
430 tmp->handle.data = NULL;
431 new->mechctx = NULL;
432 init_svc_cred(&new->cred);
433 }
434
435 static void
update_rsc(struct cache_head * cnew,struct cache_head * ctmp)436 update_rsc(struct cache_head *cnew, struct cache_head *ctmp)
437 {
438 struct rsc *new = container_of(cnew, struct rsc, h);
439 struct rsc *tmp = container_of(ctmp, struct rsc, h);
440
441 new->mechctx = tmp->mechctx;
442 tmp->mechctx = NULL;
443 memset(&new->seqdata, 0, sizeof(new->seqdata));
444 spin_lock_init(&new->seqdata.sd_lock);
445 new->cred = tmp->cred;
446 init_svc_cred(&tmp->cred);
447 }
448
449 static struct cache_head *
rsc_alloc(void)450 rsc_alloc(void)
451 {
452 struct rsc *rsci = kmalloc_obj(*rsci);
453 if (rsci)
454 return &rsci->h;
455 else
456 return NULL;
457 }
458
rsc_upcall(struct cache_detail * cd,struct cache_head * h)459 static int rsc_upcall(struct cache_detail *cd, struct cache_head *h)
460 {
461 return -EINVAL;
462 }
463
rsc_parse(struct cache_detail * cd,char * mesg,int mlen)464 static int rsc_parse(struct cache_detail *cd,
465 char *mesg, int mlen)
466 {
467 /* contexthandle expiry [ uid gid N <n gids> mechname ...mechdata... ] */
468 char *buf = mesg;
469 int id;
470 int len, rv;
471 struct rsc rsci, *rscp = NULL;
472 time64_t expiry;
473 int status = -EINVAL;
474 struct gss_api_mech *gm = NULL;
475
476 memset(&rsci, 0, sizeof(rsci));
477 /* context handle */
478 len = qword_get(&mesg, buf, mlen);
479 if (len < 0) goto out;
480 status = -ENOMEM;
481 if (dup_to_netobj(&rsci.handle, buf, len))
482 goto out;
483
484 rsci.h.flags = 0;
485 /* expiry */
486 status = get_expiry(&mesg, &expiry);
487 if (status)
488 goto out;
489
490 status = -EINVAL;
491 rscp = rsc_lookup(cd, &rsci);
492 if (!rscp)
493 goto out;
494
495 /* uid, or NEGATIVE */
496 rv = get_int(&mesg, &id);
497 if (rv == -EINVAL)
498 goto out;
499 if (rv == -ENOENT)
500 set_bit(CACHE_NEGATIVE, &rsci.h.flags);
501 else {
502 int N, i;
503
504 /*
505 * NOTE: we skip uid_valid()/gid_valid() checks here:
506 * instead, * -1 id's are later mapped to the
507 * (export-specific) anonymous id by nfsd_setuser.
508 *
509 * (But supplementary gid's get no such special
510 * treatment so are checked for validity here.)
511 */
512 /* uid */
513 rsci.cred.cr_uid = make_kuid(current_user_ns(), id);
514
515 /* gid */
516 if (get_int(&mesg, &id))
517 goto out;
518 rsci.cred.cr_gid = make_kgid(current_user_ns(), id);
519
520 /* number of additional gid's */
521 if (get_int(&mesg, &N))
522 goto out;
523 if (N < 0 || N > NGROUPS_MAX)
524 goto out;
525 status = -ENOMEM;
526 rsci.cred.cr_group_info = groups_alloc(N);
527 if (rsci.cred.cr_group_info == NULL)
528 goto out;
529
530 /* gid's */
531 status = -EINVAL;
532 for (i=0; i<N; i++) {
533 kgid_t kgid;
534 if (get_int(&mesg, &id))
535 goto out;
536 kgid = make_kgid(current_user_ns(), id);
537 if (!gid_valid(kgid))
538 goto out;
539 rsci.cred.cr_group_info->gid[i] = kgid;
540 }
541 groups_sort(rsci.cred.cr_group_info);
542
543 /* mech name */
544 len = qword_get(&mesg, buf, mlen);
545 if (len < 0)
546 goto out;
547 gm = rsci.cred.cr_gss_mech = gss_mech_get_by_name(buf);
548 status = -EOPNOTSUPP;
549 if (!gm)
550 goto out;
551
552 status = -EINVAL;
553 /* mech-specific data: */
554 len = qword_get(&mesg, buf, mlen);
555 if (len < 0)
556 goto out;
557 status = gss_import_sec_context(buf, len, gm, &rsci.mechctx,
558 NULL, GFP_KERNEL);
559 if (status)
560 goto out;
561
562 /* get client name */
563 len = qword_get(&mesg, buf, mlen);
564 if (len > 0) {
565 rsci.cred.cr_principal = kstrdup(buf, GFP_KERNEL);
566 if (!rsci.cred.cr_principal) {
567 status = -ENOMEM;
568 goto out;
569 }
570 }
571
572 }
573 rsci.h.expiry_time = expiry;
574 rscp = rsc_update(cd, &rsci, rscp);
575 status = 0;
576 out:
577 rsc_free(&rsci);
578 if (rscp)
579 cache_put(&rscp->h, cd);
580 else
581 status = -ENOMEM;
582 return status;
583 }
584
585 static const struct cache_detail rsc_cache_template = {
586 .owner = THIS_MODULE,
587 .hash_size = RSC_HASHMAX,
588 .name = "auth.rpcsec.context",
589 .cache_put = rsc_put,
590 .cache_upcall = rsc_upcall,
591 .cache_parse = rsc_parse,
592 .match = rsc_match,
593 .init = rsc_init,
594 .update = update_rsc,
595 .alloc = rsc_alloc,
596 };
597
rsc_lookup(struct cache_detail * cd,struct rsc * item)598 static struct rsc *rsc_lookup(struct cache_detail *cd, struct rsc *item)
599 {
600 struct cache_head *ch;
601 int hash = rsc_hash(item);
602
603 ch = sunrpc_cache_lookup_rcu(cd, &item->h, hash);
604 if (ch)
605 return container_of(ch, struct rsc, h);
606 else
607 return NULL;
608 }
609
rsc_update(struct cache_detail * cd,struct rsc * new,struct rsc * old)610 static struct rsc *rsc_update(struct cache_detail *cd, struct rsc *new, struct rsc *old)
611 {
612 struct cache_head *ch;
613 int hash = rsc_hash(new);
614
615 ch = sunrpc_cache_update(cd, &new->h,
616 &old->h, hash);
617 if (ch)
618 return container_of(ch, struct rsc, h);
619 else
620 return NULL;
621 }
622
623
624 static struct rsc *
gss_svc_searchbyctx(struct cache_detail * cd,struct xdr_netobj * handle)625 gss_svc_searchbyctx(struct cache_detail *cd, struct xdr_netobj *handle)
626 {
627 struct rsc rsci;
628 struct rsc *found;
629
630 memset(&rsci, 0, sizeof(rsci));
631 if (dup_to_netobj(&rsci.handle, handle->data, handle->len))
632 return NULL;
633 found = rsc_lookup(cd, &rsci);
634 rsc_free(&rsci);
635 if (!found)
636 return NULL;
637 if (cache_check(cd, &found->h, NULL))
638 return NULL;
639 return found;
640 }
641
642 /**
643 * gss_check_seq_num - GSS sequence number window check
644 * @rqstp: RPC Call to use when reporting errors
645 * @rsci: cached GSS context state (updated on return)
646 * @seq_num: sequence number to check
647 *
648 * Implements sequence number algorithm as specified in
649 * RFC 2203, Section 5.3.3.1. "Context Management".
650 *
651 * Return values:
652 * %true: @rqstp's GSS sequence number is inside the window
653 * %false: @rqstp's GSS sequence number is outside the window
654 */
gss_check_seq_num(const struct svc_rqst * rqstp,struct rsc * rsci,u32 seq_num)655 static bool gss_check_seq_num(const struct svc_rqst *rqstp, struct rsc *rsci,
656 u32 seq_num)
657 {
658 struct gss_svc_seq_data *sd = &rsci->seqdata;
659 bool result = false;
660
661 spin_lock(&sd->sd_lock);
662 if (seq_num > sd->sd_max) {
663 if (seq_num >= sd->sd_max + GSS_SEQ_WIN) {
664 memset(sd->sd_win, 0, sizeof(sd->sd_win));
665 sd->sd_max = seq_num;
666 } else while (sd->sd_max < seq_num) {
667 sd->sd_max++;
668 __clear_bit(sd->sd_max % GSS_SEQ_WIN, sd->sd_win);
669 }
670 __set_bit(seq_num % GSS_SEQ_WIN, sd->sd_win);
671 goto ok;
672 } else if (seq_num + GSS_SEQ_WIN <= sd->sd_max) {
673 goto toolow;
674 }
675 if (__test_and_set_bit(seq_num % GSS_SEQ_WIN, sd->sd_win))
676 goto alreadyseen;
677
678 ok:
679 result = true;
680 out:
681 spin_unlock(&sd->sd_lock);
682 return result;
683
684 toolow:
685 trace_rpcgss_svc_seqno_low(rqstp, seq_num,
686 sd->sd_max - GSS_SEQ_WIN,
687 sd->sd_max);
688 goto out;
689 alreadyseen:
690 trace_rpcgss_svc_seqno_seen(rqstp, seq_num);
691 goto out;
692 }
693
694 /*
695 * Decode and verify a Call's verifier field. For RPC_AUTH_GSS Calls,
696 * the body of this field contains a variable length checksum.
697 *
698 * GSS-specific auth_stat values are mandated by RFC 2203 Section
699 * 5.3.3.3.
700 */
701 static int
svcauth_gss_verify_header(struct svc_rqst * rqstp,struct rsc * rsci,__be32 * rpcstart,struct rpc_gss_wire_cred * gc)702 svcauth_gss_verify_header(struct svc_rqst *rqstp, struct rsc *rsci,
703 __be32 *rpcstart, struct rpc_gss_wire_cred *gc)
704 {
705 struct xdr_stream *xdr = &rqstp->rq_arg_stream;
706 struct gss_ctx *ctx_id = rsci->mechctx;
707 u32 flavor, maj_stat;
708 struct xdr_buf rpchdr;
709 struct xdr_netobj checksum;
710 struct kvec iov;
711
712 /*
713 * Compute the checksum of the incoming Call from the
714 * XID field to credential field:
715 */
716 iov.iov_base = rpcstart;
717 iov.iov_len = (u8 *)xdr->p - (u8 *)rpcstart;
718 xdr_buf_from_iov(&iov, &rpchdr);
719
720 /* Call's verf field: */
721 if (xdr_stream_decode_opaque_auth(xdr, &flavor,
722 (void **)&checksum.data,
723 &checksum.len) < 0) {
724 rqstp->rq_auth_stat = rpc_autherr_badverf;
725 return SVC_DENIED;
726 }
727 if (flavor != RPC_AUTH_GSS || checksum.len < XDR_UNIT) {
728 rqstp->rq_auth_stat = rpc_autherr_badverf;
729 return SVC_DENIED;
730 }
731
732 if (rqstp->rq_deferred)
733 return SVC_OK;
734 maj_stat = gss_verify_mic(ctx_id, &rpchdr, &checksum);
735 if (maj_stat != GSS_S_COMPLETE) {
736 trace_rpcgss_svc_mic(rqstp, maj_stat);
737 rqstp->rq_auth_stat = rpcsec_gsserr_credproblem;
738 return SVC_DENIED;
739 }
740
741 if (gc->gc_seq > MAXSEQ) {
742 trace_rpcgss_svc_seqno_large(rqstp, gc->gc_seq);
743 rqstp->rq_auth_stat = rpcsec_gsserr_ctxproblem;
744 return SVC_DENIED;
745 }
746 if (!gss_check_seq_num(rqstp, rsci, gc->gc_seq))
747 return SVC_DROP;
748 return SVC_OK;
749 }
750
751 /*
752 * Construct and encode a Reply's verifier field. The verifier's body
753 * field contains a variable-length checksum of the GSS sequence
754 * number.
755 */
756 static bool
svcauth_gss_encode_verf(struct svc_rqst * rqstp,struct gss_ctx * ctx_id,u32 seq)757 svcauth_gss_encode_verf(struct svc_rqst *rqstp, struct gss_ctx *ctx_id, u32 seq)
758 {
759 struct gss_svc_data *gsd = rqstp->rq_auth_data;
760 u32 maj_stat;
761 struct xdr_buf verf_data;
762 struct xdr_netobj checksum;
763 struct kvec iov;
764
765 gsd->gsd_seq_num = cpu_to_be32(seq);
766 iov.iov_base = &gsd->gsd_seq_num;
767 iov.iov_len = XDR_UNIT;
768 xdr_buf_from_iov(&iov, &verf_data);
769
770 checksum.data = gsd->gsd_scratch;
771 maj_stat = gss_get_mic(ctx_id, &verf_data, &checksum);
772 if (maj_stat != GSS_S_COMPLETE)
773 goto bad_mic;
774
775 return xdr_stream_encode_opaque_auth(&rqstp->rq_res_stream, RPC_AUTH_GSS,
776 checksum.data, checksum.len) > 0;
777
778 bad_mic:
779 trace_rpcgss_svc_get_mic(rqstp, maj_stat);
780 return false;
781 }
782
783 struct gss_domain {
784 struct auth_domain h;
785 u32 pseudoflavor;
786 };
787
788 static struct auth_domain *
find_gss_auth_domain(struct gss_ctx * ctx,u32 svc)789 find_gss_auth_domain(struct gss_ctx *ctx, u32 svc)
790 {
791 char *name;
792
793 name = gss_service_to_auth_domain_name(ctx->mech_type, svc);
794 if (!name)
795 return NULL;
796 return auth_domain_find(name);
797 }
798
799 static struct auth_ops svcauthops_gss;
800
svcauth_gss_flavor(struct auth_domain * dom)801 u32 svcauth_gss_flavor(struct auth_domain *dom)
802 {
803 struct gss_domain *gd = container_of(dom, struct gss_domain, h);
804
805 return gd->pseudoflavor;
806 }
807
808 EXPORT_SYMBOL_GPL(svcauth_gss_flavor);
809
810 struct auth_domain *
svcauth_gss_register_pseudoflavor(u32 pseudoflavor,char * name)811 svcauth_gss_register_pseudoflavor(u32 pseudoflavor, char * name)
812 {
813 struct gss_domain *new;
814 struct auth_domain *test;
815 int stat = -ENOMEM;
816
817 new = kmalloc_obj(*new);
818 if (!new)
819 goto out;
820 kref_init(&new->h.ref);
821 new->h.name = kstrdup(name, GFP_KERNEL);
822 if (!new->h.name)
823 goto out_free_dom;
824 new->h.flavour = &svcauthops_gss;
825 new->pseudoflavor = pseudoflavor;
826
827 test = auth_domain_lookup(name, &new->h);
828 if (test != &new->h) {
829 pr_warn("svc: duplicate registration of gss pseudo flavour %s.\n",
830 name);
831 stat = -EADDRINUSE;
832 auth_domain_put(test);
833 goto out_free_name;
834 }
835 return test;
836
837 out_free_name:
838 kfree(new->h.name);
839 out_free_dom:
840 kfree(new);
841 out:
842 return ERR_PTR(stat);
843 }
844 EXPORT_SYMBOL_GPL(svcauth_gss_register_pseudoflavor);
845
846 /*
847 * RFC 2203, Section 5.3.2.2
848 *
849 * struct rpc_gss_integ_data {
850 * opaque databody_integ<>;
851 * opaque checksum<>;
852 * };
853 *
854 * struct rpc_gss_data_t {
855 * unsigned int seq_num;
856 * proc_req_arg_t arg;
857 * };
858 */
859 static noinline_for_stack int
svcauth_gss_unwrap_integ(struct svc_rqst * rqstp,u32 seq,struct gss_ctx * ctx)860 svcauth_gss_unwrap_integ(struct svc_rqst *rqstp, u32 seq, struct gss_ctx *ctx)
861 {
862 struct gss_svc_data *gsd = rqstp->rq_auth_data;
863 struct xdr_stream *xdr = &rqstp->rq_arg_stream;
864 u32 len, offset, seq_num, maj_stat;
865 struct xdr_buf *buf = xdr->buf;
866 struct xdr_buf databody_integ;
867 struct xdr_netobj checksum;
868
869 /* Did we already verify the signature on the original pass through? */
870 if (rqstp->rq_deferred)
871 return 0;
872
873 if (xdr_stream_decode_u32(xdr, &len) < 0)
874 goto unwrap_failed;
875 if (len & 3)
876 goto unwrap_failed;
877 offset = xdr_stream_pos(xdr);
878 if (xdr_buf_subsegment(buf, &databody_integ, offset, len))
879 goto unwrap_failed;
880
881 /*
882 * The xdr_stream now points to the @seq_num field. The next
883 * XDR data item is the @arg field, which contains the clear
884 * text RPC program payload. The checksum, which follows the
885 * @arg field, is located and decoded without updating the
886 * xdr_stream.
887 */
888
889 offset += len;
890 if (xdr_decode_word(buf, offset, &checksum.len))
891 goto unwrap_failed;
892 if (checksum.len > sizeof(gsd->gsd_scratch))
893 goto unwrap_failed;
894 checksum.data = gsd->gsd_scratch;
895 if (read_bytes_from_xdr_buf(buf, offset + XDR_UNIT, checksum.data,
896 checksum.len))
897 goto unwrap_failed;
898
899 maj_stat = gss_verify_mic(ctx, &databody_integ, &checksum);
900 if (maj_stat != GSS_S_COMPLETE)
901 goto bad_mic;
902
903 /* The received seqno is protected by the checksum. */
904 if (xdr_stream_decode_u32(xdr, &seq_num) < 0)
905 goto unwrap_failed;
906 if (seq_num != seq)
907 goto bad_seqno;
908
909 xdr_truncate_decode(xdr, XDR_UNIT + checksum.len);
910 return 0;
911
912 unwrap_failed:
913 trace_rpcgss_svc_unwrap_failed(rqstp);
914 return -EINVAL;
915 bad_seqno:
916 trace_rpcgss_svc_seqno_bad(rqstp, seq, seq_num);
917 return -EINVAL;
918 bad_mic:
919 trace_rpcgss_svc_mic(rqstp, maj_stat);
920 return -EINVAL;
921 }
922
923 /*
924 * RFC 2203, Section 5.3.2.3
925 *
926 * struct rpc_gss_priv_data {
927 * opaque databody_priv<>
928 * };
929 *
930 * struct rpc_gss_data_t {
931 * unsigned int seq_num;
932 * proc_req_arg_t arg;
933 * };
934 */
935 static noinline_for_stack int
svcauth_gss_unwrap_priv(struct svc_rqst * rqstp,u32 seq,struct gss_ctx * ctx)936 svcauth_gss_unwrap_priv(struct svc_rqst *rqstp, u32 seq, struct gss_ctx *ctx)
937 {
938 struct xdr_stream *xdr = &rqstp->rq_arg_stream;
939 u32 len, maj_stat, seq_num, offset;
940 struct xdr_buf *buf = xdr->buf;
941 unsigned int saved_len;
942
943 if (xdr_stream_decode_u32(xdr, &len) < 0)
944 goto unwrap_failed;
945 if (rqstp->rq_deferred) {
946 /* Already decrypted last time through! The sequence number
947 * check at out_seq is unnecessary but harmless: */
948 goto out_seq;
949 }
950 if (len > xdr_stream_remaining(xdr))
951 goto unwrap_failed;
952 if (len <= GSS_KRB5_TOK_HDR_LEN)
953 goto unwrap_failed;
954 offset = xdr_stream_pos(xdr);
955
956 saved_len = buf->len;
957 maj_stat = gss_unwrap(ctx, offset, offset + len, buf);
958 if (maj_stat != GSS_S_COMPLETE)
959 goto bad_unwrap;
960 xdr->nwords -= XDR_QUADLEN(saved_len - buf->len);
961
962 out_seq:
963 /* gss_unwrap() decrypted the sequence number. */
964 if (xdr_stream_decode_u32(xdr, &seq_num) < 0)
965 goto unwrap_failed;
966 if (seq_num != seq)
967 goto bad_seqno;
968 return 0;
969
970 unwrap_failed:
971 trace_rpcgss_svc_unwrap_failed(rqstp);
972 return -EINVAL;
973 bad_seqno:
974 trace_rpcgss_svc_seqno_bad(rqstp, seq, seq_num);
975 return -EINVAL;
976 bad_unwrap:
977 trace_rpcgss_svc_unwrap(rqstp, maj_stat);
978 return -EINVAL;
979 }
980
981 static enum svc_auth_status
svcauth_gss_set_client(struct svc_rqst * rqstp)982 svcauth_gss_set_client(struct svc_rqst *rqstp)
983 {
984 struct gss_svc_data *svcdata = rqstp->rq_auth_data;
985 struct rsc *rsci = svcdata->rsci;
986 struct rpc_gss_wire_cred *gc = &svcdata->clcred;
987 int stat;
988
989 rqstp->rq_auth_stat = rpc_autherr_badcred;
990
991 /*
992 * A gss export can be specified either by:
993 * export *(sec=krb5,rw)
994 * or by
995 * export gss/krb5(rw)
996 * The latter is deprecated; but for backwards compatibility reasons
997 * the nfsd code will still fall back on trying it if the former
998 * doesn't work; so we try to make both available to nfsd, below.
999 */
1000 rqstp->rq_gssclient = find_gss_auth_domain(rsci->mechctx, gc->gc_svc);
1001 if (rqstp->rq_gssclient == NULL)
1002 return SVC_DENIED;
1003 stat = svcauth_unix_set_client(rqstp);
1004 if (stat == SVC_DROP || stat == SVC_CLOSE)
1005 return stat;
1006
1007 rqstp->rq_auth_stat = rpc_auth_ok;
1008 return SVC_OK;
1009 }
1010
1011 static bool
svcauth_gss_proc_init_verf(struct cache_detail * cd,struct svc_rqst * rqstp,struct xdr_netobj * out_handle,int * major_status,u32 seq_num)1012 svcauth_gss_proc_init_verf(struct cache_detail *cd, struct svc_rqst *rqstp,
1013 struct xdr_netobj *out_handle, int *major_status,
1014 u32 seq_num)
1015 {
1016 struct xdr_stream *xdr = &rqstp->rq_res_stream;
1017 struct rsc *rsci;
1018 bool rc;
1019
1020 if (*major_status != GSS_S_COMPLETE)
1021 goto null_verifier;
1022 rsci = gss_svc_searchbyctx(cd, out_handle);
1023 if (rsci == NULL) {
1024 *major_status = GSS_S_NO_CONTEXT;
1025 goto null_verifier;
1026 }
1027
1028 rc = svcauth_gss_encode_verf(rqstp, rsci->mechctx, seq_num);
1029 cache_put(&rsci->h, cd);
1030 return rc;
1031
1032 null_verifier:
1033 return xdr_stream_encode_opaque_auth(xdr, RPC_AUTH_NULL, NULL, 0) > 0;
1034 }
1035
gss_free_in_token_pages(struct gssp_in_token * in_token)1036 static void gss_free_in_token_pages(struct gssp_in_token *in_token)
1037 {
1038 int i;
1039
1040 i = 0;
1041 while (in_token->pages[i])
1042 put_page(in_token->pages[i++]);
1043 kfree(in_token->pages);
1044 in_token->pages = NULL;
1045 }
1046
gss_read_proxy_verf(struct svc_rqst * rqstp,struct rpc_gss_wire_cred * gc,struct xdr_netobj * in_handle,struct gssp_in_token * in_token)1047 static int gss_read_proxy_verf(struct svc_rqst *rqstp,
1048 struct rpc_gss_wire_cred *gc,
1049 struct xdr_netobj *in_handle,
1050 struct gssp_in_token *in_token)
1051 {
1052 struct xdr_stream *xdr = &rqstp->rq_arg_stream;
1053 unsigned int length, pgto_offs, pgfrom_offs;
1054 int pages, i, pgto, pgfrom;
1055 size_t to_offs, from_offs;
1056 u32 inlen;
1057
1058 if (dup_netobj(in_handle, &gc->gc_ctx))
1059 return SVC_CLOSE;
1060
1061 /*
1062 * RFC 2203 Section 5.2.2
1063 *
1064 * struct rpc_gss_init_arg {
1065 * opaque gss_token<>;
1066 * };
1067 */
1068 if (xdr_stream_decode_u32(xdr, &inlen) < 0)
1069 goto out_denied_free;
1070 if (inlen > xdr_stream_remaining(xdr))
1071 goto out_denied_free;
1072
1073 pages = DIV_ROUND_UP(inlen, PAGE_SIZE);
1074 in_token->pages = kzalloc_objs(struct page *, pages + 1);
1075 if (!in_token->pages)
1076 goto out_denied_free;
1077 in_token->page_base = 0;
1078 in_token->page_len = inlen;
1079 for (i = 0; i < pages; i++) {
1080 in_token->pages[i] = alloc_page(GFP_KERNEL);
1081 if (!in_token->pages[i]) {
1082 gss_free_in_token_pages(in_token);
1083 goto out_denied_free;
1084 }
1085 }
1086
1087 length = min_t(unsigned int, inlen, (char *)xdr->end - (char *)xdr->p);
1088 if (length)
1089 memcpy(page_address(in_token->pages[0]), xdr->p, length);
1090 inlen -= length;
1091
1092 to_offs = length;
1093 from_offs = rqstp->rq_arg.page_base;
1094 while (inlen) {
1095 pgto = to_offs >> PAGE_SHIFT;
1096 pgfrom = from_offs >> PAGE_SHIFT;
1097 pgto_offs = to_offs & ~PAGE_MASK;
1098 pgfrom_offs = from_offs & ~PAGE_MASK;
1099
1100 length = min_t(unsigned int, inlen,
1101 min_t(unsigned int, PAGE_SIZE - pgto_offs,
1102 PAGE_SIZE - pgfrom_offs));
1103 memcpy(page_address(in_token->pages[pgto]) + pgto_offs,
1104 page_address(rqstp->rq_arg.pages[pgfrom]) + pgfrom_offs,
1105 length);
1106
1107 to_offs += length;
1108 from_offs += length;
1109 inlen -= length;
1110 }
1111 return 0;
1112
1113 out_denied_free:
1114 kfree(in_handle->data);
1115 return SVC_DENIED;
1116 }
1117
1118 /*
1119 * RFC 2203, Section 5.2.3.1.
1120 *
1121 * struct rpc_gss_init_res {
1122 * opaque handle<>;
1123 * unsigned int gss_major;
1124 * unsigned int gss_minor;
1125 * unsigned int seq_window;
1126 * opaque gss_token<>;
1127 * };
1128 */
1129 static bool
svcxdr_encode_gss_init_res(struct xdr_stream * xdr,struct xdr_netobj * handle,struct xdr_netobj * gss_token,unsigned int major_status,unsigned int minor_status,u32 seq_num)1130 svcxdr_encode_gss_init_res(struct xdr_stream *xdr,
1131 struct xdr_netobj *handle,
1132 struct xdr_netobj *gss_token,
1133 unsigned int major_status,
1134 unsigned int minor_status, u32 seq_num)
1135 {
1136 if (xdr_stream_encode_opaque(xdr, handle->data, handle->len) < 0)
1137 return false;
1138 if (xdr_stream_encode_u32(xdr, major_status) < 0)
1139 return false;
1140 if (xdr_stream_encode_u32(xdr, minor_status) < 0)
1141 return false;
1142 if (xdr_stream_encode_u32(xdr, seq_num) < 0)
1143 return false;
1144 if (xdr_stream_encode_opaque(xdr, gss_token->data, gss_token->len) < 0)
1145 return false;
1146 return true;
1147 }
1148
1149 /*
1150 * Having read the cred already and found we're in the context
1151 * initiation case, read the verifier and initiate (or check the results
1152 * of) upcalls to userspace for help with context initiation. If
1153 * the upcall results are available, write the verifier and result.
1154 * Otherwise, drop the request pending an answer to the upcall.
1155 */
1156 static int
svcauth_gss_legacy_init(struct svc_rqst * rqstp,struct rpc_gss_wire_cred * gc)1157 svcauth_gss_legacy_init(struct svc_rqst *rqstp,
1158 struct rpc_gss_wire_cred *gc)
1159 {
1160 struct xdr_stream *xdr = &rqstp->rq_arg_stream;
1161 struct rsi *rsip, rsikey;
1162 __be32 *p;
1163 u32 len;
1164 int ret;
1165 struct sunrpc_net *sn = net_generic(SVC_NET(rqstp), sunrpc_net_id);
1166
1167 memset(&rsikey, 0, sizeof(rsikey));
1168 if (dup_netobj(&rsikey.in_handle, &gc->gc_ctx))
1169 return SVC_CLOSE;
1170
1171 /*
1172 * RFC 2203 Section 5.2.2
1173 *
1174 * struct rpc_gss_init_arg {
1175 * opaque gss_token<>;
1176 * };
1177 */
1178 if (xdr_stream_decode_u32(xdr, &len) < 0) {
1179 kfree(rsikey.in_handle.data);
1180 return SVC_DENIED;
1181 }
1182 p = xdr_inline_decode(xdr, len);
1183 if (!p) {
1184 kfree(rsikey.in_handle.data);
1185 return SVC_DENIED;
1186 }
1187 rsikey.in_token.data = kmalloc(len, GFP_KERNEL);
1188 if (ZERO_OR_NULL_PTR(rsikey.in_token.data)) {
1189 kfree(rsikey.in_handle.data);
1190 return SVC_CLOSE;
1191 }
1192 memcpy(rsikey.in_token.data, p, len);
1193 rsikey.in_token.len = len;
1194
1195 /* Perform upcall, or find upcall result: */
1196 rsip = rsi_lookup(sn->rsi_cache, &rsikey);
1197 rsi_free(&rsikey);
1198 if (!rsip)
1199 return SVC_CLOSE;
1200 if (cache_check(sn->rsi_cache, &rsip->h, &rqstp->rq_chandle) < 0)
1201 /* No upcall result: */
1202 return SVC_CLOSE;
1203
1204 ret = SVC_CLOSE;
1205 if (!svcauth_gss_proc_init_verf(sn->rsc_cache, rqstp, &rsip->out_handle,
1206 &rsip->major_status, GSS_SEQ_WIN))
1207 goto out;
1208 if (!svcxdr_set_accept_stat(rqstp))
1209 goto out;
1210 if (!svcxdr_encode_gss_init_res(&rqstp->rq_res_stream, &rsip->out_handle,
1211 &rsip->out_token, rsip->major_status,
1212 rsip->minor_status, GSS_SEQ_WIN))
1213 goto out;
1214
1215 ret = SVC_COMPLETE;
1216 out:
1217 cache_put(&rsip->h, sn->rsi_cache);
1218 return ret;
1219 }
1220
gss_proxy_save_rsc(struct cache_detail * cd,struct gssp_upcall_data * ud,uint64_t * handle)1221 static int gss_proxy_save_rsc(struct cache_detail *cd,
1222 struct gssp_upcall_data *ud,
1223 uint64_t *handle)
1224 {
1225 struct rsc rsci, *rscp = NULL;
1226 static atomic64_t ctxhctr;
1227 long long ctxh;
1228 struct gss_api_mech *gm = NULL;
1229 time64_t expiry;
1230 int status;
1231
1232 memset(&rsci, 0, sizeof(rsci));
1233 /* context handle */
1234 status = -ENOMEM;
1235 /* the handle needs to be just a unique id,
1236 * use a static counter */
1237 ctxh = atomic64_inc_return(&ctxhctr);
1238
1239 /* make a copy for the caller */
1240 *handle = ctxh;
1241
1242 /* make a copy for the rsc cache */
1243 if (dup_to_netobj(&rsci.handle, (char *)handle, sizeof(uint64_t)))
1244 goto out;
1245 rscp = rsc_lookup(cd, &rsci);
1246 if (!rscp)
1247 goto out;
1248
1249 /* creds */
1250 if (!ud->found_creds) {
1251 /* userspace seem buggy, we should always get at least a
1252 * mapping to nobody */
1253 goto out;
1254 } else {
1255 struct timespec64 boot;
1256
1257 /* steal creds */
1258 rsci.cred = ud->creds;
1259 memset(&ud->creds, 0, sizeof(struct svc_cred));
1260
1261 status = -EOPNOTSUPP;
1262 /* get mech handle from OID */
1263 gm = gss_mech_get_by_OID(&ud->mech_oid);
1264 if (!gm)
1265 goto out;
1266 rsci.cred.cr_gss_mech = gm;
1267
1268 status = -EINVAL;
1269 /* mech-specific data: */
1270 status = gss_import_sec_context(ud->out_handle.data,
1271 ud->out_handle.len,
1272 gm, &rsci.mechctx,
1273 &expiry, GFP_KERNEL);
1274 if (status)
1275 goto out;
1276
1277 getboottime64(&boot);
1278 expiry -= boot.tv_sec;
1279 }
1280
1281 rsci.h.expiry_time = expiry;
1282 rscp = rsc_update(cd, &rsci, rscp);
1283 status = 0;
1284 out:
1285 rsc_free(&rsci);
1286 if (rscp)
1287 cache_put(&rscp->h, cd);
1288 else
1289 status = -ENOMEM;
1290 return status;
1291 }
1292
svcauth_gss_proxy_init(struct svc_rqst * rqstp,struct rpc_gss_wire_cred * gc)1293 static int svcauth_gss_proxy_init(struct svc_rqst *rqstp,
1294 struct rpc_gss_wire_cred *gc)
1295 {
1296 struct xdr_netobj cli_handle;
1297 struct gssp_upcall_data ud;
1298 uint64_t handle;
1299 int status;
1300 int ret;
1301 struct net *net = SVC_NET(rqstp);
1302 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
1303
1304 memset(&ud, 0, sizeof(ud));
1305 ret = gss_read_proxy_verf(rqstp, gc, &ud.in_handle, &ud.in_token);
1306 if (ret)
1307 return ret;
1308
1309 ret = SVC_CLOSE;
1310
1311 /* Perform synchronous upcall to gss-proxy */
1312 status = gssp_accept_sec_context_upcall(net, &ud);
1313 if (status)
1314 goto out;
1315
1316 trace_rpcgss_svc_accept_upcall(rqstp, ud.major_status, ud.minor_status);
1317
1318 switch (ud.major_status) {
1319 case GSS_S_CONTINUE_NEEDED:
1320 cli_handle = ud.out_handle;
1321 break;
1322 case GSS_S_COMPLETE:
1323 status = gss_proxy_save_rsc(sn->rsc_cache, &ud, &handle);
1324 if (status)
1325 goto out;
1326 cli_handle.data = (u8 *)&handle;
1327 cli_handle.len = sizeof(handle);
1328 break;
1329 default:
1330 goto out;
1331 }
1332
1333 if (!svcauth_gss_proc_init_verf(sn->rsc_cache, rqstp, &cli_handle,
1334 &ud.major_status, GSS_SEQ_WIN))
1335 goto out;
1336 if (!svcxdr_set_accept_stat(rqstp))
1337 goto out;
1338 if (!svcxdr_encode_gss_init_res(&rqstp->rq_res_stream, &cli_handle,
1339 &ud.out_token, ud.major_status,
1340 ud.minor_status, GSS_SEQ_WIN))
1341 goto out;
1342
1343 ret = SVC_COMPLETE;
1344 out:
1345 gss_free_in_token_pages(&ud.in_token);
1346 gssp_free_upcall_data(&ud);
1347 return ret;
1348 }
1349
1350 /*
1351 * Try to set the sn->use_gss_proxy variable to a new value. We only allow
1352 * it to be changed if it's currently undefined (-1). If it's any other value
1353 * then return -EBUSY unless the type wouldn't have changed anyway.
1354 */
set_gss_proxy(struct net * net,int type)1355 static int set_gss_proxy(struct net *net, int type)
1356 {
1357 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
1358 int ret;
1359
1360 WARN_ON_ONCE(type != 0 && type != 1);
1361 ret = cmpxchg(&sn->use_gss_proxy, -1, type);
1362 if (ret != -1 && ret != type)
1363 return -EBUSY;
1364 return 0;
1365 }
1366
use_gss_proxy(struct net * net)1367 static bool use_gss_proxy(struct net *net)
1368 {
1369 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
1370
1371 /* If use_gss_proxy is still undefined, then try to disable it */
1372 if (sn->use_gss_proxy == -1)
1373 set_gss_proxy(net, 0);
1374 return sn->use_gss_proxy;
1375 }
1376
1377 static noinline_for_stack int
svcauth_gss_proc_init(struct svc_rqst * rqstp,struct rpc_gss_wire_cred * gc)1378 svcauth_gss_proc_init(struct svc_rqst *rqstp, struct rpc_gss_wire_cred *gc)
1379 {
1380 struct xdr_stream *xdr = &rqstp->rq_arg_stream;
1381 u32 flavor, len;
1382 void *body;
1383
1384 /* Call's verf field: */
1385 if (xdr_stream_decode_opaque_auth(xdr, &flavor, &body, &len) < 0)
1386 return SVC_GARBAGE;
1387 if (flavor != RPC_AUTH_NULL || len != 0) {
1388 rqstp->rq_auth_stat = rpc_autherr_badverf;
1389 return SVC_DENIED;
1390 }
1391
1392 if (gc->gc_proc == RPC_GSS_PROC_INIT && gc->gc_ctx.len != 0) {
1393 rqstp->rq_auth_stat = rpc_autherr_badcred;
1394 return SVC_DENIED;
1395 }
1396
1397 if (!use_gss_proxy(SVC_NET(rqstp)))
1398 return svcauth_gss_legacy_init(rqstp, gc);
1399 return svcauth_gss_proxy_init(rqstp, gc);
1400 }
1401
1402 #ifdef CONFIG_PROC_FS
1403
write_gssp(struct file * file,const char __user * buf,size_t count,loff_t * ppos)1404 static ssize_t write_gssp(struct file *file, const char __user *buf,
1405 size_t count, loff_t *ppos)
1406 {
1407 struct net *net = pde_data(file_inode(file));
1408 char tbuf[20];
1409 unsigned long i;
1410 int res;
1411
1412 if (*ppos || count > sizeof(tbuf)-1)
1413 return -EINVAL;
1414 if (copy_from_user(tbuf, buf, count))
1415 return -EFAULT;
1416
1417 tbuf[count] = 0;
1418 res = kstrtoul(tbuf, 0, &i);
1419 if (res)
1420 return res;
1421 if (i != 1)
1422 return -EINVAL;
1423 res = set_gssp_clnt(net);
1424 if (res)
1425 return res;
1426 res = set_gss_proxy(net, 1);
1427 if (res)
1428 return res;
1429 return count;
1430 }
1431
read_gssp(struct file * file,char __user * buf,size_t count,loff_t * ppos)1432 static ssize_t read_gssp(struct file *file, char __user *buf,
1433 size_t count, loff_t *ppos)
1434 {
1435 struct net *net = pde_data(file_inode(file));
1436 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
1437 unsigned long p = *ppos;
1438 char tbuf[10];
1439 size_t len;
1440
1441 snprintf(tbuf, sizeof(tbuf), "%d\n", sn->use_gss_proxy);
1442 len = strlen(tbuf);
1443 if (p >= len)
1444 return 0;
1445 len -= p;
1446 if (len > count)
1447 len = count;
1448 if (copy_to_user(buf, (void *)(tbuf+p), len))
1449 return -EFAULT;
1450 *ppos += len;
1451 return len;
1452 }
1453
1454 static const struct proc_ops use_gss_proxy_proc_ops = {
1455 .proc_open = nonseekable_open,
1456 .proc_write = write_gssp,
1457 .proc_read = read_gssp,
1458 };
1459
create_use_gss_proxy_proc_entry(struct net * net)1460 static int create_use_gss_proxy_proc_entry(struct net *net)
1461 {
1462 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
1463 struct proc_dir_entry **p = &sn->use_gssp_proc;
1464
1465 sn->use_gss_proxy = -1;
1466 *p = proc_create_data("use-gss-proxy", S_IFREG | 0600,
1467 sn->proc_net_rpc,
1468 &use_gss_proxy_proc_ops, net);
1469 if (!*p)
1470 return -ENOMEM;
1471 return 0;
1472 }
1473
destroy_use_gss_proxy_proc_entry(struct net * net)1474 static void destroy_use_gss_proxy_proc_entry(struct net *net)
1475 {
1476 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
1477
1478 if (sn->use_gssp_proc) {
1479 remove_proc_entry("use-gss-proxy", sn->proc_net_rpc);
1480 clear_gssp_clnt(sn);
1481 }
1482 }
1483
read_gss_krb5_enctypes(struct file * file,char __user * buf,size_t count,loff_t * ppos)1484 static ssize_t read_gss_krb5_enctypes(struct file *file, char __user *buf,
1485 size_t count, loff_t *ppos)
1486 {
1487 struct rpcsec_gss_oid oid = {
1488 .len = 9,
1489 .data = "\x2a\x86\x48\x86\xf7\x12\x01\x02\x02",
1490 };
1491 struct gss_api_mech *mech;
1492 ssize_t ret;
1493
1494 mech = gss_mech_get_by_OID(&oid);
1495 if (!mech)
1496 return 0;
1497 if (!mech->gm_upcall_enctypes) {
1498 gss_mech_put(mech);
1499 return 0;
1500 }
1501
1502 ret = simple_read_from_buffer(buf, count, ppos,
1503 mech->gm_upcall_enctypes,
1504 strlen(mech->gm_upcall_enctypes));
1505 gss_mech_put(mech);
1506 return ret;
1507 }
1508
1509 static const struct proc_ops gss_krb5_enctypes_proc_ops = {
1510 .proc_open = nonseekable_open,
1511 .proc_read = read_gss_krb5_enctypes,
1512 };
1513
create_krb5_enctypes_proc_entry(struct net * net)1514 static int create_krb5_enctypes_proc_entry(struct net *net)
1515 {
1516 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
1517
1518 sn->gss_krb5_enctypes =
1519 proc_create_data("gss_krb5_enctypes", S_IFREG | 0444,
1520 sn->proc_net_rpc, &gss_krb5_enctypes_proc_ops,
1521 net);
1522 return sn->gss_krb5_enctypes ? 0 : -ENOMEM;
1523 }
1524
destroy_krb5_enctypes_proc_entry(struct net * net)1525 static void destroy_krb5_enctypes_proc_entry(struct net *net)
1526 {
1527 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
1528
1529 if (sn->gss_krb5_enctypes)
1530 remove_proc_entry("gss_krb5_enctypes", sn->proc_net_rpc);
1531 }
1532
1533 #else /* CONFIG_PROC_FS */
1534
create_use_gss_proxy_proc_entry(struct net * net)1535 static int create_use_gss_proxy_proc_entry(struct net *net)
1536 {
1537 return 0;
1538 }
1539
destroy_use_gss_proxy_proc_entry(struct net * net)1540 static void destroy_use_gss_proxy_proc_entry(struct net *net) {}
1541
create_krb5_enctypes_proc_entry(struct net * net)1542 static int create_krb5_enctypes_proc_entry(struct net *net)
1543 {
1544 return 0;
1545 }
1546
destroy_krb5_enctypes_proc_entry(struct net * net)1547 static void destroy_krb5_enctypes_proc_entry(struct net *net) {}
1548
1549 #endif /* CONFIG_PROC_FS */
1550
1551 /*
1552 * The Call's credential body should contain a struct rpc_gss_cred_t.
1553 *
1554 * RFC 2203 Section 5
1555 *
1556 * struct rpc_gss_cred_t {
1557 * union switch (unsigned int version) {
1558 * case RPCSEC_GSS_VERS_1:
1559 * struct {
1560 * rpc_gss_proc_t gss_proc;
1561 * unsigned int seq_num;
1562 * rpc_gss_service_t service;
1563 * opaque handle<>;
1564 * } rpc_gss_cred_vers_1_t;
1565 * }
1566 * };
1567 */
1568 static bool
svcauth_gss_decode_credbody(struct xdr_stream * xdr,struct rpc_gss_wire_cred * gc,__be32 ** rpcstart)1569 svcauth_gss_decode_credbody(struct xdr_stream *xdr,
1570 struct rpc_gss_wire_cred *gc,
1571 __be32 **rpcstart)
1572 {
1573 ssize_t handle_len;
1574 u32 body_len;
1575 __be32 *p;
1576
1577 /* Early-return paths leave deterministic state, not stale residue. */
1578 memset(gc, 0, sizeof(*gc));
1579
1580 p = xdr_inline_decode(xdr, XDR_UNIT);
1581 if (!p)
1582 return false;
1583 /*
1584 * start of rpc packet is 7 u32's back from here:
1585 * xid direction rpcversion prog vers proc flavour
1586 */
1587 *rpcstart = p - 7;
1588 body_len = be32_to_cpup(p);
1589 if (body_len > RPC_MAX_AUTH_SIZE)
1590 return false;
1591
1592 /* struct rpc_gss_cred_t */
1593 if (xdr_stream_decode_u32(xdr, &gc->gc_v) < 0)
1594 return false;
1595 if (xdr_stream_decode_u32(xdr, &gc->gc_proc) < 0)
1596 return false;
1597 if (xdr_stream_decode_u32(xdr, &gc->gc_seq) < 0)
1598 return false;
1599 if (xdr_stream_decode_u32(xdr, &gc->gc_svc) < 0)
1600 return false;
1601 handle_len = xdr_stream_decode_opaque_inline(xdr,
1602 (void **)&gc->gc_ctx.data,
1603 body_len);
1604 if (handle_len < 0)
1605 return false;
1606 if (body_len != XDR_UNIT * 5 + xdr_align_size(handle_len))
1607 return false;
1608
1609 gc->gc_ctx.len = handle_len;
1610 return true;
1611 }
1612
1613 /**
1614 * svcauth_gss_accept - Decode and validate incoming RPC_AUTH_GSS credential
1615 * @rqstp: RPC transaction
1616 *
1617 * Return values:
1618 * %SVC_OK: Success
1619 * %SVC_COMPLETE: GSS context lifetime event
1620 * %SVC_DENIED: Credential or verifier is not valid
1621 * %SVC_GARBAGE: Failed to decode credential or verifier
1622 * %SVC_CLOSE: Temporary failure
1623 *
1624 * The rqstp->rq_auth_stat field is also set (see RFCs 2203 and 5531).
1625 */
1626 static enum svc_auth_status
svcauth_gss_accept(struct svc_rqst * rqstp)1627 svcauth_gss_accept(struct svc_rqst *rqstp)
1628 {
1629 struct gss_svc_data *svcdata = rqstp->rq_auth_data;
1630 __be32 *rpcstart;
1631 struct rpc_gss_wire_cred *gc;
1632 struct rsc *rsci = NULL;
1633 int ret;
1634 struct sunrpc_net *sn = net_generic(SVC_NET(rqstp), sunrpc_net_id);
1635
1636 rqstp->rq_auth_stat = rpc_autherr_failed;
1637 if (!svcdata)
1638 svcdata = kmalloc_obj(*svcdata);
1639 if (!svcdata)
1640 goto auth_err;
1641 rqstp->rq_auth_data = svcdata;
1642 svcdata->gsd_databody_offset = 0;
1643 svcdata->rsci = NULL;
1644 gc = &svcdata->clcred;
1645
1646 rqstp->rq_auth_stat = rpc_autherr_badcred;
1647 if (!svcauth_gss_decode_credbody(&rqstp->rq_arg_stream, gc, &rpcstart))
1648 goto auth_err;
1649 if (gc->gc_v != RPC_GSS_VERSION)
1650 goto auth_err;
1651
1652 switch (gc->gc_proc) {
1653 case RPC_GSS_PROC_INIT:
1654 case RPC_GSS_PROC_CONTINUE_INIT:
1655 if (rqstp->rq_proc != 0)
1656 goto auth_err;
1657 return svcauth_gss_proc_init(rqstp, gc);
1658 case RPC_GSS_PROC_DESTROY:
1659 if (rqstp->rq_proc != 0)
1660 goto auth_err;
1661 fallthrough;
1662 case RPC_GSS_PROC_DATA:
1663 rqstp->rq_auth_stat = rpcsec_gsserr_credproblem;
1664 rsci = gss_svc_searchbyctx(sn->rsc_cache, &gc->gc_ctx);
1665 if (!rsci)
1666 goto auth_err;
1667 switch (svcauth_gss_verify_header(rqstp, rsci, rpcstart, gc)) {
1668 case SVC_OK:
1669 break;
1670 case SVC_DENIED:
1671 goto auth_err;
1672 case SVC_DROP:
1673 goto drop;
1674 }
1675 break;
1676 default:
1677 if (rqstp->rq_proc != 0)
1678 goto auth_err;
1679 rqstp->rq_auth_stat = rpc_autherr_rejectedcred;
1680 goto auth_err;
1681 }
1682
1683 /* now act upon the command: */
1684 switch (gc->gc_proc) {
1685 case RPC_GSS_PROC_DESTROY:
1686 if (!svcauth_gss_encode_verf(rqstp, rsci->mechctx, gc->gc_seq))
1687 goto auth_err;
1688 if (!svcxdr_set_accept_stat(rqstp))
1689 goto auth_err;
1690 /* Delete the entry from the cache_list and call cache_put */
1691 sunrpc_cache_unhash(sn->rsc_cache, &rsci->h);
1692 goto complete;
1693 case RPC_GSS_PROC_DATA:
1694 rqstp->rq_auth_stat = rpcsec_gsserr_ctxproblem;
1695 if (!svcauth_gss_encode_verf(rqstp, rsci->mechctx, gc->gc_seq))
1696 goto auth_err;
1697 if (!svcxdr_set_accept_stat(rqstp))
1698 goto auth_err;
1699 svcdata->gsd_databody_offset = xdr_stream_pos(&rqstp->rq_res_stream);
1700 rqstp->rq_cred = rsci->cred;
1701 get_group_info(rsci->cred.cr_group_info);
1702 rqstp->rq_auth_stat = rpc_autherr_badcred;
1703 switch (gc->gc_svc) {
1704 case RPC_GSS_SVC_NONE:
1705 break;
1706 case RPC_GSS_SVC_INTEGRITY:
1707 /* placeholders for body length and seq. number: */
1708 xdr_reserve_space(&rqstp->rq_res_stream, XDR_UNIT * 2);
1709 if (svcauth_gss_unwrap_integ(rqstp, gc->gc_seq,
1710 rsci->mechctx))
1711 goto garbage_args;
1712 svcxdr_set_auth_slack(rqstp, RPC_MAX_AUTH_SIZE);
1713 break;
1714 case RPC_GSS_SVC_PRIVACY:
1715 /* placeholders for body length and seq. number: */
1716 xdr_reserve_space(&rqstp->rq_res_stream, XDR_UNIT * 2);
1717 if (svcauth_gss_unwrap_priv(rqstp, gc->gc_seq,
1718 rsci->mechctx))
1719 goto garbage_args;
1720 svcxdr_set_auth_slack(rqstp, RPC_MAX_AUTH_SIZE * 2);
1721 break;
1722 default:
1723 goto auth_err;
1724 }
1725 svcdata->rsci = rsci;
1726 cache_get(&rsci->h);
1727 rqstp->rq_cred.cr_flavor = gss_svc_to_pseudoflavor(
1728 rsci->mechctx->mech_type,
1729 GSS_C_QOP_DEFAULT,
1730 gc->gc_svc);
1731 ret = SVC_OK;
1732 trace_rpcgss_svc_authenticate(rqstp, gc);
1733 goto out;
1734 }
1735 garbage_args:
1736 ret = SVC_GARBAGE;
1737 goto out;
1738 auth_err:
1739 xdr_truncate_encode(&rqstp->rq_res_stream, XDR_UNIT * 2);
1740 ret = SVC_DENIED;
1741 goto out;
1742 complete:
1743 ret = SVC_COMPLETE;
1744 goto out;
1745 drop:
1746 ret = SVC_CLOSE;
1747 out:
1748 if (rsci)
1749 cache_put(&rsci->h, sn->rsc_cache);
1750 return ret;
1751 }
1752
1753 static u32
svcauth_gss_prepare_to_wrap(struct svc_rqst * rqstp,struct gss_svc_data * gsd)1754 svcauth_gss_prepare_to_wrap(struct svc_rqst *rqstp, struct gss_svc_data *gsd)
1755 {
1756 u32 offset;
1757
1758 /* Release can be called twice, but we only wrap once. */
1759 offset = gsd->gsd_databody_offset;
1760 gsd->gsd_databody_offset = 0;
1761
1762 /* AUTH_ERROR replies are not wrapped. */
1763 if (rqstp->rq_auth_stat != rpc_auth_ok)
1764 return 0;
1765
1766 /* Also don't wrap if the accept_stat is nonzero: */
1767 if (*rqstp->rq_accept_statp != rpc_success)
1768 return 0;
1769
1770 return offset;
1771 }
1772
1773 /*
1774 * RFC 2203, Section 5.3.2.2
1775 *
1776 * struct rpc_gss_integ_data {
1777 * opaque databody_integ<>;
1778 * opaque checksum<>;
1779 * };
1780 *
1781 * struct rpc_gss_data_t {
1782 * unsigned int seq_num;
1783 * proc_req_arg_t arg;
1784 * };
1785 *
1786 * The RPC Reply message has already been XDR-encoded. rq_res_stream
1787 * is now positioned so that the checksum can be written just past
1788 * the RPC Reply message.
1789 */
svcauth_gss_wrap_integ(struct svc_rqst * rqstp)1790 static int svcauth_gss_wrap_integ(struct svc_rqst *rqstp)
1791 {
1792 struct gss_svc_data *gsd = rqstp->rq_auth_data;
1793 struct xdr_stream *xdr = &rqstp->rq_res_stream;
1794 struct rpc_gss_wire_cred *gc = &gsd->clcred;
1795 struct xdr_buf *buf = xdr->buf;
1796 struct xdr_buf databody_integ;
1797 struct xdr_netobj checksum;
1798 u32 offset, maj_stat;
1799
1800 offset = svcauth_gss_prepare_to_wrap(rqstp, gsd);
1801 if (!offset)
1802 goto out;
1803
1804 if (xdr_buf_subsegment(buf, &databody_integ, offset + XDR_UNIT,
1805 buf->len - offset - XDR_UNIT))
1806 goto wrap_failed;
1807 /* Buffer space for these has already been reserved in
1808 * svcauth_gss_accept(). */
1809 if (xdr_encode_word(buf, offset, databody_integ.len))
1810 goto wrap_failed;
1811 if (xdr_encode_word(buf, offset + XDR_UNIT, gc->gc_seq))
1812 goto wrap_failed;
1813
1814 checksum.data = gsd->gsd_scratch;
1815 maj_stat = gss_get_mic(gsd->rsci->mechctx, &databody_integ, &checksum);
1816 if (maj_stat != GSS_S_COMPLETE)
1817 goto bad_mic;
1818
1819 if (xdr_stream_encode_opaque(xdr, checksum.data, checksum.len) < 0)
1820 goto wrap_failed;
1821 xdr_commit_encode(xdr);
1822
1823 out:
1824 return 0;
1825
1826 bad_mic:
1827 trace_rpcgss_svc_get_mic(rqstp, maj_stat);
1828 return -EINVAL;
1829 wrap_failed:
1830 trace_rpcgss_svc_wrap_failed(rqstp);
1831 return -EINVAL;
1832 }
1833
1834 /*
1835 * RFC 2203, Section 5.3.2.3
1836 *
1837 * struct rpc_gss_priv_data {
1838 * opaque databody_priv<>
1839 * };
1840 *
1841 * struct rpc_gss_data_t {
1842 * unsigned int seq_num;
1843 * proc_req_arg_t arg;
1844 * };
1845 *
1846 * gss_wrap() expands the size of the RPC message payload in the
1847 * response buffer. The main purpose of svcauth_gss_wrap_priv()
1848 * is to ensure there is adequate space in the response buffer to
1849 * avoid overflow during the wrap.
1850 */
svcauth_gss_wrap_priv(struct svc_rqst * rqstp)1851 static int svcauth_gss_wrap_priv(struct svc_rqst *rqstp)
1852 {
1853 struct gss_svc_data *gsd = rqstp->rq_auth_data;
1854 struct rpc_gss_wire_cred *gc = &gsd->clcred;
1855 struct xdr_buf *buf = &rqstp->rq_res;
1856 struct kvec *head = buf->head;
1857 struct kvec *tail = buf->tail;
1858 u32 offset, pad, maj_stat;
1859 __be32 *p;
1860
1861 offset = svcauth_gss_prepare_to_wrap(rqstp, gsd);
1862 if (!offset)
1863 return 0;
1864
1865 /*
1866 * Buffer space for this field has already been reserved
1867 * in svcauth_gss_accept(). Note that the GSS sequence
1868 * number is encrypted along with the RPC reply payload.
1869 */
1870 if (xdr_encode_word(buf, offset + XDR_UNIT, gc->gc_seq))
1871 goto wrap_failed;
1872
1873 /*
1874 * If there is currently tail data, make sure there is
1875 * room for the head, tail, and 2 * RPC_MAX_AUTH_SIZE in
1876 * the page, and move the current tail data such that
1877 * there is RPC_MAX_AUTH_SIZE slack space available in
1878 * both the head and tail.
1879 */
1880 if (tail->iov_base) {
1881 if (tail->iov_base >= head->iov_base + PAGE_SIZE)
1882 goto wrap_failed;
1883 if (tail->iov_base < head->iov_base)
1884 goto wrap_failed;
1885 if (tail->iov_len + head->iov_len
1886 + 2 * RPC_MAX_AUTH_SIZE > PAGE_SIZE)
1887 goto wrap_failed;
1888 memmove(tail->iov_base + RPC_MAX_AUTH_SIZE, tail->iov_base,
1889 tail->iov_len);
1890 tail->iov_base += RPC_MAX_AUTH_SIZE;
1891 }
1892 /*
1893 * If there is no current tail data, make sure there is
1894 * room for the head data, and 2 * RPC_MAX_AUTH_SIZE in the
1895 * allotted page, and set up tail information such that there
1896 * is RPC_MAX_AUTH_SIZE slack space available in both the
1897 * head and tail.
1898 */
1899 if (!tail->iov_base) {
1900 if (head->iov_len + 2 * RPC_MAX_AUTH_SIZE > PAGE_SIZE)
1901 goto wrap_failed;
1902 tail->iov_base = head->iov_base
1903 + head->iov_len + RPC_MAX_AUTH_SIZE;
1904 tail->iov_len = 0;
1905 }
1906
1907 maj_stat = gss_wrap(gsd->rsci->mechctx, offset + XDR_UNIT, buf,
1908 buf->pages);
1909 if (maj_stat != GSS_S_COMPLETE)
1910 goto bad_wrap;
1911
1912 /* Wrapping can change the size of databody_priv. */
1913 if (xdr_encode_word(buf, offset, buf->len - offset - XDR_UNIT))
1914 goto wrap_failed;
1915 pad = xdr_pad_size(buf->len - offset - XDR_UNIT);
1916 p = (__be32 *)(tail->iov_base + tail->iov_len);
1917 memset(p, 0, pad);
1918 tail->iov_len += pad;
1919 buf->len += pad;
1920
1921 return 0;
1922 wrap_failed:
1923 trace_rpcgss_svc_wrap_failed(rqstp);
1924 return -EINVAL;
1925 bad_wrap:
1926 trace_rpcgss_svc_wrap(rqstp, maj_stat);
1927 return -ENOMEM;
1928 }
1929
1930 /**
1931 * svcauth_gss_release - Wrap payload and release resources
1932 * @rqstp: RPC transaction context
1933 *
1934 * Return values:
1935 * %0: the Reply is ready to be sent
1936 * %-ENOMEM: failed to allocate memory
1937 * %-EINVAL: encoding error
1938 */
1939 static int
svcauth_gss_release(struct svc_rqst * rqstp)1940 svcauth_gss_release(struct svc_rqst *rqstp)
1941 {
1942 struct sunrpc_net *sn = net_generic(SVC_NET(rqstp), sunrpc_net_id);
1943 struct gss_svc_data *gsd = rqstp->rq_auth_data;
1944 struct rpc_gss_wire_cred *gc;
1945 int stat;
1946
1947 if (!gsd)
1948 goto out;
1949 if (rqstp->rq_auth_stat != rpc_auth_ok)
1950 goto out;
1951 gc = &gsd->clcred;
1952 if (gc->gc_proc != RPC_GSS_PROC_DATA)
1953 goto out;
1954
1955 switch (gc->gc_svc) {
1956 case RPC_GSS_SVC_NONE:
1957 break;
1958 case RPC_GSS_SVC_INTEGRITY:
1959 stat = svcauth_gss_wrap_integ(rqstp);
1960 if (stat)
1961 goto out_err;
1962 break;
1963 case RPC_GSS_SVC_PRIVACY:
1964 stat = svcauth_gss_wrap_priv(rqstp);
1965 if (stat)
1966 goto out_err;
1967 break;
1968 /*
1969 * For any other gc_svc value, svcauth_gss_accept() already set
1970 * the auth_error appropriately; just fall through:
1971 */
1972 }
1973
1974 out:
1975 stat = 0;
1976 out_err:
1977 if (rqstp->rq_client)
1978 auth_domain_put(rqstp->rq_client);
1979 rqstp->rq_client = NULL;
1980 if (rqstp->rq_gssclient)
1981 auth_domain_put(rqstp->rq_gssclient);
1982 rqstp->rq_gssclient = NULL;
1983 if (rqstp->rq_cred.cr_group_info)
1984 put_group_info(rqstp->rq_cred.cr_group_info);
1985 rqstp->rq_cred.cr_group_info = NULL;
1986 if (gsd && gsd->rsci) {
1987 cache_put(&gsd->rsci->h, sn->rsc_cache);
1988 gsd->rsci = NULL;
1989 }
1990 return stat;
1991 }
1992
1993 static void
svcauth_gss_domain_release_rcu(struct rcu_head * head)1994 svcauth_gss_domain_release_rcu(struct rcu_head *head)
1995 {
1996 struct auth_domain *dom = container_of(head, struct auth_domain, rcu_head);
1997 struct gss_domain *gd = container_of(dom, struct gss_domain, h);
1998
1999 kfree(dom->name);
2000 kfree(gd);
2001 }
2002
2003 static void
svcauth_gss_domain_release(struct auth_domain * dom)2004 svcauth_gss_domain_release(struct auth_domain *dom)
2005 {
2006 call_rcu(&dom->rcu_head, svcauth_gss_domain_release_rcu);
2007 }
2008
svcauth_gss_pseudoflavor(struct svc_rqst * rqstp)2009 static rpc_authflavor_t svcauth_gss_pseudoflavor(struct svc_rqst *rqstp)
2010 {
2011 return svcauth_gss_flavor(rqstp->rq_gssclient);
2012 }
2013
2014 static struct auth_ops svcauthops_gss = {
2015 .name = "rpcsec_gss",
2016 .owner = THIS_MODULE,
2017 .flavour = RPC_AUTH_GSS,
2018 .accept = svcauth_gss_accept,
2019 .release = svcauth_gss_release,
2020 .domain_release = svcauth_gss_domain_release,
2021 .set_client = svcauth_gss_set_client,
2022 .pseudoflavor = svcauth_gss_pseudoflavor,
2023 };
2024
rsi_cache_create_net(struct net * net)2025 static int rsi_cache_create_net(struct net *net)
2026 {
2027 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
2028 struct cache_detail *cd;
2029 int err;
2030
2031 cd = cache_create_net(&rsi_cache_template, net);
2032 if (IS_ERR(cd))
2033 return PTR_ERR(cd);
2034 err = cache_register_net(cd, net);
2035 if (err) {
2036 cache_destroy_net(cd, net);
2037 return err;
2038 }
2039 sn->rsi_cache = cd;
2040 return 0;
2041 }
2042
rsi_cache_destroy_net(struct net * net)2043 static void rsi_cache_destroy_net(struct net *net)
2044 {
2045 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
2046 struct cache_detail *cd = sn->rsi_cache;
2047
2048 sn->rsi_cache = NULL;
2049 cache_purge(cd);
2050 cache_unregister_net(cd, net);
2051 cache_destroy_net(cd, net);
2052 }
2053
rsc_cache_create_net(struct net * net)2054 static int rsc_cache_create_net(struct net *net)
2055 {
2056 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
2057 struct cache_detail *cd;
2058 int err;
2059
2060 cd = cache_create_net(&rsc_cache_template, net);
2061 if (IS_ERR(cd))
2062 return PTR_ERR(cd);
2063 err = cache_register_net(cd, net);
2064 if (err) {
2065 cache_destroy_net(cd, net);
2066 return err;
2067 }
2068 sn->rsc_cache = cd;
2069 return 0;
2070 }
2071
rsc_cache_destroy_net(struct net * net)2072 static void rsc_cache_destroy_net(struct net *net)
2073 {
2074 struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
2075 struct cache_detail *cd = sn->rsc_cache;
2076
2077 sn->rsc_cache = NULL;
2078 cache_purge(cd);
2079 cache_unregister_net(cd, net);
2080 cache_destroy_net(cd, net);
2081 }
2082
2083 int
gss_svc_init_net(struct net * net)2084 gss_svc_init_net(struct net *net)
2085 {
2086 int rv;
2087
2088 rv = rsc_cache_create_net(net);
2089 if (rv)
2090 return rv;
2091 rv = rsi_cache_create_net(net);
2092 if (rv)
2093 goto out1;
2094 rv = create_use_gss_proxy_proc_entry(net);
2095 if (rv)
2096 goto out2;
2097
2098 rv = create_krb5_enctypes_proc_entry(net);
2099 if (rv)
2100 goto out3;
2101
2102 return 0;
2103
2104 out3:
2105 destroy_use_gss_proxy_proc_entry(net);
2106 out2:
2107 rsi_cache_destroy_net(net);
2108 out1:
2109 rsc_cache_destroy_net(net);
2110 return rv;
2111 }
2112
2113 void
gss_svc_shutdown_net(struct net * net)2114 gss_svc_shutdown_net(struct net *net)
2115 {
2116 destroy_krb5_enctypes_proc_entry(net);
2117 destroy_use_gss_proxy_proc_entry(net);
2118 rsi_cache_destroy_net(net);
2119 rsc_cache_destroy_net(net);
2120 }
2121
2122 int
gss_svc_init(void)2123 gss_svc_init(void)
2124 {
2125 return svc_auth_register(RPC_AUTH_GSS, &svcauthops_gss);
2126 }
2127
2128 void
gss_svc_shutdown(void)2129 gss_svc_shutdown(void)
2130 {
2131 svc_auth_unregister(RPC_AUTH_GSS);
2132 }
2133