svcauth_gss.c 46 KB

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  1. /*
  2. * Neil Brown <neilb@cse.unsw.edu.au>
  3. * J. Bruce Fields <bfields@umich.edu>
  4. * Andy Adamson <andros@umich.edu>
  5. * Dug Song <dugsong@monkey.org>
  6. *
  7. * RPCSEC_GSS server authentication.
  8. * This implements RPCSEC_GSS as defined in rfc2203 (rpcsec_gss) and rfc2078
  9. * (gssapi)
  10. *
  11. * The RPCSEC_GSS involves three stages:
  12. * 1/ context creation
  13. * 2/ data exchange
  14. * 3/ context destruction
  15. *
  16. * Context creation is handled largely by upcalls to user-space.
  17. * In particular, GSS_Accept_sec_context is handled by an upcall
  18. * Data exchange is handled entirely within the kernel
  19. * In particular, GSS_GetMIC, GSS_VerifyMIC, GSS_Seal, GSS_Unseal are in-kernel.
  20. * Context destruction is handled in-kernel
  21. * GSS_Delete_sec_context is in-kernel
  22. *
  23. * Context creation is initiated by a RPCSEC_GSS_INIT request arriving.
  24. * The context handle and gss_token are used as a key into the rpcsec_init cache.
  25. * The content of this cache includes some of the outputs of GSS_Accept_sec_context,
  26. * being major_status, minor_status, context_handle, reply_token.
  27. * These are sent back to the client.
  28. * Sequence window management is handled by the kernel. The window size if currently
  29. * a compile time constant.
  30. *
  31. * When user-space is happy that a context is established, it places an entry
  32. * in the rpcsec_context cache. The key for this cache is the context_handle.
  33. * The content includes:
  34. * uid/gidlist - for determining access rights
  35. * mechanism type
  36. * mechanism specific information, such as a key
  37. *
  38. */
  39. #include <linux/slab.h>
  40. #include <linux/types.h>
  41. #include <linux/module.h>
  42. #include <linux/pagemap.h>
  43. #include <linux/user_namespace.h>
  44. #include <linux/sunrpc/auth_gss.h>
  45. #include <linux/sunrpc/gss_err.h>
  46. #include <linux/sunrpc/svcauth.h>
  47. #include <linux/sunrpc/svcauth_gss.h>
  48. #include <linux/sunrpc/cache.h>
  49. #include "gss_rpc_upcall.h"
  50. #ifdef RPC_DEBUG
  51. # define RPCDBG_FACILITY RPCDBG_AUTH
  52. #endif
  53. /* The rpcsec_init cache is used for mapping RPCSEC_GSS_{,CONT_}INIT requests
  54. * into replies.
  55. *
  56. * Key is context handle (\x if empty) and gss_token.
  57. * Content is major_status minor_status (integers) context_handle, reply_token.
  58. *
  59. */
  60. static int netobj_equal(struct xdr_netobj *a, struct xdr_netobj *b)
  61. {
  62. return a->len == b->len && 0 == memcmp(a->data, b->data, a->len);
  63. }
  64. #define RSI_HASHBITS 6
  65. #define RSI_HASHMAX (1<<RSI_HASHBITS)
  66. struct rsi {
  67. struct cache_head h;
  68. struct xdr_netobj in_handle, in_token;
  69. struct xdr_netobj out_handle, out_token;
  70. int major_status, minor_status;
  71. };
  72. static struct rsi *rsi_update(struct cache_detail *cd, struct rsi *new, struct rsi *old);
  73. static struct rsi *rsi_lookup(struct cache_detail *cd, struct rsi *item);
  74. static void rsi_free(struct rsi *rsii)
  75. {
  76. kfree(rsii->in_handle.data);
  77. kfree(rsii->in_token.data);
  78. kfree(rsii->out_handle.data);
  79. kfree(rsii->out_token.data);
  80. }
  81. static void rsi_put(struct kref *ref)
  82. {
  83. struct rsi *rsii = container_of(ref, struct rsi, h.ref);
  84. rsi_free(rsii);
  85. kfree(rsii);
  86. }
  87. static inline int rsi_hash(struct rsi *item)
  88. {
  89. return hash_mem(item->in_handle.data, item->in_handle.len, RSI_HASHBITS)
  90. ^ hash_mem(item->in_token.data, item->in_token.len, RSI_HASHBITS);
  91. }
  92. static int rsi_match(struct cache_head *a, struct cache_head *b)
  93. {
  94. struct rsi *item = container_of(a, struct rsi, h);
  95. struct rsi *tmp = container_of(b, struct rsi, h);
  96. return netobj_equal(&item->in_handle, &tmp->in_handle) &&
  97. netobj_equal(&item->in_token, &tmp->in_token);
  98. }
  99. static int dup_to_netobj(struct xdr_netobj *dst, char *src, int len)
  100. {
  101. dst->len = len;
  102. dst->data = (len ? kmemdup(src, len, GFP_KERNEL) : NULL);
  103. if (len && !dst->data)
  104. return -ENOMEM;
  105. return 0;
  106. }
  107. static inline int dup_netobj(struct xdr_netobj *dst, struct xdr_netobj *src)
  108. {
  109. return dup_to_netobj(dst, src->data, src->len);
  110. }
  111. static void rsi_init(struct cache_head *cnew, struct cache_head *citem)
  112. {
  113. struct rsi *new = container_of(cnew, struct rsi, h);
  114. struct rsi *item = container_of(citem, struct rsi, h);
  115. new->out_handle.data = NULL;
  116. new->out_handle.len = 0;
  117. new->out_token.data = NULL;
  118. new->out_token.len = 0;
  119. new->in_handle.len = item->in_handle.len;
  120. item->in_handle.len = 0;
  121. new->in_token.len = item->in_token.len;
  122. item->in_token.len = 0;
  123. new->in_handle.data = item->in_handle.data;
  124. item->in_handle.data = NULL;
  125. new->in_token.data = item->in_token.data;
  126. item->in_token.data = NULL;
  127. }
  128. static void update_rsi(struct cache_head *cnew, struct cache_head *citem)
  129. {
  130. struct rsi *new = container_of(cnew, struct rsi, h);
  131. struct rsi *item = container_of(citem, struct rsi, h);
  132. BUG_ON(new->out_handle.data || new->out_token.data);
  133. new->out_handle.len = item->out_handle.len;
  134. item->out_handle.len = 0;
  135. new->out_token.len = item->out_token.len;
  136. item->out_token.len = 0;
  137. new->out_handle.data = item->out_handle.data;
  138. item->out_handle.data = NULL;
  139. new->out_token.data = item->out_token.data;
  140. item->out_token.data = NULL;
  141. new->major_status = item->major_status;
  142. new->minor_status = item->minor_status;
  143. }
  144. static struct cache_head *rsi_alloc(void)
  145. {
  146. struct rsi *rsii = kmalloc(sizeof(*rsii), GFP_KERNEL);
  147. if (rsii)
  148. return &rsii->h;
  149. else
  150. return NULL;
  151. }
  152. static void rsi_request(struct cache_detail *cd,
  153. struct cache_head *h,
  154. char **bpp, int *blen)
  155. {
  156. struct rsi *rsii = container_of(h, struct rsi, h);
  157. qword_addhex(bpp, blen, rsii->in_handle.data, rsii->in_handle.len);
  158. qword_addhex(bpp, blen, rsii->in_token.data, rsii->in_token.len);
  159. (*bpp)[-1] = '\n';
  160. }
  161. static int rsi_parse(struct cache_detail *cd,
  162. char *mesg, int mlen)
  163. {
  164. /* context token expiry major minor context token */
  165. char *buf = mesg;
  166. char *ep;
  167. int len;
  168. struct rsi rsii, *rsip = NULL;
  169. time_t expiry;
  170. int status = -EINVAL;
  171. memset(&rsii, 0, sizeof(rsii));
  172. /* handle */
  173. len = qword_get(&mesg, buf, mlen);
  174. if (len < 0)
  175. goto out;
  176. status = -ENOMEM;
  177. if (dup_to_netobj(&rsii.in_handle, buf, len))
  178. goto out;
  179. /* token */
  180. len = qword_get(&mesg, buf, mlen);
  181. status = -EINVAL;
  182. if (len < 0)
  183. goto out;
  184. status = -ENOMEM;
  185. if (dup_to_netobj(&rsii.in_token, buf, len))
  186. goto out;
  187. rsip = rsi_lookup(cd, &rsii);
  188. if (!rsip)
  189. goto out;
  190. rsii.h.flags = 0;
  191. /* expiry */
  192. expiry = get_expiry(&mesg);
  193. status = -EINVAL;
  194. if (expiry == 0)
  195. goto out;
  196. /* major/minor */
  197. len = qword_get(&mesg, buf, mlen);
  198. if (len <= 0)
  199. goto out;
  200. rsii.major_status = simple_strtoul(buf, &ep, 10);
  201. if (*ep)
  202. goto out;
  203. len = qword_get(&mesg, buf, mlen);
  204. if (len <= 0)
  205. goto out;
  206. rsii.minor_status = simple_strtoul(buf, &ep, 10);
  207. if (*ep)
  208. goto out;
  209. /* out_handle */
  210. len = qword_get(&mesg, buf, mlen);
  211. if (len < 0)
  212. goto out;
  213. status = -ENOMEM;
  214. if (dup_to_netobj(&rsii.out_handle, buf, len))
  215. goto out;
  216. /* out_token */
  217. len = qword_get(&mesg, buf, mlen);
  218. status = -EINVAL;
  219. if (len < 0)
  220. goto out;
  221. status = -ENOMEM;
  222. if (dup_to_netobj(&rsii.out_token, buf, len))
  223. goto out;
  224. rsii.h.expiry_time = expiry;
  225. rsip = rsi_update(cd, &rsii, rsip);
  226. status = 0;
  227. out:
  228. rsi_free(&rsii);
  229. if (rsip)
  230. cache_put(&rsip->h, cd);
  231. else
  232. status = -ENOMEM;
  233. return status;
  234. }
  235. static struct cache_detail rsi_cache_template = {
  236. .owner = THIS_MODULE,
  237. .hash_size = RSI_HASHMAX,
  238. .name = "auth.rpcsec.init",
  239. .cache_put = rsi_put,
  240. .cache_request = rsi_request,
  241. .cache_parse = rsi_parse,
  242. .match = rsi_match,
  243. .init = rsi_init,
  244. .update = update_rsi,
  245. .alloc = rsi_alloc,
  246. };
  247. static struct rsi *rsi_lookup(struct cache_detail *cd, struct rsi *item)
  248. {
  249. struct cache_head *ch;
  250. int hash = rsi_hash(item);
  251. ch = sunrpc_cache_lookup(cd, &item->h, hash);
  252. if (ch)
  253. return container_of(ch, struct rsi, h);
  254. else
  255. return NULL;
  256. }
  257. static struct rsi *rsi_update(struct cache_detail *cd, struct rsi *new, struct rsi *old)
  258. {
  259. struct cache_head *ch;
  260. int hash = rsi_hash(new);
  261. ch = sunrpc_cache_update(cd, &new->h,
  262. &old->h, hash);
  263. if (ch)
  264. return container_of(ch, struct rsi, h);
  265. else
  266. return NULL;
  267. }
  268. /*
  269. * The rpcsec_context cache is used to store a context that is
  270. * used in data exchange.
  271. * The key is a context handle. The content is:
  272. * uid, gidlist, mechanism, service-set, mech-specific-data
  273. */
  274. #define RSC_HASHBITS 10
  275. #define RSC_HASHMAX (1<<RSC_HASHBITS)
  276. #define GSS_SEQ_WIN 128
  277. struct gss_svc_seq_data {
  278. /* highest seq number seen so far: */
  279. int sd_max;
  280. /* for i such that sd_max-GSS_SEQ_WIN < i <= sd_max, the i-th bit of
  281. * sd_win is nonzero iff sequence number i has been seen already: */
  282. unsigned long sd_win[GSS_SEQ_WIN/BITS_PER_LONG];
  283. spinlock_t sd_lock;
  284. };
  285. struct rsc {
  286. struct cache_head h;
  287. struct xdr_netobj handle;
  288. struct svc_cred cred;
  289. struct gss_svc_seq_data seqdata;
  290. struct gss_ctx *mechctx;
  291. };
  292. static struct rsc *rsc_update(struct cache_detail *cd, struct rsc *new, struct rsc *old);
  293. static struct rsc *rsc_lookup(struct cache_detail *cd, struct rsc *item);
  294. static void rsc_free(struct rsc *rsci)
  295. {
  296. kfree(rsci->handle.data);
  297. if (rsci->mechctx)
  298. gss_delete_sec_context(&rsci->mechctx);
  299. free_svc_cred(&rsci->cred);
  300. }
  301. static void rsc_put(struct kref *ref)
  302. {
  303. struct rsc *rsci = container_of(ref, struct rsc, h.ref);
  304. rsc_free(rsci);
  305. kfree(rsci);
  306. }
  307. static inline int
  308. rsc_hash(struct rsc *rsci)
  309. {
  310. return hash_mem(rsci->handle.data, rsci->handle.len, RSC_HASHBITS);
  311. }
  312. static int
  313. rsc_match(struct cache_head *a, struct cache_head *b)
  314. {
  315. struct rsc *new = container_of(a, struct rsc, h);
  316. struct rsc *tmp = container_of(b, struct rsc, h);
  317. return netobj_equal(&new->handle, &tmp->handle);
  318. }
  319. static void
  320. rsc_init(struct cache_head *cnew, struct cache_head *ctmp)
  321. {
  322. struct rsc *new = container_of(cnew, struct rsc, h);
  323. struct rsc *tmp = container_of(ctmp, struct rsc, h);
  324. new->handle.len = tmp->handle.len;
  325. tmp->handle.len = 0;
  326. new->handle.data = tmp->handle.data;
  327. tmp->handle.data = NULL;
  328. new->mechctx = NULL;
  329. new->cred.cr_group_info = NULL;
  330. new->cred.cr_principal = NULL;
  331. }
  332. static void
  333. update_rsc(struct cache_head *cnew, struct cache_head *ctmp)
  334. {
  335. struct rsc *new = container_of(cnew, struct rsc, h);
  336. struct rsc *tmp = container_of(ctmp, struct rsc, h);
  337. new->mechctx = tmp->mechctx;
  338. tmp->mechctx = NULL;
  339. memset(&new->seqdata, 0, sizeof(new->seqdata));
  340. spin_lock_init(&new->seqdata.sd_lock);
  341. new->cred = tmp->cred;
  342. tmp->cred.cr_group_info = NULL;
  343. new->cred.cr_principal = tmp->cred.cr_principal;
  344. tmp->cred.cr_principal = NULL;
  345. }
  346. static struct cache_head *
  347. rsc_alloc(void)
  348. {
  349. struct rsc *rsci = kmalloc(sizeof(*rsci), GFP_KERNEL);
  350. if (rsci)
  351. return &rsci->h;
  352. else
  353. return NULL;
  354. }
  355. static int rsc_parse(struct cache_detail *cd,
  356. char *mesg, int mlen)
  357. {
  358. /* contexthandle expiry [ uid gid N <n gids> mechname ...mechdata... ] */
  359. char *buf = mesg;
  360. int id;
  361. int len, rv;
  362. struct rsc rsci, *rscp = NULL;
  363. time_t expiry;
  364. int status = -EINVAL;
  365. struct gss_api_mech *gm = NULL;
  366. memset(&rsci, 0, sizeof(rsci));
  367. /* context handle */
  368. len = qword_get(&mesg, buf, mlen);
  369. if (len < 0) goto out;
  370. status = -ENOMEM;
  371. if (dup_to_netobj(&rsci.handle, buf, len))
  372. goto out;
  373. rsci.h.flags = 0;
  374. /* expiry */
  375. expiry = get_expiry(&mesg);
  376. status = -EINVAL;
  377. if (expiry == 0)
  378. goto out;
  379. rscp = rsc_lookup(cd, &rsci);
  380. if (!rscp)
  381. goto out;
  382. /* uid, or NEGATIVE */
  383. rv = get_int(&mesg, &id);
  384. if (rv == -EINVAL)
  385. goto out;
  386. if (rv == -ENOENT)
  387. set_bit(CACHE_NEGATIVE, &rsci.h.flags);
  388. else {
  389. int N, i;
  390. /*
  391. * NOTE: we skip uid_valid()/gid_valid() checks here:
  392. * instead, * -1 id's are later mapped to the
  393. * (export-specific) anonymous id by nfsd_setuser.
  394. *
  395. * (But supplementary gid's get no such special
  396. * treatment so are checked for validity here.)
  397. */
  398. /* uid */
  399. rsci.cred.cr_uid = make_kuid(&init_user_ns, id);
  400. /* gid */
  401. if (get_int(&mesg, &id))
  402. goto out;
  403. rsci.cred.cr_gid = make_kgid(&init_user_ns, id);
  404. /* number of additional gid's */
  405. if (get_int(&mesg, &N))
  406. goto out;
  407. status = -ENOMEM;
  408. rsci.cred.cr_group_info = groups_alloc(N);
  409. if (rsci.cred.cr_group_info == NULL)
  410. goto out;
  411. /* gid's */
  412. status = -EINVAL;
  413. for (i=0; i<N; i++) {
  414. kgid_t kgid;
  415. if (get_int(&mesg, &id))
  416. goto out;
  417. kgid = make_kgid(&init_user_ns, id);
  418. if (!gid_valid(kgid))
  419. goto out;
  420. GROUP_AT(rsci.cred.cr_group_info, i) = kgid;
  421. }
  422. /* mech name */
  423. len = qword_get(&mesg, buf, mlen);
  424. if (len < 0)
  425. goto out;
  426. gm = gss_mech_get_by_name(buf);
  427. status = -EOPNOTSUPP;
  428. if (!gm)
  429. goto out;
  430. status = -EINVAL;
  431. /* mech-specific data: */
  432. len = qword_get(&mesg, buf, mlen);
  433. if (len < 0)
  434. goto out;
  435. status = gss_import_sec_context(buf, len, gm, &rsci.mechctx,
  436. NULL, GFP_KERNEL);
  437. if (status)
  438. goto out;
  439. /* get client name */
  440. len = qword_get(&mesg, buf, mlen);
  441. if (len > 0) {
  442. rsci.cred.cr_principal = kstrdup(buf, GFP_KERNEL);
  443. if (!rsci.cred.cr_principal) {
  444. status = -ENOMEM;
  445. goto out;
  446. }
  447. }
  448. }
  449. rsci.h.expiry_time = expiry;
  450. rscp = rsc_update(cd, &rsci, rscp);
  451. status = 0;
  452. out:
  453. gss_mech_put(gm);
  454. rsc_free(&rsci);
  455. if (rscp)
  456. cache_put(&rscp->h, cd);
  457. else
  458. status = -ENOMEM;
  459. return status;
  460. }
  461. static struct cache_detail rsc_cache_template = {
  462. .owner = THIS_MODULE,
  463. .hash_size = RSC_HASHMAX,
  464. .name = "auth.rpcsec.context",
  465. .cache_put = rsc_put,
  466. .cache_parse = rsc_parse,
  467. .match = rsc_match,
  468. .init = rsc_init,
  469. .update = update_rsc,
  470. .alloc = rsc_alloc,
  471. };
  472. static struct rsc *rsc_lookup(struct cache_detail *cd, struct rsc *item)
  473. {
  474. struct cache_head *ch;
  475. int hash = rsc_hash(item);
  476. ch = sunrpc_cache_lookup(cd, &item->h, hash);
  477. if (ch)
  478. return container_of(ch, struct rsc, h);
  479. else
  480. return NULL;
  481. }
  482. static struct rsc *rsc_update(struct cache_detail *cd, struct rsc *new, struct rsc *old)
  483. {
  484. struct cache_head *ch;
  485. int hash = rsc_hash(new);
  486. ch = sunrpc_cache_update(cd, &new->h,
  487. &old->h, hash);
  488. if (ch)
  489. return container_of(ch, struct rsc, h);
  490. else
  491. return NULL;
  492. }
  493. static struct rsc *
  494. gss_svc_searchbyctx(struct cache_detail *cd, struct xdr_netobj *handle)
  495. {
  496. struct rsc rsci;
  497. struct rsc *found;
  498. memset(&rsci, 0, sizeof(rsci));
  499. if (dup_to_netobj(&rsci.handle, handle->data, handle->len))
  500. return NULL;
  501. found = rsc_lookup(cd, &rsci);
  502. rsc_free(&rsci);
  503. if (!found)
  504. return NULL;
  505. if (cache_check(cd, &found->h, NULL))
  506. return NULL;
  507. return found;
  508. }
  509. /* Implements sequence number algorithm as specified in RFC 2203. */
  510. static int
  511. gss_check_seq_num(struct rsc *rsci, int seq_num)
  512. {
  513. struct gss_svc_seq_data *sd = &rsci->seqdata;
  514. spin_lock(&sd->sd_lock);
  515. if (seq_num > sd->sd_max) {
  516. if (seq_num >= sd->sd_max + GSS_SEQ_WIN) {
  517. memset(sd->sd_win,0,sizeof(sd->sd_win));
  518. sd->sd_max = seq_num;
  519. } else while (sd->sd_max < seq_num) {
  520. sd->sd_max++;
  521. __clear_bit(sd->sd_max % GSS_SEQ_WIN, sd->sd_win);
  522. }
  523. __set_bit(seq_num % GSS_SEQ_WIN, sd->sd_win);
  524. goto ok;
  525. } else if (seq_num <= sd->sd_max - GSS_SEQ_WIN) {
  526. goto drop;
  527. }
  528. /* sd_max - GSS_SEQ_WIN < seq_num <= sd_max */
  529. if (__test_and_set_bit(seq_num % GSS_SEQ_WIN, sd->sd_win))
  530. goto drop;
  531. ok:
  532. spin_unlock(&sd->sd_lock);
  533. return 1;
  534. drop:
  535. spin_unlock(&sd->sd_lock);
  536. return 0;
  537. }
  538. static inline u32 round_up_to_quad(u32 i)
  539. {
  540. return (i + 3 ) & ~3;
  541. }
  542. static inline int
  543. svc_safe_getnetobj(struct kvec *argv, struct xdr_netobj *o)
  544. {
  545. int l;
  546. if (argv->iov_len < 4)
  547. return -1;
  548. o->len = svc_getnl(argv);
  549. l = round_up_to_quad(o->len);
  550. if (argv->iov_len < l)
  551. return -1;
  552. o->data = argv->iov_base;
  553. argv->iov_base += l;
  554. argv->iov_len -= l;
  555. return 0;
  556. }
  557. static inline int
  558. svc_safe_putnetobj(struct kvec *resv, struct xdr_netobj *o)
  559. {
  560. u8 *p;
  561. if (resv->iov_len + 4 > PAGE_SIZE)
  562. return -1;
  563. svc_putnl(resv, o->len);
  564. p = resv->iov_base + resv->iov_len;
  565. resv->iov_len += round_up_to_quad(o->len);
  566. if (resv->iov_len > PAGE_SIZE)
  567. return -1;
  568. memcpy(p, o->data, o->len);
  569. memset(p + o->len, 0, round_up_to_quad(o->len) - o->len);
  570. return 0;
  571. }
  572. /*
  573. * Verify the checksum on the header and return SVC_OK on success.
  574. * Otherwise, return SVC_DROP (in the case of a bad sequence number)
  575. * or return SVC_DENIED and indicate error in authp.
  576. */
  577. static int
  578. gss_verify_header(struct svc_rqst *rqstp, struct rsc *rsci,
  579. __be32 *rpcstart, struct rpc_gss_wire_cred *gc, __be32 *authp)
  580. {
  581. struct gss_ctx *ctx_id = rsci->mechctx;
  582. struct xdr_buf rpchdr;
  583. struct xdr_netobj checksum;
  584. u32 flavor = 0;
  585. struct kvec *argv = &rqstp->rq_arg.head[0];
  586. struct kvec iov;
  587. /* data to compute the checksum over: */
  588. iov.iov_base = rpcstart;
  589. iov.iov_len = (u8 *)argv->iov_base - (u8 *)rpcstart;
  590. xdr_buf_from_iov(&iov, &rpchdr);
  591. *authp = rpc_autherr_badverf;
  592. if (argv->iov_len < 4)
  593. return SVC_DENIED;
  594. flavor = svc_getnl(argv);
  595. if (flavor != RPC_AUTH_GSS)
  596. return SVC_DENIED;
  597. if (svc_safe_getnetobj(argv, &checksum))
  598. return SVC_DENIED;
  599. if (rqstp->rq_deferred) /* skip verification of revisited request */
  600. return SVC_OK;
  601. if (gss_verify_mic(ctx_id, &rpchdr, &checksum) != GSS_S_COMPLETE) {
  602. *authp = rpcsec_gsserr_credproblem;
  603. return SVC_DENIED;
  604. }
  605. if (gc->gc_seq > MAXSEQ) {
  606. dprintk("RPC: svcauth_gss: discarding request with "
  607. "large sequence number %d\n", gc->gc_seq);
  608. *authp = rpcsec_gsserr_ctxproblem;
  609. return SVC_DENIED;
  610. }
  611. if (!gss_check_seq_num(rsci, gc->gc_seq)) {
  612. dprintk("RPC: svcauth_gss: discarding request with "
  613. "old sequence number %d\n", gc->gc_seq);
  614. return SVC_DROP;
  615. }
  616. return SVC_OK;
  617. }
  618. static int
  619. gss_write_null_verf(struct svc_rqst *rqstp)
  620. {
  621. __be32 *p;
  622. svc_putnl(rqstp->rq_res.head, RPC_AUTH_NULL);
  623. p = rqstp->rq_res.head->iov_base + rqstp->rq_res.head->iov_len;
  624. /* don't really need to check if head->iov_len > PAGE_SIZE ... */
  625. *p++ = 0;
  626. if (!xdr_ressize_check(rqstp, p))
  627. return -1;
  628. return 0;
  629. }
  630. static int
  631. gss_write_verf(struct svc_rqst *rqstp, struct gss_ctx *ctx_id, u32 seq)
  632. {
  633. __be32 xdr_seq;
  634. u32 maj_stat;
  635. struct xdr_buf verf_data;
  636. struct xdr_netobj mic;
  637. __be32 *p;
  638. struct kvec iov;
  639. svc_putnl(rqstp->rq_res.head, RPC_AUTH_GSS);
  640. xdr_seq = htonl(seq);
  641. iov.iov_base = &xdr_seq;
  642. iov.iov_len = sizeof(xdr_seq);
  643. xdr_buf_from_iov(&iov, &verf_data);
  644. p = rqstp->rq_res.head->iov_base + rqstp->rq_res.head->iov_len;
  645. mic.data = (u8 *)(p + 1);
  646. maj_stat = gss_get_mic(ctx_id, &verf_data, &mic);
  647. if (maj_stat != GSS_S_COMPLETE)
  648. return -1;
  649. *p++ = htonl(mic.len);
  650. memset((u8 *)p + mic.len, 0, round_up_to_quad(mic.len) - mic.len);
  651. p += XDR_QUADLEN(mic.len);
  652. if (!xdr_ressize_check(rqstp, p))
  653. return -1;
  654. return 0;
  655. }
  656. struct gss_domain {
  657. struct auth_domain h;
  658. u32 pseudoflavor;
  659. };
  660. static struct auth_domain *
  661. find_gss_auth_domain(struct gss_ctx *ctx, u32 svc)
  662. {
  663. char *name;
  664. name = gss_service_to_auth_domain_name(ctx->mech_type, svc);
  665. if (!name)
  666. return NULL;
  667. return auth_domain_find(name);
  668. }
  669. static struct auth_ops svcauthops_gss;
  670. u32 svcauth_gss_flavor(struct auth_domain *dom)
  671. {
  672. struct gss_domain *gd = container_of(dom, struct gss_domain, h);
  673. return gd->pseudoflavor;
  674. }
  675. EXPORT_SYMBOL_GPL(svcauth_gss_flavor);
  676. int
  677. svcauth_gss_register_pseudoflavor(u32 pseudoflavor, char * name)
  678. {
  679. struct gss_domain *new;
  680. struct auth_domain *test;
  681. int stat = -ENOMEM;
  682. new = kmalloc(sizeof(*new), GFP_KERNEL);
  683. if (!new)
  684. goto out;
  685. kref_init(&new->h.ref);
  686. new->h.name = kstrdup(name, GFP_KERNEL);
  687. if (!new->h.name)
  688. goto out_free_dom;
  689. new->h.flavour = &svcauthops_gss;
  690. new->pseudoflavor = pseudoflavor;
  691. stat = 0;
  692. test = auth_domain_lookup(name, &new->h);
  693. if (test != &new->h) { /* Duplicate registration */
  694. auth_domain_put(test);
  695. kfree(new->h.name);
  696. goto out_free_dom;
  697. }
  698. return 0;
  699. out_free_dom:
  700. kfree(new);
  701. out:
  702. return stat;
  703. }
  704. EXPORT_SYMBOL_GPL(svcauth_gss_register_pseudoflavor);
  705. static inline int
  706. read_u32_from_xdr_buf(struct xdr_buf *buf, int base, u32 *obj)
  707. {
  708. __be32 raw;
  709. int status;
  710. status = read_bytes_from_xdr_buf(buf, base, &raw, sizeof(*obj));
  711. if (status)
  712. return status;
  713. *obj = ntohl(raw);
  714. return 0;
  715. }
  716. /* It would be nice if this bit of code could be shared with the client.
  717. * Obstacles:
  718. * The client shouldn't malloc(), would have to pass in own memory.
  719. * The server uses base of head iovec as read pointer, while the
  720. * client uses separate pointer. */
  721. static int
  722. unwrap_integ_data(struct svc_rqst *rqstp, struct xdr_buf *buf, u32 seq, struct gss_ctx *ctx)
  723. {
  724. int stat = -EINVAL;
  725. u32 integ_len, maj_stat;
  726. struct xdr_netobj mic;
  727. struct xdr_buf integ_buf;
  728. /* Did we already verify the signature on the original pass through? */
  729. if (rqstp->rq_deferred)
  730. return 0;
  731. integ_len = svc_getnl(&buf->head[0]);
  732. if (integ_len & 3)
  733. return stat;
  734. if (integ_len > buf->len)
  735. return stat;
  736. if (xdr_buf_subsegment(buf, &integ_buf, 0, integ_len))
  737. BUG();
  738. /* copy out mic... */
  739. if (read_u32_from_xdr_buf(buf, integ_len, &mic.len))
  740. BUG();
  741. if (mic.len > RPC_MAX_AUTH_SIZE)
  742. return stat;
  743. mic.data = kmalloc(mic.len, GFP_KERNEL);
  744. if (!mic.data)
  745. return stat;
  746. if (read_bytes_from_xdr_buf(buf, integ_len + 4, mic.data, mic.len))
  747. goto out;
  748. maj_stat = gss_verify_mic(ctx, &integ_buf, &mic);
  749. if (maj_stat != GSS_S_COMPLETE)
  750. goto out;
  751. if (svc_getnl(&buf->head[0]) != seq)
  752. goto out;
  753. /* trim off the mic at the end before returning */
  754. xdr_buf_trim(buf, mic.len + 4);
  755. stat = 0;
  756. out:
  757. kfree(mic.data);
  758. return stat;
  759. }
  760. static inline int
  761. total_buf_len(struct xdr_buf *buf)
  762. {
  763. return buf->head[0].iov_len + buf->page_len + buf->tail[0].iov_len;
  764. }
  765. static void
  766. fix_priv_head(struct xdr_buf *buf, int pad)
  767. {
  768. if (buf->page_len == 0) {
  769. /* We need to adjust head and buf->len in tandem in this
  770. * case to make svc_defer() work--it finds the original
  771. * buffer start using buf->len - buf->head[0].iov_len. */
  772. buf->head[0].iov_len -= pad;
  773. }
  774. }
  775. static int
  776. unwrap_priv_data(struct svc_rqst *rqstp, struct xdr_buf *buf, u32 seq, struct gss_ctx *ctx)
  777. {
  778. u32 priv_len, maj_stat;
  779. int pad, saved_len, remaining_len, offset;
  780. rqstp->rq_splice_ok = 0;
  781. priv_len = svc_getnl(&buf->head[0]);
  782. if (rqstp->rq_deferred) {
  783. /* Already decrypted last time through! The sequence number
  784. * check at out_seq is unnecessary but harmless: */
  785. goto out_seq;
  786. }
  787. /* buf->len is the number of bytes from the original start of the
  788. * request to the end, where head[0].iov_len is just the bytes
  789. * not yet read from the head, so these two values are different: */
  790. remaining_len = total_buf_len(buf);
  791. if (priv_len > remaining_len)
  792. return -EINVAL;
  793. pad = remaining_len - priv_len;
  794. buf->len -= pad;
  795. fix_priv_head(buf, pad);
  796. /* Maybe it would be better to give gss_unwrap a length parameter: */
  797. saved_len = buf->len;
  798. buf->len = priv_len;
  799. maj_stat = gss_unwrap(ctx, 0, buf);
  800. pad = priv_len - buf->len;
  801. buf->len = saved_len;
  802. buf->len -= pad;
  803. /* The upper layers assume the buffer is aligned on 4-byte boundaries.
  804. * In the krb5p case, at least, the data ends up offset, so we need to
  805. * move it around. */
  806. /* XXX: This is very inefficient. It would be better to either do
  807. * this while we encrypt, or maybe in the receive code, if we can peak
  808. * ahead and work out the service and mechanism there. */
  809. offset = buf->head[0].iov_len % 4;
  810. if (offset) {
  811. buf->buflen = RPCSVC_MAXPAYLOAD;
  812. xdr_shift_buf(buf, offset);
  813. fix_priv_head(buf, pad);
  814. }
  815. if (maj_stat != GSS_S_COMPLETE)
  816. return -EINVAL;
  817. out_seq:
  818. if (svc_getnl(&buf->head[0]) != seq)
  819. return -EINVAL;
  820. return 0;
  821. }
  822. struct gss_svc_data {
  823. /* decoded gss client cred: */
  824. struct rpc_gss_wire_cred clcred;
  825. /* save a pointer to the beginning of the encoded verifier,
  826. * for use in encryption/checksumming in svcauth_gss_release: */
  827. __be32 *verf_start;
  828. struct rsc *rsci;
  829. };
  830. static int
  831. svcauth_gss_set_client(struct svc_rqst *rqstp)
  832. {
  833. struct gss_svc_data *svcdata = rqstp->rq_auth_data;
  834. struct rsc *rsci = svcdata->rsci;
  835. struct rpc_gss_wire_cred *gc = &svcdata->clcred;
  836. int stat;
  837. /*
  838. * A gss export can be specified either by:
  839. * export *(sec=krb5,rw)
  840. * or by
  841. * export gss/krb5(rw)
  842. * The latter is deprecated; but for backwards compatibility reasons
  843. * the nfsd code will still fall back on trying it if the former
  844. * doesn't work; so we try to make both available to nfsd, below.
  845. */
  846. rqstp->rq_gssclient = find_gss_auth_domain(rsci->mechctx, gc->gc_svc);
  847. if (rqstp->rq_gssclient == NULL)
  848. return SVC_DENIED;
  849. stat = svcauth_unix_set_client(rqstp);
  850. if (stat == SVC_DROP || stat == SVC_CLOSE)
  851. return stat;
  852. return SVC_OK;
  853. }
  854. static inline int
  855. gss_write_init_verf(struct cache_detail *cd, struct svc_rqst *rqstp,
  856. struct xdr_netobj *out_handle, int *major_status)
  857. {
  858. struct rsc *rsci;
  859. int rc;
  860. if (*major_status != GSS_S_COMPLETE)
  861. return gss_write_null_verf(rqstp);
  862. rsci = gss_svc_searchbyctx(cd, out_handle);
  863. if (rsci == NULL) {
  864. *major_status = GSS_S_NO_CONTEXT;
  865. return gss_write_null_verf(rqstp);
  866. }
  867. rc = gss_write_verf(rqstp, rsci->mechctx, GSS_SEQ_WIN);
  868. cache_put(&rsci->h, cd);
  869. return rc;
  870. }
  871. static inline int
  872. gss_read_common_verf(struct rpc_gss_wire_cred *gc,
  873. struct kvec *argv, __be32 *authp,
  874. struct xdr_netobj *in_handle)
  875. {
  876. /* Read the verifier; should be NULL: */
  877. *authp = rpc_autherr_badverf;
  878. if (argv->iov_len < 2 * 4)
  879. return SVC_DENIED;
  880. if (svc_getnl(argv) != RPC_AUTH_NULL)
  881. return SVC_DENIED;
  882. if (svc_getnl(argv) != 0)
  883. return SVC_DENIED;
  884. /* Martial context handle and token for upcall: */
  885. *authp = rpc_autherr_badcred;
  886. if (gc->gc_proc == RPC_GSS_PROC_INIT && gc->gc_ctx.len != 0)
  887. return SVC_DENIED;
  888. if (dup_netobj(in_handle, &gc->gc_ctx))
  889. return SVC_CLOSE;
  890. *authp = rpc_autherr_badverf;
  891. return 0;
  892. }
  893. static inline int
  894. gss_read_verf(struct rpc_gss_wire_cred *gc,
  895. struct kvec *argv, __be32 *authp,
  896. struct xdr_netobj *in_handle,
  897. struct xdr_netobj *in_token)
  898. {
  899. struct xdr_netobj tmpobj;
  900. int res;
  901. res = gss_read_common_verf(gc, argv, authp, in_handle);
  902. if (res)
  903. return res;
  904. if (svc_safe_getnetobj(argv, &tmpobj)) {
  905. kfree(in_handle->data);
  906. return SVC_DENIED;
  907. }
  908. if (dup_netobj(in_token, &tmpobj)) {
  909. kfree(in_handle->data);
  910. return SVC_CLOSE;
  911. }
  912. return 0;
  913. }
  914. /* Ok this is really heavily depending on a set of semantics in
  915. * how rqstp is set up by svc_recv and pages laid down by the
  916. * server when reading a request. We are basically guaranteed that
  917. * the token lays all down linearly across a set of pages, starting
  918. * at iov_base in rq_arg.head[0] which happens to be the first of a
  919. * set of pages stored in rq_pages[].
  920. * rq_arg.head[0].iov_base will provide us the page_base to pass
  921. * to the upcall.
  922. */
  923. static inline int
  924. gss_read_proxy_verf(struct svc_rqst *rqstp,
  925. struct rpc_gss_wire_cred *gc, __be32 *authp,
  926. struct xdr_netobj *in_handle,
  927. struct gssp_in_token *in_token)
  928. {
  929. struct kvec *argv = &rqstp->rq_arg.head[0];
  930. u32 inlen;
  931. int res;
  932. res = gss_read_common_verf(gc, argv, authp, in_handle);
  933. if (res)
  934. return res;
  935. inlen = svc_getnl(argv);
  936. if (inlen > (argv->iov_len + rqstp->rq_arg.page_len))
  937. return SVC_DENIED;
  938. in_token->pages = rqstp->rq_pages;
  939. in_token->page_base = (ulong)argv->iov_base & ~PAGE_MASK;
  940. in_token->page_len = inlen;
  941. return 0;
  942. }
  943. static inline int
  944. gss_write_resv(struct kvec *resv, size_t size_limit,
  945. struct xdr_netobj *out_handle, struct xdr_netobj *out_token,
  946. int major_status, int minor_status)
  947. {
  948. if (resv->iov_len + 4 > size_limit)
  949. return -1;
  950. svc_putnl(resv, RPC_SUCCESS);
  951. if (svc_safe_putnetobj(resv, out_handle))
  952. return -1;
  953. if (resv->iov_len + 3 * 4 > size_limit)
  954. return -1;
  955. svc_putnl(resv, major_status);
  956. svc_putnl(resv, minor_status);
  957. svc_putnl(resv, GSS_SEQ_WIN);
  958. if (svc_safe_putnetobj(resv, out_token))
  959. return -1;
  960. return 0;
  961. }
  962. /*
  963. * Having read the cred already and found we're in the context
  964. * initiation case, read the verifier and initiate (or check the results
  965. * of) upcalls to userspace for help with context initiation. If
  966. * the upcall results are available, write the verifier and result.
  967. * Otherwise, drop the request pending an answer to the upcall.
  968. */
  969. static int svcauth_gss_legacy_init(struct svc_rqst *rqstp,
  970. struct rpc_gss_wire_cred *gc, __be32 *authp)
  971. {
  972. struct kvec *argv = &rqstp->rq_arg.head[0];
  973. struct kvec *resv = &rqstp->rq_res.head[0];
  974. struct rsi *rsip, rsikey;
  975. int ret;
  976. struct sunrpc_net *sn = net_generic(rqstp->rq_xprt->xpt_net, sunrpc_net_id);
  977. memset(&rsikey, 0, sizeof(rsikey));
  978. ret = gss_read_verf(gc, argv, authp,
  979. &rsikey.in_handle, &rsikey.in_token);
  980. if (ret)
  981. return ret;
  982. /* Perform upcall, or find upcall result: */
  983. rsip = rsi_lookup(sn->rsi_cache, &rsikey);
  984. rsi_free(&rsikey);
  985. if (!rsip)
  986. return SVC_CLOSE;
  987. if (cache_check(sn->rsi_cache, &rsip->h, &rqstp->rq_chandle) < 0)
  988. /* No upcall result: */
  989. return SVC_CLOSE;
  990. ret = SVC_CLOSE;
  991. /* Got an answer to the upcall; use it: */
  992. if (gss_write_init_verf(sn->rsc_cache, rqstp,
  993. &rsip->out_handle, &rsip->major_status))
  994. goto out;
  995. if (gss_write_resv(resv, PAGE_SIZE,
  996. &rsip->out_handle, &rsip->out_token,
  997. rsip->major_status, rsip->minor_status))
  998. goto out;
  999. ret = SVC_COMPLETE;
  1000. out:
  1001. cache_put(&rsip->h, sn->rsi_cache);
  1002. return ret;
  1003. }
  1004. static int gss_proxy_save_rsc(struct cache_detail *cd,
  1005. struct gssp_upcall_data *ud,
  1006. uint64_t *handle)
  1007. {
  1008. struct rsc rsci, *rscp = NULL;
  1009. static atomic64_t ctxhctr;
  1010. long long ctxh;
  1011. struct gss_api_mech *gm = NULL;
  1012. time_t expiry;
  1013. int status = -EINVAL;
  1014. memset(&rsci, 0, sizeof(rsci));
  1015. /* context handle */
  1016. status = -ENOMEM;
  1017. /* the handle needs to be just a unique id,
  1018. * use a static counter */
  1019. ctxh = atomic64_inc_return(&ctxhctr);
  1020. /* make a copy for the caller */
  1021. *handle = ctxh;
  1022. /* make a copy for the rsc cache */
  1023. if (dup_to_netobj(&rsci.handle, (char *)handle, sizeof(uint64_t)))
  1024. goto out;
  1025. rscp = rsc_lookup(cd, &rsci);
  1026. if (!rscp)
  1027. goto out;
  1028. /* creds */
  1029. if (!ud->found_creds) {
  1030. /* userspace seem buggy, we should always get at least a
  1031. * mapping to nobody */
  1032. dprintk("RPC: No creds found, marking Negative!\n");
  1033. set_bit(CACHE_NEGATIVE, &rsci.h.flags);
  1034. } else {
  1035. /* steal creds */
  1036. rsci.cred = ud->creds;
  1037. memset(&ud->creds, 0, sizeof(struct svc_cred));
  1038. status = -EOPNOTSUPP;
  1039. /* get mech handle from OID */
  1040. gm = gss_mech_get_by_OID(&ud->mech_oid);
  1041. if (!gm)
  1042. goto out;
  1043. status = -EINVAL;
  1044. /* mech-specific data: */
  1045. status = gss_import_sec_context(ud->out_handle.data,
  1046. ud->out_handle.len,
  1047. gm, &rsci.mechctx,
  1048. &expiry, GFP_KERNEL);
  1049. if (status)
  1050. goto out;
  1051. }
  1052. rsci.h.expiry_time = expiry;
  1053. rscp = rsc_update(cd, &rsci, rscp);
  1054. status = 0;
  1055. out:
  1056. gss_mech_put(gm);
  1057. rsc_free(&rsci);
  1058. if (rscp)
  1059. cache_put(&rscp->h, cd);
  1060. else
  1061. status = -ENOMEM;
  1062. return status;
  1063. }
  1064. static int svcauth_gss_proxy_init(struct svc_rqst *rqstp,
  1065. struct rpc_gss_wire_cred *gc, __be32 *authp)
  1066. {
  1067. struct kvec *resv = &rqstp->rq_res.head[0];
  1068. struct xdr_netobj cli_handle;
  1069. struct gssp_upcall_data ud;
  1070. uint64_t handle;
  1071. int status;
  1072. int ret;
  1073. struct net *net = rqstp->rq_xprt->xpt_net;
  1074. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1075. memset(&ud, 0, sizeof(ud));
  1076. ret = gss_read_proxy_verf(rqstp, gc, authp,
  1077. &ud.in_handle, &ud.in_token);
  1078. if (ret)
  1079. return ret;
  1080. ret = SVC_CLOSE;
  1081. /* Perform synchronous upcall to gss-proxy */
  1082. status = gssp_accept_sec_context_upcall(net, &ud);
  1083. if (status)
  1084. goto out;
  1085. dprintk("RPC: svcauth_gss: gss major status = %d\n",
  1086. ud.major_status);
  1087. switch (ud.major_status) {
  1088. case GSS_S_CONTINUE_NEEDED:
  1089. cli_handle = ud.out_handle;
  1090. break;
  1091. case GSS_S_COMPLETE:
  1092. status = gss_proxy_save_rsc(sn->rsc_cache, &ud, &handle);
  1093. if (status)
  1094. goto out;
  1095. cli_handle.data = (u8 *)&handle;
  1096. cli_handle.len = sizeof(handle);
  1097. break;
  1098. default:
  1099. ret = SVC_CLOSE;
  1100. goto out;
  1101. }
  1102. /* Got an answer to the upcall; use it: */
  1103. if (gss_write_init_verf(sn->rsc_cache, rqstp,
  1104. &cli_handle, &ud.major_status))
  1105. goto out;
  1106. if (gss_write_resv(resv, PAGE_SIZE,
  1107. &cli_handle, &ud.out_token,
  1108. ud.major_status, ud.minor_status))
  1109. goto out;
  1110. ret = SVC_COMPLETE;
  1111. out:
  1112. gssp_free_upcall_data(&ud);
  1113. return ret;
  1114. }
  1115. DEFINE_SPINLOCK(use_gssp_lock);
  1116. static bool use_gss_proxy(struct net *net)
  1117. {
  1118. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1119. if (sn->use_gss_proxy != -1)
  1120. return sn->use_gss_proxy;
  1121. spin_lock(&use_gssp_lock);
  1122. /*
  1123. * If you wanted gss-proxy, you should have said so before
  1124. * starting to accept requests:
  1125. */
  1126. sn->use_gss_proxy = 0;
  1127. spin_unlock(&use_gssp_lock);
  1128. return 0;
  1129. }
  1130. #ifdef CONFIG_PROC_FS
  1131. static int set_gss_proxy(struct net *net, int type)
  1132. {
  1133. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1134. int ret = 0;
  1135. WARN_ON_ONCE(type != 0 && type != 1);
  1136. spin_lock(&use_gssp_lock);
  1137. if (sn->use_gss_proxy == -1 || sn->use_gss_proxy == type)
  1138. sn->use_gss_proxy = type;
  1139. else
  1140. ret = -EBUSY;
  1141. spin_unlock(&use_gssp_lock);
  1142. wake_up(&sn->gssp_wq);
  1143. return ret;
  1144. }
  1145. static inline bool gssp_ready(struct sunrpc_net *sn)
  1146. {
  1147. switch (sn->use_gss_proxy) {
  1148. case -1:
  1149. return false;
  1150. case 0:
  1151. return true;
  1152. case 1:
  1153. return sn->gssp_clnt;
  1154. }
  1155. WARN_ON_ONCE(1);
  1156. return false;
  1157. }
  1158. static int wait_for_gss_proxy(struct net *net, struct file *file)
  1159. {
  1160. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1161. if (file->f_flags & O_NONBLOCK && !gssp_ready(sn))
  1162. return -EAGAIN;
  1163. return wait_event_interruptible(sn->gssp_wq, gssp_ready(sn));
  1164. }
  1165. static ssize_t write_gssp(struct file *file, const char __user *buf,
  1166. size_t count, loff_t *ppos)
  1167. {
  1168. struct net *net = PDE_DATA(file->f_path.dentry->d_inode);
  1169. char tbuf[20];
  1170. unsigned long i;
  1171. int res;
  1172. if (*ppos || count > sizeof(tbuf)-1)
  1173. return -EINVAL;
  1174. if (copy_from_user(tbuf, buf, count))
  1175. return -EFAULT;
  1176. tbuf[count] = 0;
  1177. res = kstrtoul(tbuf, 0, &i);
  1178. if (res)
  1179. return res;
  1180. if (i != 1)
  1181. return -EINVAL;
  1182. res = set_gss_proxy(net, 1);
  1183. if (res)
  1184. return res;
  1185. res = set_gssp_clnt(net);
  1186. if (res)
  1187. return res;
  1188. return count;
  1189. }
  1190. static ssize_t read_gssp(struct file *file, char __user *buf,
  1191. size_t count, loff_t *ppos)
  1192. {
  1193. struct net *net = PDE_DATA(file->f_path.dentry->d_inode);
  1194. unsigned long p = *ppos;
  1195. char tbuf[10];
  1196. size_t len;
  1197. int ret;
  1198. ret = wait_for_gss_proxy(net, file);
  1199. if (ret)
  1200. return ret;
  1201. snprintf(tbuf, sizeof(tbuf), "%d\n", use_gss_proxy(net));
  1202. len = strlen(tbuf);
  1203. if (p >= len)
  1204. return 0;
  1205. len -= p;
  1206. if (len > count)
  1207. len = count;
  1208. if (copy_to_user(buf, (void *)(tbuf+p), len))
  1209. return -EFAULT;
  1210. *ppos += len;
  1211. return len;
  1212. }
  1213. static const struct file_operations use_gss_proxy_ops = {
  1214. .open = nonseekable_open,
  1215. .write = write_gssp,
  1216. .read = read_gssp,
  1217. };
  1218. static int create_use_gss_proxy_proc_entry(struct net *net)
  1219. {
  1220. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1221. struct proc_dir_entry **p = &sn->use_gssp_proc;
  1222. sn->use_gss_proxy = -1;
  1223. *p = proc_create_data("use-gss-proxy", S_IFREG|S_IRUSR|S_IWUSR,
  1224. sn->proc_net_rpc,
  1225. &use_gss_proxy_ops, net);
  1226. if (!*p)
  1227. return -ENOMEM;
  1228. init_gssp_clnt(sn);
  1229. return 0;
  1230. }
  1231. static void destroy_use_gss_proxy_proc_entry(struct net *net)
  1232. {
  1233. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1234. if (sn->use_gssp_proc) {
  1235. remove_proc_entry("use-gss-proxy", sn->proc_net_rpc);
  1236. clear_gssp_clnt(sn);
  1237. }
  1238. }
  1239. #else /* CONFIG_PROC_FS */
  1240. static int create_use_gss_proxy_proc_entry(struct net *net)
  1241. {
  1242. return 0;
  1243. }
  1244. static void destroy_use_gss_proxy_proc_entry(struct net *net) {}
  1245. #endif /* CONFIG_PROC_FS */
  1246. /*
  1247. * Accept an rpcsec packet.
  1248. * If context establishment, punt to user space
  1249. * If data exchange, verify/decrypt
  1250. * If context destruction, handle here
  1251. * In the context establishment and destruction case we encode
  1252. * response here and return SVC_COMPLETE.
  1253. */
  1254. static int
  1255. svcauth_gss_accept(struct svc_rqst *rqstp, __be32 *authp)
  1256. {
  1257. struct kvec *argv = &rqstp->rq_arg.head[0];
  1258. struct kvec *resv = &rqstp->rq_res.head[0];
  1259. u32 crlen;
  1260. struct gss_svc_data *svcdata = rqstp->rq_auth_data;
  1261. struct rpc_gss_wire_cred *gc;
  1262. struct rsc *rsci = NULL;
  1263. __be32 *rpcstart;
  1264. __be32 *reject_stat = resv->iov_base + resv->iov_len;
  1265. int ret;
  1266. struct sunrpc_net *sn = net_generic(rqstp->rq_xprt->xpt_net, sunrpc_net_id);
  1267. dprintk("RPC: svcauth_gss: argv->iov_len = %zd\n",
  1268. argv->iov_len);
  1269. *authp = rpc_autherr_badcred;
  1270. if (!svcdata)
  1271. svcdata = kmalloc(sizeof(*svcdata), GFP_KERNEL);
  1272. if (!svcdata)
  1273. goto auth_err;
  1274. rqstp->rq_auth_data = svcdata;
  1275. svcdata->verf_start = NULL;
  1276. svcdata->rsci = NULL;
  1277. gc = &svcdata->clcred;
  1278. /* start of rpc packet is 7 u32's back from here:
  1279. * xid direction rpcversion prog vers proc flavour
  1280. */
  1281. rpcstart = argv->iov_base;
  1282. rpcstart -= 7;
  1283. /* credential is:
  1284. * version(==1), proc(0,1,2,3), seq, service (1,2,3), handle
  1285. * at least 5 u32s, and is preceded by length, so that makes 6.
  1286. */
  1287. if (argv->iov_len < 5 * 4)
  1288. goto auth_err;
  1289. crlen = svc_getnl(argv);
  1290. if (svc_getnl(argv) != RPC_GSS_VERSION)
  1291. goto auth_err;
  1292. gc->gc_proc = svc_getnl(argv);
  1293. gc->gc_seq = svc_getnl(argv);
  1294. gc->gc_svc = svc_getnl(argv);
  1295. if (svc_safe_getnetobj(argv, &gc->gc_ctx))
  1296. goto auth_err;
  1297. if (crlen != round_up_to_quad(gc->gc_ctx.len) + 5 * 4)
  1298. goto auth_err;
  1299. if ((gc->gc_proc != RPC_GSS_PROC_DATA) && (rqstp->rq_proc != 0))
  1300. goto auth_err;
  1301. *authp = rpc_autherr_badverf;
  1302. switch (gc->gc_proc) {
  1303. case RPC_GSS_PROC_INIT:
  1304. case RPC_GSS_PROC_CONTINUE_INIT:
  1305. if (use_gss_proxy(SVC_NET(rqstp)))
  1306. return svcauth_gss_proxy_init(rqstp, gc, authp);
  1307. else
  1308. return svcauth_gss_legacy_init(rqstp, gc, authp);
  1309. case RPC_GSS_PROC_DATA:
  1310. case RPC_GSS_PROC_DESTROY:
  1311. /* Look up the context, and check the verifier: */
  1312. *authp = rpcsec_gsserr_credproblem;
  1313. rsci = gss_svc_searchbyctx(sn->rsc_cache, &gc->gc_ctx);
  1314. if (!rsci)
  1315. goto auth_err;
  1316. switch (gss_verify_header(rqstp, rsci, rpcstart, gc, authp)) {
  1317. case SVC_OK:
  1318. break;
  1319. case SVC_DENIED:
  1320. goto auth_err;
  1321. case SVC_DROP:
  1322. goto drop;
  1323. }
  1324. break;
  1325. default:
  1326. *authp = rpc_autherr_rejectedcred;
  1327. goto auth_err;
  1328. }
  1329. /* now act upon the command: */
  1330. switch (gc->gc_proc) {
  1331. case RPC_GSS_PROC_DESTROY:
  1332. if (gss_write_verf(rqstp, rsci->mechctx, gc->gc_seq))
  1333. goto auth_err;
  1334. rsci->h.expiry_time = get_seconds();
  1335. set_bit(CACHE_NEGATIVE, &rsci->h.flags);
  1336. if (resv->iov_len + 4 > PAGE_SIZE)
  1337. goto drop;
  1338. svc_putnl(resv, RPC_SUCCESS);
  1339. goto complete;
  1340. case RPC_GSS_PROC_DATA:
  1341. *authp = rpcsec_gsserr_ctxproblem;
  1342. svcdata->verf_start = resv->iov_base + resv->iov_len;
  1343. if (gss_write_verf(rqstp, rsci->mechctx, gc->gc_seq))
  1344. goto auth_err;
  1345. rqstp->rq_cred = rsci->cred;
  1346. get_group_info(rsci->cred.cr_group_info);
  1347. *authp = rpc_autherr_badcred;
  1348. switch (gc->gc_svc) {
  1349. case RPC_GSS_SVC_NONE:
  1350. break;
  1351. case RPC_GSS_SVC_INTEGRITY:
  1352. /* placeholders for length and seq. number: */
  1353. svc_putnl(resv, 0);
  1354. svc_putnl(resv, 0);
  1355. if (unwrap_integ_data(rqstp, &rqstp->rq_arg,
  1356. gc->gc_seq, rsci->mechctx))
  1357. goto garbage_args;
  1358. break;
  1359. case RPC_GSS_SVC_PRIVACY:
  1360. /* placeholders for length and seq. number: */
  1361. svc_putnl(resv, 0);
  1362. svc_putnl(resv, 0);
  1363. if (unwrap_priv_data(rqstp, &rqstp->rq_arg,
  1364. gc->gc_seq, rsci->mechctx))
  1365. goto garbage_args;
  1366. break;
  1367. default:
  1368. goto auth_err;
  1369. }
  1370. svcdata->rsci = rsci;
  1371. cache_get(&rsci->h);
  1372. rqstp->rq_cred.cr_flavor = gss_svc_to_pseudoflavor(
  1373. rsci->mechctx->mech_type,
  1374. GSS_C_QOP_DEFAULT,
  1375. gc->gc_svc);
  1376. ret = SVC_OK;
  1377. goto out;
  1378. }
  1379. garbage_args:
  1380. ret = SVC_GARBAGE;
  1381. goto out;
  1382. auth_err:
  1383. /* Restore write pointer to its original value: */
  1384. xdr_ressize_check(rqstp, reject_stat);
  1385. ret = SVC_DENIED;
  1386. goto out;
  1387. complete:
  1388. ret = SVC_COMPLETE;
  1389. goto out;
  1390. drop:
  1391. ret = SVC_DROP;
  1392. out:
  1393. if (rsci)
  1394. cache_put(&rsci->h, sn->rsc_cache);
  1395. return ret;
  1396. }
  1397. static __be32 *
  1398. svcauth_gss_prepare_to_wrap(struct xdr_buf *resbuf, struct gss_svc_data *gsd)
  1399. {
  1400. __be32 *p;
  1401. u32 verf_len;
  1402. p = gsd->verf_start;
  1403. gsd->verf_start = NULL;
  1404. /* If the reply stat is nonzero, don't wrap: */
  1405. if (*(p-1) != rpc_success)
  1406. return NULL;
  1407. /* Skip the verifier: */
  1408. p += 1;
  1409. verf_len = ntohl(*p++);
  1410. p += XDR_QUADLEN(verf_len);
  1411. /* move accept_stat to right place: */
  1412. memcpy(p, p + 2, 4);
  1413. /* Also don't wrap if the accept stat is nonzero: */
  1414. if (*p != rpc_success) {
  1415. resbuf->head[0].iov_len -= 2 * 4;
  1416. return NULL;
  1417. }
  1418. p++;
  1419. return p;
  1420. }
  1421. static inline int
  1422. svcauth_gss_wrap_resp_integ(struct svc_rqst *rqstp)
  1423. {
  1424. struct gss_svc_data *gsd = (struct gss_svc_data *)rqstp->rq_auth_data;
  1425. struct rpc_gss_wire_cred *gc = &gsd->clcred;
  1426. struct xdr_buf *resbuf = &rqstp->rq_res;
  1427. struct xdr_buf integ_buf;
  1428. struct xdr_netobj mic;
  1429. struct kvec *resv;
  1430. __be32 *p;
  1431. int integ_offset, integ_len;
  1432. int stat = -EINVAL;
  1433. p = svcauth_gss_prepare_to_wrap(resbuf, gsd);
  1434. if (p == NULL)
  1435. goto out;
  1436. integ_offset = (u8 *)(p + 1) - (u8 *)resbuf->head[0].iov_base;
  1437. integ_len = resbuf->len - integ_offset;
  1438. BUG_ON(integ_len % 4);
  1439. *p++ = htonl(integ_len);
  1440. *p++ = htonl(gc->gc_seq);
  1441. if (xdr_buf_subsegment(resbuf, &integ_buf, integ_offset,
  1442. integ_len))
  1443. BUG();
  1444. if (resbuf->tail[0].iov_base == NULL) {
  1445. if (resbuf->head[0].iov_len + RPC_MAX_AUTH_SIZE > PAGE_SIZE)
  1446. goto out_err;
  1447. resbuf->tail[0].iov_base = resbuf->head[0].iov_base
  1448. + resbuf->head[0].iov_len;
  1449. resbuf->tail[0].iov_len = 0;
  1450. resv = &resbuf->tail[0];
  1451. } else {
  1452. resv = &resbuf->tail[0];
  1453. }
  1454. mic.data = (u8 *)resv->iov_base + resv->iov_len + 4;
  1455. if (gss_get_mic(gsd->rsci->mechctx, &integ_buf, &mic))
  1456. goto out_err;
  1457. svc_putnl(resv, mic.len);
  1458. memset(mic.data + mic.len, 0,
  1459. round_up_to_quad(mic.len) - mic.len);
  1460. resv->iov_len += XDR_QUADLEN(mic.len) << 2;
  1461. /* not strictly required: */
  1462. resbuf->len += XDR_QUADLEN(mic.len) << 2;
  1463. BUG_ON(resv->iov_len > PAGE_SIZE);
  1464. out:
  1465. stat = 0;
  1466. out_err:
  1467. return stat;
  1468. }
  1469. static inline int
  1470. svcauth_gss_wrap_resp_priv(struct svc_rqst *rqstp)
  1471. {
  1472. struct gss_svc_data *gsd = (struct gss_svc_data *)rqstp->rq_auth_data;
  1473. struct rpc_gss_wire_cred *gc = &gsd->clcred;
  1474. struct xdr_buf *resbuf = &rqstp->rq_res;
  1475. struct page **inpages = NULL;
  1476. __be32 *p, *len;
  1477. int offset;
  1478. int pad;
  1479. p = svcauth_gss_prepare_to_wrap(resbuf, gsd);
  1480. if (p == NULL)
  1481. return 0;
  1482. len = p++;
  1483. offset = (u8 *)p - (u8 *)resbuf->head[0].iov_base;
  1484. *p++ = htonl(gc->gc_seq);
  1485. inpages = resbuf->pages;
  1486. /* XXX: Would be better to write some xdr helper functions for
  1487. * nfs{2,3,4}xdr.c that place the data right, instead of copying: */
  1488. /*
  1489. * If there is currently tail data, make sure there is
  1490. * room for the head, tail, and 2 * RPC_MAX_AUTH_SIZE in
  1491. * the page, and move the current tail data such that
  1492. * there is RPC_MAX_AUTH_SIZE slack space available in
  1493. * both the head and tail.
  1494. */
  1495. if (resbuf->tail[0].iov_base) {
  1496. BUG_ON(resbuf->tail[0].iov_base >= resbuf->head[0].iov_base
  1497. + PAGE_SIZE);
  1498. BUG_ON(resbuf->tail[0].iov_base < resbuf->head[0].iov_base);
  1499. if (resbuf->tail[0].iov_len + resbuf->head[0].iov_len
  1500. + 2 * RPC_MAX_AUTH_SIZE > PAGE_SIZE)
  1501. return -ENOMEM;
  1502. memmove(resbuf->tail[0].iov_base + RPC_MAX_AUTH_SIZE,
  1503. resbuf->tail[0].iov_base,
  1504. resbuf->tail[0].iov_len);
  1505. resbuf->tail[0].iov_base += RPC_MAX_AUTH_SIZE;
  1506. }
  1507. /*
  1508. * If there is no current tail data, make sure there is
  1509. * room for the head data, and 2 * RPC_MAX_AUTH_SIZE in the
  1510. * allotted page, and set up tail information such that there
  1511. * is RPC_MAX_AUTH_SIZE slack space available in both the
  1512. * head and tail.
  1513. */
  1514. if (resbuf->tail[0].iov_base == NULL) {
  1515. if (resbuf->head[0].iov_len + 2*RPC_MAX_AUTH_SIZE > PAGE_SIZE)
  1516. return -ENOMEM;
  1517. resbuf->tail[0].iov_base = resbuf->head[0].iov_base
  1518. + resbuf->head[0].iov_len + RPC_MAX_AUTH_SIZE;
  1519. resbuf->tail[0].iov_len = 0;
  1520. }
  1521. if (gss_wrap(gsd->rsci->mechctx, offset, resbuf, inpages))
  1522. return -ENOMEM;
  1523. *len = htonl(resbuf->len - offset);
  1524. pad = 3 - ((resbuf->len - offset - 1)&3);
  1525. p = (__be32 *)(resbuf->tail[0].iov_base + resbuf->tail[0].iov_len);
  1526. memset(p, 0, pad);
  1527. resbuf->tail[0].iov_len += pad;
  1528. resbuf->len += pad;
  1529. return 0;
  1530. }
  1531. static int
  1532. svcauth_gss_release(struct svc_rqst *rqstp)
  1533. {
  1534. struct gss_svc_data *gsd = (struct gss_svc_data *)rqstp->rq_auth_data;
  1535. struct rpc_gss_wire_cred *gc = &gsd->clcred;
  1536. struct xdr_buf *resbuf = &rqstp->rq_res;
  1537. int stat = -EINVAL;
  1538. struct sunrpc_net *sn = net_generic(rqstp->rq_xprt->xpt_net, sunrpc_net_id);
  1539. if (gc->gc_proc != RPC_GSS_PROC_DATA)
  1540. goto out;
  1541. /* Release can be called twice, but we only wrap once. */
  1542. if (gsd->verf_start == NULL)
  1543. goto out;
  1544. /* normally not set till svc_send, but we need it here: */
  1545. /* XXX: what for? Do we mess it up the moment we call svc_putu32
  1546. * or whatever? */
  1547. resbuf->len = total_buf_len(resbuf);
  1548. switch (gc->gc_svc) {
  1549. case RPC_GSS_SVC_NONE:
  1550. break;
  1551. case RPC_GSS_SVC_INTEGRITY:
  1552. stat = svcauth_gss_wrap_resp_integ(rqstp);
  1553. if (stat)
  1554. goto out_err;
  1555. break;
  1556. case RPC_GSS_SVC_PRIVACY:
  1557. stat = svcauth_gss_wrap_resp_priv(rqstp);
  1558. if (stat)
  1559. goto out_err;
  1560. break;
  1561. /*
  1562. * For any other gc_svc value, svcauth_gss_accept() already set
  1563. * the auth_error appropriately; just fall through:
  1564. */
  1565. }
  1566. out:
  1567. stat = 0;
  1568. out_err:
  1569. if (rqstp->rq_client)
  1570. auth_domain_put(rqstp->rq_client);
  1571. rqstp->rq_client = NULL;
  1572. if (rqstp->rq_gssclient)
  1573. auth_domain_put(rqstp->rq_gssclient);
  1574. rqstp->rq_gssclient = NULL;
  1575. if (rqstp->rq_cred.cr_group_info)
  1576. put_group_info(rqstp->rq_cred.cr_group_info);
  1577. rqstp->rq_cred.cr_group_info = NULL;
  1578. if (gsd->rsci)
  1579. cache_put(&gsd->rsci->h, sn->rsc_cache);
  1580. gsd->rsci = NULL;
  1581. return stat;
  1582. }
  1583. static void
  1584. svcauth_gss_domain_release(struct auth_domain *dom)
  1585. {
  1586. struct gss_domain *gd = container_of(dom, struct gss_domain, h);
  1587. kfree(dom->name);
  1588. kfree(gd);
  1589. }
  1590. static struct auth_ops svcauthops_gss = {
  1591. .name = "rpcsec_gss",
  1592. .owner = THIS_MODULE,
  1593. .flavour = RPC_AUTH_GSS,
  1594. .accept = svcauth_gss_accept,
  1595. .release = svcauth_gss_release,
  1596. .domain_release = svcauth_gss_domain_release,
  1597. .set_client = svcauth_gss_set_client,
  1598. };
  1599. static int rsi_cache_create_net(struct net *net)
  1600. {
  1601. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1602. struct cache_detail *cd;
  1603. int err;
  1604. cd = cache_create_net(&rsi_cache_template, net);
  1605. if (IS_ERR(cd))
  1606. return PTR_ERR(cd);
  1607. err = cache_register_net(cd, net);
  1608. if (err) {
  1609. cache_destroy_net(cd, net);
  1610. return err;
  1611. }
  1612. sn->rsi_cache = cd;
  1613. return 0;
  1614. }
  1615. static void rsi_cache_destroy_net(struct net *net)
  1616. {
  1617. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1618. struct cache_detail *cd = sn->rsi_cache;
  1619. sn->rsi_cache = NULL;
  1620. cache_purge(cd);
  1621. cache_unregister_net(cd, net);
  1622. cache_destroy_net(cd, net);
  1623. }
  1624. static int rsc_cache_create_net(struct net *net)
  1625. {
  1626. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1627. struct cache_detail *cd;
  1628. int err;
  1629. cd = cache_create_net(&rsc_cache_template, net);
  1630. if (IS_ERR(cd))
  1631. return PTR_ERR(cd);
  1632. err = cache_register_net(cd, net);
  1633. if (err) {
  1634. cache_destroy_net(cd, net);
  1635. return err;
  1636. }
  1637. sn->rsc_cache = cd;
  1638. return 0;
  1639. }
  1640. static void rsc_cache_destroy_net(struct net *net)
  1641. {
  1642. struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
  1643. struct cache_detail *cd = sn->rsc_cache;
  1644. sn->rsc_cache = NULL;
  1645. cache_purge(cd);
  1646. cache_unregister_net(cd, net);
  1647. cache_destroy_net(cd, net);
  1648. }
  1649. int
  1650. gss_svc_init_net(struct net *net)
  1651. {
  1652. int rv;
  1653. rv = rsc_cache_create_net(net);
  1654. if (rv)
  1655. return rv;
  1656. rv = rsi_cache_create_net(net);
  1657. if (rv)
  1658. goto out1;
  1659. rv = create_use_gss_proxy_proc_entry(net);
  1660. if (rv)
  1661. goto out2;
  1662. return 0;
  1663. out2:
  1664. destroy_use_gss_proxy_proc_entry(net);
  1665. out1:
  1666. rsc_cache_destroy_net(net);
  1667. return rv;
  1668. }
  1669. void
  1670. gss_svc_shutdown_net(struct net *net)
  1671. {
  1672. destroy_use_gss_proxy_proc_entry(net);
  1673. rsi_cache_destroy_net(net);
  1674. rsc_cache_destroy_net(net);
  1675. }
  1676. int
  1677. gss_svc_init(void)
  1678. {
  1679. return svc_auth_register(RPC_AUTH_GSS, &svcauthops_gss);
  1680. }
  1681. void
  1682. gss_svc_shutdown(void)
  1683. {
  1684. svc_auth_unregister(RPC_AUTH_GSS);
  1685. }