1
2#include <linux/ceph/ceph_debug.h>
3
4#include <linux/err.h>
5#include <linux/module.h>
6#include <linux/random.h>
7#include <linux/slab.h>
8
9#include <linux/ceph/decode.h>
10#include <linux/ceph/auth.h>
11#include <linux/ceph/libceph.h>
12#include <linux/ceph/messenger.h>
13
14#include "crypto.h"
15#include "auth_x.h"
16#include "auth_x_protocol.h"
17
18static void ceph_x_validate_tickets(struct ceph_auth_client *ac, int *pneed);
19
20static int ceph_x_is_authenticated(struct ceph_auth_client *ac)
21{
22	struct ceph_x_info *xi = ac->private;
23	int need;
24
25	ceph_x_validate_tickets(ac, &need);
26	dout("ceph_x_is_authenticated want=%d need=%d have=%d\n",
27	     ac->want_keys, need, xi->have_keys);
28	return (ac->want_keys & xi->have_keys) == ac->want_keys;
29}
30
31static int ceph_x_should_authenticate(struct ceph_auth_client *ac)
32{
33	struct ceph_x_info *xi = ac->private;
34	int need;
35
36	ceph_x_validate_tickets(ac, &need);
37	dout("ceph_x_should_authenticate want=%d need=%d have=%d\n",
38	     ac->want_keys, need, xi->have_keys);
39	return need != 0;
40}
41
42static int ceph_x_encrypt_buflen(int ilen)
43{
44	return sizeof(struct ceph_x_encrypt_header) + ilen + 16 +
45		sizeof(u32);
46}
47
48static int ceph_x_encrypt(struct ceph_crypto_key *secret,
49			  void *ibuf, int ilen, void *obuf, size_t olen)
50{
51	struct ceph_x_encrypt_header head = {
52		.struct_v = 1,
53		.magic = cpu_to_le64(CEPHX_ENC_MAGIC)
54	};
55	size_t len = olen - sizeof(u32);
56	int ret;
57
58	ret = ceph_encrypt2(secret, obuf + sizeof(u32), &len,
59			    &head, sizeof(head), ibuf, ilen);
60	if (ret)
61		return ret;
62	ceph_encode_32(&obuf, len);
63	return len + sizeof(u32);
64}
65
66static int ceph_x_decrypt(struct ceph_crypto_key *secret,
67			  void **p, void *end, void **obuf, size_t olen)
68{
69	struct ceph_x_encrypt_header head;
70	size_t head_len = sizeof(head);
71	int len, ret;
72
73	len = ceph_decode_32(p);
74	if (*p + len > end)
75		return -EINVAL;
76
77	dout("ceph_x_decrypt len %d\n", len);
78	if (*obuf == NULL) {
79		*obuf = kmalloc(len, GFP_NOFS);
80		if (!*obuf)
81			return -ENOMEM;
82		olen = len;
83	}
84
85	ret = ceph_decrypt2(secret, &head, &head_len, *obuf, &olen, *p, len);
86	if (ret)
87		return ret;
88	if (head.struct_v != 1 || le64_to_cpu(head.magic) != CEPHX_ENC_MAGIC)
89		return -EPERM;
90	*p += len;
91	return olen;
92}
93
94/*
95 * get existing (or insert new) ticket handler
96 */
97static struct ceph_x_ticket_handler *
98get_ticket_handler(struct ceph_auth_client *ac, int service)
99{
100	struct ceph_x_ticket_handler *th;
101	struct ceph_x_info *xi = ac->private;
102	struct rb_node *parent = NULL, **p = &xi->ticket_handlers.rb_node;
103
104	while (*p) {
105		parent = *p;
106		th = rb_entry(parent, struct ceph_x_ticket_handler, node);
107		if (service < th->service)
108			p = &(*p)->rb_left;
109		else if (service > th->service)
110			p = &(*p)->rb_right;
111		else
112			return th;
113	}
114
115	/* add it */
116	th = kzalloc(sizeof(*th), GFP_NOFS);
117	if (!th)
118		return ERR_PTR(-ENOMEM);
119	th->service = service;
120	rb_link_node(&th->node, parent, p);
121	rb_insert_color(&th->node, &xi->ticket_handlers);
122	return th;
123}
124
125static void remove_ticket_handler(struct ceph_auth_client *ac,
126				  struct ceph_x_ticket_handler *th)
127{
128	struct ceph_x_info *xi = ac->private;
129
130	dout("remove_ticket_handler %p %d\n", th, th->service);
131	rb_erase(&th->node, &xi->ticket_handlers);
132	ceph_crypto_key_destroy(&th->session_key);
133	if (th->ticket_blob)
134		ceph_buffer_put(th->ticket_blob);
135	kfree(th);
136}
137
138static int process_one_ticket(struct ceph_auth_client *ac,
139			      struct ceph_crypto_key *secret,
140			      void **p, void *end)
141{
142	struct ceph_x_info *xi = ac->private;
143	int type;
144	u8 tkt_struct_v, blob_struct_v;
145	struct ceph_x_ticket_handler *th;
146	void *dbuf = NULL;
147	void *dp, *dend;
148	int dlen;
149	char is_enc;
150	struct timespec validity;
151	struct ceph_crypto_key old_key;
152	void *ticket_buf = NULL;
153	void *tp, *tpend;
154	void **ptp;
155	struct ceph_timespec new_validity;
156	struct ceph_crypto_key new_session_key;
157	struct ceph_buffer *new_ticket_blob;
158	unsigned long new_expires, new_renew_after;
159	u64 new_secret_id;
160	int ret;
161
162	ceph_decode_need(p, end, sizeof(u32) + 1, bad);
163
164	type = ceph_decode_32(p);
165	dout(" ticket type %d %s\n", type, ceph_entity_type_name(type));
166
167	tkt_struct_v = ceph_decode_8(p);
168	if (tkt_struct_v != 1)
169		goto bad;
170
171	th = get_ticket_handler(ac, type);
172	if (IS_ERR(th)) {
173		ret = PTR_ERR(th);
174		goto out;
175	}
176
177	/* blob for me */
178	dlen = ceph_x_decrypt(secret, p, end, &dbuf, 0);
179	if (dlen <= 0) {
180		ret = dlen;
181		goto out;
182	}
183	dout(" decrypted %d bytes\n", dlen);
184	dp = dbuf;
185	dend = dp + dlen;
186
187	tkt_struct_v = ceph_decode_8(&dp);
188	if (tkt_struct_v != 1)
189		goto bad;
190
191	memcpy(&old_key, &th->session_key, sizeof(old_key));
192	ret = ceph_crypto_key_decode(&new_session_key, &dp, dend);
193	if (ret)
194		goto out;
195
196	ceph_decode_copy(&dp, &new_validity, sizeof(new_validity));
197	ceph_decode_timespec(&validity, &new_validity);
198	new_expires = get_seconds() + validity.tv_sec;
199	new_renew_after = new_expires - (validity.tv_sec / 4);
200	dout(" expires=%lu renew_after=%lu\n", new_expires,
201	     new_renew_after);
202
203	/* ticket blob for service */
204	ceph_decode_8_safe(p, end, is_enc, bad);
205	if (is_enc) {
206		/* encrypted */
207		dout(" encrypted ticket\n");
208		dlen = ceph_x_decrypt(&old_key, p, end, &ticket_buf, 0);
209		if (dlen < 0) {
210			ret = dlen;
211			goto out;
212		}
213		tp = ticket_buf;
214		ptp = &tp;
215		tpend = *ptp + dlen;
216	} else {
217		/* unencrypted */
218		ptp = p;
219		tpend = end;
220	}
221	ceph_decode_32_safe(ptp, tpend, dlen, bad);
222	dout(" ticket blob is %d bytes\n", dlen);
223	ceph_decode_need(ptp, tpend, 1 + sizeof(u64), bad);
224	blob_struct_v = ceph_decode_8(ptp);
225	new_secret_id = ceph_decode_64(ptp);
226	ret = ceph_decode_buffer(&new_ticket_blob, ptp, tpend);
227	if (ret)
228		goto out;
229
230	/* all is well, update our ticket */
231	ceph_crypto_key_destroy(&th->session_key);
232	if (th->ticket_blob)
233		ceph_buffer_put(th->ticket_blob);
234	th->session_key = new_session_key;
235	th->ticket_blob = new_ticket_blob;
236	th->validity = new_validity;
237	th->secret_id = new_secret_id;
238	th->expires = new_expires;
239	th->renew_after = new_renew_after;
240	dout(" got ticket service %d (%s) secret_id %lld len %d\n",
241	     type, ceph_entity_type_name(type), th->secret_id,
242	     (int)th->ticket_blob->vec.iov_len);
243	xi->have_keys |= th->service;
244
245out:
246	kfree(ticket_buf);
247	kfree(dbuf);
248	return ret;
249
250bad:
251	ret = -EINVAL;
252	goto out;
253}
254
255static int ceph_x_proc_ticket_reply(struct ceph_auth_client *ac,
256				    struct ceph_crypto_key *secret,
257				    void *buf, void *end)
258{
259	void *p = buf;
260	u8 reply_struct_v;
261	u32 num;
262	int ret;
263
264	ceph_decode_8_safe(&p, end, reply_struct_v, bad);
265	if (reply_struct_v != 1)
266		return -EINVAL;
267
268	ceph_decode_32_safe(&p, end, num, bad);
269	dout("%d tickets\n", num);
270
271	while (num--) {
272		ret = process_one_ticket(ac, secret, &p, end);
273		if (ret)
274			return ret;
275	}
276
277	return 0;
278
279bad:
280	return -EINVAL;
281}
282
283static void ceph_x_authorizer_cleanup(struct ceph_x_authorizer *au)
284{
285	ceph_crypto_key_destroy(&au->session_key);
286	if (au->buf) {
287		ceph_buffer_put(au->buf);
288		au->buf = NULL;
289	}
290}
291
292static int ceph_x_build_authorizer(struct ceph_auth_client *ac,
293				   struct ceph_x_ticket_handler *th,
294				   struct ceph_x_authorizer *au)
295{
296	int maxlen;
297	struct ceph_x_authorize_a *msg_a;
298	struct ceph_x_authorize_b msg_b;
299	void *p, *end;
300	int ret;
301	int ticket_blob_len =
302		(th->ticket_blob ? th->ticket_blob->vec.iov_len : 0);
303
304	dout("build_authorizer for %s %p\n",
305	     ceph_entity_type_name(th->service), au);
306
307	ceph_crypto_key_destroy(&au->session_key);
308	ret = ceph_crypto_key_clone(&au->session_key, &th->session_key);
309	if (ret)
310		goto out_au;
311
312	maxlen = sizeof(*msg_a) + sizeof(msg_b) +
313		ceph_x_encrypt_buflen(ticket_blob_len);
314	dout("  need len %d\n", maxlen);
315	if (au->buf && au->buf->alloc_len < maxlen) {
316		ceph_buffer_put(au->buf);
317		au->buf = NULL;
318	}
319	if (!au->buf) {
320		au->buf = ceph_buffer_new(maxlen, GFP_NOFS);
321		if (!au->buf) {
322			ret = -ENOMEM;
323			goto out_au;
324		}
325	}
326	au->service = th->service;
327	au->secret_id = th->secret_id;
328
329	msg_a = au->buf->vec.iov_base;
330	msg_a->struct_v = 1;
331	msg_a->global_id = cpu_to_le64(ac->global_id);
332	msg_a->service_id = cpu_to_le32(th->service);
333	msg_a->ticket_blob.struct_v = 1;
334	msg_a->ticket_blob.secret_id = cpu_to_le64(th->secret_id);
335	msg_a->ticket_blob.blob_len = cpu_to_le32(ticket_blob_len);
336	if (ticket_blob_len) {
337		memcpy(msg_a->ticket_blob.blob, th->ticket_blob->vec.iov_base,
338		       th->ticket_blob->vec.iov_len);
339	}
340	dout(" th %p secret_id %lld %lld\n", th, th->secret_id,
341	     le64_to_cpu(msg_a->ticket_blob.secret_id));
342
343	p = msg_a + 1;
344	p += ticket_blob_len;
345	end = au->buf->vec.iov_base + au->buf->vec.iov_len;
346
347	get_random_bytes(&au->nonce, sizeof(au->nonce));
348	msg_b.struct_v = 1;
349	msg_b.nonce = cpu_to_le64(au->nonce);
350	ret = ceph_x_encrypt(&au->session_key, &msg_b, sizeof(msg_b),
351			     p, end - p);
352	if (ret < 0)
353		goto out_au;
354	p += ret;
355	au->buf->vec.iov_len = p - au->buf->vec.iov_base;
356	dout(" built authorizer nonce %llx len %d\n", au->nonce,
357	     (int)au->buf->vec.iov_len);
358	BUG_ON(au->buf->vec.iov_len > maxlen);
359	return 0;
360
361out_au:
362	ceph_x_authorizer_cleanup(au);
363	return ret;
364}
365
366static int ceph_x_encode_ticket(struct ceph_x_ticket_handler *th,
367				void **p, void *end)
368{
369	ceph_decode_need(p, end, 1 + sizeof(u64), bad);
370	ceph_encode_8(p, 1);
371	ceph_encode_64(p, th->secret_id);
372	if (th->ticket_blob) {
373		const char *buf = th->ticket_blob->vec.iov_base;
374		u32 len = th->ticket_blob->vec.iov_len;
375
376		ceph_encode_32_safe(p, end, len, bad);
377		ceph_encode_copy_safe(p, end, buf, len, bad);
378	} else {
379		ceph_encode_32_safe(p, end, 0, bad);
380	}
381
382	return 0;
383bad:
384	return -ERANGE;
385}
386
387static void ceph_x_validate_tickets(struct ceph_auth_client *ac, int *pneed)
388{
389	int want = ac->want_keys;
390	struct ceph_x_info *xi = ac->private;
391	int service;
392
393	*pneed = ac->want_keys & ~(xi->have_keys);
394
395	for (service = 1; service <= want; service <<= 1) {
396		struct ceph_x_ticket_handler *th;
397
398		if (!(ac->want_keys & service))
399			continue;
400
401		if (*pneed & service)
402			continue;
403
404		th = get_ticket_handler(ac, service);
405
406		if (IS_ERR(th)) {
407			*pneed |= service;
408			continue;
409		}
410
411		if (get_seconds() >= th->renew_after)
412			*pneed |= service;
413		if (get_seconds() >= th->expires)
414			xi->have_keys &= ~service;
415	}
416}
417
418
419static int ceph_x_build_request(struct ceph_auth_client *ac,
420				void *buf, void *end)
421{
422	struct ceph_x_info *xi = ac->private;
423	int need;
424	struct ceph_x_request_header *head = buf;
425	int ret;
426	struct ceph_x_ticket_handler *th =
427		get_ticket_handler(ac, CEPH_ENTITY_TYPE_AUTH);
428
429	if (IS_ERR(th))
430		return PTR_ERR(th);
431
432	ceph_x_validate_tickets(ac, &need);
433
434	dout("build_request want %x have %x need %x\n",
435	     ac->want_keys, xi->have_keys, need);
436
437	if (need & CEPH_ENTITY_TYPE_AUTH) {
438		struct ceph_x_authenticate *auth = (void *)(head + 1);
439		void *p = auth + 1;
440		struct ceph_x_challenge_blob tmp;
441		char tmp_enc[40];
442		u64 *u;
443
444		if (p > end)
445			return -ERANGE;
446
447		dout(" get_auth_session_key\n");
448		head->op = cpu_to_le16(CEPHX_GET_AUTH_SESSION_KEY);
449
450		/* encrypt and hash */
451		get_random_bytes(&auth->client_challenge, sizeof(u64));
452		tmp.client_challenge = auth->client_challenge;
453		tmp.server_challenge = cpu_to_le64(xi->server_challenge);
454		ret = ceph_x_encrypt(&xi->secret, &tmp, sizeof(tmp),
455				     tmp_enc, sizeof(tmp_enc));
456		if (ret < 0)
457			return ret;
458
459		auth->struct_v = 1;
460		auth->key = 0;
461		for (u = (u64 *)tmp_enc; u + 1 <= (u64 *)(tmp_enc + ret); u++)
462			auth->key ^= *(__le64 *)u;
463		dout(" server_challenge %llx client_challenge %llx key %llx\n",
464		     xi->server_challenge, le64_to_cpu(auth->client_challenge),
465		     le64_to_cpu(auth->key));
466
467		/* now encode the old ticket if exists */
468		ret = ceph_x_encode_ticket(th, &p, end);
469		if (ret < 0)
470			return ret;
471
472		return p - buf;
473	}
474
475	if (need) {
476		void *p = head + 1;
477		struct ceph_x_service_ticket_request *req;
478
479		if (p > end)
480			return -ERANGE;
481		head->op = cpu_to_le16(CEPHX_GET_PRINCIPAL_SESSION_KEY);
482
483		ret = ceph_x_build_authorizer(ac, th, &xi->auth_authorizer);
484		if (ret)
485			return ret;
486		ceph_encode_copy(&p, xi->auth_authorizer.buf->vec.iov_base,
487				 xi->auth_authorizer.buf->vec.iov_len);
488
489		req = p;
490		req->keys = cpu_to_le32(need);
491		p += sizeof(*req);
492		return p - buf;
493	}
494
495	return 0;
496}
497
498static int ceph_x_handle_reply(struct ceph_auth_client *ac, int result,
499			       void *buf, void *end)
500{
501	struct ceph_x_info *xi = ac->private;
502	struct ceph_x_reply_header *head = buf;
503	struct ceph_x_ticket_handler *th;
504	int len = end - buf;
505	int op;
506	int ret;
507
508	if (result)
509		return result;  /* XXX hmm? */
510
511	if (xi->starting) {
512		/* it's a hello */
513		struct ceph_x_server_challenge *sc = buf;
514
515		if (len != sizeof(*sc))
516			return -EINVAL;
517		xi->server_challenge = le64_to_cpu(sc->server_challenge);
518		dout("handle_reply got server challenge %llx\n",
519		     xi->server_challenge);
520		xi->starting = false;
521		xi->have_keys &= ~CEPH_ENTITY_TYPE_AUTH;
522		return -EAGAIN;
523	}
524
525	op = le16_to_cpu(head->op);
526	result = le32_to_cpu(head->result);
527	dout("handle_reply op %d result %d\n", op, result);
528	switch (op) {
529	case CEPHX_GET_AUTH_SESSION_KEY:
530		/* verify auth key */
531		ret = ceph_x_proc_ticket_reply(ac, &xi->secret,
532					       buf + sizeof(*head), end);
533		break;
534
535	case CEPHX_GET_PRINCIPAL_SESSION_KEY:
536		th = get_ticket_handler(ac, CEPH_ENTITY_TYPE_AUTH);
537		if (IS_ERR(th))
538			return PTR_ERR(th);
539		ret = ceph_x_proc_ticket_reply(ac, &th->session_key,
540					       buf + sizeof(*head), end);
541		break;
542
543	default:
544		return -EINVAL;
545	}
546	if (ret)
547		return ret;
548	if (ac->want_keys == xi->have_keys)
549		return 0;
550	return -EAGAIN;
551}
552
553static int ceph_x_create_authorizer(
554	struct ceph_auth_client *ac, int peer_type,
555	struct ceph_auth_handshake *auth)
556{
557	struct ceph_x_authorizer *au;
558	struct ceph_x_ticket_handler *th;
559	int ret;
560
561	th = get_ticket_handler(ac, peer_type);
562	if (IS_ERR(th))
563		return PTR_ERR(th);
564
565	au = kzalloc(sizeof(*au), GFP_NOFS);
566	if (!au)
567		return -ENOMEM;
568
569	ret = ceph_x_build_authorizer(ac, th, au);
570	if (ret) {
571		kfree(au);
572		return ret;
573	}
574
575	auth->authorizer = (struct ceph_authorizer *) au;
576	auth->authorizer_buf = au->buf->vec.iov_base;
577	auth->authorizer_buf_len = au->buf->vec.iov_len;
578	auth->authorizer_reply_buf = au->reply_buf;
579	auth->authorizer_reply_buf_len = sizeof (au->reply_buf);
580	auth->sign_message = ac->ops->sign_message;
581	auth->check_message_signature = ac->ops->check_message_signature;
582
583	return 0;
584}
585
586static int ceph_x_update_authorizer(
587	struct ceph_auth_client *ac, int peer_type,
588	struct ceph_auth_handshake *auth)
589{
590	struct ceph_x_authorizer *au;
591	struct ceph_x_ticket_handler *th;
592
593	th = get_ticket_handler(ac, peer_type);
594	if (IS_ERR(th))
595		return PTR_ERR(th);
596
597	au = (struct ceph_x_authorizer *)auth->authorizer;
598	if (au->secret_id < th->secret_id) {
599		dout("ceph_x_update_authorizer service %u secret %llu < %llu\n",
600		     au->service, au->secret_id, th->secret_id);
601		return ceph_x_build_authorizer(ac, th, au);
602	}
603	return 0;
604}
605
606static int ceph_x_verify_authorizer_reply(struct ceph_auth_client *ac,
607					  struct ceph_authorizer *a, size_t len)
608{
609	struct ceph_x_authorizer *au = (void *)a;
610	int ret = 0;
611	struct ceph_x_authorize_reply reply;
612	void *preply = &reply;
613	void *p = au->reply_buf;
614	void *end = p + sizeof(au->reply_buf);
615
616	ret = ceph_x_decrypt(&au->session_key, &p, end, &preply, sizeof(reply));
617	if (ret < 0)
618		return ret;
619	if (ret != sizeof(reply))
620		return -EPERM;
621
622	if (au->nonce + 1 != le64_to_cpu(reply.nonce_plus_one))
623		ret = -EPERM;
624	else
625		ret = 0;
626	dout("verify_authorizer_reply nonce %llx got %llx ret %d\n",
627	     au->nonce, le64_to_cpu(reply.nonce_plus_one), ret);
628	return ret;
629}
630
631static void ceph_x_destroy_authorizer(struct ceph_auth_client *ac,
632				      struct ceph_authorizer *a)
633{
634	struct ceph_x_authorizer *au = (void *)a;
635
636	ceph_x_authorizer_cleanup(au);
637	kfree(au);
638}
639
640
641static void ceph_x_reset(struct ceph_auth_client *ac)
642{
643	struct ceph_x_info *xi = ac->private;
644
645	dout("reset\n");
646	xi->starting = true;
647	xi->server_challenge = 0;
648}
649
650static void ceph_x_destroy(struct ceph_auth_client *ac)
651{
652	struct ceph_x_info *xi = ac->private;
653	struct rb_node *p;
654
655	dout("ceph_x_destroy %p\n", ac);
656	ceph_crypto_key_destroy(&xi->secret);
657
658	while ((p = rb_first(&xi->ticket_handlers)) != NULL) {
659		struct ceph_x_ticket_handler *th =
660			rb_entry(p, struct ceph_x_ticket_handler, node);
661		remove_ticket_handler(ac, th);
662	}
663
664	ceph_x_authorizer_cleanup(&xi->auth_authorizer);
665
666	kfree(ac->private);
667	ac->private = NULL;
668}
669
670static void ceph_x_invalidate_authorizer(struct ceph_auth_client *ac,
671				   int peer_type)
672{
673	struct ceph_x_ticket_handler *th;
674
675	th = get_ticket_handler(ac, peer_type);
676	if (!IS_ERR(th))
677		memset(&th->validity, 0, sizeof(th->validity));
678}
679
680static int calcu_signature(struct ceph_x_authorizer *au,
681			   struct ceph_msg *msg, __le64 *sig)
682{
683	int ret;
684	char tmp_enc[40];
685	__le32 tmp[5] = {
686		cpu_to_le32(16), msg->hdr.crc, msg->footer.front_crc,
687		msg->footer.middle_crc, msg->footer.data_crc,
688	};
689	ret = ceph_x_encrypt(&au->session_key, &tmp, sizeof(tmp),
690			     tmp_enc, sizeof(tmp_enc));
691	if (ret < 0)
692		return ret;
693	*sig = *(__le64*)(tmp_enc + 4);
694	return 0;
695}
696
697static int ceph_x_sign_message(struct ceph_auth_handshake *auth,
698			       struct ceph_msg *msg)
699{
700	int ret;
701
702	if (ceph_test_opt(from_msgr(msg->con->msgr), NOMSGSIGN))
703		return 0;
704
705	ret = calcu_signature((struct ceph_x_authorizer *)auth->authorizer,
706			      msg, &msg->footer.sig);
707	if (ret < 0)
708		return ret;
709	msg->footer.flags |= CEPH_MSG_FOOTER_SIGNED;
710	return 0;
711}
712
713static int ceph_x_check_message_signature(struct ceph_auth_handshake *auth,
714					  struct ceph_msg *msg)
715{
716	__le64 sig_check;
717	int ret;
718
719	if (ceph_test_opt(from_msgr(msg->con->msgr), NOMSGSIGN))
720		return 0;
721
722	ret = calcu_signature((struct ceph_x_authorizer *)auth->authorizer,
723			      msg, &sig_check);
724	if (ret < 0)
725		return ret;
726	if (sig_check == msg->footer.sig)
727		return 0;
728	if (msg->footer.flags & CEPH_MSG_FOOTER_SIGNED)
729		dout("ceph_x_check_message_signature %p has signature %llx "
730		     "expect %llx\n", msg, msg->footer.sig, sig_check);
731	else
732		dout("ceph_x_check_message_signature %p sender did not set "
733		     "CEPH_MSG_FOOTER_SIGNED\n", msg);
734	return -EBADMSG;
735}
736
737static const struct ceph_auth_client_ops ceph_x_ops = {
738	.name = "x",
739	.is_authenticated = ceph_x_is_authenticated,
740	.should_authenticate = ceph_x_should_authenticate,
741	.build_request = ceph_x_build_request,
742	.handle_reply = ceph_x_handle_reply,
743	.create_authorizer = ceph_x_create_authorizer,
744	.update_authorizer = ceph_x_update_authorizer,
745	.verify_authorizer_reply = ceph_x_verify_authorizer_reply,
746	.destroy_authorizer = ceph_x_destroy_authorizer,
747	.invalidate_authorizer = ceph_x_invalidate_authorizer,
748	.reset =  ceph_x_reset,
749	.destroy = ceph_x_destroy,
750	.sign_message = ceph_x_sign_message,
751	.check_message_signature = ceph_x_check_message_signature,
752};
753
754
755int ceph_x_init(struct ceph_auth_client *ac)
756{
757	struct ceph_x_info *xi;
758	int ret;
759
760	dout("ceph_x_init %p\n", ac);
761	ret = -ENOMEM;
762	xi = kzalloc(sizeof(*xi), GFP_NOFS);
763	if (!xi)
764		goto out;
765
766	ret = -EINVAL;
767	if (!ac->key) {
768		pr_err("no secret set (for auth_x protocol)\n");
769		goto out_nomem;
770	}
771
772	ret = ceph_crypto_key_clone(&xi->secret, ac->key);
773	if (ret < 0) {
774		pr_err("cannot clone key: %d\n", ret);
775		goto out_nomem;
776	}
777
778	xi->starting = true;
779	xi->ticket_handlers = RB_ROOT;
780
781	ac->protocol = CEPH_AUTH_CEPHX;
782	ac->private = xi;
783	ac->ops = &ceph_x_ops;
784	return 0;
785
786out_nomem:
787	kfree(xi);
788out:
789	return ret;
790}
791
792
793