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v5.4
  1// SPDX-License-Identifier: GPL-2.0-only
  2#include <linux/types.h>
  3#include <linux/sched.h>
  4#include <linux/module.h>
  5#include <linux/sunrpc/types.h>
  6#include <linux/sunrpc/xdr.h>
  7#include <linux/sunrpc/svcsock.h>
  8#include <linux/sunrpc/svcauth.h>
  9#include <linux/sunrpc/gss_api.h>
 10#include <linux/sunrpc/addr.h>
 11#include <linux/err.h>
 12#include <linux/seq_file.h>
 13#include <linux/hash.h>
 14#include <linux/string.h>
 15#include <linux/slab.h>
 16#include <net/sock.h>
 17#include <net/ipv6.h>
 18#include <linux/kernel.h>
 19#include <linux/user_namespace.h>
 20#define RPCDBG_FACILITY	RPCDBG_AUTH
 21
 
 22
 23#include "netns.h"
 24
 25/*
 26 * AUTHUNIX and AUTHNULL credentials are both handled here.
 27 * AUTHNULL is treated just like AUTHUNIX except that the uid/gid
 28 * are always nobody (-2).  i.e. we do the same IP address checks for
 29 * AUTHNULL as for AUTHUNIX, and that is done here.
 30 */
 31
 32
 33struct unix_domain {
 34	struct auth_domain	h;
 35	/* other stuff later */
 36};
 37
 38extern struct auth_ops svcauth_null;
 39extern struct auth_ops svcauth_unix;
 40
 41static void svcauth_unix_domain_release_rcu(struct rcu_head *head)
 42{
 43	struct auth_domain *dom = container_of(head, struct auth_domain, rcu_head);
 44	struct unix_domain *ud = container_of(dom, struct unix_domain, h);
 45
 46	kfree(dom->name);
 47	kfree(ud);
 48}
 49
 50static void svcauth_unix_domain_release(struct auth_domain *dom)
 51{
 52	call_rcu(&dom->rcu_head, svcauth_unix_domain_release_rcu);
 53}
 54
 55struct auth_domain *unix_domain_find(char *name)
 56{
 57	struct auth_domain *rv;
 58	struct unix_domain *new = NULL;
 59
 60	rv = auth_domain_find(name);
 61	while(1) {
 62		if (rv) {
 63			if (new && rv != &new->h)
 64				svcauth_unix_domain_release(&new->h);
 65
 66			if (rv->flavour != &svcauth_unix) {
 67				auth_domain_put(rv);
 68				return NULL;
 69			}
 70			return rv;
 71		}
 72
 73		new = kmalloc(sizeof(*new), GFP_KERNEL);
 74		if (new == NULL)
 75			return NULL;
 76		kref_init(&new->h.ref);
 77		new->h.name = kstrdup(name, GFP_KERNEL);
 78		if (new->h.name == NULL) {
 79			kfree(new);
 80			return NULL;
 81		}
 82		new->h.flavour = &svcauth_unix;
 83		rv = auth_domain_lookup(name, &new->h);
 84	}
 85}
 86EXPORT_SYMBOL_GPL(unix_domain_find);
 87
 88
 89/**************************************************
 90 * cache for IP address to unix_domain
 91 * as needed by AUTH_UNIX
 92 */
 93#define	IP_HASHBITS	8
 94#define	IP_HASHMAX	(1<<IP_HASHBITS)
 95
 96struct ip_map {
 97	struct cache_head	h;
 98	char			m_class[8]; /* e.g. "nfsd" */
 99	struct in6_addr		m_addr;
100	struct unix_domain	*m_client;
101	struct rcu_head		m_rcu;
102};
103
104static void ip_map_put(struct kref *kref)
105{
106	struct cache_head *item = container_of(kref, struct cache_head, ref);
107	struct ip_map *im = container_of(item, struct ip_map,h);
108
109	if (test_bit(CACHE_VALID, &item->flags) &&
110	    !test_bit(CACHE_NEGATIVE, &item->flags))
111		auth_domain_put(&im->m_client->h);
112	kfree_rcu(im, m_rcu);
113}
114
115static inline int hash_ip6(const struct in6_addr *ip)
 
 
 
 
 
 
 
 
 
 
 
116{
117	return hash_32(ipv6_addr_hash(ip), IP_HASHBITS);
 
 
 
118}
119static int ip_map_match(struct cache_head *corig, struct cache_head *cnew)
120{
121	struct ip_map *orig = container_of(corig, struct ip_map, h);
122	struct ip_map *new = container_of(cnew, struct ip_map, h);
123	return strcmp(orig->m_class, new->m_class) == 0 &&
124	       ipv6_addr_equal(&orig->m_addr, &new->m_addr);
125}
126static void ip_map_init(struct cache_head *cnew, struct cache_head *citem)
127{
128	struct ip_map *new = container_of(cnew, struct ip_map, h);
129	struct ip_map *item = container_of(citem, struct ip_map, h);
130
131	strcpy(new->m_class, item->m_class);
132	new->m_addr = item->m_addr;
133}
134static void update(struct cache_head *cnew, struct cache_head *citem)
135{
136	struct ip_map *new = container_of(cnew, struct ip_map, h);
137	struct ip_map *item = container_of(citem, struct ip_map, h);
138
139	kref_get(&item->m_client->h.ref);
140	new->m_client = item->m_client;
141}
142static struct cache_head *ip_map_alloc(void)
143{
144	struct ip_map *i = kmalloc(sizeof(*i), GFP_KERNEL);
145	if (i)
146		return &i->h;
147	else
148		return NULL;
149}
150
151static void ip_map_request(struct cache_detail *cd,
152				  struct cache_head *h,
153				  char **bpp, int *blen)
154{
155	char text_addr[40];
156	struct ip_map *im = container_of(h, struct ip_map, h);
157
158	if (ipv6_addr_v4mapped(&(im->m_addr))) {
159		snprintf(text_addr, 20, "%pI4", &im->m_addr.s6_addr32[3]);
160	} else {
161		snprintf(text_addr, 40, "%pI6", &im->m_addr);
162	}
163	qword_add(bpp, blen, im->m_class);
164	qword_add(bpp, blen, text_addr);
165	(*bpp)[-1] = '\n';
166}
167
 
 
 
 
 
168static struct ip_map *__ip_map_lookup(struct cache_detail *cd, char *class, struct in6_addr *addr);
169static int __ip_map_update(struct cache_detail *cd, struct ip_map *ipm, struct unix_domain *udom, time_t expiry);
170
171static int ip_map_parse(struct cache_detail *cd,
172			  char *mesg, int mlen)
173{
174	/* class ipaddress [domainname] */
175	/* should be safe just to use the start of the input buffer
176	 * for scratch: */
177	char *buf = mesg;
178	int len;
179	char class[8];
180	union {
181		struct sockaddr		sa;
182		struct sockaddr_in	s4;
183		struct sockaddr_in6	s6;
184	} address;
185	struct sockaddr_in6 sin6;
186	int err;
187
188	struct ip_map *ipmp;
189	struct auth_domain *dom;
190	time_t expiry;
191
192	if (mesg[mlen-1] != '\n')
193		return -EINVAL;
194	mesg[mlen-1] = 0;
195
196	/* class */
197	len = qword_get(&mesg, class, sizeof(class));
198	if (len <= 0) return -EINVAL;
199
200	/* ip address */
201	len = qword_get(&mesg, buf, mlen);
202	if (len <= 0) return -EINVAL;
203
204	if (rpc_pton(cd->net, buf, len, &address.sa, sizeof(address)) == 0)
205		return -EINVAL;
206	switch (address.sa.sa_family) {
207	case AF_INET:
208		/* Form a mapped IPv4 address in sin6 */
209		sin6.sin6_family = AF_INET6;
210		ipv6_addr_set_v4mapped(address.s4.sin_addr.s_addr,
211				&sin6.sin6_addr);
212		break;
213#if IS_ENABLED(CONFIG_IPV6)
214	case AF_INET6:
215		memcpy(&sin6, &address.s6, sizeof(sin6));
216		break;
217#endif
218	default:
219		return -EINVAL;
220	}
221
222	expiry = get_expiry(&mesg);
223	if (expiry ==0)
224		return -EINVAL;
225
226	/* domainname, or empty for NEGATIVE */
227	len = qword_get(&mesg, buf, mlen);
228	if (len < 0) return -EINVAL;
229
230	if (len) {
231		dom = unix_domain_find(buf);
232		if (dom == NULL)
233			return -ENOENT;
234	} else
235		dom = NULL;
236
237	/* IPv6 scope IDs are ignored for now */
238	ipmp = __ip_map_lookup(cd, class, &sin6.sin6_addr);
239	if (ipmp) {
240		err = __ip_map_update(cd, ipmp,
241			     container_of(dom, struct unix_domain, h),
242			     expiry);
243	} else
244		err = -ENOMEM;
245
246	if (dom)
247		auth_domain_put(dom);
248
249	cache_flush();
250	return err;
251}
252
253static int ip_map_show(struct seq_file *m,
254		       struct cache_detail *cd,
255		       struct cache_head *h)
256{
257	struct ip_map *im;
258	struct in6_addr addr;
259	char *dom = "-no-domain-";
260
261	if (h == NULL) {
262		seq_puts(m, "#class IP domain\n");
263		return 0;
264	}
265	im = container_of(h, struct ip_map, h);
266	/* class addr domain */
267	addr = im->m_addr;
268
269	if (test_bit(CACHE_VALID, &h->flags) &&
270	    !test_bit(CACHE_NEGATIVE, &h->flags))
271		dom = im->m_client->h.name;
272
273	if (ipv6_addr_v4mapped(&addr)) {
274		seq_printf(m, "%s %pI4 %s\n",
275			im->m_class, &addr.s6_addr32[3], dom);
276	} else {
277		seq_printf(m, "%s %pI6 %s\n", im->m_class, &addr, dom);
278	}
279	return 0;
280}
281
282
283static struct ip_map *__ip_map_lookup(struct cache_detail *cd, char *class,
284		struct in6_addr *addr)
285{
286	struct ip_map ip;
287	struct cache_head *ch;
288
289	strcpy(ip.m_class, class);
290	ip.m_addr = *addr;
291	ch = sunrpc_cache_lookup_rcu(cd, &ip.h,
292				     hash_str(class, IP_HASHBITS) ^
293				     hash_ip6(addr));
294
295	if (ch)
296		return container_of(ch, struct ip_map, h);
297	else
298		return NULL;
299}
300
301static inline struct ip_map *ip_map_lookup(struct net *net, char *class,
302		struct in6_addr *addr)
303{
304	struct sunrpc_net *sn;
305
306	sn = net_generic(net, sunrpc_net_id);
307	return __ip_map_lookup(sn->ip_map_cache, class, addr);
308}
309
310static int __ip_map_update(struct cache_detail *cd, struct ip_map *ipm,
311		struct unix_domain *udom, time_t expiry)
312{
313	struct ip_map ip;
314	struct cache_head *ch;
315
316	ip.m_client = udom;
317	ip.h.flags = 0;
318	if (!udom)
319		set_bit(CACHE_NEGATIVE, &ip.h.flags);
320	ip.h.expiry_time = expiry;
321	ch = sunrpc_cache_update(cd, &ip.h, &ipm->h,
322				 hash_str(ipm->m_class, IP_HASHBITS) ^
323				 hash_ip6(&ipm->m_addr));
324	if (!ch)
325		return -ENOMEM;
326	cache_put(ch, cd);
327	return 0;
328}
329
330static inline int ip_map_update(struct net *net, struct ip_map *ipm,
331		struct unix_domain *udom, time_t expiry)
332{
333	struct sunrpc_net *sn;
334
335	sn = net_generic(net, sunrpc_net_id);
336	return __ip_map_update(sn->ip_map_cache, ipm, udom, expiry);
337}
338
339void svcauth_unix_purge(struct net *net)
 
340{
341	struct sunrpc_net *sn;
342
343	sn = net_generic(net, sunrpc_net_id);
344	cache_purge(sn->ip_map_cache);
 
 
 
 
345}
346EXPORT_SYMBOL_GPL(svcauth_unix_purge);
347
348static inline struct ip_map *
349ip_map_cached_get(struct svc_xprt *xprt)
350{
351	struct ip_map *ipm = NULL;
352	struct sunrpc_net *sn;
353
354	if (test_bit(XPT_CACHE_AUTH, &xprt->xpt_flags)) {
355		spin_lock(&xprt->xpt_lock);
356		ipm = xprt->xpt_auth_cache;
357		if (ipm != NULL) {
358			sn = net_generic(xprt->xpt_net, sunrpc_net_id);
359			if (cache_is_expired(sn->ip_map_cache, &ipm->h)) {
360				/*
361				 * The entry has been invalidated since it was
362				 * remembered, e.g. by a second mount from the
363				 * same IP address.
364				 */
 
365				xprt->xpt_auth_cache = NULL;
366				spin_unlock(&xprt->xpt_lock);
367				cache_put(&ipm->h, sn->ip_map_cache);
368				return NULL;
369			}
370			cache_get(&ipm->h);
371		}
372		spin_unlock(&xprt->xpt_lock);
373	}
374	return ipm;
375}
376
377static inline void
378ip_map_cached_put(struct svc_xprt *xprt, struct ip_map *ipm)
379{
380	if (test_bit(XPT_CACHE_AUTH, &xprt->xpt_flags)) {
381		spin_lock(&xprt->xpt_lock);
382		if (xprt->xpt_auth_cache == NULL) {
383			/* newly cached, keep the reference */
384			xprt->xpt_auth_cache = ipm;
385			ipm = NULL;
386		}
387		spin_unlock(&xprt->xpt_lock);
388	}
389	if (ipm) {
390		struct sunrpc_net *sn;
391
392		sn = net_generic(xprt->xpt_net, sunrpc_net_id);
393		cache_put(&ipm->h, sn->ip_map_cache);
394	}
395}
396
397void
398svcauth_unix_info_release(struct svc_xprt *xpt)
399{
400	struct ip_map *ipm;
401
402	ipm = xpt->xpt_auth_cache;
403	if (ipm != NULL) {
404		struct sunrpc_net *sn;
405
406		sn = net_generic(xpt->xpt_net, sunrpc_net_id);
407		cache_put(&ipm->h, sn->ip_map_cache);
408	}
409}
410
411/****************************************************************************
412 * auth.unix.gid cache
413 * simple cache to map a UID to a list of GIDs
414 * because AUTH_UNIX aka AUTH_SYS has a max of UNX_NGROUPS
415 */
416#define	GID_HASHBITS	8
417#define	GID_HASHMAX	(1<<GID_HASHBITS)
418
419struct unix_gid {
420	struct cache_head	h;
421	kuid_t			uid;
422	struct group_info	*gi;
423	struct rcu_head		rcu;
424};
425
426static int unix_gid_hash(kuid_t uid)
427{
428	return hash_long(from_kuid(&init_user_ns, uid), GID_HASHBITS);
429}
430
431static void unix_gid_put(struct kref *kref)
432{
433	struct cache_head *item = container_of(kref, struct cache_head, ref);
434	struct unix_gid *ug = container_of(item, struct unix_gid, h);
435	if (test_bit(CACHE_VALID, &item->flags) &&
436	    !test_bit(CACHE_NEGATIVE, &item->flags))
437		put_group_info(ug->gi);
438	kfree_rcu(ug, rcu);
439}
440
441static int unix_gid_match(struct cache_head *corig, struct cache_head *cnew)
442{
443	struct unix_gid *orig = container_of(corig, struct unix_gid, h);
444	struct unix_gid *new = container_of(cnew, struct unix_gid, h);
445	return uid_eq(orig->uid, new->uid);
446}
447static void unix_gid_init(struct cache_head *cnew, struct cache_head *citem)
448{
449	struct unix_gid *new = container_of(cnew, struct unix_gid, h);
450	struct unix_gid *item = container_of(citem, struct unix_gid, h);
451	new->uid = item->uid;
452}
453static void unix_gid_update(struct cache_head *cnew, struct cache_head *citem)
454{
455	struct unix_gid *new = container_of(cnew, struct unix_gid, h);
456	struct unix_gid *item = container_of(citem, struct unix_gid, h);
457
458	get_group_info(item->gi);
459	new->gi = item->gi;
460}
461static struct cache_head *unix_gid_alloc(void)
462{
463	struct unix_gid *g = kmalloc(sizeof(*g), GFP_KERNEL);
464	if (g)
465		return &g->h;
466	else
467		return NULL;
468}
469
470static void unix_gid_request(struct cache_detail *cd,
471			     struct cache_head *h,
472			     char **bpp, int *blen)
473{
474	char tuid[20];
475	struct unix_gid *ug = container_of(h, struct unix_gid, h);
476
477	snprintf(tuid, 20, "%u", from_kuid(&init_user_ns, ug->uid));
478	qword_add(bpp, blen, tuid);
479	(*bpp)[-1] = '\n';
480}
481
482static struct unix_gid *unix_gid_lookup(struct cache_detail *cd, kuid_t uid);
 
 
 
 
 
 
483
484static int unix_gid_parse(struct cache_detail *cd,
485			char *mesg, int mlen)
486{
487	/* uid expiry Ngid gid0 gid1 ... gidN-1 */
488	int id;
489	kuid_t uid;
490	int gids;
491	int rv;
492	int i;
493	int err;
494	time_t expiry;
495	struct unix_gid ug, *ugp;
496
497	if (mesg[mlen - 1] != '\n')
498		return -EINVAL;
499	mesg[mlen-1] = 0;
500
501	rv = get_int(&mesg, &id);
502	if (rv)
503		return -EINVAL;
504	uid = make_kuid(current_user_ns(), id);
505	ug.uid = uid;
506
507	expiry = get_expiry(&mesg);
508	if (expiry == 0)
509		return -EINVAL;
510
511	rv = get_int(&mesg, &gids);
512	if (rv || gids < 0 || gids > 8192)
513		return -EINVAL;
514
515	ug.gi = groups_alloc(gids);
516	if (!ug.gi)
517		return -ENOMEM;
518
519	for (i = 0 ; i < gids ; i++) {
520		int gid;
521		kgid_t kgid;
522		rv = get_int(&mesg, &gid);
523		err = -EINVAL;
524		if (rv)
525			goto out;
526		kgid = make_kgid(current_user_ns(), gid);
527		if (!gid_valid(kgid))
528			goto out;
529		ug.gi->gid[i] = kgid;
530	}
531
532	groups_sort(ug.gi);
533	ugp = unix_gid_lookup(cd, uid);
534	if (ugp) {
535		struct cache_head *ch;
536		ug.h.flags = 0;
537		ug.h.expiry_time = expiry;
538		ch = sunrpc_cache_update(cd,
539					 &ug.h, &ugp->h,
540					 unix_gid_hash(uid));
541		if (!ch)
542			err = -ENOMEM;
543		else {
544			err = 0;
545			cache_put(ch, cd);
546		}
547	} else
548		err = -ENOMEM;
549 out:
550	if (ug.gi)
551		put_group_info(ug.gi);
552	return err;
553}
554
555static int unix_gid_show(struct seq_file *m,
556			 struct cache_detail *cd,
557			 struct cache_head *h)
558{
559	struct user_namespace *user_ns = m->file->f_cred->user_ns;
560	struct unix_gid *ug;
561	int i;
562	int glen;
563
564	if (h == NULL) {
565		seq_puts(m, "#uid cnt: gids...\n");
566		return 0;
567	}
568	ug = container_of(h, struct unix_gid, h);
569	if (test_bit(CACHE_VALID, &h->flags) &&
570	    !test_bit(CACHE_NEGATIVE, &h->flags))
571		glen = ug->gi->ngroups;
572	else
573		glen = 0;
574
575	seq_printf(m, "%u %d:", from_kuid_munged(user_ns, ug->uid), glen);
576	for (i = 0; i < glen; i++)
577		seq_printf(m, " %d", from_kgid_munged(user_ns, ug->gi->gid[i]));
578	seq_printf(m, "\n");
579	return 0;
580}
581
582static const struct cache_detail unix_gid_cache_template = {
583	.owner		= THIS_MODULE,
584	.hash_size	= GID_HASHMAX,
 
585	.name		= "auth.unix.gid",
586	.cache_put	= unix_gid_put,
587	.cache_request	= unix_gid_request,
588	.cache_parse	= unix_gid_parse,
589	.cache_show	= unix_gid_show,
590	.match		= unix_gid_match,
591	.init		= unix_gid_init,
592	.update		= unix_gid_update,
593	.alloc		= unix_gid_alloc,
594};
595
596int unix_gid_cache_create(struct net *net)
597{
598	struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
599	struct cache_detail *cd;
600	int err;
601
602	cd = cache_create_net(&unix_gid_cache_template, net);
603	if (IS_ERR(cd))
604		return PTR_ERR(cd);
605	err = cache_register_net(cd, net);
606	if (err) {
607		cache_destroy_net(cd, net);
608		return err;
609	}
610	sn->unix_gid_cache = cd;
611	return 0;
612}
613
614void unix_gid_cache_destroy(struct net *net)
615{
616	struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
617	struct cache_detail *cd = sn->unix_gid_cache;
618
619	sn->unix_gid_cache = NULL;
620	cache_purge(cd);
621	cache_unregister_net(cd, net);
622	cache_destroy_net(cd, net);
623}
624
625static struct unix_gid *unix_gid_lookup(struct cache_detail *cd, kuid_t uid)
626{
627	struct unix_gid ug;
628	struct cache_head *ch;
629
630	ug.uid = uid;
631	ch = sunrpc_cache_lookup_rcu(cd, &ug.h, unix_gid_hash(uid));
 
632	if (ch)
633		return container_of(ch, struct unix_gid, h);
634	else
635		return NULL;
636}
637
638static struct group_info *unix_gid_find(kuid_t uid, struct svc_rqst *rqstp)
639{
640	struct unix_gid *ug;
641	struct group_info *gi;
642	int ret;
643	struct sunrpc_net *sn = net_generic(rqstp->rq_xprt->xpt_net,
644					    sunrpc_net_id);
645
646	ug = unix_gid_lookup(sn->unix_gid_cache, uid);
647	if (!ug)
648		return ERR_PTR(-EAGAIN);
649	ret = cache_check(sn->unix_gid_cache, &ug->h, &rqstp->rq_chandle);
650	switch (ret) {
651	case -ENOENT:
652		return ERR_PTR(-ENOENT);
653	case -ETIMEDOUT:
654		return ERR_PTR(-ESHUTDOWN);
655	case 0:
656		gi = get_group_info(ug->gi);
657		cache_put(&ug->h, sn->unix_gid_cache);
658		return gi;
659	default:
660		return ERR_PTR(-EAGAIN);
661	}
662}
663
664int
665svcauth_unix_set_client(struct svc_rqst *rqstp)
666{
667	struct sockaddr_in *sin;
668	struct sockaddr_in6 *sin6, sin6_storage;
669	struct ip_map *ipm;
670	struct group_info *gi;
671	struct svc_cred *cred = &rqstp->rq_cred;
672	struct svc_xprt *xprt = rqstp->rq_xprt;
673	struct net *net = xprt->xpt_net;
674	struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
675
676	switch (rqstp->rq_addr.ss_family) {
677	case AF_INET:
678		sin = svc_addr_in(rqstp);
679		sin6 = &sin6_storage;
680		ipv6_addr_set_v4mapped(sin->sin_addr.s_addr, &sin6->sin6_addr);
681		break;
682	case AF_INET6:
683		sin6 = svc_addr_in6(rqstp);
684		break;
685	default:
686		BUG();
687	}
688
689	rqstp->rq_client = NULL;
690	if (rqstp->rq_proc == 0)
691		return SVC_OK;
692
693	ipm = ip_map_cached_get(xprt);
694	if (ipm == NULL)
695		ipm = __ip_map_lookup(sn->ip_map_cache, rqstp->rq_server->sv_program->pg_class,
696				    &sin6->sin6_addr);
697
698	if (ipm == NULL)
699		return SVC_DENIED;
700
701	switch (cache_check(sn->ip_map_cache, &ipm->h, &rqstp->rq_chandle)) {
702		default:
703			BUG();
704		case -ETIMEDOUT:
705			return SVC_CLOSE;
706		case -EAGAIN:
707			return SVC_DROP;
708		case -ENOENT:
709			return SVC_DENIED;
710		case 0:
711			rqstp->rq_client = &ipm->m_client->h;
712			kref_get(&rqstp->rq_client->ref);
713			ip_map_cached_put(xprt, ipm);
714			break;
715	}
716
717	gi = unix_gid_find(cred->cr_uid, rqstp);
718	switch (PTR_ERR(gi)) {
719	case -EAGAIN:
720		return SVC_DROP;
721	case -ESHUTDOWN:
722		return SVC_CLOSE;
723	case -ENOENT:
724		break;
725	default:
726		put_group_info(cred->cr_group_info);
727		cred->cr_group_info = gi;
728	}
729	return SVC_OK;
730}
731
732EXPORT_SYMBOL_GPL(svcauth_unix_set_client);
733
734static int
735svcauth_null_accept(struct svc_rqst *rqstp, __be32 *authp)
736{
737	struct kvec	*argv = &rqstp->rq_arg.head[0];
738	struct kvec	*resv = &rqstp->rq_res.head[0];
739	struct svc_cred	*cred = &rqstp->rq_cred;
740
 
 
 
741	if (argv->iov_len < 3*4)
742		return SVC_GARBAGE;
743
744	if (svc_getu32(argv) != 0) {
745		dprintk("svc: bad null cred\n");
746		*authp = rpc_autherr_badcred;
747		return SVC_DENIED;
748	}
749	if (svc_getu32(argv) != htonl(RPC_AUTH_NULL) || svc_getu32(argv) != 0) {
750		dprintk("svc: bad null verf\n");
751		*authp = rpc_autherr_badverf;
752		return SVC_DENIED;
753	}
754
755	/* Signal that mapping to nobody uid/gid is required */
756	cred->cr_uid = INVALID_UID;
757	cred->cr_gid = INVALID_GID;
758	cred->cr_group_info = groups_alloc(0);
759	if (cred->cr_group_info == NULL)
760		return SVC_CLOSE; /* kmalloc failure - client must retry */
761
762	/* Put NULL verifier */
763	svc_putnl(resv, RPC_AUTH_NULL);
764	svc_putnl(resv, 0);
765
766	rqstp->rq_cred.cr_flavor = RPC_AUTH_NULL;
767	return SVC_OK;
768}
769
770static int
771svcauth_null_release(struct svc_rqst *rqstp)
772{
773	if (rqstp->rq_client)
774		auth_domain_put(rqstp->rq_client);
775	rqstp->rq_client = NULL;
776	if (rqstp->rq_cred.cr_group_info)
777		put_group_info(rqstp->rq_cred.cr_group_info);
778	rqstp->rq_cred.cr_group_info = NULL;
779
780	return 0; /* don't drop */
781}
782
783
784struct auth_ops svcauth_null = {
785	.name		= "null",
786	.owner		= THIS_MODULE,
787	.flavour	= RPC_AUTH_NULL,
788	.accept 	= svcauth_null_accept,
789	.release	= svcauth_null_release,
790	.set_client	= svcauth_unix_set_client,
791};
792
793
794static int
795svcauth_unix_accept(struct svc_rqst *rqstp, __be32 *authp)
796{
797	struct kvec	*argv = &rqstp->rq_arg.head[0];
798	struct kvec	*resv = &rqstp->rq_res.head[0];
799	struct svc_cred	*cred = &rqstp->rq_cred;
800	struct user_namespace *userns;
801	u32		slen, i;
802	int		len   = argv->iov_len;
803
 
 
 
804	if ((len -= 3*4) < 0)
805		return SVC_GARBAGE;
806
807	svc_getu32(argv);			/* length */
808	svc_getu32(argv);			/* time stamp */
809	slen = XDR_QUADLEN(svc_getnl(argv));	/* machname length */
810	if (slen > 64 || (len -= (slen + 3)*4) < 0)
811		goto badcred;
812	argv->iov_base = (void*)((__be32*)argv->iov_base + slen);	/* skip machname */
813	argv->iov_len -= slen*4;
814	/*
815	 * Note: we skip uid_valid()/gid_valid() checks here for
816	 * backwards compatibility with clients that use -1 id's.
817	 * Instead, -1 uid or gid is later mapped to the
818	 * (export-specific) anonymous id by nfsd_setuser.
819	 * Supplementary gid's will be left alone.
820	 */
821	userns = (rqstp->rq_xprt && rqstp->rq_xprt->xpt_cred) ?
822		rqstp->rq_xprt->xpt_cred->user_ns : &init_user_ns;
823	cred->cr_uid = make_kuid(userns, svc_getnl(argv)); /* uid */
824	cred->cr_gid = make_kgid(userns, svc_getnl(argv)); /* gid */
825	slen = svc_getnl(argv);			/* gids length */
826	if (slen > UNX_NGROUPS || (len -= (slen + 2)*4) < 0)
827		goto badcred;
828	cred->cr_group_info = groups_alloc(slen);
829	if (cred->cr_group_info == NULL)
830		return SVC_CLOSE;
831	for (i = 0; i < slen; i++) {
832		kgid_t kgid = make_kgid(userns, svc_getnl(argv));
833		cred->cr_group_info->gid[i] = kgid;
834	}
835	groups_sort(cred->cr_group_info);
836	if (svc_getu32(argv) != htonl(RPC_AUTH_NULL) || svc_getu32(argv) != 0) {
837		*authp = rpc_autherr_badverf;
838		return SVC_DENIED;
839	}
840
841	/* Put NULL verifier */
842	svc_putnl(resv, RPC_AUTH_NULL);
843	svc_putnl(resv, 0);
844
845	rqstp->rq_cred.cr_flavor = RPC_AUTH_UNIX;
846	return SVC_OK;
847
848badcred:
849	*authp = rpc_autherr_badcred;
850	return SVC_DENIED;
851}
852
853static int
854svcauth_unix_release(struct svc_rqst *rqstp)
855{
856	/* Verifier (such as it is) is already in place.
857	 */
858	if (rqstp->rq_client)
859		auth_domain_put(rqstp->rq_client);
860	rqstp->rq_client = NULL;
861	if (rqstp->rq_cred.cr_group_info)
862		put_group_info(rqstp->rq_cred.cr_group_info);
863	rqstp->rq_cred.cr_group_info = NULL;
864
865	return 0;
866}
867
868
869struct auth_ops svcauth_unix = {
870	.name		= "unix",
871	.owner		= THIS_MODULE,
872	.flavour	= RPC_AUTH_UNIX,
873	.accept 	= svcauth_unix_accept,
874	.release	= svcauth_unix_release,
875	.domain_release	= svcauth_unix_domain_release,
876	.set_client	= svcauth_unix_set_client,
877};
878
879static const struct cache_detail ip_map_cache_template = {
880	.owner		= THIS_MODULE,
881	.hash_size	= IP_HASHMAX,
882	.name		= "auth.unix.ip",
883	.cache_put	= ip_map_put,
884	.cache_request	= ip_map_request,
885	.cache_parse	= ip_map_parse,
886	.cache_show	= ip_map_show,
887	.match		= ip_map_match,
888	.init		= ip_map_init,
889	.update		= update,
890	.alloc		= ip_map_alloc,
891};
892
893int ip_map_cache_create(struct net *net)
894{
895	struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
896	struct cache_detail *cd;
897	int err;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
898
899	cd = cache_create_net(&ip_map_cache_template, net);
900	if (IS_ERR(cd))
901		return PTR_ERR(cd);
902	err = cache_register_net(cd, net);
903	if (err) {
904		cache_destroy_net(cd, net);
905		return err;
906	}
907	sn->ip_map_cache = cd;
908	return 0;
 
 
 
 
 
 
 
909}
910
911void ip_map_cache_destroy(struct net *net)
912{
913	struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
914	struct cache_detail *cd = sn->ip_map_cache;
915
916	sn->ip_map_cache = NULL;
917	cache_purge(cd);
918	cache_unregister_net(cd, net);
919	cache_destroy_net(cd, net);
 
920}
v3.1
 
  1#include <linux/types.h>
  2#include <linux/sched.h>
  3#include <linux/module.h>
  4#include <linux/sunrpc/types.h>
  5#include <linux/sunrpc/xdr.h>
  6#include <linux/sunrpc/svcsock.h>
  7#include <linux/sunrpc/svcauth.h>
  8#include <linux/sunrpc/gss_api.h>
 
  9#include <linux/err.h>
 10#include <linux/seq_file.h>
 11#include <linux/hash.h>
 12#include <linux/string.h>
 13#include <linux/slab.h>
 14#include <net/sock.h>
 15#include <net/ipv6.h>
 16#include <linux/kernel.h>
 
 17#define RPCDBG_FACILITY	RPCDBG_AUTH
 18
 19#include <linux/sunrpc/clnt.h>
 20
 21#include "netns.h"
 22
 23/*
 24 * AUTHUNIX and AUTHNULL credentials are both handled here.
 25 * AUTHNULL is treated just like AUTHUNIX except that the uid/gid
 26 * are always nobody (-2).  i.e. we do the same IP address checks for
 27 * AUTHNULL as for AUTHUNIX, and that is done here.
 28 */
 29
 30
 31struct unix_domain {
 32	struct auth_domain	h;
 33	/* other stuff later */
 34};
 35
 36extern struct auth_ops svcauth_null;
 37extern struct auth_ops svcauth_unix;
 38
 39static void svcauth_unix_domain_release(struct auth_domain *dom)
 40{
 
 41	struct unix_domain *ud = container_of(dom, struct unix_domain, h);
 42
 43	kfree(dom->name);
 44	kfree(ud);
 45}
 46
 
 
 
 
 
 47struct auth_domain *unix_domain_find(char *name)
 48{
 49	struct auth_domain *rv;
 50	struct unix_domain *new = NULL;
 51
 52	rv = auth_domain_lookup(name, NULL);
 53	while(1) {
 54		if (rv) {
 55			if (new && rv != &new->h)
 56				svcauth_unix_domain_release(&new->h);
 57
 58			if (rv->flavour != &svcauth_unix) {
 59				auth_domain_put(rv);
 60				return NULL;
 61			}
 62			return rv;
 63		}
 64
 65		new = kmalloc(sizeof(*new), GFP_KERNEL);
 66		if (new == NULL)
 67			return NULL;
 68		kref_init(&new->h.ref);
 69		new->h.name = kstrdup(name, GFP_KERNEL);
 70		if (new->h.name == NULL) {
 71			kfree(new);
 72			return NULL;
 73		}
 74		new->h.flavour = &svcauth_unix;
 75		rv = auth_domain_lookup(name, &new->h);
 76	}
 77}
 78EXPORT_SYMBOL_GPL(unix_domain_find);
 79
 80
 81/**************************************************
 82 * cache for IP address to unix_domain
 83 * as needed by AUTH_UNIX
 84 */
 85#define	IP_HASHBITS	8
 86#define	IP_HASHMAX	(1<<IP_HASHBITS)
 87
 88struct ip_map {
 89	struct cache_head	h;
 90	char			m_class[8]; /* e.g. "nfsd" */
 91	struct in6_addr		m_addr;
 92	struct unix_domain	*m_client;
 
 93};
 94
 95static void ip_map_put(struct kref *kref)
 96{
 97	struct cache_head *item = container_of(kref, struct cache_head, ref);
 98	struct ip_map *im = container_of(item, struct ip_map,h);
 99
100	if (test_bit(CACHE_VALID, &item->flags) &&
101	    !test_bit(CACHE_NEGATIVE, &item->flags))
102		auth_domain_put(&im->m_client->h);
103	kfree(im);
104}
105
106#if IP_HASHBITS == 8
107/* hash_long on a 64 bit machine is currently REALLY BAD for
108 * IP addresses in reverse-endian (i.e. on a little-endian machine).
109 * So use a trivial but reliable hash instead
110 */
111static inline int hash_ip(__be32 ip)
112{
113	int hash = (__force u32)ip ^ ((__force u32)ip>>16);
114	return (hash ^ (hash>>8)) & 0xff;
115}
116#endif
117static inline int hash_ip6(struct in6_addr ip)
118{
119	return (hash_ip(ip.s6_addr32[0]) ^
120		hash_ip(ip.s6_addr32[1]) ^
121		hash_ip(ip.s6_addr32[2]) ^
122		hash_ip(ip.s6_addr32[3]));
123}
124static int ip_map_match(struct cache_head *corig, struct cache_head *cnew)
125{
126	struct ip_map *orig = container_of(corig, struct ip_map, h);
127	struct ip_map *new = container_of(cnew, struct ip_map, h);
128	return strcmp(orig->m_class, new->m_class) == 0 &&
129	       ipv6_addr_equal(&orig->m_addr, &new->m_addr);
130}
131static void ip_map_init(struct cache_head *cnew, struct cache_head *citem)
132{
133	struct ip_map *new = container_of(cnew, struct ip_map, h);
134	struct ip_map *item = container_of(citem, struct ip_map, h);
135
136	strcpy(new->m_class, item->m_class);
137	ipv6_addr_copy(&new->m_addr, &item->m_addr);
138}
139static void update(struct cache_head *cnew, struct cache_head *citem)
140{
141	struct ip_map *new = container_of(cnew, struct ip_map, h);
142	struct ip_map *item = container_of(citem, struct ip_map, h);
143
144	kref_get(&item->m_client->h.ref);
145	new->m_client = item->m_client;
146}
147static struct cache_head *ip_map_alloc(void)
148{
149	struct ip_map *i = kmalloc(sizeof(*i), GFP_KERNEL);
150	if (i)
151		return &i->h;
152	else
153		return NULL;
154}
155
156static void ip_map_request(struct cache_detail *cd,
157				  struct cache_head *h,
158				  char **bpp, int *blen)
159{
160	char text_addr[40];
161	struct ip_map *im = container_of(h, struct ip_map, h);
162
163	if (ipv6_addr_v4mapped(&(im->m_addr))) {
164		snprintf(text_addr, 20, "%pI4", &im->m_addr.s6_addr32[3]);
165	} else {
166		snprintf(text_addr, 40, "%pI6", &im->m_addr);
167	}
168	qword_add(bpp, blen, im->m_class);
169	qword_add(bpp, blen, text_addr);
170	(*bpp)[-1] = '\n';
171}
172
173static int ip_map_upcall(struct cache_detail *cd, struct cache_head *h)
174{
175	return sunrpc_cache_pipe_upcall(cd, h, ip_map_request);
176}
177
178static struct ip_map *__ip_map_lookup(struct cache_detail *cd, char *class, struct in6_addr *addr);
179static int __ip_map_update(struct cache_detail *cd, struct ip_map *ipm, struct unix_domain *udom, time_t expiry);
180
181static int ip_map_parse(struct cache_detail *cd,
182			  char *mesg, int mlen)
183{
184	/* class ipaddress [domainname] */
185	/* should be safe just to use the start of the input buffer
186	 * for scratch: */
187	char *buf = mesg;
188	int len;
189	char class[8];
190	union {
191		struct sockaddr		sa;
192		struct sockaddr_in	s4;
193		struct sockaddr_in6	s6;
194	} address;
195	struct sockaddr_in6 sin6;
196	int err;
197
198	struct ip_map *ipmp;
199	struct auth_domain *dom;
200	time_t expiry;
201
202	if (mesg[mlen-1] != '\n')
203		return -EINVAL;
204	mesg[mlen-1] = 0;
205
206	/* class */
207	len = qword_get(&mesg, class, sizeof(class));
208	if (len <= 0) return -EINVAL;
209
210	/* ip address */
211	len = qword_get(&mesg, buf, mlen);
212	if (len <= 0) return -EINVAL;
213
214	if (rpc_pton(buf, len, &address.sa, sizeof(address)) == 0)
215		return -EINVAL;
216	switch (address.sa.sa_family) {
217	case AF_INET:
218		/* Form a mapped IPv4 address in sin6 */
219		sin6.sin6_family = AF_INET6;
220		ipv6_addr_set_v4mapped(address.s4.sin_addr.s_addr,
221				&sin6.sin6_addr);
222		break;
223#if defined(CONFIG_IPV6) || defined(CONFIG_IPV6_MODULE)
224	case AF_INET6:
225		memcpy(&sin6, &address.s6, sizeof(sin6));
226		break;
227#endif
228	default:
229		return -EINVAL;
230	}
231
232	expiry = get_expiry(&mesg);
233	if (expiry ==0)
234		return -EINVAL;
235
236	/* domainname, or empty for NEGATIVE */
237	len = qword_get(&mesg, buf, mlen);
238	if (len < 0) return -EINVAL;
239
240	if (len) {
241		dom = unix_domain_find(buf);
242		if (dom == NULL)
243			return -ENOENT;
244	} else
245		dom = NULL;
246
247	/* IPv6 scope IDs are ignored for now */
248	ipmp = __ip_map_lookup(cd, class, &sin6.sin6_addr);
249	if (ipmp) {
250		err = __ip_map_update(cd, ipmp,
251			     container_of(dom, struct unix_domain, h),
252			     expiry);
253	} else
254		err = -ENOMEM;
255
256	if (dom)
257		auth_domain_put(dom);
258
259	cache_flush();
260	return err;
261}
262
263static int ip_map_show(struct seq_file *m,
264		       struct cache_detail *cd,
265		       struct cache_head *h)
266{
267	struct ip_map *im;
268	struct in6_addr addr;
269	char *dom = "-no-domain-";
270
271	if (h == NULL) {
272		seq_puts(m, "#class IP domain\n");
273		return 0;
274	}
275	im = container_of(h, struct ip_map, h);
276	/* class addr domain */
277	ipv6_addr_copy(&addr, &im->m_addr);
278
279	if (test_bit(CACHE_VALID, &h->flags) &&
280	    !test_bit(CACHE_NEGATIVE, &h->flags))
281		dom = im->m_client->h.name;
282
283	if (ipv6_addr_v4mapped(&addr)) {
284		seq_printf(m, "%s %pI4 %s\n",
285			im->m_class, &addr.s6_addr32[3], dom);
286	} else {
287		seq_printf(m, "%s %pI6 %s\n", im->m_class, &addr, dom);
288	}
289	return 0;
290}
291
292
293static struct ip_map *__ip_map_lookup(struct cache_detail *cd, char *class,
294		struct in6_addr *addr)
295{
296	struct ip_map ip;
297	struct cache_head *ch;
298
299	strcpy(ip.m_class, class);
300	ipv6_addr_copy(&ip.m_addr, addr);
301	ch = sunrpc_cache_lookup(cd, &ip.h,
302				 hash_str(class, IP_HASHBITS) ^
303				 hash_ip6(*addr));
304
305	if (ch)
306		return container_of(ch, struct ip_map, h);
307	else
308		return NULL;
309}
310
311static inline struct ip_map *ip_map_lookup(struct net *net, char *class,
312		struct in6_addr *addr)
313{
314	struct sunrpc_net *sn;
315
316	sn = net_generic(net, sunrpc_net_id);
317	return __ip_map_lookup(sn->ip_map_cache, class, addr);
318}
319
320static int __ip_map_update(struct cache_detail *cd, struct ip_map *ipm,
321		struct unix_domain *udom, time_t expiry)
322{
323	struct ip_map ip;
324	struct cache_head *ch;
325
326	ip.m_client = udom;
327	ip.h.flags = 0;
328	if (!udom)
329		set_bit(CACHE_NEGATIVE, &ip.h.flags);
330	ip.h.expiry_time = expiry;
331	ch = sunrpc_cache_update(cd, &ip.h, &ipm->h,
332				 hash_str(ipm->m_class, IP_HASHBITS) ^
333				 hash_ip6(ipm->m_addr));
334	if (!ch)
335		return -ENOMEM;
336	cache_put(ch, cd);
337	return 0;
338}
339
340static inline int ip_map_update(struct net *net, struct ip_map *ipm,
341		struct unix_domain *udom, time_t expiry)
342{
343	struct sunrpc_net *sn;
344
345	sn = net_generic(net, sunrpc_net_id);
346	return __ip_map_update(sn->ip_map_cache, ipm, udom, expiry);
347}
348
349
350void svcauth_unix_purge(void)
351{
352	struct net *net;
353
354	for_each_net(net) {
355		struct sunrpc_net *sn;
356
357		sn = net_generic(net, sunrpc_net_id);
358		cache_purge(sn->ip_map_cache);
359	}
360}
361EXPORT_SYMBOL_GPL(svcauth_unix_purge);
362
363static inline struct ip_map *
364ip_map_cached_get(struct svc_xprt *xprt)
365{
366	struct ip_map *ipm = NULL;
367	struct sunrpc_net *sn;
368
369	if (test_bit(XPT_CACHE_AUTH, &xprt->xpt_flags)) {
370		spin_lock(&xprt->xpt_lock);
371		ipm = xprt->xpt_auth_cache;
372		if (ipm != NULL) {
373			if (!cache_valid(&ipm->h)) {
 
374				/*
375				 * The entry has been invalidated since it was
376				 * remembered, e.g. by a second mount from the
377				 * same IP address.
378				 */
379				sn = net_generic(xprt->xpt_net, sunrpc_net_id);
380				xprt->xpt_auth_cache = NULL;
381				spin_unlock(&xprt->xpt_lock);
382				cache_put(&ipm->h, sn->ip_map_cache);
383				return NULL;
384			}
385			cache_get(&ipm->h);
386		}
387		spin_unlock(&xprt->xpt_lock);
388	}
389	return ipm;
390}
391
392static inline void
393ip_map_cached_put(struct svc_xprt *xprt, struct ip_map *ipm)
394{
395	if (test_bit(XPT_CACHE_AUTH, &xprt->xpt_flags)) {
396		spin_lock(&xprt->xpt_lock);
397		if (xprt->xpt_auth_cache == NULL) {
398			/* newly cached, keep the reference */
399			xprt->xpt_auth_cache = ipm;
400			ipm = NULL;
401		}
402		spin_unlock(&xprt->xpt_lock);
403	}
404	if (ipm) {
405		struct sunrpc_net *sn;
406
407		sn = net_generic(xprt->xpt_net, sunrpc_net_id);
408		cache_put(&ipm->h, sn->ip_map_cache);
409	}
410}
411
412void
413svcauth_unix_info_release(struct svc_xprt *xpt)
414{
415	struct ip_map *ipm;
416
417	ipm = xpt->xpt_auth_cache;
418	if (ipm != NULL) {
419		struct sunrpc_net *sn;
420
421		sn = net_generic(xpt->xpt_net, sunrpc_net_id);
422		cache_put(&ipm->h, sn->ip_map_cache);
423	}
424}
425
426/****************************************************************************
427 * auth.unix.gid cache
428 * simple cache to map a UID to a list of GIDs
429 * because AUTH_UNIX aka AUTH_SYS has a max of 16
430 */
431#define	GID_HASHBITS	8
432#define	GID_HASHMAX	(1<<GID_HASHBITS)
433
434struct unix_gid {
435	struct cache_head	h;
436	uid_t			uid;
437	struct group_info	*gi;
 
438};
439static struct cache_head	*gid_table[GID_HASHMAX];
 
 
 
 
440
441static void unix_gid_put(struct kref *kref)
442{
443	struct cache_head *item = container_of(kref, struct cache_head, ref);
444	struct unix_gid *ug = container_of(item, struct unix_gid, h);
445	if (test_bit(CACHE_VALID, &item->flags) &&
446	    !test_bit(CACHE_NEGATIVE, &item->flags))
447		put_group_info(ug->gi);
448	kfree(ug);
449}
450
451static int unix_gid_match(struct cache_head *corig, struct cache_head *cnew)
452{
453	struct unix_gid *orig = container_of(corig, struct unix_gid, h);
454	struct unix_gid *new = container_of(cnew, struct unix_gid, h);
455	return orig->uid == new->uid;
456}
457static void unix_gid_init(struct cache_head *cnew, struct cache_head *citem)
458{
459	struct unix_gid *new = container_of(cnew, struct unix_gid, h);
460	struct unix_gid *item = container_of(citem, struct unix_gid, h);
461	new->uid = item->uid;
462}
463static void unix_gid_update(struct cache_head *cnew, struct cache_head *citem)
464{
465	struct unix_gid *new = container_of(cnew, struct unix_gid, h);
466	struct unix_gid *item = container_of(citem, struct unix_gid, h);
467
468	get_group_info(item->gi);
469	new->gi = item->gi;
470}
471static struct cache_head *unix_gid_alloc(void)
472{
473	struct unix_gid *g = kmalloc(sizeof(*g), GFP_KERNEL);
474	if (g)
475		return &g->h;
476	else
477		return NULL;
478}
479
480static void unix_gid_request(struct cache_detail *cd,
481			     struct cache_head *h,
482			     char **bpp, int *blen)
483{
484	char tuid[20];
485	struct unix_gid *ug = container_of(h, struct unix_gid, h);
486
487	snprintf(tuid, 20, "%u", ug->uid);
488	qword_add(bpp, blen, tuid);
489	(*bpp)[-1] = '\n';
490}
491
492static int unix_gid_upcall(struct cache_detail *cd, struct cache_head *h)
493{
494	return sunrpc_cache_pipe_upcall(cd, h, unix_gid_request);
495}
496
497static struct unix_gid *unix_gid_lookup(uid_t uid);
498extern struct cache_detail unix_gid_cache;
499
500static int unix_gid_parse(struct cache_detail *cd,
501			char *mesg, int mlen)
502{
503	/* uid expiry Ngid gid0 gid1 ... gidN-1 */
504	int uid;
 
505	int gids;
506	int rv;
507	int i;
508	int err;
509	time_t expiry;
510	struct unix_gid ug, *ugp;
511
512	if (mlen <= 0 || mesg[mlen-1] != '\n')
513		return -EINVAL;
514	mesg[mlen-1] = 0;
515
516	rv = get_int(&mesg, &uid);
517	if (rv)
518		return -EINVAL;
 
519	ug.uid = uid;
520
521	expiry = get_expiry(&mesg);
522	if (expiry == 0)
523		return -EINVAL;
524
525	rv = get_int(&mesg, &gids);
526	if (rv || gids < 0 || gids > 8192)
527		return -EINVAL;
528
529	ug.gi = groups_alloc(gids);
530	if (!ug.gi)
531		return -ENOMEM;
532
533	for (i = 0 ; i < gids ; i++) {
534		int gid;
 
535		rv = get_int(&mesg, &gid);
536		err = -EINVAL;
537		if (rv)
538			goto out;
539		GROUP_AT(ug.gi, i) = gid;
 
 
 
540	}
541
542	ugp = unix_gid_lookup(uid);
 
543	if (ugp) {
544		struct cache_head *ch;
545		ug.h.flags = 0;
546		ug.h.expiry_time = expiry;
547		ch = sunrpc_cache_update(&unix_gid_cache,
548					 &ug.h, &ugp->h,
549					 hash_long(uid, GID_HASHBITS));
550		if (!ch)
551			err = -ENOMEM;
552		else {
553			err = 0;
554			cache_put(ch, &unix_gid_cache);
555		}
556	} else
557		err = -ENOMEM;
558 out:
559	if (ug.gi)
560		put_group_info(ug.gi);
561	return err;
562}
563
564static int unix_gid_show(struct seq_file *m,
565			 struct cache_detail *cd,
566			 struct cache_head *h)
567{
 
568	struct unix_gid *ug;
569	int i;
570	int glen;
571
572	if (h == NULL) {
573		seq_puts(m, "#uid cnt: gids...\n");
574		return 0;
575	}
576	ug = container_of(h, struct unix_gid, h);
577	if (test_bit(CACHE_VALID, &h->flags) &&
578	    !test_bit(CACHE_NEGATIVE, &h->flags))
579		glen = ug->gi->ngroups;
580	else
581		glen = 0;
582
583	seq_printf(m, "%u %d:", ug->uid, glen);
584	for (i = 0; i < glen; i++)
585		seq_printf(m, " %d", GROUP_AT(ug->gi, i));
586	seq_printf(m, "\n");
587	return 0;
588}
589
590struct cache_detail unix_gid_cache = {
591	.owner		= THIS_MODULE,
592	.hash_size	= GID_HASHMAX,
593	.hash_table	= gid_table,
594	.name		= "auth.unix.gid",
595	.cache_put	= unix_gid_put,
596	.cache_upcall	= unix_gid_upcall,
597	.cache_parse	= unix_gid_parse,
598	.cache_show	= unix_gid_show,
599	.match		= unix_gid_match,
600	.init		= unix_gid_init,
601	.update		= unix_gid_update,
602	.alloc		= unix_gid_alloc,
603};
604
605static struct unix_gid *unix_gid_lookup(uid_t uid)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
606{
607	struct unix_gid ug;
608	struct cache_head *ch;
609
610	ug.uid = uid;
611	ch = sunrpc_cache_lookup(&unix_gid_cache, &ug.h,
612				 hash_long(uid, GID_HASHBITS));
613	if (ch)
614		return container_of(ch, struct unix_gid, h);
615	else
616		return NULL;
617}
618
619static struct group_info *unix_gid_find(uid_t uid, struct svc_rqst *rqstp)
620{
621	struct unix_gid *ug;
622	struct group_info *gi;
623	int ret;
 
 
624
625	ug = unix_gid_lookup(uid);
626	if (!ug)
627		return ERR_PTR(-EAGAIN);
628	ret = cache_check(&unix_gid_cache, &ug->h, &rqstp->rq_chandle);
629	switch (ret) {
630	case -ENOENT:
631		return ERR_PTR(-ENOENT);
632	case -ETIMEDOUT:
633		return ERR_PTR(-ESHUTDOWN);
634	case 0:
635		gi = get_group_info(ug->gi);
636		cache_put(&ug->h, &unix_gid_cache);
637		return gi;
638	default:
639		return ERR_PTR(-EAGAIN);
640	}
641}
642
643int
644svcauth_unix_set_client(struct svc_rqst *rqstp)
645{
646	struct sockaddr_in *sin;
647	struct sockaddr_in6 *sin6, sin6_storage;
648	struct ip_map *ipm;
649	struct group_info *gi;
650	struct svc_cred *cred = &rqstp->rq_cred;
651	struct svc_xprt *xprt = rqstp->rq_xprt;
652	struct net *net = xprt->xpt_net;
653	struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
654
655	switch (rqstp->rq_addr.ss_family) {
656	case AF_INET:
657		sin = svc_addr_in(rqstp);
658		sin6 = &sin6_storage;
659		ipv6_addr_set_v4mapped(sin->sin_addr.s_addr, &sin6->sin6_addr);
660		break;
661	case AF_INET6:
662		sin6 = svc_addr_in6(rqstp);
663		break;
664	default:
665		BUG();
666	}
667
668	rqstp->rq_client = NULL;
669	if (rqstp->rq_proc == 0)
670		return SVC_OK;
671
672	ipm = ip_map_cached_get(xprt);
673	if (ipm == NULL)
674		ipm = __ip_map_lookup(sn->ip_map_cache, rqstp->rq_server->sv_program->pg_class,
675				    &sin6->sin6_addr);
676
677	if (ipm == NULL)
678		return SVC_DENIED;
679
680	switch (cache_check(sn->ip_map_cache, &ipm->h, &rqstp->rq_chandle)) {
681		default:
682			BUG();
683		case -ETIMEDOUT:
684			return SVC_CLOSE;
685		case -EAGAIN:
686			return SVC_DROP;
687		case -ENOENT:
688			return SVC_DENIED;
689		case 0:
690			rqstp->rq_client = &ipm->m_client->h;
691			kref_get(&rqstp->rq_client->ref);
692			ip_map_cached_put(xprt, ipm);
693			break;
694	}
695
696	gi = unix_gid_find(cred->cr_uid, rqstp);
697	switch (PTR_ERR(gi)) {
698	case -EAGAIN:
699		return SVC_DROP;
700	case -ESHUTDOWN:
701		return SVC_CLOSE;
702	case -ENOENT:
703		break;
704	default:
705		put_group_info(cred->cr_group_info);
706		cred->cr_group_info = gi;
707	}
708	return SVC_OK;
709}
710
711EXPORT_SYMBOL_GPL(svcauth_unix_set_client);
712
713static int
714svcauth_null_accept(struct svc_rqst *rqstp, __be32 *authp)
715{
716	struct kvec	*argv = &rqstp->rq_arg.head[0];
717	struct kvec	*resv = &rqstp->rq_res.head[0];
718	struct svc_cred	*cred = &rqstp->rq_cred;
719
720	cred->cr_group_info = NULL;
721	rqstp->rq_client = NULL;
722
723	if (argv->iov_len < 3*4)
724		return SVC_GARBAGE;
725
726	if (svc_getu32(argv) != 0) {
727		dprintk("svc: bad null cred\n");
728		*authp = rpc_autherr_badcred;
729		return SVC_DENIED;
730	}
731	if (svc_getu32(argv) != htonl(RPC_AUTH_NULL) || svc_getu32(argv) != 0) {
732		dprintk("svc: bad null verf\n");
733		*authp = rpc_autherr_badverf;
734		return SVC_DENIED;
735	}
736
737	/* Signal that mapping to nobody uid/gid is required */
738	cred->cr_uid = (uid_t) -1;
739	cred->cr_gid = (gid_t) -1;
740	cred->cr_group_info = groups_alloc(0);
741	if (cred->cr_group_info == NULL)
742		return SVC_CLOSE; /* kmalloc failure - client must retry */
743
744	/* Put NULL verifier */
745	svc_putnl(resv, RPC_AUTH_NULL);
746	svc_putnl(resv, 0);
747
748	rqstp->rq_flavor = RPC_AUTH_NULL;
749	return SVC_OK;
750}
751
752static int
753svcauth_null_release(struct svc_rqst *rqstp)
754{
755	if (rqstp->rq_client)
756		auth_domain_put(rqstp->rq_client);
757	rqstp->rq_client = NULL;
758	if (rqstp->rq_cred.cr_group_info)
759		put_group_info(rqstp->rq_cred.cr_group_info);
760	rqstp->rq_cred.cr_group_info = NULL;
761
762	return 0; /* don't drop */
763}
764
765
766struct auth_ops svcauth_null = {
767	.name		= "null",
768	.owner		= THIS_MODULE,
769	.flavour	= RPC_AUTH_NULL,
770	.accept 	= svcauth_null_accept,
771	.release	= svcauth_null_release,
772	.set_client	= svcauth_unix_set_client,
773};
774
775
776static int
777svcauth_unix_accept(struct svc_rqst *rqstp, __be32 *authp)
778{
779	struct kvec	*argv = &rqstp->rq_arg.head[0];
780	struct kvec	*resv = &rqstp->rq_res.head[0];
781	struct svc_cred	*cred = &rqstp->rq_cred;
 
782	u32		slen, i;
783	int		len   = argv->iov_len;
784
785	cred->cr_group_info = NULL;
786	rqstp->rq_client = NULL;
787
788	if ((len -= 3*4) < 0)
789		return SVC_GARBAGE;
790
791	svc_getu32(argv);			/* length */
792	svc_getu32(argv);			/* time stamp */
793	slen = XDR_QUADLEN(svc_getnl(argv));	/* machname length */
794	if (slen > 64 || (len -= (slen + 3)*4) < 0)
795		goto badcred;
796	argv->iov_base = (void*)((__be32*)argv->iov_base + slen);	/* skip machname */
797	argv->iov_len -= slen*4;
798
799	cred->cr_uid = svc_getnl(argv);		/* uid */
800	cred->cr_gid = svc_getnl(argv);		/* gid */
 
 
 
 
 
 
 
 
801	slen = svc_getnl(argv);			/* gids length */
802	if (slen > 16 || (len -= (slen + 2)*4) < 0)
803		goto badcred;
804	cred->cr_group_info = groups_alloc(slen);
805	if (cred->cr_group_info == NULL)
806		return SVC_CLOSE;
807	for (i = 0; i < slen; i++)
808		GROUP_AT(cred->cr_group_info, i) = svc_getnl(argv);
 
 
 
809	if (svc_getu32(argv) != htonl(RPC_AUTH_NULL) || svc_getu32(argv) != 0) {
810		*authp = rpc_autherr_badverf;
811		return SVC_DENIED;
812	}
813
814	/* Put NULL verifier */
815	svc_putnl(resv, RPC_AUTH_NULL);
816	svc_putnl(resv, 0);
817
818	rqstp->rq_flavor = RPC_AUTH_UNIX;
819	return SVC_OK;
820
821badcred:
822	*authp = rpc_autherr_badcred;
823	return SVC_DENIED;
824}
825
826static int
827svcauth_unix_release(struct svc_rqst *rqstp)
828{
829	/* Verifier (such as it is) is already in place.
830	 */
831	if (rqstp->rq_client)
832		auth_domain_put(rqstp->rq_client);
833	rqstp->rq_client = NULL;
834	if (rqstp->rq_cred.cr_group_info)
835		put_group_info(rqstp->rq_cred.cr_group_info);
836	rqstp->rq_cred.cr_group_info = NULL;
837
838	return 0;
839}
840
841
842struct auth_ops svcauth_unix = {
843	.name		= "unix",
844	.owner		= THIS_MODULE,
845	.flavour	= RPC_AUTH_UNIX,
846	.accept 	= svcauth_unix_accept,
847	.release	= svcauth_unix_release,
848	.domain_release	= svcauth_unix_domain_release,
849	.set_client	= svcauth_unix_set_client,
850};
851
 
 
 
 
 
 
 
 
 
 
 
 
 
 
852int ip_map_cache_create(struct net *net)
853{
854	int err = -ENOMEM;
855	struct cache_detail *cd;
856	struct cache_head **tbl;
857	struct sunrpc_net *sn = net_generic(net, sunrpc_net_id);
858
859	cd = kzalloc(sizeof(struct cache_detail), GFP_KERNEL);
860	if (cd == NULL)
861		goto err_cd;
862
863	tbl = kzalloc(IP_HASHMAX * sizeof(struct cache_head *), GFP_KERNEL);
864	if (tbl == NULL)
865		goto err_tbl;
866
867	cd->owner = THIS_MODULE,
868	cd->hash_size = IP_HASHMAX,
869	cd->hash_table = tbl,
870	cd->name = "auth.unix.ip",
871	cd->cache_put = ip_map_put,
872	cd->cache_upcall = ip_map_upcall,
873	cd->cache_parse = ip_map_parse,
874	cd->cache_show = ip_map_show,
875	cd->match = ip_map_match,
876	cd->init = ip_map_init,
877	cd->update = update,
878	cd->alloc = ip_map_alloc,
879
 
 
 
880	err = cache_register_net(cd, net);
881	if (err)
882		goto err_reg;
883
 
884	sn->ip_map_cache = cd;
885	return 0;
886
887err_reg:
888	kfree(tbl);
889err_tbl:
890	kfree(cd);
891err_cd:
892	return err;
893}
894
895void ip_map_cache_destroy(struct net *net)
896{
897	struct sunrpc_net *sn;
 
898
899	sn = net_generic(net, sunrpc_net_id);
900	cache_purge(sn->ip_map_cache);
901	cache_unregister_net(sn->ip_map_cache, net);
902	kfree(sn->ip_map_cache->hash_table);
903	kfree(sn->ip_map_cache);
904}