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1 #ifndef _NET_XFRM_H
2 #define _NET_XFRM_H
3
4 #include <linux/compiler.h>
5 #include <linux/xfrm.h>
6 #include <linux/spinlock.h>
7 #include <linux/list.h>
8 #include <linux/skbuff.h>
9 #include <linux/socket.h>
10 #include <linux/pfkeyv2.h>
11 #include <linux/ipsec.h>
12 #include <linux/in6.h>
13 #include <linux/mutex.h>
14 #include <linux/audit.h>
15
16 #include <net/sock.h>
17 #include <net/dst.h>
18 #include <net/ip.h>
19 #include <net/route.h>
20 #include <net/ipv6.h>
21 #include <net/ip6_fib.h>
22 #ifdef CONFIG_XFRM_STATISTICS
23 #include <net/snmp.h>
24 #endif
25
26 #define XFRM_PROTO_ESP 50
27 #define XFRM_PROTO_AH 51
28 #define XFRM_PROTO_COMP 108
29 #define XFRM_PROTO_IPIP 4
30 #define XFRM_PROTO_IPV6 41
31 #define XFRM_PROTO_ROUTING IPPROTO_ROUTING
32 #define XFRM_PROTO_DSTOPTS IPPROTO_DSTOPTS
33
34 #define XFRM_ALIGN8(len) (((len) + 7) & ~7)
35 #define MODULE_ALIAS_XFRM_MODE(family, encap) \
36 MODULE_ALIAS("xfrm-mode-" __stringify(family) "-" __stringify(encap))
37 #define MODULE_ALIAS_XFRM_TYPE(family, proto) \
38 MODULE_ALIAS("xfrm-type-" __stringify(family) "-" __stringify(proto))
39
40 #ifdef CONFIG_XFRM_STATISTICS
41 DECLARE_SNMP_STAT(struct linux_xfrm_mib, xfrm_statistics);
42 #define XFRM_INC_STATS(field) SNMP_INC_STATS(xfrm_statistics, field)
43 #define XFRM_INC_STATS_BH(field) SNMP_INC_STATS_BH(xfrm_statistics, field)
44 #define XFRM_INC_STATS_USER(field) SNMP_INC_STATS_USER(xfrm_statistics, field)
45 #else
46 #define XFRM_INC_STATS(field)
47 #define XFRM_INC_STATS_BH(field)
48 #define XFRM_INC_STATS_USER(field)
49 #endif
50
51 extern struct sock *xfrm_nl;
52 extern u32 sysctl_xfrm_aevent_etime;
53 extern u32 sysctl_xfrm_aevent_rseqth;
54 extern int sysctl_xfrm_larval_drop;
55 extern u32 sysctl_xfrm_acq_expires;
56
57 extern struct mutex xfrm_cfg_mutex;
58
59 /* Organization of SPD aka "XFRM rules"
60 ------------------------------------
61
62 Basic objects:
63 - policy rule, struct xfrm_policy (=SPD entry)
64 - bundle of transformations, struct dst_entry == struct xfrm_dst (=SA bundle)
65 - instance of a transformer, struct xfrm_state (=SA)
66 - template to clone xfrm_state, struct xfrm_tmpl
67
68 SPD is plain linear list of xfrm_policy rules, ordered by priority.
69 (To be compatible with existing pfkeyv2 implementations,
70 many rules with priority of 0x7fffffff are allowed to exist and
71 such rules are ordered in an unpredictable way, thanks to bsd folks.)
72
73 Lookup is plain linear search until the first match with selector.
74
75 If "action" is "block", then we prohibit the flow, otherwise:
76 if "xfrms_nr" is zero, the flow passes untransformed. Otherwise,
77 policy entry has list of up to XFRM_MAX_DEPTH transformations,
78 described by templates xfrm_tmpl. Each template is resolved
79 to a complete xfrm_state (see below) and we pack bundle of transformations
80 to a dst_entry returned to requestor.
81
82 dst -. xfrm .-> xfrm_state #1
83 |---. child .-> dst -. xfrm .-> xfrm_state #2
84 |---. child .-> dst -. xfrm .-> xfrm_state #3
85 |---. child .-> NULL
86
87 Bundles are cached at xrfm_policy struct (field ->bundles).
88
89
90 Resolution of xrfm_tmpl
91 -----------------------
92 Template contains:
93 1. ->mode Mode: transport or tunnel
94 2. ->id.proto Protocol: AH/ESP/IPCOMP
95 3. ->id.daddr Remote tunnel endpoint, ignored for transport mode.
96 Q: allow to resolve security gateway?
97 4. ->id.spi If not zero, static SPI.
98 5. ->saddr Local tunnel endpoint, ignored for transport mode.
99 6. ->algos List of allowed algos. Plain bitmask now.
100 Q: ealgos, aalgos, calgos. What a mess...
101 7. ->share Sharing mode.
102 Q: how to implement private sharing mode? To add struct sock* to
103 flow id?
104
105 Having this template we search through SAD searching for entries
106 with appropriate mode/proto/algo, permitted by selector.
107 If no appropriate entry found, it is requested from key manager.
108
109 PROBLEMS:
110 Q: How to find all the bundles referring to a physical path for
111 PMTU discovery? Seems, dst should contain list of all parents...
112 and enter to infinite locking hierarchy disaster.
113 No! It is easier, we will not search for them, let them find us.
114 We add genid to each dst plus pointer to genid of raw IP route,
115 pmtu disc will update pmtu on raw IP route and increase its genid.
116 dst_check() will see this for top level and trigger resyncing
117 metrics. Plus, it will be made via sk->sk_dst_cache. Solved.
118 */
119
120 struct xfrm_state_walk {
121 struct list_head all;
122 u8 state;
123 union {
124 u8 dying;
125 u8 proto;
126 };
127 u32 seq;
128 };
129
130 /* Full description of state of transformer. */
131 struct xfrm_state
132 {
133 #ifdef CONFIG_NET_NS
134 struct net *xs_net;
135 #endif
136 union {
137 struct hlist_node gclist;
138 struct hlist_node bydst;
139 };
140 struct hlist_node bysrc;
141 struct hlist_node byspi;
142
143 atomic_t refcnt;
144 spinlock_t lock;
145
146 struct xfrm_id id;
147 struct xfrm_selector sel;
148
149 u32 genid;
150
151 /* Key manager bits */
152 struct xfrm_state_walk km;
153
154 /* Parameters of this state. */
155 struct {
156 u32 reqid;
157 u8 mode;
158 u8 replay_window;
159 u8 aalgo, ealgo, calgo;
160 u8 flags;
161 u16 family;
162 xfrm_address_t saddr;
163 int header_len;
164 int trailer_len;
165 } props;
166
167 struct xfrm_lifetime_cfg lft;
168
169 /* Data for transformer */
170 struct xfrm_algo *aalg;
171 struct xfrm_algo *ealg;
172 struct xfrm_algo *calg;
173 struct xfrm_algo_aead *aead;
174
175 /* Data for encapsulator */
176 struct xfrm_encap_tmpl *encap;
177
178 /* Data for care-of address */
179 xfrm_address_t *coaddr;
180
181 /* IPComp needs an IPIP tunnel for handling uncompressed packets */
182 struct xfrm_state *tunnel;
183
184 /* If a tunnel, number of users + 1 */
185 atomic_t tunnel_users;
186
187 /* State for replay detection */
188 struct xfrm_replay_state replay;
189
190 /* Replay detection state at the time we sent the last notification */
191 struct xfrm_replay_state preplay;
192
193 /* internal flag that only holds state for delayed aevent at the
194 * moment
195 */
196 u32 xflags;
197
198 /* Replay detection notification settings */
199 u32 replay_maxage;
200 u32 replay_maxdiff;
201
202 /* Replay detection notification timer */
203 struct timer_list rtimer;
204
205 /* Statistics */
206 struct xfrm_stats stats;
207
208 struct xfrm_lifetime_cur curlft;
209 struct timer_list timer;
210
211 /* Last used time */
212 unsigned long lastused;
213
214 /* Reference to data common to all the instances of this
215 * transformer. */
216 const struct xfrm_type *type;
217 struct xfrm_mode *inner_mode;
218 struct xfrm_mode *inner_mode_iaf;
219 struct xfrm_mode *outer_mode;
220
221 /* Security context */
222 struct xfrm_sec_ctx *security;
223
224 /* Private data of this transformer, format is opaque,
225 * interpreted by xfrm_type methods. */
226 void *data;
227 };
228
229 static inline struct net *xs_net(struct xfrm_state *x)
230 {
231 return read_pnet(&x->xs_net);
232 }
233
234 /* xflags - make enum if more show up */
235 #define XFRM_TIME_DEFER 1
236
237 enum {
238 XFRM_STATE_VOID,
239 XFRM_STATE_ACQ,
240 XFRM_STATE_VALID,
241 XFRM_STATE_ERROR,
242 XFRM_STATE_EXPIRED,
243 XFRM_STATE_DEAD
244 };
245
246 /* callback structure passed from either netlink or pfkey */
247 struct km_event
248 {
249 union {
250 u32 hard;
251 u32 proto;
252 u32 byid;
253 u32 aevent;
254 u32 type;
255 } data;
256
257 u32 seq;
258 u32 pid;
259 u32 event;
260 };
261
262 struct net_device;
263 struct xfrm_type;
264 struct xfrm_dst;
265 struct xfrm_policy_afinfo {
266 unsigned short family;
267 struct dst_ops *dst_ops;
268 void (*garbage_collect)(void);
269 struct dst_entry *(*dst_lookup)(int tos, xfrm_address_t *saddr,
270 xfrm_address_t *daddr);
271 int (*get_saddr)(xfrm_address_t *saddr, xfrm_address_t *daddr);
272 struct dst_entry *(*find_bundle)(struct flowi *fl, struct xfrm_policy *policy);
273 void (*decode_session)(struct sk_buff *skb,
274 struct flowi *fl,
275 int reverse);
276 int (*get_tos)(struct flowi *fl);
277 int (*init_path)(struct xfrm_dst *path,
278 struct dst_entry *dst,
279 int nfheader_len);
280 int (*fill_dst)(struct xfrm_dst *xdst,
281 struct net_device *dev);
282 };
283
284 extern int xfrm_policy_register_afinfo(struct xfrm_policy_afinfo *afinfo);
285 extern int xfrm_policy_unregister_afinfo(struct xfrm_policy_afinfo *afinfo);
286 extern void km_policy_notify(struct xfrm_policy *xp, int dir, struct km_event *c);
287 extern void km_state_notify(struct xfrm_state *x, struct km_event *c);
288
289 struct xfrm_tmpl;
290 extern int km_query(struct xfrm_state *x, struct xfrm_tmpl *t, struct xfrm_policy *pol);
291 extern void km_state_expired(struct xfrm_state *x, int hard, u32 pid);
292 extern int __xfrm_state_delete(struct xfrm_state *x);
293
294 struct xfrm_state_afinfo {
295 unsigned int family;
296 unsigned int proto;
297 __be16 eth_proto;
298 struct module *owner;
299 const struct xfrm_type *type_map[IPPROTO_MAX];
300 struct xfrm_mode *mode_map[XFRM_MODE_MAX];
301 int (*init_flags)(struct xfrm_state *x);
302 void (*init_tempsel)(struct xfrm_state *x, struct flowi *fl,
303 struct xfrm_tmpl *tmpl,
304 xfrm_address_t *daddr, xfrm_address_t *saddr);
305 int (*tmpl_sort)(struct xfrm_tmpl **dst, struct xfrm_tmpl **src, int n);
306 int (*state_sort)(struct xfrm_state **dst, struct xfrm_state **src, int n);
307 int (*output)(struct sk_buff *skb);
308 int (*extract_input)(struct xfrm_state *x,
309 struct sk_buff *skb);
310 int (*extract_output)(struct xfrm_state *x,
311 struct sk_buff *skb);
312 int (*transport_finish)(struct sk_buff *skb,
313 int async);
314 };
315
316 extern int xfrm_state_register_afinfo(struct xfrm_state_afinfo *afinfo);
317 extern int xfrm_state_unregister_afinfo(struct xfrm_state_afinfo *afinfo);
318
319 extern void xfrm_state_delete_tunnel(struct xfrm_state *x);
320
321 struct xfrm_type
322 {
323 char *description;
324 struct module *owner;
325 __u8 proto;
326 __u8 flags;
327 #define XFRM_TYPE_NON_FRAGMENT 1
328 #define XFRM_TYPE_REPLAY_PROT 2
329 #define XFRM_TYPE_LOCAL_COADDR 4
330 #define XFRM_TYPE_REMOTE_COADDR 8
331
332 int (*init_state)(struct xfrm_state *x);
333 void (*destructor)(struct xfrm_state *);
334 int (*input)(struct xfrm_state *, struct sk_buff *skb);
335 int (*output)(struct xfrm_state *, struct sk_buff *pskb);
336 int (*reject)(struct xfrm_state *, struct sk_buff *, struct flowi *);
337 int (*hdr_offset)(struct xfrm_state *, struct sk_buff *, u8 **);
338 /* Estimate maximal size of result of transformation of a dgram */
339 u32 (*get_mtu)(struct xfrm_state *, int size);
340 };
341
342 extern int xfrm_register_type(const struct xfrm_type *type, unsigned short family);
343 extern int xfrm_unregister_type(const struct xfrm_type *type, unsigned short family);
344
345 struct xfrm_mode {
346 /*
347 * Remove encapsulation header.
348 *
349 * The IP header will be moved over the top of the encapsulation
350 * header.
351 *
352 * On entry, the transport header shall point to where the IP header
353 * should be and the network header shall be set to where the IP
354 * header currently is. skb->data shall point to the start of the
355 * payload.
356 */
357 int (*input2)(struct xfrm_state *x, struct sk_buff *skb);
358
359 /*
360 * This is the actual input entry point.
361 *
362 * For transport mode and equivalent this would be identical to
363 * input2 (which does not need to be set). While tunnel mode
364 * and equivalent would set this to the tunnel encapsulation function
365 * xfrm4_prepare_input that would in turn call input2.
366 */
367 int (*input)(struct xfrm_state *x, struct sk_buff *skb);
368
369 /*
370 * Add encapsulation header.
371 *
372 * On exit, the transport header will be set to the start of the
373 * encapsulation header to be filled in by x->type->output and
374 * the mac header will be set to the nextheader (protocol for
375 * IPv4) field of the extension header directly preceding the
376 * encapsulation header, or in its absence, that of the top IP
377 * header. The value of the network header will always point
378 * to the top IP header while skb->data will point to the payload.
379 */
380 int (*output2)(struct xfrm_state *x,struct sk_buff *skb);
381
382 /*
383 * This is the actual output entry point.
384 *
385 * For transport mode and equivalent this would be identical to
386 * output2 (which does not need to be set). While tunnel mode
387 * and equivalent would set this to a tunnel encapsulation function
388 * (xfrm4_prepare_output or xfrm6_prepare_output) that would in turn
389 * call output2.
390 */
391 int (*output)(struct xfrm_state *x, struct sk_buff *skb);
392
393 struct xfrm_state_afinfo *afinfo;
394 struct module *owner;
395 unsigned int encap;
396 int flags;
397 };
398
399 /* Flags for xfrm_mode. */
400 enum {
401 XFRM_MODE_FLAG_TUNNEL = 1,
402 };
403
404 extern int xfrm_register_mode(struct xfrm_mode *mode, int family);
405 extern int xfrm_unregister_mode(struct xfrm_mode *mode, int family);
406
407 static inline int xfrm_af2proto(unsigned int family)
408 {
409 switch(family) {
410 case AF_INET:
411 return IPPROTO_IPIP;
412 case AF_INET6:
413 return IPPROTO_IPV6;
414 default:
415 return 0;
416 }
417 }
418
419 static inline struct xfrm_mode *xfrm_ip2inner_mode(struct xfrm_state *x, int ipproto)
420 {
421 if ((ipproto == IPPROTO_IPIP && x->props.family == AF_INET) ||
422 (ipproto == IPPROTO_IPV6 && x->props.family == AF_INET6))
423 return x->inner_mode;
424 else
425 return x->inner_mode_iaf;
426 }
427
428 struct xfrm_tmpl
429 {
430 /* id in template is interpreted as:
431 * daddr - destination of tunnel, may be zero for transport mode.
432 * spi - zero to acquire spi. Not zero if spi is static, then
433 * daddr must be fixed too.
434 * proto - AH/ESP/IPCOMP
435 */
436 struct xfrm_id id;
437
438 /* Source address of tunnel. Ignored, if it is not a tunnel. */
439 xfrm_address_t saddr;
440
441 unsigned short encap_family;
442
443 __u32 reqid;
444
445 /* Mode: transport, tunnel etc. */
446 __u8 mode;
447
448 /* Sharing mode: unique, this session only, this user only etc. */
449 __u8 share;
450
451 /* May skip this transfomration if no SA is found */
452 __u8 optional;
453
454 /* Skip aalgos/ealgos/calgos checks. */
455 __u8 allalgs;
456
457 /* Bit mask of algos allowed for acquisition */
458 __u32 aalgos;
459 __u32 ealgos;
460 __u32 calgos;
461 };
462
463 #define XFRM_MAX_DEPTH 6
464
465 struct xfrm_policy_walk_entry {
466 struct list_head all;
467 u8 dead;
468 };
469
470 struct xfrm_policy_walk {
471 struct xfrm_policy_walk_entry walk;
472 u8 type;
473 u32 seq;
474 };
475
476 struct xfrm_policy
477 {
478 #ifdef CONFIG_NET_NS
479 struct net *xp_net;
480 #endif
481 struct hlist_node bydst;
482 struct hlist_node byidx;
483
484 /* This lock only affects elements except for entry. */
485 rwlock_t lock;
486 atomic_t refcnt;
487 struct timer_list timer;
488
489 u32 priority;
490 u32 index;
491 struct xfrm_selector selector;
492 struct xfrm_lifetime_cfg lft;
493 struct xfrm_lifetime_cur curlft;
494 struct dst_entry *bundles;
495 struct xfrm_policy_walk_entry walk;
496 u8 type;
497 u8 action;
498 u8 flags;
499 u8 xfrm_nr;
500 u16 family;
501 struct xfrm_sec_ctx *security;
502 struct xfrm_tmpl xfrm_vec[XFRM_MAX_DEPTH];
503 };
504
505 static inline struct net *xp_net(struct xfrm_policy *xp)
506 {
507 return read_pnet(&xp->xp_net);
508 }
509
510 struct xfrm_kmaddress {
511 xfrm_address_t local;
512 xfrm_address_t remote;
513 u32 reserved;
514 u16 family;
515 };
516
517 struct xfrm_migrate {
518 xfrm_address_t old_daddr;
519 xfrm_address_t old_saddr;
520 xfrm_address_t new_daddr;
521 xfrm_address_t new_saddr;
522 u8 proto;
523 u8 mode;
524 u16 reserved;
525 u32 reqid;
526 u16 old_family;
527 u16 new_family;
528 };
529
530 #define XFRM_KM_TIMEOUT 30
531 /* which seqno */
532 #define XFRM_REPLAY_SEQ 1
533 #define XFRM_REPLAY_OSEQ 2
534 #define XFRM_REPLAY_SEQ_MASK 3
535 /* what happened */
536 #define XFRM_REPLAY_UPDATE XFRM_AE_CR
537 #define XFRM_REPLAY_TIMEOUT XFRM_AE_CE
538
539 /* default aevent timeout in units of 100ms */
540 #define XFRM_AE_ETIME 10
541 /* Async Event timer multiplier */
542 #define XFRM_AE_ETH_M 10
543 /* default seq threshold size */
544 #define XFRM_AE_SEQT_SIZE 2
545
546 struct xfrm_mgr
547 {
548 struct list_head list;
549 char *id;
550 int (*notify)(struct xfrm_state *x, struct km_event *c);
551 int (*acquire)(struct xfrm_state *x, struct xfrm_tmpl *, struct xfrm_policy *xp, int dir);
552 struct xfrm_policy *(*compile_policy)(struct sock *sk, int opt, u8 *data, int len, int *dir);
553 int (*new_mapping)(struct xfrm_state *x, xfrm_address_t *ipaddr, __be16 sport);
554 int (*notify_policy)(struct xfrm_policy *x, int dir, struct km_event *c);
555 int (*report)(u8 proto, struct xfrm_selector *sel, xfrm_address_t *addr);
556 int (*migrate)(struct xfrm_selector *sel, u8 dir, u8 type, struct xfrm_migrate *m, int num_bundles, struct xfrm_kmaddress *k);
557 };
558
559 extern int xfrm_register_km(struct xfrm_mgr *km);
560 extern int xfrm_unregister_km(struct xfrm_mgr *km);
561
562 /*
563 * This structure is used for the duration where packets are being
564 * transformed by IPsec. As soon as the packet leaves IPsec the
565 * area beyond the generic IP part may be overwritten.
566 */
567 struct xfrm_skb_cb {
568 union {
569 struct inet_skb_parm h4;
570 struct inet6_skb_parm h6;
571 } header;
572
573 /* Sequence number for replay protection. */
574 union {
575 u64 output;
576 __be32 input;
577 } seq;
578 };
579
580 #define XFRM_SKB_CB(__skb) ((struct xfrm_skb_cb *)&((__skb)->cb[0]))
581
582 /*
583 * This structure is used by the afinfo prepare_input/prepare_output functions
584 * to transmit header information to the mode input/output functions.
585 */
586 struct xfrm_mode_skb_cb {
587 union {
588 struct inet_skb_parm h4;
589 struct inet6_skb_parm h6;
590 } header;
591
592 /* Copied from header for IPv4, always set to zero and DF for IPv6. */
593 __be16 id;
594 __be16 frag_off;
595
596 /* IP header length (excluding options or extension headers). */
597 u8 ihl;
598
599 /* TOS for IPv4, class for IPv6. */
600 u8 tos;
601
602 /* TTL for IPv4, hop limitfor IPv6. */
603 u8 ttl;
604
605 /* Protocol for IPv4, NH for IPv6. */
606 u8 protocol;
607
608 /* Option length for IPv4, zero for IPv6. */
609 u8 optlen;
610
611 /* Used by IPv6 only, zero for IPv4. */
612 u8 flow_lbl[3];
613 };
614
615 #define XFRM_MODE_SKB_CB(__skb) ((struct xfrm_mode_skb_cb *)&((__skb)->cb[0]))
616
617 /*
618 * This structure is used by the input processing to locate the SPI and
619 * related information.
620 */
621 struct xfrm_spi_skb_cb {
622 union {
623 struct inet_skb_parm h4;
624 struct inet6_skb_parm h6;
625 } header;
626
627 unsigned int daddroff;
628 unsigned int family;
629 };
630
631 #define XFRM_SPI_SKB_CB(__skb) ((struct xfrm_spi_skb_cb *)&((__skb)->cb[0]))
632
633 /* Audit Information */
634 struct xfrm_audit
635 {
636 u32 secid;
637 uid_t loginuid;
638 u32 sessionid;
639 };
640
641 #ifdef CONFIG_AUDITSYSCALL
642 static inline struct audit_buffer *xfrm_audit_start(const char *op)
643 {
644 struct audit_buffer *audit_buf = NULL;
645
646 if (audit_enabled == 0)
647 return NULL;
648 audit_buf = audit_log_start(current->audit_context, GFP_ATOMIC,
649 AUDIT_MAC_IPSEC_EVENT);
650 if (audit_buf == NULL)
651 return NULL;
652 audit_log_format(audit_buf, "op=%s", op);
653 return audit_buf;
654 }
655
656 static inline void xfrm_audit_helper_usrinfo(uid_t auid, u32 ses, u32 secid,
657 struct audit_buffer *audit_buf)
658 {
659 char *secctx;
660 u32 secctx_len;
661
662 audit_log_format(audit_buf, " auid=%u ses=%u", auid, ses);
663 if (secid != 0 &&
664 security_secid_to_secctx(secid, &secctx, &secctx_len) == 0) {
665 audit_log_format(audit_buf, " subj=%s", secctx);
666 security_release_secctx(secctx, secctx_len);
667 } else
668 audit_log_task_context(audit_buf);
669 }
670
671 extern void xfrm_audit_policy_add(struct xfrm_policy *xp, int result,
672 u32 auid, u32 ses, u32 secid);
673 extern void xfrm_audit_policy_delete(struct xfrm_policy *xp, int result,
674 u32 auid, u32 ses, u32 secid);
675 extern void xfrm_audit_state_add(struct xfrm_state *x, int result,
676 u32 auid, u32 ses, u32 secid);
677 extern void xfrm_audit_state_delete(struct xfrm_state *x, int result,
678 u32 auid, u32 ses, u32 secid);
679 extern void xfrm_audit_state_replay_overflow(struct xfrm_state *x,
680 struct sk_buff *skb);
681 extern void xfrm_audit_state_notfound_simple(struct sk_buff *skb, u16 family);
682 extern void xfrm_audit_state_notfound(struct sk_buff *skb, u16 family,
683 __be32 net_spi, __be32 net_seq);
684 extern void xfrm_audit_state_icvfail(struct xfrm_state *x,
685 struct sk_buff *skb, u8 proto);
686 #else
687
688 static inline void xfrm_audit_policy_add(struct xfrm_policy *xp, int result,
689 u32 auid, u32 ses, u32 secid)
690 {
691 }
692
693 static inline void xfrm_audit_policy_delete(struct xfrm_policy *xp, int result,
694 u32 auid, u32 ses, u32 secid)
695 {
696 }
697
698 static inline void xfrm_audit_state_add(struct xfrm_state *x, int result,
699 u32 auid, u32 ses, u32 secid)
700 {
701 }
702
703 static inline void xfrm_audit_state_delete(struct xfrm_state *x, int result,
704 u32 auid, u32 ses, u32 secid)
705 {
706 }
707
708 static inline void xfrm_audit_state_replay_overflow(struct xfrm_state *x,
709 struct sk_buff *skb)
710 {
711 }
712
713 static inline void xfrm_audit_state_notfound_simple(struct sk_buff *skb,
714 u16 family)
715 {
716 }
717
718 static inline void xfrm_audit_state_notfound(struct sk_buff *skb, u16 family,
719 __be32 net_spi, __be32 net_seq)
720 {
721 }
722
723 static inline void xfrm_audit_state_icvfail(struct xfrm_state *x,
724 struct sk_buff *skb, u8 proto)
725 {
726 }
727 #endif /* CONFIG_AUDITSYSCALL */
728
729 static inline void xfrm_pol_hold(struct xfrm_policy *policy)
730 {
731 if (likely(policy != NULL))
732 atomic_inc(&policy->refcnt);
733 }
734
735 extern void xfrm_policy_destroy(struct xfrm_policy *policy);
736
737 static inline void xfrm_pol_put(struct xfrm_policy *policy)
738 {
739 if (atomic_dec_and_test(&policy->refcnt))
740 xfrm_policy_destroy(policy);
741 }
742
743 #ifdef CONFIG_XFRM_SUB_POLICY
744 static inline void xfrm_pols_put(struct xfrm_policy **pols, int npols)
745 {
746 int i;
747 for (i = npols - 1; i >= 0; --i)
748 xfrm_pol_put(pols[i]);
749 }
750 #else
751 static inline void xfrm_pols_put(struct xfrm_policy **pols, int npols)
752 {
753 xfrm_pol_put(pols[0]);
754 }
755 #endif
756
757 extern void __xfrm_state_destroy(struct xfrm_state *);
758
759 static inline void __xfrm_state_put(struct xfrm_state *x)
760 {
761 atomic_dec(&x->refcnt);
762 }
763
764 static inline void xfrm_state_put(struct xfrm_state *x)
765 {
766 if (atomic_dec_and_test(&x->refcnt))
767 __xfrm_state_destroy(x);
768 }
769
770 static inline void xfrm_state_hold(struct xfrm_state *x)
771 {
772 atomic_inc(&x->refcnt);
773 }
774
775 static __inline__ int addr_match(void *token1, void *token2, int prefixlen)
776 {
777 __be32 *a1 = token1;
778 __be32 *a2 = token2;
779 int pdw;
780 int pbi;
781
782 pdw = prefixlen >> 5; /* num of whole __u32 in prefix */
783 pbi = prefixlen & 0x1f; /* num of bits in incomplete u32 in prefix */
784
785 if (pdw)
786 if (memcmp(a1, a2, pdw << 2))
787 return 0;
788
789 if (pbi) {
790 __be32 mask;
791
792 mask = htonl((0xffffffff) << (32 - pbi));
793
794 if ((a1[pdw] ^ a2[pdw]) & mask)
795 return 0;
796 }
797
798 return 1;
799 }
800
801 static __inline__
802 __be16 xfrm_flowi_sport(struct flowi *fl)
803 {
804 __be16 port;
805 switch(fl->proto) {
806 case IPPROTO_TCP:
807 case IPPROTO_UDP:
808 case IPPROTO_UDPLITE:
809 case IPPROTO_SCTP:
810 port = fl->fl_ip_sport;
811 break;
812 case IPPROTO_ICMP:
813 case IPPROTO_ICMPV6:
814 port = htons(fl->fl_icmp_type);
815 break;
816 case IPPROTO_MH:
817 port = htons(fl->fl_mh_type);
818 break;
819 default:
820 port = 0; /*XXX*/
821 }
822 return port;
823 }
824
825 static __inline__
826 __be16 xfrm_flowi_dport(struct flowi *fl)
827 {
828 __be16 port;
829 switch(fl->proto) {
830 case IPPROTO_TCP:
831 case IPPROTO_UDP:
832 case IPPROTO_UDPLITE:
833 case IPPROTO_SCTP:
834 port = fl->fl_ip_dport;
835 break;
836 case IPPROTO_ICMP:
837 case IPPROTO_ICMPV6:
838 port = htons(fl->fl_icmp_code);
839 break;
840 default:
841 port = 0; /*XXX*/
842 }
843 return port;
844 }
845
846 extern int xfrm_selector_match(struct xfrm_selector *sel, struct flowi *fl,
847 unsigned short family);
848
849 #ifdef CONFIG_SECURITY_NETWORK_XFRM
850 /* If neither has a context --> match
851 * Otherwise, both must have a context and the sids, doi, alg must match
852 */
853 static inline int xfrm_sec_ctx_match(struct xfrm_sec_ctx *s1, struct xfrm_sec_ctx *s2)
854 {
855 return ((!s1 && !s2) ||
856 (s1 && s2 &&
857 (s1->ctx_sid == s2->ctx_sid) &&
858 (s1->ctx_doi == s2->ctx_doi) &&
859 (s1->ctx_alg == s2->ctx_alg)));
860 }
861 #else
862 static inline int xfrm_sec_ctx_match(struct xfrm_sec_ctx *s1, struct xfrm_sec_ctx *s2)
863 {
864 return 1;
865 }
866 #endif
867
868 /* A struct encoding bundle of transformations to apply to some set of flow.
869 *
870 * dst->child points to the next element of bundle.
871 * dst->xfrm points to an instanse of transformer.
872 *
873 * Due to unfortunate limitations of current routing cache, which we
874 * have no time to fix, it mirrors struct rtable and bound to the same
875 * routing key, including saddr,daddr. However, we can have many of
876 * bundles differing by session id. All the bundles grow from a parent
877 * policy rule.
878 */
879 struct xfrm_dst
880 {
881 union {
882 struct dst_entry dst;
883 struct rtable rt;
884 struct rt6_info rt6;
885 } u;
886 struct dst_entry *route;
887 #ifdef CONFIG_XFRM_SUB_POLICY
888 struct flowi *origin;
889 struct xfrm_selector *partner;
890 #endif
891 u32 genid;
892 u32 route_mtu_cached;
893 u32 child_mtu_cached;
894 u32 route_cookie;
895 u32 path_cookie;
896 };
897
898 #ifdef CONFIG_XFRM
899 static inline void xfrm_dst_destroy(struct xfrm_dst *xdst)
900 {
901 dst_release(xdst->route);
902 if (likely(xdst->u.dst.xfrm))
903 xfrm_state_put(xdst->u.dst.xfrm);
904 #ifdef CONFIG_XFRM_SUB_POLICY
905 kfree(xdst->origin);
906 xdst->origin = NULL;
907 kfree(xdst->partner);
908 xdst->partner = NULL;
909 #endif
910 }
911 #endif
912
913 extern void xfrm_dst_ifdown(struct dst_entry *dst, struct net_device *dev);
914
915 struct sec_path
916 {
917 atomic_t refcnt;
918 int len;
919 struct xfrm_state *xvec[XFRM_MAX_DEPTH];
920 };
921
922 static inline struct sec_path *
923 secpath_get(struct sec_path *sp)
924 {
925 if (sp)
926 atomic_inc(&sp->refcnt);
927 return sp;
928 }
929
930 extern void __secpath_destroy(struct sec_path *sp);
931
932 static inline void
933 secpath_put(struct sec_path *sp)
934 {
935 if (sp && atomic_dec_and_test(&sp->refcnt))
936 __secpath_destroy(sp);
937 }
938
939 extern struct sec_path *secpath_dup(struct sec_path *src);
940
941 static inline void
942 secpath_reset(struct sk_buff *skb)
943 {
944 #ifdef CONFIG_XFRM
945 secpath_put(skb->sp);
946 skb->sp = NULL;
947 #endif
948 }
949
950 static inline int
951 xfrm_addr_any(xfrm_address_t *addr, unsigned short family)
952 {
953 switch (family) {
954 case AF_INET:
955 return addr->a4 == 0;
956 case AF_INET6:
957 return ipv6_addr_any((struct in6_addr *)&addr->a6);
958 }
959 return 0;
960 }
961
962 static inline int
963 __xfrm4_state_addr_cmp(struct xfrm_tmpl *tmpl, struct xfrm_state *x)
964 {
965 return (tmpl->saddr.a4 &&
966 tmpl->saddr.a4 != x->props.saddr.a4);
967 }
968
969 static inline int
970 __xfrm6_state_addr_cmp(struct xfrm_tmpl *tmpl, struct xfrm_state *x)
971 {
972 return (!ipv6_addr_any((struct in6_addr*)&tmpl->saddr) &&
973 ipv6_addr_cmp((struct in6_addr *)&tmpl->saddr, (struct in6_addr*)&x->props.saddr));
974 }
975
976 static inline int
977 xfrm_state_addr_cmp(struct xfrm_tmpl *tmpl, struct xfrm_state *x, unsigned short family)
978 {
979 switch (family) {
980 case AF_INET:
981 return __xfrm4_state_addr_cmp(tmpl, x);
982 case AF_INET6:
983 return __xfrm6_state_addr_cmp(tmpl, x);
984 }
985 return !0;
986 }
987
988 #ifdef CONFIG_XFRM
989 extern int __xfrm_policy_check(struct sock *, int dir, struct sk_buff *skb, unsigned short family);
990
991 static inline int __xfrm_policy_check2(struct sock *sk, int dir,
992 struct sk_buff *skb,
993 unsigned int family, int reverse)
994 {
995 struct net *net = dev_net(skb->dev);
996 int ndir = dir | (reverse ? XFRM_POLICY_MASK + 1 : 0);
997
998 if (sk && sk->sk_policy[XFRM_POLICY_IN])
999 return __xfrm_policy_check(sk, ndir, skb, family);
1000
1001 return (!net->xfrm.policy_count[dir] && !skb->sp) ||
1002 (skb->dst->flags & DST_NOPOLICY) ||
1003 __xfrm_policy_check(sk, ndir, skb, family);
1004 }
1005
1006 static inline int xfrm_policy_check(struct sock *sk, int dir, struct sk_buff *skb, unsigned short family)
1007 {
1008 return __xfrm_policy_check2(sk, dir, skb, family, 0);
1009 }
1010
1011 static inline int xfrm4_policy_check(struct sock *sk, int dir, struct sk_buff *skb)
1012 {
1013 return xfrm_policy_check(sk, dir, skb, AF_INET);
1014 }
1015
1016 static inline int xfrm6_policy_check(struct sock *sk, int dir, struct sk_buff *skb)
1017 {
1018 return xfrm_policy_check(sk, dir, skb, AF_INET6);
1019 }
1020
1021 static inline int xfrm4_policy_check_reverse(struct sock *sk, int dir,
1022 struct sk_buff *skb)
1023 {
1024 return __xfrm_policy_check2(sk, dir, skb, AF_INET, 1);
1025 }
1026
1027 static inline int xfrm6_policy_check_reverse(struct sock *sk, int dir,
1028 struct sk_buff *skb)
1029 {
1030 return __xfrm_policy_check2(sk, dir, skb, AF_INET6, 1);
1031 }
1032
1033 extern int __xfrm_decode_session(struct sk_buff *skb, struct flowi *fl,
1034 unsigned int family, int reverse);
1035
1036 static inline int xfrm_decode_session(struct sk_buff *skb, struct flowi *fl,
1037 unsigned int family)
1038 {
1039 return __xfrm_decode_session(skb, fl, family, 0);
1040 }
1041
1042 static inline int xfrm_decode_session_reverse(struct sk_buff *skb,
1043 struct flowi *fl,
1044 unsigned int family)
1045 {
1046 return __xfrm_decode_session(skb, fl, family, 1);
1047 }
1048
1049 extern int __xfrm_route_forward(struct sk_buff *skb, unsigned short family);
1050
1051 static inline int xfrm_route_forward(struct sk_buff *skb, unsigned short family)
1052 {
1053 return !init_net.xfrm.policy_count[XFRM_POLICY_OUT] ||
1054 (skb->dst->flags & DST_NOXFRM) ||
1055 __xfrm_route_forward(skb, family);
1056 }
1057
1058 static inline int xfrm4_route_forward(struct sk_buff *skb)
1059 {
1060 return xfrm_route_forward(skb, AF_INET);
1061 }
1062
1063 static inline int xfrm6_route_forward(struct sk_buff *skb)
1064 {
1065 return xfrm_route_forward(skb, AF_INET6);
1066 }
1067
1068 extern int __xfrm_sk_clone_policy(struct sock *sk);
1069
1070 static inline int xfrm_sk_clone_policy(struct sock *sk)
1071 {
1072 if (unlikely(sk->sk_policy[0] || sk->sk_policy[1]))
1073 return __xfrm_sk_clone_policy(sk);
1074 return 0;
1075 }
1076
1077 extern int xfrm_policy_delete(struct xfrm_policy *pol, int dir);
1078
1079 static inline void xfrm_sk_free_policy(struct sock *sk)
1080 {
1081 if (unlikely(sk->sk_policy[0] != NULL)) {
1082 xfrm_policy_delete(sk->sk_policy[0], XFRM_POLICY_MAX);
1083 sk->sk_policy[0] = NULL;
1084 }
1085 if (unlikely(sk->sk_policy[1] != NULL)) {
1086 xfrm_policy_delete(sk->sk_policy[1], XFRM_POLICY_MAX+1);
1087 sk->sk_policy[1] = NULL;
1088 }
1089 }
1090
1091 #else
1092
1093 static inline void xfrm_sk_free_policy(struct sock *sk) {}
1094 static inline int xfrm_sk_clone_policy(struct sock *sk) { return 0; }
1095 static inline int xfrm6_route_forward(struct sk_buff *skb) { return 1; }
1096 static inline int xfrm4_route_forward(struct sk_buff *skb) { return 1; }
1097 static inline int xfrm6_policy_check(struct sock *sk, int dir, struct sk_buff *skb)
1098 {
1099 return 1;
1100 }
1101 static inline int xfrm4_policy_check(struct sock *sk, int dir, struct sk_buff *skb)
1102 {
1103 return 1;
1104 }
1105 static inline int xfrm_policy_check(struct sock *sk, int dir, struct sk_buff *skb, unsigned short family)
1106 {
1107 return 1;
1108 }
1109 static inline int xfrm_decode_session_reverse(struct sk_buff *skb,
1110 struct flowi *fl,
1111 unsigned int family)
1112 {
1113 return -ENOSYS;
1114 }
1115 static inline int xfrm4_policy_check_reverse(struct sock *sk, int dir,
1116 struct sk_buff *skb)
1117 {
1118 return 1;
1119 }
1120 static inline int xfrm6_policy_check_reverse(struct sock *sk, int dir,
1121 struct sk_buff *skb)
1122 {
1123 return 1;
1124 }
1125 #endif
1126
1127 static __inline__
1128 xfrm_address_t *xfrm_flowi_daddr(struct flowi *fl, unsigned short family)
1129 {
1130 switch (family){
1131 case AF_INET:
1132 return (xfrm_address_t *)&fl->fl4_dst;
1133 case AF_INET6:
1134 return (xfrm_address_t *)&fl->fl6_dst;
1135 }
1136 return NULL;
1137 }
1138
1139 static __inline__
1140 xfrm_address_t *xfrm_flowi_saddr(struct flowi *fl, unsigned short family)
1141 {
1142 switch (family){
1143 case AF_INET:
1144 return (xfrm_address_t *)&fl->fl4_src;
1145 case AF_INET6:
1146 return (xfrm_address_t *)&fl->fl6_src;
1147 }
1148 return NULL;
1149 }
1150
1151 static __inline__
1152 void xfrm_flowi_addr_get(struct flowi *fl,
1153 xfrm_address_t *saddr, xfrm_address_t *daddr,
1154 unsigned short family)
1155 {
1156 switch(family) {
1157 case AF_INET:
1158 memcpy(&saddr->a4, &fl->fl4_src, sizeof(saddr->a4));
1159 memcpy(&daddr->a4, &fl->fl4_dst, sizeof(daddr->a4));
1160 break;
1161 case AF_INET6:
1162 ipv6_addr_copy((struct in6_addr *)&saddr->a6, &fl->fl6_src);
1163 ipv6_addr_copy((struct in6_addr *)&daddr->a6, &fl->fl6_dst);
1164 break;
1165 }
1166 }
1167
1168 static __inline__ int
1169 __xfrm4_state_addr_check(struct xfrm_state *x,
1170 xfrm_address_t *daddr, xfrm_address_t *saddr)
1171 {
1172 if (daddr->a4 == x->id.daddr.a4 &&
1173 (saddr->a4 == x->props.saddr.a4 || !saddr->a4 || !x->props.saddr.a4))
1174 return 1;
1175 return 0;
1176 }
1177
1178 static __inline__ int
1179 __xfrm6_state_addr_check(struct xfrm_state *x,
1180 xfrm_address_t *daddr, xfrm_address_t *saddr)
1181 {
1182 if (!ipv6_addr_cmp((struct in6_addr *)daddr, (struct in6_addr *)&x->id.daddr) &&
1183 (!ipv6_addr_cmp((struct in6_addr *)saddr, (struct in6_addr *)&x->props.saddr)||
1184 ipv6_addr_any((struct in6_addr *)saddr) ||
1185 ipv6_addr_any((struct in6_addr *)&x->props.saddr)))
1186 return 1;
1187 return 0;
1188 }
1189
1190 static __inline__ int
1191 xfrm_state_addr_check(struct xfrm_state *x,
1192 xfrm_address_t *daddr, xfrm_address_t *saddr,
1193 unsigned short family)
1194 {
1195 switch (family) {
1196 case AF_INET:
1197 return __xfrm4_state_addr_check(x, daddr, saddr);
1198 case AF_INET6:
1199 return __xfrm6_state_addr_check(x, daddr, saddr);
1200 }
1201 return 0;
1202 }
1203
1204 static __inline__ int
1205 xfrm_state_addr_flow_check(struct xfrm_state *x, struct flowi *fl,
1206 unsigned short family)
1207 {
1208 switch (family) {
1209 case AF_INET:
1210 return __xfrm4_state_addr_check(x,
1211 (xfrm_address_t *)&fl->fl4_dst,
1212 (xfrm_address_t *)&fl->fl4_src);
1213 case AF_INET6:
1214 return __xfrm6_state_addr_check(x,
1215 (xfrm_address_t *)&fl->fl6_dst,
1216 (xfrm_address_t *)&fl->fl6_src);
1217 }
1218 return 0;
1219 }
1220
1221 static inline int xfrm_state_kern(struct xfrm_state *x)
1222 {
1223 return atomic_read(&x->tunnel_users);
1224 }
1225
1226 static inline int xfrm_id_proto_match(u8 proto, u8 userproto)
1227 {
1228 return (!userproto || proto == userproto ||
1229 (userproto == IPSEC_PROTO_ANY && (proto == IPPROTO_AH ||
1230 proto == IPPROTO_ESP ||
1231 proto == IPPROTO_COMP)));
1232 }
1233
1234 /*
1235 * xfrm algorithm information
1236 */
1237 struct xfrm_algo_aead_info {
1238 u16 icv_truncbits;
1239 };
1240
1241 struct xfrm_algo_auth_info {
1242 u16 icv_truncbits;
1243 u16 icv_fullbits;
1244 };
1245
1246 struct xfrm_algo_encr_info {
1247 u16 blockbits;
1248 u16 defkeybits;
1249 };
1250
1251 struct xfrm_algo_comp_info {
1252 u16 threshold;
1253 };
1254
1255 struct xfrm_algo_desc {
1256 char *name;
1257 char *compat;
1258 u8 available:1;
1259 union {
1260 struct xfrm_algo_aead_info aead;
1261 struct xfrm_algo_auth_info auth;
1262 struct xfrm_algo_encr_info encr;
1263 struct xfrm_algo_comp_info comp;
1264 } uinfo;
1265 struct sadb_alg desc;
1266 };
1267
1268 /* XFRM tunnel handlers. */
1269 struct xfrm_tunnel {
1270 int (*handler)(struct sk_buff *skb);
1271 int (*err_handler)(struct sk_buff *skb, __u32 info);
1272
1273 struct xfrm_tunnel *next;
1274 int priority;
1275 };
1276
1277 struct xfrm6_tunnel {
1278 int (*handler)(struct sk_buff *skb);
1279 int (*err_handler)(struct sk_buff *skb, struct inet6_skb_parm *opt,
1280 int type, int code, int offset, __be32 info);
1281 struct xfrm6_tunnel *next;
1282 int priority;
1283 };
1284
1285 extern void xfrm_init(void);
1286 extern void xfrm4_init(void);
1287 extern int xfrm_state_init(struct net *net);
1288 extern void xfrm_state_fini(struct net *net);
1289 extern void xfrm4_state_init(void);
1290 #ifdef CONFIG_XFRM
1291 extern int xfrm6_init(void);
1292 extern void xfrm6_fini(void);
1293 extern int xfrm6_state_init(void);
1294 extern void xfrm6_state_fini(void);
1295 #else
1296 static inline int xfrm6_init(void)
1297 {
1298 return 0;
1299 }
1300 static inline void xfrm6_fini(void)
1301 {
1302 ;
1303 }
1304 #endif
1305
1306 #ifdef CONFIG_XFRM_STATISTICS
1307 extern int xfrm_proc_init(void);
1308 #endif
1309
1310 extern void xfrm_state_walk_init(struct xfrm_state_walk *walk, u8 proto);
1311 extern int xfrm_state_walk(struct net *net, struct xfrm_state_walk *walk,
1312 int (*func)(struct xfrm_state *, int, void*), void *);
1313 extern void xfrm_state_walk_done(struct xfrm_state_walk *walk);
1314 extern struct xfrm_state *xfrm_state_alloc(struct net *net);
1315 extern struct xfrm_state *xfrm_state_find(xfrm_address_t *daddr, xfrm_address_t *saddr,
1316 struct flowi *fl, struct xfrm_tmpl *tmpl,
1317 struct xfrm_policy *pol, int *err,
1318 unsigned short family);
1319 extern struct xfrm_state * xfrm_stateonly_find(struct net *net,
1320 xfrm_address_t *daddr,
1321 xfrm_address_t *saddr,
1322 unsigned short family,
1323 u8 mode, u8 proto, u32 reqid);
1324 extern int xfrm_state_check_expire(struct xfrm_state *x);
1325 extern void xfrm_state_insert(struct xfrm_state *x);
1326 extern int xfrm_state_add(struct xfrm_state *x);
1327 extern int xfrm_state_update(struct xfrm_state *x);
1328 extern struct xfrm_state *xfrm_state_lookup(struct net *net, xfrm_address_t *daddr, __be32 spi, u8 proto, unsigned short family);
1329 extern struct xfrm_state *xfrm_state_lookup_byaddr(struct net *net, xfrm_address_t *daddr, xfrm_address_t *saddr, u8 proto, unsigned short family);
1330 #ifdef CONFIG_XFRM_SUB_POLICY
1331 extern int xfrm_tmpl_sort(struct xfrm_tmpl **dst, struct xfrm_tmpl **src,
1332 int n, unsigned short family);
1333 extern int xfrm_state_sort(struct xfrm_state **dst, struct xfrm_state **src,
1334 int n, unsigned short family);
1335 #else
1336 static inline int xfrm_tmpl_sort(struct xfrm_tmpl **dst, struct xfrm_tmpl **src,
1337 int n, unsigned short family)
1338 {
1339 return -ENOSYS;
1340 }
1341
1342 static inline int xfrm_state_sort(struct xfrm_state **dst, struct xfrm_state **src,
1343 int n, unsigned short family)
1344 {
1345 return -ENOSYS;
1346 }
1347 #endif
1348
1349 struct xfrmk_sadinfo {
1350 u32 sadhcnt; /* current hash bkts */
1351 u32 sadhmcnt; /* max allowed hash bkts */
1352 u32 sadcnt; /* current running count */
1353 };
1354
1355 struct xfrmk_spdinfo {
1356 u32 incnt;
1357 u32 outcnt;
1358 u32 fwdcnt;
1359 u32 inscnt;
1360 u32 outscnt;
1361 u32 fwdscnt;
1362 u32 spdhcnt;
1363 u32 spdhmcnt;
1364 };
1365
1366 extern struct xfrm_state *xfrm_find_acq_byseq(struct net *net, u32 seq);
1367 extern int xfrm_state_delete(struct xfrm_state *x);
1368 extern int xfrm_state_flush(struct net *net, u8 proto, struct xfrm_audit *audit_info);
1369 extern void xfrm_sad_getinfo(struct xfrmk_sadinfo *si);
1370 extern void xfrm_spd_getinfo(struct xfrmk_spdinfo *si);
1371 extern int xfrm_replay_check(struct xfrm_state *x,
1372 struct sk_buff *skb, __be32 seq);
1373 extern void xfrm_replay_advance(struct xfrm_state *x, __be32 seq);
1374 extern void xfrm_replay_notify(struct xfrm_state *x, int event);
1375 extern int xfrm_state_mtu(struct xfrm_state *x, int mtu);
1376 extern int xfrm_init_state(struct xfrm_state *x);
1377 extern int xfrm_prepare_input(struct xfrm_state *x, struct sk_buff *skb);
1378 extern int xfrm_input(struct sk_buff *skb, int nexthdr, __be32 spi,
1379 int encap_type);
1380 extern int xfrm_input_resume(struct sk_buff *skb, int nexthdr);
1381 extern int xfrm_output_resume(struct sk_buff *skb, int err);
1382 extern int xfrm_output(struct sk_buff *skb);
1383 extern int xfrm_inner_extract_output(struct xfrm_state *x, struct sk_buff *skb);
1384 extern int xfrm4_extract_header(struct sk_buff *skb);
1385 extern int xfrm4_extract_input(struct xfrm_state *x, struct sk_buff *skb);
1386 extern int xfrm4_rcv_encap(struct sk_buff *skb, int nexthdr, __be32 spi,
1387 int encap_type);
1388 extern int xfrm4_transport_finish(struct sk_buff *skb, int async);
1389 extern int xfrm4_rcv(struct sk_buff *skb);
1390
1391 static inline int xfrm4_rcv_spi(struct sk_buff *skb, int nexthdr, __be32 spi)
1392 {
1393 return xfrm4_rcv_encap(skb, nexthdr, spi, 0);
1394 }
1395
1396 extern int xfrm4_extract_output(struct xfrm_state *x, struct sk_buff *skb);
1397 extern int xfrm4_prepare_output(struct xfrm_state *x, struct sk_buff *skb);
1398 extern int xfrm4_output(struct sk_buff *skb);
1399 extern int xfrm4_tunnel_register(struct xfrm_tunnel *handler, unsigned short family);
1400 extern int xfrm4_tunnel_deregister(struct xfrm_tunnel *handler, unsigned short family);
1401 extern int xfrm6_extract_header(struct sk_buff *skb);
1402 extern int xfrm6_extract_input(struct xfrm_state *x, struct sk_buff *skb);
1403 extern int xfrm6_rcv_spi(struct sk_buff *skb, int nexthdr, __be32 spi);
1404 extern int xfrm6_transport_finish(struct sk_buff *skb, int async);
1405 extern int xfrm6_rcv(struct sk_buff *skb);
1406 extern int xfrm6_input_addr(struct sk_buff *skb, xfrm_address_t *daddr,
1407 xfrm_address_t *saddr, u8 proto);
1408 extern int xfrm6_tunnel_register(struct xfrm6_tunnel *handler, unsigned short family);
1409 extern int xfrm6_tunnel_deregister(struct xfrm6_tunnel *handler, unsigned short family);
1410 extern __be32 xfrm6_tunnel_alloc_spi(xfrm_address_t *saddr);
1411 extern void xfrm6_tunnel_free_spi(xfrm_address_t *saddr);
1412 extern __be32 xfrm6_tunnel_spi_lookup(xfrm_address_t *saddr);
1413 extern int xfrm6_extract_output(struct xfrm_state *x, struct sk_buff *skb);
1414 extern int xfrm6_prepare_output(struct xfrm_state *x, struct sk_buff *skb);
1415 extern int xfrm6_output(struct sk_buff *skb);
1416 extern int xfrm6_find_1stfragopt(struct xfrm_state *x, struct sk_buff *skb,
1417 u8 **prevhdr);
1418
1419 #ifdef CONFIG_XFRM
1420 extern int xfrm4_udp_encap_rcv(struct sock *sk, struct sk_buff *skb);
1421 extern int xfrm_user_policy(struct sock *sk, int optname, u8 __user *optval, int optlen);
1422 #else
1423 static inline int xfrm_user_policy(struct sock *sk, int optname, u8 __user *optval, int optlen)
1424 {
1425 return -ENOPROTOOPT;
1426 }
1427
1428 static inline int xfrm4_udp_encap_rcv(struct sock *sk, struct sk_buff *skb)
1429 {
1430 /* should not happen */
1431 kfree_skb(skb);
1432 return 0;
1433 }
1434 #endif
1435
1436 struct xfrm_policy *xfrm_policy_alloc(struct net *net, gfp_t gfp);
1437
1438 extern void xfrm_policy_walk_init(struct xfrm_policy_walk *walk, u8 type);
1439 extern int xfrm_policy_walk(struct net *net, struct xfrm_policy_walk *walk,
1440 int (*func)(struct xfrm_policy *, int, int, void*), void *);
1441 extern void xfrm_policy_walk_done(struct xfrm_policy_walk *walk);
1442 int xfrm_policy_insert(int dir, struct xfrm_policy *policy, int excl);
1443 struct xfrm_policy *xfrm_policy_bysel_ctx(struct net *net, u8 type, int dir,
1444 struct xfrm_selector *sel,
1445 struct xfrm_sec_ctx *ctx, int delete,
1446 int *err);
1447 struct xfrm_policy *xfrm_policy_byid(struct net *net, u8, int dir, u32 id, int delete, int *err);
1448 int xfrm_policy_flush(struct net *net, u8 type, struct xfrm_audit *audit_info);
1449 u32 xfrm_get_acqseq(void);
1450 extern int xfrm_alloc_spi(struct xfrm_state *x, u32 minspi, u32 maxspi);
1451 struct xfrm_state * xfrm_find_acq(struct net *net, u8 mode, u32 reqid, u8 proto,
1452 xfrm_address_t *daddr, xfrm_address_t *saddr,
1453 int create, unsigned short family);
1454 extern int xfrm_sk_policy_insert(struct sock *sk, int dir, struct xfrm_policy *pol);
1455 extern int xfrm_bundle_ok(struct xfrm_policy *pol, struct xfrm_dst *xdst,
1456 struct flowi *fl, int family, int strict);
1457
1458 #ifdef CONFIG_XFRM_MIGRATE
1459 extern int km_migrate(struct xfrm_selector *sel, u8 dir, u8 type,
1460 struct xfrm_migrate *m, int num_bundles,
1461 struct xfrm_kmaddress *k);
1462 extern struct xfrm_state * xfrm_migrate_state_find(struct xfrm_migrate *m);
1463 extern struct xfrm_state * xfrm_state_migrate(struct xfrm_state *x,
1464 struct xfrm_migrate *m);
1465 extern int xfrm_migrate(struct xfrm_selector *sel, u8 dir, u8 type,
1466 struct xfrm_migrate *m, int num_bundles,
1467 struct xfrm_kmaddress *k);
1468 #endif
1469
1470 extern int km_new_mapping(struct xfrm_state *x, xfrm_address_t *ipaddr, __be16 sport);
1471 extern void km_policy_expired(struct xfrm_policy *pol, int dir, int hard, u32 pid);
1472 extern int km_report(u8 proto, struct xfrm_selector *sel, xfrm_address_t *addr);
1473
1474 extern void xfrm_input_init(void);
1475 extern int xfrm_parse_spi(struct sk_buff *skb, u8 nexthdr, __be32 *spi, __be32 *seq);
1476
1477 extern void xfrm_probe_algs(void);
1478 extern int xfrm_count_auth_supported(void);
1479 extern int xfrm_count_enc_supported(void);
1480 extern struct xfrm_algo_desc *xfrm_aalg_get_byidx(unsigned int idx);
1481 extern struct xfrm_algo_desc *xfrm_ealg_get_byidx(unsigned int idx);
1482 extern struct xfrm_algo_desc *xfrm_aalg_get_byid(int alg_id);
1483 extern struct xfrm_algo_desc *xfrm_ealg_get_byid(int alg_id);
1484 extern struct xfrm_algo_desc *xfrm_calg_get_byid(int alg_id);
1485 extern struct xfrm_algo_desc *xfrm_aalg_get_byname(char *name, int probe);
1486 extern struct xfrm_algo_desc *xfrm_ealg_get_byname(char *name, int probe);
1487 extern struct xfrm_algo_desc *xfrm_calg_get_byname(char *name, int probe);
1488 extern struct xfrm_algo_desc *xfrm_aead_get_byname(char *name, int icv_len,
1489 int probe);
1490
1491 struct hash_desc;
1492 struct scatterlist;
1493 typedef int (icv_update_fn_t)(struct hash_desc *, struct scatterlist *,
1494 unsigned int);
1495
1496 extern int skb_icv_walk(const struct sk_buff *skb, struct hash_desc *tfm,
1497 int offset, int len, icv_update_fn_t icv_update);
1498
1499 static inline int xfrm_addr_cmp(xfrm_address_t *a, xfrm_address_t *b,
1500 int family)
1501 {
1502 switch (family) {
1503 default:
1504 case AF_INET:
1505 return (__force __u32)a->a4 - (__force __u32)b->a4;
1506 case AF_INET6:
1507 return ipv6_addr_cmp((struct in6_addr *)a,
1508 (struct in6_addr *)b);
1509 }
1510 }
1511
1512 static inline int xfrm_policy_id2dir(u32 index)
1513 {
1514 return index & 7;
1515 }
1516
1517 static inline int xfrm_aevent_is_on(void)
1518 {
1519 struct sock *nlsk;
1520 int ret = 0;
1521
1522 rcu_read_lock();
1523 nlsk = rcu_dereference(xfrm_nl);
1524 if (nlsk)
1525 ret = netlink_has_listeners(nlsk, XFRMNLGRP_AEVENTS);
1526 rcu_read_unlock();
1527 return ret;
1528 }
1529
1530 static inline int xfrm_alg_len(struct xfrm_algo *alg)
1531 {
1532 return sizeof(*alg) + ((alg->alg_key_len + 7) / 8);
1533 }
1534
1535 #ifdef CONFIG_XFRM_MIGRATE
1536 static inline struct xfrm_algo *xfrm_algo_clone(struct xfrm_algo *orig)
1537 {
1538 return kmemdup(orig, xfrm_alg_len(orig), GFP_KERNEL);
1539 }
1540
1541 static inline void xfrm_states_put(struct xfrm_state **states, int n)
1542 {
1543 int i;
1544 for (i = 0; i < n; i++)
1545 xfrm_state_put(*(states + i));
1546 }
1547
1548 static inline void xfrm_states_delete(struct xfrm_state **states, int n)
1549 {
1550 int i;
1551 for (i = 0; i < n; i++)
1552 xfrm_state_delete(*(states + i));
1553 }
1554 #endif
1555
1556 #ifdef CONFIG_XFRM
1557 static inline struct xfrm_state *xfrm_input_state(struct sk_buff *skb)
1558 {
1559 return skb->sp->xvec[skb->sp->len - 1];
1560 }
1561 #endif
1562
1563 #endif /* _NET_XFRM_H */