ip_ipsp.h revision 1.56
1/*	$OpenBSD: ip_ipsp.h,v 1.56 2000/01/13 00:34:31 angelos Exp $	*/
2
3/*
4 * The authors of this code are John Ioannidis (ji@tla.org),
5 * Angelos D. Keromytis (kermit@csd.uch.gr),
6 * Niels Provos (provos@physnet.uni-hamburg.de) and
7 * Niklas Hallqvist (niklas@appli.se).
8 *
9 * This code was written by John Ioannidis for BSD/OS in Athens, Greece,
10 * in November 1995.
11 *
12 * Ported to OpenBSD and NetBSD, with additional transforms, in December 1996,
13 * by Angelos D. Keromytis.
14 *
15 * Additional transforms and features in 1997 and 1998 by Angelos D. Keromytis
16 * and Niels Provos.
17 *
18 * Additional features in 1999 by Angelos D. Keromytis and Niklas Hallqvist.
19 *
20 * Copyright (c) 1995, 1996, 1997, 1998, 1999 by John Ioannidis,
21 * Angelos D. Keromytis and Niels Provos.
22 * Copyright (c) 1999 Niklas Hallqvist.
23 *
24 * Permission to use, copy, and modify this software without fee
25 * is hereby granted, provided that this entire notice is included in
26 * all copies of any software which is or includes a copy or
27 * modification of this software.
28 * You may use this code under the GNU public license if you so wish. Please
29 * contribute changes back to the authors under this freer than GPL license
30 * so that we may further the use of strong encryption without limitations to
31 * all.
32 *
33 * THIS SOFTWARE IS BEING PROVIDED "AS IS", WITHOUT ANY EXPRESS OR
34 * IMPLIED WARRANTY. IN PARTICULAR, NONE OF THE AUTHORS MAKES ANY
35 * REPRESENTATION OR WARRANTY OF ANY KIND CONCERNING THE
36 * MERCHANTABILITY OF THIS SOFTWARE OR ITS FITNESS FOR ANY PARTICULAR
37 * PURPOSE.
38 */
39
40#ifndef _NETINET_IPSP_H_
41#define _NETINET_IPSP_H_
42
43/*
44 * IPSP global definitions.
45 */
46
47#include <sys/types.h>
48#include <sys/queue.h>
49#include <netinet/in.h>
50#include <sys/md5k.h>
51#include <netinet/ip_sha1.h>
52#include <netinet/ip_rmd160.h>
53#include <netinet/ip_blf.h>
54#include <netinet/ip_cast.h>
55#include <netinet/ip_skipjack.h>
56
57union sockaddr_union
58{
59    struct sockaddr     sa;
60    struct sockaddr_in  sin;
61    struct sockaddr_in6 sin6;
62};
63
64#define FLOW_EGRESS             0
65#define FLOW_INGRESS            1
66
67/* HMAC key sizes */
68#define MD5HMAC96_KEYSIZE       16
69#define SHA1HMAC96_KEYSIZE      20
70#define RIPEMD160HMAC96_KEYSIZE 20
71
72/* IV lengths */
73#define ESP_DES_IVS		8
74#define ESP_3DES_IVS		8
75#define ESP_BLF_IVS             8
76#define ESP_CAST_IVS            8
77#define ESP_SKIPJACK_IVS	8
78#define ESP_MAX_IVS		8       /* Keep updated */
79
80/* Block sizes -- it is assumed that they're powers of 2 */
81#define ESP_DES_BLKS		8
82#define ESP_3DES_BLKS		8
83#define ESP_BLF_BLKS            8
84#define ESP_CAST_BLKS           8
85#define ESP_SKIPJACK_BLKS	8
86#define ESP_MAX_BLKS            8       /* Keep updated */
87
88#define HMAC_BLOCK_LEN		64
89
90#define AH_HMAC_HASHLEN		12	/* 96 bits of authenticator */
91#define AH_HMAC_RPLENGTH        4	/* 32 bits of replay counter */
92#define AH_HMAC_INITIAL_RPL	1	/* Replay counter initial value */
93
94/* HMAC definitions */
95#define HMAC_IPAD_VAL           0x36
96#define HMAC_OPAD_VAL           0x5C
97#define HMAC_BLOCK_LEN          64
98
99/* Authenticator lengths */
100#define AH_MD5_ALEN		16
101#define AH_SHA1_ALEN		20
102#define AH_RMD160_ALEN		20
103#define AH_ALEN_MAX		20 	/* Keep updated */
104
105/* Reserved SPI numbers */
106#define SPI_LOCAL_USE		0
107#define SPI_RESERVED_MIN	1
108#define SPI_RESERVED_MAX	255
109
110/* sysctl default values */
111#define IPSEC_DEFAULT_EMBRYONIC_SA_TIMEOUT	60	/* 1 minute */
112#define IPSEC_DEFAULT_PFS                       1
113#define IPSEC_DEFAULT_SOFT_ALLOCATIONS          0
114#define IPSEC_DEFAULT_EXP_ALLOCATIONS           0
115#define IPSEC_DEFAULT_SOFT_BYTES                0
116#define IPSEC_DEFAULT_EXP_BYTES                 0
117#define IPSEC_DEFAULT_SOFT_TIMEOUT              80000
118#define IPSEC_DEFAULT_EXP_TIMEOUT               86400
119#define IPSEC_DEFAULT_SOFT_FIRST_USE            3600
120#define IPSEC_DEFAULT_EXP_FIRST_USE             7200
121#define IPSEC_DEFAULT_DEF_ENC                   "3des"
122#define IPSEC_DEFAULT_DEF_AUTH                   "hmac-sha1"
123
124struct sockaddr_encap
125{
126    u_int8_t	sen_len;		/* length */
127    u_int8_t	sen_family;		/* PF_KEY */
128    u_int16_t	sen_type;		/* see SENT_* */
129    union
130    {
131	u_int8_t	Data[16];	/* other stuff mapped here */
132
133	struct				/* SENT_IP4 */
134	{
135	    struct in_addr Src;
136	    struct in_addr Dst;
137	    u_int16_t Sport;
138	    u_int16_t Dport;
139	    u_int8_t Proto;
140	    u_int8_t Filler[3];
141	} Sip4;
142
143	struct				/* SENT_IP6 */
144	{
145	    struct in6_addr Src;
146	    struct in6_addr Dst;
147	    u_int16_t Sport;
148	    u_int16_t Dport;
149	    u_int8_t Proto;
150	    u_int8_t Filler[3];
151	} Sip6;
152
153	struct				/* SENT_IPSP */
154	{
155	    struct in_addr Dst;
156	    u_int32_t Spi;
157	    u_int8_t Sproto;
158	    u_int8_t Filler[7];
159	} Sipsp;
160
161	struct				/* SENT_IPSP6 */
162	{
163	    struct in6_addr Dst;
164	    u_int32_t Spi;
165	    u_int8_t Sproto;
166	    u_int8_t Filler[7];
167	} Sipsp6;
168    } Sen;
169};
170
171#define sen_data	  Sen.Data
172#define sen_ip_src	  Sen.Sip4.Src
173#define sen_ip_dst	  Sen.Sip4.Dst
174#define sen_proto	  Sen.Sip4.Proto
175#define sen_sport	  Sen.Sip4.Sport
176#define sen_dport	  Sen.Sip4.Dport
177#define sen_ip6_src	  Sen.Sip6.Src
178#define sen_ip6_dst	  Sen.Sip6.Dst
179#define sen_ip6_proto	  Sen.Sip6.Proto
180#define sen_ip6_sport	  Sen.Sip6.Sport
181#define sen_ip6_dport	  Sen.Sip6.Dport
182#define sen_ipsp_dst	  Sen.Sipsp.Dst
183#define sen_ipsp_spi	  Sen.Sipsp.Spi
184#define sen_ipsp_sproto	  Sen.Sipsp.Sproto
185#define sen_ipsp6_dst	  Sen.Sipsp6.Dst
186#define sen_ipsp6_spi	  Sen.Sipsp6.Spi
187#define sen_ipsp6_sproto  Sen.Sipsp6.Sproto
188
189/*
190 * The "type" is really part of the address as far as the routing
191 * system is concerned. By using only one bit in the type field
192 * for each type, we sort-of make sure that different types of
193 * encapsulation addresses won't be matched against the wrong type.
194 *
195 */
196
197#define SENT_IP4	0x0001		/* data is two struct in_addr */
198#define SENT_IPSP	0x0002		/* data as in IP4/6 plus SPI */
199#define SENT_IP6        0x0004
200#define SENT_IPSP6      0x0008
201
202/*
203 * SENT_HDRLEN is the length of the "header"
204 * SENT_*_LEN are the lengths of various forms of sen_data
205 * SENT_*_OFF are the offsets in the sen_data array of various fields
206 */
207
208#define SENT_HDRLEN	(2 * sizeof(u_int8_t) + sizeof(u_int16_t))
209
210#define SENT_IP4_SRCOFF	(0)
211#define SENT_IP4_DSTOFF (sizeof (struct in_addr))
212
213#define SENT_IP6_SRCOFF (0)
214#define SENT_IP6_DSTOFF (sizeof (struct in6_addr))
215
216#define SENT_IP4_LEN	20
217#define SENT_IPSP_LEN	20
218#define SENT_IP6_LEN    44
219#define SENT_IPSP6_LEN  32
220
221#define NOTIFY_SOFT_EXPIRE      0       /* Soft expiration of SA */
222#define NOTIFY_HARD_EXPIRE      1       /* Hard expiration of SA */
223#define NOTIFY_REQUEST_SA       2       /* Establish an SA */
224
225#define NOTIFY_SATYPE_CONF      1       /* SA should do encryption */
226#define NOTIFY_SATYPE_AUTH      2       /* SA should do authentication */
227#define NOTIFY_SATYPE_TUNNEL    4       /* SA should use tunneling */
228
229/*
230 * For encapsulation routes are possible not only for the destination
231 * address but also for the protocol, source and destination ports
232 * if available
233 */
234
235struct route_enc {
236    struct rtentry *re_rt;
237    struct sockaddr_encap re_dst;
238};
239
240struct flow
241{
242    struct flow          *flow_next;	/* Next in flow chain */
243    struct flow          *flow_prev;	/* Previous in flow chain */
244    struct tdb           *flow_sa;	/* Pointer to the SA */
245    union sockaddr_union  flow_src;   	/* Source address */
246    union sockaddr_union  flow_srcmask; /* Source netmask */
247    union sockaddr_union  flow_dst;	/* Destination address */
248    union sockaddr_union  flow_dstmask;	/* Destination netmask */
249    u_int8_t	          flow_proto;	/* Transport protocol, if applicable */
250    u_int8_t	          foo[3];	/* Alignment */
251};
252
253struct tdb				/* tunnel descriptor block */
254{
255    struct tdb	     *tdb_hnext;  	/* Next in hash chain */
256    struct tdb	     *tdb_onext;        /* Next in output */
257    struct tdb	     *tdb_inext;        /* Previous in output */
258
259    struct xformsw   *tdb_xform;	/* Transformation to use */
260    struct enc_xform *tdb_encalgxform;  /* Encryption algorithm xform */
261    struct auth_hash *tdb_authalgxform; /* Authentication algorithm xform */
262
263#define TDBF_UNIQUE	      0x00001	/* This should not be used by others */
264#define TDBF_TIMER            0x00002	/* Absolute expiration timer in use */
265#define TDBF_BYTES            0x00004	/* Check the byte counters */
266#define TDBF_ALLOCATIONS      0x00008	/* Check the flows counters */
267#define TDBF_INVALID          0x00010	/* This SPI is not valid yet/anymore */
268#define TDBF_FIRSTUSE         0x00020	/* Expire after first use */
269#define TDBF_HALFIV           0x00040   /* Use half-length IV (ESP old only) */
270#define TDBF_SOFT_TIMER       0x00080	/* Soft expiration */
271#define TDBF_SOFT_BYTES       0x00100	/* Soft expiration */
272#define TDBF_SOFT_ALLOCATIONS 0x00200	/* Soft expiration */
273#define TDBF_SOFT_FIRSTUSE    0x00400	/* Soft expiration */
274#define TDBF_PFS              0x00800	/* Ask for PFS from Key Mgmt. */
275#define TDBF_TUNNELING        0x01000	/* Force IP-IP encapsulation */
276    u_int32_t	      tdb_flags;  	/* Flags related to this TDB */
277
278    TAILQ_ENTRY(tdb)  tdb_expnext;	/* Expiration cluster list link */
279    TAILQ_ENTRY(tdb)  tdb_explink;	/* Expiration ordered list link */
280
281    u_int32_t         tdb_exp_allocations;  /* Expire after so many flows */
282    u_int32_t         tdb_soft_allocations; /* Expiration warning */
283    u_int32_t         tdb_cur_allocations;  /* Total number of allocations */
284
285    u_int64_t         tdb_exp_bytes;    /* Expire after so many bytes passed */
286    u_int64_t         tdb_soft_bytes;	/* Expiration warning */
287    u_int64_t         tdb_cur_bytes;	/* Current count of bytes */
288
289    u_int64_t         tdb_exp_timeout;	/* When does the SPI expire */
290    u_int64_t         tdb_soft_timeout;	/* Send a soft-expire warning */
291    u_int64_t         tdb_established;	/* When was the SPI established */
292    u_int64_t	      tdb_timeout;	/* Next absolute expiration time.  */
293
294    u_int64_t	      tdb_first_use;	  /* When was it first used */
295    u_int64_t         tdb_soft_first_use; /* Soft warning */
296    u_int64_t         tdb_exp_first_use;  /* Expire if tdb_first_use +
297					   * tdb_exp_first_use <= curtime */
298
299    u_int32_t	      tdb_spi;    	/* SPI */
300    u_int16_t         tdb_amxkeylen;    /* AH-old only */
301    u_int16_t         tdb_ivlen;        /* IV length */
302    u_int8_t	      tdb_sproto;	/* IPsec protocol */
303    u_int8_t          tdb_wnd;          /* Replay window */
304    u_int8_t          tdb_satype;       /* SA type (RFC2367, PF_KEY) */
305    u_int8_t          tdb_FILLER;       /* Padding */
306
307    union sockaddr_union tdb_dst;	/* Destination address for this SA */
308    union sockaddr_union tdb_src;	/* Source address for this SA */
309    union sockaddr_union tdb_proxy;
310
311    u_int8_t         *tdb_key;          /* Key material (schedules) */
312    u_int8_t         *tdb_ictx;         /* Authentication contexts */
313    u_int8_t         *tdb_octx;
314    u_int8_t         *tdb_srcid;        /* Source ID for this SA */
315    u_int8_t         *tdb_dstid;        /* Destination ID for this SA */
316    u_int8_t         *tdb_amxkey;       /* AH-old only */
317
318    union
319    {
320	u_int8_t  Iv[ESP_3DES_IVS];     /* That's enough space */
321	u_int32_t Ivl;        	        /* Make sure this is 4 bytes */
322	u_int64_t Ivq; 		        /* Make sure this is 8 bytes! */
323    }IV;
324#define tdb_iv  IV.Iv
325#define tdb_ivl IV.Ivl
326#define tdb_ivq IV.Ivq
327
328    u_int32_t         tdb_rpl;	        /* Replay counter */
329    u_int32_t         tdb_bitmap;       /* Used for replay sliding window */
330    u_int32_t         tdb_initial;	/* Initial replay value */
331
332    u_int32_t         tdb_epoch;	/* Used by the kernfs interface */
333    u_int16_t         tdb_srcid_len;
334    u_int16_t         tdb_dstid_len;
335    u_int16_t         tdb_srcid_type;
336    u_int16_t         tdb_dstid_type;
337
338    caddr_t           tdb_interface;
339    struct flow	     *tdb_flow; 	/* Which outboind flows use this SA */
340    struct flow	     *tdb_access;	/* Ingress access control */
341
342    struct tdb       *tdb_bind_out;	/* Outgoing SA to use */
343    TAILQ_HEAD(tdb_bind_head, tdb) tdb_bind_in;
344    TAILQ_ENTRY(tdb)  tdb_bind_in_next;	/* Refering Incoming SAs */
345    TAILQ_HEAD(tdb_inp_head, inpcb) tdb_inp;
346};
347
348union authctx_old {
349    MD5_CTX md5ctx;
350    SHA1_CTX sha1ctx;
351};
352
353union authctx {
354    MD5_CTX md5ctx;
355    SHA1_CTX sha1ctx;
356    RMD160_CTX rmd160ctx;
357};
358
359struct tdb_ident {
360    u_int32_t spi;
361    union sockaddr_union dst;
362    u_int8_t proto;
363};
364
365struct auth_hash {
366    int type;
367    char *name;
368    u_int16_t keysize;
369    u_int16_t hashsize;
370    u_int16_t ctxsize;
371    void (*Init)(void *);
372    void (*Update)(void *, u_int8_t *, u_int16_t);
373    void (*Final)(u_int8_t *, void *);
374};
375
376struct enc_xform {
377    int type;
378    char *name;
379    u_int16_t blocksize, ivsize;
380    u_int16_t minkey, maxkey;
381    u_int32_t ivmask;           /* Or all possible modes, zero iv = 1 */
382    void (*encrypt)(struct tdb *, u_int8_t *);
383    void (*decrypt)(struct tdb *, u_int8_t *);
384    void (*setkey)(u_int8_t **, u_int8_t *, int len);
385    void (*zerokey)(u_int8_t **);
386};
387
388struct ipsecinit
389{
390    u_int8_t       *ii_enckey;
391    u_int8_t       *ii_authkey;
392    u_int16_t       ii_enckeylen;
393    u_int16_t       ii_authkeylen;
394    u_int8_t        ii_encalg;
395    u_int8_t        ii_authalg;
396};
397
398struct xformsw
399{
400    u_short		xf_type;	/* Unique ID of xform */
401    u_short		xf_flags;	/* flags (see below) */
402    char		*xf_name;	/* human-readable name */
403    int		(*xf_attach)(void);	/* called at config time */
404    int		(*xf_init)(struct tdb *, struct xformsw *, struct ipsecinit *);
405    int		(*xf_zeroize)(struct tdb *); /* termination */
406    struct mbuf 	*(*xf_input)(struct mbuf *, struct tdb *, int, int); /* input */
407    int		(*xf_output)(struct mbuf *, struct tdb *, struct mbuf **, int, int);        /* output */
408};
409
410/* xform IDs */
411#define XF_IP4		1	/* IP inside IP */
412#define XF_OLD_AH	2	/* RFCs 1828 & 1852 */
413#define XF_OLD_ESP	3	/* RFCs 1829 & 1851 */
414#define XF_NEW_AH	4	/* AH HMAC 96bits */
415#define XF_NEW_ESP	5	/* ESP + auth 96bits + replay counter */
416#define XF_TCPSIGNATURE	6	/* TCP MD5 Signature option, RFC 2358 */
417
418/* xform attributes */
419#define XFT_AUTH	0x0001
420#define XFT_CONF	0x0100
421
422#define IPSEC_ZEROES_SIZE	256	/* Larger than an IP6 extension hdr. */
423#define IPSEC_KERNFS_BUFSIZE    4096
424
425#if BYTE_ORDER == LITTLE_ENDIAN
426static __inline u_int64_t
427htonq(u_int64_t q)
428{
429    register u_int32_t u, l;
430    u = q >> 32;
431    l = (u_int32_t) q;
432
433    return htonl(u) | ((u_int64_t)htonl(l) << 32);
434}
435
436#define ntohq(_x) htonq(_x)
437
438#elif BYTE_ORDER == BIG_ENDIAN
439
440#define htonq(_x) (_x)
441#define ntohq(_x) htonq(_x)
442
443#else
444#error  "Please fix <machine/endian.h>"
445#endif
446
447#ifdef _KERNEL
448
449/*
450 * Protects all tdb lists.
451 * Must at least be splsoftnet (note: do not use splsoftclock as it is
452 * special on some architectures, assuming it is always an spl lowering
453 * operation).
454 */
455#define spltdb	splsoftnet
456
457extern int encdebug;
458extern int ipsec_acl;
459extern int ipsec_keep_invalid;
460extern int ipsec_in_use;
461extern int ipsec_require_pfs;
462
463extern u_int8_t hmac_ipad_buffer[64];
464extern u_int8_t hmac_opad_buffer[64];
465extern int ipsec_soft_allocations;
466extern int ipsec_exp_allocations;
467extern int ipsec_soft_bytes;
468extern int ipsec_exp_bytes;
469extern int ipsec_soft_timeout;
470extern int ipsec_exp_timeout;
471extern int ipsec_soft_first_use;
472extern int ipsec_exp_first_use;
473extern char ipsec_def_enc[];
474extern char ipsec_def_auth[];
475
476extern struct enc_xform enc_xform_des;
477extern struct enc_xform enc_xform_3des;
478extern struct enc_xform enc_xform_blf;
479extern struct enc_xform enc_xform_cast5;
480extern struct enc_xform enc_xform_skipjack;
481
482extern struct auth_hash auth_hash_hmac_md5_96;
483extern struct auth_hash auth_hash_hmac_sha1_96;
484extern struct auth_hash auth_hash_hmac_ripemd_160_96;
485
486extern TAILQ_HEAD(expclusterlist_head, tdb) expclusterlist;
487extern TAILQ_HEAD(explist_head, tdb) explist;
488extern struct xformsw xformsw[], *xformswNXFORMSW;
489
490/* Check if a given tdb has encryption, authentication and/or tunneling */
491#define TDB_ATTRIB(x) (((x)->tdb_encalgxform ? NOTIFY_SATYPE_CONF : 0)| \
492		       ((x)->tdb_authalgxform ? NOTIFY_SATYPE_AUTH : 0))
493
494/* Traverse spi chain and get attributes */
495
496#define SPI_CHAIN_ATTRIB(have, TDB_DIR, TDBP) do {\
497	int s = spltdb(); \
498	struct tdb *tmptdb = (TDBP); \
499	\
500	(have) = 0; \
501	while (tmptdb && tmptdb->tdb_xform) { \
502	        if (tmptdb == NULL || tmptdb->tdb_flags & TDBF_INVALID) \
503	                break; \
504                (have) |= TDB_ATTRIB(tmptdb); \
505                tmptdb = tmptdb->TDB_DIR; \
506        } \
507	splx(s); \
508} while (0)
509
510/* Misc. */
511extern char *inet_ntoa4(struct in_addr);
512
513#ifdef INET6
514extern char *inet6_ntoa4(struct in6_addr);
515#endif /* INET6 */
516
517extern char *ipsp_address(union sockaddr_union);
518
519/* TDB management routines */
520extern void tdb_add_inp(struct tdb *tdb, struct inpcb *inp);
521extern u_int32_t reserve_spi(u_int32_t, u_int32_t, union sockaddr_union *,
522			     union sockaddr_union *, u_int8_t, int *);
523extern struct tdb *gettdb(u_int32_t, union sockaddr_union *, u_int8_t);
524extern void puttdb(struct tdb *);
525extern void tdb_delete(struct tdb *, int, int);
526extern int tdb_init(struct tdb *, u_int16_t, struct ipsecinit *);
527extern void tdb_expiration(struct tdb *, int);
528/* Flag values for the last argument of tdb_expiration().  */
529#define TDBEXP_EARLY	1	/* The tdb is likely to end up early.  */
530#define TDBEXP_TIMEOUT	2	/* Maintain expiration timeout.  */
531extern int tdb_walk(int (*)(struct tdb *, void *), void *);
532extern void handle_expirations(void *);
533
534/* Flow management routines */
535extern struct flow *get_flow(void);
536extern void put_flow(struct flow *, struct tdb *, int);
537extern void delete_flow(struct flow *, struct tdb *, int);
538extern struct flow *find_flow(union sockaddr_union *, union sockaddr_union *,
539			      union sockaddr_union *, union sockaddr_union *,
540			      u_int8_t, struct tdb *, int);
541extern struct flow *find_global_flow(union sockaddr_union *,
542				     union sockaddr_union *,
543				     union sockaddr_union *,
544				     union sockaddr_union *, u_int8_t);
545
546/* XF_IP4 */
547extern int ipe4_attach(void);
548extern int ipe4_init(struct tdb *, struct xformsw *, struct ipsecinit *);
549extern int ipe4_zeroize(struct tdb *);
550extern int ipe4_output(struct mbuf *, struct tdb *, struct mbuf **, int, int);
551extern void ipe4_input __P((struct mbuf *, ...));
552extern void ip4_input __P((struct mbuf *, ...));
553
554/* XF_ETHERIP */
555extern int etherip_output(struct mbuf *, struct tdb *, struct mbuf **,
556			  int, int);
557extern void etherip_input __P((struct mbuf *, ...));
558
559/* XF_OLD_AH */
560extern int ah_old_attach(void);
561extern int ah_old_init(struct tdb *, struct xformsw *, struct ipsecinit *);
562extern int ah_old_zeroize(struct tdb *);
563extern int ah_old_output(struct mbuf *, struct tdb *, struct mbuf **,
564			 int, int);
565extern struct mbuf *ah_old_input(struct mbuf *, struct tdb *, int, int);
566
567/* XF_NEW_AH */
568extern int ah_new_attach(void);
569extern int ah_new_init(struct tdb *, struct xformsw *, struct ipsecinit *);
570extern int ah_new_zeroize(struct tdb *);
571extern int ah_new_output(struct mbuf *, struct tdb *, struct mbuf **,
572			 int, int);
573extern struct mbuf *ah_new_input(struct mbuf *, struct tdb *, int, int);
574
575/* XF_OLD_ESP */
576extern int esp_old_attach(void);
577extern int esp_old_init(struct tdb *, struct xformsw *, struct ipsecinit *);
578extern int esp_old_zeroize(struct tdb *);
579extern int esp_old_output(struct mbuf *, struct tdb *, struct mbuf **,
580			  int, int);
581extern struct mbuf *esp_old_input(struct mbuf *, struct tdb *, int, int);
582
583/* XF_NEW_ESP */
584extern int esp_new_attach(void);
585extern int esp_new_init(struct tdb *, struct xformsw *, struct ipsecinit *);
586extern int esp_new_zeroize(struct tdb *);
587extern int esp_new_output(struct mbuf *, struct tdb *, struct mbuf **,
588			  int, int);
589extern struct mbuf *esp_new_input(struct mbuf *, struct tdb *, int, int);
590
591/* XF_TCPSIGNATURE */
592extern int tcp_signature_tdb_attach __P((void));
593extern int tcp_signature_tdb_init __P((struct tdb *, struct xformsw *,
594				       struct ipsecinit *));
595extern int tcp_signature_tdb_zeroize __P((struct tdb *));
596extern struct mbuf *tcp_signature_tdb_input __P((struct mbuf *, struct tdb *, int, int));
597extern int tcp_signature_tdb_output __P((struct mbuf *, struct tdb *,
598					 struct mbuf **, int, int));
599
600/* Padding */
601extern caddr_t m_pad(struct mbuf *, int, int);
602
603/* Replay window */
604extern int checkreplaywindow32(u_int32_t, u_int32_t, u_int32_t *, u_int32_t,
605                               u_int32_t *);
606
607extern unsigned char ipseczeroes[];
608
609/* Packet processing */
610int ipsp_process_packet(struct mbuf *, struct mbuf **, struct tdb *,
611			int *, int);
612#endif /* _KERNEL */
613#endif /* _NETINET_IPSP_H_ */
614