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ieee80211_crypto.h revision 1.6
      1  1.6  dyoung /*	$NetBSD: ieee80211_crypto.h,v 1.6 2005/07/26 22:57:26 dyoung Exp $	*/
      2  1.1  dyoung /*-
      3  1.1  dyoung  * Copyright (c) 2001 Atsushi Onoe
      4  1.3  dyoung  * Copyright (c) 2002-2005 Sam Leffler, Errno Consulting
      5  1.1  dyoung  * All rights reserved.
      6  1.1  dyoung  *
      7  1.1  dyoung  * Redistribution and use in source and binary forms, with or without
      8  1.1  dyoung  * modification, are permitted provided that the following conditions
      9  1.1  dyoung  * are met:
     10  1.1  dyoung  * 1. Redistributions of source code must retain the above copyright
     11  1.1  dyoung  *    notice, this list of conditions and the following disclaimer.
     12  1.1  dyoung  * 2. Redistributions in binary form must reproduce the above copyright
     13  1.1  dyoung  *    notice, this list of conditions and the following disclaimer in the
     14  1.1  dyoung  *    documentation and/or other materials provided with the distribution.
     15  1.1  dyoung  * 3. The name of the author may not be used to endorse or promote products
     16  1.1  dyoung  *    derived from this software without specific prior written permission.
     17  1.1  dyoung  *
     18  1.1  dyoung  * Alternatively, this software may be distributed under the terms of the
     19  1.1  dyoung  * GNU General Public License ("GPL") version 2 as published by the Free
     20  1.1  dyoung  * Software Foundation.
     21  1.1  dyoung  *
     22  1.1  dyoung  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     23  1.1  dyoung  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     24  1.1  dyoung  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     25  1.1  dyoung  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     26  1.1  dyoung  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     27  1.1  dyoung  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     28  1.1  dyoung  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     29  1.1  dyoung  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     30  1.1  dyoung  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     31  1.1  dyoung  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     32  1.1  dyoung  *
     33  1.5  dyoung  * $FreeBSD: src/sys/net80211/ieee80211_crypto.h,v 1.9 2005/06/10 16:11:24 sam Exp $
     34  1.1  dyoung  */
     35  1.1  dyoung #ifndef _NET80211_IEEE80211_CRYPTO_H_
     36  1.1  dyoung #define _NET80211_IEEE80211_CRYPTO_H_
     37  1.1  dyoung 
     38  1.1  dyoung /*
     39  1.1  dyoung  * 802.11 protocol crypto-related definitions.
     40  1.1  dyoung  */
     41  1.1  dyoung #define	IEEE80211_KEYBUF_SIZE	16
     42  1.3  dyoung #define	IEEE80211_MICBUF_SIZE	(8+8)	/* space for both tx+rx keys */
     43  1.1  dyoung 
     44  1.3  dyoung /*
     45  1.3  dyoung  * Old WEP-style key.  Deprecated.
     46  1.3  dyoung  */
     47  1.1  dyoung struct ieee80211_wepkey {
     48  1.3  dyoung 	u_int		wk_len;		/* key length in bytes */
     49  1.3  dyoung 	u_int8_t	wk_key[IEEE80211_KEYBUF_SIZE];
     50  1.3  dyoung };
     51  1.3  dyoung 
     52  1.3  dyoung struct ieee80211_cipher;
     53  1.3  dyoung 
     54  1.3  dyoung /*
     55  1.3  dyoung  * Crypto key state.  There is sufficient room for all supported
     56  1.3  dyoung  * ciphers (see below).  The underlying ciphers are handled
     57  1.3  dyoung  * separately through loadable cipher modules that register with
     58  1.3  dyoung  * the generic crypto support.  A key has a reference to an instance
     59  1.3  dyoung  * of the cipher; any per-key state is hung off wk_private by the
     60  1.3  dyoung  * cipher when it is attached.  Ciphers are automatically called
     61  1.3  dyoung  * to detach and cleanup any such state when the key is deleted.
     62  1.3  dyoung  *
     63  1.3  dyoung  * The generic crypto support handles encap/decap of cipher-related
     64  1.3  dyoung  * frame contents for both hardware- and software-based implementations.
     65  1.3  dyoung  * A key requiring software crypto support is automatically flagged and
     66  1.3  dyoung  * the cipher is expected to honor this and do the necessary work.
     67  1.3  dyoung  * Ciphers such as TKIP may also support mixed hardware/software
     68  1.3  dyoung  * encrypt/decrypt and MIC processing.
     69  1.3  dyoung  */
     70  1.3  dyoung /* XXX need key index typedef */
     71  1.3  dyoung /* XXX pack better? */
     72  1.3  dyoung /* XXX 48-bit rsc/tsc */
     73  1.3  dyoung struct ieee80211_key {
     74  1.3  dyoung 	u_int8_t	wk_keylen;	/* key length in bytes */
     75  1.3  dyoung 	u_int8_t	wk_flags;
     76  1.3  dyoung #define	IEEE80211_KEY_XMIT	0x01	/* key used for xmit */
     77  1.3  dyoung #define	IEEE80211_KEY_RECV	0x02	/* key used for recv */
     78  1.3  dyoung #define	IEEE80211_KEY_GROUP	0x04	/* key used for WPA group operation */
     79  1.3  dyoung #define	IEEE80211_KEY_SWCRYPT	0x10	/* host-based encrypt/decrypt */
     80  1.3  dyoung #define	IEEE80211_KEY_SWMIC	0x20	/* host-based enmic/demic */
     81  1.3  dyoung 	u_int16_t	wk_keyix;	/* key index */
     82  1.3  dyoung 	u_int8_t	wk_key[IEEE80211_KEYBUF_SIZE+IEEE80211_MICBUF_SIZE];
     83  1.3  dyoung #define	wk_txmic	wk_key+IEEE80211_KEYBUF_SIZE+0	/* XXX can't () right */
     84  1.3  dyoung #define	wk_rxmic	wk_key+IEEE80211_KEYBUF_SIZE+8	/* XXX can't () right */
     85  1.3  dyoung 	u_int64_t	wk_keyrsc;	/* key receive sequence counter */
     86  1.3  dyoung 	u_int64_t	wk_keytsc;	/* key transmit sequence counter */
     87  1.3  dyoung 	const struct ieee80211_cipher *wk_cipher;
     88  1.3  dyoung 	void		*wk_private;	/* private cipher state */
     89  1.3  dyoung };
     90  1.3  dyoung #define	IEEE80211_KEY_COMMON 		/* common flags passed in by apps */\
     91  1.3  dyoung 	(IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV | IEEE80211_KEY_GROUP)
     92  1.3  dyoung 
     93  1.3  dyoung /*
     94  1.3  dyoung  * NB: these values are ordered carefully; there are lots of
     95  1.3  dyoung  * of implications in any reordering.  In particular beware
     96  1.3  dyoung  * that 4 is not used to avoid conflicting with IEEE80211_F_PRIVACY.
     97  1.3  dyoung  */
     98  1.3  dyoung #define	IEEE80211_CIPHER_WEP		0
     99  1.3  dyoung #define	IEEE80211_CIPHER_TKIP		1
    100  1.3  dyoung #define	IEEE80211_CIPHER_AES_OCB	2
    101  1.3  dyoung #define	IEEE80211_CIPHER_AES_CCM	3
    102  1.3  dyoung #define	IEEE80211_CIPHER_CKIP		5
    103  1.3  dyoung #define	IEEE80211_CIPHER_NONE		6	/* pseudo value */
    104  1.3  dyoung 
    105  1.3  dyoung #define	IEEE80211_CIPHER_MAX		(IEEE80211_CIPHER_NONE+1)
    106  1.3  dyoung 
    107  1.3  dyoung #define	IEEE80211_KEYIX_NONE	((u_int16_t) -1)
    108  1.4     erh #define	IEEE80211_KEY_UNDEFINED(k)	((k).wk_cipher == &ieee80211_cipher_none)
    109  1.3  dyoung 
    110  1.3  dyoung #if defined(__KERNEL__) || defined(_KERNEL)
    111  1.3  dyoung 
    112  1.3  dyoung struct ieee80211com;
    113  1.3  dyoung struct ieee80211_node;
    114  1.3  dyoung struct mbuf;
    115  1.3  dyoung 
    116  1.3  dyoung /*
    117  1.3  dyoung  * Crypto state kept in each ieee80211com.  Some of this
    118  1.3  dyoung  * can/should be shared when virtual AP's are supported.
    119  1.3  dyoung  *
    120  1.3  dyoung  * XXX save reference to ieee80211com to properly encapsulate state.
    121  1.3  dyoung  * XXX split out crypto capabilities from ic_caps
    122  1.3  dyoung  */
    123  1.3  dyoung struct ieee80211_crypto_state {
    124  1.3  dyoung 	struct ieee80211_key	cs_nw_keys[IEEE80211_WEP_NKID];
    125  1.3  dyoung 	u_int16_t		cs_def_txkey;	/* default/group tx key index */
    126  1.3  dyoung 
    127  1.3  dyoung 	int			(*cs_key_alloc)(struct ieee80211com *,
    128  1.3  dyoung 					const struct ieee80211_key *);
    129  1.3  dyoung 	int			(*cs_key_delete)(struct ieee80211com *,
    130  1.3  dyoung 					const struct ieee80211_key *);
    131  1.3  dyoung 	int			(*cs_key_set)(struct ieee80211com *,
    132  1.3  dyoung 					const struct ieee80211_key *,
    133  1.3  dyoung 					const u_int8_t mac[IEEE80211_ADDR_LEN]);
    134  1.3  dyoung 	void			(*cs_key_update_begin)(struct ieee80211com *);
    135  1.3  dyoung 	void			(*cs_key_update_end)(struct ieee80211com *);
    136  1.3  dyoung };
    137  1.3  dyoung 
    138  1.3  dyoung void	ieee80211_crypto_attach(struct ieee80211com *);
    139  1.3  dyoung void	ieee80211_crypto_detach(struct ieee80211com *);
    140  1.3  dyoung int	ieee80211_crypto_newkey(struct ieee80211com *,
    141  1.3  dyoung 		int cipher, int flags, struct ieee80211_key *);
    142  1.3  dyoung int	ieee80211_crypto_delkey(struct ieee80211com *,
    143  1.3  dyoung 		struct ieee80211_key *);
    144  1.3  dyoung int	ieee80211_crypto_setkey(struct ieee80211com *,
    145  1.3  dyoung 		struct ieee80211_key *, const u_int8_t macaddr[IEEE80211_ADDR_LEN]);
    146  1.3  dyoung void	ieee80211_crypto_delglobalkeys(struct ieee80211com *);
    147  1.3  dyoung 
    148  1.3  dyoung /*
    149  1.3  dyoung  * Template for a supported cipher.  Ciphers register with the
    150  1.3  dyoung  * crypto code and are typically loaded as separate modules
    151  1.3  dyoung  * (the null cipher is always present).
    152  1.3  dyoung  * XXX may need refcnts
    153  1.3  dyoung  */
    154  1.3  dyoung struct ieee80211_cipher {
    155  1.3  dyoung 	const char *ic_name;		/* printable name */
    156  1.3  dyoung 	u_int	ic_cipher;		/* IEEE80211_CIPHER_* */
    157  1.3  dyoung 	u_int	ic_header;		/* size of privacy header (bytes) */
    158  1.3  dyoung 	u_int	ic_trailer;		/* size of privacy trailer (bytes) */
    159  1.3  dyoung 	u_int	ic_miclen;		/* size of mic trailer (bytes) */
    160  1.3  dyoung 	void*	(*ic_attach)(struct ieee80211com *, struct ieee80211_key *);
    161  1.3  dyoung 	void	(*ic_detach)(struct ieee80211_key *);
    162  1.3  dyoung 	int	(*ic_setkey)(struct ieee80211_key *);
    163  1.3  dyoung 	int	(*ic_encap)(struct ieee80211_key *, struct mbuf *,
    164  1.3  dyoung 			u_int8_t keyid);
    165  1.5  dyoung 	int	(*ic_decap)(struct ieee80211_key *, struct mbuf *, int);
    166  1.5  dyoung 	int	(*ic_enmic)(struct ieee80211_key *, struct mbuf *, int);
    167  1.5  dyoung 	int	(*ic_demic)(struct ieee80211_key *, struct mbuf *, int);
    168  1.1  dyoung };
    169  1.3  dyoung extern	const struct ieee80211_cipher ieee80211_cipher_none;
    170  1.3  dyoung extern	const struct ieee80211_cipher ieee80211_cipher_wep;
    171  1.3  dyoung extern	const struct ieee80211_cipher ieee80211_cipher_tkip;
    172  1.3  dyoung extern	const struct ieee80211_cipher ieee80211_cipher_ccmp;
    173  1.3  dyoung 
    174  1.3  dyoung void	ieee80211_crypto_register(const struct ieee80211_cipher *);
    175  1.3  dyoung void	ieee80211_crypto_unregister(const struct ieee80211_cipher *);
    176  1.3  dyoung int	ieee80211_crypto_available(u_int cipher);
    177  1.1  dyoung 
    178  1.3  dyoung struct ieee80211_key *ieee80211_crypto_encap(struct ieee80211com *,
    179  1.3  dyoung 		struct ieee80211_node *, struct mbuf *);
    180  1.3  dyoung struct ieee80211_key *ieee80211_crypto_decap(struct ieee80211com *,
    181  1.5  dyoung 		struct ieee80211_node *, struct mbuf *, int);
    182  1.3  dyoung 
    183  1.3  dyoung /*
    184  1.3  dyoung  * Check and remove any MIC.
    185  1.3  dyoung  */
    186  1.3  dyoung static __inline int
    187  1.3  dyoung ieee80211_crypto_demic(struct ieee80211com *ic, struct ieee80211_key *k,
    188  1.5  dyoung 	struct mbuf *m, int force)
    189  1.3  dyoung {
    190  1.3  dyoung 	const struct ieee80211_cipher *cip = k->wk_cipher;
    191  1.5  dyoung 	return (cip->ic_miclen > 0 ? cip->ic_demic(k, m, force) : 1);
    192  1.3  dyoung }
    193  1.3  dyoung 
    194  1.3  dyoung /*
    195  1.3  dyoung  * Add any MIC.
    196  1.3  dyoung  */
    197  1.3  dyoung static __inline int
    198  1.3  dyoung ieee80211_crypto_enmic(struct ieee80211com *ic,
    199  1.5  dyoung 	struct ieee80211_key *k, struct mbuf *m, int force)
    200  1.3  dyoung {
    201  1.3  dyoung 	const struct ieee80211_cipher *cip = k->wk_cipher;
    202  1.5  dyoung 	return (cip->ic_miclen > 0 ? cip->ic_enmic(k, m, force) : 1);
    203  1.3  dyoung }
    204  1.3  dyoung 
    205  1.3  dyoung /*
    206  1.3  dyoung  * Reset key state to an unused state.  The crypto
    207  1.3  dyoung  * key allocation mechanism insures other state (e.g.
    208  1.3  dyoung  * key data) is properly setup before a key is used.
    209  1.3  dyoung  */
    210  1.3  dyoung static __inline void
    211  1.3  dyoung ieee80211_crypto_resetkey(struct ieee80211com *ic,
    212  1.3  dyoung 	struct ieee80211_key *k, u_int16_t ix)
    213  1.3  dyoung {
    214  1.3  dyoung 	k->wk_cipher = &ieee80211_cipher_none;;
    215  1.3  dyoung 	k->wk_private = k->wk_cipher->ic_attach(ic, k);
    216  1.3  dyoung 	k->wk_keyix = ix;
    217  1.3  dyoung 	k->wk_flags = IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV;
    218  1.3  dyoung }
    219  1.3  dyoung 
    220  1.3  dyoung /*
    221  1.3  dyoung  * Crypt-related notification methods.
    222  1.3  dyoung  */
    223  1.3  dyoung void	ieee80211_notify_replay_failure(struct ieee80211com *,
    224  1.3  dyoung 		const struct ieee80211_frame *, const struct ieee80211_key *,
    225  1.3  dyoung 		u_int64_t rsc);
    226  1.3  dyoung void	ieee80211_notify_michael_failure(struct ieee80211com *,
    227  1.3  dyoung 		const struct ieee80211_frame *, u_int keyix);
    228  1.3  dyoung #endif /* defined(__KERNEL__) || defined(_KERNEL) */
    229  1.1  dyoung #endif /* _NET80211_IEEE80211_CRYPTO_H_ */
    230