Home | History | Annotate | Line # | Download | only in net80211
ieee80211_crypto_ccmp.c revision 1.13.2.2
      1  1.13.2.2  pgoyette /*	$NetBSD: ieee80211_crypto_ccmp.c,v 1.13.2.2 2018/09/06 06:56:44 pgoyette Exp $	*/
      2      1.13      maxv 
      3      1.13      maxv /*
      4       1.1    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       1.1    dyoung 
     34       1.1    dyoung #include <sys/cdefs.h>
     35       1.2    dyoung #ifdef __FreeBSD__
     36       1.3    dyoung __FBSDID("$FreeBSD: src/sys/net80211/ieee80211_crypto_ccmp.c,v 1.7 2005/07/11 03:06:23 sam Exp $");
     37       1.2    dyoung #endif
     38       1.2    dyoung #ifdef __NetBSD__
     39  1.13.2.2  pgoyette __KERNEL_RCSID(0, "$NetBSD: ieee80211_crypto_ccmp.c,v 1.13.2.2 2018/09/06 06:56:44 pgoyette Exp $");
     40       1.2    dyoung #endif
     41       1.1    dyoung 
     42       1.1    dyoung /*
     43       1.1    dyoung  * IEEE 802.11i AES-CCMP crypto support.
     44       1.1    dyoung  *
     45       1.1    dyoung  * Part of this module is derived from similar code in the Host
     46       1.1    dyoung  * AP driver. The code is used with the consent of the author and
     47      1.11       snj  * its license is included below.
     48       1.1    dyoung  */
     49       1.1    dyoung #include <sys/param.h>
     50       1.9  christos #include <sys/systm.h>
     51      1.13      maxv #include <sys/mbuf.h>
     52       1.1    dyoung #include <sys/malloc.h>
     53       1.1    dyoung #include <sys/kernel.h>
     54       1.1    dyoung 
     55       1.1    dyoung #include <sys/socket.h>
     56       1.1    dyoung 
     57       1.1    dyoung #include <net/if.h>
     58       1.5  christos #include <net/if_ether.h>
     59       1.1    dyoung #include <net/if_media.h>
     60       1.1    dyoung 
     61       1.1    dyoung #include <net80211/ieee80211_var.h>
     62       1.1    dyoung 
     63       1.1    dyoung #include <crypto/rijndael/rijndael.h>
     64       1.1    dyoung 
     65       1.1    dyoung #define AES_BLOCK_LEN 16
     66       1.1    dyoung 
     67       1.1    dyoung struct ccmp_ctx {
     68       1.1    dyoung 	struct ieee80211com *cc_ic;	/* for diagnostics */
     69      1.13      maxv 	rijndael_ctx cc_aes;
     70       1.1    dyoung };
     71       1.1    dyoung 
     72       1.1    dyoung static	void *ccmp_attach(struct ieee80211com *, struct ieee80211_key *);
     73       1.1    dyoung static	void ccmp_detach(struct ieee80211_key *);
     74       1.1    dyoung static	int ccmp_setkey(struct ieee80211_key *);
     75       1.1    dyoung static	int ccmp_encap(struct ieee80211_key *k, struct mbuf *, u_int8_t keyid);
     76       1.3    dyoung static	int ccmp_decap(struct ieee80211_key *, struct mbuf *, int);
     77       1.3    dyoung static	int ccmp_enmic(struct ieee80211_key *, struct mbuf *, int);
     78       1.3    dyoung static	int ccmp_demic(struct ieee80211_key *, struct mbuf *, int);
     79       1.1    dyoung 
     80       1.2    dyoung const struct ieee80211_cipher ieee80211_cipher_ccmp = {
     81       1.1    dyoung 	.ic_name	= "AES-CCM",
     82       1.1    dyoung 	.ic_cipher	= IEEE80211_CIPHER_AES_CCM,
     83       1.1    dyoung 	.ic_header	= IEEE80211_WEP_IVLEN + IEEE80211_WEP_KIDLEN +
     84       1.1    dyoung 			  IEEE80211_WEP_EXTIVLEN,
     85       1.1    dyoung 	.ic_trailer	= IEEE80211_WEP_MICLEN,
     86       1.1    dyoung 	.ic_miclen	= 0,
     87       1.1    dyoung 	.ic_attach	= ccmp_attach,
     88       1.1    dyoung 	.ic_detach	= ccmp_detach,
     89       1.1    dyoung 	.ic_setkey	= ccmp_setkey,
     90       1.1    dyoung 	.ic_encap	= ccmp_encap,
     91       1.1    dyoung 	.ic_decap	= ccmp_decap,
     92       1.1    dyoung 	.ic_enmic	= ccmp_enmic,
     93       1.1    dyoung 	.ic_demic	= ccmp_demic,
     94       1.1    dyoung };
     95       1.1    dyoung 
     96       1.2    dyoung #define	ccmp	ieee80211_cipher_ccmp
     97       1.2    dyoung 
     98       1.1    dyoung static	int ccmp_encrypt(struct ieee80211_key *, struct mbuf *, int hdrlen);
     99       1.1    dyoung static	int ccmp_decrypt(struct ieee80211_key *, u_int64_t pn,
    100       1.1    dyoung 		struct mbuf *, int hdrlen);
    101       1.1    dyoung 
    102       1.1    dyoung static void *
    103       1.7  christos ccmp_attach(struct ieee80211com *ic, struct ieee80211_key *k)
    104       1.1    dyoung {
    105       1.1    dyoung 	struct ccmp_ctx *ctx;
    106       1.1    dyoung 
    107      1.13      maxv 	ctx = malloc(sizeof(struct ccmp_ctx), M_DEVBUF, M_NOWAIT | M_ZERO);
    108       1.1    dyoung 	if (ctx == NULL) {
    109       1.1    dyoung 		ic->ic_stats.is_crypto_nomem++;
    110       1.1    dyoung 		return NULL;
    111       1.1    dyoung 	}
    112       1.1    dyoung 	ctx->cc_ic = ic;
    113       1.1    dyoung 	return ctx;
    114       1.1    dyoung }
    115       1.1    dyoung 
    116       1.1    dyoung static void
    117       1.1    dyoung ccmp_detach(struct ieee80211_key *k)
    118       1.1    dyoung {
    119       1.1    dyoung 	struct ccmp_ctx *ctx = k->wk_private;
    120       1.1    dyoung 
    121       1.8    cegger 	free(ctx, M_DEVBUF);
    122       1.1    dyoung }
    123       1.1    dyoung 
    124       1.1    dyoung static int
    125       1.1    dyoung ccmp_setkey(struct ieee80211_key *k)
    126       1.1    dyoung {
    127       1.1    dyoung 	struct ccmp_ctx *ctx = k->wk_private;
    128       1.1    dyoung 
    129       1.1    dyoung 	if (k->wk_keylen != (128/NBBY)) {
    130       1.1    dyoung 		IEEE80211_DPRINTF(ctx->cc_ic, IEEE80211_MSG_CRYPTO,
    131       1.1    dyoung 			"%s: Invalid key length %u, expecting %u\n",
    132       1.1    dyoung 			__func__, k->wk_keylen, 128/NBBY);
    133       1.1    dyoung 		return 0;
    134       1.1    dyoung 	}
    135       1.1    dyoung 	if (k->wk_flags & IEEE80211_KEY_SWCRYPT)
    136       1.1    dyoung 		rijndael_set_key(&ctx->cc_aes, k->wk_key, k->wk_keylen*NBBY);
    137       1.1    dyoung 	return 1;
    138       1.1    dyoung }
    139       1.1    dyoung 
    140       1.1    dyoung /*
    141       1.1    dyoung  * Add privacy headers appropriate for the specified key.
    142       1.1    dyoung  */
    143       1.1    dyoung static int
    144       1.1    dyoung ccmp_encap(struct ieee80211_key *k, struct mbuf *m, u_int8_t keyid)
    145       1.1    dyoung {
    146       1.1    dyoung 	struct ccmp_ctx *ctx = k->wk_private;
    147       1.1    dyoung 	struct ieee80211com *ic = ctx->cc_ic;
    148       1.1    dyoung 	u_int8_t *ivp;
    149       1.1    dyoung 	int hdrlen;
    150       1.1    dyoung 
    151       1.1    dyoung 	hdrlen = ieee80211_hdrspace(ic, mtod(m, void *));
    152      1.12      maxv 	ivp = mtod(m, u_int8_t *) + hdrlen;
    153       1.1    dyoung 
    154       1.1    dyoung 	k->wk_keytsc++;		/* XXX wrap at 48 bits */
    155       1.1    dyoung 	ivp[0] = k->wk_keytsc >> 0;		/* PN0 */
    156       1.1    dyoung 	ivp[1] = k->wk_keytsc >> 8;		/* PN1 */
    157       1.1    dyoung 	ivp[2] = 0;				/* Reserved */
    158       1.1    dyoung 	ivp[3] = keyid | IEEE80211_WEP_EXTIV;	/* KeyID | ExtID */
    159       1.1    dyoung 	ivp[4] = k->wk_keytsc >> 16;		/* PN2 */
    160       1.1    dyoung 	ivp[5] = k->wk_keytsc >> 24;		/* PN3 */
    161       1.1    dyoung 	ivp[6] = k->wk_keytsc >> 32;		/* PN4 */
    162       1.1    dyoung 	ivp[7] = k->wk_keytsc >> 40;		/* PN5 */
    163       1.1    dyoung 
    164       1.1    dyoung 	/*
    165       1.1    dyoung 	 * Finally, do software encrypt if neeed.
    166       1.1    dyoung 	 */
    167       1.1    dyoung 	if ((k->wk_flags & IEEE80211_KEY_SWCRYPT) &&
    168       1.1    dyoung 	    !ccmp_encrypt(k, m, hdrlen))
    169       1.1    dyoung 		return 0;
    170       1.1    dyoung 
    171       1.1    dyoung 	return 1;
    172       1.1    dyoung }
    173       1.1    dyoung 
    174       1.1    dyoung /*
    175       1.1    dyoung  * Add MIC to the frame as needed.
    176       1.1    dyoung  */
    177       1.1    dyoung static int
    178       1.7  christos ccmp_enmic(struct ieee80211_key *k, struct mbuf *m,
    179       1.7  christos     int force)
    180       1.1    dyoung {
    181       1.1    dyoung 
    182       1.1    dyoung 	return 1;
    183       1.1    dyoung }
    184       1.1    dyoung 
    185       1.1    dyoung static __inline uint64_t
    186       1.1    dyoung READ_6(uint8_t b0, uint8_t b1, uint8_t b2, uint8_t b3, uint8_t b4, uint8_t b5)
    187       1.1    dyoung {
    188       1.1    dyoung 	uint32_t iv32 = (b0 << 0) | (b1 << 8) | (b2 << 16) | (b3 << 24);
    189       1.1    dyoung 	uint16_t iv16 = (b4 << 0) | (b5 << 8);
    190       1.1    dyoung 	return (((uint64_t)iv16) << 32) | iv32;
    191       1.1    dyoung }
    192       1.1    dyoung 
    193       1.1    dyoung /*
    194       1.1    dyoung  * Validate and strip privacy headers (and trailer) for a
    195       1.1    dyoung  * received frame. The specified key should be correct but
    196       1.1    dyoung  * is also verified.
    197       1.1    dyoung  */
    198       1.1    dyoung static int
    199       1.3    dyoung ccmp_decap(struct ieee80211_key *k, struct mbuf *m, int hdrlen)
    200       1.1    dyoung {
    201       1.1    dyoung 	struct ccmp_ctx *ctx = k->wk_private;
    202       1.1    dyoung 	struct ieee80211_frame *wh;
    203       1.1    dyoung 	uint8_t *ivp;
    204       1.1    dyoung 	uint64_t pn;
    205       1.1    dyoung 
    206       1.1    dyoung 	/*
    207       1.1    dyoung 	 * Header should have extended IV and sequence number;
    208       1.1    dyoung 	 * verify the former and validate the latter.
    209       1.1    dyoung 	 */
    210       1.1    dyoung 	wh = mtod(m, struct ieee80211_frame *);
    211       1.1    dyoung 	ivp = mtod(m, uint8_t *) + hdrlen;
    212       1.1    dyoung 	if ((ivp[IEEE80211_WEP_IVLEN] & IEEE80211_WEP_EXTIV) == 0) {
    213       1.1    dyoung 		/*
    214       1.1    dyoung 		 * No extended IV; discard frame.
    215       1.1    dyoung 		 */
    216       1.1    dyoung 		IEEE80211_DPRINTF(ctx->cc_ic, IEEE80211_MSG_CRYPTO,
    217       1.1    dyoung 			"[%s] Missing ExtIV for AES-CCM cipher\n",
    218       1.1    dyoung 			ether_sprintf(wh->i_addr2));
    219       1.1    dyoung 		ctx->cc_ic->ic_stats.is_rx_ccmpformat++;
    220       1.1    dyoung 		return 0;
    221       1.1    dyoung 	}
    222       1.1    dyoung 	pn = READ_6(ivp[0], ivp[1], ivp[4], ivp[5], ivp[6], ivp[7]);
    223       1.1    dyoung 	if (pn <= k->wk_keyrsc) {
    224       1.1    dyoung 		/*
    225       1.1    dyoung 		 * Replay violation.
    226       1.1    dyoung 		 */
    227       1.1    dyoung 		ieee80211_notify_replay_failure(ctx->cc_ic, wh, k, pn);
    228       1.1    dyoung 		ctx->cc_ic->ic_stats.is_rx_ccmpreplay++;
    229       1.1    dyoung 		return 0;
    230       1.1    dyoung 	}
    231       1.1    dyoung 
    232       1.1    dyoung 	/*
    233       1.1    dyoung 	 * Check if the device handled the decrypt in hardware.
    234       1.1    dyoung 	 * If so we just strip the header; otherwise we need to
    235       1.1    dyoung 	 * handle the decrypt in software.  Note that for the
    236       1.1    dyoung 	 * latter we leave the header in place for use in the
    237       1.1    dyoung 	 * decryption work.
    238       1.1    dyoung 	 */
    239       1.1    dyoung 	if ((k->wk_flags & IEEE80211_KEY_SWCRYPT) &&
    240       1.1    dyoung 	    !ccmp_decrypt(k, pn, m, hdrlen))
    241       1.1    dyoung 		return 0;
    242       1.1    dyoung 
    243       1.1    dyoung 	/*
    244       1.1    dyoung 	 * Copy up 802.11 header and strip crypto bits.
    245       1.1    dyoung 	 */
    246  1.13.2.1  pgoyette 	memmove(mtod(m, u_int8_t *) + ccmp.ic_header, mtod(m, void *), hdrlen);
    247       1.1    dyoung 	m_adj(m, ccmp.ic_header);
    248       1.1    dyoung 	m_adj(m, -ccmp.ic_trailer);
    249       1.1    dyoung 
    250       1.1    dyoung 	/*
    251       1.1    dyoung 	 * Ok to update rsc now.
    252       1.1    dyoung 	 */
    253       1.1    dyoung 	k->wk_keyrsc = pn;
    254       1.1    dyoung 
    255       1.1    dyoung 	return 1;
    256       1.1    dyoung }
    257       1.1    dyoung 
    258       1.1    dyoung /*
    259       1.1    dyoung  * Verify and strip MIC from the frame.
    260       1.1    dyoung  */
    261       1.1    dyoung static int
    262      1.13      maxv ccmp_demic(struct ieee80211_key *k, struct mbuf *m, int force)
    263       1.1    dyoung {
    264       1.1    dyoung 	return 1;
    265       1.1    dyoung }
    266       1.1    dyoung 
    267       1.1    dyoung static __inline void
    268       1.1    dyoung xor_block(uint8_t *b, const uint8_t *a, size_t len)
    269       1.1    dyoung {
    270       1.1    dyoung 	int i;
    271       1.1    dyoung 	for (i = 0; i < len; i++)
    272       1.1    dyoung 		b[i] ^= a[i];
    273       1.1    dyoung }
    274       1.1    dyoung 
    275       1.1    dyoung /*
    276       1.1    dyoung  * Host AP crypt: host-based CCMP encryption implementation for Host AP driver
    277       1.1    dyoung  *
    278       1.1    dyoung  * Copyright (c) 2003-2004, Jouni Malinen <jkmaline (at) cc.hut.fi>
    279       1.1    dyoung  *
    280       1.1    dyoung  * This program is free software; you can redistribute it and/or modify
    281       1.1    dyoung  * it under the terms of the GNU General Public License version 2 as
    282       1.1    dyoung  * published by the Free Software Foundation. See README and COPYING for
    283       1.1    dyoung  * more details.
    284       1.1    dyoung  *
    285       1.1    dyoung  * Alternatively, this software may be distributed under the terms of BSD
    286       1.1    dyoung  * license.
    287       1.1    dyoung  */
    288       1.1    dyoung 
    289       1.1    dyoung static void
    290       1.1    dyoung ccmp_init_blocks(rijndael_ctx *ctx, struct ieee80211_frame *wh,
    291       1.1    dyoung 	u_int64_t pn, size_t dlen,
    292       1.1    dyoung 	uint8_t b0[AES_BLOCK_LEN], uint8_t aad[2 * AES_BLOCK_LEN],
    293       1.1    dyoung 	uint8_t auth[AES_BLOCK_LEN], uint8_t s0[AES_BLOCK_LEN])
    294       1.1    dyoung {
    295       1.1    dyoung #define	IS_4ADDRESS(wh) \
    296       1.1    dyoung 	((wh->i_fc[1] & IEEE80211_FC1_DIR_MASK) == IEEE80211_FC1_DIR_DSTODS)
    297      1.10  christos #define	IS_QOS_DATA(wh)	ieee80211_has_qos(wh)
    298       1.1    dyoung 
    299       1.1    dyoung 	/* CCM Initial Block:
    300       1.1    dyoung 	 * Flag (Include authentication header, M=3 (8-octet MIC),
    301       1.1    dyoung 	 *       L=1 (2-octet Dlen))
    302       1.1    dyoung 	 * Nonce: 0x00 | A2 | PN
    303       1.1    dyoung 	 * Dlen */
    304       1.1    dyoung 	b0[0] = 0x59;
    305       1.1    dyoung 	/* NB: b0[1] set below */
    306       1.1    dyoung 	IEEE80211_ADDR_COPY(b0 + 2, wh->i_addr2);
    307       1.1    dyoung 	b0[8] = pn >> 40;
    308       1.1    dyoung 	b0[9] = pn >> 32;
    309       1.1    dyoung 	b0[10] = pn >> 24;
    310       1.1    dyoung 	b0[11] = pn >> 16;
    311       1.1    dyoung 	b0[12] = pn >> 8;
    312       1.1    dyoung 	b0[13] = pn >> 0;
    313       1.1    dyoung 	b0[14] = (dlen >> 8) & 0xff;
    314       1.1    dyoung 	b0[15] = dlen & 0xff;
    315       1.1    dyoung 
    316       1.1    dyoung 	/* AAD:
    317       1.1    dyoung 	 * FC with bits 4..6 and 11..13 masked to zero; 14 is always one
    318       1.1    dyoung 	 * A1 | A2 | A3
    319       1.1    dyoung 	 * SC with bits 4..15 (seq#) masked to zero
    320       1.1    dyoung 	 * A4 (if present)
    321       1.1    dyoung 	 * QC (if present)
    322       1.1    dyoung 	 */
    323       1.1    dyoung 	aad[0] = 0;	/* AAD length >> 8 */
    324       1.1    dyoung 	/* NB: aad[1] set below */
    325       1.1    dyoung 	aad[2] = wh->i_fc[0] & 0x8f;	/* XXX magic #s */
    326       1.1    dyoung 	aad[3] = wh->i_fc[1] & 0xc7;	/* XXX magic #s */
    327       1.1    dyoung 	/* NB: we know 3 addresses are contiguous */
    328       1.1    dyoung 	memcpy(aad + 4, wh->i_addr1, 3 * IEEE80211_ADDR_LEN);
    329       1.1    dyoung 	aad[22] = wh->i_seq[0] & IEEE80211_SEQ_FRAG_MASK;
    330       1.1    dyoung 	aad[23] = 0; /* all bits masked */
    331       1.1    dyoung 	/*
    332       1.1    dyoung 	 * Construct variable-length portion of AAD based
    333       1.1    dyoung 	 * on whether this is a 4-address frame/QOS frame.
    334       1.1    dyoung 	 * We always zero-pad to 32 bytes before running it
    335       1.1    dyoung 	 * through the cipher.
    336       1.1    dyoung 	 *
    337       1.1    dyoung 	 * We also fill in the priority bits of the CCM
    338       1.1    dyoung 	 * initial block as we know whether or not we have
    339       1.1    dyoung 	 * a QOS frame.
    340       1.1    dyoung 	 */
    341       1.1    dyoung 	if (IS_4ADDRESS(wh)) {
    342       1.1    dyoung 		IEEE80211_ADDR_COPY(aad + 24,
    343       1.1    dyoung 			((struct ieee80211_frame_addr4 *)wh)->i_addr4);
    344       1.1    dyoung 		if (IS_QOS_DATA(wh)) {
    345       1.1    dyoung 			struct ieee80211_qosframe_addr4 *qwh4 =
    346       1.1    dyoung 				(struct ieee80211_qosframe_addr4 *) wh;
    347       1.1    dyoung 			aad[30] = qwh4->i_qos[0] & 0x0f;/* just priority bits */
    348       1.1    dyoung 			aad[31] = 0;
    349       1.1    dyoung 			b0[1] = aad[30];
    350       1.1    dyoung 			aad[1] = 22 + IEEE80211_ADDR_LEN + 2;
    351       1.1    dyoung 		} else {
    352       1.1    dyoung 			*(u_int16_t *)&aad[30] = 0;
    353       1.1    dyoung 			b0[1] = 0;
    354       1.1    dyoung 			aad[1] = 22 + IEEE80211_ADDR_LEN;
    355       1.1    dyoung 		}
    356       1.1    dyoung 	} else {
    357       1.1    dyoung 		if (IS_QOS_DATA(wh)) {
    358       1.1    dyoung 			struct ieee80211_qosframe *qwh =
    359       1.1    dyoung 				(struct ieee80211_qosframe*) wh;
    360       1.1    dyoung 			aad[24] = qwh->i_qos[0] & 0x0f;	/* just priority bits */
    361       1.1    dyoung 			aad[25] = 0;
    362       1.1    dyoung 			b0[1] = aad[24];
    363       1.1    dyoung 			aad[1] = 22 + 2;
    364       1.1    dyoung 		} else {
    365       1.1    dyoung 			*(u_int16_t *)&aad[24] = 0;
    366       1.1    dyoung 			b0[1] = 0;
    367       1.1    dyoung 			aad[1] = 22;
    368       1.1    dyoung 		}
    369       1.1    dyoung 		*(u_int16_t *)&aad[26] = 0;
    370       1.1    dyoung 		*(u_int32_t *)&aad[28] = 0;
    371       1.1    dyoung 	}
    372       1.1    dyoung 
    373       1.1    dyoung 	/* Start with the first block and AAD */
    374       1.1    dyoung 	rijndael_encrypt(ctx, b0, auth);
    375       1.1    dyoung 	xor_block(auth, aad, AES_BLOCK_LEN);
    376       1.1    dyoung 	rijndael_encrypt(ctx, auth, auth);
    377       1.1    dyoung 	xor_block(auth, &aad[AES_BLOCK_LEN], AES_BLOCK_LEN);
    378       1.1    dyoung 	rijndael_encrypt(ctx, auth, auth);
    379       1.1    dyoung 	b0[0] &= 0x07;
    380       1.1    dyoung 	b0[14] = b0[15] = 0;
    381       1.1    dyoung 	rijndael_encrypt(ctx, b0, s0);
    382       1.1    dyoung #undef	IS_QOS_DATA
    383       1.1    dyoung #undef	IS_4ADDRESS
    384       1.1    dyoung }
    385       1.1    dyoung 
    386       1.1    dyoung #define	CCMP_ENCRYPT(_i, _b, _b0, _pos, _e, _len) do {	\
    387       1.1    dyoung 	/* Authentication */				\
    388       1.1    dyoung 	xor_block(_b, _pos, _len);			\
    389       1.1    dyoung 	rijndael_encrypt(&ctx->cc_aes, _b, _b);		\
    390       1.1    dyoung 	/* Encryption, with counter */			\
    391       1.1    dyoung 	_b0[14] = (_i >> 8) & 0xff;			\
    392       1.1    dyoung 	_b0[15] = _i & 0xff;				\
    393       1.1    dyoung 	rijndael_encrypt(&ctx->cc_aes, _b0, _e);	\
    394       1.1    dyoung 	xor_block(_pos, _e, _len);			\
    395       1.1    dyoung } while (0)
    396       1.1    dyoung 
    397       1.1    dyoung static int
    398       1.1    dyoung ccmp_encrypt(struct ieee80211_key *key, struct mbuf *m0, int hdrlen)
    399       1.1    dyoung {
    400       1.1    dyoung 	struct ccmp_ctx *ctx = key->wk_private;
    401       1.1    dyoung 	struct ieee80211_frame *wh;
    402       1.1    dyoung 	struct mbuf *m = m0;
    403       1.3    dyoung 	int data_len, i, space;
    404       1.1    dyoung 	uint8_t aad[2 * AES_BLOCK_LEN], b0[AES_BLOCK_LEN], b[AES_BLOCK_LEN],
    405       1.1    dyoung 		e[AES_BLOCK_LEN], s0[AES_BLOCK_LEN];
    406       1.1    dyoung 	uint8_t *pos;
    407       1.1    dyoung 
    408       1.1    dyoung 	ctx->cc_ic->ic_stats.is_crypto_ccmp++;
    409       1.1    dyoung 
    410       1.1    dyoung 	wh = mtod(m, struct ieee80211_frame *);
    411       1.1    dyoung 	data_len = m->m_pkthdr.len - (hdrlen + ccmp.ic_header);
    412       1.1    dyoung 	ccmp_init_blocks(&ctx->cc_aes, wh, key->wk_keytsc,
    413       1.1    dyoung 		data_len, b0, aad, b, s0);
    414       1.1    dyoung 
    415       1.1    dyoung 	i = 1;
    416       1.1    dyoung 	pos = mtod(m, uint8_t *) + hdrlen + ccmp.ic_header;
    417       1.1    dyoung 	/* NB: assumes header is entirely in first mbuf */
    418       1.1    dyoung 	space = m->m_len - (hdrlen + ccmp.ic_header);
    419       1.1    dyoung 	for (;;) {
    420       1.1    dyoung 		if (space > data_len)
    421       1.1    dyoung 			space = data_len;
    422      1.13      maxv 
    423       1.1    dyoung 		/*
    424       1.1    dyoung 		 * Do full blocks.
    425       1.1    dyoung 		 */
    426       1.1    dyoung 		while (space >= AES_BLOCK_LEN) {
    427       1.1    dyoung 			CCMP_ENCRYPT(i, b, b0, pos, e, AES_BLOCK_LEN);
    428       1.1    dyoung 			pos += AES_BLOCK_LEN, space -= AES_BLOCK_LEN;
    429       1.1    dyoung 			data_len -= AES_BLOCK_LEN;
    430       1.1    dyoung 			i++;
    431       1.1    dyoung 		}
    432       1.1    dyoung 		if (data_len <= 0)		/* no more data */
    433       1.1    dyoung 			break;
    434      1.13      maxv 
    435       1.1    dyoung 		m = m->m_next;
    436       1.1    dyoung 		if (m == NULL) {		/* last buffer */
    437       1.1    dyoung 			if (space != 0) {
    438       1.1    dyoung 				/*
    439       1.1    dyoung 				 * Short last block.
    440       1.1    dyoung 				 */
    441       1.1    dyoung 				CCMP_ENCRYPT(i, b, b0, pos, e, space);
    442       1.1    dyoung 			}
    443       1.1    dyoung 			break;
    444       1.1    dyoung 		}
    445       1.1    dyoung 		if (space != 0) {
    446       1.1    dyoung 			uint8_t *pos_next;
    447       1.3    dyoung 			int space_next;
    448       1.3    dyoung 			int len, dl, sp;
    449       1.3    dyoung 			struct mbuf *n;
    450       1.1    dyoung 
    451       1.1    dyoung 			/*
    452       1.3    dyoung 			 * Block straddles one or more mbufs, gather data
    453       1.3    dyoung 			 * into the block buffer b, apply the cipher, then
    454       1.3    dyoung 			 * scatter the results back into the mbuf chain.
    455       1.3    dyoung 			 * The buffer will automatically get space bytes
    456       1.3    dyoung 			 * of data at offset 0 copied in+out by the
    457       1.3    dyoung 			 * CCMP_ENCRYPT request so we must take care of
    458       1.3    dyoung 			 * the remaining data.
    459       1.1    dyoung 			 */
    460       1.3    dyoung 			n = m;
    461       1.3    dyoung 			dl = data_len;
    462       1.3    dyoung 			sp = space;
    463       1.3    dyoung 			for (;;) {
    464       1.3    dyoung 				pos_next = mtod(n, uint8_t *);
    465  1.13.2.2  pgoyette 				len = uimin(dl, AES_BLOCK_LEN);
    466       1.3    dyoung 				space_next = len > sp ? len - sp : 0;
    467       1.3    dyoung 				if (n->m_len >= space_next) {
    468       1.3    dyoung 					/*
    469       1.3    dyoung 					 * This mbuf has enough data; just grab
    470       1.3    dyoung 					 * what we need and stop.
    471       1.3    dyoung 					 */
    472       1.3    dyoung 					xor_block(b+sp, pos_next, space_next);
    473       1.3    dyoung 					break;
    474       1.3    dyoung 				}
    475       1.3    dyoung 				/*
    476       1.3    dyoung 				 * This mbuf's contents are insufficient,
    477      1.13      maxv 				 * take them all and prepare to advance to
    478       1.3    dyoung 				 * the next mbuf.
    479       1.3    dyoung 				 */
    480       1.3    dyoung 				xor_block(b+sp, pos_next, n->m_len);
    481       1.3    dyoung 				sp += n->m_len, dl -= n->m_len;
    482       1.3    dyoung 				n = n->m_next;
    483       1.3    dyoung 				if (n == NULL)
    484       1.3    dyoung 					break;
    485       1.3    dyoung 			}
    486       1.1    dyoung 
    487       1.1    dyoung 			CCMP_ENCRYPT(i, b, b0, pos, e, space);
    488       1.3    dyoung 
    489       1.3    dyoung 			/* NB: just like above, but scatter data to mbufs */
    490       1.3    dyoung 			dl = data_len;
    491       1.3    dyoung 			sp = space;
    492       1.3    dyoung 			for (;;) {
    493       1.3    dyoung 				pos_next = mtod(m, uint8_t *);
    494  1.13.2.2  pgoyette 				len = uimin(dl, AES_BLOCK_LEN);
    495       1.3    dyoung 				space_next = len > sp ? len - sp : 0;
    496       1.3    dyoung 				if (m->m_len >= space_next) {
    497       1.3    dyoung 					xor_block(pos_next, e+sp, space_next);
    498       1.3    dyoung 					break;
    499       1.3    dyoung 				}
    500       1.3    dyoung 				xor_block(pos_next, e+sp, m->m_len);
    501       1.3    dyoung 				sp += m->m_len, dl -= m->m_len;
    502       1.3    dyoung 				m = m->m_next;
    503       1.3    dyoung 				if (m == NULL)
    504       1.3    dyoung 					goto done;
    505       1.3    dyoung 			}
    506      1.13      maxv 
    507       1.3    dyoung 			/*
    508       1.3    dyoung 			 * Do bookkeeping.  m now points to the last mbuf
    509       1.3    dyoung 			 * we grabbed data from.  We know we consumed a
    510       1.3    dyoung 			 * full block of data as otherwise we'd have hit
    511       1.3    dyoung 			 * the end of the mbuf chain, so deduct from data_len.
    512       1.3    dyoung 			 * Otherwise advance the block number (i) and setup
    513       1.3    dyoung 			 * pos+space to reflect contents of the new mbuf.
    514       1.3    dyoung 			 */
    515       1.3    dyoung 			data_len -= AES_BLOCK_LEN;
    516       1.1    dyoung 			i++;
    517       1.1    dyoung 			pos = pos_next + space_next;
    518       1.1    dyoung 			space = m->m_len - space_next;
    519       1.1    dyoung 		} else {
    520       1.1    dyoung 			/*
    521       1.1    dyoung 			 * Setup for next buffer.
    522       1.1    dyoung 			 */
    523       1.1    dyoung 			pos = mtod(m, uint8_t *);
    524       1.1    dyoung 			space = m->m_len;
    525       1.1    dyoung 		}
    526       1.1    dyoung 	}
    527      1.13      maxv 
    528       1.3    dyoung done:
    529       1.1    dyoung 	/* tack on MIC */
    530       1.1    dyoung 	xor_block(b, s0, ccmp.ic_trailer);
    531       1.1    dyoung 	return m_append(m0, ccmp.ic_trailer, b);
    532       1.1    dyoung }
    533       1.1    dyoung #undef CCMP_ENCRYPT
    534       1.1    dyoung 
    535       1.1    dyoung #define	CCMP_DECRYPT(_i, _b, _b0, _pos, _a, _len) do {	\
    536       1.1    dyoung 	/* Decrypt, with counter */			\
    537       1.1    dyoung 	_b0[14] = (_i >> 8) & 0xff;			\
    538       1.1    dyoung 	_b0[15] = _i & 0xff;				\
    539       1.1    dyoung 	rijndael_encrypt(&ctx->cc_aes, _b0, _b);	\
    540       1.1    dyoung 	xor_block(_pos, _b, _len);			\
    541       1.1    dyoung 	/* Authentication */				\
    542       1.1    dyoung 	xor_block(_a, _pos, _len);			\
    543       1.1    dyoung 	rijndael_encrypt(&ctx->cc_aes, _a, _a);		\
    544       1.1    dyoung } while (0)
    545       1.1    dyoung 
    546       1.1    dyoung static int
    547      1.13      maxv ccmp_decrypt(struct ieee80211_key *key, u_int64_t pn, struct mbuf *m,
    548      1.13      maxv     int hdrlen)
    549       1.1    dyoung {
    550       1.1    dyoung 	struct ccmp_ctx *ctx = key->wk_private;
    551       1.1    dyoung 	struct ieee80211_frame *wh;
    552       1.1    dyoung 	uint8_t aad[2 * AES_BLOCK_LEN];
    553       1.1    dyoung 	uint8_t b0[AES_BLOCK_LEN], b[AES_BLOCK_LEN], a[AES_BLOCK_LEN];
    554       1.1    dyoung 	uint8_t mic[AES_BLOCK_LEN];
    555       1.1    dyoung 	size_t data_len;
    556       1.1    dyoung 	int i;
    557       1.1    dyoung 	uint8_t *pos;
    558       1.1    dyoung 	u_int space;
    559       1.1    dyoung 
    560       1.1    dyoung 	ctx->cc_ic->ic_stats.is_crypto_ccmp++;
    561       1.1    dyoung 
    562       1.1    dyoung 	wh = mtod(m, struct ieee80211_frame *);
    563       1.1    dyoung 	data_len = m->m_pkthdr.len - (hdrlen + ccmp.ic_header + ccmp.ic_trailer);
    564       1.1    dyoung 	ccmp_init_blocks(&ctx->cc_aes, wh, pn, data_len, b0, aad, a, b);
    565       1.1    dyoung 	m_copydata(m, m->m_pkthdr.len - ccmp.ic_trailer, ccmp.ic_trailer, mic);
    566       1.1    dyoung 	xor_block(mic, b, ccmp.ic_trailer);
    567       1.1    dyoung 
    568       1.1    dyoung 	i = 1;
    569       1.1    dyoung 	pos = mtod(m, uint8_t *) + hdrlen + ccmp.ic_header;
    570       1.1    dyoung 	space = m->m_len - (hdrlen + ccmp.ic_header);
    571       1.1    dyoung 	for (;;) {
    572       1.1    dyoung 		if (space > data_len)
    573       1.1    dyoung 			space = data_len;
    574       1.1    dyoung 		while (space >= AES_BLOCK_LEN) {
    575       1.1    dyoung 			CCMP_DECRYPT(i, b, b0, pos, a, AES_BLOCK_LEN);
    576       1.1    dyoung 			pos += AES_BLOCK_LEN, space -= AES_BLOCK_LEN;
    577       1.1    dyoung 			data_len -= AES_BLOCK_LEN;
    578       1.1    dyoung 			i++;
    579       1.1    dyoung 		}
    580       1.1    dyoung 		if (data_len <= 0)		/* no more data */
    581       1.1    dyoung 			break;
    582      1.13      maxv 
    583       1.1    dyoung 		m = m->m_next;
    584       1.1    dyoung 		if (m == NULL) {		/* last buffer */
    585       1.1    dyoung 			if (space != 0)		/* short last block */
    586       1.1    dyoung 				CCMP_DECRYPT(i, b, b0, pos, a, space);
    587       1.1    dyoung 			break;
    588       1.1    dyoung 		}
    589      1.13      maxv 
    590       1.1    dyoung 		if (space != 0) {
    591       1.1    dyoung 			uint8_t *pos_next;
    592       1.1    dyoung 			u_int space_next;
    593       1.1    dyoung 			u_int len;
    594       1.1    dyoung 
    595       1.1    dyoung 			/*
    596       1.1    dyoung 			 * Block straddles buffers, split references.  We
    597       1.3    dyoung 			 * do not handle splits that require >2 buffers
    598       1.3    dyoung 			 * since rx'd frames are never badly fragmented
    599       1.3    dyoung 			 * because drivers typically recv in clusters.
    600       1.1    dyoung 			 */
    601       1.1    dyoung 			pos_next = mtod(m, uint8_t *);
    602  1.13.2.2  pgoyette 			len = uimin(data_len, AES_BLOCK_LEN);
    603       1.1    dyoung 			space_next = len > space ? len - space : 0;
    604       1.2    dyoung 			IASSERT(m->m_len >= space_next,
    605       1.1    dyoung 				("not enough data in following buffer, "
    606       1.1    dyoung 				"m_len %u need %u\n", m->m_len, space_next));
    607       1.1    dyoung 
    608       1.1    dyoung 			xor_block(b+space, pos_next, space_next);
    609       1.1    dyoung 			CCMP_DECRYPT(i, b, b0, pos, a, space);
    610       1.1    dyoung 			xor_block(pos_next, b+space, space_next);
    611       1.1    dyoung 			data_len -= len;
    612       1.1    dyoung 			i++;
    613       1.1    dyoung 
    614       1.1    dyoung 			pos = pos_next + space_next;
    615       1.1    dyoung 			space = m->m_len - space_next;
    616       1.1    dyoung 		} else {
    617       1.1    dyoung 			/*
    618       1.1    dyoung 			 * Setup for next buffer.
    619       1.1    dyoung 			 */
    620       1.1    dyoung 			pos = mtod(m, uint8_t *);
    621       1.1    dyoung 			space = m->m_len;
    622       1.1    dyoung 		}
    623       1.1    dyoung 	}
    624      1.13      maxv 
    625       1.1    dyoung 	if (memcmp(mic, a, ccmp.ic_trailer) != 0) {
    626       1.1    dyoung 		IEEE80211_DPRINTF(ctx->cc_ic, IEEE80211_MSG_CRYPTO,
    627       1.1    dyoung 			"[%s] AES-CCM decrypt failed; MIC mismatch\n",
    628       1.1    dyoung 			ether_sprintf(wh->i_addr2));
    629       1.1    dyoung 		ctx->cc_ic->ic_stats.is_rx_ccmpmic++;
    630       1.1    dyoung 		return 0;
    631       1.1    dyoung 	}
    632      1.13      maxv 
    633       1.1    dyoung 	return 1;
    634       1.1    dyoung }
    635       1.1    dyoung #undef CCMP_DECRYPT
    636       1.4     skrll 
    637       1.4     skrll IEEE80211_CRYPTO_SETUP(ccmp_register)
    638       1.4     skrll {
    639       1.4     skrll 	ieee80211_crypto_register(&ccmp);
    640       1.4     skrll }
    641