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cryptosoft.c revision 1.49.2.1
      1  1.49.2.1  pgoyette /*	$NetBSD: cryptosoft.c,v 1.49.2.1 2017/05/17 01:44:18 pgoyette Exp $ */
      2       1.1  jonathan /*	$FreeBSD: src/sys/opencrypto/cryptosoft.c,v 1.2.2.1 2002/11/21 23:34:23 sam Exp $	*/
      3       1.1  jonathan /*	$OpenBSD: cryptosoft.c,v 1.35 2002/04/26 08:43:50 deraadt Exp $	*/
      4       1.1  jonathan 
      5       1.1  jonathan /*
      6       1.1  jonathan  * The author of this code is Angelos D. Keromytis (angelos (at) cis.upenn.edu)
      7       1.1  jonathan  *
      8       1.1  jonathan  * This code was written by Angelos D. Keromytis in Athens, Greece, in
      9       1.1  jonathan  * February 2000. Network Security Technologies Inc. (NSTI) kindly
     10       1.1  jonathan  * supported the development of this code.
     11       1.1  jonathan  *
     12       1.1  jonathan  * Copyright (c) 2000, 2001 Angelos D. Keromytis
     13       1.1  jonathan  *
     14       1.1  jonathan  * Permission to use, copy, and modify this software with or without fee
     15       1.1  jonathan  * is hereby granted, provided that this entire notice is included in
     16       1.1  jonathan  * all source code copies of any software which is or includes a copy or
     17       1.1  jonathan  * modification of this software.
     18       1.1  jonathan  *
     19       1.1  jonathan  * THIS SOFTWARE IS BEING PROVIDED "AS IS", WITHOUT ANY EXPRESS OR
     20       1.1  jonathan  * IMPLIED WARRANTY. IN PARTICULAR, NONE OF THE AUTHORS MAKES ANY
     21       1.1  jonathan  * REPRESENTATION OR WARRANTY OF ANY KIND CONCERNING THE
     22       1.1  jonathan  * MERCHANTABILITY OF THIS SOFTWARE OR ITS FITNESS FOR ANY PARTICULAR
     23       1.1  jonathan  * PURPOSE.
     24       1.1  jonathan  */
     25       1.1  jonathan 
     26       1.1  jonathan #include <sys/cdefs.h>
     27  1.49.2.1  pgoyette __KERNEL_RCSID(0, "$NetBSD: cryptosoft.c,v 1.49.2.1 2017/05/17 01:44:18 pgoyette Exp $");
     28       1.1  jonathan 
     29       1.1  jonathan #include <sys/param.h>
     30       1.1  jonathan #include <sys/systm.h>
     31       1.1  jonathan #include <sys/malloc.h>
     32       1.1  jonathan #include <sys/mbuf.h>
     33       1.1  jonathan #include <sys/sysctl.h>
     34       1.1  jonathan #include <sys/errno.h>
     35      1.41  christos #include <sys/cprng.h>
     36      1.44  pgoyette #include <sys/module.h>
     37      1.44  pgoyette #include <sys/device.h>
     38       1.5  jonathan 
     39      1.44  pgoyette #ifdef _KERNEL_OPT
     40      1.20       tls #include "opt_ocf.h"
     41      1.44  pgoyette #endif
     42      1.44  pgoyette 
     43       1.1  jonathan #include <opencrypto/cryptodev.h>
     44       1.1  jonathan #include <opencrypto/cryptosoft.h>
     45       1.1  jonathan #include <opencrypto/xform.h>
     46       1.1  jonathan 
     47      1.10   thorpej #include <opencrypto/cryptosoft_xform.c>
     48       1.1  jonathan 
     49      1.47  christos #include "ioconf.h"
     50      1.47  christos 
     51      1.10   thorpej union authctx {
     52      1.10   thorpej 	MD5_CTX md5ctx;
     53      1.10   thorpej 	SHA1_CTX sha1ctx;
     54      1.10   thorpej 	RMD160_CTX rmd160ctx;
     55      1.10   thorpej 	SHA256_CTX sha256ctx;
     56      1.10   thorpej 	SHA384_CTX sha384ctx;
     57      1.10   thorpej 	SHA512_CTX sha512ctx;
     58      1.36  drochner 	aesxcbc_ctx aesxcbcctx;
     59      1.37  drochner 	AES_GMAC_CTX aesgmacctx;
     60       1.1  jonathan };
     61       1.1  jonathan 
     62       1.1  jonathan struct swcr_data **swcr_sessions = NULL;
     63       1.1  jonathan u_int32_t swcr_sesnum = 0;
     64       1.1  jonathan int32_t swcr_id = -1;
     65       1.1  jonathan 
     66       1.1  jonathan #define COPYBACK(x, a, b, c, d) \
     67       1.1  jonathan 	(x) == CRYPTO_BUF_MBUF ? m_copyback((struct mbuf *)a,b,c,d) \
     68       1.1  jonathan 	: cuio_copyback((struct uio *)a,b,c,d)
     69       1.1  jonathan #define COPYDATA(x, a, b, c, d) \
     70       1.1  jonathan 	(x) == CRYPTO_BUF_MBUF ? m_copydata((struct mbuf *)a,b,c,d) \
     71       1.1  jonathan 	: cuio_copydata((struct uio *)a,b,c,d)
     72       1.1  jonathan 
     73      1.27  drochner static	int swcr_encdec(struct cryptodesc *, const struct swcr_data *, void *, int);
     74      1.27  drochner static	int swcr_compdec(struct cryptodesc *, const struct swcr_data *, void *, int, int *);
     75      1.37  drochner static	int swcr_combined(struct cryptop *, int);
     76       1.1  jonathan static	int swcr_process(void *, struct cryptop *, int);
     77       1.1  jonathan static	int swcr_newsession(void *, u_int32_t *, struct cryptoini *);
     78       1.1  jonathan static	int swcr_freesession(void *, u_int64_t);
     79       1.1  jonathan 
     80       1.1  jonathan /*
     81       1.1  jonathan  * Apply a symmetric encryption/decryption algorithm.
     82       1.1  jonathan  */
     83       1.1  jonathan static int
     84      1.27  drochner swcr_encdec(struct cryptodesc *crd, const struct swcr_data *sw, void *bufv,
     85       1.1  jonathan     int outtype)
     86       1.1  jonathan {
     87      1.17  christos 	char *buf = bufv;
     88       1.1  jonathan 	unsigned char iv[EALG_MAX_BLOCK_LEN], blk[EALG_MAX_BLOCK_LEN], *idat;
     89       1.1  jonathan 	unsigned char *ivp, piv[EALG_MAX_BLOCK_LEN];
     90      1.10   thorpej 	const struct swcr_enc_xform *exf;
     91      1.32  drochner 	int i, k, j, blks, ivlen;
     92       1.1  jonathan 	int count, ind;
     93       1.1  jonathan 
     94       1.1  jonathan 	exf = sw->sw_exf;
     95      1.10   thorpej 	blks = exf->enc_xform->blocksize;
     96      1.32  drochner 	ivlen = exf->enc_xform->ivsize;
     97      1.32  drochner 	KASSERT(exf->reinit ? ivlen <= blks : ivlen == blks);
     98       1.1  jonathan 
     99       1.1  jonathan 	/* Check for non-padded data */
    100       1.1  jonathan 	if (crd->crd_len % blks)
    101       1.1  jonathan 		return EINVAL;
    102       1.1  jonathan 
    103       1.1  jonathan 	/* Initialize the IV */
    104       1.1  jonathan 	if (crd->crd_flags & CRD_F_ENCRYPT) {
    105       1.1  jonathan 		/* IV explicitly provided ? */
    106      1.34  drochner 		if (crd->crd_flags & CRD_F_IV_EXPLICIT) {
    107      1.32  drochner 			memcpy(iv, crd->crd_iv, ivlen);
    108      1.34  drochner 			if (exf->reinit)
    109      1.34  drochner 				exf->reinit(sw->sw_kschedule, iv, 0);
    110      1.34  drochner 		} else if (exf->reinit) {
    111      1.34  drochner 			exf->reinit(sw->sw_kschedule, 0, iv);
    112      1.34  drochner 		} else {
    113       1.1  jonathan 			/* Get random IV */
    114       1.1  jonathan 			for (i = 0;
    115      1.31  drochner 			    i + sizeof (u_int32_t) <= EALG_MAX_BLOCK_LEN;
    116       1.1  jonathan 			    i += sizeof (u_int32_t)) {
    117      1.39       tls 				u_int32_t temp = cprng_fast32();
    118       1.1  jonathan 
    119      1.25   tsutsui 				memcpy(iv + i, &temp, sizeof(u_int32_t));
    120       1.1  jonathan 			}
    121       1.1  jonathan 			/*
    122       1.1  jonathan 			 * What if the block size is not a multiple
    123       1.1  jonathan 			 * of sizeof (u_int32_t), which is the size of
    124       1.1  jonathan 			 * what arc4random() returns ?
    125       1.1  jonathan 			 */
    126       1.1  jonathan 			if (EALG_MAX_BLOCK_LEN % sizeof (u_int32_t) != 0) {
    127      1.39       tls 				u_int32_t temp = cprng_fast32();
    128       1.1  jonathan 
    129       1.1  jonathan 				bcopy (&temp, iv + i,
    130       1.1  jonathan 				    EALG_MAX_BLOCK_LEN - i);
    131       1.1  jonathan 			}
    132       1.1  jonathan 		}
    133       1.1  jonathan 
    134       1.1  jonathan 		/* Do we need to write the IV */
    135       1.1  jonathan 		if (!(crd->crd_flags & CRD_F_IV_PRESENT)) {
    136      1.32  drochner 			COPYBACK(outtype, buf, crd->crd_inject, ivlen, iv);
    137       1.1  jonathan 		}
    138       1.1  jonathan 
    139       1.1  jonathan 	} else {	/* Decryption */
    140       1.1  jonathan 			/* IV explicitly provided ? */
    141       1.1  jonathan 		if (crd->crd_flags & CRD_F_IV_EXPLICIT)
    142      1.32  drochner 			memcpy(iv, crd->crd_iv, ivlen);
    143       1.1  jonathan 		else {
    144       1.1  jonathan 			/* Get IV off buf */
    145      1.32  drochner 			COPYDATA(outtype, buf, crd->crd_inject, ivlen, iv);
    146       1.1  jonathan 		}
    147      1.34  drochner 		if (exf->reinit)
    148      1.34  drochner 			exf->reinit(sw->sw_kschedule, iv, 0);
    149       1.1  jonathan 	}
    150       1.1  jonathan 
    151       1.1  jonathan 	ivp = iv;
    152       1.1  jonathan 
    153       1.1  jonathan 	if (outtype == CRYPTO_BUF_CONTIG) {
    154      1.32  drochner 		if (exf->reinit) {
    155      1.32  drochner 			for (i = crd->crd_skip;
    156      1.32  drochner 			     i < crd->crd_skip + crd->crd_len; i += blks) {
    157      1.32  drochner 				if (crd->crd_flags & CRD_F_ENCRYPT) {
    158      1.32  drochner 					exf->encrypt(sw->sw_kschedule, buf + i);
    159      1.32  drochner 				} else {
    160      1.32  drochner 					exf->decrypt(sw->sw_kschedule, buf + i);
    161      1.32  drochner 				}
    162      1.32  drochner 			}
    163      1.32  drochner 		} else if (crd->crd_flags & CRD_F_ENCRYPT) {
    164       1.1  jonathan 			for (i = crd->crd_skip;
    165       1.1  jonathan 			    i < crd->crd_skip + crd->crd_len; i += blks) {
    166       1.1  jonathan 				/* XOR with the IV/previous block, as appropriate. */
    167       1.1  jonathan 				if (i == crd->crd_skip)
    168       1.1  jonathan 					for (k = 0; k < blks; k++)
    169       1.1  jonathan 						buf[i + k] ^= ivp[k];
    170       1.1  jonathan 				else
    171       1.1  jonathan 					for (k = 0; k < blks; k++)
    172       1.1  jonathan 						buf[i + k] ^= buf[i + k - blks];
    173       1.1  jonathan 				exf->encrypt(sw->sw_kschedule, buf + i);
    174       1.1  jonathan 			}
    175       1.1  jonathan 		} else {		/* Decrypt */
    176       1.1  jonathan 			/*
    177       1.1  jonathan 			 * Start at the end, so we don't need to keep the encrypted
    178       1.1  jonathan 			 * block as the IV for the next block.
    179       1.1  jonathan 			 */
    180       1.1  jonathan 			for (i = crd->crd_skip + crd->crd_len - blks;
    181       1.1  jonathan 			    i >= crd->crd_skip; i -= blks) {
    182       1.1  jonathan 				exf->decrypt(sw->sw_kschedule, buf + i);
    183       1.1  jonathan 
    184       1.1  jonathan 				/* XOR with the IV/previous block, as appropriate */
    185       1.1  jonathan 				if (i == crd->crd_skip)
    186       1.1  jonathan 					for (k = 0; k < blks; k++)
    187       1.1  jonathan 						buf[i + k] ^= ivp[k];
    188       1.1  jonathan 				else
    189       1.1  jonathan 					for (k = 0; k < blks; k++)
    190       1.1  jonathan 						buf[i + k] ^= buf[i + k - blks];
    191       1.1  jonathan 			}
    192       1.1  jonathan 		}
    193       1.1  jonathan 
    194       1.1  jonathan 		return 0;
    195       1.1  jonathan 	} else if (outtype == CRYPTO_BUF_MBUF) {
    196       1.1  jonathan 		struct mbuf *m = (struct mbuf *) buf;
    197       1.1  jonathan 
    198       1.1  jonathan 		/* Find beginning of data */
    199       1.1  jonathan 		m = m_getptr(m, crd->crd_skip, &k);
    200       1.1  jonathan 		if (m == NULL)
    201       1.1  jonathan 			return EINVAL;
    202       1.1  jonathan 
    203       1.1  jonathan 		i = crd->crd_len;
    204       1.1  jonathan 
    205       1.1  jonathan 		while (i > 0) {
    206       1.1  jonathan 			/*
    207       1.1  jonathan 			 * If there's insufficient data at the end of
    208       1.1  jonathan 			 * an mbuf, we have to do some copying.
    209       1.1  jonathan 			 */
    210       1.1  jonathan 			if (m->m_len < k + blks && m->m_len != k) {
    211       1.1  jonathan 				m_copydata(m, k, blks, blk);
    212       1.1  jonathan 
    213       1.1  jonathan 				/* Actual encryption/decryption */
    214      1.32  drochner 				if (exf->reinit) {
    215      1.32  drochner 					if (crd->crd_flags & CRD_F_ENCRYPT) {
    216      1.32  drochner 						exf->encrypt(sw->sw_kschedule,
    217      1.32  drochner 							     blk);
    218      1.32  drochner 					} else {
    219      1.32  drochner 						exf->decrypt(sw->sw_kschedule,
    220      1.32  drochner 							     blk);
    221      1.32  drochner 					}
    222      1.32  drochner 				} else if (crd->crd_flags & CRD_F_ENCRYPT) {
    223       1.1  jonathan 					/* XOR with previous block */
    224       1.1  jonathan 					for (j = 0; j < blks; j++)
    225       1.1  jonathan 						blk[j] ^= ivp[j];
    226       1.1  jonathan 
    227       1.1  jonathan 					exf->encrypt(sw->sw_kschedule, blk);
    228       1.1  jonathan 
    229       1.1  jonathan 					/*
    230       1.1  jonathan 					 * Keep encrypted block for XOR'ing
    231       1.1  jonathan 					 * with next block
    232       1.1  jonathan 					 */
    233      1.25   tsutsui 					memcpy(iv, blk, blks);
    234       1.1  jonathan 					ivp = iv;
    235       1.1  jonathan 				} else {	/* decrypt */
    236       1.1  jonathan 					/*
    237       1.1  jonathan 					 * Keep encrypted block for XOR'ing
    238       1.1  jonathan 					 * with next block
    239       1.1  jonathan 					 */
    240       1.1  jonathan 					if (ivp == iv)
    241      1.25   tsutsui 						memcpy(piv, blk, blks);
    242       1.1  jonathan 					else
    243      1.25   tsutsui 						memcpy(iv, blk, blks);
    244       1.1  jonathan 
    245       1.1  jonathan 					exf->decrypt(sw->sw_kschedule, blk);
    246       1.1  jonathan 
    247       1.1  jonathan 					/* XOR with previous block */
    248       1.1  jonathan 					for (j = 0; j < blks; j++)
    249       1.1  jonathan 						blk[j] ^= ivp[j];
    250       1.1  jonathan 
    251       1.1  jonathan 					if (ivp == iv)
    252      1.25   tsutsui 						memcpy(iv, piv, blks);
    253       1.1  jonathan 					else
    254       1.1  jonathan 						ivp = iv;
    255       1.1  jonathan 				}
    256       1.1  jonathan 
    257       1.1  jonathan 				/* Copy back decrypted block */
    258       1.1  jonathan 				m_copyback(m, k, blks, blk);
    259       1.1  jonathan 
    260       1.1  jonathan 				/* Advance pointer */
    261       1.1  jonathan 				m = m_getptr(m, k + blks, &k);
    262       1.1  jonathan 				if (m == NULL)
    263       1.1  jonathan 					return EINVAL;
    264       1.1  jonathan 
    265       1.1  jonathan 				i -= blks;
    266       1.1  jonathan 
    267       1.1  jonathan 				/* Could be done... */
    268       1.1  jonathan 				if (i == 0)
    269       1.1  jonathan 					break;
    270       1.1  jonathan 			}
    271       1.1  jonathan 
    272       1.1  jonathan 			/* Skip possibly empty mbufs */
    273       1.1  jonathan 			if (k == m->m_len) {
    274       1.1  jonathan 				for (m = m->m_next; m && m->m_len == 0;
    275       1.1  jonathan 				    m = m->m_next)
    276       1.1  jonathan 					;
    277       1.1  jonathan 				k = 0;
    278       1.1  jonathan 			}
    279       1.1  jonathan 
    280       1.1  jonathan 			/* Sanity check */
    281       1.1  jonathan 			if (m == NULL)
    282       1.1  jonathan 				return EINVAL;
    283       1.1  jonathan 
    284       1.1  jonathan 			/*
    285       1.1  jonathan 			 * Warning: idat may point to garbage here, but
    286       1.1  jonathan 			 * we only use it in the while() loop, only if
    287       1.1  jonathan 			 * there are indeed enough data.
    288       1.1  jonathan 			 */
    289       1.1  jonathan 			idat = mtod(m, unsigned char *) + k;
    290       1.1  jonathan 
    291       1.1  jonathan 			while (m->m_len >= k + blks && i > 0) {
    292      1.32  drochner 				if (exf->reinit) {
    293      1.32  drochner 					if (crd->crd_flags & CRD_F_ENCRYPT) {
    294      1.32  drochner 						exf->encrypt(sw->sw_kschedule,
    295      1.32  drochner 							     idat);
    296      1.32  drochner 					} else {
    297      1.32  drochner 						exf->decrypt(sw->sw_kschedule,
    298      1.32  drochner 							     idat);
    299      1.32  drochner 					}
    300      1.32  drochner 				} else if (crd->crd_flags & CRD_F_ENCRYPT) {
    301       1.1  jonathan 					/* XOR with previous block/IV */
    302       1.1  jonathan 					for (j = 0; j < blks; j++)
    303       1.1  jonathan 						idat[j] ^= ivp[j];
    304       1.1  jonathan 
    305       1.1  jonathan 					exf->encrypt(sw->sw_kschedule, idat);
    306       1.1  jonathan 					ivp = idat;
    307       1.1  jonathan 				} else {	/* decrypt */
    308       1.1  jonathan 					/*
    309       1.1  jonathan 					 * Keep encrypted block to be used
    310       1.1  jonathan 					 * in next block's processing.
    311       1.1  jonathan 					 */
    312       1.1  jonathan 					if (ivp == iv)
    313      1.25   tsutsui 						memcpy(piv, idat, blks);
    314       1.1  jonathan 					else
    315      1.25   tsutsui 						memcpy(iv, idat, blks);
    316       1.1  jonathan 
    317       1.1  jonathan 					exf->decrypt(sw->sw_kschedule, idat);
    318       1.1  jonathan 
    319       1.1  jonathan 					/* XOR with previous block/IV */
    320       1.1  jonathan 					for (j = 0; j < blks; j++)
    321       1.1  jonathan 						idat[j] ^= ivp[j];
    322       1.1  jonathan 
    323       1.1  jonathan 					if (ivp == iv)
    324      1.25   tsutsui 						memcpy(iv, piv, blks);
    325       1.1  jonathan 					else
    326       1.1  jonathan 						ivp = iv;
    327       1.1  jonathan 				}
    328       1.1  jonathan 
    329       1.1  jonathan 				idat += blks;
    330       1.1  jonathan 				k += blks;
    331       1.1  jonathan 				i -= blks;
    332       1.1  jonathan 			}
    333       1.1  jonathan 		}
    334       1.1  jonathan 
    335       1.1  jonathan 		return 0; /* Done with mbuf encryption/decryption */
    336       1.1  jonathan 	} else if (outtype == CRYPTO_BUF_IOV) {
    337       1.1  jonathan 		struct uio *uio = (struct uio *) buf;
    338       1.1  jonathan 
    339       1.1  jonathan 		/* Find beginning of data */
    340       1.1  jonathan 		count = crd->crd_skip;
    341       1.1  jonathan 		ind = cuio_getptr(uio, count, &k);
    342       1.1  jonathan 		if (ind == -1)
    343       1.1  jonathan 			return EINVAL;
    344       1.1  jonathan 
    345       1.1  jonathan 		i = crd->crd_len;
    346       1.1  jonathan 
    347       1.1  jonathan 		while (i > 0) {
    348       1.1  jonathan 			/*
    349       1.1  jonathan 			 * If there's insufficient data at the end,
    350       1.1  jonathan 			 * we have to do some copying.
    351       1.1  jonathan 			 */
    352       1.1  jonathan 			if (uio->uio_iov[ind].iov_len < k + blks &&
    353       1.1  jonathan 			    uio->uio_iov[ind].iov_len != k) {
    354       1.1  jonathan 				cuio_copydata(uio, k, blks, blk);
    355       1.1  jonathan 
    356       1.1  jonathan 				/* Actual encryption/decryption */
    357      1.32  drochner 				if (exf->reinit) {
    358      1.32  drochner 					if (crd->crd_flags & CRD_F_ENCRYPT) {
    359      1.32  drochner 						exf->encrypt(sw->sw_kschedule,
    360      1.32  drochner 							     blk);
    361      1.32  drochner 					} else {
    362      1.32  drochner 						exf->decrypt(sw->sw_kschedule,
    363      1.32  drochner 							     blk);
    364      1.32  drochner 					}
    365      1.32  drochner 				} else if (crd->crd_flags & CRD_F_ENCRYPT) {
    366       1.1  jonathan 					/* XOR with previous block */
    367       1.1  jonathan 					for (j = 0; j < blks; j++)
    368       1.1  jonathan 						blk[j] ^= ivp[j];
    369       1.1  jonathan 
    370       1.1  jonathan 					exf->encrypt(sw->sw_kschedule, blk);
    371       1.1  jonathan 
    372       1.1  jonathan 					/*
    373       1.1  jonathan 					 * Keep encrypted block for XOR'ing
    374       1.1  jonathan 					 * with next block
    375       1.1  jonathan 					 */
    376      1.25   tsutsui 					memcpy(iv, blk, blks);
    377       1.1  jonathan 					ivp = iv;
    378       1.1  jonathan 				} else {	/* decrypt */
    379       1.1  jonathan 					/*
    380       1.1  jonathan 					 * Keep encrypted block for XOR'ing
    381       1.1  jonathan 					 * with next block
    382       1.1  jonathan 					 */
    383       1.1  jonathan 					if (ivp == iv)
    384      1.25   tsutsui 						memcpy(piv, blk, blks);
    385       1.1  jonathan 					else
    386      1.25   tsutsui 						memcpy(iv, blk, blks);
    387       1.1  jonathan 
    388       1.1  jonathan 					exf->decrypt(sw->sw_kschedule, blk);
    389       1.1  jonathan 
    390       1.1  jonathan 					/* XOR with previous block */
    391       1.1  jonathan 					for (j = 0; j < blks; j++)
    392       1.1  jonathan 						blk[j] ^= ivp[j];
    393       1.1  jonathan 
    394       1.1  jonathan 					if (ivp == iv)
    395      1.25   tsutsui 						memcpy(iv, piv, blks);
    396       1.1  jonathan 					else
    397       1.1  jonathan 						ivp = iv;
    398       1.1  jonathan 				}
    399       1.1  jonathan 
    400       1.1  jonathan 				/* Copy back decrypted block */
    401       1.1  jonathan 				cuio_copyback(uio, k, blks, blk);
    402       1.1  jonathan 
    403       1.1  jonathan 				count += blks;
    404       1.1  jonathan 
    405       1.1  jonathan 				/* Advance pointer */
    406       1.1  jonathan 				ind = cuio_getptr(uio, count, &k);
    407       1.1  jonathan 				if (ind == -1)
    408       1.1  jonathan 					return (EINVAL);
    409       1.1  jonathan 
    410       1.1  jonathan 				i -= blks;
    411       1.1  jonathan 
    412       1.1  jonathan 				/* Could be done... */
    413       1.1  jonathan 				if (i == 0)
    414       1.1  jonathan 					break;
    415       1.1  jonathan 			}
    416       1.1  jonathan 
    417       1.1  jonathan 			/*
    418       1.1  jonathan 			 * Warning: idat may point to garbage here, but
    419       1.1  jonathan 			 * we only use it in the while() loop, only if
    420       1.1  jonathan 			 * there are indeed enough data.
    421       1.1  jonathan 			 */
    422      1.17  christos 			idat = ((char *)uio->uio_iov[ind].iov_base) + k;
    423       1.1  jonathan 
    424       1.1  jonathan 			while (uio->uio_iov[ind].iov_len >= k + blks &&
    425       1.1  jonathan 			    i > 0) {
    426      1.32  drochner 				if (exf->reinit) {
    427      1.32  drochner 					if (crd->crd_flags & CRD_F_ENCRYPT) {
    428      1.32  drochner 						exf->encrypt(sw->sw_kschedule,
    429      1.32  drochner 							    idat);
    430      1.32  drochner 					} else {
    431      1.32  drochner 						exf->decrypt(sw->sw_kschedule,
    432      1.32  drochner 							    idat);
    433      1.32  drochner 					}
    434      1.32  drochner 				} else if (crd->crd_flags & CRD_F_ENCRYPT) {
    435       1.1  jonathan 					/* XOR with previous block/IV */
    436       1.1  jonathan 					for (j = 0; j < blks; j++)
    437       1.1  jonathan 						idat[j] ^= ivp[j];
    438       1.1  jonathan 
    439       1.1  jonathan 					exf->encrypt(sw->sw_kschedule, idat);
    440       1.1  jonathan 					ivp = idat;
    441       1.1  jonathan 				} else {	/* decrypt */
    442       1.1  jonathan 					/*
    443       1.1  jonathan 					 * Keep encrypted block to be used
    444       1.1  jonathan 					 * in next block's processing.
    445       1.1  jonathan 					 */
    446       1.1  jonathan 					if (ivp == iv)
    447      1.25   tsutsui 						memcpy(piv, idat, blks);
    448       1.1  jonathan 					else
    449      1.25   tsutsui 						memcpy(iv, idat, blks);
    450       1.1  jonathan 
    451       1.1  jonathan 					exf->decrypt(sw->sw_kschedule, idat);
    452       1.1  jonathan 
    453       1.1  jonathan 					/* XOR with previous block/IV */
    454       1.1  jonathan 					for (j = 0; j < blks; j++)
    455       1.1  jonathan 						idat[j] ^= ivp[j];
    456       1.1  jonathan 
    457       1.1  jonathan 					if (ivp == iv)
    458      1.25   tsutsui 						memcpy(iv, piv, blks);
    459       1.1  jonathan 					else
    460       1.1  jonathan 						ivp = iv;
    461       1.1  jonathan 				}
    462       1.1  jonathan 
    463       1.1  jonathan 				idat += blks;
    464       1.1  jonathan 				count += blks;
    465       1.1  jonathan 				k += blks;
    466       1.1  jonathan 				i -= blks;
    467       1.1  jonathan 			}
    468       1.1  jonathan 		}
    469       1.1  jonathan 		return 0; /* Done with mbuf encryption/decryption */
    470       1.1  jonathan 	}
    471       1.1  jonathan 
    472       1.1  jonathan 	/* Unreachable */
    473       1.1  jonathan 	return EINVAL;
    474       1.1  jonathan }
    475       1.1  jonathan 
    476       1.1  jonathan /*
    477       1.1  jonathan  * Compute keyed-hash authenticator.
    478       1.1  jonathan  */
    479      1.16    daniel int
    480       1.1  jonathan swcr_authcompute(struct cryptop *crp, struct cryptodesc *crd,
    481      1.27  drochner     const struct swcr_data *sw, void *buf, int outtype)
    482       1.1  jonathan {
    483       1.1  jonathan 	unsigned char aalg[AALG_MAX_RESULT_LEN];
    484      1.10   thorpej 	const struct swcr_auth_hash *axf;
    485       1.1  jonathan 	union authctx ctx;
    486       1.1  jonathan 	int err;
    487       1.1  jonathan 
    488       1.1  jonathan 	if (sw->sw_ictx == 0)
    489       1.1  jonathan 		return EINVAL;
    490       1.1  jonathan 
    491       1.1  jonathan 	axf = sw->sw_axf;
    492       1.1  jonathan 
    493      1.35  drochner 	memcpy(&ctx, sw->sw_ictx, axf->ctxsize);
    494       1.1  jonathan 
    495       1.1  jonathan 	switch (outtype) {
    496       1.1  jonathan 	case CRYPTO_BUF_CONTIG:
    497      1.17  christos 		axf->Update(&ctx, (char *)buf + crd->crd_skip, crd->crd_len);
    498       1.1  jonathan 		break;
    499       1.1  jonathan 	case CRYPTO_BUF_MBUF:
    500       1.1  jonathan 		err = m_apply((struct mbuf *) buf, crd->crd_skip, crd->crd_len,
    501      1.17  christos 		    (int (*)(void*, void *, unsigned int)) axf->Update,
    502      1.17  christos 		    (void *) &ctx);
    503       1.1  jonathan 		if (err)
    504       1.1  jonathan 			return err;
    505       1.1  jonathan 		break;
    506       1.1  jonathan 	case CRYPTO_BUF_IOV:
    507       1.2  jonathan 		err = cuio_apply((struct uio *) buf, crd->crd_skip,
    508       1.2  jonathan 		    crd->crd_len,
    509      1.17  christos 		    (int (*)(void *, void *, unsigned int)) axf->Update,
    510      1.17  christos 		    (void *) &ctx);
    511       1.2  jonathan 		if (err) {
    512       1.2  jonathan 			return err;
    513       1.2  jonathan 		}
    514       1.2  jonathan 		break;
    515       1.1  jonathan 	default:
    516       1.1  jonathan 		return EINVAL;
    517       1.1  jonathan 	}
    518       1.1  jonathan 
    519       1.1  jonathan 	switch (sw->sw_alg) {
    520       1.1  jonathan 	case CRYPTO_MD5_HMAC:
    521      1.19       tls 	case CRYPTO_MD5_HMAC_96:
    522       1.1  jonathan 	case CRYPTO_SHA1_HMAC:
    523      1.19       tls 	case CRYPTO_SHA1_HMAC_96:
    524      1.29  drochner 	case CRYPTO_SHA2_256_HMAC:
    525      1.29  drochner 	case CRYPTO_SHA2_384_HMAC:
    526      1.29  drochner 	case CRYPTO_SHA2_512_HMAC:
    527       1.1  jonathan 	case CRYPTO_RIPEMD160_HMAC:
    528      1.19       tls 	case CRYPTO_RIPEMD160_HMAC_96:
    529       1.1  jonathan 		if (sw->sw_octx == NULL)
    530       1.1  jonathan 			return EINVAL;
    531       1.1  jonathan 
    532       1.1  jonathan 		axf->Final(aalg, &ctx);
    533      1.35  drochner 		memcpy(&ctx, sw->sw_octx, axf->ctxsize);
    534      1.10   thorpej 		axf->Update(&ctx, aalg, axf->auth_hash->hashsize);
    535       1.1  jonathan 		axf->Final(aalg, &ctx);
    536       1.1  jonathan 		break;
    537       1.1  jonathan 
    538       1.1  jonathan 	case CRYPTO_MD5_KPDK:
    539       1.1  jonathan 	case CRYPTO_SHA1_KPDK:
    540       1.1  jonathan 		if (sw->sw_octx == NULL)
    541       1.1  jonathan 			return EINVAL;
    542       1.1  jonathan 
    543       1.1  jonathan 		axf->Update(&ctx, sw->sw_octx, sw->sw_klen);
    544       1.1  jonathan 		axf->Final(aalg, &ctx);
    545       1.1  jonathan 		break;
    546       1.1  jonathan 
    547       1.1  jonathan 	case CRYPTO_NULL_HMAC:
    548       1.1  jonathan 	case CRYPTO_MD5:
    549       1.1  jonathan 	case CRYPTO_SHA1:
    550      1.36  drochner 	case CRYPTO_AES_XCBC_MAC_96:
    551       1.1  jonathan 		axf->Final(aalg, &ctx);
    552       1.1  jonathan 		break;
    553       1.1  jonathan 	}
    554       1.1  jonathan 
    555       1.1  jonathan 	/* Inject the authentication data */
    556       1.2  jonathan 	switch (outtype) {
    557       1.2  jonathan 	case CRYPTO_BUF_CONTIG:
    558      1.17  christos 		(void)memcpy((char *)buf + crd->crd_inject, aalg,
    559      1.17  christos 		    axf->auth_hash->authsize);
    560       1.2  jonathan 		break;
    561       1.2  jonathan 	case CRYPTO_BUF_MBUF:
    562       1.1  jonathan 		m_copyback((struct mbuf *) buf, crd->crd_inject,
    563      1.10   thorpej 		    axf->auth_hash->authsize, aalg);
    564       1.2  jonathan 		break;
    565       1.2  jonathan 	case CRYPTO_BUF_IOV:
    566      1.25   tsutsui 		memcpy(crp->crp_mac, aalg, axf->auth_hash->authsize);
    567       1.2  jonathan 		break;
    568       1.2  jonathan 	default:
    569       1.2  jonathan 		return EINVAL;
    570       1.2  jonathan 	}
    571       1.1  jonathan 	return 0;
    572       1.1  jonathan }
    573       1.1  jonathan 
    574       1.1  jonathan /*
    575      1.37  drochner  * Apply a combined encryption-authentication transformation
    576      1.37  drochner  */
    577      1.37  drochner static int
    578      1.37  drochner swcr_combined(struct cryptop *crp, int outtype)
    579      1.37  drochner {
    580      1.37  drochner 	uint32_t blkbuf[howmany(EALG_MAX_BLOCK_LEN, sizeof(uint32_t))];
    581      1.37  drochner 	u_char *blk = (u_char *)blkbuf;
    582      1.37  drochner 	u_char aalg[AALG_MAX_RESULT_LEN];
    583      1.37  drochner 	u_char iv[EALG_MAX_BLOCK_LEN];
    584      1.37  drochner 	union authctx ctx;
    585      1.37  drochner 	struct cryptodesc *crd, *crda = NULL, *crde = NULL;
    586      1.37  drochner 	struct swcr_data *sw, *swa, *swe = NULL;
    587      1.37  drochner 	const struct swcr_auth_hash *axf = NULL;
    588      1.37  drochner 	const struct swcr_enc_xform *exf = NULL;
    589      1.37  drochner 	void *buf = (void *)crp->crp_buf;
    590      1.37  drochner 	uint32_t *blkp;
    591      1.37  drochner 	int i, blksz = 0, ivlen = 0, len;
    592      1.37  drochner 
    593      1.37  drochner 	for (crd = crp->crp_desc; crd; crd = crd->crd_next) {
    594      1.37  drochner 		for (sw = swcr_sessions[crp->crp_sid & 0xffffffff];
    595      1.37  drochner 		     sw && sw->sw_alg != crd->crd_alg;
    596      1.37  drochner 		     sw = sw->sw_next)
    597      1.37  drochner 			;
    598      1.37  drochner 		if (sw == NULL)
    599      1.37  drochner 			return (EINVAL);
    600      1.37  drochner 
    601      1.37  drochner 		switch (sw->sw_alg) {
    602      1.37  drochner 		case CRYPTO_AES_GCM_16:
    603      1.37  drochner 		case CRYPTO_AES_GMAC:
    604      1.37  drochner 			swe = sw;
    605      1.37  drochner 			crde = crd;
    606      1.37  drochner 			exf = swe->sw_exf;
    607      1.37  drochner 			ivlen = exf->enc_xform->ivsize;
    608      1.37  drochner 			break;
    609      1.37  drochner 		case CRYPTO_AES_128_GMAC:
    610      1.37  drochner 		case CRYPTO_AES_192_GMAC:
    611      1.37  drochner 		case CRYPTO_AES_256_GMAC:
    612      1.37  drochner 			swa = sw;
    613      1.37  drochner 			crda = crd;
    614      1.37  drochner 			axf = swa->sw_axf;
    615      1.37  drochner 			if (swa->sw_ictx == 0)
    616      1.37  drochner 				return (EINVAL);
    617      1.37  drochner 			memcpy(&ctx, swa->sw_ictx, axf->ctxsize);
    618      1.37  drochner 			blksz = axf->auth_hash->blocksize;
    619      1.37  drochner 			break;
    620      1.37  drochner 		default:
    621      1.37  drochner 			return (EINVAL);
    622      1.37  drochner 		}
    623      1.37  drochner 	}
    624      1.37  drochner 	if (crde == NULL || crda == NULL)
    625      1.37  drochner 		return (EINVAL);
    626      1.37  drochner 	if (outtype == CRYPTO_BUF_CONTIG)
    627      1.37  drochner 		return (EINVAL);
    628      1.37  drochner 
    629      1.37  drochner 	/* Initialize the IV */
    630      1.37  drochner 	if (crde->crd_flags & CRD_F_ENCRYPT) {
    631      1.37  drochner 		/* IV explicitly provided ? */
    632      1.37  drochner 		if (crde->crd_flags & CRD_F_IV_EXPLICIT) {
    633      1.37  drochner 			memcpy(iv, crde->crd_iv, ivlen);
    634      1.37  drochner 			if (exf->reinit)
    635      1.37  drochner 				exf->reinit(swe->sw_kschedule, iv, 0);
    636      1.37  drochner 		} else if (exf->reinit)
    637      1.37  drochner 			exf->reinit(swe->sw_kschedule, 0, iv);
    638      1.37  drochner 		else
    639      1.39       tls 			cprng_fast(iv, ivlen);
    640      1.37  drochner 
    641      1.37  drochner 		/* Do we need to write the IV */
    642      1.37  drochner 		if (!(crde->crd_flags & CRD_F_IV_PRESENT))
    643      1.37  drochner 			COPYBACK(outtype, buf, crde->crd_inject, ivlen, iv);
    644      1.37  drochner 
    645      1.37  drochner 	} else {	/* Decryption */
    646      1.37  drochner 			/* IV explicitly provided ? */
    647      1.37  drochner 		if (crde->crd_flags & CRD_F_IV_EXPLICIT)
    648      1.37  drochner 			memcpy(iv, crde->crd_iv, ivlen);
    649      1.37  drochner 		else {
    650      1.37  drochner 			/* Get IV off buf */
    651      1.37  drochner 			COPYDATA(outtype, buf, crde->crd_inject, ivlen, iv);
    652      1.37  drochner 		}
    653      1.37  drochner 		if (exf->reinit)
    654      1.37  drochner 			exf->reinit(swe->sw_kschedule, iv, 0);
    655      1.37  drochner 	}
    656      1.37  drochner 
    657      1.37  drochner 	/* Supply MAC with IV */
    658      1.37  drochner 	if (axf->Reinit)
    659      1.37  drochner 		axf->Reinit(&ctx, iv, ivlen);
    660      1.37  drochner 
    661      1.37  drochner 	/* Supply MAC with AAD */
    662      1.37  drochner 	for (i = 0; i < crda->crd_len; i += blksz) {
    663      1.37  drochner 		len = MIN(crda->crd_len - i, blksz);
    664      1.37  drochner 		COPYDATA(outtype, buf, crda->crd_skip + i, len, blk);
    665      1.37  drochner 		axf->Update(&ctx, blk, len);
    666      1.37  drochner 	}
    667      1.37  drochner 
    668      1.37  drochner 	/* Do encryption/decryption with MAC */
    669      1.37  drochner 	for (i = 0; i < crde->crd_len; i += blksz) {
    670      1.37  drochner 		len = MIN(crde->crd_len - i, blksz);
    671      1.37  drochner 		if (len < blksz)
    672      1.37  drochner 			memset(blk, 0, blksz);
    673      1.37  drochner 		COPYDATA(outtype, buf, crde->crd_skip + i, len, blk);
    674      1.37  drochner 		if (crde->crd_flags & CRD_F_ENCRYPT) {
    675      1.37  drochner 			exf->encrypt(swe->sw_kschedule, blk);
    676      1.37  drochner 			axf->Update(&ctx, blk, len);
    677      1.37  drochner 		} else {
    678      1.37  drochner 			axf->Update(&ctx, blk, len);
    679      1.37  drochner 			exf->decrypt(swe->sw_kschedule, blk);
    680      1.37  drochner 		}
    681      1.37  drochner 		COPYBACK(outtype, buf, crde->crd_skip + i, len, blk);
    682      1.37  drochner 	}
    683      1.37  drochner 
    684      1.37  drochner 	/* Do any required special finalization */
    685      1.37  drochner 	switch (crda->crd_alg) {
    686      1.37  drochner 		case CRYPTO_AES_128_GMAC:
    687      1.37  drochner 		case CRYPTO_AES_192_GMAC:
    688      1.37  drochner 		case CRYPTO_AES_256_GMAC:
    689      1.37  drochner 			/* length block */
    690      1.37  drochner 			memset(blk, 0, blksz);
    691      1.37  drochner 			blkp = (uint32_t *)blk + 1;
    692      1.37  drochner 			*blkp = htobe32(crda->crd_len * 8);
    693      1.37  drochner 			blkp = (uint32_t *)blk + 3;
    694      1.37  drochner 			*blkp = htobe32(crde->crd_len * 8);
    695      1.37  drochner 			axf->Update(&ctx, blk, blksz);
    696      1.37  drochner 			break;
    697      1.37  drochner 	}
    698      1.37  drochner 
    699      1.37  drochner 	/* Finalize MAC */
    700      1.37  drochner 	axf->Final(aalg, &ctx);
    701      1.37  drochner 
    702      1.37  drochner 	/* Inject the authentication data */
    703      1.37  drochner 	if (outtype == CRYPTO_BUF_MBUF)
    704      1.37  drochner 		COPYBACK(outtype, buf, crda->crd_inject, axf->auth_hash->authsize, aalg);
    705      1.37  drochner 	else
    706      1.37  drochner 		memcpy(crp->crp_mac, aalg, axf->auth_hash->authsize);
    707      1.37  drochner 
    708      1.37  drochner 	return (0);
    709      1.37  drochner }
    710      1.37  drochner 
    711      1.37  drochner /*
    712       1.1  jonathan  * Apply a compression/decompression algorithm
    713       1.1  jonathan  */
    714       1.1  jonathan static int
    715      1.27  drochner swcr_compdec(struct cryptodesc *crd, const struct swcr_data *sw,
    716      1.27  drochner     void *buf, int outtype, int *res_size)
    717       1.1  jonathan {
    718       1.1  jonathan 	u_int8_t *data, *out;
    719      1.10   thorpej 	const struct swcr_comp_algo *cxf;
    720       1.1  jonathan 	int adj;
    721       1.1  jonathan 	u_int32_t result;
    722       1.1  jonathan 
    723       1.1  jonathan 	cxf = sw->sw_cxf;
    724       1.1  jonathan 
    725       1.1  jonathan 	/* We must handle the whole buffer of data in one time
    726       1.1  jonathan 	 * then if there is not all the data in the mbuf, we must
    727       1.1  jonathan 	 * copy in a buffer.
    728       1.1  jonathan 	 */
    729       1.1  jonathan 
    730      1.12  christos 	data = malloc(crd->crd_len, M_CRYPTO_DATA, M_NOWAIT);
    731       1.1  jonathan 	if (data == NULL)
    732       1.1  jonathan 		return (EINVAL);
    733       1.1  jonathan 	COPYDATA(outtype, buf, crd->crd_skip, crd->crd_len, data);
    734       1.1  jonathan 
    735       1.1  jonathan 	if (crd->crd_flags & CRD_F_COMP)
    736       1.1  jonathan 		result = cxf->compress(data, crd->crd_len, &out);
    737       1.1  jonathan 	else
    738      1.28  drochner 		result = cxf->decompress(data, crd->crd_len, &out,
    739      1.28  drochner 					 *res_size);
    740       1.1  jonathan 
    741      1.21    cegger 	free(data, M_CRYPTO_DATA);
    742       1.1  jonathan 	if (result == 0)
    743       1.1  jonathan 		return EINVAL;
    744       1.1  jonathan 
    745       1.1  jonathan 	/* Copy back the (de)compressed data. m_copyback is
    746       1.1  jonathan 	 * extending the mbuf as necessary.
    747       1.1  jonathan 	 */
    748      1.27  drochner 	*res_size = (int)result;
    749       1.1  jonathan 	/* Check the compressed size when doing compression */
    750      1.28  drochner 	if (crd->crd_flags & CRD_F_COMP &&
    751      1.28  drochner 	    sw->sw_alg == CRYPTO_DEFLATE_COMP_NOGROW &&
    752      1.28  drochner 	    result >= crd->crd_len) {
    753       1.1  jonathan 			/* Compression was useless, we lost time */
    754      1.21    cegger 			free(out, M_CRYPTO_DATA);
    755       1.1  jonathan 			return 0;
    756       1.1  jonathan 	}
    757       1.1  jonathan 
    758       1.1  jonathan 	COPYBACK(outtype, buf, crd->crd_skip, result, out);
    759       1.1  jonathan 	if (result < crd->crd_len) {
    760       1.1  jonathan 		adj = result - crd->crd_len;
    761       1.1  jonathan 		if (outtype == CRYPTO_BUF_MBUF) {
    762       1.1  jonathan 			m_adj((struct mbuf *)buf, adj);
    763       1.1  jonathan 		}
    764      1.24    darran 		/* Don't adjust the iov_len, it breaks the kmem_free */
    765       1.1  jonathan 	}
    766      1.21    cegger 	free(out, M_CRYPTO_DATA);
    767       1.1  jonathan 	return 0;
    768       1.1  jonathan }
    769       1.1  jonathan 
    770       1.1  jonathan /*
    771       1.1  jonathan  * Generate a new software session.
    772       1.1  jonathan  */
    773       1.1  jonathan static int
    774      1.15  christos swcr_newsession(void *arg, u_int32_t *sid, struct cryptoini *cri)
    775       1.1  jonathan {
    776       1.1  jonathan 	struct swcr_data **swd;
    777      1.10   thorpej 	const struct swcr_auth_hash *axf;
    778      1.10   thorpej 	const struct swcr_enc_xform *txf;
    779      1.10   thorpej 	const struct swcr_comp_algo *cxf;
    780       1.1  jonathan 	u_int32_t i;
    781       1.1  jonathan 	int k, error;
    782       1.1  jonathan 
    783       1.1  jonathan 	if (sid == NULL || cri == NULL)
    784       1.1  jonathan 		return EINVAL;
    785       1.1  jonathan 
    786       1.1  jonathan 	if (swcr_sessions) {
    787       1.1  jonathan 		for (i = 1; i < swcr_sesnum; i++)
    788       1.1  jonathan 			if (swcr_sessions[i] == NULL)
    789       1.1  jonathan 				break;
    790       1.1  jonathan 	} else
    791       1.1  jonathan 		i = 1;		/* NB: to silence compiler warning */
    792       1.1  jonathan 
    793       1.1  jonathan 	if (swcr_sessions == NULL || i == swcr_sesnum) {
    794       1.1  jonathan 		if (swcr_sessions == NULL) {
    795       1.1  jonathan 			i = 1; /* We leave swcr_sessions[0] empty */
    796       1.1  jonathan 			swcr_sesnum = CRYPTO_SW_SESSIONS;
    797       1.1  jonathan 		} else
    798       1.1  jonathan 			swcr_sesnum *= 2;
    799       1.1  jonathan 
    800       1.1  jonathan 		swd = malloc(swcr_sesnum * sizeof(struct swcr_data *),
    801       1.1  jonathan 		    M_CRYPTO_DATA, M_NOWAIT);
    802       1.1  jonathan 		if (swd == NULL) {
    803       1.1  jonathan 			/* Reset session number */
    804       1.1  jonathan 			if (swcr_sesnum == CRYPTO_SW_SESSIONS)
    805       1.1  jonathan 				swcr_sesnum = 0;
    806       1.1  jonathan 			else
    807       1.1  jonathan 				swcr_sesnum /= 2;
    808       1.1  jonathan 			return ENOBUFS;
    809       1.1  jonathan 		}
    810       1.1  jonathan 
    811      1.22    cegger 		memset(swd, 0, swcr_sesnum * sizeof(struct swcr_data *));
    812       1.1  jonathan 
    813       1.1  jonathan 		/* Copy existing sessions */
    814       1.1  jonathan 		if (swcr_sessions) {
    815      1.25   tsutsui 			memcpy(swd, swcr_sessions,
    816       1.1  jonathan 			    (swcr_sesnum / 2) * sizeof(struct swcr_data *));
    817       1.1  jonathan 			free(swcr_sessions, M_CRYPTO_DATA);
    818       1.1  jonathan 		}
    819       1.1  jonathan 
    820       1.1  jonathan 		swcr_sessions = swd;
    821       1.1  jonathan 	}
    822       1.1  jonathan 
    823       1.1  jonathan 	swd = &swcr_sessions[i];
    824       1.1  jonathan 	*sid = i;
    825       1.1  jonathan 
    826       1.1  jonathan 	while (cri) {
    827      1.13       dsl 		*swd = malloc(sizeof **swd, M_CRYPTO_DATA, M_NOWAIT);
    828       1.1  jonathan 		if (*swd == NULL) {
    829       1.1  jonathan 			swcr_freesession(NULL, i);
    830       1.1  jonathan 			return ENOBUFS;
    831       1.1  jonathan 		}
    832      1.22    cegger 		memset(*swd, 0, sizeof(struct swcr_data));
    833       1.1  jonathan 
    834       1.1  jonathan 		switch (cri->cri_alg) {
    835       1.1  jonathan 		case CRYPTO_DES_CBC:
    836      1.10   thorpej 			txf = &swcr_enc_xform_des;
    837       1.1  jonathan 			goto enccommon;
    838       1.1  jonathan 		case CRYPTO_3DES_CBC:
    839      1.10   thorpej 			txf = &swcr_enc_xform_3des;
    840       1.1  jonathan 			goto enccommon;
    841       1.1  jonathan 		case CRYPTO_BLF_CBC:
    842      1.10   thorpej 			txf = &swcr_enc_xform_blf;
    843       1.1  jonathan 			goto enccommon;
    844       1.1  jonathan 		case CRYPTO_CAST_CBC:
    845      1.10   thorpej 			txf = &swcr_enc_xform_cast5;
    846       1.1  jonathan 			goto enccommon;
    847       1.1  jonathan 		case CRYPTO_SKIPJACK_CBC:
    848      1.10   thorpej 			txf = &swcr_enc_xform_skipjack;
    849       1.1  jonathan 			goto enccommon;
    850       1.1  jonathan 		case CRYPTO_RIJNDAEL128_CBC:
    851      1.10   thorpej 			txf = &swcr_enc_xform_rijndael128;
    852       1.1  jonathan 			goto enccommon;
    853      1.30  drochner 		case CRYPTO_CAMELLIA_CBC:
    854      1.30  drochner 			txf = &swcr_enc_xform_camellia;
    855      1.30  drochner 			goto enccommon;
    856      1.33  drochner 		case CRYPTO_AES_CTR:
    857      1.33  drochner 			txf = &swcr_enc_xform_aes_ctr;
    858      1.33  drochner 			goto enccommon;
    859      1.37  drochner 		case CRYPTO_AES_GCM_16:
    860      1.37  drochner 			txf = &swcr_enc_xform_aes_gcm;
    861      1.37  drochner 			goto enccommon;
    862      1.38  drochner 		case CRYPTO_AES_GMAC:
    863      1.38  drochner 			txf = &swcr_enc_xform_aes_gmac;
    864      1.38  drochner 			goto enccommon;
    865       1.1  jonathan 		case CRYPTO_NULL_CBC:
    866      1.10   thorpej 			txf = &swcr_enc_xform_null;
    867       1.1  jonathan 			goto enccommon;
    868       1.1  jonathan 		enccommon:
    869       1.1  jonathan 			error = txf->setkey(&((*swd)->sw_kschedule),
    870       1.1  jonathan 					cri->cri_key, cri->cri_klen / 8);
    871       1.1  jonathan 			if (error) {
    872       1.1  jonathan 				swcr_freesession(NULL, i);
    873       1.1  jonathan 				return error;
    874       1.1  jonathan 			}
    875       1.1  jonathan 			(*swd)->sw_exf = txf;
    876       1.1  jonathan 			break;
    877       1.1  jonathan 
    878       1.1  jonathan 		case CRYPTO_MD5_HMAC:
    879      1.19       tls 			axf = &swcr_auth_hash_hmac_md5;
    880      1.19       tls 			goto authcommon;
    881      1.19       tls 		case CRYPTO_MD5_HMAC_96:
    882      1.10   thorpej 			axf = &swcr_auth_hash_hmac_md5_96;
    883       1.1  jonathan 			goto authcommon;
    884       1.1  jonathan 		case CRYPTO_SHA1_HMAC:
    885      1.19       tls 			axf = &swcr_auth_hash_hmac_sha1;
    886      1.19       tls 			goto authcommon;
    887      1.19       tls 		case CRYPTO_SHA1_HMAC_96:
    888      1.10   thorpej 			axf = &swcr_auth_hash_hmac_sha1_96;
    889       1.1  jonathan 			goto authcommon;
    890      1.29  drochner 		case CRYPTO_SHA2_256_HMAC:
    891      1.29  drochner 			axf = &swcr_auth_hash_hmac_sha2_256;
    892      1.29  drochner 			goto authcommon;
    893      1.29  drochner 		case CRYPTO_SHA2_384_HMAC:
    894      1.29  drochner 			axf = &swcr_auth_hash_hmac_sha2_384;
    895      1.29  drochner 			goto authcommon;
    896      1.29  drochner 		case CRYPTO_SHA2_512_HMAC:
    897      1.29  drochner 			axf = &swcr_auth_hash_hmac_sha2_512;
    898       1.1  jonathan 			goto authcommon;
    899       1.1  jonathan 		case CRYPTO_NULL_HMAC:
    900      1.10   thorpej 			axf = &swcr_auth_hash_null;
    901       1.1  jonathan 			goto authcommon;
    902       1.1  jonathan 		case CRYPTO_RIPEMD160_HMAC:
    903      1.19       tls 			axf = &swcr_auth_hash_hmac_ripemd_160;
    904      1.19       tls 			goto authcommon;
    905      1.19       tls 		case CRYPTO_RIPEMD160_HMAC_96:
    906      1.10   thorpej 			axf = &swcr_auth_hash_hmac_ripemd_160_96;
    907      1.19       tls 			goto authcommon;	/* leave this for safety */
    908       1.1  jonathan 		authcommon:
    909      1.35  drochner 			(*swd)->sw_ictx = malloc(axf->ctxsize,
    910      1.10   thorpej 			    M_CRYPTO_DATA, M_NOWAIT);
    911       1.1  jonathan 			if ((*swd)->sw_ictx == NULL) {
    912       1.1  jonathan 				swcr_freesession(NULL, i);
    913       1.1  jonathan 				return ENOBUFS;
    914       1.1  jonathan 			}
    915       1.1  jonathan 
    916      1.35  drochner 			(*swd)->sw_octx = malloc(axf->ctxsize,
    917      1.10   thorpej 			    M_CRYPTO_DATA, M_NOWAIT);
    918       1.1  jonathan 			if ((*swd)->sw_octx == NULL) {
    919       1.1  jonathan 				swcr_freesession(NULL, i);
    920       1.1  jonathan 				return ENOBUFS;
    921       1.1  jonathan 			}
    922       1.1  jonathan 
    923       1.1  jonathan 			for (k = 0; k < cri->cri_klen / 8; k++)
    924       1.1  jonathan 				cri->cri_key[k] ^= HMAC_IPAD_VAL;
    925       1.1  jonathan 
    926       1.1  jonathan 			axf->Init((*swd)->sw_ictx);
    927       1.1  jonathan 			axf->Update((*swd)->sw_ictx, cri->cri_key,
    928       1.1  jonathan 			    cri->cri_klen / 8);
    929       1.1  jonathan 			axf->Update((*swd)->sw_ictx, hmac_ipad_buffer,
    930      1.29  drochner 			    axf->auth_hash->blocksize - (cri->cri_klen / 8));
    931       1.1  jonathan 
    932       1.1  jonathan 			for (k = 0; k < cri->cri_klen / 8; k++)
    933       1.1  jonathan 				cri->cri_key[k] ^= (HMAC_IPAD_VAL ^ HMAC_OPAD_VAL);
    934       1.1  jonathan 
    935       1.1  jonathan 			axf->Init((*swd)->sw_octx);
    936       1.1  jonathan 			axf->Update((*swd)->sw_octx, cri->cri_key,
    937       1.1  jonathan 			    cri->cri_klen / 8);
    938       1.1  jonathan 			axf->Update((*swd)->sw_octx, hmac_opad_buffer,
    939      1.29  drochner 			    axf->auth_hash->blocksize - (cri->cri_klen / 8));
    940       1.1  jonathan 
    941       1.1  jonathan 			for (k = 0; k < cri->cri_klen / 8; k++)
    942       1.1  jonathan 				cri->cri_key[k] ^= HMAC_OPAD_VAL;
    943       1.1  jonathan 			(*swd)->sw_axf = axf;
    944       1.1  jonathan 			break;
    945       1.1  jonathan 
    946       1.1  jonathan 		case CRYPTO_MD5_KPDK:
    947      1.10   thorpej 			axf = &swcr_auth_hash_key_md5;
    948       1.1  jonathan 			goto auth2common;
    949       1.1  jonathan 
    950      1.48     ozaki 		case CRYPTO_SHA1_KPDK: {
    951      1.48     ozaki 			unsigned char digest[SHA1_DIGEST_LENGTH];
    952      1.48     ozaki 			CTASSERT(SHA1_DIGEST_LENGTH >= MD5_DIGEST_LENGTH);
    953      1.10   thorpej 			axf = &swcr_auth_hash_key_sha1;
    954       1.1  jonathan 		auth2common:
    955      1.35  drochner 			(*swd)->sw_ictx = malloc(axf->ctxsize,
    956      1.10   thorpej 			    M_CRYPTO_DATA, M_NOWAIT);
    957       1.1  jonathan 			if ((*swd)->sw_ictx == NULL) {
    958       1.1  jonathan 				swcr_freesession(NULL, i);
    959       1.1  jonathan 				return ENOBUFS;
    960       1.1  jonathan 			}
    961       1.1  jonathan 
    962       1.1  jonathan 			/* Store the key so we can "append" it to the payload */
    963       1.1  jonathan 			(*swd)->sw_octx = malloc(cri->cri_klen / 8, M_CRYPTO_DATA,
    964       1.1  jonathan 			    M_NOWAIT);
    965       1.1  jonathan 			if ((*swd)->sw_octx == NULL) {
    966       1.1  jonathan 				swcr_freesession(NULL, i);
    967       1.1  jonathan 				return ENOBUFS;
    968       1.1  jonathan 			}
    969       1.1  jonathan 
    970       1.1  jonathan 			(*swd)->sw_klen = cri->cri_klen / 8;
    971      1.25   tsutsui 			memcpy((*swd)->sw_octx, cri->cri_key, cri->cri_klen / 8);
    972       1.1  jonathan 			axf->Init((*swd)->sw_ictx);
    973       1.1  jonathan 			axf->Update((*swd)->sw_ictx, cri->cri_key,
    974       1.1  jonathan 			    cri->cri_klen / 8);
    975      1.48     ozaki 			axf->Final(digest, (*swd)->sw_ictx);
    976       1.1  jonathan 			(*swd)->sw_axf = axf;
    977       1.1  jonathan 			break;
    978      1.48     ozaki 		    }
    979       1.1  jonathan 
    980       1.1  jonathan 		case CRYPTO_MD5:
    981      1.10   thorpej 			axf = &swcr_auth_hash_md5;
    982       1.1  jonathan 			goto auth3common;
    983       1.1  jonathan 
    984       1.1  jonathan 		case CRYPTO_SHA1:
    985      1.10   thorpej 			axf = &swcr_auth_hash_sha1;
    986       1.1  jonathan 		auth3common:
    987      1.35  drochner 			(*swd)->sw_ictx = malloc(axf->ctxsize,
    988      1.10   thorpej 			    M_CRYPTO_DATA, M_NOWAIT);
    989       1.1  jonathan 			if ((*swd)->sw_ictx == NULL) {
    990       1.1  jonathan 				swcr_freesession(NULL, i);
    991       1.1  jonathan 				return ENOBUFS;
    992       1.1  jonathan 			}
    993       1.1  jonathan 
    994       1.1  jonathan 			axf->Init((*swd)->sw_ictx);
    995       1.1  jonathan 			(*swd)->sw_axf = axf;
    996       1.1  jonathan 			break;
    997       1.1  jonathan 
    998      1.36  drochner 		case CRYPTO_AES_XCBC_MAC_96:
    999      1.36  drochner 			axf = &swcr_auth_hash_aes_xcbc_mac;
   1000      1.37  drochner 			goto auth4common;
   1001      1.37  drochner 		case CRYPTO_AES_128_GMAC:
   1002      1.37  drochner 			axf = &swcr_auth_hash_gmac_aes_128;
   1003      1.37  drochner 			goto auth4common;
   1004      1.37  drochner 		case CRYPTO_AES_192_GMAC:
   1005      1.37  drochner 			axf = &swcr_auth_hash_gmac_aes_192;
   1006      1.37  drochner 			goto auth4common;
   1007      1.37  drochner 		case CRYPTO_AES_256_GMAC:
   1008      1.37  drochner 			axf = &swcr_auth_hash_gmac_aes_256;
   1009      1.37  drochner 		auth4common:
   1010      1.36  drochner 			(*swd)->sw_ictx = malloc(axf->ctxsize,
   1011      1.36  drochner 			    M_CRYPTO_DATA, M_NOWAIT);
   1012      1.36  drochner 			if ((*swd)->sw_ictx == NULL) {
   1013      1.36  drochner 				swcr_freesession(NULL, i);
   1014      1.36  drochner 				return ENOBUFS;
   1015      1.36  drochner 			}
   1016      1.36  drochner 			axf->Init((*swd)->sw_ictx);
   1017      1.36  drochner 			axf->Setkey((*swd)->sw_ictx,
   1018      1.36  drochner 				cri->cri_key, cri->cri_klen / 8);
   1019      1.36  drochner 			(*swd)->sw_axf = axf;
   1020      1.36  drochner 			break;
   1021      1.36  drochner 
   1022       1.1  jonathan 		case CRYPTO_DEFLATE_COMP:
   1023      1.10   thorpej 			cxf = &swcr_comp_algo_deflate;
   1024       1.1  jonathan 			(*swd)->sw_cxf = cxf;
   1025       1.1  jonathan 			break;
   1026      1.24    darran 
   1027      1.28  drochner 		case CRYPTO_DEFLATE_COMP_NOGROW:
   1028      1.28  drochner 			cxf = &swcr_comp_algo_deflate_nogrow;
   1029      1.28  drochner 			(*swd)->sw_cxf = cxf;
   1030      1.28  drochner 			break;
   1031      1.28  drochner 
   1032      1.24    darran 		case CRYPTO_GZIP_COMP:
   1033      1.24    darran 			cxf = &swcr_comp_algo_gzip;
   1034      1.24    darran 			(*swd)->sw_cxf = cxf;
   1035      1.24    darran 			break;
   1036       1.1  jonathan 		default:
   1037       1.1  jonathan 			swcr_freesession(NULL, i);
   1038       1.1  jonathan 			return EINVAL;
   1039       1.1  jonathan 		}
   1040       1.1  jonathan 
   1041       1.1  jonathan 		(*swd)->sw_alg = cri->cri_alg;
   1042       1.1  jonathan 		cri = cri->cri_next;
   1043       1.1  jonathan 		swd = &((*swd)->sw_next);
   1044       1.1  jonathan 	}
   1045       1.1  jonathan 	return 0;
   1046       1.1  jonathan }
   1047       1.1  jonathan 
   1048       1.1  jonathan /*
   1049       1.1  jonathan  * Free a session.
   1050       1.1  jonathan  */
   1051       1.1  jonathan static int
   1052      1.15  christos swcr_freesession(void *arg, u_int64_t tid)
   1053       1.1  jonathan {
   1054       1.1  jonathan 	struct swcr_data *swd;
   1055      1.10   thorpej 	const struct swcr_enc_xform *txf;
   1056      1.10   thorpej 	const struct swcr_auth_hash *axf;
   1057       1.1  jonathan 	u_int32_t sid = ((u_int32_t) tid) & 0xffffffff;
   1058       1.1  jonathan 
   1059       1.1  jonathan 	if (sid > swcr_sesnum || swcr_sessions == NULL ||
   1060       1.1  jonathan 	    swcr_sessions[sid] == NULL)
   1061       1.1  jonathan 		return EINVAL;
   1062       1.1  jonathan 
   1063       1.1  jonathan 	/* Silently accept and return */
   1064       1.1  jonathan 	if (sid == 0)
   1065       1.1  jonathan 		return 0;
   1066       1.1  jonathan 
   1067       1.1  jonathan 	while ((swd = swcr_sessions[sid]) != NULL) {
   1068       1.1  jonathan 		swcr_sessions[sid] = swd->sw_next;
   1069       1.1  jonathan 
   1070       1.1  jonathan 		switch (swd->sw_alg) {
   1071       1.1  jonathan 		case CRYPTO_DES_CBC:
   1072       1.1  jonathan 		case CRYPTO_3DES_CBC:
   1073       1.1  jonathan 		case CRYPTO_BLF_CBC:
   1074       1.1  jonathan 		case CRYPTO_CAST_CBC:
   1075       1.1  jonathan 		case CRYPTO_SKIPJACK_CBC:
   1076       1.1  jonathan 		case CRYPTO_RIJNDAEL128_CBC:
   1077      1.30  drochner 		case CRYPTO_CAMELLIA_CBC:
   1078      1.33  drochner 		case CRYPTO_AES_CTR:
   1079      1.37  drochner 		case CRYPTO_AES_GCM_16:
   1080      1.38  drochner 		case CRYPTO_AES_GMAC:
   1081       1.1  jonathan 		case CRYPTO_NULL_CBC:
   1082       1.1  jonathan 			txf = swd->sw_exf;
   1083       1.1  jonathan 
   1084       1.1  jonathan 			if (swd->sw_kschedule)
   1085       1.1  jonathan 				txf->zerokey(&(swd->sw_kschedule));
   1086       1.1  jonathan 			break;
   1087       1.1  jonathan 
   1088       1.1  jonathan 		case CRYPTO_MD5_HMAC:
   1089      1.19       tls 		case CRYPTO_MD5_HMAC_96:
   1090       1.1  jonathan 		case CRYPTO_SHA1_HMAC:
   1091      1.19       tls 		case CRYPTO_SHA1_HMAC_96:
   1092      1.29  drochner 		case CRYPTO_SHA2_256_HMAC:
   1093      1.29  drochner 		case CRYPTO_SHA2_384_HMAC:
   1094      1.29  drochner 		case CRYPTO_SHA2_512_HMAC:
   1095       1.1  jonathan 		case CRYPTO_RIPEMD160_HMAC:
   1096      1.19       tls 		case CRYPTO_RIPEMD160_HMAC_96:
   1097       1.1  jonathan 		case CRYPTO_NULL_HMAC:
   1098       1.1  jonathan 			axf = swd->sw_axf;
   1099       1.1  jonathan 
   1100       1.1  jonathan 			if (swd->sw_ictx) {
   1101      1.42  riastrad 				explicit_memset(swd->sw_ictx, 0, axf->ctxsize);
   1102       1.1  jonathan 				free(swd->sw_ictx, M_CRYPTO_DATA);
   1103       1.1  jonathan 			}
   1104       1.1  jonathan 			if (swd->sw_octx) {
   1105      1.42  riastrad 				explicit_memset(swd->sw_octx, 0, axf->ctxsize);
   1106       1.1  jonathan 				free(swd->sw_octx, M_CRYPTO_DATA);
   1107       1.1  jonathan 			}
   1108       1.1  jonathan 			break;
   1109       1.1  jonathan 
   1110       1.1  jonathan 		case CRYPTO_MD5_KPDK:
   1111       1.1  jonathan 		case CRYPTO_SHA1_KPDK:
   1112       1.1  jonathan 			axf = swd->sw_axf;
   1113       1.1  jonathan 
   1114       1.1  jonathan 			if (swd->sw_ictx) {
   1115      1.42  riastrad 				explicit_memset(swd->sw_ictx, 0, axf->ctxsize);
   1116       1.1  jonathan 				free(swd->sw_ictx, M_CRYPTO_DATA);
   1117       1.1  jonathan 			}
   1118       1.1  jonathan 			if (swd->sw_octx) {
   1119      1.42  riastrad 				explicit_memset(swd->sw_octx, 0, swd->sw_klen);
   1120       1.1  jonathan 				free(swd->sw_octx, M_CRYPTO_DATA);
   1121       1.1  jonathan 			}
   1122       1.1  jonathan 			break;
   1123       1.1  jonathan 
   1124       1.1  jonathan 		case CRYPTO_MD5:
   1125       1.1  jonathan 		case CRYPTO_SHA1:
   1126      1.36  drochner 		case CRYPTO_AES_XCBC_MAC_96:
   1127      1.37  drochner 		case CRYPTO_AES_128_GMAC:
   1128      1.37  drochner 		case CRYPTO_AES_192_GMAC:
   1129      1.37  drochner 		case CRYPTO_AES_256_GMAC:
   1130       1.1  jonathan 			axf = swd->sw_axf;
   1131       1.1  jonathan 
   1132      1.40  drochner 			if (swd->sw_ictx) {
   1133      1.42  riastrad 				explicit_memset(swd->sw_ictx, 0, axf->ctxsize);
   1134       1.1  jonathan 				free(swd->sw_ictx, M_CRYPTO_DATA);
   1135      1.40  drochner 			}
   1136       1.1  jonathan 			break;
   1137       1.1  jonathan 
   1138       1.1  jonathan 		case CRYPTO_DEFLATE_COMP:
   1139      1.28  drochner 		case CRYPTO_DEFLATE_COMP_NOGROW:
   1140      1.24    darran 		case CRYPTO_GZIP_COMP:
   1141       1.1  jonathan 			break;
   1142       1.1  jonathan 		}
   1143       1.1  jonathan 
   1144      1.21    cegger 		free(swd, M_CRYPTO_DATA);
   1145       1.1  jonathan 	}
   1146       1.1  jonathan 	return 0;
   1147       1.1  jonathan }
   1148       1.1  jonathan 
   1149       1.1  jonathan /*
   1150       1.1  jonathan  * Process a software request.
   1151       1.1  jonathan  */
   1152       1.1  jonathan static int
   1153      1.15  christos swcr_process(void *arg, struct cryptop *crp, int hint)
   1154       1.1  jonathan {
   1155       1.1  jonathan 	struct cryptodesc *crd;
   1156       1.1  jonathan 	struct swcr_data *sw;
   1157       1.1  jonathan 	u_int32_t lid;
   1158       1.1  jonathan 	int type;
   1159       1.1  jonathan 
   1160       1.1  jonathan 	/* Sanity check */
   1161       1.1  jonathan 	if (crp == NULL)
   1162       1.1  jonathan 		return EINVAL;
   1163       1.1  jonathan 
   1164       1.1  jonathan 	if (crp->crp_desc == NULL || crp->crp_buf == NULL) {
   1165       1.1  jonathan 		crp->crp_etype = EINVAL;
   1166       1.1  jonathan 		goto done;
   1167       1.1  jonathan 	}
   1168       1.1  jonathan 
   1169       1.1  jonathan 	lid = crp->crp_sid & 0xffffffff;
   1170       1.1  jonathan 	if (lid >= swcr_sesnum || lid == 0 || swcr_sessions[lid] == NULL) {
   1171       1.1  jonathan 		crp->crp_etype = ENOENT;
   1172       1.1  jonathan 		goto done;
   1173       1.1  jonathan 	}
   1174       1.1  jonathan 
   1175       1.1  jonathan 	if (crp->crp_flags & CRYPTO_F_IMBUF) {
   1176       1.1  jonathan 		type = CRYPTO_BUF_MBUF;
   1177       1.1  jonathan 	} else if (crp->crp_flags & CRYPTO_F_IOV) {
   1178       1.1  jonathan 		type = CRYPTO_BUF_IOV;
   1179       1.1  jonathan 	} else {
   1180       1.1  jonathan 		type = CRYPTO_BUF_CONTIG;
   1181       1.1  jonathan 	}
   1182       1.1  jonathan 
   1183       1.1  jonathan 	/* Go through crypto descriptors, processing as we go */
   1184       1.1  jonathan 	for (crd = crp->crp_desc; crd; crd = crd->crd_next) {
   1185       1.1  jonathan 		/*
   1186       1.1  jonathan 		 * Find the crypto context.
   1187       1.1  jonathan 		 *
   1188       1.1  jonathan 		 * XXX Note that the logic here prevents us from having
   1189       1.1  jonathan 		 * XXX the same algorithm multiple times in a session
   1190       1.1  jonathan 		 * XXX (or rather, we can but it won't give us the right
   1191       1.1  jonathan 		 * XXX results). To do that, we'd need some way of differentiating
   1192       1.1  jonathan 		 * XXX between the various instances of an algorithm (so we can
   1193       1.1  jonathan 		 * XXX locate the correct crypto context).
   1194       1.1  jonathan 		 */
   1195       1.1  jonathan 		for (sw = swcr_sessions[lid];
   1196       1.1  jonathan 		    sw && sw->sw_alg != crd->crd_alg;
   1197       1.1  jonathan 		    sw = sw->sw_next)
   1198       1.1  jonathan 			;
   1199       1.1  jonathan 
   1200       1.1  jonathan 		/* No such context ? */
   1201       1.1  jonathan 		if (sw == NULL) {
   1202       1.1  jonathan 			crp->crp_etype = EINVAL;
   1203       1.1  jonathan 			goto done;
   1204       1.1  jonathan 		}
   1205       1.1  jonathan 
   1206       1.1  jonathan 		switch (sw->sw_alg) {
   1207       1.1  jonathan 		case CRYPTO_DES_CBC:
   1208       1.1  jonathan 		case CRYPTO_3DES_CBC:
   1209       1.1  jonathan 		case CRYPTO_BLF_CBC:
   1210       1.1  jonathan 		case CRYPTO_CAST_CBC:
   1211       1.1  jonathan 		case CRYPTO_SKIPJACK_CBC:
   1212       1.1  jonathan 		case CRYPTO_RIJNDAEL128_CBC:
   1213      1.30  drochner 		case CRYPTO_CAMELLIA_CBC:
   1214      1.33  drochner 		case CRYPTO_AES_CTR:
   1215       1.1  jonathan 			if ((crp->crp_etype = swcr_encdec(crd, sw,
   1216       1.1  jonathan 			    crp->crp_buf, type)) != 0)
   1217       1.1  jonathan 				goto done;
   1218       1.1  jonathan 			break;
   1219       1.1  jonathan 		case CRYPTO_NULL_CBC:
   1220       1.1  jonathan 			crp->crp_etype = 0;
   1221       1.1  jonathan 			break;
   1222       1.1  jonathan 		case CRYPTO_MD5_HMAC:
   1223      1.19       tls 		case CRYPTO_MD5_HMAC_96:
   1224       1.1  jonathan 		case CRYPTO_SHA1_HMAC:
   1225      1.19       tls 		case CRYPTO_SHA1_HMAC_96:
   1226      1.29  drochner 		case CRYPTO_SHA2_256_HMAC:
   1227      1.29  drochner 		case CRYPTO_SHA2_384_HMAC:
   1228      1.29  drochner 		case CRYPTO_SHA2_512_HMAC:
   1229       1.1  jonathan 		case CRYPTO_RIPEMD160_HMAC:
   1230      1.19       tls 		case CRYPTO_RIPEMD160_HMAC_96:
   1231       1.1  jonathan 		case CRYPTO_NULL_HMAC:
   1232       1.1  jonathan 		case CRYPTO_MD5_KPDK:
   1233       1.1  jonathan 		case CRYPTO_SHA1_KPDK:
   1234       1.1  jonathan 		case CRYPTO_MD5:
   1235       1.1  jonathan 		case CRYPTO_SHA1:
   1236      1.36  drochner 		case CRYPTO_AES_XCBC_MAC_96:
   1237       1.1  jonathan 			if ((crp->crp_etype = swcr_authcompute(crp, crd, sw,
   1238       1.1  jonathan 			    crp->crp_buf, type)) != 0)
   1239       1.1  jonathan 				goto done;
   1240       1.1  jonathan 			break;
   1241       1.1  jonathan 
   1242      1.37  drochner 		case CRYPTO_AES_GCM_16:
   1243      1.37  drochner 		case CRYPTO_AES_GMAC:
   1244      1.37  drochner 		case CRYPTO_AES_128_GMAC:
   1245      1.37  drochner 		case CRYPTO_AES_192_GMAC:
   1246      1.37  drochner 		case CRYPTO_AES_256_GMAC:
   1247      1.37  drochner 			crp->crp_etype = swcr_combined(crp, type);
   1248      1.37  drochner 			goto done;
   1249      1.37  drochner 
   1250       1.1  jonathan 		case CRYPTO_DEFLATE_COMP:
   1251      1.28  drochner 		case CRYPTO_DEFLATE_COMP_NOGROW:
   1252      1.24    darran 		case CRYPTO_GZIP_COMP:
   1253      1.24    darran 			DPRINTF(("swcr_process: compdec for %d\n", sw->sw_alg));
   1254       1.9     perry 			if ((crp->crp_etype = swcr_compdec(crd, sw,
   1255      1.27  drochner 			    crp->crp_buf, type, &crp->crp_olen)) != 0)
   1256       1.1  jonathan 				goto done;
   1257       1.1  jonathan 			break;
   1258       1.1  jonathan 
   1259       1.1  jonathan 		default:
   1260       1.1  jonathan 			/* Unknown/unsupported algorithm */
   1261       1.1  jonathan 			crp->crp_etype = EINVAL;
   1262       1.1  jonathan 			goto done;
   1263       1.1  jonathan 		}
   1264       1.1  jonathan 	}
   1265       1.1  jonathan 
   1266       1.1  jonathan done:
   1267      1.26  jakllsch 	DPRINTF(("request %p done\n", crp));
   1268       1.1  jonathan 	crypto_done(crp);
   1269       1.1  jonathan 	return 0;
   1270       1.1  jonathan }
   1271       1.1  jonathan 
   1272      1.10   thorpej static void
   1273       1.1  jonathan swcr_init(void)
   1274       1.1  jonathan {
   1275       1.1  jonathan 	swcr_id = crypto_get_driverid(CRYPTOCAP_F_SOFTWARE);
   1276       1.1  jonathan 	if (swcr_id < 0) {
   1277       1.1  jonathan 		/* This should never happen */
   1278       1.1  jonathan 		panic("Software crypto device cannot initialize!");
   1279       1.1  jonathan 	}
   1280       1.1  jonathan 
   1281       1.1  jonathan 	crypto_register(swcr_id, CRYPTO_DES_CBC,
   1282       1.1  jonathan 	    0, 0, swcr_newsession, swcr_freesession, swcr_process, NULL);
   1283       1.1  jonathan #define	REGISTER(alg) \
   1284       1.1  jonathan 	crypto_register(swcr_id, alg, 0, 0, NULL, NULL, NULL, NULL)
   1285       1.1  jonathan 
   1286       1.1  jonathan 	REGISTER(CRYPTO_3DES_CBC);
   1287       1.1  jonathan 	REGISTER(CRYPTO_BLF_CBC);
   1288       1.1  jonathan 	REGISTER(CRYPTO_CAST_CBC);
   1289       1.1  jonathan 	REGISTER(CRYPTO_SKIPJACK_CBC);
   1290      1.30  drochner 	REGISTER(CRYPTO_CAMELLIA_CBC);
   1291      1.33  drochner 	REGISTER(CRYPTO_AES_CTR);
   1292      1.37  drochner 	REGISTER(CRYPTO_AES_GCM_16);
   1293      1.37  drochner 	REGISTER(CRYPTO_AES_GMAC);
   1294       1.1  jonathan 	REGISTER(CRYPTO_NULL_CBC);
   1295       1.1  jonathan 	REGISTER(CRYPTO_MD5_HMAC);
   1296      1.19       tls 	REGISTER(CRYPTO_MD5_HMAC_96);
   1297       1.1  jonathan 	REGISTER(CRYPTO_SHA1_HMAC);
   1298      1.19       tls 	REGISTER(CRYPTO_SHA1_HMAC_96);
   1299      1.29  drochner 	REGISTER(CRYPTO_SHA2_256_HMAC);
   1300      1.29  drochner 	REGISTER(CRYPTO_SHA2_384_HMAC);
   1301      1.29  drochner 	REGISTER(CRYPTO_SHA2_512_HMAC);
   1302       1.1  jonathan 	REGISTER(CRYPTO_RIPEMD160_HMAC);
   1303      1.19       tls 	REGISTER(CRYPTO_RIPEMD160_HMAC_96);
   1304       1.1  jonathan 	REGISTER(CRYPTO_NULL_HMAC);
   1305       1.1  jonathan 	REGISTER(CRYPTO_MD5_KPDK);
   1306       1.1  jonathan 	REGISTER(CRYPTO_SHA1_KPDK);
   1307       1.1  jonathan 	REGISTER(CRYPTO_MD5);
   1308       1.1  jonathan 	REGISTER(CRYPTO_SHA1);
   1309      1.36  drochner 	REGISTER(CRYPTO_AES_XCBC_MAC_96);
   1310      1.37  drochner 	REGISTER(CRYPTO_AES_128_GMAC);
   1311      1.37  drochner 	REGISTER(CRYPTO_AES_192_GMAC);
   1312      1.37  drochner 	REGISTER(CRYPTO_AES_256_GMAC);
   1313       1.1  jonathan 	REGISTER(CRYPTO_RIJNDAEL128_CBC);
   1314       1.1  jonathan 	REGISTER(CRYPTO_DEFLATE_COMP);
   1315      1.28  drochner 	REGISTER(CRYPTO_DEFLATE_COMP_NOGROW);
   1316      1.24    darran 	REGISTER(CRYPTO_GZIP_COMP);
   1317       1.1  jonathan #undef REGISTER
   1318       1.1  jonathan }
   1319       1.1  jonathan 
   1320      1.10   thorpej 
   1321      1.10   thorpej /*
   1322      1.10   thorpej  * Pseudo-device init routine for software crypto.
   1323      1.10   thorpej  */
   1324      1.10   thorpej 
   1325      1.10   thorpej void
   1326      1.15  christos swcryptoattach(int num)
   1327      1.10   thorpej {
   1328      1.10   thorpej 
   1329      1.10   thorpej 	swcr_init();
   1330      1.10   thorpej }
   1331      1.44  pgoyette 
   1332      1.44  pgoyette void	swcrypto_attach(device_t, device_t, void *);
   1333      1.44  pgoyette 
   1334      1.44  pgoyette void
   1335      1.44  pgoyette swcrypto_attach(device_t parent, device_t self, void *opaque)
   1336      1.44  pgoyette {
   1337      1.44  pgoyette 
   1338      1.44  pgoyette 	swcr_init();
   1339      1.45  christos 
   1340      1.45  christos 	if (!pmf_device_register(self, NULL, NULL))
   1341      1.45  christos 		aprint_error_dev(self, "couldn't establish power handler\n");
   1342      1.44  pgoyette }
   1343      1.44  pgoyette 
   1344      1.44  pgoyette int	swcrypto_detach(device_t, int);
   1345      1.44  pgoyette 
   1346      1.44  pgoyette int
   1347      1.44  pgoyette swcrypto_detach(device_t self, int flag)
   1348      1.44  pgoyette {
   1349      1.46  riastrad 	pmf_device_deregister(self);
   1350      1.44  pgoyette 	if (swcr_id >= 0)
   1351      1.44  pgoyette 		crypto_unregister_all(swcr_id);
   1352      1.44  pgoyette 	return 0;
   1353      1.44  pgoyette }
   1354      1.44  pgoyette 
   1355      1.44  pgoyette int	swcrypto_match(device_t, cfdata_t, void *);
   1356      1.44  pgoyette 
   1357      1.44  pgoyette int
   1358      1.44  pgoyette swcrypto_match(device_t parent, cfdata_t data, void *opaque)
   1359      1.44  pgoyette {
   1360      1.44  pgoyette 
   1361      1.44  pgoyette         return 1;
   1362      1.44  pgoyette }
   1363      1.44  pgoyette 
   1364      1.44  pgoyette MODULE(MODULE_CLASS_DRIVER, swcrypto,
   1365      1.44  pgoyette 	"opencrypto,zlib,blowfish,des,cast128,camellia,skipjack");
   1366      1.44  pgoyette 
   1367      1.44  pgoyette CFDRIVER_DECL(swcrypto, DV_DULL, NULL);
   1368      1.44  pgoyette 
   1369      1.44  pgoyette CFATTACH_DECL2_NEW(swcrypto, 0, swcrypto_match, swcrypto_attach,
   1370      1.44  pgoyette     swcrypto_detach, NULL, NULL, NULL);
   1371      1.44  pgoyette 
   1372      1.44  pgoyette static int swcryptoloc[] = { -1, -1 };
   1373      1.44  pgoyette 
   1374      1.44  pgoyette static struct cfdata swcrypto_cfdata[] = {
   1375      1.44  pgoyette 	{
   1376      1.44  pgoyette 		.cf_name = "swcrypto",
   1377      1.44  pgoyette 		.cf_atname = "swcrypto",
   1378      1.44  pgoyette 		.cf_unit = 0,
   1379      1.44  pgoyette 		.cf_fstate = 0,
   1380      1.44  pgoyette 		.cf_loc = swcryptoloc,
   1381      1.44  pgoyette 		.cf_flags = 0,
   1382      1.44  pgoyette 		.cf_pspec = NULL,
   1383      1.44  pgoyette 	},
   1384      1.44  pgoyette 	{ NULL, NULL, 0, 0, NULL, 0, NULL }
   1385      1.44  pgoyette };
   1386      1.44  pgoyette 
   1387      1.44  pgoyette static int
   1388      1.44  pgoyette swcrypto_modcmd(modcmd_t cmd, void *arg)
   1389      1.44  pgoyette {
   1390      1.44  pgoyette 	int error;
   1391  1.49.2.1  pgoyette 	device_t dev;
   1392      1.44  pgoyette 
   1393      1.44  pgoyette 	switch (cmd) {
   1394      1.44  pgoyette 	case MODULE_CMD_INIT:
   1395      1.44  pgoyette 		error = config_cfdriver_attach(&swcrypto_cd);
   1396      1.44  pgoyette 		if (error) {
   1397      1.44  pgoyette 			return error;
   1398      1.44  pgoyette 		}
   1399      1.44  pgoyette 
   1400      1.44  pgoyette 		error = config_cfattach_attach(swcrypto_cd.cd_name,
   1401      1.44  pgoyette 		    &swcrypto_ca);
   1402      1.44  pgoyette 		if (error) {
   1403      1.44  pgoyette 			config_cfdriver_detach(&swcrypto_cd);
   1404      1.44  pgoyette 			aprint_error("%s: unable to register cfattach\n",
   1405      1.44  pgoyette 				swcrypto_cd.cd_name);
   1406      1.44  pgoyette 
   1407      1.44  pgoyette 			return error;
   1408      1.44  pgoyette 		}
   1409      1.44  pgoyette 
   1410      1.44  pgoyette 		error = config_cfdata_attach(swcrypto_cfdata, 1);
   1411      1.44  pgoyette 		if (error) {
   1412      1.44  pgoyette 			config_cfattach_detach(swcrypto_cd.cd_name,
   1413      1.44  pgoyette 			    &swcrypto_ca);
   1414      1.44  pgoyette 			config_cfdriver_detach(&swcrypto_cd);
   1415      1.44  pgoyette 			aprint_error("%s: unable to register cfdata\n",
   1416      1.44  pgoyette 				swcrypto_cd.cd_name);
   1417      1.44  pgoyette 
   1418      1.44  pgoyette 			return error;
   1419      1.44  pgoyette 		}
   1420      1.44  pgoyette 
   1421  1.49.2.1  pgoyette 		dev = config_attach_pseudo(swcrypto_cfdata);
   1422  1.49.2.1  pgoyette 		device_release(dev);
   1423      1.44  pgoyette 
   1424      1.44  pgoyette 		return 0;
   1425      1.44  pgoyette 	case MODULE_CMD_FINI:
   1426      1.44  pgoyette 		error = config_cfdata_detach(swcrypto_cfdata);
   1427      1.44  pgoyette 		if (error) {
   1428      1.44  pgoyette 			return error;
   1429      1.44  pgoyette 		}
   1430      1.44  pgoyette 
   1431      1.44  pgoyette 		config_cfattach_detach(swcrypto_cd.cd_name, &swcrypto_ca);
   1432      1.44  pgoyette 		config_cfdriver_detach(&swcrypto_cd);
   1433      1.44  pgoyette 
   1434      1.44  pgoyette 		return 0;
   1435      1.44  pgoyette 	default:
   1436      1.44  pgoyette 		return ENOTTY;
   1437      1.44  pgoyette 	}
   1438      1.44  pgoyette }
   1439