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cryptodev.c revision 1.85.2.2
      1 /*	$NetBSD: cryptodev.c,v 1.85.2.2 2016/07/19 06:27:00 pgoyette Exp $ */
      2 /*	$FreeBSD: src/sys/opencrypto/cryptodev.c,v 1.4.2.4 2003/06/03 00:09:02 sam Exp $	*/
      3 /*	$OpenBSD: cryptodev.c,v 1.53 2002/07/10 22:21:30 mickey Exp $	*/
      4 
      5 /*-
      6  * Copyright (c) 2008 The NetBSD Foundation, Inc.
      7  * All rights reserved.
      8  *
      9  * This code is derived from software contributed to The NetBSD Foundation
     10  * by Coyote Point Systems, Inc.
     11  *
     12  * Redistribution and use in source and binary forms, with or without
     13  * modification, are permitted provided that the following conditions
     14  * are met:
     15  * 1. Redistributions of source code must retain the above copyright
     16  *    notice, this list of conditions and the following disclaimer.
     17  * 2. Redistributions in binary form must reproduce the above copyright
     18  *    notice, this list of conditions and the following disclaimer in the
     19  *    documentation and/or other materials provided with the distribution.
     20  *
     21  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     22  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     23  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     24  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     25  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     26  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     27  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     28  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     29  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     30  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     31  * POSSIBILITY OF SUCH DAMAGE.
     32  */
     33 
     34 /*
     35  * Copyright (c) 2001 Theo de Raadt
     36  *
     37  * Redistribution and use in source and binary forms, with or without
     38  * modification, are permitted provided that the following conditions
     39  * are met:
     40  *
     41  * 1. Redistributions of source code must retain the above copyright
     42  *   notice, this list of conditions and the following disclaimer.
     43  * 2. Redistributions in binary form must reproduce the above copyright
     44  *   notice, this list of conditions and the following disclaimer in the
     45  *   documentation and/or other materials provided with the distribution.
     46  * 3. The name of the author may not be used to endorse or promote products
     47  *   derived from this software without specific prior written permission.
     48  *
     49  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     50  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     51  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     52  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     53  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     54  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     55  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     56  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     57  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     58  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     59  *
     60  * Effort sponsored in part by the Defense Advanced Research Projects
     61  * Agency (DARPA) and Air Force Research Laboratory, Air Force
     62  * Materiel Command, USAF, under agreement number F30602-01-2-0537.
     63  *
     64  */
     65 
     66 #include <sys/cdefs.h>
     67 __KERNEL_RCSID(0, "$NetBSD: cryptodev.c,v 1.85.2.2 2016/07/19 06:27:00 pgoyette Exp $");
     68 
     69 #include <sys/param.h>
     70 #include <sys/systm.h>
     71 #include <sys/kmem.h>
     72 #include <sys/malloc.h>
     73 #include <sys/mbuf.h>
     74 #include <sys/pool.h>
     75 #include <sys/sysctl.h>
     76 #include <sys/file.h>
     77 #include <sys/filedesc.h>
     78 #include <sys/errno.h>
     79 #include <sys/md5.h>
     80 #include <sys/sha1.h>
     81 #include <sys/conf.h>
     82 #include <sys/device.h>
     83 #include <sys/kauth.h>
     84 #include <sys/select.h>
     85 #include <sys/poll.h>
     86 #include <sys/atomic.h>
     87 #include <sys/stat.h>
     88 #include <sys/module.h>
     89 #include <sys/localcount.h>
     90 
     91 #ifdef _KERNEL_OPT
     92 #include "opt_ocf.h"
     93 #include "opt_compat_netbsd.h"
     94 #endif
     95 
     96 #include <opencrypto/cryptodev.h>
     97 #include <opencrypto/cryptodev_internal.h>
     98 #include <opencrypto/xform.h>
     99 
    100 #include "ioconf.h"
    101 
    102 struct csession {
    103 	TAILQ_ENTRY(csession) next;
    104 	u_int64_t	sid;
    105 	u_int32_t	ses;
    106 
    107 	u_int32_t	cipher;		/* note: shares name space in crd_alg */
    108 	const struct enc_xform *txform;
    109 	u_int32_t	mac;		/* note: shares name space in crd_alg */
    110 	const struct auth_hash *thash;
    111 	u_int32_t	comp_alg;	/* note: shares name space in crd_alg */
    112 	const struct comp_algo *tcomp;
    113 
    114 	void *		key;
    115 	int		keylen;
    116 	u_char		tmp_iv[EALG_MAX_BLOCK_LEN];
    117 
    118 	void *		mackey;
    119 	int		mackeylen;
    120 	u_char		tmp_mac[CRYPTO_MAX_MAC_LEN];
    121 
    122 	struct iovec	iovec[1];	/* user requests never have more */
    123 	struct uio	uio;
    124 	int		error;
    125 };
    126 
    127 struct fcrypt {
    128 	TAILQ_HEAD(csessionlist, csession) csessions;
    129 	TAILQ_HEAD(crprethead, cryptop) crp_ret_mq;
    130 	TAILQ_HEAD(krprethead, cryptkop) crp_ret_mkq;
    131 	int		sesn;
    132 	struct selinfo	sinfo;
    133 	u_int32_t	requestid;
    134 	struct timespec atime;
    135 	struct timespec mtime;
    136 	struct timespec btime;
    137 };
    138 
    139 /* For our fixed-size allocations */
    140 static struct pool fcrpl;
    141 static struct pool csepl;
    142 
    143 /* Declaration of master device (fd-cloning/ctxt-allocating) entrypoints */
    144 static int	cryptoopen(dev_t dev, int flag, int mode, struct lwp *l);
    145 static int	cryptoread(dev_t dev, struct uio *uio, int ioflag);
    146 static int	cryptowrite(dev_t dev, struct uio *uio, int ioflag);
    147 static int	cryptoselect(dev_t dev, int rw, struct lwp *l);
    148 
    149 static int	crypto_refcount = 0;	/* Prevent detaching while in use */
    150 
    151 /* Declaration of cloned-device (per-ctxt) entrypoints */
    152 static int	cryptof_read(struct file *, off_t *, struct uio *,
    153     kauth_cred_t, int);
    154 static int	cryptof_write(struct file *, off_t *, struct uio *,
    155     kauth_cred_t, int);
    156 static int	cryptof_ioctl(struct file *, u_long, void *);
    157 static int	cryptof_close(struct file *);
    158 static int 	cryptof_poll(struct file *, int);
    159 static int 	cryptof_stat(struct file *, struct stat *);
    160 
    161 static const struct fileops cryptofops = {
    162 	.fo_read = cryptof_read,
    163 	.fo_write = cryptof_write,
    164 	.fo_ioctl = cryptof_ioctl,
    165 	.fo_fcntl = fnullop_fcntl,
    166 	.fo_poll = cryptof_poll,
    167 	.fo_stat = cryptof_stat,
    168 	.fo_close = cryptof_close,
    169 	.fo_kqfilter = fnullop_kqfilter,
    170 	.fo_restart = fnullop_restart,
    171 };
    172 
    173 struct csession *cryptodev_csefind(struct fcrypt *, u_int);
    174 static struct	csession *csefind(struct fcrypt *, u_int);
    175 static int	csedelete(struct fcrypt *, struct csession *);
    176 static struct	csession *cseadd(struct fcrypt *, struct csession *);
    177 static struct	csession *csecreate(struct fcrypt *, u_int64_t, void *,
    178     u_int64_t, void *, u_int64_t, u_int32_t, u_int32_t, u_int32_t,
    179     const struct enc_xform *, const struct auth_hash *,
    180     const struct comp_algo *);
    181 static int	csefree(struct csession *);
    182 
    183 static int	cryptodev_key(struct crypt_kop *);
    184 static int	cryptodev_mkey(struct fcrypt *, struct crypt_n_kop *, int);
    185 static int	cryptodev_msessionfin(struct fcrypt *, int, u_int32_t *);
    186 
    187 static int	cryptodev_cb(void *);
    188 static int	cryptodevkey_cb(void *);
    189 
    190 static int	cryptodev_mcb(void *);
    191 static int	cryptodevkey_mcb(void *);
    192 
    193 static int 	cryptodev_getmstatus(struct fcrypt *, struct crypt_result *,
    194     int);
    195 static int	cryptodev_getstatus(struct fcrypt *, struct crypt_result *);
    196 
    197 #ifdef COMPAT_50
    198 extern int	ocryptof_ioctl(struct file *, u_long, void *);
    199 #endif
    200 
    201 /*
    202  * sysctl-able control variables for /dev/crypto now defined in crypto.c:
    203  * crypto_usercrypto, crypto_userasmcrypto, crypto_devallowsoft.
    204  */
    205 
    206 /* ARGSUSED */
    207 int
    208 cryptof_read(file_t *fp, off_t *poff,
    209     struct uio *uio, kauth_cred_t cred, int flags)
    210 {
    211 	return EIO;
    212 }
    213 
    214 /* ARGSUSED */
    215 int
    216 cryptof_write(file_t *fp, off_t *poff,
    217     struct uio *uio, kauth_cred_t cred, int flags)
    218 {
    219 	return EIO;
    220 }
    221 
    222 /* ARGSUSED */
    223 int
    224 cryptof_ioctl(struct file *fp, u_long cmd, void *data)
    225 {
    226 	struct fcrypt *fcr = fp->f_fcrypt;
    227 	struct csession *cse;
    228 	struct session_op *sop;
    229 	struct session_n_op *snop;
    230 	struct crypt_op *cop;
    231 	struct crypt_mop *mop;
    232 	struct crypt_mkop *mkop;
    233 	struct crypt_n_op *cnop;
    234 	struct crypt_n_kop *knop;
    235 	struct crypt_sgop *sgop;
    236 	struct crypt_sfop *sfop;
    237 	struct cryptret *crypt_ret;
    238 	struct crypt_result *crypt_res;
    239 	u_int32_t ses;
    240 	u_int32_t *sesid;
    241 	int error = 0;
    242 	size_t count;
    243 
    244 	/* backwards compatibility */
    245         file_t *criofp;
    246 	struct fcrypt *criofcr;
    247 	int criofd;
    248 
    249 	mutex_enter(&crypto_mtx);
    250 	getnanotime(&fcr->atime);
    251 	mutex_exit(&crypto_mtx);
    252 
    253 	switch (cmd) {
    254         case CRIOGET:   /* XXX deprecated, remove after 5.0 */
    255 		if ((error = fd_allocfile(&criofp, &criofd)) != 0)
    256 			return error;
    257 		criofcr = pool_get(&fcrpl, PR_WAITOK);
    258 		mutex_enter(&crypto_mtx);
    259 		TAILQ_INIT(&criofcr->csessions);
    260 		TAILQ_INIT(&criofcr->crp_ret_mq);
    261 		TAILQ_INIT(&criofcr->crp_ret_mkq);
    262 		selinit(&criofcr->sinfo);
    263 
    264                 /*
    265                  * Don't ever return session 0, to allow detection of
    266                  * failed creation attempts with multi-create ioctl.
    267                  */
    268 		criofcr->sesn = 1;
    269 		criofcr->requestid = 1;
    270 		crypto_refcount++;
    271 		mutex_exit(&crypto_mtx);
    272 		(void)fd_clone(criofp, criofd, (FREAD|FWRITE),
    273 			      &cryptofops, criofcr);
    274 		*(u_int32_t *)data = criofd;
    275 		return error;
    276 		break;
    277 	case CIOCGSESSION:
    278 		sop = (struct session_op *)data;
    279 		error = cryptodev_session(fcr, sop);
    280 		break;
    281 	case CIOCNGSESSION:
    282 		sgop = (struct crypt_sgop *)data;
    283 		snop = kmem_alloc((sgop->count *
    284 				  sizeof(struct session_n_op)), KM_SLEEP);
    285 		error = copyin(sgop->sessions, snop, sgop->count *
    286 			       sizeof(struct session_n_op));
    287 		if (error) {
    288 			goto mbail;
    289 		}
    290 
    291 		mutex_enter(&crypto_mtx);
    292 		fcr->mtime = fcr->atime;
    293 		mutex_exit(&crypto_mtx);
    294 		error = cryptodev_msession(fcr, snop, sgop->count);
    295 		if (error) {
    296 			goto mbail;
    297 		}
    298 
    299 		error = copyout(snop, sgop->sessions, sgop->count *
    300 		    sizeof(struct session_n_op));
    301 mbail:
    302 		kmem_free(snop, sgop->count * sizeof(struct session_n_op));
    303 		break;
    304 	case CIOCFSESSION:
    305 		mutex_enter(&crypto_mtx);
    306 		fcr->mtime = fcr->atime;
    307 		ses = *(u_int32_t *)data;
    308 		cse = csefind(fcr, ses);
    309 		if (cse == NULL) {
    310 			mutex_exit(&crypto_mtx);
    311 			return EINVAL;
    312 		}
    313 		csedelete(fcr, cse);
    314 		mutex_exit(&crypto_mtx);
    315 		error = csefree(cse);
    316 		break;
    317 	case CIOCNFSESSION:
    318 		mutex_enter(&crypto_mtx);
    319 		fcr->mtime = fcr->atime;
    320 		mutex_exit(&crypto_mtx);
    321 		sfop = (struct crypt_sfop *)data;
    322 		sesid = kmem_alloc((sfop->count * sizeof(u_int32_t)),
    323 		    KM_SLEEP);
    324 		error = copyin(sfop->sesid, sesid,
    325 		    (sfop->count * sizeof(u_int32_t)));
    326 		if (!error) {
    327 			error = cryptodev_msessionfin(fcr, sfop->count, sesid);
    328 		}
    329 		kmem_free(sesid, (sfop->count * sizeof(u_int32_t)));
    330 		break;
    331 	case CIOCCRYPT:
    332 		mutex_enter(&crypto_mtx);
    333 		fcr->mtime = fcr->atime;
    334 		cop = (struct crypt_op *)data;
    335 		cse = csefind(fcr, cop->ses);
    336 		mutex_exit(&crypto_mtx);
    337 		if (cse == NULL) {
    338 			DPRINTF(("csefind failed\n"));
    339 			return EINVAL;
    340 		}
    341 		error = cryptodev_op(cse, cop, curlwp);
    342 		DPRINTF(("cryptodev_op error = %d\n", error));
    343 		break;
    344 	case CIOCNCRYPTM:
    345 		mutex_enter(&crypto_mtx);
    346 		fcr->mtime = fcr->atime;
    347 		mutex_exit(&crypto_mtx);
    348 		mop = (struct crypt_mop *)data;
    349 		cnop = kmem_alloc((mop->count * sizeof(struct crypt_n_op)),
    350 		    KM_SLEEP);
    351 		error = copyin(mop->reqs, cnop,
    352 		    (mop->count * sizeof(struct crypt_n_op)));
    353 		if(!error) {
    354 			error = cryptodev_mop(fcr, cnop, mop->count, curlwp);
    355 			if (!error) {
    356 				error = copyout(cnop, mop->reqs,
    357 				    (mop->count * sizeof(struct crypt_n_op)));
    358 			}
    359 		}
    360 		kmem_free(cnop, (mop->count * sizeof(struct crypt_n_op)));
    361 		break;
    362 	case CIOCKEY:
    363 		error = cryptodev_key((struct crypt_kop *)data);
    364 		DPRINTF(("cryptodev_key error = %d\n", error));
    365 		break;
    366 	case CIOCNFKEYM:
    367 		mutex_enter(&crypto_mtx);
    368 		fcr->mtime = fcr->atime;
    369 		mutex_exit(&crypto_mtx);
    370 		mkop = (struct crypt_mkop *)data;
    371 		knop = kmem_alloc((mkop->count * sizeof(struct crypt_n_kop)),
    372 		    KM_SLEEP);
    373 		error = copyin(mkop->reqs, knop,
    374 		    (mkop->count * sizeof(struct crypt_n_kop)));
    375 		if (!error) {
    376 			error = cryptodev_mkey(fcr, knop, mkop->count);
    377 			if (!error)
    378 				error = copyout(knop, mkop->reqs,
    379 				    (mkop->count * sizeof(struct crypt_n_kop)));
    380 		}
    381 		kmem_free(knop, (mkop->count * sizeof(struct crypt_n_kop)));
    382 		break;
    383 	case CIOCASYMFEAT:
    384 		error = crypto_getfeat((int *)data);
    385 		break;
    386 	case CIOCNCRYPTRETM:
    387 		mutex_enter(&crypto_mtx);
    388 		fcr->mtime = fcr->atime;
    389 		mutex_exit(&crypto_mtx);
    390 		crypt_ret = (struct cryptret *)data;
    391 		count = crypt_ret->count;
    392 		crypt_res = kmem_alloc((count * sizeof(struct crypt_result)),
    393 		    KM_SLEEP);
    394 		error = copyin(crypt_ret->results, crypt_res,
    395 		    (count * sizeof(struct crypt_result)));
    396 		if (error)
    397 			goto reterr;
    398 		crypt_ret->count = cryptodev_getmstatus(fcr, crypt_res,
    399 		    crypt_ret->count);
    400 		/* sanity check count */
    401 		if (crypt_ret->count > count) {
    402 			printf("%s.%d: error returned count %zd > original "
    403 			    " count %zd\n",
    404 			    __FILE__, __LINE__, crypt_ret->count, count);
    405 			crypt_ret->count = count;
    406 
    407 		}
    408 		error = copyout(crypt_res, crypt_ret->results,
    409 		    (crypt_ret->count * sizeof(struct crypt_result)));
    410 reterr:
    411 		kmem_free(crypt_res, (count * sizeof(struct crypt_result)));
    412 		break;
    413 	case CIOCNCRYPTRET:
    414 		error = cryptodev_getstatus(fcr, (struct crypt_result *)data);
    415 		break;
    416 	default:
    417 #ifdef COMPAT_50
    418 		/* Check for backward compatible commands */
    419 		error = ocryptof_ioctl(fp, cmd, data);
    420 #else
    421 		return EINVAL;
    422 #endif
    423 	}
    424 	return error;
    425 }
    426 
    427 int
    428 cryptodev_op(struct csession *cse, struct crypt_op *cop, struct lwp *l)
    429 {
    430 	struct cryptop *crp = NULL;
    431 	struct cryptodesc *crde = NULL, *crda = NULL, *crdc = NULL;
    432 	int error;
    433 	int iov_len = cop->len;
    434 	int flags=0;
    435 	int dst_len;	/* copyout size */
    436 
    437 	if (cop->len > 256*1024-4)
    438 		return E2BIG;
    439 
    440 	if (cse->txform) {
    441 		if (cop->len < cse->txform->blocksize
    442 		    + (cop->iv ? 0 : cse->txform->ivsize) ||
    443 		    (cop->len - (cop->iv ? 0 : cse->txform->ivsize))
    444 		    % cse->txform->blocksize != 0)
    445 			return EINVAL;
    446 	}
    447 
    448 	DPRINTF(("cryptodev_op[%u]: iov_len %d\n",
    449 		CRYPTO_SESID2LID(cse->sid), iov_len));
    450 	if ((cse->tcomp) && cop->dst_len) {
    451 		if (iov_len < cop->dst_len) {
    452 			/* Need larger iov to deal with decompress */
    453 			iov_len = cop->dst_len;
    454 		}
    455 		DPRINTF(("cryptodev_op: iov_len -> %d for decompress\n", iov_len));
    456 	}
    457 
    458 	(void)memset(&cse->uio, 0, sizeof(cse->uio));
    459 	cse->uio.uio_iovcnt = 1;
    460 	cse->uio.uio_resid = 0;
    461 	cse->uio.uio_rw = UIO_WRITE;
    462 	cse->uio.uio_iov = cse->iovec;
    463 	UIO_SETUP_SYSSPACE(&cse->uio);
    464 	memset(&cse->iovec, 0, sizeof(cse->iovec));
    465 
    466 	/* the iov needs to be big enough to handle the uncompressed
    467 	 * data.... */
    468 	cse->uio.uio_iov[0].iov_len = iov_len;
    469 	if (iov_len > 0)
    470 		cse->uio.uio_iov[0].iov_base = kmem_alloc(iov_len, KM_SLEEP);
    471 	cse->uio.uio_resid = cse->uio.uio_iov[0].iov_len;
    472 	DPRINTF(("cryptodev_op[%u]: uio.iov_base %p malloced %d bytes\n",
    473 		CRYPTO_SESID2LID(cse->sid),
    474 		cse->uio.uio_iov[0].iov_base, iov_len));
    475 
    476 	crp = crypto_getreq((cse->tcomp != NULL) + (cse->txform != NULL) + (cse->thash != NULL));
    477 	if (crp == NULL) {
    478 		error = ENOMEM;
    479 		goto bail;
    480 	}
    481 	DPRINTF(("cryptodev_op[%u]: crp %p\n",
    482 		CRYPTO_SESID2LID(cse->sid), crp));
    483 
    484 	/* crds are always ordered tcomp, thash, then txform */
    485 	/* with optional missing links */
    486 
    487 	/* XXX: If we're going to compress then hash or encrypt, we need
    488 	 * to be able to pass on the new size of the data.
    489 	 */
    490 
    491 	if (cse->tcomp) {
    492 		crdc = crp->crp_desc;
    493 	}
    494 
    495 	if (cse->thash) {
    496 		crda = crdc ? crdc->crd_next : crp->crp_desc;
    497 		if (cse->txform && crda)
    498 			crde = crda->crd_next;
    499 	} else {
    500 		if (cse->txform) {
    501 			crde = crdc ? crdc->crd_next : crp->crp_desc;
    502 		} else if (!cse->tcomp) {
    503 			error = EINVAL;
    504 			goto bail;
    505 		}
    506 	}
    507 
    508 	DPRINTF(("ocf[%u]: iov_len %zu, cop->len %u\n",
    509 			CRYPTO_SESID2LID(cse->sid),
    510 			cse->uio.uio_iov[0].iov_len,
    511 			cop->len));
    512 
    513 	if ((error = copyin(cop->src, cse->uio.uio_iov[0].iov_base, cop->len)))
    514 	{
    515 		printf("copyin failed %s %d \n", (char *)cop->src, error);
    516 		goto bail;
    517 	}
    518 
    519 	if (crdc) {
    520 		switch (cop->op) {
    521 		case COP_COMP:
    522 			crdc->crd_flags |= CRD_F_COMP;
    523 			break;
    524 		case COP_DECOMP:
    525 			crdc->crd_flags &= ~CRD_F_COMP;
    526 			break;
    527 		default:
    528 			break;
    529 		}
    530 		/* more data to follow? */
    531 		if (cop->flags & COP_F_MORE) {
    532 			flags |= CRYPTO_F_MORE;
    533 		}
    534 		crdc->crd_len = cop->len;
    535 		crdc->crd_inject = 0;
    536 
    537 		crdc->crd_alg = cse->comp_alg;
    538 		crdc->crd_key = NULL;
    539 		crdc->crd_klen = 0;
    540 		DPRINTF(("cryptodev_op[%u]: crdc setup for comp_alg %d.\n",
    541 			CRYPTO_SESID2LID(cse->sid), crdc->crd_alg));
    542 	}
    543 
    544 	if (crda) {
    545 		crda->crd_skip = 0;
    546 		crda->crd_len = cop->len;
    547 		crda->crd_inject = 0;	/* ??? */
    548 
    549 		crda->crd_alg = cse->mac;
    550 		crda->crd_key = cse->mackey;
    551 		crda->crd_klen = cse->mackeylen * 8;
    552 		DPRINTF(("cryptodev_op: crda setup for mac %d.\n", crda->crd_alg));
    553 	}
    554 
    555 	if (crde) {
    556 		switch (cop->op) {
    557 		case COP_ENCRYPT:
    558 			crde->crd_flags |= CRD_F_ENCRYPT;
    559 			break;
    560 		case COP_DECRYPT:
    561 			crde->crd_flags &= ~CRD_F_ENCRYPT;
    562 			break;
    563 		default:
    564 			break;
    565 		}
    566 		crde->crd_len = cop->len;
    567 		crde->crd_inject = 0;
    568 
    569 		if (cse->cipher == CRYPTO_AES_GCM_16 && crda)
    570 			crda->crd_len = 0;
    571 		else if (cse->cipher == CRYPTO_AES_GMAC)
    572 			crde->crd_len = 0;
    573 
    574 		crde->crd_alg = cse->cipher;
    575 		crde->crd_key = cse->key;
    576 		crde->crd_klen = cse->keylen * 8;
    577 		DPRINTF(("cryptodev_op: crde setup for cipher %d.\n", crde->crd_alg));
    578 	}
    579 
    580 
    581 	crp->crp_ilen = cop->len;
    582 	/* The reqest is flagged as CRYPTO_F_USER as long as it is running
    583 	 * in the user IOCTL thread.  This flag lets us skip using the retq for
    584 	 * the request if it completes immediately. If the request ends up being
    585 	 * delayed or is not completed immediately the flag is removed.
    586 	 */
    587 	crp->crp_flags = CRYPTO_F_IOV | (cop->flags & COP_F_BATCH) | CRYPTO_F_USER |
    588 			flags;
    589 	crp->crp_buf = (void *)&cse->uio;
    590 	crp->crp_callback = (int (*) (struct cryptop *)) cryptodev_cb;
    591 	crp->crp_sid = cse->sid;
    592 	crp->crp_opaque = (void *)cse;
    593 
    594 	if (cop->iv) {
    595 		if (crde == NULL) {
    596 			error = EINVAL;
    597 			goto bail;
    598 		}
    599 		if (cse->txform->ivsize == 0) {
    600 			error = EINVAL;
    601 			goto bail;
    602 		}
    603 		if ((error = copyin(cop->iv, cse->tmp_iv,
    604 		    cse->txform->ivsize)))
    605 			goto bail;
    606 		(void)memcpy(crde->crd_iv, cse->tmp_iv, cse->txform->ivsize);
    607 		crde->crd_flags |= CRD_F_IV_EXPLICIT | CRD_F_IV_PRESENT;
    608 		crde->crd_skip = 0;
    609 	} else if (crde) {
    610 		if (cse->txform->ivsize == 0) {
    611 			crde->crd_skip = 0;
    612 		} else {
    613 			if (!(crde->crd_flags & CRD_F_ENCRYPT))
    614 				crde->crd_flags |= CRD_F_IV_PRESENT;
    615 			crde->crd_skip = cse->txform->ivsize;
    616 			crde->crd_len -= cse->txform->ivsize;
    617 		}
    618 	}
    619 
    620 	if (cop->mac) {
    621 		if (crda == NULL) {
    622 			error = EINVAL;
    623 			goto bail;
    624 		}
    625 		crp->crp_mac=cse->tmp_mac;
    626 	}
    627 
    628 	cv_init(&crp->crp_cv, "crydev");
    629 
    630 	/*
    631 	 * XXX there was a comment here which said that we went to
    632 	 * XXX splcrypto() but needed to only if CRYPTO_F_CBIMM,
    633 	 * XXX disabled on NetBSD since 1.6O due to a race condition.
    634 	 * XXX But crypto_dispatch went to splcrypto() itself!  (And
    635 	 * XXX now takes the crypto_mtx mutex itself).  We do, however,
    636 	 * XXX need to hold the mutex across the call to cv_wait().
    637 	 * XXX     (should we arrange for crypto_dispatch to return to
    638 	 * XXX      us with it held?  it seems quite ugly to do so.)
    639 	 */
    640 #ifdef notyet
    641 eagain:
    642 #endif
    643 	error = crypto_dispatch(crp);
    644 	mutex_enter(&crypto_mtx);
    645 
    646 	/*
    647 	 * If the request was going to be completed by the
    648 	 * ioctl thread then it would have been done by now.
    649 	 * Remove the F_USER flag so crypto_done() is not confused
    650 	 * if the crypto device calls it after this point.
    651 	 */
    652 	crp->crp_flags &= ~(CRYPTO_F_USER);
    653 
    654 	switch (error) {
    655 #ifdef notyet	/* don't loop forever -- but EAGAIN not possible here yet */
    656 	case EAGAIN:
    657 		mutex_exit(&crypto_mtx);
    658 		goto eagain;
    659 		break;
    660 #endif
    661 	case 0:
    662 		break;
    663 	default:
    664 		DPRINTF(("cryptodev_op: not waiting, error.\n"));
    665 		mutex_exit(&crypto_mtx);
    666 		cv_destroy(&crp->crp_cv);
    667 		goto bail;
    668 	}
    669 
    670 	while (!(crp->crp_flags & CRYPTO_F_DONE)) {
    671 		DPRINTF(("cryptodev_op[%d]: sleeping on cv %p for crp %p\n",
    672 			(uint32_t)cse->sid, &crp->crp_cv, crp));
    673 		cv_wait(&crp->crp_cv, &crypto_mtx);	/* XXX cv_wait_sig? */
    674 	}
    675 	if (crp->crp_flags & CRYPTO_F_ONRETQ) {
    676 		/* XXX this should never happen now with the CRYPTO_F_USER flag
    677 		 * changes.
    678 		 */
    679 		DPRINTF(("cryptodev_op: DONE, not woken by cryptoret.\n"));
    680 		(void)crypto_ret_q_remove(crp);
    681 	}
    682 	mutex_exit(&crypto_mtx);
    683 	cv_destroy(&crp->crp_cv);
    684 
    685 	if (crp->crp_etype != 0) {
    686 		DPRINTF(("cryptodev_op: crp_etype %d\n", crp->crp_etype));
    687 		error = crp->crp_etype;
    688 		goto bail;
    689 	}
    690 
    691 	if (cse->error) {
    692 		DPRINTF(("cryptodev_op: cse->error %d\n", cse->error));
    693 		error = cse->error;
    694 		goto bail;
    695 	}
    696 
    697 	dst_len = crp->crp_ilen;
    698 	/* let the user know how much data was returned */
    699 	if (crp->crp_olen) {
    700 		if (crp->crp_olen > (cop->dst_len ? cop->dst_len : cop->len)) {
    701 			error = ENOSPC;
    702 			goto bail;
    703 		}
    704 		dst_len = cop->dst_len = crp->crp_olen;
    705 	}
    706 
    707 	if (cop->dst) {
    708 		DPRINTF(("cryptodev_op: copyout %d bytes to %p\n", dst_len, cop->dst));
    709 	}
    710 	if (cop->dst &&
    711 	    (error = copyout(cse->uio.uio_iov[0].iov_base, cop->dst, dst_len)))
    712 	{
    713 		DPRINTF(("cryptodev_op: copyout error %d\n", error));
    714 		goto bail;
    715 	}
    716 
    717 	if (cop->mac &&
    718 	    (error = copyout(crp->crp_mac, cop->mac, cse->thash->authsize))) {
    719 		DPRINTF(("cryptodev_op: mac copyout error %d\n", error));
    720 		goto bail;
    721 	}
    722 
    723 
    724 bail:
    725 	if (crp) {
    726 		crypto_freereq(crp);
    727 	}
    728 	if (cse->uio.uio_iov[0].iov_base) {
    729 		kmem_free(cse->uio.uio_iov[0].iov_base,iov_len);
    730 	}
    731 
    732 	return error;
    733 }
    734 
    735 static int
    736 cryptodev_cb(void *op)
    737 {
    738 	struct cryptop *crp = (struct cryptop *) op;
    739 	struct csession *cse = (struct csession *)crp->crp_opaque;
    740 	int error = 0;
    741 
    742 	mutex_enter(&crypto_mtx);
    743 	cse->error = crp->crp_etype;
    744 	if (crp->crp_etype == EAGAIN) {
    745 		/* always drop mutex to call dispatch routine */
    746 		mutex_exit(&crypto_mtx);
    747 		error = crypto_dispatch(crp);
    748 		mutex_enter(&crypto_mtx);
    749 	}
    750 	if (error != 0 || (crp->crp_flags & CRYPTO_F_DONE)) {
    751 		cv_signal(&crp->crp_cv);
    752 	}
    753 	mutex_exit(&crypto_mtx);
    754 	return 0;
    755 }
    756 
    757 static int
    758 cryptodev_mcb(void *op)
    759 {
    760 	struct cryptop *crp = (struct cryptop *) op;
    761 	struct csession *cse = (struct csession *)crp->crp_opaque;
    762 	int  error=0;
    763 
    764 	mutex_enter(&crypto_mtx);
    765 	cse->error = crp->crp_etype;
    766 	if (crp->crp_etype == EAGAIN) {
    767 		mutex_exit(&crypto_mtx);
    768 		error = crypto_dispatch(crp);
    769 		mutex_enter(&crypto_mtx);
    770 	}
    771 	if (error != 0 || (crp->crp_flags & CRYPTO_F_DONE)) {
    772 		cv_signal(&crp->crp_cv);
    773 	}
    774 
    775 	TAILQ_INSERT_TAIL(&crp->fcrp->crp_ret_mq, crp, crp_next);
    776 	selnotify(&crp->fcrp->sinfo, 0, 0);
    777 	mutex_exit(&crypto_mtx);
    778 	return 0;
    779 }
    780 
    781 static int
    782 cryptodevkey_cb(void *op)
    783 {
    784 	struct cryptkop *krp = op;
    785 
    786 	mutex_enter(&crypto_mtx);
    787 	cv_signal(&krp->krp_cv);
    788 	mutex_exit(&crypto_mtx);
    789 	return 0;
    790 }
    791 
    792 static int
    793 cryptodevkey_mcb(void *op)
    794 {
    795 	struct cryptkop *krp = op;
    796 
    797 	mutex_enter(&crypto_mtx);
    798 	cv_signal(&krp->krp_cv);
    799 	TAILQ_INSERT_TAIL(&krp->fcrp->crp_ret_mkq, krp, krp_next);
    800 	selnotify(&krp->fcrp->sinfo, 0, 0);
    801 	mutex_exit(&crypto_mtx);
    802 	return 0;
    803 }
    804 
    805 static int
    806 cryptodev_key(struct crypt_kop *kop)
    807 {
    808 	struct cryptkop *krp = NULL;
    809 	int error = EINVAL;
    810 	int in, out, size, i;
    811 
    812 	if (kop->crk_iparams + kop->crk_oparams > CRK_MAXPARAM)
    813 		return EFBIG;
    814 
    815 	in = kop->crk_iparams;
    816 	out = kop->crk_oparams;
    817 	switch (kop->crk_op) {
    818 	case CRK_MOD_EXP:
    819 		if (in == 3 && out == 1)
    820 			break;
    821 		return EINVAL;
    822 	case CRK_MOD_EXP_CRT:
    823 		if (in == 6 && out == 1)
    824 			break;
    825 		return EINVAL;
    826 	case CRK_DSA_SIGN:
    827 		if (in == 5 && out == 2)
    828 			break;
    829 		return EINVAL;
    830 	case CRK_DSA_VERIFY:
    831 		if (in == 7 && out == 0)
    832 			break;
    833 		return EINVAL;
    834 	case CRK_DH_COMPUTE_KEY:
    835 		if (in == 3 && out == 1)
    836 			break;
    837 		return EINVAL;
    838 	case CRK_MOD_ADD:
    839 		if (in == 3 && out == 1)
    840 			break;
    841 		return EINVAL;
    842 	case CRK_MOD_ADDINV:
    843 		if (in == 2 && out == 1)
    844 			break;
    845 		return EINVAL;
    846 	case CRK_MOD_SUB:
    847 		if (in == 3 && out == 1)
    848 			break;
    849 		return EINVAL;
    850 	case CRK_MOD_MULT:
    851 		if (in == 3 && out == 1)
    852 			break;
    853 		return EINVAL;
    854 	case CRK_MOD_MULTINV:
    855 		if (in == 2 && out == 1)
    856 			break;
    857 		return EINVAL;
    858 	case CRK_MOD:
    859 		if (in == 2 && out == 1)
    860 			break;
    861 		return EINVAL;
    862 	default:
    863 		return EINVAL;
    864 	}
    865 
    866 	krp = pool_get(&cryptkop_pool, PR_WAITOK);
    867 	(void)memset(krp, 0, sizeof *krp);
    868 	cv_init(&krp->krp_cv, "crykdev");
    869 	krp->krp_op = kop->crk_op;
    870 	krp->krp_status = kop->crk_status;
    871 	krp->krp_iparams = kop->crk_iparams;
    872 	krp->krp_oparams = kop->crk_oparams;
    873 	krp->krp_status = 0;
    874 	krp->krp_callback = (int (*) (struct cryptkop *)) cryptodevkey_cb;
    875 
    876 	for (i = 0; i < CRK_MAXPARAM; i++)
    877 		krp->krp_param[i].crp_nbits = kop->crk_param[i].crp_nbits;
    878 	for (i = 0; i < krp->krp_iparams + krp->krp_oparams; i++) {
    879 		size = (krp->krp_param[i].crp_nbits + 7) / 8;
    880 		if (size == 0)
    881 			continue;
    882 		krp->krp_param[i].crp_p = kmem_alloc(size, KM_SLEEP);
    883 		if (i >= krp->krp_iparams)
    884 			continue;
    885 		error = copyin(kop->crk_param[i].crp_p,
    886 		    krp->krp_param[i].crp_p, size);
    887 		if (error)
    888 			goto fail;
    889 	}
    890 
    891 	error = crypto_kdispatch(krp);
    892 	if (error != 0) {
    893 		goto fail;
    894 	}
    895 
    896 	mutex_enter(&crypto_mtx);
    897 	while (!(krp->krp_flags & CRYPTO_F_DONE)) {
    898 		cv_wait(&krp->krp_cv, &crypto_mtx);	/* XXX cv_wait_sig? */
    899 	}
    900 	if (krp->krp_flags & CRYPTO_F_ONRETQ) {
    901 		DPRINTF(("cryptodev_key: DONE early, not via cryptoret.\n"));
    902 		(void)crypto_ret_kq_remove(krp);
    903 	}
    904 	mutex_exit(&crypto_mtx);
    905 
    906 	if (krp->krp_status != 0) {
    907 		DPRINTF(("cryptodev_key: krp->krp_status 0x%08x\n",
    908 		    krp->krp_status));
    909 		error = krp->krp_status;
    910 		goto fail;
    911 	}
    912 
    913 	for (i = krp->krp_iparams; i < krp->krp_iparams + krp->krp_oparams;
    914 	    i++) {
    915 		size = (krp->krp_param[i].crp_nbits + 7) / 8;
    916 		if (size == 0)
    917 			continue;
    918 		error = copyout(krp->krp_param[i].crp_p,
    919 		    kop->crk_param[i].crp_p, size);
    920 		if (error) {
    921 			DPRINTF(("cryptodev_key: copyout oparam %d failed, "
    922 			    "error=%d\n", i-krp->krp_iparams, error));
    923 			goto fail;
    924 		}
    925 	}
    926 
    927 fail:
    928 	kop->crk_status = krp->krp_status;
    929 	for (i = 0; i < CRK_MAXPARAM; i++) {
    930 		struct crparam *kp = &(krp->krp_param[i]);
    931 		if (krp->krp_param[i].crp_p) {
    932 			size = (kp->crp_nbits + 7)  / 8;
    933 			KASSERT(size > 0);
    934 			(void)memset(kp->crp_p, 0, size);
    935 			kmem_free(kp->crp_p, size);
    936 		}
    937 	}
    938 	cv_destroy(&krp->krp_cv);
    939 	pool_put(&cryptkop_pool, krp);
    940 	DPRINTF(("cryptodev_key: error=0x%08x\n", error));
    941 	return error;
    942 }
    943 
    944 /* ARGSUSED */
    945 static int
    946 cryptof_close(struct file *fp)
    947 {
    948 	struct fcrypt *fcr = fp->f_fcrypt;
    949 	struct csession *cse;
    950 
    951 	mutex_enter(&crypto_mtx);
    952 	while ((cse = TAILQ_FIRST(&fcr->csessions))) {
    953 		TAILQ_REMOVE(&fcr->csessions, cse, next);
    954 		mutex_exit(&crypto_mtx);
    955 		(void)csefree(cse);
    956 		mutex_enter(&crypto_mtx);
    957 	}
    958 	seldestroy(&fcr->sinfo);
    959 	fp->f_fcrypt = NULL;
    960 	crypto_refcount--;
    961 	mutex_exit(&crypto_mtx);
    962 
    963 	pool_put(&fcrpl, fcr);
    964 	return 0;
    965 }
    966 
    967 /* needed for compatibility module */
    968 struct	csession *cryptodev_csefind(struct fcrypt *fcr, u_int ses)
    969 {
    970 	return csefind(fcr, ses);
    971 }
    972 
    973 /* csefind: call with crypto_mtx held. */
    974 static struct csession *
    975 csefind(struct fcrypt *fcr, u_int ses)
    976 {
    977 	struct csession *cse, *cnext, *ret = NULL;
    978 
    979 	KASSERT(mutex_owned(&crypto_mtx));
    980 	TAILQ_FOREACH_SAFE(cse, &fcr->csessions, next, cnext)
    981 		if (cse->ses == ses)
    982 			ret = cse;
    983 
    984 	return ret;
    985 }
    986 
    987 /* csedelete: call with crypto_mtx held. */
    988 static int
    989 csedelete(struct fcrypt *fcr, struct csession *cse_del)
    990 {
    991 	struct csession *cse, *cnext;
    992 	int ret = 0;
    993 
    994 	KASSERT(mutex_owned(&crypto_mtx));
    995 	TAILQ_FOREACH_SAFE(cse, &fcr->csessions, next, cnext) {
    996 		if (cse == cse_del) {
    997 			TAILQ_REMOVE(&fcr->csessions, cse, next);
    998 			ret = 1;
    999 		}
   1000 	}
   1001 	return ret;
   1002 }
   1003 
   1004 static struct csession *
   1005 cseadd(struct fcrypt *fcr, struct csession *cse)
   1006 {
   1007 	mutex_enter(&crypto_mtx);
   1008 	/* don't let session ID wrap! */
   1009 	if (fcr->sesn + 1 == 0) return NULL;
   1010 	TAILQ_INSERT_TAIL(&fcr->csessions, cse, next);
   1011 	cse->ses = fcr->sesn++;
   1012 	mutex_exit(&crypto_mtx);
   1013 	return cse;
   1014 }
   1015 
   1016 static struct csession *
   1017 csecreate(struct fcrypt *fcr, u_int64_t sid, void *key, u_int64_t keylen,
   1018     void *mackey, u_int64_t mackeylen, u_int32_t cipher, u_int32_t mac,
   1019     u_int32_t comp_alg, const struct enc_xform *txform,
   1020     const struct auth_hash *thash, const struct comp_algo *tcomp)
   1021 {
   1022 	struct csession *cse;
   1023 
   1024 	cse = pool_get(&csepl, PR_NOWAIT);
   1025 	if (cse == NULL)
   1026 		return NULL;
   1027 	cse->key = key;
   1028 	cse->keylen = keylen/8;
   1029 	cse->mackey = mackey;
   1030 	cse->mackeylen = mackeylen/8;
   1031 	cse->sid = sid;
   1032 	cse->cipher = cipher;
   1033 	cse->mac = mac;
   1034 	cse->comp_alg = comp_alg;
   1035 	cse->txform = txform;
   1036 	cse->thash = thash;
   1037 	cse->tcomp = tcomp;
   1038 	cse->error = 0;
   1039 	if (cseadd(fcr, cse))
   1040 		return cse;
   1041 	else {
   1042 		pool_put(&csepl, cse);
   1043 		return NULL;
   1044 	}
   1045 }
   1046 
   1047 /* csefree: call with crypto_mtx held. */
   1048 static int
   1049 csefree(struct csession *cse)
   1050 {
   1051 	int error;
   1052 
   1053 	error = crypto_freesession(cse->sid);
   1054 	if (cse->key)
   1055 		free(cse->key, M_XDATA);
   1056 	if (cse->mackey)
   1057 		free(cse->mackey, M_XDATA);
   1058 	pool_put(&csepl, cse);
   1059 	return error;
   1060 }
   1061 
   1062 static int
   1063 cryptoopen(dev_t dev, int flag, int mode,
   1064     struct lwp *l)
   1065 {
   1066 	file_t *fp;
   1067         struct fcrypt *fcr;
   1068         int fd, error;
   1069 
   1070 	if (crypto_usercrypto == 0)
   1071 		return ENXIO;
   1072 
   1073 	if ((error = fd_allocfile(&fp, &fd)) != 0)
   1074 		return error;
   1075 
   1076 	fcr = pool_get(&fcrpl, PR_WAITOK);
   1077 	getnanotime(&fcr->btime);
   1078 	fcr->atime = fcr->mtime = fcr->btime;
   1079 	mutex_enter(&crypto_mtx);
   1080 	TAILQ_INIT(&fcr->csessions);
   1081 	TAILQ_INIT(&fcr->crp_ret_mq);
   1082 	TAILQ_INIT(&fcr->crp_ret_mkq);
   1083 	selinit(&fcr->sinfo);
   1084 	/*
   1085 	 * Don't ever return session 0, to allow detection of
   1086 	 * failed creation attempts with multi-create ioctl.
   1087 	 */
   1088 	fcr->sesn = 1;
   1089 	fcr->requestid = 1;
   1090 	crypto_refcount++;
   1091 	mutex_exit(&crypto_mtx);
   1092 	return fd_clone(fp, fd, flag, &cryptofops, fcr);
   1093 }
   1094 
   1095 static int
   1096 cryptoread(dev_t dev, struct uio *uio, int ioflag)
   1097 {
   1098 	return EIO;
   1099 }
   1100 
   1101 static int
   1102 cryptowrite(dev_t dev, struct uio *uio, int ioflag)
   1103 {
   1104 	return EIO;
   1105 }
   1106 
   1107 int
   1108 cryptoselect(dev_t dev, int rw, struct lwp *l)
   1109 {
   1110 	return 0;
   1111 }
   1112 
   1113 /*static*/
   1114 struct cdevsw crypto_cdevsw = {
   1115 	LOCALCOUNT_INITIALIZER
   1116 	.d_open = cryptoopen,
   1117 	.d_close = noclose,
   1118 	.d_read = cryptoread,
   1119 	.d_write = cryptowrite,
   1120 	.d_ioctl = noioctl,
   1121 	.d_stop = nostop,
   1122 	.d_tty = notty,
   1123 	.d_poll = cryptoselect /*nopoll*/,
   1124 	.d_mmap = nommap,
   1125 	.d_kqfilter = nokqfilter,
   1126 	.d_discard = nodiscard,
   1127 	.d_flag = D_OTHER
   1128 };
   1129 
   1130 int
   1131 cryptodev_mop(struct fcrypt *fcr,
   1132               struct crypt_n_op * cnop,
   1133               int count, struct lwp *l)
   1134 {
   1135 	struct cryptop *crp = NULL;
   1136 	struct cryptodesc *crde = NULL, *crda = NULL, *crdc = NULL;
   1137 	int req, error=0;
   1138 	struct csession *cse;
   1139 	int flags=0;
   1140 	int iov_len;
   1141 
   1142 	for (req = 0; req < count; req++) {
   1143 		mutex_enter(&crypto_mtx);
   1144 		cse = csefind(fcr, cnop[req].ses);
   1145 		if (cse == NULL) {
   1146 			DPRINTF(("csefind failed\n"));
   1147 			cnop[req].status = EINVAL;
   1148 			mutex_exit(&crypto_mtx);
   1149 			continue;
   1150 		}
   1151 		mutex_exit(&crypto_mtx);
   1152 
   1153 		if (cnop[req].len > 256*1024-4) {
   1154 			DPRINTF(("length failed\n"));
   1155 			cnop[req].status = EINVAL;
   1156 			continue;
   1157 		}
   1158 		if (cse->txform) {
   1159 			if (cnop[req].len < cse->txform->blocksize -
   1160 			    (cnop[req].iv ? 0 : cse->txform->ivsize) ||
   1161 			    (cnop[req].len -
   1162 			     (cnop[req].iv ? 0 : cse->txform->ivsize))
   1163 			    % cse->txform->blocksize) {
   1164 				cnop[req].status = EINVAL;
   1165 				continue;
   1166 			}
   1167 		}
   1168 
   1169 		crp = crypto_getreq((cse->txform != NULL) +
   1170 				    (cse->thash != NULL) +
   1171 				    (cse->tcomp != NULL));
   1172 		if (crp == NULL) {
   1173 			cnop[req].status = ENOMEM;
   1174 			goto bail;
   1175 		}
   1176 
   1177 		iov_len = cnop[req].len;
   1178 		/* got a compression/decompression max size? */
   1179 		if ((cse->tcomp) && cnop[req].dst_len) {
   1180 			if (iov_len < cnop[req].dst_len) {
   1181 				/* Need larger iov to deal with decompress */
   1182 				iov_len = cnop[req].dst_len;
   1183 			}
   1184 			DPRINTF(("cryptodev_mop: iov_len -> %d for decompress\n", iov_len));
   1185 		}
   1186 
   1187 		(void)memset(&crp->uio, 0, sizeof(crp->uio));
   1188 		crp->uio.uio_iovcnt = 1;
   1189 		crp->uio.uio_resid = 0;
   1190 		crp->uio.uio_rw = UIO_WRITE;
   1191 		crp->uio.uio_iov = crp->iovec;
   1192 		UIO_SETUP_SYSSPACE(&crp->uio);
   1193 		memset(&crp->iovec, 0, sizeof(crp->iovec));
   1194 		crp->uio.uio_iov[0].iov_len = iov_len;
   1195 		DPRINTF(("cryptodev_mop: kmem_alloc(%d) for iov \n", iov_len));
   1196 		crp->uio.uio_iov[0].iov_base = kmem_alloc(iov_len, KM_SLEEP);
   1197 		crp->uio.uio_resid = crp->uio.uio_iov[0].iov_len;
   1198 
   1199 		if (cse->tcomp) {
   1200 			crdc = crp->crp_desc;
   1201 		}
   1202 
   1203 		if (cse->thash) {
   1204 			crda = crdc ? crdc->crd_next : crp->crp_desc;
   1205 			if (cse->txform && crda)
   1206 				crde = crda->crd_next;
   1207 		} else {
   1208 			if (cse->txform) {
   1209 				crde = crdc ? crdc->crd_next : crp->crp_desc;
   1210 			} else if (!cse->tcomp) {
   1211 				error = EINVAL;
   1212 				goto bail;
   1213 			}
   1214 		}
   1215 
   1216 		if ((copyin(cnop[req].src,
   1217 		    crp->uio.uio_iov[0].iov_base, cnop[req].len))) {
   1218 			cnop[req].status = EINVAL;
   1219 			goto bail;
   1220 		}
   1221 
   1222 		if (crdc) {
   1223 			switch (cnop[req].op) {
   1224 			case COP_COMP:
   1225 				crdc->crd_flags |= CRD_F_COMP;
   1226 				break;
   1227 			case COP_DECOMP:
   1228 				crdc->crd_flags &= ~CRD_F_COMP;
   1229 				break;
   1230 			default:
   1231 				break;
   1232 			}
   1233 			/* more data to follow? */
   1234 			if (cnop[req].flags & COP_F_MORE) {
   1235 				flags |= CRYPTO_F_MORE;
   1236 			}
   1237 			crdc->crd_len = cnop[req].len;
   1238 			crdc->crd_inject = 0;
   1239 
   1240 			crdc->crd_alg = cse->comp_alg;
   1241 			crdc->crd_key = NULL;
   1242 			crdc->crd_klen = 0;
   1243 			DPRINTF(("cryptodev_mop[%d]: crdc setup for comp_alg %d"
   1244 				 " len %d.\n",
   1245 				(uint32_t)cse->sid, crdc->crd_alg,
   1246 				crdc->crd_len));
   1247 		}
   1248 
   1249 		if (crda) {
   1250 			crda->crd_skip = 0;
   1251 			crda->crd_len = cnop[req].len;
   1252 			crda->crd_inject = 0;	/* ??? */
   1253 
   1254 			crda->crd_alg = cse->mac;
   1255 			crda->crd_key = cse->mackey;
   1256 			crda->crd_klen = cse->mackeylen * 8;
   1257 		}
   1258 
   1259 		if (crde) {
   1260 			if (cnop[req].op == COP_ENCRYPT)
   1261 				crde->crd_flags |= CRD_F_ENCRYPT;
   1262 			else
   1263 				crde->crd_flags &= ~CRD_F_ENCRYPT;
   1264 			crde->crd_len = cnop[req].len;
   1265 			crde->crd_inject = 0;
   1266 
   1267 			crde->crd_alg = cse->cipher;
   1268 #ifdef notyet		/* XXX must notify h/w driver new key, drain */
   1269 			if(cnop[req].key && cnop[req].keylen) {
   1270 				crde->crd_key = malloc(cnop[req].keylen,
   1271 						    M_XDATA, M_WAITOK);
   1272 				if((error = copyin(cnop[req].key,
   1273 				    crde->crd_key, cnop[req].keylen))) {
   1274 					cnop[req].status = EINVAL;
   1275 					goto bail;
   1276 				}
   1277 				crde->crd_klen =  cnop[req].keylen * 8;
   1278 			} else { ... }
   1279 #endif
   1280 			crde->crd_key = cse->key;
   1281 			crde->crd_klen = cse->keylen * 8;
   1282 		}
   1283 
   1284 		crp->crp_ilen = cnop[req].len;
   1285 		crp->crp_flags = CRYPTO_F_IOV | CRYPTO_F_CBIMM |
   1286 		    (cnop[req].flags & COP_F_BATCH) | flags;
   1287 		crp->crp_buf = (void *)&crp->uio;
   1288 		crp->crp_callback = (int (*) (struct cryptop *)) cryptodev_mcb;
   1289 		crp->crp_sid = cse->sid;
   1290 		crp->crp_opaque = (void *)cse;
   1291 		crp->fcrp = fcr;
   1292 		crp->dst = cnop[req].dst;
   1293 		crp->len = cnop[req].len; /* input len, iov may be larger */
   1294 		crp->mac = cnop[req].mac;
   1295 		DPRINTF(("cryptodev_mop: iov_base %p dst %p len %d mac %p\n",
   1296 			    crp->uio.uio_iov[0].iov_base, crp->dst, crp->len,
   1297 			    crp->mac));
   1298 
   1299 		if (cnop[req].iv) {
   1300 			if (crde == NULL) {
   1301 				cnop[req].status = EINVAL;
   1302 				goto bail;
   1303 			}
   1304 			if (cse->cipher == CRYPTO_ARC4) { /* XXX use flag? */
   1305 				cnop[req].status = EINVAL;
   1306 				goto bail;
   1307 			}
   1308 			if ((error = copyin(cnop[req].iv, crp->tmp_iv,
   1309 			    cse->txform->ivsize))) {
   1310 				cnop[req].status = EINVAL;
   1311 				goto bail;
   1312 			}
   1313 			(void)memcpy(crde->crd_iv, crp->tmp_iv,
   1314 			    cse->txform->ivsize);
   1315 			crde->crd_flags |= CRD_F_IV_EXPLICIT | CRD_F_IV_PRESENT;
   1316 			crde->crd_skip = 0;
   1317 		} else if (crde) {
   1318 			if (cse->cipher == CRYPTO_ARC4) { /* XXX use flag? */
   1319 				crde->crd_skip = 0;
   1320 			} else {
   1321 				if (!(crde->crd_flags & CRD_F_ENCRYPT))
   1322 					crde->crd_flags |= CRD_F_IV_PRESENT;
   1323 				crde->crd_skip = cse->txform->ivsize;
   1324 				crde->crd_len -= cse->txform->ivsize;
   1325 			}
   1326 		}
   1327 
   1328 		if (cnop[req].mac) {
   1329 			if (crda == NULL) {
   1330 				cnop[req].status = EINVAL;
   1331 				goto bail;
   1332 			}
   1333 			crp->crp_mac=cse->tmp_mac;
   1334 		}
   1335 		cnop[req].reqid = atomic_inc_32_nv(&(fcr->requestid));
   1336 		crp->crp_reqid = cnop[req].reqid;
   1337 		crp->crp_usropaque = cnop[req].opaque;
   1338 		cv_init(&crp->crp_cv, "crydev");
   1339 #ifdef notyet
   1340 eagain:
   1341 #endif
   1342 		cnop[req].status = crypto_dispatch(crp);
   1343 		mutex_enter(&crypto_mtx);	/* XXX why mutex? */
   1344 
   1345 		switch (cnop[req].status) {
   1346 #ifdef notyet	/* don't loop forever -- but EAGAIN not possible here yet */
   1347 		case EAGAIN:
   1348 			mutex_exit(&crypto_mtx);
   1349 			goto eagain;
   1350 			break;
   1351 #endif
   1352 		case 0:
   1353 			break;
   1354 		default:
   1355 			DPRINTF(("cryptodev_op: not waiting, error.\n"));
   1356 			mutex_exit(&crypto_mtx);
   1357 			cv_destroy(&crp->crp_cv);
   1358 			goto bail;
   1359 		}
   1360 
   1361 		mutex_exit(&crypto_mtx);
   1362 		cv_destroy(&crp->crp_cv);
   1363 bail:
   1364 		if (cnop[req].status) {
   1365 			if (crp) {
   1366 				if (crp->uio.uio_iov[0].iov_base) {
   1367 					kmem_free(crp->uio.uio_iov[0].iov_base,
   1368 					    crp->uio.uio_iov[0].iov_len);
   1369 				}
   1370 				crypto_freereq(crp);
   1371 			}
   1372 			error = 0;
   1373 		}
   1374 	}
   1375 	return error;
   1376 }
   1377 
   1378 static int
   1379 cryptodev_mkey(struct fcrypt *fcr, struct crypt_n_kop *kop, int count)
   1380 {
   1381 	struct cryptkop *krp = NULL;
   1382 	int error = EINVAL;
   1383 	int in, out, size, i, req;
   1384 
   1385 	for (req = 0; req < count; req++) {
   1386 		if (kop[req].crk_iparams + kop[req].crk_oparams > CRK_MAXPARAM)
   1387 			return EFBIG;
   1388 
   1389 		in = kop[req].crk_iparams;
   1390 		out = kop[req].crk_oparams;
   1391 		switch (kop[req].crk_op) {
   1392 		case CRK_MOD_EXP:
   1393 			if (in == 3 && out == 1)
   1394 				break;
   1395 			kop[req].crk_status = EINVAL;
   1396 			continue;
   1397 		case CRK_MOD_EXP_CRT:
   1398 			if (in == 6 && out == 1)
   1399 				break;
   1400 			kop[req].crk_status = EINVAL;
   1401 			continue;
   1402 		case CRK_DSA_SIGN:
   1403 			if (in == 5 && out == 2)
   1404 				break;
   1405 			kop[req].crk_status = EINVAL;
   1406 			continue;
   1407 		case CRK_DSA_VERIFY:
   1408 			if (in == 7 && out == 0)
   1409 				break;
   1410 			kop[req].crk_status = EINVAL;
   1411 			continue;
   1412 		case CRK_DH_COMPUTE_KEY:
   1413 			if (in == 3 && out == 1)
   1414 				break;
   1415 			kop[req].crk_status = EINVAL;
   1416 			continue;
   1417 		case CRK_MOD_ADD:
   1418 			if (in == 3 && out == 1)
   1419 				break;
   1420 			kop[req].crk_status = EINVAL;
   1421 			continue;
   1422 		case CRK_MOD_ADDINV:
   1423 			if (in == 2 && out == 1)
   1424 				break;
   1425 			kop[req].crk_status = EINVAL;
   1426 			continue;
   1427 		case CRK_MOD_SUB:
   1428 			if (in == 3 && out == 1)
   1429 				break;
   1430 			kop[req].crk_status = EINVAL;
   1431 			continue;
   1432 		case CRK_MOD_MULT:
   1433 			if (in == 3 && out == 1)
   1434 				break;
   1435 			kop[req].crk_status = EINVAL;
   1436 			continue;
   1437 		case CRK_MOD_MULTINV:
   1438 			if (in == 2 && out == 1)
   1439 				break;
   1440 			kop[req].crk_status = EINVAL;
   1441 			continue;
   1442 		case CRK_MOD:
   1443 			if (in == 2 && out == 1)
   1444 				break;
   1445 			kop[req].crk_status = EINVAL;
   1446 			continue;
   1447 		default:
   1448 			kop[req].crk_status = EINVAL;
   1449 			continue;
   1450 		}
   1451 
   1452 		krp = pool_get(&cryptkop_pool, PR_WAITOK);
   1453 		(void)memset(krp, 0, sizeof *krp);
   1454 		cv_init(&krp->krp_cv, "crykdev");
   1455 		krp->krp_op = kop[req].crk_op;
   1456 		krp->krp_status = kop[req].crk_status;
   1457 		krp->krp_iparams = kop[req].crk_iparams;
   1458 		krp->krp_oparams = kop[req].crk_oparams;
   1459 		krp->krp_status = 0;
   1460 		krp->krp_callback =
   1461 		    (int (*) (struct cryptkop *)) cryptodevkey_mcb;
   1462 		(void)memcpy(krp->crk_param, kop[req].crk_param,
   1463 		    sizeof(kop[req].crk_param));
   1464 
   1465 		krp->krp_flags = CRYPTO_F_CBIMM;
   1466 
   1467 		for (i = 0; i < CRK_MAXPARAM; i++)
   1468 			krp->krp_param[i].crp_nbits =
   1469 			    kop[req].crk_param[i].crp_nbits;
   1470 		for (i = 0; i < krp->krp_iparams + krp->krp_oparams; i++) {
   1471 			size = (krp->krp_param[i].crp_nbits + 7) / 8;
   1472 			if (size == 0)
   1473 				continue;
   1474 			krp->krp_param[i].crp_p =
   1475 			    kmem_alloc(size, KM_SLEEP);
   1476 			if (i >= krp->krp_iparams)
   1477 				continue;
   1478 			kop[req].crk_status =
   1479 			    copyin(kop[req].crk_param[i].crp_p,
   1480 			    krp->krp_param[i].crp_p, size);
   1481 			if (kop[req].crk_status)
   1482 				goto fail;
   1483 		}
   1484 		krp->fcrp = fcr;
   1485 
   1486 		kop[req].crk_reqid = atomic_inc_32_nv(&(fcr->requestid));
   1487 		krp->krp_reqid = kop[req].crk_reqid;
   1488 		krp->krp_usropaque = kop[req].crk_opaque;
   1489 
   1490 		kop[req].crk_status = crypto_kdispatch(krp);
   1491 		if (kop[req].crk_status != 0) {
   1492 			goto fail;
   1493 		}
   1494 
   1495 fail:
   1496 		if(kop[req].crk_status) {
   1497 			if (krp) {
   1498 				kop[req].crk_status = krp->krp_status;
   1499 				for (i = 0; i < CRK_MAXPARAM; i++) {
   1500 					struct crparam *kp =
   1501 						&(krp->krp_param[i]);
   1502 					if (kp->crp_p) {
   1503 						size = (kp->crp_nbits + 7) / 8;
   1504 						KASSERT(size > 0);
   1505 						memset(kp->crp_p, 0, size);
   1506 						kmem_free(kp->crp_p, size);
   1507 					}
   1508 				}
   1509 				cv_destroy(&krp->krp_cv);
   1510 				pool_put(&cryptkop_pool, krp);
   1511 			}
   1512 		}
   1513 		error = 0;
   1514 	}
   1515 	DPRINTF(("cryptodev_key: error=0x%08x\n", error));
   1516 	return error;
   1517 }
   1518 
   1519 int
   1520 cryptodev_session(struct fcrypt *fcr, struct session_op *sop)
   1521 {
   1522 	struct cryptoini cria, crie;
   1523 	struct cryptoini cric;		/* compressor */
   1524 	struct cryptoini *crihead = NULL;
   1525 	const struct enc_xform *txform = NULL;
   1526 	const struct auth_hash *thash = NULL;
   1527 	const struct comp_algo *tcomp = NULL;
   1528 	struct csession *cse;
   1529 	u_int64_t sid;
   1530 	int error = 0;
   1531 
   1532 	DPRINTF(("cryptodev_session() cipher=%d, mac=%d\n", sop->cipher, sop->mac));
   1533 
   1534 	/* XXX there must be a way to not embed the list of xforms here */
   1535 	switch (sop->cipher) {
   1536 	case 0:
   1537 		break;
   1538 	case CRYPTO_DES_CBC:
   1539 		txform = &enc_xform_des;
   1540 		break;
   1541 	case CRYPTO_3DES_CBC:
   1542 		txform = &enc_xform_3des;
   1543 		break;
   1544 	case CRYPTO_BLF_CBC:
   1545 		txform = &enc_xform_blf;
   1546 		break;
   1547 	case CRYPTO_CAST_CBC:
   1548 		txform = &enc_xform_cast5;
   1549 		break;
   1550 	case CRYPTO_SKIPJACK_CBC:
   1551 		txform = &enc_xform_skipjack;
   1552 		break;
   1553 	case CRYPTO_AES_CBC:
   1554 		txform = &enc_xform_rijndael128;
   1555 		break;
   1556 	case CRYPTO_CAMELLIA_CBC:
   1557 		txform = &enc_xform_camellia;
   1558 		break;
   1559 	case CRYPTO_AES_CTR:
   1560 		txform = &enc_xform_aes_ctr;
   1561 		break;
   1562 	case CRYPTO_AES_GCM_16:
   1563 		txform = &enc_xform_aes_gcm;
   1564 		break;
   1565 	case CRYPTO_AES_GMAC:
   1566 		txform = &enc_xform_aes_gmac;
   1567 		break;
   1568 	case CRYPTO_NULL_CBC:
   1569 		txform = &enc_xform_null;
   1570 		break;
   1571 	case CRYPTO_ARC4:
   1572 		txform = &enc_xform_arc4;
   1573 		break;
   1574 	default:
   1575 		DPRINTF(("Invalid cipher %d\n", sop->cipher));
   1576 		return EINVAL;
   1577 	}
   1578 
   1579 	switch (sop->comp_alg) {
   1580 	case 0:
   1581 		break;
   1582 	case CRYPTO_DEFLATE_COMP:
   1583 		tcomp = &comp_algo_deflate;
   1584 		break;
   1585 	case CRYPTO_GZIP_COMP:
   1586 		tcomp = &comp_algo_gzip;
   1587 		DPRINTF(("cryptodev_session() tcomp for GZIP\n"));
   1588 		break;
   1589 	default:
   1590 		DPRINTF(("Invalid compression alg %d\n", sop->comp_alg));
   1591 		return EINVAL;
   1592 	}
   1593 
   1594 	switch (sop->mac) {
   1595 	case 0:
   1596 		break;
   1597 	case CRYPTO_MD5_HMAC:
   1598 		thash = &auth_hash_hmac_md5;
   1599 		break;
   1600 	case CRYPTO_SHA1_HMAC:
   1601 		thash = &auth_hash_hmac_sha1;
   1602 		break;
   1603 	case CRYPTO_MD5_HMAC_96:
   1604 		thash = &auth_hash_hmac_md5_96;
   1605 		break;
   1606 	case CRYPTO_SHA1_HMAC_96:
   1607 		thash = &auth_hash_hmac_sha1_96;
   1608 		break;
   1609 	case CRYPTO_SHA2_HMAC:
   1610 		/* XXX switching on key length seems questionable */
   1611 		if (sop->mackeylen == auth_hash_hmac_sha2_256.keysize) {
   1612 			thash = &auth_hash_hmac_sha2_256;
   1613 		} else if (sop->mackeylen == auth_hash_hmac_sha2_384.keysize) {
   1614 			thash = &auth_hash_hmac_sha2_384;
   1615 		} else if (sop->mackeylen == auth_hash_hmac_sha2_512.keysize) {
   1616 			thash = &auth_hash_hmac_sha2_512;
   1617 		} else {
   1618 			DPRINTF(("Invalid mackeylen %d\n", sop->mackeylen));
   1619 			return EINVAL;
   1620 		}
   1621 		break;
   1622 	case CRYPTO_RIPEMD160_HMAC:
   1623 		thash = &auth_hash_hmac_ripemd_160;
   1624 		break;
   1625 	case CRYPTO_RIPEMD160_HMAC_96:
   1626 		thash = &auth_hash_hmac_ripemd_160_96;
   1627 		break;
   1628 	case CRYPTO_MD5:
   1629 		thash = &auth_hash_md5;
   1630 		break;
   1631 	case CRYPTO_SHA1:
   1632 		thash = &auth_hash_sha1;
   1633 		break;
   1634 	case CRYPTO_AES_XCBC_MAC_96:
   1635 		thash = &auth_hash_aes_xcbc_mac_96;
   1636 		break;
   1637 	case CRYPTO_AES_128_GMAC:
   1638 		thash = &auth_hash_gmac_aes_128;
   1639 		break;
   1640 	case CRYPTO_AES_192_GMAC:
   1641 		thash = &auth_hash_gmac_aes_192;
   1642 		break;
   1643 	case CRYPTO_AES_256_GMAC:
   1644 		thash = &auth_hash_gmac_aes_256;
   1645 		break;
   1646 	case CRYPTO_NULL_HMAC:
   1647 		thash = &auth_hash_null;
   1648 		break;
   1649 	default:
   1650 		DPRINTF(("Invalid mac %d\n", sop->mac));
   1651 		return EINVAL;
   1652 	}
   1653 
   1654 	memset(&crie, 0, sizeof(crie));
   1655 	memset(&cria, 0, sizeof(cria));
   1656 	memset(&cric, 0, sizeof(cric));
   1657 
   1658 	if (tcomp) {
   1659 		cric.cri_alg = tcomp->type;
   1660 		cric.cri_klen = 0;
   1661 		DPRINTF(("tcomp->type = %d\n", tcomp->type));
   1662 
   1663 		crihead = &cric;
   1664 		if (txform) {
   1665 			cric.cri_next = &crie;
   1666 		} else if (thash) {
   1667 			cric.cri_next = &cria;
   1668 		}
   1669 	}
   1670 
   1671 	if (txform) {
   1672 		crie.cri_alg = txform->type;
   1673 		crie.cri_klen = sop->keylen * 8;
   1674 		if (sop->keylen > txform->maxkey ||
   1675 		    sop->keylen < txform->minkey) {
   1676 			DPRINTF(("keylen %d not in [%d,%d]\n",
   1677 			    sop->keylen, txform->minkey, txform->maxkey));
   1678 			error = EINVAL;
   1679 			goto bail;
   1680 		}
   1681 
   1682 		crie.cri_key = malloc(crie.cri_klen / 8, M_XDATA, M_WAITOK);
   1683 		if ((error = copyin(sop->key, crie.cri_key, crie.cri_klen / 8)))
   1684 			goto bail;
   1685 		if (!crihead) {
   1686 			crihead = &crie;
   1687 		}
   1688 		if (thash)
   1689 			crie.cri_next = &cria;
   1690 	}
   1691 
   1692 	if (thash) {
   1693 		cria.cri_alg = thash->type;
   1694 		cria.cri_klen = sop->mackeylen * 8;
   1695 		if (sop->mackeylen != thash->keysize) {
   1696 			DPRINTF(("mackeylen %d != keysize %d\n",
   1697 			    sop->mackeylen, thash->keysize));
   1698 			error = EINVAL;
   1699 			goto bail;
   1700 		}
   1701 		if (cria.cri_klen) {
   1702 			cria.cri_key = malloc(cria.cri_klen / 8, M_XDATA,
   1703 			    M_WAITOK);
   1704 			if ((error = copyin(sop->mackey, cria.cri_key,
   1705 			    cria.cri_klen / 8))) {
   1706 				goto bail;
   1707 			}
   1708 		}
   1709 		if (!crihead) {
   1710 			crihead = &cria;
   1711 		}
   1712 	}
   1713 
   1714 	error = crypto_newsession(&sid, crihead, crypto_devallowsoft);
   1715 	if (!error) {
   1716 		DPRINTF(("cryptodev_session: got session %d\n", (uint32_t)sid));
   1717 		cse = csecreate(fcr, sid, crie.cri_key, crie.cri_klen,
   1718 		    cria.cri_key, cria.cri_klen, (txform ? sop->cipher : 0), sop->mac,
   1719 		    (tcomp ? sop->comp_alg : 0), txform, thash, tcomp);
   1720 		if (cse != NULL) {
   1721 			sop->ses = cse->ses;
   1722 		} else {
   1723 			DPRINTF(("csecreate failed\n"));
   1724 			crypto_freesession(sid);
   1725 			error = EINVAL;
   1726 		}
   1727 	} else {
   1728 		DPRINTF(("SIOCSESSION violates kernel parameters %d\n",
   1729 		    error));
   1730 	}
   1731 bail:
   1732 	if (error) {
   1733 		if (crie.cri_key) {
   1734 			memset(crie.cri_key, 0, crie.cri_klen / 8);
   1735 			free(crie.cri_key, M_XDATA);
   1736 		}
   1737 		if (cria.cri_key) {
   1738 			memset(cria.cri_key, 0, cria.cri_klen / 8);
   1739 			free(cria.cri_key, M_XDATA);
   1740 		}
   1741 	}
   1742 	return error;
   1743 }
   1744 
   1745 int
   1746 cryptodev_msession(struct fcrypt *fcr, struct session_n_op *sn_ops,
   1747 		   int count)
   1748 {
   1749 	int i;
   1750 
   1751 	for (i = 0; i < count; i++, sn_ops++) {
   1752 		struct session_op s_op;
   1753 		s_op.cipher =		sn_ops->cipher;
   1754 		s_op.mac =		sn_ops->mac;
   1755 		s_op.keylen =		sn_ops->keylen;
   1756 		s_op.key =		sn_ops->key;
   1757 		s_op.mackeylen =	sn_ops->mackeylen;
   1758 		s_op.mackey =		sn_ops->mackey;
   1759 
   1760 		sn_ops->status = cryptodev_session(fcr, &s_op);
   1761 		sn_ops->ses =		s_op.ses;
   1762 	}
   1763 
   1764 	return 0;
   1765 }
   1766 
   1767 static int
   1768 cryptodev_msessionfin(struct fcrypt *fcr, int count, u_int32_t *sesid)
   1769 {
   1770 	struct csession *cse;
   1771 	int req, error = 0;
   1772 
   1773 	mutex_enter(&crypto_mtx);
   1774 	for(req = 0; req < count; req++) {
   1775 		cse = csefind(fcr, sesid[req]);
   1776 		if (cse == NULL)
   1777 			continue;
   1778 		csedelete(fcr, cse);
   1779 		mutex_exit(&crypto_mtx);
   1780 		error = csefree(cse);
   1781 		mutex_enter(&crypto_mtx);
   1782 	}
   1783 	mutex_exit(&crypto_mtx);
   1784 	return error;
   1785 }
   1786 
   1787 /*
   1788  * collect as many completed requests as are availble, or count completed
   1789  * requests whichever is less.
   1790  * return the number of requests.
   1791  */
   1792 static int
   1793 cryptodev_getmstatus(struct fcrypt *fcr, struct crypt_result *crypt_res,
   1794     int count)
   1795 {
   1796 	struct cryptop *crp = NULL;
   1797 	struct cryptkop *krp = NULL;
   1798 	struct csession *cse;
   1799 	int i, size, req = 0;
   1800 	int completed=0;
   1801 
   1802 	/* On queue so nobody else can grab them
   1803 	 * and copyout can be delayed-- no locking */
   1804 	TAILQ_HEAD(, cryptop) crp_delfree_q =
   1805 		TAILQ_HEAD_INITIALIZER(crp_delfree_q);
   1806 	TAILQ_HEAD(, cryptkop) krp_delfree_q =
   1807 		TAILQ_HEAD_INITIALIZER(krp_delfree_q);
   1808 
   1809 	/* at this point we do not know which response user is requesting for
   1810 	 * (symmetric or asymmetric) so we copyout one from each i.e if the
   1811 	 * count is 2 then 1 from symmetric and 1 from asymmetric queue and
   1812 	 * if 3 then 2 symmetric and 1 asymmetric and so on */
   1813 
   1814 	/* pull off a list of requests while protected from changes */
   1815 	mutex_enter(&crypto_mtx);
   1816 	while (req < count) {
   1817 		crp = TAILQ_FIRST(&fcr->crp_ret_mq);
   1818 		if (crp) {
   1819 			TAILQ_REMOVE(&fcr->crp_ret_mq, crp, crp_next);
   1820 			TAILQ_INSERT_TAIL(&crp_delfree_q, crp, crp_next);
   1821 			cse = (struct csession *)crp->crp_opaque;
   1822 
   1823 			/* see if the session is still valid */
   1824 			cse = csefind(fcr, cse->ses);
   1825 			if (cse != NULL) {
   1826 				crypt_res[req].status = 0;
   1827 			} else {
   1828 				DPRINTF(("csefind failed\n"));
   1829 				crypt_res[req].status = EINVAL;
   1830 			}
   1831 			req++;
   1832 		}
   1833 		if(req < count) {
   1834 			crypt_res[req].status = 0;
   1835 			krp = TAILQ_FIRST(&fcr->crp_ret_mkq);
   1836 			if (krp) {
   1837 				TAILQ_REMOVE(&fcr->crp_ret_mkq, krp, krp_next);
   1838 				TAILQ_INSERT_TAIL(&krp_delfree_q, krp, krp_next);
   1839 			req++;
   1840 			}
   1841 		}
   1842 	}
   1843 	mutex_exit(&crypto_mtx);
   1844 
   1845 	/* now do all the work outside the mutex */
   1846 	for(req=0; req < count ;) {
   1847 		crp = TAILQ_FIRST(&crp_delfree_q);
   1848 		if (crp) {
   1849 			if (crypt_res[req].status != 0) {
   1850 				/* csefind failed during collection */
   1851 				goto bail;
   1852 			}
   1853 			cse = (struct csession *)crp->crp_opaque;
   1854 			crypt_res[req].reqid = crp->crp_reqid;
   1855 			crypt_res[req].opaque = crp->crp_usropaque;
   1856 			completed++;
   1857 
   1858 			if (crp->crp_etype != 0) {
   1859 				crypt_res[req].status = crp->crp_etype;
   1860 				goto bail;
   1861 			}
   1862 
   1863 			if (cse->error) {
   1864 				crypt_res[req].status = cse->error;
   1865 				goto bail;
   1866 			}
   1867 
   1868 			if (crp->dst && (crypt_res[req].status =
   1869 			    copyout(crp->uio.uio_iov[0].iov_base, crp->dst,
   1870 			    crp->len)))
   1871 				goto bail;
   1872 
   1873 			if (crp->mac && (crypt_res[req].status =
   1874 			    copyout(crp->crp_mac, crp->mac,
   1875 			    cse->thash->authsize)))
   1876 				goto bail;
   1877 
   1878 bail:
   1879 			TAILQ_REMOVE(&crp_delfree_q, crp, crp_next);
   1880 			kmem_free(crp->uio.uio_iov[0].iov_base,
   1881 			    crp->uio.uio_iov[0].iov_len);
   1882 			crypto_freereq(crp);
   1883 			req++;
   1884 		}
   1885 
   1886 		if (req < count) {
   1887 			krp = TAILQ_FIRST(&krp_delfree_q);
   1888 			if (krp) {
   1889 				crypt_res[req].reqid = krp->krp_reqid;
   1890 				crypt_res[req].opaque = krp->krp_usropaque;
   1891 				completed++;
   1892 				if (krp->krp_status != 0) {
   1893 					DPRINTF(("cryptodev_key: "
   1894 					    "krp->krp_status 0x%08x\n",
   1895 					    krp->krp_status));
   1896 					crypt_res[req].status = krp->krp_status;
   1897 					goto fail;
   1898 				}
   1899 
   1900 				for (i = krp->krp_iparams; i < krp->krp_iparams
   1901 				    + krp->krp_oparams; i++) {
   1902 					size = (krp->krp_param[i].crp_nbits
   1903 					    + 7) / 8;
   1904 					if (size == 0)
   1905 						continue;
   1906 					crypt_res[req].status = copyout
   1907 					    (krp->krp_param[i].crp_p,
   1908 					    krp->crk_param[i].crp_p, size);
   1909 					if (crypt_res[req].status) {
   1910 						DPRINTF(("cryptodev_key: "
   1911 						    "copyout oparam %d failed, "
   1912 						    "error=%d\n",
   1913 						    i - krp->krp_iparams,
   1914 						    crypt_res[req].status));
   1915 						goto fail;
   1916 					}
   1917 				}
   1918 fail:
   1919 				TAILQ_REMOVE(&krp_delfree_q, krp, krp_next);
   1920 				/* not sure what to do for this */
   1921 				/* kop[req].crk_status = krp->krp_status; */
   1922 				for (i = 0; i < CRK_MAXPARAM; i++) {
   1923 					struct crparam *kp = &(krp->krp_param[i]);
   1924 					if (kp->crp_p) {
   1925 						size = (kp->crp_nbits + 7) / 8;
   1926 						KASSERT(size > 0);
   1927 						(void)memset(kp->crp_p, 0, size);
   1928 						kmem_free(kp->crp_p, size);
   1929 					}
   1930 				}
   1931 				cv_destroy(&krp->krp_cv);
   1932 				pool_put(&cryptkop_pool, krp);
   1933 				req++;
   1934 			}
   1935 		}
   1936 	}
   1937 
   1938 	return completed;
   1939 }
   1940 
   1941 static int
   1942 cryptodev_getstatus (struct fcrypt *fcr, struct crypt_result *crypt_res)
   1943 {
   1944         struct cryptop *crp = NULL, *cnext;
   1945         struct cryptkop *krp = NULL, *knext;
   1946         struct csession *cse;
   1947         int i, size, req = 0;
   1948 
   1949 	mutex_enter(&crypto_mtx);
   1950 	/* Here we dont know for which request the user is requesting the
   1951 	 * response so checking in both the queues */
   1952 	TAILQ_FOREACH_SAFE(crp, &fcr->crp_ret_mq, crp_next, cnext) {
   1953 		if(crp && (crp->crp_reqid == crypt_res->reqid)) {
   1954 			cse = (struct csession *)crp->crp_opaque;
   1955 		        crypt_res->opaque = crp->crp_usropaque;
   1956 			cse = csefind(fcr, cse->ses);
   1957 			if (cse == NULL) {
   1958 				DPRINTF(("csefind failed\n"));
   1959 				crypt_res->status = EINVAL;
   1960 				goto bail;
   1961 			}
   1962 
   1963 			if (crp->crp_etype != 0) {
   1964 				crypt_res->status = crp->crp_etype;
   1965 				goto bail;
   1966 			}
   1967 
   1968 			if (cse->error) {
   1969 				crypt_res->status = cse->error;
   1970 				goto bail;
   1971 			}
   1972 
   1973 			if (crp->dst && (crypt_res->status =
   1974 			    copyout(crp->uio.uio_iov[0].iov_base,
   1975 			    crp->dst, crp->len)))
   1976 				goto bail;
   1977 
   1978 			if (crp->mac && (crypt_res->status =
   1979 			    copyout(crp->crp_mac, crp->mac,
   1980 			    cse->thash->authsize)))
   1981 				goto bail;
   1982 bail:
   1983 			TAILQ_REMOVE(&fcr->crp_ret_mq, crp, crp_next);
   1984 
   1985 			mutex_exit(&crypto_mtx);
   1986 			crypto_freereq(crp);
   1987 			return 0;
   1988 		}
   1989 	}
   1990 
   1991 	TAILQ_FOREACH_SAFE(krp, &fcr->crp_ret_mkq, krp_next, knext) {
   1992 		if(krp && (krp->krp_reqid == crypt_res->reqid)) {
   1993 			crypt_res[req].opaque = krp->krp_usropaque;
   1994 			if (krp->krp_status != 0) {
   1995 				DPRINTF(("cryptodev_key: "
   1996 				    "krp->krp_status 0x%08x\n",
   1997 				    krp->krp_status));
   1998 				crypt_res[req].status = krp->krp_status;
   1999 				goto fail;
   2000 			}
   2001 
   2002 			for (i = krp->krp_iparams; i < krp->krp_iparams +
   2003 			    krp->krp_oparams; i++) {
   2004 				size = (krp->krp_param[i].crp_nbits + 7) / 8;
   2005 				if (size == 0)
   2006 					continue;
   2007 				crypt_res[req].status = copyout(
   2008 				    krp->krp_param[i].crp_p,
   2009 				    krp->crk_param[i].crp_p, size);
   2010 				if (crypt_res[req].status) {
   2011 					DPRINTF(("cryptodev_key: copyout oparam"
   2012 					    "%d failed, error=%d\n",
   2013 					    i - krp->krp_iparams,
   2014 					    crypt_res[req].status));
   2015 					goto fail;
   2016 				}
   2017 			}
   2018 fail:
   2019 			TAILQ_REMOVE(&fcr->crp_ret_mkq, krp, krp_next);
   2020 			mutex_exit(&crypto_mtx);
   2021 			/* not sure what to do for this */
   2022 			/* kop[req].crk_status = krp->krp_status; */
   2023 			for (i = 0; i < CRK_MAXPARAM; i++) {
   2024 				struct crparam *kp = &(krp->krp_param[i]);
   2025 				if (kp->crp_p) {
   2026 					size = (kp->crp_nbits + 7) / 8;
   2027 					KASSERT(size > 0);
   2028 					memset(kp->crp_p, 0, size);
   2029 					kmem_free(kp->crp_p, size);
   2030 				}
   2031 			}
   2032 			cv_destroy(&krp->krp_cv);
   2033 			pool_put(&cryptkop_pool, krp);
   2034 			return 0;
   2035 		}
   2036 	}
   2037 	mutex_exit(&crypto_mtx);
   2038 	return EINPROGRESS;
   2039 }
   2040 
   2041 static int
   2042 cryptof_stat(struct file *fp, struct stat *st)
   2043 {
   2044 	struct fcrypt *fcr = fp->f_fcrypt;
   2045 
   2046 	(void)memset(st, 0, sizeof(*st));
   2047 
   2048 	mutex_enter(&crypto_mtx);
   2049 	st->st_dev = makedev(cdevsw_lookup_major(&crypto_cdevsw), fcr->sesn);
   2050 	st->st_atimespec = fcr->atime;
   2051 	st->st_mtimespec = fcr->mtime;
   2052 	st->st_ctimespec = st->st_birthtimespec = fcr->btime;
   2053 	st->st_uid = kauth_cred_geteuid(fp->f_cred);
   2054 	st->st_gid = kauth_cred_getegid(fp->f_cred);
   2055 	mutex_exit(&crypto_mtx);
   2056 
   2057 	return 0;
   2058 }
   2059 
   2060 static int
   2061 cryptof_poll(struct file *fp, int events)
   2062 {
   2063 	struct fcrypt *fcr = fp->f_fcrypt;
   2064 	int revents = 0;
   2065 
   2066 	if (!(events & (POLLIN | POLLRDNORM))) {
   2067 		/* only support read and POLLIN */
   2068 		return 0;
   2069 	}
   2070 
   2071 	mutex_enter(&crypto_mtx);
   2072 	if (TAILQ_EMPTY(&fcr->crp_ret_mq) && TAILQ_EMPTY(&fcr->crp_ret_mkq)) {
   2073 		/* no completed requests pending, save the poll for later */
   2074 		selrecord(curlwp, &fcr->sinfo);
   2075 	} else {
   2076 		/* let the app(s) know that there are completed requests */
   2077 		revents = events & (POLLIN | POLLRDNORM);
   2078 	}
   2079 	mutex_exit(&crypto_mtx);
   2080 
   2081 	return revents;
   2082 }
   2083 
   2084 /*
   2085  * Pseudo-device initialization routine for /dev/crypto
   2086  */
   2087 void
   2088 cryptoattach(int num)
   2089 {
   2090 	crypto_init();
   2091 
   2092 	pool_init(&fcrpl, sizeof(struct fcrypt), 0, 0, 0, "fcrpl",
   2093 	    NULL, IPL_NET);	/* XXX IPL_NET ("splcrypto") */
   2094 	pool_init(&csepl, sizeof(struct csession), 0, 0, 0, "csepl",
   2095 	    NULL, IPL_NET);	/* XXX IPL_NET ("splcrypto") */
   2096 
   2097 	/*
   2098 	 * Preallocate space for 64 users, with 5 sessions each.
   2099 	 * (consider that a TLS protocol session requires at least
   2100 	 * 3DES, MD5, and SHA1 (both hashes are used in the PRF) for
   2101 	 * the negotiation, plus HMAC_SHA1 for the actual SSL records,
   2102 	 * consuming one session here for each algorithm.
   2103 	 */
   2104 	pool_prime(&fcrpl, 64);
   2105 	pool_prime(&csepl, 64 * 5);
   2106 }
   2107 
   2108 void	crypto_attach(device_t, device_t, void *);
   2109 
   2110 void
   2111 crypto_attach(device_t parent, device_t self, void * opaque)
   2112 {
   2113 
   2114 	cryptoattach(0);
   2115 }
   2116 
   2117 int	crypto_detach(device_t, int);
   2118 
   2119 int
   2120 crypto_detach(device_t self, int num)
   2121 {
   2122 
   2123 	pool_destroy(&fcrpl);
   2124 	pool_destroy(&csepl);
   2125 
   2126 	return 0;
   2127 }
   2128 
   2129 int crypto_match(device_t, cfdata_t, void *);
   2130 
   2131 int
   2132 crypto_match(device_t parent, cfdata_t data, void *opaque)
   2133 {
   2134 
   2135 	return 1;
   2136 }
   2137 
   2138 MODULE(MODULE_CLASS_DRIVER, crypto, "opencrypto");
   2139 
   2140 CFDRIVER_DECL(crypto, DV_DULL, NULL);
   2141 
   2142 CFATTACH_DECL2_NEW(crypto, 0, crypto_match, crypto_attach, crypto_detach,
   2143     NULL, NULL, NULL);
   2144 
   2145 #ifdef _MODULE
   2146 static int cryptoloc[] = { -1, -1 };
   2147 
   2148 static struct cfdata crypto_cfdata[] = {
   2149 	{
   2150 		.cf_name = "crypto",
   2151 		.cf_atname = "crypto",
   2152 		.cf_unit = 0,
   2153 		.cf_fstate = 0,
   2154 		.cf_loc = cryptoloc,
   2155 		.cf_flags = 0,
   2156 		.cf_pspec = NULL,
   2157 	},
   2158 	{ NULL, NULL, 0, 0, NULL, 0, NULL }
   2159 };
   2160 #endif
   2161 
   2162 static int
   2163 crypto_modcmd(modcmd_t cmd, void *arg)
   2164 {
   2165 	int error = 0;
   2166 #ifdef _MODULE
   2167 	devmajor_t cmajor = NODEVMAJOR, bmajor = NODEVMAJOR;
   2168 #endif
   2169 
   2170 	switch (cmd) {
   2171 	case MODULE_CMD_INIT:
   2172 #ifdef _MODULE
   2173 
   2174 		error = config_cfdriver_attach(&crypto_cd);
   2175 		if (error) {
   2176 			return error;
   2177 		}
   2178 
   2179 		error = config_cfattach_attach(crypto_cd.cd_name, &crypto_ca);
   2180 		if (error) {
   2181 			config_cfdriver_detach(&crypto_cd);
   2182 			aprint_error("%s: unable to register cfattach\n",
   2183 				crypto_cd.cd_name);
   2184 
   2185 			return error;
   2186 		}
   2187 
   2188 		error = config_cfdata_attach(crypto_cfdata, 1);
   2189 		if (error) {
   2190 			config_cfattach_detach(crypto_cd.cd_name, &crypto_ca);
   2191 			config_cfdriver_detach(&crypto_cd);
   2192 			aprint_error("%s: unable to register cfdata\n",
   2193 				crypto_cd.cd_name);
   2194 
   2195 			return error;
   2196 		}
   2197 
   2198 		error = devsw_attach(crypto_cd.cd_name, NULL, &bmajor,
   2199 		    &crypto_cdevsw, &cmajor);
   2200 		if (error) {
   2201 			error = config_cfdata_detach(crypto_cfdata);
   2202 			if (error) {
   2203 				return error;
   2204 			}
   2205 			config_cfattach_detach(crypto_cd.cd_name, &crypto_ca);
   2206 			config_cfdriver_detach(&crypto_cd);
   2207 			aprint_error("%s: unable to register devsw\n",
   2208 				crypto_cd.cd_name);
   2209 
   2210 			return error;
   2211 		}
   2212 
   2213 		(void)config_attach_pseudo(crypto_cfdata);
   2214 #endif
   2215 
   2216 		return error;
   2217 	case MODULE_CMD_FINI:
   2218 #ifdef _MODULE
   2219 		error = config_cfdata_detach(crypto_cfdata);
   2220 		if (error) {
   2221 			return error;
   2222 		}
   2223 
   2224 		config_cfattach_detach(crypto_cd.cd_name, &crypto_ca);
   2225 		config_cfdriver_detach(&crypto_cd);
   2226 		devsw_detach(NULL, &crypto_cdevsw);
   2227 #endif
   2228 
   2229 		return error;
   2230 #ifdef _MODULE
   2231 	case MODULE_CMD_AUTOUNLOAD:
   2232 #if 0	/*
   2233 	 * XXX Completely disable auto-unload for now, since there is still
   2234 	 * XXX a (small) window where in-module ref-counting doesn't help
   2235 	 */
   2236 		if (crypto_refcount != 0)
   2237 #endif
   2238 			return EBUSY;
   2239 	/* FALLTHROUGH */
   2240 #endif
   2241 	default:
   2242 		return ENOTTY;
   2243 	}
   2244 }
   2245