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cgd.c revision 1.52.6.2
      1 /* $NetBSD: cgd.c,v 1.52.6.2 2008/12/13 01:14:12 haad Exp $ */
      2 
      3 /*-
      4  * Copyright (c) 2002 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Roland C. Dowdeswell.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  *
     19  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29  * POSSIBILITY OF SUCH DAMAGE.
     30  */
     31 
     32 #include <sys/cdefs.h>
     33 __KERNEL_RCSID(0, "$NetBSD: cgd.c,v 1.52.6.2 2008/12/13 01:14:12 haad Exp $");
     34 
     35 #include <sys/types.h>
     36 #include <sys/param.h>
     37 #include <sys/systm.h>
     38 #include <sys/proc.h>
     39 #include <sys/errno.h>
     40 #include <sys/buf.h>
     41 #include <sys/bufq.h>
     42 #include <sys/malloc.h>
     43 #include <sys/pool.h>
     44 #include <sys/ioctl.h>
     45 #include <sys/device.h>
     46 #include <sys/disk.h>
     47 #include <sys/disklabel.h>
     48 #include <sys/fcntl.h>
     49 #include <sys/vnode.h>
     50 #include <sys/conf.h>
     51 
     52 #include <dev/dkvar.h>
     53 #include <dev/cgdvar.h>
     54 
     55 /* Entry Point Functions */
     56 
     57 void	cgdattach(int);
     58 
     59 static dev_type_open(cgdopen);
     60 static dev_type_close(cgdclose);
     61 static dev_type_read(cgdread);
     62 static dev_type_write(cgdwrite);
     63 static dev_type_ioctl(cgdioctl);
     64 static dev_type_strategy(cgdstrategy);
     65 static dev_type_dump(cgddump);
     66 static dev_type_size(cgdsize);
     67 
     68 const struct bdevsw cgd_bdevsw = {
     69 	cgdopen, cgdclose, cgdstrategy, cgdioctl,
     70 	cgddump, cgdsize, D_DISK
     71 };
     72 
     73 const struct cdevsw cgd_cdevsw = {
     74 	cgdopen, cgdclose, cgdread, cgdwrite, cgdioctl,
     75 	nostop, notty, nopoll, nommap, nokqfilter, D_DISK
     76 };
     77 
     78 /* Internal Functions */
     79 
     80 static int	cgdstart(struct dk_softc *, struct buf *);
     81 static void	cgdiodone(struct buf *);
     82 
     83 static int	cgd_ioctl_set(struct cgd_softc *, void *, struct lwp *);
     84 static int	cgd_ioctl_clr(struct cgd_softc *, void *, struct lwp *);
     85 static int	cgdinit(struct cgd_softc *, const char *, struct vnode *,
     86 			struct lwp *);
     87 static void	cgd_cipher(struct cgd_softc *, void *, void *,
     88 			   size_t, daddr_t, size_t, int);
     89 
     90 /* Pseudo-disk Interface */
     91 
     92 static struct dk_intf the_dkintf = {
     93 	DTYPE_CGD,
     94 	"cgd",
     95 	cgdopen,
     96 	cgdclose,
     97 	cgdstrategy,
     98 	cgdstart,
     99 };
    100 static struct dk_intf *di = &the_dkintf;
    101 
    102 static struct dkdriver cgddkdriver = {
    103 	.d_strategy = cgdstrategy,
    104 	.d_minphys = minphys,
    105 };
    106 
    107 /* DIAGNOSTIC and DEBUG definitions */
    108 
    109 #if defined(CGDDEBUG) && !defined(DEBUG)
    110 #define DEBUG
    111 #endif
    112 
    113 #ifdef DEBUG
    114 int cgddebug = 0;
    115 
    116 #define CGDB_FOLLOW	0x1
    117 #define CGDB_IO	0x2
    118 #define CGDB_CRYPTO	0x4
    119 
    120 #define IFDEBUG(x,y)		if (cgddebug & (x)) y
    121 #define DPRINTF(x,y)		IFDEBUG(x, printf y)
    122 #define DPRINTF_FOLLOW(y)	DPRINTF(CGDB_FOLLOW, y)
    123 
    124 static void	hexprint(const char *, void *, int);
    125 
    126 #else
    127 #define IFDEBUG(x,y)
    128 #define DPRINTF(x,y)
    129 #define DPRINTF_FOLLOW(y)
    130 #endif
    131 
    132 #ifdef DIAGNOSTIC
    133 #define DIAGPANIC(x)		panic x
    134 #define DIAGCONDPANIC(x,y)	if (x) panic y
    135 #else
    136 #define DIAGPANIC(x)
    137 #define DIAGCONDPANIC(x,y)
    138 #endif
    139 
    140 /* Global variables */
    141 
    142 struct	cgd_softc *cgd_softc;
    143 int	numcgd = 0;
    144 
    145 /* Utility Functions */
    146 
    147 #define CGDUNIT(x)		DISKUNIT(x)
    148 #define GETCGD_SOFTC(_cs, x)	if (!((_cs) = getcgd_softc(x))) return ENXIO
    149 
    150 static struct cgd_softc *
    151 getcgd_softc(dev_t dev)
    152 {
    153 	int	unit = CGDUNIT(dev);
    154 
    155 	DPRINTF_FOLLOW(("getcgd_softc(0x%x): unit = %d\n", dev, unit));
    156 	if (unit >= numcgd)
    157 		return NULL;
    158 	return &cgd_softc[unit];
    159 }
    160 
    161 /* The code */
    162 
    163 static void
    164 cgdsoftc_init(struct cgd_softc *cs, int num)
    165 {
    166 	char	sbuf[DK_XNAME_SIZE];
    167 
    168 	memset(cs, 0x0, sizeof(*cs));
    169 	snprintf(sbuf, DK_XNAME_SIZE, "cgd%d", num);
    170 	simple_lock_init(&cs->sc_slock);
    171 	dk_sc_init(&cs->sc_dksc, cs, sbuf);
    172 	disk_init(&cs->sc_dksc.sc_dkdev, cs->sc_dksc.sc_xname, &cgddkdriver);
    173 }
    174 
    175 void
    176 cgdattach(int num)
    177 {
    178 	int	i;
    179 
    180 	DPRINTF_FOLLOW(("cgdattach(%d)\n", num));
    181 	if (num <= 0) {
    182 		DIAGPANIC(("cgdattach: count <= 0"));
    183 		return;
    184 	}
    185 
    186 	cgd_softc = (void *)malloc(num * sizeof(*cgd_softc), M_DEVBUF, M_NOWAIT);
    187 	if (!cgd_softc) {
    188 		printf("WARNING: unable to malloc(9) memory for crypt disks\n");
    189 		DIAGPANIC(("cgdattach: cannot malloc(9) enough memory"));
    190 		return;
    191 	}
    192 
    193 	numcgd = num;
    194 	for (i=0; i<num; i++)
    195 		cgdsoftc_init(&cgd_softc[i], i);
    196 }
    197 
    198 static int
    199 cgdopen(dev_t dev, int flags, int fmt, struct lwp *l)
    200 {
    201 	struct	cgd_softc *cs;
    202 
    203 	DPRINTF_FOLLOW(("cgdopen(%d, %d)\n", dev, flags));
    204 	GETCGD_SOFTC(cs, dev);
    205 	return dk_open(di, &cs->sc_dksc, dev, flags, fmt, l);
    206 }
    207 
    208 static int
    209 cgdclose(dev_t dev, int flags, int fmt, struct lwp *l)
    210 {
    211 	struct	cgd_softc *cs;
    212 
    213 	DPRINTF_FOLLOW(("cgdclose(%d, %d)\n", dev, flags));
    214 	GETCGD_SOFTC(cs, dev);
    215 	return dk_close(di, &cs->sc_dksc, dev, flags, fmt, l);
    216 }
    217 
    218 static void
    219 cgdstrategy(struct buf *bp)
    220 {
    221 	struct	cgd_softc *cs = getcgd_softc(bp->b_dev);
    222 
    223 	DPRINTF_FOLLOW(("cgdstrategy(%p): b_bcount = %ld\n", bp,
    224 	    (long)bp->b_bcount));
    225 	/* XXXrcd: Should we test for (cs != NULL)? */
    226 	dk_strategy(di, &cs->sc_dksc, bp);
    227 	return;
    228 }
    229 
    230 static int
    231 cgdsize(dev_t dev)
    232 {
    233 	struct cgd_softc *cs = getcgd_softc(dev);
    234 
    235 	DPRINTF_FOLLOW(("cgdsize(%d)\n", dev));
    236 	if (!cs)
    237 		return -1;
    238 	return dk_size(di, &cs->sc_dksc, dev);
    239 }
    240 
    241 /*
    242  * cgd_{get,put}data are functions that deal with getting a buffer
    243  * for the new encrypted data.  We have a buffer per device so that
    244  * we can ensure that we can always have a transaction in flight.
    245  * We use this buffer first so that we have one less piece of
    246  * malloc'ed data at any given point.
    247  */
    248 
    249 static void *
    250 cgd_getdata(struct dk_softc *dksc, unsigned long size)
    251 {
    252 	struct	cgd_softc *cs =dksc->sc_osc;
    253 	void *	data = NULL;
    254 
    255 	simple_lock(&cs->sc_slock);
    256 	if (cs->sc_data_used == 0) {
    257 		cs->sc_data_used = 1;
    258 		data = cs->sc_data;
    259 	}
    260 	simple_unlock(&cs->sc_slock);
    261 
    262 	if (data)
    263 		return data;
    264 
    265 	return malloc(size, M_DEVBUF, M_NOWAIT);
    266 }
    267 
    268 static void
    269 cgd_putdata(struct dk_softc *dksc, void *data)
    270 {
    271 	struct	cgd_softc *cs =dksc->sc_osc;
    272 
    273 	if (data == cs->sc_data) {
    274 		simple_lock(&cs->sc_slock);
    275 		cs->sc_data_used = 0;
    276 		simple_unlock(&cs->sc_slock);
    277 	} else {
    278 		free(data, M_DEVBUF);
    279 	}
    280 }
    281 
    282 static int
    283 cgdstart(struct dk_softc *dksc, struct buf *bp)
    284 {
    285 	struct	cgd_softc *cs = dksc->sc_osc;
    286 	struct	buf *nbp;
    287 	void *	addr;
    288 	void *	newaddr;
    289 	daddr_t	bn;
    290 	struct	vnode *vp;
    291 
    292 	DPRINTF_FOLLOW(("cgdstart(%p, %p)\n", dksc, bp));
    293 	disk_busy(&dksc->sc_dkdev); /* XXX: put in dksubr.c */
    294 
    295 	bn = bp->b_rawblkno;
    296 
    297 	/*
    298 	 * We attempt to allocate all of our resources up front, so that
    299 	 * we can fail quickly if they are unavailable.
    300 	 */
    301 
    302 	nbp = getiobuf(cs->sc_tvn, false);
    303 	if (nbp == NULL) {
    304 		disk_unbusy(&dksc->sc_dkdev, 0, (bp->b_flags & B_READ));
    305 		return -1;
    306 	}
    307 
    308 	/*
    309 	 * If we are writing, then we need to encrypt the outgoing
    310 	 * block into a new block of memory.  If we fail, then we
    311 	 * return an error and let the dksubr framework deal with it.
    312 	 */
    313 	newaddr = addr = bp->b_data;
    314 	if ((bp->b_flags & B_READ) == 0) {
    315 		newaddr = cgd_getdata(dksc, bp->b_bcount);
    316 		if (!newaddr) {
    317 			putiobuf(nbp);
    318 			disk_unbusy(&dksc->sc_dkdev, 0, (bp->b_flags & B_READ));
    319 			return -1;
    320 		}
    321 		cgd_cipher(cs, newaddr, addr, bp->b_bcount, bn,
    322 		    DEV_BSIZE, CGD_CIPHER_ENCRYPT);
    323 	}
    324 
    325 	nbp->b_data = newaddr;
    326 	nbp->b_flags = bp->b_flags;
    327 	nbp->b_oflags = bp->b_oflags;
    328 	nbp->b_cflags = bp->b_cflags;
    329 	nbp->b_iodone = cgdiodone;
    330 	nbp->b_proc = bp->b_proc;
    331 	nbp->b_blkno = bn;
    332 	nbp->b_bcount = bp->b_bcount;
    333 	nbp->b_private = bp;
    334 
    335 	BIO_COPYPRIO(nbp, bp);
    336 
    337 	if ((nbp->b_flags & B_READ) == 0) {
    338 		vp = nbp->b_vp;
    339 		mutex_enter(&vp->v_interlock);
    340 		vp->v_numoutput++;
    341 		mutex_exit(&vp->v_interlock);
    342 	}
    343 	VOP_STRATEGY(cs->sc_tvn, nbp);
    344 	return 0;
    345 }
    346 
    347 /* expected to be called at splbio() */
    348 static void
    349 cgdiodone(struct buf *nbp)
    350 {
    351 	struct	buf *obp = nbp->b_private;
    352 	struct	cgd_softc *cs = getcgd_softc(obp->b_dev);
    353 	struct	dk_softc *dksc = &cs->sc_dksc;
    354 
    355 	KDASSERT(cs);
    356 
    357 	DPRINTF_FOLLOW(("cgdiodone(%p)\n", nbp));
    358 	DPRINTF(CGDB_IO, ("cgdiodone: bp %p bcount %d resid %d\n",
    359 	    obp, obp->b_bcount, obp->b_resid));
    360 	DPRINTF(CGDB_IO, (" dev 0x%x, nbp %p bn %" PRId64 " addr %p bcnt %d\n",
    361 	    nbp->b_dev, nbp, nbp->b_blkno, nbp->b_data,
    362 	    nbp->b_bcount));
    363 	if (nbp->b_error != 0) {
    364 		obp->b_error = nbp->b_error;
    365 		printf("%s: error %d\n", dksc->sc_xname, obp->b_error);
    366 	}
    367 
    368 	/* Perform the decryption if we are reading.
    369 	 *
    370 	 * Note: use the blocknumber from nbp, since it is what
    371 	 *       we used to encrypt the blocks.
    372 	 */
    373 
    374 	if (nbp->b_flags & B_READ)
    375 		cgd_cipher(cs, obp->b_data, obp->b_data, obp->b_bcount,
    376 		    nbp->b_blkno, DEV_BSIZE, CGD_CIPHER_DECRYPT);
    377 
    378 	/* If we allocated memory, free it now... */
    379 	if (nbp->b_data != obp->b_data)
    380 		cgd_putdata(dksc, nbp->b_data);
    381 
    382 	putiobuf(nbp);
    383 
    384 	/* Request is complete for whatever reason */
    385 	obp->b_resid = 0;
    386 	if (obp->b_error != 0)
    387 		obp->b_resid = obp->b_bcount;
    388 	disk_unbusy(&dksc->sc_dkdev, obp->b_bcount - obp->b_resid,
    389 	    (obp->b_flags & B_READ));
    390 	biodone(obp);
    391 	dk_iodone(di, dksc);
    392 }
    393 
    394 /* XXX: we should probably put these into dksubr.c, mostly */
    395 static int
    396 cgdread(dev_t dev, struct uio *uio, int flags)
    397 {
    398 	struct	cgd_softc *cs;
    399 	struct	dk_softc *dksc;
    400 
    401 	DPRINTF_FOLLOW(("cgdread(%d, %p, %d)\n", dev, uio, flags));
    402 	GETCGD_SOFTC(cs, dev);
    403 	dksc = &cs->sc_dksc;
    404 	if ((dksc->sc_flags & DKF_INITED) == 0)
    405 		return ENXIO;
    406 	return physio(cgdstrategy, NULL, dev, B_READ, minphys, uio);
    407 }
    408 
    409 /* XXX: we should probably put these into dksubr.c, mostly */
    410 static int
    411 cgdwrite(dev_t dev, struct uio *uio, int flags)
    412 {
    413 	struct	cgd_softc *cs;
    414 	struct	dk_softc *dksc;
    415 
    416 	DPRINTF_FOLLOW(("cgdwrite(%d, %p, %d)\n", dev, uio, flags));
    417 	GETCGD_SOFTC(cs, dev);
    418 	dksc = &cs->sc_dksc;
    419 	if ((dksc->sc_flags & DKF_INITED) == 0)
    420 		return ENXIO;
    421 	return physio(cgdstrategy, NULL, dev, B_WRITE, minphys, uio);
    422 }
    423 
    424 static int
    425 cgdioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l)
    426 {
    427 	struct	cgd_softc *cs;
    428 	struct	dk_softc *dksc;
    429 	struct	disk *dk;
    430 	int	ret;
    431 	int	part = DISKPART(dev);
    432 	int	pmask = 1 << part;
    433 
    434 	DPRINTF_FOLLOW(("cgdioctl(%d, %ld, %p, %d, %p)\n",
    435 	    dev, cmd, data, flag, l));
    436 	GETCGD_SOFTC(cs, dev);
    437 	dksc = &cs->sc_dksc;
    438 	dk = &dksc->sc_dkdev;
    439 	switch (cmd) {
    440 	case CGDIOCSET:
    441 	case CGDIOCCLR:
    442 		if ((flag & FWRITE) == 0)
    443 			return EBADF;
    444 	}
    445 
    446 	switch (cmd) {
    447 	case CGDIOCSET:
    448 		if (dksc->sc_flags & DKF_INITED)
    449 			ret = EBUSY;
    450 		else
    451 			ret = cgd_ioctl_set(cs, data, l);
    452 		break;
    453 	case CGDIOCCLR:
    454 		if (!(dksc->sc_flags & DKF_INITED)) {
    455 			ret = ENXIO;
    456 			break;
    457 		}
    458 		if (DK_BUSY(&cs->sc_dksc, pmask)) {
    459 			ret = EBUSY;
    460 			break;
    461 		}
    462 		ret = cgd_ioctl_clr(cs, data, l);
    463 		break;
    464 	default:
    465 		ret = dk_ioctl(di, dksc, dev, cmd, data, flag, l);
    466 		break;
    467 	}
    468 
    469 	return ret;
    470 }
    471 
    472 static int
    473 cgddump(dev_t dev, daddr_t blkno, void *va, size_t size)
    474 {
    475 	struct	cgd_softc *cs;
    476 
    477 	DPRINTF_FOLLOW(("cgddump(%d, %" PRId64 ", %p, %lu)\n", dev, blkno, va,
    478 	    (unsigned long)size));
    479 	GETCGD_SOFTC(cs, dev);
    480 	return dk_dump(di, &cs->sc_dksc, dev, blkno, va, size);
    481 }
    482 
    483 /*
    484  * XXXrcd:
    485  *  for now we hardcode the maximum key length.
    486  */
    487 #define MAX_KEYSIZE	1024
    488 
    489 static const struct {
    490 	const char *n;
    491 	int v;
    492 	int d;
    493 } encblkno[] = {
    494 	{ "encblkno",  CGD_CIPHER_CBC_ENCBLKNO8, 1 },
    495 	{ "encblkno8", CGD_CIPHER_CBC_ENCBLKNO8, 1 },
    496 	{ "encblkno1", CGD_CIPHER_CBC_ENCBLKNO1, 8 },
    497 };
    498 
    499 /* ARGSUSED */
    500 static int
    501 cgd_ioctl_set(struct cgd_softc *cs, void *data, struct lwp *l)
    502 {
    503 	struct	 cgd_ioctl *ci = data;
    504 	struct	 vnode *vp;
    505 	int	 ret;
    506 	size_t	 i;
    507 	size_t	 keybytes;			/* key length in bytes */
    508 	const char *cp;
    509 	char	 *inbuf;
    510 
    511 	cp = ci->ci_disk;
    512 	if ((ret = dk_lookup(cp, l, &vp, UIO_USERSPACE)) != 0)
    513 		return ret;
    514 
    515 	inbuf = malloc(MAX_KEYSIZE, M_TEMP, M_WAITOK);
    516 
    517 	if ((ret = cgdinit(cs, cp, vp, l)) != 0)
    518 		goto bail;
    519 
    520 	(void)memset(inbuf, 0, MAX_KEYSIZE);
    521 	ret = copyinstr(ci->ci_alg, inbuf, 256, NULL);
    522 	if (ret)
    523 		goto bail;
    524 	cs->sc_cfuncs = cryptfuncs_find(inbuf);
    525 	if (!cs->sc_cfuncs) {
    526 		ret = EINVAL;
    527 		goto bail;
    528 	}
    529 
    530 	(void)memset(inbuf, 0, MAX_KEYSIZE);
    531 	ret = copyinstr(ci->ci_ivmethod, inbuf, MAX_KEYSIZE, NULL);
    532 	if (ret)
    533 		goto bail;
    534 
    535 	for (i = 0; i < __arraycount(encblkno); i++)
    536 		if (strcmp(encblkno[i].n, inbuf) == 0)
    537 			break;
    538 
    539 	if (i == __arraycount(encblkno)) {
    540 		ret = EINVAL;
    541 		goto bail;
    542 	}
    543 
    544 	keybytes = ci->ci_keylen / 8 + 1;
    545 	if (keybytes > MAX_KEYSIZE) {
    546 		ret = EINVAL;
    547 		goto bail;
    548 	}
    549 
    550 	(void)memset(inbuf, 0, MAX_KEYSIZE);
    551 	ret = copyin(ci->ci_key, inbuf, keybytes);
    552 	if (ret)
    553 		goto bail;
    554 
    555 	cs->sc_cdata.cf_blocksize = ci->ci_blocksize;
    556 	cs->sc_cdata.cf_mode = encblkno[i].v;
    557 	cs->sc_cdata.cf_priv = cs->sc_cfuncs->cf_init(ci->ci_keylen, inbuf,
    558 	    &cs->sc_cdata.cf_blocksize);
    559 	/*
    560 	 * The blocksize is supposed to be in bytes. Unfortunately originally
    561 	 * it was expressed in bits. For compatibility we maintain encblkno
    562 	 * and encblkno8.
    563 	 */
    564 	cs->sc_cdata.cf_blocksize /= encblkno[i].d;
    565 	(void)memset(inbuf, 0, MAX_KEYSIZE);
    566 	if (!cs->sc_cdata.cf_priv) {
    567 		printf("cgd: unable to initialize cipher\n");
    568 		ret = EINVAL;		/* XXX is this the right error? */
    569 		goto bail;
    570 	}
    571 	free(inbuf, M_TEMP);
    572 
    573 	bufq_alloc(&cs->sc_dksc.sc_bufq, "fcfs", 0);
    574 
    575 	cs->sc_data = malloc(MAXPHYS, M_DEVBUF, M_WAITOK);
    576 	cs->sc_data_used = 0;
    577 
    578 	cs->sc_dksc.sc_flags |= DKF_INITED;
    579 
    580 	/* Attach the disk. */
    581 	disk_attach(&cs->sc_dksc.sc_dkdev);
    582 
    583 	/* Try and read the disklabel. */
    584 	dk_getdisklabel(di, &cs->sc_dksc, 0 /* XXX ? */);
    585 
    586 	/* Discover wedges on this disk. */
    587 	dkwedge_discover(&cs->sc_dksc.sc_dkdev);
    588 
    589 	return 0;
    590 
    591 bail:
    592 	free(inbuf, M_TEMP);
    593 	(void)vn_close(vp, FREAD|FWRITE, l->l_cred);
    594 	return ret;
    595 }
    596 
    597 /* ARGSUSED */
    598 static int
    599 cgd_ioctl_clr(struct cgd_softc *cs, void *data, struct lwp *l)
    600 {
    601 	int	s;
    602 
    603 	/* Delete all of our wedges. */
    604 	dkwedge_delall(&cs->sc_dksc.sc_dkdev);
    605 
    606 	/* Kill off any queued buffers. */
    607 	s = splbio();
    608 	bufq_drain(cs->sc_dksc.sc_bufq);
    609 	splx(s);
    610 	bufq_free(cs->sc_dksc.sc_bufq);
    611 
    612 	(void)vn_close(cs->sc_tvn, FREAD|FWRITE, l->l_cred);
    613 	cs->sc_cfuncs->cf_destroy(cs->sc_cdata.cf_priv);
    614 	free(cs->sc_tpath, M_DEVBUF);
    615 	free(cs->sc_data, M_DEVBUF);
    616 	cs->sc_data_used = 0;
    617 	cs->sc_dksc.sc_flags &= ~DKF_INITED;
    618 	disk_detach(&cs->sc_dksc.sc_dkdev);
    619 
    620 	return 0;
    621 }
    622 
    623 static int
    624 getsize(struct lwp *l, struct vnode *vp, size_t *size)
    625 {
    626 	struct partinfo dpart;
    627 	struct dkwedge_info dkw;
    628 	int ret;
    629 
    630 	if ((ret = VOP_IOCTL(vp, DIOCGWEDGEINFO, &dkw, FREAD,
    631 	    l->l_cred)) == 0) {
    632 		*size = dkw.dkw_size;
    633 		return 0;
    634 	}
    635 
    636 	if ((ret = VOP_IOCTL(vp, DIOCGPART, &dpart, FREAD, l->l_cred)) == 0) {
    637 		*size = dpart.part->p_size;
    638 		return 0;
    639 	}
    640 
    641 	return ret;
    642 }
    643 
    644 
    645 static int
    646 cgdinit(struct cgd_softc *cs, const char *cpath, struct vnode *vp,
    647 	struct lwp *l)
    648 {
    649 	struct	dk_geom *pdg;
    650 	struct	vattr va;
    651 	size_t	size;
    652 	int	ret;
    653 	char	*tmppath;
    654 
    655 	cs->sc_dksc.sc_size = 0;
    656 	cs->sc_tvn = vp;
    657 	cs->sc_tpath = NULL;
    658 
    659 	tmppath = malloc(MAXPATHLEN, M_TEMP, M_WAITOK);
    660 	ret = copyinstr(cpath, tmppath, MAXPATHLEN, &cs->sc_tpathlen);
    661 	if (ret)
    662 		goto bail;
    663 	cs->sc_tpath = malloc(cs->sc_tpathlen, M_DEVBUF, M_WAITOK);
    664 	memcpy(cs->sc_tpath, tmppath, cs->sc_tpathlen);
    665 
    666 	if ((ret = VOP_GETATTR(vp, &va, l->l_cred)) != 0)
    667 		goto bail;
    668 
    669 	cs->sc_tdev = va.va_rdev;
    670 
    671 	if ((ret = getsize(l, vp, &size)) != 0)
    672 		goto bail;
    673 
    674 	if (!size) {
    675 		ret = ENODEV;
    676 		goto bail;
    677 	}
    678 
    679 	cs->sc_dksc.sc_size = size;
    680 
    681 	/*
    682 	 * XXX here we should probe the underlying device.  If we
    683 	 *     are accessing a partition of type RAW_PART, then
    684 	 *     we should populate our initial geometry with the
    685 	 *     geometry that we discover from the device.
    686 	 */
    687 	pdg = &cs->sc_dksc.sc_geom;
    688 	pdg->pdg_secsize = DEV_BSIZE;
    689 	pdg->pdg_ntracks = 1;
    690 	pdg->pdg_nsectors = 1024 * (1024 / pdg->pdg_secsize);
    691 	pdg->pdg_ncylinders = cs->sc_dksc.sc_size / pdg->pdg_nsectors;
    692 
    693 bail:
    694 	free(tmppath, M_TEMP);
    695 	if (ret && cs->sc_tpath)
    696 		free(cs->sc_tpath, M_DEVBUF);
    697 	return ret;
    698 }
    699 
    700 /*
    701  * Our generic cipher entry point.  This takes care of the
    702  * IV mode and passes off the work to the specific cipher.
    703  * We implement here the IV method ``encrypted block
    704  * number''.
    705  *
    706  * For the encryption case, we accomplish this by setting
    707  * up a struct uio where the first iovec of the source is
    708  * the blocknumber and the first iovec of the dest is a
    709  * sink.  We then call the cipher with an IV of zero, and
    710  * the right thing happens.
    711  *
    712  * For the decryption case, we use the same basic mechanism
    713  * for symmetry, but we encrypt the block number in the
    714  * first iovec.
    715  *
    716  * We mainly do this to avoid requiring the definition of
    717  * an ECB mode.
    718  *
    719  * XXXrcd: for now we rely on our own crypto framework defined
    720  *         in dev/cgd_crypto.c.  This will change when we
    721  *         get a generic kernel crypto framework.
    722  */
    723 
    724 static void
    725 blkno2blkno_buf(char *sbuf, daddr_t blkno)
    726 {
    727 	int	i;
    728 
    729 	/* Set up the blkno in blkno_buf, here we do not care much
    730 	 * about the final layout of the information as long as we
    731 	 * can guarantee that each sector will have a different IV
    732 	 * and that the endianness of the machine will not affect
    733 	 * the representation that we have chosen.
    734 	 *
    735 	 * We choose this representation, because it does not rely
    736 	 * on the size of buf (which is the blocksize of the cipher),
    737 	 * but allows daddr_t to grow without breaking existing
    738 	 * disks.
    739 	 *
    740 	 * Note that blkno2blkno_buf does not take a size as input,
    741 	 * and hence must be called on a pre-zeroed buffer of length
    742 	 * greater than or equal to sizeof(daddr_t).
    743 	 */
    744 	for (i=0; i < sizeof(daddr_t); i++) {
    745 		*sbuf++ = blkno & 0xff;
    746 		blkno >>= 8;
    747 	}
    748 }
    749 
    750 static void
    751 cgd_cipher(struct cgd_softc *cs, void *dstv, void *srcv,
    752     size_t len, daddr_t blkno, size_t secsize, int dir)
    753 {
    754 	char		*dst = dstv;
    755 	char 		*src = srcv;
    756 	cfunc_cipher	*cipher = cs->sc_cfuncs->cf_cipher;
    757 	struct uio	dstuio;
    758 	struct uio	srcuio;
    759 	struct iovec	dstiov[2];
    760 	struct iovec	srciov[2];
    761 	size_t		blocksize = cs->sc_cdata.cf_blocksize;
    762 	char		sink[blocksize];
    763 	char		zero_iv[blocksize];
    764 	char		blkno_buf[blocksize];
    765 
    766 	DPRINTF_FOLLOW(("cgd_cipher() dir=%d\n", dir));
    767 
    768 	DIAGCONDPANIC(len % blocksize != 0,
    769 	    ("cgd_cipher: len %% blocksize != 0"));
    770 
    771 	/* ensure that sizeof(daddr_t) <= blocksize (for encblkno IVing) */
    772 	DIAGCONDPANIC(sizeof(daddr_t) > blocksize,
    773 	    ("cgd_cipher: sizeof(daddr_t) > blocksize"));
    774 
    775 	memset(zero_iv, 0x0, sizeof(zero_iv));
    776 
    777 	dstuio.uio_iov = dstiov;
    778 	dstuio.uio_iovcnt = 2;
    779 
    780 	srcuio.uio_iov = srciov;
    781 	srcuio.uio_iovcnt = 2;
    782 
    783 	dstiov[0].iov_base = sink;
    784 	dstiov[0].iov_len  = blocksize;
    785 	srciov[0].iov_base = blkno_buf;
    786 	srciov[0].iov_len  = blocksize;
    787 	dstiov[1].iov_len  = secsize;
    788 	srciov[1].iov_len  = secsize;
    789 
    790 	for (; len > 0; len -= secsize) {
    791 		dstiov[1].iov_base = dst;
    792 		srciov[1].iov_base = src;
    793 
    794 		memset(blkno_buf, 0x0, sizeof(blkno_buf));
    795 		blkno2blkno_buf(blkno_buf, blkno);
    796 		if (dir == CGD_CIPHER_DECRYPT) {
    797 			dstuio.uio_iovcnt = 1;
    798 			srcuio.uio_iovcnt = 1;
    799 			IFDEBUG(CGDB_CRYPTO, hexprint("step 0: blkno_buf",
    800 			    blkno_buf, sizeof(blkno_buf)));
    801 			cipher(cs->sc_cdata.cf_priv, &dstuio, &srcuio,
    802 			    zero_iv, CGD_CIPHER_ENCRYPT);
    803 			memcpy(blkno_buf, sink, blocksize);
    804 			dstuio.uio_iovcnt = 2;
    805 			srcuio.uio_iovcnt = 2;
    806 		}
    807 
    808 		IFDEBUG(CGDB_CRYPTO, hexprint("step 1: blkno_buf",
    809 		    blkno_buf, sizeof(blkno_buf)));
    810 		cipher(cs->sc_cdata.cf_priv, &dstuio, &srcuio, zero_iv, dir);
    811 		IFDEBUG(CGDB_CRYPTO, hexprint("step 2: sink",
    812 		    sink, sizeof(sink)));
    813 
    814 		dst += secsize;
    815 		src += secsize;
    816 		blkno++;
    817 	}
    818 }
    819 
    820 #ifdef DEBUG
    821 static void
    822 hexprint(const char *start, void *buf, int len)
    823 {
    824 	char	*c = buf;
    825 
    826 	DIAGCONDPANIC(len < 0, ("hexprint: called with len < 0"));
    827 	printf("%s: len=%06d 0x", start, len);
    828 	while (len--)
    829 		printf("%02x", (unsigned char) *c++);
    830 }
    831 #endif
    832