cgd.c revision 1.108.2.2 1 1.108.2.2 pgoyette /* $NetBSD: cgd.c,v 1.108.2.2 2016/07/19 06:26:58 pgoyette Exp $ */
2 1.1 elric
3 1.1 elric /*-
4 1.1 elric * Copyright (c) 2002 The NetBSD Foundation, Inc.
5 1.1 elric * All rights reserved.
6 1.1 elric *
7 1.1 elric * This code is derived from software contributed to The NetBSD Foundation
8 1.1 elric * by Roland C. Dowdeswell.
9 1.1 elric *
10 1.1 elric * Redistribution and use in source and binary forms, with or without
11 1.1 elric * modification, are permitted provided that the following conditions
12 1.1 elric * are met:
13 1.1 elric * 1. Redistributions of source code must retain the above copyright
14 1.1 elric * notice, this list of conditions and the following disclaimer.
15 1.1 elric * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 elric * notice, this list of conditions and the following disclaimer in the
17 1.1 elric * documentation and/or other materials provided with the distribution.
18 1.1 elric *
19 1.1 elric * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 elric * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 elric * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 elric * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 elric * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 elric * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 elric * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 elric * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 elric * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 elric * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 elric * POSSIBILITY OF SUCH DAMAGE.
30 1.1 elric */
31 1.1 elric
32 1.1 elric #include <sys/cdefs.h>
33 1.108.2.2 pgoyette __KERNEL_RCSID(0, "$NetBSD: cgd.c,v 1.108.2.2 2016/07/19 06:26:58 pgoyette Exp $");
34 1.1 elric
35 1.1 elric #include <sys/types.h>
36 1.1 elric #include <sys/param.h>
37 1.1 elric #include <sys/systm.h>
38 1.1 elric #include <sys/proc.h>
39 1.1 elric #include <sys/errno.h>
40 1.1 elric #include <sys/buf.h>
41 1.21 yamt #include <sys/bufq.h>
42 1.1 elric #include <sys/malloc.h>
43 1.74 jruoho #include <sys/module.h>
44 1.1 elric #include <sys/pool.h>
45 1.1 elric #include <sys/ioctl.h>
46 1.1 elric #include <sys/device.h>
47 1.1 elric #include <sys/disk.h>
48 1.1 elric #include <sys/disklabel.h>
49 1.1 elric #include <sys/fcntl.h>
50 1.71 dholland #include <sys/namei.h> /* for pathbuf */
51 1.1 elric #include <sys/vnode.h>
52 1.1 elric #include <sys/conf.h>
53 1.62 christos #include <sys/syslog.h>
54 1.108.2.1 pgoyette #include <sys/localcount.h>
55 1.1 elric
56 1.1 elric #include <dev/dkvar.h>
57 1.1 elric #include <dev/cgdvar.h>
58 1.1 elric
59 1.88 hannken #include <miscfs/specfs/specdev.h> /* for v_rdev */
60 1.88 hannken
61 1.102 christos #include "ioconf.h"
62 1.102 christos
63 1.1 elric /* Entry Point Functions */
64 1.1 elric
65 1.18 thorpej static dev_type_open(cgdopen);
66 1.18 thorpej static dev_type_close(cgdclose);
67 1.18 thorpej static dev_type_read(cgdread);
68 1.18 thorpej static dev_type_write(cgdwrite);
69 1.18 thorpej static dev_type_ioctl(cgdioctl);
70 1.18 thorpej static dev_type_strategy(cgdstrategy);
71 1.18 thorpej static dev_type_dump(cgddump);
72 1.18 thorpej static dev_type_size(cgdsize);
73 1.1 elric
74 1.1 elric const struct bdevsw cgd_bdevsw = {
75 1.108.2.2 pgoyette LOCALCOUNT_INITIALIZER
76 1.84 dholland .d_open = cgdopen,
77 1.84 dholland .d_close = cgdclose,
78 1.84 dholland .d_strategy = cgdstrategy,
79 1.84 dholland .d_ioctl = cgdioctl,
80 1.84 dholland .d_dump = cgddump,
81 1.84 dholland .d_psize = cgdsize,
82 1.89 dholland .d_discard = nodiscard,
83 1.84 dholland .d_flag = D_DISK
84 1.1 elric };
85 1.1 elric
86 1.1 elric const struct cdevsw cgd_cdevsw = {
87 1.108.2.2 pgoyette LOCALCOUNT_INITIALIZER
88 1.84 dholland .d_open = cgdopen,
89 1.84 dholland .d_close = cgdclose,
90 1.84 dholland .d_read = cgdread,
91 1.84 dholland .d_write = cgdwrite,
92 1.84 dholland .d_ioctl = cgdioctl,
93 1.84 dholland .d_stop = nostop,
94 1.84 dholland .d_tty = notty,
95 1.84 dholland .d_poll = nopoll,
96 1.84 dholland .d_mmap = nommap,
97 1.84 dholland .d_kqfilter = nokqfilter,
98 1.90 dholland .d_discard = nodiscard,
99 1.84 dholland .d_flag = D_DISK
100 1.1 elric };
101 1.1 elric
102 1.65 dyoung static int cgd_match(device_t, cfdata_t, void *);
103 1.65 dyoung static void cgd_attach(device_t, device_t, void *);
104 1.65 dyoung static int cgd_detach(device_t, int);
105 1.65 dyoung static struct cgd_softc *cgd_spawn(int);
106 1.65 dyoung static int cgd_destroy(device_t);
107 1.65 dyoung
108 1.1 elric /* Internal Functions */
109 1.1 elric
110 1.99 mlelstv static int cgd_diskstart(device_t, struct buf *);
111 1.1 elric static void cgdiodone(struct buf *);
112 1.108 riastrad static int cgd_dumpblocks(device_t, void *, daddr_t, int);
113 1.1 elric
114 1.32 christos static int cgd_ioctl_set(struct cgd_softc *, void *, struct lwp *);
115 1.65 dyoung static int cgd_ioctl_clr(struct cgd_softc *, struct lwp *);
116 1.78 christos static int cgd_ioctl_get(dev_t, void *, struct lwp *);
117 1.27 drochner static int cgdinit(struct cgd_softc *, const char *, struct vnode *,
118 1.32 christos struct lwp *);
119 1.44 christos static void cgd_cipher(struct cgd_softc *, void *, void *,
120 1.1 elric size_t, daddr_t, size_t, int);
121 1.1 elric
122 1.29 yamt static struct dkdriver cgddkdriver = {
123 1.98 mlelstv .d_minphys = minphys,
124 1.98 mlelstv .d_open = cgdopen,
125 1.98 mlelstv .d_close = cgdclose,
126 1.98 mlelstv .d_strategy = cgdstrategy,
127 1.98 mlelstv .d_iosize = NULL,
128 1.99 mlelstv .d_diskstart = cgd_diskstart,
129 1.108 riastrad .d_dumpblocks = cgd_dumpblocks,
130 1.98 mlelstv .d_lastclose = NULL
131 1.29 yamt };
132 1.29 yamt
133 1.65 dyoung CFATTACH_DECL3_NEW(cgd, sizeof(struct cgd_softc),
134 1.65 dyoung cgd_match, cgd_attach, cgd_detach, NULL, NULL, NULL, DVF_DETACH_SHUTDOWN);
135 1.65 dyoung extern struct cfdriver cgd_cd;
136 1.65 dyoung
137 1.1 elric /* DIAGNOSTIC and DEBUG definitions */
138 1.1 elric
139 1.1 elric #if defined(CGDDEBUG) && !defined(DEBUG)
140 1.1 elric #define DEBUG
141 1.1 elric #endif
142 1.1 elric
143 1.1 elric #ifdef DEBUG
144 1.1 elric int cgddebug = 0;
145 1.1 elric
146 1.1 elric #define CGDB_FOLLOW 0x1
147 1.1 elric #define CGDB_IO 0x2
148 1.1 elric #define CGDB_CRYPTO 0x4
149 1.1 elric
150 1.1 elric #define IFDEBUG(x,y) if (cgddebug & (x)) y
151 1.1 elric #define DPRINTF(x,y) IFDEBUG(x, printf y)
152 1.1 elric #define DPRINTF_FOLLOW(y) DPRINTF(CGDB_FOLLOW, y)
153 1.1 elric
154 1.26 drochner static void hexprint(const char *, void *, int);
155 1.1 elric
156 1.1 elric #else
157 1.1 elric #define IFDEBUG(x,y)
158 1.1 elric #define DPRINTF(x,y)
159 1.1 elric #define DPRINTF_FOLLOW(y)
160 1.1 elric #endif
161 1.1 elric
162 1.1 elric #ifdef DIAGNOSTIC
163 1.22 perry #define DIAGPANIC(x) panic x
164 1.1 elric #define DIAGCONDPANIC(x,y) if (x) panic y
165 1.1 elric #else
166 1.1 elric #define DIAGPANIC(x)
167 1.1 elric #define DIAGCONDPANIC(x,y)
168 1.1 elric #endif
169 1.1 elric
170 1.1 elric /* Global variables */
171 1.1 elric
172 1.1 elric /* Utility Functions */
173 1.1 elric
174 1.1 elric #define CGDUNIT(x) DISKUNIT(x)
175 1.1 elric #define GETCGD_SOFTC(_cs, x) if (!((_cs) = getcgd_softc(x))) return ENXIO
176 1.1 elric
177 1.65 dyoung /* The code */
178 1.65 dyoung
179 1.1 elric static struct cgd_softc *
180 1.1 elric getcgd_softc(dev_t dev)
181 1.1 elric {
182 1.1 elric int unit = CGDUNIT(dev);
183 1.65 dyoung struct cgd_softc *sc;
184 1.1 elric
185 1.56 cegger DPRINTF_FOLLOW(("getcgd_softc(0x%"PRIx64"): unit = %d\n", dev, unit));
186 1.65 dyoung
187 1.65 dyoung sc = device_lookup_private(&cgd_cd, unit);
188 1.65 dyoung if (sc == NULL)
189 1.65 dyoung sc = cgd_spawn(unit);
190 1.65 dyoung return sc;
191 1.1 elric }
192 1.1 elric
193 1.65 dyoung static int
194 1.65 dyoung cgd_match(device_t self, cfdata_t cfdata, void *aux)
195 1.65 dyoung {
196 1.65 dyoung
197 1.65 dyoung return 1;
198 1.65 dyoung }
199 1.1 elric
200 1.1 elric static void
201 1.65 dyoung cgd_attach(device_t parent, device_t self, void *aux)
202 1.1 elric {
203 1.65 dyoung struct cgd_softc *sc = device_private(self);
204 1.1 elric
205 1.85 skrll mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_BIO);
206 1.98 mlelstv dk_init(&sc->sc_dksc, self, DKTYPE_CGD);
207 1.65 dyoung disk_init(&sc->sc_dksc.sc_dkdev, sc->sc_dksc.sc_xname, &cgddkdriver);
208 1.70 joerg
209 1.98 mlelstv if (!pmf_device_register(self, NULL, NULL))
210 1.107 msaitoh aprint_error_dev(self,
211 1.107 msaitoh "unable to register power management hooks\n");
212 1.65 dyoung }
213 1.65 dyoung
214 1.65 dyoung
215 1.65 dyoung static int
216 1.65 dyoung cgd_detach(device_t self, int flags)
217 1.65 dyoung {
218 1.67 dyoung int ret;
219 1.67 dyoung const int pmask = 1 << RAW_PART;
220 1.65 dyoung struct cgd_softc *sc = device_private(self);
221 1.67 dyoung struct dk_softc *dksc = &sc->sc_dksc;
222 1.67 dyoung
223 1.67 dyoung if (DK_BUSY(dksc, pmask))
224 1.67 dyoung return EBUSY;
225 1.65 dyoung
226 1.98 mlelstv if (DK_ATTACHED(dksc) &&
227 1.67 dyoung (ret = cgd_ioctl_clr(sc, curlwp)) != 0)
228 1.67 dyoung return ret;
229 1.65 dyoung
230 1.67 dyoung disk_destroy(&dksc->sc_dkdev);
231 1.86 christos mutex_destroy(&sc->sc_lock);
232 1.65 dyoung
233 1.67 dyoung return 0;
234 1.1 elric }
235 1.1 elric
236 1.1 elric void
237 1.1 elric cgdattach(int num)
238 1.1 elric {
239 1.65 dyoung int error;
240 1.65 dyoung
241 1.65 dyoung error = config_cfattach_attach(cgd_cd.cd_name, &cgd_ca);
242 1.65 dyoung if (error != 0)
243 1.65 dyoung aprint_error("%s: unable to register cfattach\n",
244 1.65 dyoung cgd_cd.cd_name);
245 1.65 dyoung }
246 1.65 dyoung
247 1.65 dyoung static struct cgd_softc *
248 1.65 dyoung cgd_spawn(int unit)
249 1.65 dyoung {
250 1.65 dyoung cfdata_t cf;
251 1.65 dyoung
252 1.65 dyoung cf = malloc(sizeof(*cf), M_DEVBUF, M_WAITOK);
253 1.65 dyoung cf->cf_name = cgd_cd.cd_name;
254 1.65 dyoung cf->cf_atname = cgd_cd.cd_name;
255 1.65 dyoung cf->cf_unit = unit;
256 1.65 dyoung cf->cf_fstate = FSTATE_STAR;
257 1.65 dyoung
258 1.65 dyoung return device_private(config_attach_pseudo(cf));
259 1.65 dyoung }
260 1.65 dyoung
261 1.65 dyoung static int
262 1.65 dyoung cgd_destroy(device_t dev)
263 1.65 dyoung {
264 1.65 dyoung int error;
265 1.65 dyoung cfdata_t cf;
266 1.1 elric
267 1.65 dyoung cf = device_cfdata(dev);
268 1.65 dyoung error = config_detach(dev, DETACH_QUIET);
269 1.65 dyoung if (error)
270 1.65 dyoung return error;
271 1.65 dyoung free(cf, M_DEVBUF);
272 1.65 dyoung return 0;
273 1.1 elric }
274 1.1 elric
275 1.18 thorpej static int
276 1.32 christos cgdopen(dev_t dev, int flags, int fmt, struct lwp *l)
277 1.1 elric {
278 1.1 elric struct cgd_softc *cs;
279 1.1 elric
280 1.56 cegger DPRINTF_FOLLOW(("cgdopen(0x%"PRIx64", %d)\n", dev, flags));
281 1.1 elric GETCGD_SOFTC(cs, dev);
282 1.98 mlelstv return dk_open(&cs->sc_dksc, dev, flags, fmt, l);
283 1.1 elric }
284 1.1 elric
285 1.18 thorpej static int
286 1.32 christos cgdclose(dev_t dev, int flags, int fmt, struct lwp *l)
287 1.1 elric {
288 1.65 dyoung int error;
289 1.1 elric struct cgd_softc *cs;
290 1.65 dyoung struct dk_softc *dksc;
291 1.1 elric
292 1.56 cegger DPRINTF_FOLLOW(("cgdclose(0x%"PRIx64", %d)\n", dev, flags));
293 1.1 elric GETCGD_SOFTC(cs, dev);
294 1.65 dyoung dksc = &cs->sc_dksc;
295 1.98 mlelstv if ((error = dk_close(dksc, dev, flags, fmt, l)) != 0)
296 1.65 dyoung return error;
297 1.65 dyoung
298 1.98 mlelstv if (!DK_ATTACHED(dksc)) {
299 1.77 elric if ((error = cgd_destroy(cs->sc_dksc.sc_dev)) != 0) {
300 1.77 elric aprint_error_dev(dksc->sc_dev,
301 1.65 dyoung "unable to detach instance\n");
302 1.65 dyoung return error;
303 1.65 dyoung }
304 1.65 dyoung }
305 1.65 dyoung return 0;
306 1.1 elric }
307 1.1 elric
308 1.18 thorpej static void
309 1.1 elric cgdstrategy(struct buf *bp)
310 1.1 elric {
311 1.1 elric struct cgd_softc *cs = getcgd_softc(bp->b_dev);
312 1.105 mlelstv struct dk_softc *dksc = &cs->sc_dksc;
313 1.105 mlelstv struct disk_geom *dg = &dksc->sc_dkdev.dk_geom;
314 1.1 elric
315 1.1 elric DPRINTF_FOLLOW(("cgdstrategy(%p): b_bcount = %ld\n", bp,
316 1.1 elric (long)bp->b_bcount));
317 1.72 riastrad
318 1.72 riastrad /*
319 1.72 riastrad * Reject unaligned writes. We can encrypt and decrypt only
320 1.72 riastrad * complete disk sectors, and we let the ciphers require their
321 1.72 riastrad * buffers to be aligned to 32-bit boundaries.
322 1.72 riastrad */
323 1.72 riastrad if (bp->b_blkno < 0 ||
324 1.105 mlelstv (bp->b_bcount % dg->dg_secsize) != 0 ||
325 1.72 riastrad ((uintptr_t)bp->b_data & 3) != 0) {
326 1.72 riastrad bp->b_error = EINVAL;
327 1.72 riastrad bp->b_resid = bp->b_bcount;
328 1.72 riastrad biodone(bp);
329 1.72 riastrad return;
330 1.72 riastrad }
331 1.72 riastrad
332 1.1 elric /* XXXrcd: Should we test for (cs != NULL)? */
333 1.98 mlelstv dk_strategy(&cs->sc_dksc, bp);
334 1.1 elric return;
335 1.1 elric }
336 1.1 elric
337 1.18 thorpej static int
338 1.1 elric cgdsize(dev_t dev)
339 1.1 elric {
340 1.1 elric struct cgd_softc *cs = getcgd_softc(dev);
341 1.1 elric
342 1.56 cegger DPRINTF_FOLLOW(("cgdsize(0x%"PRIx64")\n", dev));
343 1.1 elric if (!cs)
344 1.1 elric return -1;
345 1.98 mlelstv return dk_size(&cs->sc_dksc, dev);
346 1.1 elric }
347 1.1 elric
348 1.16 elric /*
349 1.16 elric * cgd_{get,put}data are functions that deal with getting a buffer
350 1.16 elric * for the new encrypted data. We have a buffer per device so that
351 1.16 elric * we can ensure that we can always have a transaction in flight.
352 1.16 elric * We use this buffer first so that we have one less piece of
353 1.16 elric * malloc'ed data at any given point.
354 1.16 elric */
355 1.16 elric
356 1.16 elric static void *
357 1.16 elric cgd_getdata(struct dk_softc *dksc, unsigned long size)
358 1.16 elric {
359 1.77 elric struct cgd_softc *cs = (struct cgd_softc *)dksc;
360 1.44 christos void * data = NULL;
361 1.16 elric
362 1.85 skrll mutex_enter(&cs->sc_lock);
363 1.16 elric if (cs->sc_data_used == 0) {
364 1.16 elric cs->sc_data_used = 1;
365 1.16 elric data = cs->sc_data;
366 1.16 elric }
367 1.85 skrll mutex_exit(&cs->sc_lock);
368 1.16 elric
369 1.16 elric if (data)
370 1.16 elric return data;
371 1.16 elric
372 1.16 elric return malloc(size, M_DEVBUF, M_NOWAIT);
373 1.16 elric }
374 1.16 elric
375 1.1 elric static void
376 1.44 christos cgd_putdata(struct dk_softc *dksc, void *data)
377 1.16 elric {
378 1.77 elric struct cgd_softc *cs = (struct cgd_softc *)dksc;
379 1.16 elric
380 1.16 elric if (data == cs->sc_data) {
381 1.85 skrll mutex_enter(&cs->sc_lock);
382 1.16 elric cs->sc_data_used = 0;
383 1.85 skrll mutex_exit(&cs->sc_lock);
384 1.16 elric } else {
385 1.16 elric free(data, M_DEVBUF);
386 1.16 elric }
387 1.16 elric }
388 1.16 elric
389 1.99 mlelstv static int
390 1.99 mlelstv cgd_diskstart(device_t dev, struct buf *bp)
391 1.1 elric {
392 1.98 mlelstv struct cgd_softc *cs = device_private(dev);
393 1.98 mlelstv struct dk_softc *dksc = &cs->sc_dksc;
394 1.105 mlelstv struct disk_geom *dg = &dksc->sc_dkdev.dk_geom;
395 1.99 mlelstv struct buf *nbp;
396 1.44 christos void * addr;
397 1.44 christos void * newaddr;
398 1.1 elric daddr_t bn;
399 1.49 ad struct vnode *vp;
400 1.1 elric
401 1.99 mlelstv DPRINTF_FOLLOW(("cgd_diskstart(%p, %p)\n", dksc, bp));
402 1.1 elric
403 1.99 mlelstv bn = bp->b_rawblkno;
404 1.22 perry
405 1.99 mlelstv /*
406 1.99 mlelstv * We attempt to allocate all of our resources up front, so that
407 1.99 mlelstv * we can fail quickly if they are unavailable.
408 1.99 mlelstv */
409 1.99 mlelstv nbp = getiobuf(cs->sc_tvn, false);
410 1.99 mlelstv if (nbp == NULL)
411 1.99 mlelstv return EAGAIN;
412 1.16 elric
413 1.99 mlelstv /*
414 1.99 mlelstv * If we are writing, then we need to encrypt the outgoing
415 1.99 mlelstv * block into a new block of memory.
416 1.99 mlelstv */
417 1.99 mlelstv newaddr = addr = bp->b_data;
418 1.99 mlelstv if ((bp->b_flags & B_READ) == 0) {
419 1.99 mlelstv newaddr = cgd_getdata(dksc, bp->b_bcount);
420 1.99 mlelstv if (!newaddr) {
421 1.99 mlelstv putiobuf(nbp);
422 1.99 mlelstv return EAGAIN;
423 1.16 elric }
424 1.99 mlelstv cgd_cipher(cs, newaddr, addr, bp->b_bcount, bn,
425 1.105 mlelstv dg->dg_secsize, CGD_CIPHER_ENCRYPT);
426 1.99 mlelstv }
427 1.1 elric
428 1.99 mlelstv nbp->b_data = newaddr;
429 1.99 mlelstv nbp->b_flags = bp->b_flags;
430 1.99 mlelstv nbp->b_oflags = bp->b_oflags;
431 1.99 mlelstv nbp->b_cflags = bp->b_cflags;
432 1.99 mlelstv nbp->b_iodone = cgdiodone;
433 1.99 mlelstv nbp->b_proc = bp->b_proc;
434 1.105 mlelstv nbp->b_blkno = btodb(bn * dg->dg_secsize);
435 1.99 mlelstv nbp->b_bcount = bp->b_bcount;
436 1.99 mlelstv nbp->b_private = bp;
437 1.99 mlelstv
438 1.99 mlelstv BIO_COPYPRIO(nbp, bp);
439 1.99 mlelstv
440 1.99 mlelstv if ((nbp->b_flags & B_READ) == 0) {
441 1.99 mlelstv vp = nbp->b_vp;
442 1.99 mlelstv mutex_enter(vp->v_interlock);
443 1.99 mlelstv vp->v_numoutput++;
444 1.99 mlelstv mutex_exit(vp->v_interlock);
445 1.17 dbj }
446 1.99 mlelstv VOP_STRATEGY(cs->sc_tvn, nbp);
447 1.99 mlelstv
448 1.99 mlelstv return 0;
449 1.1 elric }
450 1.1 elric
451 1.18 thorpej static void
452 1.17 dbj cgdiodone(struct buf *nbp)
453 1.1 elric {
454 1.17 dbj struct buf *obp = nbp->b_private;
455 1.17 dbj struct cgd_softc *cs = getcgd_softc(obp->b_dev);
456 1.1 elric struct dk_softc *dksc = &cs->sc_dksc;
457 1.105 mlelstv struct disk_geom *dg = &dksc->sc_dkdev.dk_geom;
458 1.105 mlelstv daddr_t bn;
459 1.22 perry
460 1.17 dbj KDASSERT(cs);
461 1.1 elric
462 1.17 dbj DPRINTF_FOLLOW(("cgdiodone(%p)\n", nbp));
463 1.20 yamt DPRINTF(CGDB_IO, ("cgdiodone: bp %p bcount %d resid %d\n",
464 1.1 elric obp, obp->b_bcount, obp->b_resid));
465 1.107 msaitoh DPRINTF(CGDB_IO, (" dev 0x%"PRIx64", nbp %p bn %" PRId64
466 1.107 msaitoh " addr %p bcnt %d\n", nbp->b_dev, nbp, nbp->b_blkno, nbp->b_data,
467 1.107 msaitoh nbp->b_bcount));
468 1.46 ad if (nbp->b_error != 0) {
469 1.46 ad obp->b_error = nbp->b_error;
470 1.62 christos DPRINTF(CGDB_IO, ("%s: error %d\n", dksc->sc_xname,
471 1.62 christos obp->b_error));
472 1.1 elric }
473 1.1 elric
474 1.16 elric /* Perform the decryption if we are reading.
475 1.1 elric *
476 1.1 elric * Note: use the blocknumber from nbp, since it is what
477 1.1 elric * we used to encrypt the blocks.
478 1.1 elric */
479 1.1 elric
480 1.105 mlelstv if (nbp->b_flags & B_READ) {
481 1.105 mlelstv bn = dbtob(nbp->b_blkno) / dg->dg_secsize;
482 1.1 elric cgd_cipher(cs, obp->b_data, obp->b_data, obp->b_bcount,
483 1.105 mlelstv bn, dg->dg_secsize, CGD_CIPHER_DECRYPT);
484 1.105 mlelstv }
485 1.1 elric
486 1.16 elric /* If we allocated memory, free it now... */
487 1.1 elric if (nbp->b_data != obp->b_data)
488 1.16 elric cgd_putdata(dksc, nbp->b_data);
489 1.1 elric
490 1.33 yamt putiobuf(nbp);
491 1.1 elric
492 1.100 mlelstv /* Request is complete for whatever reason */
493 1.100 mlelstv obp->b_resid = 0;
494 1.100 mlelstv if (obp->b_error != 0)
495 1.100 mlelstv obp->b_resid = obp->b_bcount;
496 1.100 mlelstv
497 1.99 mlelstv dk_done(dksc, obp);
498 1.101 mlelstv dk_start(dksc, NULL);
499 1.1 elric }
500 1.1 elric
501 1.108 riastrad static int
502 1.108 riastrad cgd_dumpblocks(device_t dev, void *va, daddr_t blkno, int nblk)
503 1.108 riastrad {
504 1.108 riastrad struct cgd_softc *sc = device_private(dev);
505 1.108 riastrad struct dk_softc *dksc = &sc->sc_dksc;
506 1.108 riastrad struct disk_geom *dg = &dksc->sc_dkdev.dk_geom;
507 1.108 riastrad size_t nbytes, blksize;
508 1.108 riastrad void *buf;
509 1.108 riastrad int error;
510 1.108 riastrad
511 1.108 riastrad /*
512 1.108 riastrad * dk_dump gives us units of disklabel sectors. Everything
513 1.108 riastrad * else in cgd uses units of diskgeom sectors. These had
514 1.108 riastrad * better agree; otherwise we need to figure out how to convert
515 1.108 riastrad * between them.
516 1.108 riastrad */
517 1.108 riastrad KASSERTMSG((dg->dg_secsize == dksc->sc_dkdev.dk_label->d_secsize),
518 1.108 riastrad "diskgeom secsize %"PRIu32" != disklabel secsize %"PRIu32,
519 1.108 riastrad dg->dg_secsize, dksc->sc_dkdev.dk_label->d_secsize);
520 1.108 riastrad blksize = dg->dg_secsize;
521 1.108 riastrad
522 1.108 riastrad /*
523 1.108 riastrad * Compute the number of bytes in this request, which dk_dump
524 1.108 riastrad * has `helpfully' converted to a number of blocks for us.
525 1.108 riastrad */
526 1.108 riastrad nbytes = nblk*blksize;
527 1.108 riastrad
528 1.108 riastrad /* Try to acquire a buffer to store the ciphertext. */
529 1.108 riastrad buf = cgd_getdata(dksc, nbytes);
530 1.108 riastrad if (buf == NULL)
531 1.108 riastrad /* Out of memory: give up. */
532 1.108 riastrad return ENOMEM;
533 1.108 riastrad
534 1.108 riastrad /* Encrypt the caller's data into the temporary buffer. */
535 1.108 riastrad cgd_cipher(sc, buf, va, nbytes, blkno, blksize, CGD_CIPHER_ENCRYPT);
536 1.108 riastrad
537 1.108 riastrad /* Pass it on to the underlying disk device. */
538 1.108 riastrad error = bdev_dump(sc->sc_tdev, blkno, buf, nbytes);
539 1.108 riastrad
540 1.108 riastrad /* Release the buffer. */
541 1.108 riastrad cgd_putdata(dksc, buf);
542 1.108 riastrad
543 1.108 riastrad /* Return any error from the underlying disk device. */
544 1.108 riastrad return error;
545 1.108 riastrad }
546 1.108 riastrad
547 1.1 elric /* XXX: we should probably put these into dksubr.c, mostly */
548 1.18 thorpej static int
549 1.40 christos cgdread(dev_t dev, struct uio *uio, int flags)
550 1.1 elric {
551 1.1 elric struct cgd_softc *cs;
552 1.1 elric struct dk_softc *dksc;
553 1.1 elric
554 1.56 cegger DPRINTF_FOLLOW(("cgdread(0x%llx, %p, %d)\n",
555 1.56 cegger (unsigned long long)dev, uio, flags));
556 1.1 elric GETCGD_SOFTC(cs, dev);
557 1.1 elric dksc = &cs->sc_dksc;
558 1.98 mlelstv if (!DK_ATTACHED(dksc))
559 1.1 elric return ENXIO;
560 1.1 elric return physio(cgdstrategy, NULL, dev, B_READ, minphys, uio);
561 1.1 elric }
562 1.1 elric
563 1.1 elric /* XXX: we should probably put these into dksubr.c, mostly */
564 1.18 thorpej static int
565 1.40 christos cgdwrite(dev_t dev, struct uio *uio, int flags)
566 1.1 elric {
567 1.1 elric struct cgd_softc *cs;
568 1.1 elric struct dk_softc *dksc;
569 1.1 elric
570 1.56 cegger DPRINTF_FOLLOW(("cgdwrite(0x%"PRIx64", %p, %d)\n", dev, uio, flags));
571 1.1 elric GETCGD_SOFTC(cs, dev);
572 1.1 elric dksc = &cs->sc_dksc;
573 1.98 mlelstv if (!DK_ATTACHED(dksc))
574 1.1 elric return ENXIO;
575 1.1 elric return physio(cgdstrategy, NULL, dev, B_WRITE, minphys, uio);
576 1.1 elric }
577 1.1 elric
578 1.18 thorpej static int
579 1.44 christos cgdioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l)
580 1.1 elric {
581 1.1 elric struct cgd_softc *cs;
582 1.1 elric struct dk_softc *dksc;
583 1.1 elric int part = DISKPART(dev);
584 1.1 elric int pmask = 1 << part;
585 1.1 elric
586 1.56 cegger DPRINTF_FOLLOW(("cgdioctl(0x%"PRIx64", %ld, %p, %d, %p)\n",
587 1.32 christos dev, cmd, data, flag, l));
588 1.78 christos
589 1.1 elric switch (cmd) {
590 1.93 christos case CGDIOCGET:
591 1.93 christos return cgd_ioctl_get(dev, data, l);
592 1.1 elric case CGDIOCSET:
593 1.1 elric case CGDIOCCLR:
594 1.1 elric if ((flag & FWRITE) == 0)
595 1.1 elric return EBADF;
596 1.78 christos /* FALLTHROUGH */
597 1.78 christos default:
598 1.78 christos GETCGD_SOFTC(cs, dev);
599 1.78 christos dksc = &cs->sc_dksc;
600 1.78 christos break;
601 1.1 elric }
602 1.1 elric
603 1.1 elric switch (cmd) {
604 1.1 elric case CGDIOCSET:
605 1.98 mlelstv if (DK_ATTACHED(dksc))
606 1.68 dyoung return EBUSY;
607 1.68 dyoung return cgd_ioctl_set(cs, data, l);
608 1.1 elric case CGDIOCCLR:
609 1.65 dyoung if (DK_BUSY(&cs->sc_dksc, pmask))
610 1.68 dyoung return EBUSY;
611 1.68 dyoung return cgd_ioctl_clr(cs, l);
612 1.57 apb case DIOCCACHESYNC:
613 1.57 apb /*
614 1.57 apb * XXX Do we really need to care about having a writable
615 1.57 apb * file descriptor here?
616 1.57 apb */
617 1.57 apb if ((flag & FWRITE) == 0)
618 1.57 apb return (EBADF);
619 1.57 apb
620 1.57 apb /*
621 1.57 apb * We pass this call down to the underlying disk.
622 1.57 apb */
623 1.68 dyoung return VOP_IOCTL(cs->sc_tvn, cmd, data, flag, l->l_cred);
624 1.103 christos case DIOCGSTRATEGY:
625 1.103 christos case DIOCSSTRATEGY:
626 1.104 mlelstv if (!DK_ATTACHED(dksc))
627 1.103 christos return ENOENT;
628 1.103 christos /*FALLTHROUGH*/
629 1.1 elric default:
630 1.98 mlelstv return dk_ioctl(dksc, dev, cmd, data, flag, l);
631 1.93 christos case CGDIOCGET:
632 1.93 christos KASSERT(0);
633 1.93 christos return EINVAL;
634 1.1 elric }
635 1.1 elric }
636 1.1 elric
637 1.18 thorpej static int
638 1.44 christos cgddump(dev_t dev, daddr_t blkno, void *va, size_t size)
639 1.1 elric {
640 1.1 elric struct cgd_softc *cs;
641 1.1 elric
642 1.56 cegger DPRINTF_FOLLOW(("cgddump(0x%"PRIx64", %" PRId64 ", %p, %lu)\n",
643 1.56 cegger dev, blkno, va, (unsigned long)size));
644 1.1 elric GETCGD_SOFTC(cs, dev);
645 1.98 mlelstv return dk_dump(&cs->sc_dksc, dev, blkno, va, size);
646 1.1 elric }
647 1.1 elric
648 1.1 elric /*
649 1.1 elric * XXXrcd:
650 1.1 elric * for now we hardcode the maximum key length.
651 1.1 elric */
652 1.1 elric #define MAX_KEYSIZE 1024
653 1.1 elric
654 1.53 christos static const struct {
655 1.53 christos const char *n;
656 1.53 christos int v;
657 1.53 christos int d;
658 1.53 christos } encblkno[] = {
659 1.53 christos { "encblkno", CGD_CIPHER_CBC_ENCBLKNO8, 1 },
660 1.53 christos { "encblkno8", CGD_CIPHER_CBC_ENCBLKNO8, 1 },
661 1.53 christos { "encblkno1", CGD_CIPHER_CBC_ENCBLKNO1, 8 },
662 1.53 christos };
663 1.53 christos
664 1.1 elric /* ARGSUSED */
665 1.1 elric static int
666 1.32 christos cgd_ioctl_set(struct cgd_softc *cs, void *data, struct lwp *l)
667 1.1 elric {
668 1.1 elric struct cgd_ioctl *ci = data;
669 1.1 elric struct vnode *vp;
670 1.1 elric int ret;
671 1.53 christos size_t i;
672 1.43 cbiere size_t keybytes; /* key length in bytes */
673 1.27 drochner const char *cp;
674 1.71 dholland struct pathbuf *pb;
675 1.36 christos char *inbuf;
676 1.80 christos struct dk_softc *dksc = &cs->sc_dksc;
677 1.1 elric
678 1.1 elric cp = ci->ci_disk;
679 1.71 dholland
680 1.71 dholland ret = pathbuf_copyin(ci->ci_disk, &pb);
681 1.71 dholland if (ret != 0) {
682 1.71 dholland return ret;
683 1.71 dholland }
684 1.71 dholland ret = dk_lookup(pb, l, &vp);
685 1.71 dholland pathbuf_destroy(pb);
686 1.71 dholland if (ret != 0) {
687 1.1 elric return ret;
688 1.71 dholland }
689 1.1 elric
690 1.36 christos inbuf = malloc(MAX_KEYSIZE, M_TEMP, M_WAITOK);
691 1.36 christos
692 1.32 christos if ((ret = cgdinit(cs, cp, vp, l)) != 0)
693 1.1 elric goto bail;
694 1.1 elric
695 1.36 christos (void)memset(inbuf, 0, MAX_KEYSIZE);
696 1.1 elric ret = copyinstr(ci->ci_alg, inbuf, 256, NULL);
697 1.1 elric if (ret)
698 1.1 elric goto bail;
699 1.1 elric cs->sc_cfuncs = cryptfuncs_find(inbuf);
700 1.1 elric if (!cs->sc_cfuncs) {
701 1.1 elric ret = EINVAL;
702 1.1 elric goto bail;
703 1.1 elric }
704 1.1 elric
705 1.43 cbiere (void)memset(inbuf, 0, MAX_KEYSIZE);
706 1.36 christos ret = copyinstr(ci->ci_ivmethod, inbuf, MAX_KEYSIZE, NULL);
707 1.1 elric if (ret)
708 1.1 elric goto bail;
709 1.53 christos
710 1.53 christos for (i = 0; i < __arraycount(encblkno); i++)
711 1.53 christos if (strcmp(encblkno[i].n, inbuf) == 0)
712 1.53 christos break;
713 1.53 christos
714 1.53 christos if (i == __arraycount(encblkno)) {
715 1.1 elric ret = EINVAL;
716 1.1 elric goto bail;
717 1.1 elric }
718 1.1 elric
719 1.15 dan keybytes = ci->ci_keylen / 8 + 1;
720 1.15 dan if (keybytes > MAX_KEYSIZE) {
721 1.1 elric ret = EINVAL;
722 1.1 elric goto bail;
723 1.1 elric }
724 1.53 christos
725 1.36 christos (void)memset(inbuf, 0, MAX_KEYSIZE);
726 1.15 dan ret = copyin(ci->ci_key, inbuf, keybytes);
727 1.1 elric if (ret)
728 1.1 elric goto bail;
729 1.1 elric
730 1.1 elric cs->sc_cdata.cf_blocksize = ci->ci_blocksize;
731 1.53 christos cs->sc_cdata.cf_mode = encblkno[i].v;
732 1.78 christos cs->sc_cdata.cf_keylen = ci->ci_keylen;
733 1.1 elric cs->sc_cdata.cf_priv = cs->sc_cfuncs->cf_init(ci->ci_keylen, inbuf,
734 1.1 elric &cs->sc_cdata.cf_blocksize);
735 1.62 christos if (cs->sc_cdata.cf_blocksize > CGD_MAXBLOCKSIZE) {
736 1.62 christos log(LOG_WARNING, "cgd: Disallowed cipher with blocksize %zu > %u\n",
737 1.63 christos cs->sc_cdata.cf_blocksize, CGD_MAXBLOCKSIZE);
738 1.62 christos cs->sc_cdata.cf_priv = NULL;
739 1.62 christos }
740 1.78 christos
741 1.53 christos /*
742 1.53 christos * The blocksize is supposed to be in bytes. Unfortunately originally
743 1.53 christos * it was expressed in bits. For compatibility we maintain encblkno
744 1.53 christos * and encblkno8.
745 1.53 christos */
746 1.53 christos cs->sc_cdata.cf_blocksize /= encblkno[i].d;
747 1.97 riastrad (void)explicit_memset(inbuf, 0, MAX_KEYSIZE);
748 1.1 elric if (!cs->sc_cdata.cf_priv) {
749 1.1 elric ret = EINVAL; /* XXX is this the right error? */
750 1.1 elric goto bail;
751 1.1 elric }
752 1.36 christos free(inbuf, M_TEMP);
753 1.1 elric
754 1.80 christos bufq_alloc(&dksc->sc_bufq, "fcfs", 0);
755 1.16 elric
756 1.16 elric cs->sc_data = malloc(MAXPHYS, M_DEVBUF, M_WAITOK);
757 1.16 elric cs->sc_data_used = 0;
758 1.16 elric
759 1.98 mlelstv /* Attach the disk. */
760 1.98 mlelstv dk_attach(dksc);
761 1.98 mlelstv disk_attach(&dksc->sc_dkdev);
762 1.1 elric
763 1.80 christos disk_set_info(dksc->sc_dev, &dksc->sc_dkdev, NULL);
764 1.77 elric
765 1.29 yamt /* Discover wedges on this disk. */
766 1.80 christos dkwedge_discover(&dksc->sc_dkdev);
767 1.29 yamt
768 1.1 elric return 0;
769 1.1 elric
770 1.1 elric bail:
771 1.36 christos free(inbuf, M_TEMP);
772 1.51 ad (void)vn_close(vp, FREAD|FWRITE, l->l_cred);
773 1.1 elric return ret;
774 1.1 elric }
775 1.1 elric
776 1.1 elric /* ARGSUSED */
777 1.1 elric static int
778 1.65 dyoung cgd_ioctl_clr(struct cgd_softc *cs, struct lwp *l)
779 1.1 elric {
780 1.80 christos struct dk_softc *dksc = &cs->sc_dksc;
781 1.65 dyoung
782 1.98 mlelstv if (!DK_ATTACHED(dksc))
783 1.65 dyoung return ENXIO;
784 1.16 elric
785 1.29 yamt /* Delete all of our wedges. */
786 1.80 christos dkwedge_delall(&dksc->sc_dkdev);
787 1.29 yamt
788 1.16 elric /* Kill off any queued buffers. */
789 1.104 mlelstv dk_drain(dksc);
790 1.80 christos bufq_free(dksc->sc_bufq);
791 1.1 elric
792 1.51 ad (void)vn_close(cs->sc_tvn, FREAD|FWRITE, l->l_cred);
793 1.1 elric cs->sc_cfuncs->cf_destroy(cs->sc_cdata.cf_priv);
794 1.1 elric free(cs->sc_tpath, M_DEVBUF);
795 1.16 elric free(cs->sc_data, M_DEVBUF);
796 1.16 elric cs->sc_data_used = 0;
797 1.98 mlelstv dk_detach(dksc);
798 1.80 christos disk_detach(&dksc->sc_dkdev);
799 1.1 elric
800 1.1 elric return 0;
801 1.1 elric }
802 1.1 elric
803 1.1 elric static int
804 1.78 christos cgd_ioctl_get(dev_t dev, void *data, struct lwp *l)
805 1.78 christos {
806 1.81 martin struct cgd_softc *cs = getcgd_softc(dev);
807 1.78 christos struct cgd_user *cgu;
808 1.78 christos int unit;
809 1.80 christos struct dk_softc *dksc = &cs->sc_dksc;
810 1.78 christos
811 1.78 christos unit = CGDUNIT(dev);
812 1.78 christos cgu = (struct cgd_user *)data;
813 1.78 christos
814 1.78 christos DPRINTF_FOLLOW(("cgd_ioctl_get(0x%"PRIx64", %d, %p, %p)\n",
815 1.78 christos dev, unit, data, l));
816 1.78 christos
817 1.78 christos if (cgu->cgu_unit == -1)
818 1.78 christos cgu->cgu_unit = unit;
819 1.78 christos
820 1.78 christos if (cgu->cgu_unit < 0)
821 1.78 christos return EINVAL; /* XXX: should this be ENXIO? */
822 1.78 christos
823 1.78 christos cs = device_lookup_private(&cgd_cd, unit);
824 1.98 mlelstv if (cs == NULL || !DK_ATTACHED(dksc)) {
825 1.78 christos cgu->cgu_dev = 0;
826 1.78 christos cgu->cgu_alg[0] = '\0';
827 1.78 christos cgu->cgu_blocksize = 0;
828 1.78 christos cgu->cgu_mode = 0;
829 1.78 christos cgu->cgu_keylen = 0;
830 1.78 christos }
831 1.78 christos else {
832 1.78 christos cgu->cgu_dev = cs->sc_tdev;
833 1.78 christos strlcpy(cgu->cgu_alg, cs->sc_cfuncs->cf_name,
834 1.78 christos sizeof(cgu->cgu_alg));
835 1.78 christos cgu->cgu_blocksize = cs->sc_cdata.cf_blocksize;
836 1.78 christos cgu->cgu_mode = cs->sc_cdata.cf_mode;
837 1.78 christos cgu->cgu_keylen = cs->sc_cdata.cf_keylen;
838 1.78 christos }
839 1.78 christos return 0;
840 1.78 christos }
841 1.78 christos
842 1.78 christos static int
843 1.27 drochner cgdinit(struct cgd_softc *cs, const char *cpath, struct vnode *vp,
844 1.32 christos struct lwp *l)
845 1.1 elric {
846 1.80 christos struct disk_geom *dg;
847 1.1 elric int ret;
848 1.36 christos char *tmppath;
849 1.76 christos uint64_t psize;
850 1.76 christos unsigned secsize;
851 1.80 christos struct dk_softc *dksc = &cs->sc_dksc;
852 1.1 elric
853 1.1 elric cs->sc_tvn = vp;
854 1.36 christos cs->sc_tpath = NULL;
855 1.1 elric
856 1.36 christos tmppath = malloc(MAXPATHLEN, M_TEMP, M_WAITOK);
857 1.1 elric ret = copyinstr(cpath, tmppath, MAXPATHLEN, &cs->sc_tpathlen);
858 1.1 elric if (ret)
859 1.1 elric goto bail;
860 1.1 elric cs->sc_tpath = malloc(cs->sc_tpathlen, M_DEVBUF, M_WAITOK);
861 1.1 elric memcpy(cs->sc_tpath, tmppath, cs->sc_tpathlen);
862 1.1 elric
863 1.88 hannken cs->sc_tdev = vp->v_rdev;
864 1.1 elric
865 1.76 christos if ((ret = getdisksize(vp, &psize, &secsize)) != 0)
866 1.1 elric goto bail;
867 1.1 elric
868 1.76 christos if (psize == 0) {
869 1.1 elric ret = ENODEV;
870 1.1 elric goto bail;
871 1.1 elric }
872 1.1 elric
873 1.1 elric /*
874 1.1 elric * XXX here we should probe the underlying device. If we
875 1.1 elric * are accessing a partition of type RAW_PART, then
876 1.1 elric * we should populate our initial geometry with the
877 1.1 elric * geometry that we discover from the device.
878 1.1 elric */
879 1.80 christos dg = &dksc->sc_dkdev.dk_geom;
880 1.80 christos memset(dg, 0, sizeof(*dg));
881 1.80 christos dg->dg_secperunit = psize;
882 1.105 mlelstv dg->dg_secsize = secsize;
883 1.80 christos dg->dg_ntracks = 1;
884 1.105 mlelstv dg->dg_nsectors = 1024 * 1024 / dg->dg_secsize;
885 1.80 christos dg->dg_ncylinders = dg->dg_secperunit / dg->dg_nsectors;
886 1.1 elric
887 1.1 elric bail:
888 1.36 christos free(tmppath, M_TEMP);
889 1.1 elric if (ret && cs->sc_tpath)
890 1.1 elric free(cs->sc_tpath, M_DEVBUF);
891 1.1 elric return ret;
892 1.1 elric }
893 1.1 elric
894 1.1 elric /*
895 1.1 elric * Our generic cipher entry point. This takes care of the
896 1.1 elric * IV mode and passes off the work to the specific cipher.
897 1.1 elric * We implement here the IV method ``encrypted block
898 1.1 elric * number''.
899 1.22 perry *
900 1.1 elric * For the encryption case, we accomplish this by setting
901 1.1 elric * up a struct uio where the first iovec of the source is
902 1.1 elric * the blocknumber and the first iovec of the dest is a
903 1.1 elric * sink. We then call the cipher with an IV of zero, and
904 1.1 elric * the right thing happens.
905 1.22 perry *
906 1.1 elric * For the decryption case, we use the same basic mechanism
907 1.1 elric * for symmetry, but we encrypt the block number in the
908 1.1 elric * first iovec.
909 1.1 elric *
910 1.1 elric * We mainly do this to avoid requiring the definition of
911 1.1 elric * an ECB mode.
912 1.1 elric *
913 1.1 elric * XXXrcd: for now we rely on our own crypto framework defined
914 1.1 elric * in dev/cgd_crypto.c. This will change when we
915 1.1 elric * get a generic kernel crypto framework.
916 1.1 elric */
917 1.1 elric
918 1.1 elric static void
919 1.25 xtraeme blkno2blkno_buf(char *sbuf, daddr_t blkno)
920 1.1 elric {
921 1.1 elric int i;
922 1.1 elric
923 1.1 elric /* Set up the blkno in blkno_buf, here we do not care much
924 1.1 elric * about the final layout of the information as long as we
925 1.1 elric * can guarantee that each sector will have a different IV
926 1.1 elric * and that the endianness of the machine will not affect
927 1.1 elric * the representation that we have chosen.
928 1.1 elric *
929 1.1 elric * We choose this representation, because it does not rely
930 1.1 elric * on the size of buf (which is the blocksize of the cipher),
931 1.1 elric * but allows daddr_t to grow without breaking existing
932 1.1 elric * disks.
933 1.1 elric *
934 1.1 elric * Note that blkno2blkno_buf does not take a size as input,
935 1.1 elric * and hence must be called on a pre-zeroed buffer of length
936 1.1 elric * greater than or equal to sizeof(daddr_t).
937 1.1 elric */
938 1.1 elric for (i=0; i < sizeof(daddr_t); i++) {
939 1.25 xtraeme *sbuf++ = blkno & 0xff;
940 1.1 elric blkno >>= 8;
941 1.1 elric }
942 1.1 elric }
943 1.1 elric
944 1.1 elric static void
945 1.44 christos cgd_cipher(struct cgd_softc *cs, void *dstv, void *srcv,
946 1.44 christos size_t len, daddr_t blkno, size_t secsize, int dir)
947 1.1 elric {
948 1.44 christos char *dst = dstv;
949 1.44 christos char *src = srcv;
950 1.1 elric cfunc_cipher *cipher = cs->sc_cfuncs->cf_cipher;
951 1.1 elric struct uio dstuio;
952 1.1 elric struct uio srcuio;
953 1.1 elric struct iovec dstiov[2];
954 1.1 elric struct iovec srciov[2];
955 1.42 christos size_t blocksize = cs->sc_cdata.cf_blocksize;
956 1.105 mlelstv size_t todo;
957 1.62 christos char sink[CGD_MAXBLOCKSIZE];
958 1.62 christos char zero_iv[CGD_MAXBLOCKSIZE];
959 1.62 christos char blkno_buf[CGD_MAXBLOCKSIZE];
960 1.1 elric
961 1.1 elric DPRINTF_FOLLOW(("cgd_cipher() dir=%d\n", dir));
962 1.1 elric
963 1.22 perry DIAGCONDPANIC(len % blocksize != 0,
964 1.1 elric ("cgd_cipher: len %% blocksize != 0"));
965 1.1 elric
966 1.1 elric /* ensure that sizeof(daddr_t) <= blocksize (for encblkno IVing) */
967 1.1 elric DIAGCONDPANIC(sizeof(daddr_t) > blocksize,
968 1.1 elric ("cgd_cipher: sizeof(daddr_t) > blocksize"));
969 1.1 elric
970 1.64 christos memset(zero_iv, 0x0, blocksize);
971 1.1 elric
972 1.1 elric dstuio.uio_iov = dstiov;
973 1.1 elric dstuio.uio_iovcnt = 2;
974 1.1 elric
975 1.1 elric srcuio.uio_iov = srciov;
976 1.1 elric srcuio.uio_iovcnt = 2;
977 1.1 elric
978 1.1 elric dstiov[0].iov_base = sink;
979 1.1 elric dstiov[0].iov_len = blocksize;
980 1.1 elric srciov[0].iov_base = blkno_buf;
981 1.1 elric srciov[0].iov_len = blocksize;
982 1.1 elric
983 1.105 mlelstv for (; len > 0; len -= todo) {
984 1.105 mlelstv todo = MIN(len, secsize);
985 1.105 mlelstv
986 1.1 elric dstiov[1].iov_base = dst;
987 1.1 elric srciov[1].iov_base = src;
988 1.105 mlelstv dstiov[1].iov_len = todo;
989 1.105 mlelstv srciov[1].iov_len = todo;
990 1.1 elric
991 1.64 christos memset(blkno_buf, 0x0, blocksize);
992 1.1 elric blkno2blkno_buf(blkno_buf, blkno);
993 1.1 elric if (dir == CGD_CIPHER_DECRYPT) {
994 1.1 elric dstuio.uio_iovcnt = 1;
995 1.1 elric srcuio.uio_iovcnt = 1;
996 1.1 elric IFDEBUG(CGDB_CRYPTO, hexprint("step 0: blkno_buf",
997 1.64 christos blkno_buf, blocksize));
998 1.1 elric cipher(cs->sc_cdata.cf_priv, &dstuio, &srcuio,
999 1.1 elric zero_iv, CGD_CIPHER_ENCRYPT);
1000 1.1 elric memcpy(blkno_buf, sink, blocksize);
1001 1.1 elric dstuio.uio_iovcnt = 2;
1002 1.1 elric srcuio.uio_iovcnt = 2;
1003 1.1 elric }
1004 1.1 elric
1005 1.1 elric IFDEBUG(CGDB_CRYPTO, hexprint("step 1: blkno_buf",
1006 1.64 christos blkno_buf, blocksize));
1007 1.1 elric cipher(cs->sc_cdata.cf_priv, &dstuio, &srcuio, zero_iv, dir);
1008 1.1 elric IFDEBUG(CGDB_CRYPTO, hexprint("step 2: sink",
1009 1.64 christos sink, blocksize));
1010 1.1 elric
1011 1.105 mlelstv dst += todo;
1012 1.105 mlelstv src += todo;
1013 1.1 elric blkno++;
1014 1.1 elric }
1015 1.1 elric }
1016 1.1 elric
1017 1.1 elric #ifdef DEBUG
1018 1.1 elric static void
1019 1.26 drochner hexprint(const char *start, void *buf, int len)
1020 1.1 elric {
1021 1.1 elric char *c = buf;
1022 1.1 elric
1023 1.1 elric DIAGCONDPANIC(len < 0, ("hexprint: called with len < 0"));
1024 1.1 elric printf("%s: len=%06d 0x", start, len);
1025 1.1 elric while (len--)
1026 1.43 cbiere printf("%02x", (unsigned char) *c++);
1027 1.1 elric }
1028 1.1 elric #endif
1029 1.58 haad
1030 1.83 pgoyette MODULE(MODULE_CLASS_DRIVER, cgd, "dk_subr");
1031 1.74 jruoho
1032 1.58 haad #ifdef _MODULE
1033 1.66 dyoung CFDRIVER_DECL(cgd, DV_DISK, NULL);
1034 1.74 jruoho #endif
1035 1.58 haad
1036 1.58 haad static int
1037 1.58 haad cgd_modcmd(modcmd_t cmd, void *arg)
1038 1.58 haad {
1039 1.82 martin int error = 0;
1040 1.74 jruoho
1041 1.82 martin #ifdef _MODULE
1042 1.91 justin devmajor_t bmajor = -1, cmajor = -1;
1043 1.82 martin #endif
1044 1.74 jruoho
1045 1.58 haad switch (cmd) {
1046 1.58 haad case MODULE_CMD_INIT:
1047 1.74 jruoho #ifdef _MODULE
1048 1.66 dyoung error = config_cfdriver_attach(&cgd_cd);
1049 1.66 dyoung if (error)
1050 1.66 dyoung break;
1051 1.66 dyoung
1052 1.66 dyoung error = config_cfattach_attach(cgd_cd.cd_name, &cgd_ca);
1053 1.66 dyoung if (error) {
1054 1.66 dyoung config_cfdriver_detach(&cgd_cd);
1055 1.66 dyoung aprint_error("%s: unable to register cfattach\n",
1056 1.66 dyoung cgd_cd.cd_name);
1057 1.66 dyoung break;
1058 1.66 dyoung }
1059 1.74 jruoho
1060 1.66 dyoung error = devsw_attach("cgd", &cgd_bdevsw, &bmajor,
1061 1.58 haad &cgd_cdevsw, &cmajor);
1062 1.66 dyoung if (error) {
1063 1.66 dyoung config_cfattach_detach(cgd_cd.cd_name, &cgd_ca);
1064 1.66 dyoung config_cfdriver_detach(&cgd_cd);
1065 1.66 dyoung break;
1066 1.66 dyoung }
1067 1.74 jruoho #endif
1068 1.58 haad break;
1069 1.58 haad
1070 1.58 haad case MODULE_CMD_FINI:
1071 1.74 jruoho #ifdef _MODULE
1072 1.66 dyoung error = config_cfattach_detach(cgd_cd.cd_name, &cgd_ca);
1073 1.66 dyoung if (error)
1074 1.66 dyoung break;
1075 1.66 dyoung config_cfdriver_detach(&cgd_cd);
1076 1.66 dyoung devsw_detach(&cgd_bdevsw, &cgd_cdevsw);
1077 1.74 jruoho #endif
1078 1.58 haad break;
1079 1.58 haad
1080 1.58 haad case MODULE_CMD_STAT:
1081 1.58 haad return ENOTTY;
1082 1.58 haad
1083 1.58 haad default:
1084 1.58 haad return ENOTTY;
1085 1.58 haad }
1086 1.58 haad
1087 1.58 haad return error;
1088 1.58 haad }
1089