ccd.c revision 1.175.2.2 1 /* $NetBSD: ccd.c,v 1.175.2.2 2018/03/20 08:11:25 pgoyette Exp $ */
2
3 /*-
4 * Copyright (c) 1996, 1997, 1998, 1999, 2007, 2009 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Jason R. Thorpe, and by Andrew Doran.
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 /*
33 * Copyright (c) 1988 University of Utah.
34 * Copyright (c) 1990, 1993
35 * The Regents of the University of California. All rights reserved.
36 *
37 * This code is derived from software contributed to Berkeley by
38 * the Systems Programming Group of the University of Utah Computer
39 * Science Department.
40 *
41 * Redistribution and use in source and binary forms, with or without
42 * modification, are permitted provided that the following conditions
43 * are met:
44 * 1. Redistributions of source code must retain the above copyright
45 * notice, this list of conditions and the following disclaimer.
46 * 2. Redistributions in binary form must reproduce the above copyright
47 * notice, this list of conditions and the following disclaimer in the
48 * documentation and/or other materials provided with the distribution.
49 * 3. Neither the name of the University nor the names of its contributors
50 * may be used to endorse or promote products derived from this software
51 * without specific prior written permission.
52 *
53 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
54 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
55 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
56 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
57 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
58 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
59 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
60 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
61 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
62 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
63 * SUCH DAMAGE.
64 *
65 * from: Utah $Hdr: cd.c 1.6 90/11/28$
66 *
67 * @(#)cd.c 8.2 (Berkeley) 11/16/93
68 */
69
70 /*
71 * "Concatenated" disk driver.
72 *
73 * Notes on concurrency:
74 *
75 * => sc_dvlock serializes access to the device nodes, excluding block I/O.
76 *
77 * => sc_iolock serializes access to (sc_flags & CCDF_INITED), disk stats,
78 * sc_stop, sc_bufq and b_resid from master buffers.
79 *
80 * => a combination of CCDF_INITED, sc_inflight, and sc_iolock is used to
81 * serialize I/O and configuration changes.
82 *
83 * => the in-core disk label does not change while the device is open.
84 *
85 * On memory consumption: ccd fans out I/O requests and so needs to
86 * allocate memory. If the system is desperately low on memory, we
87 * single thread I/O.
88 */
89
90 #include <sys/cdefs.h>
91 __KERNEL_RCSID(0, "$NetBSD: ccd.c,v 1.175.2.2 2018/03/20 08:11:25 pgoyette Exp $");
92
93 #if defined(_KERNEL_OPT)
94 #include "opt_compat_netbsd.h"
95 #endif
96
97 #include <sys/param.h>
98 #include <sys/systm.h>
99 #include <sys/kernel.h>
100 #include <sys/proc.h>
101 #include <sys/errno.h>
102 #include <sys/buf.h>
103 #include <sys/kmem.h>
104 #include <sys/pool.h>
105 #include <sys/module.h>
106 #include <sys/namei.h>
107 #include <sys/stat.h>
108 #include <sys/ioctl.h>
109 #include <sys/disklabel.h>
110 #include <sys/device.h>
111 #include <sys/disk.h>
112 #include <sys/syslog.h>
113 #include <sys/fcntl.h>
114 #include <sys/vnode.h>
115 #include <sys/conf.h>
116 #include <sys/mutex.h>
117 #include <sys/queue.h>
118 #include <sys/kauth.h>
119 #include <sys/kthread.h>
120 #include <sys/bufq.h>
121 #include <sys/sysctl.h>
122 #include <sys/compat_stub.h>
123
124 #include <uvm/uvm_extern.h>
125
126 #include <dev/ccdvar.h>
127 #include <dev/dkvar.h>
128
129 #include <miscfs/specfs/specdev.h> /* for v_rdev */
130
131 #include "ioconf.h"
132
133 #if defined(CCDDEBUG) && !defined(DEBUG)
134 #define DEBUG
135 #endif
136
137 #ifdef DEBUG
138 #define CCDB_FOLLOW 0x01
139 #define CCDB_INIT 0x02
140 #define CCDB_IO 0x04
141 #define CCDB_LABEL 0x08
142 #define CCDB_VNODE 0x10
143 int ccddebug = 0x00;
144 #endif
145
146 #define ccdunit(x) DISKUNIT(x)
147
148 struct ccdbuf {
149 struct buf cb_buf; /* new I/O buf */
150 struct buf *cb_obp; /* ptr. to original I/O buf */
151 struct ccd_softc *cb_sc; /* pointer to ccd softc */
152 int cb_comp; /* target component */
153 SIMPLEQ_ENTRY(ccdbuf) cb_q; /* fifo of component buffers */
154 };
155
156 /* component buffer pool */
157 static pool_cache_t ccd_cache;
158
159 #define CCD_GETBUF() pool_cache_get(ccd_cache, PR_WAITOK)
160 #define CCD_PUTBUF(cbp) pool_cache_put(ccd_cache, cbp)
161
162 #define CCDLABELDEV(dev) \
163 (MAKEDISKDEV(major((dev)), ccdunit((dev)), RAW_PART))
164
165 /* called by main() at boot time */
166 void ccddetach(void);
167
168 /* called by biodone() at interrupt time */
169 static void ccdiodone(struct buf *);
170
171 static void ccdinterleave(struct ccd_softc *);
172 static int ccdinit(struct ccd_softc *, char **, struct vnode **,
173 struct lwp *);
174 static struct ccdbuf *ccdbuffer(struct ccd_softc *, struct buf *,
175 daddr_t, void *, long);
176 static void ccdgetdefaultlabel(struct ccd_softc *, struct disklabel *);
177 static void ccdgetdisklabel(dev_t);
178 static void ccdmakedisklabel(struct ccd_softc *);
179 static void ccdstart(struct ccd_softc *);
180 static void ccdthread(void *);
181
182 static dev_type_open(ccdopen);
183 static dev_type_close(ccdclose);
184 static dev_type_read(ccdread);
185 static dev_type_write(ccdwrite);
186 static dev_type_ioctl(ccdioctl);
187 static dev_type_strategy(ccdstrategy);
188 static dev_type_size(ccdsize);
189
190 const struct bdevsw ccd_bdevsw = {
191 .d_open = ccdopen,
192 .d_close = ccdclose,
193 .d_strategy = ccdstrategy,
194 .d_ioctl = ccdioctl,
195 .d_dump = nodump,
196 .d_psize = ccdsize,
197 .d_discard = nodiscard,
198 .d_flag = D_DISK | D_MPSAFE
199 };
200
201 const struct cdevsw ccd_cdevsw = {
202 .d_open = ccdopen,
203 .d_close = ccdclose,
204 .d_read = ccdread,
205 .d_write = ccdwrite,
206 .d_ioctl = ccdioctl,
207 .d_stop = nostop,
208 .d_tty = notty,
209 .d_poll = nopoll,
210 .d_mmap = nommap,
211 .d_kqfilter = nokqfilter,
212 .d_discard = nodiscard,
213 .d_flag = D_DISK | D_MPSAFE
214 };
215
216 #ifdef DEBUG
217 static void printiinfo(struct ccdiinfo *);
218 #endif
219
220 static LIST_HEAD(, ccd_softc) ccds = LIST_HEAD_INITIALIZER(ccds);
221 static kmutex_t ccd_lock;
222
223 #ifdef _MODULE
224 static struct sysctllog *ccd_clog;
225 #endif
226
227 SYSCTL_SETUP_PROTO(sysctl_kern_ccd_setup);
228
229 static struct ccd_softc *
230 ccdcreate(int unit) {
231 struct ccd_softc *sc = kmem_zalloc(sizeof(*sc), KM_SLEEP);
232
233 /* Initialize per-softc structures. */
234 snprintf(sc->sc_xname, sizeof(sc->sc_xname), "ccd%d", unit);
235 sc->sc_unit = unit;
236 mutex_init(&sc->sc_dvlock, MUTEX_DEFAULT, IPL_NONE);
237 sc->sc_iolock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
238 cv_init(&sc->sc_stop, "ccdstop");
239 cv_init(&sc->sc_push, "ccdthr");
240 disk_init(&sc->sc_dkdev, sc->sc_xname, NULL); /* XXX */
241 return sc;
242 }
243
244 static void
245 ccddestroy(struct ccd_softc *sc) {
246 mutex_obj_free(sc->sc_iolock);
247 mutex_exit(&sc->sc_dvlock);
248 mutex_destroy(&sc->sc_dvlock);
249 cv_destroy(&sc->sc_stop);
250 cv_destroy(&sc->sc_push);
251 disk_destroy(&sc->sc_dkdev);
252 kmem_free(sc, sizeof(*sc));
253 }
254
255 static struct ccd_softc *
256 ccdget(int unit, int make) {
257 struct ccd_softc *sc;
258 if (unit < 0) {
259 #ifdef DIAGNOSTIC
260 panic("%s: unit %d!", __func__, unit);
261 #endif
262 return NULL;
263 }
264 mutex_enter(&ccd_lock);
265 LIST_FOREACH(sc, &ccds, sc_link) {
266 if (sc->sc_unit == unit) {
267 mutex_exit(&ccd_lock);
268 return sc;
269 }
270 }
271 mutex_exit(&ccd_lock);
272 if (!make)
273 return NULL;
274 if ((sc = ccdcreate(unit)) == NULL)
275 return NULL;
276 mutex_enter(&ccd_lock);
277 LIST_INSERT_HEAD(&ccds, sc, sc_link);
278 mutex_exit(&ccd_lock);
279 return sc;
280 }
281
282 static void
283 ccdput(struct ccd_softc *sc) {
284 mutex_enter(&ccd_lock);
285 LIST_REMOVE(sc, sc_link);
286 mutex_exit(&ccd_lock);
287 ccddestroy(sc);
288 }
289
290 /*
291 * Called by main() during pseudo-device attachment. All we need
292 * to do is allocate enough space for devices to be configured later.
293 */
294 void
295 ccdattach(int num)
296 {
297 mutex_init(&ccd_lock, MUTEX_DEFAULT, IPL_NONE);
298
299 /* Initialize the component buffer pool. */
300 ccd_cache = pool_cache_init(sizeof(struct ccdbuf), 0,
301 0, 0, "ccdbuf", NULL, IPL_BIO, NULL, NULL, NULL);
302 }
303
304 void
305 ccddetach(void)
306 {
307 pool_cache_destroy(ccd_cache);
308 mutex_destroy(&ccd_lock);
309 }
310
311 static int
312 ccdinit(struct ccd_softc *cs, char **cpaths, struct vnode **vpp,
313 struct lwp *l)
314 {
315 struct ccdcinfo *ci = NULL;
316 int ix;
317 struct ccdgeom *ccg = &cs->sc_geom;
318 char *tmppath;
319 int error, path_alloced;
320 uint64_t psize, minsize;
321 unsigned secsize, maxsecsize;
322 struct disk_geom *dg;
323
324 #ifdef DEBUG
325 if (ccddebug & (CCDB_FOLLOW|CCDB_INIT))
326 printf("%s: ccdinit\n", cs->sc_xname);
327 #endif
328
329 /* Allocate space for the component info. */
330 cs->sc_cinfo = kmem_alloc(cs->sc_nccdisks * sizeof(*cs->sc_cinfo),
331 KM_SLEEP);
332 tmppath = kmem_alloc(MAXPATHLEN, KM_SLEEP);
333
334 cs->sc_size = 0;
335
336 /*
337 * Verify that each component piece exists and record
338 * relevant information about it.
339 */
340 maxsecsize = 0;
341 minsize = 0;
342 for (ix = 0, path_alloced = 0; ix < cs->sc_nccdisks; ix++) {
343 ci = &cs->sc_cinfo[ix];
344 ci->ci_vp = vpp[ix];
345
346 /*
347 * Copy in the pathname of the component.
348 */
349 memset(tmppath, 0, MAXPATHLEN); /* sanity */
350 error = copyinstr(cpaths[ix], tmppath,
351 MAXPATHLEN, &ci->ci_pathlen);
352 if (ci->ci_pathlen == 0)
353 error = EINVAL;
354 if (error) {
355 #ifdef DEBUG
356 if (ccddebug & (CCDB_FOLLOW|CCDB_INIT))
357 printf("%s: can't copy path, error = %d\n",
358 cs->sc_xname, error);
359 #endif
360 goto out;
361 }
362 ci->ci_path = kmem_alloc(ci->ci_pathlen, KM_SLEEP);
363 memcpy(ci->ci_path, tmppath, ci->ci_pathlen);
364 path_alloced++;
365
366 /*
367 * XXX: Cache the component's dev_t.
368 */
369 ci->ci_dev = vpp[ix]->v_rdev;
370
371 /*
372 * Get partition information for the component.
373 */
374 error = getdisksize(vpp[ix], &psize, &secsize);
375 if (error) {
376 #ifdef DEBUG
377 if (ccddebug & (CCDB_FOLLOW|CCDB_INIT))
378 printf("%s: %s: disksize failed, error = %d\n",
379 cs->sc_xname, ci->ci_path, error);
380 #endif
381 goto out;
382 }
383
384 /*
385 * Calculate the size, truncating to an interleave
386 * boundary if necessary.
387 */
388 maxsecsize = secsize > maxsecsize ? secsize : maxsecsize;
389 if (cs->sc_ileave > 1)
390 psize -= psize % cs->sc_ileave;
391
392 if (psize == 0) {
393 #ifdef DEBUG
394 if (ccddebug & (CCDB_FOLLOW|CCDB_INIT))
395 printf("%s: %s: size == 0\n",
396 cs->sc_xname, ci->ci_path);
397 #endif
398 error = ENODEV;
399 goto out;
400 }
401
402 if (minsize == 0 || psize < minsize)
403 minsize = psize;
404 ci->ci_size = psize;
405 cs->sc_size += psize;
406 }
407
408 /*
409 * Don't allow the interleave to be smaller than
410 * the biggest component sector.
411 */
412 if ((cs->sc_ileave > 0) &&
413 (cs->sc_ileave < (maxsecsize / DEV_BSIZE))) {
414 #ifdef DEBUG
415 if (ccddebug & (CCDB_FOLLOW|CCDB_INIT))
416 printf("%s: interleave must be at least %d\n",
417 cs->sc_xname, (maxsecsize / DEV_BSIZE));
418 #endif
419 error = EINVAL;
420 goto out;
421 }
422
423 /*
424 * If uniform interleave is desired set all sizes to that of
425 * the smallest component.
426 */
427 if (cs->sc_flags & CCDF_UNIFORM) {
428 for (ci = cs->sc_cinfo;
429 ci < &cs->sc_cinfo[cs->sc_nccdisks]; ci++)
430 ci->ci_size = minsize;
431
432 cs->sc_size = cs->sc_nccdisks * minsize;
433 }
434
435 /*
436 * Construct the interleave table.
437 */
438 ccdinterleave(cs);
439
440 /*
441 * Create pseudo-geometry based on 1MB cylinders. It's
442 * pretty close.
443 */
444 ccg->ccg_secsize = DEV_BSIZE;
445 ccg->ccg_ntracks = 1;
446 ccg->ccg_nsectors = 1024 * (1024 / ccg->ccg_secsize);
447 ccg->ccg_ncylinders = cs->sc_size / ccg->ccg_nsectors;
448
449 dg = &cs->sc_dkdev.dk_geom;
450 memset(dg, 0, sizeof(*dg));
451 dg->dg_secperunit = cs->sc_size;
452 dg->dg_secsize = ccg->ccg_secsize;
453 dg->dg_nsectors = ccg->ccg_nsectors;
454 dg->dg_ntracks = ccg->ccg_ntracks;
455 dg->dg_ncylinders = ccg->ccg_ncylinders;
456
457 if (cs->sc_ileave > 0)
458 aprint_normal("%s: Interleaving %d component%s "
459 "(%d block interleave)\n", cs->sc_xname,
460 cs->sc_nccdisks, (cs->sc_nccdisks != 0 ? "s" : ""),
461 cs->sc_ileave);
462 else
463 aprint_normal("%s: Concatenating %d component%s\n",
464 cs->sc_xname,
465 cs->sc_nccdisks, (cs->sc_nccdisks != 0 ? "s" : ""));
466 for (ix = 0; ix < cs->sc_nccdisks; ix++) {
467 ci = &cs->sc_cinfo[ix];
468 aprint_normal("%s: %s (%ju blocks)\n", cs->sc_xname,
469 ci->ci_path, (uintmax_t)ci->ci_size);
470 }
471 aprint_normal("%s: total %ju blocks\n", cs->sc_xname, cs->sc_size);
472
473 /*
474 * Create thread to handle deferred I/O.
475 */
476 cs->sc_zap = false;
477 error = kthread_create(PRI_BIO, KTHREAD_MPSAFE, NULL, ccdthread,
478 cs, &cs->sc_thread, "%s", cs->sc_xname);
479 if (error) {
480 printf("ccdinit: can't create thread: %d\n", error);
481 goto out;
482 }
483
484 /*
485 * Only now that everything is set up can we enable the device.
486 */
487 mutex_enter(cs->sc_iolock);
488 cs->sc_flags |= CCDF_INITED;
489 mutex_exit(cs->sc_iolock);
490 kmem_free(tmppath, MAXPATHLEN);
491 return (0);
492
493 out:
494 for (ix = 0; ix < path_alloced; ix++) {
495 kmem_free(cs->sc_cinfo[ix].ci_path,
496 cs->sc_cinfo[ix].ci_pathlen);
497 }
498 kmem_free(cs->sc_cinfo, cs->sc_nccdisks * sizeof(struct ccdcinfo));
499 kmem_free(tmppath, MAXPATHLEN);
500 return (error);
501 }
502
503 static void
504 ccdinterleave(struct ccd_softc *cs)
505 {
506 struct ccdcinfo *ci, *smallci;
507 struct ccdiinfo *ii;
508 daddr_t bn, lbn;
509 int ix;
510 u_long size;
511
512 #ifdef DEBUG
513 if (ccddebug & CCDB_INIT)
514 printf("ccdinterleave(%p): ileave %d\n", cs, cs->sc_ileave);
515 #endif
516 /*
517 * Allocate an interleave table.
518 * Chances are this is too big, but we don't care.
519 */
520 size = (cs->sc_nccdisks + 1) * sizeof(struct ccdiinfo);
521 cs->sc_itable = kmem_zalloc(size, KM_SLEEP);
522
523 /*
524 * Trivial case: no interleave (actually interleave of disk size).
525 * Each table entry represents a single component in its entirety.
526 */
527 if (cs->sc_ileave == 0) {
528 bn = 0;
529 ii = cs->sc_itable;
530
531 for (ix = 0; ix < cs->sc_nccdisks; ix++) {
532 /* Allocate space for ii_index. */
533 ii->ii_indexsz = sizeof(int);
534 ii->ii_index = kmem_alloc(ii->ii_indexsz, KM_SLEEP);
535 ii->ii_ndisk = 1;
536 ii->ii_startblk = bn;
537 ii->ii_startoff = 0;
538 ii->ii_index[0] = ix;
539 bn += cs->sc_cinfo[ix].ci_size;
540 ii++;
541 }
542 ii->ii_ndisk = 0;
543 #ifdef DEBUG
544 if (ccddebug & CCDB_INIT)
545 printiinfo(cs->sc_itable);
546 #endif
547 return;
548 }
549
550 /*
551 * The following isn't fast or pretty; it doesn't have to be.
552 */
553 size = 0;
554 bn = lbn = 0;
555 for (ii = cs->sc_itable; ; ii++) {
556 /* Allocate space for ii_index. */
557 ii->ii_indexsz = sizeof(int) * cs->sc_nccdisks;
558 ii->ii_index = kmem_alloc(ii->ii_indexsz, KM_SLEEP);
559
560 /*
561 * Locate the smallest of the remaining components
562 */
563 smallci = NULL;
564 for (ci = cs->sc_cinfo;
565 ci < &cs->sc_cinfo[cs->sc_nccdisks]; ci++)
566 if (ci->ci_size > size &&
567 (smallci == NULL ||
568 ci->ci_size < smallci->ci_size))
569 smallci = ci;
570
571 /*
572 * Nobody left, all done
573 */
574 if (smallci == NULL) {
575 ii->ii_ndisk = 0;
576 break;
577 }
578
579 /*
580 * Record starting logical block and component offset
581 */
582 ii->ii_startblk = bn / cs->sc_ileave;
583 ii->ii_startoff = lbn;
584
585 /*
586 * Determine how many disks take part in this interleave
587 * and record their indices.
588 */
589 ix = 0;
590 for (ci = cs->sc_cinfo;
591 ci < &cs->sc_cinfo[cs->sc_nccdisks]; ci++)
592 if (ci->ci_size >= smallci->ci_size)
593 ii->ii_index[ix++] = ci - cs->sc_cinfo;
594 ii->ii_ndisk = ix;
595 bn += ix * (smallci->ci_size - size);
596 lbn = smallci->ci_size / cs->sc_ileave;
597 size = smallci->ci_size;
598 }
599 #ifdef DEBUG
600 if (ccddebug & CCDB_INIT)
601 printiinfo(cs->sc_itable);
602 #endif
603 }
604
605 /* ARGSUSED */
606 static int
607 ccdopen(dev_t dev, int flags, int fmt, struct lwp *l)
608 {
609 int unit = ccdunit(dev);
610 struct ccd_softc *cs;
611 struct disklabel *lp;
612 int error = 0, part, pmask;
613
614 #ifdef DEBUG
615 if (ccddebug & CCDB_FOLLOW)
616 printf("ccdopen(0x%"PRIx64", 0x%x)\n", dev, flags);
617 #endif
618 if ((cs = ccdget(unit, 1)) == NULL)
619 return ENXIO;
620
621 mutex_enter(&cs->sc_dvlock);
622
623 lp = cs->sc_dkdev.dk_label;
624
625 part = DISKPART(dev);
626 pmask = (1 << part);
627
628 /*
629 * If we're initialized, check to see if there are any other
630 * open partitions. If not, then it's safe to update
631 * the in-core disklabel. Only read the disklabel if it is
632 * not already valid.
633 */
634 if ((cs->sc_flags & (CCDF_INITED|CCDF_VLABEL)) == CCDF_INITED &&
635 cs->sc_dkdev.dk_openmask == 0)
636 ccdgetdisklabel(dev);
637
638 /* Check that the partition exists. */
639 if (part != RAW_PART) {
640 if (((cs->sc_flags & CCDF_INITED) == 0) ||
641 ((part >= lp->d_npartitions) ||
642 (lp->d_partitions[part].p_fstype == FS_UNUSED))) {
643 error = ENXIO;
644 goto done;
645 }
646 }
647
648 /* Prevent our unit from being unconfigured while open. */
649 switch (fmt) {
650 case S_IFCHR:
651 cs->sc_dkdev.dk_copenmask |= pmask;
652 break;
653
654 case S_IFBLK:
655 cs->sc_dkdev.dk_bopenmask |= pmask;
656 break;
657 }
658 cs->sc_dkdev.dk_openmask =
659 cs->sc_dkdev.dk_copenmask | cs->sc_dkdev.dk_bopenmask;
660
661 done:
662 mutex_exit(&cs->sc_dvlock);
663 return (error);
664 }
665
666 /* ARGSUSED */
667 static int
668 ccdclose(dev_t dev, int flags, int fmt, struct lwp *l)
669 {
670 int unit = ccdunit(dev);
671 struct ccd_softc *cs;
672 int part;
673
674 #ifdef DEBUG
675 if (ccddebug & CCDB_FOLLOW)
676 printf("ccdclose(0x%"PRIx64", 0x%x)\n", dev, flags);
677 #endif
678
679 if ((cs = ccdget(unit, 0)) == NULL)
680 return ENXIO;
681
682 mutex_enter(&cs->sc_dvlock);
683
684 part = DISKPART(dev);
685
686 /* ...that much closer to allowing unconfiguration... */
687 switch (fmt) {
688 case S_IFCHR:
689 cs->sc_dkdev.dk_copenmask &= ~(1 << part);
690 break;
691
692 case S_IFBLK:
693 cs->sc_dkdev.dk_bopenmask &= ~(1 << part);
694 break;
695 }
696 cs->sc_dkdev.dk_openmask =
697 cs->sc_dkdev.dk_copenmask | cs->sc_dkdev.dk_bopenmask;
698
699 if (cs->sc_dkdev.dk_openmask == 0) {
700 if ((cs->sc_flags & CCDF_KLABEL) == 0)
701 cs->sc_flags &= ~CCDF_VLABEL;
702 }
703
704 mutex_exit(&cs->sc_dvlock);
705 return (0);
706 }
707
708 static bool
709 ccdbackoff(struct ccd_softc *cs)
710 {
711
712 /* XXX Arbitrary, should be a uvm call. */
713 return uvmexp.free < (uvmexp.freemin >> 1) &&
714 disk_isbusy(&cs->sc_dkdev);
715 }
716
717 static void
718 ccdthread(void *cookie)
719 {
720 struct ccd_softc *cs;
721
722 cs = cookie;
723
724 #ifdef DEBUG
725 if (ccddebug & CCDB_FOLLOW)
726 printf("ccdthread: hello\n");
727 #endif
728
729 mutex_enter(cs->sc_iolock);
730 while (__predict_true(!cs->sc_zap)) {
731 if (bufq_peek(cs->sc_bufq) == NULL) {
732 /* Nothing to do. */
733 cv_wait(&cs->sc_push, cs->sc_iolock);
734 continue;
735 }
736 if (ccdbackoff(cs)) {
737 /* Wait for memory to become available. */
738 (void)cv_timedwait(&cs->sc_push, cs->sc_iolock, 1);
739 continue;
740 }
741 #ifdef DEBUG
742 if (ccddebug & CCDB_FOLLOW)
743 printf("ccdthread: dispatching I/O\n");
744 #endif
745 ccdstart(cs);
746 mutex_enter(cs->sc_iolock);
747 }
748 cs->sc_thread = NULL;
749 mutex_exit(cs->sc_iolock);
750 #ifdef DEBUG
751 if (ccddebug & CCDB_FOLLOW)
752 printf("ccdthread: goodbye\n");
753 #endif
754 kthread_exit(0);
755 }
756
757 static void
758 ccdstrategy(struct buf *bp)
759 {
760 int unit = ccdunit(bp->b_dev);
761 struct ccd_softc *cs;
762 if ((cs = ccdget(unit, 0)) == NULL)
763 return;
764
765 /* Must be open or reading label. */
766 KASSERT(cs->sc_dkdev.dk_openmask != 0 ||
767 (cs->sc_flags & CCDF_RLABEL) != 0);
768
769 mutex_enter(cs->sc_iolock);
770 /* Synchronize with device init/uninit. */
771 if (__predict_false((cs->sc_flags & CCDF_INITED) == 0)) {
772 mutex_exit(cs->sc_iolock);
773 #ifdef DEBUG
774 if (ccddebug & CCDB_FOLLOW)
775 printf("ccdstrategy: unit %d: not inited\n", unit);
776 #endif
777 bp->b_error = ENXIO;
778 bp->b_resid = bp->b_bcount;
779 biodone(bp);
780 return;
781 }
782
783 /* Defer to thread if system is low on memory. */
784 bufq_put(cs->sc_bufq, bp);
785 if (__predict_false(ccdbackoff(cs))) {
786 mutex_exit(cs->sc_iolock);
787 #ifdef DEBUG
788 if (ccddebug & CCDB_FOLLOW)
789 printf("ccdstrategy: holding off on I/O\n");
790 #endif
791 return;
792 }
793 ccdstart(cs);
794 }
795
796 static void
797 ccdstart(struct ccd_softc *cs)
798 {
799 daddr_t blkno;
800 int wlabel;
801 struct disklabel *lp;
802 long bcount, rcount;
803 struct ccdbuf *cbp;
804 char *addr;
805 daddr_t bn;
806 vnode_t *vp;
807 buf_t *bp;
808
809 KASSERT(mutex_owned(cs->sc_iolock));
810
811 bp = bufq_get(cs->sc_bufq);
812 KASSERT(bp != NULL);
813
814 disk_busy(&cs->sc_dkdev);
815
816 #ifdef DEBUG
817 if (ccddebug & CCDB_FOLLOW)
818 printf("ccdstart(%s, %p)\n", cs->sc_xname, bp);
819 #endif
820
821 /* If it's a nil transfer, wake up the top half now. */
822 if (bp->b_bcount == 0)
823 goto done;
824
825 lp = cs->sc_dkdev.dk_label;
826
827 /*
828 * Do bounds checking and adjust transfer. If there's an
829 * error, the bounds check will flag that for us. Convert
830 * the partition relative block number to an absolute.
831 */
832 blkno = bp->b_blkno;
833 wlabel = cs->sc_flags & (CCDF_WLABEL|CCDF_LABELLING);
834 if (DISKPART(bp->b_dev) != RAW_PART) {
835 if (bounds_check_with_label(&cs->sc_dkdev, bp, wlabel) <= 0)
836 goto done;
837 blkno += lp->d_partitions[DISKPART(bp->b_dev)].p_offset;
838 }
839 mutex_exit(cs->sc_iolock);
840 bp->b_rawblkno = blkno;
841
842 /* Allocate the component buffers and start I/O! */
843 bp->b_resid = bp->b_bcount;
844 bn = bp->b_rawblkno;
845 addr = bp->b_data;
846 for (bcount = bp->b_bcount; bcount > 0; bcount -= rcount) {
847 cbp = ccdbuffer(cs, bp, bn, addr, bcount);
848 rcount = cbp->cb_buf.b_bcount;
849 bn += btodb(rcount);
850 addr += rcount;
851 vp = cbp->cb_buf.b_vp;
852 if ((cbp->cb_buf.b_flags & B_READ) == 0) {
853 mutex_enter(vp->v_interlock);
854 vp->v_numoutput++;
855 mutex_exit(vp->v_interlock);
856 }
857 (void)VOP_STRATEGY(vp, &cbp->cb_buf);
858 }
859 return;
860
861 done:
862 disk_unbusy(&cs->sc_dkdev, 0, 0);
863 cv_broadcast(&cs->sc_stop);
864 cv_broadcast(&cs->sc_push);
865 mutex_exit(cs->sc_iolock);
866 bp->b_resid = bp->b_bcount;
867 biodone(bp);
868 }
869
870 /*
871 * Build a component buffer header.
872 */
873 static struct ccdbuf *
874 ccdbuffer(struct ccd_softc *cs, struct buf *bp, daddr_t bn, void *addr,
875 long bcount)
876 {
877 struct ccdcinfo *ci;
878 struct ccdbuf *cbp;
879 daddr_t cbn, cboff;
880 u_int64_t cbc;
881 int ccdisk;
882
883 #ifdef DEBUG
884 if (ccddebug & CCDB_IO)
885 printf("ccdbuffer(%p, %p, %" PRId64 ", %p, %ld)\n",
886 cs, bp, bn, addr, bcount);
887 #endif
888 /*
889 * Determine which component bn falls in.
890 */
891 cbn = bn;
892 cboff = 0;
893
894 /*
895 * Serially concatenated
896 */
897 if (cs->sc_ileave == 0) {
898 daddr_t sblk;
899
900 sblk = 0;
901 for (ccdisk = 0, ci = &cs->sc_cinfo[ccdisk];
902 cbn >= sblk + ci->ci_size;
903 ccdisk++, ci = &cs->sc_cinfo[ccdisk])
904 sblk += ci->ci_size;
905 cbn -= sblk;
906 }
907 /*
908 * Interleaved
909 */
910 else {
911 struct ccdiinfo *ii;
912 int off;
913
914 cboff = cbn % cs->sc_ileave;
915 cbn /= cs->sc_ileave;
916 for (ii = cs->sc_itable; ii->ii_ndisk; ii++)
917 if (ii->ii_startblk > cbn)
918 break;
919 ii--;
920 off = cbn - ii->ii_startblk;
921 if (ii->ii_ndisk == 1) {
922 ccdisk = ii->ii_index[0];
923 cbn = ii->ii_startoff + off;
924 } else {
925 ccdisk = ii->ii_index[off % ii->ii_ndisk];
926 cbn = ii->ii_startoff + off / ii->ii_ndisk;
927 }
928 cbn *= cs->sc_ileave;
929 ci = &cs->sc_cinfo[ccdisk];
930 }
931
932 /*
933 * Fill in the component buf structure.
934 */
935 cbp = CCD_GETBUF();
936 KASSERT(cbp != NULL);
937 buf_init(&cbp->cb_buf);
938 cbp->cb_buf.b_flags = bp->b_flags;
939 cbp->cb_buf.b_oflags = bp->b_oflags;
940 cbp->cb_buf.b_cflags = bp->b_cflags;
941 cbp->cb_buf.b_iodone = ccdiodone;
942 cbp->cb_buf.b_proc = bp->b_proc;
943 cbp->cb_buf.b_dev = ci->ci_dev;
944 cbp->cb_buf.b_blkno = cbn + cboff;
945 cbp->cb_buf.b_data = addr;
946 cbp->cb_buf.b_vp = ci->ci_vp;
947 cbp->cb_buf.b_objlock = ci->ci_vp->v_interlock;
948 if (cs->sc_ileave == 0)
949 cbc = dbtob((u_int64_t)(ci->ci_size - cbn));
950 else
951 cbc = dbtob((u_int64_t)(cs->sc_ileave - cboff));
952 cbp->cb_buf.b_bcount = cbc < bcount ? cbc : bcount;
953
954 /*
955 * context for ccdiodone
956 */
957 cbp->cb_obp = bp;
958 cbp->cb_sc = cs;
959 cbp->cb_comp = ccdisk;
960
961 BIO_COPYPRIO(&cbp->cb_buf, bp);
962
963 #ifdef DEBUG
964 if (ccddebug & CCDB_IO)
965 printf(" dev 0x%"PRIx64"(u%lu): cbp %p bn %" PRId64 " addr %p"
966 " bcnt %d\n",
967 ci->ci_dev, (unsigned long) (ci-cs->sc_cinfo), cbp,
968 cbp->cb_buf.b_blkno, cbp->cb_buf.b_data,
969 cbp->cb_buf.b_bcount);
970 #endif
971
972 return (cbp);
973 }
974
975 /*
976 * Called at interrupt time.
977 * Mark the component as done and if all components are done,
978 * take a ccd interrupt.
979 */
980 static void
981 ccdiodone(struct buf *vbp)
982 {
983 struct ccdbuf *cbp = (struct ccdbuf *) vbp;
984 struct buf *bp = cbp->cb_obp;
985 struct ccd_softc *cs = cbp->cb_sc;
986 int count;
987
988 #ifdef DEBUG
989 if (ccddebug & CCDB_FOLLOW)
990 printf("ccdiodone(%p)\n", cbp);
991 if (ccddebug & CCDB_IO) {
992 printf("ccdiodone: bp %p bcount %d resid %d\n",
993 bp, bp->b_bcount, bp->b_resid);
994 printf(" dev 0x%"PRIx64"(u%d), cbp %p bn %" PRId64 " addr %p"
995 " bcnt %d\n",
996 cbp->cb_buf.b_dev, cbp->cb_comp, cbp,
997 cbp->cb_buf.b_blkno, cbp->cb_buf.b_data,
998 cbp->cb_buf.b_bcount);
999 }
1000 #endif
1001
1002 if (cbp->cb_buf.b_error != 0) {
1003 bp->b_error = cbp->cb_buf.b_error;
1004 printf("%s: error %d on component %d\n",
1005 cs->sc_xname, bp->b_error, cbp->cb_comp);
1006 }
1007 count = cbp->cb_buf.b_bcount;
1008 buf_destroy(&cbp->cb_buf);
1009 CCD_PUTBUF(cbp);
1010
1011 /*
1012 * If all done, "interrupt".
1013 */
1014 mutex_enter(cs->sc_iolock);
1015 bp->b_resid -= count;
1016 if (bp->b_resid < 0)
1017 panic("ccdiodone: count");
1018 if (bp->b_resid == 0) {
1019 /*
1020 * Request is done for better or worse, wakeup the top half.
1021 */
1022 if (bp->b_error != 0)
1023 bp->b_resid = bp->b_bcount;
1024 disk_unbusy(&cs->sc_dkdev, (bp->b_bcount - bp->b_resid),
1025 (bp->b_flags & B_READ));
1026 if (!disk_isbusy(&cs->sc_dkdev)) {
1027 if (bufq_peek(cs->sc_bufq) != NULL) {
1028 cv_broadcast(&cs->sc_push);
1029 }
1030 cv_broadcast(&cs->sc_stop);
1031 }
1032 mutex_exit(cs->sc_iolock);
1033 biodone(bp);
1034 } else
1035 mutex_exit(cs->sc_iolock);
1036 }
1037
1038 /* ARGSUSED */
1039 static int
1040 ccdread(dev_t dev, struct uio *uio, int flags)
1041 {
1042 int unit = ccdunit(dev);
1043 struct ccd_softc *cs;
1044
1045 #ifdef DEBUG
1046 if (ccddebug & CCDB_FOLLOW)
1047 printf("ccdread(0x%"PRIx64", %p)\n", dev, uio);
1048 #endif
1049 if ((cs = ccdget(unit, 0)) == NULL)
1050 return 0;
1051
1052 /* Unlocked advisory check, ccdstrategy check is synchronous. */
1053 if ((cs->sc_flags & CCDF_INITED) == 0)
1054 return (ENXIO);
1055
1056 return (physio(ccdstrategy, NULL, dev, B_READ, minphys, uio));
1057 }
1058
1059 /* ARGSUSED */
1060 static int
1061 ccdwrite(dev_t dev, struct uio *uio, int flags)
1062 {
1063 int unit = ccdunit(dev);
1064 struct ccd_softc *cs;
1065
1066 #ifdef DEBUG
1067 if (ccddebug & CCDB_FOLLOW)
1068 printf("ccdwrite(0x%"PRIx64", %p)\n", dev, uio);
1069 #endif
1070 if ((cs = ccdget(unit, 0)) == NULL)
1071 return ENOENT;
1072
1073 /* Unlocked advisory check, ccdstrategy check is synchronous. */
1074 if ((cs->sc_flags & CCDF_INITED) == 0)
1075 return (ENXIO);
1076
1077 return (physio(ccdstrategy, NULL, dev, B_WRITE, minphys, uio));
1078 }
1079
1080 static int
1081 ccdioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l)
1082 {
1083 int unit = ccdunit(dev);
1084 int i, j, lookedup = 0, error = 0;
1085 int part, pmask, make;
1086 struct ccd_softc *cs;
1087 struct ccd_ioctl *ccio = (struct ccd_ioctl *)data;
1088 kauth_cred_t uc;
1089 char **cpp;
1090 struct pathbuf *pb;
1091 struct vnode **vpp;
1092 #ifdef __HAVE_OLD_DISKLABEL
1093 struct disklabel newlabel;
1094 #endif
1095
1096 switch (cmd) {
1097 case CCDIOCSET:
1098 make = 1;
1099 break;
1100 default:
1101 if ((*compat_ccd_ioctl_60)(0, cmd, NULL, 0, NULL, NULL) == 0)
1102 make = 1;
1103 else
1104 make = 0;
1105 break;
1106 }
1107
1108 if ((cs = ccdget(unit, make)) == NULL)
1109 return ENOENT;
1110 uc = kauth_cred_get();
1111
1112 error = (*compat_ccd_ioctl_60)(dev, cmd, data, flag, l, ccdioctl);
1113 if (error != ENOSYS)
1114 return error;
1115
1116 /* Must be open for writes for these commands... */
1117 switch (cmd) {
1118 case CCDIOCSET:
1119 case CCDIOCCLR:
1120 case DIOCSDINFO:
1121 case DIOCWDINFO:
1122 case DIOCCACHESYNC:
1123 case DIOCAWEDGE:
1124 case DIOCDWEDGE:
1125 case DIOCMWEDGES:
1126 #ifdef __HAVE_OLD_DISKLABEL
1127 case ODIOCSDINFO:
1128 case ODIOCWDINFO:
1129 #endif
1130 case DIOCKLABEL:
1131 case DIOCWLABEL:
1132 if ((flag & FWRITE) == 0)
1133 return (EBADF);
1134 }
1135
1136 mutex_enter(&cs->sc_dvlock);
1137
1138 /* Must be initialized for these... */
1139 switch (cmd) {
1140 case CCDIOCCLR:
1141 case DIOCGDINFO:
1142 case DIOCGSTRATEGY:
1143 case DIOCGCACHE:
1144 case DIOCCACHESYNC:
1145 case DIOCAWEDGE:
1146 case DIOCDWEDGE:
1147 case DIOCLWEDGES:
1148 case DIOCMWEDGES:
1149 case DIOCSDINFO:
1150 case DIOCWDINFO:
1151 case DIOCGPARTINFO:
1152 case DIOCWLABEL:
1153 case DIOCKLABEL:
1154 case DIOCGDEFLABEL:
1155 #ifdef __HAVE_OLD_DISKLABEL
1156 case ODIOCGDINFO:
1157 case ODIOCSDINFO:
1158 case ODIOCWDINFO:
1159 case ODIOCGDEFLABEL:
1160 #endif
1161 if ((cs->sc_flags & CCDF_INITED) == 0) {
1162 error = ENXIO;
1163 goto out;
1164 }
1165 }
1166
1167 error = disk_ioctl(&cs->sc_dkdev, dev, cmd, data, flag, l);
1168 if (error != EPASSTHROUGH)
1169 goto out;
1170
1171 error = 0;
1172 switch (cmd) {
1173 case CCDIOCSET:
1174 if (cs->sc_flags & CCDF_INITED) {
1175 error = EBUSY;
1176 goto out;
1177 }
1178
1179 /* Validate the flags. */
1180 if ((ccio->ccio_flags & CCDF_USERMASK) != ccio->ccio_flags) {
1181 error = EINVAL;
1182 goto out;
1183 }
1184
1185 if (ccio->ccio_ndisks > CCD_MAXNDISKS ||
1186 ccio->ccio_ndisks == 0) {
1187 error = EINVAL;
1188 goto out;
1189 }
1190
1191 /* Fill in some important bits. */
1192 cs->sc_ileave = ccio->ccio_ileave;
1193 cs->sc_nccdisks = ccio->ccio_ndisks;
1194 cs->sc_flags = ccio->ccio_flags & CCDF_USERMASK;
1195
1196 /*
1197 * Allocate space for and copy in the array of
1198 * component pathnames and device numbers.
1199 */
1200 cpp = kmem_alloc(ccio->ccio_ndisks * sizeof(*cpp), KM_SLEEP);
1201 vpp = kmem_alloc(ccio->ccio_ndisks * sizeof(*vpp), KM_SLEEP);
1202 error = copyin(ccio->ccio_disks, cpp,
1203 ccio->ccio_ndisks * sizeof(*cpp));
1204 if (error) {
1205 kmem_free(vpp, ccio->ccio_ndisks * sizeof(*vpp));
1206 kmem_free(cpp, ccio->ccio_ndisks * sizeof(*cpp));
1207 goto out;
1208 }
1209
1210 #ifdef DEBUG
1211 if (ccddebug & CCDB_INIT)
1212 for (i = 0; i < ccio->ccio_ndisks; ++i)
1213 printf("ccdioctl: component %d: %p\n",
1214 i, cpp[i]);
1215 #endif
1216
1217 for (i = 0; i < ccio->ccio_ndisks; ++i) {
1218 #ifdef DEBUG
1219 if (ccddebug & CCDB_INIT)
1220 printf("ccdioctl: lookedup = %d\n", lookedup);
1221 #endif
1222 error = pathbuf_copyin(cpp[i], &pb);
1223 if (error == 0) {
1224 error = dk_lookup(pb, l, &vpp[i]);
1225 }
1226 pathbuf_destroy(pb);
1227 if (error != 0) {
1228 for (j = 0; j < lookedup; ++j)
1229 (void)vn_close(vpp[j], FREAD|FWRITE,
1230 uc);
1231 kmem_free(vpp, ccio->ccio_ndisks *
1232 sizeof(*vpp));
1233 kmem_free(cpp, ccio->ccio_ndisks *
1234 sizeof(*cpp));
1235 goto out;
1236 }
1237 ++lookedup;
1238 }
1239
1240 /* Attach the disk. */
1241 disk_attach(&cs->sc_dkdev);
1242 bufq_alloc(&cs->sc_bufq, "fcfs", 0);
1243
1244 /*
1245 * Initialize the ccd. Fills in the softc for us.
1246 */
1247 if ((error = ccdinit(cs, cpp, vpp, l)) != 0) {
1248 for (j = 0; j < lookedup; ++j)
1249 (void)vn_close(vpp[j], FREAD|FWRITE,
1250 uc);
1251 kmem_free(vpp, ccio->ccio_ndisks * sizeof(*vpp));
1252 kmem_free(cpp, ccio->ccio_ndisks * sizeof(*cpp));
1253 disk_detach(&cs->sc_dkdev);
1254 mutex_exit(&cs->sc_dvlock);
1255 bufq_free(cs->sc_bufq);
1256 return error;
1257 }
1258
1259 /* We can free the temporary variables now. */
1260 kmem_free(vpp, ccio->ccio_ndisks * sizeof(*vpp));
1261 kmem_free(cpp, ccio->ccio_ndisks * sizeof(*cpp));
1262
1263 /*
1264 * The ccd has been successfully initialized, so
1265 * we can place it into the array. Don't try to
1266 * read the disklabel until the disk has been attached,
1267 * because space for the disklabel is allocated
1268 * in disk_attach();
1269 */
1270 ccio->ccio_unit = unit;
1271 ccio->ccio_size = cs->sc_size;
1272
1273 /* Try and read the disklabel. */
1274 ccdgetdisklabel(dev);
1275 disk_set_info(NULL, &cs->sc_dkdev, NULL);
1276
1277 /* discover wedges */
1278 mutex_exit(&cs->sc_dvlock);
1279 dkwedge_discover(&cs->sc_dkdev);
1280 return 0;
1281
1282 case CCDIOCCLR:
1283 /*
1284 * Don't unconfigure if any other partitions are open
1285 * or if both the character and block flavors of this
1286 * partition are open.
1287 */
1288 part = DISKPART(dev);
1289 pmask = (1 << part);
1290 if ((cs->sc_dkdev.dk_openmask & ~pmask) ||
1291 ((cs->sc_dkdev.dk_bopenmask & pmask) &&
1292 (cs->sc_dkdev.dk_copenmask & pmask))) {
1293 error = EBUSY;
1294 goto out;
1295 }
1296
1297 /* Delete all of our wedges. */
1298 dkwedge_delall(&cs->sc_dkdev);
1299
1300 /* Stop new I/O, wait for in-flight I/O to complete. */
1301 mutex_enter(cs->sc_iolock);
1302 cs->sc_flags &= ~(CCDF_INITED|CCDF_VLABEL);
1303 cs->sc_zap = true;
1304 while (disk_isbusy(&cs->sc_dkdev) ||
1305 bufq_peek(cs->sc_bufq) != NULL ||
1306 cs->sc_thread != NULL) {
1307 cv_broadcast(&cs->sc_push);
1308 (void)cv_timedwait(&cs->sc_stop, cs->sc_iolock, hz);
1309 }
1310 mutex_exit(cs->sc_iolock);
1311
1312 /*
1313 * Free ccd_softc information and clear entry.
1314 */
1315
1316 /* Close the components and free their pathnames. */
1317 for (i = 0; i < cs->sc_nccdisks; ++i) {
1318 /*
1319 * XXX: this close could potentially fail and
1320 * cause Bad Things. Maybe we need to force
1321 * the close to happen?
1322 */
1323 #ifdef DEBUG
1324 if (ccddebug & CCDB_VNODE)
1325 vprint("CCDIOCCLR: vnode info",
1326 cs->sc_cinfo[i].ci_vp);
1327 #endif
1328 (void)vn_close(cs->sc_cinfo[i].ci_vp, FREAD|FWRITE,
1329 uc);
1330 kmem_free(cs->sc_cinfo[i].ci_path,
1331 cs->sc_cinfo[i].ci_pathlen);
1332 }
1333
1334 /* Free interleave index. */
1335 for (i = 0; cs->sc_itable[i].ii_ndisk; ++i) {
1336 kmem_free(cs->sc_itable[i].ii_index,
1337 cs->sc_itable[i].ii_indexsz);
1338 }
1339
1340 /* Free component info and interleave table. */
1341 kmem_free(cs->sc_cinfo, cs->sc_nccdisks *
1342 sizeof(struct ccdcinfo));
1343 kmem_free(cs->sc_itable, (cs->sc_nccdisks + 1) *
1344 sizeof(struct ccdiinfo));
1345
1346 aprint_normal("%s: detached\n", cs->sc_xname);
1347
1348 /* Detach the disk. */
1349 disk_detach(&cs->sc_dkdev);
1350 bufq_free(cs->sc_bufq);
1351 ccdput(cs);
1352 /* Don't break, otherwise cs is read again. */
1353 return 0;
1354
1355 case DIOCGSTRATEGY:
1356 {
1357 struct disk_strategy *dks = (void *)data;
1358
1359 mutex_enter(cs->sc_iolock);
1360 if (cs->sc_bufq != NULL)
1361 strlcpy(dks->dks_name,
1362 bufq_getstrategyname(cs->sc_bufq),
1363 sizeof(dks->dks_name));
1364 else
1365 error = EINVAL;
1366 mutex_exit(cs->sc_iolock);
1367 dks->dks_paramlen = 0;
1368 break;
1369 }
1370
1371 case DIOCGCACHE:
1372 {
1373 int dkcache = 0;
1374
1375 /*
1376 * We pass this call down to all components and report
1377 * intersection of the flags returned by the components.
1378 * If any errors out, we return error. CCD components
1379 * can not change unless the device is unconfigured, so
1380 * device feature flags will remain static. RCE/WCE can change
1381 * of course, if set directly on underlying device.
1382 */
1383 for (error = 0, i = 0; i < cs->sc_nccdisks; i++) {
1384 error = VOP_IOCTL(cs->sc_cinfo[i].ci_vp, cmd, &j,
1385 flag, uc);
1386 if (error)
1387 break;
1388
1389 if (i == 0)
1390 dkcache = j;
1391 else
1392 dkcache = DKCACHE_COMBINE(dkcache, j);
1393 }
1394
1395 *((int *)data) = dkcache;
1396 break;
1397 }
1398
1399 case DIOCCACHESYNC:
1400 /*
1401 * We pass this call down to all components and report
1402 * the first error we encounter.
1403 */
1404 for (error = 0, i = 0; i < cs->sc_nccdisks; i++) {
1405 j = VOP_IOCTL(cs->sc_cinfo[i].ci_vp, cmd, data,
1406 flag, uc);
1407 if (j != 0 && error == 0)
1408 error = j;
1409 }
1410 break;
1411
1412 case DIOCWDINFO:
1413 case DIOCSDINFO:
1414 #ifdef __HAVE_OLD_DISKLABEL
1415 case ODIOCWDINFO:
1416 case ODIOCSDINFO:
1417 #endif
1418 {
1419 struct disklabel *lp;
1420 #ifdef __HAVE_OLD_DISKLABEL
1421 if (cmd == ODIOCSDINFO || cmd == ODIOCWDINFO) {
1422 memset(&newlabel, 0, sizeof newlabel);
1423 memcpy(&newlabel, data, sizeof (struct olddisklabel));
1424 lp = &newlabel;
1425 } else
1426 #endif
1427 lp = (struct disklabel *)data;
1428
1429 cs->sc_flags |= CCDF_LABELLING;
1430
1431 error = setdisklabel(cs->sc_dkdev.dk_label,
1432 lp, 0, cs->sc_dkdev.dk_cpulabel);
1433 if (error == 0) {
1434 if (cmd == DIOCWDINFO
1435 #ifdef __HAVE_OLD_DISKLABEL
1436 || cmd == ODIOCWDINFO
1437 #endif
1438 )
1439 error = writedisklabel(CCDLABELDEV(dev),
1440 ccdstrategy, cs->sc_dkdev.dk_label,
1441 cs->sc_dkdev.dk_cpulabel);
1442 }
1443
1444 cs->sc_flags &= ~CCDF_LABELLING;
1445 break;
1446 }
1447
1448 case DIOCKLABEL:
1449 if (*(int *)data != 0)
1450 cs->sc_flags |= CCDF_KLABEL;
1451 else
1452 cs->sc_flags &= ~CCDF_KLABEL;
1453 break;
1454
1455 case DIOCWLABEL:
1456 if (*(int *)data != 0)
1457 cs->sc_flags |= CCDF_WLABEL;
1458 else
1459 cs->sc_flags &= ~CCDF_WLABEL;
1460 break;
1461
1462 case DIOCGDEFLABEL:
1463 ccdgetdefaultlabel(cs, (struct disklabel *)data);
1464 break;
1465
1466 #ifdef __HAVE_OLD_DISKLABEL
1467 case ODIOCGDEFLABEL:
1468 ccdgetdefaultlabel(cs, &newlabel);
1469 if (newlabel.d_npartitions > OLDMAXPARTITIONS)
1470 return ENOTTY;
1471 memcpy(data, &newlabel, sizeof (struct olddisklabel));
1472 break;
1473 #endif
1474
1475 default:
1476 error = ENOTTY;
1477 }
1478
1479 out:
1480 mutex_exit(&cs->sc_dvlock);
1481 return (error);
1482 }
1483
1484 static int
1485 ccdsize(dev_t dev)
1486 {
1487 struct ccd_softc *cs;
1488 struct disklabel *lp;
1489 int part, unit, omask, size;
1490
1491 unit = ccdunit(dev);
1492 if ((cs = ccdget(unit, 0)) == NULL)
1493 return -1;
1494
1495 if ((cs->sc_flags & CCDF_INITED) == 0)
1496 return (-1);
1497
1498 part = DISKPART(dev);
1499 omask = cs->sc_dkdev.dk_openmask & (1 << part);
1500 lp = cs->sc_dkdev.dk_label;
1501
1502 if (omask == 0 && ccdopen(dev, 0, S_IFBLK, curlwp))
1503 return (-1);
1504
1505 if (lp->d_partitions[part].p_fstype != FS_SWAP)
1506 size = -1;
1507 else
1508 size = lp->d_partitions[part].p_size *
1509 (lp->d_secsize / DEV_BSIZE);
1510
1511 if (omask == 0 && ccdclose(dev, 0, S_IFBLK, curlwp))
1512 return (-1);
1513
1514 return (size);
1515 }
1516
1517 static void
1518 ccdgetdefaultlabel(struct ccd_softc *cs, struct disklabel *lp)
1519 {
1520 struct ccdgeom *ccg = &cs->sc_geom;
1521
1522 memset(lp, 0, sizeof(*lp));
1523
1524 if (cs->sc_size > UINT32_MAX)
1525 lp->d_secperunit = UINT32_MAX;
1526 else
1527 lp->d_secperunit = cs->sc_size;
1528 lp->d_secsize = ccg->ccg_secsize;
1529 lp->d_nsectors = ccg->ccg_nsectors;
1530 lp->d_ntracks = ccg->ccg_ntracks;
1531 lp->d_ncylinders = ccg->ccg_ncylinders;
1532 lp->d_secpercyl = lp->d_ntracks * lp->d_nsectors;
1533
1534 strncpy(lp->d_typename, "ccd", sizeof(lp->d_typename));
1535 lp->d_type = DKTYPE_CCD;
1536 strncpy(lp->d_packname, "fictitious", sizeof(lp->d_packname));
1537 lp->d_rpm = 3600;
1538 lp->d_interleave = 1;
1539 lp->d_flags = 0;
1540
1541 lp->d_partitions[RAW_PART].p_offset = 0;
1542 lp->d_partitions[RAW_PART].p_size = lp->d_secperunit;
1543 lp->d_partitions[RAW_PART].p_fstype = FS_UNUSED;
1544 lp->d_npartitions = RAW_PART + 1;
1545
1546 lp->d_magic = DISKMAGIC;
1547 lp->d_magic2 = DISKMAGIC;
1548 lp->d_checksum = dkcksum(cs->sc_dkdev.dk_label);
1549 }
1550
1551 /*
1552 * Read the disklabel from the ccd. If one is not present, fake one
1553 * up.
1554 */
1555 static void
1556 ccdgetdisklabel(dev_t dev)
1557 {
1558 int unit = ccdunit(dev);
1559 struct ccd_softc *cs;
1560 const char *errstring;
1561 struct disklabel *lp;
1562 struct cpu_disklabel *clp;
1563
1564 if ((cs = ccdget(unit, 0)) == NULL)
1565 return;
1566 lp = cs->sc_dkdev.dk_label;
1567 clp = cs->sc_dkdev.dk_cpulabel;
1568 KASSERT(mutex_owned(&cs->sc_dvlock));
1569
1570 memset(clp, 0, sizeof(*clp));
1571
1572 ccdgetdefaultlabel(cs, lp);
1573
1574 /*
1575 * Call the generic disklabel extraction routine.
1576 */
1577 cs->sc_flags |= CCDF_RLABEL;
1578 if ((cs->sc_flags & CCDF_NOLABEL) != 0)
1579 errstring = "CCDF_NOLABEL set; ignoring on-disk label";
1580 else
1581 errstring = readdisklabel(CCDLABELDEV(dev), ccdstrategy,
1582 cs->sc_dkdev.dk_label, cs->sc_dkdev.dk_cpulabel);
1583 if (errstring)
1584 ccdmakedisklabel(cs);
1585 else {
1586 int i;
1587 struct partition *pp;
1588
1589 /*
1590 * Sanity check whether the found disklabel is valid.
1591 *
1592 * This is necessary since total size of ccd may vary
1593 * when an interleave is changed even though exactly
1594 * same componets are used, and old disklabel may used
1595 * if that is found.
1596 */
1597 if (lp->d_secperunit < UINT32_MAX ?
1598 lp->d_secperunit != cs->sc_size :
1599 lp->d_secperunit > cs->sc_size)
1600 printf("WARNING: %s: "
1601 "total sector size in disklabel (%ju) != "
1602 "the size of ccd (%ju)\n", cs->sc_xname,
1603 (uintmax_t)lp->d_secperunit,
1604 (uintmax_t)cs->sc_size);
1605 for (i = 0; i < lp->d_npartitions; i++) {
1606 pp = &lp->d_partitions[i];
1607 if (pp->p_offset + pp->p_size > cs->sc_size)
1608 printf("WARNING: %s: end of partition `%c' "
1609 "exceeds the size of ccd (%ju)\n",
1610 cs->sc_xname, 'a' + i, (uintmax_t)cs->sc_size);
1611 }
1612 }
1613
1614 #ifdef DEBUG
1615 /* It's actually extremely common to have unlabeled ccds. */
1616 if (ccddebug & CCDB_LABEL)
1617 if (errstring != NULL)
1618 printf("%s: %s\n", cs->sc_xname, errstring);
1619 #endif
1620
1621 /* In-core label now valid. */
1622 cs->sc_flags = (cs->sc_flags | CCDF_VLABEL) & ~CCDF_RLABEL;
1623 }
1624
1625 /*
1626 * Take care of things one might want to take care of in the event
1627 * that a disklabel isn't present.
1628 */
1629 static void
1630 ccdmakedisklabel(struct ccd_softc *cs)
1631 {
1632 struct disklabel *lp = cs->sc_dkdev.dk_label;
1633
1634 /*
1635 * For historical reasons, if there's no disklabel present
1636 * the raw partition must be marked FS_BSDFFS.
1637 */
1638 lp->d_partitions[RAW_PART].p_fstype = FS_BSDFFS;
1639
1640 strncpy(lp->d_packname, "default label", sizeof(lp->d_packname));
1641
1642 lp->d_checksum = dkcksum(lp);
1643 }
1644
1645 #ifdef DEBUG
1646 static void
1647 printiinfo(struct ccdiinfo *ii)
1648 {
1649 int ix, i;
1650
1651 for (ix = 0; ii->ii_ndisk; ix++, ii++) {
1652 printf(" itab[%d]: #dk %d sblk %" PRId64 " soff %" PRId64,
1653 ix, ii->ii_ndisk, ii->ii_startblk, ii->ii_startoff);
1654 for (i = 0; i < ii->ii_ndisk; i++)
1655 printf(" %d", ii->ii_index[i]);
1656 printf("\n");
1657 }
1658 }
1659 #endif
1660
1661 MODULE(MODULE_CLASS_DRIVER, ccd, "dk_subr,bufq_fcfs");
1662
1663 static int
1664 ccd_modcmd(modcmd_t cmd, void *arg)
1665 {
1666 int error = 0;
1667 #ifdef _MODULE
1668 int bmajor = -1, cmajor = -1;
1669 #endif
1670
1671
1672 switch (cmd) {
1673 case MODULE_CMD_INIT:
1674 #ifdef _MODULE
1675 ccdattach(0);
1676
1677 error = devsw_attach("ccd", &ccd_bdevsw, &bmajor,
1678 &ccd_cdevsw, &cmajor);
1679 sysctl_kern_ccd_setup(&ccd_clog);
1680 #endif
1681 break;
1682
1683 case MODULE_CMD_FINI:
1684 #ifdef _MODULE
1685 mutex_enter(&ccd_lock);
1686 if (!LIST_EMPTY(&ccds)) {
1687 mutex_exit(&ccd_lock);
1688 error = EBUSY;
1689 } else {
1690 mutex_exit(&ccd_lock);
1691 error = devsw_detach(&ccd_bdevsw, &ccd_cdevsw);
1692 ccddetach();
1693 }
1694 sysctl_teardown(&ccd_clog);
1695 #endif
1696 break;
1697
1698 case MODULE_CMD_STAT:
1699 return ENOTTY;
1700
1701 default:
1702 return ENOTTY;
1703 }
1704
1705 return error;
1706 }
1707
1708 static int
1709 ccd_units_sysctl(SYSCTLFN_ARGS)
1710 {
1711 struct sysctlnode node;
1712 struct ccd_softc *sc;
1713 int error, i, nccd, *units;
1714 size_t size;
1715
1716 nccd = 0;
1717 mutex_enter(&ccd_lock);
1718 LIST_FOREACH(sc, &ccds, sc_link)
1719 nccd++;
1720 mutex_exit(&ccd_lock);
1721
1722 if (nccd != 0) {
1723 size = nccd * sizeof(*units);
1724 units = kmem_zalloc(size, KM_SLEEP);
1725 i = 0;
1726 mutex_enter(&ccd_lock);
1727 LIST_FOREACH(sc, &ccds, sc_link) {
1728 if (i >= nccd)
1729 break;
1730 units[i] = sc->sc_unit;
1731 }
1732 mutex_exit(&ccd_lock);
1733 } else {
1734 units = NULL;
1735 size = 0;
1736 }
1737
1738 node = *rnode;
1739 node.sysctl_data = units;
1740 node.sysctl_size = size;
1741
1742 error = sysctl_lookup(SYSCTLFN_CALL(&node));
1743 if (units)
1744 kmem_free(units, size);
1745 return error;
1746 }
1747
1748 static int
1749 ccd_info_sysctl(SYSCTLFN_ARGS)
1750 {
1751 struct sysctlnode node;
1752 struct ccddiskinfo ccd;
1753 struct ccd_softc *sc;
1754 int unit;
1755
1756 if (newp == NULL || newlen != sizeof(int))
1757 return EINVAL;
1758
1759 unit = *(const int *)newp;
1760 newp = NULL;
1761 newlen = 0;
1762 ccd.ccd_ndisks = ~0;
1763 mutex_enter(&ccd_lock);
1764 LIST_FOREACH(sc, &ccds, sc_link) {
1765 if (sc->sc_unit == unit) {
1766 ccd.ccd_ileave = sc->sc_ileave;
1767 ccd.ccd_size = sc->sc_size;
1768 ccd.ccd_ndisks = sc->sc_nccdisks;
1769 ccd.ccd_flags = sc->sc_flags;
1770 break;
1771 }
1772 }
1773 mutex_exit(&ccd_lock);
1774
1775 if (ccd.ccd_ndisks == ~0)
1776 return ENOENT;
1777
1778 node = *rnode;
1779 node.sysctl_data = &ccd;
1780 node.sysctl_size = sizeof(ccd);
1781
1782 return sysctl_lookup(SYSCTLFN_CALL(&node));
1783 }
1784
1785 static int
1786 ccd_components_sysctl(SYSCTLFN_ARGS)
1787 {
1788 struct sysctlnode node;
1789 int error, unit;
1790 size_t size;
1791 char *names, *p, *ep;
1792 struct ccd_softc *sc;
1793
1794 if (newp == NULL || newlen != sizeof(int))
1795 return EINVAL;
1796
1797 size = 0;
1798 unit = *(const int *)newp;
1799 newp = NULL;
1800 newlen = 0;
1801 mutex_enter(&ccd_lock);
1802 LIST_FOREACH(sc, &ccds, sc_link)
1803 if (sc->sc_unit == unit) {
1804 for (size_t i = 0; i < sc->sc_nccdisks; i++)
1805 size += strlen(sc->sc_cinfo[i].ci_path) + 1;
1806 break;
1807 }
1808 mutex_exit(&ccd_lock);
1809
1810 if (size == 0)
1811 return ENOENT;
1812 names = kmem_zalloc(size, KM_SLEEP);
1813 p = names;
1814 ep = names + size;
1815 mutex_enter(&ccd_lock);
1816 LIST_FOREACH(sc, &ccds, sc_link)
1817 if (sc->sc_unit == unit) {
1818 for (size_t i = 0; i < sc->sc_nccdisks; i++) {
1819 char *d = sc->sc_cinfo[i].ci_path;
1820 while (p < ep && (*p++ = *d++) != '\0')
1821 continue;
1822 }
1823 break;
1824 }
1825 mutex_exit(&ccd_lock);
1826
1827 node = *rnode;
1828 node.sysctl_data = names;
1829 node.sysctl_size = ep - names;
1830
1831 error = sysctl_lookup(SYSCTLFN_CALL(&node));
1832 kmem_free(names, size);
1833 return error;
1834 }
1835
1836 SYSCTL_SETUP(sysctl_kern_ccd_setup, "sysctl kern.ccd subtree setup")
1837 {
1838 const struct sysctlnode *node = NULL;
1839
1840 sysctl_createv(clog, 0, NULL, &node,
1841 CTLFLAG_PERMANENT,
1842 CTLTYPE_NODE, "ccd",
1843 SYSCTL_DESCR("ConCatenated Disk state"),
1844 NULL, 0, NULL, 0,
1845 CTL_KERN, CTL_CREATE, CTL_EOL);
1846
1847 if (node == NULL)
1848 return;
1849
1850 sysctl_createv(clog, 0, &node, NULL,
1851 CTLFLAG_PERMANENT | CTLFLAG_READONLY,
1852 CTLTYPE_STRUCT, "units",
1853 SYSCTL_DESCR("List of ccd unit numbers"),
1854 ccd_units_sysctl, 0, NULL, 0,
1855 CTL_CREATE, CTL_EOL);
1856 sysctl_createv(clog, 0, &node, NULL,
1857 CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
1858 CTLTYPE_STRUCT, "info",
1859 SYSCTL_DESCR("Information about a CCD unit"),
1860 ccd_info_sysctl, 0, NULL, 0,
1861 CTL_CREATE, CTL_EOL);
1862 sysctl_createv(clog, 0, &node, NULL,
1863 CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
1864 CTLTYPE_STRUCT, "components",
1865 SYSCTL_DESCR("Information about CCD components"),
1866 ccd_components_sysctl, 0, NULL, 0,
1867 CTL_CREATE, CTL_EOL);
1868 }
1869