geom_vinum_drive.c revision 154075
171414Swollman/*-
271414Swollman * Copyright (c) 2004, 2005 Lukas Ertl
371414Swollman * All rights reserved.
471414Swollman *
571414Swollman * Redistribution and use in source and binary forms, with or without
671414Swollman * modification, are permitted provided that the following conditions
790039Sobrien * are met:
890039Sobrien * 1. Redistributions of source code must retain the above copyright
990039Sobrien *    notice, this list of conditions and the following disclaimer.
1071414Swollman * 2. Redistributions in binary form must reproduce the above copyright
11261560Skib *    notice, this list of conditions and the following disclaimer in the
1271414Swollman *    documentation and/or other materials provided with the distribution.
1371414Swollman *
14118684Sbms * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
1571414Swollman * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16261560Skib * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17261560Skib * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18261560Skib * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19261560Skib * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20261560Skib * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21261560Skib * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22261560Skib * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23261560Skib * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24261560Skib * SUCH DAMAGE.
25261560Skib */
2671414Swollman
27#include <sys/cdefs.h>
28__FBSDID("$FreeBSD: head/sys/geom/vinum/geom_vinum_drive.c 154075 2006-01-06 18:03:17Z le $");
29
30#include <sys/param.h>
31#include <sys/bio.h>
32#include <sys/errno.h>
33#include <sys/conf.h>
34#include <sys/kernel.h>
35#include <sys/kthread.h>
36#include <sys/libkern.h>
37#include <sys/lock.h>
38#include <sys/malloc.h>
39#include <sys/module.h>
40#include <sys/mutex.h>
41#include <sys/sbuf.h>
42#include <sys/systm.h>
43#include <sys/time.h>
44
45#include <geom/geom.h>
46#include <geom/vinum/geom_vinum_var.h>
47#include <geom/vinum/geom_vinum.h>
48#include <geom/vinum/geom_vinum_share.h>
49
50static void	gv_drive_dead(void *, int);
51static void	gv_drive_worker(void *);
52
53void
54gv_config_new_drive(struct gv_drive *d)
55{
56	struct gv_hdr *vhdr;
57	struct gv_freelist *fl;
58
59	KASSERT(d != NULL, ("config_new_drive: NULL d"));
60
61	vhdr = g_malloc(sizeof(*vhdr), M_WAITOK | M_ZERO);
62	vhdr->magic = GV_MAGIC;
63	vhdr->config_length = GV_CFG_LEN;
64
65	bcopy(hostname, vhdr->label.sysname, GV_HOSTNAME_LEN);
66	strncpy(vhdr->label.name, d->name, GV_MAXDRIVENAME);
67	microtime(&vhdr->label.date_of_birth);
68
69	d->hdr = vhdr;
70
71	LIST_INIT(&d->subdisks);
72	LIST_INIT(&d->freelist);
73
74	fl = g_malloc(sizeof(struct gv_freelist), M_WAITOK | M_ZERO);
75	fl->offset = GV_DATA_START;
76	fl->size = d->avail;
77	LIST_INSERT_HEAD(&d->freelist, fl, freelist);
78	d->freelist_entries = 1;
79
80	d->bqueue = g_malloc(sizeof(struct bio_queue_head), M_WAITOK | M_ZERO);
81	bioq_init(d->bqueue);
82	mtx_init(&d->bqueue_mtx, "gv_drive", NULL, MTX_DEF);
83	kthread_create(gv_drive_worker, d, NULL, 0, 0, "gv_d %s", d->name);
84	d->flags |= GV_DRIVE_THREAD_ACTIVE;
85}
86
87void
88gv_save_config_all(struct gv_softc *sc)
89{
90	struct gv_drive *d;
91
92	g_topology_assert();
93
94	LIST_FOREACH(d, &sc->drives, drive) {
95		if (d->geom == NULL)
96			continue;
97		gv_save_config(NULL, d, sc);
98	}
99}
100
101/* Save the vinum configuration back to disk. */
102void
103gv_save_config(struct g_consumer *cp, struct gv_drive *d, struct gv_softc *sc)
104{
105	struct g_geom *gp;
106	struct g_consumer *cp2;
107	struct gv_hdr *vhdr, *hdr;
108	struct sbuf *sb;
109	int error;
110
111	g_topology_assert();
112
113	KASSERT(d != NULL, ("gv_save_config: null d"));
114	KASSERT(sc != NULL, ("gv_save_config: null sc"));
115
116	/*
117	 * We can't save the config on a drive that isn't up, but drives that
118	 * were just created aren't officially up yet, so we check a special
119	 * flag.
120	 */
121	if ((d->state != GV_DRIVE_UP) && !(d->flags && GV_DRIVE_NEWBORN))
122		return;
123
124	if (cp == NULL) {
125		gp = d->geom;
126		KASSERT(gp != NULL, ("gv_save_config: null gp"));
127		cp2 = LIST_FIRST(&gp->consumer);
128		KASSERT(cp2 != NULL, ("gv_save_config: null cp2"));
129	} else
130		cp2 = cp;
131
132	vhdr = g_malloc(GV_HDR_LEN, M_WAITOK | M_ZERO);
133	vhdr->magic = GV_MAGIC;
134	vhdr->config_length = GV_CFG_LEN;
135
136	hdr = d->hdr;
137	if (hdr == NULL) {
138		printf("GEOM_VINUM: drive %s has NULL hdr\n", d->name);
139		g_free(vhdr);
140		return;
141	}
142	microtime(&hdr->label.last_update);
143	bcopy(&hdr->label, &vhdr->label, sizeof(struct gv_label));
144
145	sb = sbuf_new(NULL, NULL, GV_CFG_LEN, SBUF_FIXEDLEN);
146	gv_format_config(sc, sb, 1, NULL);
147	sbuf_finish(sb);
148
149	error = g_access(cp2, 0, 1, 0);
150	if (error) {
151		printf("GEOM_VINUM: g_access failed on drive %s, errno %d\n",
152		    d->name, error);
153		sbuf_delete(sb);
154		g_free(vhdr);
155		return;
156	}
157	g_topology_unlock();
158
159	do {
160		error = g_write_data(cp2, GV_HDR_OFFSET, vhdr, GV_HDR_LEN);
161		if (error) {
162			printf("GEOM_VINUM: writing vhdr failed on drive %s, "
163			    "errno %d", d->name, error);
164			break;
165		}
166
167		error = g_write_data(cp2, GV_CFG_OFFSET, sbuf_data(sb),
168		    GV_CFG_LEN);
169		if (error) {
170			printf("GEOM_VINUM: writing first config copy failed "
171			    "on drive %s, errno %d", d->name, error);
172			break;
173		}
174
175		error = g_write_data(cp2, GV_CFG_OFFSET + GV_CFG_LEN,
176		    sbuf_data(sb), GV_CFG_LEN);
177		if (error)
178			printf("GEOM_VINUM: writing second config copy failed "
179			    "on drive %s, errno %d", d->name, error);
180	} while (0);
181
182	g_topology_lock();
183	g_access(cp2, 0, -1, 0);
184	sbuf_delete(sb);
185	g_free(vhdr);
186
187	if (d->geom != NULL)
188		gv_drive_modify(d);
189}
190
191/* This resembles g_slice_access(). */
192static int
193gv_drive_access(struct g_provider *pp, int dr, int dw, int de)
194{
195	struct g_geom *gp;
196	struct g_consumer *cp;
197	struct g_provider *pp2;
198	struct gv_drive *d;
199	struct gv_sd *s, *s2;
200	int error;
201
202	gp = pp->geom;
203	cp = LIST_FIRST(&gp->consumer);
204	if (cp == NULL)
205		return (0);
206
207	d = gp->softc;
208	if (d == NULL)
209		return (0);
210
211	s = pp->private;
212	KASSERT(s != NULL, ("gv_drive_access: NULL s"));
213
214	LIST_FOREACH(s2, &d->subdisks, from_drive) {
215		if (s == s2)
216			continue;
217		if (s->drive_offset + s->size <= s2->drive_offset)
218			continue;
219		if (s2->drive_offset + s2->size <= s->drive_offset)
220			continue;
221
222		/* Overlap. */
223		pp2 = s2->provider;
224		KASSERT(s2 != NULL, ("gv_drive_access: NULL s2"));
225		if ((pp->acw + dw) > 0 && pp2->ace > 0)
226			return (EPERM);
227		if ((pp->ace + de) > 0 && pp2->acw > 0)
228			return (EPERM);
229	}
230
231	error = g_access(cp, dr, dw, de);
232	return (error);
233}
234
235static void
236gv_drive_done(struct bio *bp)
237{
238	struct gv_drive *d;
239
240	/* Put the BIO on the worker queue again. */
241	d = bp->bio_from->geom->softc;
242	bp->bio_cflags |= GV_BIO_DONE;
243	mtx_lock(&d->bqueue_mtx);
244	bioq_insert_tail(d->bqueue, bp);
245	wakeup(d);
246	mtx_unlock(&d->bqueue_mtx);
247}
248
249
250static void
251gv_drive_start(struct bio *bp)
252{
253	struct gv_drive *d;
254	struct gv_sd *s;
255
256	switch (bp->bio_cmd) {
257	case BIO_READ:
258	case BIO_WRITE:
259	case BIO_DELETE:
260		break;
261	case BIO_GETATTR:
262	default:
263		g_io_deliver(bp, EOPNOTSUPP);
264		return;
265	}
266
267	s = bp->bio_to->private;
268	if ((s->state == GV_SD_DOWN) || (s->state == GV_SD_STALE)) {
269		g_io_deliver(bp, ENXIO);
270		return;
271	}
272
273	d = bp->bio_to->geom->softc;
274
275	/*
276	 * Put the BIO on the worker queue, where the worker thread will pick
277	 * it up.
278	 */
279	mtx_lock(&d->bqueue_mtx);
280	bioq_disksort(d->bqueue, bp);
281	wakeup(d);
282	mtx_unlock(&d->bqueue_mtx);
283
284}
285
286static void
287gv_drive_worker(void *arg)
288{
289	struct bio *bp, *cbp;
290	struct g_geom *gp;
291	struct g_provider *pp;
292	struct gv_drive *d;
293	struct gv_sd *s;
294	int error;
295
296	d = arg;
297
298	mtx_lock(&d->bqueue_mtx);
299	for (;;) {
300		/* We were signaled to exit. */
301		if (d->flags & GV_DRIVE_THREAD_DIE)
302			break;
303
304		/* Take the first BIO from out queue. */
305		bp = bioq_takefirst(d->bqueue);
306		if (bp == NULL) {
307			msleep(d, &d->bqueue_mtx, PRIBIO, "-", hz/10);
308			continue;
309 		}
310		mtx_unlock(&d->bqueue_mtx);
311
312		pp = bp->bio_to;
313		gp = pp->geom;
314
315		/* Completed request. */
316		if (bp->bio_cflags & GV_BIO_DONE) {
317			error = bp->bio_error;
318
319			/* Deliver the original request. */
320			g_std_done(bp);
321
322			/* The request had an error, we need to clean up. */
323			if (error != 0) {
324				g_topology_lock();
325				gv_set_drive_state(d, GV_DRIVE_DOWN,
326				    GV_SETSTATE_FORCE | GV_SETSTATE_CONFIG);
327				g_topology_unlock();
328				g_post_event(gv_drive_dead, d, M_WAITOK, d,
329				    NULL);
330			}
331
332		/* New request, needs to be sent downwards. */
333		} else {
334			s = pp->private;
335
336			if ((s->state == GV_SD_DOWN) ||
337			    (s->state == GV_SD_STALE)) {
338				g_io_deliver(bp, ENXIO);
339				mtx_lock(&d->bqueue_mtx);
340				continue;
341			}
342			if (bp->bio_offset > s->size) {
343				g_io_deliver(bp, EINVAL);
344				mtx_lock(&d->bqueue_mtx);
345				continue;
346			}
347
348			cbp = g_clone_bio(bp);
349			if (cbp == NULL) {
350				g_io_deliver(bp, ENOMEM);
351				mtx_lock(&d->bqueue_mtx);
352				continue;
353			}
354			if (cbp->bio_offset + cbp->bio_length > s->size)
355				cbp->bio_length = s->size -
356				    cbp->bio_offset;
357			cbp->bio_done = gv_drive_done;
358			cbp->bio_offset += s->drive_offset;
359			g_io_request(cbp, LIST_FIRST(&gp->consumer));
360		}
361
362		mtx_lock(&d->bqueue_mtx);
363	}
364
365	while ((bp = bioq_takefirst(d->bqueue)) != NULL) {
366		mtx_unlock(&d->bqueue_mtx);
367		if (bp->bio_cflags & GV_BIO_DONE)
368			g_std_done(bp);
369		else
370			g_io_deliver(bp, ENXIO);
371		mtx_lock(&d->bqueue_mtx);
372	}
373	mtx_unlock(&d->bqueue_mtx);
374	d->flags |= GV_DRIVE_THREAD_DEAD;
375
376	kthread_exit(ENXIO);
377}
378
379
380static void
381gv_drive_orphan(struct g_consumer *cp)
382{
383	struct g_geom *gp;
384	struct gv_drive *d;
385
386	g_topology_assert();
387	gp = cp->geom;
388	g_trace(G_T_TOPOLOGY, "gv_drive_orphan(%s)", gp->name);
389	d = gp->softc;
390	if (d != NULL) {
391		gv_set_drive_state(d, GV_DRIVE_DOWN,
392		    GV_SETSTATE_FORCE | GV_SETSTATE_CONFIG);
393		g_post_event(gv_drive_dead, d, M_WAITOK, d, NULL);
394	} else
395		g_wither_geom(gp, ENXIO);
396}
397
398static struct g_geom *
399gv_drive_taste(struct g_class *mp, struct g_provider *pp, int flags __unused)
400{
401	struct g_geom *gp, *gp2;
402	struct g_consumer *cp;
403	struct gv_drive *d;
404	struct gv_sd *s;
405	struct gv_softc *sc;
406	struct gv_freelist *fl;
407	struct gv_hdr *vhdr;
408	int error;
409	char *buf, errstr[ERRBUFSIZ];
410
411	vhdr = NULL;
412	d = NULL;
413
414	g_trace(G_T_TOPOLOGY, "gv_drive_taste(%s, %s)", mp->name, pp->name);
415	g_topology_assert();
416
417	/* Find the VINUM class and its associated geom. */
418	gp2 = find_vinum_geom();
419	if (gp2 == NULL)
420		return (NULL);
421	sc = gp2->softc;
422
423	gp = g_new_geomf(mp, "%s.vinumdrive", pp->name);
424	gp->start = gv_drive_start;
425	gp->orphan = gv_drive_orphan;
426	gp->access = gv_drive_access;
427	gp->start = gv_drive_start;
428
429	cp = g_new_consumer(gp);
430	g_attach(cp, pp);
431	error = g_access(cp, 1, 0, 0);
432	if (error) {
433		g_detach(cp);
434		g_destroy_consumer(cp);
435		g_destroy_geom(gp);
436		return (NULL);
437	}
438
439	g_topology_unlock();
440
441	/* Now check if the provided slice is a valid vinum drive. */
442	do {
443		vhdr = g_read_data(cp, GV_HDR_OFFSET, pp->sectorsize, NULL);
444		if (vhdr == NULL)
445			break;
446		if (vhdr->magic != GV_MAGIC) {
447			g_free(vhdr);
448			break;
449		}
450
451		/* A valid vinum drive, let's parse the on-disk information. */
452		buf = g_read_data(cp, GV_CFG_OFFSET, GV_CFG_LEN, NULL);
453		if (buf == NULL) {
454			g_free(vhdr);
455			break;
456		}
457		g_topology_lock();
458		gv_parse_config(sc, buf, 1);
459		g_free(buf);
460
461		/*
462		 * Let's see if this drive is already known in the
463		 * configuration.
464		 */
465		d = gv_find_drive(sc, vhdr->label.name);
466
467		/* We already know about this drive. */
468		if (d != NULL) {
469			/* Check if this drive already has a geom. */
470			if (d->geom != NULL) {
471				g_topology_unlock();
472				break;
473			}
474			bcopy(vhdr, d->hdr, sizeof(*vhdr));
475
476		/* This is a new drive. */
477		} else {
478			d = g_malloc(sizeof(*d), M_WAITOK | M_ZERO);
479
480			/* Initialize all needed variables. */
481			d->size = pp->mediasize - GV_DATA_START;
482			d->avail = d->size;
483			d->hdr = vhdr;
484			strncpy(d->name, vhdr->label.name, GV_MAXDRIVENAME);
485			LIST_INIT(&d->subdisks);
486			LIST_INIT(&d->freelist);
487
488			/* We also need a freelist entry. */
489			fl = g_malloc(sizeof(*fl), M_WAITOK | M_ZERO);
490			fl->offset = GV_DATA_START;
491			fl->size = d->avail;
492			LIST_INSERT_HEAD(&d->freelist, fl, freelist);
493			d->freelist_entries = 1;
494
495			/* Save it into the main configuration. */
496			LIST_INSERT_HEAD(&sc->drives, d, drive);
497		}
498
499		/*
500		 * Create bio queue, queue mutex and a worker thread, if
501		 * necessary.
502		 */
503		if (d->bqueue == NULL) {
504			d->bqueue = g_malloc(sizeof(struct bio_queue_head),
505			    M_WAITOK | M_ZERO);
506			bioq_init(d->bqueue);
507		}
508		if (mtx_initialized(&d->bqueue_mtx) == 0)
509			mtx_init(&d->bqueue_mtx, "gv_drive", NULL, MTX_DEF);
510
511		if (!(d->flags & GV_DRIVE_THREAD_ACTIVE)) {
512			kthread_create(gv_drive_worker, d, NULL, 0, 0,
513			    "gv_d %s", d->name);
514			d->flags |= GV_DRIVE_THREAD_ACTIVE;
515		}
516
517		g_access(cp, -1, 0, 0);
518
519		gp->softc = d;
520		d->geom = gp;
521		d->vinumconf = sc;
522		strncpy(d->device, pp->name, GV_MAXDRIVENAME);
523
524		/*
525		 * Find out which subdisks belong to this drive and crosslink
526		 * them.
527		 */
528		LIST_FOREACH(s, &sc->subdisks, sd) {
529			if (!strncmp(s->drive, d->name, GV_MAXDRIVENAME))
530				/* XXX: errors ignored */
531				gv_sd_to_drive(sc, d, s, errstr,
532				    sizeof(errstr));
533		}
534
535		/* This drive is now up for sure. */
536		gv_set_drive_state(d, GV_DRIVE_UP, 0);
537
538		/*
539		 * If there are subdisks on this drive, we need to create
540		 * providers for them.
541		 */
542		if (d->sdcount)
543			gv_drive_modify(d);
544
545		return (gp);
546
547	} while (0);
548
549	g_topology_lock();
550	g_access(cp, -1, 0, 0);
551
552	g_detach(cp);
553	g_destroy_consumer(cp);
554	g_destroy_geom(gp);
555	return (NULL);
556}
557
558/*
559 * Modify the providers for the given drive 'd'.  It is assumed that the
560 * subdisk list of 'd' is already correctly set up.
561 */
562void
563gv_drive_modify(struct gv_drive *d)
564{
565	struct g_geom *gp;
566	struct g_consumer *cp;
567	struct g_provider *pp, *pp2;
568	struct gv_sd *s;
569
570	KASSERT(d != NULL, ("gv_drive_modify: null d"));
571	gp = d->geom;
572	KASSERT(gp != NULL, ("gv_drive_modify: null gp"));
573	cp = LIST_FIRST(&gp->consumer);
574	KASSERT(cp != NULL, ("gv_drive_modify: null cp"));
575	pp = cp->provider;
576	KASSERT(pp != NULL, ("gv_drive_modify: null pp"));
577
578	g_topology_assert();
579
580	LIST_FOREACH(s, &d->subdisks, from_drive) {
581		/* This subdisk already has a provider. */
582		if (s->provider != NULL)
583			continue;
584		pp2 = g_new_providerf(gp, "gvinum/sd/%s", s->name);
585		pp2->mediasize = s->size;
586		pp2->sectorsize = pp->sectorsize;
587		g_error_provider(pp2, 0);
588		s->provider = pp2;
589		pp2->private = s;
590	}
591}
592
593static void
594gv_drive_dead(void *arg, int flag)
595{
596	struct g_geom *gp;
597	struct g_consumer *cp;
598	struct gv_drive *d;
599	struct gv_sd *s;
600
601	g_topology_assert();
602	KASSERT(arg != NULL, ("gv_drive_dead: NULL arg"));
603
604	if (flag == EV_CANCEL)
605		return;
606
607	d = arg;
608	if (d->state != GV_DRIVE_DOWN)
609		return;
610
611	g_trace(G_T_TOPOLOGY, "gv_drive_dead(%s)", d->name);
612
613	gp = d->geom;
614	if (gp == NULL)
615		return;
616
617	LIST_FOREACH(cp, &gp->consumer, consumer) {
618		if (cp->nstart != cp->nend) {
619			printf("GEOM_VINUM: dead drive '%s' has still "
620			    "active requests, can't detach consumer\n",
621			    d->name);
622			g_post_event(gv_drive_dead, d, M_WAITOK, d,
623			    NULL);
624			return;
625		}
626		if (cp->acr != 0 || cp->acw != 0 || cp->ace != 0)
627			g_access(cp, -cp->acr, -cp->acw, -cp->ace);
628	}
629
630	printf("GEOM_VINUM: lost drive '%s'\n", d->name);
631	d->geom = NULL;
632	LIST_FOREACH(s, &d->subdisks, from_drive) {
633		s->provider = NULL;
634		s->consumer = NULL;
635	}
636	gv_kill_drive_thread(d);
637	gp->softc = NULL;
638	g_wither_geom(gp, ENXIO);
639}
640
641static int
642gv_drive_destroy_geom(struct gctl_req *req, struct g_class *mp,
643    struct g_geom *gp)
644{
645	struct gv_drive *d;
646
647	g_trace(G_T_TOPOLOGY, "gv_drive_destroy_geom: %s", gp->name);
648	g_topology_assert();
649
650	d = gp->softc;
651	gv_kill_drive_thread(d);
652
653	g_wither_geom(gp, ENXIO);
654	return (0);
655}
656
657#define	VINUMDRIVE_CLASS_NAME "VINUMDRIVE"
658
659static struct g_class g_vinum_drive_class = {
660	.name = VINUMDRIVE_CLASS_NAME,
661	.version = G_VERSION,
662	.taste = gv_drive_taste,
663	.destroy_geom = gv_drive_destroy_geom
664};
665
666DECLARE_GEOM_CLASS(g_vinum_drive_class, g_vinum_drive);
667