xref: /freebsd/sys/geom/virstor/g_virstor.c (revision b4e38a41f584ad4391c04b8cfec81f46176b18b0)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3  *
4  * Copyright (c) 2006-2007 Ivan Voras <ivoras@freebsd.org>
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHORS AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHORS OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 /* Implementation notes:
30  * - "Components" are wrappers around providers that make up the
31  *   virtual storage (i.e. a virstor has "physical" components)
32  */
33 
34 #include <sys/cdefs.h>
35 __FBSDID("$FreeBSD$");
36 
37 #include <sys/param.h>
38 #include <sys/systm.h>
39 #include <sys/kernel.h>
40 #include <sys/module.h>
41 #include <sys/lock.h>
42 #include <sys/mutex.h>
43 #include <sys/sx.h>
44 #include <sys/bio.h>
45 #include <sys/sbuf.h>
46 #include <sys/sysctl.h>
47 #include <sys/malloc.h>
48 #include <sys/time.h>
49 #include <sys/proc.h>
50 #include <sys/kthread.h>
51 #include <sys/mutex.h>
52 #include <vm/uma.h>
53 #include <geom/geom.h>
54 #include <geom/geom_dbg.h>
55 
56 #include <geom/virstor/g_virstor.h>
57 #include <geom/virstor/g_virstor_md.h>
58 
59 FEATURE(g_virstor, "GEOM virtual storage support");
60 
61 /* Declare malloc(9) label */
62 static MALLOC_DEFINE(M_GVIRSTOR, "gvirstor", "GEOM_VIRSTOR Data");
63 
64 /* GEOM class methods */
65 static g_init_t g_virstor_init;
66 static g_fini_t g_virstor_fini;
67 static g_taste_t g_virstor_taste;
68 static g_ctl_req_t g_virstor_config;
69 static g_ctl_destroy_geom_t g_virstor_destroy_geom;
70 
71 /* Declare & initialize class structure ("geom class") */
72 struct g_class g_virstor_class = {
73 	.name =		G_VIRSTOR_CLASS_NAME,
74 	.version =	G_VERSION,
75 	.init =		g_virstor_init,
76 	.fini =		g_virstor_fini,
77 	.taste =	g_virstor_taste,
78 	.ctlreq =	g_virstor_config,
79 	.destroy_geom = g_virstor_destroy_geom
80 	/* The .dumpconf and the rest are only usable for a geom instance, so
81 	 * they will be set when such instance is created. */
82 };
83 
84 /* Declare sysctl's and loader tunables */
85 SYSCTL_DECL(_kern_geom);
86 static SYSCTL_NODE(_kern_geom, OID_AUTO, virstor,
87     CTLFLAG_RW | CTLFLAG_MPSAFE, 0,
88     "GEOM_GVIRSTOR information");
89 
90 static u_int g_virstor_debug = 2; /* XXX: lower to 2 when released to public */
91 SYSCTL_UINT(_kern_geom_virstor, OID_AUTO, debug, CTLFLAG_RWTUN, &g_virstor_debug,
92     0, "Debug level (2=production, 5=normal, 15=excessive)");
93 
94 static u_int g_virstor_chunk_watermark = 100;
95 SYSCTL_UINT(_kern_geom_virstor, OID_AUTO, chunk_watermark, CTLFLAG_RWTUN,
96     &g_virstor_chunk_watermark, 0,
97     "Minimum number of free chunks before issuing administrative warning");
98 
99 static u_int g_virstor_component_watermark = 1;
100 SYSCTL_UINT(_kern_geom_virstor, OID_AUTO, component_watermark, CTLFLAG_RWTUN,
101     &g_virstor_component_watermark, 0,
102     "Minimum number of free components before issuing administrative warning");
103 
104 static int read_metadata(struct g_consumer *, struct g_virstor_metadata *);
105 static void write_metadata(struct g_consumer *, struct g_virstor_metadata *);
106 static int clear_metadata(struct g_virstor_component *);
107 static int add_provider_to_geom(struct g_virstor_softc *, struct g_provider *,
108     struct g_virstor_metadata *);
109 static struct g_geom *create_virstor_geom(struct g_class *,
110     struct g_virstor_metadata *);
111 static void virstor_check_and_run(struct g_virstor_softc *);
112 static u_int virstor_valid_components(struct g_virstor_softc *);
113 static int virstor_geom_destroy(struct g_virstor_softc *, boolean_t,
114     boolean_t);
115 static void remove_component(struct g_virstor_softc *,
116     struct g_virstor_component *, boolean_t);
117 static void bioq_dismantle(struct bio_queue_head *);
118 static int allocate_chunk(struct g_virstor_softc *,
119     struct g_virstor_component **, u_int *, u_int *);
120 static void delay_destroy_consumer(void *, int);
121 static void dump_component(struct g_virstor_component *comp);
122 #if 0
123 static void dump_me(struct virstor_map_entry *me, unsigned int nr);
124 #endif
125 
126 static void virstor_ctl_stop(struct gctl_req *, struct g_class *);
127 static void virstor_ctl_add(struct gctl_req *, struct g_class *);
128 static void virstor_ctl_remove(struct gctl_req *, struct g_class *);
129 static struct g_virstor_softc * virstor_find_geom(const struct g_class *,
130     const char *);
131 static void update_metadata(struct g_virstor_softc *);
132 static void fill_metadata(struct g_virstor_softc *, struct g_virstor_metadata *,
133     u_int, u_int);
134 
135 static void g_virstor_orphan(struct g_consumer *);
136 static int g_virstor_access(struct g_provider *, int, int, int);
137 static void g_virstor_start(struct bio *);
138 static void g_virstor_dumpconf(struct sbuf *, const char *, struct g_geom *,
139     struct g_consumer *, struct g_provider *);
140 static void g_virstor_done(struct bio *);
141 
142 static void invalid_call(void);
143 /*
144  * Initialise GEOM class (per-class callback)
145  */
146 static void
147 g_virstor_init(struct g_class *mp __unused)
148 {
149 
150 	/* Catch map struct size mismatch at compile time; Map entries must
151 	 * fit into MAXPHYS exactly, with no wasted space. */
152 	CTASSERT(VIRSTOR_MAP_BLOCK_ENTRIES*VIRSTOR_MAP_ENTRY_SIZE == MAXPHYS);
153 
154 	/* Init UMA zones, TAILQ's, other global vars */
155 }
156 
157 /*
158  * Finalise GEOM class (per-class callback)
159  */
160 static void
161 g_virstor_fini(struct g_class *mp __unused)
162 {
163 
164 	/* Deinit UMA zones & global vars */
165 }
166 
167 /*
168  * Config (per-class callback)
169  */
170 static void
171 g_virstor_config(struct gctl_req *req, struct g_class *cp, char const *verb)
172 {
173 	uint32_t *version;
174 
175 	g_topology_assert();
176 
177 	version = gctl_get_paraml(req, "version", sizeof(*version));
178 	if (version == NULL) {
179 		gctl_error(req, "Failed to get 'version' argument");
180 		return;
181 	}
182 	if (*version != G_VIRSTOR_VERSION) {
183 		gctl_error(req, "Userland and kernel versions out of sync");
184 		return;
185 	}
186 
187 	g_topology_unlock();
188 	if (strcmp(verb, "add") == 0)
189 		virstor_ctl_add(req, cp);
190 	else if (strcmp(verb, "stop") == 0 || strcmp(verb, "destroy") == 0)
191 		virstor_ctl_stop(req, cp);
192 	else if (strcmp(verb, "remove") == 0)
193 		virstor_ctl_remove(req, cp);
194 	else
195 		gctl_error(req, "unknown verb: '%s'", verb);
196 	g_topology_lock();
197 }
198 
199 /*
200  * "stop" verb from userland
201  */
202 static void
203 virstor_ctl_stop(struct gctl_req *req, struct g_class *cp)
204 {
205 	int *force, *nargs;
206 	int i;
207 
208 	nargs = gctl_get_paraml(req, "nargs", sizeof *nargs);
209 	if (nargs == NULL) {
210 		gctl_error(req, "Error fetching argument '%s'", "nargs");
211 		return;
212 	}
213 	if (*nargs < 1) {
214 		gctl_error(req, "Invalid number of arguments");
215 		return;
216 	}
217 	force = gctl_get_paraml(req, "force", sizeof *force);
218 	if (force == NULL) {
219 		gctl_error(req, "Error fetching argument '%s'", "force");
220 		return;
221 	}
222 
223 	g_topology_lock();
224 	for (i = 0; i < *nargs; i++) {
225 		char param[8];
226 		const char *name;
227 		struct g_virstor_softc *sc;
228 		int error;
229 
230 		snprintf(param, sizeof(param), "arg%d", i);
231 		name = gctl_get_asciiparam(req, param);
232 		if (name == NULL) {
233 			gctl_error(req, "No 'arg%d' argument", i);
234 			g_topology_unlock();
235 			return;
236 		}
237 		sc = virstor_find_geom(cp, name);
238 		if (sc == NULL) {
239 			gctl_error(req, "Don't know anything about '%s'", name);
240 			g_topology_unlock();
241 			return;
242 		}
243 
244 		LOG_MSG(LVL_INFO, "Stopping %s by the userland command",
245 		    sc->geom->name);
246 		update_metadata(sc);
247 		if ((error = virstor_geom_destroy(sc, TRUE, TRUE)) != 0) {
248 			LOG_MSG(LVL_ERROR, "Cannot destroy %s: %d",
249 			    sc->geom->name, error);
250 		}
251 	}
252 	g_topology_unlock();
253 }
254 
255 /*
256  * "add" verb from userland - add new component(s) to the structure.
257  * This will be done all at once in here, without going through the
258  * .taste function for new components.
259  */
260 static void
261 virstor_ctl_add(struct gctl_req *req, struct g_class *cp)
262 {
263 	/* Note: while this is going on, I/O is being done on
264 	 * the g_up and g_down threads. The idea is to make changes
265 	 * to softc members in a way that can atomically activate
266 	 * them all at once. */
267 	struct g_virstor_softc *sc;
268 	int *hardcode, *nargs;
269 	const char *geom_name;	/* geom to add a component to */
270 	struct g_consumer *fcp;
271 	struct g_virstor_bio_q *bq;
272 	u_int added;
273 	int error;
274 	int i;
275 
276 	nargs = gctl_get_paraml(req, "nargs", sizeof(*nargs));
277 	if (nargs == NULL) {
278 		gctl_error(req, "Error fetching argument '%s'", "nargs");
279 		return;
280 	}
281 	if (*nargs < 2) {
282 		gctl_error(req, "Invalid number of arguments");
283 		return;
284 	}
285 	hardcode = gctl_get_paraml(req, "hardcode", sizeof(*hardcode));
286 	if (hardcode == NULL) {
287 		gctl_error(req, "Error fetching argument '%s'", "hardcode");
288 		return;
289 	}
290 
291 	/* Find "our" geom */
292 	geom_name = gctl_get_asciiparam(req, "arg0");
293 	if (geom_name == NULL) {
294 		gctl_error(req, "Error fetching argument '%s'", "geom_name (arg0)");
295 		return;
296 	}
297 	sc = virstor_find_geom(cp, geom_name);
298 	if (sc == NULL) {
299 		gctl_error(req, "Don't know anything about '%s'", geom_name);
300 		return;
301 	}
302 
303 	if (virstor_valid_components(sc) != sc->n_components) {
304 		LOG_MSG(LVL_ERROR, "Cannot add components to incomplete "
305 		    "virstor %s", sc->geom->name);
306 		gctl_error(req, "Virstor %s is incomplete", sc->geom->name);
307 		return;
308 	}
309 
310 	fcp = sc->components[0].gcons;
311 	added = 0;
312 	g_topology_lock();
313 	for (i = 1; i < *nargs; i++) {
314 		struct g_virstor_metadata md;
315 		char aname[8];
316 		struct g_provider *pp;
317 		struct g_consumer *cp;
318 		u_int nc;
319 		u_int j;
320 
321 		snprintf(aname, sizeof aname, "arg%d", i);
322 		pp = gctl_get_provider(req, aname);
323 		if (pp == NULL) {
324 			/* This is the most common error so be verbose about it */
325 			if (added != 0) {
326 				gctl_error(req, "Invalid provider. (added"
327 				    " %u components)", added);
328 				update_metadata(sc);
329 			}
330 			g_topology_unlock();
331 			return;
332 		}
333 		cp = g_new_consumer(sc->geom);
334 		if (cp == NULL) {
335 			gctl_error(req, "Cannot create consumer");
336 			g_topology_unlock();
337 			return;
338 		}
339 		error = g_attach(cp, pp);
340 		if (error != 0) {
341 			gctl_error(req, "Cannot attach a consumer to %s",
342 			    pp->name);
343 			g_destroy_consumer(cp);
344 			g_topology_unlock();
345 			return;
346 		}
347 		if (fcp->acr != 0 || fcp->acw != 0 || fcp->ace != 0) {
348 			error = g_access(cp, fcp->acr, fcp->acw, fcp->ace);
349 			if (error != 0) {
350 				gctl_error(req, "Access request failed for %s",
351 				    pp->name);
352 				g_destroy_consumer(cp);
353 				g_topology_unlock();
354 				return;
355 			}
356 		}
357 		if (fcp->provider->sectorsize != pp->sectorsize) {
358 			gctl_error(req, "Sector size doesn't fit for %s",
359 			    pp->name);
360 			g_destroy_consumer(cp);
361 			g_topology_unlock();
362 			return;
363 		}
364 		for (j = 0; j < sc->n_components; j++) {
365 			if (strcmp(sc->components[j].gcons->provider->name,
366 			    pp->name) == 0) {
367 				gctl_error(req, "Component %s already in %s",
368 				    pp->name, sc->geom->name);
369 				g_destroy_consumer(cp);
370 				g_topology_unlock();
371 				return;
372 			}
373 		}
374 		sc->components = realloc(sc->components,
375 		    sizeof(*sc->components) * (sc->n_components + 1),
376 		    M_GVIRSTOR, M_WAITOK);
377 
378 		nc = sc->n_components;
379 		sc->components[nc].gcons = cp;
380 		sc->components[nc].sc = sc;
381 		sc->components[nc].index = nc;
382 		sc->components[nc].chunk_count = cp->provider->mediasize /
383 		    sc->chunk_size;
384 		sc->components[nc].chunk_next = 0;
385 		sc->components[nc].chunk_reserved = 0;
386 
387 		if (sc->components[nc].chunk_count < 4) {
388 			gctl_error(req, "Provider too small: %s",
389 			    cp->provider->name);
390 			g_destroy_consumer(cp);
391 			g_topology_unlock();
392 			return;
393 		}
394 		fill_metadata(sc, &md, nc, *hardcode);
395 		write_metadata(cp, &md);
396 		/* The new component becomes visible when n_components is
397 		 * incremented */
398 		sc->n_components++;
399 		added++;
400 
401 	}
402 	/* This call to update_metadata() is critical. In case there's a
403 	 * power failure in the middle of it and some components are updated
404 	 * while others are not, there will be trouble on next .taste() iff
405 	 * a non-updated component is detected first */
406 	update_metadata(sc);
407 	g_topology_unlock();
408 	LOG_MSG(LVL_INFO, "Added %d component(s) to %s", added,
409 	    sc->geom->name);
410 	/* Fire off BIOs previously queued because there wasn't any
411 	 * physical space left. If the BIOs still can't be satisfied
412 	 * they will again be added to the end of the queue (during
413 	 * which the mutex will be recursed) */
414 	bq = malloc(sizeof(*bq), M_GVIRSTOR, M_WAITOK);
415 	bq->bio = NULL;
416 	mtx_lock(&sc->delayed_bio_q_mtx);
417 	/* First, insert a sentinel to the queue end, so we don't
418 	 * end up in an infinite loop if there's still no free
419 	 * space available. */
420 	STAILQ_INSERT_TAIL(&sc->delayed_bio_q, bq, linkage);
421 	while (!STAILQ_EMPTY(&sc->delayed_bio_q)) {
422 		bq = STAILQ_FIRST(&sc->delayed_bio_q);
423 		if (bq->bio != NULL) {
424 			g_virstor_start(bq->bio);
425 			STAILQ_REMOVE_HEAD(&sc->delayed_bio_q, linkage);
426 			free(bq, M_GVIRSTOR);
427 		} else {
428 			STAILQ_REMOVE_HEAD(&sc->delayed_bio_q, linkage);
429 			free(bq, M_GVIRSTOR);
430 			break;
431 		}
432 	}
433 	mtx_unlock(&sc->delayed_bio_q_mtx);
434 
435 }
436 
437 /*
438  * Find a geom handled by the class
439  */
440 static struct g_virstor_softc *
441 virstor_find_geom(const struct g_class *cp, const char *name)
442 {
443 	struct g_geom *gp;
444 
445 	LIST_FOREACH(gp, &cp->geom, geom) {
446 		if (strcmp(name, gp->name) == 0)
447 			return (gp->softc);
448 	}
449 	return (NULL);
450 }
451 
452 /*
453  * Update metadata on all components to reflect the current state
454  * of these fields:
455  *    - chunk_next
456  *    - flags
457  *    - md_count
458  * Expects things to be set up so write_metadata() can work, i.e.
459  * the topology lock must be held.
460  */
461 static void
462 update_metadata(struct g_virstor_softc *sc)
463 {
464 	struct g_virstor_metadata md;
465 	u_int n;
466 
467 	if (virstor_valid_components(sc) != sc->n_components)
468 		return; /* Incomplete device */
469 	LOG_MSG(LVL_DEBUG, "Updating metadata on components for %s",
470 	    sc->geom->name);
471 	/* Update metadata on components */
472 	g_trace(G_T_TOPOLOGY, "%s(%s, %s)", __func__,
473 	    sc->geom->class->name, sc->geom->name);
474 	g_topology_assert();
475 	for (n = 0; n < sc->n_components; n++) {
476 		read_metadata(sc->components[n].gcons, &md);
477 		md.chunk_next = sc->components[n].chunk_next;
478 		md.flags = sc->components[n].flags;
479 		md.md_count = sc->n_components;
480 		write_metadata(sc->components[n].gcons, &md);
481 	}
482 }
483 
484 /*
485  * Fills metadata (struct md) from information stored in softc and the nc'th
486  * component of virstor
487  */
488 static void
489 fill_metadata(struct g_virstor_softc *sc, struct g_virstor_metadata *md,
490     u_int nc, u_int hardcode)
491 {
492 	struct g_virstor_component *c;
493 
494 	bzero(md, sizeof *md);
495 	c = &sc->components[nc];
496 
497 	strncpy(md->md_magic, G_VIRSTOR_MAGIC, sizeof md->md_magic);
498 	md->md_version = G_VIRSTOR_VERSION;
499 	strncpy(md->md_name, sc->geom->name, sizeof md->md_name);
500 	md->md_id = sc->id;
501 	md->md_virsize = sc->virsize;
502 	md->md_chunk_size = sc->chunk_size;
503 	md->md_count = sc->n_components;
504 
505 	if (hardcode) {
506 		strncpy(md->provider, c->gcons->provider->name,
507 		    sizeof md->provider);
508 	}
509 	md->no = nc;
510 	md->provsize = c->gcons->provider->mediasize;
511 	md->chunk_count = c->chunk_count;
512 	md->chunk_next = c->chunk_next;
513 	md->chunk_reserved = c->chunk_reserved;
514 	md->flags = c->flags;
515 }
516 
517 /*
518  * Remove a component from virstor device.
519  * Can only be done if the component is unallocated.
520  */
521 static void
522 virstor_ctl_remove(struct gctl_req *req, struct g_class *cp)
523 {
524 	/* As this is executed in parallel to I/O, operations on virstor
525 	 * structures must be as atomic as possible. */
526 	struct g_virstor_softc *sc;
527 	int *nargs;
528 	const char *geom_name;
529 	u_int removed;
530 	int i;
531 
532 	nargs = gctl_get_paraml(req, "nargs", sizeof(*nargs));
533 	if (nargs == NULL) {
534 		gctl_error(req, "Error fetching argument '%s'", "nargs");
535 		return;
536 	}
537 	if (*nargs < 2) {
538 		gctl_error(req, "Invalid number of arguments");
539 		return;
540 	}
541 	/* Find "our" geom */
542 	geom_name = gctl_get_asciiparam(req, "arg0");
543 	if (geom_name == NULL) {
544 		gctl_error(req, "Error fetching argument '%s'",
545 		    "geom_name (arg0)");
546 		return;
547 	}
548 	sc = virstor_find_geom(cp, geom_name);
549 	if (sc == NULL) {
550 		gctl_error(req, "Don't know anything about '%s'", geom_name);
551 		return;
552 	}
553 
554 	if (virstor_valid_components(sc) != sc->n_components) {
555 		LOG_MSG(LVL_ERROR, "Cannot remove components from incomplete "
556 		    "virstor %s", sc->geom->name);
557 		gctl_error(req, "Virstor %s is incomplete", sc->geom->name);
558 		return;
559 	}
560 
561 	removed = 0;
562 	for (i = 1; i < *nargs; i++) {
563 		char param[8];
564 		const char *prov_name;
565 		int j, found;
566 		struct g_virstor_component *newcomp, *compbak;
567 
568 		snprintf(param, sizeof(param), "arg%d", i);
569 		prov_name = gctl_get_asciiparam(req, param);
570 		if (prov_name == NULL) {
571 			gctl_error(req, "Error fetching argument '%s'", param);
572 			return;
573 		}
574 		if (strncmp(prov_name, _PATH_DEV, sizeof(_PATH_DEV) - 1) == 0)
575 			prov_name += sizeof(_PATH_DEV) - 1;
576 
577 		found = -1;
578 		for (j = 0; j < sc->n_components; j++) {
579 			if (strcmp(sc->components[j].gcons->provider->name,
580 			    prov_name) == 0) {
581 				found = j;
582 				break;
583 			}
584 		}
585 		if (found == -1) {
586 			LOG_MSG(LVL_ERROR, "No %s component in %s",
587 			    prov_name, sc->geom->name);
588 			continue;
589 		}
590 
591 		compbak = sc->components;
592 		newcomp = malloc(sc->n_components * sizeof(*sc->components),
593 		    M_GVIRSTOR, M_WAITOK | M_ZERO);
594 		bcopy(sc->components, newcomp, found * sizeof(*sc->components));
595 		bcopy(&sc->components[found + 1], newcomp + found,
596 		    found * sizeof(*sc->components));
597 		if ((sc->components[j].flags & VIRSTOR_PROVIDER_ALLOCATED) != 0) {
598 			LOG_MSG(LVL_ERROR, "Allocated provider %s cannot be "
599 			    "removed from %s",
600 			    prov_name, sc->geom->name);
601 			free(newcomp, M_GVIRSTOR);
602 			/* We'll consider this non-fatal error */
603 			continue;
604 		}
605 		/* Renumerate unallocated components */
606 		for (j = 0; j < sc->n_components-1; j++) {
607 			if ((sc->components[j].flags &
608 			    VIRSTOR_PROVIDER_ALLOCATED) == 0) {
609 				sc->components[j].index = j;
610 			}
611 		}
612 		/* This is the critical section. If a component allocation
613 		 * event happens while both variables are not yet set,
614 		 * there will be trouble. Something will panic on encountering
615 		 * NULL sc->components[x].gcomp member.
616 		 * Luckily, component allocation happens very rarely and
617 		 * removing components is an abnormal action in any case. */
618 		sc->components = newcomp;
619 		sc->n_components--;
620 		/* End critical section */
621 
622 		g_topology_lock();
623 		if (clear_metadata(&compbak[found]) != 0) {
624 			LOG_MSG(LVL_WARNING, "Trouble ahead: cannot clear "
625 			    "metadata on %s", prov_name);
626 		}
627 		g_detach(compbak[found].gcons);
628 		g_destroy_consumer(compbak[found].gcons);
629 		g_topology_unlock();
630 
631 		free(compbak, M_GVIRSTOR);
632 
633 		removed++;
634 	}
635 
636 	/* This call to update_metadata() is critical. In case there's a
637 	 * power failure in the middle of it and some components are updated
638 	 * while others are not, there will be trouble on next .taste() iff
639 	 * a non-updated component is detected first */
640 	g_topology_lock();
641 	update_metadata(sc);
642 	g_topology_unlock();
643 	LOG_MSG(LVL_INFO, "Removed %d component(s) from %s", removed,
644 	    sc->geom->name);
645 }
646 
647 /*
648  * Clear metadata sector on component
649  */
650 static int
651 clear_metadata(struct g_virstor_component *comp)
652 {
653 	char *buf;
654 	int error;
655 
656 	LOG_MSG(LVL_INFO, "Clearing metadata on %s",
657 	    comp->gcons->provider->name);
658 	g_topology_assert();
659 	error = g_access(comp->gcons, 0, 1, 0);
660 	if (error != 0)
661 		return (error);
662 	buf = malloc(comp->gcons->provider->sectorsize, M_GVIRSTOR,
663 	    M_WAITOK | M_ZERO);
664 	error = g_write_data(comp->gcons,
665 	    comp->gcons->provider->mediasize -
666 	    comp->gcons->provider->sectorsize,
667 	    buf,
668 	    comp->gcons->provider->sectorsize);
669 	free(buf, M_GVIRSTOR);
670 	g_access(comp->gcons, 0, -1, 0);
671 	return (error);
672 }
673 
674 /*
675  * Destroy geom forcibly.
676  */
677 static int
678 g_virstor_destroy_geom(struct gctl_req *req __unused, struct g_class *mp,
679     struct g_geom *gp)
680 {
681 	struct g_virstor_softc *sc;
682 	int exitval;
683 
684 	sc = gp->softc;
685 	KASSERT(sc != NULL, ("%s: NULL sc", __func__));
686 
687 	exitval = 0;
688 	LOG_MSG(LVL_DEBUG, "%s called for %s, sc=%p", __func__, gp->name,
689 	    gp->softc);
690 
691 	if (sc != NULL) {
692 #ifdef INVARIANTS
693 		char *buf;
694 		int error;
695 		off_t off;
696 		int isclean, count;
697 		int n;
698 
699 		LOG_MSG(LVL_INFO, "INVARIANTS detected");
700 		LOG_MSG(LVL_INFO, "Verifying allocation "
701 		    "table for %s", sc->geom->name);
702 		count = 0;
703 		for (n = 0; n < sc->chunk_count; n++) {
704 			if (sc->map[n].flags || VIRSTOR_MAP_ALLOCATED != 0)
705 				count++;
706 		}
707 		LOG_MSG(LVL_INFO, "Device %s has %d allocated chunks",
708 		    sc->geom->name, count);
709 		n = off = count = 0;
710 		isclean = 1;
711 		if (virstor_valid_components(sc) != sc->n_components) {
712 			/* This is a incomplete virstor device (not all
713 			 * components have been found) */
714 			LOG_MSG(LVL_ERROR, "Device %s is incomplete",
715 			    sc->geom->name);
716 			goto bailout;
717 		}
718 		error = g_access(sc->components[0].gcons, 1, 0, 0);
719 		KASSERT(error == 0, ("%s: g_access failed (%d)", __func__,
720 		    error));
721 		/* Compare the whole on-disk allocation table with what's
722 		 * currently in memory */
723 		while (n < sc->chunk_count) {
724 			buf = g_read_data(sc->components[0].gcons, off,
725 			    sc->sectorsize, &error);
726 			KASSERT(buf != NULL, ("g_read_data returned NULL (%d) "
727 			    "for read at %jd", error, off));
728 			if (bcmp(buf, &sc->map[n], sc->sectorsize) != 0) {
729 				LOG_MSG(LVL_ERROR, "ERROR in allocation table, "
730 				    "entry %d, offset %jd", n, off);
731 				isclean = 0;
732 				count++;
733 			}
734 			n += sc->me_per_sector;
735 			off += sc->sectorsize;
736 			g_free(buf);
737 		}
738 		error = g_access(sc->components[0].gcons, -1, 0, 0);
739 		KASSERT(error == 0, ("%s: g_access failed (%d) on exit",
740 		    __func__, error));
741 		if (isclean != 1) {
742 			LOG_MSG(LVL_ERROR, "ALLOCATION TABLE CORRUPTED FOR %s "
743 			    "(%d sectors don't match, max %zu allocations)",
744 			    sc->geom->name, count,
745 			    count * sc->me_per_sector);
746 		} else {
747 			LOG_MSG(LVL_INFO, "Allocation table ok for %s",
748 			    sc->geom->name);
749 		}
750 bailout:
751 #endif
752 		update_metadata(sc);
753 		virstor_geom_destroy(sc, FALSE, FALSE);
754 		exitval = EAGAIN;
755 	} else
756 		exitval = 0;
757 	return (exitval);
758 }
759 
760 /*
761  * Taste event (per-class callback)
762  * Examines a provider and creates geom instances if needed
763  */
764 static struct g_geom *
765 g_virstor_taste(struct g_class *mp, struct g_provider *pp, int flags)
766 {
767 	struct g_virstor_metadata md;
768 	struct g_geom *gp;
769 	struct g_consumer *cp;
770 	struct g_virstor_softc *sc;
771 	int error;
772 
773 	g_trace(G_T_TOPOLOGY, "%s(%s, %s)", __func__, mp->name, pp->name);
774 	g_topology_assert();
775 	LOG_MSG(LVL_DEBUG, "Tasting %s", pp->name);
776 
777 	/* We need a dummy geom to attach a consumer to the given provider */
778 	gp = g_new_geomf(mp, "virstor:taste.helper");
779 	gp->start = (void *)invalid_call;	/* XXX: hacked up so the        */
780 	gp->access = (void *)invalid_call;	/* compiler doesn't complain.   */
781 	gp->orphan = (void *)invalid_call;	/* I really want these to fail. */
782 
783 	cp = g_new_consumer(gp);
784 	g_attach(cp, pp);
785 	error = read_metadata(cp, &md);
786 	g_detach(cp);
787 	g_destroy_consumer(cp);
788 	g_destroy_geom(gp);
789 
790 	if (error != 0)
791 		return (NULL);
792 
793 	if (strcmp(md.md_magic, G_VIRSTOR_MAGIC) != 0)
794 		return (NULL);
795 	if (md.md_version != G_VIRSTOR_VERSION) {
796 		LOG_MSG(LVL_ERROR, "Kernel module version invalid "
797 		    "to handle %s (%s) : %d should be %d",
798 		    md.md_name, pp->name, md.md_version, G_VIRSTOR_VERSION);
799 		return (NULL);
800 	}
801 	if (md.provsize != pp->mediasize)
802 		return (NULL);
803 
804 	/* If the provider name is hardcoded, use the offered provider only
805 	 * if it's been offered with its proper name (the one used in
806 	 * the label command). */
807 	if (md.provider[0] != '\0' &&
808 	    !g_compare_names(md.provider, pp->name))
809 		return (NULL);
810 
811 	/* Iterate all geoms this class already knows about to see if a new
812 	 * geom instance of this class needs to be created (in case the provider
813 	 * is first from a (possibly) multi-consumer geom) or it just needs
814 	 * to be added to an existing instance. */
815 	sc = NULL;
816 	gp = NULL;
817 	LIST_FOREACH(gp, &mp->geom, geom) {
818 		sc = gp->softc;
819 		if (sc == NULL)
820 			continue;
821 		if (strcmp(md.md_name, sc->geom->name) != 0)
822 			continue;
823 		if (md.md_id != sc->id)
824 			continue;
825 		break;
826 	}
827 	if (gp != NULL) { /* We found an existing geom instance; add to it */
828 		LOG_MSG(LVL_INFO, "Adding %s to %s", pp->name, md.md_name);
829 		error = add_provider_to_geom(sc, pp, &md);
830 		if (error != 0) {
831 			LOG_MSG(LVL_ERROR, "Error adding %s to %s (error %d)",
832 			    pp->name, md.md_name, error);
833 			return (NULL);
834 		}
835 	} else { /* New geom instance needs to be created */
836 		gp = create_virstor_geom(mp, &md);
837 		if (gp == NULL) {
838 			LOG_MSG(LVL_ERROR, "Error creating new instance of "
839 			    "class %s: %s", mp->name, md.md_name);
840 			LOG_MSG(LVL_DEBUG, "Error creating %s at %s",
841 			    md.md_name, pp->name);
842 			return (NULL);
843 		}
844 		sc = gp->softc;
845 		LOG_MSG(LVL_INFO, "Adding %s to %s (first found)", pp->name,
846 		    md.md_name);
847 		error = add_provider_to_geom(sc, pp, &md);
848 		if (error != 0) {
849 			LOG_MSG(LVL_ERROR, "Error adding %s to %s (error %d)",
850 			    pp->name, md.md_name, error);
851 			virstor_geom_destroy(sc, TRUE, FALSE);
852 			return (NULL);
853 		}
854 	}
855 
856 	return (gp);
857 }
858 
859 /*
860  * Destroyes consumer passed to it in arguments. Used as a callback
861  * on g_event queue.
862  */
863 static void
864 delay_destroy_consumer(void *arg, int flags __unused)
865 {
866 	struct g_consumer *c = arg;
867 	KASSERT(c != NULL, ("%s: invalid consumer", __func__));
868 	LOG_MSG(LVL_DEBUG, "Consumer %s destroyed with delay",
869 	    c->provider->name);
870 	g_detach(c);
871 	g_destroy_consumer(c);
872 }
873 
874 /*
875  * Remove a component (consumer) from geom instance; If it's the first
876  * component being removed, orphan the provider to announce geom's being
877  * dismantled
878  */
879 static void
880 remove_component(struct g_virstor_softc *sc, struct g_virstor_component *comp,
881     boolean_t delay)
882 {
883 	struct g_consumer *c;
884 
885 	KASSERT(comp->gcons != NULL, ("Component with no consumer in %s",
886 	    sc->geom->name));
887 	c = comp->gcons;
888 
889 	comp->gcons = NULL;
890 	KASSERT(c->provider != NULL, ("%s: no provider", __func__));
891 	LOG_MSG(LVL_DEBUG, "Component %s removed from %s", c->provider->name,
892 	    sc->geom->name);
893 	if (sc->provider != NULL) {
894 		LOG_MSG(LVL_INFO, "Removing provider %s", sc->provider->name);
895 		g_wither_provider(sc->provider, ENXIO);
896 		sc->provider = NULL;
897 	}
898 
899 	if (c->acr > 0 || c->acw > 0 || c->ace > 0)
900 		return;
901 	if (delay) {
902 		/* Destroy consumer after it's tasted */
903 		g_post_event(delay_destroy_consumer, c, M_WAITOK, NULL);
904 	} else {
905 		g_detach(c);
906 		g_destroy_consumer(c);
907 	}
908 }
909 
910 /*
911  * Destroy geom - called internally
912  * See g_virstor_destroy_geom for the other one
913  */
914 static int
915 virstor_geom_destroy(struct g_virstor_softc *sc, boolean_t force,
916     boolean_t delay)
917 {
918 	struct g_provider *pp;
919 	struct g_geom *gp;
920 	u_int n;
921 
922 	g_topology_assert();
923 
924 	if (sc == NULL)
925 		return (ENXIO);
926 
927 	pp = sc->provider;
928 	if (pp != NULL && (pp->acr != 0 || pp->acw != 0 || pp->ace != 0)) {
929 		LOG_MSG(force ? LVL_WARNING : LVL_ERROR,
930 		    "Device %s is still open.", pp->name);
931 		if (!force)
932 			return (EBUSY);
933 	}
934 
935 	for (n = 0; n < sc->n_components; n++) {
936 		if (sc->components[n].gcons != NULL)
937 			remove_component(sc, &sc->components[n], delay);
938 	}
939 
940 	gp = sc->geom;
941 	gp->softc = NULL;
942 
943 	KASSERT(sc->provider == NULL, ("Provider still exists for %s",
944 	    gp->name));
945 
946 	/* XXX: This might or might not work, since we're called with
947 	 * the topology lock held. Also, it might panic the kernel if
948 	 * the error'd BIO is in softupdates code. */
949 	mtx_lock(&sc->delayed_bio_q_mtx);
950 	while (!STAILQ_EMPTY(&sc->delayed_bio_q)) {
951 		struct g_virstor_bio_q *bq;
952 		bq = STAILQ_FIRST(&sc->delayed_bio_q);
953 		bq->bio->bio_error = ENOSPC;
954 		g_io_deliver(bq->bio, EIO);
955 		STAILQ_REMOVE_HEAD(&sc->delayed_bio_q, linkage);
956 		free(bq, M_GVIRSTOR);
957 	}
958 	mtx_unlock(&sc->delayed_bio_q_mtx);
959 	mtx_destroy(&sc->delayed_bio_q_mtx);
960 
961 	free(sc->map, M_GVIRSTOR);
962 	free(sc->components, M_GVIRSTOR);
963 	bzero(sc, sizeof *sc);
964 	free(sc, M_GVIRSTOR);
965 
966 	pp = LIST_FIRST(&gp->provider); /* We only offer one provider */
967 	if (pp == NULL || (pp->acr == 0 && pp->acw == 0 && pp->ace == 0))
968 		LOG_MSG(LVL_DEBUG, "Device %s destroyed", gp->name);
969 
970 	g_wither_geom(gp, ENXIO);
971 
972 	return (0);
973 }
974 
975 /*
976  * Utility function: read metadata & decode. Wants topology lock to be
977  * held.
978  */
979 static int
980 read_metadata(struct g_consumer *cp, struct g_virstor_metadata *md)
981 {
982 	struct g_provider *pp;
983 	char *buf;
984 	int error;
985 
986 	g_topology_assert();
987 	error = g_access(cp, 1, 0, 0);
988 	if (error != 0)
989 		return (error);
990 	pp = cp->provider;
991 	g_topology_unlock();
992 	buf = g_read_data(cp, pp->mediasize - pp->sectorsize, pp->sectorsize,
993 	    &error);
994 	g_topology_lock();
995 	g_access(cp, -1, 0, 0);
996 	if (buf == NULL)
997 		return (error);
998 
999 	virstor_metadata_decode(buf, md);
1000 	g_free(buf);
1001 
1002 	return (0);
1003 }
1004 
1005 /**
1006  * Utility function: encode & write metadata. Assumes topology lock is
1007  * held.
1008  *
1009  * There is no useful way of recovering from errors in this function,
1010  * not involving panicking the kernel. If the metadata cannot be written
1011  * the most we can do is notify the operator and hope he spots it and
1012  * replaces the broken drive.
1013  */
1014 static void
1015 write_metadata(struct g_consumer *cp, struct g_virstor_metadata *md)
1016 {
1017 	struct g_provider *pp;
1018 	char *buf;
1019 	int error;
1020 
1021 	KASSERT(cp != NULL && md != NULL && cp->provider != NULL,
1022 	    ("Something's fishy in %s", __func__));
1023 	LOG_MSG(LVL_DEBUG, "Writing metadata on %s", cp->provider->name);
1024 	g_topology_assert();
1025 	error = g_access(cp, 0, 1, 0);
1026 	if (error != 0) {
1027 		LOG_MSG(LVL_ERROR, "g_access(0,1,0) failed for %s: %d",
1028 		    cp->provider->name, error);
1029 		return;
1030 	}
1031 	pp = cp->provider;
1032 
1033 	buf = malloc(pp->sectorsize, M_GVIRSTOR, M_WAITOK);
1034 	bzero(buf, pp->sectorsize);
1035 	virstor_metadata_encode(md, buf);
1036 	g_topology_unlock();
1037 	error = g_write_data(cp, pp->mediasize - pp->sectorsize, buf,
1038 	    pp->sectorsize);
1039 	g_topology_lock();
1040 	g_access(cp, 0, -1, 0);
1041 	free(buf, M_GVIRSTOR);
1042 
1043 	if (error != 0)
1044 		LOG_MSG(LVL_ERROR, "Error %d writing metadata to %s",
1045 		    error, cp->provider->name);
1046 }
1047 
1048 /*
1049  * Creates a new instance of this GEOM class, initialise softc
1050  */
1051 static struct g_geom *
1052 create_virstor_geom(struct g_class *mp, struct g_virstor_metadata *md)
1053 {
1054 	struct g_geom *gp;
1055 	struct g_virstor_softc *sc;
1056 
1057 	LOG_MSG(LVL_DEBUG, "Creating geom instance for %s (id=%u)",
1058 	    md->md_name, md->md_id);
1059 
1060 	if (md->md_count < 1 || md->md_chunk_size < 1 ||
1061 	    md->md_virsize < md->md_chunk_size) {
1062 		/* This is bogus configuration, and probably means data is
1063 		 * somehow corrupted. Panic, maybe? */
1064 		LOG_MSG(LVL_ERROR, "Nonsensical metadata information for %s",
1065 		    md->md_name);
1066 		return (NULL);
1067 	}
1068 
1069 	/* Check if it's already created */
1070 	LIST_FOREACH(gp, &mp->geom, geom) {
1071 		sc = gp->softc;
1072 		if (sc != NULL && strcmp(sc->geom->name, md->md_name) == 0) {
1073 			LOG_MSG(LVL_WARNING, "Geom %s already exists",
1074 			    md->md_name);
1075 			if (sc->id != md->md_id) {
1076 				LOG_MSG(LVL_ERROR,
1077 				    "Some stale or invalid components "
1078 				    "exist for virstor device named %s. "
1079 				    "You will need to <CLEAR> all stale "
1080 				    "components and maybe reconfigure "
1081 				    "the virstor device. Tune "
1082 				    "kern.geom.virstor.debug sysctl up "
1083 				    "for more information.",
1084 				    sc->geom->name);
1085 			}
1086 			return (NULL);
1087 		}
1088 	}
1089 	gp = g_new_geomf(mp, "%s", md->md_name);
1090 	gp->softc = NULL; /* to circumevent races that test softc */
1091 
1092 	gp->start = g_virstor_start;
1093 	gp->spoiled = g_virstor_orphan;
1094 	gp->orphan = g_virstor_orphan;
1095 	gp->access = g_virstor_access;
1096 	gp->dumpconf = g_virstor_dumpconf;
1097 
1098 	sc = malloc(sizeof(*sc), M_GVIRSTOR, M_WAITOK | M_ZERO);
1099 	sc->id = md->md_id;
1100 	sc->n_components = md->md_count;
1101 	sc->components = malloc(sizeof(struct g_virstor_component) * md->md_count,
1102 	    M_GVIRSTOR, M_WAITOK | M_ZERO);
1103 	sc->chunk_size = md->md_chunk_size;
1104 	sc->virsize = md->md_virsize;
1105 	STAILQ_INIT(&sc->delayed_bio_q);
1106 	mtx_init(&sc->delayed_bio_q_mtx, "gvirstor_delayed_bio_q_mtx",
1107 	    "gvirstor", MTX_DEF | MTX_RECURSE);
1108 
1109 	sc->geom = gp;
1110 	sc->provider = NULL; /* virstor_check_and_run will create it */
1111 	gp->softc = sc;
1112 
1113 	LOG_MSG(LVL_ANNOUNCE, "Device %s created", sc->geom->name);
1114 
1115 	return (gp);
1116 }
1117 
1118 /*
1119  * Add provider to a GEOM class instance
1120  */
1121 static int
1122 add_provider_to_geom(struct g_virstor_softc *sc, struct g_provider *pp,
1123     struct g_virstor_metadata *md)
1124 {
1125 	struct g_virstor_component *component;
1126 	struct g_consumer *cp, *fcp;
1127 	struct g_geom *gp;
1128 	int error;
1129 
1130 	if (md->no >= sc->n_components)
1131 		return (EINVAL);
1132 
1133 	/* "Current" compontent */
1134 	component = &(sc->components[md->no]);
1135 	if (component->gcons != NULL)
1136 		return (EEXIST);
1137 
1138 	gp = sc->geom;
1139 	fcp = LIST_FIRST(&gp->consumer);
1140 
1141 	cp = g_new_consumer(gp);
1142 	error = g_attach(cp, pp);
1143 
1144 	if (error != 0) {
1145 		g_destroy_consumer(cp);
1146 		return (error);
1147 	}
1148 
1149 	if (fcp != NULL) {
1150 		if (fcp->provider->sectorsize != pp->sectorsize) {
1151 			/* TODO: this can be made to work */
1152 			LOG_MSG(LVL_ERROR, "Provider %s of %s has invalid "
1153 			    "sector size (%d)", pp->name, sc->geom->name,
1154 			    pp->sectorsize);
1155 			return (EINVAL);
1156 		}
1157 		if (fcp->acr > 0 || fcp->acw || fcp->ace > 0) {
1158 			/* Replicate access permissions from first "live" consumer
1159 			 * to the new one */
1160 			error = g_access(cp, fcp->acr, fcp->acw, fcp->ace);
1161 			if (error != 0) {
1162 				g_detach(cp);
1163 				g_destroy_consumer(cp);
1164 				return (error);
1165 			}
1166 		}
1167 	}
1168 
1169 	/* Bring up a new component */
1170 	cp->private = component;
1171 	component->gcons = cp;
1172 	component->sc = sc;
1173 	component->index = md->no;
1174 	component->chunk_count = md->chunk_count;
1175 	component->chunk_next = md->chunk_next;
1176 	component->chunk_reserved = md->chunk_reserved;
1177 	component->flags = md->flags;
1178 
1179 	LOG_MSG(LVL_DEBUG, "%s attached to %s", pp->name, sc->geom->name);
1180 
1181 	virstor_check_and_run(sc);
1182 	return (0);
1183 }
1184 
1185 /*
1186  * Check if everything's ready to create the geom provider & device entry,
1187  * create and start provider.
1188  * Called ultimately by .taste, from g_event thread
1189  */
1190 static void
1191 virstor_check_and_run(struct g_virstor_softc *sc)
1192 {
1193 	off_t off;
1194 	size_t n, count;
1195 	int index;
1196 	int error;
1197 
1198 	if (virstor_valid_components(sc) != sc->n_components)
1199 		return;
1200 
1201 	if (virstor_valid_components(sc) == 0) {
1202 		/* This is actually a candidate for panic() */
1203 		LOG_MSG(LVL_ERROR, "No valid components for %s?",
1204 		    sc->provider->name);
1205 		return;
1206 	}
1207 
1208 	sc->sectorsize = sc->components[0].gcons->provider->sectorsize;
1209 
1210 	/* Initialise allocation map from the first consumer */
1211 	sc->chunk_count = sc->virsize / sc->chunk_size;
1212 	if (sc->chunk_count * (off_t)sc->chunk_size != sc->virsize) {
1213 		LOG_MSG(LVL_WARNING, "Device %s truncated to %ju bytes",
1214 		    sc->provider->name,
1215 		    sc->chunk_count * (off_t)sc->chunk_size);
1216 	}
1217 	sc->map_size = sc->chunk_count * sizeof *(sc->map);
1218 	/* The following allocation is in order of 4MB - 8MB */
1219 	sc->map = malloc(sc->map_size, M_GVIRSTOR, M_WAITOK);
1220 	KASSERT(sc->map != NULL, ("%s: Memory allocation error (%zu bytes) for %s",
1221 	    __func__, sc->map_size, sc->provider->name));
1222 	sc->map_sectors = sc->map_size / sc->sectorsize;
1223 
1224 	count = 0;
1225 	for (n = 0; n < sc->n_components; n++)
1226 		count += sc->components[n].chunk_count;
1227 	LOG_MSG(LVL_INFO, "Device %s has %zu physical chunks and %zu virtual "
1228 	    "(%zu KB chunks)",
1229 	    sc->geom->name, count, sc->chunk_count, sc->chunk_size / 1024);
1230 
1231 	error = g_access(sc->components[0].gcons, 1, 0, 0);
1232 	if (error != 0) {
1233 		LOG_MSG(LVL_ERROR, "Cannot acquire read access for %s to "
1234 		    "read allocation map for %s",
1235 		    sc->components[0].gcons->provider->name,
1236 		    sc->geom->name);
1237 		return;
1238 	}
1239 	/* Read in the allocation map */
1240 	LOG_MSG(LVL_DEBUG, "Reading map for %s from %s", sc->geom->name,
1241 	    sc->components[0].gcons->provider->name);
1242 	off = count = n = 0;
1243 	while (count < sc->map_size) {
1244 		struct g_virstor_map_entry *mapbuf;
1245 		size_t bs;
1246 
1247 		bs = MIN(MAXPHYS, sc->map_size - count);
1248 		if (bs % sc->sectorsize != 0) {
1249 			/* Check for alignment errors */
1250 			bs = rounddown(bs, sc->sectorsize);
1251 			if (bs == 0)
1252 				break;
1253 			LOG_MSG(LVL_ERROR, "Trouble: map is not sector-aligned "
1254 			    "for %s on %s", sc->geom->name,
1255 			    sc->components[0].gcons->provider->name);
1256 		}
1257 		mapbuf = g_read_data(sc->components[0].gcons, off, bs, &error);
1258 		if (mapbuf == NULL) {
1259 			free(sc->map, M_GVIRSTOR);
1260 			LOG_MSG(LVL_ERROR, "Error reading allocation map "
1261 			    "for %s from %s (offset %ju) (error %d)",
1262 			    sc->geom->name,
1263 			    sc->components[0].gcons->provider->name,
1264 			    off, error);
1265 			return;
1266 		}
1267 
1268 		bcopy(mapbuf, &sc->map[n], bs);
1269 		off += bs;
1270 		count += bs;
1271 		n += bs / sizeof *(sc->map);
1272 		g_free(mapbuf);
1273 	}
1274 	g_access(sc->components[0].gcons, -1, 0, 0);
1275 	LOG_MSG(LVL_DEBUG, "Read map for %s", sc->geom->name);
1276 
1277 	/* find first component with allocatable chunks */
1278 	index = -1;
1279 	for (n = 0; n < sc->n_components; n++) {
1280 		if (sc->components[n].chunk_next <
1281 		    sc->components[n].chunk_count) {
1282 			index = n;
1283 			break;
1284 		}
1285 	}
1286 	if (index == -1)
1287 		/* not found? set it to the last component and handle it
1288 		 * later */
1289 		index = sc->n_components - 1;
1290 
1291 	if (index >= sc->n_components - g_virstor_component_watermark - 1) {
1292 		LOG_MSG(LVL_WARNING, "Device %s running out of components "
1293 		    "(%d/%u: %s)", sc->geom->name,
1294 		    index+1,
1295 		    sc->n_components,
1296 		    sc->components[index].gcons->provider->name);
1297 	}
1298 	sc->curr_component = index;
1299 
1300 	if (sc->components[index].chunk_next >=
1301 	    sc->components[index].chunk_count - g_virstor_chunk_watermark) {
1302 		LOG_MSG(LVL_WARNING,
1303 		    "Component %s of %s is running out of free space "
1304 		    "(%u chunks left)",
1305 		    sc->components[index].gcons->provider->name,
1306 		    sc->geom->name, sc->components[index].chunk_count -
1307 		    sc->components[index].chunk_next);
1308 	}
1309 
1310 	sc->me_per_sector = sc->sectorsize / sizeof *(sc->map);
1311 	if (sc->sectorsize % sizeof *(sc->map) != 0) {
1312 		LOG_MSG(LVL_ERROR,
1313 		    "%s: Map entries don't fit exactly in a sector (%s)",
1314 		    __func__, sc->geom->name);
1315 		return;
1316 	}
1317 
1318 	/* Recalculate allocated chunks in components & at the same time
1319 	 * verify map data is sane. We could trust metadata on this, but
1320 	 * we want to make sure. */
1321 	for (n = 0; n < sc->n_components; n++)
1322 		sc->components[n].chunk_next = sc->components[n].chunk_reserved;
1323 
1324 	for (n = 0; n < sc->chunk_count; n++) {
1325 		if (sc->map[n].provider_no >= sc->n_components ||
1326 			sc->map[n].provider_chunk >=
1327 			sc->components[sc->map[n].provider_no].chunk_count) {
1328 			LOG_MSG(LVL_ERROR, "%s: Invalid entry %u in map for %s",
1329 			    __func__, (u_int)n, sc->geom->name);
1330 			LOG_MSG(LVL_ERROR, "%s: provider_no: %u, n_components: %u"
1331 			    " provider_chunk: %u, chunk_count: %u", __func__,
1332 			    sc->map[n].provider_no, sc->n_components,
1333 			    sc->map[n].provider_chunk,
1334 			    sc->components[sc->map[n].provider_no].chunk_count);
1335 			return;
1336 		}
1337 		if (sc->map[n].flags & VIRSTOR_MAP_ALLOCATED)
1338 			sc->components[sc->map[n].provider_no].chunk_next++;
1339 	}
1340 
1341 	sc->provider = g_new_providerf(sc->geom, "virstor/%s",
1342 	    sc->geom->name);
1343 
1344 	sc->provider->sectorsize = sc->sectorsize;
1345 	sc->provider->mediasize = sc->virsize;
1346 	g_error_provider(sc->provider, 0);
1347 
1348 	LOG_MSG(LVL_INFO, "%s activated", sc->provider->name);
1349 	LOG_MSG(LVL_DEBUG, "%s starting with current component %u, starting "
1350 	    "chunk %u", sc->provider->name, sc->curr_component,
1351 	    sc->components[sc->curr_component].chunk_next);
1352 }
1353 
1354 /*
1355  * Returns count of active providers in this geom instance
1356  */
1357 static u_int
1358 virstor_valid_components(struct g_virstor_softc *sc)
1359 {
1360 	unsigned int nc, i;
1361 
1362 	nc = 0;
1363 	KASSERT(sc != NULL, ("%s: softc is NULL", __func__));
1364 	KASSERT(sc->components != NULL, ("%s: sc->components is NULL", __func__));
1365 	for (i = 0; i < sc->n_components; i++)
1366 		if (sc->components[i].gcons != NULL)
1367 			nc++;
1368 	return (nc);
1369 }
1370 
1371 /*
1372  * Called when the consumer gets orphaned (?)
1373  */
1374 static void
1375 g_virstor_orphan(struct g_consumer *cp)
1376 {
1377 	struct g_virstor_softc *sc;
1378 	struct g_virstor_component *comp;
1379 	struct g_geom *gp;
1380 
1381 	g_topology_assert();
1382 	gp = cp->geom;
1383 	sc = gp->softc;
1384 	if (sc == NULL)
1385 		return;
1386 
1387 	comp = cp->private;
1388 	KASSERT(comp != NULL, ("%s: No component in private part of consumer",
1389 	    __func__));
1390 	remove_component(sc, comp, FALSE);
1391 	if (LIST_EMPTY(&gp->consumer))
1392 		virstor_geom_destroy(sc, TRUE, FALSE);
1393 }
1394 
1395 /*
1396  * Called to notify geom when it's been opened, and for what intent
1397  */
1398 static int
1399 g_virstor_access(struct g_provider *pp, int dr, int dw, int de)
1400 {
1401 	struct g_consumer *c, *c2, *tmp;
1402 	struct g_virstor_softc *sc;
1403 	struct g_geom *gp;
1404 	int error;
1405 
1406 	KASSERT(pp != NULL, ("%s: NULL provider", __func__));
1407 	gp = pp->geom;
1408 	KASSERT(gp != NULL, ("%s: NULL geom", __func__));
1409 	sc = gp->softc;
1410 
1411 	/* Grab an exclusive bit to propagate on our consumers on first open */
1412 	if (pp->acr == 0 && pp->acw == 0 && pp->ace == 0)
1413 		de++;
1414 	/* ... drop it on close */
1415 	if (pp->acr + dr == 0 && pp->acw + dw == 0 && pp->ace + de == 0) {
1416 		de--;
1417 		if (sc != NULL)
1418 			update_metadata(sc);
1419 	}
1420 
1421 	error = ENXIO;
1422 	LIST_FOREACH_SAFE(c, &gp->consumer, consumer, tmp) {
1423 		error = g_access(c, dr, dw, de);
1424 		if (error != 0)
1425 			goto fail;
1426 		if (c->acr == 0 && c->acw == 0 && c->ace == 0 &&
1427 		    c->flags & G_CF_ORPHAN) {
1428 			g_detach(c);
1429 			g_destroy_consumer(c);
1430 		}
1431 	}
1432 
1433 	if (sc != NULL && LIST_EMPTY(&gp->consumer))
1434 		virstor_geom_destroy(sc, TRUE, FALSE);
1435 
1436 	return (error);
1437 
1438 fail:
1439 	/* Backout earlier changes */
1440 	LIST_FOREACH(c2, &gp->consumer, consumer) {
1441 		if (c2 == c)
1442 			break;
1443 		g_access(c2, -dr, -dw, -de);
1444 	}
1445 	return (error);
1446 }
1447 
1448 /*
1449  * Generate XML dump of current state
1450  */
1451 static void
1452 g_virstor_dumpconf(struct sbuf *sb, const char *indent, struct g_geom *gp,
1453     struct g_consumer *cp, struct g_provider *pp)
1454 {
1455 	struct g_virstor_softc *sc;
1456 
1457 	g_topology_assert();
1458 	sc = gp->softc;
1459 
1460 	if (sc == NULL || pp != NULL)
1461 		return;
1462 
1463 	if (cp != NULL) {
1464 		/* For each component */
1465 		struct g_virstor_component *comp;
1466 
1467 		comp = cp->private;
1468 		if (comp == NULL)
1469 			return;
1470 		sbuf_printf(sb, "%s<ComponentIndex>%u</ComponentIndex>\n",
1471 		    indent, comp->index);
1472 		sbuf_printf(sb, "%s<ChunkCount>%u</ChunkCount>\n",
1473 		    indent, comp->chunk_count);
1474 		sbuf_printf(sb, "%s<ChunksUsed>%u</ChunksUsed>\n",
1475 		    indent, comp->chunk_next);
1476 		sbuf_printf(sb, "%s<ChunksReserved>%u</ChunksReserved>\n",
1477 		    indent, comp->chunk_reserved);
1478 		sbuf_printf(sb, "%s<StorageFree>%u%%</StorageFree>\n",
1479 		    indent,
1480 		    comp->chunk_next > 0 ? 100 -
1481 		    ((comp->chunk_next + comp->chunk_reserved) * 100) /
1482 		    comp->chunk_count : 100);
1483 	} else {
1484 		/* For the whole thing */
1485 		u_int count, used, i;
1486 		off_t size;
1487 
1488 		count = used = size = 0;
1489 		for (i = 0; i < sc->n_components; i++) {
1490 			if (sc->components[i].gcons != NULL) {
1491 				count += sc->components[i].chunk_count;
1492 				used += sc->components[i].chunk_next +
1493 				    sc->components[i].chunk_reserved;
1494 				size += sc->components[i].gcons->
1495 				    provider->mediasize;
1496 			}
1497 		}
1498 
1499 		sbuf_printf(sb, "%s<Status>"
1500 		    "Components=%u, Online=%u</Status>\n", indent,
1501 		    sc->n_components, virstor_valid_components(sc));
1502 		sbuf_printf(sb, "%s<State>%u%% physical free</State>\n",
1503 		    indent, 100-(used * 100) / count);
1504 		sbuf_printf(sb, "%s<ChunkSize>%zu</ChunkSize>\n", indent,
1505 		    sc->chunk_size);
1506 		sbuf_printf(sb, "%s<PhysicalFree>%u%%</PhysicalFree>\n",
1507 		    indent, used > 0 ? 100 - (used * 100) / count : 100);
1508 		sbuf_printf(sb, "%s<ChunkPhysicalCount>%u</ChunkPhysicalCount>\n",
1509 		    indent, count);
1510 		sbuf_printf(sb, "%s<ChunkVirtualCount>%zu</ChunkVirtualCount>\n",
1511 		    indent, sc->chunk_count);
1512 		sbuf_printf(sb, "%s<PhysicalBacking>%zu%%</PhysicalBacking>\n",
1513 		    indent,
1514 		    (count * 100) / sc->chunk_count);
1515 		sbuf_printf(sb, "%s<PhysicalBackingSize>%jd</PhysicalBackingSize>\n",
1516 		    indent, size);
1517 		sbuf_printf(sb, "%s<VirtualSize>%jd</VirtualSize>\n", indent,
1518 		    sc->virsize);
1519 	}
1520 }
1521 
1522 /*
1523  * GEOM .done handler
1524  * Can't use standard handler because one requested IO may
1525  * fork into additional data IOs
1526  */
1527 static void
1528 g_virstor_done(struct bio *b)
1529 {
1530 	struct g_virstor_softc *sc;
1531 	struct bio *parent_b;
1532 
1533 	parent_b = b->bio_parent;
1534 	sc = parent_b->bio_to->geom->softc;
1535 
1536 	if (b->bio_error != 0) {
1537 		LOG_MSG(LVL_ERROR, "Error %d for offset=%ju, length=%ju, %s",
1538 		    b->bio_error, b->bio_offset, b->bio_length,
1539 		    b->bio_to->name);
1540 		if (parent_b->bio_error == 0)
1541 			parent_b->bio_error = b->bio_error;
1542 	}
1543 
1544 	parent_b->bio_inbed++;
1545 	parent_b->bio_completed += b->bio_completed;
1546 
1547 	if (parent_b->bio_children == parent_b->bio_inbed) {
1548 		parent_b->bio_completed = parent_b->bio_length;
1549 		g_io_deliver(parent_b, parent_b->bio_error);
1550 	}
1551 	g_destroy_bio(b);
1552 }
1553 
1554 /*
1555  * I/O starts here
1556  * Called in g_down thread
1557  */
1558 static void
1559 g_virstor_start(struct bio *b)
1560 {
1561 	struct g_virstor_softc *sc;
1562 	struct g_virstor_component *comp;
1563 	struct bio *cb;
1564 	struct g_provider *pp;
1565 	char *addr;
1566 	off_t offset, length;
1567 	struct bio_queue_head bq;
1568 	size_t chunk_size;	/* cached for convenience */
1569 	u_int count;
1570 
1571 	pp = b->bio_to;
1572 	sc = pp->geom->softc;
1573 	KASSERT(sc != NULL, ("%s: no softc (error=%d, device=%s)", __func__,
1574 	    b->bio_to->error, b->bio_to->name));
1575 
1576 	LOG_REQ(LVL_MOREDEBUG, b, "%s", __func__);
1577 
1578 	switch (b->bio_cmd) {
1579 	case BIO_READ:
1580 	case BIO_WRITE:
1581 	case BIO_DELETE:
1582 		break;
1583 	default:
1584 		g_io_deliver(b, EOPNOTSUPP);
1585 		return;
1586 	}
1587 
1588 	LOG_MSG(LVL_DEBUG2, "BIO arrived, size=%ju", b->bio_length);
1589 	bioq_init(&bq);
1590 
1591 	chunk_size = sc->chunk_size;
1592 	addr = b->bio_data;
1593 	offset = b->bio_offset;	/* virtual offset and length */
1594 	length = b->bio_length;
1595 
1596 	while (length > 0) {
1597 		size_t chunk_index, in_chunk_offset, in_chunk_length;
1598 		struct virstor_map_entry *me;
1599 
1600 		chunk_index = offset / chunk_size; /* round downwards */
1601 		in_chunk_offset = offset % chunk_size;
1602 		in_chunk_length = min(length, chunk_size - in_chunk_offset);
1603 		LOG_MSG(LVL_DEBUG, "Mapped %s(%ju, %ju) to (%zu,%zu,%zu)",
1604 		    b->bio_cmd == BIO_READ ? "R" : "W",
1605 		    offset, length,
1606 		    chunk_index, in_chunk_offset, in_chunk_length);
1607 		me = &sc->map[chunk_index];
1608 
1609 		if (b->bio_cmd == BIO_READ || b->bio_cmd == BIO_DELETE) {
1610 			if ((me->flags & VIRSTOR_MAP_ALLOCATED) == 0) {
1611 				/* Reads from unallocated chunks return zeroed
1612 				 * buffers */
1613 				if (b->bio_cmd == BIO_READ)
1614 					bzero(addr, in_chunk_length);
1615 			} else {
1616 				comp = &sc->components[me->provider_no];
1617 
1618 				cb = g_clone_bio(b);
1619 				if (cb == NULL) {
1620 					bioq_dismantle(&bq);
1621 					if (b->bio_error == 0)
1622 						b->bio_error = ENOMEM;
1623 					g_io_deliver(b, b->bio_error);
1624 					return;
1625 				}
1626 				cb->bio_to = comp->gcons->provider;
1627 				cb->bio_done = g_virstor_done;
1628 				cb->bio_offset =
1629 				    (off_t)me->provider_chunk * (off_t)chunk_size
1630 				    + in_chunk_offset;
1631 				cb->bio_length = in_chunk_length;
1632 				cb->bio_data = addr;
1633 				cb->bio_caller1 = comp;
1634 				bioq_disksort(&bq, cb);
1635 			}
1636 		} else { /* handle BIO_WRITE */
1637 			KASSERT(b->bio_cmd == BIO_WRITE,
1638 			    ("%s: Unknown command %d", __func__,
1639 			    b->bio_cmd));
1640 
1641 			if ((me->flags & VIRSTOR_MAP_ALLOCATED) == 0) {
1642 				/* We have a virtual chunk, represented by
1643 				 * the "me" entry, but it's not yet allocated
1644 				 * (tied to) a physical chunk. So do it now. */
1645 				struct virstor_map_entry *data_me;
1646 				u_int phys_chunk, comp_no;
1647 				off_t s_offset;
1648 				int error;
1649 
1650 				error = allocate_chunk(sc, &comp, &comp_no,
1651 				    &phys_chunk);
1652 				if (error != 0) {
1653 					/* We cannot allocate a physical chunk
1654 					 * to satisfy this request, so we'll
1655 					 * delay it to when we can...
1656 					 * XXX: this will prevent the fs from
1657 					 * being umounted! */
1658 					struct g_virstor_bio_q *biq;
1659 					biq = malloc(sizeof *biq, M_GVIRSTOR,
1660 					    M_NOWAIT);
1661 					if (biq == NULL) {
1662 						bioq_dismantle(&bq);
1663 						if (b->bio_error == 0)
1664 							b->bio_error = ENOMEM;
1665 						g_io_deliver(b, b->bio_error);
1666 						return;
1667 					}
1668 					biq->bio = b;
1669 					mtx_lock(&sc->delayed_bio_q_mtx);
1670 					STAILQ_INSERT_TAIL(&sc->delayed_bio_q,
1671 					    biq, linkage);
1672 					mtx_unlock(&sc->delayed_bio_q_mtx);
1673 					LOG_MSG(LVL_WARNING, "Delaying BIO "
1674 					    "(size=%ju) until free physical "
1675 					    "space can be found on %s",
1676 					    b->bio_length,
1677 					    sc->provider->name);
1678 					return;
1679 				}
1680 				LOG_MSG(LVL_DEBUG, "Allocated chunk %u on %s "
1681 				    "for %s",
1682 				    phys_chunk,
1683 				    comp->gcons->provider->name,
1684 				    sc->provider->name);
1685 
1686 				me->provider_no = comp_no;
1687 				me->provider_chunk = phys_chunk;
1688 				me->flags |= VIRSTOR_MAP_ALLOCATED;
1689 
1690 				cb = g_clone_bio(b);
1691 				if (cb == NULL) {
1692 					me->flags &= ~VIRSTOR_MAP_ALLOCATED;
1693 					me->provider_no = 0;
1694 					me->provider_chunk = 0;
1695 					bioq_dismantle(&bq);
1696 					if (b->bio_error == 0)
1697 						b->bio_error = ENOMEM;
1698 					g_io_deliver(b, b->bio_error);
1699 					return;
1700 				}
1701 
1702 				/* The allocation table is stored continuously
1703 				 * at the start of the drive. We need to
1704 				 * calculate the offset of the sector that holds
1705 				 * this map entry both on the drive and in the
1706 				 * map array.
1707 				 * sc_offset will end up pointing to the drive
1708 				 * sector. */
1709 				s_offset = chunk_index * sizeof *me;
1710 				s_offset = rounddown(s_offset, sc->sectorsize);
1711 
1712 				/* data_me points to map entry sector
1713 				 * in memory (analogous to offset) */
1714 				data_me = &sc->map[rounddown(chunk_index,
1715 				    sc->me_per_sector)];
1716 
1717 				/* Commit sector with map entry to storage */
1718 				cb->bio_to = sc->components[0].gcons->provider;
1719 				cb->bio_done = g_virstor_done;
1720 				cb->bio_offset = s_offset;
1721 				cb->bio_data = (char *)data_me;
1722 				cb->bio_length = sc->sectorsize;
1723 				cb->bio_caller1 = &sc->components[0];
1724 				bioq_disksort(&bq, cb);
1725 			}
1726 
1727 			comp = &sc->components[me->provider_no];
1728 			cb = g_clone_bio(b);
1729 			if (cb == NULL) {
1730 				bioq_dismantle(&bq);
1731 				if (b->bio_error == 0)
1732 					b->bio_error = ENOMEM;
1733 				g_io_deliver(b, b->bio_error);
1734 				return;
1735 			}
1736 			/* Finally, handle the data */
1737 			cb->bio_to = comp->gcons->provider;
1738 			cb->bio_done = g_virstor_done;
1739 			cb->bio_offset = (off_t)me->provider_chunk*(off_t)chunk_size +
1740 			    in_chunk_offset;
1741 			cb->bio_length = in_chunk_length;
1742 			cb->bio_data = addr;
1743 			cb->bio_caller1 = comp;
1744 			bioq_disksort(&bq, cb);
1745 		}
1746 		addr += in_chunk_length;
1747 		length -= in_chunk_length;
1748 		offset += in_chunk_length;
1749 	}
1750 
1751 	/* Fire off bio's here */
1752 	count = 0;
1753 	for (cb = bioq_first(&bq); cb != NULL; cb = bioq_first(&bq)) {
1754 		bioq_remove(&bq, cb);
1755 		LOG_REQ(LVL_MOREDEBUG, cb, "Firing request");
1756 		comp = cb->bio_caller1;
1757 		cb->bio_caller1 = NULL;
1758 		LOG_MSG(LVL_DEBUG, " firing bio, offset=%ju, length=%ju",
1759 		    cb->bio_offset, cb->bio_length);
1760 		g_io_request(cb, comp->gcons);
1761 		count++;
1762 	}
1763 	if (count == 0) { /* We handled everything locally */
1764 		b->bio_completed = b->bio_length;
1765 		g_io_deliver(b, 0);
1766 	}
1767 
1768 }
1769 
1770 /*
1771  * Allocate a chunk from a physical provider. Returns physical component,
1772  * chunk index relative to the component and the component's index.
1773  */
1774 static int
1775 allocate_chunk(struct g_virstor_softc *sc, struct g_virstor_component **comp,
1776     u_int *comp_no_p, u_int *chunk)
1777 {
1778 	u_int comp_no;
1779 
1780 	KASSERT(sc->curr_component < sc->n_components,
1781 	    ("%s: Invalid curr_component: %u",  __func__, sc->curr_component));
1782 
1783 	comp_no = sc->curr_component;
1784 	*comp = &sc->components[comp_no];
1785 	dump_component(*comp);
1786 	if ((*comp)->chunk_next >= (*comp)->chunk_count) {
1787 		/* This component is full. Allocate next component */
1788 		if (comp_no >= sc->n_components-1) {
1789 			LOG_MSG(LVL_ERROR, "All physical space allocated for %s",
1790 			    sc->geom->name);
1791 			return (-1);
1792 		}
1793 		(*comp)->flags &= ~VIRSTOR_PROVIDER_CURRENT;
1794 		sc->curr_component = ++comp_no;
1795 
1796 		*comp = &sc->components[comp_no];
1797 		if (comp_no >= sc->n_components - g_virstor_component_watermark-1)
1798 			LOG_MSG(LVL_WARNING, "Device %s running out of components "
1799 			    "(switching to %u/%u: %s)", sc->geom->name,
1800 			    comp_no+1, sc->n_components,
1801 			    (*comp)->gcons->provider->name);
1802 		/* Take care not to overwrite reserved chunks */
1803 		if ( (*comp)->chunk_reserved > 0 &&
1804 		    (*comp)->chunk_next < (*comp)->chunk_reserved)
1805 			(*comp)->chunk_next = (*comp)->chunk_reserved;
1806 
1807 		(*comp)->flags |=
1808 		    VIRSTOR_PROVIDER_ALLOCATED | VIRSTOR_PROVIDER_CURRENT;
1809 		dump_component(*comp);
1810 		*comp_no_p = comp_no;
1811 		*chunk = (*comp)->chunk_next++;
1812 	} else {
1813 		*comp_no_p = comp_no;
1814 		*chunk = (*comp)->chunk_next++;
1815 	}
1816 	return (0);
1817 }
1818 
1819 /* Dump a component */
1820 static void
1821 dump_component(struct g_virstor_component *comp)
1822 {
1823 
1824 	if (g_virstor_debug < LVL_DEBUG2)
1825 		return;
1826 	printf("Component %d: %s\n", comp->index, comp->gcons->provider->name);
1827 	printf("  chunk_count: %u\n", comp->chunk_count);
1828 	printf("   chunk_next: %u\n", comp->chunk_next);
1829 	printf("        flags: %u\n", comp->flags);
1830 }
1831 
1832 #if 0
1833 /* Dump a map entry */
1834 static void
1835 dump_me(struct virstor_map_entry *me, unsigned int nr)
1836 {
1837 	if (g_virstor_debug < LVL_DEBUG)
1838 		return;
1839 	printf("VIRT. CHUNK #%d: ", nr);
1840 	if ((me->flags & VIRSTOR_MAP_ALLOCATED) == 0)
1841 		printf("(unallocated)\n");
1842 	else
1843 		printf("allocated at provider %u, provider_chunk %u\n",
1844 		    me->provider_no, me->provider_chunk);
1845 }
1846 #endif
1847 
1848 /*
1849  * Dismantle bio_queue and destroy its components
1850  */
1851 static void
1852 bioq_dismantle(struct bio_queue_head *bq)
1853 {
1854 	struct bio *b;
1855 
1856 	for (b = bioq_first(bq); b != NULL; b = bioq_first(bq)) {
1857 		bioq_remove(bq, b);
1858 		g_destroy_bio(b);
1859 	}
1860 }
1861 
1862 /*
1863  * The function that shouldn't be called.
1864  * When this is called, the stack is already garbled because of
1865  * argument mismatch. There's nothing to do now but panic, which is
1866  * accidentally the whole purpose of this function.
1867  * Motivation: to guard from accidentally calling geom methods when
1868  * they shouldn't be called. (see g_..._taste)
1869  */
1870 static void
1871 invalid_call(void)
1872 {
1873 	panic("invalid_call() has just been called. Something's fishy here.");
1874 }
1875 
1876 DECLARE_GEOM_CLASS(g_virstor_class, g_virstor); /* Let there be light */
1877 MODULE_VERSION(geom_virstor, 0);
1878