subr_bus.c revision 91739
1/*-
2 * Copyright (c) 1997,1998 Doug Rabson
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 *
26 * $FreeBSD: head/sys/kern/subr_bus.c 91739 2002-03-06 11:34:02Z bde $
27 */
28
29#include "opt_bus.h"
30
31#include <sys/param.h>
32#include <sys/queue.h>
33#include <sys/malloc.h>
34#include <sys/kernel.h>
35#include <sys/module.h>
36#include <sys/kobj.h>
37#include <sys/bus_private.h>
38#include <sys/sysctl.h>
39#include <sys/systm.h>
40#include <machine/bus.h>
41#include <sys/rman.h>
42#include <machine/stdarg.h>	/* for device_printf() */
43
44static MALLOC_DEFINE(M_BUS, "bus", "Bus data structures");
45
46#ifdef BUS_DEBUG
47
48static int bus_debug = 1;
49SYSCTL_INT(_debug, OID_AUTO, bus_debug, CTLFLAG_RW, &bus_debug, 0,
50    "Debug bus code");
51
52#define PDEBUG(a)	if (bus_debug) {printf("%s:%d: ", __func__, __LINE__), printf a, printf("\n");}
53#define DEVICENAME(d)	((d)? device_get_name(d): "no device")
54#define DRIVERNAME(d)	((d)? d->name : "no driver")
55#define DEVCLANAME(d)	((d)? d->name : "no devclass")
56
57/* Produce the indenting, indent*2 spaces plus a '.' ahead of that to
58 * prevent syslog from deleting initial spaces
59 */
60#define indentprintf(p)	do { int iJ; printf("."); for (iJ=0; iJ<indent; iJ++) printf("  "); printf p ; } while (0)
61
62static void print_device_short(device_t dev, int indent);
63static void print_device(device_t dev, int indent);
64void print_device_tree_short(device_t dev, int indent);
65void print_device_tree(device_t dev, int indent);
66static void print_driver_short(driver_t *driver, int indent);
67static void print_driver(driver_t *driver, int indent);
68static void print_driver_list(driver_list_t drivers, int indent);
69static void print_devclass_short(devclass_t dc, int indent);
70static void print_devclass(devclass_t dc, int indent);
71void print_devclass_list_short(void);
72void print_devclass_list(void);
73
74#else
75/* Make the compiler ignore the function calls */
76#define PDEBUG(a)			/* nop */
77#define DEVICENAME(d)			/* nop */
78#define DRIVERNAME(d)			/* nop */
79#define DEVCLANAME(d)			/* nop */
80
81#define print_device_short(d,i)		/* nop */
82#define print_device(d,i)		/* nop */
83#define print_device_tree_short(d,i)	/* nop */
84#define print_device_tree(d,i)		/* nop */
85#define print_driver_short(d,i)		/* nop */
86#define print_driver(d,i)		/* nop */
87#define print_driver_list(d,i)		/* nop */
88#define print_devclass_short(d,i)	/* nop */
89#define print_devclass(d,i)		/* nop */
90#define print_devclass_list_short()	/* nop */
91#define print_devclass_list()		/* nop */
92#endif
93
94TAILQ_HEAD(,device)	bus_data_devices;
95static int bus_data_generation = 1;
96
97kobj_method_t null_methods[] = {
98	{ 0, 0 }
99};
100
101DEFINE_CLASS(null, null_methods, 0);
102
103/*
104 * Devclass implementation
105 */
106
107static devclass_list_t devclasses = TAILQ_HEAD_INITIALIZER(devclasses);
108
109static devclass_t
110devclass_find_internal(const char *classname, int create)
111{
112	devclass_t dc;
113
114	PDEBUG(("looking for %s", classname));
115	if (!classname)
116		return (NULL);
117
118	TAILQ_FOREACH(dc, &devclasses, link) {
119		if (!strcmp(dc->name, classname))
120			return (dc);
121	}
122
123	PDEBUG(("%s not found%s", classname, (create? ", creating": "")));
124	if (create) {
125		dc = malloc(sizeof(struct devclass) + strlen(classname) + 1,
126		    M_BUS, M_NOWAIT|M_ZERO);
127		if (!dc)
128			return (NULL);
129		dc->name = (char*) (dc + 1);
130		strcpy(dc->name, classname);
131		TAILQ_INIT(&dc->drivers);
132		TAILQ_INSERT_TAIL(&devclasses, dc, link);
133
134		bus_data_generation_update();
135	}
136
137	return (dc);
138}
139
140devclass_t
141devclass_create(const char *classname)
142{
143	return (devclass_find_internal(classname, TRUE));
144}
145
146devclass_t
147devclass_find(const char *classname)
148{
149	return (devclass_find_internal(classname, FALSE));
150}
151
152int
153devclass_add_driver(devclass_t dc, driver_t *driver)
154{
155	driverlink_t dl;
156	int i;
157
158	PDEBUG(("%s", DRIVERNAME(driver)));
159
160	dl = malloc(sizeof *dl, M_BUS, M_NOWAIT|M_ZERO);
161	if (!dl)
162		return (ENOMEM);
163
164	/*
165	 * Compile the driver's methods. Also increase the reference count
166	 * so that the class doesn't get freed when the last instance
167	 * goes. This means we can safely use static methods and avoids a
168	 * double-free in devclass_delete_driver.
169	 */
170	kobj_class_compile((kobj_class_t) driver);
171
172	/*
173	 * Make sure the devclass which the driver is implementing exists.
174	 */
175	devclass_find_internal(driver->name, TRUE);
176
177	dl->driver = driver;
178	TAILQ_INSERT_TAIL(&dc->drivers, dl, link);
179	driver->refs++;
180
181	/*
182	 * Call BUS_DRIVER_ADDED for any existing busses in this class.
183	 */
184	for (i = 0; i < dc->maxunit; i++)
185		if (dc->devices[i])
186			BUS_DRIVER_ADDED(dc->devices[i], driver);
187
188	bus_data_generation_update();
189	return (0);
190}
191
192int
193devclass_delete_driver(devclass_t busclass, driver_t *driver)
194{
195	devclass_t dc = devclass_find(driver->name);
196	driverlink_t dl;
197	device_t dev;
198	int i;
199	int error;
200
201	PDEBUG(("%s from devclass %s", driver->name, DEVCLANAME(busclass)));
202
203	if (!dc)
204		return (0);
205
206	/*
207	 * Find the link structure in the bus' list of drivers.
208	 */
209	TAILQ_FOREACH(dl, &busclass->drivers, link) {
210		if (dl->driver == driver)
211			break;
212	}
213
214	if (!dl) {
215		PDEBUG(("%s not found in %s list", driver->name,
216		    busclass->name));
217		return (ENOENT);
218	}
219
220	/*
221	 * Disassociate from any devices.  We iterate through all the
222	 * devices in the devclass of the driver and detach any which are
223	 * using the driver and which have a parent in the devclass which
224	 * we are deleting from.
225	 *
226	 * Note that since a driver can be in multiple devclasses, we
227	 * should not detach devices which are not children of devices in
228	 * the affected devclass.
229	 */
230	for (i = 0; i < dc->maxunit; i++) {
231		if (dc->devices[i]) {
232			dev = dc->devices[i];
233			if (dev->driver == driver && dev->parent &&
234			    dev->parent->devclass == busclass) {
235				if ((error = device_detach(dev)) != 0)
236					return (error);
237				device_set_driver(dev, NULL);
238			}
239		}
240	}
241
242	TAILQ_REMOVE(&busclass->drivers, dl, link);
243	free(dl, M_BUS);
244
245	driver->refs--;
246	if (driver->refs == 0)
247		kobj_class_free((kobj_class_t) driver);
248
249	bus_data_generation_update();
250	return (0);
251}
252
253static driverlink_t
254devclass_find_driver_internal(devclass_t dc, const char *classname)
255{
256	driverlink_t dl;
257
258	PDEBUG(("%s in devclass %s", classname, DEVCLANAME(dc)));
259
260	TAILQ_FOREACH(dl, &dc->drivers, link) {
261		if (!strcmp(dl->driver->name, classname))
262			return (dl);
263	}
264
265	PDEBUG(("not found"));
266	return (NULL);
267}
268
269driver_t *
270devclass_find_driver(devclass_t dc, const char *classname)
271{
272	driverlink_t dl;
273
274	dl = devclass_find_driver_internal(dc, classname);
275	if (dl)
276		return (dl->driver);
277	return (NULL);
278}
279
280const char *
281devclass_get_name(devclass_t dc)
282{
283	return (dc->name);
284}
285
286device_t
287devclass_get_device(devclass_t dc, int unit)
288{
289	if (dc == NULL || unit < 0 || unit >= dc->maxunit)
290		return (NULL);
291	return (dc->devices[unit]);
292}
293
294void *
295devclass_get_softc(devclass_t dc, int unit)
296{
297	device_t dev;
298
299	dev = devclass_get_device(dc, unit);
300	if (!dev)
301		return (NULL);
302
303	return (device_get_softc(dev));
304}
305
306int
307devclass_get_devices(devclass_t dc, device_t **devlistp, int *devcountp)
308{
309	int i;
310	int count;
311	device_t *list;
312
313	count = 0;
314	for (i = 0; i < dc->maxunit; i++)
315		if (dc->devices[i])
316			count++;
317
318	list = malloc(count * sizeof(device_t), M_TEMP, M_NOWAIT|M_ZERO);
319	if (!list)
320		return (ENOMEM);
321
322	count = 0;
323	for (i = 0; i < dc->maxunit; i++) {
324		if (dc->devices[i]) {
325			list[count] = dc->devices[i];
326			count++;
327		}
328	}
329
330	*devlistp = list;
331	*devcountp = count;
332
333	return (0);
334}
335
336int
337devclass_get_maxunit(devclass_t dc)
338{
339	return (dc->maxunit);
340}
341
342int
343devclass_find_free_unit(devclass_t dc, int unit)
344{
345	if (dc == NULL)
346		return (unit);
347	while (unit < dc->maxunit && dc->devices[unit] != NULL)
348		unit++;
349	return (unit);
350}
351
352static int
353devclass_alloc_unit(devclass_t dc, int *unitp)
354{
355	int unit = *unitp;
356
357	PDEBUG(("unit %d in devclass %s", unit, DEVCLANAME(dc)));
358
359	/* If we were given a wired unit number, check for existing device */
360	/* XXX imp XXX */
361	if (unit != -1) {
362		if (unit >= 0 && unit < dc->maxunit &&
363		    dc->devices[unit] != NULL) {
364			if (bootverbose)
365				printf("%s: %s%d already exists; skipping it\n",
366				    dc->name, dc->name, *unitp);
367			return (EEXIST);
368		}
369	} else {
370		/* Unwired device, find the next available slot for it */
371		unit = 0;
372		while (unit < dc->maxunit && dc->devices[unit] != NULL)
373			unit++;
374	}
375
376	/*
377	 * We've selected a unit beyond the length of the table, so let's
378	 * extend the table to make room for all units up to and including
379	 * this one.
380	 */
381	if (unit >= dc->maxunit) {
382		device_t *newlist;
383		int newsize;
384
385		newsize = roundup((unit + 1), MINALLOCSIZE / sizeof(device_t));
386		newlist = malloc(sizeof(device_t) * newsize, M_BUS, M_NOWAIT);
387		if (!newlist)
388			return (ENOMEM);
389		bcopy(dc->devices, newlist, sizeof(device_t) * dc->maxunit);
390		bzero(newlist + dc->maxunit,
391		    sizeof(device_t) * (newsize - dc->maxunit));
392		if (dc->devices)
393			free(dc->devices, M_BUS);
394		dc->devices = newlist;
395		dc->maxunit = newsize;
396	}
397	PDEBUG(("now: unit %d in devclass %s", unit, DEVCLANAME(dc)));
398
399	*unitp = unit;
400	return (0);
401}
402
403static int
404devclass_add_device(devclass_t dc, device_t dev)
405{
406	int buflen, error;
407
408	PDEBUG(("%s in devclass %s", DEVICENAME(dev), DEVCLANAME(dc)));
409
410	buflen = snprintf(NULL, 0, "%s%d$", dc->name, dev->unit);
411	if (buflen < 0)
412		return (ENOMEM);
413	dev->nameunit = malloc(buflen, M_BUS, M_NOWAIT|M_ZERO);
414	if (!dev->nameunit)
415		return (ENOMEM);
416
417	if ((error = devclass_alloc_unit(dc, &dev->unit)) != 0) {
418		free(dev->nameunit, M_BUS);
419		dev->nameunit = NULL;
420		return (error);
421	}
422	dc->devices[dev->unit] = dev;
423	dev->devclass = dc;
424	snprintf(dev->nameunit, buflen, "%s%d", dc->name, dev->unit);
425
426	return (0);
427}
428
429static int
430devclass_delete_device(devclass_t dc, device_t dev)
431{
432	if (!dc || !dev)
433		return (0);
434
435	PDEBUG(("%s in devclass %s", DEVICENAME(dev), DEVCLANAME(dc)));
436
437	if (dev->devclass != dc || dc->devices[dev->unit] != dev)
438		panic("devclass_delete_device: inconsistent device class");
439	dc->devices[dev->unit] = NULL;
440	if (dev->flags & DF_WILDCARD)
441		dev->unit = -1;
442	dev->devclass = NULL;
443	free(dev->nameunit, M_BUS);
444	dev->nameunit = NULL;
445
446	return (0);
447}
448
449static device_t
450make_device(device_t parent, const char *name, int unit)
451{
452	device_t dev;
453	devclass_t dc;
454
455	PDEBUG(("%s at %s as unit %d", name, DEVICENAME(parent), unit));
456
457	if (name) {
458		dc = devclass_find_internal(name, TRUE);
459		if (!dc) {
460			printf("make_device: can't find device class %s\n",
461			    name);
462			return (NULL);
463		}
464	} else {
465		dc = NULL;
466	}
467
468	dev = malloc(sizeof(struct device), M_BUS, M_NOWAIT|M_ZERO);
469	if (!dev)
470		return (NULL);
471
472	dev->parent = parent;
473	TAILQ_INIT(&dev->children);
474	kobj_init((kobj_t) dev, &null_class);
475	dev->driver = NULL;
476	dev->devclass = NULL;
477	dev->unit = unit;
478	dev->nameunit = NULL;
479	dev->desc = NULL;
480	dev->busy = 0;
481	dev->devflags = 0;
482	dev->flags = DF_ENABLED;
483	dev->order = 0;
484	if (unit == -1)
485		dev->flags |= DF_WILDCARD;
486	if (name) {
487		dev->flags |= DF_FIXEDCLASS;
488		if (devclass_add_device(dc, dev)) {
489			kobj_delete((kobj_t) dev, M_BUS);
490			return (NULL);
491		}
492	}
493	dev->ivars = NULL;
494	dev->softc = NULL;
495
496	dev->state = DS_NOTPRESENT;
497
498	TAILQ_INSERT_TAIL(&bus_data_devices, dev, devlink);
499	bus_data_generation_update();
500
501	return (dev);
502}
503
504static int
505device_print_child(device_t dev, device_t child)
506{
507	int retval = 0;
508
509	if (device_is_alive(child))
510		retval += BUS_PRINT_CHILD(dev, child);
511	else
512		retval += device_printf(child, " not found\n");
513
514	return (retval);
515}
516
517device_t
518device_add_child(device_t dev, const char *name, int unit)
519{
520	return (device_add_child_ordered(dev, 0, name, unit));
521}
522
523device_t
524device_add_child_ordered(device_t dev, int order, const char *name, int unit)
525{
526	device_t child;
527	device_t place;
528
529	PDEBUG(("%s at %s with order %d as unit %d",
530	    name, DEVICENAME(dev), order, unit));
531
532	child = make_device(dev, name, unit);
533	if (child == NULL)
534		return (child);
535	child->order = order;
536
537	TAILQ_FOREACH(place, &dev->children, link) {
538		if (place->order > order)
539			break;
540	}
541
542	if (place) {
543		/*
544		 * The device 'place' is the first device whose order is
545		 * greater than the new child.
546		 */
547		TAILQ_INSERT_BEFORE(place, child, link);
548	} else {
549		/*
550		 * The new child's order is greater or equal to the order of
551		 * any existing device. Add the child to the tail of the list.
552		 */
553		TAILQ_INSERT_TAIL(&dev->children, child, link);
554	}
555
556	bus_data_generation_update();
557	return (child);
558}
559
560int
561device_delete_child(device_t dev, device_t child)
562{
563	int error;
564	device_t grandchild;
565
566	PDEBUG(("%s from %s", DEVICENAME(child), DEVICENAME(dev)));
567
568	/* remove children first */
569	while ( (grandchild = TAILQ_FIRST(&child->children)) ) {
570		error = device_delete_child(child, grandchild);
571		if (error)
572			return (error);
573	}
574
575	if ((error = device_detach(child)) != 0)
576		return (error);
577	if (child->devclass)
578		devclass_delete_device(child->devclass, child);
579	TAILQ_REMOVE(&dev->children, child, link);
580	TAILQ_REMOVE(&bus_data_devices, child, devlink);
581	device_set_desc(child, NULL);
582	free(child, M_BUS);
583
584	bus_data_generation_update();
585	return (0);
586}
587
588/*
589 * Find only devices attached to this bus.
590 */
591device_t
592device_find_child(device_t dev, const char *classname, int unit)
593{
594	devclass_t dc;
595	device_t child;
596
597	dc = devclass_find(classname);
598	if (!dc)
599		return (NULL);
600
601	child = devclass_get_device(dc, unit);
602	if (child && child->parent == dev)
603		return (child);
604	return (NULL);
605}
606
607static driverlink_t
608first_matching_driver(devclass_t dc, device_t dev)
609{
610	if (dev->devclass)
611		return (devclass_find_driver_internal(dc, dev->devclass->name));
612	return (TAILQ_FIRST(&dc->drivers));
613}
614
615static driverlink_t
616next_matching_driver(devclass_t dc, device_t dev, driverlink_t last)
617{
618	if (dev->devclass) {
619		driverlink_t dl;
620		for (dl = TAILQ_NEXT(last, link); dl; dl = TAILQ_NEXT(dl, link))
621			if (!strcmp(dev->devclass->name, dl->driver->name))
622				return (dl);
623		return (NULL);
624	}
625	return (TAILQ_NEXT(last, link));
626}
627
628static int
629device_probe_child(device_t dev, device_t child)
630{
631	devclass_t dc;
632	driverlink_t best = 0;
633	driverlink_t dl;
634	int result, pri = 0;
635	int hasclass = (child->devclass != 0);
636
637	dc = dev->devclass;
638	if (!dc)
639		panic("device_probe_child: parent device has no devclass");
640
641	if (child->state == DS_ALIVE)
642		return (0);
643
644	for (dl = first_matching_driver(dc, child);
645	     dl;
646	     dl = next_matching_driver(dc, child, dl)) {
647		PDEBUG(("Trying %s", DRIVERNAME(dl->driver)));
648		device_set_driver(child, dl->driver);
649		if (!hasclass)
650			device_set_devclass(child, dl->driver->name);
651		result = DEVICE_PROBE(child);
652		if (!hasclass)
653			device_set_devclass(child, 0);
654
655		/*
656		 * If the driver returns SUCCESS, there can be no higher match
657		 * for this device.
658		 */
659		if (result == 0) {
660			best = dl;
661			pri = 0;
662			break;
663		}
664
665		/*
666		 * The driver returned an error so it certainly doesn't match.
667		 */
668		if (result > 0) {
669			device_set_driver(child, 0);
670			continue;
671		}
672
673		/*
674		 * A priority lower than SUCCESS, remember the best matching
675		 * driver. Initialise the value of pri for the first match.
676		 */
677		if (best == 0 || result > pri) {
678			best = dl;
679			pri = result;
680			continue;
681		}
682	}
683
684	/*
685	 * If we found a driver, change state and initialise the devclass.
686	 */
687	if (best) {
688		if (!child->devclass)
689			device_set_devclass(child, best->driver->name);
690		device_set_driver(child, best->driver);
691		if (pri < 0) {
692			/*
693			 * A bit bogus. Call the probe method again to make
694			 * sure that we have the right description.
695			 */
696			DEVICE_PROBE(child);
697		}
698		child->state = DS_ALIVE;
699
700		bus_data_generation_update();
701		return (0);
702	}
703
704	return (ENXIO);
705}
706
707device_t
708device_get_parent(device_t dev)
709{
710	return (dev->parent);
711}
712
713int
714device_get_children(device_t dev, device_t **devlistp, int *devcountp)
715{
716	int count;
717	device_t child;
718	device_t *list;
719
720	count = 0;
721	TAILQ_FOREACH(child, &dev->children, link) {
722		count++;
723	}
724
725	list = malloc(count * sizeof(device_t), M_TEMP, M_NOWAIT|M_ZERO);
726	if (!list)
727		return (ENOMEM);
728
729	count = 0;
730	TAILQ_FOREACH(child, &dev->children, link) {
731		list[count] = child;
732		count++;
733	}
734
735	*devlistp = list;
736	*devcountp = count;
737
738	return (0);
739}
740
741driver_t *
742device_get_driver(device_t dev)
743{
744	return (dev->driver);
745}
746
747devclass_t
748device_get_devclass(device_t dev)
749{
750	return (dev->devclass);
751}
752
753const char *
754device_get_name(device_t dev)
755{
756	if (dev->devclass)
757		return (devclass_get_name(dev->devclass));
758	return (NULL);
759}
760
761const char *
762device_get_nameunit(device_t dev)
763{
764	return (dev->nameunit);
765}
766
767int
768device_get_unit(device_t dev)
769{
770	return (dev->unit);
771}
772
773const char *
774device_get_desc(device_t dev)
775{
776	return (dev->desc);
777}
778
779u_int32_t
780device_get_flags(device_t dev)
781{
782	return (dev->devflags);
783}
784
785int
786device_print_prettyname(device_t dev)
787{
788	const char *name = device_get_name(dev);
789
790	if (name == 0)
791		return (printf("unknown: "));
792	return (printf("%s%d: ", name, device_get_unit(dev)));
793}
794
795int
796device_printf(device_t dev, const char * fmt, ...)
797{
798	va_list ap;
799	int retval;
800
801	retval = device_print_prettyname(dev);
802	va_start(ap, fmt);
803	retval += vprintf(fmt, ap);
804	va_end(ap);
805	return (retval);
806}
807
808static void
809device_set_desc_internal(device_t dev, const char* desc, int copy)
810{
811	if (dev->desc && (dev->flags & DF_DESCMALLOCED)) {
812		free(dev->desc, M_BUS);
813		dev->flags &= ~DF_DESCMALLOCED;
814		dev->desc = NULL;
815	}
816
817	if (copy && desc) {
818		dev->desc = malloc(strlen(desc) + 1, M_BUS, M_NOWAIT);
819		if (dev->desc) {
820			strcpy(dev->desc, desc);
821			dev->flags |= DF_DESCMALLOCED;
822		}
823	} else {
824		/* Avoid a -Wcast-qual warning */
825		dev->desc = (char *)(uintptr_t) desc;
826	}
827
828	bus_data_generation_update();
829}
830
831void
832device_set_desc(device_t dev, const char* desc)
833{
834	device_set_desc_internal(dev, desc, FALSE);
835}
836
837void
838device_set_desc_copy(device_t dev, const char* desc)
839{
840	device_set_desc_internal(dev, desc, TRUE);
841}
842
843void
844device_set_flags(device_t dev, u_int32_t flags)
845{
846	dev->devflags = flags;
847}
848
849void *
850device_get_softc(device_t dev)
851{
852	return (dev->softc);
853}
854
855void
856device_set_softc(device_t dev, void *softc)
857{
858	if (dev->softc && !(dev->flags & DF_EXTERNALSOFTC))
859		free(dev->softc, M_BUS);
860	dev->softc = softc;
861	if (dev->softc)
862		dev->flags |= DF_EXTERNALSOFTC;
863	else
864		dev->flags &= ~DF_EXTERNALSOFTC;
865}
866
867void *
868device_get_ivars(device_t dev)
869{
870	return (dev->ivars);
871}
872
873void
874device_set_ivars(device_t dev, void * ivars)
875{
876	if (!dev)
877		return;
878
879	dev->ivars = ivars;
880
881	return;
882}
883
884device_state_t
885device_get_state(device_t dev)
886{
887	return (dev->state);
888}
889
890void
891device_enable(device_t dev)
892{
893	dev->flags |= DF_ENABLED;
894}
895
896void
897device_disable(device_t dev)
898{
899	dev->flags &= ~DF_ENABLED;
900}
901
902void
903device_busy(device_t dev)
904{
905	if (dev->state < DS_ATTACHED)
906		panic("device_busy: called for unattached device");
907	if (dev->busy == 0 && dev->parent)
908		device_busy(dev->parent);
909	dev->busy++;
910	dev->state = DS_BUSY;
911}
912
913void
914device_unbusy(device_t dev)
915{
916	if (dev->state != DS_BUSY)
917		panic("device_unbusy: called for non-busy device");
918	dev->busy--;
919	if (dev->busy == 0) {
920		if (dev->parent)
921			device_unbusy(dev->parent);
922		dev->state = DS_ATTACHED;
923	}
924}
925
926void
927device_quiet(device_t dev)
928{
929	dev->flags |= DF_QUIET;
930}
931
932void
933device_verbose(device_t dev)
934{
935	dev->flags &= ~DF_QUIET;
936}
937
938int
939device_is_quiet(device_t dev)
940{
941	return ((dev->flags & DF_QUIET) != 0);
942}
943
944int
945device_is_enabled(device_t dev)
946{
947	return ((dev->flags & DF_ENABLED) != 0);
948}
949
950int
951device_is_alive(device_t dev)
952{
953	return (dev->state >= DS_ALIVE);
954}
955
956int
957device_set_devclass(device_t dev, const char *classname)
958{
959	devclass_t dc;
960	int error;
961
962	if (!classname) {
963		if (dev->devclass)
964			devclass_delete_device(dev->devclass, dev);
965		return (0);
966	}
967
968	if (dev->devclass) {
969		printf("device_set_devclass: device class already set\n");
970		return (EINVAL);
971	}
972
973	dc = devclass_find_internal(classname, TRUE);
974	if (!dc)
975		return (ENOMEM);
976
977	error = devclass_add_device(dc, dev);
978
979	bus_data_generation_update();
980	return (error);
981}
982
983int
984device_set_driver(device_t dev, driver_t *driver)
985{
986	if (dev->state >= DS_ATTACHED)
987		return (EBUSY);
988
989	if (dev->driver == driver)
990		return (0);
991
992	if (dev->softc && !(dev->flags & DF_EXTERNALSOFTC)) {
993		free(dev->softc, M_BUS);
994		dev->softc = NULL;
995	}
996	kobj_delete((kobj_t) dev, 0);
997	dev->driver = driver;
998	if (driver) {
999		kobj_init((kobj_t) dev, (kobj_class_t) driver);
1000		if (!(dev->flags & DF_EXTERNALSOFTC)) {
1001			dev->softc = malloc(driver->size, M_BUS,
1002			    M_NOWAIT | M_ZERO);
1003			if (!dev->softc) {
1004				kobj_init((kobj_t) dev, &null_class);
1005				dev->driver = NULL;
1006				return (ENOMEM);
1007			}
1008		}
1009	} else {
1010		kobj_init((kobj_t) dev, &null_class);
1011	}
1012
1013	bus_data_generation_update();
1014	return (0);
1015}
1016
1017int
1018device_probe_and_attach(device_t dev)
1019{
1020	device_t bus = dev->parent;
1021	int error = 0;
1022	int hasclass = (dev->devclass != 0);
1023
1024	if (dev->state >= DS_ALIVE)
1025		return (0);
1026
1027	if (dev->flags & DF_ENABLED) {
1028		error = device_probe_child(bus, dev);
1029		if (!error) {
1030			if (!device_is_quiet(dev))
1031				device_print_child(bus, dev);
1032			error = DEVICE_ATTACH(dev);
1033			if (!error)
1034				dev->state = DS_ATTACHED;
1035			else {
1036				printf("device_probe_and_attach: %s%d attach returned %d\n",
1037				    dev->driver->name, dev->unit, error);
1038				/* Unset the class; set in device_probe_child */
1039				if (!hasclass)
1040					device_set_devclass(dev, 0);
1041				device_set_driver(dev, NULL);
1042				dev->state = DS_NOTPRESENT;
1043			}
1044		} else {
1045			if (!(dev->flags & DF_DONENOMATCH)) {
1046				BUS_PROBE_NOMATCH(bus, dev);
1047				dev->flags |= DF_DONENOMATCH;
1048			}
1049		}
1050	} else {
1051		if (bootverbose) {
1052			device_print_prettyname(dev);
1053			printf("not probed (disabled)\n");
1054		}
1055	}
1056
1057	return (error);
1058}
1059
1060int
1061device_detach(device_t dev)
1062{
1063	int error;
1064
1065	PDEBUG(("%s", DEVICENAME(dev)));
1066	if (dev->state == DS_BUSY)
1067		return (EBUSY);
1068	if (dev->state != DS_ATTACHED)
1069		return (0);
1070
1071	if ((error = DEVICE_DETACH(dev)) != 0)
1072		return (error);
1073	device_printf(dev, "detached\n");
1074	if (dev->parent)
1075		BUS_CHILD_DETACHED(dev->parent, dev);
1076
1077	if (!(dev->flags & DF_FIXEDCLASS))
1078		devclass_delete_device(dev->devclass, dev);
1079
1080	dev->state = DS_NOTPRESENT;
1081	device_set_driver(dev, NULL);
1082
1083	return (0);
1084}
1085
1086int
1087device_shutdown(device_t dev)
1088{
1089	if (dev->state < DS_ATTACHED)
1090		return (0);
1091	return (DEVICE_SHUTDOWN(dev));
1092}
1093
1094int
1095device_set_unit(device_t dev, int unit)
1096{
1097	devclass_t dc;
1098	int err;
1099
1100	dc = device_get_devclass(dev);
1101	if (unit < dc->maxunit && dc->devices[unit])
1102		return (EBUSY);
1103	err = devclass_delete_device(dc, dev);
1104	if (err)
1105		return (err);
1106	dev->unit = unit;
1107	err = devclass_add_device(dc, dev);
1108	if (err)
1109		return (err);
1110
1111	bus_data_generation_update();
1112	return (0);
1113}
1114
1115/*======================================*/
1116/*
1117 * Some useful method implementations to make life easier for bus drivers.
1118 */
1119
1120void
1121resource_list_init(struct resource_list *rl)
1122{
1123	SLIST_INIT(rl);
1124}
1125
1126void
1127resource_list_free(struct resource_list *rl)
1128{
1129	struct resource_list_entry *rle;
1130
1131	while ((rle = SLIST_FIRST(rl)) != NULL) {
1132		if (rle->res)
1133			panic("resource_list_free: resource entry is busy");
1134		SLIST_REMOVE_HEAD(rl, link);
1135		free(rle, M_BUS);
1136	}
1137}
1138
1139void
1140resource_list_add(struct resource_list *rl, int type, int rid,
1141    u_long start, u_long end, u_long count)
1142{
1143	struct resource_list_entry *rle;
1144
1145	rle = resource_list_find(rl, type, rid);
1146	if (!rle) {
1147		rle = malloc(sizeof(struct resource_list_entry), M_BUS,
1148		    M_NOWAIT);
1149		if (!rle)
1150			panic("resource_list_add: can't record entry");
1151		SLIST_INSERT_HEAD(rl, rle, link);
1152		rle->type = type;
1153		rle->rid = rid;
1154		rle->res = NULL;
1155	}
1156
1157	if (rle->res)
1158		panic("resource_list_add: resource entry is busy");
1159
1160	rle->start = start;
1161	rle->end = end;
1162	rle->count = count;
1163}
1164
1165struct resource_list_entry *
1166resource_list_find(struct resource_list *rl, int type, int rid)
1167{
1168	struct resource_list_entry *rle;
1169
1170	SLIST_FOREACH(rle, rl, link) {
1171		if (rle->type == type && rle->rid == rid)
1172			return (rle);
1173	}
1174	return (NULL);
1175}
1176
1177void
1178resource_list_delete(struct resource_list *rl, int type, int rid)
1179{
1180	struct resource_list_entry *rle = resource_list_find(rl, type, rid);
1181
1182	if (rle) {
1183		if (rle->res != NULL)
1184			panic("resource_list_delete: resource has not been released");
1185		SLIST_REMOVE(rl, rle, resource_list_entry, link);
1186		free(rle, M_BUS);
1187	}
1188}
1189
1190struct resource *
1191resource_list_alloc(struct resource_list *rl, device_t bus, device_t child,
1192    int type, int *rid, u_long start, u_long end, u_long count, u_int flags)
1193{
1194	struct resource_list_entry *rle = 0;
1195	int passthrough = (device_get_parent(child) != bus);
1196	int isdefault = (start == 0UL && end == ~0UL);
1197
1198	if (passthrough) {
1199		return (BUS_ALLOC_RESOURCE(device_get_parent(bus), child,
1200		    type, rid, start, end, count, flags));
1201	}
1202
1203	rle = resource_list_find(rl, type, *rid);
1204
1205	if (!rle)
1206		return (NULL);		/* no resource of that type/rid */
1207
1208	if (rle->res)
1209		panic("resource_list_alloc: resource entry is busy");
1210
1211	if (isdefault) {
1212		start = rle->start;
1213		count = ulmax(count, rle->count);
1214		end = ulmax(rle->end, start + count - 1);
1215	}
1216
1217	rle->res = BUS_ALLOC_RESOURCE(device_get_parent(bus), child,
1218	    type, rid, start, end, count, flags);
1219
1220	/*
1221	 * Record the new range.
1222	 */
1223	if (rle->res) {
1224		rle->start = rman_get_start(rle->res);
1225		rle->end = rman_get_end(rle->res);
1226		rle->count = count;
1227	}
1228
1229	return (rle->res);
1230}
1231
1232int
1233resource_list_release(struct resource_list *rl, device_t bus, device_t child,
1234    int type, int rid, struct resource *res)
1235{
1236	struct resource_list_entry *rle = 0;
1237	int passthrough = (device_get_parent(child) != bus);
1238	int error;
1239
1240	if (passthrough) {
1241		return (BUS_RELEASE_RESOURCE(device_get_parent(bus), child,
1242		    type, rid, res));
1243	}
1244
1245	rle = resource_list_find(rl, type, rid);
1246
1247	if (!rle)
1248		panic("resource_list_release: can't find resource");
1249	if (!rle->res)
1250		panic("resource_list_release: resource entry is not busy");
1251
1252	error = BUS_RELEASE_RESOURCE(device_get_parent(bus), child,
1253	    type, rid, res);
1254	if (error)
1255		return (error);
1256
1257	rle->res = NULL;
1258	return (0);
1259}
1260
1261int
1262resource_list_print_type(struct resource_list *rl, const char *name, int type,
1263    const char *format)
1264{
1265	struct resource_list_entry *rle;
1266	int printed, retval;
1267
1268	printed = 0;
1269	retval = 0;
1270	/* Yes, this is kinda cheating */
1271	SLIST_FOREACH(rle, rl, link) {
1272		if (rle->type == type) {
1273			if (printed == 0)
1274				retval += printf(" %s ", name);
1275			else
1276				retval += printf(",");
1277			printed++;
1278			retval += printf(format, rle->start);
1279			if (rle->count > 1) {
1280				retval += printf("-");
1281				retval += printf(format, rle->start +
1282						 rle->count - 1);
1283			}
1284		}
1285	}
1286	return (retval);
1287}
1288
1289/*
1290 * Call DEVICE_IDENTIFY for each driver.
1291 */
1292int
1293bus_generic_probe(device_t dev)
1294{
1295	devclass_t dc = dev->devclass;
1296	driverlink_t dl;
1297
1298	TAILQ_FOREACH(dl, &dc->drivers, link) {
1299		DEVICE_IDENTIFY(dl->driver, dev);
1300	}
1301
1302	return (0);
1303}
1304
1305int
1306bus_generic_attach(device_t dev)
1307{
1308	device_t child;
1309
1310	TAILQ_FOREACH(child, &dev->children, link) {
1311		device_probe_and_attach(child);
1312	}
1313
1314	return (0);
1315}
1316
1317int
1318bus_generic_detach(device_t dev)
1319{
1320	device_t child;
1321	int error;
1322
1323	if (dev->state != DS_ATTACHED)
1324		return (EBUSY);
1325
1326	TAILQ_FOREACH(child, &dev->children, link) {
1327		if ((error = device_detach(child)) != 0)
1328			return (error);
1329	}
1330
1331	return (0);
1332}
1333
1334int
1335bus_generic_shutdown(device_t dev)
1336{
1337	device_t child;
1338
1339	TAILQ_FOREACH(child, &dev->children, link) {
1340		device_shutdown(child);
1341	}
1342
1343	return (0);
1344}
1345
1346int
1347bus_generic_suspend(device_t dev)
1348{
1349	int		error;
1350	device_t	child, child2;
1351
1352	TAILQ_FOREACH(child, &dev->children, link) {
1353		error = DEVICE_SUSPEND(child);
1354		if (error) {
1355			for (child2 = TAILQ_FIRST(&dev->children);
1356			     child2 && child2 != child;
1357			     child2 = TAILQ_NEXT(child2, link))
1358				DEVICE_RESUME(child2);
1359			return (error);
1360		}
1361	}
1362	return (0);
1363}
1364
1365int
1366bus_generic_resume(device_t dev)
1367{
1368	device_t	child;
1369
1370	TAILQ_FOREACH(child, &dev->children, link) {
1371		DEVICE_RESUME(child);
1372		/* if resume fails, there's nothing we can usefully do... */
1373	}
1374	return (0);
1375}
1376
1377int
1378bus_print_child_header (device_t dev, device_t child)
1379{
1380	int	retval = 0;
1381
1382	if (device_get_desc(child)) {
1383		retval += device_printf(child, "<%s>", device_get_desc(child));
1384	} else {
1385		retval += printf("%s", device_get_nameunit(child));
1386	}
1387
1388	return (retval);
1389}
1390
1391int
1392bus_print_child_footer (device_t dev, device_t child)
1393{
1394	return (printf(" on %s\n", device_get_nameunit(dev)));
1395}
1396
1397int
1398bus_generic_print_child(device_t dev, device_t child)
1399{
1400	int	retval = 0;
1401
1402	retval += bus_print_child_header(dev, child);
1403	retval += bus_print_child_footer(dev, child);
1404
1405	return (retval);
1406}
1407
1408int
1409bus_generic_read_ivar(device_t dev, device_t child, int index,
1410    uintptr_t * result)
1411{
1412	return (ENOENT);
1413}
1414
1415int
1416bus_generic_write_ivar(device_t dev, device_t child, int index,
1417    uintptr_t value)
1418{
1419	return (ENOENT);
1420}
1421
1422struct resource_list *
1423bus_generic_get_resource_list (device_t dev, device_t child)
1424{
1425	return (NULL);
1426}
1427
1428void
1429bus_generic_driver_added(device_t dev, driver_t *driver)
1430{
1431	device_t child;
1432
1433	DEVICE_IDENTIFY(driver, dev);
1434	TAILQ_FOREACH(child, &dev->children, link) {
1435		if (child->state == DS_NOTPRESENT)
1436			device_probe_and_attach(child);
1437	}
1438}
1439
1440int
1441bus_generic_setup_intr(device_t dev, device_t child, struct resource *irq,
1442    int flags, driver_intr_t *intr, void *arg, void **cookiep)
1443{
1444	/* Propagate up the bus hierarchy until someone handles it. */
1445	if (dev->parent)
1446		return (BUS_SETUP_INTR(dev->parent, child, irq, flags,
1447		    intr, arg, cookiep));
1448	return (EINVAL);
1449}
1450
1451int
1452bus_generic_teardown_intr(device_t dev, device_t child, struct resource *irq,
1453    void *cookie)
1454{
1455	/* Propagate up the bus hierarchy until someone handles it. */
1456	if (dev->parent)
1457		return (BUS_TEARDOWN_INTR(dev->parent, child, irq, cookie));
1458	return (EINVAL);
1459}
1460
1461struct resource *
1462bus_generic_alloc_resource(device_t dev, device_t child, int type, int *rid,
1463    u_long start, u_long end, u_long count, u_int flags)
1464{
1465	/* Propagate up the bus hierarchy until someone handles it. */
1466	if (dev->parent)
1467		return (BUS_ALLOC_RESOURCE(dev->parent, child, type, rid,
1468		    start, end, count, flags));
1469	return (NULL);
1470}
1471
1472int
1473bus_generic_release_resource(device_t dev, device_t child, int type, int rid,
1474    struct resource *r)
1475{
1476	/* Propagate up the bus hierarchy until someone handles it. */
1477	if (dev->parent)
1478		return (BUS_RELEASE_RESOURCE(dev->parent, child, type, rid,
1479		    r));
1480	return (EINVAL);
1481}
1482
1483int
1484bus_generic_activate_resource(device_t dev, device_t child, int type, int rid,
1485    struct resource *r)
1486{
1487	/* Propagate up the bus hierarchy until someone handles it. */
1488	if (dev->parent)
1489		return (BUS_ACTIVATE_RESOURCE(dev->parent, child, type, rid,
1490		    r));
1491	return (EINVAL);
1492}
1493
1494int
1495bus_generic_deactivate_resource(device_t dev, device_t child, int type,
1496    int rid, struct resource *r)
1497{
1498	/* Propagate up the bus hierarchy until someone handles it. */
1499	if (dev->parent)
1500		return (BUS_DEACTIVATE_RESOURCE(dev->parent, child, type, rid,
1501		    r));
1502	return (EINVAL);
1503}
1504
1505int
1506bus_generic_rl_get_resource (device_t dev, device_t child, int type, int rid,
1507    u_long *startp, u_long *countp)
1508{
1509	struct resource_list *		rl = NULL;
1510	struct resource_list_entry *	rle = NULL;
1511
1512	rl = BUS_GET_RESOURCE_LIST(dev, child);
1513	if (!rl)
1514		return (EINVAL);
1515
1516	rle = resource_list_find(rl, type, rid);
1517	if (!rle)
1518		return (ENOENT);
1519
1520	if (startp)
1521		*startp = rle->start;
1522	if (countp)
1523		*countp = rle->count;
1524
1525	return (0);
1526}
1527
1528int
1529bus_generic_rl_set_resource (device_t dev, device_t child, int type, int rid,
1530    u_long start, u_long count)
1531{
1532	struct resource_list *		rl = NULL;
1533
1534	rl = BUS_GET_RESOURCE_LIST(dev, child);
1535	if (!rl)
1536		return (EINVAL);
1537
1538	resource_list_add(rl, type, rid, start, (start + count - 1), count);
1539
1540	return (0);
1541}
1542
1543void
1544bus_generic_rl_delete_resource (device_t dev, device_t child, int type, int rid)
1545{
1546	struct resource_list *		rl = NULL;
1547
1548	rl = BUS_GET_RESOURCE_LIST(dev, child);
1549	if (!rl)
1550		return;
1551
1552	resource_list_delete(rl, type, rid);
1553
1554	return;
1555}
1556
1557int
1558bus_generic_rl_release_resource (device_t dev, device_t child, int type,
1559    int rid, struct resource *r)
1560{
1561	struct resource_list *		rl = NULL;
1562
1563	rl = BUS_GET_RESOURCE_LIST(dev, child);
1564	if (!rl)
1565		return (EINVAL);
1566
1567	return (resource_list_release(rl, dev, child, type, rid, r));
1568}
1569
1570struct resource *
1571bus_generic_rl_alloc_resource (device_t dev, device_t child, int type,
1572    int *rid, u_long start, u_long end, u_long count, u_int flags)
1573{
1574	struct resource_list *		rl = NULL;
1575
1576	rl = BUS_GET_RESOURCE_LIST(dev, child);
1577	if (!rl)
1578		return (NULL);
1579
1580	return (resource_list_alloc(rl, dev, child, type, rid,
1581	    start, end, count, flags));
1582}
1583
1584/*
1585 * Some convenience functions to make it easier for drivers to use the
1586 * resource-management functions.  All these really do is hide the
1587 * indirection through the parent's method table, making for slightly
1588 * less-wordy code.  In the future, it might make sense for this code
1589 * to maintain some sort of a list of resources allocated by each device.
1590 */
1591struct resource *
1592bus_alloc_resource(device_t dev, int type, int *rid, u_long start, u_long end,
1593    u_long count, u_int flags)
1594{
1595	if (dev->parent == 0)
1596		return (0);
1597	return (BUS_ALLOC_RESOURCE(dev->parent, dev, type, rid, start, end,
1598	    count, flags));
1599}
1600
1601int
1602bus_activate_resource(device_t dev, int type, int rid, struct resource *r)
1603{
1604	if (dev->parent == 0)
1605		return (EINVAL);
1606	return (BUS_ACTIVATE_RESOURCE(dev->parent, dev, type, rid, r));
1607}
1608
1609int
1610bus_deactivate_resource(device_t dev, int type, int rid, struct resource *r)
1611{
1612	if (dev->parent == 0)
1613		return (EINVAL);
1614	return (BUS_DEACTIVATE_RESOURCE(dev->parent, dev, type, rid, r));
1615}
1616
1617int
1618bus_release_resource(device_t dev, int type, int rid, struct resource *r)
1619{
1620	if (dev->parent == 0)
1621		return (EINVAL);
1622	return (BUS_RELEASE_RESOURCE(dev->parent, dev, type, rid, r));
1623}
1624
1625int
1626bus_setup_intr(device_t dev, struct resource *r, int flags,
1627    driver_intr_t handler, void *arg, void **cookiep)
1628{
1629	if (dev->parent == 0)
1630		return (EINVAL);
1631	return (BUS_SETUP_INTR(dev->parent, dev, r, flags,
1632	    handler, arg, cookiep));
1633}
1634
1635int
1636bus_teardown_intr(device_t dev, struct resource *r, void *cookie)
1637{
1638	if (dev->parent == 0)
1639		return (EINVAL);
1640	return (BUS_TEARDOWN_INTR(dev->parent, dev, r, cookie));
1641}
1642
1643int
1644bus_set_resource(device_t dev, int type, int rid,
1645    u_long start, u_long count)
1646{
1647	return (BUS_SET_RESOURCE(device_get_parent(dev), dev, type, rid,
1648	    start, count));
1649}
1650
1651int
1652bus_get_resource(device_t dev, int type, int rid,
1653    u_long *startp, u_long *countp)
1654{
1655	return (BUS_GET_RESOURCE(device_get_parent(dev), dev, type, rid,
1656	    startp, countp));
1657}
1658
1659u_long
1660bus_get_resource_start(device_t dev, int type, int rid)
1661{
1662	u_long start, count;
1663	int error;
1664
1665	error = BUS_GET_RESOURCE(device_get_parent(dev), dev, type, rid,
1666	    &start, &count);
1667	if (error)
1668		return (0);
1669	return (start);
1670}
1671
1672u_long
1673bus_get_resource_count(device_t dev, int type, int rid)
1674{
1675	u_long start, count;
1676	int error;
1677
1678	error = BUS_GET_RESOURCE(device_get_parent(dev), dev, type, rid,
1679	    &start, &count);
1680	if (error)
1681		return (0);
1682	return (count);
1683}
1684
1685void
1686bus_delete_resource(device_t dev, int type, int rid)
1687{
1688	BUS_DELETE_RESOURCE(device_get_parent(dev), dev, type, rid);
1689}
1690
1691static int
1692root_print_child(device_t dev, device_t child)
1693{
1694	int	retval = 0;
1695
1696	retval += bus_print_child_header(dev, child);
1697	retval += printf("\n");
1698
1699	return (retval);
1700}
1701
1702static int
1703root_setup_intr(device_t dev, device_t child, driver_intr_t *intr, void *arg,
1704    void **cookiep)
1705{
1706	/*
1707	 * If an interrupt mapping gets to here something bad has happened.
1708	 */
1709	panic("root_setup_intr");
1710}
1711
1712static kobj_method_t root_methods[] = {
1713	/* Device interface */
1714	KOBJMETHOD(device_shutdown,	bus_generic_shutdown),
1715	KOBJMETHOD(device_suspend,	bus_generic_suspend),
1716	KOBJMETHOD(device_resume,	bus_generic_resume),
1717
1718	/* Bus interface */
1719	KOBJMETHOD(bus_print_child,	root_print_child),
1720	KOBJMETHOD(bus_read_ivar,	bus_generic_read_ivar),
1721	KOBJMETHOD(bus_write_ivar,	bus_generic_write_ivar),
1722	KOBJMETHOD(bus_setup_intr,	root_setup_intr),
1723
1724	{ 0, 0 }
1725};
1726
1727static driver_t root_driver = {
1728	"root",
1729	root_methods,
1730	1,			/* no softc */
1731};
1732
1733device_t	root_bus;
1734devclass_t	root_devclass;
1735
1736static int
1737root_bus_module_handler(module_t mod, int what, void* arg)
1738{
1739	switch (what) {
1740	case MOD_LOAD:
1741		TAILQ_INIT(&bus_data_devices);
1742		kobj_class_compile((kobj_class_t) &root_driver);
1743		root_bus = make_device(NULL, "root", 0);
1744		root_bus->desc = "System root bus";
1745		kobj_init((kobj_t) root_bus, (kobj_class_t) &root_driver);
1746		root_bus->driver = &root_driver;
1747		root_bus->state = DS_ATTACHED;
1748		root_devclass = devclass_find_internal("root", FALSE);
1749		return (0);
1750
1751	case MOD_SHUTDOWN:
1752		device_shutdown(root_bus);
1753		return (0);
1754	}
1755
1756	return (0);
1757}
1758
1759static moduledata_t root_bus_mod = {
1760	"rootbus",
1761	root_bus_module_handler,
1762	0
1763};
1764DECLARE_MODULE(rootbus, root_bus_mod, SI_SUB_DRIVERS, SI_ORDER_FIRST);
1765
1766void
1767root_bus_configure(void)
1768{
1769	device_t dev;
1770
1771	PDEBUG(("."));
1772
1773	TAILQ_FOREACH(dev, &root_bus->children, link) {
1774		device_probe_and_attach(dev);
1775	}
1776}
1777
1778int
1779driver_module_handler(module_t mod, int what, void *arg)
1780{
1781	int error, i;
1782	struct driver_module_data *dmd;
1783	devclass_t bus_devclass;
1784
1785	dmd = (struct driver_module_data *)arg;
1786	bus_devclass = devclass_find_internal(dmd->dmd_busname, TRUE);
1787	error = 0;
1788
1789	switch (what) {
1790	case MOD_LOAD:
1791		if (dmd->dmd_chainevh)
1792			error = dmd->dmd_chainevh(mod,what,dmd->dmd_chainarg);
1793
1794		for (i = 0; !error && i < dmd->dmd_ndrivers; i++) {
1795			PDEBUG(("Loading module: driver %s on bus %s",
1796			    DRIVERNAME(dmd->dmd_drivers[i]), dmd->dmd_busname));
1797			error = devclass_add_driver(bus_devclass,
1798			    dmd->dmd_drivers[i]);
1799		}
1800		if (error)
1801			break;
1802
1803		/*
1804		 * The drivers loaded in this way are assumed to all
1805		 * implement the same devclass.
1806		 */
1807		*dmd->dmd_devclass =
1808		    devclass_find_internal(dmd->dmd_drivers[0]->name, TRUE);
1809		break;
1810
1811	case MOD_UNLOAD:
1812		for (i = 0; !error && i < dmd->dmd_ndrivers; i++) {
1813			PDEBUG(("Unloading module: driver %s from bus %s",
1814			    DRIVERNAME(dmd->dmd_drivers[i]),
1815			    dmd->dmd_busname));
1816			error = devclass_delete_driver(bus_devclass,
1817			    dmd->dmd_drivers[i]);
1818		}
1819
1820		if (!error && dmd->dmd_chainevh)
1821			error = dmd->dmd_chainevh(mod,what,dmd->dmd_chainarg);
1822		break;
1823	}
1824
1825	return (error);
1826}
1827
1828#ifdef BUS_DEBUG
1829
1830/* the _short versions avoid iteration by not calling anything that prints
1831 * more than oneliners. I love oneliners.
1832 */
1833
1834static void
1835print_device_short(device_t dev, int indent)
1836{
1837	if (!dev)
1838		return;
1839
1840	indentprintf(("device %d: <%s> %sparent,%schildren,%s%s%s%s,%sivars,%ssoftc,busy=%d\n",
1841	    dev->unit, dev->desc,
1842	    (dev->parent? "":"no "),
1843	    (TAILQ_EMPTY(&dev->children)? "no ":""),
1844	    (dev->flags&DF_ENABLED? "enabled,":"disabled,"),
1845	    (dev->flags&DF_FIXEDCLASS? "fixed,":""),
1846	    (dev->flags&DF_WILDCARD? "wildcard,":""),
1847	    (dev->flags&DF_DESCMALLOCED? "descmalloced,":""),
1848	    (dev->ivars? "":"no "),
1849	    (dev->softc? "":"no "),
1850	    dev->busy));
1851}
1852
1853static void
1854print_device(device_t dev, int indent)
1855{
1856	if (!dev)
1857		return;
1858
1859	print_device_short(dev, indent);
1860
1861	indentprintf(("Parent:\n"));
1862	print_device_short(dev->parent, indent+1);
1863	indentprintf(("Driver:\n"));
1864	print_driver_short(dev->driver, indent+1);
1865	indentprintf(("Devclass:\n"));
1866	print_devclass_short(dev->devclass, indent+1);
1867}
1868
1869void
1870print_device_tree_short(device_t dev, int indent)
1871/* print the device and all its children (indented) */
1872{
1873	device_t child;
1874
1875	if (!dev)
1876		return;
1877
1878	print_device_short(dev, indent);
1879
1880	TAILQ_FOREACH(child, &dev->children, link) {
1881		print_device_tree_short(child, indent+1);
1882	}
1883}
1884
1885void
1886print_device_tree(device_t dev, int indent)
1887/* print the device and all its children (indented) */
1888{
1889	device_t child;
1890
1891	if (!dev)
1892		return;
1893
1894	print_device(dev, indent);
1895
1896	TAILQ_FOREACH(child, &dev->children, link) {
1897		print_device_tree(child, indent+1);
1898	}
1899}
1900
1901static void
1902print_driver_short(driver_t *driver, int indent)
1903{
1904	if (!driver)
1905		return;
1906
1907	indentprintf(("driver %s: softc size = %d\n",
1908	    driver->name, driver->size));
1909}
1910
1911static void
1912print_driver(driver_t *driver, int indent)
1913{
1914	if (!driver)
1915		return;
1916
1917	print_driver_short(driver, indent);
1918}
1919
1920
1921static void
1922print_driver_list(driver_list_t drivers, int indent)
1923{
1924	driverlink_t driver;
1925
1926	TAILQ_FOREACH(driver, &drivers, link) {
1927		print_driver(driver->driver, indent);
1928	}
1929}
1930
1931static void
1932print_devclass_short(devclass_t dc, int indent)
1933{
1934	if ( !dc )
1935		return;
1936
1937	indentprintf(("devclass %s: max units = %d\n", dc->name, dc->maxunit));
1938}
1939
1940static void
1941print_devclass(devclass_t dc, int indent)
1942{
1943	int i;
1944
1945	if ( !dc )
1946		return;
1947
1948	print_devclass_short(dc, indent);
1949	indentprintf(("Drivers:\n"));
1950	print_driver_list(dc->drivers, indent+1);
1951
1952	indentprintf(("Devices:\n"));
1953	for (i = 0; i < dc->maxunit; i++)
1954		if (dc->devices[i])
1955			print_device(dc->devices[i], indent+1);
1956}
1957
1958void
1959print_devclass_list_short(void)
1960{
1961	devclass_t dc;
1962
1963	printf("Short listing of devclasses, drivers & devices:\n");
1964	TAILQ_FOREACH(dc, &devclasses, link) {
1965		print_devclass_short(dc, 0);
1966	}
1967}
1968
1969void
1970print_devclass_list(void)
1971{
1972	devclass_t dc;
1973
1974	printf("Full listing of devclasses, drivers & devices:\n");
1975	TAILQ_FOREACH(dc, &devclasses, link) {
1976		print_devclass(dc, 0);
1977	}
1978}
1979
1980#endif
1981
1982/*
1983 * User-space access to the device tree.
1984 *
1985 * We implement a small set of nodes:
1986 *
1987 * hw.bus			Single integer read method to obtain the
1988 *				current generation count.
1989 * hw.bus.devices		Reads the entire device tree in flat space.
1990 * hw.bus.rman			Resource manager interface
1991 *
1992 * We might like to add the ability to scan devclasses and/or drivers to
1993 * determine what else is currently loaded/available.
1994 */
1995SYSCTL_NODE(_hw, OID_AUTO, bus, CTLFLAG_RW, NULL, NULL);
1996
1997static int
1998sysctl_bus(SYSCTL_HANDLER_ARGS)
1999{
2000	struct u_businfo	ubus;
2001
2002	ubus.ub_version = BUS_USER_VERSION;
2003	ubus.ub_generation = bus_data_generation;
2004
2005	return (SYSCTL_OUT(req, &ubus, sizeof(ubus)));
2006}
2007SYSCTL_NODE(_hw_bus, OID_AUTO, info, CTLFLAG_RW, sysctl_bus,
2008    "bus-related data");
2009
2010static int
2011sysctl_devices(SYSCTL_HANDLER_ARGS)
2012{
2013	int			*name = (int *)arg1;
2014	u_int			namelen = arg2;
2015	int			index;
2016	struct device		*dev;
2017	struct u_device		udev;	/* XXX this is a bit big */
2018	int			error;
2019
2020	if (namelen != 2)
2021		return (EINVAL);
2022
2023	if (bus_data_generation_check(name[0]))
2024		return (EINVAL);
2025
2026	index = name[1];
2027
2028	/*
2029	 * Scan the list of devices, looking for the requested index.
2030	 */
2031	TAILQ_FOREACH(dev, &bus_data_devices, devlink) {
2032		if (index-- == 0)
2033			break;
2034	}
2035	if (dev == NULL)
2036		return (ENOENT);
2037
2038	/*
2039	 * Populate the return array.
2040	 */
2041	udev.dv_handle = (uintptr_t)dev;
2042	udev.dv_parent = (uintptr_t)dev->parent;
2043	if (dev->nameunit == NULL) {
2044		udev.dv_name[0] = 0;
2045	} else {
2046		snprintf(udev.dv_name, 32, "%s", dev->nameunit);
2047	}
2048	if (dev->desc == NULL) {
2049		udev.dv_desc[0] = 0;
2050	} else {
2051		snprintf(udev.dv_desc, 32, "%s", dev->desc);
2052	}
2053	if ((dev->driver == NULL) || (dev->driver->name == NULL)) {
2054		udev.dv_drivername[0] = 0;
2055	} else {
2056		snprintf(udev.dv_drivername, 32, "%s", dev->driver->name);
2057	}
2058	error = SYSCTL_OUT(req, &udev, sizeof(udev));
2059	return (error);
2060}
2061
2062SYSCTL_NODE(_hw_bus, OID_AUTO, devices, CTLFLAG_RD, sysctl_devices,
2063    "system device tree");
2064
2065/*
2066 * Sysctl interface for scanning the resource lists.
2067 *
2068 * We take two input parameters; the index into the list of resource
2069 * managers, and the resource offset into the list.
2070 */
2071static int
2072sysctl_rman(SYSCTL_HANDLER_ARGS)
2073{
2074	int			*name = (int *)arg1;
2075	u_int			namelen = arg2;
2076	int			rman_idx, res_idx;
2077	struct rman		*rm;
2078	struct resource		*res;
2079	struct u_rman		urm;
2080	struct u_resource	ures;
2081	int			error;
2082
2083	if (namelen != 3)
2084		return (EINVAL);
2085
2086	if (bus_data_generation_check(name[0]))
2087		return (EINVAL);
2088	rman_idx = name[1];
2089	res_idx = name[2];
2090
2091	/*
2092	 * Find the indexed resource manager
2093	 */
2094	TAILQ_FOREACH(rm, &rman_head, rm_link) {
2095		if (rman_idx-- == 0)
2096			break;
2097	}
2098	if (rm == NULL)
2099		return (ENOENT);
2100
2101	/*
2102	 * If the resource index is -1, we want details on the
2103	 * resource manager.
2104	 */
2105	if (res_idx == -1) {
2106		urm.rm_handle = (uintptr_t)rm;
2107		snprintf(urm.rm_descr, RM_TEXTLEN, "%s", rm->rm_descr);
2108		urm.rm_descr[RM_TEXTLEN - 1] = '\0';
2109		urm.rm_start = rm->rm_start;
2110		urm.rm_size = rm->rm_end - rm->rm_start + 1;
2111		urm.rm_type = rm->rm_type;
2112
2113		error = SYSCTL_OUT(req, &urm, sizeof(urm));
2114		return (error);
2115	}
2116
2117	/*
2118	 * Find the indexed resource and return it.
2119	 */
2120	TAILQ_FOREACH(res, &rm->rm_list, r_link) {
2121		if (res_idx-- == 0) {
2122			ures.r_handle = (uintptr_t)res;
2123			ures.r_parent = (uintptr_t)res->r_rm;
2124			ures.r_device = (uintptr_t)res->r_dev;
2125			if (res->r_dev != NULL) {
2126				if (device_get_name(res->r_dev) != NULL) {
2127					snprintf(ures.r_devname, RM_TEXTLEN,
2128					    "%s%d",
2129					    device_get_name(res->r_dev),
2130					    device_get_unit(res->r_dev));
2131				} else {
2132					snprintf(ures.r_devname, RM_TEXTLEN,
2133					    "nomatch");
2134				}
2135			} else {
2136				ures.r_devname[0] = 0;
2137			}
2138			ures.r_start = res->r_start;
2139			ures.r_size = res->r_end - res->r_start + 1;
2140			ures.r_flags = res->r_flags;
2141
2142			error = SYSCTL_OUT(req, &ures, sizeof(ures));
2143			return (error);
2144		}
2145	}
2146	return (ENOENT);
2147}
2148
2149SYSCTL_NODE(_hw_bus, OID_AUTO, rman, CTLFLAG_RD, sysctl_rman,
2150    "kernel resource manager");
2151
2152int
2153bus_data_generation_check(int generation)
2154{
2155	if (generation != bus_data_generation)
2156		return (1);
2157
2158	/* XXX generate optimised lists here? */
2159	return (0);
2160}
2161
2162void
2163bus_data_generation_update(void)
2164{
2165	bus_data_generation++;
2166}
2167