1c1b3d7c5SThomas E. Spanjaard /*-
29243051bSzrj * Copyright (c) 2000 - 2008 Søren Schmidt <sos@FreeBSD.org>
3c1b3d7c5SThomas E. Spanjaard * All rights reserved.
4c1b3d7c5SThomas E. Spanjaard *
5c1b3d7c5SThomas E. Spanjaard * Redistribution and use in source and binary forms, with or without
6c1b3d7c5SThomas E. Spanjaard * modification, are permitted provided that the following conditions
7c1b3d7c5SThomas E. Spanjaard * are met:
8c1b3d7c5SThomas E. Spanjaard * 1. Redistributions of source code must retain the above copyright
9c1b3d7c5SThomas E. Spanjaard * notice, this list of conditions and the following disclaimer,
10c1b3d7c5SThomas E. Spanjaard * without modification, immediately at the beginning of the file.
11c1b3d7c5SThomas E. Spanjaard * 2. Redistributions in binary form must reproduce the above copyright
12c1b3d7c5SThomas E. Spanjaard * notice, this list of conditions and the following disclaimer in the
13c1b3d7c5SThomas E. Spanjaard * documentation and/or other materials provided with the distribution.
14c1b3d7c5SThomas E. Spanjaard *
15c1b3d7c5SThomas E. Spanjaard * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16c1b3d7c5SThomas E. Spanjaard * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17c1b3d7c5SThomas E. Spanjaard * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18c1b3d7c5SThomas E. Spanjaard * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19c1b3d7c5SThomas E. Spanjaard * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20c1b3d7c5SThomas E. Spanjaard * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21c1b3d7c5SThomas E. Spanjaard * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22c1b3d7c5SThomas E. Spanjaard * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23c1b3d7c5SThomas E. Spanjaard * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24c1b3d7c5SThomas E. Spanjaard * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25c1b3d7c5SThomas E. Spanjaard *
26c1b3d7c5SThomas E. Spanjaard * $FreeBSD: src/sys/dev/ata/ata-raid.c,v 1.120 2006/04/15 10:27:41 maxim Exp $
27c1b3d7c5SThomas E. Spanjaard */
28c1b3d7c5SThomas E. Spanjaard
29c1b3d7c5SThomas E. Spanjaard #include "opt_ata.h"
305e8604ceSThomas E. Spanjaard
31c1b3d7c5SThomas E. Spanjaard #include <sys/param.h>
32c1b3d7c5SThomas E. Spanjaard #include <sys/bio.h>
335e8604ceSThomas E. Spanjaard #include <sys/buf.h>
34d438c7c2SThomas E. Spanjaard #include <sys/buf2.h>
35c1b3d7c5SThomas E. Spanjaard #include <sys/bus.h>
36c1b3d7c5SThomas E. Spanjaard #include <sys/conf.h>
375e8604ceSThomas E. Spanjaard #include <sys/device.h>
3889be26e1SSascha Wildner #include <sys/devicestat.h>
39c1b3d7c5SThomas E. Spanjaard #include <sys/disk.h>
405e8604ceSThomas E. Spanjaard #include <sys/endian.h>
415e8604ceSThomas E. Spanjaard #include <sys/libkern.h>
425e8604ceSThomas E. Spanjaard #include <sys/malloc.h>
4315bd3c73SMatthew Dillon #include <sys/lock.h>
445e8604ceSThomas E. Spanjaard #include <sys/module.h>
455e8604ceSThomas E. Spanjaard #include <sys/nata.h>
465e8604ceSThomas E. Spanjaard #include <sys/systm.h>
475e8604ceSThomas E. Spanjaard
485e8604ceSThomas E. Spanjaard #include <vm/pmap.h>
495e8604ceSThomas E. Spanjaard
505e8604ceSThomas E. Spanjaard #include <machine/md_var.h>
515e8604ceSThomas E. Spanjaard
525e8604ceSThomas E. Spanjaard #include <bus/pci/pcivar.h>
535e8604ceSThomas E. Spanjaard
545e8604ceSThomas E. Spanjaard #include "ata-all.h"
555e8604ceSThomas E. Spanjaard #include "ata-disk.h"
565e8604ceSThomas E. Spanjaard #include "ata-raid.h"
575e8604ceSThomas E. Spanjaard #include "ata-pci.h"
585e8604ceSThomas E. Spanjaard #include "ata_if.h"
595e8604ceSThomas E. Spanjaard
60bb15467aSzrj /* local implementation, to trigger a warning */
61bb15467aSzrj static inline void
biofinish(struct bio * bp,struct bio * x __unused,int error)62bb15467aSzrj biofinish(struct bio *bp, struct bio *x __unused, int error)
63bb15467aSzrj {
64bb15467aSzrj struct buf *bbp = bp->bio_buf;
65bb15467aSzrj
66bb15467aSzrj bbp->b_flags |= B_ERROR;
67bb15467aSzrj bbp->b_error = error;
68bb15467aSzrj biodone(bp);
69bb15467aSzrj }
70c1b3d7c5SThomas E. Spanjaard
71c1b3d7c5SThomas E. Spanjaard /* device structure */
72c1b3d7c5SThomas E. Spanjaard static d_strategy_t ata_raid_strategy;
73c1b3d7c5SThomas E. Spanjaard static d_dump_t ata_raid_dump;
745e8604ceSThomas E. Spanjaard static struct dev_ops ar_ops = {
7547f4bca5SSascha Wildner { "ar", 0, D_DISK },
76c1b3d7c5SThomas E. Spanjaard .d_open = nullopen,
77c1b3d7c5SThomas E. Spanjaard .d_close = nullclose,
78c1b3d7c5SThomas E. Spanjaard .d_read = physread,
79c1b3d7c5SThomas E. Spanjaard .d_write = physwrite,
80c1b3d7c5SThomas E. Spanjaard .d_strategy = ata_raid_strategy,
81c1b3d7c5SThomas E. Spanjaard .d_dump = ata_raid_dump,
82c1b3d7c5SThomas E. Spanjaard };
83c1b3d7c5SThomas E. Spanjaard
84c1b3d7c5SThomas E. Spanjaard /* prototypes */
85c1b3d7c5SThomas E. Spanjaard static void ata_raid_done(struct ata_request *request);
86c1b3d7c5SThomas E. Spanjaard static void ata_raid_config_changed(struct ar_softc *rdp, int writeback);
879243051bSzrj static int ata_raid_status(struct ata_ioc_raid_status *status);
88c1b3d7c5SThomas E. Spanjaard static int ata_raid_create(struct ata_ioc_raid_config *config);
89c1b3d7c5SThomas E. Spanjaard static int ata_raid_delete(int array);
90c1b3d7c5SThomas E. Spanjaard static int ata_raid_addspare(struct ata_ioc_raid_config *config);
91c1b3d7c5SThomas E. Spanjaard static int ata_raid_rebuild(int array);
92c1b3d7c5SThomas E. Spanjaard static int ata_raid_read_metadata(device_t subdisk);
93c1b3d7c5SThomas E. Spanjaard static int ata_raid_write_metadata(struct ar_softc *rdp);
94c1b3d7c5SThomas E. Spanjaard static int ata_raid_wipe_metadata(struct ar_softc *rdp);
95c1b3d7c5SThomas E. Spanjaard static int ata_raid_adaptec_read_meta(device_t dev, struct ar_softc **raidp);
96c1b3d7c5SThomas E. Spanjaard static int ata_raid_hptv2_read_meta(device_t dev, struct ar_softc **raidp);
97c1b3d7c5SThomas E. Spanjaard static int ata_raid_hptv2_write_meta(struct ar_softc *rdp);
98c1b3d7c5SThomas E. Spanjaard static int ata_raid_hptv3_read_meta(device_t dev, struct ar_softc **raidp);
99c1b3d7c5SThomas E. Spanjaard static int ata_raid_intel_read_meta(device_t dev, struct ar_softc **raidp);
100c1b3d7c5SThomas E. Spanjaard static int ata_raid_intel_write_meta(struct ar_softc *rdp);
101c1b3d7c5SThomas E. Spanjaard static int ata_raid_ite_read_meta(device_t dev, struct ar_softc **raidp);
102c1b3d7c5SThomas E. Spanjaard static int ata_raid_jmicron_read_meta(device_t dev, struct ar_softc **raidp);
103c1b3d7c5SThomas E. Spanjaard static int ata_raid_jmicron_write_meta(struct ar_softc *rdp);
104c1b3d7c5SThomas E. Spanjaard static int ata_raid_lsiv2_read_meta(device_t dev, struct ar_softc **raidp);
105c1b3d7c5SThomas E. Spanjaard static int ata_raid_lsiv3_read_meta(device_t dev, struct ar_softc **raidp);
106c1b3d7c5SThomas E. Spanjaard static int ata_raid_nvidia_read_meta(device_t dev, struct ar_softc **raidp);
107c1b3d7c5SThomas E. Spanjaard static int ata_raid_promise_read_meta(device_t dev, struct ar_softc **raidp, int native);
108c1b3d7c5SThomas E. Spanjaard static int ata_raid_promise_write_meta(struct ar_softc *rdp);
109c1b3d7c5SThomas E. Spanjaard static int ata_raid_sii_read_meta(device_t dev, struct ar_softc **raidp);
110c1b3d7c5SThomas E. Spanjaard static int ata_raid_sis_read_meta(device_t dev, struct ar_softc **raidp);
111c1b3d7c5SThomas E. Spanjaard static int ata_raid_sis_write_meta(struct ar_softc *rdp);
112c1b3d7c5SThomas E. Spanjaard static int ata_raid_via_read_meta(device_t dev, struct ar_softc **raidp);
113c1b3d7c5SThomas E. Spanjaard static int ata_raid_via_write_meta(struct ar_softc *rdp);
114c1b3d7c5SThomas E. Spanjaard static struct ata_request *ata_raid_init_request(struct ar_softc *rdp, struct bio *bio);
115c1b3d7c5SThomas E. Spanjaard static int ata_raid_send_request(struct ata_request *request);
116c1b3d7c5SThomas E. Spanjaard static int ata_raid_rw(device_t dev, u_int64_t lba, void *data, u_int bcount, int flags);
117c1b3d7c5SThomas E. Spanjaard static char * ata_raid_format(struct ar_softc *rdp);
118c1b3d7c5SThomas E. Spanjaard static char * ata_raid_type(struct ar_softc *rdp);
119c1b3d7c5SThomas E. Spanjaard static char * ata_raid_flags(struct ar_softc *rdp);
120c1b3d7c5SThomas E. Spanjaard
121c1b3d7c5SThomas E. Spanjaard /* debugging only */
122c1b3d7c5SThomas E. Spanjaard static void ata_raid_print_meta(struct ar_softc *meta);
123c1b3d7c5SThomas E. Spanjaard static void ata_raid_adaptec_print_meta(struct adaptec_raid_conf *meta);
124c1b3d7c5SThomas E. Spanjaard static void ata_raid_hptv2_print_meta(struct hptv2_raid_conf *meta);
125c1b3d7c5SThomas E. Spanjaard static void ata_raid_hptv3_print_meta(struct hptv3_raid_conf *meta);
126c1b3d7c5SThomas E. Spanjaard static void ata_raid_intel_print_meta(struct intel_raid_conf *meta);
127c1b3d7c5SThomas E. Spanjaard static void ata_raid_ite_print_meta(struct ite_raid_conf *meta);
128c1b3d7c5SThomas E. Spanjaard static void ata_raid_jmicron_print_meta(struct jmicron_raid_conf *meta);
129c1b3d7c5SThomas E. Spanjaard static void ata_raid_lsiv2_print_meta(struct lsiv2_raid_conf *meta);
130c1b3d7c5SThomas E. Spanjaard static void ata_raid_lsiv3_print_meta(struct lsiv3_raid_conf *meta);
131c1b3d7c5SThomas E. Spanjaard static void ata_raid_nvidia_print_meta(struct nvidia_raid_conf *meta);
132c1b3d7c5SThomas E. Spanjaard static void ata_raid_promise_print_meta(struct promise_raid_conf *meta);
133c1b3d7c5SThomas E. Spanjaard static void ata_raid_sii_print_meta(struct sii_raid_conf *meta);
134c1b3d7c5SThomas E. Spanjaard static void ata_raid_sis_print_meta(struct sis_raid_conf *meta);
135c1b3d7c5SThomas E. Spanjaard static void ata_raid_via_print_meta(struct via_raid_conf *meta);
136c1b3d7c5SThomas E. Spanjaard
137c1b3d7c5SThomas E. Spanjaard /* internal vars */
138c1b3d7c5SThomas E. Spanjaard static struct ar_softc *ata_raid_arrays[MAX_ARRAYS];
139c1b3d7c5SThomas E. Spanjaard static MALLOC_DEFINE(M_AR, "ar_driver", "ATA PseudoRAID driver");
140c1b3d7c5SThomas E. Spanjaard static devclass_t ata_raid_sub_devclass;
141c1b3d7c5SThomas E. Spanjaard static int testing = 0;
142c1b3d7c5SThomas E. Spanjaard
143c1b3d7c5SThomas E. Spanjaard static void
ata_raid_attach(struct ar_softc * rdp,int writeback)144c1b3d7c5SThomas E. Spanjaard ata_raid_attach(struct ar_softc *rdp, int writeback)
145c1b3d7c5SThomas E. Spanjaard {
146a688b15cSMatthew Dillon struct disk_info info;
1475e8604ceSThomas E. Spanjaard cdev_t cdev;
148c1b3d7c5SThomas E. Spanjaard char buffer[32];
149c1b3d7c5SThomas E. Spanjaard int disk;
150c1b3d7c5SThomas E. Spanjaard
15115bd3c73SMatthew Dillon lockinit(&rdp->lock, "ataraidattach", 0, 0);
152c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, writeback);
153c1b3d7c5SThomas E. Spanjaard
154c1b3d7c5SThomas E. Spanjaard /* sanitize arrays total_size % (width * interleave) == 0 */
155c1b3d7c5SThomas E. Spanjaard if (rdp->type == AR_T_RAID0 || rdp->type == AR_T_RAID01 ||
156c1b3d7c5SThomas E. Spanjaard rdp->type == AR_T_RAID5) {
157*ed183f8cSSascha Wildner rdp->total_sectors = rounddown(rdp->total_sectors,
158*ed183f8cSSascha Wildner rdp->interleave * rdp->width);
159f8c7a42dSMatthew Dillon ksprintf(buffer, " (stripe %d KB)",
160c1b3d7c5SThomas E. Spanjaard (rdp->interleave * DEV_BSIZE) / 1024);
161c1b3d7c5SThomas E. Spanjaard }
162c1b3d7c5SThomas E. Spanjaard else
163c1b3d7c5SThomas E. Spanjaard buffer[0] = '\0';
16489be26e1SSascha Wildner
16589be26e1SSascha Wildner devstat_add_entry(&rdp->devstat, "ar", rdp->lun,
16689be26e1SSascha Wildner DEV_BSIZE, DEVSTAT_NO_ORDERED_TAGS,
16789be26e1SSascha Wildner DEVSTAT_TYPE_STORARRAY | DEVSTAT_TYPE_IF_OTHER,
16889be26e1SSascha Wildner DEVSTAT_PRIORITY_ARRAY);
16989be26e1SSascha Wildner
170a688b15cSMatthew Dillon cdev = disk_create(rdp->lun, &rdp->disk, &ar_ops);
1715e8604ceSThomas E. Spanjaard cdev->si_drv1 = rdp;
1725e8604ceSThomas E. Spanjaard cdev->si_iosize_max = 128 * DEV_BSIZE;
1735e8604ceSThomas E. Spanjaard rdp->cdev = cdev;
174a688b15cSMatthew Dillon
175a688b15cSMatthew Dillon bzero(&info, sizeof(info));
176a688b15cSMatthew Dillon info.d_media_blksize = DEV_BSIZE; /* mandatory */
177a688b15cSMatthew Dillon info.d_media_blocks = rdp->total_sectors;
178a688b15cSMatthew Dillon
179a688b15cSMatthew Dillon info.d_secpertrack = rdp->sectors; /* optional */
180a688b15cSMatthew Dillon info.d_nheads = rdp->heads;
181a688b15cSMatthew Dillon info.d_ncylinders = rdp->total_sectors/(rdp->heads*rdp->sectors);
182a688b15cSMatthew Dillon info.d_secpercyl = rdp->sectors * rdp->heads;
183c1b3d7c5SThomas E. Spanjaard
184e3869ec7SSascha Wildner kprintf("ar%d: %juMB <%s %s%s> status: %s\n", rdp->lun,
185c1b3d7c5SThomas E. Spanjaard rdp->total_sectors / ((1024L * 1024L) / DEV_BSIZE),
186c1b3d7c5SThomas E. Spanjaard ata_raid_format(rdp), ata_raid_type(rdp),
187c1b3d7c5SThomas E. Spanjaard buffer, ata_raid_flags(rdp));
188c1b3d7c5SThomas E. Spanjaard
189c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
190e3869ec7SSascha Wildner kprintf("ar%d: %ju sectors [%dC/%dH/%dS] <%s> subdisks defined as:\n",
191c1b3d7c5SThomas E. Spanjaard rdp->lun, rdp->total_sectors,
192c1b3d7c5SThomas E. Spanjaard rdp->cylinders, rdp->heads, rdp->sectors, rdp->name);
193c1b3d7c5SThomas E. Spanjaard
194c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
195e3869ec7SSascha Wildner kprintf("ar%d: disk%d ", rdp->lun, disk);
196c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
197c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].flags & AR_DF_PRESENT) {
198c1b3d7c5SThomas E. Spanjaard /* status of this disk in the array */
199c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].flags & AR_DF_ONLINE)
200e3869ec7SSascha Wildner kprintf("READY ");
201c1b3d7c5SThomas E. Spanjaard else if (rdp->disks[disk].flags & AR_DF_SPARE)
202e3869ec7SSascha Wildner kprintf("SPARE ");
203c1b3d7c5SThomas E. Spanjaard else
204e3869ec7SSascha Wildner kprintf("FREE ");
205c1b3d7c5SThomas E. Spanjaard
206c1b3d7c5SThomas E. Spanjaard /* what type of disk is this in the array */
207c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
208c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
209c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
210c1b3d7c5SThomas E. Spanjaard if (disk < rdp->width)
211e3869ec7SSascha Wildner kprintf("(master) ");
212c1b3d7c5SThomas E. Spanjaard else
213e3869ec7SSascha Wildner kprintf("(mirror) ");
214c1b3d7c5SThomas E. Spanjaard }
215c1b3d7c5SThomas E. Spanjaard
216c1b3d7c5SThomas E. Spanjaard /* which physical disk is used */
217e3869ec7SSascha Wildner kprintf("using %s at ata%d-%s\n",
218c1b3d7c5SThomas E. Spanjaard device_get_nameunit(rdp->disks[disk].dev),
219c1b3d7c5SThomas E. Spanjaard device_get_unit(device_get_parent(rdp->disks[disk].dev)),
220c1b3d7c5SThomas E. Spanjaard (((struct ata_device *)
221c1b3d7c5SThomas E. Spanjaard device_get_softc(rdp->disks[disk].dev))->unit ==
222c1b3d7c5SThomas E. Spanjaard ATA_MASTER) ? "master" : "slave");
223c1b3d7c5SThomas E. Spanjaard }
224c1b3d7c5SThomas E. Spanjaard else if (rdp->disks[disk].flags & AR_DF_ASSIGNED)
225e3869ec7SSascha Wildner kprintf("DOWN\n");
226c1b3d7c5SThomas E. Spanjaard else
227e3869ec7SSascha Wildner kprintf("INVALID no RAID config on this subdisk\n");
228c1b3d7c5SThomas E. Spanjaard }
229c1b3d7c5SThomas E. Spanjaard else
230e3869ec7SSascha Wildner kprintf("DOWN no device found for this subdisk\n");
231c1b3d7c5SThomas E. Spanjaard }
232a688b15cSMatthew Dillon
233a688b15cSMatthew Dillon disk_setdiskinfo(&rdp->disk, &info);
234c1b3d7c5SThomas E. Spanjaard }
235c1b3d7c5SThomas E. Spanjaard
236c1b3d7c5SThomas E. Spanjaard /*
237c1b3d7c5SThomas E. Spanjaard * ATA PseudoRAID ioctl function. Note that this does not need to be adjusted
238c1b3d7c5SThomas E. Spanjaard * to the dev_ops way, because it's just chained from the generic ata ioctl.
239c1b3d7c5SThomas E. Spanjaard */
240c1b3d7c5SThomas E. Spanjaard static int
ata_raid_ioctl(u_long cmd,caddr_t data)241c1b3d7c5SThomas E. Spanjaard ata_raid_ioctl(u_long cmd, caddr_t data)
242c1b3d7c5SThomas E. Spanjaard {
2439243051bSzrj struct ata_ioc_raid_status *status = (struct ata_ioc_raid_status *)data;
244c1b3d7c5SThomas E. Spanjaard struct ata_ioc_raid_config *config = (struct ata_ioc_raid_config *)data;
245c1b3d7c5SThomas E. Spanjaard int *lun = (int *)data;
246c1b3d7c5SThomas E. Spanjaard int error = EOPNOTSUPP;
247c1b3d7c5SThomas E. Spanjaard
248c1b3d7c5SThomas E. Spanjaard switch (cmd) {
249c1b3d7c5SThomas E. Spanjaard case IOCATARAIDSTATUS:
2509243051bSzrj error = ata_raid_status(status);
251c1b3d7c5SThomas E. Spanjaard break;
252c1b3d7c5SThomas E. Spanjaard
253c1b3d7c5SThomas E. Spanjaard case IOCATARAIDCREATE:
254c1b3d7c5SThomas E. Spanjaard error = ata_raid_create(config);
255c1b3d7c5SThomas E. Spanjaard break;
256c1b3d7c5SThomas E. Spanjaard
257c1b3d7c5SThomas E. Spanjaard case IOCATARAIDDELETE:
258c1b3d7c5SThomas E. Spanjaard error = ata_raid_delete(*lun);
259c1b3d7c5SThomas E. Spanjaard break;
260c1b3d7c5SThomas E. Spanjaard
261c1b3d7c5SThomas E. Spanjaard case IOCATARAIDADDSPARE:
262c1b3d7c5SThomas E. Spanjaard error = ata_raid_addspare(config);
263c1b3d7c5SThomas E. Spanjaard break;
264c1b3d7c5SThomas E. Spanjaard
265c1b3d7c5SThomas E. Spanjaard case IOCATARAIDREBUILD:
266c1b3d7c5SThomas E. Spanjaard error = ata_raid_rebuild(*lun);
267c1b3d7c5SThomas E. Spanjaard break;
268c1b3d7c5SThomas E. Spanjaard }
269c1b3d7c5SThomas E. Spanjaard return error;
270c1b3d7c5SThomas E. Spanjaard }
271c1b3d7c5SThomas E. Spanjaard
272b106cb48SMatthew Dillon static int
ata_raid_flush(struct ar_softc * rdp,struct bio * bp)273b106cb48SMatthew Dillon ata_raid_flush(struct ar_softc *rdp, struct bio *bp)
274b106cb48SMatthew Dillon {
275b106cb48SMatthew Dillon struct ata_request *request;
276b106cb48SMatthew Dillon device_t dev;
277a43d9d72SSascha Wildner int disk;
278b106cb48SMatthew Dillon
27960233e58SSascha Wildner bp->bio_driver_info = NULL;
280b106cb48SMatthew Dillon
281b106cb48SMatthew Dillon for (disk = 0; disk < rdp->total_disks; disk++) {
282b106cb48SMatthew Dillon if ((dev = rdp->disks[disk].dev) != NULL)
283b106cb48SMatthew Dillon bp->bio_driver_info = (void *)((intptr_t)bp->bio_driver_info + 1);
284b106cb48SMatthew Dillon }
285b106cb48SMatthew Dillon for (disk = 0; disk < rdp->total_disks; disk++) {
286b106cb48SMatthew Dillon if ((dev = rdp->disks[disk].dev) == NULL)
287b106cb48SMatthew Dillon continue;
288b106cb48SMatthew Dillon if (!(request = ata_raid_init_request(rdp, bp)))
289b106cb48SMatthew Dillon return ENOMEM;
290b106cb48SMatthew Dillon request->dev = dev;
291b106cb48SMatthew Dillon request->u.ata.command = ATA_FLUSHCACHE;
292b106cb48SMatthew Dillon request->u.ata.lba = 0;
293b106cb48SMatthew Dillon request->u.ata.count = 0;
294b106cb48SMatthew Dillon request->u.ata.feature = 0;
295bb15467aSzrj request->timeout = 1; /* ATA_DEFAULT_TIMEOUT */
296b106cb48SMatthew Dillon request->retries = 0;
297b106cb48SMatthew Dillon request->flags |= ATA_R_ORDERED | ATA_R_DIRECT;
298b106cb48SMatthew Dillon ata_queue_request(request);
299b106cb48SMatthew Dillon }
300b106cb48SMatthew Dillon return 0;
301b106cb48SMatthew Dillon }
302b106cb48SMatthew Dillon
303c1b3d7c5SThomas E. Spanjaard /*
304c1b3d7c5SThomas E. Spanjaard * XXX TGEN there are a lot of offset -> block number conversions going on
305c1b3d7c5SThomas E. Spanjaard * here, which is suboptimal.
306c1b3d7c5SThomas E. Spanjaard */
307c1b3d7c5SThomas E. Spanjaard static int
ata_raid_strategy(struct dev_strategy_args * ap)308c1b3d7c5SThomas E. Spanjaard ata_raid_strategy(struct dev_strategy_args *ap)
309c1b3d7c5SThomas E. Spanjaard {
3105e8604ceSThomas E. Spanjaard struct ar_softc *rdp = ap->a_head.a_dev->si_drv1;
311c1b3d7c5SThomas E. Spanjaard struct bio *bp = ap->a_bio;
312c1b3d7c5SThomas E. Spanjaard struct buf *bbp = bp->bio_buf;
313c1b3d7c5SThomas E. Spanjaard struct ata_request *request;
314c1b3d7c5SThomas E. Spanjaard caddr_t data;
315c1b3d7c5SThomas E. Spanjaard u_int64_t blkno, lba, blk = 0;
316c1b3d7c5SThomas E. Spanjaard int count, chunk, drv, par = 0, change = 0;
317c1b3d7c5SThomas E. Spanjaard
318b106cb48SMatthew Dillon if (bbp->b_cmd == BUF_CMD_FLUSH) {
319b106cb48SMatthew Dillon int error;
320b106cb48SMatthew Dillon
321b106cb48SMatthew Dillon error = ata_raid_flush(rdp, bp);
322bb15467aSzrj if (error != 0)
323bb15467aSzrj biofinish(bp, NULL, error);
324b106cb48SMatthew Dillon return(0);
325b106cb48SMatthew Dillon }
326b106cb48SMatthew Dillon
327c1b3d7c5SThomas E. Spanjaard if (!(rdp->status & AR_S_READY) ||
328c1b3d7c5SThomas E. Spanjaard (bbp->b_cmd != BUF_CMD_READ && bbp->b_cmd != BUF_CMD_WRITE)) {
329bb15467aSzrj biofinish(bp, NULL, EIO);
3305e8604ceSThomas E. Spanjaard return(0);
331c1b3d7c5SThomas E. Spanjaard }
332c1b3d7c5SThomas E. Spanjaard
333c1b3d7c5SThomas E. Spanjaard bbp->b_resid = bbp->b_bcount;
334c1b3d7c5SThomas E. Spanjaard for (count = howmany(bbp->b_bcount, DEV_BSIZE),
335c1b3d7c5SThomas E. Spanjaard /* bio_offset is byte granularity, convert */
336c1b3d7c5SThomas E. Spanjaard blkno = (u_int64_t)(bp->bio_offset >> DEV_BSHIFT),
337c1b3d7c5SThomas E. Spanjaard data = bbp->b_data;
338c1b3d7c5SThomas E. Spanjaard count > 0;
339c1b3d7c5SThomas E. Spanjaard count -= chunk, blkno += chunk, data += (chunk * DEV_BSIZE)) {
340c1b3d7c5SThomas E. Spanjaard
341c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
342c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
343c1b3d7c5SThomas E. Spanjaard drv = 0;
344c1b3d7c5SThomas E. Spanjaard lba = blkno;
345c1b3d7c5SThomas E. Spanjaard chunk = count;
346c1b3d7c5SThomas E. Spanjaard break;
347c1b3d7c5SThomas E. Spanjaard
348c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD:
349c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN:
350c1b3d7c5SThomas E. Spanjaard drv = 0;
351c1b3d7c5SThomas E. Spanjaard lba = blkno;
352c1b3d7c5SThomas E. Spanjaard while (lba >= rdp->disks[drv].sectors)
353c1b3d7c5SThomas E. Spanjaard lba -= rdp->disks[drv++].sectors;
354c1b3d7c5SThomas E. Spanjaard chunk = min(rdp->disks[drv].sectors - lba, count);
355c1b3d7c5SThomas E. Spanjaard break;
356c1b3d7c5SThomas E. Spanjaard
357c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
358c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
359c1b3d7c5SThomas E. Spanjaard chunk = blkno % rdp->interleave;
360c1b3d7c5SThomas E. Spanjaard drv = (blkno / rdp->interleave) % rdp->width;
361c1b3d7c5SThomas E. Spanjaard lba = (((blkno/rdp->interleave)/rdp->width)*rdp->interleave)+chunk;
362c1b3d7c5SThomas E. Spanjaard chunk = min(count, rdp->interleave - chunk);
363c1b3d7c5SThomas E. Spanjaard break;
364c1b3d7c5SThomas E. Spanjaard
365c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
366c1b3d7c5SThomas E. Spanjaard drv = (blkno / rdp->interleave) % (rdp->width - 1);
367c1b3d7c5SThomas E. Spanjaard par = rdp->width - 1 -
368c1b3d7c5SThomas E. Spanjaard (blkno / (rdp->interleave * (rdp->width - 1))) % rdp->width;
369c1b3d7c5SThomas E. Spanjaard if (drv >= par)
370c1b3d7c5SThomas E. Spanjaard drv++;
371c1b3d7c5SThomas E. Spanjaard lba = ((blkno/rdp->interleave)/(rdp->width-1))*(rdp->interleave) +
372c1b3d7c5SThomas E. Spanjaard ((blkno%(rdp->interleave*(rdp->width-1)))%rdp->interleave);
373c1b3d7c5SThomas E. Spanjaard chunk = min(count, rdp->interleave - (lba % rdp->interleave));
374c1b3d7c5SThomas E. Spanjaard break;
375c1b3d7c5SThomas E. Spanjaard
376c1b3d7c5SThomas E. Spanjaard default:
377e3869ec7SSascha Wildner kprintf("ar%d: unknown array type in ata_raid_strategy\n", rdp->lun);
378bb15467aSzrj biofinish(bp, NULL, EIO);
3795e8604ceSThomas E. Spanjaard return(0);
380c1b3d7c5SThomas E. Spanjaard }
381c1b3d7c5SThomas E. Spanjaard
382c1b3d7c5SThomas E. Spanjaard /* offset on all but "first on HPTv2" */
383c1b3d7c5SThomas E. Spanjaard if (!(drv == 0 && rdp->format == AR_F_HPTV2_RAID))
384c1b3d7c5SThomas E. Spanjaard lba += rdp->offset_sectors;
385c1b3d7c5SThomas E. Spanjaard
386c1b3d7c5SThomas E. Spanjaard if (!(request = ata_raid_init_request(rdp, bp))) {
387bb15467aSzrj biofinish(bp, NULL, EIO);
3885e8604ceSThomas E. Spanjaard return(0);
389c1b3d7c5SThomas E. Spanjaard }
390c1b3d7c5SThomas E. Spanjaard request->data = data;
391c1b3d7c5SThomas E. Spanjaard request->bytecount = chunk * DEV_BSIZE;
392c1b3d7c5SThomas E. Spanjaard request->u.ata.lba = lba;
393c1b3d7c5SThomas E. Spanjaard request->u.ata.count = request->bytecount / DEV_BSIZE;
394c1b3d7c5SThomas E. Spanjaard
39589be26e1SSascha Wildner devstat_start_transaction(&rdp->devstat);
396c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
397c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD:
398c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN:
399c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
400c1b3d7c5SThomas E. Spanjaard if (((rdp->disks[drv].flags & (AR_DF_PRESENT|AR_DF_ONLINE)) ==
401c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT|AR_DF_ONLINE) && !rdp->disks[drv].dev)) {
402c1b3d7c5SThomas E. Spanjaard rdp->disks[drv].flags &= ~AR_DF_ONLINE;
403c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
404c1b3d7c5SThomas E. Spanjaard ata_free_request(request);
405bb15467aSzrj biofinish(bp, NULL, EIO);
4065e8604ceSThomas E. Spanjaard return(0);
407c1b3d7c5SThomas E. Spanjaard }
408c1b3d7c5SThomas E. Spanjaard request->this = drv;
409c1b3d7c5SThomas E. Spanjaard request->dev = rdp->disks[request->this].dev;
410c1b3d7c5SThomas E. Spanjaard ata_raid_send_request(request);
411c1b3d7c5SThomas E. Spanjaard break;
412c1b3d7c5SThomas E. Spanjaard
413c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
414c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
415c1b3d7c5SThomas E. Spanjaard if ((rdp->disks[drv].flags &
416c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT|AR_DF_ONLINE))==(AR_DF_PRESENT|AR_DF_ONLINE) &&
417c1b3d7c5SThomas E. Spanjaard !rdp->disks[drv].dev) {
418c1b3d7c5SThomas E. Spanjaard rdp->disks[drv].flags &= ~AR_DF_ONLINE;
419c1b3d7c5SThomas E. Spanjaard change = 1;
420c1b3d7c5SThomas E. Spanjaard }
421c1b3d7c5SThomas E. Spanjaard if ((rdp->disks[drv + rdp->width].flags &
422c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT|AR_DF_ONLINE))==(AR_DF_PRESENT|AR_DF_ONLINE) &&
423c1b3d7c5SThomas E. Spanjaard !rdp->disks[drv + rdp->width].dev) {
424c1b3d7c5SThomas E. Spanjaard rdp->disks[drv + rdp->width].flags &= ~AR_DF_ONLINE;
425c1b3d7c5SThomas E. Spanjaard change = 1;
426c1b3d7c5SThomas E. Spanjaard }
427c1b3d7c5SThomas E. Spanjaard if (change)
428c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
429c1b3d7c5SThomas E. Spanjaard if (!(rdp->status & AR_S_READY)) {
430c1b3d7c5SThomas E. Spanjaard ata_free_request(request);
431bb15467aSzrj biofinish(bp, NULL, EIO);
4325e8604ceSThomas E. Spanjaard return(0);
433c1b3d7c5SThomas E. Spanjaard }
434c1b3d7c5SThomas E. Spanjaard
435c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_REBUILDING)
436c1b3d7c5SThomas E. Spanjaard blk = ((lba / rdp->interleave) * rdp->width) * rdp->interleave +
437c1b3d7c5SThomas E. Spanjaard (rdp->interleave * (drv % rdp->width)) +
4383598cc14SSascha Wildner lba % rdp->interleave;
439c1b3d7c5SThomas E. Spanjaard
440c1b3d7c5SThomas E. Spanjaard if (bbp->b_cmd == BUF_CMD_READ) {
441c1b3d7c5SThomas E. Spanjaard int src_online =
442c1b3d7c5SThomas E. Spanjaard (rdp->disks[drv].flags & AR_DF_ONLINE);
443c1b3d7c5SThomas E. Spanjaard int mir_online =
444c1b3d7c5SThomas E. Spanjaard (rdp->disks[drv+rdp->width].flags & AR_DF_ONLINE);
445c1b3d7c5SThomas E. Spanjaard
446c1b3d7c5SThomas E. Spanjaard /* if mirror gone or close to last access on source */
447c1b3d7c5SThomas E. Spanjaard if (!mir_online ||
448c1b3d7c5SThomas E. Spanjaard ((src_online) &&
449c1b3d7c5SThomas E. Spanjaard ((u_int64_t)(bp->bio_offset >> DEV_BSHIFT)) >=
450c1b3d7c5SThomas E. Spanjaard (rdp->disks[drv].last_lba - AR_PROXIMITY) &&
451c1b3d7c5SThomas E. Spanjaard ((u_int64_t)(bp->bio_offset >> DEV_BSHIFT)) <=
452c1b3d7c5SThomas E. Spanjaard (rdp->disks[drv].last_lba + AR_PROXIMITY))) {
453c1b3d7c5SThomas E. Spanjaard rdp->toggle = 0;
454c1b3d7c5SThomas E. Spanjaard }
455c1b3d7c5SThomas E. Spanjaard /* if source gone or close to last access on mirror */
456c1b3d7c5SThomas E. Spanjaard else if (!src_online ||
457c1b3d7c5SThomas E. Spanjaard ((mir_online) &&
458c1b3d7c5SThomas E. Spanjaard ((u_int64_t)(bp->bio_offset >> DEV_BSHIFT)) >=
459c1b3d7c5SThomas E. Spanjaard (rdp->disks[drv+rdp->width].last_lba-AR_PROXIMITY) &&
460c1b3d7c5SThomas E. Spanjaard ((u_int64_t)(bp->bio_offset >> DEV_BSHIFT)) <=
461c1b3d7c5SThomas E. Spanjaard (rdp->disks[drv+rdp->width].last_lba+AR_PROXIMITY))) {
462c1b3d7c5SThomas E. Spanjaard drv += rdp->width;
463c1b3d7c5SThomas E. Spanjaard rdp->toggle = 1;
464c1b3d7c5SThomas E. Spanjaard }
465c1b3d7c5SThomas E. Spanjaard /* not close to any previous access, toggle */
466c1b3d7c5SThomas E. Spanjaard else {
467c1b3d7c5SThomas E. Spanjaard if (rdp->toggle)
468c1b3d7c5SThomas E. Spanjaard rdp->toggle = 0;
469c1b3d7c5SThomas E. Spanjaard else {
470c1b3d7c5SThomas E. Spanjaard drv += rdp->width;
471c1b3d7c5SThomas E. Spanjaard rdp->toggle = 1;
472c1b3d7c5SThomas E. Spanjaard }
473c1b3d7c5SThomas E. Spanjaard }
474c1b3d7c5SThomas E. Spanjaard
475c1b3d7c5SThomas E. Spanjaard if ((rdp->status & AR_S_REBUILDING) &&
476c1b3d7c5SThomas E. Spanjaard (blk <= rdp->rebuild_lba) &&
477c1b3d7c5SThomas E. Spanjaard ((blk + chunk) > rdp->rebuild_lba)) {
478c1b3d7c5SThomas E. Spanjaard struct ata_composite *composite;
479c1b3d7c5SThomas E. Spanjaard struct ata_request *rebuild;
480c1b3d7c5SThomas E. Spanjaard int this;
481c1b3d7c5SThomas E. Spanjaard
482c1b3d7c5SThomas E. Spanjaard /* figure out what part to rebuild */
483c1b3d7c5SThomas E. Spanjaard if (drv < rdp->width)
484c1b3d7c5SThomas E. Spanjaard this = drv + rdp->width;
485c1b3d7c5SThomas E. Spanjaard else
486c1b3d7c5SThomas E. Spanjaard this = drv - rdp->width;
487c1b3d7c5SThomas E. Spanjaard
488c1b3d7c5SThomas E. Spanjaard /* do we have a spare to rebuild on ? */
489c1b3d7c5SThomas E. Spanjaard if (rdp->disks[this].flags & AR_DF_SPARE) {
490c1b3d7c5SThomas E. Spanjaard if ((composite = ata_alloc_composite())) {
491c1b3d7c5SThomas E. Spanjaard if ((rebuild = ata_alloc_request())) {
492c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba = blk + chunk;
493c1b3d7c5SThomas E. Spanjaard bcopy(request, rebuild,
494c1b3d7c5SThomas E. Spanjaard sizeof(struct ata_request));
495c1b3d7c5SThomas E. Spanjaard rebuild->this = this;
496c1b3d7c5SThomas E. Spanjaard rebuild->dev = rdp->disks[this].dev;
497c1b3d7c5SThomas E. Spanjaard rebuild->flags &= ~ATA_R_READ;
498c1b3d7c5SThomas E. Spanjaard rebuild->flags |= ATA_R_WRITE;
49915bd3c73SMatthew Dillon lockinit(&composite->lock, "ardfspare", 0, 0);
500c1b3d7c5SThomas E. Spanjaard composite->residual = request->bytecount;
501c1b3d7c5SThomas E. Spanjaard composite->rd_needed |= (1 << drv);
502c1b3d7c5SThomas E. Spanjaard composite->wr_depend |= (1 << drv);
503c1b3d7c5SThomas E. Spanjaard composite->wr_needed |= (1 << this);
504c1b3d7c5SThomas E. Spanjaard composite->request[drv] = request;
505c1b3d7c5SThomas E. Spanjaard composite->request[this] = rebuild;
506c1b3d7c5SThomas E. Spanjaard request->composite = composite;
507c1b3d7c5SThomas E. Spanjaard rebuild->composite = composite;
508c1b3d7c5SThomas E. Spanjaard ata_raid_send_request(rebuild);
509c1b3d7c5SThomas E. Spanjaard }
510c1b3d7c5SThomas E. Spanjaard else {
511c1b3d7c5SThomas E. Spanjaard ata_free_composite(composite);
512e3869ec7SSascha Wildner kprintf("DOH! ata_alloc_request failed!\n");
513c1b3d7c5SThomas E. Spanjaard }
514c1b3d7c5SThomas E. Spanjaard }
515c1b3d7c5SThomas E. Spanjaard else {
516e3869ec7SSascha Wildner kprintf("DOH! ata_alloc_composite failed!\n");
517c1b3d7c5SThomas E. Spanjaard }
518c1b3d7c5SThomas E. Spanjaard }
519c1b3d7c5SThomas E. Spanjaard else if (rdp->disks[this].flags & AR_DF_ONLINE) {
520c1b3d7c5SThomas E. Spanjaard /*
521c1b3d7c5SThomas E. Spanjaard * if we got here we are a chunk of a RAID01 that
522c1b3d7c5SThomas E. Spanjaard * does not need a rebuild, but we need to increment
523c1b3d7c5SThomas E. Spanjaard * the rebuild_lba address to get the rebuild to
524c1b3d7c5SThomas E. Spanjaard * move to the next chunk correctly
525c1b3d7c5SThomas E. Spanjaard */
526c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba = blk + chunk;
527c1b3d7c5SThomas E. Spanjaard }
528c1b3d7c5SThomas E. Spanjaard else
529e3869ec7SSascha Wildner kprintf("DOH! we didn't find the rebuild part\n");
530c1b3d7c5SThomas E. Spanjaard }
531c1b3d7c5SThomas E. Spanjaard }
532c1b3d7c5SThomas E. Spanjaard if (bbp->b_cmd == BUF_CMD_WRITE) {
533c1b3d7c5SThomas E. Spanjaard if ((rdp->disks[drv+rdp->width].flags & AR_DF_ONLINE) ||
534c1b3d7c5SThomas E. Spanjaard ((rdp->status & AR_S_REBUILDING) &&
535c1b3d7c5SThomas E. Spanjaard (rdp->disks[drv+rdp->width].flags & AR_DF_SPARE) &&
536c1b3d7c5SThomas E. Spanjaard ((blk < rdp->rebuild_lba) ||
537c1b3d7c5SThomas E. Spanjaard ((blk <= rdp->rebuild_lba) &&
538c1b3d7c5SThomas E. Spanjaard ((blk + chunk) > rdp->rebuild_lba))))) {
539c1b3d7c5SThomas E. Spanjaard if ((rdp->disks[drv].flags & AR_DF_ONLINE) ||
540c1b3d7c5SThomas E. Spanjaard ((rdp->status & AR_S_REBUILDING) &&
541c1b3d7c5SThomas E. Spanjaard (rdp->disks[drv].flags & AR_DF_SPARE) &&
542c1b3d7c5SThomas E. Spanjaard ((blk < rdp->rebuild_lba) ||
543c1b3d7c5SThomas E. Spanjaard ((blk <= rdp->rebuild_lba) &&
544c1b3d7c5SThomas E. Spanjaard ((blk + chunk) > rdp->rebuild_lba))))) {
545c1b3d7c5SThomas E. Spanjaard struct ata_request *mirror;
546c1b3d7c5SThomas E. Spanjaard struct ata_composite *composite;
547c1b3d7c5SThomas E. Spanjaard int this = drv + rdp->width;
548c1b3d7c5SThomas E. Spanjaard
549c1b3d7c5SThomas E. Spanjaard if ((composite = ata_alloc_composite())) {
550c1b3d7c5SThomas E. Spanjaard if ((mirror = ata_alloc_request())) {
551c1b3d7c5SThomas E. Spanjaard if ((blk <= rdp->rebuild_lba) &&
552c1b3d7c5SThomas E. Spanjaard ((blk + chunk) > rdp->rebuild_lba))
553c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba = blk + chunk;
554c1b3d7c5SThomas E. Spanjaard bcopy(request, mirror,
555c1b3d7c5SThomas E. Spanjaard sizeof(struct ata_request));
556c1b3d7c5SThomas E. Spanjaard mirror->this = this;
557c1b3d7c5SThomas E. Spanjaard mirror->dev = rdp->disks[this].dev;
55815bd3c73SMatthew Dillon lockinit(&composite->lock, "ardfonline", 0, 0);
559c1b3d7c5SThomas E. Spanjaard composite->residual = request->bytecount;
560c1b3d7c5SThomas E. Spanjaard composite->wr_needed |= (1 << drv);
561c1b3d7c5SThomas E. Spanjaard composite->wr_needed |= (1 << this);
562c1b3d7c5SThomas E. Spanjaard composite->request[drv] = request;
563c1b3d7c5SThomas E. Spanjaard composite->request[this] = mirror;
564c1b3d7c5SThomas E. Spanjaard request->composite = composite;
565c1b3d7c5SThomas E. Spanjaard mirror->composite = composite;
566c1b3d7c5SThomas E. Spanjaard ata_raid_send_request(mirror);
567c1b3d7c5SThomas E. Spanjaard rdp->disks[this].last_lba =
568c1b3d7c5SThomas E. Spanjaard (u_int64_t)(bp->bio_offset >> DEV_BSHIFT) +
569c1b3d7c5SThomas E. Spanjaard chunk;
570c1b3d7c5SThomas E. Spanjaard }
571c1b3d7c5SThomas E. Spanjaard else {
572c1b3d7c5SThomas E. Spanjaard ata_free_composite(composite);
573e3869ec7SSascha Wildner kprintf("DOH! ata_alloc_request failed!\n");
574c1b3d7c5SThomas E. Spanjaard }
575c1b3d7c5SThomas E. Spanjaard }
576c1b3d7c5SThomas E. Spanjaard else {
577e3869ec7SSascha Wildner kprintf("DOH! ata_alloc_composite failed!\n");
578c1b3d7c5SThomas E. Spanjaard }
579c1b3d7c5SThomas E. Spanjaard }
580c1b3d7c5SThomas E. Spanjaard else
581c1b3d7c5SThomas E. Spanjaard drv += rdp->width;
582c1b3d7c5SThomas E. Spanjaard }
583c1b3d7c5SThomas E. Spanjaard }
584c1b3d7c5SThomas E. Spanjaard request->this = drv;
585c1b3d7c5SThomas E. Spanjaard request->dev = rdp->disks[request->this].dev;
586c1b3d7c5SThomas E. Spanjaard ata_raid_send_request(request);
587d438c7c2SThomas E. Spanjaard rdp->disks[request->this].last_lba =
5881a215404SYONETANI Tomokazu ((u_int64_t)(bp->bio_offset) >> DEV_BSHIFT) + chunk;
589c1b3d7c5SThomas E. Spanjaard break;
590c1b3d7c5SThomas E. Spanjaard
591c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
592c1b3d7c5SThomas E. Spanjaard if (((rdp->disks[drv].flags & (AR_DF_PRESENT|AR_DF_ONLINE)) ==
593c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT|AR_DF_ONLINE) && !rdp->disks[drv].dev)) {
594c1b3d7c5SThomas E. Spanjaard rdp->disks[drv].flags &= ~AR_DF_ONLINE;
595c1b3d7c5SThomas E. Spanjaard change = 1;
596c1b3d7c5SThomas E. Spanjaard }
597c1b3d7c5SThomas E. Spanjaard if (((rdp->disks[par].flags & (AR_DF_PRESENT|AR_DF_ONLINE)) ==
598c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT|AR_DF_ONLINE) && !rdp->disks[par].dev)) {
599c1b3d7c5SThomas E. Spanjaard rdp->disks[par].flags &= ~AR_DF_ONLINE;
600c1b3d7c5SThomas E. Spanjaard change = 1;
601c1b3d7c5SThomas E. Spanjaard }
602c1b3d7c5SThomas E. Spanjaard if (change)
603c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
604c1b3d7c5SThomas E. Spanjaard if (!(rdp->status & AR_S_READY)) {
605c1b3d7c5SThomas E. Spanjaard ata_free_request(request);
606bb15467aSzrj biofinish(bp, NULL, EIO);
6075e8604ceSThomas E. Spanjaard return(0);
608c1b3d7c5SThomas E. Spanjaard }
609c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_DEGRADED) {
610c1b3d7c5SThomas E. Spanjaard /* do the XOR game if possible */
611c1b3d7c5SThomas E. Spanjaard }
612c1b3d7c5SThomas E. Spanjaard else {
613c1b3d7c5SThomas E. Spanjaard request->this = drv;
614c1b3d7c5SThomas E. Spanjaard request->dev = rdp->disks[request->this].dev;
615c1b3d7c5SThomas E. Spanjaard if (bbp->b_cmd == BUF_CMD_READ) {
616c1b3d7c5SThomas E. Spanjaard ata_raid_send_request(request);
617c1b3d7c5SThomas E. Spanjaard }
618c1b3d7c5SThomas E. Spanjaard if (bbp->b_cmd == BUF_CMD_WRITE) {
619c1b3d7c5SThomas E. Spanjaard ata_raid_send_request(request);
620d438c7c2SThomas E. Spanjaard /*
621bb15467aSzrj * ensure that read-modify-write to each disk is atomic.
622bb15467aSzrj * couple of copies of request
623bb15467aSzrj * read old data data from drv
624bb15467aSzrj * write new data to drv
625bb15467aSzrj * read smth-smth data from pairs
626bb15467aSzrj * write old data xor smth-smth data xor data to pairs
627d438c7c2SThomas E. Spanjaard */
628c1b3d7c5SThomas E. Spanjaard }
629c1b3d7c5SThomas E. Spanjaard }
630c1b3d7c5SThomas E. Spanjaard break;
631c1b3d7c5SThomas E. Spanjaard
632c1b3d7c5SThomas E. Spanjaard default:
633e3869ec7SSascha Wildner kprintf("ar%d: unknown array type in ata_raid_strategy\n", rdp->lun);
634c1b3d7c5SThomas E. Spanjaard }
635c1b3d7c5SThomas E. Spanjaard }
6365e8604ceSThomas E. Spanjaard
6375e8604ceSThomas E. Spanjaard return(0);
638c1b3d7c5SThomas E. Spanjaard }
639c1b3d7c5SThomas E. Spanjaard
640c1b3d7c5SThomas E. Spanjaard static void
ata_raid_done(struct ata_request * request)641c1b3d7c5SThomas E. Spanjaard ata_raid_done(struct ata_request *request)
642c1b3d7c5SThomas E. Spanjaard {
643c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp = request->driver;
644c1b3d7c5SThomas E. Spanjaard struct ata_composite *composite = NULL;
645c1b3d7c5SThomas E. Spanjaard struct bio *bp = request->bio;
646c1b3d7c5SThomas E. Spanjaard struct buf *bbp = bp->bio_buf;
647c1b3d7c5SThomas E. Spanjaard int i, mirror, finished = 0;
648c1b3d7c5SThomas E. Spanjaard
649b106cb48SMatthew Dillon if (bbp->b_cmd == BUF_CMD_FLUSH) {
650b106cb48SMatthew Dillon if (bbp->b_error == 0)
651b106cb48SMatthew Dillon bbp->b_error = request->result;
652b106cb48SMatthew Dillon ata_free_request(request);
653b106cb48SMatthew Dillon bp->bio_driver_info = (void *)((intptr_t)bp->bio_driver_info - 1);
654b106cb48SMatthew Dillon if ((intptr_t)bp->bio_driver_info == 0) {
655b106cb48SMatthew Dillon if (bbp->b_error)
656b106cb48SMatthew Dillon bbp->b_flags |= B_ERROR;
657b106cb48SMatthew Dillon biodone(bp);
658b106cb48SMatthew Dillon }
659b106cb48SMatthew Dillon return;
660b106cb48SMatthew Dillon }
661b106cb48SMatthew Dillon
662c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
663c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD:
664c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN:
665c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
666c1b3d7c5SThomas E. Spanjaard if (request->result) {
667c1b3d7c5SThomas E. Spanjaard rdp->disks[request->this].flags &= ~AR_DF_ONLINE;
668c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
669c1b3d7c5SThomas E. Spanjaard bbp->b_error = request->result;
670c1b3d7c5SThomas E. Spanjaard finished = 1;
671c1b3d7c5SThomas E. Spanjaard }
672c1b3d7c5SThomas E. Spanjaard else {
673c1b3d7c5SThomas E. Spanjaard bbp->b_resid -= request->donecount;
674c1b3d7c5SThomas E. Spanjaard if (!bbp->b_resid)
675c1b3d7c5SThomas E. Spanjaard finished = 1;
676c1b3d7c5SThomas E. Spanjaard }
677c1b3d7c5SThomas E. Spanjaard break;
678c1b3d7c5SThomas E. Spanjaard
679c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
680c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
681c1b3d7c5SThomas E. Spanjaard if (request->this < rdp->width)
682c1b3d7c5SThomas E. Spanjaard mirror = request->this + rdp->width;
683c1b3d7c5SThomas E. Spanjaard else
684c1b3d7c5SThomas E. Spanjaard mirror = request->this - rdp->width;
685c1b3d7c5SThomas E. Spanjaard if (request->result) {
686c1b3d7c5SThomas E. Spanjaard rdp->disks[request->this].flags &= ~AR_DF_ONLINE;
687c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
688c1b3d7c5SThomas E. Spanjaard }
689c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_READY) {
690c1b3d7c5SThomas E. Spanjaard u_int64_t blk = 0;
691c1b3d7c5SThomas E. Spanjaard
692c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_REBUILDING)
693c1b3d7c5SThomas E. Spanjaard blk = ((request->u.ata.lba / rdp->interleave) * rdp->width) *
694c1b3d7c5SThomas E. Spanjaard rdp->interleave + (rdp->interleave *
695c1b3d7c5SThomas E. Spanjaard (request->this % rdp->width)) +
696c1b3d7c5SThomas E. Spanjaard request->u.ata.lba % rdp->interleave;
697c1b3d7c5SThomas E. Spanjaard
698c1b3d7c5SThomas E. Spanjaard if (bbp->b_cmd == BUF_CMD_READ) {
699c1b3d7c5SThomas E. Spanjaard
700c1b3d7c5SThomas E. Spanjaard /* is this a rebuild composite */
701c1b3d7c5SThomas E. Spanjaard if ((composite = request->composite)) {
70215bd3c73SMatthew Dillon lockmgr(&composite->lock, LK_EXCLUSIVE);
703c1b3d7c5SThomas E. Spanjaard
704c1b3d7c5SThomas E. Spanjaard /* handle the read part of a rebuild composite */
705c1b3d7c5SThomas E. Spanjaard if (request->flags & ATA_R_READ) {
706c1b3d7c5SThomas E. Spanjaard
707c1b3d7c5SThomas E. Spanjaard /* if read failed array is now broken */
708c1b3d7c5SThomas E. Spanjaard if (request->result) {
709c1b3d7c5SThomas E. Spanjaard rdp->disks[request->this].flags &= ~AR_DF_ONLINE;
710c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
711c1b3d7c5SThomas E. Spanjaard bbp->b_error = request->result;
712c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba = blk;
713c1b3d7c5SThomas E. Spanjaard finished = 1;
714c1b3d7c5SThomas E. Spanjaard }
715c1b3d7c5SThomas E. Spanjaard
716c1b3d7c5SThomas E. Spanjaard /* good data, update how far we've gotten */
717c1b3d7c5SThomas E. Spanjaard else {
718c1b3d7c5SThomas E. Spanjaard bbp->b_resid -= request->donecount;
719c1b3d7c5SThomas E. Spanjaard composite->residual -= request->donecount;
720c1b3d7c5SThomas E. Spanjaard if (!composite->residual) {
721c1b3d7c5SThomas E. Spanjaard if (composite->wr_done & (1 << mirror))
722c1b3d7c5SThomas E. Spanjaard finished = 1;
723c1b3d7c5SThomas E. Spanjaard }
724c1b3d7c5SThomas E. Spanjaard }
725c1b3d7c5SThomas E. Spanjaard }
726c1b3d7c5SThomas E. Spanjaard
727c1b3d7c5SThomas E. Spanjaard /* handle the write part of a rebuild composite */
728c1b3d7c5SThomas E. Spanjaard else if (request->flags & ATA_R_WRITE) {
729c1b3d7c5SThomas E. Spanjaard if (composite->rd_done & (1 << mirror)) {
730c1b3d7c5SThomas E. Spanjaard if (request->result) {
731e3869ec7SSascha Wildner kprintf("DOH! rebuild failed\n"); /* XXX SOS */
732c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba = blk;
733c1b3d7c5SThomas E. Spanjaard }
734c1b3d7c5SThomas E. Spanjaard if (!composite->residual)
735c1b3d7c5SThomas E. Spanjaard finished = 1;
736c1b3d7c5SThomas E. Spanjaard }
737c1b3d7c5SThomas E. Spanjaard }
73815bd3c73SMatthew Dillon lockmgr(&composite->lock, LK_RELEASE);
739c1b3d7c5SThomas E. Spanjaard }
740c1b3d7c5SThomas E. Spanjaard
741c1b3d7c5SThomas E. Spanjaard /* if read failed retry on the mirror */
742c1b3d7c5SThomas E. Spanjaard else if (request->result) {
743c1b3d7c5SThomas E. Spanjaard request->dev = rdp->disks[mirror].dev;
744c1b3d7c5SThomas E. Spanjaard request->flags &= ~ATA_R_TIMEOUT;
745c1b3d7c5SThomas E. Spanjaard ata_raid_send_request(request);
746c1b3d7c5SThomas E. Spanjaard return;
747c1b3d7c5SThomas E. Spanjaard }
748c1b3d7c5SThomas E. Spanjaard
749c1b3d7c5SThomas E. Spanjaard /* we have good data */
750c1b3d7c5SThomas E. Spanjaard else {
751c1b3d7c5SThomas E. Spanjaard bbp->b_resid -= request->donecount;
752c1b3d7c5SThomas E. Spanjaard if (!bbp->b_resid)
753c1b3d7c5SThomas E. Spanjaard finished = 1;
754c1b3d7c5SThomas E. Spanjaard }
755c1b3d7c5SThomas E. Spanjaard }
756c1b3d7c5SThomas E. Spanjaard else if (bbp->b_cmd == BUF_CMD_WRITE) {
757c1b3d7c5SThomas E. Spanjaard /* do we have a mirror or rebuild to deal with ? */
758c1b3d7c5SThomas E. Spanjaard if ((composite = request->composite)) {
75915bd3c73SMatthew Dillon lockmgr(&composite->lock, LK_EXCLUSIVE);
760c1b3d7c5SThomas E. Spanjaard if (composite->wr_done & (1 << mirror)) {
761c1b3d7c5SThomas E. Spanjaard if (request->result) {
762c1b3d7c5SThomas E. Spanjaard if (composite->request[mirror]->result) {
763e3869ec7SSascha Wildner kprintf("DOH! all disks failed and got here\n");
764c1b3d7c5SThomas E. Spanjaard bbp->b_error = EIO;
765c1b3d7c5SThomas E. Spanjaard }
766c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_REBUILDING) {
767c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba = blk;
768e3869ec7SSascha Wildner kprintf("DOH! rebuild failed\n"); /* XXX SOS */
769c1b3d7c5SThomas E. Spanjaard }
770c1b3d7c5SThomas E. Spanjaard bbp->b_resid -=
771c1b3d7c5SThomas E. Spanjaard composite->request[mirror]->donecount;
772c1b3d7c5SThomas E. Spanjaard composite->residual -=
773c1b3d7c5SThomas E. Spanjaard composite->request[mirror]->donecount;
774c1b3d7c5SThomas E. Spanjaard }
775c1b3d7c5SThomas E. Spanjaard else {
776c1b3d7c5SThomas E. Spanjaard bbp->b_resid -= request->donecount;
777c1b3d7c5SThomas E. Spanjaard composite->residual -= request->donecount;
778c1b3d7c5SThomas E. Spanjaard }
779c1b3d7c5SThomas E. Spanjaard if (!composite->residual)
780c1b3d7c5SThomas E. Spanjaard finished = 1;
781c1b3d7c5SThomas E. Spanjaard }
78215bd3c73SMatthew Dillon lockmgr(&composite->lock, LK_RELEASE);
783c1b3d7c5SThomas E. Spanjaard }
784c1b3d7c5SThomas E. Spanjaard /* no mirror we are done */
785c1b3d7c5SThomas E. Spanjaard else {
786c1b3d7c5SThomas E. Spanjaard bbp->b_resid -= request->donecount;
787c1b3d7c5SThomas E. Spanjaard if (!bbp->b_resid)
788c1b3d7c5SThomas E. Spanjaard finished = 1;
789c1b3d7c5SThomas E. Spanjaard }
790c1b3d7c5SThomas E. Spanjaard }
791c1b3d7c5SThomas E. Spanjaard }
792c1b3d7c5SThomas E. Spanjaard else {
793c1b3d7c5SThomas E. Spanjaard /* XXX TGEN bbp->b_flags |= B_ERROR; */
794c1b3d7c5SThomas E. Spanjaard bbp->b_error = request->result;
795c1b3d7c5SThomas E. Spanjaard biodone(bp);
796c1b3d7c5SThomas E. Spanjaard }
797c1b3d7c5SThomas E. Spanjaard break;
798c1b3d7c5SThomas E. Spanjaard
799c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
800c1b3d7c5SThomas E. Spanjaard if (request->result) {
801c1b3d7c5SThomas E. Spanjaard rdp->disks[request->this].flags &= ~AR_DF_ONLINE;
802c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
803c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_READY) {
804c1b3d7c5SThomas E. Spanjaard if (bbp->b_cmd == BUF_CMD_READ) {
805c1b3d7c5SThomas E. Spanjaard /* do the XOR game to recover data */
806c1b3d7c5SThomas E. Spanjaard }
807c1b3d7c5SThomas E. Spanjaard if (bbp->b_cmd == BUF_CMD_WRITE) {
808c1b3d7c5SThomas E. Spanjaard /* if the parity failed we're OK sortof */
809c1b3d7c5SThomas E. Spanjaard /* otherwise wee need to do the XOR long dance */
810c1b3d7c5SThomas E. Spanjaard }
811c1b3d7c5SThomas E. Spanjaard finished = 1;
812c1b3d7c5SThomas E. Spanjaard }
813c1b3d7c5SThomas E. Spanjaard else {
814c1b3d7c5SThomas E. Spanjaard /* XXX TGEN bbp->b_flags |= B_ERROR; */
815c1b3d7c5SThomas E. Spanjaard bbp->b_error = request->result;
816c1b3d7c5SThomas E. Spanjaard biodone(bp);
817c1b3d7c5SThomas E. Spanjaard }
818c1b3d7c5SThomas E. Spanjaard }
819c1b3d7c5SThomas E. Spanjaard else {
820d438c7c2SThomas E. Spanjaard /* did we have an XOR game going ?? */
821c1b3d7c5SThomas E. Spanjaard bbp->b_resid -= request->donecount;
822c1b3d7c5SThomas E. Spanjaard if (!bbp->b_resid)
823c1b3d7c5SThomas E. Spanjaard finished = 1;
824c1b3d7c5SThomas E. Spanjaard }
825c1b3d7c5SThomas E. Spanjaard break;
826c1b3d7c5SThomas E. Spanjaard
827c1b3d7c5SThomas E. Spanjaard default:
828e3869ec7SSascha Wildner kprintf("ar%d: unknown array type in ata_raid_done\n", rdp->lun);
829c1b3d7c5SThomas E. Spanjaard }
830c1b3d7c5SThomas E. Spanjaard
831c1b3d7c5SThomas E. Spanjaard if (finished) {
832c1b3d7c5SThomas E. Spanjaard if ((rdp->status & AR_S_REBUILDING) &&
833c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba >= rdp->total_sectors) {
834c1b3d7c5SThomas E. Spanjaard int disk;
835c1b3d7c5SThomas E. Spanjaard
836c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
837c1b3d7c5SThomas E. Spanjaard if ((rdp->disks[disk].flags &
838c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_SPARE)) ==
839c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_SPARE)) {
840c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].flags &= ~AR_DF_SPARE;
841c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].flags |= AR_DF_ONLINE;
842c1b3d7c5SThomas E. Spanjaard }
843c1b3d7c5SThomas E. Spanjaard }
844c1b3d7c5SThomas E. Spanjaard rdp->status &= ~AR_S_REBUILDING;
845c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
846c1b3d7c5SThomas E. Spanjaard }
84734c2e953SSascha Wildner devstat_end_transaction_buf(&rdp->devstat, bbp);
848c1b3d7c5SThomas E. Spanjaard if (!bbp->b_resid)
849c1b3d7c5SThomas E. Spanjaard biodone(bp);
850c1b3d7c5SThomas E. Spanjaard }
851c1b3d7c5SThomas E. Spanjaard
852c1b3d7c5SThomas E. Spanjaard if (composite) {
853c1b3d7c5SThomas E. Spanjaard if (finished) {
854c1b3d7c5SThomas E. Spanjaard /* we are done with this composite, free all resources */
855c1b3d7c5SThomas E. Spanjaard for (i = 0; i < 32; i++) {
856c1b3d7c5SThomas E. Spanjaard if (composite->rd_needed & (1 << i) ||
857c1b3d7c5SThomas E. Spanjaard composite->wr_needed & (1 << i)) {
858c1b3d7c5SThomas E. Spanjaard ata_free_request(composite->request[i]);
859c1b3d7c5SThomas E. Spanjaard }
860c1b3d7c5SThomas E. Spanjaard }
86115bd3c73SMatthew Dillon lockuninit(&composite->lock);
862c1b3d7c5SThomas E. Spanjaard ata_free_composite(composite);
863c1b3d7c5SThomas E. Spanjaard }
864c1b3d7c5SThomas E. Spanjaard }
865c1b3d7c5SThomas E. Spanjaard else
866c1b3d7c5SThomas E. Spanjaard ata_free_request(request);
867c1b3d7c5SThomas E. Spanjaard }
868c1b3d7c5SThomas E. Spanjaard
869c1b3d7c5SThomas E. Spanjaard static int
ata_raid_dump(struct dev_dump_args * ap)870c1b3d7c5SThomas E. Spanjaard ata_raid_dump(struct dev_dump_args *ap)
871c1b3d7c5SThomas E. Spanjaard {
872c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp = ap->a_head.a_dev->si_drv1;
8735e8604ceSThomas E. Spanjaard struct buf dbuf;
874c1b3d7c5SThomas E. Spanjaard int error = 0;
875b24cd69cSAlex Hornung int disk;
876c1b3d7c5SThomas E. Spanjaard
877b24cd69cSAlex Hornung if (ap->a_length == 0) {
878b24cd69cSAlex Hornung /* flush subdisk buffers to media */
879b24cd69cSAlex Hornung for (disk = 0, error = 0; disk < rdp->total_disks; disk++) {
880b24cd69cSAlex Hornung if (rdp->disks[disk].dev) {
881b24cd69cSAlex Hornung error |= ata_controlcmd(rdp->disks[disk].dev,
882b24cd69cSAlex Hornung ATA_FLUSHCACHE, 0, 0, 0);
883b24cd69cSAlex Hornung }
884b24cd69cSAlex Hornung }
885b24cd69cSAlex Hornung return (error ? EIO : 0);
886c1b3d7c5SThomas E. Spanjaard }
887c1b3d7c5SThomas E. Spanjaard
8885e8604ceSThomas E. Spanjaard bzero(&dbuf, sizeof(struct buf));
8895e8604ceSThomas E. Spanjaard initbufbio(&dbuf);
890b5d7061dSMatthew Dillon BUF_LOCK(&dbuf, LK_EXCLUSIVE);
891c1b3d7c5SThomas E. Spanjaard /* bio_offset is byte granularity, convert block granularity a_blkno */
892b24cd69cSAlex Hornung dbuf.b_bio1.bio_offset = ap->a_offset;
8935e8604ceSThomas E. Spanjaard dbuf.b_bio1.bio_caller_info1.ptr = (void *)rdp;
894ae8e83e6SMatthew Dillon dbuf.b_bio1.bio_flags |= BIO_SYNC;
895ae8e83e6SMatthew Dillon dbuf.b_bio1.bio_done = biodone_sync;
896b24cd69cSAlex Hornung dbuf.b_bcount = ap->a_length;
897b24cd69cSAlex Hornung dbuf.b_data = ap->a_virtual;
8985e8604ceSThomas E. Spanjaard dbuf.b_cmd = BUF_CMD_WRITE;
8995e8604ceSThomas E. Spanjaard dev_dstrategy(rdp->cdev, &dbuf.b_bio1);
9005e8604ceSThomas E. Spanjaard /* wait for completion, unlock the buffer, check status */
901ae8e83e6SMatthew Dillon if (biowait(&dbuf.b_bio1, "dumpw")) {
9025e8604ceSThomas E. Spanjaard BUF_UNLOCK(&dbuf);
9035e8604ceSThomas E. Spanjaard return(dbuf.b_error ? dbuf.b_error : EIO);
9045e8604ceSThomas E. Spanjaard }
9055e8604ceSThomas E. Spanjaard BUF_UNLOCK(&dbuf);
906b5d7061dSMatthew Dillon uninitbufbio(&dbuf);
907c1b3d7c5SThomas E. Spanjaard
908b24cd69cSAlex Hornung return 0;
909c1b3d7c5SThomas E. Spanjaard }
910c1b3d7c5SThomas E. Spanjaard
911c1b3d7c5SThomas E. Spanjaard static void
ata_raid_config_changed(struct ar_softc * rdp,int writeback)912c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(struct ar_softc *rdp, int writeback)
913c1b3d7c5SThomas E. Spanjaard {
914c1b3d7c5SThomas E. Spanjaard int disk, count, status;
915c1b3d7c5SThomas E. Spanjaard
91615bd3c73SMatthew Dillon lockmgr(&rdp->lock, LK_EXCLUSIVE);
9179243051bSzrj
918c1b3d7c5SThomas E. Spanjaard /* set default all working mode */
919c1b3d7c5SThomas E. Spanjaard status = rdp->status;
920c1b3d7c5SThomas E. Spanjaard rdp->status &= ~AR_S_DEGRADED;
921c1b3d7c5SThomas E. Spanjaard rdp->status |= AR_S_READY;
922c1b3d7c5SThomas E. Spanjaard
923c1b3d7c5SThomas E. Spanjaard /* make sure all lost drives are accounted for */
924c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
925c1b3d7c5SThomas E. Spanjaard if (!(rdp->disks[disk].flags & AR_DF_PRESENT))
926c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].flags &= ~AR_DF_ONLINE;
927c1b3d7c5SThomas E. Spanjaard }
928c1b3d7c5SThomas E. Spanjaard
929c1b3d7c5SThomas E. Spanjaard /* depending on RAID type figure out our health status */
930c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
931c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD:
932c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN:
933c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
934c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++)
935c1b3d7c5SThomas E. Spanjaard if (!(rdp->disks[disk].flags & AR_DF_ONLINE))
936c1b3d7c5SThomas E. Spanjaard rdp->status &= ~AR_S_READY;
937c1b3d7c5SThomas E. Spanjaard break;
938c1b3d7c5SThomas E. Spanjaard
939c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
940c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
941c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->width; disk++) {
942c1b3d7c5SThomas E. Spanjaard if (!(rdp->disks[disk].flags & AR_DF_ONLINE) &&
943c1b3d7c5SThomas E. Spanjaard !(rdp->disks[disk + rdp->width].flags & AR_DF_ONLINE)) {
944c1b3d7c5SThomas E. Spanjaard rdp->status &= ~AR_S_READY;
945c1b3d7c5SThomas E. Spanjaard }
946c1b3d7c5SThomas E. Spanjaard else if (((rdp->disks[disk].flags & AR_DF_ONLINE) &&
947c1b3d7c5SThomas E. Spanjaard !(rdp->disks[disk + rdp->width].flags & AR_DF_ONLINE)) ||
948c1b3d7c5SThomas E. Spanjaard (!(rdp->disks[disk].flags & AR_DF_ONLINE) &&
949c1b3d7c5SThomas E. Spanjaard (rdp->disks [disk + rdp->width].flags & AR_DF_ONLINE))) {
950c1b3d7c5SThomas E. Spanjaard rdp->status |= AR_S_DEGRADED;
951c1b3d7c5SThomas E. Spanjaard }
952c1b3d7c5SThomas E. Spanjaard }
953c1b3d7c5SThomas E. Spanjaard break;
954c1b3d7c5SThomas E. Spanjaard
955c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
956c1b3d7c5SThomas E. Spanjaard for (count = 0, disk = 0; disk < rdp->total_disks; disk++) {
957c1b3d7c5SThomas E. Spanjaard if (!(rdp->disks[disk].flags & AR_DF_ONLINE))
958c1b3d7c5SThomas E. Spanjaard count++;
959c1b3d7c5SThomas E. Spanjaard }
960c1b3d7c5SThomas E. Spanjaard if (count) {
961c1b3d7c5SThomas E. Spanjaard if (count > 1)
962c1b3d7c5SThomas E. Spanjaard rdp->status &= ~AR_S_READY;
963c1b3d7c5SThomas E. Spanjaard else
964c1b3d7c5SThomas E. Spanjaard rdp->status |= AR_S_DEGRADED;
965c1b3d7c5SThomas E. Spanjaard }
966c1b3d7c5SThomas E. Spanjaard break;
967c1b3d7c5SThomas E. Spanjaard default:
968c1b3d7c5SThomas E. Spanjaard rdp->status &= ~AR_S_READY;
969c1b3d7c5SThomas E. Spanjaard }
970c1b3d7c5SThomas E. Spanjaard
9716b7bbefaSMatthew Dillon /*
9726b7bbefaSMatthew Dillon * Note that when the array breaks so comes up broken we
9736b7bbefaSMatthew Dillon * force a write of the array config to the remaining
9746b7bbefaSMatthew Dillon * drives so that the generation will be incremented past
9756b7bbefaSMatthew Dillon * those of the missing or failed drives (in all cases).
9766b7bbefaSMatthew Dillon */
977c1b3d7c5SThomas E. Spanjaard if (rdp->status != status) {
9789243051bSzrj
9799243051bSzrj /* raid status has changed, update metadata */
9809243051bSzrj writeback = 1;
9819243051bSzrj
9829243051bSzrj /* announce we have trouble ahead */
983c1b3d7c5SThomas E. Spanjaard if (!(rdp->status & AR_S_READY)) {
984e3869ec7SSascha Wildner kprintf("ar%d: FAILURE - %s array broken\n",
985c1b3d7c5SThomas E. Spanjaard rdp->lun, ata_raid_type(rdp));
986c1b3d7c5SThomas E. Spanjaard }
987c1b3d7c5SThomas E. Spanjaard else if (rdp->status & AR_S_DEGRADED) {
988c1b3d7c5SThomas E. Spanjaard if (rdp->type & (AR_T_RAID1 | AR_T_RAID01))
989e3869ec7SSascha Wildner kprintf("ar%d: WARNING - mirror", rdp->lun);
990c1b3d7c5SThomas E. Spanjaard else
991e3869ec7SSascha Wildner kprintf("ar%d: WARNING - parity", rdp->lun);
992e3869ec7SSascha Wildner kprintf(" protection lost. %s array in DEGRADED mode\n",
993c1b3d7c5SThomas E. Spanjaard ata_raid_type(rdp));
994c1b3d7c5SThomas E. Spanjaard }
995c1b3d7c5SThomas E. Spanjaard }
99615bd3c73SMatthew Dillon lockmgr(&rdp->lock, LK_RELEASE);
997c1b3d7c5SThomas E. Spanjaard if (writeback)
998c1b3d7c5SThomas E. Spanjaard ata_raid_write_metadata(rdp);
999c1b3d7c5SThomas E. Spanjaard
1000c1b3d7c5SThomas E. Spanjaard }
1001c1b3d7c5SThomas E. Spanjaard
1002c1b3d7c5SThomas E. Spanjaard static int
ata_raid_status(struct ata_ioc_raid_status * status)10039243051bSzrj ata_raid_status(struct ata_ioc_raid_status *status)
1004c1b3d7c5SThomas E. Spanjaard {
1005c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp;
1006c1b3d7c5SThomas E. Spanjaard int i;
1007c1b3d7c5SThomas E. Spanjaard
10089243051bSzrj if (!(rdp = ata_raid_arrays[status->lun]))
1009c1b3d7c5SThomas E. Spanjaard return ENXIO;
1010c1b3d7c5SThomas E. Spanjaard
10119243051bSzrj status->type = rdp->type;
10129243051bSzrj status->total_disks = rdp->total_disks;
1013c1b3d7c5SThomas E. Spanjaard for (i = 0; i < rdp->total_disks; i++ ) {
10149243051bSzrj status->disks[i].state = 0;
10159243051bSzrj if ((rdp->disks[i].flags & AR_DF_PRESENT) && rdp->disks[i].dev) {
10169243051bSzrj status->disks[i].lun = device_get_unit(rdp->disks[i].dev);
10179243051bSzrj if (rdp->disks[i].flags & AR_DF_PRESENT)
10189243051bSzrj status->disks[i].state |= AR_DISK_PRESENT;
10199243051bSzrj if (rdp->disks[i].flags & AR_DF_ONLINE)
10209243051bSzrj status->disks[i].state |= AR_DISK_ONLINE;
10219243051bSzrj if (rdp->disks[i].flags & AR_DF_SPARE)
10229243051bSzrj status->disks[i].state |= AR_DISK_SPARE;
10239243051bSzrj } else
10249243051bSzrj status->disks[i].lun = -1;
1025c1b3d7c5SThomas E. Spanjaard }
10269243051bSzrj status->interleave = rdp->interleave;
10279243051bSzrj status->status = rdp->status;
10289243051bSzrj status->progress = 100 * rdp->rebuild_lba / rdp->total_sectors;
1029c1b3d7c5SThomas E. Spanjaard return 0;
1030c1b3d7c5SThomas E. Spanjaard }
1031c1b3d7c5SThomas E. Spanjaard
1032c1b3d7c5SThomas E. Spanjaard static int
ata_raid_create(struct ata_ioc_raid_config * config)1033c1b3d7c5SThomas E. Spanjaard ata_raid_create(struct ata_ioc_raid_config *config)
1034c1b3d7c5SThomas E. Spanjaard {
1035c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp;
1036c1b3d7c5SThomas E. Spanjaard device_t subdisk;
1037c1b3d7c5SThomas E. Spanjaard int array, disk;
1038feabea0fSSascha Wildner int ctlr = 0, total_disks = 0;
1039feabea0fSSascha Wildner u_int disk_size = 0;
1040c1b3d7c5SThomas E. Spanjaard
1041c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
1042c1b3d7c5SThomas E. Spanjaard if (!ata_raid_arrays[array])
1043c1b3d7c5SThomas E. Spanjaard break;
1044c1b3d7c5SThomas E. Spanjaard }
1045c1b3d7c5SThomas E. Spanjaard if (array >= MAX_ARRAYS)
1046c1b3d7c5SThomas E. Spanjaard return ENOSPC;
1047c1b3d7c5SThomas E. Spanjaard
1048978400d3SSascha Wildner rdp = (struct ar_softc*)kmalloc(sizeof(struct ar_softc), M_AR,
1049978400d3SSascha Wildner M_WAITOK | M_ZERO);
1050c1b3d7c5SThomas E. Spanjaard
1051c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < config->total_disks; disk++) {
1052c1b3d7c5SThomas E. Spanjaard if ((subdisk = devclass_get_device(ata_raid_sub_devclass,
1053c1b3d7c5SThomas E. Spanjaard config->disks[disk]))) {
1054c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(subdisk);
1055c1b3d7c5SThomas E. Spanjaard
1056c1b3d7c5SThomas E. Spanjaard /* is device already assigned to another array ? */
1057c1b3d7c5SThomas E. Spanjaard if (ars->raid[rdp->volume]) {
1058c1b3d7c5SThomas E. Spanjaard config->disks[disk] = -1;
1059d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1060c1b3d7c5SThomas E. Spanjaard return EBUSY;
1061c1b3d7c5SThomas E. Spanjaard }
1062c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].dev = device_get_parent(subdisk);
1063c1b3d7c5SThomas E. Spanjaard
10649243051bSzrj switch (pci_get_vendor(GRANDPARENT(rdp->disks[disk].dev))) {
1065c1b3d7c5SThomas E. Spanjaard case ATA_HIGHPOINT_ID:
1066c1b3d7c5SThomas E. Spanjaard /*
1067c1b3d7c5SThomas E. Spanjaard * we need some way to decide if it should be v2 or v3
1068c1b3d7c5SThomas E. Spanjaard * for now just use v2 since the v3 BIOS knows how to
1069c1b3d7c5SThomas E. Spanjaard * handle that as well.
1070c1b3d7c5SThomas E. Spanjaard */
1071c1b3d7c5SThomas E. Spanjaard ctlr = AR_F_HPTV2_RAID;
1072c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].sectors = HPTV3_LBA(rdp->disks[disk].dev);
1073c1b3d7c5SThomas E. Spanjaard break;
1074c1b3d7c5SThomas E. Spanjaard
1075c1b3d7c5SThomas E. Spanjaard case ATA_INTEL_ID:
1076c1b3d7c5SThomas E. Spanjaard ctlr = AR_F_INTEL_RAID;
1077c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].sectors = INTEL_LBA(rdp->disks[disk].dev);
1078c1b3d7c5SThomas E. Spanjaard break;
1079c1b3d7c5SThomas E. Spanjaard
1080c1b3d7c5SThomas E. Spanjaard case ATA_ITE_ID:
1081c1b3d7c5SThomas E. Spanjaard ctlr = AR_F_ITE_RAID;
1082c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].sectors = ITE_LBA(rdp->disks[disk].dev);
1083c1b3d7c5SThomas E. Spanjaard break;
1084c1b3d7c5SThomas E. Spanjaard
1085c1b3d7c5SThomas E. Spanjaard case ATA_JMICRON_ID:
1086c1b3d7c5SThomas E. Spanjaard ctlr = AR_F_JMICRON_RAID;
1087c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].sectors = JMICRON_LBA(rdp->disks[disk].dev);
1088c1b3d7c5SThomas E. Spanjaard break;
1089c1b3d7c5SThomas E. Spanjaard
1090c1b3d7c5SThomas E. Spanjaard case 0: /* XXX SOS cover up for bug in our PCI code */
1091c1b3d7c5SThomas E. Spanjaard case ATA_PROMISE_ID:
1092c1b3d7c5SThomas E. Spanjaard ctlr = AR_F_PROMISE_RAID;
1093c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].sectors = PROMISE_LBA(rdp->disks[disk].dev);
1094c1b3d7c5SThomas E. Spanjaard break;
1095c1b3d7c5SThomas E. Spanjaard
1096c1b3d7c5SThomas E. Spanjaard case ATA_SIS_ID:
1097c1b3d7c5SThomas E. Spanjaard ctlr = AR_F_SIS_RAID;
1098c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].sectors = SIS_LBA(rdp->disks[disk].dev);
1099c1b3d7c5SThomas E. Spanjaard break;
1100c1b3d7c5SThomas E. Spanjaard
1101c1b3d7c5SThomas E. Spanjaard case ATA_ATI_ID:
1102c1b3d7c5SThomas E. Spanjaard case ATA_VIA_ID:
1103c1b3d7c5SThomas E. Spanjaard ctlr = AR_F_VIA_RAID;
1104c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].sectors = VIA_LBA(rdp->disks[disk].dev);
1105c1b3d7c5SThomas E. Spanjaard break;
1106c1b3d7c5SThomas E. Spanjaard
1107c1b3d7c5SThomas E. Spanjaard default:
1108c1b3d7c5SThomas E. Spanjaard /* XXX SOS
1109c1b3d7c5SThomas E. Spanjaard * right, so here we are, we have an ATA chip and we want
1110c1b3d7c5SThomas E. Spanjaard * to create a RAID and store the metadata.
1111c1b3d7c5SThomas E. Spanjaard * we need to find a way to tell what kind of metadata this
1112c1b3d7c5SThomas E. Spanjaard * hardware's BIOS might be using (good ideas are welcomed)
1113c1b3d7c5SThomas E. Spanjaard * for now we just use our own native FreeBSD format.
1114c1b3d7c5SThomas E. Spanjaard * the only way to get support for the BIOS format is to
1115c1b3d7c5SThomas E. Spanjaard * setup the RAID from there, in that case we pickup the
1116c1b3d7c5SThomas E. Spanjaard * metadata format from the disks (if we support it).
1117c1b3d7c5SThomas E. Spanjaard */
1118e3869ec7SSascha Wildner kprintf("WARNING!! - not able to determine metadata format\n"
1119c1b3d7c5SThomas E. Spanjaard "WARNING!! - Using FreeBSD PseudoRAID metadata\n"
1120c1b3d7c5SThomas E. Spanjaard "If that is not what you want, use the BIOS to "
1121c1b3d7c5SThomas E. Spanjaard "create the array\n");
1122c1b3d7c5SThomas E. Spanjaard ctlr = AR_F_FREEBSD_RAID;
1123c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].sectors = PROMISE_LBA(rdp->disks[disk].dev);
1124c1b3d7c5SThomas E. Spanjaard break;
1125c1b3d7c5SThomas E. Spanjaard }
1126c1b3d7c5SThomas E. Spanjaard
1127c1b3d7c5SThomas E. Spanjaard /* we need all disks to be of the same format */
1128c1b3d7c5SThomas E. Spanjaard if ((rdp->format & AR_F_FORMAT_MASK) &&
1129c1b3d7c5SThomas E. Spanjaard (rdp->format & AR_F_FORMAT_MASK) != (ctlr & AR_F_FORMAT_MASK)) {
1130d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1131c1b3d7c5SThomas E. Spanjaard return EXDEV;
1132c1b3d7c5SThomas E. Spanjaard }
1133c1b3d7c5SThomas E. Spanjaard else
1134c1b3d7c5SThomas E. Spanjaard rdp->format = ctlr;
1135c1b3d7c5SThomas E. Spanjaard
1136c1b3d7c5SThomas E. Spanjaard /* use the smallest disk of the lots size */
1137c1b3d7c5SThomas E. Spanjaard /* gigabyte boundry ??? XXX SOS */
1138c1b3d7c5SThomas E. Spanjaard if (disk_size)
1139c1b3d7c5SThomas E. Spanjaard disk_size = min(rdp->disks[disk].sectors, disk_size);
1140c1b3d7c5SThomas E. Spanjaard else
1141c1b3d7c5SThomas E. Spanjaard disk_size = rdp->disks[disk].sectors;
1142c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].flags =
1143c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_ONLINE);
1144c1b3d7c5SThomas E. Spanjaard
1145c1b3d7c5SThomas E. Spanjaard total_disks++;
1146c1b3d7c5SThomas E. Spanjaard }
1147c1b3d7c5SThomas E. Spanjaard else {
1148c1b3d7c5SThomas E. Spanjaard config->disks[disk] = -1;
1149d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1150c1b3d7c5SThomas E. Spanjaard return ENXIO;
1151c1b3d7c5SThomas E. Spanjaard }
1152c1b3d7c5SThomas E. Spanjaard }
1153c1b3d7c5SThomas E. Spanjaard
1154c1b3d7c5SThomas E. Spanjaard if (total_disks != config->total_disks) {
1155d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1156c1b3d7c5SThomas E. Spanjaard return ENODEV;
1157c1b3d7c5SThomas E. Spanjaard }
1158c1b3d7c5SThomas E. Spanjaard
1159c1b3d7c5SThomas E. Spanjaard switch (config->type) {
1160c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD:
1161c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN:
1162c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
1163c1b3d7c5SThomas E. Spanjaard break;
1164c1b3d7c5SThomas E. Spanjaard
1165c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
1166c1b3d7c5SThomas E. Spanjaard if (total_disks != 2) {
1167d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1168c1b3d7c5SThomas E. Spanjaard return EPERM;
1169c1b3d7c5SThomas E. Spanjaard }
1170c1b3d7c5SThomas E. Spanjaard break;
1171c1b3d7c5SThomas E. Spanjaard
1172c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
1173c1b3d7c5SThomas E. Spanjaard if (total_disks % 2 != 0) {
1174d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1175c1b3d7c5SThomas E. Spanjaard return EPERM;
1176c1b3d7c5SThomas E. Spanjaard }
1177c1b3d7c5SThomas E. Spanjaard break;
1178c1b3d7c5SThomas E. Spanjaard
1179c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
1180c1b3d7c5SThomas E. Spanjaard if (total_disks < 3) {
1181d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1182c1b3d7c5SThomas E. Spanjaard return EPERM;
1183c1b3d7c5SThomas E. Spanjaard }
1184c1b3d7c5SThomas E. Spanjaard break;
1185c1b3d7c5SThomas E. Spanjaard
1186c1b3d7c5SThomas E. Spanjaard default:
1187d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1188c1b3d7c5SThomas E. Spanjaard return EOPNOTSUPP;
1189c1b3d7c5SThomas E. Spanjaard }
1190c1b3d7c5SThomas E. Spanjaard rdp->type = config->type;
1191c1b3d7c5SThomas E. Spanjaard rdp->lun = array;
1192c1b3d7c5SThomas E. Spanjaard if (rdp->type == AR_T_RAID0 || rdp->type == AR_T_RAID01 ||
1193c1b3d7c5SThomas E. Spanjaard rdp->type == AR_T_RAID5) {
1194c1b3d7c5SThomas E. Spanjaard int bit = 0;
1195c1b3d7c5SThomas E. Spanjaard
1196c1b3d7c5SThomas E. Spanjaard while (config->interleave >>= 1)
1197c1b3d7c5SThomas E. Spanjaard bit++;
1198c1b3d7c5SThomas E. Spanjaard rdp->interleave = 1 << bit;
1199c1b3d7c5SThomas E. Spanjaard }
1200c1b3d7c5SThomas E. Spanjaard rdp->offset_sectors = 0;
1201c1b3d7c5SThomas E. Spanjaard
1202c1b3d7c5SThomas E. Spanjaard /* values that depend on metadata format */
1203c1b3d7c5SThomas E. Spanjaard switch (rdp->format) {
1204c1b3d7c5SThomas E. Spanjaard case AR_F_ADAPTEC_RAID:
1205c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(32, rdp->interleave), 128); /*+*/
1206c1b3d7c5SThomas E. Spanjaard break;
1207c1b3d7c5SThomas E. Spanjaard
1208c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV2_RAID:
1209c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(8, rdp->interleave), 128); /*+*/
1210c1b3d7c5SThomas E. Spanjaard rdp->offset_sectors = HPTV2_LBA(x) + 1;
1211c1b3d7c5SThomas E. Spanjaard break;
1212c1b3d7c5SThomas E. Spanjaard
1213c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV3_RAID:
1214c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(32, rdp->interleave), 4096); /*+*/
1215c1b3d7c5SThomas E. Spanjaard break;
1216c1b3d7c5SThomas E. Spanjaard
1217c1b3d7c5SThomas E. Spanjaard case AR_F_INTEL_RAID:
1218c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(8, rdp->interleave), 256); /*+*/
1219c1b3d7c5SThomas E. Spanjaard break;
1220c1b3d7c5SThomas E. Spanjaard
1221c1b3d7c5SThomas E. Spanjaard case AR_F_ITE_RAID:
1222c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(2, rdp->interleave), 128); /*+*/
1223c1b3d7c5SThomas E. Spanjaard break;
1224c1b3d7c5SThomas E. Spanjaard
1225c1b3d7c5SThomas E. Spanjaard case AR_F_JMICRON_RAID:
1226c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(8, rdp->interleave), 256); /*+*/
1227c1b3d7c5SThomas E. Spanjaard break;
1228c1b3d7c5SThomas E. Spanjaard
1229c1b3d7c5SThomas E. Spanjaard case AR_F_LSIV2_RAID:
1230c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(2, rdp->interleave), 4096);
1231c1b3d7c5SThomas E. Spanjaard break;
1232c1b3d7c5SThomas E. Spanjaard
1233c1b3d7c5SThomas E. Spanjaard case AR_F_LSIV3_RAID:
1234c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(2, rdp->interleave), 256);
1235c1b3d7c5SThomas E. Spanjaard break;
1236c1b3d7c5SThomas E. Spanjaard
1237c1b3d7c5SThomas E. Spanjaard case AR_F_PROMISE_RAID:
1238c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(2, rdp->interleave), 2048); /*+*/
1239c1b3d7c5SThomas E. Spanjaard break;
1240c1b3d7c5SThomas E. Spanjaard
1241c1b3d7c5SThomas E. Spanjaard case AR_F_SII_RAID:
1242c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(8, rdp->interleave), 256); /*+*/
1243c1b3d7c5SThomas E. Spanjaard break;
1244c1b3d7c5SThomas E. Spanjaard
1245c1b3d7c5SThomas E. Spanjaard case AR_F_SIS_RAID:
1246c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(32, rdp->interleave), 512); /*+*/
1247c1b3d7c5SThomas E. Spanjaard break;
1248c1b3d7c5SThomas E. Spanjaard
1249c1b3d7c5SThomas E. Spanjaard case AR_F_VIA_RAID:
1250c1b3d7c5SThomas E. Spanjaard rdp->interleave = min(max(8, rdp->interleave), 128); /*+*/
1251c1b3d7c5SThomas E. Spanjaard break;
1252c1b3d7c5SThomas E. Spanjaard }
1253c1b3d7c5SThomas E. Spanjaard
1254c1b3d7c5SThomas E. Spanjaard rdp->total_disks = total_disks;
1255c1b3d7c5SThomas E. Spanjaard rdp->width = total_disks / (rdp->type & (AR_RAID1 | AR_T_RAID01) ? 2 : 1);
1256feabea0fSSascha Wildner rdp->total_sectors =
1257feabea0fSSascha Wildner (uint64_t)disk_size * (rdp->width - (rdp->type == AR_RAID5));
1258c1b3d7c5SThomas E. Spanjaard rdp->heads = 255;
1259c1b3d7c5SThomas E. Spanjaard rdp->sectors = 63;
1260c1b3d7c5SThomas E. Spanjaard rdp->cylinders = rdp->total_sectors / (255 * 63);
1261c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba = 0;
1262c1b3d7c5SThomas E. Spanjaard rdp->status |= AR_S_READY;
1263c1b3d7c5SThomas E. Spanjaard
1264c1b3d7c5SThomas E. Spanjaard /* we are committed to this array, grap the subdisks */
1265c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < config->total_disks; disk++) {
1266c1b3d7c5SThomas E. Spanjaard if ((subdisk = devclass_get_device(ata_raid_sub_devclass,
1267c1b3d7c5SThomas E. Spanjaard config->disks[disk]))) {
1268c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(subdisk);
1269c1b3d7c5SThomas E. Spanjaard
1270c1b3d7c5SThomas E. Spanjaard ars->raid[rdp->volume] = rdp;
1271c1b3d7c5SThomas E. Spanjaard ars->disk_number[rdp->volume] = disk;
1272c1b3d7c5SThomas E. Spanjaard }
1273c1b3d7c5SThomas E. Spanjaard }
1274c1b3d7c5SThomas E. Spanjaard ata_raid_attach(rdp, 1);
1275c1b3d7c5SThomas E. Spanjaard ata_raid_arrays[array] = rdp;
1276c1b3d7c5SThomas E. Spanjaard config->lun = array;
1277c1b3d7c5SThomas E. Spanjaard return 0;
1278c1b3d7c5SThomas E. Spanjaard }
1279c1b3d7c5SThomas E. Spanjaard
1280c1b3d7c5SThomas E. Spanjaard static int
ata_raid_delete(int array)1281c1b3d7c5SThomas E. Spanjaard ata_raid_delete(int array)
1282c1b3d7c5SThomas E. Spanjaard {
1283c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp;
1284c1b3d7c5SThomas E. Spanjaard device_t subdisk;
1285c1b3d7c5SThomas E. Spanjaard int disk;
1286c1b3d7c5SThomas E. Spanjaard
1287c1b3d7c5SThomas E. Spanjaard if (!(rdp = ata_raid_arrays[array]))
1288c1b3d7c5SThomas E. Spanjaard return ENXIO;
1289c1b3d7c5SThomas E. Spanjaard
1290c1b3d7c5SThomas E. Spanjaard rdp->status &= ~AR_S_READY;
1291d438c7c2SThomas E. Spanjaard disk_destroy(&rdp->disk);
129289be26e1SSascha Wildner devstat_remove_entry(&rdp->devstat);
1293c1b3d7c5SThomas E. Spanjaard
1294c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
1295c1b3d7c5SThomas E. Spanjaard if ((rdp->disks[disk].flags & AR_DF_PRESENT) && rdp->disks[disk].dev) {
1296c1b3d7c5SThomas E. Spanjaard if ((subdisk = devclass_get_device(ata_raid_sub_devclass,
1297c1b3d7c5SThomas E. Spanjaard device_get_unit(rdp->disks[disk].dev)))) {
1298c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(subdisk);
1299c1b3d7c5SThomas E. Spanjaard
1300c1b3d7c5SThomas E. Spanjaard if (ars->raid[rdp->volume] != rdp) /* XXX SOS */
1301c1b3d7c5SThomas E. Spanjaard device_printf(subdisk, "DOH! this disk doesn't belong\n");
1302c1b3d7c5SThomas E. Spanjaard if (ars->disk_number[rdp->volume] != disk) /* XXX SOS */
1303c1b3d7c5SThomas E. Spanjaard device_printf(subdisk, "DOH! this disk number is wrong\n");
1304c1b3d7c5SThomas E. Spanjaard ars->raid[rdp->volume] = NULL;
1305c1b3d7c5SThomas E. Spanjaard ars->disk_number[rdp->volume] = -1;
1306c1b3d7c5SThomas E. Spanjaard }
1307c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].flags = 0;
1308c1b3d7c5SThomas E. Spanjaard }
1309c1b3d7c5SThomas E. Spanjaard }
1310c1b3d7c5SThomas E. Spanjaard ata_raid_wipe_metadata(rdp);
1311c1b3d7c5SThomas E. Spanjaard ata_raid_arrays[array] = NULL;
1312d438c7c2SThomas E. Spanjaard kfree(rdp, M_AR);
1313c1b3d7c5SThomas E. Spanjaard return 0;
1314c1b3d7c5SThomas E. Spanjaard }
1315c1b3d7c5SThomas E. Spanjaard
1316c1b3d7c5SThomas E. Spanjaard static int
ata_raid_addspare(struct ata_ioc_raid_config * config)1317c1b3d7c5SThomas E. Spanjaard ata_raid_addspare(struct ata_ioc_raid_config *config)
1318c1b3d7c5SThomas E. Spanjaard {
1319c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp;
1320c1b3d7c5SThomas E. Spanjaard device_t subdisk;
1321c1b3d7c5SThomas E. Spanjaard int disk;
1322c1b3d7c5SThomas E. Spanjaard
1323c1b3d7c5SThomas E. Spanjaard if (!(rdp = ata_raid_arrays[config->lun]))
1324c1b3d7c5SThomas E. Spanjaard return ENXIO;
1325c1b3d7c5SThomas E. Spanjaard if (!(rdp->status & AR_S_DEGRADED) || !(rdp->status & AR_S_READY))
1326c1b3d7c5SThomas E. Spanjaard return ENXIO;
1327c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_REBUILDING)
1328c1b3d7c5SThomas E. Spanjaard return EBUSY;
1329c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
1330c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
1331c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
1332c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
1333c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++ ) {
1334c1b3d7c5SThomas E. Spanjaard
1335c1b3d7c5SThomas E. Spanjaard if (((rdp->disks[disk].flags & (AR_DF_PRESENT | AR_DF_ONLINE)) ==
1336c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ONLINE)) && rdp->disks[disk].dev)
1337c1b3d7c5SThomas E. Spanjaard continue;
1338c1b3d7c5SThomas E. Spanjaard
1339c1b3d7c5SThomas E. Spanjaard if ((subdisk = devclass_get_device(ata_raid_sub_devclass,
1340c1b3d7c5SThomas E. Spanjaard config->disks[0] ))) {
1341c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(subdisk);
1342c1b3d7c5SThomas E. Spanjaard
1343c1b3d7c5SThomas E. Spanjaard if (ars->raid[rdp->volume])
1344c1b3d7c5SThomas E. Spanjaard return EBUSY;
1345c1b3d7c5SThomas E. Spanjaard
1346c1b3d7c5SThomas E. Spanjaard /* XXX SOS validate size etc etc */
1347c1b3d7c5SThomas E. Spanjaard ars->raid[rdp->volume] = rdp;
1348c1b3d7c5SThomas E. Spanjaard ars->disk_number[rdp->volume] = disk;
1349c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].dev = device_get_parent(subdisk);
1350c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].flags =
1351c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_SPARE);
1352c1b3d7c5SThomas E. Spanjaard
1353c1b3d7c5SThomas E. Spanjaard device_printf(rdp->disks[disk].dev,
1354c1b3d7c5SThomas E. Spanjaard "inserted into ar%d disk%d as spare\n",
1355c1b3d7c5SThomas E. Spanjaard rdp->lun, disk);
1356c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(rdp, 1);
1357c1b3d7c5SThomas E. Spanjaard return 0;
1358c1b3d7c5SThomas E. Spanjaard }
1359c1b3d7c5SThomas E. Spanjaard }
1360c1b3d7c5SThomas E. Spanjaard return ENXIO;
1361c1b3d7c5SThomas E. Spanjaard
1362c1b3d7c5SThomas E. Spanjaard default:
1363c1b3d7c5SThomas E. Spanjaard return EPERM;
1364c1b3d7c5SThomas E. Spanjaard }
1365c1b3d7c5SThomas E. Spanjaard }
1366c1b3d7c5SThomas E. Spanjaard
1367c1b3d7c5SThomas E. Spanjaard static int
ata_raid_rebuild(int array)1368c1b3d7c5SThomas E. Spanjaard ata_raid_rebuild(int array)
1369c1b3d7c5SThomas E. Spanjaard {
1370c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp;
1371c1b3d7c5SThomas E. Spanjaard int disk, count;
1372c1b3d7c5SThomas E. Spanjaard
1373c1b3d7c5SThomas E. Spanjaard if (!(rdp = ata_raid_arrays[array]))
1374c1b3d7c5SThomas E. Spanjaard return ENXIO;
1375c1b3d7c5SThomas E. Spanjaard /* XXX SOS we should lock the rdp softc here */
1376c1b3d7c5SThomas E. Spanjaard if (!(rdp->status & AR_S_DEGRADED) || !(rdp->status & AR_S_READY))
1377c1b3d7c5SThomas E. Spanjaard return ENXIO;
1378c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_REBUILDING)
1379c1b3d7c5SThomas E. Spanjaard return EBUSY;
1380c1b3d7c5SThomas E. Spanjaard
1381c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
1382c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
1383c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
1384c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
1385c1b3d7c5SThomas E. Spanjaard for (count = 0, disk = 0; disk < rdp->total_disks; disk++ ) {
1386c1b3d7c5SThomas E. Spanjaard if (((rdp->disks[disk].flags &
1387c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT|AR_DF_ASSIGNED|AR_DF_ONLINE|AR_DF_SPARE)) ==
1388c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_SPARE)) &&
1389c1b3d7c5SThomas E. Spanjaard rdp->disks[disk].dev) {
1390c1b3d7c5SThomas E. Spanjaard count++;
1391c1b3d7c5SThomas E. Spanjaard }
1392c1b3d7c5SThomas E. Spanjaard }
1393c1b3d7c5SThomas E. Spanjaard
1394c1b3d7c5SThomas E. Spanjaard if (count) {
1395c1b3d7c5SThomas E. Spanjaard rdp->rebuild_lba = 0;
1396c1b3d7c5SThomas E. Spanjaard rdp->status |= AR_S_REBUILDING;
1397c1b3d7c5SThomas E. Spanjaard return 0;
1398c1b3d7c5SThomas E. Spanjaard }
1399c1b3d7c5SThomas E. Spanjaard return EIO;
1400c1b3d7c5SThomas E. Spanjaard
1401c1b3d7c5SThomas E. Spanjaard default:
1402c1b3d7c5SThomas E. Spanjaard return EPERM;
1403c1b3d7c5SThomas E. Spanjaard }
1404c1b3d7c5SThomas E. Spanjaard }
1405c1b3d7c5SThomas E. Spanjaard
1406c1b3d7c5SThomas E. Spanjaard static int
ata_raid_read_metadata(device_t subdisk)1407c1b3d7c5SThomas E. Spanjaard ata_raid_read_metadata(device_t subdisk)
1408c1b3d7c5SThomas E. Spanjaard {
1409c1b3d7c5SThomas E. Spanjaard devclass_t pci_devclass = devclass_find("pci");
14109243051bSzrj devclass_t atapci_devclass = devclass_find("atapci");
1411c1b3d7c5SThomas E. Spanjaard devclass_t devclass=device_get_devclass(GRANDPARENT(GRANDPARENT(subdisk)));
1412c1b3d7c5SThomas E. Spanjaard
1413c1b3d7c5SThomas E. Spanjaard /* prioritize vendor native metadata layout if possible */
14149243051bSzrj if (devclass == pci_devclass || devclass == atapci_devclass) {
14159243051bSzrj switch (pci_get_vendor(GRANDPARENT(device_get_parent(subdisk)))) {
1416c1b3d7c5SThomas E. Spanjaard case ATA_HIGHPOINT_ID:
1417c1b3d7c5SThomas E. Spanjaard if (ata_raid_hptv3_read_meta(subdisk, ata_raid_arrays))
1418c1b3d7c5SThomas E. Spanjaard return 0;
1419c1b3d7c5SThomas E. Spanjaard if (ata_raid_hptv2_read_meta(subdisk, ata_raid_arrays))
1420c1b3d7c5SThomas E. Spanjaard return 0;
1421c1b3d7c5SThomas E. Spanjaard break;
1422c1b3d7c5SThomas E. Spanjaard
1423c1b3d7c5SThomas E. Spanjaard case ATA_INTEL_ID:
1424c1b3d7c5SThomas E. Spanjaard if (ata_raid_intel_read_meta(subdisk, ata_raid_arrays))
1425c1b3d7c5SThomas E. Spanjaard return 0;
1426c1b3d7c5SThomas E. Spanjaard break;
1427c1b3d7c5SThomas E. Spanjaard
1428c1b3d7c5SThomas E. Spanjaard case ATA_ITE_ID:
1429c1b3d7c5SThomas E. Spanjaard if (ata_raid_ite_read_meta(subdisk, ata_raid_arrays))
1430c1b3d7c5SThomas E. Spanjaard return 0;
1431c1b3d7c5SThomas E. Spanjaard break;
1432c1b3d7c5SThomas E. Spanjaard
1433c1b3d7c5SThomas E. Spanjaard case ATA_JMICRON_ID:
1434c1b3d7c5SThomas E. Spanjaard if (ata_raid_jmicron_read_meta(subdisk, ata_raid_arrays))
1435c1b3d7c5SThomas E. Spanjaard return 0;
1436c1b3d7c5SThomas E. Spanjaard break;
1437c1b3d7c5SThomas E. Spanjaard
1438c1b3d7c5SThomas E. Spanjaard case ATA_NVIDIA_ID:
1439c1b3d7c5SThomas E. Spanjaard if (ata_raid_nvidia_read_meta(subdisk, ata_raid_arrays))
1440c1b3d7c5SThomas E. Spanjaard return 0;
1441c1b3d7c5SThomas E. Spanjaard break;
1442c1b3d7c5SThomas E. Spanjaard
1443c1b3d7c5SThomas E. Spanjaard case 0: /* XXX SOS cover up for bug in our PCI code */
1444c1b3d7c5SThomas E. Spanjaard case ATA_PROMISE_ID:
1445c1b3d7c5SThomas E. Spanjaard if (ata_raid_promise_read_meta(subdisk, ata_raid_arrays, 0))
1446c1b3d7c5SThomas E. Spanjaard return 0;
1447c1b3d7c5SThomas E. Spanjaard break;
1448c1b3d7c5SThomas E. Spanjaard
1449c1b3d7c5SThomas E. Spanjaard case ATA_ATI_ID:
1450c1b3d7c5SThomas E. Spanjaard case ATA_SILICON_IMAGE_ID:
1451c1b3d7c5SThomas E. Spanjaard if (ata_raid_sii_read_meta(subdisk, ata_raid_arrays))
1452c1b3d7c5SThomas E. Spanjaard return 0;
1453c1b3d7c5SThomas E. Spanjaard break;
1454c1b3d7c5SThomas E. Spanjaard
1455c1b3d7c5SThomas E. Spanjaard case ATA_SIS_ID:
1456c1b3d7c5SThomas E. Spanjaard if (ata_raid_sis_read_meta(subdisk, ata_raid_arrays))
1457c1b3d7c5SThomas E. Spanjaard return 0;
1458c1b3d7c5SThomas E. Spanjaard break;
1459c1b3d7c5SThomas E. Spanjaard
1460c1b3d7c5SThomas E. Spanjaard case ATA_VIA_ID:
1461c1b3d7c5SThomas E. Spanjaard if (ata_raid_via_read_meta(subdisk, ata_raid_arrays))
1462c1b3d7c5SThomas E. Spanjaard return 0;
1463c1b3d7c5SThomas E. Spanjaard break;
1464c1b3d7c5SThomas E. Spanjaard }
1465c1b3d7c5SThomas E. Spanjaard }
1466c1b3d7c5SThomas E. Spanjaard
1467c1b3d7c5SThomas E. Spanjaard /* handle controllers that have multiple layout possibilities */
1468c1b3d7c5SThomas E. Spanjaard /* NOTE: the order of these are not insignificant */
1469c1b3d7c5SThomas E. Spanjaard
1470c1b3d7c5SThomas E. Spanjaard /* Adaptec HostRAID */
1471c1b3d7c5SThomas E. Spanjaard if (ata_raid_adaptec_read_meta(subdisk, ata_raid_arrays))
1472c1b3d7c5SThomas E. Spanjaard return 0;
1473c1b3d7c5SThomas E. Spanjaard
1474c1b3d7c5SThomas E. Spanjaard /* LSILogic v3 and v2 */
1475c1b3d7c5SThomas E. Spanjaard if (ata_raid_lsiv3_read_meta(subdisk, ata_raid_arrays))
1476c1b3d7c5SThomas E. Spanjaard return 0;
1477c1b3d7c5SThomas E. Spanjaard if (ata_raid_lsiv2_read_meta(subdisk, ata_raid_arrays))
1478c1b3d7c5SThomas E. Spanjaard return 0;
1479c1b3d7c5SThomas E. Spanjaard
1480c1b3d7c5SThomas E. Spanjaard /* if none of the above matched, try FreeBSD native format */
1481c1b3d7c5SThomas E. Spanjaard return ata_raid_promise_read_meta(subdisk, ata_raid_arrays, 1);
1482c1b3d7c5SThomas E. Spanjaard }
1483c1b3d7c5SThomas E. Spanjaard
1484c1b3d7c5SThomas E. Spanjaard static int
ata_raid_write_metadata(struct ar_softc * rdp)1485c1b3d7c5SThomas E. Spanjaard ata_raid_write_metadata(struct ar_softc *rdp)
1486c1b3d7c5SThomas E. Spanjaard {
1487c1b3d7c5SThomas E. Spanjaard switch (rdp->format) {
1488c1b3d7c5SThomas E. Spanjaard case AR_F_FREEBSD_RAID:
1489c1b3d7c5SThomas E. Spanjaard case AR_F_PROMISE_RAID:
1490c1b3d7c5SThomas E. Spanjaard return ata_raid_promise_write_meta(rdp);
1491c1b3d7c5SThomas E. Spanjaard
1492c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV3_RAID:
1493c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV2_RAID:
1494c1b3d7c5SThomas E. Spanjaard /*
1495c1b3d7c5SThomas E. Spanjaard * always write HPT v2 metadata, the v3 BIOS knows it as well.
1496c1b3d7c5SThomas E. Spanjaard * this is handy since we cannot know what version BIOS is on there
1497c1b3d7c5SThomas E. Spanjaard */
1498c1b3d7c5SThomas E. Spanjaard return ata_raid_hptv2_write_meta(rdp);
1499c1b3d7c5SThomas E. Spanjaard
1500c1b3d7c5SThomas E. Spanjaard case AR_F_INTEL_RAID:
1501c1b3d7c5SThomas E. Spanjaard return ata_raid_intel_write_meta(rdp);
1502c1b3d7c5SThomas E. Spanjaard
1503c1b3d7c5SThomas E. Spanjaard case AR_F_JMICRON_RAID:
1504c1b3d7c5SThomas E. Spanjaard return ata_raid_jmicron_write_meta(rdp);
1505c1b3d7c5SThomas E. Spanjaard
1506c1b3d7c5SThomas E. Spanjaard case AR_F_SIS_RAID:
1507c1b3d7c5SThomas E. Spanjaard return ata_raid_sis_write_meta(rdp);
1508c1b3d7c5SThomas E. Spanjaard
1509c1b3d7c5SThomas E. Spanjaard case AR_F_VIA_RAID:
1510c1b3d7c5SThomas E. Spanjaard return ata_raid_via_write_meta(rdp);
1511c1b3d7c5SThomas E. Spanjaard #if 0
1512c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV3_RAID:
1513c1b3d7c5SThomas E. Spanjaard return ata_raid_hptv3_write_meta(rdp);
1514c1b3d7c5SThomas E. Spanjaard
1515c1b3d7c5SThomas E. Spanjaard case AR_F_ADAPTEC_RAID:
1516c1b3d7c5SThomas E. Spanjaard return ata_raid_adaptec_write_meta(rdp);
1517c1b3d7c5SThomas E. Spanjaard
1518c1b3d7c5SThomas E. Spanjaard case AR_F_ITE_RAID:
1519c1b3d7c5SThomas E. Spanjaard return ata_raid_ite_write_meta(rdp);
1520c1b3d7c5SThomas E. Spanjaard
1521c1b3d7c5SThomas E. Spanjaard case AR_F_LSIV2_RAID:
1522c1b3d7c5SThomas E. Spanjaard return ata_raid_lsiv2_write_meta(rdp);
1523c1b3d7c5SThomas E. Spanjaard
1524c1b3d7c5SThomas E. Spanjaard case AR_F_LSIV3_RAID:
1525c1b3d7c5SThomas E. Spanjaard return ata_raid_lsiv3_write_meta(rdp);
1526c1b3d7c5SThomas E. Spanjaard
1527c1b3d7c5SThomas E. Spanjaard case AR_F_NVIDIA_RAID:
1528c1b3d7c5SThomas E. Spanjaard return ata_raid_nvidia_write_meta(rdp);
1529c1b3d7c5SThomas E. Spanjaard
1530c1b3d7c5SThomas E. Spanjaard case AR_F_SII_RAID:
1531c1b3d7c5SThomas E. Spanjaard return ata_raid_sii_write_meta(rdp);
1532c1b3d7c5SThomas E. Spanjaard
1533c1b3d7c5SThomas E. Spanjaard #endif
1534c1b3d7c5SThomas E. Spanjaard default:
1535e3869ec7SSascha Wildner kprintf("ar%d: writing of %s metadata is NOT supported yet\n",
1536c1b3d7c5SThomas E. Spanjaard rdp->lun, ata_raid_format(rdp));
1537c1b3d7c5SThomas E. Spanjaard }
1538c1b3d7c5SThomas E. Spanjaard return -1;
1539c1b3d7c5SThomas E. Spanjaard }
1540c1b3d7c5SThomas E. Spanjaard
1541c1b3d7c5SThomas E. Spanjaard static int
ata_raid_wipe_metadata(struct ar_softc * rdp)1542c1b3d7c5SThomas E. Spanjaard ata_raid_wipe_metadata(struct ar_softc *rdp)
1543c1b3d7c5SThomas E. Spanjaard {
1544c1b3d7c5SThomas E. Spanjaard int disk, error = 0;
1545c1b3d7c5SThomas E. Spanjaard u_int64_t lba;
1546c1b3d7c5SThomas E. Spanjaard u_int32_t size;
1547c1b3d7c5SThomas E. Spanjaard u_int8_t *meta;
1548c1b3d7c5SThomas E. Spanjaard
1549c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
1550c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
1551c1b3d7c5SThomas E. Spanjaard switch (rdp->format) {
1552c1b3d7c5SThomas E. Spanjaard case AR_F_ADAPTEC_RAID:
1553c1b3d7c5SThomas E. Spanjaard lba = ADP_LBA(rdp->disks[disk].dev);
1554c1b3d7c5SThomas E. Spanjaard size = sizeof(struct adaptec_raid_conf);
1555c1b3d7c5SThomas E. Spanjaard break;
1556c1b3d7c5SThomas E. Spanjaard
1557c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV2_RAID:
1558c1b3d7c5SThomas E. Spanjaard lba = HPTV2_LBA(rdp->disks[disk].dev);
1559c1b3d7c5SThomas E. Spanjaard size = sizeof(struct hptv2_raid_conf);
1560c1b3d7c5SThomas E. Spanjaard break;
1561c1b3d7c5SThomas E. Spanjaard
1562c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV3_RAID:
1563c1b3d7c5SThomas E. Spanjaard lba = HPTV3_LBA(rdp->disks[disk].dev);
1564c1b3d7c5SThomas E. Spanjaard size = sizeof(struct hptv3_raid_conf);
1565c1b3d7c5SThomas E. Spanjaard break;
1566c1b3d7c5SThomas E. Spanjaard
1567c1b3d7c5SThomas E. Spanjaard case AR_F_INTEL_RAID:
1568c1b3d7c5SThomas E. Spanjaard lba = INTEL_LBA(rdp->disks[disk].dev);
1569c1b3d7c5SThomas E. Spanjaard size = 3 * 512; /* XXX SOS */
1570c1b3d7c5SThomas E. Spanjaard break;
1571c1b3d7c5SThomas E. Spanjaard
1572c1b3d7c5SThomas E. Spanjaard case AR_F_ITE_RAID:
1573c1b3d7c5SThomas E. Spanjaard lba = ITE_LBA(rdp->disks[disk].dev);
1574c1b3d7c5SThomas E. Spanjaard size = sizeof(struct ite_raid_conf);
1575c1b3d7c5SThomas E. Spanjaard break;
1576c1b3d7c5SThomas E. Spanjaard
1577c1b3d7c5SThomas E. Spanjaard case AR_F_JMICRON_RAID:
1578c1b3d7c5SThomas E. Spanjaard lba = JMICRON_LBA(rdp->disks[disk].dev);
1579c1b3d7c5SThomas E. Spanjaard size = sizeof(struct jmicron_raid_conf);
1580c1b3d7c5SThomas E. Spanjaard break;
1581c1b3d7c5SThomas E. Spanjaard
1582c1b3d7c5SThomas E. Spanjaard case AR_F_LSIV2_RAID:
1583c1b3d7c5SThomas E. Spanjaard lba = LSIV2_LBA(rdp->disks[disk].dev);
1584c1b3d7c5SThomas E. Spanjaard size = sizeof(struct lsiv2_raid_conf);
1585c1b3d7c5SThomas E. Spanjaard break;
1586c1b3d7c5SThomas E. Spanjaard
1587c1b3d7c5SThomas E. Spanjaard case AR_F_LSIV3_RAID:
1588c1b3d7c5SThomas E. Spanjaard lba = LSIV3_LBA(rdp->disks[disk].dev);
1589c1b3d7c5SThomas E. Spanjaard size = sizeof(struct lsiv3_raid_conf);
1590c1b3d7c5SThomas E. Spanjaard break;
1591c1b3d7c5SThomas E. Spanjaard
1592c1b3d7c5SThomas E. Spanjaard case AR_F_NVIDIA_RAID:
1593c1b3d7c5SThomas E. Spanjaard lba = NVIDIA_LBA(rdp->disks[disk].dev);
1594c1b3d7c5SThomas E. Spanjaard size = sizeof(struct nvidia_raid_conf);
1595c1b3d7c5SThomas E. Spanjaard break;
1596c1b3d7c5SThomas E. Spanjaard
1597c1b3d7c5SThomas E. Spanjaard case AR_F_FREEBSD_RAID:
1598c1b3d7c5SThomas E. Spanjaard case AR_F_PROMISE_RAID:
1599c1b3d7c5SThomas E. Spanjaard lba = PROMISE_LBA(rdp->disks[disk].dev);
1600c1b3d7c5SThomas E. Spanjaard size = sizeof(struct promise_raid_conf);
1601c1b3d7c5SThomas E. Spanjaard break;
1602c1b3d7c5SThomas E. Spanjaard
1603c1b3d7c5SThomas E. Spanjaard case AR_F_SII_RAID:
1604c1b3d7c5SThomas E. Spanjaard lba = SII_LBA(rdp->disks[disk].dev);
1605c1b3d7c5SThomas E. Spanjaard size = sizeof(struct sii_raid_conf);
1606c1b3d7c5SThomas E. Spanjaard break;
1607c1b3d7c5SThomas E. Spanjaard
1608c1b3d7c5SThomas E. Spanjaard case AR_F_SIS_RAID:
1609c1b3d7c5SThomas E. Spanjaard lba = SIS_LBA(rdp->disks[disk].dev);
1610c1b3d7c5SThomas E. Spanjaard size = sizeof(struct sis_raid_conf);
1611c1b3d7c5SThomas E. Spanjaard break;
1612c1b3d7c5SThomas E. Spanjaard
1613c1b3d7c5SThomas E. Spanjaard case AR_F_VIA_RAID:
1614c1b3d7c5SThomas E. Spanjaard lba = VIA_LBA(rdp->disks[disk].dev);
1615c1b3d7c5SThomas E. Spanjaard size = sizeof(struct via_raid_conf);
1616c1b3d7c5SThomas E. Spanjaard break;
1617c1b3d7c5SThomas E. Spanjaard
1618c1b3d7c5SThomas E. Spanjaard default:
1619e3869ec7SSascha Wildner kprintf("ar%d: wiping of %s metadata is NOT supported yet\n",
1620c1b3d7c5SThomas E. Spanjaard rdp->lun, ata_raid_format(rdp));
1621c1b3d7c5SThomas E. Spanjaard return ENXIO;
1622c1b3d7c5SThomas E. Spanjaard }
1623978400d3SSascha Wildner meta = kmalloc(size, M_AR, M_WAITOK | M_ZERO);
1624c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(rdp->disks[disk].dev, lba, meta, size,
1625c1b3d7c5SThomas E. Spanjaard ATA_R_WRITE | ATA_R_DIRECT)) {
1626c1b3d7c5SThomas E. Spanjaard device_printf(rdp->disks[disk].dev, "wipe metadata failed\n");
1627c1b3d7c5SThomas E. Spanjaard error = EIO;
1628c1b3d7c5SThomas E. Spanjaard }
1629d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
1630c1b3d7c5SThomas E. Spanjaard }
1631c1b3d7c5SThomas E. Spanjaard }
1632c1b3d7c5SThomas E. Spanjaard return error;
1633c1b3d7c5SThomas E. Spanjaard }
1634c1b3d7c5SThomas E. Spanjaard
1635c1b3d7c5SThomas E. Spanjaard /* Adaptec HostRAID Metadata */
1636c1b3d7c5SThomas E. Spanjaard static int
ata_raid_adaptec_read_meta(device_t dev,struct ar_softc ** raidp)1637c1b3d7c5SThomas E. Spanjaard ata_raid_adaptec_read_meta(device_t dev, struct ar_softc **raidp)
1638c1b3d7c5SThomas E. Spanjaard {
1639c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
1640c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
1641c1b3d7c5SThomas E. Spanjaard struct adaptec_raid_conf *meta;
1642c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid;
1643c1b3d7c5SThomas E. Spanjaard int array, disk, retval = 0;
1644c1b3d7c5SThomas E. Spanjaard
1645978400d3SSascha Wildner meta = (struct adaptec_raid_conf *)
1646978400d3SSascha Wildner kmalloc(sizeof(struct adaptec_raid_conf), M_AR, M_WAITOK | M_ZERO);
1647c1b3d7c5SThomas E. Spanjaard
1648c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, ADP_LBA(parent),
1649c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct adaptec_raid_conf), ATA_R_READ)) {
1650c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
1651c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Adaptec read metadata failed\n");
1652c1b3d7c5SThomas E. Spanjaard goto adaptec_out;
1653c1b3d7c5SThomas E. Spanjaard }
1654c1b3d7c5SThomas E. Spanjaard
1655c1b3d7c5SThomas E. Spanjaard /* check if this is a Adaptec RAID struct */
1656c1b3d7c5SThomas E. Spanjaard if (meta->magic_0 != ADP_MAGIC_0 || meta->magic_3 != ADP_MAGIC_3) {
1657c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
1658c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Adaptec check1 failed\n");
1659c1b3d7c5SThomas E. Spanjaard goto adaptec_out;
1660c1b3d7c5SThomas E. Spanjaard }
1661c1b3d7c5SThomas E. Spanjaard
1662c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
1663c1b3d7c5SThomas E. Spanjaard ata_raid_adaptec_print_meta(meta);
1664c1b3d7c5SThomas E. Spanjaard
1665c1b3d7c5SThomas E. Spanjaard /* now convert Adaptec metadata into our generic form */
1666c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
1667c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
1668c1b3d7c5SThomas E. Spanjaard raidp[array] =
1669d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
1670d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
1671c1b3d7c5SThomas E. Spanjaard }
1672c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
1673c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_ADAPTEC_RAID))
1674c1b3d7c5SThomas E. Spanjaard continue;
1675c1b3d7c5SThomas E. Spanjaard
1676c1b3d7c5SThomas E. Spanjaard if (raid->magic_0 && raid->magic_0 != meta->configs[0].magic_0)
1677c1b3d7c5SThomas E. Spanjaard continue;
1678c1b3d7c5SThomas E. Spanjaard
1679c1b3d7c5SThomas E. Spanjaard if (!meta->generation || be32toh(meta->generation) > raid->generation) {
1680c1b3d7c5SThomas E. Spanjaard switch (meta->configs[0].type) {
1681c1b3d7c5SThomas E. Spanjaard case ADP_T_RAID0:
1682c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->configs[0].magic_0;
1683c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
1684c1b3d7c5SThomas E. Spanjaard raid->interleave = 1 << (meta->configs[0].stripe_shift >> 1);
1685c1b3d7c5SThomas E. Spanjaard raid->width = be16toh(meta->configs[0].total_disks);
1686c1b3d7c5SThomas E. Spanjaard break;
1687c1b3d7c5SThomas E. Spanjaard
1688c1b3d7c5SThomas E. Spanjaard case ADP_T_RAID1:
1689c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->configs[0].magic_0;
1690c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
1691c1b3d7c5SThomas E. Spanjaard raid->width = be16toh(meta->configs[0].total_disks) / 2;
1692c1b3d7c5SThomas E. Spanjaard break;
1693c1b3d7c5SThomas E. Spanjaard
1694c1b3d7c5SThomas E. Spanjaard default:
1695c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Adaptec unknown RAID type 0x%02x\n",
1696c1b3d7c5SThomas E. Spanjaard meta->configs[0].type);
1697d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
1698c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
1699c1b3d7c5SThomas E. Spanjaard goto adaptec_out;
1700c1b3d7c5SThomas E. Spanjaard }
1701c1b3d7c5SThomas E. Spanjaard
1702c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_ADAPTEC_RAID;
1703c1b3d7c5SThomas E. Spanjaard raid->generation = be32toh(meta->generation);
1704c1b3d7c5SThomas E. Spanjaard raid->total_disks = be16toh(meta->configs[0].total_disks);
1705c1b3d7c5SThomas E. Spanjaard raid->total_sectors = be32toh(meta->configs[0].sectors);
1706c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
1707c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
1708c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
1709c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
1710c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = 0;
1711c1b3d7c5SThomas E. Spanjaard raid->lun = array;
1712c1b3d7c5SThomas E. Spanjaard strncpy(raid->name, meta->configs[0].name,
1713c1b3d7c5SThomas E. Spanjaard min(sizeof(raid->name), sizeof(meta->configs[0].name)));
1714c1b3d7c5SThomas E. Spanjaard
1715c1b3d7c5SThomas E. Spanjaard /* clear out any old info */
1716c1b3d7c5SThomas E. Spanjaard if (raid->generation) {
1717c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < raid->total_disks; disk++) {
1718c1b3d7c5SThomas E. Spanjaard raid->disks[disk].dev = NULL;
1719c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags = 0;
1720c1b3d7c5SThomas E. Spanjaard }
1721c1b3d7c5SThomas E. Spanjaard }
1722c1b3d7c5SThomas E. Spanjaard }
1723c1b3d7c5SThomas E. Spanjaard if (be32toh(meta->generation) >= raid->generation) {
1724c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev = device_get_softc(parent);
1725c1b3d7c5SThomas E. Spanjaard struct ata_channel *ch = device_get_softc(GRANDPARENT(dev));
17262458a87aSzrj int disk_number =
17272458a87aSzrj (ch->unit << !(ch->flags & ATA_NO_SLAVE)) + atadev->unit;
1728c1b3d7c5SThomas E. Spanjaard
1729c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].dev = parent;
1730c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].sectors =
1731c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[disk_number + 1].sectors);
1732c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags =
1733c1b3d7c5SThomas E. Spanjaard (AR_DF_ONLINE | AR_DF_PRESENT | AR_DF_ASSIGNED);
1734c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
1735c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk_number;
1736c1b3d7c5SThomas E. Spanjaard retval = 1;
1737c1b3d7c5SThomas E. Spanjaard }
1738c1b3d7c5SThomas E. Spanjaard break;
1739c1b3d7c5SThomas E. Spanjaard }
1740c1b3d7c5SThomas E. Spanjaard
1741c1b3d7c5SThomas E. Spanjaard adaptec_out:
1742d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
1743c1b3d7c5SThomas E. Spanjaard return retval;
1744c1b3d7c5SThomas E. Spanjaard }
1745c1b3d7c5SThomas E. Spanjaard
1746c1b3d7c5SThomas E. Spanjaard /* Highpoint V2 RocketRAID Metadata */
1747c1b3d7c5SThomas E. Spanjaard static int
ata_raid_hptv2_read_meta(device_t dev,struct ar_softc ** raidp)1748c1b3d7c5SThomas E. Spanjaard ata_raid_hptv2_read_meta(device_t dev, struct ar_softc **raidp)
1749c1b3d7c5SThomas E. Spanjaard {
1750c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
1751c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
1752c1b3d7c5SThomas E. Spanjaard struct hptv2_raid_conf *meta;
1753c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
1754c1b3d7c5SThomas E. Spanjaard int array, disk_number = 0, retval = 0;
1755c1b3d7c5SThomas E. Spanjaard
1756978400d3SSascha Wildner meta = (struct hptv2_raid_conf *)kmalloc(sizeof(struct hptv2_raid_conf),
1757978400d3SSascha Wildner M_AR, M_WAITOK | M_ZERO);
1758c1b3d7c5SThomas E. Spanjaard
1759c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, HPTV2_LBA(parent),
1760c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct hptv2_raid_conf), ATA_R_READ)) {
1761c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
1762c1b3d7c5SThomas E. Spanjaard device_printf(parent, "HighPoint (v2) read metadata failed\n");
1763c1b3d7c5SThomas E. Spanjaard goto hptv2_out;
1764c1b3d7c5SThomas E. Spanjaard }
1765c1b3d7c5SThomas E. Spanjaard
1766c1b3d7c5SThomas E. Spanjaard /* check if this is a HighPoint v2 RAID struct */
1767c1b3d7c5SThomas E. Spanjaard if (meta->magic != HPTV2_MAGIC_OK && meta->magic != HPTV2_MAGIC_BAD) {
1768c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
1769c1b3d7c5SThomas E. Spanjaard device_printf(parent, "HighPoint (v2) check1 failed\n");
1770c1b3d7c5SThomas E. Spanjaard goto hptv2_out;
1771c1b3d7c5SThomas E. Spanjaard }
1772c1b3d7c5SThomas E. Spanjaard
1773c1b3d7c5SThomas E. Spanjaard /* is this disk defined, or an old leftover/spare ? */
1774c1b3d7c5SThomas E. Spanjaard if (!meta->magic_0) {
1775c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
1776c1b3d7c5SThomas E. Spanjaard device_printf(parent, "HighPoint (v2) check2 failed\n");
1777c1b3d7c5SThomas E. Spanjaard goto hptv2_out;
1778c1b3d7c5SThomas E. Spanjaard }
1779c1b3d7c5SThomas E. Spanjaard
1780c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
1781c1b3d7c5SThomas E. Spanjaard ata_raid_hptv2_print_meta(meta);
1782c1b3d7c5SThomas E. Spanjaard
1783c1b3d7c5SThomas E. Spanjaard /* now convert HighPoint (v2) metadata into our generic form */
1784c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
1785c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
1786c1b3d7c5SThomas E. Spanjaard raidp[array] =
1787d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
1788d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
1789c1b3d7c5SThomas E. Spanjaard }
1790c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
1791c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_HPTV2_RAID))
1792c1b3d7c5SThomas E. Spanjaard continue;
1793c1b3d7c5SThomas E. Spanjaard
1794c1b3d7c5SThomas E. Spanjaard switch (meta->type) {
1795c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID0:
1796c1b3d7c5SThomas E. Spanjaard if ((meta->order & (HPTV2_O_RAID0|HPTV2_O_OK)) ==
1797c1b3d7c5SThomas E. Spanjaard (HPTV2_O_RAID0|HPTV2_O_OK))
1798c1b3d7c5SThomas E. Spanjaard goto highpoint_raid1;
1799c1b3d7c5SThomas E. Spanjaard if (meta->order & (HPTV2_O_RAID0 | HPTV2_O_RAID1))
1800c1b3d7c5SThomas E. Spanjaard goto highpoint_raid01;
1801c1b3d7c5SThomas E. Spanjaard if (raid->magic_0 && raid->magic_0 != meta->magic_0)
1802c1b3d7c5SThomas E. Spanjaard continue;
1803c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->magic_0;
1804c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
1805c1b3d7c5SThomas E. Spanjaard raid->interleave = 1 << meta->stripe_shift;
1806c1b3d7c5SThomas E. Spanjaard disk_number = meta->disk_number;
1807c1b3d7c5SThomas E. Spanjaard if (!(meta->order & HPTV2_O_OK))
1808c1b3d7c5SThomas E. Spanjaard meta->magic = 0; /* mark bad */
1809c1b3d7c5SThomas E. Spanjaard break;
1810c1b3d7c5SThomas E. Spanjaard
1811c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID1:
1812c1b3d7c5SThomas E. Spanjaard highpoint_raid1:
1813c1b3d7c5SThomas E. Spanjaard if (raid->magic_0 && raid->magic_0 != meta->magic_0)
1814c1b3d7c5SThomas E. Spanjaard continue;
1815c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->magic_0;
1816c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
1817c1b3d7c5SThomas E. Spanjaard disk_number = (meta->disk_number > 0);
1818c1b3d7c5SThomas E. Spanjaard break;
1819c1b3d7c5SThomas E. Spanjaard
1820c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID01_RAID0:
1821c1b3d7c5SThomas E. Spanjaard highpoint_raid01:
1822c1b3d7c5SThomas E. Spanjaard if (meta->order & HPTV2_O_RAID0) {
1823c1b3d7c5SThomas E. Spanjaard if ((raid->magic_0 && raid->magic_0 != meta->magic_0) ||
1824c1b3d7c5SThomas E. Spanjaard (raid->magic_1 && raid->magic_1 != meta->magic_1))
1825c1b3d7c5SThomas E. Spanjaard continue;
1826c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->magic_0;
1827c1b3d7c5SThomas E. Spanjaard raid->magic_1 = meta->magic_1;
1828c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
1829c1b3d7c5SThomas E. Spanjaard raid->interleave = 1 << meta->stripe_shift;
1830c1b3d7c5SThomas E. Spanjaard disk_number = meta->disk_number;
1831c1b3d7c5SThomas E. Spanjaard }
1832c1b3d7c5SThomas E. Spanjaard else {
1833c1b3d7c5SThomas E. Spanjaard if (raid->magic_1 && raid->magic_1 != meta->magic_1)
1834c1b3d7c5SThomas E. Spanjaard continue;
1835c1b3d7c5SThomas E. Spanjaard raid->magic_1 = meta->magic_1;
1836c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
1837c1b3d7c5SThomas E. Spanjaard raid->interleave = 1 << meta->stripe_shift;
1838c1b3d7c5SThomas E. Spanjaard disk_number = meta->disk_number + meta->array_width;
1839c1b3d7c5SThomas E. Spanjaard if (!(meta->order & HPTV2_O_RAID1))
1840c1b3d7c5SThomas E. Spanjaard meta->magic = 0; /* mark bad */
1841c1b3d7c5SThomas E. Spanjaard }
1842c1b3d7c5SThomas E. Spanjaard break;
1843c1b3d7c5SThomas E. Spanjaard
1844c1b3d7c5SThomas E. Spanjaard case HPTV2_T_SPAN:
1845c1b3d7c5SThomas E. Spanjaard if (raid->magic_0 && raid->magic_0 != meta->magic_0)
1846c1b3d7c5SThomas E. Spanjaard continue;
1847c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->magic_0;
1848c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_SPAN;
1849c1b3d7c5SThomas E. Spanjaard disk_number = meta->disk_number;
1850c1b3d7c5SThomas E. Spanjaard break;
1851c1b3d7c5SThomas E. Spanjaard
1852c1b3d7c5SThomas E. Spanjaard default:
1853c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Highpoint (v2) unknown RAID type 0x%02x\n",
1854c1b3d7c5SThomas E. Spanjaard meta->type);
1855d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
1856c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
1857c1b3d7c5SThomas E. Spanjaard goto hptv2_out;
1858c1b3d7c5SThomas E. Spanjaard }
1859c1b3d7c5SThomas E. Spanjaard
1860c1b3d7c5SThomas E. Spanjaard raid->format |= AR_F_HPTV2_RAID;
1861c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].dev = parent;
1862c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags = (AR_DF_PRESENT | AR_DF_ASSIGNED);
1863c1b3d7c5SThomas E. Spanjaard raid->lun = array;
1864c1b3d7c5SThomas E. Spanjaard strncpy(raid->name, meta->name_1,
1865c1b3d7c5SThomas E. Spanjaard min(sizeof(raid->name), sizeof(meta->name_1)));
1866c1b3d7c5SThomas E. Spanjaard if (meta->magic == HPTV2_MAGIC_OK) {
1867c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags |= AR_DF_ONLINE;
1868c1b3d7c5SThomas E. Spanjaard raid->width = meta->array_width;
1869c1b3d7c5SThomas E. Spanjaard raid->total_sectors = meta->total_sectors;
1870c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
1871c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
1872c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
1873c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = HPTV2_LBA(parent) + 1;
1874c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = meta->rebuild_lba;
1875c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].sectors =
1876c1b3d7c5SThomas E. Spanjaard raid->total_sectors / raid->width;
1877c1b3d7c5SThomas E. Spanjaard }
1878c1b3d7c5SThomas E. Spanjaard else
1879c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags &= ~AR_DF_ONLINE;
1880c1b3d7c5SThomas E. Spanjaard
1881c1b3d7c5SThomas E. Spanjaard if ((raid->type & AR_T_RAID0) && (raid->total_disks < raid->width))
1882c1b3d7c5SThomas E. Spanjaard raid->total_disks = raid->width;
1883c1b3d7c5SThomas E. Spanjaard if (disk_number >= raid->total_disks)
1884c1b3d7c5SThomas E. Spanjaard raid->total_disks = disk_number + 1;
1885c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
1886c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk_number;
1887c1b3d7c5SThomas E. Spanjaard retval = 1;
1888c1b3d7c5SThomas E. Spanjaard break;
1889c1b3d7c5SThomas E. Spanjaard }
1890c1b3d7c5SThomas E. Spanjaard
1891c1b3d7c5SThomas E. Spanjaard hptv2_out:
1892d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
1893c1b3d7c5SThomas E. Spanjaard return retval;
1894c1b3d7c5SThomas E. Spanjaard }
1895c1b3d7c5SThomas E. Spanjaard
1896c1b3d7c5SThomas E. Spanjaard static int
ata_raid_hptv2_write_meta(struct ar_softc * rdp)1897c1b3d7c5SThomas E. Spanjaard ata_raid_hptv2_write_meta(struct ar_softc *rdp)
1898c1b3d7c5SThomas E. Spanjaard {
1899c1b3d7c5SThomas E. Spanjaard struct hptv2_raid_conf *meta;
1900c1b3d7c5SThomas E. Spanjaard struct timeval timestamp;
1901c1b3d7c5SThomas E. Spanjaard int disk, error = 0;
1902c1b3d7c5SThomas E. Spanjaard
1903978400d3SSascha Wildner meta = (struct hptv2_raid_conf *)kmalloc(sizeof(struct hptv2_raid_conf),
1904978400d3SSascha Wildner M_AR, M_WAITOK | M_ZERO);
1905c1b3d7c5SThomas E. Spanjaard
1906c1b3d7c5SThomas E. Spanjaard microtime(×tamp);
1907c1b3d7c5SThomas E. Spanjaard rdp->magic_0 = timestamp.tv_sec + 2;
1908c1b3d7c5SThomas E. Spanjaard rdp->magic_1 = timestamp.tv_sec;
1909c1b3d7c5SThomas E. Spanjaard
1910c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
1911c1b3d7c5SThomas E. Spanjaard if ((rdp->disks[disk].flags & (AR_DF_PRESENT | AR_DF_ONLINE)) ==
1912c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ONLINE))
1913c1b3d7c5SThomas E. Spanjaard meta->magic = HPTV2_MAGIC_OK;
1914c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].flags & AR_DF_ASSIGNED) {
1915c1b3d7c5SThomas E. Spanjaard meta->magic_0 = rdp->magic_0;
1916c1b3d7c5SThomas E. Spanjaard if (strlen(rdp->name))
1917c1b3d7c5SThomas E. Spanjaard strncpy(meta->name_1, rdp->name, sizeof(meta->name_1));
1918c1b3d7c5SThomas E. Spanjaard else
1919c1b3d7c5SThomas E. Spanjaard strcpy(meta->name_1, "FreeBSD");
1920c1b3d7c5SThomas E. Spanjaard }
1921c1b3d7c5SThomas E. Spanjaard meta->disk_number = disk;
1922c1b3d7c5SThomas E. Spanjaard
1923c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
1924c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
1925c1b3d7c5SThomas E. Spanjaard meta->type = HPTV2_T_RAID0;
1926c1b3d7c5SThomas E. Spanjaard strcpy(meta->name_2, "RAID 0");
1927c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].flags & AR_DF_ONLINE)
1928c1b3d7c5SThomas E. Spanjaard meta->order = HPTV2_O_OK;
1929c1b3d7c5SThomas E. Spanjaard break;
1930c1b3d7c5SThomas E. Spanjaard
1931c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
1932c1b3d7c5SThomas E. Spanjaard meta->type = HPTV2_T_RAID0;
1933c1b3d7c5SThomas E. Spanjaard strcpy(meta->name_2, "RAID 1");
1934c1b3d7c5SThomas E. Spanjaard meta->disk_number = (disk < rdp->width) ? disk : disk + 5;
1935c1b3d7c5SThomas E. Spanjaard meta->order = HPTV2_O_RAID0 | HPTV2_O_OK;
1936c1b3d7c5SThomas E. Spanjaard break;
1937c1b3d7c5SThomas E. Spanjaard
1938c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
1939c1b3d7c5SThomas E. Spanjaard meta->type = HPTV2_T_RAID01_RAID0;
1940c1b3d7c5SThomas E. Spanjaard strcpy(meta->name_2, "RAID 0+1");
1941c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].flags & AR_DF_ONLINE) {
1942c1b3d7c5SThomas E. Spanjaard if (disk < rdp->width) {
1943c1b3d7c5SThomas E. Spanjaard meta->order = (HPTV2_O_RAID0 | HPTV2_O_RAID1);
1944c1b3d7c5SThomas E. Spanjaard meta->magic_0 = rdp->magic_0 - 1;
1945c1b3d7c5SThomas E. Spanjaard }
1946c1b3d7c5SThomas E. Spanjaard else {
1947c1b3d7c5SThomas E. Spanjaard meta->order = HPTV2_O_RAID1;
1948c1b3d7c5SThomas E. Spanjaard meta->disk_number -= rdp->width;
1949c1b3d7c5SThomas E. Spanjaard }
1950c1b3d7c5SThomas E. Spanjaard }
1951c1b3d7c5SThomas E. Spanjaard else
1952c1b3d7c5SThomas E. Spanjaard meta->magic_0 = rdp->magic_0 - 1;
1953c1b3d7c5SThomas E. Spanjaard meta->magic_1 = rdp->magic_1;
1954c1b3d7c5SThomas E. Spanjaard break;
1955c1b3d7c5SThomas E. Spanjaard
1956c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN:
1957c1b3d7c5SThomas E. Spanjaard meta->type = HPTV2_T_SPAN;
1958c1b3d7c5SThomas E. Spanjaard strcpy(meta->name_2, "SPAN");
1959c1b3d7c5SThomas E. Spanjaard break;
1960c1b3d7c5SThomas E. Spanjaard default:
1961d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
1962c1b3d7c5SThomas E. Spanjaard return ENODEV;
1963c1b3d7c5SThomas E. Spanjaard }
1964c1b3d7c5SThomas E. Spanjaard
1965c1b3d7c5SThomas E. Spanjaard meta->array_width = rdp->width;
1966c1b3d7c5SThomas E. Spanjaard meta->stripe_shift = (rdp->width > 1) ? (ffs(rdp->interleave)-1) : 0;
1967c1b3d7c5SThomas E. Spanjaard meta->total_sectors = rdp->total_sectors;
1968c1b3d7c5SThomas E. Spanjaard meta->rebuild_lba = rdp->rebuild_lba;
1969c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
1970c1b3d7c5SThomas E. Spanjaard ata_raid_hptv2_print_meta(meta);
1971c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
1972c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(rdp->disks[disk].dev,
1973c1b3d7c5SThomas E. Spanjaard HPTV2_LBA(rdp->disks[disk].dev), meta,
1974c1b3d7c5SThomas E. Spanjaard sizeof(struct promise_raid_conf),
1975c1b3d7c5SThomas E. Spanjaard ATA_R_WRITE | ATA_R_DIRECT)) {
1976c1b3d7c5SThomas E. Spanjaard device_printf(rdp->disks[disk].dev, "write metadata failed\n");
1977c1b3d7c5SThomas E. Spanjaard error = EIO;
1978c1b3d7c5SThomas E. Spanjaard }
1979c1b3d7c5SThomas E. Spanjaard }
1980c1b3d7c5SThomas E. Spanjaard }
1981d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
1982c1b3d7c5SThomas E. Spanjaard return error;
1983c1b3d7c5SThomas E. Spanjaard }
1984c1b3d7c5SThomas E. Spanjaard
1985c1b3d7c5SThomas E. Spanjaard /* Highpoint V3 RocketRAID Metadata */
1986c1b3d7c5SThomas E. Spanjaard static int
ata_raid_hptv3_read_meta(device_t dev,struct ar_softc ** raidp)1987c1b3d7c5SThomas E. Spanjaard ata_raid_hptv3_read_meta(device_t dev, struct ar_softc **raidp)
1988c1b3d7c5SThomas E. Spanjaard {
1989c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
1990c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
1991c1b3d7c5SThomas E. Spanjaard struct hptv3_raid_conf *meta;
1992c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
1993c1b3d7c5SThomas E. Spanjaard int array, disk_number, retval = 0;
1994c1b3d7c5SThomas E. Spanjaard
1995978400d3SSascha Wildner meta = (struct hptv3_raid_conf *)kmalloc(sizeof(struct hptv3_raid_conf),
1996978400d3SSascha Wildner M_AR, M_WAITOK | M_ZERO);
1997c1b3d7c5SThomas E. Spanjaard
1998c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, HPTV3_LBA(parent),
1999c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct hptv3_raid_conf), ATA_R_READ)) {
2000c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2001c1b3d7c5SThomas E. Spanjaard device_printf(parent, "HighPoint (v3) read metadata failed\n");
2002c1b3d7c5SThomas E. Spanjaard goto hptv3_out;
2003c1b3d7c5SThomas E. Spanjaard }
2004c1b3d7c5SThomas E. Spanjaard
2005c1b3d7c5SThomas E. Spanjaard /* check if this is a HighPoint v3 RAID struct */
2006c1b3d7c5SThomas E. Spanjaard if (meta->magic != HPTV3_MAGIC) {
2007c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2008c1b3d7c5SThomas E. Spanjaard device_printf(parent, "HighPoint (v3) check1 failed\n");
2009c1b3d7c5SThomas E. Spanjaard goto hptv3_out;
2010c1b3d7c5SThomas E. Spanjaard }
2011c1b3d7c5SThomas E. Spanjaard
2012c1b3d7c5SThomas E. Spanjaard /* check if there are any config_entries */
2013c1b3d7c5SThomas E. Spanjaard if (meta->config_entries < 1) {
2014c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2015c1b3d7c5SThomas E. Spanjaard device_printf(parent, "HighPoint (v3) check2 failed\n");
2016c1b3d7c5SThomas E. Spanjaard goto hptv3_out;
2017c1b3d7c5SThomas E. Spanjaard }
2018c1b3d7c5SThomas E. Spanjaard
2019c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2020c1b3d7c5SThomas E. Spanjaard ata_raid_hptv3_print_meta(meta);
2021c1b3d7c5SThomas E. Spanjaard
2022c1b3d7c5SThomas E. Spanjaard /* now convert HighPoint (v3) metadata into our generic form */
2023c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
2024c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
2025c1b3d7c5SThomas E. Spanjaard raidp[array] =
2026d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
2027d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
2028c1b3d7c5SThomas E. Spanjaard }
2029c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
2030c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_HPTV3_RAID))
2031c1b3d7c5SThomas E. Spanjaard continue;
2032c1b3d7c5SThomas E. Spanjaard
2033c1b3d7c5SThomas E. Spanjaard if ((raid->format & AR_F_HPTV3_RAID) && raid->magic_0 != meta->magic_0)
2034c1b3d7c5SThomas E. Spanjaard continue;
2035c1b3d7c5SThomas E. Spanjaard
2036c1b3d7c5SThomas E. Spanjaard switch (meta->configs[0].type) {
2037c1b3d7c5SThomas E. Spanjaard case HPTV3_T_RAID0:
2038c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
2039c1b3d7c5SThomas E. Spanjaard raid->width = meta->configs[0].total_disks;
2040c1b3d7c5SThomas E. Spanjaard disk_number = meta->configs[0].disk_number;
2041c1b3d7c5SThomas E. Spanjaard break;
2042c1b3d7c5SThomas E. Spanjaard
2043c1b3d7c5SThomas E. Spanjaard case HPTV3_T_RAID1:
2044c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
2045c1b3d7c5SThomas E. Spanjaard raid->width = meta->configs[0].total_disks / 2;
2046c1b3d7c5SThomas E. Spanjaard disk_number = meta->configs[0].disk_number;
2047c1b3d7c5SThomas E. Spanjaard break;
2048c1b3d7c5SThomas E. Spanjaard
2049c1b3d7c5SThomas E. Spanjaard case HPTV3_T_RAID5:
2050c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID5;
2051c1b3d7c5SThomas E. Spanjaard raid->width = meta->configs[0].total_disks;
2052c1b3d7c5SThomas E. Spanjaard disk_number = meta->configs[0].disk_number;
2053c1b3d7c5SThomas E. Spanjaard break;
2054c1b3d7c5SThomas E. Spanjaard
2055c1b3d7c5SThomas E. Spanjaard case HPTV3_T_SPAN:
2056c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_SPAN;
2057c1b3d7c5SThomas E. Spanjaard raid->width = meta->configs[0].total_disks;
2058c1b3d7c5SThomas E. Spanjaard disk_number = meta->configs[0].disk_number;
2059c1b3d7c5SThomas E. Spanjaard break;
2060c1b3d7c5SThomas E. Spanjaard
2061c1b3d7c5SThomas E. Spanjaard default:
2062c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Highpoint (v3) unknown RAID type 0x%02x\n",
2063c1b3d7c5SThomas E. Spanjaard meta->configs[0].type);
2064d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
2065c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
2066c1b3d7c5SThomas E. Spanjaard goto hptv3_out;
2067c1b3d7c5SThomas E. Spanjaard }
2068c1b3d7c5SThomas E. Spanjaard if (meta->config_entries == 2) {
2069c1b3d7c5SThomas E. Spanjaard switch (meta->configs[1].type) {
2070c1b3d7c5SThomas E. Spanjaard case HPTV3_T_RAID1:
2071c1b3d7c5SThomas E. Spanjaard if (raid->type == AR_T_RAID0) {
2072c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
2073c1b3d7c5SThomas E. Spanjaard disk_number = meta->configs[1].disk_number +
2074c1b3d7c5SThomas E. Spanjaard (meta->configs[0].disk_number << 1);
2075c1b3d7c5SThomas E. Spanjaard break;
2076c1b3d7c5SThomas E. Spanjaard }
2077c1b3d7c5SThomas E. Spanjaard default:
2078c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Highpoint (v3) unknown level 2 0x%02x\n",
2079c1b3d7c5SThomas E. Spanjaard meta->configs[1].type);
2080d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
2081c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
2082c1b3d7c5SThomas E. Spanjaard goto hptv3_out;
2083c1b3d7c5SThomas E. Spanjaard }
2084c1b3d7c5SThomas E. Spanjaard }
2085c1b3d7c5SThomas E. Spanjaard
2086c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->magic_0;
2087c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_HPTV3_RAID;
2088c1b3d7c5SThomas E. Spanjaard raid->generation = meta->timestamp;
2089c1b3d7c5SThomas E. Spanjaard raid->interleave = 1 << meta->configs[0].stripe_shift;
2090c1b3d7c5SThomas E. Spanjaard raid->total_disks = meta->configs[0].total_disks +
2091c1b3d7c5SThomas E. Spanjaard meta->configs[1].total_disks;
2092c1b3d7c5SThomas E. Spanjaard raid->total_sectors = meta->configs[0].total_sectors +
2093c1b3d7c5SThomas E. Spanjaard ((u_int64_t)meta->configs_high[0].total_sectors << 32);
2094c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
2095c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
2096c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
2097c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
2098c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = meta->configs[0].rebuild_lba +
2099c1b3d7c5SThomas E. Spanjaard ((u_int64_t)meta->configs_high[0].rebuild_lba << 32);
2100c1b3d7c5SThomas E. Spanjaard raid->lun = array;
2101c1b3d7c5SThomas E. Spanjaard strncpy(raid->name, meta->name,
2102c1b3d7c5SThomas E. Spanjaard min(sizeof(raid->name), sizeof(meta->name)));
2103c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].sectors = raid->total_sectors /
2104c1b3d7c5SThomas E. Spanjaard (raid->type == AR_T_RAID5 ? raid->width - 1 : raid->width);
2105c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].dev = parent;
2106c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags =
2107c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_ONLINE);
2108c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
2109c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk_number;
2110c1b3d7c5SThomas E. Spanjaard retval = 1;
2111c1b3d7c5SThomas E. Spanjaard break;
2112c1b3d7c5SThomas E. Spanjaard }
2113c1b3d7c5SThomas E. Spanjaard
2114c1b3d7c5SThomas E. Spanjaard hptv3_out:
2115d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2116c1b3d7c5SThomas E. Spanjaard return retval;
2117c1b3d7c5SThomas E. Spanjaard }
2118c1b3d7c5SThomas E. Spanjaard
2119c1b3d7c5SThomas E. Spanjaard /* Intel MatrixRAID Metadata */
2120c1b3d7c5SThomas E. Spanjaard static int
ata_raid_intel_read_meta(device_t dev,struct ar_softc ** raidp)2121c1b3d7c5SThomas E. Spanjaard ata_raid_intel_read_meta(device_t dev, struct ar_softc **raidp)
2122c1b3d7c5SThomas E. Spanjaard {
2123c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
2124c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
2125c1b3d7c5SThomas E. Spanjaard struct intel_raid_conf *meta;
2126c1b3d7c5SThomas E. Spanjaard struct intel_raid_mapping *map;
2127c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
2128c1b3d7c5SThomas E. Spanjaard u_int32_t checksum, *ptr;
2129c1b3d7c5SThomas E. Spanjaard int array, count, disk, volume = 1, retval = 0;
2130c1b3d7c5SThomas E. Spanjaard char *tmp;
2131c1b3d7c5SThomas E. Spanjaard
2132978400d3SSascha Wildner meta = (struct intel_raid_conf *)kmalloc(1536, M_AR, M_WAITOK | M_ZERO);
2133c1b3d7c5SThomas E. Spanjaard
2134c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, INTEL_LBA(parent), meta, 1024, ATA_R_READ)) {
2135c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2136c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Intel read metadata failed\n");
2137c1b3d7c5SThomas E. Spanjaard goto intel_out;
2138c1b3d7c5SThomas E. Spanjaard }
2139c1b3d7c5SThomas E. Spanjaard tmp = (char *)meta;
2140c1b3d7c5SThomas E. Spanjaard bcopy(tmp, tmp+1024, 512);
2141c1b3d7c5SThomas E. Spanjaard bcopy(tmp+512, tmp, 1024);
2142c1b3d7c5SThomas E. Spanjaard bzero(tmp+1024, 512);
2143c1b3d7c5SThomas E. Spanjaard
2144c1b3d7c5SThomas E. Spanjaard /* check if this is a Intel RAID struct */
2145c1b3d7c5SThomas E. Spanjaard if (strncmp(meta->intel_id, INTEL_MAGIC, strlen(INTEL_MAGIC))) {
2146c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2147c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Intel check1 failed\n");
2148c1b3d7c5SThomas E. Spanjaard goto intel_out;
2149c1b3d7c5SThomas E. Spanjaard }
2150c1b3d7c5SThomas E. Spanjaard
2151c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = (u_int32_t *)meta, count = 0;
2152c1b3d7c5SThomas E. Spanjaard count < (meta->config_size / sizeof(u_int32_t)); count++) {
2153c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
2154c1b3d7c5SThomas E. Spanjaard }
2155c1b3d7c5SThomas E. Spanjaard checksum -= meta->checksum;
2156c1b3d7c5SThomas E. Spanjaard if (checksum != meta->checksum) {
2157c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2158c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Intel check2 failed\n");
2159c1b3d7c5SThomas E. Spanjaard goto intel_out;
2160c1b3d7c5SThomas E. Spanjaard }
2161c1b3d7c5SThomas E. Spanjaard
2162c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2163c1b3d7c5SThomas E. Spanjaard ata_raid_intel_print_meta(meta);
2164c1b3d7c5SThomas E. Spanjaard
2165c1b3d7c5SThomas E. Spanjaard map = (struct intel_raid_mapping *)&meta->disk[meta->total_disks];
2166c1b3d7c5SThomas E. Spanjaard
2167c1b3d7c5SThomas E. Spanjaard /* now convert Intel metadata into our generic form */
2168c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
2169c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
2170c1b3d7c5SThomas E. Spanjaard raidp[array] =
2171d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
2172d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
2173c1b3d7c5SThomas E. Spanjaard }
2174c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
2175c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_INTEL_RAID))
2176c1b3d7c5SThomas E. Spanjaard continue;
2177c1b3d7c5SThomas E. Spanjaard
2178c1b3d7c5SThomas E. Spanjaard if ((raid->format & AR_F_INTEL_RAID) &&
2179c1b3d7c5SThomas E. Spanjaard (raid->magic_0 != meta->config_id))
2180c1b3d7c5SThomas E. Spanjaard continue;
2181c1b3d7c5SThomas E. Spanjaard
2182c1b3d7c5SThomas E. Spanjaard /*
2183c1b3d7c5SThomas E. Spanjaard * update our knowledge about the array config based on generation
2184c1b3d7c5SThomas E. Spanjaard * NOTE: there can be multiple volumes on a disk set
2185c1b3d7c5SThomas E. Spanjaard */
2186c1b3d7c5SThomas E. Spanjaard if (!meta->generation || meta->generation > raid->generation) {
2187c1b3d7c5SThomas E. Spanjaard switch (map->type) {
2188c1b3d7c5SThomas E. Spanjaard case INTEL_T_RAID0:
2189c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
2190c1b3d7c5SThomas E. Spanjaard raid->width = map->total_disks;
2191c1b3d7c5SThomas E. Spanjaard break;
2192c1b3d7c5SThomas E. Spanjaard
2193c1b3d7c5SThomas E. Spanjaard case INTEL_T_RAID1:
2194c1b3d7c5SThomas E. Spanjaard if (map->total_disks == 4)
2195c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
2196c1b3d7c5SThomas E. Spanjaard else
2197c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
2198c1b3d7c5SThomas E. Spanjaard raid->width = map->total_disks / 2;
2199c1b3d7c5SThomas E. Spanjaard break;
2200c1b3d7c5SThomas E. Spanjaard
2201c1b3d7c5SThomas E. Spanjaard case INTEL_T_RAID5:
2202c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID5;
2203c1b3d7c5SThomas E. Spanjaard raid->width = map->total_disks;
2204c1b3d7c5SThomas E. Spanjaard break;
2205c1b3d7c5SThomas E. Spanjaard
2206c1b3d7c5SThomas E. Spanjaard default:
2207c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Intel unknown RAID type 0x%02x\n",
2208c1b3d7c5SThomas E. Spanjaard map->type);
2209d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
2210c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
2211c1b3d7c5SThomas E. Spanjaard goto intel_out;
2212c1b3d7c5SThomas E. Spanjaard }
2213c1b3d7c5SThomas E. Spanjaard
2214c1b3d7c5SThomas E. Spanjaard switch (map->status) {
2215c1b3d7c5SThomas E. Spanjaard case INTEL_S_READY:
2216c1b3d7c5SThomas E. Spanjaard raid->status = AR_S_READY;
2217c1b3d7c5SThomas E. Spanjaard break;
2218c1b3d7c5SThomas E. Spanjaard case INTEL_S_DEGRADED:
2219c1b3d7c5SThomas E. Spanjaard raid->status |= AR_S_DEGRADED;
2220c1b3d7c5SThomas E. Spanjaard break;
2221c1b3d7c5SThomas E. Spanjaard case INTEL_S_DISABLED:
2222c1b3d7c5SThomas E. Spanjaard case INTEL_S_FAILURE:
2223c1b3d7c5SThomas E. Spanjaard raid->status = 0;
2224c1b3d7c5SThomas E. Spanjaard }
2225c1b3d7c5SThomas E. Spanjaard
2226c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->config_id;
2227c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_INTEL_RAID;
2228c1b3d7c5SThomas E. Spanjaard raid->generation = meta->generation;
2229c1b3d7c5SThomas E. Spanjaard raid->interleave = map->stripe_sectors;
2230c1b3d7c5SThomas E. Spanjaard raid->total_disks = map->total_disks;
2231c1b3d7c5SThomas E. Spanjaard raid->total_sectors = map->total_sectors;
2232c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
2233c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
2234c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
2235c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = map->offset;
2236c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = 0;
2237c1b3d7c5SThomas E. Spanjaard raid->lun = array;
2238c1b3d7c5SThomas E. Spanjaard raid->volume = volume - 1;
2239c1b3d7c5SThomas E. Spanjaard strncpy(raid->name, map->name,
2240c1b3d7c5SThomas E. Spanjaard min(sizeof(raid->name), sizeof(map->name)));
2241c1b3d7c5SThomas E. Spanjaard
2242c1b3d7c5SThomas E. Spanjaard /* clear out any old info */
2243c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < raid->total_disks; disk++) {
224460279a3cSSascha Wildner u_int disk_idx = map->disk_idx[disk] & 0xffff;
224560279a3cSSascha Wildner
2246c1b3d7c5SThomas E. Spanjaard raid->disks[disk].dev = NULL;
224760279a3cSSascha Wildner bcopy(meta->disk[disk_idx].serial,
2248c1b3d7c5SThomas E. Spanjaard raid->disks[disk].serial,
2249c1b3d7c5SThomas E. Spanjaard sizeof(raid->disks[disk].serial));
2250c1b3d7c5SThomas E. Spanjaard raid->disks[disk].sectors =
225160279a3cSSascha Wildner meta->disk[disk_idx].sectors;
2252c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags = 0;
225360279a3cSSascha Wildner if (meta->disk[disk_idx].flags & INTEL_F_ONLINE)
2254c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags |= AR_DF_ONLINE;
225560279a3cSSascha Wildner if (meta->disk[disk_idx].flags & INTEL_F_ASSIGNED)
2256c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags |= AR_DF_ASSIGNED;
225760279a3cSSascha Wildner if (meta->disk[disk_idx].flags & INTEL_F_SPARE) {
2258c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags &= ~(AR_DF_ONLINE | AR_DF_ASSIGNED);
2259c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags |= AR_DF_SPARE;
2260c1b3d7c5SThomas E. Spanjaard }
226160279a3cSSascha Wildner if (meta->disk[disk_idx].flags & INTEL_F_DOWN)
2262c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags &= ~AR_DF_ONLINE;
2263c1b3d7c5SThomas E. Spanjaard }
2264c1b3d7c5SThomas E. Spanjaard }
2265c1b3d7c5SThomas E. Spanjaard if (meta->generation >= raid->generation) {
2266c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < raid->total_disks; disk++) {
2267c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev = device_get_softc(parent);
22689243051bSzrj int len;
2269c1b3d7c5SThomas E. Spanjaard
22709243051bSzrj for (len = 0; len < sizeof(atadev->param.serial); len++) {
22719243051bSzrj if (atadev->param.serial[len] < 0x20)
22729243051bSzrj break;
22739243051bSzrj }
22749243051bSzrj len = (len > sizeof(raid->disks[disk].serial)) ?
22759243051bSzrj len - sizeof(raid->disks[disk].serial) : 0;
22769243051bSzrj if (!strncmp(raid->disks[disk].serial, atadev->param.serial + len,
2277c1b3d7c5SThomas E. Spanjaard sizeof(raid->disks[disk].serial))) {
2278c1b3d7c5SThomas E. Spanjaard raid->disks[disk].dev = parent;
2279c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags |= (AR_DF_PRESENT | AR_DF_ONLINE);
2280c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
2281c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk;
2282c1b3d7c5SThomas E. Spanjaard retval = 1;
2283c1b3d7c5SThomas E. Spanjaard }
2284c1b3d7c5SThomas E. Spanjaard }
2285c1b3d7c5SThomas E. Spanjaard }
2286c1b3d7c5SThomas E. Spanjaard else
2287c1b3d7c5SThomas E. Spanjaard goto intel_out;
2288c1b3d7c5SThomas E. Spanjaard
2289c1b3d7c5SThomas E. Spanjaard if (retval) {
2290c1b3d7c5SThomas E. Spanjaard if (volume < meta->total_volumes) {
2291c1b3d7c5SThomas E. Spanjaard map = (struct intel_raid_mapping *)
2292c1b3d7c5SThomas E. Spanjaard &map->disk_idx[map->total_disks];
2293c1b3d7c5SThomas E. Spanjaard volume++;
2294c1b3d7c5SThomas E. Spanjaard retval = 0;
2295c1b3d7c5SThomas E. Spanjaard continue;
2296c1b3d7c5SThomas E. Spanjaard }
2297c1b3d7c5SThomas E. Spanjaard break;
2298c1b3d7c5SThomas E. Spanjaard }
2299c1b3d7c5SThomas E. Spanjaard else {
2300d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
2301c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
2302c1b3d7c5SThomas E. Spanjaard if (volume == 2)
2303c1b3d7c5SThomas E. Spanjaard retval = 1;
2304c1b3d7c5SThomas E. Spanjaard }
2305c1b3d7c5SThomas E. Spanjaard }
2306c1b3d7c5SThomas E. Spanjaard
2307c1b3d7c5SThomas E. Spanjaard intel_out:
2308d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2309c1b3d7c5SThomas E. Spanjaard return retval;
2310c1b3d7c5SThomas E. Spanjaard }
2311c1b3d7c5SThomas E. Spanjaard
2312c1b3d7c5SThomas E. Spanjaard static int
ata_raid_intel_write_meta(struct ar_softc * rdp)2313c1b3d7c5SThomas E. Spanjaard ata_raid_intel_write_meta(struct ar_softc *rdp)
2314c1b3d7c5SThomas E. Spanjaard {
2315c1b3d7c5SThomas E. Spanjaard struct intel_raid_conf *meta;
2316c1b3d7c5SThomas E. Spanjaard struct intel_raid_mapping *map;
2317c1b3d7c5SThomas E. Spanjaard struct timeval timestamp;
2318c1b3d7c5SThomas E. Spanjaard u_int32_t checksum, *ptr;
2319c1b3d7c5SThomas E. Spanjaard int count, disk, error = 0;
2320c1b3d7c5SThomas E. Spanjaard char *tmp;
2321c1b3d7c5SThomas E. Spanjaard
2322978400d3SSascha Wildner meta = (struct intel_raid_conf *)kmalloc(1536, M_AR, M_WAITOK | M_ZERO);
2323c1b3d7c5SThomas E. Spanjaard
2324c1b3d7c5SThomas E. Spanjaard rdp->generation++;
23256b7bbefaSMatthew Dillon
23266b7bbefaSMatthew Dillon /* Generate a new config_id if none exists */
23276b7bbefaSMatthew Dillon if (!rdp->magic_0) {
2328c1b3d7c5SThomas E. Spanjaard microtime(×tamp);
23296b7bbefaSMatthew Dillon rdp->magic_0 = timestamp.tv_sec ^ timestamp.tv_usec;
23306b7bbefaSMatthew Dillon }
2331c1b3d7c5SThomas E. Spanjaard
2332c1b3d7c5SThomas E. Spanjaard bcopy(INTEL_MAGIC, meta->intel_id, sizeof(meta->intel_id));
2333c1b3d7c5SThomas E. Spanjaard bcopy(INTEL_VERSION_1100, meta->version, sizeof(meta->version));
23346b7bbefaSMatthew Dillon meta->config_id = rdp->magic_0;
2335c1b3d7c5SThomas E. Spanjaard meta->generation = rdp->generation;
2336c1b3d7c5SThomas E. Spanjaard meta->total_disks = rdp->total_disks;
2337c1b3d7c5SThomas E. Spanjaard meta->total_volumes = 1; /* XXX SOS */
2338c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
2339c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
2340c1b3d7c5SThomas E. Spanjaard struct ata_channel *ch =
2341c1b3d7c5SThomas E. Spanjaard device_get_softc(device_get_parent(rdp->disks[disk].dev));
2342c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev =
2343c1b3d7c5SThomas E. Spanjaard device_get_softc(rdp->disks[disk].dev);
23449243051bSzrj int len;
2345c1b3d7c5SThomas E. Spanjaard
23469243051bSzrj for (len = 0; len < sizeof(atadev->param.serial); len++) {
23479243051bSzrj if (atadev->param.serial[len] < 0x20)
23489243051bSzrj break;
23499243051bSzrj }
23509243051bSzrj len = (len > sizeof(rdp->disks[disk].serial)) ?
23519243051bSzrj len - sizeof(rdp->disks[disk].serial) : 0;
23529243051bSzrj bcopy(atadev->param.serial + len, meta->disk[disk].serial,
2353c1b3d7c5SThomas E. Spanjaard sizeof(rdp->disks[disk].serial));
2354c1b3d7c5SThomas E. Spanjaard meta->disk[disk].sectors = rdp->disks[disk].sectors;
23552458a87aSzrj meta->disk[disk].id = (ch->unit << 16) | atadev->unit;
2356c1b3d7c5SThomas E. Spanjaard }
2357c1b3d7c5SThomas E. Spanjaard else
2358c1b3d7c5SThomas E. Spanjaard meta->disk[disk].sectors = rdp->total_sectors / rdp->width;
2359c1b3d7c5SThomas E. Spanjaard meta->disk[disk].flags = 0;
2360c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].flags & AR_DF_SPARE)
2361c1b3d7c5SThomas E. Spanjaard meta->disk[disk].flags |= INTEL_F_SPARE;
2362c1b3d7c5SThomas E. Spanjaard else {
2363c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].flags & AR_DF_ONLINE)
2364c1b3d7c5SThomas E. Spanjaard meta->disk[disk].flags |= INTEL_F_ONLINE;
2365c1b3d7c5SThomas E. Spanjaard else
2366c1b3d7c5SThomas E. Spanjaard meta->disk[disk].flags |= INTEL_F_DOWN;
2367c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].flags & AR_DF_ASSIGNED)
2368c1b3d7c5SThomas E. Spanjaard meta->disk[disk].flags |= INTEL_F_ASSIGNED;
2369c1b3d7c5SThomas E. Spanjaard }
2370c1b3d7c5SThomas E. Spanjaard }
2371c1b3d7c5SThomas E. Spanjaard map = (struct intel_raid_mapping *)&meta->disk[meta->total_disks];
2372c1b3d7c5SThomas E. Spanjaard
2373c1b3d7c5SThomas E. Spanjaard bcopy(rdp->name, map->name, sizeof(rdp->name));
2374c1b3d7c5SThomas E. Spanjaard map->total_sectors = rdp->total_sectors;
2375c1b3d7c5SThomas E. Spanjaard map->state = 12; /* XXX SOS */
2376c1b3d7c5SThomas E. Spanjaard map->offset = rdp->offset_sectors;
2377c1b3d7c5SThomas E. Spanjaard map->stripe_count = rdp->total_sectors / (rdp->interleave*rdp->total_disks);
2378c1b3d7c5SThomas E. Spanjaard map->stripe_sectors = rdp->interleave;
2379c1b3d7c5SThomas E. Spanjaard map->disk_sectors = rdp->total_sectors / rdp->width;
2380c1b3d7c5SThomas E. Spanjaard map->status = INTEL_S_READY; /* XXX SOS */
2381c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
2382c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
2383c1b3d7c5SThomas E. Spanjaard map->type = INTEL_T_RAID0;
2384c1b3d7c5SThomas E. Spanjaard break;
2385c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
2386c1b3d7c5SThomas E. Spanjaard map->type = INTEL_T_RAID1;
2387c1b3d7c5SThomas E. Spanjaard break;
2388c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
2389c1b3d7c5SThomas E. Spanjaard map->type = INTEL_T_RAID1;
2390c1b3d7c5SThomas E. Spanjaard break;
2391c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
2392c1b3d7c5SThomas E. Spanjaard map->type = INTEL_T_RAID5;
2393c1b3d7c5SThomas E. Spanjaard break;
2394c1b3d7c5SThomas E. Spanjaard default:
2395d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2396c1b3d7c5SThomas E. Spanjaard return ENODEV;
2397c1b3d7c5SThomas E. Spanjaard }
2398c1b3d7c5SThomas E. Spanjaard map->total_disks = rdp->total_disks;
2399c1b3d7c5SThomas E. Spanjaard map->magic[0] = 0x02;
2400c1b3d7c5SThomas E. Spanjaard map->magic[1] = 0xff;
2401c1b3d7c5SThomas E. Spanjaard map->magic[2] = 0x01;
2402c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++)
2403c1b3d7c5SThomas E. Spanjaard map->disk_idx[disk] = disk;
2404c1b3d7c5SThomas E. Spanjaard
2405c1b3d7c5SThomas E. Spanjaard meta->config_size = (char *)&map->disk_idx[disk] - (char *)meta;
2406c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = (u_int32_t *)meta, count = 0;
2407c1b3d7c5SThomas E. Spanjaard count < (meta->config_size / sizeof(u_int32_t)); count++) {
2408c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
2409c1b3d7c5SThomas E. Spanjaard }
2410c1b3d7c5SThomas E. Spanjaard meta->checksum = checksum;
2411c1b3d7c5SThomas E. Spanjaard
2412c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2413c1b3d7c5SThomas E. Spanjaard ata_raid_intel_print_meta(meta);
2414c1b3d7c5SThomas E. Spanjaard
2415c1b3d7c5SThomas E. Spanjaard tmp = (char *)meta;
2416c1b3d7c5SThomas E. Spanjaard bcopy(tmp, tmp+1024, 512);
2417c1b3d7c5SThomas E. Spanjaard bcopy(tmp+512, tmp, 1024);
2418c1b3d7c5SThomas E. Spanjaard bzero(tmp+1024, 512);
2419c1b3d7c5SThomas E. Spanjaard
2420c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
2421c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
2422c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(rdp->disks[disk].dev,
2423c1b3d7c5SThomas E. Spanjaard INTEL_LBA(rdp->disks[disk].dev),
2424c1b3d7c5SThomas E. Spanjaard meta, 1024, ATA_R_WRITE | ATA_R_DIRECT)) {
2425c1b3d7c5SThomas E. Spanjaard device_printf(rdp->disks[disk].dev, "write metadata failed\n");
2426c1b3d7c5SThomas E. Spanjaard error = EIO;
2427c1b3d7c5SThomas E. Spanjaard }
2428c1b3d7c5SThomas E. Spanjaard }
2429c1b3d7c5SThomas E. Spanjaard }
2430d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2431c1b3d7c5SThomas E. Spanjaard return error;
2432c1b3d7c5SThomas E. Spanjaard }
2433c1b3d7c5SThomas E. Spanjaard
2434c1b3d7c5SThomas E. Spanjaard
2435c1b3d7c5SThomas E. Spanjaard /* Integrated Technology Express Metadata */
2436c1b3d7c5SThomas E. Spanjaard static int
ata_raid_ite_read_meta(device_t dev,struct ar_softc ** raidp)2437c1b3d7c5SThomas E. Spanjaard ata_raid_ite_read_meta(device_t dev, struct ar_softc **raidp)
2438c1b3d7c5SThomas E. Spanjaard {
2439c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
2440c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
2441c1b3d7c5SThomas E. Spanjaard struct ite_raid_conf *meta;
2442c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
2443c1b3d7c5SThomas E. Spanjaard int array, disk_number, count, retval = 0;
2444c1b3d7c5SThomas E. Spanjaard u_int16_t *ptr;
2445c1b3d7c5SThomas E. Spanjaard
2446978400d3SSascha Wildner meta = (struct ite_raid_conf *)kmalloc(sizeof(struct ite_raid_conf), M_AR,
2447978400d3SSascha Wildner M_WAITOK | M_ZERO);
2448c1b3d7c5SThomas E. Spanjaard
2449c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, ITE_LBA(parent),
2450c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct ite_raid_conf), ATA_R_READ)) {
2451c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2452c1b3d7c5SThomas E. Spanjaard device_printf(parent, "ITE read metadata failed\n");
2453c1b3d7c5SThomas E. Spanjaard goto ite_out;
2454c1b3d7c5SThomas E. Spanjaard }
2455c1b3d7c5SThomas E. Spanjaard
2456c1b3d7c5SThomas E. Spanjaard /* check if this is a ITE RAID struct */
2457c1b3d7c5SThomas E. Spanjaard for (ptr = (u_int16_t *)meta->ite_id, count = 0;
2458c1b3d7c5SThomas E. Spanjaard count < sizeof(meta->ite_id)/sizeof(uint16_t); count++)
2459c1b3d7c5SThomas E. Spanjaard ptr[count] = be16toh(ptr[count]);
2460c1b3d7c5SThomas E. Spanjaard
2461c1b3d7c5SThomas E. Spanjaard if (strncmp(meta->ite_id, ITE_MAGIC, strlen(ITE_MAGIC))) {
2462c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2463c1b3d7c5SThomas E. Spanjaard device_printf(parent, "ITE check1 failed\n");
2464c1b3d7c5SThomas E. Spanjaard goto ite_out;
2465c1b3d7c5SThomas E. Spanjaard }
2466c1b3d7c5SThomas E. Spanjaard
2467c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2468c1b3d7c5SThomas E. Spanjaard ata_raid_ite_print_meta(meta);
2469c1b3d7c5SThomas E. Spanjaard
2470c1b3d7c5SThomas E. Spanjaard /* now convert ITE metadata into our generic form */
2471c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
2472c1b3d7c5SThomas E. Spanjaard if ((raid = raidp[array])) {
2473c1b3d7c5SThomas E. Spanjaard if (raid->format != AR_F_ITE_RAID)
2474c1b3d7c5SThomas E. Spanjaard continue;
2475c1b3d7c5SThomas E. Spanjaard if (raid->magic_0 != *((u_int64_t *)meta->timestamp_0))
2476c1b3d7c5SThomas E. Spanjaard continue;
2477c1b3d7c5SThomas E. Spanjaard }
2478c1b3d7c5SThomas E. Spanjaard
2479c1b3d7c5SThomas E. Spanjaard /* if we dont have a disks timestamp the RAID is invalidated */
2480c1b3d7c5SThomas E. Spanjaard if (*((u_int64_t *)meta->timestamp_1) == 0)
2481c1b3d7c5SThomas E. Spanjaard goto ite_out;
2482c1b3d7c5SThomas E. Spanjaard
2483c1b3d7c5SThomas E. Spanjaard if (!raid) {
2484d438c7c2SThomas E. Spanjaard raidp[array] = (struct ar_softc *)kmalloc(sizeof(struct ar_softc),
2485d438c7c2SThomas E. Spanjaard M_AR, M_WAITOK | M_ZERO);
2486c1b3d7c5SThomas E. Spanjaard }
2487c1b3d7c5SThomas E. Spanjaard
2488c1b3d7c5SThomas E. Spanjaard switch (meta->type) {
2489c1b3d7c5SThomas E. Spanjaard case ITE_T_RAID0:
2490c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
2491c1b3d7c5SThomas E. Spanjaard raid->width = meta->array_width;
2492c1b3d7c5SThomas E. Spanjaard raid->total_disks = meta->array_width;
2493c1b3d7c5SThomas E. Spanjaard disk_number = meta->disk_number;
2494c1b3d7c5SThomas E. Spanjaard break;
2495c1b3d7c5SThomas E. Spanjaard
2496c1b3d7c5SThomas E. Spanjaard case ITE_T_RAID1:
2497c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
2498c1b3d7c5SThomas E. Spanjaard raid->width = 1;
2499c1b3d7c5SThomas E. Spanjaard raid->total_disks = 2;
2500c1b3d7c5SThomas E. Spanjaard disk_number = meta->disk_number;
2501c1b3d7c5SThomas E. Spanjaard break;
2502c1b3d7c5SThomas E. Spanjaard
2503c1b3d7c5SThomas E. Spanjaard case ITE_T_RAID01:
2504c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
2505c1b3d7c5SThomas E. Spanjaard raid->width = meta->array_width;
2506c1b3d7c5SThomas E. Spanjaard raid->total_disks = 4;
2507c1b3d7c5SThomas E. Spanjaard disk_number = ((meta->disk_number & 0x02) >> 1) |
2508c1b3d7c5SThomas E. Spanjaard ((meta->disk_number & 0x01) << 1);
2509c1b3d7c5SThomas E. Spanjaard break;
2510c1b3d7c5SThomas E. Spanjaard
2511c1b3d7c5SThomas E. Spanjaard case ITE_T_SPAN:
2512c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_SPAN;
2513c1b3d7c5SThomas E. Spanjaard raid->width = 1;
2514c1b3d7c5SThomas E. Spanjaard raid->total_disks = meta->array_width;
2515c1b3d7c5SThomas E. Spanjaard disk_number = meta->disk_number;
2516c1b3d7c5SThomas E. Spanjaard break;
2517c1b3d7c5SThomas E. Spanjaard
2518c1b3d7c5SThomas E. Spanjaard default:
2519c1b3d7c5SThomas E. Spanjaard device_printf(parent, "ITE unknown RAID type 0x%02x\n", meta->type);
2520d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
2521c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
2522c1b3d7c5SThomas E. Spanjaard goto ite_out;
2523c1b3d7c5SThomas E. Spanjaard }
2524c1b3d7c5SThomas E. Spanjaard
2525c1b3d7c5SThomas E. Spanjaard raid->magic_0 = *((u_int64_t *)meta->timestamp_0);
2526c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_ITE_RAID;
2527c1b3d7c5SThomas E. Spanjaard raid->generation = 0;
2528c1b3d7c5SThomas E. Spanjaard raid->interleave = meta->stripe_sectors;
2529c1b3d7c5SThomas E. Spanjaard raid->total_sectors = meta->total_sectors;
2530c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
2531c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
2532c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
2533c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
2534c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = 0;
2535c1b3d7c5SThomas E. Spanjaard raid->lun = array;
2536c1b3d7c5SThomas E. Spanjaard
2537c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].dev = parent;
2538c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].sectors = raid->total_sectors / raid->width;
2539c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags =
2540c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_ONLINE);
2541c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
2542c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk_number;
2543c1b3d7c5SThomas E. Spanjaard retval = 1;
2544c1b3d7c5SThomas E. Spanjaard break;
2545c1b3d7c5SThomas E. Spanjaard }
2546c1b3d7c5SThomas E. Spanjaard ite_out:
2547d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2548c1b3d7c5SThomas E. Spanjaard return retval;
2549c1b3d7c5SThomas E. Spanjaard }
2550c1b3d7c5SThomas E. Spanjaard
2551c1b3d7c5SThomas E. Spanjaard /* JMicron Technology Corp Metadata */
2552c1b3d7c5SThomas E. Spanjaard static int
ata_raid_jmicron_read_meta(device_t dev,struct ar_softc ** raidp)2553c1b3d7c5SThomas E. Spanjaard ata_raid_jmicron_read_meta(device_t dev, struct ar_softc **raidp)
2554c1b3d7c5SThomas E. Spanjaard {
2555c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
2556c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
2557c1b3d7c5SThomas E. Spanjaard struct jmicron_raid_conf *meta;
2558c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
2559c1b3d7c5SThomas E. Spanjaard u_int16_t checksum, *ptr;
2560c1b3d7c5SThomas E. Spanjaard u_int64_t disk_size;
2561c1b3d7c5SThomas E. Spanjaard int count, array, disk, total_disks, retval = 0;
2562c1b3d7c5SThomas E. Spanjaard
2563978400d3SSascha Wildner meta = (struct jmicron_raid_conf *)
2564978400d3SSascha Wildner kmalloc(sizeof(struct jmicron_raid_conf), M_AR, M_WAITOK | M_ZERO);
2565c1b3d7c5SThomas E. Spanjaard
2566c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, JMICRON_LBA(parent),
2567c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct jmicron_raid_conf), ATA_R_READ)) {
2568c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2569c1b3d7c5SThomas E. Spanjaard device_printf(parent,
2570c1b3d7c5SThomas E. Spanjaard "JMicron read metadata failed\n");
2571c1b3d7c5SThomas E. Spanjaard }
2572c1b3d7c5SThomas E. Spanjaard
2573c1b3d7c5SThomas E. Spanjaard /* check for JMicron signature */
2574c1b3d7c5SThomas E. Spanjaard if (strncmp(meta->signature, JMICRON_MAGIC, 2)) {
2575c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2576c1b3d7c5SThomas E. Spanjaard device_printf(parent, "JMicron check1 failed\n");
2577c1b3d7c5SThomas E. Spanjaard goto jmicron_out;
2578c1b3d7c5SThomas E. Spanjaard }
2579c1b3d7c5SThomas E. Spanjaard
2580c1b3d7c5SThomas E. Spanjaard /* calculate checksum and compare for valid */
2581c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = (u_int16_t *)meta, count = 0; count < 64; count++)
2582c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
2583c1b3d7c5SThomas E. Spanjaard if (checksum) {
2584c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2585c1b3d7c5SThomas E. Spanjaard device_printf(parent, "JMicron check2 failed\n");
2586c1b3d7c5SThomas E. Spanjaard goto jmicron_out;
2587c1b3d7c5SThomas E. Spanjaard }
2588c1b3d7c5SThomas E. Spanjaard
2589c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2590c1b3d7c5SThomas E. Spanjaard ata_raid_jmicron_print_meta(meta);
2591c1b3d7c5SThomas E. Spanjaard
2592c1b3d7c5SThomas E. Spanjaard /* now convert JMicron meta into our generic form */
2593c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
2594c1b3d7c5SThomas E. Spanjaard jmicron_next:
2595c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
2596c1b3d7c5SThomas E. Spanjaard raidp[array] =
2597d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
2598d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
2599c1b3d7c5SThomas E. Spanjaard }
2600c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
2601c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_JMICRON_RAID))
2602c1b3d7c5SThomas E. Spanjaard continue;
2603c1b3d7c5SThomas E. Spanjaard
2604c1b3d7c5SThomas E. Spanjaard for (total_disks = 0, disk = 0; disk < JM_MAX_DISKS; disk++) {
2605c1b3d7c5SThomas E. Spanjaard if (meta->disks[disk]) {
2606c1b3d7c5SThomas E. Spanjaard if (raid->format == AR_F_JMICRON_RAID) {
2607c1b3d7c5SThomas E. Spanjaard if (bcmp(&meta->disks[disk],
2608c1b3d7c5SThomas E. Spanjaard raid->disks[disk].serial, sizeof(u_int32_t))) {
2609c1b3d7c5SThomas E. Spanjaard array++;
2610c1b3d7c5SThomas E. Spanjaard goto jmicron_next;
2611c1b3d7c5SThomas E. Spanjaard }
2612c1b3d7c5SThomas E. Spanjaard }
2613c1b3d7c5SThomas E. Spanjaard else
2614c1b3d7c5SThomas E. Spanjaard bcopy(&meta->disks[disk],
2615c1b3d7c5SThomas E. Spanjaard raid->disks[disk].serial, sizeof(u_int32_t));
2616c1b3d7c5SThomas E. Spanjaard total_disks++;
2617c1b3d7c5SThomas E. Spanjaard }
2618c1b3d7c5SThomas E. Spanjaard }
2619c1b3d7c5SThomas E. Spanjaard /* handle spares XXX SOS */
2620c1b3d7c5SThomas E. Spanjaard
2621c1b3d7c5SThomas E. Spanjaard switch (meta->type) {
2622c1b3d7c5SThomas E. Spanjaard case JM_T_RAID0:
2623c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
2624c1b3d7c5SThomas E. Spanjaard raid->width = total_disks;
2625c1b3d7c5SThomas E. Spanjaard break;
2626c1b3d7c5SThomas E. Spanjaard
2627c1b3d7c5SThomas E. Spanjaard case JM_T_RAID1:
2628c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
2629c1b3d7c5SThomas E. Spanjaard raid->width = 1;
2630c1b3d7c5SThomas E. Spanjaard break;
2631c1b3d7c5SThomas E. Spanjaard
2632c1b3d7c5SThomas E. Spanjaard case JM_T_RAID01:
2633c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
2634c1b3d7c5SThomas E. Spanjaard raid->width = total_disks / 2;
2635c1b3d7c5SThomas E. Spanjaard break;
2636c1b3d7c5SThomas E. Spanjaard
2637c1b3d7c5SThomas E. Spanjaard case JM_T_RAID5:
2638c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID5;
2639c1b3d7c5SThomas E. Spanjaard raid->width = total_disks;
2640c1b3d7c5SThomas E. Spanjaard break;
2641c1b3d7c5SThomas E. Spanjaard
2642c1b3d7c5SThomas E. Spanjaard case JM_T_JBOD:
2643c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_SPAN;
2644c1b3d7c5SThomas E. Spanjaard raid->width = 1;
2645c1b3d7c5SThomas E. Spanjaard break;
2646c1b3d7c5SThomas E. Spanjaard
2647c1b3d7c5SThomas E. Spanjaard default:
2648c1b3d7c5SThomas E. Spanjaard device_printf(parent,
2649c1b3d7c5SThomas E. Spanjaard "JMicron unknown RAID type 0x%02x\n", meta->type);
2650d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
2651c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
2652c1b3d7c5SThomas E. Spanjaard goto jmicron_out;
2653c1b3d7c5SThomas E. Spanjaard }
2654c1b3d7c5SThomas E. Spanjaard disk_size = (meta->disk_sectors_high << 16) + meta->disk_sectors_low;
2655c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_JMICRON_RAID;
2656c1b3d7c5SThomas E. Spanjaard strncpy(raid->name, meta->name, sizeof(meta->name));
2657c1b3d7c5SThomas E. Spanjaard raid->generation = 0;
2658c1b3d7c5SThomas E. Spanjaard raid->interleave = 2 << meta->stripe_shift;
2659c1b3d7c5SThomas E. Spanjaard raid->total_disks = total_disks;
2660c1b3d7c5SThomas E. Spanjaard raid->total_sectors = disk_size * (raid->width-(raid->type==AR_RAID5));
2661c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
2662c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
2663c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
2664c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = meta->offset * 16;
2665c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = 0;
2666c1b3d7c5SThomas E. Spanjaard raid->lun = array;
2667c1b3d7c5SThomas E. Spanjaard
2668c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < raid->total_disks; disk++) {
2669c1b3d7c5SThomas E. Spanjaard if (meta->disks[disk] == meta->disk_id) {
2670c1b3d7c5SThomas E. Spanjaard raid->disks[disk].dev = parent;
2671c1b3d7c5SThomas E. Spanjaard raid->disks[disk].sectors = disk_size;
2672c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags =
2673c1b3d7c5SThomas E. Spanjaard (AR_DF_ONLINE | AR_DF_PRESENT | AR_DF_ASSIGNED);
2674c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
2675c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk;
2676c1b3d7c5SThomas E. Spanjaard retval = 1;
2677c1b3d7c5SThomas E. Spanjaard break;
2678c1b3d7c5SThomas E. Spanjaard }
2679c1b3d7c5SThomas E. Spanjaard }
2680c1b3d7c5SThomas E. Spanjaard break;
2681c1b3d7c5SThomas E. Spanjaard }
2682c1b3d7c5SThomas E. Spanjaard jmicron_out:
2683d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2684c1b3d7c5SThomas E. Spanjaard return retval;
2685c1b3d7c5SThomas E. Spanjaard }
2686c1b3d7c5SThomas E. Spanjaard
2687c1b3d7c5SThomas E. Spanjaard static int
ata_raid_jmicron_write_meta(struct ar_softc * rdp)2688c1b3d7c5SThomas E. Spanjaard ata_raid_jmicron_write_meta(struct ar_softc *rdp)
2689c1b3d7c5SThomas E. Spanjaard {
2690c1b3d7c5SThomas E. Spanjaard struct jmicron_raid_conf *meta;
2691c1b3d7c5SThomas E. Spanjaard u_int64_t disk_sectors;
2692c1b3d7c5SThomas E. Spanjaard int disk, error = 0;
2693c1b3d7c5SThomas E. Spanjaard
2694978400d3SSascha Wildner meta = (struct jmicron_raid_conf *)
2695978400d3SSascha Wildner kmalloc(sizeof(struct jmicron_raid_conf), M_AR, M_WAITOK | M_ZERO);
2696c1b3d7c5SThomas E. Spanjaard
2697c1b3d7c5SThomas E. Spanjaard rdp->generation++;
2698c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
2699c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD:
2700c1b3d7c5SThomas E. Spanjaard meta->type = JM_T_JBOD;
2701c1b3d7c5SThomas E. Spanjaard break;
2702c1b3d7c5SThomas E. Spanjaard
2703c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
2704c1b3d7c5SThomas E. Spanjaard meta->type = JM_T_RAID0;
2705c1b3d7c5SThomas E. Spanjaard break;
2706c1b3d7c5SThomas E. Spanjaard
2707c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
2708c1b3d7c5SThomas E. Spanjaard meta->type = JM_T_RAID1;
2709c1b3d7c5SThomas E. Spanjaard break;
2710c1b3d7c5SThomas E. Spanjaard
2711c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
2712c1b3d7c5SThomas E. Spanjaard meta->type = JM_T_RAID5;
2713c1b3d7c5SThomas E. Spanjaard break;
2714c1b3d7c5SThomas E. Spanjaard
2715c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
2716c1b3d7c5SThomas E. Spanjaard meta->type = JM_T_RAID01;
2717c1b3d7c5SThomas E. Spanjaard break;
2718c1b3d7c5SThomas E. Spanjaard
2719c1b3d7c5SThomas E. Spanjaard default:
2720d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2721c1b3d7c5SThomas E. Spanjaard return ENODEV;
2722c1b3d7c5SThomas E. Spanjaard }
2723c1b3d7c5SThomas E. Spanjaard bcopy(JMICRON_MAGIC, meta->signature, sizeof(JMICRON_MAGIC));
2724c1b3d7c5SThomas E. Spanjaard meta->version = JMICRON_VERSION;
2725c1b3d7c5SThomas E. Spanjaard meta->offset = rdp->offset_sectors / 16;
2726c1b3d7c5SThomas E. Spanjaard disk_sectors = rdp->total_sectors / (rdp->width - (rdp->type == AR_RAID5));
2727c1b3d7c5SThomas E. Spanjaard meta->disk_sectors_low = disk_sectors & 0xffff;
2728c1b3d7c5SThomas E. Spanjaard meta->disk_sectors_high = disk_sectors >> 16;
2729c1b3d7c5SThomas E. Spanjaard strncpy(meta->name, rdp->name, sizeof(meta->name));
2730c1b3d7c5SThomas E. Spanjaard meta->stripe_shift = ffs(rdp->interleave) - 2;
2731c1b3d7c5SThomas E. Spanjaard
273257e09377SMatthew Dillon for (disk = 0; disk < rdp->total_disks && disk < JM_MAX_DISKS; disk++) {
2733c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].serial[0])
2734c1b3d7c5SThomas E. Spanjaard bcopy(rdp->disks[disk].serial,&meta->disks[disk],sizeof(u_int32_t));
2735c1b3d7c5SThomas E. Spanjaard else
2736c1b3d7c5SThomas E. Spanjaard meta->disks[disk] = (u_int32_t)(uintptr_t)rdp->disks[disk].dev;
2737c1b3d7c5SThomas E. Spanjaard }
2738c1b3d7c5SThomas E. Spanjaard
2739c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
2740c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
2741c1b3d7c5SThomas E. Spanjaard u_int16_t checksum = 0, *ptr;
2742c1b3d7c5SThomas E. Spanjaard int count;
2743c1b3d7c5SThomas E. Spanjaard
2744c1b3d7c5SThomas E. Spanjaard meta->disk_id = meta->disks[disk];
2745c1b3d7c5SThomas E. Spanjaard meta->checksum = 0;
2746c1b3d7c5SThomas E. Spanjaard for (ptr = (u_int16_t *)meta, count = 0; count < 64; count++)
2747c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
2748c1b3d7c5SThomas E. Spanjaard meta->checksum -= checksum;
2749c1b3d7c5SThomas E. Spanjaard
2750c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2751c1b3d7c5SThomas E. Spanjaard ata_raid_jmicron_print_meta(meta);
2752c1b3d7c5SThomas E. Spanjaard
2753c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(rdp->disks[disk].dev,
2754c1b3d7c5SThomas E. Spanjaard JMICRON_LBA(rdp->disks[disk].dev),
2755c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct jmicron_raid_conf),
2756c1b3d7c5SThomas E. Spanjaard ATA_R_WRITE | ATA_R_DIRECT)) {
2757c1b3d7c5SThomas E. Spanjaard device_printf(rdp->disks[disk].dev, "write metadata failed\n");
2758c1b3d7c5SThomas E. Spanjaard error = EIO;
2759c1b3d7c5SThomas E. Spanjaard }
2760c1b3d7c5SThomas E. Spanjaard }
2761c1b3d7c5SThomas E. Spanjaard }
2762c1b3d7c5SThomas E. Spanjaard /* handle spares XXX SOS */
2763c1b3d7c5SThomas E. Spanjaard
2764d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2765c1b3d7c5SThomas E. Spanjaard return error;
2766c1b3d7c5SThomas E. Spanjaard }
2767c1b3d7c5SThomas E. Spanjaard
2768c1b3d7c5SThomas E. Spanjaard /* LSILogic V2 MegaRAID Metadata */
2769c1b3d7c5SThomas E. Spanjaard static int
ata_raid_lsiv2_read_meta(device_t dev,struct ar_softc ** raidp)2770c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv2_read_meta(device_t dev, struct ar_softc **raidp)
2771c1b3d7c5SThomas E. Spanjaard {
2772c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
2773c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
2774c1b3d7c5SThomas E. Spanjaard struct lsiv2_raid_conf *meta;
2775c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
2776c1b3d7c5SThomas E. Spanjaard int array, retval = 0;
2777c1b3d7c5SThomas E. Spanjaard
2778978400d3SSascha Wildner meta = (struct lsiv2_raid_conf *)kmalloc(sizeof(struct lsiv2_raid_conf),
2779978400d3SSascha Wildner M_AR, M_WAITOK | M_ZERO);
2780c1b3d7c5SThomas E. Spanjaard
2781c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, LSIV2_LBA(parent),
2782c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct lsiv2_raid_conf), ATA_R_READ)) {
2783c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2784c1b3d7c5SThomas E. Spanjaard device_printf(parent, "LSI (v2) read metadata failed\n");
2785c1b3d7c5SThomas E. Spanjaard goto lsiv2_out;
2786c1b3d7c5SThomas E. Spanjaard }
2787c1b3d7c5SThomas E. Spanjaard
2788c1b3d7c5SThomas E. Spanjaard /* check if this is a LSI RAID struct */
2789c1b3d7c5SThomas E. Spanjaard if (strncmp(meta->lsi_id, LSIV2_MAGIC, strlen(LSIV2_MAGIC))) {
2790c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2791c1b3d7c5SThomas E. Spanjaard device_printf(parent, "LSI (v2) check1 failed\n");
2792c1b3d7c5SThomas E. Spanjaard goto lsiv2_out;
2793c1b3d7c5SThomas E. Spanjaard }
2794c1b3d7c5SThomas E. Spanjaard
2795c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2796c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv2_print_meta(meta);
2797c1b3d7c5SThomas E. Spanjaard
2798c1b3d7c5SThomas E. Spanjaard /* now convert LSI (v2) config meta into our generic form */
2799c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
2800c1b3d7c5SThomas E. Spanjaard int raid_entry, conf_entry;
2801c1b3d7c5SThomas E. Spanjaard
2802c1b3d7c5SThomas E. Spanjaard if (!raidp[array + meta->raid_number]) {
2803c1b3d7c5SThomas E. Spanjaard raidp[array + meta->raid_number] =
2804d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
2805d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
2806c1b3d7c5SThomas E. Spanjaard }
2807c1b3d7c5SThomas E. Spanjaard raid = raidp[array + meta->raid_number];
2808c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_LSIV2_RAID))
2809c1b3d7c5SThomas E. Spanjaard continue;
2810c1b3d7c5SThomas E. Spanjaard
2811c1b3d7c5SThomas E. Spanjaard if (raid->magic_0 &&
2812c1b3d7c5SThomas E. Spanjaard ((raid->magic_0 != meta->timestamp) ||
2813c1b3d7c5SThomas E. Spanjaard (raid->magic_1 != meta->raid_number)))
2814c1b3d7c5SThomas E. Spanjaard continue;
2815c1b3d7c5SThomas E. Spanjaard
2816c1b3d7c5SThomas E. Spanjaard array += meta->raid_number;
2817c1b3d7c5SThomas E. Spanjaard
2818c1b3d7c5SThomas E. Spanjaard raid_entry = meta->raid_number;
2819c1b3d7c5SThomas E. Spanjaard conf_entry = (meta->configs[raid_entry].raid.config_offset >> 4) +
2820c1b3d7c5SThomas E. Spanjaard meta->disk_number - 1;
2821c1b3d7c5SThomas E. Spanjaard
2822c1b3d7c5SThomas E. Spanjaard switch (meta->configs[raid_entry].raid.type) {
2823c1b3d7c5SThomas E. Spanjaard case LSIV2_T_RAID0:
2824c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->timestamp;
2825c1b3d7c5SThomas E. Spanjaard raid->magic_1 = meta->raid_number;
2826c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
2827c1b3d7c5SThomas E. Spanjaard raid->interleave = meta->configs[raid_entry].raid.stripe_sectors;
2828c1b3d7c5SThomas E. Spanjaard raid->width = meta->configs[raid_entry].raid.array_width;
2829c1b3d7c5SThomas E. Spanjaard break;
2830c1b3d7c5SThomas E. Spanjaard
2831c1b3d7c5SThomas E. Spanjaard case LSIV2_T_RAID1:
2832c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->timestamp;
2833c1b3d7c5SThomas E. Spanjaard raid->magic_1 = meta->raid_number;
2834c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
2835c1b3d7c5SThomas E. Spanjaard raid->width = meta->configs[raid_entry].raid.array_width;
2836c1b3d7c5SThomas E. Spanjaard break;
2837c1b3d7c5SThomas E. Spanjaard
2838c1b3d7c5SThomas E. Spanjaard case LSIV2_T_RAID0 | LSIV2_T_RAID1:
2839c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->timestamp;
2840c1b3d7c5SThomas E. Spanjaard raid->magic_1 = meta->raid_number;
2841c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
2842c1b3d7c5SThomas E. Spanjaard raid->interleave = meta->configs[raid_entry].raid.stripe_sectors;
2843c1b3d7c5SThomas E. Spanjaard raid->width = meta->configs[raid_entry].raid.array_width;
2844c1b3d7c5SThomas E. Spanjaard break;
2845c1b3d7c5SThomas E. Spanjaard
2846c1b3d7c5SThomas E. Spanjaard default:
2847c1b3d7c5SThomas E. Spanjaard device_printf(parent, "LSI v2 unknown RAID type 0x%02x\n",
2848c1b3d7c5SThomas E. Spanjaard meta->configs[raid_entry].raid.type);
2849d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
2850c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
2851c1b3d7c5SThomas E. Spanjaard goto lsiv2_out;
2852c1b3d7c5SThomas E. Spanjaard }
2853c1b3d7c5SThomas E. Spanjaard
2854c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_LSIV2_RAID;
2855c1b3d7c5SThomas E. Spanjaard raid->generation = 0;
2856c1b3d7c5SThomas E. Spanjaard raid->total_disks = meta->configs[raid_entry].raid.disk_count;
2857c1b3d7c5SThomas E. Spanjaard raid->total_sectors = meta->configs[raid_entry].raid.total_sectors;
2858c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
2859c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
2860c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
2861c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
2862c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = 0;
2863c1b3d7c5SThomas E. Spanjaard raid->lun = array;
2864c1b3d7c5SThomas E. Spanjaard
2865c1b3d7c5SThomas E. Spanjaard if (meta->configs[conf_entry].disk.device != LSIV2_D_NONE) {
2866c1b3d7c5SThomas E. Spanjaard raid->disks[meta->disk_number].dev = parent;
2867c1b3d7c5SThomas E. Spanjaard raid->disks[meta->disk_number].sectors =
2868c1b3d7c5SThomas E. Spanjaard meta->configs[conf_entry].disk.disk_sectors;
2869c1b3d7c5SThomas E. Spanjaard raid->disks[meta->disk_number].flags =
2870c1b3d7c5SThomas E. Spanjaard (AR_DF_ONLINE | AR_DF_PRESENT | AR_DF_ASSIGNED);
2871c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
2872c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = meta->disk_number;
2873c1b3d7c5SThomas E. Spanjaard retval = 1;
2874c1b3d7c5SThomas E. Spanjaard }
2875c1b3d7c5SThomas E. Spanjaard else
2876c1b3d7c5SThomas E. Spanjaard raid->disks[meta->disk_number].flags &= ~AR_DF_ONLINE;
2877c1b3d7c5SThomas E. Spanjaard
2878c1b3d7c5SThomas E. Spanjaard break;
2879c1b3d7c5SThomas E. Spanjaard }
2880c1b3d7c5SThomas E. Spanjaard
2881c1b3d7c5SThomas E. Spanjaard lsiv2_out:
2882d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
2883c1b3d7c5SThomas E. Spanjaard return retval;
2884c1b3d7c5SThomas E. Spanjaard }
2885c1b3d7c5SThomas E. Spanjaard
2886c1b3d7c5SThomas E. Spanjaard /* LSILogic V3 MegaRAID Metadata */
2887c1b3d7c5SThomas E. Spanjaard static int
ata_raid_lsiv3_read_meta(device_t dev,struct ar_softc ** raidp)2888c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv3_read_meta(device_t dev, struct ar_softc **raidp)
2889c1b3d7c5SThomas E. Spanjaard {
2890c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
2891c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
2892c1b3d7c5SThomas E. Spanjaard struct lsiv3_raid_conf *meta;
2893c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
2894c1b3d7c5SThomas E. Spanjaard u_int8_t checksum, *ptr;
2895c1b3d7c5SThomas E. Spanjaard int array, entry, count, disk_number, retval = 0;
2896c1b3d7c5SThomas E. Spanjaard
2897978400d3SSascha Wildner meta = (struct lsiv3_raid_conf *)kmalloc(sizeof(struct lsiv3_raid_conf),
2898978400d3SSascha Wildner M_AR, M_WAITOK | M_ZERO);
2899c1b3d7c5SThomas E. Spanjaard
2900c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, LSIV3_LBA(parent),
2901c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct lsiv3_raid_conf), ATA_R_READ)) {
2902c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2903c1b3d7c5SThomas E. Spanjaard device_printf(parent, "LSI (v3) read metadata failed\n");
2904c1b3d7c5SThomas E. Spanjaard goto lsiv3_out;
2905c1b3d7c5SThomas E. Spanjaard }
2906c1b3d7c5SThomas E. Spanjaard
2907c1b3d7c5SThomas E. Spanjaard /* check if this is a LSI RAID struct */
2908c1b3d7c5SThomas E. Spanjaard if (strncmp(meta->lsi_id, LSIV3_MAGIC, strlen(LSIV3_MAGIC))) {
2909c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2910c1b3d7c5SThomas E. Spanjaard device_printf(parent, "LSI (v3) check1 failed\n");
2911c1b3d7c5SThomas E. Spanjaard goto lsiv3_out;
2912c1b3d7c5SThomas E. Spanjaard }
2913c1b3d7c5SThomas E. Spanjaard
2914c1b3d7c5SThomas E. Spanjaard /* check if the checksum is OK */
2915c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = meta->lsi_id, count = 0; count < 512; count++)
2916c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
2917c1b3d7c5SThomas E. Spanjaard if (checksum) {
2918c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2919c1b3d7c5SThomas E. Spanjaard device_printf(parent, "LSI (v3) check2 failed\n");
2920c1b3d7c5SThomas E. Spanjaard goto lsiv3_out;
2921c1b3d7c5SThomas E. Spanjaard }
2922c1b3d7c5SThomas E. Spanjaard
2923c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
2924c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv3_print_meta(meta);
2925c1b3d7c5SThomas E. Spanjaard
2926c1b3d7c5SThomas E. Spanjaard /* now convert LSI (v3) config meta into our generic form */
2927c1b3d7c5SThomas E. Spanjaard for (array = 0, entry = 0; array < MAX_ARRAYS && entry < 8;) {
2928c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
2929c1b3d7c5SThomas E. Spanjaard raidp[array] =
2930d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
2931d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
2932c1b3d7c5SThomas E. Spanjaard }
2933c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
2934c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_LSIV3_RAID)) {
2935c1b3d7c5SThomas E. Spanjaard array++;
2936c1b3d7c5SThomas E. Spanjaard continue;
2937c1b3d7c5SThomas E. Spanjaard }
2938c1b3d7c5SThomas E. Spanjaard
2939c1b3d7c5SThomas E. Spanjaard if ((raid->format == AR_F_LSIV3_RAID) &&
2940c1b3d7c5SThomas E. Spanjaard (raid->magic_0 != meta->timestamp)) {
2941c1b3d7c5SThomas E. Spanjaard array++;
2942c1b3d7c5SThomas E. Spanjaard continue;
2943c1b3d7c5SThomas E. Spanjaard }
2944c1b3d7c5SThomas E. Spanjaard
2945c1b3d7c5SThomas E. Spanjaard switch (meta->raid[entry].total_disks) {
2946c1b3d7c5SThomas E. Spanjaard case 0:
2947c1b3d7c5SThomas E. Spanjaard entry++;
2948c1b3d7c5SThomas E. Spanjaard continue;
2949c1b3d7c5SThomas E. Spanjaard case 1:
2950c1b3d7c5SThomas E. Spanjaard if (meta->raid[entry].device == meta->device) {
2951c1b3d7c5SThomas E. Spanjaard disk_number = 0;
2952c1b3d7c5SThomas E. Spanjaard break;
2953c1b3d7c5SThomas E. Spanjaard }
2954c1b3d7c5SThomas E. Spanjaard if (raid->format)
2955c1b3d7c5SThomas E. Spanjaard array++;
2956c1b3d7c5SThomas E. Spanjaard entry++;
2957c1b3d7c5SThomas E. Spanjaard continue;
2958c1b3d7c5SThomas E. Spanjaard case 2:
2959c1b3d7c5SThomas E. Spanjaard disk_number = (meta->device & (LSIV3_D_DEVICE|LSIV3_D_CHANNEL))?1:0;
2960c1b3d7c5SThomas E. Spanjaard break;
2961c1b3d7c5SThomas E. Spanjaard default:
2962c1b3d7c5SThomas E. Spanjaard device_printf(parent, "lsiv3 > 2 disk support untested!!\n");
2963c1b3d7c5SThomas E. Spanjaard disk_number = (meta->device & LSIV3_D_DEVICE ? 1 : 0) +
2964c1b3d7c5SThomas E. Spanjaard (meta->device & LSIV3_D_CHANNEL ? 2 : 0);
2965c1b3d7c5SThomas E. Spanjaard break;
2966c1b3d7c5SThomas E. Spanjaard }
2967c1b3d7c5SThomas E. Spanjaard
2968c1b3d7c5SThomas E. Spanjaard switch (meta->raid[entry].type) {
2969c1b3d7c5SThomas E. Spanjaard case LSIV3_T_RAID0:
2970c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
2971c1b3d7c5SThomas E. Spanjaard raid->width = meta->raid[entry].total_disks;
2972c1b3d7c5SThomas E. Spanjaard break;
2973c1b3d7c5SThomas E. Spanjaard
2974c1b3d7c5SThomas E. Spanjaard case LSIV3_T_RAID1:
2975c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
2976c1b3d7c5SThomas E. Spanjaard raid->width = meta->raid[entry].array_width;
2977c1b3d7c5SThomas E. Spanjaard break;
2978c1b3d7c5SThomas E. Spanjaard
2979c1b3d7c5SThomas E. Spanjaard default:
2980c1b3d7c5SThomas E. Spanjaard device_printf(parent, "LSI v3 unknown RAID type 0x%02x\n",
2981c1b3d7c5SThomas E. Spanjaard meta->raid[entry].type);
2982d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
2983c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
2984c1b3d7c5SThomas E. Spanjaard entry++;
2985c1b3d7c5SThomas E. Spanjaard continue;
2986c1b3d7c5SThomas E. Spanjaard }
2987c1b3d7c5SThomas E. Spanjaard
2988c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->timestamp;
2989c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_LSIV3_RAID;
2990c1b3d7c5SThomas E. Spanjaard raid->generation = 0;
2991c1b3d7c5SThomas E. Spanjaard raid->interleave = meta->raid[entry].stripe_pages * 8;
2992c1b3d7c5SThomas E. Spanjaard raid->total_disks = meta->raid[entry].total_disks;
2993c1b3d7c5SThomas E. Spanjaard raid->total_sectors = raid->width * meta->raid[entry].sectors;
2994c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
2995c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
2996c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
2997c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = meta->raid[entry].offset;
2998c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = 0;
2999c1b3d7c5SThomas E. Spanjaard raid->lun = array;
3000c1b3d7c5SThomas E. Spanjaard
3001c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].dev = parent;
3002c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].sectors = raid->total_sectors / raid->width;
3003c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags =
3004c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_ONLINE);
3005c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
3006c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk_number;
3007c1b3d7c5SThomas E. Spanjaard retval = 1;
3008c1b3d7c5SThomas E. Spanjaard entry++;
3009c1b3d7c5SThomas E. Spanjaard array++;
3010c1b3d7c5SThomas E. Spanjaard }
3011c1b3d7c5SThomas E. Spanjaard
3012c1b3d7c5SThomas E. Spanjaard lsiv3_out:
3013d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3014c1b3d7c5SThomas E. Spanjaard return retval;
3015c1b3d7c5SThomas E. Spanjaard }
3016c1b3d7c5SThomas E. Spanjaard
3017c1b3d7c5SThomas E. Spanjaard /* nVidia MediaShield Metadata */
3018c1b3d7c5SThomas E. Spanjaard static int
ata_raid_nvidia_read_meta(device_t dev,struct ar_softc ** raidp)3019c1b3d7c5SThomas E. Spanjaard ata_raid_nvidia_read_meta(device_t dev, struct ar_softc **raidp)
3020c1b3d7c5SThomas E. Spanjaard {
3021c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
3022c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
3023c1b3d7c5SThomas E. Spanjaard struct nvidia_raid_conf *meta;
3024c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
3025c1b3d7c5SThomas E. Spanjaard u_int32_t checksum, *ptr;
3026c1b3d7c5SThomas E. Spanjaard int array, count, retval = 0;
3027c1b3d7c5SThomas E. Spanjaard
3028978400d3SSascha Wildner meta = (struct nvidia_raid_conf *)kmalloc(sizeof(struct nvidia_raid_conf),
3029978400d3SSascha Wildner M_AR, M_WAITOK | M_ZERO);
3030c1b3d7c5SThomas E. Spanjaard
3031c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, NVIDIA_LBA(parent),
3032c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct nvidia_raid_conf), ATA_R_READ)) {
3033c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3034c1b3d7c5SThomas E. Spanjaard device_printf(parent, "nVidia read metadata failed\n");
3035c1b3d7c5SThomas E. Spanjaard goto nvidia_out;
3036c1b3d7c5SThomas E. Spanjaard }
3037c1b3d7c5SThomas E. Spanjaard
3038c1b3d7c5SThomas E. Spanjaard /* check if this is a nVidia RAID struct */
3039c1b3d7c5SThomas E. Spanjaard if (strncmp(meta->nvidia_id, NV_MAGIC, strlen(NV_MAGIC))) {
3040c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3041c1b3d7c5SThomas E. Spanjaard device_printf(parent, "nVidia check1 failed\n");
3042c1b3d7c5SThomas E. Spanjaard goto nvidia_out;
3043c1b3d7c5SThomas E. Spanjaard }
3044c1b3d7c5SThomas E. Spanjaard
3045c1b3d7c5SThomas E. Spanjaard /* check if the checksum is OK */
3046c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = (u_int32_t*)meta, count = 0;
3047c1b3d7c5SThomas E. Spanjaard count < meta->config_size; count++)
3048c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
3049c1b3d7c5SThomas E. Spanjaard if (checksum) {
3050c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3051c1b3d7c5SThomas E. Spanjaard device_printf(parent, "nVidia check2 failed\n");
3052c1b3d7c5SThomas E. Spanjaard goto nvidia_out;
3053c1b3d7c5SThomas E. Spanjaard }
3054c1b3d7c5SThomas E. Spanjaard
3055c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3056c1b3d7c5SThomas E. Spanjaard ata_raid_nvidia_print_meta(meta);
3057c1b3d7c5SThomas E. Spanjaard
3058c1b3d7c5SThomas E. Spanjaard /* now convert nVidia meta into our generic form */
3059c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
3060c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
3061c1b3d7c5SThomas E. Spanjaard raidp[array] =
3062d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
3063d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
3064c1b3d7c5SThomas E. Spanjaard }
3065c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
3066c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_NVIDIA_RAID))
3067c1b3d7c5SThomas E. Spanjaard continue;
3068c1b3d7c5SThomas E. Spanjaard
3069c1b3d7c5SThomas E. Spanjaard if (raid->format == AR_F_NVIDIA_RAID &&
3070c1b3d7c5SThomas E. Spanjaard ((raid->magic_0 != meta->magic_1) ||
3071c1b3d7c5SThomas E. Spanjaard (raid->magic_1 != meta->magic_2))) {
3072c1b3d7c5SThomas E. Spanjaard continue;
3073c1b3d7c5SThomas E. Spanjaard }
3074c1b3d7c5SThomas E. Spanjaard
3075c1b3d7c5SThomas E. Spanjaard switch (meta->type) {
3076c1b3d7c5SThomas E. Spanjaard case NV_T_SPAN:
3077c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_SPAN;
3078c1b3d7c5SThomas E. Spanjaard break;
3079c1b3d7c5SThomas E. Spanjaard
3080c1b3d7c5SThomas E. Spanjaard case NV_T_RAID0:
3081c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
3082c1b3d7c5SThomas E. Spanjaard break;
3083c1b3d7c5SThomas E. Spanjaard
3084c1b3d7c5SThomas E. Spanjaard case NV_T_RAID1:
3085c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
3086c1b3d7c5SThomas E. Spanjaard break;
3087c1b3d7c5SThomas E. Spanjaard
3088c1b3d7c5SThomas E. Spanjaard case NV_T_RAID5:
3089c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID5;
3090c1b3d7c5SThomas E. Spanjaard break;
3091c1b3d7c5SThomas E. Spanjaard
3092c1b3d7c5SThomas E. Spanjaard case NV_T_RAID01:
3093c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
3094c1b3d7c5SThomas E. Spanjaard break;
3095c1b3d7c5SThomas E. Spanjaard
3096c1b3d7c5SThomas E. Spanjaard default:
3097c1b3d7c5SThomas E. Spanjaard device_printf(parent, "nVidia unknown RAID type 0x%02x\n",
3098c1b3d7c5SThomas E. Spanjaard meta->type);
3099d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
3100c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
3101c1b3d7c5SThomas E. Spanjaard goto nvidia_out;
3102c1b3d7c5SThomas E. Spanjaard }
3103c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->magic_1;
3104c1b3d7c5SThomas E. Spanjaard raid->magic_1 = meta->magic_2;
3105c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_NVIDIA_RAID;
3106c1b3d7c5SThomas E. Spanjaard raid->generation = 0;
3107c1b3d7c5SThomas E. Spanjaard raid->interleave = meta->stripe_sectors;
3108c1b3d7c5SThomas E. Spanjaard raid->width = meta->array_width;
3109c1b3d7c5SThomas E. Spanjaard raid->total_disks = meta->total_disks;
3110c1b3d7c5SThomas E. Spanjaard raid->total_sectors = meta->total_sectors;
3111c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
3112c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
3113c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
3114c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
3115c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = meta->rebuild_lba;
3116c1b3d7c5SThomas E. Spanjaard raid->lun = array;
3117c1b3d7c5SThomas E. Spanjaard raid->status = AR_S_READY;
3118c1b3d7c5SThomas E. Spanjaard if (meta->status & NV_S_DEGRADED)
3119c1b3d7c5SThomas E. Spanjaard raid->status |= AR_S_DEGRADED;
3120c1b3d7c5SThomas E. Spanjaard
3121c1b3d7c5SThomas E. Spanjaard raid->disks[meta->disk_number].dev = parent;
3122c1b3d7c5SThomas E. Spanjaard raid->disks[meta->disk_number].sectors =
3123c1b3d7c5SThomas E. Spanjaard raid->total_sectors / raid->width;
3124c1b3d7c5SThomas E. Spanjaard raid->disks[meta->disk_number].flags =
3125c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_ONLINE);
3126c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
3127c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = meta->disk_number;
3128c1b3d7c5SThomas E. Spanjaard retval = 1;
3129c1b3d7c5SThomas E. Spanjaard break;
3130c1b3d7c5SThomas E. Spanjaard }
3131c1b3d7c5SThomas E. Spanjaard
3132c1b3d7c5SThomas E. Spanjaard nvidia_out:
3133d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3134c1b3d7c5SThomas E. Spanjaard return retval;
3135c1b3d7c5SThomas E. Spanjaard }
3136c1b3d7c5SThomas E. Spanjaard
3137c1b3d7c5SThomas E. Spanjaard /* Promise FastTrak Metadata */
3138c1b3d7c5SThomas E. Spanjaard static int
ata_raid_promise_read_meta(device_t dev,struct ar_softc ** raidp,int native)3139c1b3d7c5SThomas E. Spanjaard ata_raid_promise_read_meta(device_t dev, struct ar_softc **raidp, int native)
3140c1b3d7c5SThomas E. Spanjaard {
3141c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
3142c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
3143c1b3d7c5SThomas E. Spanjaard struct promise_raid_conf *meta;
3144c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid;
3145c1b3d7c5SThomas E. Spanjaard u_int32_t checksum, *ptr;
3146c1b3d7c5SThomas E. Spanjaard int array, count, disk, disksum = 0, retval = 0;
3147c1b3d7c5SThomas E. Spanjaard
3148978400d3SSascha Wildner meta = (struct promise_raid_conf *)
3149978400d3SSascha Wildner kmalloc(sizeof(struct promise_raid_conf), M_AR, M_WAITOK | M_ZERO);
3150c1b3d7c5SThomas E. Spanjaard
3151c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, PROMISE_LBA(parent),
3152c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct promise_raid_conf), ATA_R_READ)) {
3153c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3154c1b3d7c5SThomas E. Spanjaard device_printf(parent, "%s read metadata failed\n",
3155c1b3d7c5SThomas E. Spanjaard native ? "FreeBSD" : "Promise");
3156c1b3d7c5SThomas E. Spanjaard goto promise_out;
3157c1b3d7c5SThomas E. Spanjaard }
3158c1b3d7c5SThomas E. Spanjaard
3159c1b3d7c5SThomas E. Spanjaard /* check the signature */
3160c1b3d7c5SThomas E. Spanjaard if (native) {
3161c1b3d7c5SThomas E. Spanjaard if (strncmp(meta->promise_id, ATA_MAGIC, strlen(ATA_MAGIC))) {
3162c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3163c1b3d7c5SThomas E. Spanjaard device_printf(parent, "FreeBSD check1 failed\n");
3164c1b3d7c5SThomas E. Spanjaard goto promise_out;
3165c1b3d7c5SThomas E. Spanjaard }
3166c1b3d7c5SThomas E. Spanjaard }
3167c1b3d7c5SThomas E. Spanjaard else {
3168c1b3d7c5SThomas E. Spanjaard if (strncmp(meta->promise_id, PR_MAGIC, strlen(PR_MAGIC))) {
3169c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3170c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Promise check1 failed\n");
3171c1b3d7c5SThomas E. Spanjaard goto promise_out;
3172c1b3d7c5SThomas E. Spanjaard }
3173c1b3d7c5SThomas E. Spanjaard }
3174c1b3d7c5SThomas E. Spanjaard
3175c1b3d7c5SThomas E. Spanjaard /* check if the checksum is OK */
3176c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = (u_int32_t *)meta, count = 0; count < 511; count++)
3177c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
3178c1b3d7c5SThomas E. Spanjaard if (checksum != *ptr) {
3179c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3180c1b3d7c5SThomas E. Spanjaard device_printf(parent, "%s check2 failed\n",
3181c1b3d7c5SThomas E. Spanjaard native ? "FreeBSD" : "Promise");
3182c1b3d7c5SThomas E. Spanjaard goto promise_out;
3183c1b3d7c5SThomas E. Spanjaard }
3184c1b3d7c5SThomas E. Spanjaard
3185c1b3d7c5SThomas E. Spanjaard /* check on disk integrity status */
3186c1b3d7c5SThomas E. Spanjaard if (meta->raid.integrity != PR_I_VALID) {
3187c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3188c1b3d7c5SThomas E. Spanjaard device_printf(parent, "%s check3 failed\n",
3189c1b3d7c5SThomas E. Spanjaard native ? "FreeBSD" : "Promise");
3190c1b3d7c5SThomas E. Spanjaard goto promise_out;
3191c1b3d7c5SThomas E. Spanjaard }
3192c1b3d7c5SThomas E. Spanjaard
3193c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3194c1b3d7c5SThomas E. Spanjaard ata_raid_promise_print_meta(meta);
3195c1b3d7c5SThomas E. Spanjaard
3196c1b3d7c5SThomas E. Spanjaard /* now convert Promise metadata into our generic form */
3197c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
3198c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
3199c1b3d7c5SThomas E. Spanjaard raidp[array] =
3200d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
3201d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
3202c1b3d7c5SThomas E. Spanjaard }
3203c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
3204c1b3d7c5SThomas E. Spanjaard if (raid->format &&
3205c1b3d7c5SThomas E. Spanjaard (raid->format != (native ? AR_F_FREEBSD_RAID : AR_F_PROMISE_RAID)))
3206c1b3d7c5SThomas E. Spanjaard continue;
3207c1b3d7c5SThomas E. Spanjaard
3208c1b3d7c5SThomas E. Spanjaard if ((raid->format == (native ? AR_F_FREEBSD_RAID : AR_F_PROMISE_RAID))&&
3209c1b3d7c5SThomas E. Spanjaard !(meta->raid.magic_1 == (raid->magic_1)))
3210c1b3d7c5SThomas E. Spanjaard continue;
3211c1b3d7c5SThomas E. Spanjaard
3212c1b3d7c5SThomas E. Spanjaard /* update our knowledge about the array config based on generation */
3213c1b3d7c5SThomas E. Spanjaard if (!meta->raid.generation || meta->raid.generation > raid->generation){
3214c1b3d7c5SThomas E. Spanjaard switch (meta->raid.type) {
3215c1b3d7c5SThomas E. Spanjaard case PR_T_SPAN:
3216c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_SPAN;
3217c1b3d7c5SThomas E. Spanjaard break;
3218c1b3d7c5SThomas E. Spanjaard
3219c1b3d7c5SThomas E. Spanjaard case PR_T_JBOD:
3220c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_JBOD;
3221c1b3d7c5SThomas E. Spanjaard break;
3222c1b3d7c5SThomas E. Spanjaard
3223c1b3d7c5SThomas E. Spanjaard case PR_T_RAID0:
3224c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
3225c1b3d7c5SThomas E. Spanjaard break;
3226c1b3d7c5SThomas E. Spanjaard
3227c1b3d7c5SThomas E. Spanjaard case PR_T_RAID1:
3228c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
3229c1b3d7c5SThomas E. Spanjaard if (meta->raid.array_width > 1)
3230c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
3231c1b3d7c5SThomas E. Spanjaard break;
3232c1b3d7c5SThomas E. Spanjaard
3233c1b3d7c5SThomas E. Spanjaard case PR_T_RAID5:
3234c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID5;
3235c1b3d7c5SThomas E. Spanjaard break;
3236c1b3d7c5SThomas E. Spanjaard
3237c1b3d7c5SThomas E. Spanjaard default:
3238c1b3d7c5SThomas E. Spanjaard device_printf(parent, "%s unknown RAID type 0x%02x\n",
3239c1b3d7c5SThomas E. Spanjaard native ? "FreeBSD" : "Promise", meta->raid.type);
3240d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
3241c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
3242c1b3d7c5SThomas E. Spanjaard goto promise_out;
3243c1b3d7c5SThomas E. Spanjaard }
3244c1b3d7c5SThomas E. Spanjaard raid->magic_1 = meta->raid.magic_1;
3245c1b3d7c5SThomas E. Spanjaard raid->format = (native ? AR_F_FREEBSD_RAID : AR_F_PROMISE_RAID);
3246c1b3d7c5SThomas E. Spanjaard raid->generation = meta->raid.generation;
3247c1b3d7c5SThomas E. Spanjaard raid->interleave = 1 << meta->raid.stripe_shift;
3248c1b3d7c5SThomas E. Spanjaard raid->width = meta->raid.array_width;
3249c1b3d7c5SThomas E. Spanjaard raid->total_disks = meta->raid.total_disks;
3250c1b3d7c5SThomas E. Spanjaard raid->heads = meta->raid.heads + 1;
3251c1b3d7c5SThomas E. Spanjaard raid->sectors = meta->raid.sectors;
3252c1b3d7c5SThomas E. Spanjaard raid->cylinders = meta->raid.cylinders + 1;
3253c1b3d7c5SThomas E. Spanjaard raid->total_sectors = meta->raid.total_sectors;
3254c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
3255c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = meta->raid.rebuild_lba;
3256c1b3d7c5SThomas E. Spanjaard raid->lun = array;
3257c1b3d7c5SThomas E. Spanjaard if ((meta->raid.status &
3258c1b3d7c5SThomas E. Spanjaard (PR_S_VALID | PR_S_ONLINE | PR_S_INITED | PR_S_READY)) ==
3259c1b3d7c5SThomas E. Spanjaard (PR_S_VALID | PR_S_ONLINE | PR_S_INITED | PR_S_READY)) {
3260c1b3d7c5SThomas E. Spanjaard raid->status |= AR_S_READY;
3261c1b3d7c5SThomas E. Spanjaard if (meta->raid.status & PR_S_DEGRADED)
3262c1b3d7c5SThomas E. Spanjaard raid->status |= AR_S_DEGRADED;
3263c1b3d7c5SThomas E. Spanjaard }
3264c1b3d7c5SThomas E. Spanjaard else
3265c1b3d7c5SThomas E. Spanjaard raid->status &= ~AR_S_READY;
3266c1b3d7c5SThomas E. Spanjaard
3267c1b3d7c5SThomas E. Spanjaard /* convert disk flags to our internal types */
3268c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < meta->raid.total_disks; disk++) {
3269c1b3d7c5SThomas E. Spanjaard raid->disks[disk].dev = NULL;
3270c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags = 0;
3271c1b3d7c5SThomas E. Spanjaard *((u_int64_t *)(raid->disks[disk].serial)) =
3272c1b3d7c5SThomas E. Spanjaard meta->raid.disk[disk].magic_0;
3273c1b3d7c5SThomas E. Spanjaard disksum += meta->raid.disk[disk].flags;
3274c1b3d7c5SThomas E. Spanjaard if (meta->raid.disk[disk].flags & PR_F_ONLINE)
3275c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags |= AR_DF_ONLINE;
3276c1b3d7c5SThomas E. Spanjaard if (meta->raid.disk[disk].flags & PR_F_ASSIGNED)
3277c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags |= AR_DF_ASSIGNED;
3278c1b3d7c5SThomas E. Spanjaard if (meta->raid.disk[disk].flags & PR_F_SPARE) {
3279c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags &= ~(AR_DF_ONLINE | AR_DF_ASSIGNED);
3280c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags |= AR_DF_SPARE;
3281c1b3d7c5SThomas E. Spanjaard }
3282c1b3d7c5SThomas E. Spanjaard if (meta->raid.disk[disk].flags & (PR_F_REDIR | PR_F_DOWN))
3283c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags &= ~AR_DF_ONLINE;
3284c1b3d7c5SThomas E. Spanjaard }
3285c1b3d7c5SThomas E. Spanjaard if (!disksum) {
3286c1b3d7c5SThomas E. Spanjaard device_printf(parent, "%s subdisks has no flags\n",
3287c1b3d7c5SThomas E. Spanjaard native ? "FreeBSD" : "Promise");
3288d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
3289c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
3290c1b3d7c5SThomas E. Spanjaard goto promise_out;
3291c1b3d7c5SThomas E. Spanjaard }
3292c1b3d7c5SThomas E. Spanjaard }
3293c1b3d7c5SThomas E. Spanjaard if (meta->raid.generation >= raid->generation) {
3294c1b3d7c5SThomas E. Spanjaard int disk_number = meta->raid.disk_number;
3295c1b3d7c5SThomas E. Spanjaard
3296c1b3d7c5SThomas E. Spanjaard if (raid->disks[disk_number].flags && (meta->magic_0 ==
3297c1b3d7c5SThomas E. Spanjaard *((u_int64_t *)(raid->disks[disk_number].serial)))) {
3298c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].dev = parent;
3299c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags |= AR_DF_PRESENT;
3300c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].sectors = meta->raid.disk_sectors;
3301c1b3d7c5SThomas E. Spanjaard if ((raid->disks[disk_number].flags &
3302c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_ONLINE)) ==
3303c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ASSIGNED | AR_DF_ONLINE)) {
3304c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
3305c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk_number;
3306c1b3d7c5SThomas E. Spanjaard retval = 1;
3307c1b3d7c5SThomas E. Spanjaard }
3308c1b3d7c5SThomas E. Spanjaard }
3309c1b3d7c5SThomas E. Spanjaard }
3310c1b3d7c5SThomas E. Spanjaard break;
3311c1b3d7c5SThomas E. Spanjaard }
3312c1b3d7c5SThomas E. Spanjaard
3313c1b3d7c5SThomas E. Spanjaard promise_out:
3314d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3315c1b3d7c5SThomas E. Spanjaard return retval;
3316c1b3d7c5SThomas E. Spanjaard }
3317c1b3d7c5SThomas E. Spanjaard
3318c1b3d7c5SThomas E. Spanjaard static int
ata_raid_promise_write_meta(struct ar_softc * rdp)3319c1b3d7c5SThomas E. Spanjaard ata_raid_promise_write_meta(struct ar_softc *rdp)
3320c1b3d7c5SThomas E. Spanjaard {
3321c1b3d7c5SThomas E. Spanjaard struct promise_raid_conf *meta;
3322c1b3d7c5SThomas E. Spanjaard struct timeval timestamp;
3323c1b3d7c5SThomas E. Spanjaard u_int32_t *ckptr;
3324c1b3d7c5SThomas E. Spanjaard int count, disk, drive, error = 0;
3325c1b3d7c5SThomas E. Spanjaard
3326978400d3SSascha Wildner meta = (struct promise_raid_conf *)
3327978400d3SSascha Wildner kmalloc(sizeof(struct promise_raid_conf), M_AR, M_WAITOK);
3328c1b3d7c5SThomas E. Spanjaard
3329c1b3d7c5SThomas E. Spanjaard rdp->generation++;
3330c1b3d7c5SThomas E. Spanjaard microtime(×tamp);
3331c1b3d7c5SThomas E. Spanjaard
3332c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
3333c1b3d7c5SThomas E. Spanjaard for (count = 0; count < sizeof(struct promise_raid_conf); count++)
3334c1b3d7c5SThomas E. Spanjaard *(((u_int8_t *)meta) + count) = 255 - (count % 256);
3335c1b3d7c5SThomas E. Spanjaard meta->dummy_0 = 0x00020000;
3336c1b3d7c5SThomas E. Spanjaard meta->raid.disk_number = disk;
3337c1b3d7c5SThomas E. Spanjaard
3338c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
3339c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev = device_get_softc(rdp->disks[disk].dev);
3340c1b3d7c5SThomas E. Spanjaard struct ata_channel *ch =
3341c1b3d7c5SThomas E. Spanjaard device_get_softc(device_get_parent(rdp->disks[disk].dev));
3342c1b3d7c5SThomas E. Spanjaard
3343c1b3d7c5SThomas E. Spanjaard meta->raid.channel = ch->unit;
33442458a87aSzrj meta->raid.device = atadev->unit;
3345c1b3d7c5SThomas E. Spanjaard meta->raid.disk_sectors = rdp->disks[disk].sectors;
3346c1b3d7c5SThomas E. Spanjaard meta->raid.disk_offset = rdp->offset_sectors;
3347c1b3d7c5SThomas E. Spanjaard }
3348c1b3d7c5SThomas E. Spanjaard else {
3349c1b3d7c5SThomas E. Spanjaard meta->raid.channel = 0;
3350c1b3d7c5SThomas E. Spanjaard meta->raid.device = 0;
3351c1b3d7c5SThomas E. Spanjaard meta->raid.disk_sectors = 0;
3352c1b3d7c5SThomas E. Spanjaard meta->raid.disk_offset = 0;
3353c1b3d7c5SThomas E. Spanjaard }
3354c1b3d7c5SThomas E. Spanjaard meta->magic_0 = PR_MAGIC0(meta->raid) | timestamp.tv_sec;
3355c1b3d7c5SThomas E. Spanjaard meta->magic_1 = timestamp.tv_sec >> 16;
3356c1b3d7c5SThomas E. Spanjaard meta->magic_2 = timestamp.tv_sec;
3357c1b3d7c5SThomas E. Spanjaard meta->raid.integrity = PR_I_VALID;
3358c1b3d7c5SThomas E. Spanjaard meta->raid.magic_0 = meta->magic_0;
3359c1b3d7c5SThomas E. Spanjaard meta->raid.rebuild_lba = rdp->rebuild_lba;
3360c1b3d7c5SThomas E. Spanjaard meta->raid.generation = rdp->generation;
3361c1b3d7c5SThomas E. Spanjaard
3362c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_READY) {
3363c1b3d7c5SThomas E. Spanjaard meta->raid.flags = (PR_F_VALID | PR_F_ASSIGNED | PR_F_ONLINE);
3364c1b3d7c5SThomas E. Spanjaard meta->raid.status =
3365c1b3d7c5SThomas E. Spanjaard (PR_S_VALID | PR_S_ONLINE | PR_S_INITED | PR_S_READY);
3366c1b3d7c5SThomas E. Spanjaard if (rdp->status & AR_S_DEGRADED)
3367c1b3d7c5SThomas E. Spanjaard meta->raid.status |= PR_S_DEGRADED;
3368c1b3d7c5SThomas E. Spanjaard else
3369c1b3d7c5SThomas E. Spanjaard meta->raid.status |= PR_S_FUNCTIONAL;
3370c1b3d7c5SThomas E. Spanjaard }
3371c1b3d7c5SThomas E. Spanjaard else {
3372c1b3d7c5SThomas E. Spanjaard meta->raid.flags = PR_F_DOWN;
3373c1b3d7c5SThomas E. Spanjaard meta->raid.status = 0;
3374c1b3d7c5SThomas E. Spanjaard }
3375c1b3d7c5SThomas E. Spanjaard
3376c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
3377c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
3378c1b3d7c5SThomas E. Spanjaard meta->raid.type = PR_T_RAID0;
3379c1b3d7c5SThomas E. Spanjaard break;
3380c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
3381c1b3d7c5SThomas E. Spanjaard meta->raid.type = PR_T_RAID1;
3382c1b3d7c5SThomas E. Spanjaard break;
3383c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
3384c1b3d7c5SThomas E. Spanjaard meta->raid.type = PR_T_RAID1;
3385c1b3d7c5SThomas E. Spanjaard break;
3386c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
3387c1b3d7c5SThomas E. Spanjaard meta->raid.type = PR_T_RAID5;
3388c1b3d7c5SThomas E. Spanjaard break;
3389c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN:
3390c1b3d7c5SThomas E. Spanjaard meta->raid.type = PR_T_SPAN;
3391c1b3d7c5SThomas E. Spanjaard break;
3392c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD:
3393c1b3d7c5SThomas E. Spanjaard meta->raid.type = PR_T_JBOD;
3394c1b3d7c5SThomas E. Spanjaard break;
3395c1b3d7c5SThomas E. Spanjaard default:
3396d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3397c1b3d7c5SThomas E. Spanjaard return ENODEV;
3398c1b3d7c5SThomas E. Spanjaard }
3399c1b3d7c5SThomas E. Spanjaard
3400c1b3d7c5SThomas E. Spanjaard meta->raid.total_disks = rdp->total_disks;
3401c1b3d7c5SThomas E. Spanjaard meta->raid.stripe_shift = ffs(rdp->interleave) - 1;
3402c1b3d7c5SThomas E. Spanjaard meta->raid.array_width = rdp->width;
3403c1b3d7c5SThomas E. Spanjaard meta->raid.array_number = rdp->lun;
3404c1b3d7c5SThomas E. Spanjaard meta->raid.total_sectors = rdp->total_sectors;
3405c1b3d7c5SThomas E. Spanjaard meta->raid.cylinders = rdp->cylinders - 1;
3406c1b3d7c5SThomas E. Spanjaard meta->raid.heads = rdp->heads - 1;
3407c1b3d7c5SThomas E. Spanjaard meta->raid.sectors = rdp->sectors;
3408c1b3d7c5SThomas E. Spanjaard meta->raid.magic_1 = (u_int64_t)meta->magic_2<<16 | meta->magic_1;
3409c1b3d7c5SThomas E. Spanjaard
3410c1b3d7c5SThomas E. Spanjaard bzero(&meta->raid.disk, 8 * 12);
3411c1b3d7c5SThomas E. Spanjaard for (drive = 0; drive < rdp->total_disks; drive++) {
3412c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].flags = 0;
3413c1b3d7c5SThomas E. Spanjaard if (rdp->disks[drive].flags & AR_DF_PRESENT)
3414c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].flags |= PR_F_VALID;
3415c1b3d7c5SThomas E. Spanjaard if (rdp->disks[drive].flags & AR_DF_ASSIGNED)
3416c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].flags |= PR_F_ASSIGNED;
3417c1b3d7c5SThomas E. Spanjaard if (rdp->disks[drive].flags & AR_DF_ONLINE)
3418c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].flags |= PR_F_ONLINE;
3419c1b3d7c5SThomas E. Spanjaard else
3420c1b3d7c5SThomas E. Spanjaard if (rdp->disks[drive].flags & AR_DF_PRESENT)
3421c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].flags = (PR_F_REDIR | PR_F_DOWN);
3422c1b3d7c5SThomas E. Spanjaard if (rdp->disks[drive].flags & AR_DF_SPARE)
3423c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].flags |= PR_F_SPARE;
3424c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].dummy_0 = 0x0;
3425c1b3d7c5SThomas E. Spanjaard if (rdp->disks[drive].dev) {
3426c1b3d7c5SThomas E. Spanjaard struct ata_channel *ch =
3427c1b3d7c5SThomas E. Spanjaard device_get_softc(device_get_parent(rdp->disks[drive].dev));
3428c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev =
3429c1b3d7c5SThomas E. Spanjaard device_get_softc(rdp->disks[drive].dev);
3430c1b3d7c5SThomas E. Spanjaard
3431c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].channel = ch->unit;
34322458a87aSzrj meta->raid.disk[drive].device = atadev->unit;
3433c1b3d7c5SThomas E. Spanjaard }
3434c1b3d7c5SThomas E. Spanjaard meta->raid.disk[drive].magic_0 =
3435c1b3d7c5SThomas E. Spanjaard PR_MAGIC0(meta->raid.disk[drive]) | timestamp.tv_sec;
3436c1b3d7c5SThomas E. Spanjaard }
3437c1b3d7c5SThomas E. Spanjaard
3438c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
3439c1b3d7c5SThomas E. Spanjaard if ((rdp->disks[disk].flags & (AR_DF_PRESENT | AR_DF_ONLINE)) ==
3440c1b3d7c5SThomas E. Spanjaard (AR_DF_PRESENT | AR_DF_ONLINE)) {
3441c1b3d7c5SThomas E. Spanjaard if (rdp->format == AR_F_FREEBSD_RAID)
3442c1b3d7c5SThomas E. Spanjaard bcopy(ATA_MAGIC, meta->promise_id, sizeof(ATA_MAGIC));
3443c1b3d7c5SThomas E. Spanjaard else
3444c1b3d7c5SThomas E. Spanjaard bcopy(PR_MAGIC, meta->promise_id, sizeof(PR_MAGIC));
3445c1b3d7c5SThomas E. Spanjaard }
3446c1b3d7c5SThomas E. Spanjaard else
3447c1b3d7c5SThomas E. Spanjaard bzero(meta->promise_id, sizeof(meta->promise_id));
3448c1b3d7c5SThomas E. Spanjaard meta->checksum = 0;
3449c1b3d7c5SThomas E. Spanjaard for (ckptr = (int32_t *)meta, count = 0; count < 511; count++)
3450c1b3d7c5SThomas E. Spanjaard meta->checksum += *ckptr++;
3451c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3452c1b3d7c5SThomas E. Spanjaard ata_raid_promise_print_meta(meta);
3453c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(rdp->disks[disk].dev,
3454c1b3d7c5SThomas E. Spanjaard PROMISE_LBA(rdp->disks[disk].dev),
3455c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct promise_raid_conf),
3456c1b3d7c5SThomas E. Spanjaard ATA_R_WRITE | ATA_R_DIRECT)) {
3457c1b3d7c5SThomas E. Spanjaard device_printf(rdp->disks[disk].dev, "write metadata failed\n");
3458c1b3d7c5SThomas E. Spanjaard error = EIO;
3459c1b3d7c5SThomas E. Spanjaard }
3460c1b3d7c5SThomas E. Spanjaard }
3461c1b3d7c5SThomas E. Spanjaard }
3462d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3463c1b3d7c5SThomas E. Spanjaard return error;
3464c1b3d7c5SThomas E. Spanjaard }
3465c1b3d7c5SThomas E. Spanjaard
3466c1b3d7c5SThomas E. Spanjaard /* Silicon Image Medley Metadata */
3467c1b3d7c5SThomas E. Spanjaard static int
ata_raid_sii_read_meta(device_t dev,struct ar_softc ** raidp)3468c1b3d7c5SThomas E. Spanjaard ata_raid_sii_read_meta(device_t dev, struct ar_softc **raidp)
3469c1b3d7c5SThomas E. Spanjaard {
3470c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
3471c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
3472c1b3d7c5SThomas E. Spanjaard struct sii_raid_conf *meta;
3473c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
3474c1b3d7c5SThomas E. Spanjaard u_int16_t checksum, *ptr;
3475c1b3d7c5SThomas E. Spanjaard int array, count, disk, retval = 0;
3476c1b3d7c5SThomas E. Spanjaard
3477978400d3SSascha Wildner meta = (struct sii_raid_conf *)kmalloc(sizeof(struct sii_raid_conf), M_AR,
3478978400d3SSascha Wildner M_WAITOK | M_ZERO);
3479c1b3d7c5SThomas E. Spanjaard
3480c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, SII_LBA(parent),
3481c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct sii_raid_conf), ATA_R_READ)) {
3482c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3483c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Silicon Image read metadata failed\n");
3484c1b3d7c5SThomas E. Spanjaard goto sii_out;
3485c1b3d7c5SThomas E. Spanjaard }
3486c1b3d7c5SThomas E. Spanjaard
3487c1b3d7c5SThomas E. Spanjaard /* check if this is a Silicon Image (Medley) RAID struct */
3488c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = (u_int16_t *)meta, count = 0; count < 160; count++)
3489c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
3490c1b3d7c5SThomas E. Spanjaard if (checksum) {
3491c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3492c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Silicon Image check1 failed\n");
3493c1b3d7c5SThomas E. Spanjaard goto sii_out;
3494c1b3d7c5SThomas E. Spanjaard }
3495c1b3d7c5SThomas E. Spanjaard
3496c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = (u_int16_t *)meta, count = 0; count < 256; count++)
3497c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
3498c1b3d7c5SThomas E. Spanjaard if (checksum != meta->checksum_1) {
3499c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3500c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Silicon Image check2 failed\n");
3501c1b3d7c5SThomas E. Spanjaard goto sii_out;
3502c1b3d7c5SThomas E. Spanjaard }
3503c1b3d7c5SThomas E. Spanjaard
3504c1b3d7c5SThomas E. Spanjaard /* check verison */
3505c1b3d7c5SThomas E. Spanjaard if (meta->version_major != 0x0002 ||
3506c1b3d7c5SThomas E. Spanjaard (meta->version_minor != 0x0000 && meta->version_minor != 0x0001)) {
3507c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3508c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Silicon Image check3 failed\n");
3509c1b3d7c5SThomas E. Spanjaard goto sii_out;
3510c1b3d7c5SThomas E. Spanjaard }
3511c1b3d7c5SThomas E. Spanjaard
3512c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3513c1b3d7c5SThomas E. Spanjaard ata_raid_sii_print_meta(meta);
3514c1b3d7c5SThomas E. Spanjaard
3515c1b3d7c5SThomas E. Spanjaard /* now convert Silicon Image meta into our generic form */
3516c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
3517c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
3518c1b3d7c5SThomas E. Spanjaard raidp[array] =
3519d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
3520d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
3521c1b3d7c5SThomas E. Spanjaard }
3522c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
3523c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_SII_RAID))
3524c1b3d7c5SThomas E. Spanjaard continue;
3525c1b3d7c5SThomas E. Spanjaard
3526c1b3d7c5SThomas E. Spanjaard if (raid->format == AR_F_SII_RAID &&
3527c1b3d7c5SThomas E. Spanjaard (raid->magic_0 != *((u_int64_t *)meta->timestamp))) {
3528c1b3d7c5SThomas E. Spanjaard continue;
3529c1b3d7c5SThomas E. Spanjaard }
3530c1b3d7c5SThomas E. Spanjaard
3531c1b3d7c5SThomas E. Spanjaard /* update our knowledge about the array config based on generation */
3532c1b3d7c5SThomas E. Spanjaard if (!meta->generation || meta->generation > raid->generation) {
3533c1b3d7c5SThomas E. Spanjaard switch (meta->type) {
3534c1b3d7c5SThomas E. Spanjaard case SII_T_RAID0:
3535c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
3536c1b3d7c5SThomas E. Spanjaard break;
3537c1b3d7c5SThomas E. Spanjaard
3538c1b3d7c5SThomas E. Spanjaard case SII_T_RAID1:
3539c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
3540c1b3d7c5SThomas E. Spanjaard break;
3541c1b3d7c5SThomas E. Spanjaard
3542c1b3d7c5SThomas E. Spanjaard case SII_T_RAID01:
3543c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
3544c1b3d7c5SThomas E. Spanjaard break;
3545c1b3d7c5SThomas E. Spanjaard
3546c1b3d7c5SThomas E. Spanjaard case SII_T_SPARE:
3547c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Silicon Image SPARE disk\n");
3548d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
3549c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
3550c1b3d7c5SThomas E. Spanjaard goto sii_out;
3551c1b3d7c5SThomas E. Spanjaard
3552c1b3d7c5SThomas E. Spanjaard default:
3553c1b3d7c5SThomas E. Spanjaard device_printf(parent,"Silicon Image unknown RAID type 0x%02x\n",
3554c1b3d7c5SThomas E. Spanjaard meta->type);
3555d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
3556c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
3557c1b3d7c5SThomas E. Spanjaard goto sii_out;
3558c1b3d7c5SThomas E. Spanjaard }
3559c1b3d7c5SThomas E. Spanjaard raid->magic_0 = *((u_int64_t *)meta->timestamp);
3560c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_SII_RAID;
3561c1b3d7c5SThomas E. Spanjaard raid->generation = meta->generation;
3562c1b3d7c5SThomas E. Spanjaard raid->interleave = meta->stripe_sectors;
3563c1b3d7c5SThomas E. Spanjaard raid->width = (meta->raid0_disks != 0xff) ? meta->raid0_disks : 1;
3564c1b3d7c5SThomas E. Spanjaard raid->total_disks =
3565c1b3d7c5SThomas E. Spanjaard ((meta->raid0_disks != 0xff) ? meta->raid0_disks : 0) +
3566c1b3d7c5SThomas E. Spanjaard ((meta->raid1_disks != 0xff) ? meta->raid1_disks : 0);
3567c1b3d7c5SThomas E. Spanjaard raid->total_sectors = meta->total_sectors;
3568c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
3569c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
3570c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
3571c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
3572c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = meta->rebuild_lba;
3573c1b3d7c5SThomas E. Spanjaard raid->lun = array;
3574c1b3d7c5SThomas E. Spanjaard strncpy(raid->name, meta->name,
3575c1b3d7c5SThomas E. Spanjaard min(sizeof(raid->name), sizeof(meta->name)));
3576c1b3d7c5SThomas E. Spanjaard
3577c1b3d7c5SThomas E. Spanjaard /* clear out any old info */
3578c1b3d7c5SThomas E. Spanjaard if (raid->generation) {
3579c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < raid->total_disks; disk++) {
3580c1b3d7c5SThomas E. Spanjaard raid->disks[disk].dev = NULL;
3581c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags = 0;
3582c1b3d7c5SThomas E. Spanjaard }
3583c1b3d7c5SThomas E. Spanjaard }
3584c1b3d7c5SThomas E. Spanjaard }
3585c1b3d7c5SThomas E. Spanjaard if (meta->generation >= raid->generation) {
3586c1b3d7c5SThomas E. Spanjaard /* XXX SOS add check for the right physical disk by serial# */
3587c1b3d7c5SThomas E. Spanjaard if (meta->status & SII_S_READY) {
3588c1b3d7c5SThomas E. Spanjaard int disk_number = (raid->type == AR_T_RAID01) ?
3589c1b3d7c5SThomas E. Spanjaard meta->raid1_ident + (meta->raid0_ident << 1) :
3590c1b3d7c5SThomas E. Spanjaard meta->disk_number;
3591c1b3d7c5SThomas E. Spanjaard
3592c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].dev = parent;
3593c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].sectors =
3594c1b3d7c5SThomas E. Spanjaard raid->total_sectors / raid->width;
3595c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags =
3596c1b3d7c5SThomas E. Spanjaard (AR_DF_ONLINE | AR_DF_PRESENT | AR_DF_ASSIGNED);
3597c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
3598c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk_number;
3599c1b3d7c5SThomas E. Spanjaard retval = 1;
3600c1b3d7c5SThomas E. Spanjaard }
3601c1b3d7c5SThomas E. Spanjaard }
3602c1b3d7c5SThomas E. Spanjaard break;
3603c1b3d7c5SThomas E. Spanjaard }
3604c1b3d7c5SThomas E. Spanjaard
3605c1b3d7c5SThomas E. Spanjaard sii_out:
3606d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3607c1b3d7c5SThomas E. Spanjaard return retval;
3608c1b3d7c5SThomas E. Spanjaard }
3609c1b3d7c5SThomas E. Spanjaard
3610c1b3d7c5SThomas E. Spanjaard /* Silicon Integrated Systems Metadata */
3611c1b3d7c5SThomas E. Spanjaard static int
ata_raid_sis_read_meta(device_t dev,struct ar_softc ** raidp)3612c1b3d7c5SThomas E. Spanjaard ata_raid_sis_read_meta(device_t dev, struct ar_softc **raidp)
3613c1b3d7c5SThomas E. Spanjaard {
3614c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
3615c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
3616c1b3d7c5SThomas E. Spanjaard struct sis_raid_conf *meta;
3617c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
3618c1b3d7c5SThomas E. Spanjaard int array, disk_number, drive, retval = 0;
3619c1b3d7c5SThomas E. Spanjaard
3620978400d3SSascha Wildner meta = (struct sis_raid_conf *)kmalloc(sizeof(struct sis_raid_conf), M_AR,
3621978400d3SSascha Wildner M_WAITOK | M_ZERO);
3622c1b3d7c5SThomas E. Spanjaard
3623c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, SIS_LBA(parent),
3624c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct sis_raid_conf), ATA_R_READ)) {
3625c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3626c1b3d7c5SThomas E. Spanjaard device_printf(parent,
3627c1b3d7c5SThomas E. Spanjaard "Silicon Integrated Systems read metadata failed\n");
3628c1b3d7c5SThomas E. Spanjaard }
3629c1b3d7c5SThomas E. Spanjaard
3630c1b3d7c5SThomas E. Spanjaard /* check for SiS magic */
3631c1b3d7c5SThomas E. Spanjaard if (meta->magic != SIS_MAGIC) {
3632c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3633c1b3d7c5SThomas E. Spanjaard device_printf(parent,
3634c1b3d7c5SThomas E. Spanjaard "Silicon Integrated Systems check1 failed\n");
3635c1b3d7c5SThomas E. Spanjaard goto sis_out;
3636c1b3d7c5SThomas E. Spanjaard }
3637c1b3d7c5SThomas E. Spanjaard
3638c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3639c1b3d7c5SThomas E. Spanjaard ata_raid_sis_print_meta(meta);
3640c1b3d7c5SThomas E. Spanjaard
3641c1b3d7c5SThomas E. Spanjaard /* now convert SiS meta into our generic form */
3642c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
3643c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
3644c1b3d7c5SThomas E. Spanjaard raidp[array] =
3645d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
3646d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
3647c1b3d7c5SThomas E. Spanjaard }
3648c1b3d7c5SThomas E. Spanjaard
3649c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
3650c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_SIS_RAID))
3651c1b3d7c5SThomas E. Spanjaard continue;
3652c1b3d7c5SThomas E. Spanjaard
3653c1b3d7c5SThomas E. Spanjaard if ((raid->format == AR_F_SIS_RAID) &&
3654c1b3d7c5SThomas E. Spanjaard ((raid->magic_0 != meta->controller_pci_id) ||
3655c1b3d7c5SThomas E. Spanjaard (raid->magic_1 != meta->timestamp))) {
3656c1b3d7c5SThomas E. Spanjaard continue;
3657c1b3d7c5SThomas E. Spanjaard }
3658c1b3d7c5SThomas E. Spanjaard
3659c1b3d7c5SThomas E. Spanjaard switch (meta->type_total_disks & SIS_T_MASK) {
3660c1b3d7c5SThomas E. Spanjaard case SIS_T_JBOD:
3661c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_JBOD;
3662c1b3d7c5SThomas E. Spanjaard raid->width = (meta->type_total_disks & SIS_D_MASK);
3663c1b3d7c5SThomas E. Spanjaard raid->total_sectors += SIS_LBA(parent);
3664c1b3d7c5SThomas E. Spanjaard break;
3665c1b3d7c5SThomas E. Spanjaard
3666c1b3d7c5SThomas E. Spanjaard case SIS_T_RAID0:
3667c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
3668c1b3d7c5SThomas E. Spanjaard raid->width = (meta->type_total_disks & SIS_D_MASK);
3669c1b3d7c5SThomas E. Spanjaard if (!raid->total_sectors ||
3670c1b3d7c5SThomas E. Spanjaard (raid->total_sectors > (raid->width * SIS_LBA(parent))))
3671c1b3d7c5SThomas E. Spanjaard raid->total_sectors = raid->width * SIS_LBA(parent);
3672c1b3d7c5SThomas E. Spanjaard break;
3673c1b3d7c5SThomas E. Spanjaard
3674c1b3d7c5SThomas E. Spanjaard case SIS_T_RAID1:
3675c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
3676c1b3d7c5SThomas E. Spanjaard raid->width = 1;
3677c1b3d7c5SThomas E. Spanjaard if (!raid->total_sectors || (raid->total_sectors > SIS_LBA(parent)))
3678c1b3d7c5SThomas E. Spanjaard raid->total_sectors = SIS_LBA(parent);
3679c1b3d7c5SThomas E. Spanjaard break;
3680c1b3d7c5SThomas E. Spanjaard
3681c1b3d7c5SThomas E. Spanjaard default:
3682c1b3d7c5SThomas E. Spanjaard device_printf(parent, "Silicon Integrated Systems "
3683c1b3d7c5SThomas E. Spanjaard "unknown RAID type 0x%08x\n", meta->magic);
3684d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
3685c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
3686c1b3d7c5SThomas E. Spanjaard goto sis_out;
3687c1b3d7c5SThomas E. Spanjaard }
3688c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->controller_pci_id;
3689c1b3d7c5SThomas E. Spanjaard raid->magic_1 = meta->timestamp;
3690c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_SIS_RAID;
3691c1b3d7c5SThomas E. Spanjaard raid->generation = 0;
3692c1b3d7c5SThomas E. Spanjaard raid->interleave = meta->stripe_sectors;
3693c1b3d7c5SThomas E. Spanjaard raid->total_disks = (meta->type_total_disks & SIS_D_MASK);
3694c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
3695c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
3696c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
3697c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
3698c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = 0;
3699c1b3d7c5SThomas E. Spanjaard raid->lun = array;
3700c1b3d7c5SThomas E. Spanjaard /* XXX SOS if total_disks > 2 this doesn't float */
3701c1b3d7c5SThomas E. Spanjaard if (((meta->disks & SIS_D_MASTER) >> 4) == meta->disk_number)
3702c1b3d7c5SThomas E. Spanjaard disk_number = 0;
3703c1b3d7c5SThomas E. Spanjaard else
3704c1b3d7c5SThomas E. Spanjaard disk_number = 1;
3705c1b3d7c5SThomas E. Spanjaard
3706c1b3d7c5SThomas E. Spanjaard for (drive = 0; drive < raid->total_disks; drive++) {
3707c1b3d7c5SThomas E. Spanjaard raid->disks[drive].sectors = raid->total_sectors/raid->width;
3708c1b3d7c5SThomas E. Spanjaard if (drive == disk_number) {
3709c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].dev = parent;
3710c1b3d7c5SThomas E. Spanjaard raid->disks[disk_number].flags =
3711c1b3d7c5SThomas E. Spanjaard (AR_DF_ONLINE | AR_DF_PRESENT | AR_DF_ASSIGNED);
3712c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
3713c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk_number;
3714c1b3d7c5SThomas E. Spanjaard }
3715c1b3d7c5SThomas E. Spanjaard }
3716c1b3d7c5SThomas E. Spanjaard retval = 1;
3717c1b3d7c5SThomas E. Spanjaard break;
3718c1b3d7c5SThomas E. Spanjaard }
3719c1b3d7c5SThomas E. Spanjaard
3720c1b3d7c5SThomas E. Spanjaard sis_out:
3721d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3722c1b3d7c5SThomas E. Spanjaard return retval;
3723c1b3d7c5SThomas E. Spanjaard }
3724c1b3d7c5SThomas E. Spanjaard
3725c1b3d7c5SThomas E. Spanjaard static int
ata_raid_sis_write_meta(struct ar_softc * rdp)3726c1b3d7c5SThomas E. Spanjaard ata_raid_sis_write_meta(struct ar_softc *rdp)
3727c1b3d7c5SThomas E. Spanjaard {
3728c1b3d7c5SThomas E. Spanjaard struct sis_raid_conf *meta;
3729c1b3d7c5SThomas E. Spanjaard struct timeval timestamp;
3730c1b3d7c5SThomas E. Spanjaard int disk, error = 0;
3731c1b3d7c5SThomas E. Spanjaard
3732978400d3SSascha Wildner meta = (struct sis_raid_conf *)kmalloc(sizeof(struct sis_raid_conf), M_AR,
3733978400d3SSascha Wildner M_WAITOK | M_ZERO);
3734c1b3d7c5SThomas E. Spanjaard
3735c1b3d7c5SThomas E. Spanjaard rdp->generation++;
3736c1b3d7c5SThomas E. Spanjaard microtime(×tamp);
3737c1b3d7c5SThomas E. Spanjaard
3738c1b3d7c5SThomas E. Spanjaard meta->magic = SIS_MAGIC;
3739c1b3d7c5SThomas E. Spanjaard /* XXX SOS if total_disks > 2 this doesn't float */
3740c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
3741c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
3742c1b3d7c5SThomas E. Spanjaard struct ata_channel *ch =
3743c1b3d7c5SThomas E. Spanjaard device_get_softc(device_get_parent(rdp->disks[disk].dev));
3744c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev = device_get_softc(rdp->disks[disk].dev);
37452458a87aSzrj int disk_number = 1 + atadev->unit + (ch->unit << 1);
3746c1b3d7c5SThomas E. Spanjaard
3747c1b3d7c5SThomas E. Spanjaard meta->disks |= disk_number << ((1 - disk) << 2);
3748c1b3d7c5SThomas E. Spanjaard }
3749c1b3d7c5SThomas E. Spanjaard }
3750c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
3751c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD:
3752c1b3d7c5SThomas E. Spanjaard meta->type_total_disks = SIS_T_JBOD;
3753c1b3d7c5SThomas E. Spanjaard break;
3754c1b3d7c5SThomas E. Spanjaard
3755c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
3756c1b3d7c5SThomas E. Spanjaard meta->type_total_disks = SIS_T_RAID0;
3757c1b3d7c5SThomas E. Spanjaard break;
3758c1b3d7c5SThomas E. Spanjaard
3759c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
3760c1b3d7c5SThomas E. Spanjaard meta->type_total_disks = SIS_T_RAID1;
3761c1b3d7c5SThomas E. Spanjaard break;
3762c1b3d7c5SThomas E. Spanjaard
3763c1b3d7c5SThomas E. Spanjaard default:
3764d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3765c1b3d7c5SThomas E. Spanjaard return ENODEV;
3766c1b3d7c5SThomas E. Spanjaard }
3767c1b3d7c5SThomas E. Spanjaard meta->type_total_disks |= (rdp->total_disks & SIS_D_MASK);
3768c1b3d7c5SThomas E. Spanjaard meta->stripe_sectors = rdp->interleave;
3769c1b3d7c5SThomas E. Spanjaard meta->timestamp = timestamp.tv_sec;
3770c1b3d7c5SThomas E. Spanjaard
3771c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
3772c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
3773c1b3d7c5SThomas E. Spanjaard struct ata_channel *ch =
3774c1b3d7c5SThomas E. Spanjaard device_get_softc(device_get_parent(rdp->disks[disk].dev));
3775c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev = device_get_softc(rdp->disks[disk].dev);
3776c1b3d7c5SThomas E. Spanjaard
3777c1b3d7c5SThomas E. Spanjaard meta->controller_pci_id =
3778c1b3d7c5SThomas E. Spanjaard (pci_get_vendor(GRANDPARENT(rdp->disks[disk].dev)) << 16) |
3779c1b3d7c5SThomas E. Spanjaard pci_get_device(GRANDPARENT(rdp->disks[disk].dev));
3780c1b3d7c5SThomas E. Spanjaard bcopy(atadev->param.model, meta->model, sizeof(meta->model));
3781c1b3d7c5SThomas E. Spanjaard
3782c1b3d7c5SThomas E. Spanjaard /* XXX SOS if total_disks > 2 this may not float */
37832458a87aSzrj meta->disk_number = 1 + atadev->unit + (ch->unit << 1);
3784c1b3d7c5SThomas E. Spanjaard
3785c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3786c1b3d7c5SThomas E. Spanjaard ata_raid_sis_print_meta(meta);
3787c1b3d7c5SThomas E. Spanjaard
3788c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(rdp->disks[disk].dev,
3789c1b3d7c5SThomas E. Spanjaard SIS_LBA(rdp->disks[disk].dev),
3790c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct sis_raid_conf),
3791c1b3d7c5SThomas E. Spanjaard ATA_R_WRITE | ATA_R_DIRECT)) {
3792c1b3d7c5SThomas E. Spanjaard device_printf(rdp->disks[disk].dev, "write metadata failed\n");
3793c1b3d7c5SThomas E. Spanjaard error = EIO;
3794c1b3d7c5SThomas E. Spanjaard }
3795c1b3d7c5SThomas E. Spanjaard }
3796c1b3d7c5SThomas E. Spanjaard }
3797d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3798c1b3d7c5SThomas E. Spanjaard return error;
3799c1b3d7c5SThomas E. Spanjaard }
3800c1b3d7c5SThomas E. Spanjaard
3801c1b3d7c5SThomas E. Spanjaard /* VIA Tech V-RAID Metadata */
3802c1b3d7c5SThomas E. Spanjaard static int
ata_raid_via_read_meta(device_t dev,struct ar_softc ** raidp)3803c1b3d7c5SThomas E. Spanjaard ata_raid_via_read_meta(device_t dev, struct ar_softc **raidp)
3804c1b3d7c5SThomas E. Spanjaard {
3805c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
3806c1b3d7c5SThomas E. Spanjaard device_t parent = device_get_parent(dev);
3807c1b3d7c5SThomas E. Spanjaard struct via_raid_conf *meta;
3808c1b3d7c5SThomas E. Spanjaard struct ar_softc *raid = NULL;
3809c1b3d7c5SThomas E. Spanjaard u_int8_t checksum, *ptr;
3810c1b3d7c5SThomas E. Spanjaard int array, count, disk, retval = 0;
3811c1b3d7c5SThomas E. Spanjaard
3812978400d3SSascha Wildner meta = (struct via_raid_conf *)kmalloc(sizeof(struct via_raid_conf), M_AR,
3813978400d3SSascha Wildner M_WAITOK | M_ZERO);
3814c1b3d7c5SThomas E. Spanjaard
3815c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(parent, VIA_LBA(parent),
3816c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct via_raid_conf), ATA_R_READ)) {
3817c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3818c1b3d7c5SThomas E. Spanjaard device_printf(parent, "VIA read metadata failed\n");
3819c1b3d7c5SThomas E. Spanjaard goto via_out;
3820c1b3d7c5SThomas E. Spanjaard }
3821c1b3d7c5SThomas E. Spanjaard
3822c1b3d7c5SThomas E. Spanjaard /* check if this is a VIA RAID struct */
3823c1b3d7c5SThomas E. Spanjaard if (meta->magic != VIA_MAGIC) {
3824c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3825c1b3d7c5SThomas E. Spanjaard device_printf(parent, "VIA check1 failed\n");
3826c1b3d7c5SThomas E. Spanjaard goto via_out;
3827c1b3d7c5SThomas E. Spanjaard }
3828c1b3d7c5SThomas E. Spanjaard
3829c1b3d7c5SThomas E. Spanjaard /* calculate checksum and compare for valid */
3830c1b3d7c5SThomas E. Spanjaard for (checksum = 0, ptr = (u_int8_t *)meta, count = 0; count < 50; count++)
3831c1b3d7c5SThomas E. Spanjaard checksum += *ptr++;
3832c1b3d7c5SThomas E. Spanjaard if (checksum != meta->checksum) {
3833c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3834c1b3d7c5SThomas E. Spanjaard device_printf(parent, "VIA check2 failed\n");
3835c1b3d7c5SThomas E. Spanjaard goto via_out;
3836c1b3d7c5SThomas E. Spanjaard }
3837c1b3d7c5SThomas E. Spanjaard
3838c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
3839c1b3d7c5SThomas E. Spanjaard ata_raid_via_print_meta(meta);
3840c1b3d7c5SThomas E. Spanjaard
3841c1b3d7c5SThomas E. Spanjaard /* now convert VIA meta into our generic form */
3842c1b3d7c5SThomas E. Spanjaard for (array = 0; array < MAX_ARRAYS; array++) {
3843c1b3d7c5SThomas E. Spanjaard if (!raidp[array]) {
3844c1b3d7c5SThomas E. Spanjaard raidp[array] =
3845d438c7c2SThomas E. Spanjaard (struct ar_softc *)kmalloc(sizeof(struct ar_softc), M_AR,
3846d438c7c2SThomas E. Spanjaard M_WAITOK | M_ZERO);
3847c1b3d7c5SThomas E. Spanjaard }
3848c1b3d7c5SThomas E. Spanjaard raid = raidp[array];
3849c1b3d7c5SThomas E. Spanjaard if (raid->format && (raid->format != AR_F_VIA_RAID))
3850c1b3d7c5SThomas E. Spanjaard continue;
3851c1b3d7c5SThomas E. Spanjaard
3852c1b3d7c5SThomas E. Spanjaard if (raid->format == AR_F_VIA_RAID && (raid->magic_0 != meta->disks[0]))
3853c1b3d7c5SThomas E. Spanjaard continue;
3854c1b3d7c5SThomas E. Spanjaard
3855c1b3d7c5SThomas E. Spanjaard switch (meta->type & VIA_T_MASK) {
3856c1b3d7c5SThomas E. Spanjaard case VIA_T_RAID0:
3857c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID0;
3858c1b3d7c5SThomas E. Spanjaard raid->width = meta->stripe_layout & VIA_L_DISKS;
3859c1b3d7c5SThomas E. Spanjaard if (!raid->total_sectors ||
3860c1b3d7c5SThomas E. Spanjaard (raid->total_sectors > (raid->width * meta->disk_sectors)))
3861c1b3d7c5SThomas E. Spanjaard raid->total_sectors = raid->width * meta->disk_sectors;
3862c1b3d7c5SThomas E. Spanjaard break;
3863c1b3d7c5SThomas E. Spanjaard
3864c1b3d7c5SThomas E. Spanjaard case VIA_T_RAID1:
3865c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID1;
3866c1b3d7c5SThomas E. Spanjaard raid->width = 1;
3867c1b3d7c5SThomas E. Spanjaard raid->total_sectors = meta->disk_sectors;
3868c1b3d7c5SThomas E. Spanjaard break;
3869c1b3d7c5SThomas E. Spanjaard
3870c1b3d7c5SThomas E. Spanjaard case VIA_T_RAID01:
3871c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID01;
3872c1b3d7c5SThomas E. Spanjaard raid->width = meta->stripe_layout & VIA_L_DISKS;
3873c1b3d7c5SThomas E. Spanjaard if (!raid->total_sectors ||
3874c1b3d7c5SThomas E. Spanjaard (raid->total_sectors > (raid->width * meta->disk_sectors)))
3875c1b3d7c5SThomas E. Spanjaard raid->total_sectors = raid->width * meta->disk_sectors;
3876c1b3d7c5SThomas E. Spanjaard break;
3877c1b3d7c5SThomas E. Spanjaard
3878c1b3d7c5SThomas E. Spanjaard case VIA_T_RAID5:
3879c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_RAID5;
3880c1b3d7c5SThomas E. Spanjaard raid->width = meta->stripe_layout & VIA_L_DISKS;
3881c1b3d7c5SThomas E. Spanjaard if (!raid->total_sectors ||
3882c1b3d7c5SThomas E. Spanjaard (raid->total_sectors > ((raid->width - 1)*meta->disk_sectors)))
3883c1b3d7c5SThomas E. Spanjaard raid->total_sectors = (raid->width - 1) * meta->disk_sectors;
3884c1b3d7c5SThomas E. Spanjaard break;
3885c1b3d7c5SThomas E. Spanjaard
3886c1b3d7c5SThomas E. Spanjaard case VIA_T_SPAN:
3887c1b3d7c5SThomas E. Spanjaard raid->type = AR_T_SPAN;
3888c1b3d7c5SThomas E. Spanjaard raid->width = 1;
3889c1b3d7c5SThomas E. Spanjaard raid->total_sectors += meta->disk_sectors;
3890c1b3d7c5SThomas E. Spanjaard break;
3891c1b3d7c5SThomas E. Spanjaard
3892c1b3d7c5SThomas E. Spanjaard default:
3893c1b3d7c5SThomas E. Spanjaard device_printf(parent,"VIA unknown RAID type 0x%02x\n", meta->type);
3894d438c7c2SThomas E. Spanjaard kfree(raidp[array], M_AR);
3895c1b3d7c5SThomas E. Spanjaard raidp[array] = NULL;
3896c1b3d7c5SThomas E. Spanjaard goto via_out;
3897c1b3d7c5SThomas E. Spanjaard }
3898c1b3d7c5SThomas E. Spanjaard raid->magic_0 = meta->disks[0];
3899c1b3d7c5SThomas E. Spanjaard raid->format = AR_F_VIA_RAID;
3900c1b3d7c5SThomas E. Spanjaard raid->generation = 0;
3901c1b3d7c5SThomas E. Spanjaard raid->interleave =
3902c1b3d7c5SThomas E. Spanjaard 0x08 << ((meta->stripe_layout & VIA_L_MASK) >> VIA_L_SHIFT);
3903c1b3d7c5SThomas E. Spanjaard for (count = 0, disk = 0; disk < 8; disk++)
3904c1b3d7c5SThomas E. Spanjaard if (meta->disks[disk])
3905c1b3d7c5SThomas E. Spanjaard count++;
3906c1b3d7c5SThomas E. Spanjaard raid->total_disks = count;
3907c1b3d7c5SThomas E. Spanjaard raid->heads = 255;
3908c1b3d7c5SThomas E. Spanjaard raid->sectors = 63;
3909c1b3d7c5SThomas E. Spanjaard raid->cylinders = raid->total_sectors / (63 * 255);
3910c1b3d7c5SThomas E. Spanjaard raid->offset_sectors = 0;
3911c1b3d7c5SThomas E. Spanjaard raid->rebuild_lba = 0;
3912c1b3d7c5SThomas E. Spanjaard raid->lun = array;
3913c1b3d7c5SThomas E. Spanjaard
3914c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < raid->total_disks; disk++) {
3915c1b3d7c5SThomas E. Spanjaard if (meta->disks[disk] == meta->disk_id) {
3916c1b3d7c5SThomas E. Spanjaard raid->disks[disk].dev = parent;
3917c1b3d7c5SThomas E. Spanjaard bcopy(&meta->disk_id, raid->disks[disk].serial,
3918c1b3d7c5SThomas E. Spanjaard sizeof(u_int32_t));
3919c1b3d7c5SThomas E. Spanjaard raid->disks[disk].sectors = meta->disk_sectors;
3920c1b3d7c5SThomas E. Spanjaard raid->disks[disk].flags =
3921c1b3d7c5SThomas E. Spanjaard (AR_DF_ONLINE | AR_DF_PRESENT | AR_DF_ASSIGNED);
3922c1b3d7c5SThomas E. Spanjaard ars->raid[raid->volume] = raid;
3923c1b3d7c5SThomas E. Spanjaard ars->disk_number[raid->volume] = disk;
3924c1b3d7c5SThomas E. Spanjaard retval = 1;
3925c1b3d7c5SThomas E. Spanjaard break;
3926c1b3d7c5SThomas E. Spanjaard }
3927c1b3d7c5SThomas E. Spanjaard }
3928c1b3d7c5SThomas E. Spanjaard break;
3929c1b3d7c5SThomas E. Spanjaard }
3930c1b3d7c5SThomas E. Spanjaard
3931c1b3d7c5SThomas E. Spanjaard via_out:
3932d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3933c1b3d7c5SThomas E. Spanjaard return retval;
3934c1b3d7c5SThomas E. Spanjaard }
3935c1b3d7c5SThomas E. Spanjaard
3936c1b3d7c5SThomas E. Spanjaard static int
ata_raid_via_write_meta(struct ar_softc * rdp)3937c1b3d7c5SThomas E. Spanjaard ata_raid_via_write_meta(struct ar_softc *rdp)
3938c1b3d7c5SThomas E. Spanjaard {
3939c1b3d7c5SThomas E. Spanjaard struct via_raid_conf *meta;
3940c1b3d7c5SThomas E. Spanjaard int disk, error = 0;
3941c1b3d7c5SThomas E. Spanjaard
3942978400d3SSascha Wildner meta = (struct via_raid_conf *)kmalloc(sizeof(struct via_raid_conf), M_AR,
3943978400d3SSascha Wildner M_WAITOK | M_ZERO);
3944c1b3d7c5SThomas E. Spanjaard
3945c1b3d7c5SThomas E. Spanjaard rdp->generation++;
3946c1b3d7c5SThomas E. Spanjaard
3947c1b3d7c5SThomas E. Spanjaard meta->magic = VIA_MAGIC;
3948c1b3d7c5SThomas E. Spanjaard meta->dummy_0 = 0x02;
3949c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
3950c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN:
3951c1b3d7c5SThomas E. Spanjaard meta->type = VIA_T_SPAN;
3952c1b3d7c5SThomas E. Spanjaard meta->stripe_layout = (rdp->total_disks & VIA_L_DISKS);
3953c1b3d7c5SThomas E. Spanjaard break;
3954c1b3d7c5SThomas E. Spanjaard
3955c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0:
3956c1b3d7c5SThomas E. Spanjaard meta->type = VIA_T_RAID0;
3957c1b3d7c5SThomas E. Spanjaard meta->stripe_layout = ((rdp->interleave >> 1) & VIA_L_MASK);
3958c1b3d7c5SThomas E. Spanjaard meta->stripe_layout |= (rdp->total_disks & VIA_L_DISKS);
3959c1b3d7c5SThomas E. Spanjaard break;
3960c1b3d7c5SThomas E. Spanjaard
3961c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1:
3962c1b3d7c5SThomas E. Spanjaard meta->type = VIA_T_RAID1;
3963c1b3d7c5SThomas E. Spanjaard meta->stripe_layout = (rdp->total_disks & VIA_L_DISKS);
3964c1b3d7c5SThomas E. Spanjaard break;
3965c1b3d7c5SThomas E. Spanjaard
3966c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5:
3967c1b3d7c5SThomas E. Spanjaard meta->type = VIA_T_RAID5;
3968c1b3d7c5SThomas E. Spanjaard meta->stripe_layout = ((rdp->interleave >> 1) & VIA_L_MASK);
3969c1b3d7c5SThomas E. Spanjaard meta->stripe_layout |= (rdp->total_disks & VIA_L_DISKS);
3970c1b3d7c5SThomas E. Spanjaard break;
3971c1b3d7c5SThomas E. Spanjaard
3972c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01:
3973c1b3d7c5SThomas E. Spanjaard meta->type = VIA_T_RAID01;
3974c1b3d7c5SThomas E. Spanjaard meta->stripe_layout = ((rdp->interleave >> 1) & VIA_L_MASK);
3975c1b3d7c5SThomas E. Spanjaard meta->stripe_layout |= (rdp->width & VIA_L_DISKS);
3976c1b3d7c5SThomas E. Spanjaard break;
3977c1b3d7c5SThomas E. Spanjaard
3978c1b3d7c5SThomas E. Spanjaard default:
3979d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
3980c1b3d7c5SThomas E. Spanjaard return ENODEV;
3981c1b3d7c5SThomas E. Spanjaard }
3982c1b3d7c5SThomas E. Spanjaard meta->type |= VIA_T_BOOTABLE; /* XXX SOS */
3983c1b3d7c5SThomas E. Spanjaard meta->disk_sectors =
3984c1b3d7c5SThomas E. Spanjaard rdp->total_sectors / (rdp->width - (rdp->type == AR_RAID5));
3985c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++)
3986c1b3d7c5SThomas E. Spanjaard meta->disks[disk] = (u_int32_t)(uintptr_t)rdp->disks[disk].dev;
3987c1b3d7c5SThomas E. Spanjaard
3988c1b3d7c5SThomas E. Spanjaard for (disk = 0; disk < rdp->total_disks; disk++) {
3989c1b3d7c5SThomas E. Spanjaard if (rdp->disks[disk].dev) {
3990c1b3d7c5SThomas E. Spanjaard u_int8_t *ptr;
3991c1b3d7c5SThomas E. Spanjaard int count;
3992c1b3d7c5SThomas E. Spanjaard
3993c1b3d7c5SThomas E. Spanjaard meta->disk_index = disk * sizeof(u_int32_t);
3994c1b3d7c5SThomas E. Spanjaard if (rdp->type == AR_T_RAID01)
3995c1b3d7c5SThomas E. Spanjaard meta->disk_index = ((meta->disk_index & 0x08) << 2) |
3996c1b3d7c5SThomas E. Spanjaard (meta->disk_index & ~0x08);
3997c1b3d7c5SThomas E. Spanjaard meta->disk_id = meta->disks[disk];
3998c1b3d7c5SThomas E. Spanjaard meta->checksum = 0;
3999c1b3d7c5SThomas E. Spanjaard for (ptr = (u_int8_t *)meta, count = 0; count < 50; count++)
4000c1b3d7c5SThomas E. Spanjaard meta->checksum += *ptr++;
4001c1b3d7c5SThomas E. Spanjaard
4002c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
4003c1b3d7c5SThomas E. Spanjaard ata_raid_via_print_meta(meta);
4004c1b3d7c5SThomas E. Spanjaard
4005c1b3d7c5SThomas E. Spanjaard if (ata_raid_rw(rdp->disks[disk].dev,
4006c1b3d7c5SThomas E. Spanjaard VIA_LBA(rdp->disks[disk].dev),
4007c1b3d7c5SThomas E. Spanjaard meta, sizeof(struct via_raid_conf),
4008c1b3d7c5SThomas E. Spanjaard ATA_R_WRITE | ATA_R_DIRECT)) {
4009c1b3d7c5SThomas E. Spanjaard device_printf(rdp->disks[disk].dev, "write metadata failed\n");
4010c1b3d7c5SThomas E. Spanjaard error = EIO;
4011c1b3d7c5SThomas E. Spanjaard }
4012c1b3d7c5SThomas E. Spanjaard }
4013c1b3d7c5SThomas E. Spanjaard }
4014d438c7c2SThomas E. Spanjaard kfree(meta, M_AR);
4015c1b3d7c5SThomas E. Spanjaard return error;
4016c1b3d7c5SThomas E. Spanjaard }
4017c1b3d7c5SThomas E. Spanjaard
4018c1b3d7c5SThomas E. Spanjaard static struct ata_request *
ata_raid_init_request(struct ar_softc * rdp,struct bio * bio)4019c1b3d7c5SThomas E. Spanjaard ata_raid_init_request(struct ar_softc *rdp, struct bio *bio)
4020c1b3d7c5SThomas E. Spanjaard {
4021c1b3d7c5SThomas E. Spanjaard struct ata_request *request;
4022c1b3d7c5SThomas E. Spanjaard
4023c1b3d7c5SThomas E. Spanjaard if (!(request = ata_alloc_request())) {
4024e3869ec7SSascha Wildner kprintf("FAILURE - out of memory in ata_raid_init_request\n");
4025c1b3d7c5SThomas E. Spanjaard return NULL;
4026c1b3d7c5SThomas E. Spanjaard }
40273c0963e0SMatthew Dillon request->timeout = ATA_DEFAULT_TIMEOUT;
4028c1b3d7c5SThomas E. Spanjaard request->retries = 2;
4029c1b3d7c5SThomas E. Spanjaard request->callback = ata_raid_done;
4030c1b3d7c5SThomas E. Spanjaard request->driver = rdp;
4031c1b3d7c5SThomas E. Spanjaard request->bio = bio;
4032c1b3d7c5SThomas E. Spanjaard switch (request->bio->bio_buf->b_cmd) {
4033c1b3d7c5SThomas E. Spanjaard case BUF_CMD_READ:
4034c1b3d7c5SThomas E. Spanjaard request->flags = ATA_R_READ;
4035c1b3d7c5SThomas E. Spanjaard break;
4036c1b3d7c5SThomas E. Spanjaard case BUF_CMD_WRITE:
4037c1b3d7c5SThomas E. Spanjaard request->flags = ATA_R_WRITE;
4038c1b3d7c5SThomas E. Spanjaard break;
4039b106cb48SMatthew Dillon case BUF_CMD_FLUSH:
4040b106cb48SMatthew Dillon request->flags = ATA_R_CONTROL;
4041b106cb48SMatthew Dillon break;
4042d438c7c2SThomas E. Spanjaard default:
4043d438c7c2SThomas E. Spanjaard kprintf("ar%d: FAILURE - unknown BUF operation\n", rdp->lun);
4044d438c7c2SThomas E. Spanjaard ata_free_request(request);
4045d438c7c2SThomas E. Spanjaard return(NULL);
4046c1b3d7c5SThomas E. Spanjaard }
4047c1b3d7c5SThomas E. Spanjaard return request;
4048c1b3d7c5SThomas E. Spanjaard }
4049c1b3d7c5SThomas E. Spanjaard
4050c1b3d7c5SThomas E. Spanjaard static int
ata_raid_send_request(struct ata_request * request)4051c1b3d7c5SThomas E. Spanjaard ata_raid_send_request(struct ata_request *request)
4052c1b3d7c5SThomas E. Spanjaard {
4053c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev = device_get_softc(request->dev);
4054c1b3d7c5SThomas E. Spanjaard
4055c1b3d7c5SThomas E. Spanjaard request->transfersize = min(request->bytecount, atadev->max_iosize);
4056c1b3d7c5SThomas E. Spanjaard if (request->flags & ATA_R_READ) {
4057c1b3d7c5SThomas E. Spanjaard if (atadev->mode >= ATA_DMA) {
4058c1b3d7c5SThomas E. Spanjaard request->flags |= ATA_R_DMA;
4059c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_READ_DMA;
4060c1b3d7c5SThomas E. Spanjaard }
4061c1b3d7c5SThomas E. Spanjaard else if (atadev->max_iosize > DEV_BSIZE)
4062c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_READ_MUL;
4063c1b3d7c5SThomas E. Spanjaard else
4064c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_READ;
4065c1b3d7c5SThomas E. Spanjaard }
4066c1b3d7c5SThomas E. Spanjaard else if (request->flags & ATA_R_WRITE) {
4067c1b3d7c5SThomas E. Spanjaard if (atadev->mode >= ATA_DMA) {
4068c1b3d7c5SThomas E. Spanjaard request->flags |= ATA_R_DMA;
4069c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_WRITE_DMA;
4070c1b3d7c5SThomas E. Spanjaard }
4071c1b3d7c5SThomas E. Spanjaard else if (atadev->max_iosize > DEV_BSIZE)
4072c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_WRITE_MUL;
4073c1b3d7c5SThomas E. Spanjaard else
4074c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_WRITE;
4075c1b3d7c5SThomas E. Spanjaard }
4076c1b3d7c5SThomas E. Spanjaard else {
4077c1b3d7c5SThomas E. Spanjaard device_printf(request->dev, "FAILURE - unknown IO operation\n");
4078c1b3d7c5SThomas E. Spanjaard ata_free_request(request);
4079c1b3d7c5SThomas E. Spanjaard return EIO;
4080c1b3d7c5SThomas E. Spanjaard }
4081c1b3d7c5SThomas E. Spanjaard request->flags |= (ATA_R_ORDERED | ATA_R_THREAD);
4082c1b3d7c5SThomas E. Spanjaard ata_queue_request(request);
4083c1b3d7c5SThomas E. Spanjaard return 0;
4084c1b3d7c5SThomas E. Spanjaard }
4085c1b3d7c5SThomas E. Spanjaard
4086c1b3d7c5SThomas E. Spanjaard static int
ata_raid_rw(device_t dev,u_int64_t lba,void * data,u_int bcount,int flags)4087c1b3d7c5SThomas E. Spanjaard ata_raid_rw(device_t dev, u_int64_t lba, void *data, u_int bcount, int flags)
4088c1b3d7c5SThomas E. Spanjaard {
4089c1b3d7c5SThomas E. Spanjaard struct ata_device *atadev = device_get_softc(dev);
4090c1b3d7c5SThomas E. Spanjaard struct ata_request *request;
4091c1b3d7c5SThomas E. Spanjaard int error;
4092c1b3d7c5SThomas E. Spanjaard
4093c1b3d7c5SThomas E. Spanjaard if (bcount % DEV_BSIZE) {
4094c1b3d7c5SThomas E. Spanjaard device_printf(dev, "FAILURE - transfers must be modulo sectorsize\n");
4095c1b3d7c5SThomas E. Spanjaard return ENOMEM;
4096c1b3d7c5SThomas E. Spanjaard }
4097c1b3d7c5SThomas E. Spanjaard
4098c1b3d7c5SThomas E. Spanjaard if (!(request = ata_alloc_request())) {
4099c1b3d7c5SThomas E. Spanjaard device_printf(dev, "FAILURE - out of memory in ata_raid_rw\n");
4100c1b3d7c5SThomas E. Spanjaard return ENOMEM;
4101c1b3d7c5SThomas E. Spanjaard }
4102c1b3d7c5SThomas E. Spanjaard
4103c1b3d7c5SThomas E. Spanjaard /* setup request */
4104c1b3d7c5SThomas E. Spanjaard request->dev = dev;
4105bb15467aSzrj request->timeout = ATA_DEFAULT_TIMEOUT;
4106c1b3d7c5SThomas E. Spanjaard request->retries = 0;
4107c1b3d7c5SThomas E. Spanjaard request->data = data;
4108c1b3d7c5SThomas E. Spanjaard request->bytecount = bcount;
4109c1b3d7c5SThomas E. Spanjaard request->transfersize = DEV_BSIZE;
4110c1b3d7c5SThomas E. Spanjaard request->u.ata.lba = lba;
4111c1b3d7c5SThomas E. Spanjaard request->u.ata.count = request->bytecount / DEV_BSIZE;
4112c1b3d7c5SThomas E. Spanjaard request->flags = flags;
4113c1b3d7c5SThomas E. Spanjaard
4114c1b3d7c5SThomas E. Spanjaard if (flags & ATA_R_READ) {
4115c1b3d7c5SThomas E. Spanjaard if (atadev->mode >= ATA_DMA) {
4116c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_READ_DMA;
4117c1b3d7c5SThomas E. Spanjaard request->flags |= ATA_R_DMA;
4118c1b3d7c5SThomas E. Spanjaard }
4119c1b3d7c5SThomas E. Spanjaard else
4120c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_READ;
4121c1b3d7c5SThomas E. Spanjaard ata_queue_request(request);
4122c1b3d7c5SThomas E. Spanjaard }
4123c1b3d7c5SThomas E. Spanjaard else if (flags & ATA_R_WRITE) {
4124c1b3d7c5SThomas E. Spanjaard if (atadev->mode >= ATA_DMA) {
4125c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_WRITE_DMA;
4126c1b3d7c5SThomas E. Spanjaard request->flags |= ATA_R_DMA;
4127c1b3d7c5SThomas E. Spanjaard }
4128c1b3d7c5SThomas E. Spanjaard else
4129c1b3d7c5SThomas E. Spanjaard request->u.ata.command = ATA_WRITE;
4130c1b3d7c5SThomas E. Spanjaard ata_queue_request(request);
4131c1b3d7c5SThomas E. Spanjaard }
4132c1b3d7c5SThomas E. Spanjaard else {
4133c1b3d7c5SThomas E. Spanjaard device_printf(dev, "FAILURE - unknown IO operation\n");
4134c1b3d7c5SThomas E. Spanjaard request->result = EIO;
4135c1b3d7c5SThomas E. Spanjaard }
4136c1b3d7c5SThomas E. Spanjaard error = request->result;
4137c1b3d7c5SThomas E. Spanjaard ata_free_request(request);
4138c1b3d7c5SThomas E. Spanjaard return error;
4139c1b3d7c5SThomas E. Spanjaard }
4140c1b3d7c5SThomas E. Spanjaard
4141c1b3d7c5SThomas E. Spanjaard /*
4142c1b3d7c5SThomas E. Spanjaard * module handeling
4143c1b3d7c5SThomas E. Spanjaard */
4144c1b3d7c5SThomas E. Spanjaard static int
ata_raid_subdisk_probe(device_t dev)4145c1b3d7c5SThomas E. Spanjaard ata_raid_subdisk_probe(device_t dev)
4146c1b3d7c5SThomas E. Spanjaard {
4147c1b3d7c5SThomas E. Spanjaard device_quiet(dev);
4148c1b3d7c5SThomas E. Spanjaard return 0;
4149c1b3d7c5SThomas E. Spanjaard }
4150c1b3d7c5SThomas E. Spanjaard
4151c1b3d7c5SThomas E. Spanjaard static int
ata_raid_subdisk_attach(device_t dev)4152c1b3d7c5SThomas E. Spanjaard ata_raid_subdisk_attach(device_t dev)
4153c1b3d7c5SThomas E. Spanjaard {
4154c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
4155c1b3d7c5SThomas E. Spanjaard int volume;
4156c1b3d7c5SThomas E. Spanjaard
4157c1b3d7c5SThomas E. Spanjaard for (volume = 0; volume < MAX_VOLUMES; volume++) {
4158c1b3d7c5SThomas E. Spanjaard ars->raid[volume] = NULL;
4159c1b3d7c5SThomas E. Spanjaard ars->disk_number[volume] = -1;
4160c1b3d7c5SThomas E. Spanjaard }
4161c1b3d7c5SThomas E. Spanjaard ata_raid_read_metadata(dev);
4162c1b3d7c5SThomas E. Spanjaard return 0;
4163c1b3d7c5SThomas E. Spanjaard }
4164c1b3d7c5SThomas E. Spanjaard
4165c1b3d7c5SThomas E. Spanjaard static int
ata_raid_subdisk_detach(device_t dev)4166c1b3d7c5SThomas E. Spanjaard ata_raid_subdisk_detach(device_t dev)
4167c1b3d7c5SThomas E. Spanjaard {
4168c1b3d7c5SThomas E. Spanjaard struct ata_raid_subdisk *ars = device_get_softc(dev);
4169c1b3d7c5SThomas E. Spanjaard int volume;
4170c1b3d7c5SThomas E. Spanjaard
4171c1b3d7c5SThomas E. Spanjaard for (volume = 0; volume < MAX_VOLUMES; volume++) {
4172c1b3d7c5SThomas E. Spanjaard if (ars->raid[volume]) {
4173c1b3d7c5SThomas E. Spanjaard ars->raid[volume]->disks[ars->disk_number[volume]].flags &=
4174c1b3d7c5SThomas E. Spanjaard ~(AR_DF_PRESENT | AR_DF_ONLINE);
4175c1b3d7c5SThomas E. Spanjaard ars->raid[volume]->disks[ars->disk_number[volume]].dev = NULL;
41769243051bSzrj #if 0
41779243051bSzrj if (mtx_initialized(&ars->raid[volume]->lock))
41789243051bSzrj #endif
4179c1b3d7c5SThomas E. Spanjaard ata_raid_config_changed(ars->raid[volume], 1);
4180c1b3d7c5SThomas E. Spanjaard ars->raid[volume] = NULL;
4181c1b3d7c5SThomas E. Spanjaard ars->disk_number[volume] = -1;
4182c1b3d7c5SThomas E. Spanjaard }
4183c1b3d7c5SThomas E. Spanjaard }
4184c1b3d7c5SThomas E. Spanjaard return 0;
4185c1b3d7c5SThomas E. Spanjaard }
4186c1b3d7c5SThomas E. Spanjaard
4187c1b3d7c5SThomas E. Spanjaard static device_method_t ata_raid_sub_methods[] = {
4188c1b3d7c5SThomas E. Spanjaard /* device interface */
4189c1b3d7c5SThomas E. Spanjaard DEVMETHOD(device_probe, ata_raid_subdisk_probe),
4190c1b3d7c5SThomas E. Spanjaard DEVMETHOD(device_attach, ata_raid_subdisk_attach),
4191c1b3d7c5SThomas E. Spanjaard DEVMETHOD(device_detach, ata_raid_subdisk_detach),
4192d3c9c58eSSascha Wildner DEVMETHOD_END
4193c1b3d7c5SThomas E. Spanjaard };
4194c1b3d7c5SThomas E. Spanjaard
4195c1b3d7c5SThomas E. Spanjaard static driver_t ata_raid_sub_driver = {
4196c1b3d7c5SThomas E. Spanjaard "subdisk",
4197c1b3d7c5SThomas E. Spanjaard ata_raid_sub_methods,
4198c1b3d7c5SThomas E. Spanjaard sizeof(struct ata_raid_subdisk)
4199c1b3d7c5SThomas E. Spanjaard };
4200c1b3d7c5SThomas E. Spanjaard
4201c1b3d7c5SThomas E. Spanjaard DRIVER_MODULE(subdisk, ad, ata_raid_sub_driver, ata_raid_sub_devclass, NULL, NULL);
4202c1b3d7c5SThomas E. Spanjaard
4203c1b3d7c5SThomas E. Spanjaard static int
ata_raid_module_event_handler(module_t mod,int what,void * arg)4204c1b3d7c5SThomas E. Spanjaard ata_raid_module_event_handler(module_t mod, int what, void *arg)
4205c1b3d7c5SThomas E. Spanjaard {
4206c1b3d7c5SThomas E. Spanjaard int i;
4207c1b3d7c5SThomas E. Spanjaard
4208c1b3d7c5SThomas E. Spanjaard switch (what) {
4209c1b3d7c5SThomas E. Spanjaard case MOD_LOAD:
4210c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
4211e3869ec7SSascha Wildner kprintf("ATA PseudoRAID loaded\n");
4212c1b3d7c5SThomas E. Spanjaard #if 0
4213c1b3d7c5SThomas E. Spanjaard /* setup table to hold metadata for all ATA PseudoRAID arrays */
4214d438c7c2SThomas E. Spanjaard ata_raid_arrays = kmalloc(sizeof(struct ar_soft *) * MAX_ARRAYS,
4215d438c7c2SThomas E. Spanjaard M_AR, M_WAITOK | M_ZERO);
4216c1b3d7c5SThomas E. Spanjaard #endif
4217c1b3d7c5SThomas E. Spanjaard /* attach found PseudoRAID arrays */
4218c1b3d7c5SThomas E. Spanjaard for (i = 0; i < MAX_ARRAYS; i++) {
4219c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp = ata_raid_arrays[i];
4220c1b3d7c5SThomas E. Spanjaard
4221c1b3d7c5SThomas E. Spanjaard if (!rdp || !rdp->format)
4222c1b3d7c5SThomas E. Spanjaard continue;
4223c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
4224c1b3d7c5SThomas E. Spanjaard ata_raid_print_meta(rdp);
4225c1b3d7c5SThomas E. Spanjaard ata_raid_attach(rdp, 0);
4226c1b3d7c5SThomas E. Spanjaard }
4227c1b3d7c5SThomas E. Spanjaard ata_raid_ioctl_func = ata_raid_ioctl;
4228c1b3d7c5SThomas E. Spanjaard return 0;
4229c1b3d7c5SThomas E. Spanjaard
4230c1b3d7c5SThomas E. Spanjaard case MOD_UNLOAD:
4231c1b3d7c5SThomas E. Spanjaard /* detach found PseudoRAID arrays */
4232c1b3d7c5SThomas E. Spanjaard for (i = 0; i < MAX_ARRAYS; i++) {
4233c1b3d7c5SThomas E. Spanjaard struct ar_softc *rdp = ata_raid_arrays[i];
4234c1b3d7c5SThomas E. Spanjaard
4235c1b3d7c5SThomas E. Spanjaard if (!rdp || !rdp->status)
4236c1b3d7c5SThomas E. Spanjaard continue;
42379243051bSzrj #if 0
42389243051bSzrj if (mtx_initialized(&rdp->lock))
42399243051bSzrj lockuninit(&rdp->lock);
42409243051bSzrj #endif
4241d438c7c2SThomas E. Spanjaard disk_destroy(&rdp->disk);
4242c1b3d7c5SThomas E. Spanjaard }
4243c1b3d7c5SThomas E. Spanjaard if (testing || bootverbose)
4244e3869ec7SSascha Wildner kprintf("ATA PseudoRAID unloaded\n");
4245c1b3d7c5SThomas E. Spanjaard #if 0
4246d438c7c2SThomas E. Spanjaard kfree(ata_raid_arrays, M_AR);
4247c1b3d7c5SThomas E. Spanjaard #endif
4248c1b3d7c5SThomas E. Spanjaard ata_raid_ioctl_func = NULL;
4249c1b3d7c5SThomas E. Spanjaard return 0;
4250c1b3d7c5SThomas E. Spanjaard
4251c1b3d7c5SThomas E. Spanjaard default:
4252c1b3d7c5SThomas E. Spanjaard return EOPNOTSUPP;
4253c1b3d7c5SThomas E. Spanjaard }
4254c1b3d7c5SThomas E. Spanjaard }
4255c1b3d7c5SThomas E. Spanjaard
4256c1b3d7c5SThomas E. Spanjaard static moduledata_t ata_raid_moduledata =
4257c1b3d7c5SThomas E. Spanjaard { "ataraid", ata_raid_module_event_handler, NULL };
4258c1b3d7c5SThomas E. Spanjaard DECLARE_MODULE(ata, ata_raid_moduledata, SI_SUB_RAID, SI_ORDER_FIRST);
4259c1b3d7c5SThomas E. Spanjaard MODULE_VERSION(ataraid, 1);
4260c1b3d7c5SThomas E. Spanjaard MODULE_DEPEND(ataraid, ata, 1, 1, 1);
4261c1b3d7c5SThomas E. Spanjaard MODULE_DEPEND(ataraid, ad, 1, 1, 1);
4262c1b3d7c5SThomas E. Spanjaard
4263c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_format(struct ar_softc * rdp)4264c1b3d7c5SThomas E. Spanjaard ata_raid_format(struct ar_softc *rdp)
4265c1b3d7c5SThomas E. Spanjaard {
4266c1b3d7c5SThomas E. Spanjaard switch (rdp->format) {
4267c1b3d7c5SThomas E. Spanjaard case AR_F_FREEBSD_RAID: return "FreeBSD PseudoRAID";
4268c1b3d7c5SThomas E. Spanjaard case AR_F_ADAPTEC_RAID: return "Adaptec HostRAID";
4269c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV2_RAID: return "HighPoint v2 RocketRAID";
4270c1b3d7c5SThomas E. Spanjaard case AR_F_HPTV3_RAID: return "HighPoint v3 RocketRAID";
4271c1b3d7c5SThomas E. Spanjaard case AR_F_INTEL_RAID: return "Intel MatrixRAID";
4272c1b3d7c5SThomas E. Spanjaard case AR_F_ITE_RAID: return "Integrated Technology Express";
4273c1b3d7c5SThomas E. Spanjaard case AR_F_JMICRON_RAID: return "JMicron Technology Corp";
4274c1b3d7c5SThomas E. Spanjaard case AR_F_LSIV2_RAID: return "LSILogic v2 MegaRAID";
4275c1b3d7c5SThomas E. Spanjaard case AR_F_LSIV3_RAID: return "LSILogic v3 MegaRAID";
4276c1b3d7c5SThomas E. Spanjaard case AR_F_NVIDIA_RAID: return "nVidia MediaShield";
4277c1b3d7c5SThomas E. Spanjaard case AR_F_PROMISE_RAID: return "Promise Fasttrak";
4278c1b3d7c5SThomas E. Spanjaard case AR_F_SII_RAID: return "Silicon Image Medley";
4279c1b3d7c5SThomas E. Spanjaard case AR_F_SIS_RAID: return "Silicon Integrated Systems";
4280c1b3d7c5SThomas E. Spanjaard case AR_F_VIA_RAID: return "VIA Tech V-RAID";
4281c1b3d7c5SThomas E. Spanjaard default: return "UNKNOWN";
4282c1b3d7c5SThomas E. Spanjaard }
4283c1b3d7c5SThomas E. Spanjaard }
4284c1b3d7c5SThomas E. Spanjaard
4285c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_type(struct ar_softc * rdp)4286c1b3d7c5SThomas E. Spanjaard ata_raid_type(struct ar_softc *rdp)
4287c1b3d7c5SThomas E. Spanjaard {
4288c1b3d7c5SThomas E. Spanjaard switch (rdp->type) {
4289c1b3d7c5SThomas E. Spanjaard case AR_T_JBOD: return "JBOD";
4290c1b3d7c5SThomas E. Spanjaard case AR_T_SPAN: return "SPAN";
4291c1b3d7c5SThomas E. Spanjaard case AR_T_RAID0: return "RAID0";
4292c1b3d7c5SThomas E. Spanjaard case AR_T_RAID1: return "RAID1";
4293c1b3d7c5SThomas E. Spanjaard case AR_T_RAID3: return "RAID3";
4294c1b3d7c5SThomas E. Spanjaard case AR_T_RAID4: return "RAID4";
4295c1b3d7c5SThomas E. Spanjaard case AR_T_RAID5: return "RAID5";
4296c1b3d7c5SThomas E. Spanjaard case AR_T_RAID01: return "RAID0+1";
4297c1b3d7c5SThomas E. Spanjaard default: return "UNKNOWN";
4298c1b3d7c5SThomas E. Spanjaard }
4299c1b3d7c5SThomas E. Spanjaard }
4300c1b3d7c5SThomas E. Spanjaard
4301c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_flags(struct ar_softc * rdp)4302c1b3d7c5SThomas E. Spanjaard ata_raid_flags(struct ar_softc *rdp)
4303c1b3d7c5SThomas E. Spanjaard {
4304c1b3d7c5SThomas E. Spanjaard switch (rdp->status & (AR_S_READY | AR_S_DEGRADED | AR_S_REBUILDING)) {
4305c1b3d7c5SThomas E. Spanjaard case AR_S_READY: return "READY";
4306c1b3d7c5SThomas E. Spanjaard case AR_S_READY | AR_S_DEGRADED: return "DEGRADED";
4307c1b3d7c5SThomas E. Spanjaard case AR_S_READY | AR_S_REBUILDING:
4308c1b3d7c5SThomas E. Spanjaard case AR_S_READY | AR_S_DEGRADED | AR_S_REBUILDING: return "REBUILDING";
4309c1b3d7c5SThomas E. Spanjaard default: return "BROKEN";
4310c1b3d7c5SThomas E. Spanjaard }
4311c1b3d7c5SThomas E. Spanjaard }
4312c1b3d7c5SThomas E. Spanjaard
4313c1b3d7c5SThomas E. Spanjaard /* debugging gunk */
4314c1b3d7c5SThomas E. Spanjaard static void
ata_raid_print_meta(struct ar_softc * raid)4315c1b3d7c5SThomas E. Spanjaard ata_raid_print_meta(struct ar_softc *raid)
4316c1b3d7c5SThomas E. Spanjaard {
4317c1b3d7c5SThomas E. Spanjaard int i;
4318c1b3d7c5SThomas E. Spanjaard
4319e3869ec7SSascha Wildner kprintf("********** ATA PseudoRAID ar%d Metadata **********\n", raid->lun);
4320e3869ec7SSascha Wildner kprintf("=================================================\n");
4321e3869ec7SSascha Wildner kprintf("format %s\n", ata_raid_format(raid));
4322e3869ec7SSascha Wildner kprintf("type %s\n", ata_raid_type(raid));
4323c3783d8fSzrj kprintf("flags 0x%02x %pb%i\n", raid->status,
4324c3783d8fSzrj "\20\3REBUILDING\2DEGRADED\1READY\n", raid->status);
4325e3869ec7SSascha Wildner kprintf("magic_0 0x%016jx\n", raid->magic_0);
4326e3869ec7SSascha Wildner kprintf("magic_1 0x%016jx\n",raid->magic_1);
4327e3869ec7SSascha Wildner kprintf("generation %u\n", raid->generation);
4328e3869ec7SSascha Wildner kprintf("total_sectors %ju\n", raid->total_sectors);
4329e3869ec7SSascha Wildner kprintf("offset_sectors %ju\n", raid->offset_sectors);
4330e3869ec7SSascha Wildner kprintf("heads %u\n", raid->heads);
4331e3869ec7SSascha Wildner kprintf("sectors %u\n", raid->sectors);
4332e3869ec7SSascha Wildner kprintf("cylinders %u\n", raid->cylinders);
4333e3869ec7SSascha Wildner kprintf("width %u\n", raid->width);
4334e3869ec7SSascha Wildner kprintf("interleave %u\n", raid->interleave);
4335e3869ec7SSascha Wildner kprintf("total_disks %u\n", raid->total_disks);
4336c1b3d7c5SThomas E. Spanjaard for (i = 0; i < raid->total_disks; i++) {
4337c3783d8fSzrj kprintf(" disk %d: flags = 0x%02x %pb%i\n", i, raid->disks[i].flags,
4338c3783d8fSzrj "\20\4ONLINE\3SPARE\2ASSIGNED\1PRESENT\n", raid->disks[i].flags);
4339c1b3d7c5SThomas E. Spanjaard if (raid->disks[i].dev) {
4340e3869ec7SSascha Wildner kprintf(" ");
4341c1b3d7c5SThomas E. Spanjaard device_printf(raid->disks[i].dev, " sectors %jd\n",
4342c1b3d7c5SThomas E. Spanjaard raid->disks[i].sectors);
4343c1b3d7c5SThomas E. Spanjaard }
4344c1b3d7c5SThomas E. Spanjaard }
4345e3869ec7SSascha Wildner kprintf("=================================================\n");
4346c1b3d7c5SThomas E. Spanjaard }
4347c1b3d7c5SThomas E. Spanjaard
4348c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_adaptec_type(int type)4349c1b3d7c5SThomas E. Spanjaard ata_raid_adaptec_type(int type)
4350c1b3d7c5SThomas E. Spanjaard {
4351c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4352c1b3d7c5SThomas E. Spanjaard
4353c1b3d7c5SThomas E. Spanjaard switch (type) {
4354c1b3d7c5SThomas E. Spanjaard case ADP_T_RAID0: return "RAID0";
4355c1b3d7c5SThomas E. Spanjaard case ADP_T_RAID1: return "RAID1";
4356f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4357c1b3d7c5SThomas E. Spanjaard return buffer;
4358c1b3d7c5SThomas E. Spanjaard }
4359c1b3d7c5SThomas E. Spanjaard }
4360c1b3d7c5SThomas E. Spanjaard
4361c1b3d7c5SThomas E. Spanjaard static void
ata_raid_adaptec_print_meta(struct adaptec_raid_conf * meta)4362c1b3d7c5SThomas E. Spanjaard ata_raid_adaptec_print_meta(struct adaptec_raid_conf *meta)
4363c1b3d7c5SThomas E. Spanjaard {
4364c1b3d7c5SThomas E. Spanjaard int i;
4365c1b3d7c5SThomas E. Spanjaard
4366e3869ec7SSascha Wildner kprintf("********* ATA Adaptec HostRAID Metadata *********\n");
4367e3869ec7SSascha Wildner kprintf("magic_0 <0x%08x>\n", be32toh(meta->magic_0));
4368e3869ec7SSascha Wildner kprintf("generation 0x%08x\n", be32toh(meta->generation));
4369e3869ec7SSascha Wildner kprintf("dummy_0 0x%04x\n", be16toh(meta->dummy_0));
4370e3869ec7SSascha Wildner kprintf("total_configs %u\n", be16toh(meta->total_configs));
4371e3869ec7SSascha Wildner kprintf("dummy_1 0x%04x\n", be16toh(meta->dummy_1));
4372e3869ec7SSascha Wildner kprintf("checksum 0x%04x\n", be16toh(meta->checksum));
4373e3869ec7SSascha Wildner kprintf("dummy_2 0x%08x\n", be32toh(meta->dummy_2));
4374e3869ec7SSascha Wildner kprintf("dummy_3 0x%08x\n", be32toh(meta->dummy_3));
4375e3869ec7SSascha Wildner kprintf("flags 0x%08x\n", be32toh(meta->flags));
4376e3869ec7SSascha Wildner kprintf("timestamp 0x%08x\n", be32toh(meta->timestamp));
4377e3869ec7SSascha Wildner kprintf("dummy_4 0x%08x 0x%08x 0x%08x 0x%08x\n",
4378c1b3d7c5SThomas E. Spanjaard be32toh(meta->dummy_4[0]), be32toh(meta->dummy_4[1]),
4379c1b3d7c5SThomas E. Spanjaard be32toh(meta->dummy_4[2]), be32toh(meta->dummy_4[3]));
4380e3869ec7SSascha Wildner kprintf("dummy_5 0x%08x 0x%08x 0x%08x 0x%08x\n",
4381c1b3d7c5SThomas E. Spanjaard be32toh(meta->dummy_5[0]), be32toh(meta->dummy_5[1]),
4382c1b3d7c5SThomas E. Spanjaard be32toh(meta->dummy_5[2]), be32toh(meta->dummy_5[3]));
4383c1b3d7c5SThomas E. Spanjaard
4384c1b3d7c5SThomas E. Spanjaard for (i = 0; i < be16toh(meta->total_configs); i++) {
4385e3869ec7SSascha Wildner kprintf(" %d total_disks %u\n", i,
4386c1b3d7c5SThomas E. Spanjaard be16toh(meta->configs[i].disk_number));
4387e3869ec7SSascha Wildner kprintf(" %d generation %u\n", i,
4388c1b3d7c5SThomas E. Spanjaard be16toh(meta->configs[i].generation));
4389e3869ec7SSascha Wildner kprintf(" %d magic_0 0x%08x\n", i,
4390c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].magic_0));
4391e3869ec7SSascha Wildner kprintf(" %d dummy_0 0x%02x\n", i, meta->configs[i].dummy_0);
4392e3869ec7SSascha Wildner kprintf(" %d type %s\n", i,
4393c1b3d7c5SThomas E. Spanjaard ata_raid_adaptec_type(meta->configs[i].type));
4394e3869ec7SSascha Wildner kprintf(" %d dummy_1 0x%02x\n", i, meta->configs[i].dummy_1);
4395e3869ec7SSascha Wildner kprintf(" %d flags %d\n", i,
4396c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].flags));
4397e3869ec7SSascha Wildner kprintf(" %d dummy_2 0x%02x\n", i, meta->configs[i].dummy_2);
4398e3869ec7SSascha Wildner kprintf(" %d dummy_3 0x%02x\n", i, meta->configs[i].dummy_3);
4399e3869ec7SSascha Wildner kprintf(" %d dummy_4 0x%02x\n", i, meta->configs[i].dummy_4);
4400e3869ec7SSascha Wildner kprintf(" %d dummy_5 0x%02x\n", i, meta->configs[i].dummy_5);
4401e3869ec7SSascha Wildner kprintf(" %d disk_number %u\n", i,
4402c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].disk_number));
4403e3869ec7SSascha Wildner kprintf(" %d dummy_6 0x%08x\n", i,
4404c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].dummy_6));
4405e3869ec7SSascha Wildner kprintf(" %d sectors %u\n", i,
4406c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].sectors));
4407e3869ec7SSascha Wildner kprintf(" %d stripe_shift %u\n", i,
4408c1b3d7c5SThomas E. Spanjaard be16toh(meta->configs[i].stripe_shift));
4409e3869ec7SSascha Wildner kprintf(" %d dummy_7 0x%08x\n", i,
4410c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].dummy_7));
4411e3869ec7SSascha Wildner kprintf(" %d dummy_8 0x%08x 0x%08x 0x%08x 0x%08x\n", i,
4412c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].dummy_8[0]),
4413c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].dummy_8[1]),
4414c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].dummy_8[2]),
4415c1b3d7c5SThomas E. Spanjaard be32toh(meta->configs[i].dummy_8[3]));
4416e3869ec7SSascha Wildner kprintf(" %d name <%s>\n", i, meta->configs[i].name);
4417c1b3d7c5SThomas E. Spanjaard }
4418e3869ec7SSascha Wildner kprintf("magic_1 <0x%08x>\n", be32toh(meta->magic_1));
4419e3869ec7SSascha Wildner kprintf("magic_2 <0x%08x>\n", be32toh(meta->magic_2));
4420e3869ec7SSascha Wildner kprintf("magic_3 <0x%08x>\n", be32toh(meta->magic_3));
4421e3869ec7SSascha Wildner kprintf("magic_4 <0x%08x>\n", be32toh(meta->magic_4));
4422e3869ec7SSascha Wildner kprintf("=================================================\n");
4423c1b3d7c5SThomas E. Spanjaard }
4424c1b3d7c5SThomas E. Spanjaard
4425c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_hptv2_type(int type)4426c1b3d7c5SThomas E. Spanjaard ata_raid_hptv2_type(int type)
4427c1b3d7c5SThomas E. Spanjaard {
4428c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4429c1b3d7c5SThomas E. Spanjaard
4430c1b3d7c5SThomas E. Spanjaard switch (type) {
4431c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID0: return "RAID0";
4432c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID1: return "RAID1";
4433c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID01_RAID0: return "RAID01_RAID0";
4434c1b3d7c5SThomas E. Spanjaard case HPTV2_T_SPAN: return "SPAN";
4435c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID_3: return "RAID3";
4436c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID_5: return "RAID5";
4437c1b3d7c5SThomas E. Spanjaard case HPTV2_T_JBOD: return "JBOD";
4438c1b3d7c5SThomas E. Spanjaard case HPTV2_T_RAID01_RAID1: return "RAID01_RAID1";
4439f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4440c1b3d7c5SThomas E. Spanjaard return buffer;
4441c1b3d7c5SThomas E. Spanjaard }
4442c1b3d7c5SThomas E. Spanjaard }
4443c1b3d7c5SThomas E. Spanjaard
4444c1b3d7c5SThomas E. Spanjaard static void
ata_raid_hptv2_print_meta(struct hptv2_raid_conf * meta)4445c1b3d7c5SThomas E. Spanjaard ata_raid_hptv2_print_meta(struct hptv2_raid_conf *meta)
4446c1b3d7c5SThomas E. Spanjaard {
4447c1b3d7c5SThomas E. Spanjaard int i;
4448c1b3d7c5SThomas E. Spanjaard
4449e3869ec7SSascha Wildner kprintf("****** ATA Highpoint V2 RocketRAID Metadata *****\n");
4450e3869ec7SSascha Wildner kprintf("magic 0x%08x\n", meta->magic);
4451e3869ec7SSascha Wildner kprintf("magic_0 0x%08x\n", meta->magic_0);
4452e3869ec7SSascha Wildner kprintf("magic_1 0x%08x\n", meta->magic_1);
4453e3869ec7SSascha Wildner kprintf("order 0x%08x\n", meta->order);
4454e3869ec7SSascha Wildner kprintf("array_width %u\n", meta->array_width);
4455e3869ec7SSascha Wildner kprintf("stripe_shift %u\n", meta->stripe_shift);
4456e3869ec7SSascha Wildner kprintf("type %s\n", ata_raid_hptv2_type(meta->type));
4457e3869ec7SSascha Wildner kprintf("disk_number %u\n", meta->disk_number);
4458e3869ec7SSascha Wildner kprintf("total_sectors %u\n", meta->total_sectors);
4459e3869ec7SSascha Wildner kprintf("disk_mode 0x%08x\n", meta->disk_mode);
4460e3869ec7SSascha Wildner kprintf("boot_mode 0x%08x\n", meta->boot_mode);
4461e3869ec7SSascha Wildner kprintf("boot_disk 0x%02x\n", meta->boot_disk);
4462e3869ec7SSascha Wildner kprintf("boot_protect 0x%02x\n", meta->boot_protect);
4463e3869ec7SSascha Wildner kprintf("log_entries 0x%02x\n", meta->error_log_entries);
4464e3869ec7SSascha Wildner kprintf("log_index 0x%02x\n", meta->error_log_index);
4465c1b3d7c5SThomas E. Spanjaard if (meta->error_log_entries) {
4466e3869ec7SSascha Wildner kprintf(" timestamp reason disk status sectors lba\n");
4467c1b3d7c5SThomas E. Spanjaard for (i = meta->error_log_index;
4468c1b3d7c5SThomas E. Spanjaard i < meta->error_log_index + meta->error_log_entries; i++)
4469e3869ec7SSascha Wildner kprintf(" 0x%08x 0x%02x 0x%02x 0x%02x 0x%02x 0x%08x\n",
4470c1b3d7c5SThomas E. Spanjaard meta->errorlog[i%32].timestamp,
4471c1b3d7c5SThomas E. Spanjaard meta->errorlog[i%32].reason,
4472c1b3d7c5SThomas E. Spanjaard meta->errorlog[i%32].disk, meta->errorlog[i%32].status,
4473c1b3d7c5SThomas E. Spanjaard meta->errorlog[i%32].sectors, meta->errorlog[i%32].lba);
4474c1b3d7c5SThomas E. Spanjaard }
4475e3869ec7SSascha Wildner kprintf("rebuild_lba 0x%08x\n", meta->rebuild_lba);
4476e3869ec7SSascha Wildner kprintf("dummy_1 0x%02x\n", meta->dummy_1);
4477e3869ec7SSascha Wildner kprintf("name_1 <%.15s>\n", meta->name_1);
4478e3869ec7SSascha Wildner kprintf("dummy_2 0x%02x\n", meta->dummy_2);
4479e3869ec7SSascha Wildner kprintf("name_2 <%.15s>\n", meta->name_2);
4480e3869ec7SSascha Wildner kprintf("=================================================\n");
4481c1b3d7c5SThomas E. Spanjaard }
4482c1b3d7c5SThomas E. Spanjaard
4483c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_hptv3_type(int type)4484c1b3d7c5SThomas E. Spanjaard ata_raid_hptv3_type(int type)
4485c1b3d7c5SThomas E. Spanjaard {
4486c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4487c1b3d7c5SThomas E. Spanjaard
4488c1b3d7c5SThomas E. Spanjaard switch (type) {
4489c1b3d7c5SThomas E. Spanjaard case HPTV3_T_SPARE: return "SPARE";
4490c1b3d7c5SThomas E. Spanjaard case HPTV3_T_JBOD: return "JBOD";
4491c1b3d7c5SThomas E. Spanjaard case HPTV3_T_SPAN: return "SPAN";
4492c1b3d7c5SThomas E. Spanjaard case HPTV3_T_RAID0: return "RAID0";
4493c1b3d7c5SThomas E. Spanjaard case HPTV3_T_RAID1: return "RAID1";
4494c1b3d7c5SThomas E. Spanjaard case HPTV3_T_RAID3: return "RAID3";
4495c1b3d7c5SThomas E. Spanjaard case HPTV3_T_RAID5: return "RAID5";
4496f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4497c1b3d7c5SThomas E. Spanjaard return buffer;
4498c1b3d7c5SThomas E. Spanjaard }
4499c1b3d7c5SThomas E. Spanjaard }
4500c1b3d7c5SThomas E. Spanjaard
4501c1b3d7c5SThomas E. Spanjaard static void
ata_raid_hptv3_print_meta(struct hptv3_raid_conf * meta)4502c1b3d7c5SThomas E. Spanjaard ata_raid_hptv3_print_meta(struct hptv3_raid_conf *meta)
4503c1b3d7c5SThomas E. Spanjaard {
4504c1b3d7c5SThomas E. Spanjaard int i;
4505c1b3d7c5SThomas E. Spanjaard
4506e3869ec7SSascha Wildner kprintf("****** ATA Highpoint V3 RocketRAID Metadata *****\n");
4507e3869ec7SSascha Wildner kprintf("magic 0x%08x\n", meta->magic);
4508e3869ec7SSascha Wildner kprintf("magic_0 0x%08x\n", meta->magic_0);
4509e3869ec7SSascha Wildner kprintf("checksum_0 0x%02x\n", meta->checksum_0);
4510e3869ec7SSascha Wildner kprintf("mode 0x%02x\n", meta->mode);
4511e3869ec7SSascha Wildner kprintf("user_mode 0x%02x\n", meta->user_mode);
4512e3869ec7SSascha Wildner kprintf("config_entries 0x%02x\n", meta->config_entries);
4513c1b3d7c5SThomas E. Spanjaard for (i = 0; i < meta->config_entries; i++) {
4514e3869ec7SSascha Wildner kprintf("config %d:\n", i);
4515e3869ec7SSascha Wildner kprintf(" total_sectors %ju\n",
4516c1b3d7c5SThomas E. Spanjaard meta->configs[0].total_sectors +
4517c1b3d7c5SThomas E. Spanjaard ((u_int64_t)meta->configs_high[0].total_sectors << 32));
4518e3869ec7SSascha Wildner kprintf(" type %s\n",
4519c1b3d7c5SThomas E. Spanjaard ata_raid_hptv3_type(meta->configs[i].type));
4520e3869ec7SSascha Wildner kprintf(" total_disks %u\n", meta->configs[i].total_disks);
4521e3869ec7SSascha Wildner kprintf(" disk_number %u\n", meta->configs[i].disk_number);
4522e3869ec7SSascha Wildner kprintf(" stripe_shift %u\n", meta->configs[i].stripe_shift);
4523c3783d8fSzrj kprintf(" status %pb%i\n",
4524c3783d8fSzrj "\20\2RAID5\1NEED_REBUILD\n", meta->configs[i].status);
4525e3869ec7SSascha Wildner kprintf(" critical_disks %u\n", meta->configs[i].critical_disks);
4526e3869ec7SSascha Wildner kprintf(" rebuild_lba %ju\n",
4527c1b3d7c5SThomas E. Spanjaard meta->configs_high[0].rebuild_lba +
4528c1b3d7c5SThomas E. Spanjaard ((u_int64_t)meta->configs_high[0].rebuild_lba << 32));
4529c1b3d7c5SThomas E. Spanjaard }
4530e3869ec7SSascha Wildner kprintf("name <%.16s>\n", meta->name);
4531e3869ec7SSascha Wildner kprintf("timestamp 0x%08x\n", meta->timestamp);
4532e3869ec7SSascha Wildner kprintf("description <%.16s>\n", meta->description);
4533e3869ec7SSascha Wildner kprintf("creator <%.16s>\n", meta->creator);
4534e3869ec7SSascha Wildner kprintf("checksum_1 0x%02x\n", meta->checksum_1);
4535e3869ec7SSascha Wildner kprintf("dummy_0 0x%02x\n", meta->dummy_0);
4536e3869ec7SSascha Wildner kprintf("dummy_1 0x%02x\n", meta->dummy_1);
4537c3783d8fSzrj kprintf("flags %pb%i\n",
4538c3783d8fSzrj "\20\4RCACHE\3WCACHE\2NCQ\1TCQ\n", meta->flags);
4539e3869ec7SSascha Wildner kprintf("=================================================\n");
4540c1b3d7c5SThomas E. Spanjaard }
4541c1b3d7c5SThomas E. Spanjaard
4542c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_intel_type(int type)4543c1b3d7c5SThomas E. Spanjaard ata_raid_intel_type(int type)
4544c1b3d7c5SThomas E. Spanjaard {
4545c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4546c1b3d7c5SThomas E. Spanjaard
4547c1b3d7c5SThomas E. Spanjaard switch (type) {
4548c1b3d7c5SThomas E. Spanjaard case INTEL_T_RAID0: return "RAID0";
4549c1b3d7c5SThomas E. Spanjaard case INTEL_T_RAID1: return "RAID1";
4550c1b3d7c5SThomas E. Spanjaard case INTEL_T_RAID5: return "RAID5";
4551f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4552c1b3d7c5SThomas E. Spanjaard return buffer;
4553c1b3d7c5SThomas E. Spanjaard }
4554c1b3d7c5SThomas E. Spanjaard }
4555c1b3d7c5SThomas E. Spanjaard
4556c1b3d7c5SThomas E. Spanjaard static void
ata_raid_intel_print_meta(struct intel_raid_conf * meta)4557c1b3d7c5SThomas E. Spanjaard ata_raid_intel_print_meta(struct intel_raid_conf *meta)
4558c1b3d7c5SThomas E. Spanjaard {
4559c1b3d7c5SThomas E. Spanjaard struct intel_raid_mapping *map;
4560c1b3d7c5SThomas E. Spanjaard int i, j;
4561c1b3d7c5SThomas E. Spanjaard
4562e3869ec7SSascha Wildner kprintf("********* ATA Intel MatrixRAID Metadata *********\n");
4563e3869ec7SSascha Wildner kprintf("intel_id <%.24s>\n", meta->intel_id);
4564e3869ec7SSascha Wildner kprintf("version <%.6s>\n", meta->version);
4565e3869ec7SSascha Wildner kprintf("checksum 0x%08x\n", meta->checksum);
4566e3869ec7SSascha Wildner kprintf("config_size 0x%08x\n", meta->config_size);
4567e3869ec7SSascha Wildner kprintf("config_id 0x%08x\n", meta->config_id);
4568e3869ec7SSascha Wildner kprintf("generation 0x%08x\n", meta->generation);
4569e3869ec7SSascha Wildner kprintf("total_disks %u\n", meta->total_disks);
4570e3869ec7SSascha Wildner kprintf("total_volumes %u\n", meta->total_volumes);
4571e3869ec7SSascha Wildner kprintf("DISK# serial disk_sectors disk_id flags\n");
4572c1b3d7c5SThomas E. Spanjaard for (i = 0; i < meta->total_disks; i++ ) {
4573e3869ec7SSascha Wildner kprintf(" %d <%.16s> %u 0x%08x 0x%08x\n", i,
4574c1b3d7c5SThomas E. Spanjaard meta->disk[i].serial, meta->disk[i].sectors,
4575c1b3d7c5SThomas E. Spanjaard meta->disk[i].id, meta->disk[i].flags);
4576c1b3d7c5SThomas E. Spanjaard }
4577c1b3d7c5SThomas E. Spanjaard map = (struct intel_raid_mapping *)&meta->disk[meta->total_disks];
4578c1b3d7c5SThomas E. Spanjaard for (j = 0; j < meta->total_volumes; j++) {
4579e3869ec7SSascha Wildner kprintf("name %.16s\n", map->name);
4580e3869ec7SSascha Wildner kprintf("total_sectors %ju\n", map->total_sectors);
4581e3869ec7SSascha Wildner kprintf("state %u\n", map->state);
4582e3869ec7SSascha Wildner kprintf("reserved %u\n", map->reserved);
4583e3869ec7SSascha Wildner kprintf("offset %u\n", map->offset);
4584e3869ec7SSascha Wildner kprintf("disk_sectors %u\n", map->disk_sectors);
4585e3869ec7SSascha Wildner kprintf("stripe_count %u\n", map->stripe_count);
4586e3869ec7SSascha Wildner kprintf("stripe_sectors %u\n", map->stripe_sectors);
4587e3869ec7SSascha Wildner kprintf("status %u\n", map->status);
4588e3869ec7SSascha Wildner kprintf("type %s\n", ata_raid_intel_type(map->type));
4589e3869ec7SSascha Wildner kprintf("total_disks %u\n", map->total_disks);
4590e3869ec7SSascha Wildner kprintf("magic[0] 0x%02x\n", map->magic[0]);
4591e3869ec7SSascha Wildner kprintf("magic[1] 0x%02x\n", map->magic[1]);
4592e3869ec7SSascha Wildner kprintf("magic[2] 0x%02x\n", map->magic[2]);
4593c1b3d7c5SThomas E. Spanjaard for (i = 0; i < map->total_disks; i++ ) {
4594e3869ec7SSascha Wildner kprintf(" disk %d at disk_idx 0x%08x\n", i, map->disk_idx[i]);
4595c1b3d7c5SThomas E. Spanjaard }
4596c1b3d7c5SThomas E. Spanjaard map = (struct intel_raid_mapping *)&map->disk_idx[map->total_disks];
4597c1b3d7c5SThomas E. Spanjaard }
4598e3869ec7SSascha Wildner kprintf("=================================================\n");
4599c1b3d7c5SThomas E. Spanjaard }
4600c1b3d7c5SThomas E. Spanjaard
4601c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_ite_type(int type)4602c1b3d7c5SThomas E. Spanjaard ata_raid_ite_type(int type)
4603c1b3d7c5SThomas E. Spanjaard {
4604c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4605c1b3d7c5SThomas E. Spanjaard
4606c1b3d7c5SThomas E. Spanjaard switch (type) {
4607c1b3d7c5SThomas E. Spanjaard case ITE_T_RAID0: return "RAID0";
4608c1b3d7c5SThomas E. Spanjaard case ITE_T_RAID1: return "RAID1";
4609c1b3d7c5SThomas E. Spanjaard case ITE_T_RAID01: return "RAID0+1";
4610c1b3d7c5SThomas E. Spanjaard case ITE_T_SPAN: return "SPAN";
4611f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4612c1b3d7c5SThomas E. Spanjaard return buffer;
4613c1b3d7c5SThomas E. Spanjaard }
4614c1b3d7c5SThomas E. Spanjaard }
4615c1b3d7c5SThomas E. Spanjaard
4616c1b3d7c5SThomas E. Spanjaard static void
ata_raid_ite_print_meta(struct ite_raid_conf * meta)4617c1b3d7c5SThomas E. Spanjaard ata_raid_ite_print_meta(struct ite_raid_conf *meta)
4618c1b3d7c5SThomas E. Spanjaard {
4619e3869ec7SSascha Wildner kprintf("*** ATA Integrated Technology Express Metadata **\n");
4620e3869ec7SSascha Wildner kprintf("ite_id <%.40s>\n", meta->ite_id);
4621e3869ec7SSascha Wildner kprintf("timestamp_0 %04x/%02x/%02x %02x:%02x:%02x.%02x\n",
4622c1b3d7c5SThomas E. Spanjaard *((u_int16_t *)meta->timestamp_0), meta->timestamp_0[2],
4623c1b3d7c5SThomas E. Spanjaard meta->timestamp_0[3], meta->timestamp_0[5], meta->timestamp_0[4],
4624c1b3d7c5SThomas E. Spanjaard meta->timestamp_0[7], meta->timestamp_0[6]);
4625e3869ec7SSascha Wildner kprintf("total_sectors %jd\n", meta->total_sectors);
4626e3869ec7SSascha Wildner kprintf("type %s\n", ata_raid_ite_type(meta->type));
4627e3869ec7SSascha Wildner kprintf("stripe_1kblocks %u\n", meta->stripe_1kblocks);
4628e3869ec7SSascha Wildner kprintf("timestamp_1 %04x/%02x/%02x %02x:%02x:%02x.%02x\n",
4629c1b3d7c5SThomas E. Spanjaard *((u_int16_t *)meta->timestamp_1), meta->timestamp_1[2],
4630c1b3d7c5SThomas E. Spanjaard meta->timestamp_1[3], meta->timestamp_1[5], meta->timestamp_1[4],
4631c1b3d7c5SThomas E. Spanjaard meta->timestamp_1[7], meta->timestamp_1[6]);
4632e3869ec7SSascha Wildner kprintf("stripe_sectors %u\n", meta->stripe_sectors);
4633e3869ec7SSascha Wildner kprintf("array_width %u\n", meta->array_width);
4634e3869ec7SSascha Wildner kprintf("disk_number %u\n", meta->disk_number);
4635e3869ec7SSascha Wildner kprintf("disk_sectors %u\n", meta->disk_sectors);
4636e3869ec7SSascha Wildner kprintf("=================================================\n");
4637c1b3d7c5SThomas E. Spanjaard }
4638c1b3d7c5SThomas E. Spanjaard
4639c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_jmicron_type(int type)4640c1b3d7c5SThomas E. Spanjaard ata_raid_jmicron_type(int type)
4641c1b3d7c5SThomas E. Spanjaard {
4642c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4643c1b3d7c5SThomas E. Spanjaard
4644c1b3d7c5SThomas E. Spanjaard switch (type) {
4645c1b3d7c5SThomas E. Spanjaard case JM_T_RAID0: return "RAID0";
4646c1b3d7c5SThomas E. Spanjaard case JM_T_RAID1: return "RAID1";
4647c1b3d7c5SThomas E. Spanjaard case JM_T_RAID01: return "RAID0+1";
4648c1b3d7c5SThomas E. Spanjaard case JM_T_JBOD: return "JBOD";
4649c1b3d7c5SThomas E. Spanjaard case JM_T_RAID5: return "RAID5";
4650f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4651c1b3d7c5SThomas E. Spanjaard return buffer;
4652c1b3d7c5SThomas E. Spanjaard }
4653c1b3d7c5SThomas E. Spanjaard }
4654c1b3d7c5SThomas E. Spanjaard
4655c1b3d7c5SThomas E. Spanjaard static void
ata_raid_jmicron_print_meta(struct jmicron_raid_conf * meta)4656c1b3d7c5SThomas E. Spanjaard ata_raid_jmicron_print_meta(struct jmicron_raid_conf *meta)
4657c1b3d7c5SThomas E. Spanjaard {
4658c1b3d7c5SThomas E. Spanjaard int i;
4659c1b3d7c5SThomas E. Spanjaard
4660e3869ec7SSascha Wildner kprintf("***** ATA JMicron Technology Corp Metadata ******\n");
4661e3869ec7SSascha Wildner kprintf("signature %.2s\n", meta->signature);
4662e3869ec7SSascha Wildner kprintf("version 0x%04x\n", meta->version);
4663e3869ec7SSascha Wildner kprintf("checksum 0x%04x\n", meta->checksum);
4664e3869ec7SSascha Wildner kprintf("disk_id 0x%08x\n", meta->disk_id);
4665e3869ec7SSascha Wildner kprintf("offset 0x%08x\n", meta->offset);
4666e3869ec7SSascha Wildner kprintf("disk_sectors_low 0x%08x\n", meta->disk_sectors_low);
4667e3869ec7SSascha Wildner kprintf("disk_sectors_high 0x%08x\n", meta->disk_sectors_high);
4668e3869ec7SSascha Wildner kprintf("name %.16s\n", meta->name);
4669e3869ec7SSascha Wildner kprintf("type %s\n", ata_raid_jmicron_type(meta->type));
4670e3869ec7SSascha Wildner kprintf("stripe_shift %d\n", meta->stripe_shift);
4671e3869ec7SSascha Wildner kprintf("flags 0x%04x\n", meta->flags);
4672e3869ec7SSascha Wildner kprintf("spare:\n");
4673c1b3d7c5SThomas E. Spanjaard for (i=0; i < 2 && meta->spare[i]; i++)
4674e3869ec7SSascha Wildner kprintf(" %d 0x%08x\n", i, meta->spare[i]);
4675e3869ec7SSascha Wildner kprintf("disks:\n");
4676c1b3d7c5SThomas E. Spanjaard for (i=0; i < 8 && meta->disks[i]; i++)
4677e3869ec7SSascha Wildner kprintf(" %d 0x%08x\n", i, meta->disks[i]);
4678e3869ec7SSascha Wildner kprintf("=================================================\n");
4679c1b3d7c5SThomas E. Spanjaard }
4680c1b3d7c5SThomas E. Spanjaard
4681c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_lsiv2_type(int type)4682c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv2_type(int type)
4683c1b3d7c5SThomas E. Spanjaard {
4684c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4685c1b3d7c5SThomas E. Spanjaard
4686c1b3d7c5SThomas E. Spanjaard switch (type) {
4687c1b3d7c5SThomas E. Spanjaard case LSIV2_T_RAID0: return "RAID0";
4688c1b3d7c5SThomas E. Spanjaard case LSIV2_T_RAID1: return "RAID1";
4689c1b3d7c5SThomas E. Spanjaard case LSIV2_T_SPARE: return "SPARE";
4690f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4691c1b3d7c5SThomas E. Spanjaard return buffer;
4692c1b3d7c5SThomas E. Spanjaard }
4693c1b3d7c5SThomas E. Spanjaard }
4694c1b3d7c5SThomas E. Spanjaard
4695c1b3d7c5SThomas E. Spanjaard static void
ata_raid_lsiv2_print_meta(struct lsiv2_raid_conf * meta)4696c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv2_print_meta(struct lsiv2_raid_conf *meta)
4697c1b3d7c5SThomas E. Spanjaard {
4698c1b3d7c5SThomas E. Spanjaard int i;
4699c1b3d7c5SThomas E. Spanjaard
4700e3869ec7SSascha Wildner kprintf("******* ATA LSILogic V2 MegaRAID Metadata *******\n");
4701e3869ec7SSascha Wildner kprintf("lsi_id <%s>\n", meta->lsi_id);
4702e3869ec7SSascha Wildner kprintf("dummy_0 0x%02x\n", meta->dummy_0);
4703e3869ec7SSascha Wildner kprintf("flags 0x%02x\n", meta->flags);
4704e3869ec7SSascha Wildner kprintf("version 0x%04x\n", meta->version);
4705e3869ec7SSascha Wildner kprintf("config_entries 0x%02x\n", meta->config_entries);
4706e3869ec7SSascha Wildner kprintf("raid_count 0x%02x\n", meta->raid_count);
4707e3869ec7SSascha Wildner kprintf("total_disks 0x%02x\n", meta->total_disks);
4708e3869ec7SSascha Wildner kprintf("dummy_1 0x%02x\n", meta->dummy_1);
4709e3869ec7SSascha Wildner kprintf("dummy_2 0x%04x\n", meta->dummy_2);
4710c1b3d7c5SThomas E. Spanjaard for (i = 0; i < meta->config_entries; i++) {
4711e3869ec7SSascha Wildner kprintf(" type %s\n",
4712c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv2_type(meta->configs[i].raid.type));
4713e3869ec7SSascha Wildner kprintf(" dummy_0 %02x\n", meta->configs[i].raid.dummy_0);
4714e3869ec7SSascha Wildner kprintf(" stripe_sectors %u\n",
4715c1b3d7c5SThomas E. Spanjaard meta->configs[i].raid.stripe_sectors);
4716e3869ec7SSascha Wildner kprintf(" array_width %u\n",
4717c1b3d7c5SThomas E. Spanjaard meta->configs[i].raid.array_width);
4718e3869ec7SSascha Wildner kprintf(" disk_count %u\n", meta->configs[i].raid.disk_count);
4719e3869ec7SSascha Wildner kprintf(" config_offset %u\n",
4720c1b3d7c5SThomas E. Spanjaard meta->configs[i].raid.config_offset);
4721e3869ec7SSascha Wildner kprintf(" dummy_1 %u\n", meta->configs[i].raid.dummy_1);
4722e3869ec7SSascha Wildner kprintf(" flags %02x\n", meta->configs[i].raid.flags);
4723e3869ec7SSascha Wildner kprintf(" total_sectors %u\n",
4724c1b3d7c5SThomas E. Spanjaard meta->configs[i].raid.total_sectors);
4725c1b3d7c5SThomas E. Spanjaard }
4726e3869ec7SSascha Wildner kprintf("disk_number 0x%02x\n", meta->disk_number);
4727e3869ec7SSascha Wildner kprintf("raid_number 0x%02x\n", meta->raid_number);
4728e3869ec7SSascha Wildner kprintf("timestamp 0x%08x\n", meta->timestamp);
4729e3869ec7SSascha Wildner kprintf("=================================================\n");
4730c1b3d7c5SThomas E. Spanjaard }
4731c1b3d7c5SThomas E. Spanjaard
4732c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_lsiv3_type(int type)4733c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv3_type(int type)
4734c1b3d7c5SThomas E. Spanjaard {
4735c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4736c1b3d7c5SThomas E. Spanjaard
4737c1b3d7c5SThomas E. Spanjaard switch (type) {
4738c1b3d7c5SThomas E. Spanjaard case LSIV3_T_RAID0: return "RAID0";
4739c1b3d7c5SThomas E. Spanjaard case LSIV3_T_RAID1: return "RAID1";
4740f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4741c1b3d7c5SThomas E. Spanjaard return buffer;
4742c1b3d7c5SThomas E. Spanjaard }
4743c1b3d7c5SThomas E. Spanjaard }
4744c1b3d7c5SThomas E. Spanjaard
4745c1b3d7c5SThomas E. Spanjaard static void
ata_raid_lsiv3_print_meta(struct lsiv3_raid_conf * meta)4746c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv3_print_meta(struct lsiv3_raid_conf *meta)
4747c1b3d7c5SThomas E. Spanjaard {
4748c1b3d7c5SThomas E. Spanjaard int i;
4749c1b3d7c5SThomas E. Spanjaard
4750e3869ec7SSascha Wildner kprintf("******* ATA LSILogic V3 MegaRAID Metadata *******\n");
4751e3869ec7SSascha Wildner kprintf("lsi_id <%.6s>\n", meta->lsi_id);
4752e3869ec7SSascha Wildner kprintf("dummy_0 0x%04x\n", meta->dummy_0);
4753e3869ec7SSascha Wildner kprintf("version 0x%04x\n", meta->version);
4754e3869ec7SSascha Wildner kprintf("dummy_0 0x%04x\n", meta->dummy_1);
4755e3869ec7SSascha Wildner kprintf("RAID configs:\n");
4756c1b3d7c5SThomas E. Spanjaard for (i = 0; i < 8; i++) {
4757c1b3d7c5SThomas E. Spanjaard if (meta->raid[i].total_disks) {
4758e3869ec7SSascha Wildner kprintf("%02d stripe_pages %u\n", i,
4759c1b3d7c5SThomas E. Spanjaard meta->raid[i].stripe_pages);
4760e3869ec7SSascha Wildner kprintf("%02d type %s\n", i,
4761c1b3d7c5SThomas E. Spanjaard ata_raid_lsiv3_type(meta->raid[i].type));
4762e3869ec7SSascha Wildner kprintf("%02d total_disks %u\n", i,
4763c1b3d7c5SThomas E. Spanjaard meta->raid[i].total_disks);
4764e3869ec7SSascha Wildner kprintf("%02d array_width %u\n", i,
4765c1b3d7c5SThomas E. Spanjaard meta->raid[i].array_width);
4766e3869ec7SSascha Wildner kprintf("%02d sectors %u\n", i, meta->raid[i].sectors);
4767e3869ec7SSascha Wildner kprintf("%02d offset %u\n", i, meta->raid[i].offset);
4768e3869ec7SSascha Wildner kprintf("%02d device 0x%02x\n", i,
4769c1b3d7c5SThomas E. Spanjaard meta->raid[i].device);
4770c1b3d7c5SThomas E. Spanjaard }
4771c1b3d7c5SThomas E. Spanjaard }
4772e3869ec7SSascha Wildner kprintf("DISK configs:\n");
4773c1b3d7c5SThomas E. Spanjaard for (i = 0; i < 6; i++) {
4774c1b3d7c5SThomas E. Spanjaard if (meta->disk[i].disk_sectors) {
4775e3869ec7SSascha Wildner kprintf("%02d disk_sectors %u\n", i,
4776c1b3d7c5SThomas E. Spanjaard meta->disk[i].disk_sectors);
4777e3869ec7SSascha Wildner kprintf("%02d flags 0x%02x\n", i, meta->disk[i].flags);
4778c1b3d7c5SThomas E. Spanjaard }
4779c1b3d7c5SThomas E. Spanjaard }
4780e3869ec7SSascha Wildner kprintf("device 0x%02x\n", meta->device);
4781e3869ec7SSascha Wildner kprintf("timestamp 0x%08x\n", meta->timestamp);
4782e3869ec7SSascha Wildner kprintf("checksum_1 0x%02x\n", meta->checksum_1);
4783e3869ec7SSascha Wildner kprintf("=================================================\n");
4784c1b3d7c5SThomas E. Spanjaard }
4785c1b3d7c5SThomas E. Spanjaard
4786c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_nvidia_type(int type)4787c1b3d7c5SThomas E. Spanjaard ata_raid_nvidia_type(int type)
4788c1b3d7c5SThomas E. Spanjaard {
4789c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4790c1b3d7c5SThomas E. Spanjaard
4791c1b3d7c5SThomas E. Spanjaard switch (type) {
4792c1b3d7c5SThomas E. Spanjaard case NV_T_SPAN: return "SPAN";
4793c1b3d7c5SThomas E. Spanjaard case NV_T_RAID0: return "RAID0";
4794c1b3d7c5SThomas E. Spanjaard case NV_T_RAID1: return "RAID1";
4795c1b3d7c5SThomas E. Spanjaard case NV_T_RAID3: return "RAID3";
4796c1b3d7c5SThomas E. Spanjaard case NV_T_RAID5: return "RAID5";
4797c1b3d7c5SThomas E. Spanjaard case NV_T_RAID01: return "RAID0+1";
4798f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4799c1b3d7c5SThomas E. Spanjaard return buffer;
4800c1b3d7c5SThomas E. Spanjaard }
4801c1b3d7c5SThomas E. Spanjaard }
4802c1b3d7c5SThomas E. Spanjaard
4803c1b3d7c5SThomas E. Spanjaard static void
ata_raid_nvidia_print_meta(struct nvidia_raid_conf * meta)4804c1b3d7c5SThomas E. Spanjaard ata_raid_nvidia_print_meta(struct nvidia_raid_conf *meta)
4805c1b3d7c5SThomas E. Spanjaard {
4806e3869ec7SSascha Wildner kprintf("******** ATA nVidia MediaShield Metadata ********\n");
4807e3869ec7SSascha Wildner kprintf("nvidia_id <%.8s>\n", meta->nvidia_id);
4808b8ba70b8SSascha Wildner kprintf("config_size %u\n", meta->config_size);
4809e3869ec7SSascha Wildner kprintf("checksum 0x%08x\n", meta->checksum);
4810e3869ec7SSascha Wildner kprintf("version 0x%04x\n", meta->version);
4811b8ba70b8SSascha Wildner kprintf("disk_number %u\n", meta->disk_number);
4812e3869ec7SSascha Wildner kprintf("dummy_0 0x%02x\n", meta->dummy_0);
4813b8ba70b8SSascha Wildner kprintf("total_sectors %u\n", meta->total_sectors);
4814b8ba70b8SSascha Wildner kprintf("sectors_size %u\n", meta->sector_size);
4815e3869ec7SSascha Wildner kprintf("serial %.16s\n", meta->serial);
4816e3869ec7SSascha Wildner kprintf("revision %.4s\n", meta->revision);
4817e3869ec7SSascha Wildner kprintf("dummy_1 0x%08x\n", meta->dummy_1);
4818e3869ec7SSascha Wildner kprintf("magic_0 0x%08x\n", meta->magic_0);
4819e3869ec7SSascha Wildner kprintf("magic_1 0x%016jx\n", meta->magic_1);
4820e3869ec7SSascha Wildner kprintf("magic_2 0x%016jx\n", meta->magic_2);
4821e3869ec7SSascha Wildner kprintf("flags 0x%02x\n", meta->flags);
4822b8ba70b8SSascha Wildner kprintf("array_width %u\n", meta->array_width);
4823b8ba70b8SSascha Wildner kprintf("total_disks %u\n", meta->total_disks);
4824e3869ec7SSascha Wildner kprintf("dummy_2 0x%02x\n", meta->dummy_2);
4825e3869ec7SSascha Wildner kprintf("type %s\n", ata_raid_nvidia_type(meta->type));
4826e3869ec7SSascha Wildner kprintf("dummy_3 0x%04x\n", meta->dummy_3);
4827b8ba70b8SSascha Wildner kprintf("stripe_sectors %u\n", meta->stripe_sectors);
4828b8ba70b8SSascha Wildner kprintf("stripe_bytes %u\n", meta->stripe_bytes);
4829b8ba70b8SSascha Wildner kprintf("stripe_shift %u\n", meta->stripe_shift);
4830e3869ec7SSascha Wildner kprintf("stripe_mask 0x%08x\n", meta->stripe_mask);
4831b8ba70b8SSascha Wildner kprintf("stripe_sizesectors %u\n", meta->stripe_sizesectors);
4832b8ba70b8SSascha Wildner kprintf("stripe_sizebytes %u\n", meta->stripe_sizebytes);
4833b8ba70b8SSascha Wildner kprintf("rebuild_lba %u\n", meta->rebuild_lba);
4834e3869ec7SSascha Wildner kprintf("dummy_4 0x%08x\n", meta->dummy_4);
4835e3869ec7SSascha Wildner kprintf("dummy_5 0x%08x\n", meta->dummy_5);
4836e3869ec7SSascha Wildner kprintf("status 0x%08x\n", meta->status);
4837e3869ec7SSascha Wildner kprintf("=================================================\n");
4838c1b3d7c5SThomas E. Spanjaard }
4839c1b3d7c5SThomas E. Spanjaard
4840c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_promise_type(int type)4841c1b3d7c5SThomas E. Spanjaard ata_raid_promise_type(int type)
4842c1b3d7c5SThomas E. Spanjaard {
4843c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4844c1b3d7c5SThomas E. Spanjaard
4845c1b3d7c5SThomas E. Spanjaard switch (type) {
4846c1b3d7c5SThomas E. Spanjaard case PR_T_RAID0: return "RAID0";
4847c1b3d7c5SThomas E. Spanjaard case PR_T_RAID1: return "RAID1";
4848c1b3d7c5SThomas E. Spanjaard case PR_T_RAID3: return "RAID3";
4849c1b3d7c5SThomas E. Spanjaard case PR_T_RAID5: return "RAID5";
4850c1b3d7c5SThomas E. Spanjaard case PR_T_SPAN: return "SPAN";
4851f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4852c1b3d7c5SThomas E. Spanjaard return buffer;
4853c1b3d7c5SThomas E. Spanjaard }
4854c1b3d7c5SThomas E. Spanjaard }
4855c1b3d7c5SThomas E. Spanjaard
4856c1b3d7c5SThomas E. Spanjaard static void
ata_raid_promise_print_meta(struct promise_raid_conf * meta)4857c1b3d7c5SThomas E. Spanjaard ata_raid_promise_print_meta(struct promise_raid_conf *meta)
4858c1b3d7c5SThomas E. Spanjaard {
4859c1b3d7c5SThomas E. Spanjaard int i;
4860c1b3d7c5SThomas E. Spanjaard
4861e3869ec7SSascha Wildner kprintf("********* ATA Promise FastTrak Metadata *********\n");
4862e3869ec7SSascha Wildner kprintf("promise_id <%s>\n", meta->promise_id);
4863e3869ec7SSascha Wildner kprintf("dummy_0 0x%08x\n", meta->dummy_0);
4864e3869ec7SSascha Wildner kprintf("magic_0 0x%016jx\n", meta->magic_0);
4865e3869ec7SSascha Wildner kprintf("magic_1 0x%04x\n", meta->magic_1);
4866e3869ec7SSascha Wildner kprintf("magic_2 0x%08x\n", meta->magic_2);
4867c3783d8fSzrj kprintf("integrity 0x%08x %pb%i\n", meta->raid.integrity,
4868c3783d8fSzrj "\20\10VALID\n", meta->raid.integrity);
4869c3783d8fSzrj kprintf("flags 0x%02x %pb%i\n",
4870c3783d8fSzrj meta->raid.flags,
4871c1b3d7c5SThomas E. Spanjaard "\20\10READY\7DOWN\6REDIR\5DUPLICATE\4SPARE"
4872c3783d8fSzrj "\3ASSIGNED\2ONLINE\1VALID\n", meta->raid.flags);
4873e3869ec7SSascha Wildner kprintf("disk_number %d\n", meta->raid.disk_number);
4874e3869ec7SSascha Wildner kprintf("channel 0x%02x\n", meta->raid.channel);
4875e3869ec7SSascha Wildner kprintf("device 0x%02x\n", meta->raid.device);
4876e3869ec7SSascha Wildner kprintf("magic_0 0x%016jx\n", meta->raid.magic_0);
4877e3869ec7SSascha Wildner kprintf("disk_offset %u\n", meta->raid.disk_offset);
4878e3869ec7SSascha Wildner kprintf("disk_sectors %u\n", meta->raid.disk_sectors);
4879e3869ec7SSascha Wildner kprintf("rebuild_lba 0x%08x\n", meta->raid.rebuild_lba);
4880e3869ec7SSascha Wildner kprintf("generation 0x%04x\n", meta->raid.generation);
4881c3783d8fSzrj kprintf("status 0x%02x %pb%i\n",
4882c3783d8fSzrj meta->raid.status,
4883c3783d8fSzrj "\20\6MARKED\5DEGRADED\4READY\3INITED\2ONLINE\1VALID\n",
4884c3783d8fSzrj meta->raid.status);
4885e3869ec7SSascha Wildner kprintf("type %s\n", ata_raid_promise_type(meta->raid.type));
4886e3869ec7SSascha Wildner kprintf("total_disks %u\n", meta->raid.total_disks);
4887e3869ec7SSascha Wildner kprintf("stripe_shift %u\n", meta->raid.stripe_shift);
4888e3869ec7SSascha Wildner kprintf("array_width %u\n", meta->raid.array_width);
4889e3869ec7SSascha Wildner kprintf("array_number %u\n", meta->raid.array_number);
4890e3869ec7SSascha Wildner kprintf("total_sectors %u\n", meta->raid.total_sectors);
4891e3869ec7SSascha Wildner kprintf("cylinders %u\n", meta->raid.cylinders);
4892e3869ec7SSascha Wildner kprintf("heads %u\n", meta->raid.heads);
4893e3869ec7SSascha Wildner kprintf("sectors %u\n", meta->raid.sectors);
4894e3869ec7SSascha Wildner kprintf("magic_1 0x%016jx\n", meta->raid.magic_1);
4895e3869ec7SSascha Wildner kprintf("DISK# flags dummy_0 channel device magic_0\n");
4896c1b3d7c5SThomas E. Spanjaard for (i = 0; i < 8; i++) {
4897c3783d8fSzrj kprintf(" %d %pb%i 0x%02x 0x%02x 0x%02x ", i,
4898c1b3d7c5SThomas E. Spanjaard "\20\10READY\7DOWN\6REDIR\5DUPLICATE\4SPARE"
4899c3783d8fSzrj "\3ASSIGNED\2ONLINE\1VALID\n",
4900c3783d8fSzrj meta->raid.disk[i].flags, meta->raid.disk[i].dummy_0,
4901c1b3d7c5SThomas E. Spanjaard meta->raid.disk[i].channel, meta->raid.disk[i].device);
4902e3869ec7SSascha Wildner kprintf("0x%016jx\n", meta->raid.disk[i].magic_0);
4903c1b3d7c5SThomas E. Spanjaard }
4904e3869ec7SSascha Wildner kprintf("checksum 0x%08x\n", meta->checksum);
4905e3869ec7SSascha Wildner kprintf("=================================================\n");
4906c1b3d7c5SThomas E. Spanjaard }
4907c1b3d7c5SThomas E. Spanjaard
4908c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_sii_type(int type)4909c1b3d7c5SThomas E. Spanjaard ata_raid_sii_type(int type)
4910c1b3d7c5SThomas E. Spanjaard {
4911c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4912c1b3d7c5SThomas E. Spanjaard
4913c1b3d7c5SThomas E. Spanjaard switch (type) {
4914c1b3d7c5SThomas E. Spanjaard case SII_T_RAID0: return "RAID0";
4915c1b3d7c5SThomas E. Spanjaard case SII_T_RAID1: return "RAID1";
4916c1b3d7c5SThomas E. Spanjaard case SII_T_RAID01: return "RAID0+1";
4917c1b3d7c5SThomas E. Spanjaard case SII_T_SPARE: return "SPARE";
4918f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4919c1b3d7c5SThomas E. Spanjaard return buffer;
4920c1b3d7c5SThomas E. Spanjaard }
4921c1b3d7c5SThomas E. Spanjaard }
4922c1b3d7c5SThomas E. Spanjaard
4923c1b3d7c5SThomas E. Spanjaard static void
ata_raid_sii_print_meta(struct sii_raid_conf * meta)4924c1b3d7c5SThomas E. Spanjaard ata_raid_sii_print_meta(struct sii_raid_conf *meta)
4925c1b3d7c5SThomas E. Spanjaard {
4926e3869ec7SSascha Wildner kprintf("******* ATA Silicon Image Medley Metadata *******\n");
4927e3869ec7SSascha Wildner kprintf("total_sectors %ju\n", meta->total_sectors);
4928e3869ec7SSascha Wildner kprintf("dummy_0 0x%04x\n", meta->dummy_0);
4929e3869ec7SSascha Wildner kprintf("dummy_1 0x%04x\n", meta->dummy_1);
4930e3869ec7SSascha Wildner kprintf("controller_pci_id 0x%08x\n", meta->controller_pci_id);
4931e3869ec7SSascha Wildner kprintf("version_minor 0x%04x\n", meta->version_minor);
4932e3869ec7SSascha Wildner kprintf("version_major 0x%04x\n", meta->version_major);
4933e3869ec7SSascha Wildner kprintf("timestamp 20%02x/%02x/%02x %02x:%02x:%02x\n",
4934c1b3d7c5SThomas E. Spanjaard meta->timestamp[5], meta->timestamp[4], meta->timestamp[3],
4935c1b3d7c5SThomas E. Spanjaard meta->timestamp[2], meta->timestamp[1], meta->timestamp[0]);
4936e3869ec7SSascha Wildner kprintf("stripe_sectors %u\n", meta->stripe_sectors);
4937e3869ec7SSascha Wildner kprintf("dummy_2 0x%04x\n", meta->dummy_2);
4938e3869ec7SSascha Wildner kprintf("disk_number %u\n", meta->disk_number);
4939e3869ec7SSascha Wildner kprintf("type %s\n", ata_raid_sii_type(meta->type));
4940e3869ec7SSascha Wildner kprintf("raid0_disks %u\n", meta->raid0_disks);
4941e3869ec7SSascha Wildner kprintf("raid0_ident %u\n", meta->raid0_ident);
4942e3869ec7SSascha Wildner kprintf("raid1_disks %u\n", meta->raid1_disks);
4943e3869ec7SSascha Wildner kprintf("raid1_ident %u\n", meta->raid1_ident);
4944e3869ec7SSascha Wildner kprintf("rebuild_lba %ju\n", meta->rebuild_lba);
4945e3869ec7SSascha Wildner kprintf("generation 0x%08x\n", meta->generation);
4946c3783d8fSzrj kprintf("status 0x%02x %pb%i\n",
4947c3783d8fSzrj meta->status, "\20\1READY\n", meta->status);
4948e3869ec7SSascha Wildner kprintf("base_raid1_position %02x\n", meta->base_raid1_position);
4949e3869ec7SSascha Wildner kprintf("base_raid0_position %02x\n", meta->base_raid0_position);
4950e3869ec7SSascha Wildner kprintf("position %02x\n", meta->position);
4951e3869ec7SSascha Wildner kprintf("dummy_3 %04x\n", meta->dummy_3);
4952e3869ec7SSascha Wildner kprintf("name <%.16s>\n", meta->name);
4953e3869ec7SSascha Wildner kprintf("checksum_0 0x%04x\n", meta->checksum_0);
4954e3869ec7SSascha Wildner kprintf("checksum_1 0x%04x\n", meta->checksum_1);
4955e3869ec7SSascha Wildner kprintf("=================================================\n");
4956c1b3d7c5SThomas E. Spanjaard }
4957c1b3d7c5SThomas E. Spanjaard
4958c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_sis_type(int type)4959c1b3d7c5SThomas E. Spanjaard ata_raid_sis_type(int type)
4960c1b3d7c5SThomas E. Spanjaard {
4961c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4962c1b3d7c5SThomas E. Spanjaard
4963c1b3d7c5SThomas E. Spanjaard switch (type) {
4964c1b3d7c5SThomas E. Spanjaard case SIS_T_JBOD: return "JBOD";
4965c1b3d7c5SThomas E. Spanjaard case SIS_T_RAID0: return "RAID0";
4966c1b3d7c5SThomas E. Spanjaard case SIS_T_RAID1: return "RAID1";
4967f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
4968c1b3d7c5SThomas E. Spanjaard return buffer;
4969c1b3d7c5SThomas E. Spanjaard }
4970c1b3d7c5SThomas E. Spanjaard }
4971c1b3d7c5SThomas E. Spanjaard
4972c1b3d7c5SThomas E. Spanjaard static void
ata_raid_sis_print_meta(struct sis_raid_conf * meta)4973c1b3d7c5SThomas E. Spanjaard ata_raid_sis_print_meta(struct sis_raid_conf *meta)
4974c1b3d7c5SThomas E. Spanjaard {
4975e3869ec7SSascha Wildner kprintf("**** ATA Silicon Integrated Systems Metadata ****\n");
4976e3869ec7SSascha Wildner kprintf("magic 0x%04x\n", meta->magic);
4977e3869ec7SSascha Wildner kprintf("disks 0x%02x\n", meta->disks);
4978e3869ec7SSascha Wildner kprintf("type %s\n",
4979c1b3d7c5SThomas E. Spanjaard ata_raid_sis_type(meta->type_total_disks & SIS_T_MASK));
4980e3869ec7SSascha Wildner kprintf("total_disks %u\n", meta->type_total_disks & SIS_D_MASK);
4981e3869ec7SSascha Wildner kprintf("dummy_0 0x%08x\n", meta->dummy_0);
4982e3869ec7SSascha Wildner kprintf("controller_pci_id 0x%08x\n", meta->controller_pci_id);
4983e3869ec7SSascha Wildner kprintf("stripe_sectors %u\n", meta->stripe_sectors);
4984e3869ec7SSascha Wildner kprintf("dummy_1 0x%04x\n", meta->dummy_1);
4985e3869ec7SSascha Wildner kprintf("timestamp 0x%08x\n", meta->timestamp);
4986e3869ec7SSascha Wildner kprintf("model %.40s\n", meta->model);
4987e3869ec7SSascha Wildner kprintf("disk_number %u\n", meta->disk_number);
4988e3869ec7SSascha Wildner kprintf("dummy_2 0x%02x 0x%02x 0x%02x\n",
4989c1b3d7c5SThomas E. Spanjaard meta->dummy_2[0], meta->dummy_2[1], meta->dummy_2[2]);
4990e3869ec7SSascha Wildner kprintf("=================================================\n");
4991c1b3d7c5SThomas E. Spanjaard }
4992c1b3d7c5SThomas E. Spanjaard
4993c1b3d7c5SThomas E. Spanjaard static char *
ata_raid_via_type(int type)4994c1b3d7c5SThomas E. Spanjaard ata_raid_via_type(int type)
4995c1b3d7c5SThomas E. Spanjaard {
4996c1b3d7c5SThomas E. Spanjaard static char buffer[16];
4997c1b3d7c5SThomas E. Spanjaard
4998c1b3d7c5SThomas E. Spanjaard switch (type) {
4999c1b3d7c5SThomas E. Spanjaard case VIA_T_RAID0: return "RAID0";
5000c1b3d7c5SThomas E. Spanjaard case VIA_T_RAID1: return "RAID1";
5001c1b3d7c5SThomas E. Spanjaard case VIA_T_RAID5: return "RAID5";
5002c1b3d7c5SThomas E. Spanjaard case VIA_T_RAID01: return "RAID0+1";
5003c1b3d7c5SThomas E. Spanjaard case VIA_T_SPAN: return "SPAN";
5004f8c7a42dSMatthew Dillon default: ksprintf(buffer, "UNKNOWN 0x%02x", type);
5005c1b3d7c5SThomas E. Spanjaard return buffer;
5006c1b3d7c5SThomas E. Spanjaard }
5007c1b3d7c5SThomas E. Spanjaard }
5008c1b3d7c5SThomas E. Spanjaard
5009c1b3d7c5SThomas E. Spanjaard static void
ata_raid_via_print_meta(struct via_raid_conf * meta)5010c1b3d7c5SThomas E. Spanjaard ata_raid_via_print_meta(struct via_raid_conf *meta)
5011c1b3d7c5SThomas E. Spanjaard {
5012c1b3d7c5SThomas E. Spanjaard int i;
5013c1b3d7c5SThomas E. Spanjaard
5014e3869ec7SSascha Wildner kprintf("*************** ATA VIA Metadata ****************\n");
5015e3869ec7SSascha Wildner kprintf("magic 0x%02x\n", meta->magic);
5016e3869ec7SSascha Wildner kprintf("dummy_0 0x%02x\n", meta->dummy_0);
5017e3869ec7SSascha Wildner kprintf("type %s\n",
5018c1b3d7c5SThomas E. Spanjaard ata_raid_via_type(meta->type & VIA_T_MASK));
5019e3869ec7SSascha Wildner kprintf("bootable %d\n", meta->type & VIA_T_BOOTABLE);
5020e3869ec7SSascha Wildner kprintf("unknown %d\n", meta->type & VIA_T_UNKNOWN);
5021e3869ec7SSascha Wildner kprintf("disk_index 0x%02x\n", meta->disk_index);
5022e3869ec7SSascha Wildner kprintf("stripe_layout 0x%02x\n", meta->stripe_layout);
5023e3869ec7SSascha Wildner kprintf(" stripe_disks %d\n", meta->stripe_layout & VIA_L_DISKS);
5024e3869ec7SSascha Wildner kprintf(" stripe_sectors %d\n",
5025c1b3d7c5SThomas E. Spanjaard 0x08 << ((meta->stripe_layout & VIA_L_MASK) >> VIA_L_SHIFT));
5026e3869ec7SSascha Wildner kprintf("disk_sectors %ju\n", meta->disk_sectors);
5027e3869ec7SSascha Wildner kprintf("disk_id 0x%08x\n", meta->disk_id);
5028e3869ec7SSascha Wildner kprintf("DISK# disk_id\n");
5029c1b3d7c5SThomas E. Spanjaard for (i = 0; i < 8; i++) {
5030c1b3d7c5SThomas E. Spanjaard if (meta->disks[i])
5031e3869ec7SSascha Wildner kprintf(" %d 0x%08x\n", i, meta->disks[i]);
5032c1b3d7c5SThomas E. Spanjaard }
5033e3869ec7SSascha Wildner kprintf("checksum 0x%02x\n", meta->checksum);
5034e3869ec7SSascha Wildner kprintf("=================================================\n");
5035c1b3d7c5SThomas E. Spanjaard }
5036