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ata_raid_intel.c revision 1.4.2.1
      1  1.4.2.1  uebayasi /*	$NetBSD: ata_raid_intel.c,v 1.4.2.1 2010/08/17 06:46:03 uebayasi Exp $	*/
      2      1.1      tron 
      3      1.1      tron /*-
      4      1.1      tron  * Copyright (c) 2000-2008 Sren Schmidt <sos (at) FreeBSD.org>
      5      1.1      tron  * All rights reserved.
      6      1.1      tron  *
      7      1.1      tron  * Redistribution and use in source and binary forms, with or without
      8      1.1      tron  * modification, are permitted provided that the following conditions
      9      1.1      tron  * are met:
     10      1.1      tron  * 1. Redistributions of source code must retain the above copyright
     11      1.1      tron  *    notice, this list of conditions and the following disclaimer,
     12      1.1      tron  *    without modification, immediately at the beginning of the file.
     13      1.1      tron  * 2. Redistributions in binary form must reproduce the above copyright
     14      1.1      tron  *    notice, this list of conditions and the following disclaimer in the
     15      1.1      tron  *    documentation and/or other materials provided with the distribution.
     16      1.1      tron  *
     17      1.1      tron  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     18      1.1      tron  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     19      1.1      tron  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     20      1.1      tron  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     21      1.1      tron  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     22      1.1      tron  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     23      1.1      tron  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     24      1.1      tron  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     25      1.1      tron  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     26      1.1      tron  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     27      1.1      tron  */
     28      1.1      tron 
     29      1.1      tron /*
     30      1.1      tron  * Support for parsing Intel MatrixRAID controller configuration blocks.
     31      1.1      tron  *
     32      1.1      tron  * Adapted to NetBSD by Juan Romero Pardines (xtraeme (at) gmail.org).
     33      1.1      tron  */
     34      1.1      tron 
     35      1.1      tron #include <sys/cdefs.h>
     36  1.4.2.1  uebayasi __KERNEL_RCSID(0, "$NetBSD: ata_raid_intel.c,v 1.4.2.1 2010/08/17 06:46:03 uebayasi Exp $");
     37      1.1      tron 
     38      1.1      tron #include <sys/param.h>
     39      1.1      tron #include <sys/buf.h>
     40      1.1      tron #include <sys/bufq.h>
     41      1.1      tron #include <sys/conf.h>
     42      1.1      tron #include <sys/device.h>
     43      1.1      tron #include <sys/disk.h>
     44      1.1      tron #include <sys/disklabel.h>
     45      1.1      tron #include <sys/fcntl.h>
     46      1.1      tron #include <sys/malloc.h>
     47      1.1      tron #include <sys/vnode.h>
     48      1.1      tron #include <sys/kauth.h>
     49      1.1      tron 
     50      1.1      tron #include <miscfs/specfs/specdev.h>
     51      1.1      tron 
     52      1.1      tron #include <dev/ata/atareg.h>
     53      1.1      tron #include <dev/ata/atavar.h>
     54      1.1      tron #include <dev/ata/wdvar.h>
     55      1.1      tron 
     56      1.1      tron #include <dev/ata/ata_raidreg.h>
     57      1.1      tron #include <dev/ata/ata_raidvar.h>
     58      1.1      tron 
     59      1.1      tron #ifdef ATA_RAID_DEBUG
     60      1.1      tron #define	DPRINTF(x)	printf x
     61      1.1      tron #else
     62      1.1      tron #define	DPRINTF(x)	/* nothing */
     63      1.1      tron #endif
     64      1.1      tron 
     65  1.4.2.1  uebayasi static int find_volume_id(struct intel_raid_conf *);
     66  1.4.2.1  uebayasi 
     67  1.4.2.1  uebayasi 
     68      1.1      tron #ifdef ATA_RAID_DEBUG
     69      1.1      tron static const char *
     70      1.1      tron ata_raid_intel_type(int type)
     71      1.1      tron {
     72      1.1      tron 	static char buffer[16];
     73      1.1      tron 
     74      1.1      tron 	switch (type) {
     75      1.1      tron 	case INTEL_T_RAID0:
     76      1.1      tron 		return "RAID0";
     77      1.1      tron 	case INTEL_T_RAID1:
     78      1.1      tron 		return "RAID1";
     79      1.1      tron 	case INTEL_T_RAID5:
     80      1.1      tron 		return "RAID5";
     81      1.1      tron 	default:
     82      1.1      tron 		sprintf(buffer, "UNKNOWN 0x%02x", type);
     83      1.1      tron 		return buffer;
     84      1.1      tron 	}
     85      1.1      tron }
     86      1.1      tron 
     87      1.1      tron static void
     88      1.1      tron ata_raid_intel_print_info(struct intel_raid_conf *info)
     89      1.1      tron {
     90      1.1      tron 	struct intel_raid_mapping *map;
     91      1.1      tron 	int i, j;
     92      1.1      tron 
     93      1.1      tron 	printf("********* ATA Intel MatrixRAID Metadata *********\n");
     94      1.1      tron 	printf("intel_id		<%.24s>\n", info->intel_id);
     95      1.1      tron 	printf("version			<%.6s>\n", info->version);
     96      1.1      tron 	printf("checksum		0x%08x\n", info->checksum);
     97      1.1      tron 	printf("config_size		0x%08x\n", info->config_size);
     98      1.1      tron 	printf("config_id		0x%08x\n", info->config_id);
     99      1.1      tron 	printf("generation		0x%08x\n", info->generation);
    100      1.1      tron 	printf("total_disks		%u\n", info->total_disks);
    101      1.1      tron 	printf("total_volumes		%u\n", info->total_volumes);
    102      1.1      tron 	printf("DISK#	serial	disk	sectors	disk_id	flags\n");
    103      1.1      tron 	for (i = 0; i < info->total_disks; i++) {
    104      1.1      tron 		printf("    %d <%.16s> %u 0x%08x 0x%08x\n",
    105      1.1      tron 		    i, info->disk[i].serial, info->disk[i].sectors,
    106      1.1      tron 		    info->disk[i].id, info->disk[i].flags);
    107      1.1      tron 	}
    108      1.1      tron 
    109      1.1      tron 	map = (struct intel_raid_mapping *)&info->disk[info->total_disks];
    110      1.1      tron 	for (j = 0; j < info->total_volumes; j++) {
    111      1.1      tron 		printf("name		%.16s\n", map->name);
    112      1.1      tron 		printf("total_sectors	%ju\n", map->total_sectors);
    113      1.1      tron 		printf("state		%u\n", map->state);
    114      1.1      tron 		printf("reserved	%u\n", map->reserved);
    115      1.1      tron 		printf("offset		%u\n", map->offset);
    116      1.1      tron 		printf("disk_sectors	%u\n", map->disk_sectors);
    117      1.1      tron 		printf("stripe_count	%u\n", map->stripe_count);
    118      1.1      tron 		printf("stripe_sectors	%u\n", map->stripe_sectors);
    119      1.1      tron 		printf("status		%u\n", map->status);
    120      1.1      tron 		printf("type		%s\n", ata_raid_intel_type(map->type));
    121      1.1      tron 		printf("total_disks	%u\n", map->total_disks);
    122      1.1      tron 		printf("magic[0]	0x%02x\n", map->magic[0]);
    123      1.1      tron 		printf("magic[1]	0x%02x\n", map->magic[1]);
    124      1.1      tron 		printf("magic[2]	0x%02x\n", map->magic[2]);
    125      1.1      tron 		for (i = 0; i < map->total_disks; i++)
    126      1.1      tron 			printf("    disk %d at disk_idx 0x%08x\n",
    127      1.1      tron 			    i, map->disk_idx[i]);
    128      1.1      tron 
    129      1.1      tron 		map = (struct intel_raid_mapping *)
    130      1.1      tron 		    &map->disk_idx[map->total_disks];
    131      1.1      tron 	}
    132      1.1      tron 	printf("=================================================\n");
    133      1.1      tron }
    134      1.1      tron #endif
    135      1.1      tron 
    136      1.1      tron int
    137      1.1      tron ata_raid_read_config_intel(struct wd_softc *sc)
    138      1.1      tron {
    139      1.1      tron 	struct intel_raid_conf *info;
    140      1.1      tron 	struct intel_raid_mapping *map;
    141      1.1      tron 	struct ataraid_array_info *aai;
    142      1.1      tron 	struct ataraid_disk_info *adi;
    143      1.1      tron 	struct vnode *vp;
    144      1.1      tron 	uint32_t checksum, *ptr;
    145      1.3      tron 	int bmajor, count, curvol = 0, error = 0;
    146      1.1      tron 	char *tmp;
    147      1.1      tron 	dev_t dev;
    148  1.4.2.1  uebayasi 	int volumeid, diskidx;
    149      1.1      tron 
    150      1.1      tron 	info = malloc(1536, M_DEVBUF, M_WAITOK|M_ZERO);
    151      1.1      tron 
    152      1.1      tron 	bmajor = devsw_name2blk(device_xname(sc->sc_dev), NULL, 0);
    153      1.1      tron 
    154      1.1      tron 	/* Get a vnode for the raw partition of this disk. */
    155      1.1      tron 	dev = MAKEDISKDEV(bmajor, device_unit(sc->sc_dev), RAW_PART);
    156      1.1      tron 	error = bdevvp(dev, &vp);
    157      1.1      tron 	if (error)
    158      1.1      tron 		goto out;
    159      1.1      tron 
    160      1.1      tron 	error = VOP_OPEN(vp, FREAD, NOCRED);
    161      1.1      tron 	if (error) {
    162      1.1      tron 		vput(vp);
    163      1.1      tron 		goto out;
    164      1.1      tron 	}
    165      1.1      tron 
    166      1.1      tron 	error = ata_raid_config_block_rw(vp, INTEL_LBA(sc), info,
    167      1.1      tron 	    1024, B_READ);
    168      1.1      tron 	VOP_CLOSE(vp, FREAD, NOCRED);
    169      1.1      tron 	vput(vp);
    170      1.1      tron 	if (error) {
    171      1.1      tron 		DPRINTF(("%s: error %d reading Intel MatrixRAID config block\n",
    172      1.1      tron 		    device_xname(sc->sc_dev), error));
    173      1.1      tron 		goto out;
    174      1.1      tron 	}
    175      1.1      tron 
    176      1.1      tron 	tmp = (char *)info;
    177      1.1      tron 	(void)memcpy(tmp + 1024, tmp, 512);
    178      1.1      tron 	(void)memcpy(tmp, tmp + 512, 1024);
    179      1.1      tron 	(void)memset(tmp + 1024, 0, 512);
    180      1.1      tron 
    181      1.1      tron 	/* Check if this is a Intel RAID struct */
    182      1.1      tron 	if (strncmp(info->intel_id, INTEL_MAGIC, strlen(INTEL_MAGIC))) {
    183      1.1      tron 		DPRINTF(("%s: Intel MatrixRAID signature check failed\n",
    184      1.1      tron 		    device_xname(sc->sc_dev)));
    185      1.1      tron 		error = ESRCH;
    186      1.1      tron 		goto out;
    187      1.1      tron 	}
    188      1.1      tron 
    189      1.1      tron 	/* calculate checksum and compare for valid */
    190      1.1      tron 	for (checksum = 0, ptr = (uint32_t *)info, count = 0;
    191      1.1      tron 	     count < (info->config_size / sizeof(uint32_t)); count++)
    192      1.1      tron 		checksum += *ptr++;
    193      1.1      tron 
    194      1.1      tron 	checksum -= info->checksum;
    195      1.1      tron 	if (checksum != info->checksum) {
    196      1.1      tron 		DPRINTF(("%s: Intel MatrixRAID checksum failed 0x%x != 0x%x\n",
    197      1.1      tron 		    device_xname(sc->sc_dev), checksum, info->checksum));
    198      1.1      tron 		error = ESRCH;
    199      1.1      tron 		goto out;
    200      1.1      tron 	}
    201      1.1      tron 
    202      1.1      tron #ifdef ATA_RAID_DEBUG
    203      1.1      tron 	ata_raid_intel_print_info(info);
    204      1.1      tron #endif
    205      1.1      tron 
    206      1.1      tron 	/* This one points to the first volume */
    207      1.1      tron 	map = (struct intel_raid_mapping *)&info->disk[info->total_disks];
    208      1.1      tron 
    209  1.4.2.1  uebayasi 	volumeid = find_volume_id(info);
    210  1.4.2.1  uebayasi 	if (volumeid < 0) {
    211  1.4.2.1  uebayasi 		aprint_error_dev(sc->sc_dev,
    212  1.4.2.1  uebayasi 				 "too many RAID arrays\n");
    213  1.4.2.1  uebayasi 		error = ENOMEM;
    214  1.4.2.1  uebayasi 		goto out;
    215  1.4.2.1  uebayasi 	}
    216  1.4.2.1  uebayasi 
    217      1.3      tron findvol:
    218      1.1      tron 	/*
    219      1.1      tron 	 * Lookup or allocate a new array info structure for this array.
    220      1.1      tron 	 */
    221  1.4.2.1  uebayasi 	aai = ata_raid_get_array_info(ATA_RAID_TYPE_INTEL, volumeid + curvol);
    222      1.1      tron 
    223      1.1      tron 	/* Fill in array info */
    224      1.1      tron 	aai->aai_generation = info->generation;
    225      1.1      tron 	aai->aai_status = AAI_S_READY;
    226      1.1      tron 
    227      1.1      tron 	switch (map->type) {
    228      1.1      tron 	case INTEL_T_RAID0:
    229      1.1      tron 		aai->aai_level = AAI_L_RAID0;
    230      1.1      tron 		aai->aai_width = map->total_disks;
    231      1.1      tron 		break;
    232      1.1      tron 	case INTEL_T_RAID1:
    233      1.1      tron 		aai->aai_level = AAI_L_RAID1;
    234      1.1      tron 		aai->aai_width = 1;
    235      1.1      tron 		break;
    236      1.1      tron 	default:
    237      1.1      tron 		DPRINTF(("%s: unknown Intel MatrixRAID type 0x%02x\n",
    238      1.4    cegger 		    device_xname(sc->sc_dev), map->type));
    239      1.1      tron 		error = EINVAL;
    240      1.1      tron 		goto out;
    241      1.1      tron 	}
    242      1.1      tron 
    243      1.1      tron 	switch (map->state) {
    244      1.1      tron 	case INTEL_S_DEGRADED:
    245      1.1      tron 		aai->aai_status |= AAI_S_DEGRADED;
    246      1.1      tron 		break;
    247      1.1      tron 	case INTEL_S_DISABLED:
    248      1.1      tron 	case INTEL_S_FAILURE:
    249      1.1      tron 		aai->aai_status &= ~AAI_S_READY;
    250      1.1      tron 		break;
    251      1.1      tron 	}
    252      1.1      tron 
    253      1.1      tron 	aai->aai_type = ATA_RAID_TYPE_INTEL;
    254      1.1      tron 	aai->aai_capacity = map->total_sectors;
    255  1.4.2.1  uebayasi 	aai->aai_interleave = map->stripe_sectors;
    256      1.1      tron 	aai->aai_ndisks = map->total_disks;
    257      1.1      tron 	aai->aai_heads = 255;
    258      1.1      tron 	aai->aai_sectors = 63;
    259      1.1      tron 	aai->aai_cylinders =
    260      1.1      tron 	    aai->aai_capacity / (aai->aai_heads * aai->aai_sectors);
    261      1.1      tron 	aai->aai_offset = map->offset;
    262      1.1      tron 	aai->aai_reserved = 3;
    263      1.2      tron 	if (map->name)
    264      1.2      tron 		strlcpy(aai->aai_name, map->name, sizeof(aai->aai_name));
    265      1.1      tron 
    266      1.1      tron 	/* Fill in disk info */
    267  1.4.2.1  uebayasi 	diskidx = aai->aai_curdisk++;
    268  1.4.2.1  uebayasi 	adi = &aai->aai_disks[diskidx];
    269      1.1      tron 	adi->adi_status = 0;
    270      1.1      tron 
    271  1.4.2.1  uebayasi 	if (info->disk[diskidx].flags & INTEL_F_ONLINE)
    272      1.1      tron 		adi->adi_status |= ADI_S_ONLINE;
    273  1.4.2.1  uebayasi 	if (info->disk[diskidx].flags & INTEL_F_ASSIGNED)
    274      1.1      tron 		adi->adi_status |= ADI_S_ASSIGNED;
    275  1.4.2.1  uebayasi 	if (info->disk[diskidx].flags & INTEL_F_SPARE) {
    276      1.1      tron 		adi->adi_status &= ~ADI_S_ONLINE;
    277      1.1      tron 		adi->adi_status |= ADI_S_SPARE;
    278      1.1      tron 	}
    279  1.4.2.1  uebayasi 	if (info->disk[diskidx].flags & INTEL_F_DOWN)
    280      1.1      tron 		adi->adi_status &= ~ADI_S_ONLINE;
    281      1.1      tron 
    282      1.1      tron 	if (adi->adi_status) {
    283      1.1      tron 		adi->adi_dev = sc->sc_dev;
    284  1.4.2.1  uebayasi 		adi->adi_sectors = info->disk[diskidx].sectors;
    285      1.1      tron 		adi->adi_compsize = adi->adi_sectors - aai->aai_reserved;
    286  1.4.2.1  uebayasi 
    287      1.3      tron 		/*
    288      1.3      tron 		 * Check if that is the only volume, otherwise repeat
    289      1.3      tron 		 * the process to find more.
    290      1.3      tron 		 */
    291      1.3      tron 		if ((curvol + 1) < info->total_volumes) {
    292      1.3      tron 			curvol++;
    293      1.3      tron 			map = (struct intel_raid_mapping *)
    294      1.3      tron 			    &map->disk_idx[map->total_disks];
    295      1.3      tron 			goto findvol;
    296      1.3      tron 		}
    297      1.1      tron 	}
    298      1.1      tron 
    299      1.1      tron  out:
    300      1.1      tron 	free(info, M_DEVBUF);
    301      1.1      tron 	return error;
    302      1.1      tron }
    303  1.4.2.1  uebayasi 
    304  1.4.2.1  uebayasi 
    305  1.4.2.1  uebayasi /*
    306  1.4.2.1  uebayasi  * Assign `volume id' to RAID volumes.
    307  1.4.2.1  uebayasi  */
    308  1.4.2.1  uebayasi static struct {
    309  1.4.2.1  uebayasi 	/* We assume disks are on the same array if these three values
    310  1.4.2.1  uebayasi 	   are same. */
    311  1.4.2.1  uebayasi 	uint32_t config_id;
    312  1.4.2.1  uebayasi 	uint32_t generation;
    313  1.4.2.1  uebayasi 	uint32_t checksum;
    314  1.4.2.1  uebayasi 
    315  1.4.2.1  uebayasi 	int id;
    316  1.4.2.1  uebayasi } array_note[10]; /* XXX: this array is not used after ld_ataraid is
    317  1.4.2.1  uebayasi 		   * configured. */
    318  1.4.2.1  uebayasi 
    319  1.4.2.1  uebayasi static int n_array = 0;
    320  1.4.2.1  uebayasi static int volume_id = 0;
    321  1.4.2.1  uebayasi 
    322  1.4.2.1  uebayasi static int
    323  1.4.2.1  uebayasi find_volume_id(struct intel_raid_conf *info)
    324  1.4.2.1  uebayasi {
    325  1.4.2.1  uebayasi 	int i, ret;
    326  1.4.2.1  uebayasi 
    327  1.4.2.1  uebayasi 	for (i=0; i < n_array; ++i) {
    328  1.4.2.1  uebayasi 		if (info->checksum == array_note[i].checksum &&
    329  1.4.2.1  uebayasi 		    info->config_id == array_note[i].config_id &&
    330  1.4.2.1  uebayasi 		    info->generation == array_note[i].generation) {
    331  1.4.2.1  uebayasi 			/* we have already seen this array */
    332  1.4.2.1  uebayasi 			return array_note[i].id;
    333  1.4.2.1  uebayasi 		}
    334  1.4.2.1  uebayasi 	}
    335  1.4.2.1  uebayasi 
    336  1.4.2.1  uebayasi 	if (n_array >= __arraycount(array_note)) {
    337  1.4.2.1  uebayasi 		/* Too many arrays */
    338  1.4.2.1  uebayasi 		return -1;
    339  1.4.2.1  uebayasi 	}
    340  1.4.2.1  uebayasi 
    341  1.4.2.1  uebayasi 	array_note[n_array].checksum = info->checksum;
    342  1.4.2.1  uebayasi 	array_note[n_array].config_id = info->config_id;
    343  1.4.2.1  uebayasi 	array_note[n_array].generation = info->generation;
    344  1.4.2.1  uebayasi 	array_note[n_array].id = ret = volume_id;
    345  1.4.2.1  uebayasi 
    346  1.4.2.1  uebayasi 	/* Allocate volume ids for all volumes in this array */
    347  1.4.2.1  uebayasi 	volume_id += info->total_volumes;
    348  1.4.2.1  uebayasi 	++n_array;
    349  1.4.2.1  uebayasi 	return ret;
    350  1.4.2.1  uebayasi }
    351