1789Sahrens /* 2789Sahrens * CDDL HEADER START 3789Sahrens * 4789Sahrens * The contents of this file are subject to the terms of the 51489Swebaker * Common Development and Distribution License (the "License"). 61489Swebaker * You may not use this file except in compliance with the License. 7789Sahrens * 8789Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9789Sahrens * or http://www.opensolaris.org/os/licensing. 10789Sahrens * See the License for the specific language governing permissions 11789Sahrens * and limitations under the License. 12789Sahrens * 13789Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14789Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15789Sahrens * If applicable, add the following below this CDDL HEADER, with the 16789Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17789Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18789Sahrens * 19789Sahrens * CDDL HEADER END 20789Sahrens */ 21789Sahrens /* 226423Sgw25295 * Copyright 2008 Sun Microsystems, Inc. All rights reserved. 23789Sahrens * Use is subject to license terms. 24789Sahrens */ 25789Sahrens 26789Sahrens #pragma ident "%Z%%M% %I% %E% SMI" 27789Sahrens 28789Sahrens #include <sys/zfs_context.h> 29789Sahrens #include <sys/spa.h> 306423Sgw25295 #include <sys/refcount.h> 31789Sahrens #include <sys/vdev_disk.h> 32789Sahrens #include <sys/vdev_impl.h> 33789Sahrens #include <sys/fs/zfs.h> 34789Sahrens #include <sys/zio.h> 351171Seschrock #include <sys/sunldi.h> 36*6976Seschrock #include <sys/fm/fs/zfs.h> 37789Sahrens 38789Sahrens /* 39789Sahrens * Virtual device vector for disks. 40789Sahrens */ 41789Sahrens 42789Sahrens extern ldi_ident_t zfs_li; 43789Sahrens 44789Sahrens typedef struct vdev_disk_buf { 45789Sahrens buf_t vdb_buf; 46789Sahrens zio_t *vdb_io; 47789Sahrens } vdev_disk_buf_t; 48789Sahrens 49789Sahrens static int 505329Sgw25295 vdev_disk_open_common(vdev_t *vd) 51789Sahrens { 52789Sahrens vdev_disk_t *dvd; 535329Sgw25295 dev_t dev; 54789Sahrens int error; 55789Sahrens 56789Sahrens /* 57789Sahrens * We must have a pathname, and it must be absolute. 58789Sahrens */ 59789Sahrens if (vd->vdev_path == NULL || vd->vdev_path[0] != '/') { 60789Sahrens vd->vdev_stat.vs_aux = VDEV_AUX_BAD_LABEL; 61789Sahrens return (EINVAL); 62789Sahrens } 63789Sahrens 64789Sahrens dvd = vd->vdev_tsd = kmem_zalloc(sizeof (vdev_disk_t), KM_SLEEP); 65789Sahrens 66789Sahrens /* 67789Sahrens * When opening a disk device, we want to preserve the user's original 68789Sahrens * intent. We always want to open the device by the path the user gave 69789Sahrens * us, even if it is one of multiple paths to the save device. But we 70789Sahrens * also want to be able to survive disks being removed/recabled. 71789Sahrens * Therefore the sequence of opening devices is: 72789Sahrens * 731171Seschrock * 1. Try opening the device by path. For legacy pools without the 741171Seschrock * 'whole_disk' property, attempt to fix the path by appending 's0'. 75789Sahrens * 76789Sahrens * 2. If the devid of the device matches the stored value, return 77789Sahrens * success. 78789Sahrens * 79789Sahrens * 3. Otherwise, the device may have moved. Try opening the device 80789Sahrens * by the devid instead. 81789Sahrens * 826673Seschrock * If the vdev is part of the root pool, we avoid opening it by path. 836673Seschrock * We do this because there is no /dev path available early in boot, 846673Seschrock * and if we try to open the device by path at a later point, we can 856673Seschrock * deadlock when devfsadm attempts to open the underlying backing store 866673Seschrock * file. 87789Sahrens */ 88789Sahrens if (vd->vdev_devid != NULL) { 89789Sahrens if (ddi_devid_str_decode(vd->vdev_devid, &dvd->vd_devid, 90789Sahrens &dvd->vd_minor) != 0) { 91789Sahrens vd->vdev_stat.vs_aux = VDEV_AUX_BAD_LABEL; 92789Sahrens return (EINVAL); 93789Sahrens } 94789Sahrens } 95789Sahrens 96789Sahrens error = EINVAL; /* presume failure */ 97789Sahrens 986673Seschrock if (vd->vdev_path != NULL && !spa_is_root(vd->vdev_spa)) { 99789Sahrens ddi_devid_t devid; 100789Sahrens 1011171Seschrock if (vd->vdev_wholedisk == -1ULL) { 1021171Seschrock size_t len = strlen(vd->vdev_path) + 3; 1031171Seschrock char *buf = kmem_alloc(len, KM_SLEEP); 1041171Seschrock ldi_handle_t lh; 1051171Seschrock 1061171Seschrock (void) snprintf(buf, len, "%ss0", vd->vdev_path); 107789Sahrens 1081171Seschrock if (ldi_open_by_name(buf, spa_mode, kcred, 1091171Seschrock &lh, zfs_li) == 0) { 1101171Seschrock spa_strfree(vd->vdev_path); 1111171Seschrock vd->vdev_path = buf; 1121171Seschrock vd->vdev_wholedisk = 1ULL; 1131171Seschrock (void) ldi_close(lh, spa_mode, kcred); 1141171Seschrock } else { 1151171Seschrock kmem_free(buf, len); 1161171Seschrock } 1171171Seschrock } 118789Sahrens 1191171Seschrock error = ldi_open_by_name(vd->vdev_path, spa_mode, kcred, 1201171Seschrock &dvd->vd_lh, zfs_li); 121789Sahrens 122789Sahrens /* 123789Sahrens * Compare the devid to the stored value. 124789Sahrens */ 125789Sahrens if (error == 0 && vd->vdev_devid != NULL && 126789Sahrens ldi_get_devid(dvd->vd_lh, &devid) == 0) { 127789Sahrens if (ddi_devid_compare(devid, dvd->vd_devid) != 0) { 128789Sahrens error = EINVAL; 129789Sahrens (void) ldi_close(dvd->vd_lh, spa_mode, kcred); 130789Sahrens dvd->vd_lh = NULL; 131789Sahrens } 132789Sahrens ddi_devid_free(devid); 133789Sahrens } 1341171Seschrock 1351171Seschrock /* 1361171Seschrock * If we succeeded in opening the device, but 'vdev_wholedisk' 1371171Seschrock * is not yet set, then this must be a slice. 1381171Seschrock */ 1391171Seschrock if (error == 0 && vd->vdev_wholedisk == -1ULL) 1401171Seschrock vd->vdev_wholedisk = 0; 141789Sahrens } 142789Sahrens 143789Sahrens /* 144789Sahrens * If we were unable to open by path, or the devid check fails, open by 145789Sahrens * devid instead. 146789Sahrens */ 147789Sahrens if (error != 0 && vd->vdev_devid != NULL) 148789Sahrens error = ldi_open_by_devid(dvd->vd_devid, dvd->vd_minor, 149789Sahrens spa_mode, kcred, &dvd->vd_lh, zfs_li); 150789Sahrens 1514451Seschrock /* 1524451Seschrock * If all else fails, then try opening by physical path (if available) 1534451Seschrock * or the logical path (if we failed due to the devid check). While not 1544451Seschrock * as reliable as the devid, this will give us something, and the higher 1554451Seschrock * level vdev validation will prevent us from opening the wrong device. 1564451Seschrock */ 1574451Seschrock if (error) { 1584451Seschrock if (vd->vdev_physpath != NULL && 1594451Seschrock (dev = ddi_pathname_to_dev_t(vd->vdev_physpath)) != ENODEV) 1604451Seschrock error = ldi_open_by_dev(&dev, OTYP_BLK, spa_mode, 1614451Seschrock kcred, &dvd->vd_lh, zfs_li); 1624451Seschrock 1634451Seschrock /* 1644451Seschrock * Note that we don't support the legacy auto-wholedisk support 1654451Seschrock * as above. This hasn't been used in a very long time and we 1664451Seschrock * don't need to propagate its oddities to this edge condition. 1674451Seschrock */ 1686673Seschrock if (error && vd->vdev_path != NULL && 1696673Seschrock !spa_is_root(vd->vdev_spa)) 1704451Seschrock error = ldi_open_by_name(vd->vdev_path, spa_mode, kcred, 1714451Seschrock &dvd->vd_lh, zfs_li); 1724451Seschrock } 1734451Seschrock 1745329Sgw25295 if (error) 175789Sahrens vd->vdev_stat.vs_aux = VDEV_AUX_OPEN_FAILED; 1765329Sgw25295 1775329Sgw25295 return (error); 1785329Sgw25295 } 1795329Sgw25295 1805329Sgw25295 static int 1815329Sgw25295 vdev_disk_open(vdev_t *vd, uint64_t *psize, uint64_t *ashift) 1825329Sgw25295 { 1835329Sgw25295 vdev_disk_t *dvd; 1845329Sgw25295 struct dk_minfo dkm; 1855329Sgw25295 int error; 1865329Sgw25295 dev_t dev; 1875329Sgw25295 int otyp; 1885329Sgw25295 1895329Sgw25295 error = vdev_disk_open_common(vd); 1905329Sgw25295 if (error) 191789Sahrens return (error); 192789Sahrens 1935329Sgw25295 dvd = vd->vdev_tsd; 194789Sahrens /* 1954451Seschrock * Once a device is opened, verify that the physical device path (if 1964451Seschrock * available) is up to date. 1974451Seschrock */ 1984451Seschrock if (ldi_get_dev(dvd->vd_lh, &dev) == 0 && 1994451Seschrock ldi_get_otyp(dvd->vd_lh, &otyp) == 0) { 2005329Sgw25295 char *physpath, *minorname; 2015329Sgw25295 2024451Seschrock physpath = kmem_alloc(MAXPATHLEN, KM_SLEEP); 2034451Seschrock minorname = NULL; 2044451Seschrock if (ddi_dev_pathname(dev, otyp, physpath) == 0 && 2054451Seschrock ldi_get_minor_name(dvd->vd_lh, &minorname) == 0 && 2064451Seschrock (vd->vdev_physpath == NULL || 2074451Seschrock strcmp(vd->vdev_physpath, physpath) != 0)) { 2084451Seschrock if (vd->vdev_physpath) 2094451Seschrock spa_strfree(vd->vdev_physpath); 2104451Seschrock (void) strlcat(physpath, ":", MAXPATHLEN); 2114451Seschrock (void) strlcat(physpath, minorname, MAXPATHLEN); 2124451Seschrock vd->vdev_physpath = spa_strdup(physpath); 2134451Seschrock } 2144451Seschrock if (minorname) 2154451Seschrock kmem_free(minorname, strlen(minorname) + 1); 2164451Seschrock kmem_free(physpath, MAXPATHLEN); 2174451Seschrock } 2184451Seschrock 2194451Seschrock /* 220789Sahrens * Determine the actual size of the device. 221789Sahrens */ 222789Sahrens if (ldi_get_size(dvd->vd_lh, psize) != 0) { 223789Sahrens vd->vdev_stat.vs_aux = VDEV_AUX_OPEN_FAILED; 224789Sahrens return (EINVAL); 225789Sahrens } 226789Sahrens 2271732Sbonwick /* 2281732Sbonwick * If we own the whole disk, try to enable disk write caching. 2291732Sbonwick * We ignore errors because it's OK if we can't do it. 2301732Sbonwick */ 2311489Swebaker if (vd->vdev_wholedisk == 1) { 2321732Sbonwick int wce = 1; 2331732Sbonwick (void) ldi_ioctl(dvd->vd_lh, DKIOCSETWCE, (intptr_t)&wce, 2341732Sbonwick FKIOCTL, kcred, NULL); 2351732Sbonwick } 2361489Swebaker 2371732Sbonwick /* 2381732Sbonwick * Determine the device's minimum transfer size. 2391732Sbonwick * If the ioctl isn't supported, assume DEV_BSIZE. 2401732Sbonwick */ 2411732Sbonwick if (ldi_ioctl(dvd->vd_lh, DKIOCGMEDIAINFO, (intptr_t)&dkm, 2421732Sbonwick FKIOCTL, kcred, NULL) != 0) 2431732Sbonwick dkm.dki_lbsize = DEV_BSIZE; 2441489Swebaker 2451732Sbonwick *ashift = highbit(MAX(dkm.dki_lbsize, SPA_MINBLOCKSIZE)) - 1; 2461489Swebaker 2471773Seschrock /* 2481773Seschrock * Clear the nowritecache bit, so that on a vdev_reopen() we will 2491773Seschrock * try again. 2501773Seschrock */ 2511773Seschrock vd->vdev_nowritecache = B_FALSE; 2521773Seschrock 253789Sahrens return (0); 254789Sahrens } 255789Sahrens 256789Sahrens static void 257789Sahrens vdev_disk_close(vdev_t *vd) 258789Sahrens { 259789Sahrens vdev_disk_t *dvd = vd->vdev_tsd; 260789Sahrens 261789Sahrens if (dvd == NULL) 262789Sahrens return; 263789Sahrens 264789Sahrens if (dvd->vd_minor != NULL) 265789Sahrens ddi_devid_str_free(dvd->vd_minor); 266789Sahrens 267789Sahrens if (dvd->vd_devid != NULL) 268789Sahrens ddi_devid_free(dvd->vd_devid); 269789Sahrens 270789Sahrens if (dvd->vd_lh != NULL) 271789Sahrens (void) ldi_close(dvd->vd_lh, spa_mode, kcred); 272789Sahrens 273789Sahrens kmem_free(dvd, sizeof (vdev_disk_t)); 274789Sahrens vd->vdev_tsd = NULL; 275789Sahrens } 276789Sahrens 2776423Sgw25295 int 2786423Sgw25295 vdev_disk_physio(ldi_handle_t vd_lh, caddr_t data, size_t size, 2796423Sgw25295 uint64_t offset, int flags) 2806423Sgw25295 { 2816423Sgw25295 buf_t *bp; 2826423Sgw25295 int error = 0; 2836423Sgw25295 2846423Sgw25295 if (vd_lh == NULL) 2856423Sgw25295 return (EINVAL); 2866423Sgw25295 2876423Sgw25295 ASSERT(flags & B_READ || flags & B_WRITE); 2886423Sgw25295 2896423Sgw25295 bp = getrbuf(KM_SLEEP); 2906423Sgw25295 bp->b_flags = flags | B_BUSY | B_NOCACHE | B_FAILFAST; 2916423Sgw25295 bp->b_bcount = size; 2926423Sgw25295 bp->b_un.b_addr = (void *)data; 2936423Sgw25295 bp->b_lblkno = lbtodb(offset); 2946423Sgw25295 bp->b_bufsize = size; 2956423Sgw25295 2966423Sgw25295 error = ldi_strategy(vd_lh, bp); 2976423Sgw25295 ASSERT(error == 0); 2986423Sgw25295 if ((error = biowait(bp)) == 0 && bp->b_resid != 0) 2996423Sgw25295 error = EIO; 3006423Sgw25295 freerbuf(bp); 3016423Sgw25295 3026423Sgw25295 return (error); 3036423Sgw25295 } 3046423Sgw25295 3055329Sgw25295 static int 3065329Sgw25295 vdev_disk_probe_io(vdev_t *vd, caddr_t data, size_t size, uint64_t offset, 3075329Sgw25295 int flags) 3085329Sgw25295 { 3095329Sgw25295 int error = 0; 3106523Sek110237 vdev_disk_t *dvd = vd ? vd->vdev_tsd : NULL; 3115329Sgw25295 3125329Sgw25295 if (vd == NULL || dvd == NULL || dvd->vd_lh == NULL) 3135329Sgw25295 return (EINVAL); 3145329Sgw25295 3156423Sgw25295 error = vdev_disk_physio(dvd->vd_lh, data, size, offset, flags); 3165329Sgw25295 3175329Sgw25295 if (zio_injection_enabled && error == 0) 3185329Sgw25295 error = zio_handle_device_injection(vd, EIO); 3195329Sgw25295 3205329Sgw25295 return (error); 3215329Sgw25295 } 3225329Sgw25295 3235369Sgw25295 /* 3245369Sgw25295 * Determine if the underlying device is accessible by reading and writing 3255369Sgw25295 * to a known location. We must be able to do this during syncing context 3265369Sgw25295 * and thus we cannot set the vdev state directly. 3275369Sgw25295 */ 3285329Sgw25295 static int 3295329Sgw25295 vdev_disk_probe(vdev_t *vd) 3305329Sgw25295 { 3315329Sgw25295 uint64_t offset; 3325329Sgw25295 vdev_t *nvd; 3335329Sgw25295 int l, error = 0, retries = 0; 3345329Sgw25295 char *vl_pad; 3355329Sgw25295 3365329Sgw25295 if (vd == NULL) 3375329Sgw25295 return (EINVAL); 3385329Sgw25295 3395329Sgw25295 /* Hijack the current vdev */ 3405329Sgw25295 nvd = vd; 3415329Sgw25295 3425329Sgw25295 /* 3435329Sgw25295 * Pick a random label to rewrite. 3445329Sgw25295 */ 3455329Sgw25295 l = spa_get_random(VDEV_LABELS); 3465329Sgw25295 ASSERT(l < VDEV_LABELS); 3475329Sgw25295 3485329Sgw25295 offset = vdev_label_offset(vd->vdev_psize, l, 3495329Sgw25295 offsetof(vdev_label_t, vl_pad)); 3505329Sgw25295 3515329Sgw25295 vl_pad = kmem_alloc(VDEV_SKIP_SIZE, KM_SLEEP); 3525329Sgw25295 3535329Sgw25295 /* 3545329Sgw25295 * Try to read and write to a special location on the 3555329Sgw25295 * label. We use the existing vdev initially and only 3565329Sgw25295 * try to create and reopen it if we encounter a failure. 3575329Sgw25295 */ 3585329Sgw25295 while ((error = vdev_disk_probe_io(nvd, vl_pad, VDEV_SKIP_SIZE, 3595329Sgw25295 offset, B_READ)) != 0 && retries == 0) { 3605329Sgw25295 3615329Sgw25295 nvd = kmem_zalloc(sizeof (vdev_t), KM_SLEEP); 3625329Sgw25295 if (vd->vdev_path) 3635329Sgw25295 nvd->vdev_path = spa_strdup(vd->vdev_path); 3645329Sgw25295 if (vd->vdev_physpath) 3655329Sgw25295 nvd->vdev_physpath = spa_strdup(vd->vdev_physpath); 3665329Sgw25295 if (vd->vdev_devid) 3675329Sgw25295 nvd->vdev_devid = spa_strdup(vd->vdev_devid); 3685329Sgw25295 nvd->vdev_wholedisk = vd->vdev_wholedisk; 3695329Sgw25295 nvd->vdev_guid = vd->vdev_guid; 3706673Seschrock nvd->vdev_spa = vd->vdev_spa; 3715329Sgw25295 retries++; 3725329Sgw25295 3735329Sgw25295 error = vdev_disk_open_common(nvd); 3745369Sgw25295 if (error) 3755329Sgw25295 break; 3765329Sgw25295 } 3775329Sgw25295 3785329Sgw25295 if (!error) { 3795329Sgw25295 error = vdev_disk_probe_io(nvd, vl_pad, VDEV_SKIP_SIZE, 3805329Sgw25295 offset, B_WRITE); 3815329Sgw25295 } 3825329Sgw25295 3835329Sgw25295 /* Clean up if we allocated a new vdev */ 3845329Sgw25295 if (retries) { 3855329Sgw25295 vdev_disk_close(nvd); 3865329Sgw25295 if (nvd->vdev_path) 3875329Sgw25295 spa_strfree(nvd->vdev_path); 3885329Sgw25295 if (nvd->vdev_physpath) 3895329Sgw25295 spa_strfree(nvd->vdev_physpath); 3905329Sgw25295 if (nvd->vdev_devid) 3915329Sgw25295 spa_strfree(nvd->vdev_devid); 3925329Sgw25295 kmem_free(nvd, sizeof (vdev_t)); 3935329Sgw25295 } 3945329Sgw25295 kmem_free(vl_pad, VDEV_SKIP_SIZE); 3955329Sgw25295 3965329Sgw25295 /* Reset the failing flag */ 3975329Sgw25295 if (!error) 3985329Sgw25295 vd->vdev_is_failing = B_FALSE; 3995329Sgw25295 4005329Sgw25295 return (error); 4015329Sgw25295 } 4025329Sgw25295 403789Sahrens static void 404789Sahrens vdev_disk_io_intr(buf_t *bp) 405789Sahrens { 406789Sahrens vdev_disk_buf_t *vdb = (vdev_disk_buf_t *)bp; 407789Sahrens zio_t *zio = vdb->vdb_io; 408789Sahrens 409*6976Seschrock /* 410*6976Seschrock * The rest of the zio stack only deals with EIO, ECKSUM, and ENXIO. 411*6976Seschrock * Rather than teach the rest of the stack about other error 412*6976Seschrock * possibilities (EFAULT, etc), we normalize the error value here. 413*6976Seschrock */ 414*6976Seschrock zio->io_error = (geterror(bp) != 0 ? EIO : 0); 415*6976Seschrock 416*6976Seschrock if (zio->io_error == 0 && bp->b_resid != 0) 417789Sahrens zio->io_error = EIO; 418789Sahrens 419789Sahrens kmem_free(vdb, sizeof (vdev_disk_buf_t)); 420789Sahrens 4215530Sbonwick zio_interrupt(zio); 422789Sahrens } 423789Sahrens 424789Sahrens static void 425789Sahrens vdev_disk_ioctl_done(void *zio_arg, int error) 426789Sahrens { 427789Sahrens zio_t *zio = zio_arg; 428789Sahrens 429789Sahrens zio->io_error = error; 430789Sahrens 4315530Sbonwick zio_interrupt(zio); 432789Sahrens } 433789Sahrens 4345530Sbonwick static int 435789Sahrens vdev_disk_io_start(zio_t *zio) 436789Sahrens { 437789Sahrens vdev_t *vd = zio->io_vd; 438789Sahrens vdev_disk_t *dvd = vd->vdev_tsd; 439789Sahrens vdev_disk_buf_t *vdb; 440789Sahrens buf_t *bp; 441789Sahrens int flags, error; 442789Sahrens 443789Sahrens if (zio->io_type == ZIO_TYPE_IOCTL) { 444789Sahrens zio_vdev_io_bypass(zio); 445789Sahrens 446789Sahrens /* XXPOLICY */ 4475329Sgw25295 if (!vdev_readable(vd)) { 448789Sahrens zio->io_error = ENXIO; 4495530Sbonwick return (ZIO_PIPELINE_CONTINUE); 450789Sahrens } 451789Sahrens 452789Sahrens switch (zio->io_cmd) { 453789Sahrens 454789Sahrens case DKIOCFLUSHWRITECACHE: 455789Sahrens 4562885Sahrens if (zfs_nocacheflush) 4572885Sahrens break; 4582885Sahrens 4591773Seschrock if (vd->vdev_nowritecache) { 4601773Seschrock zio->io_error = ENOTSUP; 4611773Seschrock break; 4621773Seschrock } 4631773Seschrock 464789Sahrens zio->io_dk_callback.dkc_callback = vdev_disk_ioctl_done; 4655065Sgz161490 zio->io_dk_callback.dkc_flag = FLUSH_VOLATILE; 466789Sahrens zio->io_dk_callback.dkc_cookie = zio; 467789Sahrens 468789Sahrens error = ldi_ioctl(dvd->vd_lh, zio->io_cmd, 469789Sahrens (uintptr_t)&zio->io_dk_callback, 470789Sahrens FKIOCTL, kcred, NULL); 471789Sahrens 472789Sahrens if (error == 0) { 473789Sahrens /* 474789Sahrens * The ioctl will be done asychronously, 475789Sahrens * and will call vdev_disk_ioctl_done() 476789Sahrens * upon completion. 477789Sahrens */ 4785530Sbonwick return (ZIO_PIPELINE_STOP); 4795530Sbonwick } 4805530Sbonwick 4815530Sbonwick if (error == ENOTSUP || error == ENOTTY) { 4821773Seschrock /* 4834455Smishra * If we get ENOTSUP or ENOTTY, we know that 4844455Smishra * no future attempts will ever succeed. 4854455Smishra * In this case we set a persistent bit so 4864455Smishra * that we don't bother with the ioctl in the 4874455Smishra * future. 4881773Seschrock */ 4891773Seschrock vd->vdev_nowritecache = B_TRUE; 490789Sahrens } 491789Sahrens zio->io_error = error; 4921773Seschrock 493789Sahrens break; 494789Sahrens 495789Sahrens default: 496789Sahrens zio->io_error = ENOTSUP; 497789Sahrens } 498789Sahrens 4995530Sbonwick return (ZIO_PIPELINE_CONTINUE); 500789Sahrens } 501789Sahrens 502789Sahrens if (zio->io_type == ZIO_TYPE_READ && vdev_cache_read(zio) == 0) 5035530Sbonwick return (ZIO_PIPELINE_STOP); 504789Sahrens 505789Sahrens if ((zio = vdev_queue_io(zio)) == NULL) 5065530Sbonwick return (ZIO_PIPELINE_STOP); 5075530Sbonwick 5085530Sbonwick if (zio->io_type == ZIO_TYPE_WRITE) 5095530Sbonwick error = vdev_writeable(vd) ? vdev_error_inject(vd, zio) : ENXIO; 5105530Sbonwick else 5115530Sbonwick error = vdev_readable(vd) ? vdev_error_inject(vd, zio) : ENXIO; 5125530Sbonwick error = (vd->vdev_remove_wanted || vd->vdev_is_failing) ? ENXIO : error; 5135530Sbonwick 5145530Sbonwick if (error) { 5155530Sbonwick zio->io_error = error; 5165530Sbonwick zio_interrupt(zio); 5175530Sbonwick return (ZIO_PIPELINE_STOP); 5185530Sbonwick } 519789Sahrens 520789Sahrens flags = (zio->io_type == ZIO_TYPE_READ ? B_READ : B_WRITE); 521789Sahrens flags |= B_BUSY | B_NOCACHE; 522789Sahrens if (zio->io_flags & ZIO_FLAG_FAILFAST) 523789Sahrens flags |= B_FAILFAST; 524789Sahrens 525789Sahrens vdb = kmem_alloc(sizeof (vdev_disk_buf_t), KM_SLEEP); 526789Sahrens 527789Sahrens vdb->vdb_io = zio; 528789Sahrens bp = &vdb->vdb_buf; 529789Sahrens 530789Sahrens bioinit(bp); 531789Sahrens bp->b_flags = flags; 532789Sahrens bp->b_bcount = zio->io_size; 533789Sahrens bp->b_un.b_addr = zio->io_data; 534789Sahrens bp->b_lblkno = lbtodb(zio->io_offset); 535789Sahrens bp->b_bufsize = zio->io_size; 536789Sahrens bp->b_iodone = (int (*)())vdev_disk_io_intr; 537789Sahrens 538789Sahrens error = ldi_strategy(dvd->vd_lh, bp); 539789Sahrens /* ldi_strategy() will return non-zero only on programming errors */ 540789Sahrens ASSERT(error == 0); 5415530Sbonwick 5425530Sbonwick return (ZIO_PIPELINE_STOP); 543789Sahrens } 544789Sahrens 5455530Sbonwick static int 546789Sahrens vdev_disk_io_done(zio_t *zio) 547789Sahrens { 548789Sahrens vdev_queue_io_done(zio); 549789Sahrens 550789Sahrens if (zio->io_type == ZIO_TYPE_WRITE) 551789Sahrens vdev_cache_write(zio); 552789Sahrens 5531544Seschrock if (zio_injection_enabled && zio->io_error == 0) 5541544Seschrock zio->io_error = zio_handle_device_injection(zio->io_vd, EIO); 5551544Seschrock 5564451Seschrock /* 5574451Seschrock * If the device returned EIO, then attempt a DKIOCSTATE ioctl to see if 5584451Seschrock * the device has been removed. If this is the case, then we trigger an 5595329Sgw25295 * asynchronous removal of the device. Otherwise, probe the device and 5605369Sgw25295 * make sure it's still accessible. 5614451Seschrock */ 5624451Seschrock if (zio->io_error == EIO) { 5635329Sgw25295 vdev_t *vd = zio->io_vd; 5645329Sgw25295 vdev_disk_t *dvd = vd->vdev_tsd; 5655329Sgw25295 int state; 5665329Sgw25295 5674451Seschrock state = DKIO_NONE; 5685329Sgw25295 if (dvd && ldi_ioctl(dvd->vd_lh, DKIOCSTATE, (intptr_t)&state, 5694451Seschrock FKIOCTL, kcred, NULL) == 0 && 5704451Seschrock state != DKIO_INSERTED) { 5714451Seschrock vd->vdev_remove_wanted = B_TRUE; 5724451Seschrock spa_async_request(zio->io_spa, SPA_ASYNC_REMOVE); 5735329Sgw25295 } else if (vdev_probe(vd) != 0) { 5745329Sgw25295 ASSERT(vd->vdev_ops->vdev_op_leaf); 575*6976Seschrock if (!vd->vdev_is_failing) { 576*6976Seschrock vd->vdev_is_failing = B_TRUE; 577*6976Seschrock zfs_ereport_post(FM_EREPORT_ZFS_PROBE_FAILURE, 578*6976Seschrock vd->vdev_spa, vd, zio, 0, 0); 579*6976Seschrock } 5804451Seschrock } 5814451Seschrock } 5824451Seschrock 5836615Sgw25295 if (zio_injection_enabled && zio->io_error == 0) 5846615Sgw25295 zio->io_error = zio_handle_label_injection(zio, EIO); 5856615Sgw25295 5865530Sbonwick return (ZIO_PIPELINE_CONTINUE); 587789Sahrens } 588789Sahrens 589789Sahrens vdev_ops_t vdev_disk_ops = { 590789Sahrens vdev_disk_open, 591789Sahrens vdev_disk_close, 5925329Sgw25295 vdev_disk_probe, 593789Sahrens vdev_default_asize, 594789Sahrens vdev_disk_io_start, 595789Sahrens vdev_disk_io_done, 596789Sahrens NULL, 597789Sahrens VDEV_TYPE_DISK, /* name of this vdev type */ 598789Sahrens B_TRUE /* leaf vdev */ 599789Sahrens }; 6006423Sgw25295 6016423Sgw25295 /* 6026423Sgw25295 * Given the root disk device pathname, read the label from the device, 6036423Sgw25295 * and construct a configuration nvlist. 6046423Sgw25295 */ 6056423Sgw25295 nvlist_t * 6066423Sgw25295 vdev_disk_read_rootlabel(char *devpath) 6076423Sgw25295 { 6086423Sgw25295 nvlist_t *config = NULL; 6096423Sgw25295 ldi_handle_t vd_lh; 6106423Sgw25295 vdev_label_t *label; 6116423Sgw25295 uint64_t s, size; 6126423Sgw25295 int l; 6136423Sgw25295 6146423Sgw25295 /* 6156423Sgw25295 * Read the device label and build the nvlist. 6166423Sgw25295 */ 6176423Sgw25295 if (ldi_open_by_name(devpath, FREAD, kcred, &vd_lh, zfs_li)) 6186423Sgw25295 return (NULL); 6196423Sgw25295 6206673Seschrock if (ldi_get_size(vd_lh, &s)) { 6216673Seschrock (void) ldi_close(vd_lh, FREAD, kcred); 6226423Sgw25295 return (NULL); 6236673Seschrock } 6246423Sgw25295 6256423Sgw25295 size = P2ALIGN_TYPED(s, sizeof (vdev_label_t), uint64_t); 6266423Sgw25295 label = kmem_alloc(sizeof (vdev_label_t), KM_SLEEP); 6276423Sgw25295 6286423Sgw25295 for (l = 0; l < VDEV_LABELS; l++) { 6296423Sgw25295 uint64_t offset, state, txg = 0; 6306423Sgw25295 6316423Sgw25295 /* read vdev label */ 6326423Sgw25295 offset = vdev_label_offset(size, l, 0); 6336423Sgw25295 if (vdev_disk_physio(vd_lh, (caddr_t)label, 6346423Sgw25295 VDEV_SKIP_SIZE + VDEV_BOOT_HEADER_SIZE + 6356423Sgw25295 VDEV_PHYS_SIZE, offset, B_READ) != 0) 6366423Sgw25295 continue; 6376423Sgw25295 6386423Sgw25295 if (nvlist_unpack(label->vl_vdev_phys.vp_nvlist, 6396423Sgw25295 sizeof (label->vl_vdev_phys.vp_nvlist), &config, 0) != 0) { 6406423Sgw25295 config = NULL; 6416423Sgw25295 continue; 6426423Sgw25295 } 6436423Sgw25295 6446423Sgw25295 if (nvlist_lookup_uint64(config, ZPOOL_CONFIG_POOL_STATE, 6456423Sgw25295 &state) != 0 || state >= POOL_STATE_DESTROYED) { 6466423Sgw25295 nvlist_free(config); 6476423Sgw25295 config = NULL; 6486423Sgw25295 continue; 6496423Sgw25295 } 6506423Sgw25295 6516423Sgw25295 if (nvlist_lookup_uint64(config, ZPOOL_CONFIG_POOL_TXG, 6526423Sgw25295 &txg) != 0 || txg == 0) { 6536423Sgw25295 nvlist_free(config); 6546423Sgw25295 config = NULL; 6556423Sgw25295 continue; 6566423Sgw25295 } 6576423Sgw25295 6586423Sgw25295 break; 6596423Sgw25295 } 6606423Sgw25295 6616423Sgw25295 kmem_free(label, sizeof (vdev_label_t)); 6626673Seschrock (void) ldi_close(vd_lh, FREAD, kcred); 6636673Seschrock 6646423Sgw25295 return (config); 6656423Sgw25295 } 666