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dm_target_stripe.c revision 1.23
      1  1.23  christos /*$NetBSD: dm_target_stripe.c,v 1.23 2018/01/05 14:22:26 christos Exp $*/
      2   1.1      haad 
      3   1.1      haad /*
      4   1.1      haad  * Copyright (c) 2009 The NetBSD Foundation, Inc.
      5   1.1      haad  * All rights reserved.
      6   1.1      haad  *
      7   1.1      haad  * This code is derived from software contributed to The NetBSD Foundation
      8   1.1      haad  * by Adam Hamsik.
      9   1.1      haad  *
     10   1.1      haad  * Redistribution and use in source and binary forms, with or without
     11   1.1      haad  * modification, are permitted provided that the following conditions
     12   1.1      haad  * are met:
     13   1.1      haad  * 1. Redistributions of source code must retain the above copyright
     14   1.1      haad  *    notice, this list of conditions and the following disclaimer.
     15   1.1      haad  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.1      haad  *    notice, this list of conditions and the following disclaimer in the
     17   1.1      haad  *    documentation and/or other materials provided with the distribution.
     18   1.1      haad  *
     19   1.1      haad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20   1.1      haad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21   1.1      haad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22   1.1      haad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23   1.1      haad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24   1.1      haad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25   1.1      haad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26   1.1      haad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27   1.1      haad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28   1.1      haad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.1      haad  * POSSIBILITY OF SUCH DAMAGE.
     30   1.1      haad  */
     31  1.23  christos #include <sys/cdefs.h>
     32  1.23  christos __KERNEL_RCSID(0, "$NetBSD: dm_target_stripe.c,v 1.23 2018/01/05 14:22:26 christos Exp $");
     33   1.1      haad 
     34   1.1      haad /*
     35   1.1      haad  * This file implements initial version of device-mapper stripe target.
     36   1.1      haad  */
     37   1.1      haad #include <sys/types.h>
     38   1.1      haad #include <sys/param.h>
     39   1.1      haad 
     40   1.1      haad #include <sys/buf.h>
     41   1.3      haad #include <sys/kmem.h>
     42   1.3      haad #include <sys/vnode.h>
     43  1.12  uebayasi #include <sys/lwp.h>
     44   1.1      haad 
     45   1.1      haad #include "dm.h"
     46   1.1      haad 
     47   1.1      haad #ifdef DM_TARGET_MODULE
     48   1.1      haad /*
     49   1.1      haad  * Every target can be compiled directly to dm driver or as a
     50   1.1      haad  * separate module this part of target is used for loading targets
     51   1.1      haad  * to dm driver.
     52   1.1      haad  * Target can be unloaded from kernel only if there are no users of
     53   1.1      haad  * it e.g. there are no devices which uses that target.
     54   1.1      haad  */
     55   1.1      haad #include <sys/kernel.h>
     56   1.1      haad #include <sys/module.h>
     57   1.1      haad 
     58   1.1      haad MODULE(MODULE_CLASS_MISC, dm_target_stripe, NULL);
     59   1.1      haad 
     60   1.1      haad static int
     61   1.1      haad dm_target_stripe_modcmd(modcmd_t cmd, void *arg)
     62   1.1      haad {
     63   1.1      haad 	dm_target_t *dmt;
     64   1.1      haad 	int r;
     65   1.1      haad 	dmt = NULL;
     66   1.9      haad 
     67   1.1      haad 	switch (cmd) {
     68   1.1      haad 	case MODULE_CMD_INIT:
     69   1.3      haad 		if ((dmt = dm_target_lookup("stripe")) != NULL) {
     70   1.3      haad 			dm_target_unbusy(dmt);
     71   1.1      haad 			return EEXIST;
     72   1.3      haad 		}
     73   1.1      haad 		dmt = dm_target_alloc("stripe");
     74   1.9      haad 
     75   1.1      haad 		dmt->version[0] = 1;
     76   1.1      haad 		dmt->version[1] = 0;
     77   1.1      haad 		dmt->version[2] = 0;
     78   1.1      haad 		strlcpy(dmt->name, "stripe", DM_MAX_TYPE_NAME);
     79   1.1      haad 		dmt->init = &dm_target_stripe_init;
     80   1.1      haad 		dmt->status = &dm_target_stripe_status;
     81   1.1      haad 		dmt->strategy = &dm_target_stripe_strategy;
     82  1.10      haad 		dmt->sync = &dm_target_stripe_sync;
     83   1.1      haad 		dmt->deps = &dm_target_stripe_deps;
     84   1.1      haad 		dmt->destroy = &dm_target_stripe_destroy;
     85   1.1      haad 		dmt->upcall = &dm_target_stripe_upcall;
     86  1.15     ahoka 		dmt->secsize = &dm_target_stripe_secsize;
     87   1.1      haad 
     88   1.1      haad 		r = dm_target_insert(dmt);
     89   1.9      haad 
     90   1.1      haad 		break;
     91   1.1      haad 
     92   1.1      haad 	case MODULE_CMD_FINI:
     93   1.1      haad 		r = dm_target_rem("stripe");
     94   1.1      haad 		break;
     95   1.1      haad 
     96   1.1      haad 	case MODULE_CMD_STAT:
     97   1.1      haad 		return ENOTTY;
     98   1.1      haad 
     99   1.1      haad 	default:
    100   1.1      haad 		return ENOTTY;
    101   1.1      haad 	}
    102   1.1      haad 
    103   1.1      haad 	return r;
    104   1.1      haad }
    105   1.1      haad #endif
    106   1.1      haad 
    107  1.21  christos static void
    108  1.21  christos dm_target_stripe_fini(dm_target_stripe_config_t *tsc)
    109  1.21  christos {
    110  1.21  christos 	dm_target_linear_config_t *tlc;
    111  1.21  christos 
    112  1.21  christos 	if (tsc == NULL)
    113  1.21  christos 		return;
    114  1.21  christos 
    115  1.21  christos 	while ((tlc = TAILQ_FIRST(&tsc->stripe_devs)) != NULL) {
    116  1.21  christos 		TAILQ_REMOVE(&tsc->stripe_devs, tlc, entries);
    117  1.21  christos 		dm_pdev_decr(tlc->pdev);
    118  1.21  christos 		kmem_free(tlc, sizeof(*tlc));
    119  1.21  christos 	}
    120  1.21  christos 
    121  1.21  christos 	kmem_free(tsc, sizeof(*tsc));
    122  1.21  christos }
    123  1.21  christos 
    124   1.3      haad /*
    125   1.3      haad  * Init function called from dm_table_load_ioctl.
    126  1.11      haad  * DM_STRIPE_DEV_OFFSET should always hold the index of the first device-offset
    127  1.11      haad  * pair in the parameters.
    128   1.3      haad  * Example line sent to dm from lvm tools when using striped target.
    129   1.3      haad  * start length striped #stripes chunk_size device1 offset1 ... deviceN offsetN
    130   1.3      haad  * 0 65536 striped 2 512 /dev/hda 0 /dev/hdb 0
    131   1.3      haad  */
    132   1.1      haad int
    133   1.9      haad dm_target_stripe_init(dm_dev_t * dmv, void **target_config, char *params)
    134   1.1      haad {
    135  1.11      haad 	dm_target_linear_config_t *tlc;
    136   1.3      haad 	dm_target_stripe_config_t *tsc;
    137   1.8      haad 	size_t len;
    138   1.8      haad 	char **ap, *argv[10];
    139  1.11      haad 	int strpc, strpi;
    140   1.8      haad 
    141   1.9      haad 	if (params == NULL)
    142   1.3      haad 		return EINVAL;
    143   1.8      haad 
    144   1.8      haad 	len = strlen(params) + 1;
    145   1.9      haad 
    146   1.8      haad 	/*
    147   1.8      haad 	 * Parse a string, containing tokens delimited by white space,
    148   1.8      haad 	 * into an argument vector
    149   1.8      haad 	 */
    150  1.18      haad 	for (ap = argv; ap <= &argv[9] &&
    151   1.9      haad 	    (*ap = strsep(&params, " \t")) != NULL;) {
    152   1.8      haad 		if (**ap != '\0')
    153   1.8      haad 			ap++;
    154   1.8      haad 	}
    155   1.9      haad 
    156   1.8      haad 	printf("Stripe target init function called!!\n");
    157   1.1      haad 
    158  1.11      haad 	printf("Stripe target chunk size %s number of stripes %s\n",
    159  1.11      haad 	    argv[1], argv[0]);
    160   1.3      haad 
    161  1.11      haad 	if ((tsc = kmem_alloc(sizeof(*tsc), KM_NOSLEEP)) == NULL)
    162   1.3      haad 		return ENOMEM;
    163   1.9      haad 
    164  1.11      haad 	/* Initialize linked list for striping devices */
    165  1.11      haad 	TAILQ_INIT(&tsc->stripe_devs);
    166   1.3      haad 
    167   1.8      haad 	/* Save length of param string */
    168   1.8      haad 	tsc->params_len = len;
    169   1.8      haad 	tsc->stripe_chunksize = atoi(argv[1]);
    170   1.9      haad 	tsc->stripe_num = (uint8_t) atoi(argv[0]);
    171   1.9      haad 
    172  1.11      haad 	strpc = DM_STRIPE_DEV_OFFSET + (tsc->stripe_num * 2);
    173  1.11      haad 	for (strpi = DM_STRIPE_DEV_OFFSET; strpi < strpc; strpi += 2) {
    174  1.11      haad 		printf("Stripe target device name %s -- offset %s\n",
    175  1.11      haad 		       argv[strpi], argv[strpi+1]);
    176  1.11      haad 
    177  1.11      haad 		tlc = kmem_alloc(sizeof(*tlc), KM_NOSLEEP);
    178  1.20       agc 		if ((tlc->pdev = dm_pdev_insert(argv[strpi])) == NULL) {
    179  1.20       agc 			kmem_free(tlc, sizeof(*tlc));
    180  1.21  christos 			dm_target_stripe_fini(tsc);
    181  1.15     ahoka 			return ENOENT;
    182  1.20       agc 		}
    183  1.11      haad 		tlc->offset = atoi(argv[strpi+1]);
    184  1.11      haad 
    185  1.11      haad 		/* Insert striping device to linked list. */
    186  1.11      haad 		TAILQ_INSERT_TAIL(&tsc->stripe_devs, tlc, entries);
    187  1.11      haad 	}
    188  1.11      haad 
    189   1.3      haad 	*target_config = tsc;
    190   1.1      haad 
    191   1.1      haad 	dmv->dev_type = DM_STRIPE_DEV;
    192   1.9      haad 
    193   1.3      haad 	return 0;
    194   1.1      haad }
    195  1.23  christos 
    196   1.1      haad /* Status routine called to get params string. */
    197   1.1      haad char *
    198   1.1      haad dm_target_stripe_status(void *target_config)
    199   1.1      haad {
    200  1.11      haad 	dm_target_linear_config_t *tlc;
    201   1.3      haad 	dm_target_stripe_config_t *tsc;
    202  1.11      haad 	char *params, *tmp;
    203   1.3      haad 
    204   1.3      haad 	tsc = target_config;
    205   1.9      haad 
    206  1.22       chs 	params = kmem_alloc(DM_MAX_PARAMS_SIZE, KM_SLEEP);
    207  1.22       chs 	tmp = kmem_alloc(DM_MAX_PARAMS_SIZE, KM_SLEEP);
    208  1.11      haad 
    209  1.11      haad 	snprintf(params, DM_MAX_PARAMS_SIZE, "%d %" PRIu64,
    210  1.11      haad 	    tsc->stripe_num, tsc->stripe_chunksize);
    211  1.11      haad 
    212  1.11      haad 	TAILQ_FOREACH(tlc, &tsc->stripe_devs, entries) {
    213  1.11      haad 		snprintf(tmp, DM_MAX_PARAMS_SIZE, " %s %" PRIu64,
    214  1.11      haad 		    tlc->pdev->name, tlc->offset);
    215  1.11      haad 		strcat(params, tmp);
    216  1.11      haad 	}
    217  1.11      haad 
    218  1.11      haad 	kmem_free(tmp, DM_MAX_PARAMS_SIZE);
    219   1.9      haad 
    220   1.3      haad 	return params;
    221   1.9      haad }
    222  1.23  christos 
    223   1.1      haad /* Strategy routine called from dm_strategy. */
    224   1.1      haad int
    225   1.9      haad dm_target_stripe_strategy(dm_table_entry_t * table_en, struct buf * bp)
    226   1.1      haad {
    227  1.11      haad 	dm_target_linear_config_t *tlc;
    228   1.4   reinoud 	dm_target_stripe_config_t *tsc;
    229   1.4   reinoud 	struct buf *nestbuf;
    230   1.4   reinoud 	uint64_t blkno, blkoff;
    231   1.4   reinoud 	uint64_t stripe, stripe_blknr;
    232   1.4   reinoud 	uint32_t stripe_off, stripe_rest, num_blks, issue_blks;
    233  1.11      haad 	int i, stripe_devnr;
    234   1.4   reinoud 
    235   1.4   reinoud 	tsc = table_en->target_config;
    236   1.4   reinoud 	if (tsc == NULL)
    237   1.4   reinoud 		return 0;
    238   1.4   reinoud 
    239   1.8      haad /*	printf("Stripe target read function called %" PRIu64 "!!\n",
    240   1.4   reinoud 	tlc->offset);*/
    241   1.4   reinoud 
    242   1.4   reinoud 	/* calculate extent of request */
    243   1.4   reinoud 	KASSERT(bp->b_resid % DEV_BSIZE == 0);
    244   1.4   reinoud 
    245   1.9      haad 	blkno = bp->b_blkno;
    246   1.4   reinoud 	blkoff = 0;
    247   1.4   reinoud 	num_blks = bp->b_resid / DEV_BSIZE;
    248   1.4   reinoud 	for (;;) {
    249   1.4   reinoud 		/* blockno to strip piece nr */
    250   1.9      haad 		stripe = blkno / tsc->stripe_chunksize;
    251   1.4   reinoud 		stripe_off = blkno % tsc->stripe_chunksize;
    252   1.4   reinoud 
    253   1.4   reinoud 		/* where we are inside the strip */
    254   1.4   reinoud 		stripe_devnr = stripe % tsc->stripe_num;
    255   1.4   reinoud 		stripe_blknr = stripe / tsc->stripe_num;
    256   1.4   reinoud 
    257   1.4   reinoud 		/* how much is left before we hit a boundary */
    258   1.4   reinoud 		stripe_rest = tsc->stripe_chunksize - stripe_off;
    259   1.4   reinoud 
    260   1.4   reinoud 		/* issue this piece on stripe `stripe' */
    261   1.4   reinoud 		issue_blks = MIN(stripe_rest, num_blks);
    262   1.4   reinoud 		nestbuf = getiobuf(NULL, true);
    263   1.4   reinoud 
    264   1.4   reinoud 		nestiobuf_setup(bp, nestbuf, blkoff, issue_blks * DEV_BSIZE);
    265   1.4   reinoud 		nestbuf->b_blkno = stripe_blknr * tsc->stripe_chunksize + stripe_off;
    266   1.4   reinoud 
    267  1.11      haad 		tlc = TAILQ_FIRST(&tsc->stripe_devs);
    268  1.14      haad 		for (i = 0; i < stripe_devnr && tlc != NULL; i++)
    269  1.11      haad 			tlc = TAILQ_NEXT(tlc, entries);
    270  1.11      haad 
    271  1.11      haad 		/* by this point we should have an tlc */
    272  1.17      haad 		KASSERT(tlc != NULL);
    273  1.11      haad 
    274  1.11      haad 		nestbuf->b_blkno += tlc->offset;
    275  1.11      haad 
    276  1.11      haad 		VOP_STRATEGY(tlc->pdev->pdev_vnode, nestbuf);
    277   1.4   reinoud 
    278   1.9      haad 		blkno += issue_blks;
    279   1.9      haad 		blkoff += issue_blks * DEV_BSIZE;
    280   1.4   reinoud 		num_blks -= issue_blks;
    281   1.4   reinoud 
    282   1.4   reinoud 		if (num_blks <= 0)
    283   1.4   reinoud 			break;
    284   1.4   reinoud 	}
    285   1.1      haad 
    286   1.1      haad 	return 0;
    287   1.1      haad }
    288  1.23  christos 
    289  1.10      haad /* Sync underlying disk caches. */
    290  1.10      haad int
    291  1.10      haad dm_target_stripe_sync(dm_table_entry_t * table_en)
    292  1.10      haad {
    293  1.11      haad 	int cmd, err;
    294  1.10      haad 	dm_target_stripe_config_t *tsc;
    295  1.11      haad 	dm_target_linear_config_t *tlc;
    296  1.10      haad 
    297  1.10      haad 	tsc = table_en->target_config;
    298  1.10      haad 
    299  1.10      haad 	err = 0;
    300  1.10      haad 	cmd = 1;
    301  1.10      haad 
    302  1.11      haad 	TAILQ_FOREACH(tlc, &tsc->stripe_devs, entries) {
    303  1.11      haad 		if ((err = VOP_IOCTL(tlc->pdev->pdev_vnode, DIOCCACHESYNC,
    304  1.10      haad 			    &cmd, FREAD|FWRITE, kauth_cred_get())) != 0)
    305  1.10      haad 			return err;
    306  1.10      haad 	}
    307  1.15     ahoka 
    308  1.10      haad 	return err;
    309  1.10      haad 
    310  1.10      haad }
    311  1.23  christos 
    312  1.10      haad /* Destroy target specific data. */
    313   1.1      haad int
    314   1.9      haad dm_target_stripe_destroy(dm_table_entry_t * table_en)
    315   1.1      haad {
    316  1.21  christos 	dm_target_stripe_fini(table_en->target_config);
    317  1.23  christos 	table_en->target_config = NULL;
    318   1.1      haad 
    319   1.1      haad 	/* Unbusy target so we can unload it */
    320   1.1      haad 	dm_target_unbusy(table_en->target);
    321   1.9      haad 
    322   1.1      haad 	return 0;
    323   1.1      haad }
    324  1.23  christos 
    325   1.1      haad /* Doesn't not need to do anything here. */
    326   1.1      haad int
    327   1.9      haad dm_target_stripe_deps(dm_table_entry_t * table_en, prop_array_t prop_array)
    328   1.9      haad {
    329   1.3      haad 	dm_target_stripe_config_t *tsc;
    330  1.11      haad 	dm_target_linear_config_t *tlc;
    331   1.9      haad 
    332   1.3      haad 	if (table_en->target_config == NULL)
    333   1.3      haad 		return ENOENT;
    334   1.9      haad 
    335   1.3      haad 	tsc = table_en->target_config;
    336   1.9      haad 
    337  1.11      haad 	TAILQ_FOREACH(tlc, &tsc->stripe_devs, entries) {
    338  1.19   hannken 		prop_array_add_uint64(prop_array,
    339  1.19   hannken 		    (uint64_t) tlc->pdev->pdev_vnode->v_rdev);
    340  1.11      haad 	}
    341   1.9      haad 
    342   1.1      haad 	return 0;
    343   1.1      haad }
    344  1.23  christos 
    345   1.1      haad /* Unsupported for this target. */
    346   1.1      haad int
    347   1.9      haad dm_target_stripe_upcall(dm_table_entry_t * table_en, struct buf * bp)
    348   1.1      haad {
    349   1.1      haad 	return 0;
    350   1.1      haad }
    351  1.23  christos 
    352  1.13   mlelstv /*
    353  1.13   mlelstv  * Compute physical block size
    354  1.15     ahoka  * For a stripe target we chose the maximum sector size of all
    355  1.13   mlelstv  * stripe devices. For the supported power-of-2 sizes this is equivalent
    356  1.13   mlelstv  * to the least common multiple.
    357  1.13   mlelstv  */
    358  1.13   mlelstv int
    359  1.13   mlelstv dm_target_stripe_secsize(dm_table_entry_t * table_en, unsigned *secsizep)
    360  1.13   mlelstv {
    361  1.13   mlelstv 	dm_target_linear_config_t *tlc;
    362  1.13   mlelstv 	dm_target_stripe_config_t *tsc;
    363  1.13   mlelstv 	unsigned secsize;
    364  1.13   mlelstv 
    365  1.13   mlelstv 	secsize = 0;
    366  1.13   mlelstv 
    367  1.13   mlelstv 	tsc = table_en->target_config;
    368  1.13   mlelstv 	if (tsc != NULL) {
    369  1.13   mlelstv 		TAILQ_FOREACH(tlc, &tsc->stripe_devs, entries) {
    370  1.13   mlelstv 			if (secsize < tlc->pdev->pdev_secsize)
    371  1.13   mlelstv 				secsize = tlc->pdev->pdev_secsize;
    372  1.13   mlelstv 		}
    373  1.13   mlelstv 	}
    374  1.13   mlelstv 
    375  1.13   mlelstv 	*secsizep = secsize;
    376  1.13   mlelstv 
    377  1.13   mlelstv 	return 0;
    378  1.13   mlelstv }
    379