linux/drivers/staging/lustre/lustre/lov/lov_object.c
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   1/*
   2 * GPL HEADER START
   3 *
   4 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
   5 *
   6 * This program is free software; you can redistribute it and/or modify
   7 * it under the terms of the GNU General Public License version 2 only,
   8 * as published by the Free Software Foundation.
   9 *
  10 * This program is distributed in the hope that it will be useful, but
  11 * WITHOUT ANY WARRANTY; without even the implied warranty of
  12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
  13 * General Public License version 2 for more details (a copy is included
  14 * in the LICENSE file that accompanied this code).
  15 *
  16 * You should have received a copy of the GNU General Public License
  17 * version 2 along with this program; If not, see
  18 * http://www.sun.com/software/products/lustre/docs/GPLv2.pdf
  19 *
  20 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
  21 * CA 95054 USA or visit www.sun.com if you need additional information or
  22 * have any questions.
  23 *
  24 * GPL HEADER END
  25 */
  26/*
  27 * Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved.
  28 * Use is subject to license terms.
  29 *
  30 * Copyright (c) 2011, 2012, Intel Corporation.
  31 */
  32/*
  33 * This file is part of Lustre, http://www.lustre.org/
  34 * Lustre is a trademark of Sun Microsystems, Inc.
  35 *
  36 * Implementation of cl_object for LOV layer.
  37 *
  38 *   Author: Nikita Danilov <nikita.danilov@sun.com>
  39 *   Author: Jinshan Xiong <jinshan.xiong@whamcloud.com>
  40 */
  41
  42#define DEBUG_SUBSYSTEM S_LOV
  43
  44#include "lov_cl_internal.h"
  45#include <lustre_debug.h>
  46
  47/** \addtogroup lov
  48 *  @{
  49 */
  50
  51/*****************************************************************************
  52 *
  53 * Layout operations.
  54 *
  55 */
  56
  57struct lov_layout_operations {
  58        int (*llo_init)(const struct lu_env *env, struct lov_device *dev,
  59                        struct lov_object *lov,
  60                        const struct cl_object_conf *conf,
  61                        union lov_layout_state *state);
  62        int (*llo_delete)(const struct lu_env *env, struct lov_object *lov,
  63                           union lov_layout_state *state);
  64        void (*llo_fini)(const struct lu_env *env, struct lov_object *lov,
  65                         union lov_layout_state *state);
  66        void (*llo_install)(const struct lu_env *env, struct lov_object *lov,
  67                            union lov_layout_state *state);
  68        int  (*llo_print)(const struct lu_env *env, void *cookie,
  69                          lu_printer_t p, const struct lu_object *o);
  70        int  (*llo_page_init)(const struct lu_env *env, struct cl_object *obj,
  71                                struct cl_page *page, struct page *vmpage);
  72        int  (*llo_lock_init)(const struct lu_env *env,
  73                              struct cl_object *obj, struct cl_lock *lock,
  74                              const struct cl_io *io);
  75        int  (*llo_io_init)(const struct lu_env *env,
  76                            struct cl_object *obj, struct cl_io *io);
  77        int  (*llo_getattr)(const struct lu_env *env, struct cl_object *obj,
  78                            struct cl_attr *attr);
  79};
  80
  81static int lov_layout_wait(const struct lu_env *env, struct lov_object *lov);
  82
  83/*****************************************************************************
  84 *
  85 * Lov object layout operations.
  86 *
  87 */
  88
  89static void lov_install_empty(const struct lu_env *env,
  90                              struct lov_object *lov,
  91                              union  lov_layout_state *state)
  92{
  93        /*
  94         * File without objects.
  95         */
  96}
  97
  98static int lov_init_empty(const struct lu_env *env,
  99                          struct lov_device *dev, struct lov_object *lov,
 100                          const struct cl_object_conf *conf,
 101                          union  lov_layout_state *state)
 102{
 103        return 0;
 104}
 105
 106static void lov_install_raid0(const struct lu_env *env,
 107                              struct lov_object *lov,
 108                              union  lov_layout_state *state)
 109{
 110}
 111
 112static struct cl_object *lov_sub_find(const struct lu_env *env,
 113                                      struct cl_device *dev,
 114                                      const struct lu_fid *fid,
 115                                      const struct cl_object_conf *conf)
 116{
 117        struct lu_object *o;
 118
 119        ENTRY;
 120        o = lu_object_find_at(env, cl2lu_dev(dev), fid, &conf->coc_lu);
 121        LASSERT(ergo(!IS_ERR(o), o->lo_dev->ld_type == &lovsub_device_type));
 122        RETURN(lu2cl(o));
 123}
 124
 125static int lov_init_sub(const struct lu_env *env, struct lov_object *lov,
 126                        struct cl_object *stripe,
 127                        struct lov_layout_raid0 *r0, int idx)
 128{
 129        struct cl_object_header *hdr;
 130        struct cl_object_header *subhdr;
 131        struct cl_object_header *parent;
 132        struct lov_oinfo        *oinfo;
 133        int result;
 134
 135        if (OBD_FAIL_CHECK(OBD_FAIL_LOV_INIT)) {
 136                /* For sanity:test_206.
 137                 * Do not leave the object in cache to avoid accessing
 138                 * freed memory. This is because osc_object is referring to
 139                 * lov_oinfo of lsm_stripe_data which will be freed due to
 140                 * this failure. */
 141                cl_object_kill(env, stripe);
 142                cl_object_put(env, stripe);
 143                return -EIO;
 144        }
 145
 146        hdr    = cl_object_header(lov2cl(lov));
 147        subhdr = cl_object_header(stripe);
 148        parent = subhdr->coh_parent;
 149
 150        oinfo = lov->lo_lsm->lsm_oinfo[idx];
 151        CDEBUG(D_INODE, DFID"@%p[%d] -> "DFID"@%p: ostid: "DOSTID
 152               " idx: %d gen: %d\n",
 153               PFID(&subhdr->coh_lu.loh_fid), subhdr, idx,
 154               PFID(&hdr->coh_lu.loh_fid), hdr, POSTID(&oinfo->loi_oi),
 155               oinfo->loi_ost_idx, oinfo->loi_ost_gen);
 156
 157        if (parent == NULL) {
 158                subhdr->coh_parent = hdr;
 159                subhdr->coh_nesting = hdr->coh_nesting + 1;
 160                lu_object_ref_add(&stripe->co_lu, "lov-parent", lov);
 161                r0->lo_sub[idx] = cl2lovsub(stripe);
 162                r0->lo_sub[idx]->lso_super = lov;
 163                r0->lo_sub[idx]->lso_index = idx;
 164                result = 0;
 165        } else {
 166                struct lu_object  *old_obj;
 167                struct lov_object *old_lov;
 168                unsigned int mask = D_INODE;
 169
 170                old_obj = lu_object_locate(&parent->coh_lu, &lov_device_type);
 171                LASSERT(old_obj != NULL);
 172                old_lov = cl2lov(lu2cl(old_obj));
 173                if (old_lov->lo_layout_invalid) {
 174                        /* the object's layout has already changed but isn't
 175                         * refreshed */
 176                        lu_object_unhash(env, &stripe->co_lu);
 177                        result = -EAGAIN;
 178                } else {
 179                        mask = D_ERROR;
 180                        result = -EIO;
 181                }
 182
 183                LU_OBJECT_DEBUG(mask, env, &stripe->co_lu,
 184                                "stripe %d is already owned.\n", idx);
 185                LU_OBJECT_DEBUG(mask, env, old_obj, "owned.\n");
 186                LU_OBJECT_HEADER(mask, env, lov2lu(lov), "try to own.\n");
 187                cl_object_put(env, stripe);
 188        }
 189        return result;
 190}
 191
 192static int lov_init_raid0(const struct lu_env *env,
 193                          struct lov_device *dev, struct lov_object *lov,
 194                          const struct cl_object_conf *conf,
 195                          union  lov_layout_state *state)
 196{
 197        int result;
 198        int i;
 199
 200        struct cl_object        *stripe;
 201        struct lov_thread_info  *lti     = lov_env_info(env);
 202        struct cl_object_conf   *subconf = &lti->lti_stripe_conf;
 203        struct lov_stripe_md    *lsm     = conf->u.coc_md->lsm;
 204        struct lu_fid      *ofid    = &lti->lti_fid;
 205        struct lov_layout_raid0 *r0      = &state->raid0;
 206
 207        ENTRY;
 208
 209        if (lsm->lsm_magic != LOV_MAGIC_V1 && lsm->lsm_magic != LOV_MAGIC_V3) {
 210                dump_lsm(D_ERROR, lsm);
 211                LASSERTF(0, "magic mismatch, expected %d/%d, actual %d.\n",
 212                         LOV_MAGIC_V1, LOV_MAGIC_V3, lsm->lsm_magic);
 213        }
 214
 215        LASSERT(lov->lo_lsm == NULL);
 216        lov->lo_lsm = lsm_addref(lsm);
 217        r0->lo_nr  = lsm->lsm_stripe_count;
 218        LASSERT(r0->lo_nr <= lov_targets_nr(dev));
 219
 220        OBD_ALLOC_LARGE(r0->lo_sub, r0->lo_nr * sizeof r0->lo_sub[0]);
 221        if (r0->lo_sub != NULL) {
 222                result = 0;
 223                subconf->coc_inode = conf->coc_inode;
 224                spin_lock_init(&r0->lo_sub_lock);
 225                /*
 226                 * Create stripe cl_objects.
 227                 */
 228                for (i = 0; i < r0->lo_nr && result == 0; ++i) {
 229                        struct cl_device *subdev;
 230                        struct lov_oinfo *oinfo = lsm->lsm_oinfo[i];
 231                        int ost_idx = oinfo->loi_ost_idx;
 232
 233                        result = ostid_to_fid(ofid, &oinfo->loi_oi,
 234                                              oinfo->loi_ost_idx);
 235                        if (result != 0)
 236                                GOTO(out, result);
 237
 238                        subdev = lovsub2cl_dev(dev->ld_target[ost_idx]);
 239                        subconf->u.coc_oinfo = oinfo;
 240                        LASSERTF(subdev != NULL, "not init ost %d\n", ost_idx);
 241                        /* In the function below, .hs_keycmp resolves to
 242                         * lu_obj_hop_keycmp() */
 243                        /* coverity[overrun-buffer-val] */
 244                        stripe = lov_sub_find(env, subdev, ofid, subconf);
 245                        if (!IS_ERR(stripe)) {
 246                                result = lov_init_sub(env, lov, stripe, r0, i);
 247                                if (result == -EAGAIN) { /* try again */
 248                                        --i;
 249                                        result = 0;
 250                                }
 251                        } else {
 252                                result = PTR_ERR(stripe);
 253                        }
 254                }
 255        } else
 256                result = -ENOMEM;
 257out:
 258        RETURN(result);
 259}
 260
 261static int lov_delete_empty(const struct lu_env *env, struct lov_object *lov,
 262                            union lov_layout_state *state)
 263{
 264        LASSERT(lov->lo_type == LLT_EMPTY);
 265
 266        lov_layout_wait(env, lov);
 267
 268        cl_object_prune(env, &lov->lo_cl);
 269        return 0;
 270}
 271
 272static void lov_subobject_kill(const struct lu_env *env, struct lov_object *lov,
 273                               struct lovsub_object *los, int idx)
 274{
 275        struct cl_object        *sub;
 276        struct lov_layout_raid0 *r0;
 277        struct lu_site    *site;
 278        struct lu_site_bkt_data *bkt;
 279        wait_queue_t      *waiter;
 280
 281        r0  = &lov->u.raid0;
 282        LASSERT(r0->lo_sub[idx] == los);
 283
 284        sub  = lovsub2cl(los);
 285        site = sub->co_lu.lo_dev->ld_site;
 286        bkt  = lu_site_bkt_from_fid(site, &sub->co_lu.lo_header->loh_fid);
 287
 288        cl_object_kill(env, sub);
 289        /* release a reference to the sub-object and ... */
 290        lu_object_ref_del(&sub->co_lu, "lov-parent", lov);
 291        cl_object_put(env, sub);
 292
 293        /* ... wait until it is actually destroyed---sub-object clears its
 294         * ->lo_sub[] slot in lovsub_object_fini() */
 295        if (r0->lo_sub[idx] == los) {
 296                waiter = &lov_env_info(env)->lti_waiter;
 297                init_waitqueue_entry_current(waiter);
 298                add_wait_queue(&bkt->lsb_marche_funebre, waiter);
 299                set_current_state(TASK_UNINTERRUPTIBLE);
 300                while (1) {
 301                        /* this wait-queue is signaled at the end of
 302                         * lu_object_free(). */
 303                        set_current_state(TASK_UNINTERRUPTIBLE);
 304                        spin_lock(&r0->lo_sub_lock);
 305                        if (r0->lo_sub[idx] == los) {
 306                                spin_unlock(&r0->lo_sub_lock);
 307                                waitq_wait(waiter, TASK_UNINTERRUPTIBLE);
 308                        } else {
 309                                spin_unlock(&r0->lo_sub_lock);
 310                                set_current_state(TASK_RUNNING);
 311                                break;
 312                        }
 313                }
 314                remove_wait_queue(&bkt->lsb_marche_funebre, waiter);
 315        }
 316        LASSERT(r0->lo_sub[idx] == NULL);
 317}
 318
 319static int lov_delete_raid0(const struct lu_env *env, struct lov_object *lov,
 320                            union lov_layout_state *state)
 321{
 322        struct lov_layout_raid0 *r0 = &state->raid0;
 323        struct lov_stripe_md    *lsm = lov->lo_lsm;
 324        int i;
 325
 326        ENTRY;
 327
 328        dump_lsm(D_INODE, lsm);
 329
 330        lov_layout_wait(env, lov);
 331        if (r0->lo_sub != NULL) {
 332                for (i = 0; i < r0->lo_nr; ++i) {
 333                        struct lovsub_object *los = r0->lo_sub[i];
 334
 335                        if (los != NULL) {
 336                                cl_locks_prune(env, &los->lso_cl, 1);
 337                                /*
 338                                 * If top-level object is to be evicted from
 339                                 * the cache, so are its sub-objects.
 340                                 */
 341                                lov_subobject_kill(env, lov, los, i);
 342                        }
 343                }
 344        }
 345        cl_object_prune(env, &lov->lo_cl);
 346        RETURN(0);
 347}
 348
 349static void lov_fini_empty(const struct lu_env *env, struct lov_object *lov,
 350                           union lov_layout_state *state)
 351{
 352        LASSERT(lov->lo_type == LLT_EMPTY);
 353}
 354
 355static void lov_fini_raid0(const struct lu_env *env, struct lov_object *lov,
 356                           union lov_layout_state *state)
 357{
 358        struct lov_layout_raid0 *r0 = &state->raid0;
 359        ENTRY;
 360
 361        if (r0->lo_sub != NULL) {
 362                OBD_FREE_LARGE(r0->lo_sub, r0->lo_nr * sizeof r0->lo_sub[0]);
 363                r0->lo_sub = NULL;
 364        }
 365
 366        dump_lsm(D_INODE, lov->lo_lsm);
 367        lov_free_memmd(&lov->lo_lsm);
 368
 369        EXIT;
 370}
 371
 372static int lov_print_empty(const struct lu_env *env, void *cookie,
 373                           lu_printer_t p, const struct lu_object *o)
 374{
 375        (*p)(env, cookie, "empty %d\n", lu2lov(o)->lo_layout_invalid);
 376        return 0;
 377}
 378
 379static int lov_print_raid0(const struct lu_env *env, void *cookie,
 380                           lu_printer_t p, const struct lu_object *o)
 381{
 382        struct lov_object       *lov = lu2lov(o);
 383        struct lov_layout_raid0 *r0  = lov_r0(lov);
 384        struct lov_stripe_md    *lsm = lov->lo_lsm;
 385        int i;
 386
 387        (*p)(env, cookie, "stripes: %d, %svalid, lsm{%p 0x%08X %d %u %u}: \n",
 388                r0->lo_nr, lov->lo_layout_invalid ? "in" : "", lsm,
 389                lsm->lsm_magic, atomic_read(&lsm->lsm_refc),
 390                lsm->lsm_stripe_count, lsm->lsm_layout_gen);
 391        for (i = 0; i < r0->lo_nr; ++i) {
 392                struct lu_object *sub;
 393
 394                if (r0->lo_sub[i] != NULL) {
 395                        sub = lovsub2lu(r0->lo_sub[i]);
 396                        lu_object_print(env, cookie, p, sub);
 397                } else
 398                        (*p)(env, cookie, "sub %d absent\n", i);
 399        }
 400        return 0;
 401}
 402
 403/**
 404 * Implements cl_object_operations::coo_attr_get() method for an object
 405 * without stripes (LLT_EMPTY layout type).
 406 *
 407 * The only attributes this layer is authoritative in this case is
 408 * cl_attr::cat_blocks---it's 0.
 409 */
 410static int lov_attr_get_empty(const struct lu_env *env, struct cl_object *obj,
 411                              struct cl_attr *attr)
 412{
 413        attr->cat_blocks = 0;
 414        return 0;
 415}
 416
 417static int lov_attr_get_raid0(const struct lu_env *env, struct cl_object *obj,
 418                              struct cl_attr *attr)
 419{
 420        struct lov_object       *lov = cl2lov(obj);
 421        struct lov_layout_raid0 *r0 = lov_r0(lov);
 422        struct cl_attr          *lov_attr = &r0->lo_attr;
 423        int                      result = 0;
 424
 425        ENTRY;
 426
 427        /* this is called w/o holding type guard mutex, so it must be inside
 428         * an on going IO otherwise lsm may be replaced.
 429         * LU-2117: it turns out there exists one exception. For mmaped files,
 430         * the lock of those files may be requested in the other file's IO
 431         * context, and this function is called in ccc_lock_state(), it will
 432         * hit this assertion.
 433         * Anyway, it's still okay to call attr_get w/o type guard as layout
 434         * can't go if locks exist. */
 435        /* LASSERT(atomic_read(&lsm->lsm_refc) > 1); */
 436
 437        if (!r0->lo_attr_valid) {
 438                struct lov_stripe_md    *lsm = lov->lo_lsm;
 439                struct ost_lvb    *lvb = &lov_env_info(env)->lti_lvb;
 440                __u64               kms = 0;
 441
 442                memset(lvb, 0, sizeof(*lvb));
 443                /* XXX: timestamps can be negative by sanity:test_39m,
 444                 * how can it be? */
 445                lvb->lvb_atime = LLONG_MIN;
 446                lvb->lvb_ctime = LLONG_MIN;
 447                lvb->lvb_mtime = LLONG_MIN;
 448
 449                /*
 450                 * XXX that should be replaced with a loop over sub-objects,
 451                 * doing cl_object_attr_get() on them. But for now, let's
 452                 * reuse old lov code.
 453                 */
 454
 455                /*
 456                 * XXX take lsm spin-lock to keep lov_merge_lvb_kms()
 457                 * happy. It's not needed, because new code uses
 458                 * ->coh_attr_guard spin-lock to protect consistency of
 459                 * sub-object attributes.
 460                 */
 461                lov_stripe_lock(lsm);
 462                result = lov_merge_lvb_kms(lsm, lvb, &kms);
 463                lov_stripe_unlock(lsm);
 464                if (result == 0) {
 465                        cl_lvb2attr(lov_attr, lvb);
 466                        lov_attr->cat_kms = kms;
 467                        r0->lo_attr_valid = 1;
 468                }
 469        }
 470        if (result == 0) { /* merge results */
 471                attr->cat_blocks = lov_attr->cat_blocks;
 472                attr->cat_size = lov_attr->cat_size;
 473                attr->cat_kms = lov_attr->cat_kms;
 474                if (attr->cat_atime < lov_attr->cat_atime)
 475                        attr->cat_atime = lov_attr->cat_atime;
 476                if (attr->cat_ctime < lov_attr->cat_ctime)
 477                        attr->cat_ctime = lov_attr->cat_ctime;
 478                if (attr->cat_mtime < lov_attr->cat_mtime)
 479                        attr->cat_mtime = lov_attr->cat_mtime;
 480        }
 481        RETURN(result);
 482}
 483
 484const static struct lov_layout_operations lov_dispatch[] = {
 485        [LLT_EMPTY] = {
 486                .llo_init      = lov_init_empty,
 487                .llo_delete    = lov_delete_empty,
 488                .llo_fini      = lov_fini_empty,
 489                .llo_install   = lov_install_empty,
 490                .llo_print     = lov_print_empty,
 491                .llo_page_init = lov_page_init_empty,
 492                .llo_lock_init = lov_lock_init_empty,
 493                .llo_io_init   = lov_io_init_empty,
 494                .llo_getattr   = lov_attr_get_empty
 495        },
 496        [LLT_RAID0] = {
 497                .llo_init      = lov_init_raid0,
 498                .llo_delete    = lov_delete_raid0,
 499                .llo_fini      = lov_fini_raid0,
 500                .llo_install   = lov_install_raid0,
 501                .llo_print     = lov_print_raid0,
 502                .llo_page_init = lov_page_init_raid0,
 503                .llo_lock_init = lov_lock_init_raid0,
 504                .llo_io_init   = lov_io_init_raid0,
 505                .llo_getattr   = lov_attr_get_raid0
 506        }
 507};
 508
 509
 510/**
 511 * Performs a double-dispatch based on the layout type of an object.
 512 */
 513#define LOV_2DISPATCH_NOLOCK(obj, op, ...)                            \
 514({                                                                    \
 515        struct lov_object                     *__obj = (obj);     \
 516        enum lov_layout_type                __llt;                \
 517                                                                        \
 518        __llt = __obj->lo_type;                                  \
 519        LASSERT(0 <= __llt && __llt < ARRAY_SIZE(lov_dispatch));        \
 520        lov_dispatch[__llt].op(__VA_ARGS__);                        \
 521})
 522
 523static inline void lov_conf_freeze(struct lov_object *lov)
 524{
 525        if (lov->lo_owner != current)
 526                down_read(&lov->lo_type_guard);
 527}
 528
 529static inline void lov_conf_thaw(struct lov_object *lov)
 530{
 531        if (lov->lo_owner != current)
 532                up_read(&lov->lo_type_guard);
 533}
 534
 535#define LOV_2DISPATCH_MAYLOCK(obj, op, lock, ...)                      \
 536({                                                                    \
 537        struct lov_object                     *__obj = (obj);     \
 538        int                                  __lock = !!(lock);      \
 539        typeof(lov_dispatch[0].op(__VA_ARGS__)) __result;              \
 540                                                                        \
 541        if (__lock)                                                  \
 542                lov_conf_freeze(__obj);                                 \
 543        __result = LOV_2DISPATCH_NOLOCK(obj, op, __VA_ARGS__);    \
 544        if (__lock)                                                  \
 545                lov_conf_thaw(__obj);                                   \
 546        __result;                                                      \
 547})
 548
 549/**
 550 * Performs a locked double-dispatch based on the layout type of an object.
 551 */
 552#define LOV_2DISPATCH(obj, op, ...)                  \
 553        LOV_2DISPATCH_MAYLOCK(obj, op, 1, __VA_ARGS__)
 554
 555#define LOV_2DISPATCH_VOID(obj, op, ...)                                \
 556do {                                                                \
 557        struct lov_object                     *__obj = (obj);     \
 558        enum lov_layout_type                __llt;                \
 559                                                                        \
 560        lov_conf_freeze(__obj);                                         \
 561        __llt = __obj->lo_type;                                  \
 562        LASSERT(0 <= __llt && __llt < ARRAY_SIZE(lov_dispatch));        \
 563        lov_dispatch[__llt].op(__VA_ARGS__);                        \
 564        lov_conf_thaw(__obj);                                           \
 565} while (0)
 566
 567static void lov_conf_lock(struct lov_object *lov)
 568{
 569        LASSERT(lov->lo_owner != current);
 570        down_write(&lov->lo_type_guard);
 571        LASSERT(lov->lo_owner == NULL);
 572        lov->lo_owner = current;
 573}
 574
 575static void lov_conf_unlock(struct lov_object *lov)
 576{
 577        lov->lo_owner = NULL;
 578        up_write(&lov->lo_type_guard);
 579}
 580
 581static int lov_layout_wait(const struct lu_env *env, struct lov_object *lov)
 582{
 583        struct l_wait_info lwi = { 0 };
 584        ENTRY;
 585
 586        while (atomic_read(&lov->lo_active_ios) > 0) {
 587                CDEBUG(D_INODE, "file:"DFID" wait for active IO, now: %d.\n",
 588                        PFID(lu_object_fid(lov2lu(lov))),
 589                        atomic_read(&lov->lo_active_ios));
 590
 591                l_wait_event(lov->lo_waitq,
 592                             atomic_read(&lov->lo_active_ios) == 0, &lwi);
 593        }
 594        RETURN(0);
 595}
 596
 597static int lov_layout_change(const struct lu_env *unused,
 598                             struct lov_object *lov,
 599                             const struct cl_object_conf *conf)
 600{
 601        int result;
 602        enum lov_layout_type llt = LLT_EMPTY;
 603        union lov_layout_state *state = &lov->u;
 604        const struct lov_layout_operations *old_ops;
 605        const struct lov_layout_operations *new_ops;
 606
 607        struct cl_object_header *hdr = cl_object_header(&lov->lo_cl);
 608        void *cookie;
 609        struct lu_env *env;
 610        int refcheck;
 611        ENTRY;
 612
 613        LASSERT(0 <= lov->lo_type && lov->lo_type < ARRAY_SIZE(lov_dispatch));
 614
 615        if (conf->u.coc_md != NULL && conf->u.coc_md->lsm != NULL)
 616                llt = LLT_RAID0; /* only raid0 is supported. */
 617        LASSERT(0 <= llt && llt < ARRAY_SIZE(lov_dispatch));
 618
 619        cookie = cl_env_reenter();
 620        env = cl_env_get(&refcheck);
 621        if (IS_ERR(env)) {
 622                cl_env_reexit(cookie);
 623                RETURN(PTR_ERR(env));
 624        }
 625
 626        old_ops = &lov_dispatch[lov->lo_type];
 627        new_ops = &lov_dispatch[llt];
 628
 629        result = old_ops->llo_delete(env, lov, &lov->u);
 630        if (result == 0) {
 631                old_ops->llo_fini(env, lov, &lov->u);
 632
 633                LASSERT(atomic_read(&lov->lo_active_ios) == 0);
 634                LASSERT(hdr->coh_tree.rnode == NULL);
 635                LASSERT(hdr->coh_pages == 0);
 636
 637                lov->lo_type = LLT_EMPTY;
 638                result = new_ops->llo_init(env,
 639                                        lu2lov_dev(lov->lo_cl.co_lu.lo_dev),
 640                                        lov, conf, state);
 641                if (result == 0) {
 642                        new_ops->llo_install(env, lov, state);
 643                        lov->lo_type = llt;
 644                } else {
 645                        new_ops->llo_delete(env, lov, state);
 646                        new_ops->llo_fini(env, lov, state);
 647                        /* this file becomes an EMPTY file. */
 648                }
 649        }
 650
 651        cl_env_put(env, &refcheck);
 652        cl_env_reexit(cookie);
 653        RETURN(result);
 654}
 655
 656/*****************************************************************************
 657 *
 658 * Lov object operations.
 659 *
 660 */
 661
 662int lov_object_init(const struct lu_env *env, struct lu_object *obj,
 663                    const struct lu_object_conf *conf)
 664{
 665        struct lov_device           *dev   = lu2lov_dev(obj->lo_dev);
 666        struct lov_object           *lov   = lu2lov(obj);
 667        const struct cl_object_conf  *cconf = lu2cl_conf(conf);
 668        union  lov_layout_state      *set   = &lov->u;
 669        const struct lov_layout_operations *ops;
 670        int result;
 671
 672        ENTRY;
 673        init_rwsem(&lov->lo_type_guard);
 674        atomic_set(&lov->lo_active_ios, 0);
 675        init_waitqueue_head(&lov->lo_waitq);
 676
 677        cl_object_page_init(lu2cl(obj), sizeof(struct lov_page));
 678
 679        /* no locking is necessary, as object is being created */
 680        lov->lo_type = cconf->u.coc_md->lsm != NULL ? LLT_RAID0 : LLT_EMPTY;
 681        ops = &lov_dispatch[lov->lo_type];
 682        result = ops->llo_init(env, dev, lov, cconf, set);
 683        if (result == 0)
 684                ops->llo_install(env, lov, set);
 685        RETURN(result);
 686}
 687
 688static int lov_conf_set(const struct lu_env *env, struct cl_object *obj,
 689                        const struct cl_object_conf *conf)
 690{
 691        struct lov_stripe_md *lsm = NULL;
 692        struct lov_object *lov = cl2lov(obj);
 693        int result = 0;
 694        ENTRY;
 695
 696        lov_conf_lock(lov);
 697        if (conf->coc_opc == OBJECT_CONF_INVALIDATE) {
 698                lov->lo_layout_invalid = true;
 699                GOTO(out, result = 0);
 700        }
 701
 702        if (conf->coc_opc == OBJECT_CONF_WAIT) {
 703                if (lov->lo_layout_invalid &&
 704                    atomic_read(&lov->lo_active_ios) > 0) {
 705                        lov_conf_unlock(lov);
 706                        result = lov_layout_wait(env, lov);
 707                        lov_conf_lock(lov);
 708                }
 709                GOTO(out, result);
 710        }
 711
 712        LASSERT(conf->coc_opc == OBJECT_CONF_SET);
 713
 714        if (conf->u.coc_md != NULL)
 715                lsm = conf->u.coc_md->lsm;
 716        if ((lsm == NULL && lov->lo_lsm == NULL) ||
 717            (lsm != NULL && lov->lo_lsm != NULL &&
 718             lov->lo_lsm->lsm_layout_gen == lsm->lsm_layout_gen)) {
 719                /* same version of layout */
 720                lov->lo_layout_invalid = false;
 721                GOTO(out, result = 0);
 722        }
 723
 724        /* will change layout - check if there still exists active IO. */
 725        if (atomic_read(&lov->lo_active_ios) > 0) {
 726                lov->lo_layout_invalid = true;
 727                GOTO(out, result = -EBUSY);
 728        }
 729
 730        lov->lo_layout_invalid = lov_layout_change(env, lov, conf);
 731        EXIT;
 732
 733out:
 734        lov_conf_unlock(lov);
 735        RETURN(result);
 736}
 737
 738static void lov_object_delete(const struct lu_env *env, struct lu_object *obj)
 739{
 740        struct lov_object *lov = lu2lov(obj);
 741
 742        ENTRY;
 743        LOV_2DISPATCH_VOID(lov, llo_delete, env, lov, &lov->u);
 744        EXIT;
 745}
 746
 747static void lov_object_free(const struct lu_env *env, struct lu_object *obj)
 748{
 749        struct lov_object *lov = lu2lov(obj);
 750
 751        ENTRY;
 752        LOV_2DISPATCH_VOID(lov, llo_fini, env, lov, &lov->u);
 753        lu_object_fini(obj);
 754        OBD_SLAB_FREE_PTR(lov, lov_object_kmem);
 755        EXIT;
 756}
 757
 758static int lov_object_print(const struct lu_env *env, void *cookie,
 759                            lu_printer_t p, const struct lu_object *o)
 760{
 761        return LOV_2DISPATCH_NOLOCK(lu2lov(o), llo_print, env, cookie, p, o);
 762}
 763
 764int lov_page_init(const struct lu_env *env, struct cl_object *obj,
 765                struct cl_page *page, struct page *vmpage)
 766{
 767        return LOV_2DISPATCH_NOLOCK(cl2lov(obj),
 768                                    llo_page_init, env, obj, page, vmpage);
 769}
 770
 771/**
 772 * Implements cl_object_operations::clo_io_init() method for lov
 773 * layer. Dispatches to the appropriate layout io initialization method.
 774 */
 775int lov_io_init(const struct lu_env *env, struct cl_object *obj,
 776                struct cl_io *io)
 777{
 778        CL_IO_SLICE_CLEAN(lov_env_io(env), lis_cl);
 779        return LOV_2DISPATCH_MAYLOCK(cl2lov(obj), llo_io_init,
 780                                     !io->ci_ignore_layout, env, obj, io);
 781}
 782
 783/**
 784 * An implementation of cl_object_operations::clo_attr_get() method for lov
 785 * layer. For raid0 layout this collects and merges attributes of all
 786 * sub-objects.
 787 */
 788static int lov_attr_get(const struct lu_env *env, struct cl_object *obj,
 789                        struct cl_attr *attr)
 790{
 791        /* do not take lock, as this function is called under a
 792         * spin-lock. Layout is protected from changing by ongoing IO. */
 793        return LOV_2DISPATCH_NOLOCK(cl2lov(obj), llo_getattr, env, obj, attr);
 794}
 795
 796static int lov_attr_set(const struct lu_env *env, struct cl_object *obj,
 797                        const struct cl_attr *attr, unsigned valid)
 798{
 799        /*
 800         * No dispatch is required here, as no layout implements this.
 801         */
 802        return 0;
 803}
 804
 805int lov_lock_init(const struct lu_env *env, struct cl_object *obj,
 806                  struct cl_lock *lock, const struct cl_io *io)
 807{
 808        /* No need to lock because we've taken one refcount of layout.  */
 809        return LOV_2DISPATCH_NOLOCK(cl2lov(obj), llo_lock_init, env, obj, lock,
 810                                    io);
 811}
 812
 813static const struct cl_object_operations lov_ops = {
 814        .coo_page_init = lov_page_init,
 815        .coo_lock_init = lov_lock_init,
 816        .coo_io_init   = lov_io_init,
 817        .coo_attr_get  = lov_attr_get,
 818        .coo_attr_set  = lov_attr_set,
 819        .coo_conf_set  = lov_conf_set
 820};
 821
 822static const struct lu_object_operations lov_lu_obj_ops = {
 823        .loo_object_init      = lov_object_init,
 824        .loo_object_delete    = lov_object_delete,
 825        .loo_object_release   = NULL,
 826        .loo_object_free      = lov_object_free,
 827        .loo_object_print     = lov_object_print,
 828        .loo_object_invariant = NULL
 829};
 830
 831struct lu_object *lov_object_alloc(const struct lu_env *env,
 832                                   const struct lu_object_header *unused,
 833                                   struct lu_device *dev)
 834{
 835        struct lov_object *lov;
 836        struct lu_object  *obj;
 837
 838        ENTRY;
 839        OBD_SLAB_ALLOC_PTR_GFP(lov, lov_object_kmem, __GFP_IO);
 840        if (lov != NULL) {
 841                obj = lov2lu(lov);
 842                lu_object_init(obj, NULL, dev);
 843                lov->lo_cl.co_ops = &lov_ops;
 844                lov->lo_type = -1; /* invalid, to catch uninitialized type */
 845                /*
 846                 * object io operation vector (cl_object::co_iop) is installed
 847                 * later in lov_object_init(), as different vectors are used
 848                 * for object with different layouts.
 849                 */
 850                obj->lo_ops = &lov_lu_obj_ops;
 851        } else
 852                obj = NULL;
 853        RETURN(obj);
 854}
 855
 856struct lov_stripe_md *lov_lsm_addref(struct lov_object *lov)
 857{
 858        struct lov_stripe_md *lsm = NULL;
 859
 860        lov_conf_freeze(lov);
 861        if (lov->lo_lsm != NULL) {
 862                lsm = lsm_addref(lov->lo_lsm);
 863                CDEBUG(D_INODE, "lsm %p addref %d/%d by %p.\n",
 864                        lsm, atomic_read(&lsm->lsm_refc),
 865                        lov->lo_layout_invalid, current);
 866        }
 867        lov_conf_thaw(lov);
 868        return lsm;
 869}
 870
 871void lov_lsm_decref(struct lov_object *lov, struct lov_stripe_md *lsm)
 872{
 873        if (lsm == NULL)
 874                return;
 875
 876        CDEBUG(D_INODE, "lsm %p decref %d by %p.\n",
 877                lsm, atomic_read(&lsm->lsm_refc), current);
 878
 879        lov_free_memmd(&lsm);
 880}
 881
 882struct lov_stripe_md *lov_lsm_get(struct cl_object *clobj)
 883{
 884        struct lu_object *luobj;
 885        struct lov_stripe_md *lsm = NULL;
 886
 887        if (clobj == NULL)
 888                return NULL;
 889
 890        luobj = lu_object_locate(&cl_object_header(clobj)->coh_lu,
 891                                 &lov_device_type);
 892        if (luobj != NULL)
 893                lsm = lov_lsm_addref(lu2lov(luobj));
 894        return lsm;
 895}
 896EXPORT_SYMBOL(lov_lsm_get);
 897
 898void lov_lsm_put(struct cl_object *unused, struct lov_stripe_md *lsm)
 899{
 900        if (lsm != NULL)
 901                lov_free_memmd(&lsm);
 902}
 903EXPORT_SYMBOL(lov_lsm_put);
 904
 905int lov_read_and_clear_async_rc(struct cl_object *clob)
 906{
 907        struct lu_object *luobj;
 908        int rc = 0;
 909        ENTRY;
 910
 911        luobj = lu_object_locate(&cl_object_header(clob)->coh_lu,
 912                                 &lov_device_type);
 913        if (luobj != NULL) {
 914                struct lov_object *lov = lu2lov(luobj);
 915
 916                lov_conf_freeze(lov);
 917                switch (lov->lo_type) {
 918                case LLT_RAID0: {
 919                        struct lov_stripe_md *lsm;
 920                        int i;
 921
 922                        lsm = lov->lo_lsm;
 923                        LASSERT(lsm != NULL);
 924                        for (i = 0; i < lsm->lsm_stripe_count; i++) {
 925                                struct lov_oinfo *loi = lsm->lsm_oinfo[i];
 926                                if (loi->loi_ar.ar_rc && !rc)
 927                                        rc = loi->loi_ar.ar_rc;
 928                                loi->loi_ar.ar_rc = 0;
 929                        }
 930                }
 931                case LLT_EMPTY:
 932                        break;
 933                default:
 934                        LBUG();
 935                }
 936                lov_conf_thaw(lov);
 937        }
 938        RETURN(rc);
 939}
 940EXPORT_SYMBOL(lov_read_and_clear_async_rc);
 941
 942/** @} lov */
 943