* Copyright (c) 2007, 2010, Oracle and/or its affiliates. All rights reserved.
* Use is subject to license terms.
*
- * Copyright (c) 2011, 2012, Whamcloud, Inc.
+ * Copyright (c) 2011, 2012, Intel Corporation.
*/
/*
* This file is part of Lustre, http://www.lustre.org/
#include <linux/fs.h>
/* XATTR_{REPLACE,CREATE} */
#include <linux/xattr.h>
-/* simple_mkdir() */
-#include <lvfs.h>
/*
* struct OBD_{ALLOC,FREE}*()
#include <obd_support.h>
/* struct ptlrpc_thread */
#include <lustre_net.h>
-
-/* fid_is_local() */
#include <lustre_fid.h>
#include "osd_internal.h"
-#include "osd_igif.h"
/* llo_* api support */
#include <md_object.h>
#include <lustre_quota.h>
-#ifdef HAVE_LDISKFS_PDO
int ldiskfs_pdo = 1;
CFS_MODULE_PARM(ldiskfs_pdo, "i", int, 0644,
"ldiskfs with parallel directory operations");
-#else
-int ldiskfs_pdo = 0;
-#endif
static const char dot[] = ".";
static const char dotdot[] = "..";
static const struct dt_index_operations osd_index_iam_ops;
static const struct dt_index_operations osd_index_ea_ops;
+#ifdef OSD_TRACK_DECLARES
+int osd_trans_declare_op2rb[] = {
+ [OSD_OT_ATTR_SET] = OSD_OT_ATTR_SET,
+ [OSD_OT_PUNCH] = OSD_OT_MAX,
+ [OSD_OT_XATTR_SET] = OSD_OT_XATTR_SET,
+ [OSD_OT_CREATE] = OSD_OT_DESTROY,
+ [OSD_OT_DESTROY] = OSD_OT_CREATE,
+ [OSD_OT_REF_ADD] = OSD_OT_REF_DEL,
+ [OSD_OT_REF_DEL] = OSD_OT_REF_ADD,
+ [OSD_OT_WRITE] = OSD_OT_WRITE,
+ [OSD_OT_INSERT] = OSD_OT_DELETE,
+ [OSD_OT_DELETE] = OSD_OT_INSERT,
+ [OSD_OT_QUOTA] = OSD_OT_MAX,
+};
+#endif
+
static int osd_has_index(const struct osd_object *obj)
{
return obj->oo_dt.do_index_ops != NULL;
dt_object_init(&mo->oo_dt, NULL, d);
mo->oo_dt.do_ops = &osd_obj_ea_ops;
l->lo_ops = &osd_lu_obj_ops;
- cfs_init_rwsem(&mo->oo_sem);
- cfs_init_rwsem(&mo->oo_ext_idx_sem);
- cfs_spin_lock_init(&mo->oo_guard);
+ init_rwsem(&mo->oo_sem);
+ init_rwsem(&mo->oo_ext_idx_sem);
+ spin_lock_init(&mo->oo_guard);
return l;
} else {
return NULL;
}
}
-static int osd_get_lma(struct inode *inode, struct dentry *dentry,
- struct lustre_mdt_attrs *lma)
+static inline int __osd_xattr_get(struct inode *inode, struct dentry *dentry,
+ const char *name, void *buf, int len)
+{
+ dentry->d_inode = inode;
+ return inode->i_op->getxattr(dentry, name, buf, len);
+}
+
+int osd_get_lma(struct osd_thread_info *info, struct inode *inode,
+ struct dentry *dentry, struct lustre_mdt_attrs *lma)
{
int rc;
- dentry->d_inode = inode;
- rc = inode->i_op->getxattr(dentry, XATTR_NAME_LMA, (void *)lma,
- sizeof(*lma));
+ rc = __osd_xattr_get(inode, dentry, XATTR_NAME_LMA, (void *)lma,
+ sizeof(*lma));
+ if (rc == -ERANGE) {
+ /* try with old lma size */
+ rc = inode->i_op->getxattr(dentry, XATTR_NAME_LMA,
+ info->oti_mdt_attrs_old,
+ LMA_OLD_SIZE);
+ if (rc > 0)
+ memcpy(lma, info->oti_mdt_attrs_old, sizeof(*lma));
+ }
if (rc > 0) {
/* Check LMA compatibility */
if (lma->lma_incompat & ~cpu_to_le32(LMA_INCOMPAT_SUPP)) {
return inode;
}
-struct inode *osd_iget_fid(struct osd_thread_info *info, struct osd_device *dev,
- struct osd_inode_id *id, struct lu_fid *fid)
+static struct inode *
+osd_iget_fid(struct osd_thread_info *info, struct osd_device *dev,
+ struct osd_inode_id *id, struct lu_fid *fid)
{
struct lustre_mdt_attrs *lma = &info->oti_mdt_attrs;
struct inode *inode;
if (IS_ERR(inode))
return inode;
- rc = osd_get_lma(inode, &info->oti_obj_dentry, lma);
+ rc = osd_get_lma(info, inode, &info->oti_obj_dentry, lma);
if (rc == 0) {
*fid = lma->lma_self_fid;
} else if (rc == -ENODATA) {
- LU_IGIF_BUILD(fid, inode->i_ino, inode->i_generation);
+ if (unlikely(inode == osd_sb(dev)->s_root->d_inode))
+ lu_local_obj_fid(fid, OSD_FS_ROOT_OID);
+ else
+ lu_igif_build(fid, inode->i_ino, inode->i_generation);
} else {
iput(inode);
inode = ERR_PTR(rc);
if (IS_ERR(inode))
return inode;
- rc = osd_get_lma(inode, &info->oti_obj_dentry, lma);
+ rc = osd_get_lma(info, inode, &info->oti_obj_dentry, lma);
if (rc == -ENODATA)
return inode;
* unexpected reason, we should be able to detect it later by calling
* do_create->osd_oi_insert()
*/
- if (conf != NULL && (conf->loc_flags & LOC_F_NEW) != 0)
+ if (conf != NULL && conf->loc_flags & LOC_F_NEW)
GOTO(out, result = 0);
/* Search order: 3. OI files. */
- result = osd_oi_lookup(info, dev, fid, id);
+ result = osd_oi_lookup(info, dev, fid, id, true);
if (result == -ENOENT) {
- if (!fid_is_norm(fid) ||
+ if (!fid_is_norm(fid) || fid_is_on_ost(info, dev, fid) ||
!ldiskfs_test_bit(osd_oi_fid2idx(dev,fid),
sf->sf_oi_bitmap))
GOTO(out, result = 0);
LINVRNT(osd_invariant(obj));
+ if (fid_is_otable_it(&l->lo_header->loh_fid)) {
+ obj->oo_dt.do_ops = &osd_obj_otable_it_ops;
+ l->lo_header->loh_attr |= LOHA_EXISTS;
+ return 0;
+ }
+
result = osd_fid_lookup(env, obj, lu_object_fid(l), conf);
obj->oo_dt.do_body_ops = &osd_body_ops_new;
- if (result == 0) {
- if (obj->oo_inode != NULL) {
- osd_object_init0(obj);
- } else if (fid_is_otable_it(&l->lo_header->loh_fid)) {
- obj->oo_dt.do_ops = &osd_obj_otable_it_ops;
- /* LFSCK iterator object is special without inode */
- l->lo_header->loh_attr |= LOHA_EXISTS;
- }
- }
+ if (result == 0 && obj->oo_inode != NULL)
+ osd_object_init0(obj);
+
LINVRNT(osd_invariant(obj));
return result;
}
/**
* Helper function to convert time interval to microseconds packed in
- * long int (default time units for the counter in "stats" initialized
- * by lu_time_init() )
+ * long int.
*/
static long interval_to_usec(cfs_time_t start, cfs_time_t end)
{
/*
* Concurrency: shouldn't matter.
*/
-#ifdef HAVE_LDISKFS_JOURNAL_CALLBACK_ADD
static void osd_trans_commit_cb(struct super_block *sb,
- struct journal_callback *jcb, int error)
-#else
-static void osd_trans_commit_cb(struct journal_callback *jcb, int error)
-#endif
+ struct ldiskfs_journal_cb_entry *jcb, int error)
{
struct osd_thandle *oh = container_of0(jcb, struct osd_thandle, ot_jcb);
struct thandle *th = &oh->ot_super;
oti->oti_dev = osd_dt_dev(d);
CFS_INIT_LIST_HEAD(&oh->ot_dcb_list);
osd_th_alloced(oh);
+
+ memset(oti->oti_declare_ops, 0, OSD_OT_MAX);
+ memset(oti->oti_declare_ops_rb, 0, OSD_OT_MAX);
+ memset(oti->oti_declare_ops_cred, 0, OSD_OT_MAX);
+ oti->oti_rollback = false;
}
RETURN(th);
}
osd_journal(dev)->j_max_transaction_buffers);
#ifdef OSD_TRACK_DECLARES
CWARN(" create: %u/%u, delete: %u/%u, destroy: %u/%u\n",
- oh->ot_declare_create, oh->ot_declare_create_cred,
- oh->ot_declare_delete, oh->ot_declare_delete_cred,
- oh->ot_declare_destroy, oh->ot_declare_destroy_cred);
+ oti->oti_declare_ops[OSD_OT_CREATE],
+ oti->oti_declare_ops_cred[OSD_OT_CREATE],
+ oti->oti_declare_ops[OSD_OT_DELETE],
+ oti->oti_declare_ops_cred[OSD_OT_DELETE],
+ oti->oti_declare_ops[OSD_OT_DESTROY],
+ oti->oti_declare_ops_cred[OSD_OT_DESTROY]);
CWARN(" attr_set: %u/%u, xattr_set: %u/%u\n",
- oh->ot_declare_attr_set, oh->ot_declare_attr_set_cred,
- oh->ot_declare_xattr_set, oh->ot_declare_xattr_set_cred);
+ oti->oti_declare_ops[OSD_OT_ATTR_SET],
+ oti->oti_declare_ops_cred[OSD_OT_ATTR_SET],
+ oti->oti_declare_ops[OSD_OT_XATTR_SET],
+ oti->oti_declare_ops_cred[OSD_OT_XATTR_SET]);
CWARN(" write: %u/%u, punch: %u/%u, quota %u/%u\n",
- oh->ot_declare_write, oh->ot_declare_write_cred,
- oh->ot_declare_punch, oh->ot_declare_punch_cred,
- oh->ot_declare_quota, oh->ot_declare_quota_cred);
+ oti->oti_declare_ops[OSD_OT_WRITE],
+ oti->oti_declare_ops_cred[OSD_OT_WRITE],
+ oti->oti_declare_ops[OSD_OT_PUNCH],
+ oti->oti_declare_ops_cred[OSD_OT_PUNCH],
+ oti->oti_declare_ops[OSD_OT_QUOTA],
+ oti->oti_declare_ops_cred[OSD_OT_QUOTA]);
CWARN(" insert: %u/%u, delete: %u/%u\n",
- oh->ot_declare_insert, oh->ot_declare_insert_cred,
- oh->ot_declare_delete, oh->ot_declare_destroy_cred);
+ oti->oti_declare_ops[OSD_OT_INSERT],
+ oti->oti_declare_ops_cred[OSD_OT_INSERT],
+ oti->oti_declare_ops[OSD_OT_DESTROY],
+ oti->oti_declare_ops_cred[OSD_OT_DESTROY]);
CWARN(" ref_add: %u/%u, ref_del: %u/%u\n",
- oh->ot_declare_ref_add, oh->ot_declare_ref_add_cred,
- oh->ot_declare_ref_del, oh->ot_declare_ref_del_cred);
+ oti->oti_declare_ops[OSD_OT_REF_ADD],
+ oti->oti_declare_ops_cred[OSD_OT_REF_ADD],
+ oti->oti_declare_ops[OSD_OT_REF_DEL],
+ oti->oti_declare_ops_cred[OSD_OT_REF_DEL]);
if (last_credits != oh->ot_credits &&
time_after(jiffies, last_printed + 60 * HZ)) {
* notice we don't do this in osd_trans_start()
* as underlying transaction can change during truncate
*/
- osd_journal_callback_set(hdl, osd_trans_commit_cb,
+ ldiskfs_journal_callback_add(hdl, osd_trans_commit_cb,
&oh->ot_jcb);
LASSERT(oti->oti_txns == 1);
/* Release granted quota to master if necessary */
qi->lqi_id.qid_uid = uid;
- qsd_adjust_quota(env, qsd, &qi->lqi_id, USRQUOTA);
+ qsd_op_adjust(env, qsd, &qi->lqi_id, USRQUOTA);
qi->lqi_id.qid_uid = gid;
- qsd_adjust_quota(env, qsd, &qi->lqi_id, GRPQUOTA);
+ qsd_op_adjust(env, qsd, &qi->lqi_id, GRPQUOTA);
}
}
}
ksfs = &osd_oti_get(env)->oti_ksfs;
}
- cfs_spin_lock(&osd->od_osfs_lock);
+ spin_lock(&osd->od_osfs_lock);
/* cache 1 second */
if (cfs_time_before_64(osd->od_osfs_age, cfs_time_shift_64(-1))) {
result = sb->s_op->statfs(sb->s_root, ksfs);
}
}
- if (likely(result == 0))
- *sfs = osd->od_statfs;
- cfs_spin_unlock(&osd->od_osfs_lock);
+ if (likely(result == 0))
+ *sfs = osd->od_statfs;
+ spin_unlock(&osd->od_osfs_lock);
if (unlikely(env == NULL))
OBD_FREE_PTR(ksfs);
}
-/**
- * Helper function to get and fill the buffer with input values.
- */
-static struct lu_buf *osd_buf_get(const struct lu_env *env, void *area, ssize_t len)
-{
- struct lu_buf *buf;
-
- buf = &osd_oti_get(env)->oti_buf;
- buf->lb_buf = area;
- buf->lb_len = len;
- return buf;
-}
-
/*
* Concurrency: shouldn't matter.
*/
static int osd_ro(const struct lu_env *env, struct dt_device *d)
{
- struct super_block *sb = osd_sb(osd_dt_dev(d));
- int rc;
- ENTRY;
+ struct super_block *sb = osd_sb(osd_dt_dev(d));
+ struct block_device *dev = sb->s_bdev;
+#ifdef HAVE_DEV_SET_RDONLY
+ struct block_device *jdev = LDISKFS_SB(sb)->journal_bdev;
+ int rc = 0;
+#else
+ int rc = -EOPNOTSUPP;
+#endif
+ ENTRY;
+#ifdef HAVE_DEV_SET_RDONLY
CERROR("*** setting %s read-only ***\n", osd_dt_dev(d)->od_svname);
- rc = __lvfs_set_rdonly(sb->s_bdev, LDISKFS_SB(sb)->journal_bdev);
- RETURN(rc);
+ if (jdev && (jdev != dev)) {
+ CDEBUG(D_IOCTL | D_HA, "set journal dev %lx rdonly\n",
+ (long)jdev);
+ dev_set_rdonly(jdev);
+ }
+ CDEBUG(D_IOCTL | D_HA, "set dev %lx rdonly\n", (long)dev);
+ dev_set_rdonly(dev);
+#else
+ CERROR("%s: %lx CANNOT BE SET READONLY: rc = %d\n",
+ osd_dt_dev(d)->od_svname, (long)dev, rc);
+#endif
+ RETURN(rc);
}
/*
LINVRNT(osd_invariant(obj));
LASSERT(obj->oo_owner != env);
- cfs_down_read_nested(&obj->oo_sem, role);
+ down_read_nested(&obj->oo_sem, role);
LASSERT(obj->oo_owner == NULL);
oti->oti_r_locks++;
LINVRNT(osd_invariant(obj));
LASSERT(obj->oo_owner != env);
- cfs_down_write_nested(&obj->oo_sem, role);
+ down_write_nested(&obj->oo_sem, role);
LASSERT(obj->oo_owner == NULL);
obj->oo_owner = env;
LASSERT(oti->oti_r_locks > 0);
oti->oti_r_locks--;
- cfs_up_read(&obj->oo_sem);
+ up_read(&obj->oo_sem);
}
static void osd_object_write_unlock(const struct lu_env *env,
LASSERT(oti->oti_w_locks > 0);
oti->oti_w_locks--;
obj->oo_owner = NULL;
- cfs_up_write(&obj->oo_sem);
+ up_write(&obj->oo_sem);
}
static int osd_object_write_locked(const struct lu_env *env,
RETURN(-ESTALE);
}
- cfs_spin_lock(&capa_lock);
- for (i = 0; i < 2; i++) {
- if (keys[i].lk_keyid == capa->lc_keyid) {
- oti->oti_capa_key = keys[i];
- break;
- }
- }
- cfs_spin_unlock(&capa_lock);
+ spin_lock(&capa_lock);
+ for (i = 0; i < 2; i++) {
+ if (keys[i].lk_keyid == capa->lc_keyid) {
+ oti->oti_capa_key = keys[i];
+ break;
+ }
+ }
+ spin_unlock(&capa_lock);
if (i == 2) {
DEBUG_CAPA(D_ERROR, capa, "no matched capa key");
{
attr->la_valid |= LA_ATIME | LA_MTIME | LA_CTIME | LA_MODE |
LA_SIZE | LA_BLOCKS | LA_UID | LA_GID |
- LA_FLAGS | LA_NLINK | LA_RDEV | LA_BLKSIZE;
+ LA_FLAGS | LA_NLINK | LA_RDEV | LA_BLKSIZE |
+ LA_TYPE;
attr->la_atime = LTIME_S(inode->i_atime);
attr->la_mtime = LTIME_S(inode->i_mtime);
{
struct osd_object *obj = osd_dt_obj(dt);
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LINVRNT(osd_invariant(obj));
if (osd_object_auth(env, dt, capa, CAPA_OPC_META_READ))
return -EACCES;
- cfs_spin_lock(&obj->oo_guard);
- osd_inode_getattr(env, obj->oo_inode, attr);
- cfs_spin_unlock(&obj->oo_guard);
- return 0;
+ spin_lock(&obj->oo_guard);
+ osd_inode_getattr(env, obj->oo_inode, attr);
+ spin_unlock(&obj->oo_guard);
+ return 0;
}
static int osd_declare_attr_set(const struct lu_env *env,
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, attr_set,
- osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
+ osd_trans_declare_op(env, oh, OSD_OT_ATTR_SET,
+ osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
if (attr == NULL || obj->oo_inode == NULL)
RETURN(rc);
bits = attr->la_valid;
- LASSERT(!(bits & LA_TYPE)); /* Huh? You want too much. */
-
if (bits & LA_ATIME)
inode->i_atime = *osd_inode_time(env, inode, attr->la_atime);
if (bits & LA_CTIME)
if (bits & LA_GID)
inode->i_gid = attr->la_gid;
if (bits & LA_NLINK)
- inode->i_nlink = attr->la_nlink;
+ set_nlink(inode, attr->la_nlink);
if (bits & LA_RDEV)
inode->i_rdev = attr->la_rdev;
int rc;
LASSERT(handle != NULL);
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(osd_invariant(obj));
if (osd_object_auth(env, dt, capa, CAPA_OPC_META_WRITE))
return -EACCES;
- OSD_EXEC_OP(handle, attr_set);
+ osd_trans_exec_op(env, handle, OSD_OT_ATTR_SET);
+
+ if (OBD_FAIL_CHECK(OBD_FAIL_OSD_FID_MAPPING)) {
+ struct osd_thread_info *oti = osd_oti_get(env);
+ const struct lu_fid *fid0 = lu_object_fid(&dt->do_lu);
+ struct lu_fid *fid1 = &oti->oti_fid;
+ struct osd_inode_id *id = &oti->oti_id;
+ struct iam_path_descr *ipd;
+ struct iam_container *bag;
+ struct osd_thandle *oh;
+ int rc;
+
+ fid_cpu_to_be(fid1, fid0);
+ memset(id, 1, sizeof(*id));
+ bag = &osd_fid2oi(osd_dev(dt->do_lu.lo_dev),
+ fid0)->oi_dir.od_container;
+ ipd = osd_idx_ipd_get(env, bag);
+ if (unlikely(ipd == NULL))
+ RETURN(-ENOMEM);
+
+ oh = container_of0(handle, struct osd_thandle, ot_super);
+ rc = iam_update(oh->ot_handle, bag, (const struct iam_key *)fid1,
+ (const struct iam_rec *)id, ipd);
+ osd_ipd_put(env, bag, ipd);
+ return(rc > 0 ? 0 : rc);
+ }
inode = obj->oo_inode;
ll_vfs_dq_init(inode);
if (rc)
return rc;
- cfs_spin_lock(&obj->oo_guard);
- rc = osd_inode_setattr(env, inode, attr);
- cfs_spin_unlock(&obj->oo_guard);
+ spin_lock(&obj->oo_guard);
+ rc = osd_inode_setattr(env, inode, attr);
+ spin_unlock(&obj->oo_guard);
if (!rc)
- inode->i_sb->s_op->dirty_inode(inode);
+ ll_dirty_inode(inode, I_DIRTY_DATASYNC);
return rc;
}
* NB: don't need any lock because no contention at this
* early stage */
inode->i_flags |= S_NOCMTIME;
- inode->i_state |= I_LUSTRE_NOSCRUB;
+
+ /* For new created object, it must be consistent,
+ * and it is unnecessary to scrub against it. */
+ ldiskfs_set_inode_state(inode, LDISKFS_STATE_LUSTRE_NOSCRUB);
obj->oo_inode = inode;
result = 0;
} else {
* This inode should be marked dirty for i_rdev. Currently
* that is done in the osd_attr_init().
*/
- init_special_inode(obj->oo_inode, mode, attr->la_rdev);
+ init_special_inode(obj->oo_inode, obj->oo_inode->i_mode,
+ attr->la_rdev);
}
LINVRNT(osd_invariant(obj));
return result;
* enabled on ldiskfs (lquota takes care of it).
*/
LASSERTF(result == 0, "%d", result);
- inode->i_sb->s_op->dirty_inode(inode);
+ ll_dirty_inode(inode, I_DIRTY_DATASYNC);
}
attr->la_valid = valid;
/* restore previous umask value */
current->fs->umask = umask;
- return result;
+ return result;
}
/**
return osd_oi_insert(info, osd, fid, id, th);
}
+int osd_fld_lookup(const struct lu_env *env, struct osd_device *osd,
+ const struct lu_fid *fid, struct lu_seq_range *range)
+{
+ struct seq_server_site *ss = osd_seq_site(osd);
+ int rc;
+
+ if (fid_is_idif(fid)) {
+ range->lsr_flags = LU_SEQ_RANGE_OST;
+ range->lsr_index = fid_idif_ost_idx(fid);
+ return 0;
+ }
+
+ if (!fid_seq_in_fldb(fid_seq(fid))) {
+ range->lsr_flags = LU_SEQ_RANGE_MDT;
+ if (ss != NULL)
+ /* FIXME: If ss is NULL, it suppose not get lsr_index
+ * at all */
+ range->lsr_index = ss->ss_node_id;
+ return 0;
+ }
+
+ LASSERT(ss != NULL);
+ range->lsr_flags = -1;
+ rc = fld_server_lookup(env, ss->ss_server_fld, fid_seq(fid), range);
+ if (rc != 0) {
+ CERROR("%s can not find "DFID": rc = %d\n",
+ osd_name(osd), PFID(fid), rc);
+ }
+ return rc;
+}
+
+/*
+ * Concurrency: no external locking is necessary.
+ */
static int osd_declare_object_create(const struct lu_env *env,
struct dt_object *dt,
struct lu_attr *attr,
struct dt_object_format *dof,
struct thandle *handle)
{
+ struct lu_seq_range *range = &osd_oti_get(env)->oti_seq_range;
struct osd_thandle *oh;
int rc;
ENTRY;
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, create, osd_dto_credits_noquota[DTO_OBJECT_CREATE]);
- /* XXX: So far, only normal fid needs be inserted into the oi,
- * things could be changed later. Revise following code then. */
- if (fid_is_norm(lu_object_fid(&dt->do_lu))) {
+ osd_trans_declare_op(env, oh, OSD_OT_CREATE,
+ osd_dto_credits_noquota[DTO_OBJECT_CREATE]);
+ if (!fid_is_on_ost(osd_oti_get(env), osd_dt_dev(handle->th_dev),
+ lu_object_fid(&dt->do_lu)))
/* Reuse idle OI block may cause additional one OI block
* to be changed. */
- OSD_DECLARE_OP(oh, insert,
- osd_dto_credits_noquota[DTO_INDEX_INSERT] + 1);
- }
+ osd_trans_declare_op(env, oh, OSD_OT_INSERT,
+ osd_dto_credits_noquota[DTO_INDEX_INSERT] + 1);
+
/* If this is directory, then we expect . and .. to be inserted as
* well. The one directory block always needs to be created for the
* directory, so we could use DTO_WRITE_BASE here (GDT, block bitmap,
* block), there is no danger of needing a tree for the first block.
*/
if (attr && S_ISDIR(attr->la_mode)) {
- OSD_DECLARE_OP(oh, insert,
- osd_dto_credits_noquota[DTO_WRITE_BASE]);
- OSD_DECLARE_OP(oh, insert, 0);
+ osd_trans_declare_op(env, oh, OSD_OT_INSERT,
+ osd_dto_credits_noquota[DTO_WRITE_BASE]);
+ osd_trans_declare_op(env, oh, OSD_OT_INSERT, 0);
}
if (!attr)
rc = osd_declare_inode_qid(env, attr->la_uid, attr->la_gid, 1, oh,
false, false, NULL, false);
+ if (rc != 0)
+ RETURN(rc);
+
+ /* It does fld look up inside declare, and the result will be
+ * added to fld cache, so the following fld lookup inside insert
+ * does not need send RPC anymore, so avoid send rpc with holding
+ * transaction */
+ if (fid_is_norm(lu_object_fid(&dt->do_lu)) &&
+ !fid_is_last_id(lu_object_fid(&dt->do_lu)))
+ osd_fld_lookup(env, osd_dt_dev(handle->th_dev),
+ lu_object_fid(&dt->do_lu), range);
+
+
RETURN(rc);
}
ENTRY;
LINVRNT(osd_invariant(obj));
- LASSERT(!dt_object_exists(dt));
+ LASSERT(!dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(osd_write_locked(env, obj));
LASSERT(th != NULL);
* 'tune2fs -O quota' will take care of creating them */
RETURN(-EPERM);
- OSD_EXEC_OP(th, create);
+ osd_trans_exec_op(env, th, OSD_OT_CREATE);
+ osd_trans_declare_rb(env, th, OSD_OT_REF_ADD);
result = __osd_object_create(info, obj, attr, hint, dof, th);
if (result == 0)
result = __osd_oi_insert(env, obj, fid, th);
- LASSERT(ergo(result == 0, dt_object_exists(dt)));
+ LASSERT(ergo(result == 0,
+ dt_object_exists(dt) && !dt_object_remote(dt)));
+
LASSERT(osd_invariant(obj));
RETURN(result);
}
LASSERT(oh->ot_handle == NULL);
LASSERT(inode);
- OSD_DECLARE_OP(oh, delete, osd_dto_credits_noquota[DTO_OBJECT_DELETE]);
- /* XXX: So far, only normal fid needs to be inserted into the OI,
- * so only normal fid needs to be removed from the OI also.
- * Recycle idle OI leaf may cause additional three OI blocks
+ osd_trans_declare_op(env, oh, OSD_OT_DELETE,
+ osd_dto_credits_noquota[DTO_OBJECT_DELETE]);
+ /* Recycle idle OI leaf may cause additional three OI blocks
* to be changed. */
- OSD_DECLARE_OP(oh, destroy, fid_is_norm(lu_object_fid(&dt->do_lu)) ?
- osd_dto_credits_noquota[DTO_INDEX_DELETE] + 3 : 0);
+ osd_trans_declare_op(env, oh, OSD_OT_DESTROY,
+ osd_dto_credits_noquota[DTO_INDEX_DELETE] + 3);
/* one less inode */
rc = osd_declare_inode_qid(env, inode->i_uid, inode->i_gid, -1, oh,
/* Parallel control for OI scrub. For most of cases, there is no
* lock contention. So it will not affect unlink performance. */
- cfs_mutex_lock(&inode->i_mutex);
- if (S_ISDIR(inode->i_mode)) {
- LASSERT(osd_inode_unlinked(inode) ||
- inode->i_nlink == 1);
- cfs_spin_lock(&obj->oo_guard);
- inode->i_nlink = 0;
- cfs_spin_unlock(&obj->oo_guard);
- inode->i_sb->s_op->dirty_inode(inode);
- } else {
- LASSERT(osd_inode_unlinked(inode));
- }
+ mutex_lock(&inode->i_mutex);
+ if (S_ISDIR(inode->i_mode)) {
+ LASSERT(osd_inode_unlinked(inode) || inode->i_nlink == 1);
+ /* it will check/delete the agent inode for every dir
+ * destory, how to optimize it? unlink performance
+ * impaction XXX */
+ result = osd_delete_from_agent(env, osd, obj, oh);
+ if (result != 0 && result != -ENOENT) {
+ CERROR("%s: delete agent inode "DFID": rc = %d\n",
+ osd_name(osd), PFID(fid), result);
+ }
+ spin_lock(&obj->oo_guard);
+ clear_nlink(inode);
+ spin_unlock(&obj->oo_guard);
+ ll_dirty_inode(inode, I_DIRTY_DATASYNC);
+ }
- OSD_EXEC_OP(th, destroy);
+ osd_trans_exec_op(env, th, OSD_OT_DESTROY);
result = osd_oi_delete(osd_oti_get(env), osd, fid, th);
- cfs_mutex_unlock(&inode->i_mutex);
+ mutex_unlock(&inode->i_mutex);
/* XXX: add to ext3 orphan list */
/* rc = ext3_orphan_add(handle_t *handle, struct inode *inode) */
RETURN(0);
}
-/**
- * Helper function for osd_xattr_set()
- */
-static int __osd_xattr_set(const struct lu_env *env, struct dt_object *dt,
- const struct lu_buf *buf, const char *name, int fl)
-{
- struct osd_object *obj = osd_dt_obj(dt);
- struct inode *inode = obj->oo_inode;
- struct osd_thread_info *info = osd_oti_get(env);
- struct dentry *dentry = &info->oti_child_dentry;
- int fs_flags = 0;
- int rc;
-
- LASSERT(dt_object_exists(dt));
- LASSERT(inode->i_op != NULL && inode->i_op->setxattr != NULL);
-
- if (fl & LU_XATTR_REPLACE)
- fs_flags |= XATTR_REPLACE;
-
- if (fl & LU_XATTR_CREATE)
- fs_flags |= XATTR_CREATE;
+static inline int __osd_xattr_set(struct osd_thread_info *info,
+ struct inode *inode, const char *name,
+ const void *buf, int buflen, int fl)
+{
+ struct dentry *dentry = &info->oti_child_dentry;
ll_vfs_dq_init(inode);
- dentry->d_inode = inode;
- rc = inode->i_op->setxattr(dentry, name, buf->lb_buf,
- buf->lb_len, fs_flags);
- return rc;
+ dentry->d_inode = inode;
+ return inode->i_op->setxattr(dentry, name, buf, buflen, fl);
}
/**
*
* FIXME: It is good to have/use ldiskfs_xattr_set_handle() here
*/
-static int osd_ea_fid_set(const struct lu_env *env, struct dt_object *dt,
- const struct lu_fid *fid)
+int osd_ea_fid_set(struct osd_thread_info *info, struct inode *inode,
+ const struct lu_fid *fid)
{
- struct osd_thread_info *info = osd_oti_get(env);
- struct lustre_mdt_attrs *mdt_attrs = &info->oti_mdt_attrs;
+ struct lustre_mdt_attrs *lma = &info->oti_mdt_attrs;
+ int rc;
+
+ if (OBD_FAIL_CHECK(OBD_FAIL_FID_INLMA))
+ return 0;
- lustre_lma_init(mdt_attrs, fid);
- lustre_lma_swab(mdt_attrs);
- return __osd_xattr_set(env, dt,
- osd_buf_get(env, mdt_attrs, sizeof *mdt_attrs),
- XATTR_NAME_LMA, LU_XATTR_CREATE);
+ if (OBD_FAIL_CHECK(OBD_FAIL_FID_IGIF) && fid_is_client_visible(fid))
+ return 0;
+
+ lustre_lma_init(lma, fid);
+ lustre_lma_swab(lma);
+ rc = __osd_xattr_set(info, inode, XATTR_NAME_LMA, lma, sizeof(*lma),
+ XATTR_CREATE);
+ /* Someone may created the EA by race. */
+ if (unlikely(rc == -EEXIST))
+ rc = 0;
+ return rc;
}
/**
* its inmemory API.
*/
void osd_get_ldiskfs_dirent_param(struct ldiskfs_dentry_param *param,
- const struct dt_rec *fid)
+ const struct dt_rec *fid)
{
- param->edp_magic = LDISKFS_LUFID_MAGIC;
- param->edp_len = sizeof(struct lu_fid) + 1;
+ if (!fid_is_client_mdt_visible((const struct lu_fid *)fid)) {
+ param->edp_magic = 0;
+ return;
+ }
- fid_cpu_to_be((struct lu_fid *)param->edp_data,
- (struct lu_fid *)fid);
+ param->edp_magic = LDISKFS_LUFID_MAGIC;
+ param->edp_len = sizeof(struct lu_fid) + 1;
+ fid_cpu_to_be((struct lu_fid *)param->edp_data, (struct lu_fid *)fid);
}
/**
- * Try to read the fid from inode ea into dt_rec, if return value
- * i.e. rc is +ve, then we got fid, otherwise we will have to form igif
+ * Try to read the fid from inode ea into dt_rec.
*
* \param fid object fid.
*
RETURN(0);
}
+static int osd_add_dot_dotdot_internal(struct osd_thread_info *info,
+ struct inode *dir,
+ struct inode *parent_dir,
+ const struct dt_rec *dot_fid,
+ const struct dt_rec *dot_dot_fid,
+ struct osd_thandle *oth)
+{
+ struct ldiskfs_dentry_param *dot_ldp;
+ struct ldiskfs_dentry_param *dot_dot_ldp;
+
+ dot_dot_ldp = (struct ldiskfs_dentry_param *)info->oti_ldp2;
+ osd_get_ldiskfs_dirent_param(dot_dot_ldp, dot_dot_fid);
+
+ dot_ldp = (struct ldiskfs_dentry_param *)info->oti_ldp;
+ dot_ldp->edp_magic = 0;
+ return ldiskfs_add_dot_dotdot(oth->ot_handle, parent_dir,
+ dir, dot_ldp, dot_dot_ldp);
+}
+
+/**
+ * Create an local inode for remote entry
+ */
+static struct inode *osd_create_remote_inode(const struct lu_env *env,
+ struct osd_device *osd,
+ struct osd_object *pobj,
+ const struct lu_fid *fid,
+ struct thandle *th)
+{
+ struct osd_thread_info *info = osd_oti_get(env);
+ struct inode *local;
+ struct osd_thandle *oh;
+ int rc;
+ ENTRY;
+
+ LASSERT(th);
+ oh = container_of(th, struct osd_thandle, ot_super);
+ LASSERT(oh->ot_handle->h_transaction != NULL);
+
+ /* FIXME: Insert index api needs to know the mode of
+ * the remote object. Just use S_IFDIR for now */
+ local = ldiskfs_create_inode(oh->ot_handle, pobj->oo_inode, S_IFDIR);
+ if (IS_ERR(local)) {
+ CERROR("%s: create local error %d\n", osd_name(osd),
+ (int)PTR_ERR(local));
+ RETURN(local);
+ }
+
+ rc = osd_add_dot_dotdot_internal(info, local, pobj->oo_inode,
+ (const struct dt_rec *)lu_object_fid(&pobj->oo_dt.do_lu),
+ (const struct dt_rec *)fid, oh);
+ if (rc != 0) {
+ CERROR("%s: "DFID" add dot dotdot error: rc = %d\n",
+ osd_name(osd), PFID(fid), rc);
+ RETURN(ERR_PTR(rc));
+ }
+
+ RETURN(local);
+}
+
+/**
+ * Delete local inode for remote entry
+ */
+static int osd_delete_remote_inode(const struct lu_env *env,
+ struct osd_device *osd,
+ const struct lu_fid *fid,
+ __u32 ino, struct osd_thandle *oh)
+{
+ struct osd_thread_info *oti = osd_oti_get(env);
+ struct osd_inode_id *id = &oti->oti_id;
+ struct inode *inode;
+ ENTRY;
+
+ id->oii_ino = le32_to_cpu(ino);
+ id->oii_gen = OSD_OII_NOGEN;
+ inode = osd_iget(oti, osd, id);
+ if (IS_ERR(inode)) {
+ CERROR("%s: iget error "DFID" id %u:%u\n", osd_name(osd),
+ PFID(fid), id->oii_ino, id->oii_gen);
+ RETURN(PTR_ERR(inode));
+ }
+
+ clear_nlink(inode);
+ mark_inode_dirty(inode);
+ CDEBUG(D_INODE, "%s: delete remote inode "DFID" %lu\n",
+ osd_name(osd), PFID(fid), inode->i_ino);
+ iput(inode);
+ RETURN(0);
+}
+
/**
* OSD layer object create function for interoperability mode (b11826).
* This is mostly similar to osd_object_create(). Only difference being, fid is
ENTRY;
LASSERT(osd_invariant(obj));
- LASSERT(!dt_object_exists(dt));
+ LASSERT(!dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(osd_write_locked(env, obj));
LASSERT(th != NULL);
* 'tune2fs -O quota' will take care of creating them */
RETURN(-EPERM);
- OSD_EXEC_OP(th, create);
+ osd_trans_exec_op(env, th, OSD_OT_CREATE);
+ osd_trans_declare_rb(env, th, OSD_OT_REF_ADD);
result = __osd_object_create(info, obj, attr, hint, dof, th);
- /* objects under osd root shld have igif fid, so dont add fid EA */
- if (result == 0 && fid_seq(fid) >= FID_SEQ_NORMAL)
- result = osd_ea_fid_set(env, dt, fid);
+ if ((result == 0) &&
+ (fid_is_last_id(fid) ||
+ !fid_is_on_ost(info, osd_dt_dev(th->th_dev), fid)))
+ result = osd_ea_fid_set(info, obj->oo_inode, fid);
if (result == 0)
result = __osd_oi_insert(env, obj, fid, th);
- LASSERT(ergo(result == 0, dt_object_exists(dt)));
+ LASSERT(ergo(result == 0,
+ dt_object_exists(dt) && !dt_object_remote(dt)));
LINVRNT(osd_invariant(obj));
RETURN(result);
}
struct dt_object *dt,
struct thandle *handle)
{
- struct osd_thandle *oh;
+ struct osd_thandle *oh;
/* it's possible that object doesn't exist yet */
LASSERT(handle != NULL);
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, ref_add, osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
+ osd_trans_declare_op(env, oh, OSD_OT_REF_ADD,
+ osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
return 0;
}
struct inode *inode = obj->oo_inode;
LINVRNT(osd_invariant(obj));
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(osd_write_locked(env, obj));
LASSERT(th != NULL);
- OSD_EXEC_OP(th, ref_add);
+ osd_trans_exec_op(env, th, OSD_OT_REF_ADD);
- /*
- * DIR_NLINK feature is set for compatibility reasons if:
- * 1) nlinks > LDISKFS_LINK_MAX, or
- * 2) nlinks == 2, since this indicates i_nlink was previously 1.
- *
- * It is easier to always set this flag (rather than check and set),
- * since it has less overhead, and the superblock will be dirtied
- * at some point. Both e2fsprogs and any Lustre-supported ldiskfs
- * do not actually care whether this flag is set or not.
- */
- cfs_spin_lock(&obj->oo_guard);
- inode->i_nlink++;
- if (S_ISDIR(inode->i_mode) && inode->i_nlink > 1) {
- if (inode->i_nlink >= LDISKFS_LINK_MAX ||
- inode->i_nlink == 2)
- inode->i_nlink = 1;
- }
- LASSERT(inode->i_nlink <= LDISKFS_LINK_MAX);
- cfs_spin_unlock(&obj->oo_guard);
- inode->i_sb->s_op->dirty_inode(inode);
- LINVRNT(osd_invariant(obj));
+ /*
+ * DIR_NLINK feature is set for compatibility reasons if:
+ * 1) nlinks > LDISKFS_LINK_MAX, or
+ * 2) nlinks == 2, since this indicates i_nlink was previously 1.
+ *
+ * It is easier to always set this flag (rather than check and set),
+ * since it has less overhead, and the superblock will be dirtied
+ * at some point. Both e2fsprogs and any Lustre-supported ldiskfs
+ * do not actually care whether this flag is set or not.
+ */
+ spin_lock(&obj->oo_guard);
+ /* inc_nlink from 0 may cause WARN_ON */
+ if(inode->i_nlink == 0)
+ set_nlink(inode, 1);
+ else
+ inc_nlink(inode);
+ if (S_ISDIR(inode->i_mode) && inode->i_nlink > 1) {
+ if (inode->i_nlink >= LDISKFS_LINK_MAX ||
+ inode->i_nlink == 2)
+ set_nlink(inode, 1);
+ }
+ LASSERT(inode->i_nlink <= LDISKFS_LINK_MAX);
+ spin_unlock(&obj->oo_guard);
+ ll_dirty_inode(inode, I_DIRTY_DATASYNC);
+ LINVRNT(osd_invariant(obj));
- return 0;
+ return 0;
}
static int osd_declare_object_ref_del(const struct lu_env *env,
{
struct osd_thandle *oh;
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(handle != NULL);
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, ref_del, osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
+ osd_trans_declare_op(env, oh, OSD_OT_REF_DEL,
+ osd_dto_credits_noquota[DTO_ATTR_SET_BASE]);
return 0;
}
struct inode *inode = obj->oo_inode;
LINVRNT(osd_invariant(obj));
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(osd_write_locked(env, obj));
LASSERT(th != NULL);
- OSD_EXEC_OP(th, ref_del);
-
- cfs_spin_lock(&obj->oo_guard);
- LASSERT(inode->i_nlink > 0);
- inode->i_nlink--;
- /* If this is/was a many-subdir directory (nlink > LDISKFS_LINK_MAX)
- * then the nlink count is 1. Don't let it be set to 0 or the directory
- * inode will be deleted incorrectly. */
- if (S_ISDIR(inode->i_mode) && inode->i_nlink == 0)
- inode->i_nlink++;
- cfs_spin_unlock(&obj->oo_guard);
- inode->i_sb->s_op->dirty_inode(inode);
- LINVRNT(osd_invariant(obj));
+ osd_trans_exec_op(env, th, OSD_OT_REF_DEL);
+
+ spin_lock(&obj->oo_guard);
+ LASSERT(inode->i_nlink > 0);
+ drop_nlink(inode);
+ /* If this is/was a many-subdir directory (nlink > LDISKFS_LINK_MAX)
+ * then the nlink count is 1. Don't let it be set to 0 or the directory
+ * inode will be deleted incorrectly. */
+ if (S_ISDIR(inode->i_mode) && inode->i_nlink == 0)
+ set_nlink(inode, 1);
+ spin_unlock(&obj->oo_guard);
+ ll_dirty_inode(inode, I_DIRTY_DATASYNC);
+ LINVRNT(osd_invariant(obj));
- return 0;
+ return 0;
}
/*
return sizeof(dt_obj_version_t);
}
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(inode->i_op != NULL && inode->i_op->getxattr != NULL);
if (osd_object_auth(env, dt, capa, CAPA_OPC_META_READ))
return -EACCES;
- dentry->d_inode = inode;
- return inode->i_op->getxattr(dentry, name, buf->lb_buf, buf->lb_len);
+ return __osd_xattr_get(inode, dentry, name, buf->lb_buf, buf->lb_len);
}
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, xattr_set, strcmp(name, XATTR_NAME_VERSION) == 0 ?
- osd_dto_credits_noquota[DTO_ATTR_SET_BASE] :
- osd_dto_credits_noquota[DTO_XATTR_SET]);
+ osd_trans_declare_op(env, oh, OSD_OT_XATTR_SET,
+ strcmp(name, XATTR_NAME_VERSION) == 0 ?
+ osd_dto_credits_noquota[DTO_ATTR_SET_BASE] :
+ osd_dto_credits_noquota[DTO_XATTR_SET]);
return 0;
}
LDISKFS_I(inode)->i_fs_version = *new_version;
/** Version is set after all inode operations are finished,
* so we should mark it dirty here */
- inode->i_sb->s_op->dirty_inode(inode);
+ ll_dirty_inode(inode, I_DIRTY_DATASYNC);
}
/*
const struct lu_buf *buf, const char *name, int fl,
struct thandle *handle, struct lustre_capa *capa)
{
+ struct osd_object *obj = osd_dt_obj(dt);
+ struct inode *inode = obj->oo_inode;
+ struct osd_thread_info *info = osd_oti_get(env);
+ int fs_flags = 0;
+ ENTRY;
+
LASSERT(handle != NULL);
/* version set is not real XATTR */
if (osd_object_auth(env, dt, capa, CAPA_OPC_META_WRITE))
return -EACCES;
- OSD_EXEC_OP(handle, xattr_set);
- return __osd_xattr_set(env, dt, buf, name, fl);
+ osd_trans_exec_op(env, handle, OSD_OT_XATTR_SET);
+ if (fl & LU_XATTR_REPLACE)
+ fs_flags |= XATTR_REPLACE;
+
+ if (fl & LU_XATTR_CREATE)
+ fs_flags |= XATTR_CREATE;
+
+ return __osd_xattr_set(info, inode, name, buf->lb_buf, buf->lb_len,
+ fs_flags);
}
/*
struct osd_thread_info *info = osd_oti_get(env);
struct dentry *dentry = &info->oti_obj_dentry;
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(inode->i_op != NULL && inode->i_op->listxattr != NULL);
LASSERT(osd_read_locked(env, obj) || osd_write_locked(env, obj));
{
struct osd_thandle *oh;
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(handle != NULL);
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, xattr_set, osd_dto_credits_noquota[DTO_XATTR_SET]);
+ osd_trans_declare_op(env, oh, OSD_OT_XATTR_SET,
+ osd_dto_credits_noquota[DTO_XATTR_SET]);
return 0;
}
struct dentry *dentry = &info->oti_obj_dentry;
int rc;
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(inode->i_op != NULL && inode->i_op->removexattr != NULL);
- LASSERT(osd_write_locked(env, obj));
LASSERT(handle != NULL);
if (osd_object_auth(env, dt, capa, CAPA_OPC_META_WRITE))
return -EACCES;
- OSD_EXEC_OP(handle, xattr_set);
+ osd_trans_exec_op(env, handle, OSD_OT_XATTR_SET);
ll_vfs_dq_init(inode);
dentry->d_inode = inode;
if (!dev->od_fl_capa)
RETURN(ERR_PTR(-ENOENT));
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LINVRNT(osd_invariant(obj));
/* renewal sanity check */
RETURN(oc);
}
- cfs_spin_lock(&capa_lock);
- *key = dev->od_capa_keys[1];
- cfs_spin_unlock(&capa_lock);
+ spin_lock(&capa_lock);
+ *key = dev->od_capa_keys[1];
+ spin_unlock(&capa_lock);
capa->lc_keyid = key->lk_keyid;
capa->lc_expiry = cfs_time_current_sec() + dev->od_capa_timeout;
file->f_dentry = dentry;
file->f_mapping = inode->i_mapping;
file->f_op = inode->i_fop;
+#ifndef HAVE_FILE_FSYNC_4ARGS
mutex_lock(&inode->i_mutex);
- rc = file->f_op->fsync(file, dentry, 0);
+#endif
+ rc = do_fsync(file, 0);
+#ifndef HAVE_FILE_FSYNC_4ARGS
mutex_unlock(&inode->i_mutex);
+#endif
RETURN(rc);
}
struct osd_object *obj = osd_dt_obj(dt);
LINVRNT(osd_invariant(obj));
- LASSERT(dt_object_exists(dt));
if (osd_object_is_root(obj)) {
dt->do_index_ops = &osd_index_ea_ops;
result = 0;
} else if (feat == &dt_directory_features) {
dt->do_index_ops = &osd_index_ea_ops;
- if (S_ISDIR(obj->oo_inode->i_mode))
+ if (obj->oo_inode != NULL && S_ISDIR(obj->oo_inode->i_mode))
result = 0;
else
result = -ENOTDIR;
} else if (unlikely(feat == &dt_otable_features)) {
dt->do_index_ops = &osd_otable_ops;
return 0;
- } else if (feat == &dt_acct_features) {
+ } else if (unlikely(feat == &dt_acct_features)) {
dt->do_index_ops = &osd_acct_index_ops;
result = 0;
skip_iam = 1;
OBD_ALLOC_PTR(dir);
if (dir != NULL) {
- cfs_spin_lock(&obj->oo_guard);
- if (obj->oo_dir == NULL)
- obj->oo_dir = dir;
- else
- /*
- * Concurrent thread allocated container data.
- */
- OBD_FREE_PTR(dir);
- cfs_spin_unlock(&obj->oo_guard);
- /*
- * Now, that we have container data, serialize its
- * initialization.
- */
- cfs_down_write(&obj->oo_ext_idx_sem);
- /*
- * recheck under lock.
- */
- if (!osd_has_index(obj))
- result = osd_iam_container_init(env, obj, dir);
- else
- result = 0;
- cfs_up_write(&obj->oo_ext_idx_sem);
+ spin_lock(&obj->oo_guard);
+ if (obj->oo_dir == NULL)
+ obj->oo_dir = dir;
+ else
+ /*
+ * Concurrent thread allocated container data.
+ */
+ OBD_FREE_PTR(dir);
+ spin_unlock(&obj->oo_guard);
+ /*
+ * Now, that we have container data, serialize its
+ * initialization.
+ */
+ down_write(&obj->oo_ext_idx_sem);
+ /*
+ * recheck under lock.
+ */
+ if (!osd_has_index(obj))
+ result = osd_iam_container_init(env, obj, dir);
+ else
+ result = 0;
+ up_write(&obj->oo_ext_idx_sem);
} else {
result = -ENOMEM;
}
}
LINVRNT(osd_invariant(obj));
- if (is_quota_glb_feat(feat))
+ if (result == 0 && is_quota_glb_feat(feat) &&
+ fid_seq(lu_object_fid(&dt->do_lu)) == FID_SEQ_QUOTA_GLB)
result = osd_quota_migration(env, dt, feat);
return result;
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, delete, osd_dto_credits_noquota[DTO_INDEX_DELETE]);
+ osd_trans_declare_op(env, oh, OSD_OT_DELETE,
+ osd_dto_credits_noquota[DTO_INDEX_DELETE]);
return 0;
}
ENTRY;
LINVRNT(osd_invariant(obj));
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(bag->ic_object == obj->oo_inode);
LASSERT(handle != NULL);
if (osd_object_auth(env, dt, capa, CAPA_OPC_INDEX_DELETE))
RETURN(-EACCES);
- OSD_EXEC_OP(handle, delete);
+ osd_trans_exec_op(env, handle, OSD_OT_DELETE);
ipd = osd_idx_ipd_get(env, bag);
if (unlikely(ipd == NULL))
int rc;
ENTRY;
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(handle != NULL);
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, delete, osd_dto_credits_noquota[DTO_INDEX_DELETE]);
+ osd_trans_declare_op(env, oh, OSD_OT_DELETE,
+ osd_dto_credits_noquota[DTO_INDEX_DELETE]);
inode = osd_dt_obj(dt)->oo_inode;
LASSERT(inode);
rec = (struct osd_fid_pack *) (de->name + de->name_len + 1);
rc = osd_fid_unpack((struct lu_fid *)fid, rec);
}
- RETURN(rc);
+ return rc;
+}
+
+static int osd_remote_fid(const struct lu_env *env, struct osd_device *osd,
+ struct lu_fid *fid)
+{
+ struct lu_seq_range *range = &osd_oti_get(env)->oti_seq_range;
+ struct seq_server_site *ss = osd_seq_site(osd);
+ int rc;
+ ENTRY;
+
+ /* Those FID seqs, which are not in FLDB, must be local seq */
+ if (unlikely(!fid_seq_in_fldb(fid_seq(fid)) || ss == NULL))
+ RETURN(0);
+
+ rc = osd_fld_lookup(env, osd, fid, range);
+ if (rc != 0) {
+ CERROR("%s: Can not lookup fld for "DFID"\n",
+ osd_name(osd), PFID(fid));
+ RETURN(rc);
+ }
+
+ RETURN(ss->ss_node_id != range->lsr_index);
}
/**
struct inode *dir = obj->oo_inode;
struct dentry *dentry;
struct osd_thandle *oh;
- struct ldiskfs_dir_entry_2 *de;
+ struct ldiskfs_dir_entry_2 *de = NULL;
struct buffer_head *bh;
struct htree_lock *hlock = NULL;
- int rc;
-
+ struct lu_fid *fid = &osd_oti_get(env)->oti_fid;
+ struct osd_device *osd = osd_dev(dt->do_lu.lo_dev);
+ int rc;
ENTRY;
LINVRNT(osd_invariant(obj));
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(handle != NULL);
- OSD_EXEC_OP(handle, delete);
+ osd_trans_exec_op(env, handle, OSD_OT_DELETE);
oh = container_of(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle != NULL);
ldiskfs_htree_lock(hlock, obj->oo_hl_head,
dir, LDISKFS_HLOCK_DEL);
} else {
- cfs_down_write(&obj->oo_ext_idx_sem);
+ down_write(&obj->oo_ext_idx_sem);
}
bh = osd_ldiskfs_find_entry(dir, dentry, &de, hlock);
if (hlock != NULL)
ldiskfs_htree_unlock(hlock);
else
- cfs_up_write(&obj->oo_ext_idx_sem);
+ up_write(&obj->oo_ext_idx_sem);
+
+ if (rc != 0)
+ GOTO(out, rc);
+
+ /* For inode on the remote MDT, .. will point to
+ * /Agent directory. So do not try to lookup/delete
+ * remote inode for .. */
+ if (strcmp((char *)key, dotdot) == 0)
+ GOTO(out, rc = 0);
+
+ LASSERT(de != NULL);
+ rc = osd_get_fid_from_dentry(de, (struct dt_rec *)fid);
+ if (rc == 0 && osd_remote_fid(env, osd, fid)) {
+ __u32 ino = le32_to_cpu(de->inode);
+
+ rc = osd_delete_remote_inode(env, osd, fid, ino, oh);
+ if (rc != 0)
+ CERROR("%s: del local inode "DFID": rc = %d\n",
+ osd_name(osd), PFID(fid), rc);
+ } else {
+ if (rc == -ENODATA)
+ rc = 0;
+ }
+out:
LASSERT(osd_invariant(obj));
RETURN(rc);
ENTRY;
LASSERT(osd_invariant(obj));
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(bag->ic_object == obj->oo_inode);
if (osd_object_auth(env, dt, capa, CAPA_OPC_INDEX_LOOKUP))
{
struct osd_thandle *oh;
- LASSERT(dt_object_exists(dt));
LASSERT(handle != NULL);
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, insert, osd_dto_credits_noquota[DTO_INDEX_INSERT]);
+ osd_trans_declare_op(env, oh, OSD_OT_INSERT,
+ osd_dto_credits_noquota[DTO_INDEX_INSERT]);
return 0;
}
ENTRY;
LINVRNT(osd_invariant(obj));
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(bag->ic_object == obj->oo_inode);
LASSERT(th != NULL);
if (osd_object_auth(env, dt, capa, CAPA_OPC_INDEX_INSERT))
RETURN(-EACCES);
- OSD_EXEC_OP(th, insert);
+ osd_trans_exec_op(env, th, OSD_OT_INSERT);
ipd = osd_idx_ipd_get(env, bag);
if (unlikely(ipd == NULL))
oth = container_of(th, struct osd_thandle, ot_super);
LASSERT(oth->ot_handle != NULL);
LASSERT(oth->ot_handle->h_transaction != NULL);
-
- child = osd_child_dentry_get(info->oti_env, pobj, name, strlen(name));
-
- /* XXX: remove fid_is_igif() check here.
- * IGIF check is just to handle insertion of .. when it is 'ROOT',
- * it is IGIF now but needs FID in dir entry as well for readdir
- * to work.
- * LU-838 should fix that and remove fid_is_igif() check */
- if (fid_is_igif((struct lu_fid *)fid) ||
- fid_is_norm((struct lu_fid *)fid)) {
- ldp = (struct ldiskfs_dentry_param *)info->oti_ldp;
- osd_get_ldiskfs_dirent_param(ldp, fid);
- child->d_fsdata = (void *)ldp;
- } else {
- child->d_fsdata = NULL;
- }
LASSERT(pobj->oo_inode);
+
+ ldp = (struct ldiskfs_dentry_param *)info->oti_ldp;
+ if (unlikely(pobj->oo_inode ==
+ osd_sb(osd_obj2dev(pobj))->s_root->d_inode))
+ ldp->edp_magic = 0;
+ else
+ osd_get_ldiskfs_dirent_param(ldp, fid);
+ child = osd_child_dentry_get(info->oti_env, pobj, name, strlen(name));
+ child->d_fsdata = (void *)ldp;
ll_vfs_dq_init(pobj->oo_inode);
- rc = osd_ldiskfs_add_entry(oth->ot_handle, child, cinode, hlock);
+ rc = osd_ldiskfs_add_entry(oth->ot_handle, child, cinode, hlock);
- RETURN(rc);
+ RETURN(rc);
}
/**
struct thandle *th)
{
struct inode *inode = dir->oo_inode;
- struct ldiskfs_dentry_param *dot_ldp;
- struct ldiskfs_dentry_param *dot_dot_ldp;
struct osd_thandle *oth;
int result = 0;
dir->oo_compat_dot_created = 1;
result = 0;
}
- } else if(strcmp(name, dotdot) == 0) {
- dot_ldp = (struct ldiskfs_dentry_param *)info->oti_ldp;
- dot_dot_ldp = (struct ldiskfs_dentry_param *)info->oti_ldp2;
-
- if (!dir->oo_compat_dot_created)
- return -EINVAL;
- if (!fid_is_igif((struct lu_fid *)dot_fid)) {
- osd_get_ldiskfs_dirent_param(dot_ldp, dot_fid);
- osd_get_ldiskfs_dirent_param(dot_dot_ldp, dot_dot_fid);
- } else {
- dot_ldp = NULL;
- dot_dot_ldp = NULL;
- }
- /* in case of rename, dotdot is already created */
- if (dir->oo_compat_dotdot_created) {
- return __osd_ea_add_rec(info, dir, parent_dir, name,
- dot_dot_fid, NULL, th);
- }
+ } else if (strcmp(name, dotdot) == 0) {
+ if (!dir->oo_compat_dot_created)
+ return -EINVAL;
+ /* in case of rename, dotdot is already created */
+ if (dir->oo_compat_dotdot_created) {
+ return __osd_ea_add_rec(info, dir, parent_dir, name,
+ dot_dot_fid, NULL, th);
+ }
- result = ldiskfs_add_dot_dotdot(oth->ot_handle, parent_dir,
- inode, dot_ldp, dot_dot_ldp);
- if (result == 0)
- dir->oo_compat_dotdot_created = 1;
- }
+ result = osd_add_dot_dotdot_internal(info, dir->oo_inode,
+ parent_dir, dot_fid,
+ dot_dot_fid, oth);
+ if (result == 0)
+ dir->oo_compat_dotdot_created = 1;
+ }
- return result;
+ return result;
}
ldiskfs_htree_lock(hlock, pobj->oo_hl_head,
pobj->oo_inode, 0);
} else {
- cfs_down_write(&pobj->oo_ext_idx_sem);
+ down_write(&pobj->oo_ext_idx_sem);
}
rc = osd_add_dot_dotdot(info, pobj, cinode, name,
(struct dt_rec *)lu_object_fid(&pobj->oo_dt.do_lu),
ldiskfs_htree_lock(hlock, pobj->oo_hl_head,
pobj->oo_inode, LDISKFS_HLOCK_ADD);
} else {
- cfs_down_write(&pobj->oo_ext_idx_sem);
+ down_write(&pobj->oo_ext_idx_sem);
}
- rc = __osd_ea_add_rec(info, pobj, cinode, name, fid,
- hlock, th);
+ if (OBD_FAIL_CHECK(OBD_FAIL_FID_INDIR)) {
+ struct lu_fid *tfid = &info->oti_fid;
+
+ *tfid = *(const struct lu_fid *)fid;
+ tfid->f_ver = ~0;
+ rc = __osd_ea_add_rec(info, pobj, cinode, name,
+ (const struct dt_rec *)tfid,
+ hlock, th);
+ } else {
+ rc = __osd_ea_add_rec(info, pobj, cinode, name, fid,
+ hlock, th);
+ }
}
if (hlock != NULL)
ldiskfs_htree_unlock(hlock);
else
- cfs_up_write(&pobj->oo_ext_idx_sem);
+ up_write(&pobj->oo_ext_idx_sem);
return rc;
}
RETURN_EXIT;
again:
- rc = osd_oi_lookup(oti, dev, fid, id);
+ rc = osd_oi_lookup(oti, dev, fid, id, true);
if (rc != 0 && rc != -ENOENT)
RETURN_EXIT;
EXIT;
}
+static int osd_fail_fid_lookup(struct osd_thread_info *oti,
+ struct osd_device *dev,
+ struct osd_idmap_cache *oic,
+ struct lu_fid *fid, __u32 ino)
+{
+ struct lustre_mdt_attrs *lma = &oti->oti_mdt_attrs;
+ struct inode *inode;
+ int rc;
+
+ osd_id_gen(&oic->oic_lid, ino, OSD_OII_NOGEN);
+ inode = osd_iget(oti, dev, &oic->oic_lid);
+ if (IS_ERR(inode)) {
+ fid_zero(&oic->oic_fid);
+ return PTR_ERR(inode);
+ }
+
+ rc = osd_get_lma(oti, inode, &oti->oti_obj_dentry, lma);
+ iput(inode);
+ if (rc != 0)
+ fid_zero(&oic->oic_fid);
+ else
+ *fid = oic->oic_fid = lma->lma_self_fid;
+ return rc;
+}
+
/**
* Calls ->lookup() to find dentry. From dentry get inode and
* read inode's ea to get fid. This is required for interoperability
struct htree_lock *hlock = NULL;
int ino;
int rc;
+ ENTRY;
LASSERT(dir->i_op != NULL && dir->i_op->lookup != NULL);
ldiskfs_htree_lock(hlock, obj->oo_hl_head,
dir, LDISKFS_HLOCK_LOOKUP);
} else {
- cfs_down_read(&obj->oo_ext_idx_sem);
+ down_read(&obj->oo_ext_idx_sem);
}
bh = osd_ldiskfs_find_entry(dir, dentry, &de, hlock);
if (bh) {
struct osd_thread_info *oti = osd_oti_get(env);
+ struct osd_inode_id *id = &oti->oti_id;
struct osd_idmap_cache *oic = &oti->oti_cache;
struct osd_device *dev = osd_obj2dev(obj);
struct osd_scrub *scrub = &dev->od_scrub;
struct scrub_file *sf = &scrub->os_file;
ino = le32_to_cpu(de->inode);
+ if (OBD_FAIL_CHECK(OBD_FAIL_FID_LOOKUP)) {
+ brelse(bh);
+ rc = osd_fail_fid_lookup(oti, dev, oic, fid, ino);
+ GOTO(out, rc);
+ }
+
rc = osd_get_fid_from_dentry(de, rec);
/* done with de, release bh */
brelse(bh);
if (rc != 0)
- rc = osd_ea_fid_get(env, obj, ino, fid, &oic->oic_lid);
+ rc = osd_ea_fid_get(env, obj, ino, fid, id);
else
- osd_id_gen(&oic->oic_lid, ino, OSD_OII_NOGEN);
- if (rc != 0) {
+ osd_id_gen(id, ino, OSD_OII_NOGEN);
+ if (rc != 0 || osd_remote_fid(env, dev, fid)) {
fid_zero(&oic->oic_fid);
GOTO(out, rc);
}
+ oic->oic_lid = *id;
oic->oic_fid = *fid;
if ((scrub->os_pos_current <= ino) &&
- (sf->sf_flags & SF_INCONSISTENT ||
+ ((sf->sf_flags & SF_INCONSISTENT) ||
+ (sf->sf_flags & SF_UPGRADE && fid_is_igif(fid)) ||
ldiskfs_test_bit(osd_oi_fid2idx(dev, fid),
sf->sf_oi_bitmap)))
osd_consistency_check(oti, dev, oic);
if (hlock != NULL)
ldiskfs_htree_unlock(hlock);
else
- cfs_up_read(&obj->oo_ext_idx_sem);
+ up_read(&obj->oo_ext_idx_sem);
return rc;
}
const struct dt_key *key,
struct thandle *handle)
{
- struct osd_thandle *oh;
- struct inode *inode;
- int rc;
+ struct osd_thandle *oh;
+ struct osd_device *osd = osd_dev(dt->do_lu.lo_dev);
+ struct lu_fid *fid = (struct lu_fid *)rec;
+ int rc;
ENTRY;
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(handle != NULL);
oh = container_of0(handle, struct osd_thandle, ot_super);
LASSERT(oh->ot_handle == NULL);
- OSD_DECLARE_OP(oh, insert, osd_dto_credits_noquota[DTO_INDEX_INSERT]);
+ osd_trans_declare_op(env, oh, OSD_OT_INSERT,
+ osd_dto_credits_noquota[DTO_INDEX_INSERT]);
- inode = osd_dt_obj(dt)->oo_inode;
- LASSERT(inode);
+ if (osd_dt_obj(dt)->oo_inode == NULL) {
+ const char *name = (const char *)key;
+ /* Object is not being created yet. Only happens when
+ * 1. declare directory create
+ * 2. declare insert .
+ * 3. declare insert ..
+ */
+ LASSERT(strcmp(name, dotdot) == 0 || strcmp(name, dot) == 0);
+ } else {
+ struct inode *inode = osd_dt_obj(dt)->oo_inode;
+
+ /* We ignore block quota on meta pool (MDTs), so needn't
+ * calculate how many blocks will be consumed by this index
+ * insert */
+ rc = osd_declare_inode_qid(env, inode->i_uid, inode->i_gid, 0,
+ oh, true, true, NULL, false);
+ }
+
+ if (fid == NULL)
+ RETURN(0);
+
+ rc = osd_remote_fid(env, osd, fid);
+ if (rc <= 0)
+ RETURN(rc);
+
+ rc = 0;
+
+ osd_trans_declare_op(env, oh, OSD_OT_CREATE,
+ osd_dto_credits_noquota[DTO_OBJECT_CREATE]);
+ osd_trans_declare_op(env, oh, OSD_OT_INSERT,
+ osd_dto_credits_noquota[DTO_INDEX_INSERT] + 1);
+ osd_trans_declare_op(env, oh, OSD_OT_INSERT,
+ osd_dto_credits_noquota[DTO_INDEX_INSERT] + 1);
- /* We ignore block quota on meta pool (MDTs), so needn't
- * calculate how many blocks will be consumed by this index
- * insert */
- rc = osd_declare_inode_qid(env, inode->i_uid, inode->i_gid, 0, oh,
- true, true, NULL, false);
RETURN(rc);
}
const struct dt_key *key, struct thandle *th,
struct lustre_capa *capa, int ignore_quota)
{
- struct osd_object *obj = osd_dt_obj(dt);
- struct lu_fid *fid = (struct lu_fid *) rec;
- const char *name = (const char *)key;
- struct osd_object *child;
- int rc;
-
- ENTRY;
+ struct osd_object *obj = osd_dt_obj(dt);
+ struct osd_device *osd = osd_dev(dt->do_lu.lo_dev);
+ struct lu_fid *fid = (struct lu_fid *) rec;
+ const char *name = (const char *)key;
+ struct osd_thread_info *oti = osd_oti_get(env);
+ struct osd_inode_id *id = &oti->oti_id;
+ struct inode *child_inode = NULL;
+ struct osd_object *child = NULL;
+ int rc;
+ ENTRY;
LASSERT(osd_invariant(obj));
- LASSERT(dt_object_exists(dt));
+ LASSERT(dt_object_exists(dt) && !dt_object_remote(dt));
LASSERT(th != NULL);
+ osd_trans_exec_op(env, th, OSD_OT_INSERT);
+
if (osd_object_auth(env, dt, capa, CAPA_OPC_INDEX_INSERT))
RETURN(-EACCES);
- child = osd_object_find(env, dt, fid);
- if (!IS_ERR(child)) {
- rc = osd_ea_add_rec(env, obj, child->oo_inode, name, rec, th);
- osd_object_put(env, child);
- } else {
- rc = PTR_ERR(child);
- }
+ LASSERTF(fid_is_sane(fid), "fid"DFID" is insane!", PFID(fid));
- LASSERT(osd_invariant(obj));
- RETURN(rc);
+ rc = osd_remote_fid(env, osd, fid);
+ if (rc < 0) {
+ CERROR("%s: Can not find object "DFID" rc %d\n",
+ osd_name(osd), PFID(fid), rc);
+ RETURN(rc);
+ }
+
+ if (rc == 1) {
+ /* Insert remote entry */
+ if (strcmp(name, dotdot) == 0 && strlen(name) == 2) {
+ struct osd_mdobj_map *omm = osd->od_mdt_map;
+ struct osd_thandle *oh;
+
+ /* If parent on remote MDT, we need put this object
+ * under AGENT */
+ oh = container_of(th, typeof(*oh), ot_super);
+ rc = osd_add_to_agent(env, osd, obj, oh);
+ if (rc != 0) {
+ CERROR("%s: add agent "DFID" error: rc = %d\n",
+ osd_name(osd),
+ PFID(lu_object_fid(&dt->do_lu)), rc);
+ RETURN(rc);
+ }
+
+ child_inode = igrab(omm->omm_agent_dentry->d_inode);
+ } else {
+ child_inode = osd_create_remote_inode(env, osd, obj,
+ fid, th);
+ if (IS_ERR(child_inode))
+ RETURN(PTR_ERR(child_inode));
+ }
+ } else {
+ /* Insert local entry */
+ child = osd_object_find(env, dt, fid);
+ if (IS_ERR(child)) {
+ CERROR("%s: Can not find object "DFID"%u:%u: rc = %d\n",
+ osd_name(osd), PFID(fid),
+ id->oii_ino, id->oii_gen,
+ (int)PTR_ERR(child_inode));
+ RETURN(PTR_ERR(child_inode));
+ }
+ child_inode = igrab(child->oo_inode);
+ }
+
+ rc = osd_ea_add_rec(env, obj, child_inode, name, rec, th);
+
+ iput(child_inode);
+ if (child != NULL)
+ osd_object_put(env, child);
+ LASSERT(osd_invariant(obj));
+ RETURN(rc);
}
/**
*
* \param di osd iterator
*/
-
static void osd_it_iam_put(const struct lu_env *env, struct dt_it *di)
{
struct osd_it_iam *it = (struct osd_it_iam *)di;
return iam_it_key_size(&it->oi_it);
}
-static inline void osd_it_append_attrs(struct lu_dirent *ent, __u32 attr,
- int len, __u16 type)
+static inline void
+osd_it_append_attrs(struct lu_dirent *ent, int len, __u16 type)
{
- struct luda_type *lt;
- const unsigned align = sizeof(struct luda_type) - 1;
-
- /* check if file type is required */
- if (attr & LUDA_TYPE) {
- len = (len + align) & ~align;
+ /* check if file type is required */
+ if (ent->lde_attrs & LUDA_TYPE) {
+ struct luda_type *lt;
+ int align = sizeof(*lt) - 1;
- lt = (void *) ent->lde_name + len;
- lt->lt_type = cpu_to_le16(CFS_DTTOIF(type));
- ent->lde_attrs |= LUDA_TYPE;
- }
+ len = (len + align) & ~align;
+ lt = (struct luda_type *)(ent->lde_name + len);
+ lt->lt_type = cpu_to_le16(DTTOIF(type));
+ }
- ent->lde_attrs = cpu_to_le32(ent->lde_attrs);
+ ent->lde_attrs = cpu_to_le32(ent->lde_attrs);
}
/**
* build lu direct from backend fs dirent.
*/
-static inline void osd_it_pack_dirent(struct lu_dirent *ent,
- struct lu_fid *fid, __u64 offset,
- char *name, __u16 namelen,
- __u16 type, __u32 attr)
+static inline void
+osd_it_pack_dirent(struct lu_dirent *ent, struct lu_fid *fid, __u64 offset,
+ char *name, __u16 namelen, __u16 type, __u32 attr)
{
- fid_cpu_to_le(&ent->lde_fid, fid);
- ent->lde_attrs = LUDA_FID;
+ ent->lde_attrs = attr | LUDA_FID;
+ fid_cpu_to_le(&ent->lde_fid, fid);
- ent->lde_hash = cpu_to_le64(offset);
- ent->lde_reclen = cpu_to_le16(lu_dirent_calc_size(namelen, attr));
+ ent->lde_hash = cpu_to_le64(offset);
+ ent->lde_reclen = cpu_to_le16(lu_dirent_calc_size(namelen, attr));
- strncpy(ent->lde_name, name, namelen);
- ent->lde_namelen = cpu_to_le16(namelen);
+ strncpy(ent->lde_name, name, namelen);
+ ent->lde_name[namelen] = '\0';
+ ent->lde_namelen = cpu_to_le16(namelen);
- /* append lustre attributes */
- osd_it_append_attrs(ent, attr, namelen, type);
+ /* append lustre attributes */
+ osd_it_append_attrs(ent, namelen, type);
}
/**
unsigned d_type)
{
struct osd_it_ea *it = (struct osd_it_ea *)buf;
+ struct osd_object *obj = it->oie_obj;
struct osd_it_ea_dirent *ent = it->oie_dirent;
struct lu_fid *fid = &ent->oied_fid;
struct osd_fid_pack *rec;
OSD_IT_EA_BUFSIZE)
RETURN(1);
- if (d_type & LDISKFS_DIRENT_LUFID) {
- rec = (struct osd_fid_pack*) (name + namelen + 1);
-
- if (osd_fid_unpack(fid, rec) != 0)
- fid_zero(fid);
+ /* "." is just the object itself. */
+ if (namelen == 1 && name[0] == '.') {
+ *fid = obj->oo_dt.do_lu.lo_header->loh_fid;
+ } else if (d_type & LDISKFS_DIRENT_LUFID) {
+ rec = (struct osd_fid_pack*) (name + namelen + 1);
+ if (osd_fid_unpack(fid, rec) != 0)
+ fid_zero(fid);
+ } else {
+ fid_zero(fid);
+ }
+ d_type &= ~LDISKFS_DIRENT_LUFID;
- d_type &= ~LDISKFS_DIRENT_LUFID;
- } else {
- fid_zero(fid);
- }
+ /* NOT export local root. */
+ if (unlikely(osd_sb(osd_obj2dev(obj))->s_root->d_inode->i_ino == ino)) {
+ ino = obj->oo_inode->i_ino;
+ *fid = obj->oo_dt.do_lu.lo_header->loh_fid;
+ }
ent->oied_ino = ino;
ent->oied_off = offset;
ldiskfs_htree_lock(hlock, obj->oo_hl_head,
inode, LDISKFS_HLOCK_READDIR);
} else {
- cfs_down_read(&obj->oo_ext_idx_sem);
+ down_read(&obj->oo_ext_idx_sem);
}
result = inode->i_fop->readdir(&it->oie_file, it,
if (hlock != NULL)
ldiskfs_htree_unlock(hlock);
else
- cfs_up_read(&obj->oo_ext_idx_sem);
+ up_read(&obj->oo_ext_idx_sem);
if (it->oie_rd_dirent == 0) {
result = -EIO;
return it->oie_dirent->oied_namelen;
}
+static int
+osd_dirent_update(handle_t *jh, struct super_block *sb,
+ struct osd_it_ea_dirent *ent, struct lu_fid *fid,
+ struct buffer_head *bh, struct ldiskfs_dir_entry_2 *de)
+{
+ struct osd_fid_pack *rec;
+ int rc;
+ ENTRY;
+
+ LASSERT(de->file_type & LDISKFS_DIRENT_LUFID);
+ LASSERT(de->rec_len >= de->name_len + sizeof(struct osd_fid_pack));
+
+ rc = ldiskfs_journal_get_write_access(jh, bh);
+ if (rc != 0) {
+ CERROR("%.16s: fail to write access for update dirent: "
+ "name = %.*s, rc = %d\n",
+ LDISKFS_SB(sb)->s_es->s_volume_name,
+ ent->oied_namelen, ent->oied_name, rc);
+ RETURN(rc);
+ }
+
+ rec = (struct osd_fid_pack *)(de->name + de->name_len + 1);
+ fid_cpu_to_be((struct lu_fid *)rec->fp_area, fid);
+ rc = ldiskfs_journal_dirty_metadata(jh, bh);
+ if (rc != 0)
+ CERROR("%.16s: fail to dirty metadata for update dirent: "
+ "name = %.*s, rc = %d\n",
+ LDISKFS_SB(sb)->s_es->s_volume_name,
+ ent->oied_namelen, ent->oied_name, rc);
+
+ RETURN(rc);
+}
+
+static inline int
+osd_dirent_has_space(__u16 reclen, __u16 namelen, unsigned blocksize)
+{
+ if (ldiskfs_rec_len_from_disk(reclen, blocksize) >=
+ __LDISKFS_DIR_REC_LEN(namelen + 1 + sizeof(struct osd_fid_pack)))
+ return 1;
+ else
+ return 0;
+}
+
+static int
+osd_dirent_reinsert(const struct lu_env *env, handle_t *jh,
+ struct inode *dir, struct inode *inode,
+ struct osd_it_ea_dirent *ent, struct lu_fid *fid,
+ struct buffer_head *bh, struct ldiskfs_dir_entry_2 *de,
+ struct htree_lock *hlock)
+{
+ struct dentry *dentry;
+ struct osd_fid_pack *rec;
+ struct ldiskfs_dentry_param *ldp;
+ int rc;
+ ENTRY;
+
+ if (!LDISKFS_HAS_INCOMPAT_FEATURE(inode->i_sb,
+ LDISKFS_FEATURE_INCOMPAT_DIRDATA))
+ RETURN(0);
+
+ /* There is enough space to hold the FID-in-dirent. */
+ if (osd_dirent_has_space(de->rec_len, ent->oied_namelen,
+ dir->i_sb->s_blocksize)) {
+ rc = ldiskfs_journal_get_write_access(jh, bh);
+ if (rc != 0) {
+ CERROR("%.16s: fail to write access for reinsert "
+ "dirent: name = %.*s, rc = %d\n",
+ LDISKFS_SB(inode->i_sb)->s_es->s_volume_name,
+ ent->oied_namelen, ent->oied_name, rc);
+ RETURN(rc);
+ }
+
+ de->name[de->name_len] = 0;
+ rec = (struct osd_fid_pack *)(de->name + de->name_len + 1);
+ rec->fp_len = sizeof(struct lu_fid) + 1;
+ fid_cpu_to_be((struct lu_fid *)rec->fp_area, fid);
+ de->file_type |= LDISKFS_DIRENT_LUFID;
+
+ rc = ldiskfs_journal_dirty_metadata(jh, bh);
+ if (rc != 0)
+ CERROR("%.16s: fail to dirty metadata for reinsert "
+ "dirent: name = %.*s, rc = %d\n",
+ LDISKFS_SB(inode->i_sb)->s_es->s_volume_name,
+ ent->oied_namelen, ent->oied_name, rc);
+
+ RETURN(rc);
+ }
+
+ rc = ldiskfs_delete_entry(jh, dir, de, bh);
+ if (rc != 0) {
+ CERROR("%.16s: fail to delete entry for reinsert dirent: "
+ "name = %.*s, rc = %d\n",
+ LDISKFS_SB(inode->i_sb)->s_es->s_volume_name,
+ ent->oied_namelen, ent->oied_name, rc);
+ RETURN(rc);
+ }
+
+ dentry = osd_child_dentry_by_inode(env, dir, ent->oied_name,
+ ent->oied_namelen);
+ ldp = (struct ldiskfs_dentry_param *)osd_oti_get(env)->oti_ldp;
+ osd_get_ldiskfs_dirent_param(ldp, (const struct dt_rec *)fid);
+ dentry->d_fsdata = (void *)ldp;
+ ll_vfs_dq_init(dir);
+ rc = osd_ldiskfs_add_entry(jh, dentry, inode, hlock);
+ /* It is too bad, we cannot reinsert the name entry back.
+ * That means we lose it! */
+ if (rc != 0)
+ CERROR("%.16s: fail to insert entry for reinsert dirent: "
+ "name = %.*s, rc = %d\n",
+ LDISKFS_SB(inode->i_sb)->s_es->s_volume_name,
+ ent->oied_namelen, ent->oied_name, rc);
+
+ RETURN(rc);
+}
+
+static int
+osd_dirent_check_repair(const struct lu_env *env, struct osd_object *obj,
+ struct osd_it_ea *it, struct lu_fid *fid,
+ struct osd_inode_id *id, __u32 *attr)
+{
+ struct osd_thread_info *info = osd_oti_get(env);
+ struct lustre_mdt_attrs *lma = &info->oti_mdt_attrs;
+ struct osd_device *dev = osd_obj2dev(obj);
+ struct super_block *sb = osd_sb(dev);
+ const char *devname =
+ LDISKFS_SB(sb)->s_es->s_volume_name;
+ struct osd_it_ea_dirent *ent = it->oie_dirent;
+ struct inode *dir = obj->oo_inode;
+ struct htree_lock *hlock = NULL;
+ struct buffer_head *bh = NULL;
+ handle_t *jh = NULL;
+ struct ldiskfs_dir_entry_2 *de;
+ struct dentry *dentry;
+ struct inode *inode;
+ int credits;
+ int rc;
+ bool dirty = false;
+ bool is_dotdot = false;
+ ENTRY;
+
+ if (ent->oied_name[0] == '.') {
+ /* Skip dot entry, even if it has stale FID-in-dirent, because
+ * we do not use such FID-in-dirent anymore, it is harmless. */
+ if (ent->oied_namelen == 1)
+ RETURN(0);
+
+ if (ent->oied_namelen == 2 && ent->oied_name[1] == '.')
+ is_dotdot = true;
+ }
+
+ dentry = osd_child_dentry_get(env, obj, ent->oied_name,
+ ent->oied_namelen);
+
+ /* We need to ensure that the name entry is still valid.
+ * Because it may be removed or renamed by other already.
+ *
+ * The unlink or rename operation will start journal before PDO lock,
+ * so to avoid deadlock, here we need to start journal handle before
+ * related PDO lock also. But because we do not know whether there
+ * will be something to be repaired before PDO lock, we just start
+ * journal without conditions.
+ *
+ * We may need to remove the name entry firstly, then insert back.
+ * One credit is for user quota file update.
+ * One credit is for group quota file update.
+ * Two credits are for dirty inode. */
+ credits = osd_dto_credits_noquota[DTO_INDEX_DELETE] +
+ osd_dto_credits_noquota[DTO_INDEX_INSERT] + 1 + 1 + 2;
+
+again:
+ if (dev->od_dirent_journal) {
+ jh = ldiskfs_journal_start_sb(sb, credits);
+ if (IS_ERR(jh)) {
+ rc = PTR_ERR(jh);
+ CERROR("%.16s: fail to start trans for dirent "
+ "check_repair: credits %d, name %.*s, rc %d\n",
+ devname, credits, ent->oied_namelen,
+ ent->oied_name, rc);
+ RETURN(rc);
+ }
+ }
+
+ if (obj->oo_hl_head != NULL) {
+ hlock = osd_oti_get(env)->oti_hlock;
+ ldiskfs_htree_lock(hlock, obj->oo_hl_head, dir,
+ LDISKFS_HLOCK_DEL);
+ } else {
+ down_write(&obj->oo_ext_idx_sem);
+ }
+
+ bh = osd_ldiskfs_find_entry(dir, dentry, &de, hlock);
+ /* For dotdot entry, if there is not enough space to hold FID-in-dirent,
+ * just keep it there. It only happens when the device upgraded from 1.8
+ * or restored from MDT file-level backup. For the whole directory, only
+ * dotdot entry has no FID-in-dirent and needs to get FID from LMA when
+ * readdir, it will not affect the performance much. */
+ if ((bh == NULL) || (le32_to_cpu(de->inode) != ent->oied_ino) ||
+ (is_dotdot && !osd_dirent_has_space(de->rec_len,
+ ent->oied_namelen,
+ sb->s_blocksize))) {
+ *attr |= LUDA_IGNORE;
+ GOTO(out_journal, rc = 0);
+ }
+
+ osd_id_gen(id, ent->oied_ino, OSD_OII_NOGEN);
+ inode = osd_iget(info, dev, id);
+ if (IS_ERR(inode)) {
+ rc = PTR_ERR(inode);
+ if (rc == -ENOENT || rc == -ESTALE) {
+ *attr |= LUDA_IGNORE;
+ rc = 0;
+ }
+
+ GOTO(out_journal, rc);
+ }
+
+ rc = osd_get_lma(info, inode, &info->oti_obj_dentry, lma);
+ if (rc == 0) {
+ if (fid_is_sane(fid)) {
+ /* FID-in-dirent is valid. */
+ if (lu_fid_eq(fid, &lma->lma_self_fid))
+ GOTO(out_inode, rc = 0);
+
+ /* Do not repair under dryrun mode. */
+ if (*attr & LUDA_VERIFY_DRYRUN) {
+ *attr |= LUDA_REPAIR;
+ GOTO(out_inode, rc = 0);
+ }
+
+ if (!dev->od_dirent_journal) {
+ iput(inode);
+ brelse(bh);
+ if (hlock != NULL)
+ ldiskfs_htree_unlock(hlock);
+ else
+ up_write(&obj->oo_ext_idx_sem);
+ dev->od_dirent_journal = 1;
+ goto again;
+ }
+
+ *fid = lma->lma_self_fid;
+ dirty = true;
+ /* Update the FID-in-dirent. */
+ rc = osd_dirent_update(jh, sb, ent, fid, bh, de);
+ if (rc == 0)
+ *attr |= LUDA_REPAIR;
+ } else {
+ /* Do not repair under dryrun mode. */
+ if (*attr & LUDA_VERIFY_DRYRUN) {
+ *attr |= LUDA_REPAIR;
+ GOTO(out_inode, rc = 0);
+ }
+
+ if (!dev->od_dirent_journal) {
+ iput(inode);
+ brelse(bh);
+ if (hlock != NULL)
+ ldiskfs_htree_unlock(hlock);
+ else
+ up_write(&obj->oo_ext_idx_sem);
+ dev->od_dirent_journal = 1;
+ goto again;
+ }
+
+ *fid = lma->lma_self_fid;
+ dirty = true;
+ /* Append the FID-in-dirent. */
+ rc = osd_dirent_reinsert(env, jh, dir, inode, ent,
+ fid, bh, de, hlock);
+ if (rc == 0)
+ *attr |= LUDA_REPAIR;
+ }
+ } else if (rc == -ENODATA) {
+ /* Do not repair under dryrun mode. */
+ if (*attr & LUDA_VERIFY_DRYRUN) {
+ if (fid_is_sane(fid))
+ *attr |= LUDA_REPAIR;
+ else
+ *attr |= LUDA_UPGRADE;
+ GOTO(out_inode, rc = 0);
+ }
+
+ if (!dev->od_dirent_journal) {
+ iput(inode);
+ brelse(bh);
+ if (hlock != NULL)
+ ldiskfs_htree_unlock(hlock);
+ else
+ up_write(&obj->oo_ext_idx_sem);
+ dev->od_dirent_journal = 1;
+ goto again;
+ }
+
+ dirty = true;
+ if (unlikely(fid_is_sane(fid))) {
+ /* FID-in-dirent exists, but FID-in-LMA is lost.
+ * Trust the FID-in-dirent, and add FID-in-LMA. */
+ rc = osd_ea_fid_set(info, inode, fid);
+ if (rc == 0)
+ *attr |= LUDA_REPAIR;
+ } else {
+ lu_igif_build(fid, inode->i_ino, inode->i_generation);
+ /* It is probably IGIF object. Only aappend the
+ * FID-in-dirent. OI scrub will process FID-in-LMA. */
+ rc = osd_dirent_reinsert(env, jh, dir, inode, ent,
+ fid, bh, de, hlock);
+ if (rc == 0)
+ *attr |= LUDA_UPGRADE;
+ }
+ }
+
+ GOTO(out_inode, rc);
+
+out_inode:
+ iput(inode);
+
+out_journal:
+ brelse(bh);
+ if (hlock != NULL)
+ ldiskfs_htree_unlock(hlock);
+ else
+ up_write(&obj->oo_ext_idx_sem);
+ if (jh != NULL)
+ ldiskfs_journal_stop(jh);
+ if (rc >= 0 && !dirty)
+ dev->od_dirent_journal = 0;
+ return rc;
+}
/**
- * Returns the value (i.e. fid/igif) at current position from iterator's
- * in memory structure.
+ * Returns the value at current position from iterator's in memory structure.
*
* \param di struct osd_it_ea, iterator's in memory structure
* \param attr attr requested for dirent.
struct osd_scrub *scrub = &dev->od_scrub;
struct scrub_file *sf = &scrub->os_file;
struct osd_thread_info *oti = osd_oti_get(env);
+ struct osd_inode_id *id = &oti->oti_id;
struct osd_idmap_cache *oic = &oti->oti_cache;
struct lu_fid *fid = &it->oie_dirent->oied_fid;
struct lu_dirent *lde = (struct lu_dirent *)dtrec;
int rc = 0;
ENTRY;
- if (!fid_is_sane(fid)) {
- rc = osd_ea_fid_get(env, obj, ino, fid, &oic->oic_lid);
- if (rc != 0) {
- fid_zero(&oic->oic_fid);
- RETURN(rc);
+ if (attr & LUDA_VERIFY) {
+ attr |= LUDA_TYPE;
+ if (unlikely(ino == osd_sb(dev)->s_root->d_inode->i_ino)) {
+ attr |= LUDA_IGNORE;
+ rc = 0;
+ goto pack;
}
+
+ rc = osd_dirent_check_repair(env, obj, it, fid, id, &attr);
} else {
- osd_id_gen(&oic->oic_lid, ino, OSD_OII_NOGEN);
+ attr &= ~LU_DIRENT_ATTRS_MASK;
+ if (!fid_is_sane(fid)) {
+ if (OBD_FAIL_CHECK(OBD_FAIL_FID_LOOKUP))
+ RETURN(-ENOENT);
+
+ rc = osd_ea_fid_get(env, obj, ino, fid, id);
+ } else {
+ osd_id_gen(id, ino, OSD_OII_NOGEN);
+ }
}
+ if (rc < 0)
+ RETURN(rc);
+
+pack:
osd_it_pack_dirent(lde, fid, it->oie_dirent->oied_off,
it->oie_dirent->oied_name,
it->oie_dirent->oied_namelen,
it->oie_dirent->oied_type, attr);
- oic->oic_fid = *fid;
- if ((scrub->os_pos_current <= ino) &&
- (sf->sf_flags & SF_INCONSISTENT ||
+
+ if (osd_remote_fid(env, dev, fid))
+ RETURN(0);
+
+ if (likely(!(attr & LUDA_IGNORE))) {
+ oic->oic_lid = *id;
+ oic->oic_fid = *fid;
+ }
+
+ if (!(attr & LUDA_VERIFY) &&
+ (scrub->os_pos_current <= ino) &&
+ ((sf->sf_flags & SF_INCONSISTENT) ||
+ (sf->sf_flags & SF_UPGRADE && fid_is_igif(fid)) ||
ldiskfs_test_bit(osd_oi_fid2idx(dev, fid), sf->sf_oi_bitmap)))
osd_consistency_check(oti, dev, oic);
static void osd_key_fini(const struct lu_context *ctx,
struct lu_context_key *key, void* data)
{
- struct osd_thread_info *info = data;
+ struct osd_thread_info *info = data;
- if (info->oti_hlock != NULL)
- ldiskfs_htree_lock_free(info->oti_hlock);
- OBD_FREE(info->oti_it_ea_buf, OSD_IT_EA_BUFSIZE);
- OBD_FREE_PTR(info);
+ if (info->oti_hlock != NULL)
+ ldiskfs_htree_lock_free(info->oti_hlock);
+ OBD_FREE(info->oti_it_ea_buf, OSD_IT_EA_BUFSIZE);
+ lu_buf_free(&info->oti_iobuf.dr_pg_buf);
+ lu_buf_free(&info->oti_iobuf.dr_bl_buf);
+ OBD_FREE_PTR(info);
}
static void osd_key_exit(const struct lu_context *ctx,
{
struct osd_device *osd = osd_dev(d);
- strncpy(osd->od_svname, name, MAX_OBD_NAME);
+ if (strlcpy(osd->od_svname, name, sizeof(osd->od_svname))
+ >= sizeof(osd->od_svname))
+ return -E2BIG;
return osd_procfs_init(osd, name);
}
if (o->od_mnt != NULL)
RETURN(0);
+ if (strlen(dev) >= sizeof(o->od_mntdev))
+ RETURN(-E2BIG);
+ strcpy(o->od_mntdev, dev);
+
o->od_fsops = fsfilt_get_ops(mt_str(LDD_MT_LDISKFS));
if (o->od_fsops == NULL) {
CERROR("Can't find fsfilt_ldiskfs\n");
GOTO(out, rc);
}
- if (lvfs_check_rdonly(o->od_mnt->mnt_sb->s_bdev)) {
+#ifdef HAVE_DEV_SET_RDONLY
+ if (dev_check_rdonly(o->od_mnt->mnt_sb->s_bdev)) {
CERROR("%s: underlying device %s is marked as read-only. "
"Setup failed\n", name, dev);
mntput(o->od_mnt);
o->od_mnt = NULL;
GOTO(out, rc = -EROFS);
}
+#endif
if (!LDISKFS_HAS_COMPAT_FEATURE(o->od_mnt->mnt_sb,
LDISKFS_FEATURE_COMPAT_HAS_JOURNAL)) {
GOTO(out, rc = -EINVAL);
}
+ ldiskfs_set_inode_state(osd_sb(o)->s_root->d_inode,
+ LDISKFS_STATE_LUSTRE_NO_OI);
if (lmd_flags & LMD_FLG_NOSCRUB)
o->od_noscrub = 1;
rc = osd_shutdown(env, osd_dev(d));
- osd_compat_fini(osd_dev(d));
+ osd_obj_map_fini(osd_dev(d));
shrink_dcache_sb(osd_sb(osd_dev(d)));
osd_sync(env, lu2dt_dev(d));
struct lu_device *l = osd2lu_dev(o);
struct osd_thread_info *info;
int rc;
+ int cplen = 0;
/* if the module was re-loaded, env can loose its keys */
rc = lu_env_refill((struct lu_env *) env);
l->ld_ops = &osd_lu_ops;
o->od_dt_dev.dd_ops = &osd_dt_ops;
- cfs_spin_lock_init(&o->od_osfs_lock);
- cfs_mutex_init(&o->od_otable_mutex);
+ spin_lock_init(&o->od_osfs_lock);
+ mutex_init(&o->od_otable_mutex);
o->od_osfs_age = cfs_time_shift_64(-1000);
o->od_capa_hash = init_capa_hash();
if (rc)
GOTO(out_capa, rc);
+ CFS_INIT_LIST_HEAD(&o->od_ios_list);
/* setup scrub, including OI files initialization */
rc = osd_scrub_setup(env, o);
if (rc < 0)
GOTO(out_mnt, rc);
- strncpy(o->od_svname, lustre_cfg_string(cfg, 4),
- sizeof(o->od_svname) - 1);
+ cplen = strlcpy(o->od_svname, lustre_cfg_string(cfg, 4),
+ sizeof(o->od_svname));
+ if (cplen >= sizeof(o->od_svname)) {
+ rc = -E2BIG;
+ GOTO(out_mnt, rc);
+ }
- rc = osd_compat_init(o);
+ rc = osd_obj_map_init(o);
if (rc != 0)
GOTO(out_scrub, rc);
out_site:
lu_site_fini(&o->od_site);
out_compat:
- osd_compat_fini(o);
+ osd_obj_map_fini(o);
out_scrub:
osd_scrub_cleanup(env, o);
out_mnt:
rc = dt_device_init(&o->od_dt_dev, t);
if (rc == 0) {
+ /* Because the ctx might be revived in dt_device_init,
+ * refill the env here */
+ lu_env_refill((struct lu_env *)env);
rc = osd_device_init0(env, o, cfg);
if (rc)
dt_device_fini(&o->od_dt_dev);
*exp = class_conn2export(&conn);
- cfs_spin_lock(&osd->od_osfs_lock);
+ spin_lock(&osd->od_osfs_lock);
osd->od_connects++;
- cfs_spin_unlock(&osd->od_osfs_lock);
+ spin_unlock(&osd->od_osfs_lock);
RETURN(0);
}
ENTRY;
/* Only disconnect the underlying layers on the final disconnect. */
- cfs_spin_lock(&osd->od_osfs_lock);
+ spin_lock(&osd->od_osfs_lock);
osd->od_connects--;
if (osd->od_connects == 0)
release = 1;
- cfs_spin_unlock(&osd->od_osfs_lock);
+ spin_unlock(&osd->od_osfs_lock);
rc = class_disconnect(exp); /* bz 9811 */