Commit bd9070cb authored by Masanari Iida's avatar Masanari Iida Committed by Greg Kroah-Hartman

staging: lustre: Fix typo in lustre/include part2

This path fix spelling typo in lustre/include.
Signed-off-by: default avatarMasanari Iida <standby24x7@gmail.com>
Signed-off-by: default avatarGreg Kroah-Hartman <gregkh@linuxfoundation.org>
parent 17891183
......@@ -1314,7 +1314,7 @@ static inline int __page_in_use(const struct cl_page *page, int refc)
* calls. To achieve this, every layer can implement ->clo_fits_into() method,
* that is called by lock matching code (cl_lock_lookup()), and that can be
* used to selectively disable matching of certain locks for certain IOs. For
* exmaple, lov layer implements lov_lock_fits_into() that allow multi-stripe
* example, lov layer implements lov_lock_fits_into() that allow multi-stripe
* locks to be matched only for truncates and O_APPEND writes.
*
* Interaction with DLM
......@@ -2385,7 +2385,7 @@ struct cl_io {
* Check if layout changed after the IO finishes. Mainly for HSM
* requirement. If IO occurs to openning files, it doesn't need to
* verify layout because HSM won't release openning files.
* Right now, only two opertaions need to verify layout: glimpse
* Right now, only two operations need to verify layout: glimpse
* and setattr.
*/
ci_verify_layout:1,
......@@ -2556,7 +2556,7 @@ struct cl_req_obj {
*/
struct cl_req {
enum cl_req_type crq_type;
/** A list of pages being transfered */
/** A list of pages being transferred */
struct list_head crq_pages;
/** Number of pages in cl_req::crq_pages */
unsigned crq_nrpages;
......@@ -3228,7 +3228,7 @@ void cl_sync_io_note(struct cl_sync_io *anchor, int ioret);
*
* - call chains have no non-lustre portions inserted between lustre code.
*
* On a client both these assumtpion fails, because every user thread can
* On a client both these assumption fails, because every user thread can
* potentially execute lustre code as part of a system call, and lustre calls
* into VFS or MM that call back into lustre.
*
......
......@@ -38,7 +38,7 @@
* and on newer kernels this header is shared as _ASM_GENERIC_IOCTL_H.
*
* We can avoid any problems with the kernel header being included again by
* defining _ASM_I386_IOCTL_H here so that a later occurence of <asm/ioctl.h>
* defining _ASM_I386_IOCTL_H here so that a later occurrence of <asm/ioctl.h>
* does not include the kernel's ioctl.h after this one. b=14746 */
#define _ASM_I386_IOCTL_H
#define _ASM_GENERIC_IOCTL_H
......
......@@ -119,7 +119,7 @@ struct ccc_io {
/**
* True, if \a io is a normal io, False for splice_{read,write}.
* must be impementated in arch specific code.
* must be implemented in arch specific code.
*/
int cl_is_normalio(const struct lu_env *env, const struct cl_io *io);
......
......@@ -330,7 +330,7 @@ enum {
};
typedef enum {
/** invalide type */
/** invalid type */
LDLM_NS_TYPE_UNKNOWN = 0,
/** mdc namespace */
LDLM_NS_TYPE_MDC,
......
......@@ -570,7 +570,7 @@ fid_build_pdo_res_name(const struct lu_fid *fid, unsigned int hash,
* Currently, resid from the old client, whose res[0] = object_id,
* res[1] = object_seq, is just opposite with Metatdata
* resid, where, res[0] = fid->f_seq, res[1] = fid->f_oid.
* To unifiy the resid identification, we will reverse the data
* To unify the resid identification, we will reverse the data
* resid to keep it same with Metadata resid, i.e.
*
* For resid from the old client,
......
......@@ -152,7 +152,7 @@ struct import_state_hist {
};
/**
* Defintion of PortalRPC import structure.
* Definition of PortalRPC import structure.
* Imports are representing client-side view to remote target.
*/
struct obd_import {
......@@ -230,7 +230,7 @@ struct obd_import {
* after a check to save on unnecessary replay list iterations
*/
int imp_last_generation_checked;
/** Last tranno we replayed */
/** Last transno we replayed */
__u64 imp_last_replay_transno;
/** Last transno committed on remote side */
__u64 imp_peer_committed_transno;
......@@ -248,7 +248,7 @@ struct obd_import {
struct lustre_handle imp_remote_handle;
/** When to perform next ping. time in jiffies. */
cfs_time_t imp_next_ping;
/** When we last succesfully connected. time in 64bit jiffies */
/** When we last successfully connected. time in 64bit jiffies */
__u64 imp_last_success_conn;
/** List of all possible connection for import. */
......@@ -279,7 +279,7 @@ struct obd_import {
imp_no_lock_replay:1,
/* recovery by versions was failed */
imp_vbr_failed:1,
/* force an immidiate ping */
/* force an immediate ping */
imp_force_verify:1,
/* force a scheduled ping */
imp_force_next_verify:1,
......@@ -292,7 +292,7 @@ struct obd_import {
/* need IR MNE swab */
imp_need_mne_swab:1,
/* import must be reconnected instead of
* chouse new connection */
* chose new connection */
imp_force_reconnect:1,
/* import has tried to connect with server */
imp_connect_tried:1;
......
......@@ -33,7 +33,7 @@ struct linkea_data {
*/
struct lu_buf *ld_buf;
/**
* The matched header, entry and its lenght in the EA
* The matched header, entry and its length in the EA
*/
struct link_ea_header *ld_leh;
struct link_ea_entry *ld_lee;
......
......@@ -454,9 +454,9 @@ struct ptlrpc_reply_state {
/** Size of the reply message */
int rs_repdata_len; /* wrapper msg length */
/**
* Actual reply message. Its content is encrupted (if needed) to
* Actual reply message. Its content is encrypted (if needed) to
* produce reply buffer for actual sending. In simple case
* of no network encryption we jus set \a rs_repbuf to \a rs_msg
* of no network encryption we just set \a rs_repbuf to \a rs_msg
*/
struct lustre_msg *rs_msg; /* reply message */
......@@ -904,7 +904,7 @@ struct ptlrpc_nrs_pol_conf {
*/
struct module *nc_owner;
/**
* Policy registration flags; a bitmast of \e nrs_policy_flags
* Policy registration flags; a bitmask of \e nrs_policy_flags
*/
unsigned nc_flags;
};
......
......@@ -140,7 +140,7 @@ struct qsd_instance;
* (i.e. when ->ldo_recovery_complete is called). This is used
* to notify the qsd layer that quota should now be enforced
* again via the qsd_op_begin/end functions. The last step of the
* reintegration prodecure (namely usage reconciliation) will be
* reintegration procedure (namely usage reconciliation) will be
* completed during start.
*
* - qsd_fini(): is used to release a qsd_instance structure allocated with
......
......@@ -572,7 +572,7 @@ struct ptlrpc_sec_cops {
/**
* Called then the reference of \a ctx dropped to 0. The policy module
* is supposed to destroy this context or whatever else according to
* its cache maintainance mechamism.
* its cache maintenance mechanism.
*
* \param sync if zero, we shouldn't wait for the context being
* destroyed completely.
......@@ -1002,7 +1002,7 @@ struct ptlrpc_sec *sptlrpc_sec_get(struct ptlrpc_sec *sec);
void sptlrpc_sec_put(struct ptlrpc_sec *sec);
/*
* internal apis which only used by policy impelentation
* internal apis which only used by policy implementation
*/
int sptlrpc_get_next_secid(void);
void sptlrpc_sec_destroy(struct ptlrpc_sec *sec);
......
......@@ -1631,7 +1631,7 @@ static inline int obd_health_check(const struct lu_env *env,
{
/* returns: 0 on healthy
* >0 on unhealthy + reason code/flag
* however the only suppored reason == 1 right now
* however the only supported reason == 1 right now
* We'll need to define some better reasons
* or flags in the future.
* <0 on error
......
......@@ -681,7 +681,7 @@ do { \
*
* Be very careful when changing this value, especially when decreasing it,
* since vmalloc in Linux doesn't perform well on multi-cores system, calling
* vmalloc in critical path would hurt peformance badly. See LU-66.
* vmalloc in critical path would hurt performance badly. See LU-66.
*/
#define OBD_ALLOC_BIG (4 * PAGE_CACHE_SIZE)
......
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