* Copyright (c) 2007, 2010, Oracle and/or its affiliates. All rights reserved.
* Use is subject to license terms.
*
- * Copyright (c) 2011, 2012, Intel Corporation.
+ * Copyright (c) 2011, 2013, Intel Corporation.
*/
/*
* This file is part of Lustre, http://www.lustre.org/
* Author: Yury Umanets <umka@clusterfs.com>
*/
-#ifndef __LINUX_FID_H
-#define __LINUX_FID_H
+#ifndef __LUSTRE_FID_H
+#define __LUSTRE_FID_H
/** \defgroup fid fid
*
#include <libcfs/libcfs.h>
#include <lustre/lustre_idl.h>
-#include <lustre_req_layout.h>
-#include <lustre_mdt.h>
-#include <obd.h>
-
+struct lu_env;
struct lu_site;
struct lu_context;
+struct obd_device;
+struct obd_export;
/* Whole sequences space range and zero range definitions */
extern const struct lu_seq_range LUSTRE_SEQ_SPACE_RANGE;
FID_SEQ_CTL_OID = 4UL,
FID_SEQ_SRV_OID = 5UL,
/** \see mdd_mod_init */
- MDD_ROOT_INDEX_OID = 6UL,
- MDD_ORPHAN_OID = 7UL,
+ MDD_ROOT_INDEX_OID = 6UL, /* deprecated in 2.4 */
+ MDD_ORPHAN_OID = 7UL, /* deprecated in 2.4 */
MDD_LOV_OBJ_OID = 8UL,
MDD_CAPA_KEYS_OID = 9UL,
/** \see mdt_mod_init */
OFD_HEALTH_CHECK_OID = 4120UL,
MDD_LOV_OBJ_OSEQ = 4121UL,
LFSCK_NAMESPACE_OID = 4122UL,
+ REMOTE_PARENT_DIR_OID = 4123UL,
};
static inline void lu_local_obj_fid(struct lu_fid *fid, __u32 oid)
fid_oid(fid) == FID_OID_DOT_LUSTRE);
}
+static inline int fid_is_obf(const struct lu_fid *fid)
+{
+ return unlikely(fid_seq(fid) == FID_SEQ_DOT_LUSTRE &&
+ fid_oid(fid) == FID_OID_DOT_LUSTRE_OBF);
+}
+
static inline int fid_is_otable_it(const struct lu_fid *fid)
{
return unlikely(fid_seq(fid) == FID_SEQ_LOCAL_FILE &&
fid_seq(fid) == FID_SEQ_QUOTA_GLB;
}
-static inline int fid_is_client_mdt_visible(const struct lu_fid *fid)
+static inline int fid_is_name_llog(const struct lu_fid *fid)
+{
+ return fid_seq(fid) == FID_SEQ_LLOG_NAME;
+}
+
+static inline int fid_is_namespace_visible(const struct lu_fid *fid)
{
const __u64 seq = fid_seq(fid);
fid_is_root(fid) || fid_is_dot_lustre(fid);
}
-static inline int fid_is_client_visible(const struct lu_fid *fid)
-{
- return fid_is_client_mdt_visible(fid) || fid_is_idif(fid);
-}
-
static inline int fid_seq_in_fldb(__u64 seq)
{
return fid_seq_is_igif(seq) || fid_seq_is_norm(seq) ||
fid_seq_is_root(seq) || fid_seq_is_dot(seq);
}
-static inline void lu_last_id_fid(struct lu_fid *fid, __u64 seq)
+static inline void lu_last_id_fid(struct lu_fid *fid, __u64 seq, __u32 ost_idx)
{
if (fid_seq_is_mdt0(seq)) {
- fid->f_seq = fid_idif_seq(0, 0);
+ fid->f_seq = fid_idif_seq(0, ost_idx);
} else {
LASSERTF(fid_seq_is_norm(seq) || fid_seq_is_echo(seq) ||
fid_seq_is_idif(seq), LPX64"\n", seq);
fid->f_ver = 0;
}
+/* seq client type */
+enum lu_cli_type {
+ LUSTRE_SEQ_METADATA = 1,
+ LUSTRE_SEQ_DATA
+};
+
enum lu_mgr_type {
LUSTRE_SEQ_SERVER,
LUSTRE_SEQ_CONTROLLER
/* Seq-server for direct talking */
struct lu_server_seq *lcs_srv;
- /* wait queue for fid allocation and update indicator */
- cfs_waitq_t lcs_waitq;
- int lcs_update;
+ /* wait queue for fid allocation and update indicator */
+ wait_queue_head_t lcs_waitq;
+ int lcs_update;
};
/* server sequence manager interface */
struct seq_server_site *lss_site;
};
-int seq_query(struct com_thread_info *info);
-int seq_handle(struct ptlrpc_request *req);
-
/* Server methods */
-int seq_server_init(struct lu_server_seq *seq,
+
+int seq_server_init(const struct lu_env *env,
+ struct lu_server_seq *seq,
struct dt_device *dev,
const char *prefix,
enum lu_mgr_type type,
- struct seq_server_site *ss,
- const struct lu_env *env);
+ struct seq_server_site *ss);
void seq_server_fini(struct lu_server_seq *seq,
const struct lu_env *env);
struct lu_seq_range *out,
const struct lu_env *env);
-int seq_server_set_cli(struct lu_server_seq *seq,
- struct lu_client_seq *cli,
- const struct lu_env *env);
+int seq_server_set_cli(const struct lu_env *env,
+ struct lu_server_seq *seq,
+ struct lu_client_seq *cli);
/* Client methods */
int seq_client_init(struct lu_client_seq *seq,
int fid_is_local(const struct lu_env *env,
struct lu_site *site, const struct lu_fid *fid);
+enum lu_cli_type;
int client_fid_init(struct obd_device *obd, struct obd_export *exp,
enum lu_cli_type type);
int client_fid_fini(struct obd_device *obd);
* renaming name[2,3] fields that need to be used for the quota identifier.
*/
static inline struct ldlm_res_id *
-fid_build_reg_res_name(const struct lu_fid *f,
- struct ldlm_res_id *name)
+fid_build_reg_res_name(const struct lu_fid *fid, struct ldlm_res_id *res)
{
- memset(name, 0, sizeof *name);
- name->name[LUSTRE_RES_ID_SEQ_OFF] = fid_seq(f);
- name->name[LUSTRE_RES_ID_VER_OID_OFF] = fid_ver_oid(f);
- return name;
+ memset(res, 0, sizeof(*res));
+ res->name[LUSTRE_RES_ID_SEQ_OFF] = fid_seq(fid);
+ res->name[LUSTRE_RES_ID_VER_OID_OFF] = fid_ver_oid(fid);
+
+ return res;
+}
+
+/*
+ * Return true if resource is for object identified by FID.
+ */
+static inline int fid_res_name_eq(const struct lu_fid *fid,
+ const struct ldlm_res_id *res)
+{
+ return res->name[LUSTRE_RES_ID_SEQ_OFF] == fid_seq(fid) &&
+ res->name[LUSTRE_RES_ID_VER_OID_OFF] == fid_ver_oid(fid);
+}
+
+/*
+ * Extract FID from LDLM resource. Reverse of fid_build_reg_res_name().
+ */
+static inline struct lu_fid *
+fid_extract_from_res_name(struct lu_fid *fid, const struct ldlm_res_id *res)
+{
+ fid->f_seq = res->name[LUSTRE_RES_ID_SEQ_OFF];
+ fid->f_oid = (__u32)(res->name[LUSTRE_RES_ID_VER_OID_OFF]);
+ fid->f_ver = (__u32)(res->name[LUSTRE_RES_ID_VER_OID_OFF] >> 32);
+ LASSERT(fid_res_name_eq(fid, res));
+
+ return fid;
}
/*
* Build (DLM) resource identifier from global quota FID and quota ID.
*/
static inline struct ldlm_res_id *
-fid_build_quota_resid(const struct lu_fid *glb_fid, union lquota_id *qid,
+fid_build_quota_res_name(const struct lu_fid *glb_fid, union lquota_id *qid,
struct ldlm_res_id *res)
{
fid_build_reg_res_name(glb_fid, res);
res->name[LUSTRE_RES_ID_QUOTA_SEQ_OFF] = fid_seq(&qid->qid_fid);
res->name[LUSTRE_RES_ID_QUOTA_VER_OID_OFF] = fid_ver_oid(&qid->qid_fid);
+
return res;
}
/*
* Extract global FID and quota ID from resource name
*/
-static inline void fid_extract_quota_resid(struct ldlm_res_id *res,
- struct lu_fid *glb_fid,
- union lquota_id *qid)
+static inline void fid_extract_from_quota_res(struct lu_fid *glb_fid,
+ union lquota_id *qid,
+ const struct ldlm_res_id *res)
{
- glb_fid->f_seq = res->name[LUSTRE_RES_ID_SEQ_OFF];
- glb_fid->f_oid = (__u32)res->name[LUSTRE_RES_ID_VER_OID_OFF];
- glb_fid->f_ver = (__u32)(res->name[LUSTRE_RES_ID_VER_OID_OFF] >> 32);
-
+ fid_extract_from_res_name(glb_fid, res);
qid->qid_fid.f_seq = res->name[LUSTRE_RES_ID_QUOTA_SEQ_OFF];
qid->qid_fid.f_oid = (__u32)res->name[LUSTRE_RES_ID_QUOTA_VER_OID_OFF];
qid->qid_fid.f_ver =
(__u32)(res->name[LUSTRE_RES_ID_QUOTA_VER_OID_OFF] >> 32);
}
-/*
- * Return true if resource is for object identified by fid.
- */
-static inline int fid_res_name_eq(const struct lu_fid *f,
- const struct ldlm_res_id *name)
-{
- return name->name[LUSTRE_RES_ID_SEQ_OFF] == fid_seq(f) &&
- name->name[LUSTRE_RES_ID_VER_OID_OFF] == fid_ver_oid(f);
-}
-
-/* reverse function of fid_build_reg_res_name() */
-static inline void fid_build_from_res_name(struct lu_fid *f,
- const struct ldlm_res_id *name)
-{
- fid_zero(f);
- f->f_seq = name->name[LUSTRE_RES_ID_SEQ_OFF];
- f->f_oid = name->name[LUSTRE_RES_ID_VER_OID_OFF] & 0xffffffff;
- f->f_ver = name->name[LUSTRE_RES_ID_VER_OID_OFF] >> 32;
- LASSERT(fid_res_name_eq(f, name));
-}
-
static inline struct ldlm_res_id *
-fid_build_pdo_res_name(const struct lu_fid *f,
- unsigned int hash,
- struct ldlm_res_id *name)
+fid_build_pdo_res_name(const struct lu_fid *fid, unsigned int hash,
+ struct ldlm_res_id *res)
{
- fid_build_reg_res_name(f, name);
- name->name[LUSTRE_RES_ID_HSH_OFF] = hash;
- return name;
+ fid_build_reg_res_name(fid, res);
+ res->name[LUSTRE_RES_ID_HSH_OFF] = hash;
+
+ return res;
}
/**
* Build DLM resource name from object id & seq, which will be removed
* finally, when we replace ost_id with FID in data stack.
*
- * To keep the compatibility, res[0] = oid, res[1] = seq
+ * Currently, resid from the old client, whose res[0] = object_id,
+ * res[1] = object_seq, is just oposite with Metatdata
+ * resid, where, res[0] = fid->f_seq, res[1] = fid->f_oid.
+ * To unifiy the resid identification, we will reverse the data
+ * resid to keep it same with Metadata resid, i.e.
+ *
+ * For resid from the old client,
+ * res[0] = objid, res[1] = 0, still keep the original order,
+ * for compatiblity.
+ *
+ * For new resid
+ * res will be built from normal FID directly, i.e. res[0] = f_seq,
+ * res[1] = f_oid + f_ver.
*/
-static inline void ostid_build_res_name(struct ost_id *oid,
+static inline void ostid_build_res_name(struct ost_id *oi,
struct ldlm_res_id *name)
{
memset(name, 0, sizeof *name);
- name->name[LUSTRE_RES_ID_SEQ_OFF] = oid->oi_id;
- name->name[LUSTRE_RES_ID_VER_OID_OFF] = oid->oi_seq;
-}
-
-static inline void ostid_res_name_to_id(struct ost_id *oid,
- struct ldlm_res_id *name)
-{
- oid->oi_id = name->name[LUSTRE_RES_ID_SEQ_OFF];
- oid->oi_seq = name->name[LUSTRE_RES_ID_VER_OID_OFF];
+ if (fid_seq_is_mdt0(ostid_seq(oi))) {
+ name->name[LUSTRE_RES_ID_SEQ_OFF] = ostid_id(oi);
+ name->name[LUSTRE_RES_ID_VER_OID_OFF] = ostid_seq(oi);
+ } else {
+ fid_build_reg_res_name(&oi->oi_fid, name);
+ }
}
/**
* Return true if the resource is for the object identified by this id & group.
*/
-static inline int ostid_res_name_eq(struct ost_id *oid,
+static inline int ostid_res_name_eq(struct ost_id *oi,
struct ldlm_res_id *name)
{
- return name->name[LUSTRE_RES_ID_SEQ_OFF] == oid->oi_id &&
- name->name[LUSTRE_RES_ID_VER_OID_OFF] == oid->oi_seq;
+ /* Note: it is just a trick here to save some effort, probably the
+ * correct way would be turn them into the FID and compare */
+ if (fid_seq_is_mdt0(ostid_seq(oi))) {
+ return name->name[LUSTRE_RES_ID_SEQ_OFF] == ostid_id(oi) &&
+ name->name[LUSTRE_RES_ID_VER_OID_OFF] == ostid_seq(oi);
+ } else {
+ return name->name[LUSTRE_RES_ID_SEQ_OFF] == ostid_seq(oi) &&
+ name->name[LUSTRE_RES_ID_VER_OID_OFF] == ostid_id(oi);
+ }
+}
+
+/* The same as osc_build_res_name() */
+static inline void ost_fid_build_resid(const struct lu_fid *fid,
+ struct ldlm_res_id *resname)
+{
+ if (fid_is_mdt0(fid) || fid_is_idif(fid)) {
+ struct ost_id oi;
+ oi.oi.oi_id = 0; /* gcc 4.7.2 complains otherwise */
+ if (fid_to_ostid(fid, &oi) != 0)
+ return;
+ ostid_build_res_name(&oi, resname);
+ } else {
+ fid_build_reg_res_name(fid, resname);
+ }
+}
+
+static inline void ost_fid_from_resid(struct lu_fid *fid,
+ const struct ldlm_res_id *name,
+ int ost_idx)
+{
+ if (fid_seq_is_mdt0(name->name[LUSTRE_RES_ID_VER_OID_OFF])) {
+ /* old resid */
+ struct ost_id oi;
+ ostid_set_seq(&oi, name->name[LUSTRE_RES_ID_VER_OID_OFF]);
+ ostid_set_id(&oi, name->name[LUSTRE_RES_ID_SEQ_OFF]);
+ ostid_to_fid(fid, &oi, ost_idx);
+ } else {
+ /* new resid */
+ fid_extract_from_res_name(fid, name);
+ }
}
/**
dst->lsr_flags = be32_to_cpu(src->lsr_flags);
}
+static inline void range_array_cpu_to_le(struct lu_seq_range_array *dst,
+ const struct lu_seq_range_array *src)
+{
+ int i;
+
+ for (i = 0; i < src->lsra_count; i++)
+ range_cpu_to_le(&dst->lsra_lsr[i], &src->lsra_lsr[i]);
+
+ dst->lsra_count = cpu_to_le32(src->lsra_count);
+}
+
+static inline void range_array_le_to_cpu(struct lu_seq_range_array *dst,
+ const struct lu_seq_range_array *src)
+{
+ int i;
+
+ dst->lsra_count = le32_to_cpu(src->lsra_count);
+ for (i = 0; i < dst->lsra_count; i++)
+ range_le_to_cpu(&dst->lsra_lsr[i], &src->lsra_lsr[i]);
+}
+
/** @} fid */
-#endif /* __LINUX_FID_H */
+#endif /* __LUSTRE_FID_H */