afs: Expand data structure fields to support YFS
Expand fields in various data structures to support the expanded information that YFS is capable of returning. Signed-off-by: David Howells <dhowells@redhat.com>
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35
fs/afs/afs.h
35
fs/afs/afs.h
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@ -130,19 +130,18 @@ typedef u32 afs_access_t;
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struct afs_file_status {
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u64 size; /* file size */
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afs_dataversion_t data_version; /* current data version */
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time_t mtime_client; /* last time client changed data */
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time_t mtime_server; /* last time server changed data */
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unsigned abort_code; /* Abort if bulk-fetching this failed */
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afs_file_type_t type; /* file type */
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unsigned nlink; /* link count */
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u32 author; /* author ID */
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u32 owner; /* owner ID */
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u32 group; /* group ID */
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struct timespec64 mtime_client; /* Last time client changed data */
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struct timespec64 mtime_server; /* Last time server changed data */
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s64 author; /* author ID */
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s64 owner; /* owner ID */
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s64 group; /* group ID */
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afs_access_t caller_access; /* access rights for authenticated caller */
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afs_access_t anon_access; /* access rights for unauthenticated caller */
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umode_t mode; /* UNIX mode */
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afs_file_type_t type; /* file type */
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u32 nlink; /* link count */
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s32 lock_count; /* file lock count (0=UNLK -1=WRLCK +ve=#RDLCK */
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u32 abort_code; /* Abort if bulk-fetching this failed */
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};
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/*
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@ -159,25 +158,27 @@ struct afs_file_status {
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* AFS volume synchronisation information
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*/
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struct afs_volsync {
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time_t creation; /* volume creation time */
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time64_t creation; /* volume creation time */
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};
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/*
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* AFS volume status record
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*/
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struct afs_volume_status {
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u32 vid; /* volume ID */
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u32 parent_id; /* parent volume ID */
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afs_volid_t vid; /* volume ID */
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afs_volid_t parent_id; /* parent volume ID */
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u8 online; /* true if volume currently online and available */
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u8 in_service; /* true if volume currently in service */
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u8 blessed; /* same as in_service */
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u8 needs_salvage; /* true if consistency checking required */
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u32 type; /* volume type (afs_voltype_t) */
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u32 min_quota; /* minimum space set aside (blocks) */
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u32 max_quota; /* maximum space this volume may occupy (blocks) */
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u32 blocks_in_use; /* space this volume currently occupies (blocks) */
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u32 part_blocks_avail; /* space available in volume's partition */
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u32 part_max_blocks; /* size of volume's partition */
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u64 min_quota; /* minimum space set aside (blocks) */
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u64 max_quota; /* maximum space this volume may occupy (blocks) */
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u64 blocks_in_use; /* space this volume currently occupies (blocks) */
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u64 part_blocks_avail; /* space available in volume's partition */
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u64 part_max_blocks; /* size of volume's partition */
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s64 vol_copy_date;
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s64 vol_backup_date;
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};
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#define AFS_BLOCK_SIZE 1024
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@ -69,8 +69,7 @@ void afs_update_inode_from_status(struct afs_vnode *vnode,
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struct timespec64 t;
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umode_t mode;
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t.tv_sec = status->mtime_client;
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t.tv_nsec = 0;
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t = status->mtime_client;
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vnode->vfs_inode.i_ctime = t;
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vnode->vfs_inode.i_mtime = t;
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vnode->vfs_inode.i_atime = t;
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@ -194,8 +193,10 @@ static int xdr_decode_AFSFetchStatus(struct afs_call *call,
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EXTRACT_M(mode);
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EXTRACT_M(group);
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status->mtime_client = ntohl(xdr->mtime_client);
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status->mtime_server = ntohl(xdr->mtime_server);
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status->mtime_client.tv_sec = ntohl(xdr->mtime_client);
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status->mtime_client.tv_nsec = 0;
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status->mtime_server.tv_sec = ntohl(xdr->mtime_server);
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status->mtime_server.tv_nsec = 0;
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status->lock_count = ntohl(xdr->lock_count);
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size = (u64)ntohl(xdr->size_lo);
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