2022-06-30 23:32:50 +00:00
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//go:build nautilus
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// +build nautilus
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package rbd
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// #cgo LDFLAGS: -lrbd
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// #include <errno.h>
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// #include <stdlib.h>
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// #include <rados/librados.h>
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// #include <rbd/librbd.h>
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import "C"
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import (
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"unsafe"
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"github.com/ceph/go-ceph/rados"
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)
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// MirrorMode indicates the current mode of mirroring that is applied onto a
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// pool. A pool that doesn't have an explicit mirroring mode applied to it is
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// said to be disabled - that's the default.
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type MirrorMode int
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const (
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// MirrorModeDisabled disables mirroring.
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MirrorModeDisabled = MirrorMode(C.RBD_MIRROR_MODE_DISABLED)
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// MirrorModeImage enables mirroring on a per-image basis.
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MirrorModeImage = MirrorMode(C.RBD_MIRROR_MODE_IMAGE)
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// MirrorModePool enables mirroring on all journaled images.
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MirrorModePool = MirrorMode(C.RBD_MIRROR_MODE_POOL)
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)
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// MirrorModeGet returns the mode of mirroring currently applied to a pool.
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//
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// Note: this can only be used if go-ceph is compiled with the `nautilus` build
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// tag.
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//
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// Implements:
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2023-02-09 17:23:11 +00:00
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//
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// int rbd_mirror_mode_get(rados_ioctx_t p, rbd_mirror_mode_t *mirror_mode)
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2022-06-30 23:32:50 +00:00
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func MirrorModeGet(ioctx *rados.IOContext) (MirrorMode, error) {
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var rmm C.rbd_mirror_mode_t
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ret := C.rbd_mirror_mode_get(cephIoctx(ioctx), &rmm)
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if ret != 0 {
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return -1, getError(ret)
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}
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return MirrorMode(rmm), nil
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}
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// MirrorModeSet sets the mirror mode for a pool.
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//
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// Note: this can only be used if go-ceph is compiled with the `nautilus` build
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// tag.
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//
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// Implements:
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2023-02-09 17:23:11 +00:00
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//
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// rbd_mirror_mode_set(rados_ioctx_t p, rbd_mirror_mode_t mirror_mode)
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2022-06-30 23:32:50 +00:00
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func MirrorModeSet(ioctx *rados.IOContext, mode MirrorMode) error {
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cMode := C.rbd_mirror_mode_t(mode)
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ret := C.rbd_mirror_mode_set(cephIoctx(ioctx), cMode)
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return getError(ret)
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}
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// MirrorPeerAdd configures a peering relationship with another cluster. Note
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// that it does not transfer over that cluster's config or keyrings, which must
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// already be available to the rbd-mirror daemon(s).
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//
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// Note: this can only be used if go-ceph is compiled with the `nautilus` build
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// tag.
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//
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// Implements:
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2023-02-09 17:23:11 +00:00
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//
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// int rbd_mirror_peer_add(rados_ioctx_t p, char *uuid,
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// size_t uuid_max_length,
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// const char *cluster_name,
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// const char *client_name)
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func MirrorPeerAdd(ioctx *rados.IOContext, clusterName, clientName string) (string, error) {
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// librbd uses 36-byte UUIDs with a trailing null. rbd_mirror_add_peer will
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// return -E2BIG if we pass a UUID buffer smaller than 37 bytes.
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const cUUIDMaxLen = C.size_t(37)
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cUUID := make([]C.char, cUUIDMaxLen)
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cClusterName := C.CString(clusterName)
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defer C.free(unsafe.Pointer(cClusterName))
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cClientName := C.CString(clientName)
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defer C.free(unsafe.Pointer(cClientName))
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ret := C.rbd_mirror_peer_add(cephIoctx(ioctx), &cUUID[0], cUUIDMaxLen,
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cClusterName, cClientName)
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return C.GoString(&cUUID[0]), getError(ret)
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}
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// MirrorPeerRemove tears down a peering relationship.
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//
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// Note: this can only be used if go-ceph is compiled with the `nautilus` build
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// tag.
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//
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// Implements:
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2023-02-09 17:23:11 +00:00
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//
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// int rbd_mirror_peer_remove(rados_ioctx_t io_ctx, const char *uuid)
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func MirrorPeerRemove(ioctx *rados.IOContext, uuid string) error {
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cUUID := C.CString(uuid)
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defer C.free(unsafe.Pointer(cUUID))
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ret := C.rbd_mirror_peer_remove(cephIoctx(ioctx), cUUID)
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return getError(ret)
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}
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// MirrorPeerInfo contains information about a configured mirroring peer.
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type MirrorPeerInfo struct {
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UUID string
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ClusterName string
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ClientName string
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}
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// MirrorPeerList returns a list of configured mirroring peers.
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//
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// Note: this can only be used if go-ceph is compiled with the `nautilus` build
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// tag.
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//
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// Implements:
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2023-02-09 17:23:11 +00:00
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//
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// int rbd_mirror_peer_list(rados_ioctx_t io_ctx,
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// rbd_mirror_peer_list_t *peers,
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// int *max_peers);
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2022-06-30 23:32:50 +00:00
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func MirrorPeerList(ioctx *rados.IOContext) ([]*MirrorPeerInfo, error) {
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var mpi []*MirrorPeerInfo
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cMaxPeers := C.int(5)
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var cPeers []C.rbd_mirror_peer_t
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for {
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cPeers = make([]C.rbd_mirror_peer_t, cMaxPeers)
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ret := C.rbd_mirror_peer_list(cephIoctx(ioctx), &cPeers[0], &cMaxPeers)
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if ret == -C.ERANGE {
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// There are too many peers to fit in the list, and the number of peers has been
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// returned in cMaxPeers. Try again with the returned value.
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continue
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}
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if ret != 0 {
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return nil, getError(ret)
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}
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// ret == 0
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break
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}
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defer C.rbd_mirror_peer_list_cleanup(&cPeers[0], cMaxPeers)
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cPeers = cPeers[:cMaxPeers]
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for _, cPeer := range cPeers {
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mpi = append(mpi, &MirrorPeerInfo{
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UUID: C.GoString(cPeer.uuid),
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ClusterName: C.GoString(cPeer.cluster_name),
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ClientName: C.GoString(cPeer.client_name),
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})
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}
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return mpi, nil
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}
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// MirrorImageState indicates whether mirroring is enabled or disabled on an
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// image.
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//
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// A mirrored image might not immediately change its status to disabled if it has
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// offsets left to sync with its peers - this is denoted by 'disabling' state.
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//
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// It is important to note that mirroring cannot be enabled on an image without
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// first flipping on the 'journaling' image feature for it.
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type MirrorImageState int
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const (
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// MirrorImageDisabling is the representation of
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// RBD_MIRROR_IMAGE_DISABLING from librbd.
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MirrorImageDisabling = MirrorImageState(C.RBD_MIRROR_IMAGE_DISABLING)
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// MirrorImageEnabled is the representation of
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// RBD_MIRROR_IMAGE_ENABLED from librbd.
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MirrorImageEnabled = MirrorImageState(C.RBD_MIRROR_IMAGE_ENABLED)
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// MirrorImageDisabled is the representation of
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// RBD_MIRROR_IMAGE_DISABLED from librbd.
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MirrorImageDisabled = MirrorImageState(C.RBD_MIRROR_IMAGE_DISABLED)
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)
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// MirrorImageStatusState denotes the current replication status of a given
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// image.
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type MirrorImageStatusState int
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const (
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// MirrorImageStatusStateUnknown is equivalent to MIRROR_IMAGE_STATUS_STATE_UNKNOWN.
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MirrorImageStatusStateUnknown = MirrorImageStatusState(C.MIRROR_IMAGE_STATUS_STATE_UNKNOWN)
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// MirrorImageStatusStateError is equivalent to MIRROR_IMAGE_STATUS_STATE_ERROR.
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MirrorImageStatusStateError = MirrorImageStatusState(C.MIRROR_IMAGE_STATUS_STATE_ERROR)
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// MirrorImageStatusStateSyncing is equivalent to MIRROR_IMAGE_STATUS_STATE_SYNCING.
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MirrorImageStatusStateSyncing = MirrorImageStatusState(C.MIRROR_IMAGE_STATUS_STATE_SYNCING)
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// MirrorImageStatusStateStartingReplay is equivalent to MIRROR_IMAGE_STATUS_STATE_STARTING_REPLAY.
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MirrorImageStatusStateStartingReplay = MirrorImageStatusState(C.MIRROR_IMAGE_STATUS_STATE_STARTING_REPLAY)
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// MirrorImageStatusStateReplaying is equivalent to MIRROR_IMAGE_STATUS_STATE_REPLAYING.
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MirrorImageStatusStateReplaying = MirrorImageStatusState(C.MIRROR_IMAGE_STATUS_STATE_REPLAYING)
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// MirrorImageStatusStateStoppingReplay is equivalent to MIRROR_IMAGE_STATUS_STATE_STOPPING_REPLAY.
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MirrorImageStatusStateStoppingReplay = MirrorImageStatusState(C.MIRROR_IMAGE_STATUS_STATE_STOPPING_REPLAY)
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// MirrorImageStatusStateStopped is equivalent to MIRROR_IMAGE_STATUS_STATE_STOPPED.
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MirrorImageStatusStateStopped = MirrorImageStatusState(C.MIRROR_IMAGE_STATUS_STATE_STOPPED)
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)
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// MirrorImageInfo provides information about the mirroring progress of an image.
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type MirrorImageInfo struct {
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Name string
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Description string
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State MirrorImageState
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StatusState MirrorImageStatusState
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GlobalID string
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IsPrimary bool
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IsUp bool
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}
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// MirrorGetImage returns the MirrorImageInfo for an image.
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//
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// Note: this can only be used if go-ceph is compiled with the `nautilus` build
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// tag.
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//
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// Implements:
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2023-02-09 17:23:11 +00:00
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//
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// rbd_mirror_image_get_info(rbd_image_t image,
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// rbd_mirror_image_info_t *mirror_image_info,
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// size_t info_size)
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2022-06-30 23:32:50 +00:00
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func (image *Image) MirrorGetImage() (*MirrorImageInfo, error) {
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err := image.validate(imageIsOpen)
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if err != nil {
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return nil, err
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}
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var status C.rbd_mirror_image_status_t
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ret := C.rbd_mirror_image_get_status(image.image, &status, C.sizeof_rbd_mirror_image_status_t)
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if ret != 0 {
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return nil, getError(ret)
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}
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return &MirrorImageInfo{
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Name: C.GoString(status.name),
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Description: C.GoString(status.description),
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State: MirrorImageState(status.info.state),
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StatusState: MirrorImageStatusState(status.state),
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GlobalID: C.GoString(status.info.global_id),
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IsPrimary: bool(status.info.primary),
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IsUp: bool(status.up),
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}, nil
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}
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// MirrorImageList returns a MirrorImageInfo for each mirrored image.
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//
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// Note: this can only be used if go-ceph is compiled with the `nautilus` build
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// tag.
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//
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// Implements:
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2023-02-09 17:23:11 +00:00
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//
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// int rbd_mirror_image_status_list(rados_ioctx_t io_ctx,
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// const char *start_id, size_t max,
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// char **image_ids,
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// rbd_mirror_image_status_t *images,
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// size_t *len)
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func MirrorImageList(ioctx *rados.IOContext) ([]*MirrorImageInfo, error) {
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imageInfos := make([]*MirrorImageInfo, 0)
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const cMaxIter C.size_t = 100
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var startID string
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for {
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// We need to wrap all the actions within the for loop in a function
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// in order to ensure that we correctly reclaim all allocated memory
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// from C at the end of every iteration.
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ret, done := iterateImageList(ioctx, &imageInfos, &startID, cMaxIter)
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if ret != 0 {
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return imageInfos, getError(ret)
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}
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if done {
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break
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}
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}
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return imageInfos, nil
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}
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func iterateImageList(ioctx *rados.IOContext, imageInfos *[]*MirrorImageInfo, startID *string, cMaxIter C.size_t) (C.int, bool) {
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cImageIDs := make([]*C.char, cMaxIter)
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cImageStatus := make([]C.rbd_mirror_image_status_t, cMaxIter)
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done := false
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var cLen C.size_t
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ret := C.rbd_mirror_image_status_list(cephIoctx(ioctx), C.CString(*startID),
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cMaxIter, &cImageIDs[0], &cImageStatus[0], &cLen)
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if ret != 0 {
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return ret, done
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}
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// If the list length is 0 or less than the max size
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// specified we know we are on the last page of the list,
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// and we don't need to continue iterating.
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if cLen < cMaxIter {
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done = true
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}
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if cLen == 0 {
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return C.int(0), done
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}
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defer func() {
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C.rbd_mirror_image_status_list_cleanup(&cImageIDs[0], &cImageStatus[0], cLen)
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}()
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for i := 0; i < int(cLen); i++ {
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mi := &MirrorImageInfo{
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Name: C.GoString(cImageStatus[i].name),
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Description: C.GoString(cImageStatus[i].description),
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State: MirrorImageState(cImageStatus[i].info.state),
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StatusState: MirrorImageStatusState(cImageStatus[i].state),
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GlobalID: C.GoString(cImageStatus[i].info.global_id),
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IsPrimary: bool(cImageStatus[i].info.primary),
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IsUp: bool(cImageStatus[i].up),
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}
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*imageInfos = append(*imageInfos, mi)
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}
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*startID = C.GoString(cImageIDs[cLen-1])
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return C.int(0), done
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}
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// MirrorEnable will enable mirroring for an image.
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//
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// Note: this can only be used if go-ceph is compiled with the `nautilus` build
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// tag.
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//
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// Implements:
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2023-02-09 17:23:11 +00:00
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//
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// int rbd_mirror_image_enable(rbd_image_t image)
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2022-06-30 23:32:50 +00:00
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func (image *Image) MirrorEnable() error {
|
|
|
|
err := image.validate(imageIsOpen)
|
|
|
|
if err != nil {
|
|
|
|
return err
|
|
|
|
}
|
|
|
|
|
|
|
|
ret := C.rbd_mirror_image_enable(image.image)
|
|
|
|
return getError(ret)
|
|
|
|
}
|
|
|
|
|
|
|
|
// MirrorDisable will disable mirroring for an image.
|
|
|
|
//
|
|
|
|
// Note: this can only be used if go-ceph is compiled with the `nautilus` build
|
|
|
|
// tag.
|
|
|
|
//
|
|
|
|
// Implements:
|
2023-02-09 17:23:11 +00:00
|
|
|
//
|
|
|
|
// int rbd_mirror_image_disable(rbd_image_t image, bool force)
|
2022-06-30 23:32:50 +00:00
|
|
|
func (image *Image) MirrorDisable(force bool) error {
|
|
|
|
err := image.validate(imageIsOpen)
|
|
|
|
if err != nil {
|
|
|
|
return err
|
|
|
|
}
|
|
|
|
|
|
|
|
ret := C.rbd_mirror_image_disable(image.image, C.bool(force))
|
|
|
|
return getError(ret)
|
|
|
|
}
|
|
|
|
|
|
|
|
// MirrorPromote will promote an image to primary status.
|
|
|
|
//
|
|
|
|
// Note: this can only be used if go-ceph is compiled with the `nautilus` build
|
|
|
|
// tag.
|
|
|
|
//
|
|
|
|
// Implements:
|
2023-02-09 17:23:11 +00:00
|
|
|
//
|
|
|
|
// int rbd_mirror_image_promote(rbd_image_t image, bool force)
|
2022-06-30 23:32:50 +00:00
|
|
|
func (image *Image) MirrorPromote(force bool) error {
|
|
|
|
err := image.validate(imageIsOpen)
|
|
|
|
if err != nil {
|
|
|
|
return err
|
|
|
|
}
|
|
|
|
|
|
|
|
ret := C.rbd_mirror_image_promote(image.image, C.bool(force))
|
|
|
|
return getError(ret)
|
|
|
|
}
|
|
|
|
|
|
|
|
// MirrorDemote will demote an image to secondary status.
|
|
|
|
//
|
|
|
|
// Note: this can only be used if go-ceph is compiled with the `nautilus` build
|
|
|
|
// tag.
|
|
|
|
//
|
|
|
|
// Implements:
|
2023-02-09 17:23:11 +00:00
|
|
|
//
|
|
|
|
// int rbd_mirror_image_demote(rbd_image_t image)
|
2022-06-30 23:32:50 +00:00
|
|
|
func (image *Image) MirrorDemote() error {
|
|
|
|
err := image.validate(imageIsOpen)
|
|
|
|
if err != nil {
|
|
|
|
return err
|
|
|
|
}
|
|
|
|
|
|
|
|
ret := C.rbd_mirror_image_demote(image.image)
|
|
|
|
return getError(ret)
|
|
|
|
}
|
|
|
|
|
|
|
|
// MirrorResync is used to manually resolve split-brain status by triggering
|
|
|
|
// resynchronization.
|
|
|
|
//
|
|
|
|
// Note: this can only be used if go-ceph is compiled with the `nautilus` build
|
|
|
|
// tag.
|
|
|
|
//
|
|
|
|
// Implements:
|
2023-02-09 17:23:11 +00:00
|
|
|
//
|
|
|
|
// int rbd_mirror_image_resync(rbd_image_t image)
|
2022-06-30 23:32:50 +00:00
|
|
|
func (image *Image) MirrorResync() error {
|
|
|
|
err := image.validate(imageIsOpen)
|
|
|
|
if err != nil {
|
|
|
|
return err
|
|
|
|
}
|
|
|
|
|
|
|
|
ret := C.rbd_mirror_image_resync(image.image)
|
|
|
|
return getError(ret)
|
|
|
|
}
|