mirror of
https://github.com/zrepl/zrepl.git
synced 2024-12-26 17:08:49 +01:00
507 lines
12 KiB
Go
507 lines
12 KiB
Go
// Package fsrep implements replication of a single file system with existing versions
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// from a sender to a receiver.
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package fsrep
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import (
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"context"
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"errors"
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"fmt"
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"io"
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"net"
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"sync"
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"time"
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"github.com/zrepl/zrepl/logger"
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"github.com/zrepl/zrepl/replication/pdu"
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"github.com/zrepl/zrepl/util"
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)
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type contextKey int
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const (
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contextKeyLogger contextKey = iota
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)
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type Logger = logger.Logger
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func WithLogger(ctx context.Context, log Logger) context.Context {
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return context.WithValue(ctx, contextKeyLogger, log)
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}
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func getLogger(ctx context.Context) Logger {
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l, ok := ctx.Value(contextKeyLogger).(Logger)
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if !ok {
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l = logger.NewNullLogger()
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}
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return l
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}
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// A Sender is usually part of a github.com/zrepl/zrepl/replication.Endpoint.
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type Sender interface {
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// If a non-nil io.ReadCloser is returned, it is guaranteed to be closed before
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// any next call to the parent github.com/zrepl/zrepl/replication.Endpoint.
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// If the send request is for dry run the io.ReadCloser will be nil
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Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.ReadCloser, error)
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SnapshotReplicationStatus(ctx context.Context, r *pdu.SnapshotReplicationStatusReq) (*pdu.SnapshotReplicationStatusRes, error)
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}
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// A Sender is usually part of a github.com/zrepl/zrepl/replication.Endpoint.
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type Receiver interface {
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// Receive sends r and sendStream (the latter containing a ZFS send stream)
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// to the parent github.com/zrepl/zrepl/replication.Endpoint.
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// Implementors must guarantee that Close was called on sendStream before
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// the call to Receive returns.
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Receive(ctx context.Context, r *pdu.ReceiveReq, sendStream io.ReadCloser) error
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}
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type StepReport struct {
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From, To string
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Status string
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Problem string
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Bytes int64
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ExpectedBytes int64
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}
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type Report struct {
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Filesystem string
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Status string
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Problem string
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Completed, Pending []*StepReport
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}
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//go:generate stringer -type=State
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type State uint
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const (
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Ready State = 1 << iota
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RetryWait
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PermanentError
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Completed
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)
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func (s State) fsrsf() state {
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m := map[State]state{
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Ready: stateReady,
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RetryWait: stateRetryWait,
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PermanentError: nil,
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Completed: nil,
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}
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return m[s]
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}
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type Replication struct {
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// lock protects all fields in this struct, but not the data behind pointers
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lock sync.Mutex
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state State
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fs string
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err error
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retryWaitUntil time.Time
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completed, pending []*ReplicationStep
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}
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func (f *Replication) State() State {
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f.lock.Lock()
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defer f.lock.Unlock()
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return f.state
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}
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func (f *Replication) UpdateSizeEsitmate(ctx context.Context, sender Sender) error {
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f.lock.Lock()
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defer f.lock.Unlock()
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for _, e := range f.pending {
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if err := e.updateSizeEstimate(ctx, sender); err != nil {
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return err
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}
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}
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return nil
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}
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type ReplicationBuilder struct {
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r *Replication
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}
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func BuildReplication(fs string) *ReplicationBuilder {
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return &ReplicationBuilder{&Replication{fs: fs}}
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}
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func (b *ReplicationBuilder) AddStep(from, to FilesystemVersion) *ReplicationBuilder {
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step := &ReplicationStep{
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state: StepReplicationReady,
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parent: b.r,
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from: from,
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to: to,
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}
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b.r.pending = append(b.r.pending, step)
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return b
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}
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func (b *ReplicationBuilder) Done() (r *Replication) {
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if len(b.r.pending) > 0 {
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b.r.state = Ready
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} else {
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b.r.state = Completed
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}
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r = b.r
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b.r = nil
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return r
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}
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func NewReplicationWithPermanentError(fs string, err error) *Replication {
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return &Replication{
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state: PermanentError,
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fs: fs,
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err: err,
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}
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}
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//go:generate stringer -type=StepState
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type StepState uint
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const (
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StepReplicationReady StepState = 1 << iota
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StepReplicationRetry
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StepMarkReplicatedReady
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StepMarkReplicatedRetry
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StepPermanentError
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StepCompleted
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)
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type FilesystemVersion interface {
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SnapshotTime() time.Time
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GetName() string // name without @ or #
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RelName() string // name with @ or #
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}
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type ReplicationStep struct {
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// only protects state, err
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// from, to and parent are assumed to be immutable
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lock sync.Mutex
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state StepState
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from, to FilesystemVersion
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parent *Replication
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// both retry and permanent error
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err error
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byteCounter *util.ByteCounterReader
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expectedSize int64
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}
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func (f *Replication) TakeStep(ctx context.Context, sender Sender, receiver Receiver) (post State, nextStepDate time.Time) {
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var u updater = func(fu func(*Replication)) State {
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f.lock.Lock()
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defer f.lock.Unlock()
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if fu != nil {
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fu(f)
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}
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return f.state
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}
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var s state = u(nil).fsrsf()
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pre := u(nil)
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preTime := time.Now()
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s = s(ctx, sender, receiver, u)
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delta := time.Now().Sub(preTime)
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post = u(func(f *Replication) {
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if len(f.pending) == 0 {
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return
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}
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nextStepDate = f.pending[0].to.SnapshotTime()
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})
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getLogger(ctx).
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WithField("fs", f.fs).
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WithField("transition", fmt.Sprintf("%s => %s", pre, post)).
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WithField("duration", delta).
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Debug("fsr step taken")
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return post, nextStepDate
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}
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type updater func(func(fsr *Replication)) State
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type state func(ctx context.Context, sender Sender, receiver Receiver, u updater) state
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var RetrySleepDuration = 10 * time.Second // FIXME make configurable
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func stateReady(ctx context.Context, sender Sender, receiver Receiver, u updater) state {
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var current *ReplicationStep
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s := u(func(f *Replication) {
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if len(f.pending) == 0 {
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f.state = Completed
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return
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}
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current = f.pending[0]
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})
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if s != Ready {
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return s.fsrsf()
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}
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stepState := current.doReplication(ctx, sender, receiver)
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return u(func(f *Replication) {
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switch stepState {
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case StepCompleted:
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f.completed = append(f.completed, current)
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f.pending = f.pending[1:]
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if len(f.pending) > 0 {
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f.state = Ready
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} else {
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f.state = Completed
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}
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case StepReplicationRetry:
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fallthrough
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case StepMarkReplicatedRetry:
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f.retryWaitUntil = time.Now().Add(RetrySleepDuration)
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f.state = RetryWait
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case StepPermanentError:
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f.state = PermanentError
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f.err = errors.New("a replication step failed with a permanent error")
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default:
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panic(f)
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}
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}).fsrsf()
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}
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func stateRetryWait(ctx context.Context, sender Sender, receiver Receiver, u updater) state {
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var sleepUntil time.Time
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u(func(f *Replication) {
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sleepUntil = f.retryWaitUntil
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})
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t := time.NewTimer(sleepUntil.Sub(time.Now()))
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defer t.Stop()
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select {
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case <-ctx.Done():
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return u(func(f *Replication) {
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f.state = PermanentError
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f.err = ctx.Err()
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}).fsrsf()
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case <-t.C:
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}
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return u(func(f *Replication) {
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f.state = Ready
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}).fsrsf()
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}
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func (fsr *Replication) Report() *Report {
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fsr.lock.Lock()
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defer fsr.lock.Unlock()
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rep := Report{
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Filesystem: fsr.fs,
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Status: fsr.state.String(),
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}
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if fsr.state&PermanentError != 0 {
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rep.Problem = fsr.err.Error()
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return &rep
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}
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rep.Completed = make([]*StepReport, len(fsr.completed))
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for i := range fsr.completed {
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rep.Completed[i] = fsr.completed[i].Report()
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}
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rep.Pending = make([]*StepReport, len(fsr.pending))
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for i := range fsr.pending {
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rep.Pending[i] = fsr.pending[i].Report()
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}
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return &rep
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}
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func shouldRetry(err error) bool {
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switch err {
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case io.EOF:
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fallthrough
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case io.ErrUnexpectedEOF:
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fallthrough
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case io.ErrClosedPipe:
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return true
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}
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if _, ok := err.(net.Error); ok {
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return true
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}
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return false
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}
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func (s *ReplicationStep) doReplication(ctx context.Context, sender Sender, receiver Receiver) StepState {
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fs := s.parent.fs
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log := getLogger(ctx).
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WithField("filesystem", fs).
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WithField("step", s.String())
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updateStateError := func(err error) StepState {
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s.lock.Lock()
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defer s.lock.Unlock()
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s.err = err
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if shouldRetry(s.err) {
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s.state = StepReplicationRetry
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return s.state
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}
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s.state = StepPermanentError
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return s.state
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}
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updateStateCompleted := func() StepState {
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s.lock.Lock()
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defer s.lock.Unlock()
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s.err = nil
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s.state = StepMarkReplicatedReady
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return s.state
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}
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sr := s.buildSendRequest(false)
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log.WithField("request", sr).Debug("initiate send request")
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sres, sstream, err := sender.Send(ctx, sr)
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if err != nil {
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log.WithError(err).Error("send request failed")
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return updateStateError(err)
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}
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if sstream == nil {
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err := errors.New("send request did not return a stream, broken endpoint implementation")
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return updateStateError(err)
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}
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s.byteCounter = util.NewByteCounterReader(sstream)
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sstream = s.byteCounter
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rr := &pdu.ReceiveReq{
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Filesystem: fs,
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ClearResumeToken: !sres.UsedResumeToken,
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}
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log.WithField("request", rr).Debug("initiate receive request")
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err = receiver.Receive(ctx, rr, sstream)
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if err != nil {
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log.WithError(err).Error("receive request failed (might also be error on sender)")
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sstream.Close()
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// This failure could be due to
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// - an unexpected exit of ZFS on the sending side
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// - an unexpected exit of ZFS on the receiving side
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// - a connectivity issue
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return updateStateError(err)
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}
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log.Info("receive finished")
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updateStateCompleted()
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return s.doMarkReplicated(ctx, sender)
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}
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func (s *ReplicationStep) doMarkReplicated(ctx context.Context, sender Sender) StepState {
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log := getLogger(ctx).
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WithField("filesystem", s.parent.fs).
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WithField("step", s.String())
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updateStateError := func(err error) StepState {
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s.lock.Lock()
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defer s.lock.Unlock()
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s.err = err
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if shouldRetry(s.err) {
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s.state = StepMarkReplicatedRetry
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return s.state
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}
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s.state = StepPermanentError
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return s.state
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}
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updateStateCompleted := func() StepState {
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s.lock.Lock()
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defer s.lock.Unlock()
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s.state = StepCompleted
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return s.state
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}
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log.Info("mark snapshot as replicated")
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req := pdu.SnapshotReplicationStatusReq{
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Filesystem: s.parent.fs,
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Snapshot: s.to.GetName(),
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Op: pdu.SnapshotReplicationStatusReq_SetReplicated,
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}
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res, err := sender.SnapshotReplicationStatus(ctx, &req)
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if err != nil {
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log.WithError(err).Error("error marking snapshot as replicated")
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return updateStateError(err)
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}
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if res.Replicated != true {
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err := fmt.Errorf("sender did not report snapshot as replicated")
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log.Error(err.Error())
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return updateStateError(err)
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}
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return updateStateCompleted()
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}
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func (s *ReplicationStep) updateSizeEstimate(ctx context.Context, sender Sender) error {
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fs := s.parent.fs
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log := getLogger(ctx).
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WithField("filesystem", fs).
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WithField("step", s.String())
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sr := s.buildSendRequest(true)
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log.WithField("request", sr).Debug("initiate dry run send request")
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sres, _, err := sender.Send(ctx, sr)
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if err != nil {
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log.WithError(err).Error("dry run send request failed")
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}
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s.expectedSize = sres.ExpectedSize
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return nil
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}
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func (s *ReplicationStep) buildSendRequest(dryRun bool) (sr *pdu.SendReq) {
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fs := s.parent.fs
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if s.from == nil {
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sr = &pdu.SendReq{
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Filesystem: fs,
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From: s.to.RelName(), // FIXME fix protocol to use To, like zfs does internally
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DryRun: dryRun,
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}
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} else {
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sr = &pdu.SendReq{
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Filesystem: fs,
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From: s.from.RelName(),
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To: s.to.RelName(),
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DryRun: dryRun,
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}
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}
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return sr
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}
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func (s *ReplicationStep) String() string {
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if s.from == nil { // FIXME: ZFS semantics are that to is nil on non-incremental send
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return fmt.Sprintf("%s%s (full)", s.parent.fs, s.to.RelName())
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} else {
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return fmt.Sprintf("%s(%s => %s)", s.parent.fs, s.from, s.to.RelName())
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}
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}
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func (s *ReplicationStep) Report() *StepReport {
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var from string // FIXME follow same convention as ZFS: to should be nil on full send
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if s.from != nil {
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from = s.from.RelName()
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}
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bytes := int64(0)
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if s.byteCounter != nil {
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bytes = s.byteCounter.Bytes()
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}
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rep := StepReport{
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From: from,
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To: s.to.RelName(),
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Status: s.state.String(),
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Bytes: bytes,
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ExpectedBytes: s.expectedSize,
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}
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return &rep
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}
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