4a70d4356a
An auth token is required if ACLs are enabled
549 lines
15 KiB
Go
549 lines
15 KiB
Go
package client
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import (
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"archive/tar"
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"context"
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"fmt"
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"io"
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"log"
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"os"
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"path/filepath"
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"sync"
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"time"
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"github.com/hashicorp/consul/lib"
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nomadapi "github.com/hashicorp/nomad/api"
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"github.com/hashicorp/nomad/client/allocdir"
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"github.com/hashicorp/nomad/client/config"
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cstructs "github.com/hashicorp/nomad/client/structs"
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"github.com/hashicorp/nomad/nomad/structs"
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)
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// rpcer is the interface needed by a prevAllocWatcher to make RPC calls.
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type rpcer interface {
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// RPC allows retrieving remote allocs.
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RPC(method string, args interface{}, reply interface{}) error
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}
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// terminated is the interface needed by a prevAllocWatcher to check if an
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// alloc is terminated.
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type terminated interface {
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Terminated() bool
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}
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// prevAllocWatcher allows AllocRunners to wait for a previous allocation to
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// terminate and migrate its data whether or not the previous allocation is
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// local or remote.
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type prevAllocWatcher interface {
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// Wait for previous alloc to terminate
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Wait(context.Context) error
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// Migrate data from previous alloc
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Migrate(ctx context.Context, dest *allocdir.AllocDir) error
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// IsWaiting returns true if a concurrent caller is blocked in Wait
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IsWaiting() bool
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// IsMigrating returns true if a concurrent caller is in Migrate
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IsMigrating() bool
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}
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// newAllocWatcher creates a prevAllocWatcher appropriate for whether this
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// alloc's previous allocation was local or remote. If this alloc has no
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// previous alloc then a noop implementation is returned.
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func newAllocWatcher(alloc *structs.Allocation, prevAR *AllocRunner, rpc rpcer, config *config.Config, l *log.Logger, migrateToken string) prevAllocWatcher {
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if alloc.PreviousAllocation == "" {
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// No previous allocation, use noop transitioner
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return noopPrevAlloc{}
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}
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tg := alloc.Job.LookupTaskGroup(alloc.TaskGroup)
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if prevAR != nil {
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// Previous allocation is local, use local transitioner
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return &localPrevAlloc{
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allocID: alloc.ID,
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prevAllocID: alloc.PreviousAllocation,
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tasks: tg.Tasks,
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sticky: tg.EphemeralDisk != nil && tg.EphemeralDisk.Sticky,
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prevAllocDir: prevAR.GetAllocDir(),
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prevListener: prevAR.GetListener(),
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prevWaitCh: prevAR.WaitCh(),
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prevStatus: prevAR.Alloc(),
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logger: l,
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}
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}
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return &remotePrevAlloc{
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allocID: alloc.ID,
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prevAllocID: alloc.PreviousAllocation,
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tasks: tg.Tasks,
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config: config,
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migrate: tg.EphemeralDisk != nil && tg.EphemeralDisk.Migrate,
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rpc: rpc,
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logger: l,
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migrateToken: migrateToken,
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}
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}
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// localPrevAlloc is a prevAllocWatcher for previous allocations on the same
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// node as an updated allocation.
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type localPrevAlloc struct {
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// allocID is the ID of the alloc being blocked
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allocID string
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// prevAllocID is the ID of the alloc being replaced
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prevAllocID string
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// tasks on the new alloc
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tasks []*structs.Task
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// sticky is true if data should be moved
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sticky bool
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// prevAllocDir is the alloc dir for the previous alloc
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prevAllocDir *allocdir.AllocDir
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// prevListener allows blocking for updates to the previous alloc
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prevListener *cstructs.AllocListener
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// prevStatus allows checking if the previous alloc has already
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// terminated (and therefore won't send updates to the listener)
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prevStatus terminated
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// prevWaitCh is closed when the previous alloc is garbage collected
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// which is a failsafe against blocking the new alloc forever
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prevWaitCh <-chan struct{}
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// waiting and migrating are true when alloc runner is waiting on the
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// prevAllocWatcher. Writers must acquire the waitingLock and readers
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// should use the helper methods IsWaiting and IsMigrating.
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waiting bool
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migrating bool
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waitingLock sync.RWMutex
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logger *log.Logger
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}
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// IsWaiting returns true if there's a concurrent call inside Wait
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func (p *localPrevAlloc) IsWaiting() bool {
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p.waitingLock.RLock()
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b := p.waiting
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p.waitingLock.RUnlock()
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return b
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}
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// IsMigrating returns true if there's a concurrent call inside Migrate
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func (p *localPrevAlloc) IsMigrating() bool {
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p.waitingLock.RLock()
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b := p.migrating
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p.waitingLock.RUnlock()
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return b
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}
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// Wait on a local alloc to become terminal, exit, or the context to be done.
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func (p *localPrevAlloc) Wait(ctx context.Context) error {
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p.waitingLock.Lock()
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p.waiting = true
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p.waitingLock.Unlock()
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defer func() {
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p.waitingLock.Lock()
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p.waiting = false
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p.waitingLock.Unlock()
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}()
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defer p.prevListener.Close()
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if p.prevStatus.Terminated() {
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// Fast path - previous alloc already terminated!
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return nil
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}
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// Block until previous alloc exits
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p.logger.Printf("[DEBUG] client: alloc %q waiting for previous alloc %q to terminate", p.allocID, p.prevAllocID)
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for {
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select {
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case prevAlloc, ok := <-p.prevListener.Ch:
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if !ok || prevAlloc.Terminated() {
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return nil
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}
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case <-p.prevWaitCh:
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return nil
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case <-ctx.Done():
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return ctx.Err()
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}
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}
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}
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// Migrate from previous local alloc dir to destination alloc dir.
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func (p *localPrevAlloc) Migrate(ctx context.Context, dest *allocdir.AllocDir) error {
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if !p.sticky {
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// Not a sticky volume, nothing to migrate
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return nil
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}
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p.waitingLock.Lock()
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p.migrating = true
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p.waitingLock.Unlock()
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defer func() {
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p.waitingLock.Lock()
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p.migrating = false
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p.waitingLock.Unlock()
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}()
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p.logger.Printf("[DEBUG] client: alloc %q copying previous alloc %q", p.allocID, p.prevAllocID)
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moveErr := dest.Move(p.prevAllocDir, p.tasks)
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// Always cleanup previous alloc
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if err := p.prevAllocDir.Destroy(); err != nil {
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p.logger.Printf("[ERR] client: error destroying allocdir %v: %v", p.prevAllocDir.AllocDir, err)
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}
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return moveErr
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}
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// remotePrevAlloc is a prevAllcWatcher for previous allocations on remote
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// nodes as an updated allocation.
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type remotePrevAlloc struct {
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// allocID is the ID of the alloc being blocked
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allocID string
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// prevAllocID is the ID of the alloc being replaced
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prevAllocID string
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// tasks on the new alloc
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tasks []*structs.Task
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// config for the Client to get AllocDir, Region, and Node.SecretID
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config *config.Config
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// migrate is true if data should be moved between nodes
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migrate bool
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// rpc provides an RPC method for watching for updates to the previous
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// alloc and determining what node it was on.
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rpc rpcer
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// nodeID is the node the previous alloc. Set by Wait() for use in
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// Migrate() iff the previous alloc has not already been GC'd.
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nodeID string
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// waiting and migrating are true when alloc runner is waiting on the
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// prevAllocWatcher. Writers must acquire the waitingLock and readers
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// should use the helper methods IsWaiting and IsMigrating.
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waiting bool
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migrating bool
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waitingLock sync.RWMutex
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logger *log.Logger
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// migrateToken allows a client to migrate data in an ACL-protected remote
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// volume
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migrateToken string
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}
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// IsWaiting returns true if there's a concurrent call inside Wait
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func (p *remotePrevAlloc) IsWaiting() bool {
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p.waitingLock.RLock()
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b := p.waiting
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p.waitingLock.RUnlock()
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return b
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}
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// IsMigrating returns true if there's a concurrent call inside Migrate
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func (p *remotePrevAlloc) IsMigrating() bool {
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p.waitingLock.RLock()
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b := p.migrating
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p.waitingLock.RUnlock()
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return b
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}
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// Wait until the remote previousl allocation has terminated.
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func (p *remotePrevAlloc) Wait(ctx context.Context) error {
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p.waitingLock.Lock()
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p.waiting = true
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p.waitingLock.Unlock()
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defer func() {
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p.waitingLock.Lock()
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p.waiting = false
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p.waitingLock.Unlock()
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}()
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p.logger.Printf("[DEBUG] client: alloc %q waiting for remote previous alloc %q to terminate", p.allocID, p.prevAllocID)
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req := structs.AllocSpecificRequest{
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AllocID: p.prevAllocID,
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QueryOptions: structs.QueryOptions{
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Region: p.config.Region,
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AllowStale: true,
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AuthToken: p.config.Node.SecretID,
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},
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}
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done := func() bool {
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select {
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case <-ctx.Done():
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return true
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default:
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return false
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}
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}
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for !done() {
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resp := structs.SingleAllocResponse{}
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err := p.rpc.RPC("Alloc.GetAlloc", &req, &resp)
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if err != nil {
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p.logger.Printf("[ERR] client: failed to query previous alloc %q: %v", p.prevAllocID, err)
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retry := getAllocRetryIntv + lib.RandomStagger(getAllocRetryIntv)
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select {
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case <-time.After(retry):
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continue
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case <-ctx.Done():
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return ctx.Err()
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}
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}
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if resp.Alloc == nil {
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p.logger.Printf("[DEBUG] client: blocking alloc %q has been GC'd", p.prevAllocID)
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return nil
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}
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if resp.Alloc.Terminated() {
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// Terminated!
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p.nodeID = resp.Alloc.NodeID
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return nil
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}
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// Update the query index and requery.
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if resp.Index > req.MinQueryIndex {
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req.MinQueryIndex = resp.Index
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}
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}
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return ctx.Err()
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}
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// Migrate alloc data from a remote node if the new alloc has migration enabled
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// and the old alloc hasn't been GC'd.
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func (p *remotePrevAlloc) Migrate(ctx context.Context, dest *allocdir.AllocDir) error {
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if !p.migrate {
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// Volume wasn't configured to be migrated, return early
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return nil
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}
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p.waitingLock.Lock()
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p.migrating = true
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p.waitingLock.Unlock()
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defer func() {
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p.waitingLock.Lock()
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p.migrating = false
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p.waitingLock.Unlock()
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}()
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p.logger.Printf("[DEBUG] client: alloc %q copying from remote previous alloc %q", p.allocID, p.prevAllocID)
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if p.nodeID == "" {
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// NodeID couldn't be found; likely alloc was GC'd
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p.logger.Printf("[WARN] client: alloc %q couldn't migrate data from previous alloc %q; previous alloc may have been GC'd",
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p.allocID, p.prevAllocID)
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return nil
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}
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addr, err := p.getNodeAddr(ctx, p.nodeID)
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if err != nil {
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return err
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}
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prevAllocDir, err := p.migrateAllocDir(ctx, addr)
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if err != nil {
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return err
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}
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if err := dest.Move(prevAllocDir, p.tasks); err != nil {
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// cleanup on error
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prevAllocDir.Destroy()
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return err
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}
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if err := prevAllocDir.Destroy(); err != nil {
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p.logger.Printf("[ERR] client: error destroying allocdir %q: %v", prevAllocDir.AllocDir, err)
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}
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return nil
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}
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// getNodeAddr gets the node from the server with the given Node ID
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func (p *remotePrevAlloc) getNodeAddr(ctx context.Context, nodeID string) (string, error) {
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req := structs.NodeSpecificRequest{
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NodeID: nodeID,
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QueryOptions: structs.QueryOptions{
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Region: p.config.Region,
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AllowStale: true,
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AuthToken: p.config.Node.SecretID,
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},
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}
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resp := structs.SingleNodeResponse{}
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for {
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err := p.rpc.RPC("Node.GetNode", &req, &resp)
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if err != nil {
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p.logger.Printf("[ERR] client: failed to query node info %q: %v", nodeID, err)
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retry := getAllocRetryIntv + lib.RandomStagger(getAllocRetryIntv)
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select {
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case <-time.After(retry):
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continue
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case <-ctx.Done():
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return "", ctx.Err()
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}
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}
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break
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}
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if resp.Node == nil {
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return "", fmt.Errorf("node %q not found", nodeID)
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}
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scheme := "http://"
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if resp.Node.TLSEnabled {
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scheme = "https://"
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}
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return scheme + resp.Node.HTTPAddr, nil
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}
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// migrate a remote alloc dir to local node. Caller is responsible for calling
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// Destroy on the returned allocdir if no error occurs.
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func (p *remotePrevAlloc) migrateAllocDir(ctx context.Context, nodeAddr string) (*allocdir.AllocDir, error) {
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// Create the previous alloc dir
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prevAllocDir := allocdir.NewAllocDir(p.logger, filepath.Join(p.config.AllocDir, p.prevAllocID))
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if err := prevAllocDir.Build(); err != nil {
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return nil, fmt.Errorf("error building alloc dir for previous alloc %q: %v", p.prevAllocID, err)
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}
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// Create an API client
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apiConfig := nomadapi.DefaultConfig()
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apiConfig.Address = nodeAddr
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apiConfig.TLSConfig = &nomadapi.TLSConfig{
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CACert: p.config.TLSConfig.CAFile,
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ClientCert: p.config.TLSConfig.CertFile,
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ClientKey: p.config.TLSConfig.KeyFile,
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}
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apiClient, err := nomadapi.NewClient(apiConfig)
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if err != nil {
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return nil, err
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}
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url := fmt.Sprintf("/v1/client/allocation/%v/snapshot", p.prevAllocID)
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qo := &nomadapi.QueryOptions{AuthToken: p.migrateToken}
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resp, err := apiClient.Raw().Response(url, qo)
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if err != nil {
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prevAllocDir.Destroy()
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return nil, fmt.Errorf("error getting snapshot from previous alloc %q: %v", p.prevAllocID, err)
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}
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if err := p.streamAllocDir(ctx, resp, prevAllocDir.AllocDir); err != nil {
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prevAllocDir.Destroy()
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return nil, err
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}
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return prevAllocDir, nil
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}
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// stream remote alloc to dir to a local path. Caller should cleanup dest on
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// error.
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func (p *remotePrevAlloc) streamAllocDir(ctx context.Context, resp io.ReadCloser, dest string) error {
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p.logger.Printf("[DEBUG] client: alloc %q streaming snapshot of previous alloc %q to %q", p.allocID, p.prevAllocID, dest)
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tr := tar.NewReader(resp)
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defer resp.Close()
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canceled := func() bool {
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select {
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case <-ctx.Done():
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p.logger.Printf("[INFO] client: stopping migration of previous alloc %q for new alloc: %v",
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p.prevAllocID, p.allocID)
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return true
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default:
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return false
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}
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}
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buf := make([]byte, 1024)
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for !canceled() {
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// Get the next header
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hdr, err := tr.Next()
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// Snapshot has ended
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if err == io.EOF {
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return nil
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}
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if err != nil {
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return fmt.Errorf("error streaming previous alloc %q for new alloc %q: %v",
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p.prevAllocID, p.allocID, err)
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}
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// If the header is for a directory we create the directory
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if hdr.Typeflag == tar.TypeDir {
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os.MkdirAll(filepath.Join(dest, hdr.Name), os.FileMode(hdr.Mode))
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continue
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}
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// If the header is for a symlink we create the symlink
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if hdr.Typeflag == tar.TypeSymlink {
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if err = os.Symlink(hdr.Linkname, filepath.Join(dest, hdr.Name)); err != nil {
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return fmt.Errorf("error creating symlink: %v", err)
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}
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continue
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}
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// If the header is a file, we write to a file
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if hdr.Typeflag == tar.TypeReg {
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f, err := os.Create(filepath.Join(dest, hdr.Name))
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if err != nil {
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return fmt.Errorf("error creating file: %v", err)
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}
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// Setting the permissions of the file as the origin.
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if err := f.Chmod(os.FileMode(hdr.Mode)); err != nil {
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f.Close()
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return fmt.Errorf("error chmoding file %v", err)
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}
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if err := f.Chown(hdr.Uid, hdr.Gid); err != nil {
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f.Close()
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return fmt.Errorf("error chowning file %v", err)
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}
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// We write in chunks so that we can test if the client
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// is still alive
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for !canceled() {
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n, err := tr.Read(buf)
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if err != nil {
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f.Close()
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if err != io.EOF {
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return fmt.Errorf("error reading snapshot: %v", err)
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}
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break
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}
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if _, err := f.Write(buf[:n]); err != nil {
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f.Close()
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return fmt.Errorf("error writing to file %q: %v", f.Name(), err)
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}
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}
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}
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}
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if canceled() {
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return ctx.Err()
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}
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return nil
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}
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// noopPrevAlloc does not block or migrate on a previous allocation and never
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// returns an error.
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type noopPrevAlloc struct{}
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// Wait returns nil immediately.
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func (noopPrevAlloc) Wait(context.Context) error { return nil }
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// Migrate returns nil immediately.
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func (noopPrevAlloc) Migrate(context.Context, *allocdir.AllocDir) error { return nil }
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func (noopPrevAlloc) IsWaiting() bool { return false }
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func (noopPrevAlloc) IsMigrating() bool { return false }
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