mirror of
https://github.com/psviderski/uncloud.git
synced 2026-08-26 19:13:34 +00:00
feat(replicas): implement rolling strategy for replicated service with basic spread strategy
This commit is contained in:
@@ -2,8 +2,8 @@ package client
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import (
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"context"
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"errors"
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"fmt"
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"math/rand/v2"
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"slices"
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"uncloud/internal/api"
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"uncloud/internal/machine/api/pb"
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@@ -23,7 +23,7 @@ type Strategy interface {
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// RollingStrategy implements a rolling update deployment pattern where containers are updated one at a time
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// to minimize service disruption.
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type RollingStrategy struct {
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// MachineFilter optionally restricts which machines participate in this deployment.
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// MachineFilter optionally restricts which machines can be used for deployment.
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MachineFilter MachineFilter
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}
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@@ -35,7 +35,7 @@ func (s *RollingStrategy) Plan(
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ctx context.Context, cli *Client, svc *api.Service, spec api.ServiceSpec,
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) (Plan, error) {
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switch spec.Mode {
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case "", api.ServiceModeReplicated:
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case api.ServiceModeReplicated:
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return s.planReplicated(ctx, cli, svc, spec)
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case api.ServiceModeGlobal:
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return s.planGlobal(ctx, cli, svc, spec)
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@@ -45,10 +45,165 @@ func (s *RollingStrategy) Plan(
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}
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// planReplicated creates a plan for a replicated service deployment.
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// For replicated services, we want to maintain a specific number of containers (replicas) across the available machines
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// in the cluster.
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func (s *RollingStrategy) planReplicated(
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ctx context.Context, cli *Client, svc *api.Service, spec api.ServiceSpec,
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) (Plan, error) {
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return Plan{}, errors.New("not implemented")
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var plan Plan
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// Generate a new service ID for the first service deployment if it doesn't exist yet.
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if svc != nil {
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plan.ServiceID = svc.ID
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} else {
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var err error
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plan.ServiceID, err = secret.NewID()
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if err != nil {
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return plan, fmt.Errorf("generate service ID: %w", err)
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}
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}
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machines, err := cli.ListMachines(ctx)
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if err != nil {
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return plan, fmt.Errorf("list machines: %w", err)
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}
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// Filter machines that are not DOWN and match the machine filter if provided.
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var availableMachines []*pb.MachineInfo
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var unmatchedMachines []*pb.MachineInfo
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var downMachines []*pb.MachineInfo
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for _, m := range machines {
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if m.State == pb.MachineMember_DOWN {
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downMachines = append(downMachines, m.Machine)
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} else {
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if s.MachineFilter == nil || s.MachineFilter(m.Machine) {
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availableMachines = append(availableMachines, m.Machine)
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} else {
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unmatchedMachines = append(unmatchedMachines, m.Machine)
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}
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}
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}
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if len(availableMachines) == 0 {
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if s.MachineFilter != nil {
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return plan, ErrNoMatchingMachines
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}
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return plan, fmt.Errorf("no available machines to deploy service")
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}
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// Randomise the order of machines to avoid always deploying to the same machines first.
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rand.Shuffle(len(availableMachines), func(i, j int) {
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availableMachines[i], availableMachines[j] = availableMachines[j], availableMachines[i]
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})
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// Organise existing containers by machine.
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containersOnMachine := make(map[string][]api.Container)
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machineHasUpToDateContainer := make(map[string]bool)
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if svc != nil {
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runningSpecs := make(map[string]api.ServiceSpec)
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for _, c := range svc.Containers {
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if !c.Container.State.Running || c.Container.State.Paused {
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// Skip containers that are not running.
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continue
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}
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cs, err := c.Container.ServiceSpec()
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if err == nil {
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runningSpecs[c.Container.ID] = cs
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if cs.Equals(spec) {
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machineHasUpToDateContainer[c.MachineID] = true
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}
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}
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}
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// Sort containers such that containers with the desired spec are first.
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slices.SortFunc(svc.Containers, func(c1, c2 api.MachineContainer) int {
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if spec1, ok := runningSpecs[c1.Container.ID]; ok && spec1.Equals(spec) {
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return -1
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}
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if spec2, ok := runningSpecs[c2.Container.ID]; ok && spec2.Equals(spec) {
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return 1
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}
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return 0
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})
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for _, c := range svc.Containers {
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containersOnMachine[c.MachineID] = append(containersOnMachine[c.MachineID], c.Container)
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}
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// Sort machines such that machines with containers that match the desired spec are first, followed by machines
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// with existing containers, and finally machines without containers.
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slices.SortFunc(availableMachines, func(m1, m2 *pb.MachineInfo) int {
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if machineHasUpToDateContainer[m1.Id] {
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return -1
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}
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if machineHasUpToDateContainer[m2.Id] {
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return 1
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}
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return len(containersOnMachine[m2.Id]) - len(containersOnMachine[m1.Id])
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})
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}
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// Spread the containers across the available machines evenly using a simple round-robin approach, starting with
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// machines that already have containers and prioritising machines with containers that match the desired spec.
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for i := 0; i < int(spec.Replicas); i++ {
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m := availableMachines[i%len(availableMachines)]
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containers := containersOnMachine[m.Id]
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if len(containers) == 0 {
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// No more existing containers on this machine, create a new one.
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plan.Operations = append(plan.Operations, &RunContainerOperation{
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ServiceID: plan.ServiceID,
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Spec: spec,
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MachineID: m.Id,
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})
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continue
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}
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ctr := containers[0]
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containersOnMachine[m.Id] = containers[1:]
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if ctr.State.Running {
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ctrSpec, specErr := ctr.ServiceSpec()
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if specErr == nil && ctrSpec.Equals(spec) {
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continue
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}
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conflictingPorts, portsErr := ctr.ConflictingServicePorts(spec.Ports)
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if specErr != nil || portsErr != nil || len(conflictingPorts) > 0 {
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// Stop the malformed container or the container with conflicting ports.
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plan.Operations = append(plan.Operations, &StopContainerOperation{
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ServiceID: plan.ServiceID,
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ContainerID: ctr.ID,
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MachineID: m.Id,
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})
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}
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}
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// Run a new container.
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plan.Operations = append(plan.Operations, &RunContainerOperation{
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ServiceID: plan.ServiceID,
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Spec: spec,
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MachineID: m.Id,
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})
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// Remove the old container.
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plan.Operations = append(plan.Operations, &RemoveContainerOperation{
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ServiceID: plan.ServiceID,
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ContainerID: ctr.ID,
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MachineID: m.Id,
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})
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}
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// Remove any remaining containers that are not needed.
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for mid, containers := range containersOnMachine {
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for _, c := range containers {
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plan.Operations = append(plan.Operations, &RemoveContainerOperation{
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ServiceID: plan.ServiceID,
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ContainerID: c.ID,
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MachineID: mid,
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})
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}
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}
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return plan, nil
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}
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// planGlobal creates a plan for a global service deployment, ensuring one container runs on each available machine.
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@@ -83,6 +238,9 @@ func (s *RollingStrategy) planGlobal(
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return plan, fmt.Errorf("list machines: %w", err)
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}
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// Filter machines if a machine filter is provided.
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// TODO: not sure this is the right behaviour to ignore other machines that might run service containers.
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// Maybe there should be another filter to specify which machines to deploy to but keep the rest running.
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// Could be useful to test a new version on a subset of machines before rolling out to all.
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if s.MachineFilter != nil {
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machines = slices.DeleteFunc(machines, func(m *pb.MachineMember) bool {
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return !s.MachineFilter(m.Machine)
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@@ -107,7 +265,7 @@ func (s *RollingStrategy) planGlobal(
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if err != nil {
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return plan, err
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}
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plan.SequenceOperation.Operations = append(plan.SequenceOperation.Operations, ops...)
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plan.Operations = append(plan.Operations, ops...)
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}
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return plan, nil
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