feat: add Deployment, Strategy, Operation primitives to compose service deployments

This commit is contained in:
Pavel Sviderski
2025-02-12 21:17:30 +10:00
parent f209851986
commit 9859be50a6
2 changed files with 180 additions and 4 deletions
+177
View File
@@ -0,0 +1,177 @@
package client
import (
"context"
"errors"
"fmt"
"uncloud/internal/api"
)
// Strategy defines how a service should be deployed or updated. Different implementations can provide various
// deployment patterns such as rolling updates, blue/green deployments, etc.
type Strategy interface {
// Plan returns the operation to reconcile the service to the desired state.
// If the service does not exist (new deployment), svc will be nil.
Plan(ctx context.Context, cli *Client, svc *api.Service, spec api.ServiceSpec) (Operation, error)
}
// Operation represents a single atomic operation in a deployment process.
// Operations can be composed to form complex deployment strategies.
type Operation interface {
Execute(ctx context.Context, cli *Client) error
}
// Deployment manages the process of creating or updating a service to match a desired state.
// It coordinates the validation, planning, and execution of deployment operations.
type Deployment struct {
Service *api.Service
Spec api.ServiceSpec
Strategy Strategy
cli *Client
plan Operation
}
// NewDeployment creates a new deployment for the given service specification.
// If strategy is nil, a default RollingStrategy will be used.
func (cli *Client) NewDeployment(spec api.ServiceSpec, strategy Strategy) (*Deployment, error) {
if strategy == nil {
strategy = &RollingStrategy{}
}
return &Deployment{
Spec: spec,
Strategy: strategy,
cli: cli,
}, nil
}
// Plan returns a plan of operations to reconcile the service to the desired state.
// If a plan has already been created, the same plan will be returned.
func (d *Deployment) Plan(ctx context.Context) (Operation, error) {
if d.plan != nil {
return d.plan, nil
}
// Validate the new spec before planning.
if err := d.Validate(ctx); err != nil {
return nil, fmt.Errorf("invalid deployment: %w", err)
}
plan, err := d.Strategy.Plan(ctx, d.cli, d.Service, d.Spec)
if err != nil {
return nil, fmt.Errorf("create plan using %T: %w", d.Strategy, err)
}
d.plan = plan
return plan, nil
}
// Validate checks if the deployment specification is valid.
func (d *Deployment) Validate(ctx context.Context) error {
if err := d.Spec.Validate(); err != nil {
return fmt.Errorf("invalid service spec: %w", err)
}
if d.Service == nil && d.Spec.Name != "" {
svc, err := d.cli.InspectService(ctx, d.Spec.Name)
if err == nil {
d.Service = &svc
} else if !errors.Is(err, ErrNotFound) {
return fmt.Errorf("inspect service: %w", err)
}
}
// d.Service will be nil if the service doesn't exist yet (first deployment).
if d.Service == nil {
return nil
}
fmt.Printf("Service: %v\n", d.Service)
if d.Service.Name != d.Spec.Name {
return errors.New("service name cannot be changed")
}
if d.Service.Mode != d.Spec.Mode {
return errors.New("service mode cannot be changed")
}
return nil
}
// Run executes the deployment plan. It will create a new plan if one hasn't been created yet.
// The deployment will either create a new service or update an existing one to match the desired specification.
func (d *Deployment) Run(ctx context.Context) error {
// TODO: create or get the plan, and run it.
return nil
}
// RollingStrategy implements a rolling update deployment pattern where containers are updated one at a time
// to minimize service disruption.
type RollingStrategy struct{}
func (s *RollingStrategy) Plan(
ctx context.Context, cli *Client, svc *api.Service, spec api.ServiceSpec,
) (Operation, error) {
switch spec.Mode {
case "", api.ServiceModeReplicated:
return s.planReplicated(ctx, cli, svc, spec)
case api.ServiceModeGlobal:
return s.planGlobal(ctx, cli, svc, spec)
default:
return nil, fmt.Errorf("unsupported service mode: %s", spec.Mode)
}
}
// planReplicated creates a plan for a replicated service deployment.
func (s *RollingStrategy) planReplicated(
ctx context.Context, cli *Client, svc *api.Service, spec api.ServiceSpec,
) (Operation, error) {
return nil, errors.New("not implemented")
}
// planGlobal creates a plan for a global service deployment.
func (s *RollingStrategy) planGlobal(
ctx context.Context, cli *Client, svc *api.Service, spec api.ServiceSpec,
) (Operation, error) {
// TODO
// - Prepare a map of machineID to the current container
// - Fetch a list of existing machines
// - For each machine, check if there is a container on it
// - If doesn't exist, add a RunContainerOperation
// - If exists, check if there are host port bindings that conflict with the new spec
// - If there are conflicts, add a RemoveContainerOperation and a RunContainerOperation
// - If there are no conflicts, add a RunContainerOperation and a RemoveContainerOperation
return nil, errors.New("not implemented")
}
// RunContainerOperation creates and starts a new container on a specific machine.
type RunContainerOperation struct {
Spec api.ServiceSpec
MachineID string
}
func (o *RunContainerOperation) Execute(ctx context.Context, cli *Client) error {
return nil
}
// RemoveContainerOperation stops and removes a container from a specific machine.
type RemoveContainerOperation struct {
ContainerID string
MachineID string
}
func (o *RemoveContainerOperation) Execute(ctx context.Context, cli *Client) error {
return nil
}
// SequenceOperation is a composite operation that executes a sequence of operations in order.
type SequenceOperation struct {
Operations []Operation
}
func (o *SequenceOperation) Execute(ctx context.Context, cli *Client) error {
for _, op := range o.Operations {
if err := op.Execute(ctx, cli); err != nil {
return err
}
}
return nil
}