mirror of
https://github.com/Rain-kl/OpenFlare.git
synced 2026-09-29 14:06:36 +08:00
563 lines
13 KiB
Go
563 lines
13 KiB
Go
// Copyright 2026 Arctel.net
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// SPDX-License-Identifier: Apache-2.0
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package core
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import (
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"context"
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"errors"
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"fmt"
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"os"
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"os/signal"
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"strings"
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"sync"
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"syscall"
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"time"
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)
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const (
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defaultShutdownTimeout = 10 * time.Second
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)
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// AppOption configures an App instance during construction.
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type AppOption func(*App)
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// WithContext sets a custom root Context for the App.
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func WithContext(ctx *Context) AppOption {
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return func(a *App) {
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if ctx != nil {
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a.ctx = ctx
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}
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}
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}
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// WithProfile sets the runtime profile for the App.
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func WithProfile(profile Profile) AppOption {
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return func(a *App) {
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a.profile = normalizeProfile(profile)
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}
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}
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// WithPlugins registers initial plugins for the App.
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func WithPlugins(plugins ...Plugin) AppOption {
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return func(a *App) {
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a.Use(plugins...)
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}
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}
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// WithMigrationEngine sets the database migration engine for the App.
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func WithMigrationEngine(engine MigrationEngine) AppOption {
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return func(a *App) {
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a.migrationEngine = engine
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}
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}
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// WithMigrationRunner sets the migration runner function for the App.
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func WithMigrationRunner(runner MigrationRunner) AppOption {
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return func(a *App) {
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a.migrationEngine = runner
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}
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}
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// WithShutdownTimeout sets the fallback timeout for graceful application shutdown.
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func WithShutdownTimeout(timeout time.Duration) AppOption {
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return func(a *App) {
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if timeout > 0 {
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a.shutdownTimeout = timeout
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}
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}
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}
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// App is the unified assembly entrypoint and runtime aspect dispatcher of the Cordis micro-kernel.
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// It manages plugin collection, dependency mounting, migration execution, profile-based driver startup,
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// and graceful signal-driven LIFO shutdown.
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type App struct {
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mu sync.RWMutex
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ctx *Context
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profile Profile
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plugins []Plugin
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pluginMap map[string]Plugin
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fibers []*Fiber
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fiberMap map[string]*Fiber
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applied bool
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running bool
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startedDrivers []Driver
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migrationEngine MigrationEngine
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shutdownTimeout time.Duration
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}
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// NewApp creates a new Cordis application instance with default options.
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func NewApp(opts ...AppOption) *App {
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app := &App{
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ctx: NewContext(context.Background()),
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profile: ProfileAll,
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pluginMap: make(map[string]Plugin),
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fiberMap: make(map[string]*Fiber),
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shutdownTimeout: defaultShutdownTimeout,
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}
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for _, opt := range opts {
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if opt != nil {
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opt(app)
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}
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}
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return app
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}
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// Context returns the root micro-kernel Context of the application.
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func (a *App) Context() *Context {
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return a.ctx
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}
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// Profile returns the current runtime profile of the application.
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func (a *App) Profile() Profile {
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a.mu.RLock()
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defer a.mu.RUnlock()
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return a.profile
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}
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// WithProfile sets the application runtime profile and returns the App for fluent chaining.
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func (a *App) WithProfile(profile Profile) *App {
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a.mu.Lock()
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defer a.mu.Unlock()
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a.profile = normalizeProfile(profile)
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return a
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}
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// SetProfile sets the application runtime profile.
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func (a *App) SetProfile(profile Profile) *App {
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return a.WithProfile(profile)
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}
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// Use registers one or more plugins into the application in registration order.
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// Duplicate plugins (by Name) update existing registrations in-place to preserve order.
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func (a *App) Use(plugins ...Plugin) *App {
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a.mu.Lock()
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defer a.mu.Unlock()
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for _, p := range plugins {
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if p == nil {
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continue
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}
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name := p.Name()
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if name == "" {
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continue
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}
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if _, exists := a.pluginMap[name]; exists {
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for i, existing := range a.plugins {
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if existing.Name() == name {
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a.plugins[i] = p
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break
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}
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}
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if existingFiber, ok := a.fiberMap[name]; ok {
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existingFiber.plugin = p
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}
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} else {
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a.plugins = append(a.plugins, p)
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f := NewFiber(a.ctx, p)
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a.fibers = append(a.fibers, f)
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a.fiberMap[name] = f
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}
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a.pluginMap[name] = p
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}
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return a
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}
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// Plugins returns a copy of all registered plugins in registration order.
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func (a *App) Plugins() []Plugin {
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a.mu.RLock()
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defer a.mu.RUnlock()
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res := make([]Plugin, len(a.plugins))
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copy(res, a.plugins)
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return res
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}
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// Plugin retrieves a registered plugin by its unique name.
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func (a *App) Plugin(name string) (Plugin, bool) {
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a.mu.RLock()
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defer a.mu.RUnlock()
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p, ok := a.pluginMap[name]
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return p, ok
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}
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// Fibers returns a copy of all plugin Fibers.
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func (a *App) Fibers() []*Fiber {
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a.mu.RLock()
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defer a.mu.RUnlock()
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res := make([]*Fiber, len(a.fibers))
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copy(res, a.fibers)
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return res
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}
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// Fiber retrieves a Fiber by its unique plugin name.
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func (a *App) Fiber(name string) (*Fiber, bool) {
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a.mu.RLock()
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defer a.mu.RUnlock()
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f, ok := a.fiberMap[name]
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return f, ok
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}
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// SetMigrationEngine sets the migration engine for the application.
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func (a *App) SetMigrationEngine(engine MigrationEngine) *App {
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a.mu.Lock()
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defer a.mu.Unlock()
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a.migrationEngine = engine
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return a
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}
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// SetMigrationRunner sets the migration runner function for the application.
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func (a *App) SetMigrationRunner(runner MigrationRunner) *App {
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return a.SetMigrationEngine(runner)
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}
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// Reconcile evaluates all pending Fibers and reactively transitions them to ACTIVE
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// as their declared dependencies become satisfied.
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func (a *App) Reconcile() error {
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a.mu.Lock()
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defer a.mu.Unlock()
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return a.reconcileLocked()
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}
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func (a *App) reconcileLocked() error {
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for {
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progress := false
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for _, f := range a.fibers {
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if f.State() == FiberPending && f.DependenciesSatisfied(a.ctx) {
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if err := f.Load(); err != nil {
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return fmt.Errorf("core: load fiber %q failed: %w", f.Name(), err)
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}
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progress = true
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}
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}
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if !progress {
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break
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}
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}
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var unsatisfied []string
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for _, f := range a.fibers {
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if f.State() == FiberPending {
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unsatisfied = append(unsatisfied, fmt.Sprintf("%s (waiting for %v)", f.Name(), f.Dependencies()))
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}
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}
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if len(unsatisfied) > 0 {
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return fmt.Errorf("core: unsatisfied dependencies for plugins: %s", strings.Join(unsatisfied, ", "))
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}
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return nil
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}
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// ApplyPlugins applies all registered plugins on the application Context via reactive reconciliation.
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// It is idempotent and only applies plugins once per App instance.
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func (a *App) ApplyPlugins() error {
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a.mu.Lock()
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if a.applied {
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a.mu.Unlock()
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return nil
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}
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a.applied = true
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a.mu.Unlock()
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return a.Reconcile()
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}
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// RunMigrations dispatches migration execution across all registered plugin migration entries.
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func (a *App) RunMigrations() error {
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entries := a.ctx.Migrations().Entries()
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if len(entries) == 0 {
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return nil
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}
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a.mu.RLock()
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engine := a.migrationEngine
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a.mu.RUnlock()
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if engine == nil {
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// Attempt to resolve from IoC container
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if resolved, err := Inject[MigrationEngine](a.ctx); err == nil && resolved != nil {
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engine = resolved
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}
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}
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if engine == nil {
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return nil
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}
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if err := engine.Migrate(a.ctx, entries); err != nil {
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return fmt.Errorf("core: migration failed: %w", err)
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}
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return nil
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}
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// Start executes the application boot pipeline:
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// 1. Applies all registered plugins to populate services, routes, tasks, and drivers.
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// 2. Dispatches database migrations via MigrationEngine.
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// 3. Filters and starts drivers matching the active Profile.
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// 4. Emits "app:ready" on the EventBus.
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//
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//nolint:contextcheck
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func (a *App) Start(ctx ...context.Context) error {
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a.mu.Lock()
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if a.running {
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a.mu.Unlock()
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return ErrAppRunning
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}
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a.running = true
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a.mu.Unlock()
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var baseCtx context.Context
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switch {
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case len(ctx) > 0 && ctx[0] != nil:
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baseCtx = ctx[0]
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case a.ctx != nil:
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baseCtx = a.ctx.GoContext()
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default:
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baseCtx = context.Background()
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}
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// 1. Apply plugins
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if err := a.ApplyPlugins(); err != nil {
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a.mu.Lock()
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a.running = false
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a.mu.Unlock()
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return err
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}
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// 2. Run migrations
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if err := a.RunMigrations(); err != nil {
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a.mu.Lock()
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a.running = false
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a.mu.Unlock()
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return err
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}
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// 3. Filter drivers matching active profile
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a.mu.RLock()
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prof := a.profile
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a.mu.RUnlock()
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allDrivers := a.ctx.Drivers()
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var driversToStart []Driver
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for _, d := range allDrivers {
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if matchesProfile(prof, d.Type()) {
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driversToStart = append(driversToStart, d)
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}
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}
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// 4. Start matching drivers
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for _, d := range driversToStart {
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if err := d.Start(baseCtx); err != nil {
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// Rollback already started drivers in reverse order
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a.mu.Lock()
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started := a.startedDrivers
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a.startedDrivers = nil
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a.running = false
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a.mu.Unlock()
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for i := len(started) - 1; i >= 0; i-- {
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_ = started[i].Stop(context.Background())
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}
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return fmt.Errorf("core: start driver %s failed: %w", d.Type(), err)
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}
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a.mu.Lock()
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a.startedDrivers = append(a.startedDrivers, d)
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a.mu.Unlock()
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}
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// 5. Emit app:ready event
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_ = a.ctx.Events().Emit(baseCtx, "app:ready", a)
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return nil
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}
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// Stop gracefully shuts down the application:
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// 1. Emits "app:stopping" on the EventBus.
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// 2. Stops all started drivers in LIFO (reverse) order.
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// 3. Disposes the Context (running registered OnDispose callbacks in LIFO order).
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// 4. Emits "app:stopped" on the EventBus.
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//
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//nolint:contextcheck
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func (a *App) Stop(ctx ...context.Context) error {
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a.mu.Lock()
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if !a.running {
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a.mu.Unlock()
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return nil
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}
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a.running = false
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started := a.startedDrivers
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a.startedDrivers = nil
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timeout := a.shutdownTimeout
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a.mu.Unlock()
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var shutdownCtx context.Context
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if len(ctx) > 0 && ctx[0] != nil {
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shutdownCtx = ctx[0]
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} else {
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var cancel context.CancelFunc
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shutdownCtx, cancel = context.WithTimeout(context.Background(), timeout)
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defer cancel()
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}
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_ = a.ctx.Events().Emit(shutdownCtx, "app:stopping", a)
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var errs []error
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// 1. Stop drivers in reverse order
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for i := len(started) - 1; i >= 0; i-- {
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d := started[i]
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if err := d.Stop(shutdownCtx); err != nil {
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errs = append(errs, fmt.Errorf("core: stop driver %s failed: %w", d.Type(), err))
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}
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}
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// 2. Unload fibers in reverse order
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a.mu.RLock()
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fibers := make([]*Fiber, len(a.fibers))
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copy(fibers, a.fibers)
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a.mu.RUnlock()
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for i := len(fibers) - 1; i >= 0; i-- {
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if err := fibers[i].Unload(); err != nil {
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errs = append(errs, fmt.Errorf("core: unload fiber %s failed: %w", fibers[i].Name(), err))
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}
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}
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// 3. Dispose root context
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if a.ctx != nil && !a.ctx.IsDisposed() {
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if err := a.ctx.Dispose(); err != nil {
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errs = append(errs, fmt.Errorf("core: dispose context failed: %w", err))
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}
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}
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_ = a.ctx.Events().Emit(shutdownCtx, "app:stopped", a)
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return errors.Join(errs...)
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}
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// Run starts the application and blocks until an OS signal (SIGINT, SIGTERM) or context cancellation is received,
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// then executes graceful shutdown.
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//
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//nolint:contextcheck
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func (a *App) Run(ctx ...context.Context) error {
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var parent context.Context
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switch {
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case len(ctx) > 0 && ctx[0] != nil:
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parent = ctx[0]
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case a.ctx != nil:
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parent = a.ctx.GoContext()
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default:
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parent = context.Background()
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}
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sigCtx, stopSignals := signal.NotifyContext(parent, syscall.SIGINT, syscall.SIGTERM, os.Interrupt)
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defer stopSignals()
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if err := a.Start(sigCtx); err != nil {
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return err
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}
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// Wait for OS signal or context cancellation
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<-sigCtx.Done()
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shutdownCtx, cancel := context.WithTimeout(context.Background(), a.shutdownTimeout)
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defer cancel()
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return a.Stop(shutdownCtx)
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}
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// IsRunning returns whether the application is currently running.
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func (a *App) IsRunning() bool {
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a.mu.RLock()
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defer a.mu.RUnlock()
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return a.running
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}
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// StartedDrivers returns a copy of currently running drivers.
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func (a *App) StartedDrivers() []Driver {
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a.mu.RLock()
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defer a.mu.RUnlock()
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res := make([]Driver, len(a.startedDrivers))
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copy(res, a.startedDrivers)
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return res
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}
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// ExecuteCLI parses CLI arguments to configure the profile and runs the application.
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func (a *App) ExecuteCLI(args ...string) error {
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var ctx context.Context
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if a.ctx != nil {
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ctx = a.ctx.GoContext()
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} else {
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ctx = context.Background()
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}
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return a.ExecuteCLIWithContext(ctx, args...)
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}
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// ExecuteCLIWithContext parses CLI arguments, configures the profile, and runs the application with the given context.
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//
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//nolint:contextcheck
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func (a *App) ExecuteCLIWithContext(ctx context.Context, args ...string) error {
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cliArgs := args
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if len(cliArgs) == 0 {
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cliArgs = os.Args[1:]
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}
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profile := ProfileAll
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if len(cliArgs) > 0 {
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first := strings.TrimSpace(cliArgs[0])
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switch {
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case strings.HasPrefix(first, "--profile="):
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profile = Profile(strings.TrimPrefix(first, "--profile="))
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case strings.HasPrefix(first, "-p="):
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profile = Profile(strings.TrimPrefix(first, "-p="))
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case !strings.HasPrefix(first, "-"):
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profile = Profile(first)
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}
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}
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a.WithProfile(profile)
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return a.Run(ctx)
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}
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func matchesProfile(profile Profile, dt DriverType) bool {
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norm := normalizeProfile(profile)
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switch norm {
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case ProfileAll, "":
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return true
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case ProfileAPI:
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return dt == DriverTypeHTTP
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case ProfileWorker:
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return dt == DriverTypeWorker
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case ProfileSchedule:
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return dt == DriverTypeScheduler
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default:
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return string(norm) == string(dt)
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}
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}
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func normalizeProfile(p Profile) Profile {
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switch strings.ToLower(strings.TrimSpace(string(p))) {
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case "api", "http":
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return ProfileAPI
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case "worker":
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return ProfileWorker
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case "schedule", "scheduler", "cron":
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return ProfileSchedule
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case "all", "fused", "full", "":
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return ProfileAll
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default:
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return p
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}
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}
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