Event Broken Concept

This commit is contained in:
Hein 2025-12-12 09:23:54 +02:00
parent 7ef1d6424a
commit 31ad217818
25 changed files with 4074 additions and 3 deletions

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@ -196,6 +196,10 @@ func (b *BunAdapter) RunInTransaction(ctx context.Context, fn func(common.Databa
})
}
func (b *BunAdapter) GetUnderlyingDB() interface{} {
return b.db
}
// BunSelectQuery implements SelectQuery for Bun
type BunSelectQuery struct {
query *bun.SelectQuery
@ -1208,3 +1212,7 @@ func (b *BunTxAdapter) RollbackTx(ctx context.Context) error {
func (b *BunTxAdapter) RunInTransaction(ctx context.Context, fn func(common.Database) error) error {
return fn(b) // Already in transaction
}
func (b *BunTxAdapter) GetUnderlyingDB() interface{} {
return b.tx
}

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@ -102,6 +102,10 @@ func (g *GormAdapter) RunInTransaction(ctx context.Context, fn func(common.Datab
})
}
func (g *GormAdapter) GetUnderlyingDB() interface{} {
return g.db
}
// GormSelectQuery implements SelectQuery for GORM
type GormSelectQuery struct {
db *gorm.DB

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@ -137,6 +137,10 @@ func (p *PgSQLAdapter) RunInTransaction(ctx context.Context, fn func(common.Data
return fn(adapter)
}
func (p *PgSQLAdapter) GetUnderlyingDB() interface{} {
return p.db
}
// preloadConfig represents a relationship to be preloaded
type preloadConfig struct {
relation string
@ -897,6 +901,10 @@ func (p *PgSQLTxAdapter) RunInTransaction(ctx context.Context, fn func(common.Da
return fn(p)
}
func (p *PgSQLTxAdapter) GetUnderlyingDB() interface{} {
return p.tx
}
// applyJoinPreloads adds JOINs for relationships that should use JOIN strategy
func (p *PgSQLSelectQuery) applyJoinPreloads() {
for _, preload := range p.preloads {

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@ -24,6 +24,12 @@ type Database interface {
CommitTx(ctx context.Context) error
RollbackTx(ctx context.Context) error
RunInTransaction(ctx context.Context, fn func(Database) error) error
// GetUnderlyingDB returns the underlying database connection
// For GORM, this returns *gorm.DB
// For Bun, this returns *bun.DB
// This is useful for provider-specific features like PostgreSQL NOTIFY/LISTEN
GetUnderlyingDB() interface{}
}
// SelectQuery interface for building SELECT queries (compatible with both GORM and Bun)

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@ -12,6 +12,7 @@ type Config struct {
Middleware MiddlewareConfig `mapstructure:"middleware"`
CORS CORSConfig `mapstructure:"cors"`
Database DatabaseConfig `mapstructure:"database"`
EventBroker EventBrokerConfig `mapstructure:"event_broker"`
}
// ServerConfig holds server-related configuration
@ -91,3 +92,52 @@ type ErrorTrackingConfig struct {
SampleRate float64 `mapstructure:"sample_rate"` // Error sample rate (0.0-1.0)
TracesSampleRate float64 `mapstructure:"traces_sample_rate"` // Traces sample rate (0.0-1.0)
}
// EventBrokerConfig contains configuration for the event broker
type EventBrokerConfig struct {
Enabled bool `mapstructure:"enabled"`
Provider string `mapstructure:"provider"` // memory, redis, nats, database
Mode string `mapstructure:"mode"` // sync, async
WorkerCount int `mapstructure:"worker_count"`
BufferSize int `mapstructure:"buffer_size"`
InstanceID string `mapstructure:"instance_id"`
Redis EventBrokerRedisConfig `mapstructure:"redis"`
NATS EventBrokerNATSConfig `mapstructure:"nats"`
Database EventBrokerDatabaseConfig `mapstructure:"database"`
RetryPolicy EventBrokerRetryPolicyConfig `mapstructure:"retry_policy"`
}
// EventBrokerRedisConfig contains Redis-specific configuration
type EventBrokerRedisConfig struct {
StreamName string `mapstructure:"stream_name"`
ConsumerGroup string `mapstructure:"consumer_group"`
MaxLen int64 `mapstructure:"max_len"`
Host string `mapstructure:"host"`
Port int `mapstructure:"port"`
Password string `mapstructure:"password"`
DB int `mapstructure:"db"`
}
// EventBrokerNATSConfig contains NATS-specific configuration
type EventBrokerNATSConfig struct {
URL string `mapstructure:"url"`
StreamName string `mapstructure:"stream_name"`
Subjects []string `mapstructure:"subjects"`
Storage string `mapstructure:"storage"` // file, memory
MaxAge time.Duration `mapstructure:"max_age"`
}
// EventBrokerDatabaseConfig contains database provider configuration
type EventBrokerDatabaseConfig struct {
TableName string `mapstructure:"table_name"`
Channel string `mapstructure:"channel"` // PostgreSQL NOTIFY channel name
PollInterval time.Duration `mapstructure:"poll_interval"`
}
// EventBrokerRetryPolicyConfig contains retry policy configuration
type EventBrokerRetryPolicyConfig struct {
MaxRetries int `mapstructure:"max_retries"`
InitialDelay time.Duration `mapstructure:"initial_delay"`
MaxDelay time.Duration `mapstructure:"max_delay"`
BackoffFactor float64 `mapstructure:"backoff_factor"`
}

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@ -165,4 +165,39 @@ func setDefaults(v *viper.Viper) {
// Database defaults
v.SetDefault("database.url", "")
// Event Broker defaults
v.SetDefault("event_broker.enabled", false)
v.SetDefault("event_broker.provider", "memory")
v.SetDefault("event_broker.mode", "async")
v.SetDefault("event_broker.worker_count", 10)
v.SetDefault("event_broker.buffer_size", 1000)
v.SetDefault("event_broker.instance_id", "")
// Event Broker - Redis defaults
v.SetDefault("event_broker.redis.stream_name", "resolvespec:events")
v.SetDefault("event_broker.redis.consumer_group", "resolvespec-workers")
v.SetDefault("event_broker.redis.max_len", 10000)
v.SetDefault("event_broker.redis.host", "localhost")
v.SetDefault("event_broker.redis.port", 6379)
v.SetDefault("event_broker.redis.password", "")
v.SetDefault("event_broker.redis.db", 0)
// Event Broker - NATS defaults
v.SetDefault("event_broker.nats.url", "nats://localhost:4222")
v.SetDefault("event_broker.nats.stream_name", "RESOLVESPEC_EVENTS")
v.SetDefault("event_broker.nats.subjects", []string{"events.>"})
v.SetDefault("event_broker.nats.storage", "file")
v.SetDefault("event_broker.nats.max_age", "24h")
// Event Broker - Database defaults
v.SetDefault("event_broker.database.table_name", "events")
v.SetDefault("event_broker.database.channel", "resolvespec_events")
v.SetDefault("event_broker.database.poll_interval", "1s")
// Event Broker - Retry Policy defaults
v.SetDefault("event_broker.retry_policy.max_retries", 3)
v.SetDefault("event_broker.retry_policy.initial_delay", "1s")
v.SetDefault("event_broker.retry_policy.max_delay", "30s")
v.SetDefault("event_broker.retry_policy.backoff_factor", 2.0)
}

327
pkg/eventbroker/README.md Normal file
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@ -0,0 +1,327 @@
# Event Broker System
A comprehensive event handler/broker system for ResolveSpec that provides real-time event publishing, subscription, and cross-instance communication.
## Features
- **Multiple Sources**: Events from database, websockets, frontend, system, and internal sources
- **Event Status Tracking**: Pending, processing, completed, failed states with timestamps
- **Rich Metadata**: User IDs, session IDs, instance IDs, JSON payloads, and custom metadata
- **Sync & Async Modes**: Choose between synchronous or asynchronous event processing
- **Pattern Matching**: Subscribe to events using glob-style patterns
- **Multiple Providers**: In-memory, Redis Streams, NATS JetStream, PostgreSQL with NOTIFY
- **Hook Integration**: Automatic CRUD event capture via restheadspec hooks
- **Retry Logic**: Configurable retry policy with exponential backoff
- **Metrics**: Prometheus-compatible metrics for monitoring
- **Graceful Shutdown**: Proper cleanup and event flushing on shutdown
## Quick Start
### 1. Configuration
Add to your `config.yaml`:
```yaml
event_broker:
enabled: true
provider: memory # memory, redis, nats, database
mode: async # sync, async
worker_count: 10
buffer_size: 1000
instance_id: "${HOSTNAME}"
```
### 2. Initialize
```go
import (
"github.com/bitechdev/ResolveSpec/pkg/config"
"github.com/bitechdev/ResolveSpec/pkg/eventbroker"
)
func main() {
// Load configuration
cfgMgr := config.NewManager()
cfg, _ := cfgMgr.GetConfig()
// Initialize event broker
if err := eventbroker.Initialize(cfg.EventBroker); err != nil {
log.Fatal(err)
}
}
```
### 3. Subscribe to Events
```go
// Subscribe to specific events
eventbroker.Subscribe("public.users.create", eventbroker.EventHandlerFunc(
func(ctx context.Context, event *eventbroker.Event) error {
log.Printf("New user created: %s", event.Payload)
// Send welcome email, update cache, etc.
return nil
},
))
// Subscribe with patterns
eventbroker.Subscribe("*.*.delete", eventbroker.EventHandlerFunc(
func(ctx context.Context, event *eventbroker.Event) error {
log.Printf("Deleted: %s.%s", event.Schema, event.Entity)
return nil
},
))
```
### 4. Publish Events
```go
// Create and publish an event
event := eventbroker.NewEvent(eventbroker.EventSourceDatabase, "public.users.update")
event.InstanceID = eventbroker.GetDefaultBroker().InstanceID()
event.UserID = 123
event.SessionID = "session-456"
event.Schema = "public"
event.Entity = "users"
event.Operation = "update"
event.SetPayload(map[string]interface{}{
"id": 123,
"name": "John Doe",
})
// Async (non-blocking)
eventbroker.PublishAsync(ctx, event)
// Sync (blocking)
eventbroker.PublishSync(ctx, event)
```
## Automatic CRUD Event Capture
Automatically capture database CRUD operations:
```go
import (
"github.com/bitechdev/ResolveSpec/pkg/eventbroker"
"github.com/bitechdev/ResolveSpec/pkg/restheadspec"
)
func setupHooks(handler *restheadspec.Handler) {
broker := eventbroker.GetDefaultBroker()
// Configure which operations to capture
config := eventbroker.DefaultCRUDHookConfig()
config.EnableRead = false // Disable read events for performance
// Register hooks
eventbroker.RegisterCRUDHooks(broker, handler.Hooks(), config)
// Now all create/update/delete operations automatically publish events!
}
```
## Event Structure
Every event contains:
```go
type Event struct {
ID string // UUID
Source EventSource // database, websocket, system, frontend, internal
Type string // Pattern: schema.entity.operation
Status EventStatus // pending, processing, completed, failed
Payload json.RawMessage // JSON payload
UserID int // User who triggered the event
SessionID string // Session identifier
InstanceID string // Server instance identifier
Schema string // Database schema
Entity string // Database entity/table
Operation string // create, update, delete, read
CreatedAt time.Time // When event was created
ProcessedAt *time.Time // When processing started
CompletedAt *time.Time // When processing completed
Error string // Error message if failed
Metadata map[string]interface{} // Additional context
RetryCount int // Number of retry attempts
}
```
## Pattern Matching
Subscribe to events using glob-style patterns:
| Pattern | Matches | Example |
|---------|---------|---------|
| `*` | All events | Any event |
| `public.users.*` | All user operations | `public.users.create`, `public.users.update` |
| `*.*.create` | All create operations | `public.users.create`, `auth.sessions.create` |
| `public.*.*` | All events in public schema | `public.users.create`, `public.posts.delete` |
| `public.users.create` | Exact match | Only `public.users.create` |
## Providers
### Memory Provider (Default)
Best for: Development, single-instance deployments
- **Pros**: Fast, no dependencies, simple
- **Cons**: Events lost on restart, single-instance only
```yaml
event_broker:
provider: memory
```
### Redis Provider (Future)
Best for: Production, multi-instance deployments
- **Pros**: Persistent, cross-instance pub/sub, reliable
- **Cons**: Requires Redis
```yaml
event_broker:
provider: redis
redis:
stream_name: "resolvespec:events"
consumer_group: "resolvespec-workers"
host: "localhost"
port: 6379
```
### NATS Provider (Future)
Best for: High-performance, low-latency requirements
- **Pros**: Very fast, built-in clustering, durable
- **Cons**: Requires NATS server
```yaml
event_broker:
provider: nats
nats:
url: "nats://localhost:4222"
stream_name: "RESOLVESPEC_EVENTS"
```
### Database Provider (Future)
Best for: Audit trails, event replay, SQL queries
- **Pros**: No additional infrastructure, full SQL query support, PostgreSQL NOTIFY for real-time
- **Cons**: Slower than Redis/NATS
```yaml
event_broker:
provider: database
database:
table_name: "events"
channel: "resolvespec_events"
```
## Processing Modes
### Async Mode (Recommended)
Events are queued and processed by worker pool:
- Non-blocking event publishing
- Configurable worker count
- Better throughput
- Events may be processed out of order
```yaml
event_broker:
mode: async
worker_count: 10
buffer_size: 1000
```
### Sync Mode
Events are processed immediately:
- Blocking event publishing
- Guaranteed ordering
- Immediate error feedback
- Lower throughput
```yaml
event_broker:
mode: sync
```
## Retry Policy
Configure automatic retries for failed handlers:
```yaml
event_broker:
retry_policy:
max_retries: 3
initial_delay: 1s
max_delay: 30s
backoff_factor: 2.0 # Exponential backoff
```
## Metrics
The event broker exposes Prometheus metrics:
- `eventbroker_events_published_total{source, type}` - Total events published
- `eventbroker_events_processed_total{source, type, status}` - Total events processed
- `eventbroker_event_processing_duration_seconds{source, type}` - Event processing duration
- `eventbroker_queue_size` - Current queue size (async mode)
## Best Practices
1. **Use Async Mode**: For better performance, use async mode in production
2. **Disable Read Events**: Read events can be high volume; disable if not needed
3. **Pattern Matching**: Use specific patterns to avoid processing unnecessary events
4. **Error Handling**: Always handle errors in event handlers; they won't fail the original operation
5. **Idempotency**: Make handlers idempotent as events may be retried
6. **Payload Size**: Keep payloads reasonable; avoid large objects
7. **Monitoring**: Monitor metrics to detect issues early
## Examples
See `example_usage.go` for comprehensive examples including:
- Basic event publishing and subscription
- Hook integration
- Error handling
- Configuration
- Pattern matching
## Architecture
```
┌─────────────────┐
│ Application │
└────────┬────────┘
├─ Publish Events
┌────────▼────────┐ ┌──────────────┐
│ Event Broker │◄────►│ Subscribers │
└────────┬────────┘ └──────────────┘
├─ Store Events
┌────────▼────────┐
│ Provider │
│ (Memory/Redis │
│ /NATS/DB) │
└─────────────────┘
```
## Future Enhancements
- [ ] Database Provider with PostgreSQL NOTIFY
- [ ] Redis Streams Provider
- [ ] NATS JetStream Provider
- [ ] Event replay functionality
- [ ] Dead letter queue
- [ ] Event filtering at provider level
- [ ] Batch publishing
- [ ] Event compression
- [ ] Schema versioning

453
pkg/eventbroker/broker.go Normal file
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@ -0,0 +1,453 @@
package eventbroker
import (
"context"
"fmt"
"sync"
"sync/atomic"
"time"
"github.com/bitechdev/ResolveSpec/pkg/logger"
)
// Broker is the main interface for event publishing and subscription
type Broker interface {
// Publish publishes an event (mode-dependent: sync or async)
Publish(ctx context.Context, event *Event) error
// PublishSync publishes an event synchronously (blocks until all handlers complete)
PublishSync(ctx context.Context, event *Event) error
// PublishAsync publishes an event asynchronously (returns immediately)
PublishAsync(ctx context.Context, event *Event) error
// Subscribe registers a handler for events matching the pattern
Subscribe(pattern string, handler EventHandler) (SubscriptionID, error)
// Unsubscribe removes a subscription
Unsubscribe(id SubscriptionID) error
// Start starts the broker (begins processing events)
Start(ctx context.Context) error
// Stop stops the broker gracefully (flushes pending events)
Stop(ctx context.Context) error
// Stats returns broker statistics
Stats(ctx context.Context) (*BrokerStats, error)
// InstanceID returns the instance ID of this broker
InstanceID() string
}
// ProcessingMode determines how events are processed
type ProcessingMode string
const (
ProcessingModeSync ProcessingMode = "sync"
ProcessingModeAsync ProcessingMode = "async"
)
// BrokerStats contains broker statistics
type BrokerStats struct {
InstanceID string `json:"instance_id"`
Mode ProcessingMode `json:"mode"`
IsRunning bool `json:"is_running"`
TotalPublished int64 `json:"total_published"`
TotalProcessed int64 `json:"total_processed"`
TotalFailed int64 `json:"total_failed"`
ActiveSubscribers int `json:"active_subscribers"`
QueueSize int `json:"queue_size,omitempty"` // For async mode
ActiveWorkers int `json:"active_workers,omitempty"` // For async mode
ProviderStats *ProviderStats `json:"provider_stats,omitempty"`
AdditionalStats map[string]interface{} `json:"additional_stats,omitempty"`
}
// EventBroker implements the Broker interface
type EventBroker struct {
provider Provider
subscriptions *subscriptionManager
mode ProcessingMode
instanceID string
retryPolicy *RetryPolicy
// Async mode fields (initialized in Phase 4)
workerPool *workerPool
// Runtime state
isRunning atomic.Bool
stopOnce sync.Once
stopCh chan struct{}
wg sync.WaitGroup
// Statistics
statsPublished atomic.Int64
statsProcessed atomic.Int64
statsFailed atomic.Int64
}
// RetryPolicy defines how failed events should be retried
type RetryPolicy struct {
MaxRetries int
InitialDelay time.Duration
MaxDelay time.Duration
BackoffFactor float64
}
// DefaultRetryPolicy returns a sensible default retry policy
func DefaultRetryPolicy() *RetryPolicy {
return &RetryPolicy{
MaxRetries: 3,
InitialDelay: 1 * time.Second,
MaxDelay: 30 * time.Second,
BackoffFactor: 2.0,
}
}
// Options for creating a new broker
type Options struct {
Provider Provider
Mode ProcessingMode
WorkerCount int // For async mode
BufferSize int // For async mode
RetryPolicy *RetryPolicy
InstanceID string
}
// NewBroker creates a new event broker with the given options
func NewBroker(opts Options) (*EventBroker, error) {
if opts.Provider == nil {
return nil, fmt.Errorf("provider is required")
}
if opts.InstanceID == "" {
return nil, fmt.Errorf("instance ID is required")
}
if opts.Mode == "" {
opts.Mode = ProcessingModeAsync // Default to async
}
if opts.RetryPolicy == nil {
opts.RetryPolicy = DefaultRetryPolicy()
}
broker := &EventBroker{
provider: opts.Provider,
subscriptions: newSubscriptionManager(),
mode: opts.Mode,
instanceID: opts.InstanceID,
retryPolicy: opts.RetryPolicy,
stopCh: make(chan struct{}),
}
// Worker pool will be initialized in Phase 4 for async mode
if opts.Mode == ProcessingModeAsync {
if opts.WorkerCount == 0 {
opts.WorkerCount = 10 // Default
}
if opts.BufferSize == 0 {
opts.BufferSize = 1000 // Default
}
broker.workerPool = newWorkerPool(opts.WorkerCount, opts.BufferSize, broker.processEvent)
}
return broker, nil
}
// Functional option pattern helpers
func WithProvider(p Provider) func(*Options) {
return func(o *Options) { o.Provider = p }
}
func WithMode(m ProcessingMode) func(*Options) {
return func(o *Options) { o.Mode = m }
}
func WithWorkerCount(count int) func(*Options) {
return func(o *Options) { o.WorkerCount = count }
}
func WithBufferSize(size int) func(*Options) {
return func(o *Options) { o.BufferSize = size }
}
func WithRetryPolicy(policy *RetryPolicy) func(*Options) {
return func(o *Options) { o.RetryPolicy = policy }
}
func WithInstanceID(id string) func(*Options) {
return func(o *Options) { o.InstanceID = id }
}
// Start starts the broker
func (b *EventBroker) Start(ctx context.Context) error {
if b.isRunning.Load() {
return fmt.Errorf("broker already running")
}
b.isRunning.Store(true)
// Start worker pool for async mode
if b.mode == ProcessingModeAsync && b.workerPool != nil {
b.workerPool.Start()
}
logger.Info("Event broker started (mode: %s, instance: %s)", b.mode, b.instanceID)
return nil
}
// Stop stops the broker gracefully
func (b *EventBroker) Stop(ctx context.Context) error {
var stopErr error
b.stopOnce.Do(func() {
logger.Info("Stopping event broker...")
// Mark as not running
b.isRunning.Store(false)
// Close the stop channel
close(b.stopCh)
// Stop worker pool for async mode
if b.mode == ProcessingModeAsync && b.workerPool != nil {
if err := b.workerPool.Stop(ctx); err != nil {
logger.Error("Error stopping worker pool: %v", err)
stopErr = err
}
}
// Wait for all goroutines
b.wg.Wait()
// Close provider
if err := b.provider.Close(); err != nil {
logger.Error("Error closing provider: %v", err)
if stopErr == nil {
stopErr = err
}
}
logger.Info("Event broker stopped")
})
return stopErr
}
// Publish publishes an event based on the broker's mode
func (b *EventBroker) Publish(ctx context.Context, event *Event) error {
if b.mode == ProcessingModeSync {
return b.PublishSync(ctx, event)
}
return b.PublishAsync(ctx, event)
}
// PublishSync publishes an event synchronously
func (b *EventBroker) PublishSync(ctx context.Context, event *Event) error {
if !b.isRunning.Load() {
return fmt.Errorf("broker is not running")
}
// Validate event
if err := event.Validate(); err != nil {
return fmt.Errorf("invalid event: %w", err)
}
// Store event in provider
if err := b.provider.Publish(ctx, event); err != nil {
return fmt.Errorf("failed to publish event: %w", err)
}
b.statsPublished.Add(1)
// Record metrics
recordEventPublished(event)
// Process event synchronously
if err := b.processEvent(ctx, event); err != nil {
logger.Error("Failed to process event %s: %v", event.ID, err)
b.statsFailed.Add(1)
return err
}
b.statsProcessed.Add(1)
return nil
}
// PublishAsync publishes an event asynchronously
func (b *EventBroker) PublishAsync(ctx context.Context, event *Event) error {
if !b.isRunning.Load() {
return fmt.Errorf("broker is not running")
}
// Validate event
if err := event.Validate(); err != nil {
return fmt.Errorf("invalid event: %w", err)
}
// Store event in provider
if err := b.provider.Publish(ctx, event); err != nil {
return fmt.Errorf("failed to publish event: %w", err)
}
b.statsPublished.Add(1)
// Record metrics
recordEventPublished(event)
// Queue for async processing
if b.mode == ProcessingModeAsync && b.workerPool != nil {
// Update queue size metrics
updateQueueSize(int64(b.workerPool.QueueSize()))
return b.workerPool.Submit(ctx, event)
}
// Fallback to sync if async not configured
return b.processEvent(ctx, event)
}
// Subscribe adds a subscription for events matching the pattern
func (b *EventBroker) Subscribe(pattern string, handler EventHandler) (SubscriptionID, error) {
return b.subscriptions.Subscribe(pattern, handler)
}
// Unsubscribe removes a subscription
func (b *EventBroker) Unsubscribe(id SubscriptionID) error {
return b.subscriptions.Unsubscribe(id)
}
// processEvent processes an event by calling all matching handlers
func (b *EventBroker) processEvent(ctx context.Context, event *Event) error {
startTime := time.Now()
// Get all handlers matching this event type
handlers := b.subscriptions.GetMatching(event.Type)
if len(handlers) == 0 {
logger.Debug("No handlers for event type: %s", event.Type)
return nil
}
logger.Debug("Processing event %s with %d handler(s)", event.ID, len(handlers))
// Mark event as processing
event.MarkProcessing()
if err := b.provider.UpdateStatus(ctx, event.ID, EventStatusProcessing, ""); err != nil {
logger.Warn("Failed to update event status: %v", err)
}
// Execute all handlers
var lastErr error
for i, handler := range handlers {
if err := b.executeHandlerWithRetry(ctx, handler, event); err != nil {
logger.Error("Handler %d failed for event %s: %v", i+1, event.ID, err)
lastErr = err
// Continue processing other handlers
}
}
// Update final status
if lastErr != nil {
event.MarkFailed(lastErr)
if err := b.provider.UpdateStatus(ctx, event.ID, EventStatusFailed, lastErr.Error()); err != nil {
logger.Warn("Failed to update event status: %v", err)
}
// Record metrics
recordEventProcessed(event, time.Since(startTime))
return lastErr
}
event.MarkCompleted()
if err := b.provider.UpdateStatus(ctx, event.ID, EventStatusCompleted, ""); err != nil {
logger.Warn("Failed to update event status: %v", err)
}
// Record metrics
recordEventProcessed(event, time.Since(startTime))
return nil
}
// executeHandlerWithRetry executes a handler with retry logic
func (b *EventBroker) executeHandlerWithRetry(ctx context.Context, handler EventHandler, event *Event) error {
var lastErr error
for attempt := 0; attempt <= b.retryPolicy.MaxRetries; attempt++ {
if attempt > 0 {
// Calculate backoff delay
delay := b.calculateBackoff(attempt)
logger.Debug("Retrying event %s (attempt %d/%d) after %v",
event.ID, attempt, b.retryPolicy.MaxRetries, delay)
select {
case <-time.After(delay):
case <-ctx.Done():
return ctx.Err()
}
event.IncrementRetry()
}
// Execute handler
if err := handler.Handle(ctx, event); err != nil {
lastErr = err
logger.Warn("Handler failed for event %s (attempt %d): %v", event.ID, attempt+1, err)
continue
}
// Success
return nil
}
return fmt.Errorf("handler failed after %d attempts: %w", b.retryPolicy.MaxRetries+1, lastErr)
}
// calculateBackoff calculates the backoff delay for a retry attempt
func (b *EventBroker) calculateBackoff(attempt int) time.Duration {
delay := float64(b.retryPolicy.InitialDelay) * pow(b.retryPolicy.BackoffFactor, float64(attempt-1))
if delay > float64(b.retryPolicy.MaxDelay) {
delay = float64(b.retryPolicy.MaxDelay)
}
return time.Duration(delay)
}
// pow is a simple integer power function
func pow(base float64, exp float64) float64 {
result := 1.0
for i := 0.0; i < exp; i++ {
result *= base
}
return result
}
// Stats returns broker statistics
func (b *EventBroker) Stats(ctx context.Context) (*BrokerStats, error) {
providerStats, err := b.provider.Stats(ctx)
if err != nil {
logger.Warn("Failed to get provider stats: %v", err)
}
stats := &BrokerStats{
InstanceID: b.instanceID,
Mode: b.mode,
IsRunning: b.isRunning.Load(),
TotalPublished: b.statsPublished.Load(),
TotalProcessed: b.statsProcessed.Load(),
TotalFailed: b.statsFailed.Load(),
ActiveSubscribers: b.subscriptions.Count(),
ProviderStats: providerStats,
}
// Add async-specific stats
if b.mode == ProcessingModeAsync && b.workerPool != nil {
stats.QueueSize = b.workerPool.QueueSize()
stats.ActiveWorkers = b.workerPool.ActiveWorkers()
}
return stats, nil
}
// InstanceID returns the instance ID
func (b *EventBroker) InstanceID() string {
return b.instanceID
}

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@ -0,0 +1,524 @@
package eventbroker
import (
"context"
"errors"
"sync"
"sync/atomic"
"testing"
"time"
)
func TestNewBroker(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
MaxEvents: 1000,
})
tests := []struct {
name string
opts Options
wantError bool
}{
{
name: "valid options",
opts: Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeSync,
},
wantError: false,
},
{
name: "missing provider",
opts: Options{
InstanceID: "test-instance",
},
wantError: true,
},
{
name: "missing instance ID",
opts: Options{
Provider: provider,
},
wantError: true,
},
{
name: "async mode with defaults",
opts: Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeAsync,
},
wantError: false,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
broker, err := NewBroker(tt.opts)
if (err != nil) != tt.wantError {
t.Errorf("NewBroker() error = %v, wantError %v", err, tt.wantError)
}
if err == nil && broker == nil {
t.Error("Expected non-nil broker")
}
})
}
}
func TestBrokerStartStop(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, err := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeSync,
})
if err != nil {
t.Fatalf("Failed to create broker: %v", err)
}
// Test Start
if err := broker.Start(context.Background()); err != nil {
t.Fatalf("Failed to start broker: %v", err)
}
// Test double start (should fail)
if err := broker.Start(context.Background()); err == nil {
t.Error("Expected error on double start")
}
// Test Stop
if err := broker.Stop(context.Background()); err != nil {
t.Fatalf("Failed to stop broker: %v", err)
}
// Test double stop (should not fail)
if err := broker.Stop(context.Background()); err != nil {
t.Error("Double stop should not fail")
}
}
func TestBrokerPublishSync(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeSync,
})
broker.Start(context.Background())
defer broker.Stop(context.Background())
// Subscribe to events
called := false
var receivedEvent *Event
broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
called = true
receivedEvent = event
return nil
}))
// Publish event
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
err := broker.PublishSync(context.Background(), event)
if err != nil {
t.Fatalf("PublishSync failed: %v", err)
}
// Verify handler was called
if !called {
t.Error("Expected handler to be called")
}
if receivedEvent == nil || receivedEvent.ID != event.ID {
t.Error("Expected to receive the published event")
}
// Verify event status
if event.Status != EventStatusCompleted {
t.Errorf("Expected status %s, got %s", EventStatusCompleted, event.Status)
}
}
func TestBrokerPublishAsync(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeAsync,
WorkerCount: 2,
BufferSize: 10,
})
broker.Start(context.Background())
defer broker.Stop(context.Background())
// Subscribe to events
var callCount atomic.Int32
broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
callCount.Add(1)
return nil
}))
// Publish multiple events
for i := 0; i < 5; i++ {
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
if err := broker.PublishAsync(context.Background(), event); err != nil {
t.Fatalf("PublishAsync failed: %v", err)
}
}
// Wait for events to be processed
time.Sleep(100 * time.Millisecond)
if callCount.Load() != 5 {
t.Errorf("Expected 5 handler calls, got %d", callCount.Load())
}
}
func TestBrokerPublishBeforeStart(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
})
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
err := broker.Publish(context.Background(), event)
if err == nil {
t.Error("Expected error when publishing before start")
}
}
func TestBrokerHandlerError(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeSync,
RetryPolicy: &RetryPolicy{
MaxRetries: 2,
InitialDelay: 10 * time.Millisecond,
MaxDelay: 100 * time.Millisecond,
BackoffFactor: 2.0,
},
})
broker.Start(context.Background())
defer broker.Stop(context.Background())
// Subscribe with failing handler
var callCount atomic.Int32
broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
callCount.Add(1)
return errors.New("handler error")
}))
// Publish event
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
err := broker.PublishSync(context.Background(), event)
// Should fail after retries
if err == nil {
t.Error("Expected error from handler")
}
// Should have been called MaxRetries+1 times (initial + retries)
if callCount.Load() != 3 {
t.Errorf("Expected 3 calls (1 initial + 2 retries), got %d", callCount.Load())
}
// Event should be marked as failed
if event.Status != EventStatusFailed {
t.Errorf("Expected status %s, got %s", EventStatusFailed, event.Status)
}
}
func TestBrokerMultipleHandlers(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeSync,
})
broker.Start(context.Background())
defer broker.Stop(context.Background())
// Subscribe multiple handlers
var called1, called2, called3 bool
broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
called1 = true
return nil
}))
broker.Subscribe("test.event", EventHandlerFunc(func(ctx context.Context, event *Event) error {
called2 = true
return nil
}))
broker.Subscribe("*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
called3 = true
return nil
}))
// Publish event
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
broker.PublishSync(context.Background(), event)
// All handlers should be called
if !called1 || !called2 || !called3 {
t.Error("Expected all handlers to be called")
}
}
func TestBrokerUnsubscribe(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeSync,
})
broker.Start(context.Background())
defer broker.Stop(context.Background())
// Subscribe
called := false
id, _ := broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
called = true
return nil
}))
// Unsubscribe
if err := broker.Unsubscribe(id); err != nil {
t.Fatalf("Unsubscribe failed: %v", err)
}
// Publish event
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
broker.PublishSync(context.Background(), event)
// Handler should not be called
if called {
t.Error("Expected handler not to be called after unsubscribe")
}
}
func TestBrokerStats(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeSync,
})
broker.Start(context.Background())
defer broker.Stop(context.Background())
// Subscribe
broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
return nil
}))
// Publish events
for i := 0; i < 3; i++ {
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
broker.PublishSync(context.Background(), event)
}
// Get stats
stats, err := broker.Stats(context.Background())
if err != nil {
t.Fatalf("Stats failed: %v", err)
}
if stats.InstanceID != "test-instance" {
t.Errorf("Expected instance ID 'test-instance', got %s", stats.InstanceID)
}
if stats.TotalPublished != 3 {
t.Errorf("Expected 3 published events, got %d", stats.TotalPublished)
}
if stats.TotalProcessed != 3 {
t.Errorf("Expected 3 processed events, got %d", stats.TotalProcessed)
}
if stats.ActiveSubscribers != 1 {
t.Errorf("Expected 1 active subscriber, got %d", stats.ActiveSubscribers)
}
}
func TestBrokerInstanceID(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "my-instance",
})
if broker.InstanceID() != "my-instance" {
t.Errorf("Expected instance ID 'my-instance', got %s", broker.InstanceID())
}
}
func TestBrokerConcurrentPublish(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeAsync,
WorkerCount: 5,
BufferSize: 100,
})
broker.Start(context.Background())
defer broker.Stop(context.Background())
var callCount atomic.Int32
broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
callCount.Add(1)
return nil
}))
// Publish concurrently
var wg sync.WaitGroup
for i := 0; i < 50; i++ {
wg.Add(1)
go func() {
defer wg.Done()
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
broker.PublishAsync(context.Background(), event)
}()
}
wg.Wait()
time.Sleep(200 * time.Millisecond) // Wait for async processing
if callCount.Load() != 50 {
t.Errorf("Expected 50 handler calls, got %d", callCount.Load())
}
}
func TestBrokerGracefulShutdown(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: ProcessingModeAsync,
WorkerCount: 2,
BufferSize: 10,
})
broker.Start(context.Background())
var processedCount atomic.Int32
broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
time.Sleep(50 * time.Millisecond) // Simulate work
processedCount.Add(1)
return nil
}))
// Publish events
for i := 0; i < 5; i++ {
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
broker.PublishAsync(context.Background(), event)
}
// Stop broker (should wait for events to be processed)
if err := broker.Stop(context.Background()); err != nil {
t.Fatalf("Stop failed: %v", err)
}
// All events should be processed
if processedCount.Load() != 5 {
t.Errorf("Expected 5 processed events, got %d", processedCount.Load())
}
}
func TestBrokerDefaultRetryPolicy(t *testing.T) {
policy := DefaultRetryPolicy()
if policy.MaxRetries != 3 {
t.Errorf("Expected MaxRetries 3, got %d", policy.MaxRetries)
}
if policy.InitialDelay != 1*time.Second {
t.Errorf("Expected InitialDelay 1s, got %v", policy.InitialDelay)
}
if policy.BackoffFactor != 2.0 {
t.Errorf("Expected BackoffFactor 2.0, got %f", policy.BackoffFactor)
}
}
func TestBrokerProcessingModes(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
tests := []struct {
name string
mode ProcessingMode
}{
{"sync mode", ProcessingModeSync},
{"async mode", ProcessingModeAsync},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
broker, _ := NewBroker(Options{
Provider: provider,
InstanceID: "test-instance",
Mode: tt.mode,
})
broker.Start(context.Background())
defer broker.Stop(context.Background())
called := false
broker.Subscribe("test.*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
called = true
return nil
}))
event := NewEvent(EventSourceSystem, "test.event")
event.InstanceID = "test-instance"
broker.Publish(context.Background(), event)
if tt.mode == ProcessingModeAsync {
time.Sleep(50 * time.Millisecond)
}
if !called {
t.Error("Expected handler to be called")
}
})
}
}

175
pkg/eventbroker/event.go Normal file
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@ -0,0 +1,175 @@
package eventbroker
import (
"encoding/json"
"fmt"
"time"
"github.com/google/uuid"
)
// EventSource represents where an event originated from
type EventSource string
const (
EventSourceDatabase EventSource = "database"
EventSourceWebSocket EventSource = "websocket"
EventSourceFrontend EventSource = "frontend"
EventSourceSystem EventSource = "system"
EventSourceInternal EventSource = "internal"
)
// EventStatus represents the current state of an event
type EventStatus string
const (
EventStatusPending EventStatus = "pending"
EventStatusProcessing EventStatus = "processing"
EventStatusCompleted EventStatus = "completed"
EventStatusFailed EventStatus = "failed"
)
// Event represents a single event in the system with complete metadata
type Event struct {
// Identification
ID string `json:"id" db:"id"`
// Source & Classification
Source EventSource `json:"source" db:"source"`
Type string `json:"type" db:"type"` // Pattern: schema.entity.operation
// Status Tracking
Status EventStatus `json:"status" db:"status"`
RetryCount int `json:"retry_count" db:"retry_count"`
Error string `json:"error,omitempty" db:"error"`
// Payload
Payload json.RawMessage `json:"payload" db:"payload"`
// Context Information
UserID int `json:"user_id" db:"user_id"`
SessionID string `json:"session_id" db:"session_id"`
InstanceID string `json:"instance_id" db:"instance_id"`
// Database Context
Schema string `json:"schema" db:"schema"`
Entity string `json:"entity" db:"entity"`
Operation string `json:"operation" db:"operation"` // create, update, delete, read
// Timestamps
CreatedAt time.Time `json:"created_at" db:"created_at"`
ProcessedAt *time.Time `json:"processed_at,omitempty" db:"processed_at"`
CompletedAt *time.Time `json:"completed_at,omitempty" db:"completed_at"`
// Extensibility
Metadata map[string]interface{} `json:"metadata" db:"metadata"`
}
// NewEvent creates a new event with defaults
func NewEvent(source EventSource, eventType string) *Event {
return &Event{
ID: uuid.New().String(),
Source: source,
Type: eventType,
Status: EventStatusPending,
CreatedAt: time.Now(),
Metadata: make(map[string]interface{}),
RetryCount: 0,
}
}
// EventType generates a type string from schema, entity, and operation
// Pattern: schema.entity.operation (e.g., "public.users.create")
func EventType(schema, entity, operation string) string {
return fmt.Sprintf("%s.%s.%s", schema, entity, operation)
}
// MarkProcessing marks the event as being processed
func (e *Event) MarkProcessing() {
e.Status = EventStatusProcessing
now := time.Now()
e.ProcessedAt = &now
}
// MarkCompleted marks the event as successfully completed
func (e *Event) MarkCompleted() {
e.Status = EventStatusCompleted
now := time.Now()
e.CompletedAt = &now
}
// MarkFailed marks the event as failed with an error message
func (e *Event) MarkFailed(err error) {
e.Status = EventStatusFailed
e.Error = err.Error()
now := time.Now()
e.CompletedAt = &now
}
// IncrementRetry increments the retry counter
func (e *Event) IncrementRetry() {
e.RetryCount++
}
// SetPayload sets the event payload from any value by marshaling to JSON
func (e *Event) SetPayload(v interface{}) error {
data, err := json.Marshal(v)
if err != nil {
return fmt.Errorf("failed to marshal payload: %w", err)
}
e.Payload = data
return nil
}
// GetPayload unmarshals the payload into the provided value
func (e *Event) GetPayload(v interface{}) error {
if len(e.Payload) == 0 {
return fmt.Errorf("payload is empty")
}
if err := json.Unmarshal(e.Payload, v); err != nil {
return fmt.Errorf("failed to unmarshal payload: %w", err)
}
return nil
}
// Clone creates a deep copy of the event
func (e *Event) Clone() *Event {
clone := *e
// Deep copy metadata
if e.Metadata != nil {
clone.Metadata = make(map[string]interface{})
for k, v := range e.Metadata {
clone.Metadata[k] = v
}
}
// Deep copy timestamps
if e.ProcessedAt != nil {
t := *e.ProcessedAt
clone.ProcessedAt = &t
}
if e.CompletedAt != nil {
t := *e.CompletedAt
clone.CompletedAt = &t
}
return &clone
}
// Validate performs basic validation on the event
func (e *Event) Validate() error {
if e.ID == "" {
return fmt.Errorf("event ID is required")
}
if e.Source == "" {
return fmt.Errorf("event source is required")
}
if e.Type == "" {
return fmt.Errorf("event type is required")
}
if e.InstanceID == "" {
return fmt.Errorf("instance ID is required")
}
return nil
}

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@ -0,0 +1,314 @@
package eventbroker
import (
"encoding/json"
"errors"
"testing"
"time"
)
func TestNewEvent(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
if event.ID == "" {
t.Error("Expected event ID to be generated")
}
if event.Source != EventSourceDatabase {
t.Errorf("Expected source %s, got %s", EventSourceDatabase, event.Source)
}
if event.Type != "public.users.create" {
t.Errorf("Expected type 'public.users.create', got %s", event.Type)
}
if event.Status != EventStatusPending {
t.Errorf("Expected status %s, got %s", EventStatusPending, event.Status)
}
if event.CreatedAt.IsZero() {
t.Error("Expected CreatedAt to be set")
}
if event.Metadata == nil {
t.Error("Expected Metadata to be initialized")
}
}
func TestEventType(t *testing.T) {
tests := []struct {
schema string
entity string
operation string
expected string
}{
{"public", "users", "create", "public.users.create"},
{"admin", "roles", "update", "admin.roles.update"},
{"", "system", "start", ".system.start"}, // Empty schema results in leading dot
}
for _, tt := range tests {
result := EventType(tt.schema, tt.entity, tt.operation)
if result != tt.expected {
t.Errorf("EventType(%q, %q, %q) = %q, expected %q",
tt.schema, tt.entity, tt.operation, result, tt.expected)
}
}
}
func TestEventValidate(t *testing.T) {
tests := []struct {
name string
event *Event
wantError bool
}{
{
name: "valid event",
event: func() *Event {
e := NewEvent(EventSourceDatabase, "public.users.create")
e.InstanceID = "test-instance"
return e
}(),
wantError: false,
},
{
name: "missing ID",
event: &Event{
Source: EventSourceDatabase,
Type: "public.users.create",
Status: EventStatusPending,
},
wantError: true,
},
{
name: "missing source",
event: &Event{
ID: "test-id",
Type: "public.users.create",
Status: EventStatusPending,
},
wantError: true,
},
{
name: "missing type",
event: &Event{
ID: "test-id",
Source: EventSourceDatabase,
Status: EventStatusPending,
},
wantError: true,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
err := tt.event.Validate()
if (err != nil) != tt.wantError {
t.Errorf("Event.Validate() error = %v, wantError %v", err, tt.wantError)
}
})
}
}
func TestEventSetPayload(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
payload := map[string]interface{}{
"id": 1,
"name": "John Doe",
"email": "john@example.com",
}
err := event.SetPayload(payload)
if err != nil {
t.Fatalf("SetPayload failed: %v", err)
}
if event.Payload == nil {
t.Fatal("Expected payload to be set")
}
// Verify payload can be unmarshaled
var result map[string]interface{}
if err := json.Unmarshal(event.Payload, &result); err != nil {
t.Fatalf("Failed to unmarshal payload: %v", err)
}
if result["name"] != "John Doe" {
t.Errorf("Expected name 'John Doe', got %v", result["name"])
}
}
func TestEventGetPayload(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
payload := map[string]interface{}{
"id": float64(1), // JSON unmarshals numbers as float64
"name": "John Doe",
}
if err := event.SetPayload(payload); err != nil {
t.Fatalf("SetPayload failed: %v", err)
}
var result map[string]interface{}
if err := event.GetPayload(&result); err != nil {
t.Fatalf("GetPayload failed: %v", err)
}
if result["name"] != "John Doe" {
t.Errorf("Expected name 'John Doe', got %v", result["name"])
}
}
func TestEventMarkProcessing(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
event.MarkProcessing()
if event.Status != EventStatusProcessing {
t.Errorf("Expected status %s, got %s", EventStatusProcessing, event.Status)
}
if event.ProcessedAt == nil {
t.Error("Expected ProcessedAt to be set")
}
}
func TestEventMarkCompleted(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
event.MarkCompleted()
if event.Status != EventStatusCompleted {
t.Errorf("Expected status %s, got %s", EventStatusCompleted, event.Status)
}
if event.CompletedAt == nil {
t.Error("Expected CompletedAt to be set")
}
}
func TestEventMarkFailed(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
testErr := errors.New("test error")
event.MarkFailed(testErr)
if event.Status != EventStatusFailed {
t.Errorf("Expected status %s, got %s", EventStatusFailed, event.Status)
}
if event.Error != "test error" {
t.Errorf("Expected error %q, got %q", "test error", event.Error)
}
if event.CompletedAt == nil {
t.Error("Expected CompletedAt to be set")
}
}
func TestEventIncrementRetry(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
initialCount := event.RetryCount
event.IncrementRetry()
if event.RetryCount != initialCount+1 {
t.Errorf("Expected retry count %d, got %d", initialCount+1, event.RetryCount)
}
}
func TestEventJSONMarshaling(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
event.UserID = 123
event.SessionID = "session-123"
event.InstanceID = "instance-1"
event.Schema = "public"
event.Entity = "users"
event.Operation = "create"
event.SetPayload(map[string]interface{}{"name": "Test"})
// Marshal to JSON
data, err := json.Marshal(event)
if err != nil {
t.Fatalf("Failed to marshal event: %v", err)
}
// Unmarshal back
var decoded Event
if err := json.Unmarshal(data, &decoded); err != nil {
t.Fatalf("Failed to unmarshal event: %v", err)
}
// Verify fields
if decoded.ID != event.ID {
t.Errorf("Expected ID %s, got %s", event.ID, decoded.ID)
}
if decoded.Source != event.Source {
t.Errorf("Expected source %s, got %s", event.Source, decoded.Source)
}
if decoded.UserID != event.UserID {
t.Errorf("Expected UserID %d, got %d", event.UserID, decoded.UserID)
}
}
func TestEventStatusString(t *testing.T) {
statuses := []EventStatus{
EventStatusPending,
EventStatusProcessing,
EventStatusCompleted,
EventStatusFailed,
}
for _, status := range statuses {
if string(status) == "" {
t.Errorf("EventStatus %v has empty string representation", status)
}
}
}
func TestEventSourceString(t *testing.T) {
sources := []EventSource{
EventSourceDatabase,
EventSourceWebSocket,
EventSourceFrontend,
EventSourceSystem,
EventSourceInternal,
}
for _, source := range sources {
if string(source) == "" {
t.Errorf("EventSource %v has empty string representation", source)
}
}
}
func TestEventMetadata(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
// Test setting metadata
event.Metadata["key1"] = "value1"
event.Metadata["key2"] = 123
if event.Metadata["key1"] != "value1" {
t.Errorf("Expected metadata key1 to be 'value1', got %v", event.Metadata["key1"])
}
if event.Metadata["key2"] != 123 {
t.Errorf("Expected metadata key2 to be 123, got %v", event.Metadata["key2"])
}
}
func TestEventTimestamps(t *testing.T) {
event := NewEvent(EventSourceDatabase, "public.users.create")
createdAt := event.CreatedAt
// Wait a tiny bit to ensure timestamps differ
time.Sleep(time.Millisecond)
event.MarkProcessing()
if event.ProcessedAt == nil {
t.Fatal("ProcessedAt should be set")
}
if !event.ProcessedAt.After(createdAt) {
t.Error("ProcessedAt should be after CreatedAt")
}
time.Sleep(time.Millisecond)
event.MarkCompleted()
if event.CompletedAt == nil {
t.Fatal("CompletedAt should be set")
}
if !event.CompletedAt.After(*event.ProcessedAt) {
t.Error("CompletedAt should be after ProcessedAt")
}
}

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package eventbroker
import (
"context"
"fmt"
"sync"
"github.com/bitechdev/ResolveSpec/pkg/config"
"github.com/bitechdev/ResolveSpec/pkg/logger"
"github.com/bitechdev/ResolveSpec/pkg/server"
)
var (
defaultBroker Broker
brokerMu sync.RWMutex
)
// Initialize initializes the global event broker from configuration
func Initialize(cfg config.EventBrokerConfig) error {
if !cfg.Enabled {
logger.Info("Event broker is disabled")
return nil
}
// Create provider
provider, err := NewProviderFromConfig(cfg)
if err != nil {
return fmt.Errorf("failed to create provider: %w", err)
}
// Parse mode
mode := ProcessingModeAsync
if cfg.Mode == "sync" {
mode = ProcessingModeSync
}
// Convert retry policy
retryPolicy := &RetryPolicy{
MaxRetries: cfg.RetryPolicy.MaxRetries,
InitialDelay: cfg.RetryPolicy.InitialDelay,
MaxDelay: cfg.RetryPolicy.MaxDelay,
BackoffFactor: cfg.RetryPolicy.BackoffFactor,
}
if retryPolicy.MaxRetries == 0 {
retryPolicy = DefaultRetryPolicy()
}
// Create broker options
opts := Options{
Provider: provider,
Mode: mode,
WorkerCount: cfg.WorkerCount,
BufferSize: cfg.BufferSize,
RetryPolicy: retryPolicy,
InstanceID: getInstanceID(cfg.InstanceID),
}
// Create broker
broker, err := NewBroker(opts)
if err != nil {
return fmt.Errorf("failed to create broker: %w", err)
}
// Start broker
if err := broker.Start(context.Background()); err != nil {
return fmt.Errorf("failed to start broker: %w", err)
}
// Set as default
SetDefaultBroker(broker)
// Register shutdown callback
RegisterShutdown(broker)
logger.Info("Event broker initialized successfully (provider: %s, mode: %s, instance: %s)",
cfg.Provider, cfg.Mode, opts.InstanceID)
return nil
}
// SetDefaultBroker sets the default global broker
func SetDefaultBroker(broker Broker) {
brokerMu.Lock()
defer brokerMu.Unlock()
defaultBroker = broker
}
// GetDefaultBroker returns the default global broker
func GetDefaultBroker() Broker {
brokerMu.RLock()
defer brokerMu.RUnlock()
return defaultBroker
}
// IsInitialized returns true if the default broker is initialized
func IsInitialized() bool {
return GetDefaultBroker() != nil
}
// Publish publishes an event using the default broker
func Publish(ctx context.Context, event *Event) error {
broker := GetDefaultBroker()
if broker == nil {
return fmt.Errorf("event broker not initialized")
}
return broker.Publish(ctx, event)
}
// PublishSync publishes an event synchronously using the default broker
func PublishSync(ctx context.Context, event *Event) error {
broker := GetDefaultBroker()
if broker == nil {
return fmt.Errorf("event broker not initialized")
}
return broker.PublishSync(ctx, event)
}
// PublishAsync publishes an event asynchronously using the default broker
func PublishAsync(ctx context.Context, event *Event) error {
broker := GetDefaultBroker()
if broker == nil {
return fmt.Errorf("event broker not initialized")
}
return broker.PublishAsync(ctx, event)
}
// Subscribe subscribes to events using the default broker
func Subscribe(pattern string, handler EventHandler) (SubscriptionID, error) {
broker := GetDefaultBroker()
if broker == nil {
return "", fmt.Errorf("event broker not initialized")
}
return broker.Subscribe(pattern, handler)
}
// Unsubscribe unsubscribes from events using the default broker
func Unsubscribe(id SubscriptionID) error {
broker := GetDefaultBroker()
if broker == nil {
return fmt.Errorf("event broker not initialized")
}
return broker.Unsubscribe(id)
}
// Stats returns statistics from the default broker
func Stats(ctx context.Context) (*BrokerStats, error) {
broker := GetDefaultBroker()
if broker == nil {
return nil, fmt.Errorf("event broker not initialized")
}
return broker.Stats(ctx)
}
// RegisterShutdown registers the broker's shutdown with the server shutdown callbacks
func RegisterShutdown(broker Broker) {
server.RegisterShutdownCallback(func(ctx context.Context) error {
logger.Info("Shutting down event broker...")
return broker.Stop(ctx)
})
}

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// nolint
package eventbroker
import (
"context"
"fmt"
"time"
"github.com/bitechdev/ResolveSpec/pkg/logger"
)
// Example demonstrates basic usage of the event broker
func Example() {
// 1. Create a memory provider
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "example-instance",
MaxEvents: 1000,
CleanupInterval: 5 * time.Minute,
MaxAge: 1 * time.Hour,
})
// 2. Create a broker
broker, err := NewBroker(Options{
Provider: provider,
Mode: ProcessingModeAsync,
WorkerCount: 5,
BufferSize: 100,
RetryPolicy: DefaultRetryPolicy(),
InstanceID: "example-instance",
})
if err != nil {
logger.Error("Failed to create broker: %v", err)
return
}
// 3. Start the broker
if err := broker.Start(context.Background()); err != nil {
logger.Error("Failed to start broker: %v", err)
return
}
defer func() {
err := broker.Stop(context.Background())
if err != nil {
logger.Error("Failed to stop broker: %v", err)
}
}()
// 4. Subscribe to events
broker.Subscribe("public.users.*", EventHandlerFunc(
func(ctx context.Context, event *Event) error {
logger.Info("User event: %s (operation: %s)", event.Type, event.Operation)
return nil
},
))
broker.Subscribe("*.*.create", EventHandlerFunc(
func(ctx context.Context, event *Event) error {
logger.Info("Create event: %s.%s", event.Schema, event.Entity)
return nil
},
))
// 5. Publish events
ctx := context.Background()
// Database event
dbEvent := NewEvent(EventSourceDatabase, EventType("public", "users", "create"))
dbEvent.InstanceID = "example-instance"
dbEvent.UserID = 123
dbEvent.SessionID = "session-456"
dbEvent.Schema = "public"
dbEvent.Entity = "users"
dbEvent.Operation = "create"
dbEvent.SetPayload(map[string]interface{}{
"id": 123,
"name": "John Doe",
"email": "john@example.com",
})
if err := broker.PublishAsync(ctx, dbEvent); err != nil {
logger.Error("Failed to publish event: %v", err)
}
// WebSocket event
wsEvent := NewEvent(EventSourceWebSocket, "chat.message")
wsEvent.InstanceID = "example-instance"
wsEvent.UserID = 123
wsEvent.SessionID = "session-456"
wsEvent.SetPayload(map[string]interface{}{
"room": "general",
"message": "Hello, World!",
})
if err := broker.PublishAsync(ctx, wsEvent); err != nil {
logger.Error("Failed to publish event: %v", err)
}
// 6. Get statistics
time.Sleep(1 * time.Second) // Wait for processing
stats, _ := broker.Stats(ctx)
logger.Info("Broker stats: %d published, %d processed", stats.TotalPublished, stats.TotalProcessed)
}
// ExampleWithHooks demonstrates integration with the hook system
func ExampleWithHooks() {
// This would typically be called in your main.go or initialization code
// after setting up your restheadspec.Handler
// Pseudo-code (actual implementation would use real handler):
/*
broker := eventbroker.GetDefaultBroker()
hookRegistry := handler.Hooks()
// Register CRUD hooks
config := eventbroker.DefaultCRUDHookConfig()
config.EnableRead = false // Disable read events for performance
if err := eventbroker.RegisterCRUDHooks(broker, hookRegistry, config); err != nil {
logger.Error("Failed to register CRUD hooks: %v", err)
}
// Now all CRUD operations will automatically publish events
*/
}
// ExampleSubscriptionPatterns demonstrates different subscription patterns
func ExampleSubscriptionPatterns() {
broker := GetDefaultBroker()
if broker == nil {
return
}
// Pattern 1: Subscribe to all events from a specific entity
broker.Subscribe("public.users.*", EventHandlerFunc(
func(ctx context.Context, event *Event) error {
fmt.Printf("User event: %s\n", event.Operation)
return nil
},
))
// Pattern 2: Subscribe to a specific operation across all entities
broker.Subscribe("*.*.create", EventHandlerFunc(
func(ctx context.Context, event *Event) error {
fmt.Printf("Create event: %s.%s\n", event.Schema, event.Entity)
return nil
},
))
// Pattern 3: Subscribe to all events in a schema
broker.Subscribe("public.*.*", EventHandlerFunc(
func(ctx context.Context, event *Event) error {
fmt.Printf("Public schema event: %s.%s\n", event.Entity, event.Operation)
return nil
},
))
// Pattern 4: Subscribe to everything (use with caution)
broker.Subscribe("*", EventHandlerFunc(
func(ctx context.Context, event *Event) error {
fmt.Printf("Any event: %s\n", event.Type)
return nil
},
))
}
// ExampleErrorHandling demonstrates error handling in event handlers
func ExampleErrorHandling() {
broker := GetDefaultBroker()
if broker == nil {
return
}
// Handler that may fail
broker.Subscribe("public.users.create", EventHandlerFunc(
func(ctx context.Context, event *Event) error {
// Simulate processing
var user struct {
ID int `json:"id"`
Email string `json:"email"`
}
if err := event.GetPayload(&user); err != nil {
return fmt.Errorf("invalid payload: %w", err)
}
// Validate
if user.Email == "" {
return fmt.Errorf("email is required")
}
// Process (e.g., send email)
logger.Info("Sending welcome email to %s", user.Email)
return nil
},
))
}
// ExampleConfiguration demonstrates initializing from configuration
func ExampleConfiguration() {
// This would typically be in your main.go
// Pseudo-code:
/*
// Load configuration
cfgMgr := config.NewManager()
if err := cfgMgr.Load(); err != nil {
logger.Fatal("Failed to load config: %v", err)
}
cfg, err := cfgMgr.GetConfig()
if err != nil {
logger.Fatal("Failed to get config: %v", err)
}
// Initialize event broker
if err := eventbroker.Initialize(cfg.EventBroker); err != nil {
logger.Fatal("Failed to initialize event broker: %v", err)
}
// Use the default broker
eventbroker.Subscribe("*.*.create", eventbroker.EventHandlerFunc(
func(ctx context.Context, event *eventbroker.Event) error {
logger.Info("Created: %s.%s", event.Schema, event.Entity)
return nil
},
))
*/
}
// ExampleYAMLConfiguration shows example YAML configuration
const ExampleYAMLConfiguration = `
event_broker:
enabled: true
provider: memory # memory, redis, nats, database
mode: async # sync, async
worker_count: 10
buffer_size: 1000
instance_id: "${HOSTNAME}"
# Memory provider is default, no additional config needed
# Redis provider (when provider: redis)
redis:
stream_name: "resolvespec:events"
consumer_group: "resolvespec-workers"
host: "localhost"
port: 6379
# NATS provider (when provider: nats)
nats:
url: "nats://localhost:4222"
stream_name: "RESOLVESPEC_EVENTS"
# Database provider (when provider: database)
database:
table_name: "events"
channel: "resolvespec_events"
# Retry policy
retry_policy:
max_retries: 3
initial_delay: 1s
max_delay: 30s
backoff_factor: 2.0
`

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package eventbroker
import (
"fmt"
"os"
"time"
"github.com/bitechdev/ResolveSpec/pkg/config"
)
// NewProviderFromConfig creates a provider based on configuration
func NewProviderFromConfig(cfg config.EventBrokerConfig) (Provider, error) {
switch cfg.Provider {
case "memory":
cleanupInterval := 5 * time.Minute
if cfg.Database.PollInterval > 0 {
cleanupInterval = cfg.Database.PollInterval
}
return NewMemoryProvider(MemoryProviderOptions{
InstanceID: getInstanceID(cfg.InstanceID),
MaxEvents: 10000,
CleanupInterval: cleanupInterval,
}), nil
case "redis":
// Redis provider will be implemented in Phase 8
return nil, fmt.Errorf("redis provider not yet implemented")
case "nats":
// NATS provider will be implemented in Phase 9
return nil, fmt.Errorf("nats provider not yet implemented")
case "database":
// Database provider will be implemented in Phase 7
return nil, fmt.Errorf("database provider not yet implemented")
default:
return nil, fmt.Errorf("unknown provider: %s", cfg.Provider)
}
}
// getInstanceID returns the instance ID, defaulting to hostname if not specified
func getInstanceID(configID string) string {
if configID != "" {
return configID
}
// Try to get hostname
if hostname, err := os.Hostname(); err == nil {
return hostname
}
// Fallback to a default
return "resolvespec-instance"
}

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package eventbroker
import "context"
// EventHandler processes an event
type EventHandler interface {
Handle(ctx context.Context, event *Event) error
}
// EventHandlerFunc is a function adapter for EventHandler
// This allows using regular functions as event handlers
type EventHandlerFunc func(ctx context.Context, event *Event) error
// Handle implements EventHandler
func (f EventHandlerFunc) Handle(ctx context.Context, event *Event) error {
return f(ctx, event)
}

137
pkg/eventbroker/hooks.go Normal file
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package eventbroker
import (
"encoding/json"
"fmt"
"github.com/bitechdev/ResolveSpec/pkg/logger"
"github.com/bitechdev/ResolveSpec/pkg/restheadspec"
"github.com/bitechdev/ResolveSpec/pkg/security"
)
// CRUDHookConfig configures which CRUD operations should trigger events
type CRUDHookConfig struct {
EnableCreate bool
EnableRead bool
EnableUpdate bool
EnableDelete bool
}
// DefaultCRUDHookConfig returns default configuration (all enabled)
func DefaultCRUDHookConfig() *CRUDHookConfig {
return &CRUDHookConfig{
EnableCreate: true,
EnableRead: false, // Typically disabled for performance
EnableUpdate: true,
EnableDelete: true,
}
}
// RegisterCRUDHooks registers event hooks for CRUD operations
// This integrates with the restheadspec.HookRegistry to automatically
// capture database events
func RegisterCRUDHooks(broker Broker, hookRegistry *restheadspec.HookRegistry, config *CRUDHookConfig) error {
if broker == nil {
return fmt.Errorf("broker cannot be nil")
}
if hookRegistry == nil {
return fmt.Errorf("hookRegistry cannot be nil")
}
if config == nil {
config = DefaultCRUDHookConfig()
}
// Create hook handler factory
createHookHandler := func(operation string) restheadspec.HookFunc {
return func(hookCtx *restheadspec.HookContext) error {
// Get user context from Go context
userCtx, ok := security.GetUserContext(hookCtx.Context)
if !ok || userCtx == nil {
logger.Debug("No user context found in hook")
userCtx = &security.UserContext{} // Empty user context
}
// Create event
event := NewEvent(EventSourceDatabase, EventType(hookCtx.Schema, hookCtx.Entity, operation))
event.InstanceID = broker.InstanceID()
event.UserID = userCtx.UserID
event.SessionID = userCtx.SessionID
event.Schema = hookCtx.Schema
event.Entity = hookCtx.Entity
event.Operation = operation
// Set payload based on operation
var payload interface{}
switch operation {
case "create":
payload = hookCtx.Result
case "read":
payload = hookCtx.Result
case "update":
payload = map[string]interface{}{
"id": hookCtx.ID,
"data": hookCtx.Data,
}
case "delete":
payload = map[string]interface{}{
"id": hookCtx.ID,
}
}
if payload != nil {
if err := event.SetPayload(payload); err != nil {
logger.Error("Failed to set event payload: %v", err)
payload = map[string]interface{}{"error": "failed to serialize payload"}
event.Payload, _ = json.Marshal(payload)
}
}
// Add metadata
if userCtx.UserName != "" {
event.Metadata["user_name"] = userCtx.UserName
}
if userCtx.Email != "" {
event.Metadata["user_email"] = userCtx.Email
}
if len(userCtx.Roles) > 0 {
event.Metadata["user_roles"] = userCtx.Roles
}
event.Metadata["table_name"] = hookCtx.TableName
// Publish asynchronously to not block CRUD operation
if err := broker.PublishAsync(hookCtx.Context, event); err != nil {
logger.Error("Failed to publish %s event for %s.%s: %v",
operation, hookCtx.Schema, hookCtx.Entity, err)
// Don't fail the CRUD operation if event publishing fails
return nil
}
logger.Debug("Published %s event for %s.%s (ID: %s)",
operation, hookCtx.Schema, hookCtx.Entity, event.ID)
return nil
}
}
// Register hooks based on configuration
if config.EnableCreate {
hookRegistry.Register(restheadspec.AfterCreate, createHookHandler("create"))
logger.Info("Registered event hook for CREATE operations")
}
if config.EnableRead {
hookRegistry.Register(restheadspec.AfterRead, createHookHandler("read"))
logger.Info("Registered event hook for READ operations")
}
if config.EnableUpdate {
hookRegistry.Register(restheadspec.AfterUpdate, createHookHandler("update"))
logger.Info("Registered event hook for UPDATE operations")
}
if config.EnableDelete {
hookRegistry.Register(restheadspec.AfterDelete, createHookHandler("delete"))
logger.Info("Registered event hook for DELETE operations")
}
return nil
}

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package eventbroker
import (
"time"
"github.com/bitechdev/ResolveSpec/pkg/metrics"
)
// recordEventPublished records an event publication metric
func recordEventPublished(event *Event) {
if mp := metrics.GetProvider(); mp != nil {
mp.RecordEventPublished(string(event.Source), event.Type)
}
}
// recordEventProcessed records an event processing metric
func recordEventProcessed(event *Event, duration time.Duration) {
if mp := metrics.GetProvider(); mp != nil {
mp.RecordEventProcessed(string(event.Source), event.Type, string(event.Status), duration)
}
}
// updateQueueSize updates the event queue size metric
func updateQueueSize(size int64) {
if mp := metrics.GetProvider(); mp != nil {
mp.UpdateEventQueueSize(size)
}
}

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package eventbroker
import (
"context"
"time"
)
// Provider defines the storage backend interface for events
// Implementations: MemoryProvider, RedisProvider, NATSProvider, DatabaseProvider
type Provider interface {
// Store stores an event
Store(ctx context.Context, event *Event) error
// Get retrieves an event by ID
Get(ctx context.Context, id string) (*Event, error)
// List lists events with optional filters
List(ctx context.Context, filter *EventFilter) ([]*Event, error)
// UpdateStatus updates the status of an event
UpdateStatus(ctx context.Context, id string, status EventStatus, errorMsg string) error
// Delete deletes an event by ID
Delete(ctx context.Context, id string) error
// Stream returns a channel of events for real-time consumption
// Used for cross-instance pub/sub
// The channel is closed when the context is canceled or an error occurs
Stream(ctx context.Context, pattern string) (<-chan *Event, error)
// Publish publishes an event to all subscribers (for distributed providers)
// For in-memory provider, this is the same as Store
// For Redis/NATS/Database, this triggers cross-instance delivery
Publish(ctx context.Context, event *Event) error
// Close closes the provider and releases resources
Close() error
// Stats returns provider statistics
Stats(ctx context.Context) (*ProviderStats, error)
}
// EventFilter defines filter criteria for listing events
type EventFilter struct {
Source *EventSource
Status *EventStatus
UserID *int
Schema string
Entity string
Operation string
InstanceID string
StartTime *time.Time
EndTime *time.Time
Limit int
Offset int
}
// ProviderStats contains statistics about the provider
type ProviderStats struct {
ProviderType string `json:"provider_type"`
TotalEvents int64 `json:"total_events"`
PendingEvents int64 `json:"pending_events"`
ProcessingEvents int64 `json:"processing_events"`
CompletedEvents int64 `json:"completed_events"`
FailedEvents int64 `json:"failed_events"`
EventsPublished int64 `json:"events_published"`
EventsConsumed int64 `json:"events_consumed"`
ActiveSubscribers int `json:"active_subscribers"`
ProviderSpecific map[string]interface{} `json:"provider_specific,omitempty"`
}

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package eventbroker
import (
"context"
"fmt"
"sync"
"sync/atomic"
"time"
"github.com/bitechdev/ResolveSpec/pkg/logger"
)
// MemoryProvider implements Provider interface using in-memory storage
// Features:
// - Thread-safe event storage with RW mutex
// - LRU eviction when max events reached
// - In-process pub/sub (not cross-instance)
// - Automatic cleanup of old completed events
type MemoryProvider struct {
mu sync.RWMutex
events map[string]*Event
eventOrder []string // For LRU tracking
subscribers map[string][]chan *Event
instanceID string
maxEvents int
cleanupInterval time.Duration
maxAge time.Duration
// Statistics
stats MemoryProviderStats
// Lifecycle
stopCleanup chan struct{}
wg sync.WaitGroup
isRunning atomic.Bool
}
// MemoryProviderStats contains statistics for the memory provider
type MemoryProviderStats struct {
TotalEvents atomic.Int64
PendingEvents atomic.Int64
ProcessingEvents atomic.Int64
CompletedEvents atomic.Int64
FailedEvents atomic.Int64
EventsPublished atomic.Int64
EventsConsumed atomic.Int64
ActiveSubscribers atomic.Int32
Evictions atomic.Int64
}
// MemoryProviderOptions configures the memory provider
type MemoryProviderOptions struct {
InstanceID string
MaxEvents int
CleanupInterval time.Duration
MaxAge time.Duration
}
// NewMemoryProvider creates a new in-memory event provider
func NewMemoryProvider(opts MemoryProviderOptions) *MemoryProvider {
if opts.MaxEvents == 0 {
opts.MaxEvents = 10000 // Default
}
if opts.CleanupInterval == 0 {
opts.CleanupInterval = 5 * time.Minute // Default
}
if opts.MaxAge == 0 {
opts.MaxAge = 24 * time.Hour // Default: keep events for 24 hours
}
mp := &MemoryProvider{
events: make(map[string]*Event),
eventOrder: make([]string, 0),
subscribers: make(map[string][]chan *Event),
instanceID: opts.InstanceID,
maxEvents: opts.MaxEvents,
cleanupInterval: opts.CleanupInterval,
maxAge: opts.MaxAge,
stopCleanup: make(chan struct{}),
}
mp.isRunning.Store(true)
// Start cleanup goroutine
mp.wg.Add(1)
go mp.cleanupLoop()
logger.Info("Memory provider initialized (max_events: %d, cleanup: %v, max_age: %v)",
opts.MaxEvents, opts.CleanupInterval, opts.MaxAge)
return mp
}
// Store stores an event
func (mp *MemoryProvider) Store(ctx context.Context, event *Event) error {
mp.mu.Lock()
defer mp.mu.Unlock()
// Check if we need to evict oldest events
if len(mp.events) >= mp.maxEvents {
mp.evictOldestLocked()
}
// Store event
mp.events[event.ID] = event.Clone()
mp.eventOrder = append(mp.eventOrder, event.ID)
// Update statistics
mp.stats.TotalEvents.Add(1)
mp.updateStatusCountsLocked(event.Status, 1)
return nil
}
// Get retrieves an event by ID
func (mp *MemoryProvider) Get(ctx context.Context, id string) (*Event, error) {
mp.mu.RLock()
defer mp.mu.RUnlock()
event, exists := mp.events[id]
if !exists {
return nil, fmt.Errorf("event not found: %s", id)
}
return event.Clone(), nil
}
// List lists events with optional filters
func (mp *MemoryProvider) List(ctx context.Context, filter *EventFilter) ([]*Event, error) {
mp.mu.RLock()
defer mp.mu.RUnlock()
var results []*Event
for _, event := range mp.events {
if mp.matchesFilter(event, filter) {
results = append(results, event.Clone())
}
}
// Apply limit and offset
if filter != nil {
if filter.Offset > 0 && filter.Offset < len(results) {
results = results[filter.Offset:]
}
if filter.Limit > 0 && filter.Limit < len(results) {
results = results[:filter.Limit]
}
}
return results, nil
}
// UpdateStatus updates the status of an event
func (mp *MemoryProvider) UpdateStatus(ctx context.Context, id string, status EventStatus, errorMsg string) error {
mp.mu.Lock()
defer mp.mu.Unlock()
event, exists := mp.events[id]
if !exists {
return fmt.Errorf("event not found: %s", id)
}
// Update status counts
mp.updateStatusCountsLocked(event.Status, -1)
mp.updateStatusCountsLocked(status, 1)
// Update event
event.Status = status
if errorMsg != "" {
event.Error = errorMsg
}
return nil
}
// Delete deletes an event by ID
func (mp *MemoryProvider) Delete(ctx context.Context, id string) error {
mp.mu.Lock()
defer mp.mu.Unlock()
event, exists := mp.events[id]
if !exists {
return fmt.Errorf("event not found: %s", id)
}
// Update counts
mp.stats.TotalEvents.Add(-1)
mp.updateStatusCountsLocked(event.Status, -1)
// Delete event
delete(mp.events, id)
// Remove from order tracking
for i, eid := range mp.eventOrder {
if eid == id {
mp.eventOrder = append(mp.eventOrder[:i], mp.eventOrder[i+1:]...)
break
}
}
return nil
}
// Stream returns a channel of events for real-time consumption
// Note: This is in-process only, not cross-instance
func (mp *MemoryProvider) Stream(ctx context.Context, pattern string) (<-chan *Event, error) {
mp.mu.Lock()
defer mp.mu.Unlock()
// Create buffered channel for events
ch := make(chan *Event, 100)
// Store subscriber
mp.subscribers[pattern] = append(mp.subscribers[pattern], ch)
mp.stats.ActiveSubscribers.Add(1)
// Goroutine to clean up on context cancellation
mp.wg.Add(1)
go func() {
defer mp.wg.Done()
<-ctx.Done()
mp.mu.Lock()
defer mp.mu.Unlock()
// Remove subscriber
subs := mp.subscribers[pattern]
for i, subCh := range subs {
if subCh == ch {
mp.subscribers[pattern] = append(subs[:i], subs[i+1:]...)
break
}
}
mp.stats.ActiveSubscribers.Add(-1)
close(ch)
}()
logger.Debug("Stream created for pattern: %s", pattern)
return ch, nil
}
// Publish publishes an event to all subscribers
func (mp *MemoryProvider) Publish(ctx context.Context, event *Event) error {
// Store the event first
if err := mp.Store(ctx, event); err != nil {
return err
}
mp.stats.EventsPublished.Add(1)
// Notify subscribers
mp.mu.RLock()
defer mp.mu.RUnlock()
for pattern, channels := range mp.subscribers {
if matchPattern(pattern, event.Type) {
for _, ch := range channels {
select {
case ch <- event.Clone():
mp.stats.EventsConsumed.Add(1)
default:
// Channel full, skip
logger.Warn("Subscriber channel full for pattern: %s", pattern)
}
}
}
}
return nil
}
// Close closes the provider and releases resources
func (mp *MemoryProvider) Close() error {
if !mp.isRunning.Load() {
return nil
}
mp.isRunning.Store(false)
// Stop cleanup loop
close(mp.stopCleanup)
// Wait for goroutines
mp.wg.Wait()
// Close all subscriber channels
mp.mu.Lock()
for _, channels := range mp.subscribers {
for _, ch := range channels {
close(ch)
}
}
mp.subscribers = make(map[string][]chan *Event)
mp.mu.Unlock()
logger.Info("Memory provider closed")
return nil
}
// Stats returns provider statistics
func (mp *MemoryProvider) Stats(ctx context.Context) (*ProviderStats, error) {
return &ProviderStats{
ProviderType: "memory",
TotalEvents: mp.stats.TotalEvents.Load(),
PendingEvents: mp.stats.PendingEvents.Load(),
ProcessingEvents: mp.stats.ProcessingEvents.Load(),
CompletedEvents: mp.stats.CompletedEvents.Load(),
FailedEvents: mp.stats.FailedEvents.Load(),
EventsPublished: mp.stats.EventsPublished.Load(),
EventsConsumed: mp.stats.EventsConsumed.Load(),
ActiveSubscribers: int(mp.stats.ActiveSubscribers.Load()),
ProviderSpecific: map[string]interface{}{
"max_events": mp.maxEvents,
"cleanup_interval": mp.cleanupInterval.String(),
"max_age": mp.maxAge.String(),
"evictions": mp.stats.Evictions.Load(),
},
}, nil
}
// cleanupLoop periodically cleans up old completed events
func (mp *MemoryProvider) cleanupLoop() {
defer mp.wg.Done()
ticker := time.NewTicker(mp.cleanupInterval)
defer ticker.Stop()
for {
select {
case <-ticker.C:
mp.cleanup()
case <-mp.stopCleanup:
return
}
}
}
// cleanup removes old completed/failed events
func (mp *MemoryProvider) cleanup() {
mp.mu.Lock()
defer mp.mu.Unlock()
cutoff := time.Now().Add(-mp.maxAge)
removed := 0
for id, event := range mp.events {
// Only clean up completed or failed events that are old
if (event.Status == EventStatusCompleted || event.Status == EventStatusFailed) &&
event.CreatedAt.Before(cutoff) {
delete(mp.events, id)
mp.stats.TotalEvents.Add(-1)
mp.updateStatusCountsLocked(event.Status, -1)
// Remove from order tracking
for i, eid := range mp.eventOrder {
if eid == id {
mp.eventOrder = append(mp.eventOrder[:i], mp.eventOrder[i+1:]...)
break
}
}
removed++
}
}
if removed > 0 {
logger.Debug("Cleanup removed %d old events", removed)
}
}
// evictOldestLocked evicts the oldest event (LRU)
// Caller must hold write lock
func (mp *MemoryProvider) evictOldestLocked() {
if len(mp.eventOrder) == 0 {
return
}
// Get oldest event ID
oldestID := mp.eventOrder[0]
mp.eventOrder = mp.eventOrder[1:]
// Remove event
if event, exists := mp.events[oldestID]; exists {
delete(mp.events, oldestID)
mp.stats.TotalEvents.Add(-1)
mp.updateStatusCountsLocked(event.Status, -1)
mp.stats.Evictions.Add(1)
logger.Debug("Evicted oldest event: %s", oldestID)
}
}
// matchesFilter checks if an event matches the filter criteria
func (mp *MemoryProvider) matchesFilter(event *Event, filter *EventFilter) bool {
if filter == nil {
return true
}
if filter.Source != nil && event.Source != *filter.Source {
return false
}
if filter.Status != nil && event.Status != *filter.Status {
return false
}
if filter.UserID != nil && event.UserID != *filter.UserID {
return false
}
if filter.Schema != "" && event.Schema != filter.Schema {
return false
}
if filter.Entity != "" && event.Entity != filter.Entity {
return false
}
if filter.Operation != "" && event.Operation != filter.Operation {
return false
}
if filter.InstanceID != "" && event.InstanceID != filter.InstanceID {
return false
}
if filter.StartTime != nil && event.CreatedAt.Before(*filter.StartTime) {
return false
}
if filter.EndTime != nil && event.CreatedAt.After(*filter.EndTime) {
return false
}
return true
}
// updateStatusCountsLocked updates status statistics
// Caller must hold write lock
func (mp *MemoryProvider) updateStatusCountsLocked(status EventStatus, delta int64) {
switch status {
case EventStatusPending:
mp.stats.PendingEvents.Add(delta)
case EventStatusProcessing:
mp.stats.ProcessingEvents.Add(delta)
case EventStatusCompleted:
mp.stats.CompletedEvents.Add(delta)
case EventStatusFailed:
mp.stats.FailedEvents.Add(delta)
}
}

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package eventbroker
import (
"context"
"testing"
"time"
)
func TestNewMemoryProvider(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
MaxEvents: 100,
CleanupInterval: 1 * time.Minute,
})
if provider == nil {
t.Fatal("Expected non-nil provider")
}
stats, err := provider.Stats(context.Background())
if err != nil {
t.Fatalf("Stats failed: %v", err)
}
if stats.ProviderType != "memory" {
t.Errorf("Expected provider type 'memory', got %s", stats.ProviderType)
}
}
func TestMemoryProviderPublishAndGet(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
event := NewEvent(EventSourceDatabase, "public.users.create")
event.UserID = 123
// Publish event
if err := provider.Publish(context.Background(), event); err != nil {
t.Fatalf("Publish failed: %v", err)
}
// Get event
retrieved, err := provider.Get(context.Background(), event.ID)
if err != nil {
t.Fatalf("Get failed: %v", err)
}
if retrieved.ID != event.ID {
t.Errorf("Expected event ID %s, got %s", event.ID, retrieved.ID)
}
if retrieved.UserID != 123 {
t.Errorf("Expected user ID 123, got %d", retrieved.UserID)
}
}
func TestMemoryProviderGetNonExistent(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
_, err := provider.Get(context.Background(), "non-existent-id")
if err == nil {
t.Error("Expected error when getting non-existent event")
}
}
func TestMemoryProviderUpdateStatus(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
event := NewEvent(EventSourceDatabase, "public.users.create")
provider.Publish(context.Background(), event)
// Update status to processing
err := provider.UpdateStatus(context.Background(), event.ID, EventStatusProcessing, "")
if err != nil {
t.Fatalf("UpdateStatus failed: %v", err)
}
retrieved, _ := provider.Get(context.Background(), event.ID)
if retrieved.Status != EventStatusProcessing {
t.Errorf("Expected status %s, got %s", EventStatusProcessing, retrieved.Status)
}
// Update status to failed with error
err = provider.UpdateStatus(context.Background(), event.ID, EventStatusFailed, "test error")
if err != nil {
t.Fatalf("UpdateStatus failed: %v", err)
}
retrieved, _ = provider.Get(context.Background(), event.ID)
if retrieved.Status != EventStatusFailed {
t.Errorf("Expected status %s, got %s", EventStatusFailed, retrieved.Status)
}
if retrieved.Error != "test error" {
t.Errorf("Expected error 'test error', got %s", retrieved.Error)
}
}
func TestMemoryProviderList(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
// Publish multiple events
for i := 0; i < 5; i++ {
event := NewEvent(EventSourceDatabase, "public.users.create")
provider.Publish(context.Background(), event)
}
// List all events
events, err := provider.List(context.Background(), &EventFilter{})
if err != nil {
t.Fatalf("List failed: %v", err)
}
if len(events) != 5 {
t.Errorf("Expected 5 events, got %d", len(events))
}
}
func TestMemoryProviderListWithFilter(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
// Publish events with different types
event1 := NewEvent(EventSourceDatabase, "public.users.create")
provider.Publish(context.Background(), event1)
event2 := NewEvent(EventSourceDatabase, "public.roles.create")
provider.Publish(context.Background(), event2)
event3 := NewEvent(EventSourceWebSocket, "chat.message")
provider.Publish(context.Background(), event3)
// Filter by source
source := EventSourceDatabase
events, err := provider.List(context.Background(), &EventFilter{
Source: &source,
})
if err != nil {
t.Fatalf("List failed: %v", err)
}
if len(events) != 2 {
t.Errorf("Expected 2 events with database source, got %d", len(events))
}
// Filter by status
status := EventStatusPending
events, err = provider.List(context.Background(), &EventFilter{
Status: &status,
})
if err != nil {
t.Fatalf("List failed: %v", err)
}
if len(events) != 3 {
t.Errorf("Expected 3 events with pending status, got %d", len(events))
}
}
func TestMemoryProviderListWithLimit(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
// Publish multiple events
for i := 0; i < 10; i++ {
event := NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), event)
}
// List with limit
events, err := provider.List(context.Background(), &EventFilter{
Limit: 5,
})
if err != nil {
t.Fatalf("List failed: %v", err)
}
if len(events) != 5 {
t.Errorf("Expected 5 events (limited), got %d", len(events))
}
}
func TestMemoryProviderDelete(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
event := NewEvent(EventSourceDatabase, "public.users.create")
provider.Publish(context.Background(), event)
// Delete event
err := provider.Delete(context.Background(), event.ID)
if err != nil {
t.Fatalf("Delete failed: %v", err)
}
// Verify deleted
_, err = provider.Get(context.Background(), event.ID)
if err == nil {
t.Error("Expected error when getting deleted event")
}
}
func TestMemoryProviderLRUEviction(t *testing.T) {
// Create provider with small max events
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
MaxEvents: 3,
})
// Publish 5 events
events := make([]*Event, 5)
for i := 0; i < 5; i++ {
events[i] = NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), events[i])
}
// First 2 events should be evicted
_, err := provider.Get(context.Background(), events[0].ID)
if err == nil {
t.Error("Expected first event to be evicted")
}
_, err = provider.Get(context.Background(), events[1].ID)
if err == nil {
t.Error("Expected second event to be evicted")
}
// Last 3 events should still exist
for i := 2; i < 5; i++ {
_, err := provider.Get(context.Background(), events[i].ID)
if err != nil {
t.Errorf("Expected event %d to still exist", i)
}
}
}
func TestMemoryProviderCleanup(t *testing.T) {
// Create provider with short cleanup interval
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
CleanupInterval: 100 * time.Millisecond,
MaxAge: 200 * time.Millisecond,
})
// Publish and complete an event
event := NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), event)
provider.UpdateStatus(context.Background(), event.ID, EventStatusCompleted, "")
// Wait for cleanup to run
time.Sleep(400 * time.Millisecond)
// Event should be cleaned up
_, err := provider.Get(context.Background(), event.ID)
if err == nil {
t.Error("Expected event to be cleaned up")
}
provider.Close()
}
func TestMemoryProviderStats(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
MaxEvents: 100,
})
// Publish events
for i := 0; i < 5; i++ {
event := NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), event)
}
stats, err := provider.Stats(context.Background())
if err != nil {
t.Fatalf("Stats failed: %v", err)
}
if stats.ProviderType != "memory" {
t.Errorf("Expected provider type 'memory', got %s", stats.ProviderType)
}
if stats.TotalEvents != 5 {
t.Errorf("Expected 5 total events, got %d", stats.TotalEvents)
}
}
func TestMemoryProviderClose(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
CleanupInterval: 100 * time.Millisecond,
})
// Publish event
event := NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), event)
// Close provider
err := provider.Close()
if err != nil {
t.Fatalf("Close failed: %v", err)
}
// Cleanup goroutine should be stopped
time.Sleep(200 * time.Millisecond)
}
func TestMemoryProviderConcurrency(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
// Concurrent publish
done := make(chan bool, 10)
for i := 0; i < 10; i++ {
go func() {
defer func() { done <- true }()
event := NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), event)
}()
}
// Wait for all goroutines
for i := 0; i < 10; i++ {
<-done
}
// Verify all events were stored
events, _ := provider.List(context.Background(), &EventFilter{})
if len(events) != 10 {
t.Errorf("Expected 10 events, got %d", len(events))
}
}
func TestMemoryProviderStream(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
// Stream is implemented for memory provider (in-process pub/sub)
ch, err := provider.Stream(context.Background(), "test.*")
if err != nil {
t.Fatalf("Stream failed: %v", err)
}
if ch == nil {
t.Error("Expected non-nil channel")
}
}
func TestMemoryProviderTimeRangeFilter(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
// Publish events at different times
event1 := NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), event1)
time.Sleep(10 * time.Millisecond)
event2 := NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), event2)
time.Sleep(10 * time.Millisecond)
event3 := NewEvent(EventSourceDatabase, "test.event")
provider.Publish(context.Background(), event3)
// Filter by time range
startTime := event2.CreatedAt.Add(-1 * time.Millisecond)
events, err := provider.List(context.Background(), &EventFilter{
StartTime: &startTime,
})
if err != nil {
t.Fatalf("List failed: %v", err)
}
// Should get events 2 and 3
if len(events) != 2 {
t.Errorf("Expected 2 events after start time, got %d", len(events))
}
}
func TestMemoryProviderInstanceIDFilter(t *testing.T) {
provider := NewMemoryProvider(MemoryProviderOptions{
InstanceID: "test-instance",
})
// Publish events with different instance IDs
event1 := NewEvent(EventSourceDatabase, "test.event")
event1.InstanceID = "instance-1"
provider.Publish(context.Background(), event1)
event2 := NewEvent(EventSourceDatabase, "test.event")
event2.InstanceID = "instance-2"
provider.Publish(context.Background(), event2)
// Filter by instance ID
events, err := provider.List(context.Background(), &EventFilter{
InstanceID: "instance-1",
})
if err != nil {
t.Fatalf("List failed: %v", err)
}
if len(events) != 1 {
t.Errorf("Expected 1 event with instance-1, got %d", len(events))
}
if events[0].InstanceID != "instance-1" {
t.Errorf("Expected instance ID 'instance-1', got %s", events[0].InstanceID)
}
}

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package eventbroker
import (
"fmt"
"strings"
"sync"
"sync/atomic"
"github.com/bitechdev/ResolveSpec/pkg/logger"
)
// SubscriptionID uniquely identifies a subscription
type SubscriptionID string
// subscription represents a single subscription with its handler and pattern
type subscription struct {
id SubscriptionID
pattern string
handler EventHandler
}
// subscriptionManager manages event subscriptions and pattern matching
type subscriptionManager struct {
mu sync.RWMutex
subscriptions map[SubscriptionID]*subscription
nextID atomic.Uint64
}
// newSubscriptionManager creates a new subscription manager
func newSubscriptionManager() *subscriptionManager {
return &subscriptionManager{
subscriptions: make(map[SubscriptionID]*subscription),
}
}
// Subscribe adds a new subscription
func (sm *subscriptionManager) Subscribe(pattern string, handler EventHandler) (SubscriptionID, error) {
if pattern == "" {
return "", fmt.Errorf("pattern cannot be empty")
}
if handler == nil {
return "", fmt.Errorf("handler cannot be nil")
}
id := SubscriptionID(fmt.Sprintf("sub-%d", sm.nextID.Add(1)))
sm.mu.Lock()
sm.subscriptions[id] = &subscription{
id: id,
pattern: pattern,
handler: handler,
}
sm.mu.Unlock()
logger.Info("Subscribed to pattern '%s' with ID: %s", pattern, id)
return id, nil
}
// Unsubscribe removes a subscription
func (sm *subscriptionManager) Unsubscribe(id SubscriptionID) error {
sm.mu.Lock()
defer sm.mu.Unlock()
if _, exists := sm.subscriptions[id]; !exists {
return fmt.Errorf("subscription not found: %s", id)
}
delete(sm.subscriptions, id)
logger.Info("Unsubscribed: %s", id)
return nil
}
// GetMatching returns all handlers that match the event type
func (sm *subscriptionManager) GetMatching(eventType string) []EventHandler {
sm.mu.RLock()
defer sm.mu.RUnlock()
var handlers []EventHandler
for _, sub := range sm.subscriptions {
if matchPattern(sub.pattern, eventType) {
handlers = append(handlers, sub.handler)
}
}
return handlers
}
// Count returns the number of active subscriptions
func (sm *subscriptionManager) Count() int {
sm.mu.RLock()
defer sm.mu.RUnlock()
return len(sm.subscriptions)
}
// Clear removes all subscriptions
func (sm *subscriptionManager) Clear() {
sm.mu.Lock()
defer sm.mu.Unlock()
sm.subscriptions = make(map[SubscriptionID]*subscription)
logger.Info("Cleared all subscriptions")
}
// matchPattern implements glob-style pattern matching for event types
// Patterns:
// - "*" matches any single segment
// - "a.b.c" matches exactly "a.b.c"
// - "a.*.c" matches "a.anything.c"
// - "a.b.*" matches any operation on a.b
// - "*" matches everything
//
// Event type format: schema.entity.operation (e.g., "public.users.create")
func matchPattern(pattern, eventType string) bool {
// Wildcard matches everything
if pattern == "*" {
return true
}
// Exact match
if pattern == eventType {
return true
}
// Split pattern and event type by dots
patternParts := strings.Split(pattern, ".")
eventParts := strings.Split(eventType, ".")
// Different number of parts can only match if pattern has wildcards
if len(patternParts) != len(eventParts) {
return false
}
// Match each part
for i := range patternParts {
if patternParts[i] != "*" && patternParts[i] != eventParts[i] {
return false
}
}
return true
}

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package eventbroker
import (
"context"
"testing"
)
func TestMatchPattern(t *testing.T) {
tests := []struct {
pattern string
eventType string
expected bool
}{
// Exact matches
{"public.users.create", "public.users.create", true},
{"public.users.create", "public.users.update", false},
// Wildcard matches
{"*", "public.users.create", true},
{"*", "anything", true},
{"public.*", "public.users", true},
{"public.*", "public.users.create", false}, // Different number of parts
{"public.*", "admin.users", false},
{"*.users.create", "public.users.create", true},
{"*.users.create", "admin.users.create", true},
{"*.users.create", "public.roles.create", false},
{"public.*.create", "public.users.create", true},
{"public.*.create", "public.roles.create", true},
{"public.*.create", "public.users.update", false},
// Multiple wildcards
{"*.*", "public.users", true},
{"*.*", "public.users.create", false}, // Different number of parts
{"*.*.create", "public.users.create", true},
{"*.*.create", "admin.roles.create", true},
{"*.*.create", "public.users.update", false},
// Edge cases
{"", "", true},
{"", "something", false},
{"something", "", false},
}
for _, tt := range tests {
t.Run(tt.pattern+"_vs_"+tt.eventType, func(t *testing.T) {
result := matchPattern(tt.pattern, tt.eventType)
if result != tt.expected {
t.Errorf("matchPattern(%q, %q) = %v, expected %v",
tt.pattern, tt.eventType, result, tt.expected)
}
})
}
}
func TestSubscriptionManager(t *testing.T) {
manager := newSubscriptionManager()
// Create test handler
called := false
handler := EventHandlerFunc(func(ctx context.Context, event *Event) error {
called = true
return nil
})
// Test Subscribe
id, err := manager.Subscribe("public.users.*", handler)
if err != nil {
t.Fatalf("Subscribe failed: %v", err)
}
if id == "" {
t.Fatal("Expected non-empty subscription ID")
}
// Test GetMatching
handlers := manager.GetMatching("public.users.create")
if len(handlers) != 1 {
t.Fatalf("Expected 1 handler, got %d", len(handlers))
}
// Test handler execution
event := NewEvent(EventSourceDatabase, "public.users.create")
if err := handlers[0].Handle(context.Background(), event); err != nil {
t.Fatalf("Handler execution failed: %v", err)
}
if !called {
t.Error("Expected handler to be called")
}
// Test Count
if manager.Count() != 1 {
t.Errorf("Expected count 1, got %d", manager.Count())
}
// Test Unsubscribe
if err := manager.Unsubscribe(id); err != nil {
t.Fatalf("Unsubscribe failed: %v", err)
}
// Verify unsubscribed
handlers = manager.GetMatching("public.users.create")
if len(handlers) != 0 {
t.Errorf("Expected 0 handlers after unsubscribe, got %d", len(handlers))
}
if manager.Count() != 0 {
t.Errorf("Expected count 0 after unsubscribe, got %d", manager.Count())
}
}
func TestSubscriptionManagerMultipleHandlers(t *testing.T) {
manager := newSubscriptionManager()
called1 := false
handler1 := EventHandlerFunc(func(ctx context.Context, event *Event) error {
called1 = true
return nil
})
called2 := false
handler2 := EventHandlerFunc(func(ctx context.Context, event *Event) error {
called2 = true
return nil
})
// Subscribe multiple handlers
id1, _ := manager.Subscribe("public.users.*", handler1)
id2, _ := manager.Subscribe("*.users.*", handler2)
// Both should match
handlers := manager.GetMatching("public.users.create")
if len(handlers) != 2 {
t.Fatalf("Expected 2 handlers, got %d", len(handlers))
}
// Execute all handlers
event := NewEvent(EventSourceDatabase, "public.users.create")
for _, h := range handlers {
h.Handle(context.Background(), event)
}
if !called1 || !called2 {
t.Error("Expected both handlers to be called")
}
// Unsubscribe one
manager.Unsubscribe(id1)
handlers = manager.GetMatching("public.users.create")
if len(handlers) != 1 {
t.Errorf("Expected 1 handler after unsubscribe, got %d", len(handlers))
}
// Unsubscribe remaining
manager.Unsubscribe(id2)
if manager.Count() != 0 {
t.Errorf("Expected count 0 after all unsubscribe, got %d", manager.Count())
}
}
func TestSubscriptionManagerConcurrency(t *testing.T) {
manager := newSubscriptionManager()
handler := EventHandlerFunc(func(ctx context.Context, event *Event) error {
return nil
})
// Subscribe and unsubscribe concurrently
done := make(chan bool, 10)
for i := 0; i < 10; i++ {
go func() {
defer func() { done <- true }()
id, _ := manager.Subscribe("test.*", handler)
manager.GetMatching("test.event")
manager.Unsubscribe(id)
}()
}
// Wait for all goroutines
for i := 0; i < 10; i++ {
<-done
}
// Should have no subscriptions left
if manager.Count() != 0 {
t.Errorf("Expected count 0 after concurrent operations, got %d", manager.Count())
}
}
func TestSubscriptionManagerUnsubscribeNonExistent(t *testing.T) {
manager := newSubscriptionManager()
// Try to unsubscribe a non-existent ID
err := manager.Unsubscribe("non-existent-id")
if err == nil {
t.Error("Expected error when unsubscribing non-existent ID")
}
}
func TestSubscriptionIDGeneration(t *testing.T) {
manager := newSubscriptionManager()
handler := EventHandlerFunc(func(ctx context.Context, event *Event) error {
return nil
})
// Subscribe multiple times and ensure unique IDs
ids := make(map[SubscriptionID]bool)
for i := 0; i < 100; i++ {
id, _ := manager.Subscribe("test.*", handler)
if ids[id] {
t.Fatalf("Duplicate subscription ID: %s", id)
}
ids[id] = true
}
}
func TestEventHandlerFunc(t *testing.T) {
called := false
var receivedEvent *Event
handler := EventHandlerFunc(func(ctx context.Context, event *Event) error {
called = true
receivedEvent = event
return nil
})
event := NewEvent(EventSourceDatabase, "test.event")
err := handler.Handle(context.Background(), event)
if err != nil {
t.Errorf("Expected no error, got %v", err)
}
if !called {
t.Error("Expected handler to be called")
}
if receivedEvent != event {
t.Error("Expected to receive the same event")
}
}
func TestSubscriptionManagerPatternPriority(t *testing.T) {
manager := newSubscriptionManager()
// More specific patterns should still match
specificCalled := false
genericCalled := false
manager.Subscribe("public.users.create", EventHandlerFunc(func(ctx context.Context, event *Event) error {
specificCalled = true
return nil
}))
manager.Subscribe("*", EventHandlerFunc(func(ctx context.Context, event *Event) error {
genericCalled = true
return nil
}))
handlers := manager.GetMatching("public.users.create")
if len(handlers) != 2 {
t.Fatalf("Expected 2 matching handlers, got %d", len(handlers))
}
// Execute all handlers
event := NewEvent(EventSourceDatabase, "public.users.create")
for _, h := range handlers {
h.Handle(context.Background(), event)
}
if !specificCalled || !genericCalled {
t.Error("Expected both specific and generic handlers to be called")
}
}

View File

@ -0,0 +1,141 @@
package eventbroker
import (
"context"
"sync"
"sync/atomic"
"github.com/bitechdev/ResolveSpec/pkg/logger"
)
// workerPool manages a pool of workers for async event processing
type workerPool struct {
workerCount int
bufferSize int
eventQueue chan *Event
processor func(context.Context, *Event) error
activeWorkers atomic.Int32
isRunning atomic.Bool
stopCh chan struct{}
wg sync.WaitGroup
}
// newWorkerPool creates a new worker pool
func newWorkerPool(workerCount, bufferSize int, processor func(context.Context, *Event) error) *workerPool {
return &workerPool{
workerCount: workerCount,
bufferSize: bufferSize,
eventQueue: make(chan *Event, bufferSize),
processor: processor,
stopCh: make(chan struct{}),
}
}
// Start starts the worker pool
func (wp *workerPool) Start() {
if wp.isRunning.Load() {
return
}
wp.isRunning.Store(true)
// Start workers
for i := 0; i < wp.workerCount; i++ {
wp.wg.Add(1)
go wp.worker(i)
}
logger.Info("Worker pool started with %d workers", wp.workerCount)
}
// Stop stops the worker pool gracefully
func (wp *workerPool) Stop(ctx context.Context) error {
if !wp.isRunning.Load() {
return nil
}
wp.isRunning.Store(false)
// Close event queue to signal workers
close(wp.eventQueue)
// Wait for workers to finish with context timeout
done := make(chan struct{})
go func() {
wp.wg.Wait()
close(done)
}()
select {
case <-done:
logger.Info("Worker pool stopped gracefully")
return nil
case <-ctx.Done():
logger.Warn("Worker pool stop timed out, some events may be lost")
return ctx.Err()
}
}
// Submit submits an event to the queue
func (wp *workerPool) Submit(ctx context.Context, event *Event) error {
if !wp.isRunning.Load() {
return ErrWorkerPoolStopped
}
select {
case wp.eventQueue <- event:
return nil
case <-ctx.Done():
return ctx.Err()
default:
return ErrQueueFull
}
}
// worker is a worker goroutine that processes events from the queue
func (wp *workerPool) worker(id int) {
defer wp.wg.Done()
logger.Debug("Worker %d started", id)
for event := range wp.eventQueue {
wp.activeWorkers.Add(1)
// Process event with background context (detached from original request)
ctx := context.Background()
if err := wp.processor(ctx, event); err != nil {
logger.Error("Worker %d failed to process event %s: %v", id, event.ID, err)
}
wp.activeWorkers.Add(-1)
}
logger.Debug("Worker %d stopped", id)
}
// QueueSize returns the current queue size
func (wp *workerPool) QueueSize() int {
return len(wp.eventQueue)
}
// ActiveWorkers returns the number of currently active workers
func (wp *workerPool) ActiveWorkers() int {
return int(wp.activeWorkers.Load())
}
// Error definitions
var (
ErrWorkerPoolStopped = &BrokerError{Code: "worker_pool_stopped", Message: "worker pool is stopped"}
ErrQueueFull = &BrokerError{Code: "queue_full", Message: "event queue is full"}
)
// BrokerError represents an error from the event broker
type BrokerError struct {
Code string
Message string
}
func (e *BrokerError) Error() string {
return e.Message
}

View File

@ -70,6 +70,10 @@ func (m *MockDatabase) RunInTransaction(ctx context.Context, fn func(common.Data
return fn(m)
}
func (m *MockDatabase) GetUnderlyingDB() interface{} {
return m
}
// MockResult implements common.Result interface for testing
type MockResult struct {
rows int64

View File

@ -30,6 +30,15 @@ type Provider interface {
// UpdateCacheSize updates the cache size metric
UpdateCacheSize(provider string, size int64)
// RecordEventPublished records an event publication
RecordEventPublished(source, eventType string)
// RecordEventProcessed records an event processing with its status
RecordEventProcessed(source, eventType, status string, duration time.Duration)
// UpdateEventQueueSize updates the event queue size metric
UpdateEventQueueSize(size int64)
// Handler returns an HTTP handler for exposing metrics (e.g., /metrics endpoint)
Handler() http.Handler
}
@ -59,9 +68,13 @@ func (n *NoOpProvider) IncRequestsInFlight()
func (n *NoOpProvider) DecRequestsInFlight() {}
func (n *NoOpProvider) RecordDBQuery(operation, table string, duration time.Duration, err error) {
}
func (n *NoOpProvider) RecordCacheHit(provider string) {}
func (n *NoOpProvider) RecordCacheMiss(provider string) {}
func (n *NoOpProvider) UpdateCacheSize(provider string, size int64) {}
func (n *NoOpProvider) RecordCacheHit(provider string) {}
func (n *NoOpProvider) RecordCacheMiss(provider string) {}
func (n *NoOpProvider) UpdateCacheSize(provider string, size int64) {}
func (n *NoOpProvider) RecordEventPublished(source, eventType string) {}
func (n *NoOpProvider) RecordEventProcessed(source, eventType, status string, duration time.Duration) {
}
func (n *NoOpProvider) UpdateEventQueueSize(size int64) {}
func (n *NoOpProvider) Handler() http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
w.WriteHeader(http.StatusNotFound)