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194 lines
5.8 KiB
194 lines
5.8 KiB
package offset
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import (
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"fmt"
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"sync"
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)
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// LedgerStorage interface for consumer offset persistence
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type LedgerStorage interface {
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SaveConsumerOffset(key ConsumerOffsetKey, kafkaOffset, smqTimestamp int64, size int32) error
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LoadConsumerOffsets(key ConsumerOffsetKey) ([]OffsetEntry, error)
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GetConsumerHighWaterMark(key ConsumerOffsetKey) (int64, error)
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Close() error
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// Legacy methods for backward compatibility
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SaveOffsetMapping(topicPartition string, kafkaOffset, smqTimestamp int64, size int32) error
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LoadOffsetMappings(topicPartition string) ([]OffsetEntry, error)
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GetHighWaterMark(topicPartition string) (int64, error)
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}
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// ConsumerOffsetKey represents the full key for consumer offsets
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type ConsumerOffsetKey struct {
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Topic string `json:"topic"`
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Partition int32 `json:"partition"`
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ConsumerGroup string `json:"consumer_group"`
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ConsumerGroupInstance string `json:"consumer_group_instance,omitempty"` // Optional static membership ID
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}
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func (k ConsumerOffsetKey) String() string {
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if k.ConsumerGroupInstance != "" {
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return fmt.Sprintf("%s:%d:%s:%s", k.Topic, k.Partition, k.ConsumerGroup, k.ConsumerGroupInstance)
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}
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return fmt.Sprintf("%s:%d:%s", k.Topic, k.Partition, k.ConsumerGroup)
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}
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// OffsetEntry is already defined in ledger.go
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// Legacy storage implementation using SeaweedMQ's ledgers
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// This is kept for backward compatibility but should not be used for new deployments
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type SeaweedMQStorage struct {
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ledgersMu sync.RWMutex
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ledgers map[string]*Ledger // key: topic-partition OR ConsumerOffsetKey.String()
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}
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// NewSeaweedMQStorage creates a SeaweedMQ-compatible storage backend
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func NewSeaweedMQStorage() *SeaweedMQStorage {
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return &SeaweedMQStorage{
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ledgers: make(map[string]*Ledger),
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}
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}
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func (s *SeaweedMQStorage) SaveConsumerOffset(key ConsumerOffsetKey, kafkaOffset, smqTimestamp int64, size int32) error {
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keyStr := key.String()
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return s.SaveOffsetMapping(keyStr, kafkaOffset, smqTimestamp, size)
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}
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func (s *SeaweedMQStorage) LoadConsumerOffsets(key ConsumerOffsetKey) ([]OffsetEntry, error) {
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keyStr := key.String()
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return s.LoadOffsetMappings(keyStr)
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}
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func (s *SeaweedMQStorage) GetConsumerHighWaterMark(key ConsumerOffsetKey) (int64, error) {
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keyStr := key.String()
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return s.GetHighWaterMark(keyStr)
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}
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func (s *SeaweedMQStorage) SaveOffsetMapping(topicPartition string, kafkaOffset, smqTimestamp int64, size int32) error {
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s.ledgersMu.Lock()
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defer s.ledgersMu.Unlock()
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ledger, exists := s.ledgers[topicPartition]
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if !exists {
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ledger = NewLedger()
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s.ledgers[topicPartition] = ledger
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}
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return ledger.AppendRecord(kafkaOffset, smqTimestamp, size)
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}
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func (s *SeaweedMQStorage) LoadOffsetMappings(topicPartition string) ([]OffsetEntry, error) {
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s.ledgersMu.RLock()
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defer s.ledgersMu.RUnlock()
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ledger, exists := s.ledgers[topicPartition]
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if !exists {
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return []OffsetEntry{}, nil
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}
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entries := ledger.GetEntries()
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result := make([]OffsetEntry, len(entries))
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for i, entry := range entries {
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result[i] = OffsetEntry{
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KafkaOffset: entry.KafkaOffset,
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Timestamp: entry.Timestamp,
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Size: entry.Size,
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}
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}
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return result, nil
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}
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func (s *SeaweedMQStorage) GetHighWaterMark(topicPartition string) (int64, error) {
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s.ledgersMu.RLock()
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defer s.ledgersMu.RUnlock()
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ledger, exists := s.ledgers[topicPartition]
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if !exists {
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return 0, nil
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}
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return ledger.GetHighWaterMark(), nil
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}
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func (s *SeaweedMQStorage) Close() error {
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s.ledgersMu.Lock()
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defer s.ledgersMu.Unlock()
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// Ledgers don't need explicit closing in this implementation
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s.ledgers = make(map[string]*Ledger)
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return nil
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}
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// PersistentLedger wraps a Ledger with SeaweedMQ persistence
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type PersistentLedger struct {
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Ledger *Ledger
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TopicPartition string
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Storage LedgerStorage
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}
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// NewPersistentLedger creates a new persistent ledger
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func NewPersistentLedger(topicPartition string, storage LedgerStorage) *PersistentLedger {
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pl := &PersistentLedger{
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Ledger: NewLedger(),
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TopicPartition: topicPartition,
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Storage: storage,
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}
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// Load existing mappings
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if entries, err := storage.LoadOffsetMappings(topicPartition); err == nil {
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for _, entry := range entries {
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pl.Ledger.AppendRecord(entry.KafkaOffset, entry.Timestamp, entry.Size)
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}
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}
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return pl
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}
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// AddEntry adds an offset mapping and persists it
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func (pl *PersistentLedger) AddEntry(kafkaOffset, smqTimestamp int64, size int32) error {
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// Add to memory ledger
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if err := pl.Ledger.AppendRecord(kafkaOffset, smqTimestamp, size); err != nil {
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return err
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}
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// Persist to storage
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return pl.Storage.SaveOffsetMapping(pl.TopicPartition, kafkaOffset, smqTimestamp, size)
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}
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// GetEntries returns all entries from the ledger
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func (pl *PersistentLedger) GetEntries() []OffsetEntry {
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return pl.Ledger.GetEntries()
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}
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// AssignOffsets reserves a range of consecutive Kafka offsets
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func (pl *PersistentLedger) AssignOffsets(count int64) int64 {
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return pl.Ledger.AssignOffsets(count)
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}
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// AppendRecord adds a record to the ledger (legacy compatibility method)
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func (pl *PersistentLedger) AppendRecord(kafkaOffset, timestamp int64, size int32) error {
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return pl.AddEntry(kafkaOffset, timestamp, size)
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}
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// GetHighWaterMark returns the next offset to be assigned
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func (pl *PersistentLedger) GetHighWaterMark() int64 {
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return pl.Ledger.GetHighWaterMark()
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}
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// GetEarliestOffset returns the earliest offset in the ledger
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func (pl *PersistentLedger) GetEarliestOffset() int64 {
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return pl.Ledger.GetEarliestOffset()
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}
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// GetLatestOffset returns the latest offset in the ledger
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func (pl *PersistentLedger) GetLatestOffset() int64 {
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return pl.Ledger.GetLatestOffset()
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}
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// GetStats returns statistics about the ledger
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func (pl *PersistentLedger) GetStats() (count int, earliestTime, latestTime int64) {
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count, _, earliestTime, latestTime = pl.Ledger.GetStats()
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return count, earliestTime, latestTime
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}
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