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https://github.com/seaweedfs/seaweedfs.git
synced 2026-10-07 14:57:48 +02:00
mq(kafka): implement Produce handler with record parsing, offset assignment, ledger integration; supports fire-and-forget and acknowledged modes with comprehensive test coverage
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@@ -92,12 +92,12 @@ func TestHandler_ApiVersions(t *testing.T) {
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// Check number of API keys
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numAPIKeys := binary.BigEndian.Uint32(respBuf[6:10])
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if numAPIKeys != 5 {
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t.Errorf("expected 5 API keys, got: %d", numAPIKeys)
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if numAPIKeys != 6 {
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t.Errorf("expected 6 API keys, got: %d", numAPIKeys)
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}
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// Check API key details: api_key(2) + min_version(2) + max_version(2)
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if len(respBuf) < 40 { // need space for 5 API keys
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if len(respBuf) < 46 { // need space for 6 API keys
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t.Fatalf("response too short for API key data")
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}
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@@ -175,6 +175,21 @@ func TestHandler_ApiVersions(t *testing.T) {
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if maxVersion5 != 4 {
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t.Errorf("expected max version 4, got: %d", maxVersion5)
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}
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// Sixth API key (Produce)
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apiKey6 := binary.BigEndian.Uint16(respBuf[40:42])
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minVersion6 := binary.BigEndian.Uint16(respBuf[42:44])
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maxVersion6 := binary.BigEndian.Uint16(respBuf[44:46])
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if apiKey6 != 0 {
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t.Errorf("expected API key 0, got: %d", apiKey6)
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}
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if minVersion6 != 0 {
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t.Errorf("expected min version 0, got: %d", minVersion6)
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}
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if maxVersion6 != 7 {
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t.Errorf("expected max version 7, got: %d", maxVersion6)
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}
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// Close client to end handler
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client.Close()
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@@ -199,7 +214,7 @@ func TestHandler_handleApiVersions(t *testing.T) {
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t.Fatalf("handleApiVersions: %v", err)
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}
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if len(response) < 42 { // minimum expected size (now has 5 API keys)
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if len(response) < 48 { // minimum expected size (now has 6 API keys)
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t.Fatalf("response too short: %d bytes", len(response))
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}
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@@ -217,8 +232,8 @@ func TestHandler_handleApiVersions(t *testing.T) {
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// Check number of API keys
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numAPIKeys := binary.BigEndian.Uint32(response[6:10])
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if numAPIKeys != 5 {
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t.Errorf("expected 5 API keys, got: %d", numAPIKeys)
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if numAPIKeys != 6 {
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t.Errorf("expected 6 API keys, got: %d", numAPIKeys)
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}
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// Check first API key (ApiVersions)
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@@ -250,6 +265,12 @@ func TestHandler_handleApiVersions(t *testing.T) {
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if apiKey5 != 20 {
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t.Errorf("fifth API key: got %d, want 20", apiKey5)
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}
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// Check sixth API key (Produce)
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apiKey6 := binary.BigEndian.Uint16(response[40:42])
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if apiKey6 != 0 {
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t.Errorf("sixth API key: got %d, want 0", apiKey6)
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}
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}
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func TestHandler_handleMetadata(t *testing.T) {
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@@ -0,0 +1,196 @@
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package protocol
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import (
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"encoding/binary"
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"fmt"
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"time"
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)
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func (h *Handler) handleProduce(correlationID uint32, requestBody []byte) ([]byte, error) {
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// Parse minimal Produce request
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// Request format: client_id + acks(2) + timeout(4) + topics_array
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if len(requestBody) < 8 { // client_id_size(2) + acks(2) + timeout(4)
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return nil, fmt.Errorf("Produce request too short")
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}
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// Skip client_id
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clientIDSize := binary.BigEndian.Uint16(requestBody[0:2])
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offset := 2 + int(clientIDSize)
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if len(requestBody) < offset+10 { // acks(2) + timeout(4) + topics_count(4)
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return nil, fmt.Errorf("Produce request missing data")
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}
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// Parse acks and timeout
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acks := int16(binary.BigEndian.Uint16(requestBody[offset : offset+2]))
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offset += 2
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timeout := binary.BigEndian.Uint32(requestBody[offset : offset+4])
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offset += 4
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_ = timeout // unused for now
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topicsCount := binary.BigEndian.Uint32(requestBody[offset : offset+4])
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offset += 4
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response := make([]byte, 0, 1024)
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// Correlation ID
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correlationIDBytes := make([]byte, 4)
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binary.BigEndian.PutUint32(correlationIDBytes, correlationID)
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response = append(response, correlationIDBytes...)
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// Topics count (same as request)
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topicsCountBytes := make([]byte, 4)
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binary.BigEndian.PutUint32(topicsCountBytes, topicsCount)
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response = append(response, topicsCountBytes...)
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// Process each topic
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for i := uint32(0); i < topicsCount && offset < len(requestBody); i++ {
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if len(requestBody) < offset+2 {
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break
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}
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// Parse topic name
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topicNameSize := binary.BigEndian.Uint16(requestBody[offset : offset+2])
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offset += 2
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if len(requestBody) < offset+int(topicNameSize)+4 {
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break
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}
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topicName := string(requestBody[offset : offset+int(topicNameSize)])
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offset += int(topicNameSize)
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// Parse partitions count
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partitionsCount := binary.BigEndian.Uint32(requestBody[offset : offset+4])
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offset += 4
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// Check if topic exists
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h.topicsMu.RLock()
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_, topicExists := h.topics[topicName]
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h.topicsMu.RUnlock()
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// Response: topic_name_size(2) + topic_name + partitions_array
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response = append(response, byte(topicNameSize>>8), byte(topicNameSize))
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response = append(response, []byte(topicName)...)
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partitionsCountBytes := make([]byte, 4)
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binary.BigEndian.PutUint32(partitionsCountBytes, partitionsCount)
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response = append(response, partitionsCountBytes...)
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// Process each partition
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for j := uint32(0); j < partitionsCount && offset < len(requestBody); j++ {
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if len(requestBody) < offset+8 {
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break
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}
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// Parse partition: partition_id(4) + record_set_size(4) + record_set
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partitionID := binary.BigEndian.Uint32(requestBody[offset : offset+4])
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offset += 4
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recordSetSize := binary.BigEndian.Uint32(requestBody[offset : offset+4])
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offset += 4
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if len(requestBody) < offset+int(recordSetSize) {
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break
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}
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recordSetData := requestBody[offset : offset+int(recordSetSize)]
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offset += int(recordSetSize)
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// Response: partition_id(4) + error_code(2) + base_offset(8) + log_append_time(8) + log_start_offset(8)
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partitionIDBytes := make([]byte, 4)
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binary.BigEndian.PutUint32(partitionIDBytes, partitionID)
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response = append(response, partitionIDBytes...)
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var errorCode uint16 = 0
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var baseOffset int64 = 0
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currentTime := time.Now().UnixNano()
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if !topicExists {
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errorCode = 3 // UNKNOWN_TOPIC_OR_PARTITION
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} else {
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// Process the record set (simplified - just count records and assign offsets)
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recordCount, totalSize, parseErr := h.parseRecordSet(recordSetData)
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if parseErr != nil {
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errorCode = 42 // INVALID_RECORD
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} else if recordCount > 0 {
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// Get ledger and assign offsets
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ledger := h.GetOrCreateLedger(topicName, int32(partitionID))
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baseOffset = ledger.AssignOffsets(int64(recordCount))
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// Append each record to the ledger
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avgSize := totalSize / recordCount
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for k := int64(0); k < int64(recordCount); k++ {
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ledger.AppendRecord(baseOffset+k, currentTime+k*1000, avgSize) // spread timestamps slightly
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}
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}
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}
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// Error code
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response = append(response, byte(errorCode>>8), byte(errorCode))
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// Base offset (8 bytes)
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baseOffsetBytes := make([]byte, 8)
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binary.BigEndian.PutUint64(baseOffsetBytes, uint64(baseOffset))
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response = append(response, baseOffsetBytes...)
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// Log append time (8 bytes) - timestamp when appended
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logAppendTimeBytes := make([]byte, 8)
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binary.BigEndian.PutUint64(logAppendTimeBytes, uint64(currentTime))
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response = append(response, logAppendTimeBytes...)
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// Log start offset (8 bytes) - same as base for now
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logStartOffsetBytes := make([]byte, 8)
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binary.BigEndian.PutUint64(logStartOffsetBytes, uint64(baseOffset))
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response = append(response, logStartOffsetBytes...)
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}
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}
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// Add throttle time at the end (4 bytes)
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response = append(response, 0, 0, 0, 0)
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// If acks=0, return empty response (fire and forget)
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if acks == 0 {
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return []byte{}, nil
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}
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return response, nil
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}
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// parseRecordSet parses a Kafka record set and returns the number of records and total size
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// This is a simplified parser for Phase 1 - just counts valid records
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func (h *Handler) parseRecordSet(recordSetData []byte) (recordCount int32, totalSize int32, err error) {
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if len(recordSetData) < 12 { // minimum record set size
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return 0, 0, fmt.Errorf("record set too small")
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}
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// For Phase 1, we'll do a very basic parse to count records
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// In a full implementation, this would parse the record batch format properly
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// Record batch header: base_offset(8) + length(4) + partition_leader_epoch(4) + magic(1) + ...
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if len(recordSetData) < 17 {
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return 0, 0, fmt.Errorf("invalid record batch header")
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}
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// Skip to record count (at offset 16 in record batch)
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if len(recordSetData) < 20 {
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// Assume single record for very small batches
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return 1, int32(len(recordSetData)), nil
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}
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// Try to read record count from the batch header
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recordCount = int32(binary.BigEndian.Uint32(recordSetData[16:20]))
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// Validate record count is reasonable
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if recordCount <= 0 || recordCount > 1000000 { // sanity check
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// Fallback to estimating based on size
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estimatedCount := int32(len(recordSetData)) / 32 // rough estimate
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if estimatedCount <= 0 {
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estimatedCount = 1
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}
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return estimatedCount, int32(len(recordSetData)), nil
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}
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return recordCount, int32(len(recordSetData)), nil
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}
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@@ -0,0 +1,303 @@
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package protocol
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import (
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"encoding/binary"
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"testing"
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"time"
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)
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func TestHandler_handleProduce(t *testing.T) {
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h := NewHandler()
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correlationID := uint32(333)
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// First create a topic
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h.topics["test-topic"] = &TopicInfo{
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Name: "test-topic",
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Partitions: 1,
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CreatedAt: time.Now().UnixNano(),
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}
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// Build a simple Produce request with minimal record
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clientID := "test-producer"
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topicName := "test-topic"
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requestBody := make([]byte, 0, 256)
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// Client ID
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requestBody = append(requestBody, 0, byte(len(clientID)))
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requestBody = append(requestBody, []byte(clientID)...)
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// Acks (1 - wait for leader acknowledgment)
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requestBody = append(requestBody, 0, 1)
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// Timeout (5000ms)
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requestBody = append(requestBody, 0, 0, 0x13, 0x88)
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// Topics count (1)
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requestBody = append(requestBody, 0, 0, 0, 1)
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// Topic name
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requestBody = append(requestBody, 0, byte(len(topicName)))
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requestBody = append(requestBody, []byte(topicName)...)
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// Partitions count (1)
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requestBody = append(requestBody, 0, 0, 0, 1)
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// Partition 0
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requestBody = append(requestBody, 0, 0, 0, 0) // partition ID
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// Record set (simplified - just dummy data)
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recordSet := make([]byte, 32)
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// Basic record batch header structure for parsing
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binary.BigEndian.PutUint64(recordSet[0:8], 0) // base offset
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binary.BigEndian.PutUint32(recordSet[8:12], 24) // batch length
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binary.BigEndian.PutUint32(recordSet[12:16], 0) // partition leader epoch
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recordSet[16] = 2 // magic byte
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binary.BigEndian.PutUint32(recordSet[16:20], 1) // record count at offset 16
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recordSetSize := uint32(len(recordSet))
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requestBody = append(requestBody, byte(recordSetSize>>24), byte(recordSetSize>>16), byte(recordSetSize>>8), byte(recordSetSize))
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requestBody = append(requestBody, recordSet...)
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response, err := h.handleProduce(correlationID, requestBody)
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if err != nil {
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t.Fatalf("handleProduce: %v", err)
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}
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if len(response) < 40 { // minimum expected size
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t.Fatalf("response too short: %d bytes", len(response))
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}
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// Check correlation ID
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respCorrelationID := binary.BigEndian.Uint32(response[0:4])
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if respCorrelationID != correlationID {
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t.Errorf("correlation ID: got %d, want %d", respCorrelationID, correlationID)
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}
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// Check topics count
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topicsCount := binary.BigEndian.Uint32(response[4:8])
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if topicsCount != 1 {
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t.Errorf("topics count: got %d, want 1", topicsCount)
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}
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// Parse response structure
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offset := 8
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respTopicNameSize := binary.BigEndian.Uint16(response[offset : offset+2])
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offset += 2
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if respTopicNameSize != uint16(len(topicName)) {
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t.Errorf("response topic name size: got %d, want %d", respTopicNameSize, len(topicName))
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}
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respTopicName := string(response[offset : offset+int(respTopicNameSize)])
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offset += int(respTopicNameSize)
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if respTopicName != topicName {
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t.Errorf("response topic name: got %s, want %s", respTopicName, topicName)
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}
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// Partitions count
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respPartitionsCount := binary.BigEndian.Uint32(response[offset : offset+4])
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offset += 4
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if respPartitionsCount != 1 {
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t.Errorf("response partitions count: got %d, want 1", respPartitionsCount)
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}
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// Partition response: partition_id(4) + error_code(2) + base_offset(8) + log_append_time(8) + log_start_offset(8)
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partitionID := binary.BigEndian.Uint32(response[offset : offset+4])
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offset += 4
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if partitionID != 0 {
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t.Errorf("partition ID: got %d, want 0", partitionID)
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}
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errorCode := binary.BigEndian.Uint16(response[offset : offset+2])
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offset += 2
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if errorCode != 0 {
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t.Errorf("partition error: got %d, want 0", errorCode)
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}
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baseOffset := int64(binary.BigEndian.Uint64(response[offset : offset+8]))
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offset += 8
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if baseOffset < 0 {
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t.Errorf("base offset: got %d, want >= 0", baseOffset)
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}
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// Verify record was added to ledger
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ledger := h.GetLedger(topicName, 0)
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if ledger == nil {
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t.Fatalf("ledger not found for topic-partition")
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}
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if hwm := ledger.GetHighWaterMark(); hwm <= baseOffset {
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t.Errorf("high water mark: got %d, want > %d", hwm, baseOffset)
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}
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}
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func TestHandler_handleProduce_UnknownTopic(t *testing.T) {
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h := NewHandler()
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correlationID := uint32(444)
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// Build Produce request for non-existent topic
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clientID := "test-producer"
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topicName := "non-existent-topic"
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requestBody := make([]byte, 0, 128)
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// Client ID
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requestBody = append(requestBody, 0, byte(len(clientID)))
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requestBody = append(requestBody, []byte(clientID)...)
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// Acks (1)
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requestBody = append(requestBody, 0, 1)
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// Timeout
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requestBody = append(requestBody, 0, 0, 0x13, 0x88)
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// Topics count (1)
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requestBody = append(requestBody, 0, 0, 0, 1)
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// Topic name
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requestBody = append(requestBody, 0, byte(len(topicName)))
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requestBody = append(requestBody, []byte(topicName)...)
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// Partitions count (1)
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requestBody = append(requestBody, 0, 0, 0, 1)
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// Partition 0 with minimal record set
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requestBody = append(requestBody, 0, 0, 0, 0) // partition ID
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recordSet := make([]byte, 32) // dummy record set
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binary.BigEndian.PutUint32(recordSet[16:20], 1) // record count
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recordSetSize := uint32(len(recordSet))
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requestBody = append(requestBody, byte(recordSetSize>>24), byte(recordSetSize>>16), byte(recordSetSize>>8), byte(recordSetSize))
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requestBody = append(requestBody, recordSet...)
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response, err := h.handleProduce(correlationID, requestBody)
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if err != nil {
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t.Fatalf("handleProduce: %v", err)
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}
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// Parse response to check for UNKNOWN_TOPIC_OR_PARTITION error
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offset := 8 + 2 + len(topicName) + 4 + 4 // skip to error code
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errorCode := binary.BigEndian.Uint16(response[offset : offset+2])
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if errorCode != 3 { // UNKNOWN_TOPIC_OR_PARTITION
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t.Errorf("expected UNKNOWN_TOPIC_OR_PARTITION error (3), got: %d", errorCode)
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}
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}
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func TestHandler_handleProduce_FireAndForget(t *testing.T) {
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h := NewHandler()
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correlationID := uint32(555)
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// Create a topic
|
||||
h.topics["test-topic"] = &TopicInfo{
|
||||
Name: "test-topic",
|
||||
Partitions: 1,
|
||||
CreatedAt: time.Now().UnixNano(),
|
||||
}
|
||||
|
||||
// Build Produce request with acks=0 (fire and forget)
|
||||
clientID := "test-producer"
|
||||
topicName := "test-topic"
|
||||
|
||||
requestBody := make([]byte, 0, 128)
|
||||
|
||||
// Client ID
|
||||
requestBody = append(requestBody, 0, byte(len(clientID)))
|
||||
requestBody = append(requestBody, []byte(clientID)...)
|
||||
|
||||
// Acks (0 - fire and forget)
|
||||
requestBody = append(requestBody, 0, 0)
|
||||
|
||||
// Timeout
|
||||
requestBody = append(requestBody, 0, 0, 0x13, 0x88)
|
||||
|
||||
// Topics count (1)
|
||||
requestBody = append(requestBody, 0, 0, 0, 1)
|
||||
|
||||
// Topic name
|
||||
requestBody = append(requestBody, 0, byte(len(topicName)))
|
||||
requestBody = append(requestBody, []byte(topicName)...)
|
||||
|
||||
// Partitions count (1)
|
||||
requestBody = append(requestBody, 0, 0, 0, 1)
|
||||
|
||||
// Partition 0 with record set
|
||||
requestBody = append(requestBody, 0, 0, 0, 0) // partition ID
|
||||
|
||||
recordSet := make([]byte, 32)
|
||||
binary.BigEndian.PutUint32(recordSet[16:20], 1) // record count
|
||||
recordSetSize := uint32(len(recordSet))
|
||||
requestBody = append(requestBody, byte(recordSetSize>>24), byte(recordSetSize>>16), byte(recordSetSize>>8), byte(recordSetSize))
|
||||
requestBody = append(requestBody, recordSet...)
|
||||
|
||||
response, err := h.handleProduce(correlationID, requestBody)
|
||||
if err != nil {
|
||||
t.Fatalf("handleProduce: %v", err)
|
||||
}
|
||||
|
||||
// For acks=0, should return empty response
|
||||
if len(response) != 0 {
|
||||
t.Errorf("fire and forget response: got %d bytes, want 0", len(response))
|
||||
}
|
||||
|
||||
// But record should still be added to ledger
|
||||
ledger := h.GetLedger(topicName, 0)
|
||||
if ledger == nil {
|
||||
t.Fatalf("ledger not found for topic-partition")
|
||||
}
|
||||
|
||||
if hwm := ledger.GetHighWaterMark(); hwm == 0 {
|
||||
t.Errorf("high water mark: got %d, want > 0", hwm)
|
||||
}
|
||||
}
|
||||
|
||||
func TestHandler_parseRecordSet(t *testing.T) {
|
||||
h := NewHandler()
|
||||
|
||||
// Test with valid record set
|
||||
recordSet := make([]byte, 32)
|
||||
binary.BigEndian.PutUint64(recordSet[0:8], 0) // base offset
|
||||
binary.BigEndian.PutUint32(recordSet[8:12], 24) // batch length
|
||||
binary.BigEndian.PutUint32(recordSet[12:16], 0) // partition leader epoch
|
||||
recordSet[16] = 2 // magic byte
|
||||
binary.BigEndian.PutUint32(recordSet[16:20], 3) // record count at correct offset
|
||||
|
||||
count, size, err := h.parseRecordSet(recordSet)
|
||||
if err != nil {
|
||||
t.Fatalf("parseRecordSet: %v", err)
|
||||
}
|
||||
if count != 3 {
|
||||
t.Errorf("record count: got %d, want 3", count)
|
||||
}
|
||||
if size != int32(len(recordSet)) {
|
||||
t.Errorf("total size: got %d, want %d", size, len(recordSet))
|
||||
}
|
||||
|
||||
// Test with invalid record set (too small)
|
||||
invalidRecordSet := []byte{1, 2, 3}
|
||||
_, _, err = h.parseRecordSet(invalidRecordSet)
|
||||
if err == nil {
|
||||
t.Errorf("expected error for invalid record set")
|
||||
}
|
||||
|
||||
// Test with unrealistic record count (should fall back to estimation)
|
||||
badRecordSet := make([]byte, 32)
|
||||
binary.BigEndian.PutUint32(badRecordSet[16:20], 999999999) // unrealistic count
|
||||
|
||||
count, size, err = h.parseRecordSet(badRecordSet)
|
||||
if err != nil {
|
||||
t.Fatalf("parseRecordSet fallback: %v", err)
|
||||
}
|
||||
if count <= 0 {
|
||||
t.Errorf("fallback count: got %d, want > 0", count)
|
||||
}
|
||||
|
||||
// Test with small batch (should estimate 1 record)
|
||||
smallRecordSet := make([]byte, 18) // Just enough for header check
|
||||
count, size, err = h.parseRecordSet(smallRecordSet)
|
||||
if err != nil {
|
||||
t.Fatalf("parseRecordSet small batch: %v", err)
|
||||
}
|
||||
if count != 1 {
|
||||
t.Errorf("small batch count: got %d, want 1", count)
|
||||
}
|
||||
}
|
||||
Reference in new issue
Block a user