Files
lingniu-vehicle-ingest/go/vehicle-gateway/cmd/gateway/main.go

792 lines
34 KiB
Go

package main
import (
"context"
"database/sql"
"encoding/json"
"fmt"
"log/slog"
"os"
"os/signal"
"strings"
"sync"
"syscall"
"time"
_ "github.com/go-sql-driver/mysql"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/authentication"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/envelope"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/eventbus"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/gateway"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/health"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/identity"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/metrics"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/observability"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/protocol/gb32960"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/protocol/jt808"
"lingniu-vehicle-ingest/go/vehicle-gateway/internal/topics"
)
func main() {
logger := observability.NewLogger("vehicle-gateway")
ctx, stop := signal.NotifyContext(context.Background(), os.Interrupt, syscall.SIGTERM)
defer stop()
registry := metrics.NewRegistry()
sink, err := buildSink(ctx, logger, registry)
if err != nil {
logger.Error("build sink failed", "error", err)
os.Exit(1)
}
defer sink.Close()
resolver, jt808DeviceTokens, closeResolver, err := buildIdentityResolver(ctx, logger, registry)
if err != nil {
logger.Error("build identity resolver failed", "error", err)
os.Exit(1)
}
defer closeResolver()
health.Start(ctx, logger, health.NewServer(env("HEALTH_ADDR", ""), "vehicle-gateway", nil, registry))
publishUnified := envBool("PUBLISH_UNIFIED_ENABLED", false)
delegateFields := envBool("FIELDS_DERIVE_FROM_RAW_ENABLED", strings.TrimSpace(os.Getenv("NATS_URL")) != "")
gb32960Authenticator, gb32960AuthMode, gb32960CredentialCount, err := buildGB32960Authenticator()
if err != nil {
logger.Error("build gb32960 authenticator failed", "error", err)
os.Exit(1)
}
jt808AuthCode := env("JT808_REGISTER_AUTH_CODE", "g7gps")
jt808Authenticator, jt808AuthMode, err := buildJT808Authenticator(jt808AuthCode, jt808DeviceTokens)
if err != nil {
logger.Error("build jt808 authenticator failed", "error", err)
os.Exit(1)
}
recordAuthenticationConfig(registry, envelope.ProtocolGB32960, gb32960AuthMode, gb32960CredentialCount)
recordAuthenticationConfig(registry, envelope.ProtocolJT808, jt808AuthMode, int(boolMetric(strings.TrimSpace(jt808AuthCode) != "")))
logger.Info("protocol authentication configured", "gb32960_mode", gb32960AuthMode, "gb32960_accounts", gb32960CredentialCount, "jt808_mode", jt808AuthMode)
protocols := []gateway.TCPProtocol{
{
Protocol: envelope.ProtocolGB32960,
Addr: env("GB32960_TCP_ADDR", ":32960"),
Extract: gb32960.ExtractFrames,
Parse: gb32960.ParseFrame,
Authenticate: gb32960Authenticator,
Respond: gb32960.AutoResponse,
},
{
Protocol: envelope.ProtocolJT808,
Addr: env("JT808_TCP_ADDR", ":808"),
Extract: jt808.ExtractFrames,
Parse: jt808.ParseFrame,
Authenticate: jt808Authenticator,
Respond: jt808.NewAutoResponder(jt808AuthCode).Respond,
},
}
var wg sync.WaitGroup
errs := make(chan error, len(protocols))
for _, protocol := range protocols {
server, err := gateway.NewTCPServer(gateway.TCPServerConfig{
Protocol: protocol,
Sink: sink,
Resolver: resolver,
Logger: logger,
Metrics: registry,
ReadBufferSize: envInt("TCP_READ_BUFFER_BYTES", 64*1024),
IdleTimeout: time.Duration(envInt("TCP_IDLE_TIMEOUT_SECONDS", 180)) * time.Second,
MaxConnections: envInt("TCP_MAX_CONNECTIONS", 120_000),
PublishUnified: publishUnified,
DelegateFields: delegateFields,
})
if err != nil {
logger.Error("build tcp server failed", "protocol", protocol.Protocol, "error", err)
os.Exit(1)
}
wg.Add(1)
go func() {
defer wg.Done()
if err := server.ListenAndServe(ctx); err != nil {
errs <- err
}
}()
}
if envBool("YUTONG_MQTT_ENABLED", false) {
client, err := gateway.NewMQTTClient(gateway.MQTTClientConfig{
EndpointName: env("YUTONG_MQTT_ENDPOINT", env("YUTONG_MQTT_ENDPOINT_NAME", "yutong")),
Broker: env("YUTONG_MQTT_URI", ""),
ClientID: env("YUTONG_MQTT_CLIENT_ID", "lingniu-go-yutong-mqtt"),
Username: env("YUTONG_MQTT_USERNAME", ""),
Password: env("YUTONG_MQTT_PASSWORD", ""),
Topics: splitCSV(env("YUTONG_MQTT_TOPICS", env("YUTONG_MQTT_TOPIC", "/ytforward/shln/+"))),
QoS: byte(envInt("YUTONG_MQTT_QOS", 2)),
CleanSession: envBool("YUTONG_MQTT_CLEAN_SESSION", false),
KeepAlive: time.Duration(envInt("YUTONG_MQTT_KEEP_ALIVE_SECONDS", 20)) * time.Second,
ConnectTimeout: time.Duration(envInt("YUTONG_MQTT_CONNECTION_TIMEOUT_SECONDS", 10)) * time.Second,
TLSCACertPath: env("YUTONG_MQTT_TLS_CA_PEM", ""),
TLSClientCertPath: env("YUTONG_MQTT_TLS_CLIENT_PEM", ""),
TLSClientKeyPath: env("YUTONG_MQTT_TLS_CLIENT_KEY", ""),
TLSHostnameVerification: envBool("YUTONG_MQTT_TLS_HOSTNAME_VERIFICATION_ENABLED", true),
Sink: sink,
Resolver: resolver,
Logger: logger,
Metrics: registry,
PublishUnified: publishUnified,
DelegateFields: delegateFields,
})
if err != nil {
logger.Error("build yutong mqtt client failed", "error", err)
os.Exit(1)
}
if err := client.Start(ctx); err != nil {
logger.Error("start yutong mqtt client failed", "error", err)
os.Exit(1)
}
logger.Info("yutong mqtt client started")
}
logger.Info("vehicle gateway started", "fields_derive_from_raw_enabled", delegateFields)
select {
case <-ctx.Done():
case err := <-errs:
logger.Error("vehicle gateway listener failed", "error", err)
stop()
}
wg.Wait()
}
func buildGB32960Authenticator() (authentication.Authenticator, authentication.Mode, int, error) {
mode, err := authentication.ParseMode(os.Getenv("GB32960_AUTH_MODE"), authentication.ModeObserve)
if err != nil {
return nil, "", 0, err
}
credentials, err := loadGB32960Credentials()
if err != nil {
return nil, "", 0, err
}
if mode == authentication.ModeEnforce && len(credentials) == 0 {
return nil, "", 0, fmt.Errorf("GB32960_AUTH_MODE=enforce requires configured platform credentials")
}
return authentication.NewGB32960PlatformAuthenticator(mode, credentials), mode, len(credentials), nil
}
func buildJT808Authenticator(authCode string, deviceTokens authentication.JT808DeviceTokenProvider) (authentication.Authenticator, authentication.Mode, error) {
mode, err := authentication.ParseMode(os.Getenv("JT808_AUTH_MODE"), authentication.ModeObserve)
if err != nil {
return nil, "", err
}
if mode == authentication.ModeEnforce && strings.TrimSpace(authCode) == "" && deviceTokens == nil {
return nil, "", fmt.Errorf("JT808_AUTH_MODE=enforce requires a configured or device token provider")
}
return authentication.NewJT808Authenticator(mode, authCode, deviceTokens), mode, nil
}
func loadGB32960Credentials() (map[string][]string, error) {
payload := strings.TrimSpace(os.Getenv("GB32960_PLATFORM_CREDENTIALS_JSON"))
if path := strings.TrimSpace(os.Getenv("GB32960_PLATFORM_CREDENTIALS_FILE")); path != "" {
contents, err := os.ReadFile(path)
if err != nil {
return nil, fmt.Errorf("read gb32960 credentials file: %w", err)
}
payload = strings.TrimSpace(string(contents))
}
if payload == "" {
return map[string][]string{}, nil
}
rawCredentials := map[string]json.RawMessage{}
if err := json.Unmarshal([]byte(payload), &rawCredentials); err != nil {
return nil, fmt.Errorf("parse gb32960 platform credentials: %w", err)
}
credentials := make(map[string][]string, len(rawCredentials))
for username, rawPassword := range rawCredentials {
trimmed := strings.TrimSpace(username)
if trimmed == "" {
continue
}
var passwords []string
var single string
if err := json.Unmarshal(rawPassword, &single); err == nil {
passwords = []string{single}
} else if err := json.Unmarshal(rawPassword, &passwords); err != nil {
return nil, fmt.Errorf("parse gb32960 credentials for account %q: expected string or string array", trimmed)
}
for _, password := range passwords {
if password != "" {
credentials[trimmed] = append(credentials[trimmed], password)
}
}
if len(credentials[trimmed]) == 0 {
delete(credentials, trimmed)
}
}
return credentials, nil
}
func recordAuthenticationConfig(registry *metrics.Registry, protocol envelope.Protocol, mode authentication.Mode, credentialCount int) {
if registry == nil {
return
}
registry.SetGauge("vehicle_gateway_authentication_mode", metrics.Labels{
"protocol": string(protocol),
"mode": string(mode),
}, 1)
registry.SetGauge("vehicle_gateway_authentication_credentials", metrics.Labels{
"protocol": string(protocol),
}, float64(credentialCount))
}
func buildIdentityResolver(ctx context.Context, logger *slog.Logger, registry *metrics.Registry) (identity.Resolver, authentication.JT808DeviceTokenProvider, func(), error) {
dsn := env("IDENTITY_MYSQL_DSN", strings.TrimSpace(os.Getenv("MYSQL_DSN")))
if strings.TrimSpace(dsn) == "" {
logger.Warn("identity mysql dsn is empty; using noop identity resolver")
return identity.NoopResolver{}, nil, func() {}, nil
}
db, err := sql.Open("mysql", dsn)
if err != nil {
logger.Error("identity mysql configuration failed; continuing with unresolved identities", "error", err)
return identity.NoopResolver{}, nil, func() {}, nil
}
db.SetMaxOpenConns(envInt("IDENTITY_MYSQL_MAX_OPEN_CONNS", 16))
db.SetMaxIdleConns(envInt("IDENTITY_MYSQL_MAX_IDLE_CONNS", 8))
db.SetConnMaxLifetime(time.Duration(envInt("IDENTITY_MYSQL_CONN_MAX_LIFETIME_SECONDS", 300)) * time.Second)
db.SetConnMaxIdleTime(time.Duration(envInt("IDENTITY_MYSQL_CONN_MAX_IDLE_SECONDS", 60)) * time.Second)
table := env("VEHICLE_IDENTITY_TABLE", "vehicle_identity_binding")
cacheMaxEntries := envInt("IDENTITY_LOOKUP_CACHE_MAX_ENTRIES", 300000)
cacheCleanupInterval := time.Duration(envInt("IDENTITY_LOOKUP_CACHE_CLEANUP_INTERVAL_SECONDS", 60)) * time.Second
staleLookupTTLSeconds := envInt("IDENTITY_STALE_LOOKUP_TTL_SECONDS", 3600)
registrationGatewayWritesEnabled := envBool("JT808_REGISTRATION_GATEWAY_WRITES_ENABLED", false)
resolver := identity.NewMySQLResolverWithOptions(db, table, identity.MySQLResolverOptions{
SnapshotOnlyLookups: envBool("IDENTITY_SNAPSHOT_ONLY_ENABLED", true),
LocationTouchInterval: time.Duration(envInt("JT808_REGISTRATION_LOCATION_TOUCH_INTERVAL_SECONDS", 600)) * time.Second,
LocationTouchRetryInterval: time.Duration(envInt("JT808_REGISTRATION_LOCATION_TOUCH_RETRY_INTERVAL_SECONDS", 5)) * time.Second,
RegistrationWriteAttempts: envInt("JT808_REGISTRATION_WRITE_RETRY_ATTEMPTS", 2),
RegistrationWriteRetryDelay: time.Duration(envInt("JT808_REGISTRATION_WRITE_RETRY_DELAY_MS", 20)) * time.Millisecond,
LookupCacheTTL: time.Duration(envInt("IDENTITY_LOOKUP_CACHE_TTL_SECONDS", 600)) * time.Second,
StaleLookupTTL: time.Duration(staleLookupTTLSeconds) * time.Second,
CacheCleanupInterval: cacheCleanupInterval,
MaxCacheEntries: cacheMaxEntries,
SourceCodeLookup: envBool("IDENTITY_SOURCE_CODE_LOOKUP_ENABLED", true),
AsyncRegistrationWrites: envBool("JT808_REGISTRATION_ASYNC_WRITE_ENABLED", true),
RegistrationWriteQueueSize: envInt("JT808_REGISTRATION_WRITE_QUEUE_SIZE", 100000),
RegistrationWriteWorkers: envInt("JT808_REGISTRATION_WRITE_WORKERS", 4),
RegistrationWriteTimeout: time.Duration(envInt("JT808_REGISTRATION_WRITE_TIMEOUT_MS", 5000)) * time.Millisecond,
RegistrationEnqueueTimeout: time.Duration(envInt("JT808_REGISTRATION_WRITE_ENQUEUE_TIMEOUT_MS", 50)) * time.Millisecond,
DisableRegistrationWrites: !registrationGatewayWritesEnabled,
OnRegistrationWriteResult: func(result identity.RegistrationWriteResult) {
recordJT808RegistrationWriteResult(registry, result)
},
OnRegistrationWriteError: func(err error) {
logger.Warn("jt808 registration async write failed", "error", err)
},
})
startIdentityDatabaseMaintenance(
ctx,
logger,
db,
resolver,
envBool("IDENTITY_MYSQL_ENSURE_SCHEMA", false),
time.Duration(envInt("IDENTITY_MYSQL_PING_TIMEOUT_MS", 3000))*time.Millisecond,
time.Duration(envInt("IDENTITY_MYSQL_SCHEMA_TIMEOUT_SECONDS", 10))*time.Second,
)
startIdentitySnapshotRefresh(
ctx,
logger,
registry,
resolver,
time.Duration(envInt("IDENTITY_SNAPSHOT_REFRESH_INTERVAL_SECONDS", 60))*time.Second,
time.Duration(envInt("IDENTITY_SNAPSHOT_REFRESH_TIMEOUT_SECONDS", 10))*time.Second,
)
startIdentityCacheMetrics(ctx, registry, resolver, time.Duration(envInt("IDENTITY_CACHE_METRICS_INTERVAL_SECONDS", 30))*time.Second)
resolveTimeout := time.Duration(envInt("IDENTITY_RESOLVE_TIMEOUT_MS", 50)) * time.Millisecond
registry.SetGauge("vehicle_gateway_jt808_registration_gateway_writes_enabled", nil, boolMetric(registrationGatewayWritesEnabled))
logger.Info("identity mysql resolver enabled", "table", table, "snapshot_only_enabled", envBool("IDENTITY_SNAPSHOT_ONLY_ENABLED", true), "snapshot_refresh_interval_seconds", envInt("IDENTITY_SNAPSHOT_REFRESH_INTERVAL_SECONDS", 60), "lookup_cache_ttl_seconds", envInt("IDENTITY_LOOKUP_CACHE_TTL_SECONDS", 600), "stale_lookup_ttl_seconds", staleLookupTTLSeconds, "lookup_cache_max_entries", cacheMaxEntries, "lookup_cache_cleanup_interval_seconds", cacheCleanupInterval.Seconds(), "source_code_lookup_enabled", envBool("IDENTITY_SOURCE_CODE_LOOKUP_ENABLED", true), "resolve_timeout_ms", resolveTimeout.Milliseconds(), "jt808_registration_gateway_writes_enabled", registrationGatewayWritesEnabled, "jt808_registration_location_touch_retry_interval_seconds", envInt("JT808_REGISTRATION_LOCATION_TOUCH_RETRY_INTERVAL_SECONDS", 5), "jt808_registration_write_retry_attempts", envInt("JT808_REGISTRATION_WRITE_RETRY_ATTEMPTS", 2), "jt808_registration_write_retry_delay_ms", envInt("JT808_REGISTRATION_WRITE_RETRY_DELAY_MS", 20), "jt808_registration_async_write_enabled", envBool("JT808_REGISTRATION_ASYNC_WRITE_ENABLED", true), "jt808_registration_write_queue_size", envInt("JT808_REGISTRATION_WRITE_QUEUE_SIZE", 100000), "jt808_registration_write_workers", envInt("JT808_REGISTRATION_WRITE_WORKERS", 4), "jt808_registration_write_timeout_ms", envInt("JT808_REGISTRATION_WRITE_TIMEOUT_MS", 5000), "jt808_registration_write_enqueue_timeout_ms", envInt("JT808_REGISTRATION_WRITE_ENQUEUE_TIMEOUT_MS", 50))
return identity.TimeoutResolver{Delegate: resolver, Timeout: resolveTimeout}, resolver, func() {
_ = resolver.Close()
_ = db.Close()
}, nil
}
type identitySnapshotRefresher interface {
RefreshSnapshot(context.Context) (identity.SnapshotRefreshResult, error)
}
type identityDatabasePinger interface {
PingContext(context.Context) error
}
type identitySchemaEnsurer interface {
EnsureSchema(context.Context) error
}
func startIdentityDatabaseMaintenance(ctx context.Context, logger *slog.Logger, db identityDatabasePinger, schema identitySchemaEnsurer, ensureSchema bool, pingTimeout time.Duration, schemaTimeout time.Duration) {
if db == nil {
return
}
if pingTimeout <= 0 {
pingTimeout = 3 * time.Second
}
if schemaTimeout <= 0 {
schemaTimeout = 10 * time.Second
}
go func() {
pingCtx, cancelPing := context.WithTimeout(ctx, pingTimeout)
err := db.PingContext(pingCtx)
cancelPing()
if err != nil {
logger.Warn("identity mysql unavailable; ingress remains enabled and snapshot refresh will retry", "error", err)
return
}
if !ensureSchema || schema == nil {
return
}
schemaCtx, cancelSchema := context.WithTimeout(ctx, schemaTimeout)
err = schema.EnsureSchema(schemaCtx)
cancelSchema()
if err != nil {
logger.Warn("identity mysql schema check failed; ingress remains enabled", "error", err)
}
}()
}
func startIdentitySnapshotRefresh(ctx context.Context, logger *slog.Logger, registry *metrics.Registry, refresher identitySnapshotRefresher, interval time.Duration, timeout time.Duration) {
if refresher == nil {
return
}
if interval <= 0 {
interval = time.Minute
}
if timeout <= 0 {
timeout = 10 * time.Second
}
refresh := func() {
refreshCtx, cancel := context.WithTimeout(ctx, timeout)
result, err := refresher.RefreshSnapshot(refreshCtx)
cancel()
if err != nil {
recordIdentitySnapshotRefresh(registry, identity.SnapshotRefreshResult{}, "error")
logger.Warn("identity snapshot refresh failed; keeping last known good snapshot", "error", err)
return
}
recordIdentitySnapshotRefresh(registry, result, "ok")
logger.Info("identity snapshot refreshed", "binding_entries", result.BindingEntries, "identifier_entries", result.IdentifierEntries, "registration_entries", result.RegistrationEntries, "source_entries", result.SourceEntries)
}
go func() {
refresh()
ticker := time.NewTicker(interval)
defer ticker.Stop()
for {
select {
case <-ctx.Done():
return
case <-ticker.C:
refresh()
}
}
}()
}
func recordIdentitySnapshotRefresh(registry *metrics.Registry, result identity.SnapshotRefreshResult, status string) {
if registry == nil {
return
}
registry.IncCounter("vehicle_gateway_identity_snapshot_refresh_total", metrics.Labels{"status": status})
if status != "ok" {
return
}
for _, item := range []struct {
kind string
value int
}{
{kind: "binding", value: result.BindingEntries},
{kind: "identifier", value: result.IdentifierEntries},
{kind: "registration", value: result.RegistrationEntries},
{kind: "source", value: result.SourceEntries},
} {
registry.SetGauge("vehicle_gateway_identity_snapshot_entries", metrics.Labels{"kind": item.kind}, float64(item.value))
}
registry.SetGauge("vehicle_gateway_identity_snapshot_last_success_unix_seconds", nil, float64(result.RefreshedAt.Unix()))
}
type identityCacheStatsReporter interface {
CacheStats() identity.CacheStats
}
func startIdentityCacheMetrics(ctx context.Context, registry *metrics.Registry, reporter identityCacheStatsReporter, interval time.Duration) {
if registry == nil || reporter == nil {
return
}
if interval <= 0 {
interval = 30 * time.Second
}
recordIdentityCacheStats(registry, reporter.CacheStats())
go func() {
ticker := time.NewTicker(interval)
defer ticker.Stop()
for {
select {
case <-ctx.Done():
return
case <-ticker.C:
recordIdentityCacheStats(registry, reporter.CacheStats())
}
}
}()
}
func recordIdentityCacheStats(registry *metrics.Registry, stats identity.CacheStats) {
if registry == nil {
return
}
for _, item := range []struct {
name string
value int
max int
}{
{name: "lookup", value: stats.LookupEntries, max: stats.MaxEntries},
{name: "registration", value: stats.RegistrationEntries, max: stats.MaxEntries},
{name: "source_code", value: stats.SourceCodeEntries, max: stats.MaxEntries},
{name: "location_touch", value: stats.LocationTouchEntries, max: stats.MaxEntries},
{name: "location_touch_failure", value: stats.LocationTouchFailureEntries, max: stats.MaxEntries},
{name: "registration_write_queue", value: stats.RegistrationWriteQueueDepth, max: stats.RegistrationWriteQueueCap},
{name: "snapshot_binding", value: stats.SnapshotBindingEntries, max: stats.MaxEntries},
{name: "snapshot_identifier", value: stats.SnapshotIdentifierEntries, max: stats.MaxEntries},
{name: "snapshot_registration", value: stats.SnapshotRegistrationEntries, max: stats.MaxEntries},
{name: "snapshot_source", value: stats.SnapshotSourceEntries, max: stats.MaxEntries},
} {
registry.SetGauge("vehicle_gateway_identity_cache_entries", metrics.Labels{"cache": item.name}, float64(item.value))
registry.SetGauge("vehicle_gateway_identity_cache_max_entries", metrics.Labels{"cache": item.name}, float64(item.max))
}
ready := 0.0
if stats.SnapshotReady {
ready = 1
}
registry.SetGauge("vehicle_gateway_identity_snapshot_ready", nil, ready)
if !stats.SnapshotRefreshedAt.IsZero() {
registry.SetGauge("vehicle_gateway_identity_snapshot_last_success_unix_seconds", nil, float64(stats.SnapshotRefreshedAt.Unix()))
}
}
func recordJT808RegistrationWriteResult(registry *metrics.Registry, result identity.RegistrationWriteResult) {
if registry == nil {
return
}
mode := strings.TrimSpace(result.Mode)
if mode == "" {
mode = "unknown"
}
status := strings.TrimSpace(result.Status)
if status == "" {
status = "unknown"
}
registry.IncCounter("vehicle_gateway_jt808_registration_write_total", metrics.Labels{
"mode": mode,
"status": status,
})
metrics.RecordLastActivity(registry, "vehicle_gateway_last_jt808_registration_write_unix_seconds", metrics.Labels{
"mode": mode,
"status": status,
})
}
func buildSink(ctx context.Context, logger *slog.Logger, registry *metrics.Registry) (eventbus.Sink, error) {
if strings.TrimSpace(os.Getenv("NATS_URL")) != "" {
natsConfig := natsSinkConfigFromEnv()
sink, err := eventbus.NewNATSSink(natsConfig)
if err != nil {
return nil, err
}
outboxRuntime := natsOutboxConfigFromEnv(registry, func(err error) {
logger.Warn("nats durable outbox publish failed", "error", err)
})
if outboxRuntime.Enabled {
outbox, err := eventbus.NewDurableOutboxSink(sink, outboxRuntime.Config)
if err != nil {
_ = sink.Close()
return nil, err
}
go outbox.ReplayLoop(ctx, outboxRuntime.ReplayInterval)
logger.Info("nats durable outbox enabled",
"dir", outboxRuntime.Config.Directory,
"fsync", outboxRuntime.Config.SyncWrites,
"replay_interval_ms", outboxRuntime.ReplayInterval.Milliseconds(),
"replay_batch_size", outboxRuntime.Config.ReplayBatchSize,
"close_timeout_ms", outboxRuntime.Config.CloseTimeout.Milliseconds(),
"wal_segment_bytes", outboxRuntime.Config.WALSegmentBytes,
"wal_segment_age_ms", outboxRuntime.Config.WALSegmentAge.Milliseconds(),
"wal_append_queue_size", outboxRuntime.Config.WALAppendQueue,
"wal_commit_batch_size", outboxRuntime.Config.WALCommitBatch,
"wal_commit_interval_ms", outboxRuntime.Config.WALCommitWait.Milliseconds(),
"max_inflight", natsConfig.AsyncMaxPending,
"ack_timeout_ms", natsConfig.AsyncAckTimeout.Milliseconds(),
)
return outbox, nil
}
var out eventbus.Sink = eventbus.NewRetryingSink(sink, eventbus.RetryConfig{
Attempts: envInt("NATS_PUBLISH_ATTEMPTS", 3),
Backoff: time.Duration(envInt("NATS_PUBLISH_BACKOFF_MS", 100)) * time.Millisecond,
AttemptTimeout: time.Duration(envInt("NATS_PUBLISH_TIMEOUT_MS", 3000)) * time.Millisecond,
})
spoolDir := strings.TrimSpace(os.Getenv("NATS_SPOOL_DIR"))
if spoolDir != "" {
replayBatchSize := envInt("NATS_SPOOL_REPLAY_BATCH_SIZE", 200)
durable := eventbus.NewDurableSink(out, eventbus.DurableConfig{
Directory: spoolDir,
ReplayBatchSize: replayBatchSize,
Metrics: registry,
Name: "nats",
})
interval := time.Duration(envInt("NATS_SPOOL_REPLAY_INTERVAL_MS", 1000)) * time.Millisecond
go durable.ReplayLoop(ctx, interval, func(err error) {
logger.Warn("nats spool replay failed", "error", err)
})
logger.Info("nats durable spool enabled", "dir", spoolDir, "replay_interval_ms", interval.Milliseconds(), "replay_batch_size", replayBatchSize)
out = durable
}
if envBool("NATS_ASYNC_ENABLED", true) {
queueSize := envInt("NATS_ASYNC_QUEUE_SIZE", envInt("KAFKA_ASYNC_QUEUE_SIZE", 100000))
workers := envInt("NATS_ASYNC_WORKERS", envInt("KAFKA_ASYNC_WORKERS", 8))
enqueueTimeout := time.Duration(envInt("NATS_ASYNC_ENQUEUE_TIMEOUT_MS", envInt("KAFKA_ASYNC_ENQUEUE_TIMEOUT_MS", 1000))) * time.Millisecond
timeout := time.Duration(envInt("NATS_ASYNC_PUBLISH_TIMEOUT_MS", envInt("KAFKA_ASYNC_PUBLISH_TIMEOUT_MS", 30000))) * time.Millisecond
if envBool("NATS_PARTITIONED_ASYNC_ENABLED", true) {
rawQueueSize, derivedQueueSize, rawWorkers, derivedWorkers := partitionedAsyncConfigFromEnv("NATS", queueSize, workers)
rawEnqueueTimeout, derivedEnqueueTimeout := partitionedAsyncEnqueueTimeoutsFromEnv("NATS", enqueueTimeout)
out = eventbus.NewPartitionedAsyncSink(out, eventbus.PartitionedAsyncConfig{
RawQueueSize: rawQueueSize,
DerivedQueueSize: derivedQueueSize,
RawWorkers: rawWorkers,
DerivedWorkers: derivedWorkers,
RawEnqueueTimeout: rawEnqueueTimeout,
DerivedEnqueueTimeout: derivedEnqueueTimeout,
EnqueueTimeout: enqueueTimeout,
OperationTimeout: timeout,
Metrics: registry,
Name: "nats",
OnError: func(err error) {
logger.Warn("nats partitioned async publish failed", "error", err)
},
})
logger.Info("nats partitioned async publish enabled", "raw_queue_size", rawQueueSize, "derived_queue_size", derivedQueueSize, "raw_workers", rawWorkers, "derived_workers", derivedWorkers, "raw_enqueue_timeout_ms", rawEnqueueTimeout.Milliseconds(), "derived_enqueue_timeout_ms", derivedEnqueueTimeout.Milliseconds(), "publish_timeout_ms", timeout.Milliseconds())
} else {
out = eventbus.NewAsyncSink(out, eventbus.AsyncConfig{
QueueSize: queueSize,
Workers: workers,
EnqueueTimeout: enqueueTimeout,
OperationTimeout: timeout,
Metrics: registry,
Name: "nats",
OnError: func(err error) {
logger.Warn("nats async publish failed", "error", err)
},
})
logger.Info("nats async publish enabled", "queue_size", queueSize, "workers", workers, "enqueue_timeout_ms", enqueueTimeout.Milliseconds(), "publish_timeout_ms", timeout.Milliseconds())
}
}
logger.Info("nats jetstream sink enabled", "url", env("NATS_URL", ""), "unified_subject", natsSinkConfigFromEnv().UnifiedSubject, "publish_unified_enabled", envBool("PUBLISH_UNIFIED_ENABLED", false), "publish_fields_enabled", !envBool("FIELDS_DERIVE_FROM_RAW_ENABLED", true))
return out, nil
}
brokers := splitCSV(os.Getenv("KAFKA_BROKERS"))
if len(brokers) == 0 {
logger.Warn("KAFKA_BROKERS is empty; using log sink")
return eventbus.NewLogSink(logger), nil
}
sink, err := eventbus.NewKafkaSink(eventbus.KafkaConfig{
Brokers: brokers,
RawTopics: map[envelope.Protocol]string{
envelope.ProtocolGB32960: env("KAFKA_TOPIC_GB32960_RAW", topics.RawGB32960),
envelope.ProtocolJT808: env("KAFKA_TOPIC_JT808_RAW", topics.RawJT808),
envelope.ProtocolYutongMQTT: env("KAFKA_TOPIC_YUTONG_MQTT_RAW", topics.RawYutongMQTT),
},
FieldsTopics: map[envelope.Protocol]string{
envelope.ProtocolGB32960: env("KAFKA_TOPIC_GB32960_FIELDS", topics.FieldsGB32960),
envelope.ProtocolJT808: env("KAFKA_TOPIC_JT808_FIELDS", topics.FieldsJT808),
envelope.ProtocolYutongMQTT: env("KAFKA_TOPIC_YUTONG_MQTT_FIELDS", topics.FieldsYutongMQTT),
},
UnifiedTopic: env("KAFKA_TOPIC_UNIFIED", topics.Unified),
})
if err != nil {
return nil, err
}
var out eventbus.Sink = eventbus.NewRetryingSink(sink, eventbus.RetryConfig{
Attempts: envInt("KAFKA_PUBLISH_ATTEMPTS", 3),
Backoff: time.Duration(envInt("KAFKA_PUBLISH_BACKOFF_MS", 100)) * time.Millisecond,
AttemptTimeout: time.Duration(envInt("KAFKA_PUBLISH_TIMEOUT_MS", 3000)) * time.Millisecond,
})
spoolDir := strings.TrimSpace(os.Getenv("KAFKA_SPOOL_DIR"))
if spoolDir != "" {
replayBatchSize := envInt("KAFKA_SPOOL_REPLAY_BATCH_SIZE", 200)
durable := eventbus.NewDurableSink(out, eventbus.DurableConfig{
Directory: spoolDir,
ReplayBatchSize: replayBatchSize,
Metrics: registry,
Name: "kafka",
})
interval := time.Duration(envInt("KAFKA_SPOOL_REPLAY_INTERVAL_MS", 1000)) * time.Millisecond
go durable.ReplayLoop(ctx, interval, func(err error) {
logger.Warn("kafka spool replay failed", "error", err)
})
logger.Info("kafka durable spool enabled", "dir", spoolDir, "replay_interval_ms", interval.Milliseconds(), "replay_batch_size", replayBatchSize)
out = durable
}
if envBool("KAFKA_ASYNC_ENABLED", true) {
queueSize := envInt("KAFKA_ASYNC_QUEUE_SIZE", 100000)
workers := envInt("KAFKA_ASYNC_WORKERS", 8)
enqueueTimeout := time.Duration(envInt("KAFKA_ASYNC_ENQUEUE_TIMEOUT_MS", 1000)) * time.Millisecond
timeout := time.Duration(envInt("KAFKA_ASYNC_PUBLISH_TIMEOUT_MS", 30000)) * time.Millisecond
if envBool("KAFKA_PARTITIONED_ASYNC_ENABLED", true) {
rawQueueSize, derivedQueueSize, rawWorkers, derivedWorkers := partitionedAsyncConfigFromEnv("KAFKA", queueSize, workers)
rawEnqueueTimeout, derivedEnqueueTimeout := partitionedAsyncEnqueueTimeoutsFromEnv("KAFKA", enqueueTimeout)
out = eventbus.NewPartitionedAsyncSink(out, eventbus.PartitionedAsyncConfig{
RawQueueSize: rawQueueSize,
DerivedQueueSize: derivedQueueSize,
RawWorkers: rawWorkers,
DerivedWorkers: derivedWorkers,
RawEnqueueTimeout: rawEnqueueTimeout,
DerivedEnqueueTimeout: derivedEnqueueTimeout,
EnqueueTimeout: enqueueTimeout,
OperationTimeout: timeout,
Metrics: registry,
Name: "kafka",
OnError: func(err error) {
logger.Warn("kafka partitioned async publish failed", "error", err)
},
})
logger.Info("kafka partitioned async publish enabled", "raw_queue_size", rawQueueSize, "derived_queue_size", derivedQueueSize, "raw_workers", rawWorkers, "derived_workers", derivedWorkers, "raw_enqueue_timeout_ms", rawEnqueueTimeout.Milliseconds(), "derived_enqueue_timeout_ms", derivedEnqueueTimeout.Milliseconds(), "publish_timeout_ms", timeout.Milliseconds())
} else {
out = eventbus.NewAsyncSink(out, eventbus.AsyncConfig{
QueueSize: queueSize,
Workers: workers,
EnqueueTimeout: enqueueTimeout,
OperationTimeout: timeout,
Metrics: registry,
Name: "kafka",
OnError: func(err error) {
logger.Warn("kafka async publish failed", "error", err)
},
})
logger.Info("kafka async publish enabled", "queue_size", queueSize, "workers", workers, "enqueue_timeout_ms", enqueueTimeout.Milliseconds(), "publish_timeout_ms", timeout.Milliseconds())
}
}
return out, nil
}
func partitionedAsyncConfigFromEnv(prefix string, queueSize int, workers int) (rawQueueSize int, derivedQueueSize int, rawWorkers int, derivedWorkers int) {
derivedQueueDefault := queueSize / 2
if derivedQueueDefault <= 0 {
derivedQueueDefault = 1
}
derivedWorkersDefault := workers / 2
if derivedWorkersDefault <= 0 {
derivedWorkersDefault = 1
}
rawQueueSize = envInt(prefix+"_ASYNC_RAW_QUEUE_SIZE", queueSize)
derivedQueueSize = envInt(prefix+"_ASYNC_DERIVED_QUEUE_SIZE", derivedQueueDefault)
rawWorkers = envInt(prefix+"_ASYNC_RAW_WORKERS", workers)
derivedWorkers = envInt(prefix+"_ASYNC_DERIVED_WORKERS", derivedWorkersDefault)
return rawQueueSize, derivedQueueSize, rawWorkers, derivedWorkers
}
func partitionedAsyncEnqueueTimeoutsFromEnv(prefix string, enqueueTimeout time.Duration) (rawEnqueueTimeout time.Duration, derivedEnqueueTimeout time.Duration) {
rawEnqueueTimeout = time.Duration(envInt(prefix+"_ASYNC_RAW_ENQUEUE_TIMEOUT_MS", int(enqueueTimeout/time.Millisecond))) * time.Millisecond
derivedEnqueueTimeout = time.Duration(envInt(prefix+"_ASYNC_DERIVED_ENQUEUE_TIMEOUT_MS", 50)) * time.Millisecond
return rawEnqueueTimeout, derivedEnqueueTimeout
}
func natsSinkConfigFromEnv() eventbus.NATSConfig {
return eventbus.NATSConfig{
URL: env("NATS_URL", ""),
Name: env("NATS_CLIENT_NAME", "lingniu-vehicle-gateway"),
AsyncMaxPending: envInt("NATS_OUTBOX_MAX_INFLIGHT", 10_000),
AsyncAckTimeout: time.Duration(envInt("NATS_OUTBOX_ACK_TIMEOUT_MS", 3000)) * time.Millisecond,
RawSubjects: map[envelope.Protocol]string{
envelope.ProtocolGB32960: env("NATS_SUBJECT_GB32960_RAW", env("KAFKA_TOPIC_GB32960_RAW", topics.RawGB32960)),
envelope.ProtocolJT808: env("NATS_SUBJECT_JT808_RAW", env("KAFKA_TOPIC_JT808_RAW", topics.RawJT808)),
envelope.ProtocolYutongMQTT: env("NATS_SUBJECT_YUTONG_MQTT_RAW", env("KAFKA_TOPIC_YUTONG_MQTT_RAW", topics.RawYutongMQTT)),
},
FieldsSubjects: map[envelope.Protocol]string{
envelope.ProtocolGB32960: env("NATS_SUBJECT_GB32960_FIELDS", env("KAFKA_TOPIC_GB32960_FIELDS", topics.FieldsGB32960)),
envelope.ProtocolJT808: env("NATS_SUBJECT_JT808_FIELDS", env("KAFKA_TOPIC_JT808_FIELDS", topics.FieldsJT808)),
envelope.ProtocolYutongMQTT: env("NATS_SUBJECT_YUTONG_MQTT_FIELDS", env("KAFKA_TOPIC_YUTONG_MQTT_FIELDS", topics.FieldsYutongMQTT)),
},
UnifiedSubject: env("NATS_SUBJECT_UNIFIED", env("KAFKA_TOPIC_UNIFIED", topics.Unified)),
}
}
type natsOutboxRuntimeConfig struct {
Enabled bool
Config eventbus.DurableOutboxConfig
ReplayInterval time.Duration
}
func natsOutboxConfigFromEnv(registry *metrics.Registry, onError func(error)) natsOutboxRuntimeConfig {
directory := strings.TrimSpace(os.Getenv("NATS_OUTBOX_DIR"))
return natsOutboxRuntimeConfig{
Enabled: envBool("NATS_DURABLE_OUTBOX_ENABLED", false),
Config: eventbus.DurableOutboxConfig{
Directory: directory,
ReplayBatchSize: envInt("NATS_OUTBOX_REPLAY_BATCH_SIZE", 1000),
SyncWrites: envBool("NATS_OUTBOX_FSYNC", true),
CloseTimeout: time.Duration(envInt("NATS_OUTBOX_CLOSE_TIMEOUT_MS", 5000)) * time.Millisecond,
WALSegmentBytes: int64(envInt("NATS_OUTBOX_WAL_SEGMENT_BYTES", 16<<20)),
WALSegmentAge: time.Duration(envInt("NATS_OUTBOX_WAL_SEGMENT_AGE_MS", 5000)) * time.Millisecond,
WALAppendQueue: envInt("NATS_OUTBOX_WAL_APPEND_QUEUE_SIZE", 100_000),
WALCommitBatch: envInt("NATS_OUTBOX_WAL_COMMIT_BATCH_SIZE", 256),
WALCommitWait: time.Duration(envInt("NATS_OUTBOX_WAL_COMMIT_INTERVAL_MS", 1)) * time.Millisecond,
Metrics: registry,
Name: "nats-outbox",
OnError: onError,
},
ReplayInterval: time.Duration(envInt("NATS_OUTBOX_REPLAY_INTERVAL_MS", 1000)) * time.Millisecond,
}
}
func env(key string, fallback string) string {
value := strings.TrimSpace(os.Getenv(key))
if value == "" {
return fallback
}
return value
}
func envInt(key string, fallback int) int {
value := strings.TrimSpace(os.Getenv(key))
if value == "" {
return fallback
}
var out int
for _, r := range value {
if r < '0' || r > '9' {
return fallback
}
out = out*10 + int(r-'0')
}
if out <= 0 {
return fallback
}
return out
}
func envBool(key string, fallback bool) bool {
value := strings.ToLower(strings.TrimSpace(os.Getenv(key)))
if value == "" {
return fallback
}
return value == "1" || value == "true" || value == "yes" || value == "on"
}
func boolMetric(value bool) float64 {
if value {
return 1
}
return 0
}
func splitCSV(value string) []string {
var out []string
for _, item := range strings.Split(value, ",") {
item = strings.TrimSpace(item)
if item != "" {
out = append(out, item)
}
}
return out
}