package s3_lifecycle import ( "testing" "time" "github.com/seaweedfs/seaweedfs/weed/pb/plugin_pb" ) func TestParseConfigDefaults(t *testing.T) { cfg := ParseConfig(nil, nil) if cfg.Workers != shardPipelineGoroutines { t.Errorf("Workers default=%d, want %d", cfg.Workers, shardPipelineGoroutines) } } func TestParseConfigIgnoresWorkerValues(t *testing.T) { // Worker-side config form is currently empty. The old // max_runtime_minutes knob duplicated the admin scheduler's // Execution Timeout and was removed; anything in workerValues is // now silently ignored. The single source of truth for the // per-Execute wall-clock cap is AdminRuntimeDefaults.ExecutionTimeoutSeconds. worker := map[string]*plugin_pb.ConfigValue{ "max_runtime_minutes": {Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: 120}}, } cfg := ParseConfig(nil, worker) if cfg.Workers != shardPipelineGoroutines { t.Errorf("Workers default=%d, want %d", cfg.Workers, shardPipelineGoroutines) } } func TestParseConfigMetaLogRetentionDefaultsToZero(t *testing.T) { // Unset key keeps MetaLogRetention at 0, which runShard treats as // "no retention info supplied" and falls back to maxTTL. cfg := ParseConfig(nil, nil) if cfg.MetaLogRetention != 0 { t.Errorf("MetaLogRetention default=%v, want 0", cfg.MetaLogRetention) } } func TestParseConfigMetaLogRetentionDaysConvertsToDuration(t *testing.T) { admin := map[string]*plugin_pb.ConfigValue{ MetaLogRetentionDaysAdminKey: {Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: 7}}, } cfg := ParseConfig(admin, nil) if want := 7 * 24 * time.Hour; cfg.MetaLogRetention != want { t.Errorf("MetaLogRetention=%v, want %v (7 days)", cfg.MetaLogRetention, want) } } func TestParseConfigMetaLogRetentionNegativeStaysZero(t *testing.T) { // A negative declaration is nonsense; stay at 0 so runShard's // fallback applies rather than producing a negative window. admin := map[string]*plugin_pb.ConfigValue{ MetaLogRetentionDaysAdminKey: {Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: -3}}, } cfg := ParseConfig(admin, nil) if cfg.MetaLogRetention != 0 { t.Errorf("negative MetaLogRetention should stay 0, got %v", cfg.MetaLogRetention) } } func TestParseConfigWalkerIntervalDefaultsToZero(t *testing.T) { // Unset key keeps WalkerInterval at 0 so dailyrun.runShard fires the // walker every pass (the pre-throttle behavior the s3tests fast // driver and the in-repo integration tests rely on). cfg := ParseConfig(nil, nil) if cfg.WalkerInterval != 0 { t.Errorf("WalkerInterval default=%v, want 0", cfg.WalkerInterval) } } func TestParseConfigWalkerIntervalMinutesConvertsToDuration(t *testing.T) { admin := map[string]*plugin_pb.ConfigValue{ WalkerIntervalMinutesAdminKey: {Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: 90}}, } cfg := ParseConfig(admin, nil) if want := 90 * time.Minute; cfg.WalkerInterval != want { t.Errorf("WalkerInterval=%v, want %v", cfg.WalkerInterval, want) } } func TestParseConfigWalkerIntervalNegativeStaysZero(t *testing.T) { // Negative declarations stay at 0 so the worker keeps "fire every // pass" rather than treating the negative as past-due (which would // fire every pass anyway — but via a less obvious code path that // future readers would have to trace). admin := map[string]*plugin_pb.ConfigValue{ WalkerIntervalMinutesAdminKey: {Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: -10}}, } cfg := ParseConfig(admin, nil) if cfg.WalkerInterval != 0 { t.Errorf("negative WalkerInterval should stay 0, got %v", cfg.WalkerInterval) } }