// GetOrCreateShard will return the shard object, or create one if it doesn't // already exist. Note the shard creation is protected by a keyspace Lock. func GetOrCreateShard(ctx context.Context, ts topo.Server, keyspace, shard string) (*topo.ShardInfo, error) { si, finalErr := ts.GetShard(ctx, keyspace, shard) if finalErr == topo.ErrNoNode { // create the keyspace, maybe it already exists if err := ts.CreateKeyspace(ctx, keyspace, &pb.Keyspace{}); err != nil && err != topo.ErrNodeExists { return nil, fmt.Errorf("CreateKeyspace(%v) failed: %v", keyspace, err) } // now we can lock the keyspace node := actionnode.KeyspaceCreateShard() lockPath, err := node.LockKeyspace(ctx, ts, keyspace) if err != nil { return nil, fmt.Errorf("LockKeyspace failed: %v", err) } // now try to create within the lock, may already exist if err := ts.CreateShard(ctx, keyspace, shard); err != nil && err != topo.ErrNodeExists { return nil, node.UnlockKeyspace(ctx, ts, keyspace, lockPath, fmt.Errorf("CreateShard(%v/%v) failed: %v", keyspace, shard, err)) } // try to read the shard again, maybe someone created it // in between the original GetShard and the LockKeyspace si, finalErr = ts.GetShard(ctx, keyspace, shard) // and unlock if err := node.UnlockKeyspace(ctx, ts, keyspace, lockPath, finalErr); err != nil { return nil, fmt.Errorf("UnlockKeyspace failed: %v", err) } } return si, finalErr }
// CopyKeyspaces will create the keyspaces in the destination topo func CopyKeyspaces(fromTS, toTS topo.Server) { keyspaces, err := fromTS.GetKeyspaces() if err != nil { log.Fatalf("GetKeyspaces: %v", err) } wg := sync.WaitGroup{} rec := concurrency.AllErrorRecorder{} for _, keyspace := range keyspaces { wg.Add(1) go func(keyspace string) { defer wg.Done() k, err := fromTS.GetKeyspace(keyspace) if err != nil { rec.RecordError(fmt.Errorf("GetKeyspace(%v): %v", keyspace, err)) return } if err := toTS.CreateKeyspace(keyspace, k.Keyspace); err != nil { if err == topo.ErrNodeExists { log.Warningf("keyspace %v already exists", keyspace) } else { rec.RecordError(fmt.Errorf("CreateKeyspace(%v): %v", keyspace, err)) } } }(keyspace) } wg.Wait() if rec.HasErrors() { log.Fatalf("copyKeyspaces failed: %v", rec.Error()) } }
// CheckKeyspaceLock checks we can take a keyspace lock as expected. func CheckKeyspaceLock(ctx context.Context, t *testing.T, ts topo.Server) { if err := ts.CreateKeyspace(ctx, "test_keyspace", &pb.Keyspace{}); err != nil { t.Fatalf("CreateKeyspace: %v", err) } checkKeyspaceLockTimeout(ctx, t, ts) checkKeyspaceLockMissing(ctx, t, ts) checkKeyspaceLockUnblocks(ctx, t, ts) }
func CheckShardLock(t *testing.T, ts topo.Server) { if err := ts.CreateKeyspace("test_keyspace", &topo.Keyspace{}); err != nil { t.Fatalf("CreateKeyspace: %v", err) } if err := topo.CreateShard(ts, "test_keyspace", "10-20"); err != nil { t.Fatalf("CreateShard: %v", err) } interrupted := make(chan struct{}, 1) lockPath, err := ts.LockShardForAction("test_keyspace", "10-20", "fake-content", 5*time.Second, interrupted) if err != nil { t.Fatalf("LockShardForAction: %v", err) } // test we can't take the lock again if _, err := ts.LockShardForAction("test_keyspace", "10-20", "unused-fake-content", time.Second/2, interrupted); err != topo.ErrTimeout { t.Errorf("LockShardForAction(again): %v", err) } // test we can interrupt taking the lock go func() { time.Sleep(time.Second / 2) close(interrupted) }() if _, err := ts.LockShardForAction("test_keyspace", "10-20", "unused-fake-content", 5*time.Second, interrupted); err != topo.ErrInterrupted { t.Errorf("LockShardForAction(interrupted): %v", err) } if err := ts.UnlockShardForAction("test_keyspace", "10-20", lockPath, "fake-results"); err != nil { t.Errorf("UnlockShardForAction(): %v", err) } // test we can't unlock again if err := ts.UnlockShardForAction("test_keyspace", "10-20", lockPath, "fake-results"); err == nil { t.Error("UnlockShardForAction(again) worked") } // test we can't lock a non-existing shard interrupted = make(chan struct{}, 1) if _, err := ts.LockShardForAction("test_keyspace", "20-30", "fake-content", 5*time.Second, interrupted); err == nil { t.Fatalf("LockShardForAction(test_keyspace/20-30) worked for non-existing shard") } }
func CheckKeyspace(t *testing.T, ts topo.Server) { keyspaces, err := ts.GetKeyspaces() if err != nil { t.Errorf("GetKeyspaces(empty): %v", err) } if len(keyspaces) != 0 { t.Errorf("len(GetKeyspaces()) != 0: %v", keyspaces) } if err := ts.CreateKeyspace("test_keyspace"); err != nil { t.Errorf("CreateKeyspace: %v", err) } if err := ts.CreateKeyspace("test_keyspace"); err != topo.ErrNodeExists { t.Errorf("CreateKeyspace(again) is not ErrNodeExists: %v", err) } keyspaces, err = ts.GetKeyspaces() if err != nil { t.Errorf("GetKeyspaces: %v", err) } if len(keyspaces) != 1 || keyspaces[0] != "test_keyspace" { t.Errorf("GetKeyspaces: want %v, got %v", []string{"test_keyspace"}, keyspaces) } if err := ts.CreateKeyspace("test_keyspace2"); err != nil { t.Errorf("CreateKeyspace: %v", err) } keyspaces, err = ts.GetKeyspaces() if err != nil { t.Errorf("GetKeyspaces: %v", err) } if len(keyspaces) != 2 || keyspaces[0] != "test_keyspace" || keyspaces[1] != "test_keyspace2" { t.Errorf("GetKeyspaces: want %v, got %v", []string{"test_keyspace", "test_keyspace2"}, keyspaces) } }
// initTabletMap creates the action agents and associated data structures // for all tablets func initTabletMap(ts topo.Server, topology string, mysqld mysqlctl.MysqlDaemon, dbcfgs dbconfigs.DBConfigs, mycnf *mysqlctl.Mycnf) { tabletMap = make(map[uint32]*tablet) ctx := context.Background() // disable publishing of stats from query service flag.Lookup("queryserver-config-enable-publish-stats").Value.Set("false") var uid uint32 = 1 keyspaceMap := make(map[string]bool) for _, entry := range strings.Split(topology, ",") { slash := strings.IndexByte(entry, '/') column := strings.IndexByte(entry, ':') if slash == -1 || column == -1 { log.Fatalf("invalid topology entry: %v", entry) } keyspace := entry[:slash] shard := entry[slash+1 : column] dbname := entry[column+1:] dbcfgs.App.DbName = dbname // create the keyspace if necessary, so we can set the // ShardingColumnName and ShardingColumnType if _, ok := keyspaceMap[keyspace]; !ok { // only set for sharding key info for sharded keyspaces scn := "" sct := topodatapb.KeyspaceIdType_UNSET if shard != "0" { var err error sct, err = key.ParseKeyspaceIDType(*shardingColumnType) if err != nil { log.Fatalf("parseKeyspaceIDType(%v) failed: %v", *shardingColumnType, err) } scn = *shardingColumnName } if err := ts.CreateKeyspace(ctx, keyspace, &topodatapb.Keyspace{ ShardingColumnName: scn, ShardingColumnType: sct, }); err != nil { log.Fatalf("CreateKeyspace(%v) failed: %v", keyspace, err) } keyspaceMap[keyspace] = true } // create the master alias := &topodatapb.TabletAlias{ Cell: cell, Uid: uid, } log.Infof("Creating master tablet %v for %v/%v", topoproto.TabletAliasString(alias), keyspace, shard) flag.Lookup("debug-url-prefix").Value.Set(fmt.Sprintf("/debug-%d", uid)) masterController := tabletserver.NewServer() masterAgent := tabletmanager.NewComboActionAgent(ctx, ts, alias, int32(8000+uid), int32(9000+uid), masterController, dbcfgs, mysqld, keyspace, shard, dbname, "replica") if err := masterAgent.TabletExternallyReparented(ctx, ""); err != nil { log.Fatalf("TabletExternallyReparented failed on master: %v", err) } tabletMap[uid] = &tablet{ keyspace: keyspace, shard: shard, tabletType: topodatapb.TabletType_MASTER, dbname: dbname, qsc: masterController, agent: masterAgent, } uid++ // create a replica slave alias = &topodatapb.TabletAlias{ Cell: cell, Uid: uid, } log.Infof("Creating replica tablet %v for %v/%v", topoproto.TabletAliasString(alias), keyspace, shard) flag.Lookup("debug-url-prefix").Value.Set(fmt.Sprintf("/debug-%d", uid)) replicaController := tabletserver.NewServer() tabletMap[uid] = &tablet{ keyspace: keyspace, shard: shard, tabletType: topodatapb.TabletType_REPLICA, dbname: dbname, qsc: replicaController, agent: tabletmanager.NewComboActionAgent(ctx, ts, alias, int32(8000+uid), int32(9000+uid), replicaController, dbcfgs, mysqld, keyspace, shard, dbname, "replica"), } uid++ // create a rdonly slave alias = &topodatapb.TabletAlias{ Cell: cell, Uid: uid, } log.Infof("Creating rdonly tablet %v for %v/%v", topoproto.TabletAliasString(alias), keyspace, shard) flag.Lookup("debug-url-prefix").Value.Set(fmt.Sprintf("/debug-%d", uid)) rdonlyController := tabletserver.NewServer() tabletMap[uid] = &tablet{ keyspace: keyspace, shard: shard, tabletType: topodatapb.TabletType_RDONLY, dbname: dbname, qsc: rdonlyController, agent: tabletmanager.NewComboActionAgent(ctx, ts, alias, int32(8000+uid), int32(9000+uid), rdonlyController, dbcfgs, mysqld, keyspace, shard, dbname, "rdonly"), } uid++ } // Rebuild the SrvKeyspace objects, we we can support range-based // sharding queries. wr := wrangler.New(logutil.NewConsoleLogger(), ts, nil) for keyspace := range keyspaceMap { if err := wr.RebuildKeyspaceGraph(ctx, keyspace, nil, true); err != nil { log.Fatalf("cannot rebuild %v: %v", keyspace, err) } } // Register the tablet dialer for tablet server tabletconn.RegisterDialer("internal", dialer) *tabletconn.TabletProtocol = "internal" // Register the tablet manager client factory for tablet manager tmclient.RegisterTabletManagerClientFactory("internal", func() tmclient.TabletManagerClient { return &internalTabletManagerClient{} }) *tmclient.TabletManagerProtocol = "internal" }
func CheckShard(t *testing.T, ts topo.Server) { if err := ts.CreateKeyspace("test_keyspace", &topo.Keyspace{}); err != nil { t.Fatalf("CreateKeyspace: %v", err) } if err := topo.CreateShard(ts, "test_keyspace", "b0-c0"); err != nil { t.Fatalf("CreateShard: %v", err) } if err := topo.CreateShard(ts, "test_keyspace", "b0-c0"); err != topo.ErrNodeExists { t.Errorf("CreateShard called second time, got: %v", err) } if _, err := ts.GetShard("test_keyspace", "666"); err != topo.ErrNoNode { t.Errorf("GetShard(666): %v", err) } shardInfo, err := ts.GetShard("test_keyspace", "b0-c0") if err != nil { t.Errorf("GetShard: %v", err) } if want := newKeyRange("b0-c0"); shardInfo.KeyRange != want { t.Errorf("shardInfo.KeyRange: want %v, got %v", want, shardInfo.KeyRange) } master := topo.TabletAlias{Cell: "ny", Uid: 1} shardInfo.MasterAlias = master shardInfo.KeyRange = newKeyRange("b0-c0") shardInfo.ServedTypes = []topo.TabletType{topo.TYPE_MASTER, topo.TYPE_REPLICA, topo.TYPE_RDONLY} shardInfo.SourceShards = []topo.SourceShard{ topo.SourceShard{ Uid: 1, Keyspace: "source_ks", Shard: "b8-c0", KeyRange: newKeyRange("b8-c0"), Tables: []string{"table1", "table2"}, }, } if err := topo.UpdateShard(ts, shardInfo); err != nil { t.Errorf("UpdateShard: %v", err) } shardInfo, err = ts.GetShard("test_keyspace", "b0-c0") if err != nil { t.Errorf("GetShard: %v", err) } if shardInfo.MasterAlias != master { t.Errorf("after UpdateShard: shardInfo.MasterAlias got %v", shardInfo.MasterAlias) } if shardInfo.KeyRange != newKeyRange("b0-c0") { t.Errorf("after UpdateShard: shardInfo.KeyRange got %v", shardInfo.KeyRange) } if len(shardInfo.ServedTypes) != 3 || shardInfo.ServedTypes[0] != topo.TYPE_MASTER || shardInfo.ServedTypes[1] != topo.TYPE_REPLICA || shardInfo.ServedTypes[2] != topo.TYPE_RDONLY { t.Errorf("after UpdateShard: shardInfo.ServedTypes got %v", shardInfo.ServedTypes) } if len(shardInfo.SourceShards) != 1 || shardInfo.SourceShards[0].Uid != 1 || shardInfo.SourceShards[0].Keyspace != "source_ks" || shardInfo.SourceShards[0].Shard != "b8-c0" || shardInfo.SourceShards[0].KeyRange != newKeyRange("b8-c0") || len(shardInfo.SourceShards[0].Tables) != 2 || shardInfo.SourceShards[0].Tables[0] != "table1" || shardInfo.SourceShards[0].Tables[1] != "table2" { t.Errorf("after UpdateShard: shardInfo.SourceShards got %v", shardInfo.SourceShards) } shards, err := ts.GetShardNames("test_keyspace") if err != nil { t.Errorf("GetShardNames: %v", err) } if len(shards) != 1 || shards[0] != "b0-c0" { t.Errorf(`GetShardNames: want [ "b0-c0" ], got %v`, shards) } if _, err := ts.GetShardNames("test_keyspace666"); err != topo.ErrNoNode { t.Errorf("GetShardNames(666): %v", err) } }
// initTabletMap creates the action agents and associated data structures // for all tablets, based on the vttest proto parameter. func initTabletMap(ts topo.Server, topoProto string, mysqld mysqlctl.MysqlDaemon, dbcfgs dbconfigs.DBConfigs, schemaDir string, mycnf *mysqlctl.Mycnf) error { // parse the input topology tpb := &vttestpb.VTTestTopology{} if err := proto.UnmarshalText(topoProto, tpb); err != nil { return fmt.Errorf("cannot parse topology: %v", err) } tabletMap = make(map[uint32]*tablet) ctx := context.Background() // disable publishing of stats from query service flag.Set("queryserver-config-enable-publish-stats", "false") // iterate through the keyspaces wr := wrangler.New(logutil.NewConsoleLogger(), ts, nil) var uid uint32 = 1 for _, kpb := range tpb.Keyspaces { keyspace := kpb.Name // First parse the ShardingColumnType. // Note if it's empty, we will return 'UNSET'. sct, err := key.ParseKeyspaceIDType(kpb.ShardingColumnType) if err != nil { return fmt.Errorf("parseKeyspaceIDType(%v) failed: %v", kpb.ShardingColumnType, err) } if kpb.ServedFrom != "" { // if we have a redirect, create a completely redirected // keyspace and no tablet if err := ts.CreateKeyspace(ctx, keyspace, &topodatapb.Keyspace{ ShardingColumnName: kpb.ShardingColumnName, ShardingColumnType: sct, ServedFroms: []*topodatapb.Keyspace_ServedFrom{ { TabletType: topodatapb.TabletType_MASTER, Keyspace: kpb.ServedFrom, }, { TabletType: topodatapb.TabletType_REPLICA, Keyspace: kpb.ServedFrom, }, { TabletType: topodatapb.TabletType_RDONLY, Keyspace: kpb.ServedFrom, }, }, }); err != nil { return fmt.Errorf("CreateKeyspace(%v) failed: %v", keyspace, err) } } else { // create a regular keyspace if err := ts.CreateKeyspace(ctx, keyspace, &topodatapb.Keyspace{ ShardingColumnName: kpb.ShardingColumnName, ShardingColumnType: sct, }); err != nil { return fmt.Errorf("CreateKeyspace(%v) failed: %v", keyspace, err) } // iterate through the shards for _, spb := range kpb.Shards { shard := spb.Name dbname := spb.DbNameOverride if dbname == "" { dbname = fmt.Sprintf("vt_%v_%v", keyspace, shard) } dbcfgs.App.DbName = dbname // create the master if err := createTablet(ctx, ts, cell, uid, keyspace, shard, dbname, topodatapb.TabletType_MASTER, mysqld, dbcfgs); err != nil { return err } uid++ // create a replica slave if err := createTablet(ctx, ts, cell, uid, keyspace, shard, dbname, topodatapb.TabletType_REPLICA, mysqld, dbcfgs); err != nil { return err } uid++ // create a rdonly slave if err := createTablet(ctx, ts, cell, uid, keyspace, shard, dbname, topodatapb.TabletType_RDONLY, mysqld, dbcfgs); err != nil { return err } uid++ } } // vschema for the keyspace if schemaDir != "" { f := path.Join(schemaDir, keyspace, "vschema.json") if _, err := os.Stat(f); err == nil { // load the vschema formal, err := vindexes.LoadFormalKeyspace(f) if err != nil { return fmt.Errorf("cannot load vschema file %v for keyspace %v: %v", f, keyspace, err) } if err := ts.SaveVSchema(ctx, keyspace, formal); err != nil { return fmt.Errorf("SaveVSchema(%v) failed: %v", keyspace, err) } } else { log.Infof("File %v doesn't exist, skipping vschema for keyspace %v", f, keyspace) } } // Rebuild the SrvKeyspace object, so we can support // range-based sharding queries, and export the redirects. if err := wr.RebuildKeyspaceGraph(ctx, keyspace, nil); err != nil { return fmt.Errorf("cannot rebuild %v: %v", keyspace, err) } } // Rebuild the SrvVSchema object if err := topotools.RebuildVSchema(ctx, wr.Logger(), ts, []string{cell}); err != nil { return fmt.Errorf("RebuildVSchemaGraph failed: %v", err) } // Register the tablet dialer for tablet server tabletconn.RegisterDialer("internal", dialer) *tabletconn.TabletProtocol = "internal" // Register the tablet manager client factory for tablet manager tmclient.RegisterTabletManagerClientFactory("internal", func() tmclient.TabletManagerClient { return &internalTabletManagerClient{} }) *tmclient.TabletManagerProtocol = "internal" // run healthcheck on all vttablets tmc := tmclient.NewTabletManagerClient() for _, tablet := range tabletMap { tabletInfo, err := ts.GetTablet(ctx, tablet.agent.TabletAlias) if err != nil { return fmt.Errorf("cannot find tablet: %+v", tablet.agent.TabletAlias) } tmc.RunHealthCheck(ctx, tabletInfo.Tablet) } return nil }
func CheckKeyspace(t *testing.T, ts topo.Server) { keyspaces, err := ts.GetKeyspaces() if err != nil { t.Errorf("GetKeyspaces(empty): %v", err) } if len(keyspaces) != 0 { t.Errorf("len(GetKeyspaces()) != 0: %v", keyspaces) } if err := ts.CreateKeyspace("test_keyspace", &topo.Keyspace{}); err != nil { t.Errorf("CreateKeyspace: %v", err) } if err := ts.CreateKeyspace("test_keyspace", &topo.Keyspace{}); err != topo.ErrNodeExists { t.Errorf("CreateKeyspace(again) is not ErrNodeExists: %v", err) } keyspaces, err = ts.GetKeyspaces() if err != nil { t.Errorf("GetKeyspaces: %v", err) } if len(keyspaces) != 1 || keyspaces[0] != "test_keyspace" { t.Errorf("GetKeyspaces: want %v, got %v", []string{"test_keyspace"}, keyspaces) } if err := ts.CreateKeyspace("test_keyspace2", &topo.Keyspace{ ShardingColumnName: "user_id", ShardingColumnType: key.KIT_UINT64, ServedFrom: map[topo.TabletType]string{ topo.TYPE_MASTER: "test_keyspace3", }, }); err != nil { t.Errorf("CreateKeyspace: %v", err) } keyspaces, err = ts.GetKeyspaces() if err != nil { t.Errorf("GetKeyspaces: %v", err) } if len(keyspaces) != 2 || keyspaces[0] != "test_keyspace" || keyspaces[1] != "test_keyspace2" { t.Errorf("GetKeyspaces: want %v, got %v", []string{"test_keyspace", "test_keyspace2"}, keyspaces) } ki, err := ts.GetKeyspace("test_keyspace2") if err != nil { t.Fatalf("GetKeyspace: %v", err) } if ki.ShardingColumnName != "user_id" || ki.ShardingColumnType != key.KIT_UINT64 || ki.ServedFrom[topo.TYPE_MASTER] != "test_keyspace3" { t.Errorf("GetKeyspace: unexpected keyspace, got %v", *ki) } ki.ShardingColumnName = "other_id" ki.ShardingColumnType = key.KIT_BYTES delete(ki.ServedFrom, topo.TYPE_MASTER) ki.ServedFrom[topo.TYPE_REPLICA] = "test_keyspace4" err = ts.UpdateKeyspace(ki) if err != nil { t.Fatalf("UpdateKeyspace: %v", err) } ki, err = ts.GetKeyspace("test_keyspace2") if err != nil { t.Fatalf("GetKeyspace: %v", err) } if ki.ShardingColumnName != "other_id" || ki.ShardingColumnType != key.KIT_BYTES || ki.ServedFrom[topo.TYPE_REPLICA] != "test_keyspace4" { t.Errorf("GetKeyspace: unexpected keyspace, got %v", *ki) } }
// CheckKeyspace tests the keyspace part of the API func CheckKeyspace(ctx context.Context, t *testing.T, ts topo.Server) { keyspaces, err := ts.GetKeyspaces(ctx) if err != nil { t.Errorf("GetKeyspaces(empty): %v", err) } if len(keyspaces) != 0 { t.Errorf("len(GetKeyspaces()) != 0: %v", keyspaces) } if err := ts.CreateKeyspace(ctx, "test_keyspace", &pb.Keyspace{}); err != nil { t.Errorf("CreateKeyspace: %v", err) } if err := ts.CreateKeyspace(ctx, "test_keyspace", &pb.Keyspace{}); err != topo.ErrNodeExists { t.Errorf("CreateKeyspace(again) is not ErrNodeExists: %v", err) } // Delete and re-create. if err := ts.DeleteKeyspace(ctx, "test_keyspace"); err != nil { t.Errorf("DeleteKeyspace: %v", err) } if err := ts.CreateKeyspace(ctx, "test_keyspace", &pb.Keyspace{}); err != nil { t.Errorf("CreateKeyspace: %v", err) } keyspaces, err = ts.GetKeyspaces(ctx) if err != nil { t.Errorf("GetKeyspaces: %v", err) } if len(keyspaces) != 1 || keyspaces[0] != "test_keyspace" { t.Errorf("GetKeyspaces: want %v, got %v", []string{"test_keyspace"}, keyspaces) } k := &pb.Keyspace{ ShardingColumnName: "user_id", ShardingColumnType: pb.KeyspaceIdType_UINT64, ServedFroms: []*pb.Keyspace_ServedFrom{ &pb.Keyspace_ServedFrom{ TabletType: pb.TabletType_REPLICA, Cells: []string{"c1", "c2"}, Keyspace: "test_keyspace3", }, &pb.Keyspace_ServedFrom{ TabletType: pb.TabletType_MASTER, Cells: nil, Keyspace: "test_keyspace3", }, }, SplitShardCount: 64, } if err := ts.CreateKeyspace(ctx, "test_keyspace2", k); err != nil { t.Errorf("CreateKeyspace: %v", err) } keyspaces, err = ts.GetKeyspaces(ctx) if err != nil { t.Errorf("GetKeyspaces: %v", err) } if len(keyspaces) != 2 || keyspaces[0] != "test_keyspace" || keyspaces[1] != "test_keyspace2" { t.Errorf("GetKeyspaces: want %v, got %v", []string{"test_keyspace", "test_keyspace2"}, keyspaces) } // Call delete shards and make sure the keyspace still exists. if err := ts.DeleteKeyspaceShards(ctx, "test_keyspace2"); err != nil { t.Errorf("DeleteKeyspaceShards: %v", err) } ki, err := ts.GetKeyspace(ctx, "test_keyspace2") if err != nil { t.Fatalf("GetKeyspace: %v", err) } if !reflect.DeepEqual(ki.Keyspace, k) { t.Fatalf("returned keyspace doesn't match: got %v expected %v", ki.Keyspace, k) } ki.ShardingColumnName = "other_id" ki.ShardingColumnType = pb.KeyspaceIdType_BYTES var newServedFroms []*pb.Keyspace_ServedFrom for _, ksf := range ki.ServedFroms { if ksf.TabletType == pb.TabletType_MASTER { continue } if ksf.TabletType == pb.TabletType_REPLICA { ksf.Keyspace = "test_keyspace4" } newServedFroms = append(newServedFroms, ksf) } ki.ServedFroms = newServedFroms err = topo.UpdateKeyspace(ctx, ts, ki) if err != nil { t.Fatalf("UpdateKeyspace: %v", err) } ki, err = ts.GetKeyspace(ctx, "test_keyspace2") if err != nil { t.Fatalf("GetKeyspace: %v", err) } if ki.ShardingColumnName != "other_id" || ki.ShardingColumnType != pb.KeyspaceIdType_BYTES || ki.GetServedFrom(pb.TabletType_REPLICA).Keyspace != "test_keyspace4" { t.Errorf("GetKeyspace: unexpected keyspace, got %v", *ki) } }
// CheckKeyspace tests the keyspace part of the API func CheckKeyspace(ctx context.Context, t *testing.T, ts topo.Server) { keyspaces, err := ts.GetKeyspaces(ctx) if err != nil { t.Errorf("GetKeyspaces(empty): %v", err) } if len(keyspaces) != 0 { t.Errorf("len(GetKeyspaces()) != 0: %v", keyspaces) } if err := ts.CreateKeyspace(ctx, "test_keyspace", &topo.Keyspace{}); err != nil { t.Errorf("CreateKeyspace: %v", err) } if err := ts.CreateKeyspace(ctx, "test_keyspace", &topo.Keyspace{}); err != topo.ErrNodeExists { t.Errorf("CreateKeyspace(again) is not ErrNodeExists: %v", err) } // Delete and re-create. if err := ts.DeleteKeyspace(ctx, "test_keyspace"); err != nil { t.Errorf("DeleteKeyspace: %v", err) } if err := ts.CreateKeyspace(ctx, "test_keyspace", &topo.Keyspace{}); err != nil { t.Errorf("CreateKeyspace: %v", err) } keyspaces, err = ts.GetKeyspaces(ctx) if err != nil { t.Errorf("GetKeyspaces: %v", err) } if len(keyspaces) != 1 || keyspaces[0] != "test_keyspace" { t.Errorf("GetKeyspaces: want %v, got %v", []string{"test_keyspace"}, keyspaces) } k := &topo.Keyspace{ ShardingColumnName: "user_id", ShardingColumnType: key.KIT_UINT64, ServedFromMap: map[topo.TabletType]*topo.KeyspaceServedFrom{ topo.TYPE_REPLICA: &topo.KeyspaceServedFrom{ Cells: []string{"c1", "c2"}, Keyspace: "test_keyspace3", }, topo.TYPE_MASTER: &topo.KeyspaceServedFrom{ Cells: nil, Keyspace: "test_keyspace3", }, }, SplitShardCount: 64, } if err := ts.CreateKeyspace(ctx, "test_keyspace2", k); err != nil { t.Errorf("CreateKeyspace: %v", err) } keyspaces, err = ts.GetKeyspaces(ctx) if err != nil { t.Errorf("GetKeyspaces: %v", err) } if len(keyspaces) != 2 || keyspaces[0] != "test_keyspace" || keyspaces[1] != "test_keyspace2" { t.Errorf("GetKeyspaces: want %v, got %v", []string{"test_keyspace", "test_keyspace2"}, keyspaces) } // Call delete shards and make sure the keyspace still exists. if err := ts.DeleteKeyspaceShards(ctx, "test_keyspace2"); err != nil { t.Errorf("DeleteKeyspaceShards: %v", err) } ki, err := ts.GetKeyspace(ctx, "test_keyspace2") if err != nil { t.Fatalf("GetKeyspace: %v", err) } if !reflect.DeepEqual(ki.Keyspace, k) { t.Fatalf("returned keyspace doesn't match: got %v expected %v", ki.Keyspace, k) } ki.ShardingColumnName = "other_id" ki.ShardingColumnType = key.KIT_BYTES delete(ki.ServedFromMap, topo.TYPE_MASTER) ki.ServedFromMap[topo.TYPE_REPLICA].Keyspace = "test_keyspace4" err = topo.UpdateKeyspace(ctx, ts, ki) if err != nil { t.Fatalf("UpdateKeyspace: %v", err) } ki, err = ts.GetKeyspace(ctx, "test_keyspace2") if err != nil { t.Fatalf("GetKeyspace: %v", err) } if ki.ShardingColumnName != "other_id" || ki.ShardingColumnType != key.KIT_BYTES || ki.ServedFromMap[topo.TYPE_REPLICA].Keyspace != "test_keyspace4" { t.Errorf("GetKeyspace: unexpected keyspace, got %v", *ki) } }
func CheckReplicationPaths(t *testing.T, ts topo.Server) { if _, err := ts.GetReplicationPaths("test_keyspace", "-10", "/"); err != topo.ErrNoNode { t.Errorf("GetReplicationPaths(bad shard): %v", err) } if err := ts.CreateKeyspace("test_keyspace"); err != nil { t.Errorf("CreateKeyspace: %v", err) } if err := topo.CreateShard(ts, "test_keyspace", "-10"); err != nil { t.Errorf("CreateShard: %v", err) } if paths, err := ts.GetReplicationPaths("test_keyspace", "-10", "/"); err != nil || len(paths) != 0 { t.Errorf("GetReplicationPaths(empty shard): %v, %v", err, paths) } if _, err := ts.GetReplicationPaths("test_keyspace", "-10", "/666"); err != topo.ErrNoNode { t.Errorf("GetReplicationPaths(non-existing path): %v", err) } if err := ts.CreateReplicationPath("test_keyspace", "-10", "/cell-0000000001"); err != nil { t.Errorf("CreateReplicationPath: %v", err) } if err := ts.CreateReplicationPath("test_keyspace", "-10", "/cell-0000000001"); err != topo.ErrNodeExists { t.Errorf("CreateReplicationPath(again): %v", err) } if paths, err := ts.GetReplicationPaths("test_keyspace", "-10", "/"); err != nil || len(paths) != 1 || paths[0].String() != "cell-0000000001" { t.Errorf("GetReplicationPaths(root): %v, %v", err, paths) } if err := ts.CreateReplicationPath("test_keyspace", "-10", "/cell-0000000001/cell-0000000002"); err != nil { t.Errorf("CreateReplicationPath(2): %v", err) } if err := ts.CreateReplicationPath("test_keyspace", "-10", "/cell-0000000001/cell-0000000003"); err != nil { t.Errorf("CreateReplicationPath(3): %v", err) } if paths, err := ts.GetReplicationPaths("test_keyspace", "-10", "/cell-0000000001"); err != nil || len(paths) != 2 || paths[0].String() != "cell-0000000002" || paths[1].String() != "cell-0000000003" { t.Errorf("GetReplicationPaths(master): %v, %v", err, paths) } if err := ts.DeleteReplicationPath("test_keyspace", "-10", "/cell-0000000001"); err != topo.ErrNotEmpty { t.Errorf("DeleteReplicationPath(master with slaves): %v", err) } if err := ts.DeleteReplicationPath("test_keyspace", "-10", "/cell-0000000001/cell-0000000002"); err != nil { t.Errorf("DeleteReplicationPath(slave1): %v", err) } if paths, err := ts.GetReplicationPaths("test_keyspace", "-10", "/cell-0000000001"); err != nil || len(paths) != 1 || paths[0].String() != "cell-0000000003" { t.Errorf("GetReplicationPaths(master): %v, %v", err, paths) } if err := ts.DeleteReplicationPath("test_keyspace", "-10", "/cell-0000000001/cell-0000000003"); err != nil { t.Errorf("DeleteReplicationPath(slave2): %v", err) } if paths, err := ts.GetReplicationPaths("test_keyspace", "-10", "/cell-0000000001"); err != nil || len(paths) != 0 { t.Errorf("GetReplicationPaths(master): %v, %v", err, paths) } if err := ts.DeleteReplicationPath("test_keyspace", "-10", "/cell-0000000001"); err != nil { t.Errorf("DeleteReplicationPath(master): %v", err) } if paths, err := ts.GetReplicationPaths("test_keyspace", "-10", "/"); err != nil || len(paths) != 0 { t.Errorf("GetReplicationPaths(root): %v, %v", err, paths) } }
func CheckShard(t *testing.T, ts topo.Server) { if err := ts.CreateKeyspace("test_keyspace", &topo.Keyspace{}); err != nil { t.Fatalf("CreateKeyspace: %v", err) } if err := topo.CreateShard(ts, "test_keyspace", "b0-c0"); err != nil { t.Fatalf("CreateShard: %v", err) } if err := topo.CreateShard(ts, "test_keyspace", "b0-c0"); err != topo.ErrNodeExists { t.Errorf("CreateShard called second time, got: %v", err) } if _, err := ts.GetShard("test_keyspace", "666"); err != topo.ErrNoNode { t.Errorf("GetShard(666): %v", err) } shardInfo, err := ts.GetShard("test_keyspace", "b0-c0") if err != nil { t.Errorf("GetShard: %v", err) } if want := newKeyRange("b0-c0"); shardInfo.KeyRange != want { t.Errorf("shardInfo.KeyRange: want %v, got %v", want, shardInfo.KeyRange) } master := topo.TabletAlias{Cell: "ny", Uid: 1} shardInfo.MasterAlias = master shardInfo.KeyRange = newKeyRange("b0-c0") shardInfo.ServedTypes = []topo.TabletType{topo.TYPE_MASTER, topo.TYPE_REPLICA, topo.TYPE_RDONLY} shardInfo.SourceShards = []topo.SourceShard{ topo.SourceShard{ Uid: 1, Keyspace: "source_ks", Shard: "b8-c0", KeyRange: newKeyRange("b8-c0"), Tables: []string{"table1", "table2"}, }, } shardInfo.BlacklistedTablesMap = map[topo.TabletType][]string{ topo.TYPE_MASTER: []string{"black1", "black2"}, topo.TYPE_REPLICA: []string{"black3", "black4"}, } if err := topo.UpdateShard(ts, shardInfo); err != nil { t.Errorf("UpdateShard: %v", err) } updatedShardInfo, err := ts.GetShard("test_keyspace", "b0-c0") if err != nil { t.Fatalf("GetShard: %v", err) } if eq, err := shardEqual(shardInfo.Shard, updatedShardInfo.Shard); err != nil { t.Errorf("cannot compare shards: %v", err) } else if !eq { t.Errorf("put and got shards are not identical:\n%#v\n%#v", shardInfo.Shard, updatedShardInfo.Shard) } // test GetShardNames shards, err := ts.GetShardNames("test_keyspace") if err != nil { t.Errorf("GetShardNames: %v", err) } if len(shards) != 1 || shards[0] != "b0-c0" { t.Errorf(`GetShardNames: want [ "b0-c0" ], got %v`, shards) } if _, err := ts.GetShardNames("test_keyspace666"); err != topo.ErrNoNode { t.Errorf("GetShardNames(666): %v", err) } }
// CheckShard verifies the Shard operations work correctly func CheckShard(ctx context.Context, t *testing.T, ts topo.Server) { if err := ts.CreateKeyspace(ctx, "test_keyspace", &topo.Keyspace{}); err != nil { t.Fatalf("CreateKeyspace: %v", err) } if err := topo.CreateShard(ctx, ts, "test_keyspace", "b0-c0"); err != nil { t.Fatalf("CreateShard: %v", err) } if err := topo.CreateShard(ctx, ts, "test_keyspace", "b0-c0"); err != topo.ErrNodeExists { t.Errorf("CreateShard called second time, got: %v", err) } // Delete shard and see if we can re-create it. if err := ts.DeleteShard(ctx, "test_keyspace", "b0-c0"); err != nil { t.Fatalf("DeleteShard: %v", err) } if err := topo.CreateShard(ctx, ts, "test_keyspace", "b0-c0"); err != nil { t.Fatalf("CreateShard: %v", err) } // Delete ALL shards. if err := ts.DeleteKeyspaceShards(ctx, "test_keyspace"); err != nil { t.Fatalf("DeleteKeyspaceShards: %v", err) } if err := topo.CreateShard(ctx, ts, "test_keyspace", "b0-c0"); err != nil { t.Fatalf("CreateShard: %v", err) } if _, err := topo.GetShard(ctx, ts, "test_keyspace", "666"); err != topo.ErrNoNode { t.Errorf("GetShard(666): %v", err) } shardInfo, err := topo.GetShard(ctx, ts, "test_keyspace", "b0-c0") if err != nil { t.Errorf("GetShard: %v", err) } if want := newKeyRange("b0-c0"); shardInfo.KeyRange != want { t.Errorf("shardInfo.KeyRange: want %v, got %v", want, shardInfo.KeyRange) } master := topo.TabletAlias{Cell: "ny", Uid: 1} shardInfo.MasterAlias = master shardInfo.KeyRange = newKeyRange("b0-c0") shardInfo.ServedTypesMap = map[topo.TabletType]*topo.ShardServedType{ topo.TYPE_MASTER: &topo.ShardServedType{}, topo.TYPE_REPLICA: &topo.ShardServedType{Cells: []string{"c1"}}, topo.TYPE_RDONLY: &topo.ShardServedType{}, } shardInfo.SourceShards = []topo.SourceShard{ topo.SourceShard{ Uid: 1, Keyspace: "source_ks", Shard: "b8-c0", KeyRange: newKeyRange("b8-c0"), Tables: []string{"table1", "table2"}, }, } shardInfo.TabletControlMap = map[topo.TabletType]*topo.TabletControl{ topo.TYPE_MASTER: &topo.TabletControl{ Cells: []string{"c1", "c2"}, BlacklistedTables: []string{"black1", "black2"}, }, topo.TYPE_REPLICA: &topo.TabletControl{ DisableQueryService: true, }, } if err := topo.UpdateShard(ctx, ts, shardInfo); err != nil { t.Errorf("UpdateShard: %v", err) } other := topo.TabletAlias{Cell: "ny", Uid: 82873} _, err = topo.UpdateShardFields(ctx, ts, "test_keyspace", "b0-c0", func(shard *topo.Shard) error { shard.MasterAlias = other return nil }) if err != nil { t.Fatalf("UpdateShardFields error: %v", err) } si, err := topo.GetShard(ctx, ts, "test_keyspace", "b0-c0") if err != nil { t.Fatalf("GetShard: %v", err) } if si.MasterAlias != other { t.Fatalf("shard.MasterAlias = %v, want %v", si.MasterAlias, other) } _, err = topo.UpdateShardFields(ctx, ts, "test_keyspace", "b0-c0", func(shard *topo.Shard) error { shard.MasterAlias = master return nil }) if err != nil { t.Fatalf("UpdateShardFields error: %v", err) } updatedShardInfo, err := topo.GetShard(ctx, ts, "test_keyspace", "b0-c0") if err != nil { t.Fatalf("GetShard: %v", err) } if eq, err := shardEqual(shardInfo.Shard, updatedShardInfo.Shard); err != nil { t.Errorf("cannot compare shards: %v", err) } else if !eq { t.Errorf("put and got shards are not identical:\n%#v\n%#v", shardInfo.Shard, updatedShardInfo.Shard) } // test GetShardNames shards, err := ts.GetShardNames(ctx, "test_keyspace") if err != nil { t.Errorf("GetShardNames: %v", err) } if len(shards) != 1 || shards[0] != "b0-c0" { t.Errorf(`GetShardNames: want [ "b0-c0" ], got %v`, shards) } if _, err := ts.GetShardNames(ctx, "test_keyspace666"); err != topo.ErrNoNode { t.Errorf("GetShardNames(666): %v", err) } // test ValidateShard if err := ts.ValidateShard(ctx, "test_keyspace", "b0-c0"); err != nil { t.Errorf("ValidateShard(test_keyspace, b0-c0) failed: %v", err) } }