package terra import ( "context" "encoding/hex" "fmt" "github.com/certusone/wormhole/node/pkg/p2p" gossipv1 "github.com/certusone/wormhole/node/pkg/proto/gossip/v1" "github.com/prometheus/client_golang/prometheus/promauto" "io/ioutil" "net/http" "time" "github.com/prometheus/client_golang/prometheus" eth_common "github.com/ethereum/go-ethereum/common" "github.com/certusone/wormhole/node/pkg/common" "github.com/certusone/wormhole/node/pkg/readiness" "github.com/certusone/wormhole/node/pkg/supervisor" "github.com/certusone/wormhole/node/pkg/vaa" "github.com/gorilla/websocket" "github.com/tidwall/gjson" "go.uber.org/zap" ) type ( // BridgeWatcher is responsible for looking over Terra blockchain and reporting new transactions to the bridge BridgeWatcher struct { urlWS string urlLCD string bridge string msgChan chan *common.MessagePublication setChan chan *common.GuardianSet } ) var ( terraConnectionErrors = promauto.NewCounterVec( prometheus.CounterOpts{ Name: "wormhole_terra_connection_errors_total", Help: "Total number of Terra connection errors", }, []string{"reason"}) terraMessagesConfirmed = promauto.NewCounter( prometheus.CounterOpts{ Name: "wormhole_terra_messages_confirmed_total", Help: "Total number of verified terra messages found", }) currentTerraHeight = promauto.NewGauge( prometheus.GaugeOpts{ Name: "wormhole_terra_current_height", Help: "Current terra slot height (at default commitment level, not the level used for observations)", }) queryLatency = promauto.NewHistogramVec( prometheus.HistogramOpts{ Name: "wormhole_terra_query_latency", Help: "Latency histogram for terra RPC calls", }, []string{"operation"}) ) type clientRequest struct { JSONRPC string `json:"jsonrpc"` // A String containing the name of the method to be invoked. Method string `json:"method"` // Object to pass as request parameter to the method. Params [1]string `json:"params"` // The request id. This can be of any type. It is used to match the // response with the request that it is replying to. ID uint64 `json:"id"` } // NewTerraBridgeWatcher creates a new terra bridge watcher func NewTerraBridgeWatcher(urlWS string, urlLCD string, bridge string, lockEvents chan *common.MessagePublication, setEvents chan *common.GuardianSet) *BridgeWatcher { return &BridgeWatcher{urlWS: urlWS, urlLCD: urlLCD, bridge: bridge, msgChan: lockEvents, setChan: setEvents} } // Run is the main Terra Bridge run cycle func (e *BridgeWatcher) Run(ctx context.Context) error { p2p.DefaultRegistry.SetNetworkStats(vaa.ChainIDTerra, &gossipv1.Heartbeat_Network{ BridgeAddress: e.bridge, }) errC := make(chan error) logger := supervisor.Logger(ctx) logger.Info("connecting to websocket", zap.String("url", e.urlWS)) c, _, err := websocket.DefaultDialer.DialContext(ctx, e.urlWS, nil) if err != nil { p2p.DefaultRegistry.AddErrorCount(vaa.ChainIDTerra, 1) terraConnectionErrors.WithLabelValues("websocket_dial_error").Inc() return fmt.Errorf("websocket dial failed: %w", err) } defer c.Close() // Subscribe to smart contract transactions params := [...]string{fmt.Sprintf("tm.event='Tx' AND execute_contract.contract_address='%s'", e.bridge)} command := &clientRequest{ JSONRPC: "2.0", Method: "subscribe", Params: params, ID: 1, } err = c.WriteJSON(command) if err != nil { p2p.DefaultRegistry.AddErrorCount(vaa.ChainIDTerra, 1) terraConnectionErrors.WithLabelValues("websocket_subscription_error").Inc() return fmt.Errorf("websocket subscription failed: %w", err) } // Wait for the success response _, _, err = c.ReadMessage() if err != nil { p2p.DefaultRegistry.AddErrorCount(vaa.ChainIDTerra, 1) terraConnectionErrors.WithLabelValues("event_subscription_error").Inc() return fmt.Errorf("event subscription failed: %w", err) } logger.Info("subscribed to new transaction events") readiness.SetReady(common.ReadinessTerraSyncing) go func() { t := time.NewTicker(5 * time.Second) client := &http.Client{ Timeout: time.Second * 5, } for { <-t.C // Query and report height and set currentTerraHeight resp, err := client.Get(fmt.Sprintf("%s/blocks/latest", e.urlLCD)) if err != nil { logger.Error("query latest block response error", zap.Error(err)) continue } blocksBody, err := ioutil.ReadAll(resp.Body) if err != nil { logger.Error("query guardian set error", zap.Error(err)) errC <- err resp.Body.Close() continue } resp.Body.Close() blockJSON := string(blocksBody) latestBlock := gjson.Get(blockJSON, "block.header.height") logger.Info("current Terra height", zap.Int64("block", latestBlock.Int())) currentTerraHeight.Set(float64(latestBlock.Int())) p2p.DefaultRegistry.SetNetworkStats(vaa.ChainIDTerra, &gossipv1.Heartbeat_Network{ Height: latestBlock.Int(), BridgeAddress: e.bridge, }) } }() go func() { defer close(errC) for { _, message, err := c.ReadMessage() if err != nil { p2p.DefaultRegistry.AddErrorCount(vaa.ChainIDTerra, 1) terraConnectionErrors.WithLabelValues("channel_read_error").Inc() logger.Error("error reading channel", zap.Error(err)) errC <- err return } // Received a message from the blockchain json := string(message) payload := gjson.Get(json, "result.events.from_contract\\.message\\.message.0") sender := gjson.Get(json, "result.events.from_contract\\.message\\.sender.0") chainId := gjson.Get(json, "result.events.from_contract\\.message\\.chain_id.0") nonce := gjson.Get(json, "result.events.from_contract\\.message\\.nonce.0") sequence := gjson.Get(json, "result.events.from_contract\\.message\\.sequence.0") blockTime := gjson.Get(json, "result.events.from_contract\\.message\\.block_time.0") txHash := gjson.Get(json, "result.events.tx\\.hash.0") if payload.Exists() && sender.Exists() && chainId.Exists() && nonce.Exists() && sequence.Exists() && blockTime.Exists() && txHash.Exists() { logger.Info("new message detected on terra", zap.String("chainId", chainId.String()), zap.String("txHash", txHash.String()), zap.String("sender", sender.String()), zap.String("nonce", nonce.String()), zap.String("sequence", sequence.String()), zap.String("blockTime", blockTime.String()), ) senderAddress, err := StringToAddress(sender.String()) if err != nil { logger.Error("cannot decode emitter hex", zap.String("value", sender.String())) continue } txHashValue, err := StringToHash(txHash.String()) if err != nil { logger.Error("cannot decode tx hash hex", zap.String("value", txHash.String())) continue } payloadValue, err := hex.DecodeString(payload.String()) if err != nil { logger.Error("cannot decode payload", zap.String("value", payload.String())) continue } messagePublication := &common.MessagePublication{ TxHash: txHashValue, Timestamp: time.Unix(blockTime.Int(), 0), Nonce: uint32(nonce.Uint()), Sequence: sequence.Uint(), EmitterChain: vaa.ChainIDTerra, EmitterAddress: senderAddress, Payload: payloadValue, ConsistencyLevel: 0, // Instant finality } e.msgChan <- messagePublication terraMessagesConfirmed.Inc() } client := &http.Client{ Timeout: time.Second * 15, } // Query and report guardian set status requestURL := fmt.Sprintf("%s/wasm/contracts/%s/store?query_msg={\"guardian_set_info\":{}}", e.urlLCD, e.bridge) req, err := http.NewRequestWithContext(ctx, http.MethodGet, requestURL, nil) if err != nil { p2p.DefaultRegistry.AddErrorCount(vaa.ChainIDTerra, 1) terraConnectionErrors.WithLabelValues("guardian_set_req_error").Inc() logger.Error("query guardian set request error", zap.Error(err)) errC <- err return } msm := time.Now() resp, err := client.Do(req) if err != nil { p2p.DefaultRegistry.AddErrorCount(vaa.ChainIDTerra, 1) logger.Error("query guardian set response error", zap.Error(err)) errC <- err return } body, err := ioutil.ReadAll(resp.Body) queryLatency.WithLabelValues("guardian_set_info").Observe(time.Since(msm).Seconds()) if err != nil { p2p.DefaultRegistry.AddErrorCount(vaa.ChainIDTerra, 1) logger.Error("query guardian set error", zap.Error(err)) errC <- err resp.Body.Close() return } json = string(body) guardianSetIndex := gjson.Get(json, "result.guardian_set_index") addresses := gjson.Get(json, "result.addresses.#.bytes") logger.Debug("current guardian set on Terra", zap.Any("guardianSetIndex", guardianSetIndex), zap.Any("addresses", addresses)) resp.Body.Close() // We do not send guardian changes to the processor - ETH guardians are the source of truth. } }() select { case <-ctx.Done(): err := c.WriteMessage(websocket.CloseMessage, websocket.FormatCloseMessage(websocket.CloseNormalClosure, "")) if err != nil { logger.Error("error on closing socket ", zap.Error(err)) } return ctx.Err() case err := <-errC: return err } } // StringToAddress convert string into address func StringToAddress(value string) (vaa.Address, error) { var address vaa.Address res, err := hex.DecodeString(value) if err != nil { return address, err } copy(address[:], res) return address, nil } // StringToHash convert string into transaction hash func StringToHash(value string) (eth_common.Hash, error) { var hash eth_common.Hash res, err := hex.DecodeString(value) if err != nil { return hash, err } copy(hash[:], res) return hash, nil }