477 lines
13 KiB
Go
477 lines
13 KiB
Go
// Copyright (c) 2019-2020 The Zcash developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or https://www.opensource.org/licenses/mit-license.php .
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package common
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import (
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"encoding/hex"
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"encoding/json"
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"strconv"
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"strings"
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"time"
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"github.com/adityapk00/lightwalletd/parser"
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"github.com/adityapk00/lightwalletd/walletrpc"
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"github.com/pkg/errors"
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"github.com/sirupsen/logrus"
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)
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// 'make build' will overwrite this string with the output of git-describe (tag)
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var (
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Version = "v0.0.0.0-dev"
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GitCommit = ""
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Branch = ""
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BuildDate = ""
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BuildUser = ""
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)
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type Options struct {
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GRPCBindAddr string `json:"grpc_bind_address,omitempty"`
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GRPCLogging bool `json:"grpc_logging_insecure,omitempty"`
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HTTPBindAddr string `json:"http_bind_address,omitempty"`
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TLSCertPath string `json:"tls_cert_path,omitempty"`
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TLSKeyPath string `json:"tls_cert_key,omitempty"`
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LogLevel uint64 `json:"log_level,omitempty"`
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LogFile string `json:"log_file,omitempty"`
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ZcashConfPath string `json:"zcash_conf,omitempty"`
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RPCUser string `json:"rpcuser"`
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RPCPassword string `json:"rpcpassword"`
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RPCHost string `json:"rpchost"`
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RPCPort string `json:"rpcport"`
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NoTLSVeryInsecure bool `json:"no_tls_very_insecure,omitempty"`
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GenCertVeryInsecure bool `json:"gen_cert_very_insecure,omitempty"`
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Redownload bool `json:"redownload"`
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DataDir string `json:"data_dir"`
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PingEnable bool `json:"ping_enable"`
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Darkside bool `json:"darkside"`
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DarksideTimeout uint64 `json:"darkside_timeout"`
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}
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// RawRequest points to the function to send a an RPC request to zcashd;
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// in production, it points to btcsuite/btcd/rpcclient/rawrequest.go:RawRequest();
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// in unit tests it points to a function to mock RPCs to zcashd.
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var RawRequest func(method string, params []json.RawMessage) (json.RawMessage, error)
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// Sleep allows a request to time.Sleep() to be mocked for testing;
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// in production, it points to the standard library time.Sleep();
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// in unit tests it points to a mock function.
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var Sleep func(d time.Duration)
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// Log as a global variable simplifies logging
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var Log *logrus.Entry
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// Metrics as a global object to simplify things
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var Metrics *PrometheusMetrics
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// The following are JSON zcashd rpc requests and replies.
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type (
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// zcashd rpc "getblockchaininfo"
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Upgradeinfo struct {
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// unneeded fields can be omitted
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ActivationHeight int
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Status string // "active"
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}
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ConsensusInfo struct { // consensus branch IDs
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Nextblock string // example: "e9ff75a6" (canopy)
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Chaintip string // example: "e9ff75a6" (canopy)
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}
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ZcashdRpcReplyGetblockchaininfo struct {
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Chain string
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Upgrades map[string]Upgradeinfo
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Blocks int
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Consensus ConsensusInfo
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EstimatedHeight int
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}
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// zcashd rpc "getinfo"
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ZcashdRpcReplyGetinfo struct {
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Build string
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Subversion string
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}
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// zcashd rpc "getaddresstxids"
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ZcashdRpcRequestGetaddresstxids struct {
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Addresses []string `json:"addresses"`
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Start uint64 `json:"start"`
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End uint64 `json:"end"`
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}
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// zcashd rpc "z_gettreestate"
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ZcashdRpcReplyGettreestate struct {
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Height int
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Hash string
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Time uint32
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Sapling struct {
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Commitments struct {
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FinalState string
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}
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SkipHash string
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}
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}
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// zcashd rpc "getrawtransaction"
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ZcashdRpcReplyGetrawtransaction struct {
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Hex string
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Height int
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}
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// zcashd rpc "getaddressbalance"
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ZcashdRpcRequestGetaddressbalance struct {
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Addresses []string `json:"addresses"`
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}
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ZcashdRpcReplyGetaddressbalance struct {
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Balance int64
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}
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// zcashd rpc "getaddressutxos"
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ZcashdRpcRequestGetaddressutxos struct {
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Addresses []string `json:"addresses"`
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}
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ZcashdRpcReplyGetaddressutxos []struct {
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Address string
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Txid string
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OutputIndex int64
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Script string
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Satoshis uint64
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Height int
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}
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)
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// FirstRPC tests that we can successfully reach zcashd through the RPC
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// interface. The specific RPC used here is not important.
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func FirstRPC() {
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retryCount := 0
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for {
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result, rpcErr := RawRequest("getblockchaininfo", []json.RawMessage{})
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if rpcErr == nil {
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if retryCount > 0 {
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Log.Warn("getblockchaininfo RPC successful")
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}
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var getblockchaininfo ZcashdRpcReplyGetblockchaininfo
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err := json.Unmarshal(result, &getblockchaininfo)
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if err != nil {
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Log.Fatalf("error parsing JSON getblockchaininfo response: %v", err)
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}
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break
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}
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retryCount++
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if retryCount > 10 {
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Log.WithFields(logrus.Fields{
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"timeouts": retryCount,
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}).Fatal("unable to issue getblockchaininfo RPC call to zcashd node")
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}
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Log.WithFields(logrus.Fields{
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"error": rpcErr.Error(),
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"retry": retryCount,
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}).Warn("error with getblockchaininfo rpc, retrying...")
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Sleep(time.Duration(10+retryCount*5) * time.Second) // backoff
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}
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}
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func GetLightdInfo() (*walletrpc.LightdInfo, error) {
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result, rpcErr := RawRequest("getinfo", []json.RawMessage{})
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if rpcErr != nil {
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return nil, rpcErr
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}
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var getinfoReply ZcashdRpcReplyGetinfo
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err := json.Unmarshal(result, &getinfoReply)
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if err != nil {
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return nil, rpcErr
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}
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result, rpcErr = RawRequest("getblockchaininfo", []json.RawMessage{})
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if rpcErr != nil {
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return nil, rpcErr
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}
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var getblockchaininfoReply ZcashdRpcReplyGetblockchaininfo
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err = json.Unmarshal(result, &getblockchaininfoReply)
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if err != nil {
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return nil, rpcErr
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}
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// If the sapling consensus branch doesn't exist, it must be regtest
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var saplingHeight int
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if saplingJSON, ok := getblockchaininfoReply.Upgrades["76b809bb"]; ok { // Sapling ID
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saplingHeight = saplingJSON.ActivationHeight
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}
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vendor := "Zecwallet LightWalletD"
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if DarksideEnabled {
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vendor = "Zecwallet DarksideWalletD"
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}
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return &walletrpc.LightdInfo{
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Version: Version,
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Vendor: vendor,
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TaddrSupport: true,
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ChainName: getblockchaininfoReply.Chain,
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SaplingActivationHeight: uint64(saplingHeight),
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ConsensusBranchId: getblockchaininfoReply.Consensus.Chaintip,
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BlockHeight: uint64(getblockchaininfoReply.Blocks),
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GitCommit: GitCommit,
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Branch: Branch,
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BuildDate: BuildDate,
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BuildUser: BuildUser,
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EstimatedHeight: uint64(getblockchaininfoReply.EstimatedHeight),
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ZcashdBuild: getinfoReply.Build,
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ZcashdSubversion: getinfoReply.Subversion,
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}, nil
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}
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func getBestBlockHash() ([]byte, error) {
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result, rpcErr := RawRequest("getbestblockhash", []json.RawMessage{})
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if rpcErr != nil {
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return nil, rpcErr
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}
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var hash string
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err := json.Unmarshal(result, &hash)
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if err != nil {
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return nil, err
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}
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hashbytes, err := hex.DecodeString(hash)
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if err != nil {
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return nil, err
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}
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return parser.Reverse(hashbytes), nil
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}
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func getBlockFromRPC(height int) (*walletrpc.CompactBlock, error) {
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params := make([]json.RawMessage, 2)
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heightJSON, err := json.Marshal(strconv.Itoa(height))
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if err != nil {
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return nil, errors.Wrap(err, "error marshaling height")
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}
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params[0] = heightJSON
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params[1] = json.RawMessage("0") // non-verbose (raw hex)
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result, rpcErr := RawRequest("getblock", params)
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// For some reason, the error responses are not JSON
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if rpcErr != nil {
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// Check to see if we are requesting a height the zcashd doesn't have yet
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if (strings.Split(rpcErr.Error(), ":"))[0] == "-8" {
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return nil, nil
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}
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return nil, errors.Wrap(rpcErr, "error requesting block")
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}
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var blockDataHex string
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err = json.Unmarshal(result, &blockDataHex)
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if err != nil {
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return nil, errors.Wrap(err, "error reading JSON response")
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}
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blockData, err := hex.DecodeString(blockDataHex)
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if err != nil {
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return nil, errors.Wrap(err, "error decoding getblock output")
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}
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block := parser.NewBlock()
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rest, err := block.ParseFromSlice(blockData)
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if err != nil {
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return nil, errors.Wrap(err, "error parsing block")
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}
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if len(rest) != 0 {
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return nil, errors.New("received overlong message")
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}
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if block.GetHeight() != height {
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return nil, errors.New("received unexpected height block")
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}
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return block.ToCompact(), nil
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}
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var (
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ingestorRunning bool
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stopIngestorChan = make(chan struct{})
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)
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func startIngestor(c *BlockCache) {
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if !ingestorRunning {
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ingestorRunning = true
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go BlockIngestor(c, 0)
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}
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}
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func stopIngestor() {
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if ingestorRunning {
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ingestorRunning = false
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stopIngestorChan <- struct{}{}
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}
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}
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// BlockIngestor runs as a goroutine and polls zcashd for new blocks, adding them
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// to the cache. The repetition count, rep, is nonzero only for unit-testing.
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func BlockIngestor(c *BlockCache, rep int) {
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lastLog := time.Now()
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reorgCount := 0
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lastHeightLogged := 0
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retryCount := 0
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wait := true
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// Start listening for new blocks
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for i := 0; rep == 0 || i < rep; i++ {
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// stop if requested
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select {
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case <-stopIngestorChan:
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return
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default:
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}
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height := c.GetNextHeight()
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block, err := getBlockFromRPC(height)
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if err != nil {
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Log.WithFields(logrus.Fields{
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"height": height,
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"error": err,
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}).Warn("error zcashd getblock rpc")
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retryCount++
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if retryCount > 10 {
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Log.WithFields(logrus.Fields{
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"timeouts": retryCount,
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}).Fatal("unable to issue RPC call to zcashd node")
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}
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// Delay then retry the same height.
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c.Sync()
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Sleep(10 * time.Second)
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wait = true
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continue
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}
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retryCount = 0
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if block == nil {
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// No block at this height.
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if height == c.GetFirstHeight() {
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Log.Info("Waiting for zcashd height to reach Sapling activation height ",
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"(", c.GetFirstHeight(), ")...")
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reorgCount = 0
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Sleep(20 * time.Second)
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continue
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}
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// Check the current top block to see if there's a hash mismatch (i.e., a 1-block reorg)
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curhash, err := getBestBlockHash()
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if err != nil {
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Log.WithFields(logrus.Fields{
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"height": height,
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"error": err,
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}).Warn("error zcashd getblock rpc")
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continue
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}
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if c.HashMismatch(curhash) {
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// Current block has a hash mismatch
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Log.WithFields(logrus.Fields{
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"height": height - 1,
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"hash": displayHash(curhash),
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"phash": displayHash(c.GetLatestHash()),
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"reorg": reorgCount,
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}).Warn("REORG/Current Block")
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c.Reorg(height - 1)
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continue
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}
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if wait {
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// Wait a bit then retry the same height.
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c.Sync()
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if lastHeightLogged+1 != height {
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Log.Info("Ingestor waiting for block: ", height)
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lastHeightLogged = height - 1
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}
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Sleep(2 * time.Second)
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wait = false
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continue
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}
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}
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if block == nil || c.HashMismatch(block.PrevHash) {
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// This may not be a reorg; it may be we're at the tip
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// and there's no new block yet, but we want to back up
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// so we detect a reorg in which the new chain is the
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// same length or shorter.
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reorgCount++
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if reorgCount > 100 {
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Log.Fatal("Reorg exceeded max of 100 blocks! Help!")
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}
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// Print the hash of the block that is getting reorg-ed away
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// as 'phash', not the prevhash of the block we just received.
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if block != nil {
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Log.WithFields(logrus.Fields{
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"height": height,
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"hash": displayHash(block.Hash),
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"phash": displayHash(c.GetLatestHash()),
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"reorg": reorgCount,
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}).Warn("REORG")
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} else if reorgCount > 1 {
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Log.WithFields(logrus.Fields{
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"height": height,
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"phash": displayHash(c.GetLatestHash()),
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"reorg": reorgCount,
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}).Warn("REORG")
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}
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// Try backing up
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c.Reorg(height - 1)
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continue
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}
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// We have a valid block to add.
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wait = true
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reorgCount = 0
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if err := c.Add(height, block); err != nil {
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Log.Fatal("Cache add failed:", err)
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}
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// Don't log these too often.
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if time.Since(lastLog).Seconds() >= 4 && c.GetNextHeight() == height+1 && height != lastHeightLogged {
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lastLog = time.Now()
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lastHeightLogged = height
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Log.Info("Ingestor adding block to cache: ", height)
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}
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}
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}
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// GetBlock returns the compact block at the requested height, first by querying
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// the cache, then, if not found, will request the block from zcashd. It returns
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// nil if no block exists at this height.
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func GetBlock(cache *BlockCache, height int) (*walletrpc.CompactBlock, error) {
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// First, check the cache to see if we have the block
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block := cache.Get(height)
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if block != nil {
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return block, nil
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}
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// Not in the cache, ask zcashd
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block, err := getBlockFromRPC(height)
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if err != nil {
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return nil, err
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}
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if block == nil {
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// Block height is too large
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return nil, errors.New("block requested is newer than latest block")
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}
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return block, nil
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}
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// GetBlockRange returns a sequence of consecutive blocks in the given range.
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func GetBlockRange(cache *BlockCache, blockOut chan<- *walletrpc.CompactBlock, errOut chan<- error, start, end int) {
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// Go over [start, end] inclusive
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low := start
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high := end
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if start > end {
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// reverse the order
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low, high = end, start
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}
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for i := low; i <= high; i++ {
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j := i
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if start > end {
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// reverse the order
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j = high - (i - low)
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}
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block, err := GetBlock(cache, j)
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if err != nil {
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errOut <- err
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return
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}
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blockOut <- block
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}
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errOut <- nil
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}
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func displayHash(hash []byte) string {
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return hex.EncodeToString(parser.Reverse(hash))
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}
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