b21c8eccf0
This commit adds an initial integration test to the project which exercises some basic channel opening/closing functionality between two lnd nodes.
382 lines
10 KiB
Go
382 lines
10 KiB
Go
package main
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import (
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"context"
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"encoding/hex"
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"fmt"
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"io/ioutil"
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"log"
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"net"
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"os"
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"os/exec"
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"path/filepath"
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"runtime"
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"strconv"
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"time"
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"google.golang.org/grpc"
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"google.golang.org/grpc/grpclog"
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"github.com/lightningnetwork/lnd/lnrpc"
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"github.com/roasbeef/btcd/chaincfg"
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"github.com/roasbeef/btcd/rpctest"
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"github.com/roasbeef/btcd/txscript"
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"github.com/roasbeef/btcd/wire"
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"github.com/roasbeef/btcrpcclient"
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"github.com/roasbeef/btcutil"
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)
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var (
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// numActiveNodes is the number of active nodes within the test network.
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numActiveNodes = 0
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// defaultNodePort is the initial p2p port which will be used by the
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// first created lightning node to listen on for incoming p2p
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// connections. Subsequent allocated ports for future lighting nodes
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// instances will be monotonically increasing odd numbers calculated as
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// such: defaultP2pPort + (2 * harness.nodeNum).
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defaultNodePort = 19555
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// defaultClientPort is the initial rpc port which will be used by the
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// first created lightning node to listen on for incoming rpc
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// connections. Subsequent allocated ports for future rpc harness
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// instances will be monotonically increasing even numbers calculated
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// as such: defaultP2pPort + (2 * harness.nodeNum).
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defaultClientPort = 19556
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harnessNetParams = &chaincfg.SimNetParams
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)
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// generateListeningPorts returns two strings representing ports to listen on
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// designated for the current lightning network test. If there haven't been any
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// test instances created, the default ports are used. Otherwise, in order to
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// support multiple test nodes running at once, the p2p and rpc port are
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// incremented after each initialization.
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func generateListeningPorts() (int, int) {
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var p2p, rpc int
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if numActiveNodes == 0 {
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p2p = defaultNodePort
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rpc = defaultClientPort
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} else {
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p2p = defaultNodePort + (2 * numActiveNodes)
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rpc = defaultClientPort + (2 * numActiveNodes)
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}
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return p2p, rpc
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}
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// lightningNode represents an instance of lnd running within our test network
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// harness.
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type lightningNode struct {
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cfg *config
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rpcAddr string
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p2pAddr string
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rpcCert []byte
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nodeId int
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cmd *exec.Cmd
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pidFile string
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extraArgs []string
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}
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// newLightningNode creates a new test lightning node instance from the passed
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// rpc config and slice of extra arguments.
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func newLightningNode(rpcConfig *btcrpcclient.ConnConfig, lndArgs []string) (*lightningNode, error) {
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var err error
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cfg := &config{
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RPCHost: "127.0.0.1",
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RPCUser: rpcConfig.User,
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RPCPass: rpcConfig.Pass,
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}
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nodeNum := numActiveNodes
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cfg.DataDir, err = ioutil.TempDir("", "lndtest-data")
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if err != nil {
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return nil, err
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}
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cfg.LogDir, err = ioutil.TempDir("", "lndtest-log")
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if err != nil {
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return nil, err
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}
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cfg.PeerPort, cfg.RPCPort = generateListeningPorts()
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numActiveNodes++
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return &lightningNode{
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cfg: cfg,
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p2pAddr: net.JoinHostPort("127.0.0.1", strconv.Itoa(cfg.PeerPort)),
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rpcAddr: net.JoinHostPort("127.0.0.1", strconv.Itoa(cfg.RPCPort)),
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rpcCert: rpcConfig.Certificates,
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nodeId: nodeNum,
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extraArgs: lndArgs,
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}, nil
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}
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// genArgs generates a slice of command line arguments from the lightningNode's
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// current config struct.
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func (l *lightningNode) genArgs() []string {
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var args []string
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encodedCert := hex.EncodeToString(l.rpcCert)
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args = append(args, fmt.Sprintf("--btcdhost=%v", l.cfg.RPCHost))
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args = append(args, fmt.Sprintf("--rpcuser=%v", l.cfg.RPCUser))
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args = append(args, fmt.Sprintf("--rpcpass=%v", l.cfg.RPCPass))
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args = append(args, fmt.Sprintf("--rawrpccert=%v", encodedCert))
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args = append(args, fmt.Sprintf("--rpcport=%v", l.cfg.RPCPort))
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args = append(args, fmt.Sprintf("--peerport=%v", l.cfg.PeerPort))
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args = append(args, fmt.Sprintf("--logdir=%v", l.cfg.LogDir))
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args = append(args, fmt.Sprintf("--datadir=%v", l.cfg.DataDir))
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args = append(args, fmt.Sprintf("--simnet"))
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if l.extraArgs != nil {
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args = append(args, l.extraArgs...)
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}
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return args
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}
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// start launches a new process running lnd. Additionally, the PID of the
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// launched process is saved in order to possibly kill the process forcibly
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// later.
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func (l *lightningNode) start() error {
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args := l.genArgs()
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l.cmd = exec.Command("lnd", args...)
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if err := l.cmd.Start(); err != nil {
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return err
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}
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pid, err := os.Create(filepath.Join(l.cfg.DataDir,
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fmt.Sprintf("%s.pid", l.nodeId)))
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if err != nil {
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return err
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}
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l.pidFile = pid.Name()
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if _, err = fmt.Fprintf(pid, "%s\n", l.cmd.Process.Pid); err != nil {
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return err
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}
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if err := pid.Close(); err != nil {
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return err
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}
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return nil
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}
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// cleanup cleans up all the temporary files created by the node's process.
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func (l *lightningNode) cleanup() error {
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dirs := []string{
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l.cfg.LogDir,
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l.cfg.DataDir,
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}
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var err error
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for _, dir := range dirs {
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if err = os.RemoveAll(dir); err != nil {
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log.Printf("Cannot remove dir %s: %v", dir, err)
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}
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}
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return err
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}
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// stop attempts to stop the active lnd process.
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func (l *lightningNode) stop() error {
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if l.cmd == nil || l.cmd.Process == nil {
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return nil
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}
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defer l.cmd.Wait()
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if runtime.GOOS == "windows" {
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return l.cmd.Process.Signal(os.Kill)
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}
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return l.cmd.Process.Signal(os.Interrupt)
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}
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// shutdown stops the active lnd process and clean up any temporary directories
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// created along the way.
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func (l *lightningNode) shutdown() error {
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if err := l.stop(); err != nil {
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return err
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}
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if err := l.cleanup(); err != nil {
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return err
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}
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return nil
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}
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// networkHarness is an integration testing harness for the lightning network.
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// The harness by default is created with two active nodes on the network:
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// Alice and Bob.
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type networkHarness struct {
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rpcConfig btcrpcclient.ConnConfig
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netParams *chaincfg.Params
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Miner *rpctest.Harness
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activeNodes map[int]*lightningNode
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aliceNode *lightningNode
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bobNode *lightningNode
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AliceClient lnrpc.LightningClient
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BobClient lnrpc.LightningClient
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}
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// newNetworkHarness creates a new network test harness given an already
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// running instance of btcd's rpctest harness. Any extra command line flags
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// which should be passed to create lnd instance should be formatted properly
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// in the lndArgs slice (--arg=value).
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// TODO(roasbeef): add option to use golang's build library to a binary of the
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// current repo. This'll save developers from having to manually `go install`
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// within the repo each time before changes.
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func newNetworkHarness(r *rpctest.Harness, lndArgs []string) (*networkHarness, error) {
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var err error
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nodeConfig := r.RPCConfig()
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testNet := &networkHarness{
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rpcConfig: nodeConfig,
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netParams: r.ActiveNet,
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Miner: r,
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activeNodes: make(map[int]*lightningNode),
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}
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testNet.aliceNode, err = newLightningNode(&nodeConfig, nil)
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if err != nil {
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return nil, err
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}
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testNet.bobNode, err = newLightningNode(&nodeConfig, nil)
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if err != nil {
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return nil, err
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}
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testNet.activeNodes[testNet.aliceNode.nodeId] = testNet.aliceNode
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testNet.activeNodes[testNet.bobNode.nodeId] = testNet.bobNode
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return testNet, nil
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}
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// fakeLogger is a fake grpclog.Logger implementation. This is used to stop
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// grpc's logger from printing directly to stdout.
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type fakeLogger struct{}
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func (f *fakeLogger) Fatal(args ...interface{}) {}
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func (f *fakeLogger) Fatalf(format string, args ...interface{}) {}
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func (f *fakeLogger) Fatalln(args ...interface{}) {}
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func (f *fakeLogger) Print(args ...interface{}) {}
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func (f *fakeLogger) Printf(format string, args ...interface{}) {}
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func (f *fakeLogger) Println(args ...interface{}) {}
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// SetUp starts the initial seeder nodes within the test harness. The initial
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// node's wallets will be funded wallets with ten 1 BTC outputs each. Finally
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// rpc clients capable of communicating with the initial seeder nodes are
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// created.
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func (n *networkHarness) SetUp() error {
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// Swap out grpc's default logger with out fake logger which drops the
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// statements on the floor.
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grpclog.SetLogger(&fakeLogger{})
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// Start the initial seeder nodes within the test network, then connect
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// their respective RPC clients.
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var err error
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if err := n.aliceNode.start(); err != nil {
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return err
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}
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if err := n.bobNode.start(); err != nil {
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return err
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}
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n.AliceClient, err = initRpcClient(n.aliceNode.rpcAddr)
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if err != nil {
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return nil
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}
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n.BobClient, err = initRpcClient(n.bobNode.rpcAddr)
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if err != nil {
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return nil
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}
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// Load up the wallets of the seeder nodes with 10 outputs of 1 BTC
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// each.
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ctxb := context.Background()
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addrReq := &lnrpc.NewAddressRequest{lnrpc.NewAddressRequest_WITNESS_PUBKEY_HASH}
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clients := []lnrpc.LightningClient{n.AliceClient, n.BobClient}
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for _, client := range clients {
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for i := 0; i < 10; i++ {
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resp, err := client.NewAddress(ctxb, addrReq)
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if err != nil {
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return err
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}
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addr, err := btcutil.DecodeAddress(resp.Address, n.netParams)
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if err != nil {
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return err
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}
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addrScript, err := txscript.PayToAddrScript(addr)
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if err != nil {
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return err
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}
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output := &wire.TxOut{
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PkScript: addrScript,
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Value: btcutil.SatoshiPerBitcoin,
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}
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if _, err := n.Miner.CoinbaseSpend([]*wire.TxOut{output}); err != nil {
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return err
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}
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}
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}
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// We generate several blocks in order to give the outputs created
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// above a good number of confirmations.
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if _, err := n.Miner.Node.Generate(10); err != nil {
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return err
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}
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// Finally, make a connection between both of the nodes.
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bobInfo, err := n.BobClient.GetInfo(ctxb, &lnrpc.GetInfoRequest{})
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if err != nil {
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return err
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}
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req := &lnrpc.ConnectPeerRequest{
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Addr: &lnrpc.LightningAddress{
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PubKeyHash: bobInfo.IdentityAddress,
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Host: n.bobNode.p2pAddr,
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},
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}
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if _, err := n.AliceClient.ConnectPeer(ctxb, req); err != nil {
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return err
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}
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return nil
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}
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// TearDownAll tears down all active nodes within the test lightning network.
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func (n *networkHarness) TearDownAll() error {
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for _, node := range n.activeNodes {
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if err := node.shutdown(); err != nil {
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return err
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}
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}
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return nil
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}
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// initRpcClient attempts to make an rpc connection, then create a gRPC client
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// connected to the specified server address.
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func initRpcClient(serverAddr string) (lnrpc.LightningClient, error) {
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opts := []grpc.DialOption{
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grpc.WithInsecure(),
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grpc.WithBlock(),
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grpc.WithTimeout(time.Second * 10),
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}
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conn, err := grpc.Dial(serverAddr, opts...)
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if err != nil {
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return nil, err
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}
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return lnrpc.NewLightningClient(conn), nil
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}
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