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Method sweepbatcher.Store.FetchBatchSweeps (implementation using real DB) runs JOIN query to load LoopOut from swaps table. Now the mock does the same. It is needed to test store and load scenarios in tests.
289 lines
6.9 KiB
Go
289 lines
6.9 KiB
Go
package loop
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import (
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"context"
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"fmt"
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"testing"
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"time"
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"github.com/btcsuite/btcd/btcec/v2"
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"github.com/btcsuite/btcd/btcutil"
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"github.com/btcsuite/btcd/wire"
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"github.com/lightninglabs/lndclient"
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"github.com/lightninglabs/loop/loopdb"
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"github.com/lightninglabs/loop/swap"
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"github.com/lightninglabs/loop/sweep"
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"github.com/lightninglabs/loop/sweepbatcher"
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"github.com/lightninglabs/loop/test"
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"github.com/lightningnetwork/lnd/chainntnfs"
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"github.com/lightningnetwork/lnd/lnrpc"
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"github.com/lightningnetwork/lnd/lntypes"
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"github.com/stretchr/testify/require"
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)
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var (
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testPreimage = lntypes.Preimage([32]byte{
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1, 1, 1, 1, 2, 2, 2, 2,
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3, 3, 3, 3, 4, 4, 4, 4,
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1, 1, 1, 1, 2, 2, 2, 2,
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3, 3, 3, 3, 4, 4, 4, 4,
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})
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)
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// testContext contains functionality to support client unit tests.
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type testContext struct {
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test.Context
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serverMock *serverMock
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swapClient *Client
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statusChan chan SwapInfo
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store *loopdb.StoreMock
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expiryChan chan time.Time
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runErr chan error
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stop func()
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}
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// mockVerifySchnorrSigFail is used to simulate failed taproot keyspend
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// signature verification. If passed to the executeConfig we'll test an
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// uncooperative server and will fall back to scriptspend sweep.
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func mockVerifySchnorrSigFail(pubKey *btcec.PublicKey, hash,
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sig []byte) error {
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return fmt.Errorf("invalid sig")
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}
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// mockVerifySchnorrSigSuccess is used to simulate successful taproot keyspend
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// signature verification. If passed to the executeConfig we'll test an
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// uncooperative server and will fall back to scriptspend sweep.
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func mockVerifySchnorrSigSuccess(pubKey *btcec.PublicKey, hash,
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sig []byte) error {
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return fmt.Errorf("invalid sig")
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}
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func mockMuSig2SignSweep(ctx context.Context,
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protocolVersion loopdb.ProtocolVersion, swapHash lntypes.Hash,
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paymentAddr [32]byte, nonce []byte, sweepTxPsbt []byte,
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prevoutMap map[wire.OutPoint]*wire.TxOut) (
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[]byte, []byte, error) {
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return nil, nil, nil
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}
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func newSwapClient(config *clientConfig) *Client {
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sweeper := &sweep.Sweeper{
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Lnd: config.LndServices,
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}
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lndServices := config.LndServices
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batcherStore := sweepbatcher.NewStoreMock(config.Store)
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batcher := sweepbatcher.NewBatcher(
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config.LndServices.WalletKit, config.LndServices.ChainNotifier,
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config.LndServices.Signer, mockMuSig2SignSweep,
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mockVerifySchnorrSigSuccess, config.LndServices.ChainParams,
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batcherStore, config.Store,
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)
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executor := newExecutor(&executorConfig{
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lnd: lndServices,
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store: config.Store,
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sweeper: sweeper,
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batcher: batcher,
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createExpiryTimer: config.CreateExpiryTimer,
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cancelSwap: config.Server.CancelLoopOutSwap,
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verifySchnorrSig: mockVerifySchnorrSigFail,
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})
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return &Client{
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errChan: make(chan error),
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clientConfig: *config,
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lndServices: lndServices,
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sweeper: sweeper,
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executor: executor,
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resumeReady: make(chan struct{}),
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}
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}
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func createClientTestContext(t *testing.T,
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pendingSwaps []*loopdb.LoopOut) *testContext {
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clientLnd := test.NewMockLnd()
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serverMock := newServerMock(clientLnd)
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store := loopdb.NewStoreMock(t)
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for _, s := range pendingSwaps {
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store.LoopOutSwaps[s.Hash] = s.Contract
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updates := []loopdb.SwapStateData{}
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for _, e := range s.Events {
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updates = append(updates, e.SwapStateData)
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}
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store.LoopOutUpdates[s.Hash] = updates
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}
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expiryChan := make(chan time.Time)
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timerFactory := func(expiry time.Duration) <-chan time.Time {
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return expiryChan
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}
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swapClient := newSwapClient(&clientConfig{
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LndServices: &clientLnd.LndServices,
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Server: serverMock,
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Store: store,
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CreateExpiryTimer: timerFactory,
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})
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statusChan := make(chan SwapInfo)
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ctx := &testContext{
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Context: test.NewContext(
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t,
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clientLnd,
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),
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swapClient: swapClient,
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statusChan: statusChan,
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expiryChan: expiryChan,
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store: store,
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serverMock: serverMock,
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}
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ctx.runErr = make(chan error)
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runCtx, stop := context.WithCancel(context.Background())
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ctx.stop = stop
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go func() {
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err := swapClient.Run(runCtx, statusChan)
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log.Errorf("client run: %v", err)
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ctx.runErr <- err
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}()
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return ctx
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}
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func (ctx *testContext) finish() {
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ctx.stop()
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select {
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case err := <-ctx.runErr:
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require.NoError(ctx.Context.T, err)
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case <-time.After(test.Timeout):
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ctx.Context.T.Fatal("client not stopping")
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}
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ctx.assertIsDone()
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}
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func (ctx *testContext) assertIsDone() {
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require.NoError(ctx.Context.T, ctx.Context.Lnd.IsDone())
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require.NoError(ctx.Context.T, ctx.store.IsDone())
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select {
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case <-ctx.statusChan:
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ctx.Context.T.Fatalf("not all status updates read")
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default:
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}
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}
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func (ctx *testContext) assertStored() {
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ctx.Context.T.Helper()
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ctx.store.AssertLoopOutStored()
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}
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func (ctx *testContext) assertStorePreimageReveal() {
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ctx.Context.T.Helper()
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ctx.store.AssertStorePreimageReveal()
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}
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func (ctx *testContext) assertStoreFinished(expectedResult loopdb.SwapState) {
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ctx.Context.T.Helper()
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ctx.store.AssertStoreFinished(expectedResult)
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}
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func (ctx *testContext) assertStatus(expectedState loopdb.SwapState) {
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ctx.Context.T.Helper()
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for {
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select {
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case update := <-ctx.statusChan:
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if update.SwapType != swap.TypeOut {
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continue
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}
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if update.State == expectedState {
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return
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}
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case <-time.After(test.Timeout):
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ctx.Context.T.Fatalf("expected status %v not "+
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"received in time", expectedState)
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}
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}
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}
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func (ctx *testContext) publishHtlc(script []byte,
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amt btcutil.Amount) wire.OutPoint {
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// Create the htlc tx.
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htlcTx := wire.MsgTx{}
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htlcTx.AddTxIn(&wire.TxIn{
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PreviousOutPoint: wire.OutPoint{},
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})
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htlcTx.AddTxOut(&wire.TxOut{
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PkScript: script,
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Value: int64(amt),
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})
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htlcTxHash := htlcTx.TxHash()
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// Signal client that script has been published.
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select {
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case ctx.Lnd.ConfChannel <- &chainntnfs.TxConfirmation{
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Tx: &htlcTx,
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}:
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case <-time.After(test.Timeout):
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ctx.Context.T.Fatalf("htlc confirmed not consumed")
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}
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return wire.OutPoint{
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Hash: htlcTxHash,
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Index: 0,
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}
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}
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// trackPayment asserts that a call to track payment was sent and sends the
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// status provided into the updates channel.
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func (ctx *testContext) trackPayment(status lnrpc.Payment_PaymentStatus) {
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trackPayment := ctx.Context.AssertTrackPayment()
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select {
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case trackPayment.Updates <- lndclient.PaymentStatus{
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State: status,
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}:
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case <-time.After(test.Timeout):
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ctx.Context.T.Fatalf("could not send payment update")
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}
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}
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// assertPreimagePush asserts that we made an attempt to push our preimage to
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// the server.
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func (ctx *testContext) assertPreimagePush(preimage lntypes.Preimage) {
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select {
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case pushedPreimage := <-ctx.serverMock.preimagePush:
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require.Equal(ctx.Context.T, preimage, pushedPreimage)
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case <-time.After(test.Timeout):
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ctx.Context.T.Fatalf("preimage not pushed")
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}
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}
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func (ctx *testContext) AssertEpochListeners(numListeners int32) {
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ctx.Context.T.Helper()
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require.Eventually(ctx.Context.T, func() bool {
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return ctx.Lnd.EpochSubscribers() == numListeners
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}, test.Timeout, time.Millisecond*250)
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}
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