breacharbiter_test: assert publication of adjusted justice tx
Since the breacharbiter will publish an adjusted justice tx after detecing a spend from the breached commitment, we could get into a race where sometime it would not get the second spend before publication, resulting in a deadlock on the publTx channel. Now we instead wait for the publication of this adjusted tx before notifying the second spend.
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@ -1978,13 +1978,34 @@ func TestBreachDelayedJusticeConfirmation(t *testing.T) {
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require.Len(t, spending, len(justiceTx.TxIn))
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require.Len(t, spending, len(justiceTx.TxIn))
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require.Len(t, splits, 2)
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require.Len(t, splits, 2)
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// Finally notify that they confirm, making the breach arbiter clean
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// Notify that the first split confirm, making the breach arbiter
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// up.
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// publish another TX with the remaining inputs.
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for _, tx := range splits {
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for _, in := range splits[0].TxIn {
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for _, in := range tx.TxIn {
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op := &in.PreviousOutPoint
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op := &in.PreviousOutPoint
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notifier.Spend(op, blockHeight+5, tx)
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notifier.Spend(op, blockHeight+5, splits[0])
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}
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}
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select {
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// The published tx should spend the same inputs as our second split.
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case tx := <-publTx:
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require.Len(t, tx.TxIn, len(splits[1].TxIn))
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for i := range tx.TxIn {
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require.Equal(
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t, tx.TxIn[i].PreviousOutPoint,
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splits[1].TxIn[i].PreviousOutPoint,
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)
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}
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case <-time.After(5 * time.Second):
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t.Fatalf("tx not published")
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}
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// Finally notify that the second split confirms, making the breach
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// arbiter clean up since all inputs have been swept.
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for _, in := range splits[1].TxIn {
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op := &in.PreviousOutPoint
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notifier.Spend(op, blockHeight+6, splits[1])
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}
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}
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// Assert that the channel is fully resolved.
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// Assert that the channel is fully resolved.
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