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routing: modify TestSendToRouteStructuredError to return non-second chance error
In this commit, we modify the existing `TestSendToRouteStructuredError` test to return an error that doesn't trigger the second chance logic. Otherwise, we'll get a nil failure result from the mission control interpretation, meaning we won't exercise the full code path. Instead, we use a terminal error to ensure that the expected code path is hit. As is, this test will fail as a recent refactoring causes us to return a `channeldb.FailureReason` error, since the newly added `handleSendError` code path in the `SendToRoute` method will return the raw error, rather than the `shardError`, which is of the expected type.
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9c9f821ded
commit
b24edb2833
@ -2921,44 +2921,64 @@ func TestSendToRouteStructuredError(t *testing.T) {
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t.Fatalf("unable to create route: %v", err)
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}
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// We'll modify the SendToSwitch method so that it simulates a failed
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// payment with an error originating from the first hop of the route.
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// The unsigned channel update is attached to the failure message.
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ctx.router.cfg.Payer.(*mockPaymentAttemptDispatcherOld).setPaymentResult(
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func(firstHop lnwire.ShortChannelID) ([32]byte, error) {
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return [32]byte{}, htlcswitch.NewForwardingError(
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&lnwire.FailFeeInsufficient{
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Update: lnwire.ChannelUpdate{},
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}, 1,
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finalHopIndex := len(hops)
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testCases := map[int]lnwire.FailureMessage{
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finalHopIndex: lnwire.NewFailIncorrectDetails(payAmt, 100),
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1: &lnwire.FailFeeInsufficient{
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Update: lnwire.ChannelUpdate{},
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},
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}
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for failIndex, errorType := range testCases {
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failIndex := failIndex
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errorType := errorType
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t.Run(fmt.Sprintf("%T", errorType), func(t *testing.T) {
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// We'll modify the SendToSwitch method so that it
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// simulates a failed payment with an error originating
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// from the final hop in the route.
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ctx.router.cfg.Payer.(*mockPaymentAttemptDispatcherOld).setPaymentResult(
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func(firstHop lnwire.ShortChannelID) ([32]byte, error) {
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return [32]byte{}, htlcswitch.NewForwardingError(
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errorType, failIndex,
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)
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},
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)
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// The payment parameter is mostly redundant in
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// SendToRoute. Can be left empty for this test.
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var payment lntypes.Hash
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// Send off the payment request to the router. The
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// specified route should be attempted and the channel
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// update should be received by router and ignored
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// because it is missing a valid
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// signature.
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_, err = ctx.router.SendToRoute(payment, rt)
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fErr, ok := err.(*htlcswitch.ForwardingError)
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require.True(
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t, ok, "expected forwarding error, got: %T", err,
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)
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require.IsType(
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t, errorType, fErr.WireMessage(),
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"expected type %T got %T", errorType,
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fErr.WireMessage(),
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)
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// Check that the correct values were used when
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// initiating the payment.
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select {
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case initVal := <-init:
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if initVal.c.Value != payAmt {
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t.Fatalf("expected %v, got %v", payAmt,
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initVal.c.Value)
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}
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case <-time.After(100 * time.Millisecond):
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t.Fatalf("initPayment not called")
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}
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})
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// The payment parameter is mostly redundant in SendToRoute. Can be left
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// empty for this test.
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var payment lntypes.Hash
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// Send off the payment request to the router. The specified route
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// should be attempted and the channel update should be received by
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// router and ignored because it is missing a valid signature.
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_, err = ctx.router.SendToRoute(payment, rt)
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fErr, ok := err.(*htlcswitch.ForwardingError)
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if !ok {
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t.Fatalf("expected forwarding error")
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}
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if _, ok := fErr.WireMessage().(*lnwire.FailFeeInsufficient); !ok {
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t.Fatalf("expected fee insufficient error")
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}
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// Check that the correct values were used when initiating the payment.
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select {
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case initVal := <-init:
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if initVal.c.Value != payAmt {
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t.Fatalf("expected %v, got %v", payAmt, initVal.c.Value)
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}
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case <-time.After(100 * time.Millisecond):
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t.Fatalf("initPayment not called")
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}
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}
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