lnwallet: export senderHtlcSpendRedeem and make rename HtlcSpendSuccess to HtlcSecondLevelSpend
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@ -320,12 +320,12 @@ func SenderHtlcSpendRevoke(signer Signer, signDesc *SignDescriptor,
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return senderHtlcSpendRevoke(signer, signDesc, revokeKey, sweepTx)
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}
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// senderHtlcSpendRedeem constructs a valid witness allowing the receiver of an
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// SenderHtlcSpendRedeem constructs a valid witness allowing the receiver of an
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// HTLC to redeem the pending output in the scenario that the sender broadcasts
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// their version of the commitment transaction. A valid spend requires
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// knowledge of the payment preimage, and a valid signature under the receivers
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// public key.
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func senderHtlcSpendRedeem(signer Signer, signDesc *SignDescriptor,
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func SenderHtlcSpendRedeem(signer Signer, signDesc *SignDescriptor,
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sweepTx *wire.MsgTx, paymentPreimage []byte) (wire.TxWitness, error) {
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sweepSig, err := signer.SignOutputRaw(sweepTx, signDesc)
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@ -810,12 +810,15 @@ func htlcSpendSuccess(signer Signer, signDesc *SignDescriptor,
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return witnessStack, nil
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}
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// HtlcSpendSuccess exposes the public witness generation function for spending
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// an HTLC success transaction, either due to an expiring time lock or having
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// had the payment preimage.
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// HtlcSecondLevelSpend exposes the public witness generation function for
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// spending an HTLC success transaction, either due to an expiring time lock or
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// having had the payment preimage. This method is able to spend any
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// second-level HTLC transaction, assuming the caller sets the locktime or
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// seqno properly.
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//
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// NOTE: The caller MUST set the txn version, sequence number, and sign
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// descriptor's sig hash cache before invocation.
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func HtlcSpendSuccess(signer Signer, signDesc *SignDescriptor,
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func HtlcSecondLevelSpend(signer Signer, signDesc *SignDescriptor,
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sweepTx *wire.MsgTx) (wire.TxWitness, error) {
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// With the proper sequence an version set, we'll now sign the timeout
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