diff --git a/.github/workflows/main.yaml b/.github/workflows/main.yaml index 730416d4d..0d6726373 100644 --- a/.github/workflows/main.yaml +++ b/.github/workflows/main.yaml @@ -21,7 +21,7 @@ env: GO_VERSION: '1.23.6' - LITD_ITEST_BRANCH: 'closedchannel-data' + LITD_ITEST_BRANCH: 'group-key-support' jobs: ####################### diff --git a/rpcserver.go b/rpcserver.go index a2898c05f..9ad146d67 100644 --- a/rpcserver.go +++ b/rpcserver.go @@ -3561,6 +3561,16 @@ func marshalOutboundParcel( return nil, err } + var proofAsset asset.Asset + err = proof.SparseDecode( + bytes.NewReader(out.ProofSuffix), + proof.AssetLeafRecord(&proofAsset), + ) + if err != nil { + return nil, fmt.Errorf("unable to sparse decode "+ + "proof: %w", err) + } + // Marshall the proof delivery status. proofDeliveryStatus := marshalOutputProofDeliveryStatus(out) @@ -3576,6 +3586,7 @@ func marshalOutboundParcel( OutputType: rpcOutType, AssetVersion: assetVersion, ProofDeliveryStatus: proofDeliveryStatus, + AssetId: fn.ByteSlice(proofAsset.ID()), } } @@ -7099,7 +7110,7 @@ func (r *rpcServer) FundChannel(ctx context.Context, } assetID, groupKey, err := parseAssetSpecifier( - req.GetAssetId(), "", nil, "", + req.GetAssetId(), "", req.GetGroupKey(), "", ) if err != nil { return nil, fmt.Errorf("error parsing asset specifier: %w", err) diff --git a/tapchannel/aux_closer.go b/tapchannel/aux_closer.go index f2f6a2950..f474e1b0d 100644 --- a/tapchannel/aux_closer.go +++ b/tapchannel/aux_closer.go @@ -104,7 +104,7 @@ func NewAuxChanCloser(cfg AuxChanCloserCfg) *AuxChanCloser { // createCloseAlloc is a helper function that creates an allocation for an asset // close. This does not set a script key, as the script key will be set for each // packet after the coins have been distributed. -func createCloseAlloc(isLocal, isInitiator bool, outputSum uint64, +func createCloseAlloc(isLocal bool, outputSum uint64, shutdownMsg tapchannelmsg.AuxShutdownMsg) (*tapsend.Allocation, error) { // The sort pkScript for the allocation will just be the internal key, @@ -146,7 +146,6 @@ func createCloseAlloc(isLocal, isInitiator bool, outputSum uint64, return tapsend.CommitAllocationToRemote }(), - SplitRoot: isInitiator, InternalKey: shutdownMsg.AssetInternalKey.Val, GenScriptKey: scriptKeyGen, Amount: outputSum, @@ -157,24 +156,58 @@ func createCloseAlloc(isLocal, isInitiator bool, outputSum uint64, }, nil } -// fundingSpendWitness creates a complete witness to spend the OP_TRUE funding -// script of an asset funding output. -func fundingSpendWitness() lfn.Result[wire.TxWitness] { - fundingScriptTree := tapscript.NewChannelFundingScriptTree() +// signCommitVirtualPackets signs the commit virtual packets with the funding +// witness, which is just the script and control block for the OP_TRUE spend. +func signCommitVirtualPackets(ctx context.Context, + vPackets []*tappsbt.VPacket) error { - tapscriptTree := fundingScriptTree.TapscriptTree - ctrlBlock := tapscriptTree.LeafMerkleProofs[0].ToControlBlock( - &input.TaprootNUMSKey, - ) - ctrlBlockBytes, err := ctrlBlock.ToBytes() - if err != nil { - return lfn.Errf[wire.TxWitness]("unable to serialize control "+ - "block: %w", err) + useUniqueScriptKey := len(vPackets) > 1 + for idx := range vPackets { + assetID, err := vPackets[idx].AssetID() + if err != nil { + return fmt.Errorf("unable to get asset ID: %w", err) + } + + // First, we'll prepare the funding witness which includes the + // OP_TRUE ctrl block. + fundingWitness, err := tapscript.ChannelFundingSpendWitness( + useUniqueScriptKey, assetID, + ) + if err != nil { + return fmt.Errorf("unable to make funding witness: %w", + err) + } + + err = tapsend.PrepareOutputAssets(ctx, vPackets[idx]) + if err != nil { + return fmt.Errorf("unable to prepare output "+ + "assets: %w", err) + } + + // With the packets prepared, we'll swap in the correct witness + // for each of them. We need to do this _after_ calling + // PrepareOutputAsset, because that method will overwrite any + // asset in the virtual outputs. Which means we'll also need to + // set the witness on _every_ output of the packet, to make sure + // each split output's root asset reference also gets the + // correct witness. + for outIdx := range vPackets[idx].Outputs { + outAsset := vPackets[idx].Outputs[outIdx].Asset + + // There is always only a single input, as we're + // spending a single funding output w/ each vPkt. + const inputIndex = 0 + err := outAsset.UpdateTxWitness( + inputIndex, fundingWitness, + ) + if err != nil { + return fmt.Errorf("error updating witness: %w", + err) + } + } } - return lfn.Ok(wire.TxWitness{ - tapscript.AnyoneCanSpendScript(), ctrlBlockBytes, - }) + return nil } // AuxCloseOutputs returns the set of close outputs to use for this co-op close @@ -273,7 +306,7 @@ func (a *AuxChanCloser) AuxCloseOutputs( remoteSum := fn.Reduce(commitState.RemoteAssets.Val.Outputs, sumAmounts) if localSum > 0 { localAlloc, err = createCloseAlloc( - true, desc.Initiator, localSum, localShutdown, + true, localSum, localShutdown, ) if err != nil { return none, err @@ -285,7 +318,7 @@ func (a *AuxChanCloser) AuxCloseOutputs( } if remoteSum > 0 { remoteAlloc, err = createCloseAlloc( - false, !desc.Initiator, remoteSum, remoteShutdown, + false, remoteSum, remoteShutdown, ) if err != nil { return none, err @@ -378,35 +411,12 @@ func (a *AuxChanCloser) AuxCloseOutputs( return none, fmt.Errorf("unable to distribute coins: %w", err) } - // With the vPackets created we'll now prepare all the split - // information encoded in the vPackets. - fundingWitness, err := fundingSpendWitness().Unpack() - if err != nil { - return none, fmt.Errorf("unable to make funding "+ - "witness: %w", err) - } - ctx := context.Background() - for idx := range vPackets { - err := tapsend.PrepareOutputAssets(ctx, vPackets[idx]) - if err != nil { - return none, fmt.Errorf("unable to prepare output "+ - "assets: %w", err) - } - - for outIdx := range vPackets[idx].Outputs { - outAsset := vPackets[idx].Outputs[outIdx].Asset - - // There is always only a single input, which is the - // funding output. - const inputIndex = 0 - err := outAsset.UpdateTxWitness( - inputIndex, fundingWitness, - ) - if err != nil { - return none, fmt.Errorf("error updating "+ - "witness: %w", err) - } - } + // We can now add the witness for the OP_TRUE spend of the commitment + // output to the vPackets. + ctxb := context.Background() + if err := signCommitVirtualPackets(ctxb, vPackets); err != nil { + return none, fmt.Errorf("error signing commit virtual "+ + "packets: %w", err) } // With the outputs prepared, we can now create the set of output @@ -484,8 +494,9 @@ func (a *AuxChanCloser) ShutdownBlob( none := lfn.None[lnwire.CustomRecords]() // If there's no custom blob, then we don't need to do anything. - if req.CommitBlob.IsNone() { - log.Debugf("No commit blob for ChannelPoint(%v)", req.ChanPoint) + if req.FundingBlob.IsNone() { + log.Debugf("No funding blob for ChannelPoint(%v)", + req.ChanPoint) return none, nil } @@ -500,16 +511,16 @@ func (a *AuxChanCloser) ShutdownBlob( log.Infof("Creating shutdown blob for close of ChannelPoint(%v)", req.ChanPoint) - // Otherwise, we'll decode the commitment, so we can examine the current - // state. - var commitState tapchannelmsg.Commitment - err = lfn.MapOptionZ(req.CommitBlob, func(blob tlv.Blob) error { - c, err := tapchannelmsg.DecodeCommitment(blob) + // Otherwise, we'll decode the funding state, so we can examine the + // different asset IDs in the channel. + var fundingState tapchannelmsg.OpenChannel + err = lfn.MapOptionZ(req.FundingBlob, func(blob tlv.Blob) error { + c, err := tapchannelmsg.DecodeOpenChannel(blob) if err != nil { return err } - commitState = *c + fundingState = *c return nil }) @@ -528,16 +539,20 @@ func (a *AuxChanCloser) ShutdownBlob( return none, err } - // Next, we'll collect all the assets that we own in this channel. - assets := commitState.LocalAssets.Val.Outputs + // Next, we'll collect all the asset IDs that were committed to the + // channel. + assetIDs := fn.Map( + fundingState.FundedAssets.Val.Outputs, + func(o *tapchannelmsg.AssetOutput) asset.ID { + return o.AssetID.Val + }, + ) // Now that we have all the asset IDs, we'll query for a new key for // each of them which we'll use as both the internal key and the script // key. scriptKeys := make(tapchannelmsg.ScriptKeyMap) - for idx := range assets { - channelAsset := assets[idx] - + for _, assetID := range assetIDs { newKey, err := a.cfg.AddrBook.NextScriptKey( ctx, asset.TaprootAssetsKeyFamily, ) @@ -545,21 +560,13 @@ func (a *AuxChanCloser) ShutdownBlob( return none, err } - // We now add the a - // TODO(guggero): This only works if there's only a single asset - // in the channel. We need to extend this to support multiple - // assets. - _, err = a.cfg.AddrBook.NewAddressWithKeys( - ctx, address.V1, channelAsset.AssetID.Val, - channelAsset.Amount.Val, newKey, newInternalKey, nil, - *a.cfg.DefaultCourierAddr, - ) + err = a.cfg.AddrBook.InsertScriptKey(ctx, newKey, true) if err != nil { - return none, fmt.Errorf("error adding new address: %w", - err) + return none, fmt.Errorf("error declaring script key: "+ + "%w", err) } - scriptKeys[channelAsset.AssetID.Val] = *newKey.PubKey + scriptKeys[assetID] = *newKey.PubKey } // Finally, we'll map the extra shutdown info to a TLV record map we diff --git a/tapchannel/aux_funding_controller.go b/tapchannel/aux_funding_controller.go index e963a79b7..d1ac7ac0f 100644 --- a/tapchannel/aux_funding_controller.go +++ b/tapchannel/aux_funding_controller.go @@ -31,7 +31,6 @@ import ( "github.com/lightninglabs/taproot-assets/tapfreighter" "github.com/lightninglabs/taproot-assets/tapgarden" "github.com/lightninglabs/taproot-assets/tappsbt" - "github.com/lightninglabs/taproot-assets/tapscript" "github.com/lightninglabs/taproot-assets/tapsend" "github.com/lightninglabs/taproot-assets/vm" lfn "github.com/lightningnetwork/lnd/fn/v2" @@ -763,27 +762,18 @@ func (f *FundingController) fundVirtualPacket(ctx context.Context, amt) // Our funding script key will be the OP_TRUE addr that we'll use as - // the funding script on the asset level. - fundingScriptTree := tapscript.NewChannelFundingScriptTree() - fundingTaprootKey, _ := schnorr.ParsePubKey( - schnorr.SerializePubKey(fundingScriptTree.TaprootKey), + // the funding script on the asset level. We start with this one in case + // there is only a single asset ID in the channel. This is to remain + // backward compatible with previous versions of the channel funding + // process, so updated users can still fund channels with a single asset + // ID with older clients. Also, we don't know what asset IDs we're going + // to be using, so we couldn't derive a unique funding script key for + // each asset ID yet anyway. + fundingScriptKey, err := deriveFundingScriptKey( + ctx, f.cfg.AddrBook, nil, ) - fundingScriptKey := asset.ScriptKey{ - PubKey: fundingTaprootKey, - TweakedScriptKey: &asset.TweakedScriptKey{ - RawKey: keychain.KeyDescriptor{ - PubKey: fundingScriptTree.InternalKey, - }, - Tweak: fundingScriptTree.TapscriptRoot, - }, - } - - // We'll also need to import the funding script key into the wallet so - // the asset will be materialized in the asset table and show up in the - // balance correctly. - err := f.cfg.AddrBook.InsertScriptKey(ctx, fundingScriptKey, true) if err != nil { - return nil, fmt.Errorf("unable to insert script key: %w", err) + return nil, fmt.Errorf("unable to derive script key: %w", err) } // Next, we'll use the asset wallet to fund a new vPSBT which'll be @@ -802,14 +792,70 @@ func (f *FundingController) fundVirtualPacket(ctx context.Context, Version: tappsbt.V1, } fundDesc := &tapsend.FundingDescriptor{ - AssetSpecifier: specifier, - Amount: amt, - CoinSelectType: tapsend.Bip86Only, + AssetSpecifier: specifier, + Amount: amt, + CoinSelectType: tapsend.Bip86Only, + DistinctSpecifier: true, } // Fund the packet. This will derive an anchor internal key for us, but // we'll overwrite that later on. - return f.cfg.AssetWallet.FundPacket(ctx, fundDesc, pktTemplate) + fundedPkt, err := f.cfg.AssetWallet.FundPacket( + ctx, fundDesc, pktTemplate, + ) + if err != nil { + return nil, fmt.Errorf("unable to fund vPacket: %w", err) + } + + // If there was just a single virtual packet created, it means we only + // have a single asset ID in the channel, and we can proceed without any + // workarounds. + if len(fundedPkt.VPackets) == 1 { + return fundedPkt, nil + } + + // For channels with multiple asset IDs, we'll need to create unique + // funding script keys for each asset ID. Otherwise, the proofs for the + // assets will collide in the universe because of group key, script key + // and outpoint all being equal. + for _, vPkt := range fundedPkt.VPackets { + assetID, err := vPkt.AssetID() + if err != nil { + return nil, fmt.Errorf("unable to get asset ID: %w", + err) + } + + // If there's change from the funding output, it'll be in the + // split root output. If there's no change, there will be no + // split root output, since the virtual transfer is interactive. + // So in either case we just need to get the first non-root + // output. + fundingOut, err := vPkt.FirstNonSplitRootOutput() + if err != nil { + return nil, fmt.Errorf("unable to get first non split "+ + "root output: %w", err) + } + + fundingScriptKey, err := deriveFundingScriptKey( + ctx, f.cfg.AddrBook, &assetID, + ) + if err != nil { + return nil, fmt.Errorf("unable to derive script key: "+ + "%w", err) + } + + // We now set the unique script key. This requires us to + // re-calculate the split commitments, so we'll do that right + // afterward. + fundingOut.ScriptKey = fundingScriptKey + + if err := tapsend.PrepareOutputAssets(ctx, vPkt); err != nil { + return nil, fmt.Errorf("unable to prepare output "+ + "assets after funding key update: %w", err) + } + } + + return fundedPkt, nil } // sendInputOwnershipProofs sends the input ownership proofs to the remote @@ -823,48 +869,49 @@ func (f *FundingController) sendInputOwnershipProofs(peerPub btcec.PublicKey, log.Infof("Generating input ownership proofs for %v packets", len(vPackets)) - // TODO(guggero): Remove once we add group key support. - if len(vPackets) > 1 { - return fmt.Errorf("only one vPacket supported for now") - } - vPkt := vPackets[0] - // For each of the inputs we selected, we'll create a new ownership // proof for each of them. We'll send this to the peer, so they can // verify that we actually own the inputs we're using to fund // the channel. - for _, assetInput := range vPkt.Inputs { - // First, we'll grab the proof for the asset input, then - // generate the challenge witness to place in the proof so it - challengeWitness, err := f.cfg.AssetWallet.SignOwnershipProof( - assetInput.Asset(), fn.None[[32]byte](), - ) - if err != nil { - return fmt.Errorf("error signing ownership proof: %w", - err) - } + for _, vPkt := range vPackets { + for _, assetInput := range vPkt.Inputs { + // First, we'll grab the proof for the asset input, then + // generate the challenge witness to place in the proof + // so it can be sent over. + wallet := f.cfg.AssetWallet + challengeWitness, err := wallet.SignOwnershipProof( + assetInput.Asset(), fn.None[[32]byte](), + ) + if err != nil { + return fmt.Errorf("error signing ownership "+ + "proof: %w", err) + } - // TODO(roasbeef): use the temp chan ID above? as part of - // challenge + // TODO(roasbeef): use the temp chan ID above? as part + // of challenge - // With the witness obtained, we'll emplace it, then add this - // to our set of relevant input proofs. But we create a copy of - // the proof first, to make sure we don't modify the vPacket. - var proofBuf bytes.Buffer - err = assetInput.Proof.Encode(&proofBuf) - if err != nil { - return fmt.Errorf("error serializing proof: %w", err) - } + // With the witness obtained, we'll emplace it, then add + // this to our set of relevant input proofs. But we + // create a copy of the proof first, to make sure we + // don't modify the vPacket. + var proofBuf bytes.Buffer + err = assetInput.Proof.Encode(&proofBuf) + if err != nil { + return fmt.Errorf("error serializing proof: %w", + err) + } - proofCopy := &proof.Proof{} - if err := proofCopy.Decode(&proofBuf); err != nil { - return fmt.Errorf("error decoding proof: %w", err) - } + proofCopy := &proof.Proof{} + if err := proofCopy.Decode(&proofBuf); err != nil { + return fmt.Errorf("error decoding proof: %w", + err) + } - proofCopy.ChallengeWitness = challengeWitness - fundingState.inputProofs = append( - fundingState.inputProofs, proofCopy, - ) + proofCopy.ChallengeWitness = challengeWitness + fundingState.inputProofs = append( + fundingState.inputProofs, proofCopy, + ) + } } // With all our proofs assembled, we'll now send each of them to the @@ -907,32 +954,42 @@ func (f *FundingController) sendInputOwnershipProofs(peerPub btcec.PublicKey, // Now that we've sent the proofs for the input assets, we'll send them // a fully signed asset funding output. We can send this safely as they // can't actually broadcast this without our signed Bitcoin inputs. - signedInputs, err := f.cfg.AssetWallet.SignVirtualPacket(vPkt) - if err != nil { - return fmt.Errorf("unable to sign funding inputs: %w", err) - } - if len(signedInputs) != len(vPkt.Inputs) { - return fmt.Errorf("expected %v signed inputs, got %v", - len(vPkt.Inputs), len(signedInputs)) + for idx := range vPackets { + vPkt := vPackets[idx] + signedInputs, err := f.cfg.AssetWallet.SignVirtualPacket(vPkt) + if err != nil { + return fmt.Errorf("unable to sign funding inputs: %w", + err) + } + if len(signedInputs) != len(vPkt.Inputs) { + return fmt.Errorf("expected %v signed inputs, got %v", + len(vPkt.Inputs), len(signedInputs)) + } } // We'll now send the signed inputs to the remote party. - // - // TODO(roasbeef): generalize for multi-asset - fundingOut, err := vPkt.FirstNonSplitRootOutput() - if err != nil { - return fmt.Errorf("unable to get funding asset: %w", err) - } - assetOutputMsg := cmsg.NewTxAssetOutputProof( - fundingState.pid, *fundingOut.Asset, true, - ) + for idx, vPkt := range vPackets { + fundingOut, err := vPkt.FirstNonSplitRootOutput() + if err != nil { + return fmt.Errorf("unable to get funding asset: %w", + err) + } - log.Debugf("Sending TLV for funding asset output to remote party: %v", - limitSpewer.Sdump(fundingOut.Asset)) + assetOutputMsg := cmsg.NewTxAssetOutputProof( + fundingState.pid, *fundingOut.Asset, + idx == len(vPackets)-1, + ) - err = f.cfg.PeerMessenger.SendMessage(ctx, peerPub, assetOutputMsg) - if err != nil { - return fmt.Errorf("unable to send proof to peer: %w", err) + log.Debugf("Sending TLV for funding asset output to remote "+ + "party: %v", limitSpewer.Sdump(fundingOut.Asset)) + + err = f.cfg.PeerMessenger.SendMessage( + ctx, peerPub, assetOutputMsg, + ) + if err != nil { + return fmt.Errorf("unable to send proof to peer: %w", + err) + } } return nil @@ -1007,8 +1064,7 @@ func (f *FundingController) signAllVPackets(ctx context.Context, // complete, but unsigned PSBT packet that can be used to create out asset // channel. func (f *FundingController) anchorVPackets(fundedPkt *tapsend.FundedPsbt, - allPackets []*tappsbt.VPacket, - fundingScriptKey asset.ScriptKey) ([]*proof.Proof, error) { + allPackets []*tappsbt.VPacket) ([]*proof.Proof, error) { log.Infof("Anchoring funding vPackets to funding PSBT") @@ -1055,10 +1111,13 @@ func (f *FundingController) anchorVPackets(fundedPkt *tapsend.FundedPsbt, vPkt.Outputs[vOutIdx].ProofSuffix = proofSuffix - if proofSuffix.Asset.ScriptKey.PubKey.IsEqual( - fundingScriptKey.PubKey, - ) { - + // Any output that isn't a split root output is a + // channel funding output, so we'll store the proofs + // for those outputs. If there is change, that will be + // the split root output. And if there is no change, + // there is no split root output, as it's an interactive + // transfer. + if vPkt.Outputs[vOutIdx].Type == tappsbt.TypeSimple { fundingProofs = append( fundingProofs, proofSuffix, ) @@ -1245,10 +1304,8 @@ func (f *FundingController) completeChannelFunding(ctx context.Context, // With all the vPackets signed, we'll now anchor them to the funding // PSBT. This'll update all the pkScripts for our funding output and // change. - fundingScriptTree := tapscript.NewChannelFundingScriptTree() - fundingScriptKey := asset.NewScriptKey(fundingScriptTree.TaprootKey) fundingOutputProofs, err := f.anchorVPackets( - finalFundedPsbt, signedPkts, fundingScriptKey, + finalFundedPsbt, signedPkts, ) if err != nil { return nil, fmt.Errorf("unable to anchor vPackets: %w", err) @@ -2030,6 +2087,13 @@ func (f *FundingController) validateWitness(outAsset asset.Asset, // the prev output fetcher for Bitcoin. prevAssets := make(commitment.InputSet) for _, p := range inputAssetProofs { + // We validate on the individual vPSBT level, so we will only + // use the inputs that actually match the current output's asset + // ID. + if outAsset.ID() != p.Asset.ID() { + continue + } + prevID := asset.PrevID{ OutPoint: p.OutPoint(), ID: p.Asset.ID(), diff --git a/tapchannel/aux_sweeper.go b/tapchannel/aux_sweeper.go index 875acb712..6460719d7 100644 --- a/tapchannel/aux_sweeper.go +++ b/tapchannel/aux_sweeper.go @@ -292,12 +292,6 @@ func (a *AuxSweeper) createSweepVpackets(sweepInputs []*cmsg.AssetOutput, log.Infof("Created %v sweep packets: %v", len(vPackets), limitSpewer.Sdump(vPackets)) - fundingWitness, err := fundingSpendWitness().Unpack() - if err != nil { - return lfn.Errf[returnType]("unable to make funding witness: "+ - "%w", err) - } - // Next, we'll prepare all the vPackets for the sweep transaction, and // also set the courier address. courierAddr := a.cfg.DefaultCourierAddr @@ -324,16 +318,6 @@ func (a *AuxSweeper) createSweepVpackets(sweepInputs []*cmsg.AssetOutput, "assets: %w", err) } - // Next before we sign, we'll make sure to update the witness - // of the prev asset's root asset. Otherwise, we'll be signing - // the wrong input leaf. - vIn := vPackets[idx].Inputs[0] - if vIn.Asset().HasSplitCommitmentWitness() { - //nolint:lll - rootAsset := vIn.Asset().PrevWitnesses[0].SplitCommitment.RootAsset - rootAsset.PrevWitnesses[0].TxWitness = fundingWitness - } - for outIdx := range vPackets[idx].Outputs { //nolint:lll vPackets[idx].Outputs[outIdx].ProofDeliveryAddress = courierAddr @@ -1592,42 +1576,15 @@ func (a *AuxSweeper) importCommitTx(req lnwallet.ResolutionReq, } } - // Now that we've added all the relevant vPackets, we'll prepare the - // funding witness which includes the OP_TRUE ctrl block. - fundingWitness, err := fundingSpendWitness().Unpack() - if err != nil { - return fmt.Errorf("unable to make funding witness: %w", err) + // We can now add the witness for the OP_TRUE spend of the commitment + // output to the vPackets. + vPackets := maps.Values(vPktsByAssetID) + if err := signCommitVirtualPackets(ctxb, vPackets); err != nil { + return fmt.Errorf("error signing commit virtual "+ + "packets: %w", err) } - // With all the vPackets created, we'll create output commitments from - // them, as we'll need them to ship the transaction off to the porter. - vPkts := maps.Values(vPktsByAssetID) - ctx := context.Background() - for idx := range vPkts { - err := tapsend.PrepareOutputAssets(ctx, vPkts[idx]) - if err != nil { - return fmt.Errorf("unable to prepare output "+ - "assets: %w", err) - } - - // With the packets prepared, we'll swap in the correct witness - // for each of them. - for outIdx := range vPkts[idx].Outputs { - outAsset := vPkts[idx].Outputs[outIdx].Asset - - // There is always only a single input, as we're - // sweeping a single contract w/ each vPkt. - const inputIndex = 0 - err := outAsset.UpdateTxWitness( - inputIndex, fundingWitness, - ) - if err != nil { - return fmt.Errorf("error updating "+ - "witness: %w", err) - } - } - } - outCommitments, err := tapsend.CreateOutputCommitments(vPkts) + outCommitments, err := tapsend.CreateOutputCommitments(vPackets) if err != nil { return fmt.Errorf("unable to create output "+ "commitments: %w", err) @@ -1641,12 +1598,12 @@ func (a *AuxSweeper) importCommitTx(req lnwallet.ResolutionReq, "allocations: %w", err) } exclusionCreator := tapsend.NonAssetExclusionProofs(anchorAllocations) - for idx := range vPkts { - vPkt := vPkts[idx] + for idx := range vPackets { + vPkt := vPackets[idx] for outIdx := range vPkt.Outputs { proofSuffix, err := tapsend.CreateProofSuffixCustom( req.CommitTx, vPkt, outCommitments, outIdx, - vPkts, exclusionCreator, + vPackets, exclusionCreator, ) if err != nil { return fmt.Errorf("unable to create "+ @@ -1663,7 +1620,7 @@ func (a *AuxSweeper) importCommitTx(req lnwallet.ResolutionReq, // With all the vPKts created, we can now ship the transaction off to // the porter for final delivery. return shipChannelTxn( - a.cfg.TxSender, req.CommitTx, outCommitments, vPkts, + a.cfg.TxSender, req.CommitTx, outCommitments, vPackets, int64(req.CommitFee), ) } @@ -1893,8 +1850,9 @@ func (a *AuxSweeper) resolveContract( return lfn.Err[tlv.Blob](err) } + type packetList = []*tappsbt.VPacket var ( - secondLevelPkts []*tappsbt.VPacket + secondLevelPkts packetList secondLevelSigDesc lfn.Option[cmsg.TapscriptSigDesc] ) @@ -1903,25 +1861,30 @@ func (a *AuxSweeper) resolveContract( if needsSecondLevel { log.Infof("Creating+signing 2nd level vPkts") - // We'll make a place holder for the second level output based - // on the assetID+value tuple. - secondLevelInputs := []*cmsg.AssetOutput{cmsg.NewAssetOutput( - assetOutputs[0].AssetID.Val, - assetOutputs[0].Amount.Val, assetOutputs[0].Proof.Val, - )} + // We'll make a placeholder for the second level output based + // on the assetID+value tuples. + secondLevelInputs := fn.Map( + assetOutputs, + func(a *cmsg.AssetOutput) *cmsg.AssetOutput { + return cmsg.NewAssetOutput( + a.AssetID.Val, a.Amount.Val, + a.Proof.Val, + ) + }, + ) // Unlike the first level packets, we can't yet sign the second // level packets yet, as we don't know what the sweeping // transaction will look like. So we'll just create them. secondLevelPkts, err = lfn.MapOption( //nolint:lll - func(desc tapscriptSweepDesc) lfn.Result[[]*tappsbt.VPacket] { + func(desc tapscriptSweepDesc) lfn.Result[packetList] { return a.createSweepVpackets( secondLevelInputs, lfn.Ok(desc), req, ) }, )(tapSweepDesc.secondLevel).UnwrapOr( - lfn.Ok[[]*tappsbt.VPacket](nil), + lfn.Ok[packetList](nil), ).Unpack() if err != nil { return lfn.Errf[tlv.Blob]("unable to make "+ diff --git a/tapchannel/commitment.go b/tapchannel/commitment.go index 562197563..8c473d2ef 100644 --- a/tapchannel/commitment.go +++ b/tapchannel/commitment.go @@ -18,6 +18,7 @@ import ( "github.com/lightninglabs/taproot-assets/rfqmsg" cmsg "github.com/lightninglabs/taproot-assets/tapchannelmsg" "github.com/lightninglabs/taproot-assets/tappsbt" + "github.com/lightninglabs/taproot-assets/tapscript" "github.com/lightninglabs/taproot-assets/tapsend" "github.com/lightningnetwork/lnd/channeldb" lfn "github.com/lightningnetwork/lnd/fn/v2" @@ -563,41 +564,12 @@ func GenerateCommitmentAllocations(prevState *cmsg.Commitment, err) } - // The root asset of the split commitment will still commit to the full - // witness value. Therefore, we need to update the root asset witness to - // what it would be at broadcast time. - fundingWitness, err := fundingSpendWitness().Unpack() - if err != nil { - return nil, nil, fmt.Errorf("unable to make funding "+ - "witness: %w", err) - } - - // Prepare the output assets for each virtual packet, then create the - // output commitments. - ctx := context.Background() - for idx := range vPackets { - err := tapsend.PrepareOutputAssets(ctx, vPackets[idx]) - if err != nil { - return nil, nil, fmt.Errorf("unable to prepare output "+ - "assets: %w", err) - } - - // With the packets prepared, we'll swap in the correct witness - // for each of them. - for outIdx := range vPackets[idx].Outputs { - outAsset := vPackets[idx].Outputs[outIdx].Asset - - // There is always only a single input, as we're - // sweeping a single contract w/ each vPkt. - const inputIndex = 0 - err := outAsset.UpdateTxWitness( - inputIndex, fundingWitness, - ) - if err != nil { - return nil, nil, fmt.Errorf("error updating "+ - "witness: %w", err) - } - } + // We can now add the witness for the OP_TRUE spend of the commitment + // output to the vPackets. + ctxb := context.Background() + if err := signCommitVirtualPackets(ctxb, vPackets); err != nil { + return nil, nil, fmt.Errorf("error signing commit virtual "+ + "packets: %w", err) } outCommitments, err := tapsend.CreateOutputCommitments(vPackets) @@ -739,10 +711,7 @@ func CreateAllocations(chanState lnwallet.AuxChanState, ourBalance, initiatorAssetBalance) // Next, we add the HTLC outputs, using this helper function to - // distinguish between incoming and outgoing HTLCs. The haveHtlcSplit - // boolean is used to store if one of the HTLCs has already been chosen - // to be the split root (only the very first HTLC might be chosen). - var haveHtlcSplitRoot bool + // distinguish between incoming and outgoing HTLCs. addHtlc := func(htlc *DecodedDescriptor, isIncoming bool) error { htlcScript, err := lnwallet.GenTaprootHtlcScript( isIncoming, whoseCommit, htlc.Timeout, htlc.RHash, @@ -760,21 +729,6 @@ func CreateAllocations(chanState lnwallet.AuxChanState, ourBalance, "sibling: %w", err) } - // We should always just have a single split root, which - // normally is the initiator's balance. However, if the - // initiator has no balance, then we choose the very first HTLC - // in the list to be the split root. If there are no HTLCs, then - // all the balance is on the receiver side and we don't need a - // split root. - shouldHouseSplitRoot := initiatorAssetBalance == 0 && - !haveHtlcSplitRoot - - // Make sure we only select the very first HTLC that pays to the - // initiator. - if shouldHouseSplitRoot { - haveHtlcSplitRoot = true - } - allocType := tapsend.CommitAllocationHtlcOutgoing if isIncoming { allocType = tapsend.CommitAllocationHtlcIncoming @@ -822,7 +776,6 @@ func CreateAllocations(chanState lnwallet.AuxChanState, ourBalance, Type: allocType, Amount: rfqmsg.Sum(htlc.AssetBalances), AssetVersion: asset.V1, - SplitRoot: shouldHouseSplitRoot, BtcAmount: htlc.Amount.ToSatoshis(), InternalKey: htlcTree.InternalKey, NonAssetLeaves: sibling, @@ -1026,7 +979,6 @@ func addCommitmentOutputs(chanType channeldb.ChannelType, localChanCfg, Type: tapsend.CommitAllocationToLocal, Amount: ourAssetBalance, AssetVersion: asset.V1, - SplitRoot: initiator, BtcAmount: ourBalance, InternalKey: toLocalTree.InternalKey, NonAssetLeaves: sibling, @@ -1089,7 +1041,6 @@ func addCommitmentOutputs(chanType channeldb.ChannelType, localChanCfg, Type: tapsend.CommitAllocationToRemote, Amount: theirAssetBalance, AssetVersion: asset.V1, - SplitRoot: !initiator, BtcAmount: theirBalance, InternalKey: toRemoteTree.InternalKey, NonAssetLeaves: sibling, @@ -1502,6 +1453,55 @@ func FakeCommitTx(fundingOutpoint wire.OutPoint, return fakeCommitTx, nil } +// deriveFundingScriptKey derives the funding script key that'll be used to +// fund the channel. If an asset ID is provided, then a unique funding script +// key will be derived for that asset ID. +func deriveFundingScriptKey(ctx context.Context, addrBook address.Storage, + assetID *asset.ID) (asset.ScriptKey, error) { + + fundingScriptTree := tapscript.NewChannelFundingScriptTree() + + // If we're using more than one asset ID in a channel, then this will be + // called with the actual asset ID set. So we need to use a different + // function to generate the funding script key. + if assetID != nil { + scriptKey, err := tapscript.NewChannelFundingScriptTreeUniqueID( + *assetID, + ) + if err != nil { + return asset.ScriptKey{}, fmt.Errorf("error deriving "+ + "funding script key for asset ID %s: %w", + assetID.String(), err) + } + + fundingScriptTree = scriptKey + } + + fundingTaprootKey, _ := schnorr.ParsePubKey( + schnorr.SerializePubKey(fundingScriptTree.TaprootKey), + ) + fundingScriptKey := asset.ScriptKey{ + PubKey: fundingTaprootKey, + TweakedScriptKey: &asset.TweakedScriptKey{ + RawKey: keychain.KeyDescriptor{ + PubKey: fundingScriptTree.InternalKey, + }, + Tweak: fundingScriptTree.TapscriptRoot, + }, + } + + // We'll also need to import the funding script key into the wallet so + // the asset will be materialized in the asset table and show up in the + // balance correctly. + err := addrBook.InsertScriptKey(ctx, fundingScriptKey, true) + if err != nil { + return asset.ScriptKey{}, fmt.Errorf("unable to insert script "+ + "key: %w", err) + } + + return fundingScriptKey, nil +} + // InPlaceCustomCommitSort performs an in-place sort of a transaction, given a // list of allocations. The sort is applied to the transaction outputs, using // the allocation's OutputIndex. The transaction inputs are sorted by the diff --git a/tapchannelmsg/custom_channel_data.go b/tapchannelmsg/custom_channel_data.go index 5943db677..2fc2e1bd2 100644 --- a/tapchannelmsg/custom_channel_data.go +++ b/tapchannelmsg/custom_channel_data.go @@ -90,7 +90,7 @@ func (c *ChannelCustomData) AsJson() ([]byte, error) { a := output.Proof.Val.Asset assetID := a.ID() - groupPubKey := a.ScriptKey.PubKey + scriptPubKey := a.ScriptKey.PubKey resp.FundingAssets = append( resp.FundingAssets, rfqmsg.JsonAssetUtxo{ Version: int64(a.Version), @@ -104,7 +104,7 @@ func (c *ChannelCustomData) AsJson() ([]byte, error) { }, Amount: a.Amount, ScriptKey: hex.EncodeToString( - groupPubKey.SerializeCompressed(), + scriptPubKey.SerializeCompressed(), ), DecimalDisplay: c.OpenChan.DecimalDisplay.Val, }, diff --git a/tapdb/assets_store.go b/tapdb/assets_store.go index 1a29e4140..a5dabb16c 100644 --- a/tapdb/assets_store.go +++ b/tapdb/assets_store.go @@ -886,8 +886,13 @@ func (a *AssetStore) constraintsToDbFilter( assetFilter.AssetIDFilter = assetIDBytes assetFilter.KeyGroupFilter = groupKeyBytes - // TODO(roasbeef): only want to allow asset ID or other and not - // both? + // If we query by group key, we don't also include the asset ID, + // otherwise we'd only get assets from that specific tranche. + if query.DistinctSpecifier && + len(assetFilter.KeyGroupFilter) > 0 { + + assetFilter.AssetIDFilter = nil + } switch query.CoinSelectType { case tapsend.ScriptTreesAllowed: @@ -1472,6 +1477,10 @@ func locatorToProofQuery(locator proof.Locator) (FetchAssetProof, error) { args.Outpoint = outpoint } + if locator.AssetID != nil { + args.AssetID = locator.AssetID[:] + } + return args, nil } @@ -3053,7 +3062,7 @@ func (a *AssetStore) LogAnchorTxConfirm(ctx context.Context, var ( writeTxOpts AssetStoreTxOptions - localProofKeys []asset.SerializedKey + localProofKeys []tapfreighter.OutputIdentifier ) err := a.db.ExecTx(ctx, &writeTxOpts, func(q ActiveAssetsStore) error { @@ -3078,10 +3087,16 @@ func (a *AssetStore) LogAnchorTxConfirm(ctx context.Context, // We'll keep around the IDs of the assets that we set to being // spent. We'll need one of them as our template to create the - // new assets. - spentAssetIDs := make([]int64, len(inputs)) + // new assets from. We only require one per asset ID, to make + // sure the group key and asset genesis references are correct. + // But if we spend multiple inputs from the same asset ID, it + // doesn't matter if they collide here, as we just need any of + // them as the copy template. + copyTemplateIDs := make(map[asset.ID]int64, len(inputs)) for idx := range inputs { - spentAssetIDs[idx], err = q.SetAssetSpent( + var assetID asset.ID + copy(assetID[:], inputs[idx].AssetID) + copyTemplateIDs[assetID], err = q.SetAssetSpent( ctx, SetAssetSpentParams{ ScriptKey: inputs[idx].ScriptKey, GenAssetID: inputs[idx].AssetID, @@ -3159,12 +3174,35 @@ func (a *AssetStore) LogAnchorTxConfirm(ctx context.Context, continue } - // Since we define that a transfer can only move assets - // within the same asset ID, we can take any of the - // inputs as a template for the new asset, since the - // genesis and group key will be the same. We'll - // overwrite all other fields. - templateID := spentAssetIDs[0] + // If we create the asset, we'll also import the proof. + // We need to find out the asset ID this output is for, + // since a transfer can host multiple virtual + // transactions, with potentially different asset IDs. + var ( + outProofAsset asset.Asset + inclusionProof proof.TaprootProof + ) + err = proof.SparseDecode( + bytes.NewReader(out.ProofSuffix), + proof.AssetLeafRecord(&outProofAsset), + proof.InclusionProofRecord(&inclusionProof), + ) + if err != nil { + return fmt.Errorf("unable to sparse decode "+ + "proof: %w", err) + } + + // We can take any of the inputs for a certain asset ID + // as a template for the new asset, since the genesis + // and group key will be the same. We'll overwrite all + // other fields. + templateID, ok := copyTemplateIDs[outProofAsset.ID()] + if !ok { + return fmt.Errorf("no spent asset found for "+ + "output with asset ID %v", + outProofAsset.ID()) + } + params := ApplyPendingOutput{ ScriptKeyID: out.ScriptKeyID, AnchorUtxoID: sqlInt64( @@ -3199,15 +3237,18 @@ func (a *AssetStore) LogAnchorTxConfirm(ctx context.Context, "witnesses: %w", err) } - var scriptKey asset.SerializedKey - copy(scriptKey[:], out.ScriptKeyBytes) - receiverProof, ok := conf.FinalProofs[scriptKey] + outKey := tapfreighter.NewOutputIdentifier( + outProofAsset.ID(), inclusionProof.OutputIndex, + *scriptPubKey, + ) + + receiverProof, ok := conf.FinalProofs[outKey] if !ok { return fmt.Errorf("no proof found for output "+ "with script key %x", out.ScriptKeyBytes) } - localProofKeys = append(localProofKeys, scriptKey) + localProofKeys = append(localProofKeys, outKey) // Upload proof by the dbAssetId, which is the _primary // key_ of the asset in table assets, not the BIPS diff --git a/tapdb/assets_store_test.go b/tapdb/assets_store_test.go index e1914ff24..14728f6a0 100644 --- a/tapdb/assets_store_test.go +++ b/tapdb/assets_store_test.go @@ -533,15 +533,15 @@ func newAssetGenerator(t *testing.T, } func (a *assetGenerator) genAssets(t *testing.T, assetStore *AssetStore, - assetDescs []assetDesc) { + assetDescs []assetDesc) ([]*asset.Asset, []proof.Proof) { ctx := context.Background() anchorPointsToAssetCommitments := make( map[wire.OutPoint][]*commitment.AssetCommitment, ) - newAssets := []*asset.Asset{} - for _, desc := range assetDescs { + newAssets := make([]*asset.Asset, len(assetDescs)) + for idx, desc := range assetDescs { desc := desc opts := []assetGenOpt{ @@ -578,11 +578,12 @@ func (a *assetGenerator) genAssets(t *testing.T, assetStore *AssetStore, desc.assetVersion, )) } - newAsset := randAsset(t, opts...) - newAssets = append(newAssets, newAsset) + newAssets[idx] = randAsset(t, opts...) // Group assets by anchor point before building tap commitments. - assetCommitment, err := commitment.NewAssetCommitment(newAsset) + assetCommitment, err := commitment.NewAssetCommitment( + newAssets[idx], + ) require.NoError(t, err) _, ok := anchorPointsToAssetCommitments[desc.anchorPoint] @@ -610,6 +611,7 @@ func (a *assetGenerator) genAssets(t *testing.T, assetStore *AssetStore, anchorPointsToTapCommitments[anchorPoint] = tapCommitment } + assetProofs := make([]proof.Proof, len(newAssets)) for i, newAsset := range newAssets { desc := assetDescs[i] anchorPoint := a.anchorPointsToTx[desc.anchorPoint] @@ -633,6 +635,7 @@ func (a *assetGenerator) genAssets(t *testing.T, assetStore *AssetStore, OutputIndex: 0, InternalKey: test.RandPubKey(t), } + assetProofs[i] = assetProof proofBlob, err := proof.EncodeAsProofFile(&assetProof) require.NoError(t, err) @@ -676,6 +679,8 @@ func (a *assetGenerator) genAssets(t *testing.T, assetStore *AssetStore, require.NoError(t, err) } } + + return newAssets, assetProofs } func (a *assetGenerator) assetSpecifierAssetID(i int, @@ -705,13 +710,45 @@ func (a *assetGenerator) assetSpecifierGroupKey(i int, return asset.NewSpecifierFromGroupKey(*groupPubKey) } +type filterOpt func(f *AssetQueryFilters) + +func filterSpecifier(s asset.Specifier) filterOpt { + return func(f *AssetQueryFilters) { + f.AssetSpecifier = s + } +} + +func filterMinAmt(amt uint64) filterOpt { + return func(f *AssetQueryFilters) { + f.MinAmt = amt + } +} + +func filterCoinSelectType(typ tapsend.CoinSelectType) filterOpt { + return func(f *AssetQueryFilters) { + f.CoinSelectType = typ + } +} + +func filterDistinctSpecifier() filterOpt { + return func(f *AssetQueryFilters) { + f.DistinctSpecifier = true + } +} + +func filterAnchorHeight(height int32) filterOpt { + return func(f *AssetQueryFilters) { + f.MinAnchorHeight = height + } +} + // TestFetchAllAssets tests that the different AssetQueryFilters work as // expected. func TestFetchAllAssets(t *testing.T) { t.Parallel() const ( - numAssetIDs = 10 + numAssetIDs = 12 numGroupKeys = 2 ) @@ -777,20 +814,35 @@ func TestFetchAllAssets(t *testing.T) { anchorPoint: assetGen.anchorPoints[4], amt: 777, scriptKey: scriptKeyWithScript, + }, { + assetGen: assetGen.assetGens[10], + anchorPoint: assetGen.anchorPoints[10], + amt: 10, + keyGroup: assetGen.groupKeys[0], + }, { + assetGen: assetGen.assetGens[11], + anchorPoint: assetGen.anchorPoints[11], + amt: 8, + groupAnchorGen: &assetGen.assetGens[10], + groupAnchorGenPoint: &assetGen.anchorPoints[10], + keyGroup: assetGen.groupKeys[0], }} - makeFilter := func(amt uint64, anchorHeight int32, - coinSelectType tapsend.CoinSelectType) *AssetQueryFilters { - - constraints := tapfreighter.CommitmentConstraints{ - MinAmt: amt, - CoinSelectType: coinSelectType, - } - return &AssetQueryFilters{ - CommitmentConstraints: constraints, - MinAnchorHeight: anchorHeight, + makeFilter := func(opts ...filterOpt) *AssetQueryFilters { + var filter AssetQueryFilters + for _, opt := range opts { + opt(&filter) } + + return &filter } + // First, we'll create a new assets store and then insert the set of + // assets described by the asset descriptions. + _, assetsStore, _ := newAssetStore(t) + genAssets, _ := assetGen.genAssets(t, assetsStore, availableAssets) + numGenAssets := len(genAssets) + lastAsset := genAssets[numGenAssets-1] + testCases := []struct { name string includeSpent bool @@ -800,64 +852,108 @@ func TestFetchAllAssets(t *testing.T) { err error }{{ name: "no constraints", - numAssets: 4, + numAssets: 6, }, { name: "no constraints, include leased", includeLeased: true, - numAssets: 7, + numAssets: 9, }, { name: "no constraints, include spent", includeSpent: true, - numAssets: 6, + numAssets: 8, }, { name: "no constraints, include leased, include spent", includeLeased: true, includeSpent: true, - numAssets: 10, + numAssets: 12, }, { - name: "min amount", - filter: makeFilter(12, 0, tapsend.ScriptTreesAllowed), + name: "min amount", + filter: makeFilter( + filterMinAmt(12), + filterCoinSelectType(tapsend.ScriptTreesAllowed), + ), numAssets: 2, }, { - name: "min amount, include spent", - filter: makeFilter(12, 0, tapsend.ScriptTreesAllowed), + name: "min amount, include spent", + filter: makeFilter( + filterMinAmt(12), + filterCoinSelectType(tapsend.ScriptTreesAllowed), + ), includeSpent: true, numAssets: 4, }, { - name: "min amount, include leased", - filter: makeFilter(12, 0, tapsend.ScriptTreesAllowed), + name: "min amount, include leased", + filter: makeFilter( + filterMinAmt(12), + filterCoinSelectType(tapsend.ScriptTreesAllowed), + ), includeLeased: true, numAssets: 5, }, { - name: "min amount, include leased, include spent", - filter: makeFilter(12, 0, tapsend.ScriptTreesAllowed), + name: "min amount, include leased, include spent", + filter: makeFilter( + filterMinAmt(12), + filterCoinSelectType(tapsend.ScriptTreesAllowed), + ), includeLeased: true, includeSpent: true, numAssets: 8, }, { - name: "default min height, include spent", - filter: makeFilter(0, 500, tapsend.ScriptTreesAllowed), + name: "default min height, include spent", + filter: makeFilter( + filterAnchorHeight(500), + filterCoinSelectType(tapsend.ScriptTreesAllowed), + ), includeSpent: true, - numAssets: 6, + numAssets: 8, }, { - name: "specific height", - filter: makeFilter(0, 502, tapsend.ScriptTreesAllowed), + name: "specific height", + filter: makeFilter( + filterAnchorHeight(512), + filterCoinSelectType(tapsend.ScriptTreesAllowed), + ), numAssets: 0, }, { - name: "default min height, include spent", - filter: makeFilter(0, 502, tapsend.ScriptTreesAllowed), + name: "default min height, include spent", + filter: makeFilter( + filterAnchorHeight(502), + filterCoinSelectType(tapsend.ScriptTreesAllowed), + ), includeSpent: true, - numAssets: 1, + numAssets: 3, }, { - name: "script key with tapscript", - filter: makeFilter(100, 0, tapsend.Bip86Only), + name: "script key with tapscript", + filter: makeFilter( + filterMinAmt(100), + filterCoinSelectType(tapsend.Bip86Only), + ), numAssets: 0, + }, { + name: "query by group key only", + filter: makeFilter( + filterSpecifier(asset.NewSpecifierFromGroupKey( + lastAsset.GroupKey.GroupPubKey, + )), + ), + numAssets: 2, + }, { + name: "query by group key and asset ID", + filter: makeFilter( + filterSpecifier(asset.NewSpecifierOptionalGroupPubKey( + lastAsset.ID(), &lastAsset.GroupKey.GroupPubKey, + )), + ), + numAssets: 1, + }, { + name: "query by group key and asset ID but distinct", + filter: makeFilter( + filterSpecifier(asset.NewSpecifierOptionalGroupPubKey( + lastAsset.ID(), &lastAsset.GroupKey.GroupPubKey, + )), filterDistinctSpecifier(), + ), + numAssets: 2, }} - // First, we'll create a new assets store and then insert the set of - // assets described by the asset descriptions. - _, assetsStore, _ := newAssetStore(t) - assetGen.genAssets(t, assetsStore, availableAssets) for _, tc := range testCases { tc := tc @@ -875,6 +971,121 @@ func TestFetchAllAssets(t *testing.T) { } } +// TestFetchProof tests that proofs can be fetched for different assets. +func TestFetchProof(t *testing.T) { + t.Parallel() + + const ( + numAssetIDs = 10 + numGroupKeys = 2 + ) + + assetGen := newAssetGenerator(t, numAssetIDs, numGroupKeys) + scriptKey := asset.RandScriptKey(t) + anchorPoint1 := assetGen.anchorPoints[0] + anchorPoint2 := assetGen.anchorPoints[1] + + ctx := context.Background() + availableAssets := []assetDesc{{ + assetGen: assetGen.assetGens[0], + anchorPoint: anchorPoint1, + amt: 777, + scriptKey: &scriptKey, + }, { + assetGen: assetGen.assetGens[8], + anchorPoint: anchorPoint2, + amt: 10, + keyGroup: assetGen.groupKeys[0], + scriptKey: &scriptKey, + }, { + assetGen: assetGen.assetGens[9], + anchorPoint: anchorPoint2, + amt: 8, + groupAnchorGen: &assetGen.assetGens[8], + groupAnchorGenPoint: &anchorPoint2, + keyGroup: assetGen.groupKeys[0], + scriptKey: &scriptKey, + }} + + // First, we'll create a new assets store and then insert the set of + // assets described by the asset descriptions. + _, assetsStore, _ := newAssetStore(t) + genAssets, genProofs := assetGen.genAssets( + t, assetsStore, availableAssets, + ) + + testCases := []struct { + name string + locator proof.Locator + expectProofID int + err error + }{{ + name: "script key only", + locator: proof.Locator{ + ScriptKey: *scriptKey.PubKey, + }, + err: proof.ErrMultipleProofs, + }, { + name: "script key and anchor point", + locator: proof.Locator{ + ScriptKey: *scriptKey.PubKey, + OutPoint: &anchorPoint2, + }, + err: proof.ErrMultipleProofs, + }, { + name: "script key, anchor point and group key", + locator: proof.Locator{ + ScriptKey: *scriptKey.PubKey, + OutPoint: &anchorPoint2, + GroupKey: &genAssets[1].GroupKey.GroupPubKey, + }, + err: proof.ErrMultipleProofs, + }, { + name: "script key, anchor point and asset ID", + locator: proof.Locator{ + ScriptKey: *scriptKey.PubKey, + OutPoint: &anchorPoint2, + AssetID: fn.Ptr(genAssets[1].ID()), + }, + expectProofID: 1, + }, { + name: "script key, anchor point, group key and asset ID", + locator: proof.Locator{ + ScriptKey: *scriptKey.PubKey, + OutPoint: &anchorPoint2, + GroupKey: &genAssets[1].GroupKey.GroupPubKey, + AssetID: fn.Ptr(genAssets[2].ID()), + }, + expectProofID: 2, + }} + + for _, tc := range testCases { + t.Run(tc.name, func(t *testing.T) { + blob, err := assetsStore.FetchProof( + ctx, tc.locator, + ) + if tc.err != nil { + require.ErrorIs(t, tc.err, err) + + return + } + + require.NoError(t, err) + + expectedFile, err := proof.NewFile( + proof.V0, genProofs[tc.expectProofID], + ) + require.NoError(t, err) + + var expectedBuf bytes.Buffer + err = expectedFile.Encode(&expectedBuf) + require.NoError(t, err) + + require.Equal(t, expectedBuf.Bytes(), []byte(blob)) + }) + } +} + // TestUTXOLeases tests that we're able to properly lease UTXOs in the DB, // update and then remove them again. func TestUTXOLeases(t *testing.T) { @@ -1334,9 +1545,6 @@ func TestAssetExportLog(t *testing.T) { newRootHash := sha256.Sum256([]byte("kek")) newRootValue := uint64(100) - senderBlob := bytes.Repeat([]byte{0x01}, 100) - receiverBlob := bytes.Repeat([]byte{0x02}, 100) - newWitness := asset.Witness{ PrevID: &asset.PrevID{}, TxWitness: [][]byte{{0x01}, {0x02}}, @@ -1352,9 +1560,20 @@ func TestAssetExportLog(t *testing.T) { require.NoError(t, err) require.Len(t, allAssets, numAssets) + inputAsset := allAssets[0] + senderAsset := inputAsset.Copy() + senderAsset.ScriptKey = newScriptKey + senderProof := randProof(t, senderAsset) + receiverAsset := inputAsset.Copy() + receiverAsset.ScriptKey = newScriptKey2 + receiverProof := randProof(t, receiverAsset) + + var senderBlob, receiverBlob bytes.Buffer + require.NoError(t, senderProof.Encode(&senderBlob)) + require.NoError(t, receiverProof.Encode(&receiverBlob)) + // With the assets inserted, we'll now construct the struct that will be // used to commit a new spend on disk. - inputAsset := allAssets[0] anchorTxHash := newAnchorTx.TxHash() spendDelta := &tapfreighter.OutboundParcel{ AnchorTx: newAnchorTx, @@ -1409,7 +1628,7 @@ func TestAssetExportLog(t *testing.T) { ), // The receiver wants a V0 asset version. AssetVersion: asset.V0, - ProofSuffix: receiverBlob, + ProofSuffix: receiverBlob.Bytes(), Position: 0, }, { Anchor: tapfreighter.Anchor{ @@ -1444,7 +1663,7 @@ func TestAssetExportLog(t *testing.T) { // As the sender, we'll send our change back to a V1 // asset version. AssetVersion: asset.V1, - ProofSuffix: senderBlob, + ProofSuffix: senderBlob.Bytes(), Position: 1, }}, } @@ -1453,20 +1672,26 @@ func TestAssetExportLog(t *testing.T) { )) assetID := inputAsset.ID() - proofs := map[asset.SerializedKey]*proof.AnnotatedProof{ - asset.ToSerialized(newScriptKey.PubKey): { + receiverIdentifier := tapfreighter.NewOutputIdentifier( + assetID, 0, *newScriptKey.PubKey, + ) + senderIdentifier := tapfreighter.NewOutputIdentifier( + assetID, 0, *newScriptKey2.PubKey, + ) + proofs := map[tapfreighter.OutputIdentifier]*proof.AnnotatedProof{ + receiverIdentifier: { Locator: proof.Locator{ AssetID: &assetID, ScriptKey: *newScriptKey.PubKey, }, - Blob: receiverBlob, + Blob: receiverBlob.Bytes(), }, - asset.ToSerialized(newScriptKey2.PubKey): { + senderIdentifier: { Locator: proof.Locator{ AssetID: &assetID, ScriptKey: *newScriptKey2.PubKey, }, - Blob: senderBlob, + Blob: senderBlob.Bytes(), }, } @@ -1640,7 +1865,7 @@ func TestAssetExportLog(t *testing.T) { TweakedScriptKey: newScriptKey.PubKey.SerializeCompressed(), }) require.NoError(t, err) - require.Equal(t, receiverBlob, diskSenderBlob[0].ProofFile) + require.Equal(t, receiverBlob.Bytes(), diskSenderBlob[0].ProofFile) // If we fetch the chain transaction again, then it should have the // conf information populated. diff --git a/tapdb/sqlc/assets.sql.go b/tapdb/sqlc/assets.sql.go index 5d46b3212..da24689d7 100644 --- a/tapdb/sqlc/assets.sql.go +++ b/tapdb/sqlc/assets.sql.go @@ -658,8 +658,11 @@ WITH asset_info AS ( ON assets.script_key_id = script_keys.script_key_id JOIN managed_utxos utxos ON assets.anchor_utxo_id = utxos.utxo_id + JOIN genesis_assets + ON assets.genesis_id = genesis_assets.gen_asset_id WHERE script_keys.tweaked_script_key = $1 AND (utxos.outpoint = $2 OR $2 IS NULL) + AND (genesis_assets.asset_id = $3 OR $3 IS NULL) ) SELECT asset_info.tweaked_script_key AS script_key, asset_proofs.proof_file, asset_info.asset_id as asset_id, asset_proofs.proof_id as proof_id, @@ -672,6 +675,7 @@ JOIN asset_info type FetchAssetProofParams struct { TweakedScriptKey []byte Outpoint []byte + AssetID []byte } type FetchAssetProofRow struct { @@ -683,7 +687,7 @@ type FetchAssetProofRow struct { } func (q *Queries) FetchAssetProof(ctx context.Context, arg FetchAssetProofParams) ([]FetchAssetProofRow, error) { - rows, err := q.db.QueryContext(ctx, FetchAssetProof, arg.TweakedScriptKey, arg.Outpoint) + rows, err := q.db.QueryContext(ctx, FetchAssetProof, arg.TweakedScriptKey, arg.Outpoint, arg.AssetID) if err != nil { return nil, err } diff --git a/tapdb/sqlc/queries/assets.sql b/tapdb/sqlc/queries/assets.sql index c3252bab8..1d2d1277c 100644 --- a/tapdb/sqlc/queries/assets.sql +++ b/tapdb/sqlc/queries/assets.sql @@ -781,8 +781,11 @@ WITH asset_info AS ( ON assets.script_key_id = script_keys.script_key_id JOIN managed_utxos utxos ON assets.anchor_utxo_id = utxos.utxo_id + JOIN genesis_assets + ON assets.genesis_id = genesis_assets.gen_asset_id WHERE script_keys.tweaked_script_key = $1 AND (utxos.outpoint = sqlc.narg('outpoint') OR sqlc.narg('outpoint') IS NULL) + AND (genesis_assets.asset_id = sqlc.narg('asset_id') OR sqlc.narg('asset_id') IS NULL) ) SELECT asset_info.tweaked_script_key AS script_key, asset_proofs.proof_file, asset_info.asset_id as asset_id, asset_proofs.proof_id as proof_id, diff --git a/tapfreighter/chain_porter.go b/tapfreighter/chain_porter.go index 12686db26..141b741bb 100644 --- a/tapfreighter/chain_porter.go +++ b/tapfreighter/chain_porter.go @@ -521,7 +521,7 @@ func (p *ChainPorter) storeProofs(sendPkg *sendPackage) error { } sendPkg.FinalProofs = make( - map[asset.SerializedKey]*proof.AnnotatedProof, + map[OutputIdentifier]*proof.AnnotatedProof, len(parcel.Outputs), ) for idx := range parcel.Outputs { @@ -556,8 +556,12 @@ func (p *ChainPorter) storeProofs(sendPkg *sendPackage) error { "proof file for output %d: %w", idx, err) } - serializedScriptKey := asset.ToSerialized(out.ScriptKey.PubKey) - sendPkg.FinalProofs[serializedScriptKey] = outputProof + outKey, err := out.UniqueKey() + if err != nil { + return fmt.Errorf("error generating unique key for "+ + "output %d: %w", idx, err) + } + sendPkg.FinalProofs[outKey] = outputProof vCtx := proof.VerifierCtx{ HeaderVerifier: headerVerifier, @@ -878,25 +882,23 @@ func (p *ChainPorter) transferReceiverProof(pkg *sendPackage) error { reportProofTransfers(notDeliveringOutputs, pendingDeliveryOutputs) deliver := func(ctx context.Context, out TransferOutput) error { - key := out.ScriptKey.PubKey - - // We just look for the full proof in the list of final proofs - // by matching the content of the proof suffix. - var receiverProof *proof.AnnotatedProof - for idx := range pkg.FinalProofs { - finalFile := pkg.FinalProofs[idx] - if finalFile.ScriptKey.IsEqual(out.ScriptKey.PubKey) { - receiverProof = finalFile - break - } + scriptKey := out.ScriptKey.PubKey + scriptKeyBytes := scriptKey.SerializeCompressed() + outKey, err := out.UniqueKey() + if err != nil { + return fmt.Errorf("error generating unique key for "+ + "output: %w", err) } - if receiverProof == nil { + + receiverProof, ok := pkg.FinalProofs[outKey] + if !ok { return fmt.Errorf("no proof found for output with "+ - "script key %x", key.SerializeCompressed()) + "script key %x", scriptKeyBytes) } log.Debugf("Attempting to deliver proof (script_key=%x, "+ - "proof_courier_addr=%s)", key.SerializeCompressed(), + "asset_id=%x, proof_courier_addr=%s)", + scriptKeyBytes, receiverProof.AssetID[:], out.ProofCourierAddr) proofCourierAddr, err := proof.ParseCourierAddress( @@ -927,7 +929,7 @@ func (p *ChainPorter) transferReceiverProof(pkg *sendPackage) error { // Deliver proof to proof courier service. recipient := proof.Recipient{ - ScriptKey: key, + ScriptKey: scriptKey, AssetID: *receiverProof.AssetID, Amount: out.Amount, } @@ -978,7 +980,7 @@ func (p *ChainPorter) transferReceiverProof(pkg *sendPackage) error { courierAddr := string(output.ProofCourierAddr) log.Errorf("Error delivering transfer output proof "+ - "(anchor_outpoint=%s, script_pub_key=%v, "+ + "(anchor_outpoint=%s, script_pub_key=%x, "+ "position=%d, proof_courier_addr=%s, "+ "proof_delivery_status=%v): %v", anchorOutpoint, scriptPubKey, output.Position, @@ -990,7 +992,7 @@ func (p *ChainPorter) transferReceiverProof(pkg *sendPackage) error { // if any. var firstErr error fn.PeekMap(instanceErrors).WhenSome(func(kv fn.KV[int, error]) { - firstErr = err + firstErr = kv.Value }) if firstErr != nil { diff --git a/tapfreighter/coin_select.go b/tapfreighter/coin_select.go index b3b49092a..7906ee242 100644 --- a/tapfreighter/coin_select.go +++ b/tapfreighter/coin_select.go @@ -52,10 +52,11 @@ func (s *CoinSelect) SelectCoins(ctx context.Context, } listConstraints := CommitmentConstraints{ - AssetSpecifier: constraints.AssetSpecifier, - MinAmt: 1, - CoinSelectType: constraints.CoinSelectType, - PrevIDs: constraints.PrevIDs, + AssetSpecifier: constraints.AssetSpecifier, + MinAmt: 1, + CoinSelectType: constraints.CoinSelectType, + PrevIDs: constraints.PrevIDs, + DistinctSpecifier: constraints.DistinctSpecifier, } eligibleCommitments, err := s.coinLister.ListEligibleCoins( ctx, listConstraints, diff --git a/tapfreighter/interface.go b/tapfreighter/interface.go index f12aefe16..d39d25730 100644 --- a/tapfreighter/interface.go +++ b/tapfreighter/interface.go @@ -1,10 +1,14 @@ package tapfreighter import ( + "bytes" "context" + "crypto/sha256" + "encoding/binary" "fmt" "time" + "github.com/btcsuite/btcd/btcec/v2" "github.com/btcsuite/btcd/btcutil" "github.com/btcsuite/btcd/btcutil/psbt" "github.com/btcsuite/btcd/chaincfg/chainhash" @@ -40,6 +44,12 @@ type CommitmentConstraints struct { // CoinSelectType is the type of coins that should be selected. CoinSelectType tapsend.CoinSelectType + + // DistinctSpecifier indicates whether we _only_ look at either the + // group key _or_ the asset ID but not both. That means, if the group + // key is set, we ignore the asset ID and allow multiple inputs of the + // same group to be selected. + DistinctSpecifier bool } // AssetBurn holds data related to a burn of an asset. @@ -212,6 +222,23 @@ type Anchor struct { NumPassiveAssets uint32 } +// OutputIdentifier is a key that can be used to uniquely identify a transfer +// output. +type OutputIdentifier [32]byte + +// NewOutputIdentifier creates a new output identifier for the given asset ID, +// output index and script key. This is used to uniquely identify the output +// from the transfer entries in the database. +func NewOutputIdentifier(id asset.ID, outputIndex uint32, + scriptKey btcec.PublicKey) OutputIdentifier { + + keyData := make([]byte, 32+4+len(scriptKey.SerializeCompressed())) + copy(keyData[0:32], id[:]) + binary.BigEndian.PutUint32(keyData[32:36], outputIndex) + copy(keyData[36:], scriptKey.SerializeCompressed()) + return sha256.Sum256(keyData) +} + // TransferOutput represents the database level output to an asset transfer. type TransferOutput struct { // Anchor is the new location of the Taproot Asset commitment referenced @@ -328,6 +355,35 @@ func (out *TransferOutput) ShouldDeliverProof() (bool, error) { return true, nil } +// UniqueKey returns a unique key that can be used to identify the output. +// Because this requires the output proof to be set to extract the asset ID, an +// error is returned if it is not. +func (out *TransferOutput) UniqueKey() (OutputIdentifier, error) { + var zero [32]byte + if len(out.ProofSuffix) == 0 { + return zero, fmt.Errorf("proof suffix not set") + } + + var ( + outProofAsset asset.Asset + inclusionProof proof.TaprootProof + ) + err := proof.SparseDecode( + bytes.NewReader(out.ProofSuffix), + proof.AssetLeafRecord(&outProofAsset), + proof.InclusionProofRecord(&inclusionProof), + ) + if err != nil { + return zero, fmt.Errorf("unable to sparse decode proof: %w", + err) + } + + return NewOutputIdentifier( + outProofAsset.ID(), inclusionProof.OutputIndex, + *out.ScriptKey.PubKey, + ), nil +} + // OutboundParcel represents the database level delta of an outbound Taproot // Asset parcel (outbound spend). A spend will destroy a series of assets listed // as inputs, and re-create them as new outputs. Along the way some assets may @@ -428,7 +484,7 @@ type AssetConfirmEvent struct { // FinalProofs is the set of final full proof chain files that are going // to be stored on disk, one for each output in the outbound parcel. - FinalProofs map[asset.SerializedKey]*proof.AnnotatedProof + FinalProofs map[OutputIdentifier]*proof.AnnotatedProof // PassiveAssetProofFiles is the set of passive asset proof files that // are re-anchored during the parcel confirmation process. diff --git a/tapfreighter/parcel.go b/tapfreighter/parcel.go index efe5f9157..4dcd76a16 100644 --- a/tapfreighter/parcel.go +++ b/tapfreighter/parcel.go @@ -465,8 +465,8 @@ type sendPackage struct { // FinalProofs is the set of final full proof chain files that are going // to be stored on disk, one for each output in the outbound parcel, - // keyed by their script key. - FinalProofs map[asset.SerializedKey]*proof.AnnotatedProof + // keyed by their unique output key (hash of asset ID and script key). + FinalProofs map[OutputIdentifier]*proof.AnnotatedProof // TransferTxConfEvent contains transfer transaction on-chain // confirmation data. diff --git a/tapfreighter/wallet.go b/tapfreighter/wallet.go index 6d952dc7c..e58102a55 100644 --- a/tapfreighter/wallet.go +++ b/tapfreighter/wallet.go @@ -411,10 +411,11 @@ func (f *AssetWallet) FundPacket(ctx context.Context, // send request. We'll map the address to a set of constraints, so we // can use that to do Taproot asset coin selection. constraints := CommitmentConstraints{ - AssetSpecifier: fundDesc.AssetSpecifier, - MinAmt: fundDesc.Amount, - CoinSelectType: fundDesc.CoinSelectType, - PrevIDs: fundDesc.PrevIDs, + AssetSpecifier: fundDesc.AssetSpecifier, + MinAmt: fundDesc.Amount, + CoinSelectType: fundDesc.CoinSelectType, + PrevIDs: fundDesc.PrevIDs, + DistinctSpecifier: fundDesc.DistinctSpecifier, } anchorVersion, err := tappsbt.CommitmentVersion(vPkt.Version) diff --git a/taprpc/assetwalletrpc/assetwallet.swagger.json b/taprpc/assetwalletrpc/assetwallet.swagger.json index 847af4e94..93d6f30d9 100644 --- a/taprpc/assetwalletrpc/assetwallet.swagger.json +++ b/taprpc/assetwalletrpc/assetwallet.swagger.json @@ -1110,6 +1110,10 @@ "proof_delivery_status": { "$ref": "#/definitions/taprpcProofDeliveryStatus", "description": "The delivery status of the proof associated with this output." + }, + "asset_id": { + "type": "string", + "format": "byte" } } }, diff --git a/taprpc/tapchannelrpc/tapchannel.pb.go b/taprpc/tapchannelrpc/tapchannel.pb.go index 00cec6bf0..4c0d2450e 100644 --- a/taprpc/tapchannelrpc/tapchannel.pb.go +++ b/taprpc/tapchannelrpc/tapchannel.pb.go @@ -45,6 +45,10 @@ type FundChannelRequest struct { // is equivalent to a donation to the remote party, unless they reimburse // the funds in another way (outside the protocol). PushSat int64 `protobuf:"varint,5,opt,name=push_sat,json=pushSat,proto3" json:"push_sat,omitempty"` + // The group key to use for the channel. This can be used instead of the + // asset_id to allow assets from a fungible group to be used for the channel + // funding instead of just assets from a single minting tranche (asset_id). + GroupKey []byte `protobuf:"bytes,6,opt,name=group_key,json=groupKey,proto3" json:"group_key,omitempty"` } func (x *FundChannelRequest) Reset() { @@ -114,6 +118,13 @@ func (x *FundChannelRequest) GetPushSat() int64 { return 0 } +func (x *FundChannelRequest) GetGroupKey() []byte { + if x != nil { + return x.GroupKey + } + return nil +} + type FundChannelResponse struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache @@ -922,7 +933,7 @@ var file_tapchannelrpc_tapchannel_proto_rawDesc = []byte{ 0x74, 0x6f, 0x1a, 0x16, 0x72, 0x6f, 0x75, 0x74, 0x65, 0x72, 0x72, 0x70, 0x63, 0x2f, 0x72, 0x6f, 0x75, 0x74, 0x65, 0x72, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x1a, 0x13, 0x74, 0x61, 0x70, 0x72, 0x6f, 0x6f, 0x74, 0x61, 0x73, 0x73, 0x65, 0x74, 0x73, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x22, - 0xc2, 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b76aa7785..9c6f55e79 100644 --- a/taprpc/tapchannelrpc/tapchannel.proto +++ b/taprpc/tapchannelrpc/tapchannel.proto @@ -70,6 +70,11 @@ message FundChannelRequest { // is equivalent to a donation to the remote party, unless they reimburse // the funds in another way (outside the protocol). int64 push_sat = 5; + + // The group key to use for the channel. This can be used instead of the + // asset_id to allow assets from a fungible group to be used for the channel + // funding instead of just assets from a single minting tranche (asset_id). + bytes group_key = 6; } message FundChannelResponse { diff --git a/taprpc/tapchannelrpc/tapchannel.swagger.json b/taprpc/tapchannelrpc/tapchannel.swagger.json index 3b9a6b3b9..e61bfd2ed 100644 --- a/taprpc/tapchannelrpc/tapchannel.swagger.json +++ b/taprpc/tapchannelrpc/tapchannel.swagger.json @@ -1621,6 +1621,11 @@ "type": "string", "format": "int64", "description": "The number of satoshis to give the remote side as part of the initial\ncommitment state. This is equivalent to first opening a channel and then\nsending the remote party funds, but all done in one step. Therefore, this\nis equivalent to a donation to the remote party, unless they reimburse\nthe funds in another way (outside the protocol)." + }, + "group_key": { + "type": "string", + "format": "byte", + "description": "The group key to use for the channel. This can be used instead of the\nasset_id to allow assets from a fungible group to be used for the channel\nfunding instead of just assets from a single minting tranche (asset_id)." } } }, diff --git a/taprpc/taprootassets.pb.go b/taprpc/taprootassets.pb.go index 26fa5f45d..46308b9d6 100644 --- a/taprpc/taprootassets.pb.go +++ b/taprpc/taprootassets.pb.go @@ -3096,6 +3096,7 @@ type TransferOutput struct { RelativeLockTime uint64 `protobuf:"varint,10,opt,name=relative_lock_time,json=relativeLockTime,proto3" json:"relative_lock_time,omitempty"` // The delivery status of the proof associated with this output. ProofDeliveryStatus ProofDeliveryStatus `protobuf:"varint,11,opt,name=proof_delivery_status,json=proofDeliveryStatus,proto3,enum=taprpc.ProofDeliveryStatus" json:"proof_delivery_status,omitempty"` + AssetId []byte `protobuf:"bytes,12,opt,name=asset_id,json=assetId,proto3" json:"asset_id,omitempty"` } func (x *TransferOutput) Reset() { @@ -3207,6 +3208,13 @@ func (x *TransferOutput) GetProofDeliveryStatus() ProofDeliveryStatus { return ProofDeliveryStatus_PROOF_DELIVERY_STATUS_NOT_APPLICABLE } +func (x *TransferOutput) GetAssetId() []byte { + if x != nil { + return x.AssetId + } + return nil +} + type StopRequest struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache @@ -6752,7 +6760,7 @@ var file_taprootassets_proto_rawDesc = []byte{ 0x62, 0x6c, 0x69, 0x6e, 0x67, 0x12, 0x2c, 0x0a, 0x12, 0x6e, 0x75, 0x6d, 0x5f, 0x70, 0x61, 0x73, 0x73, 0x69, 0x76, 0x65, 0x5f, 0x61, 0x73, 0x73, 0x65, 0x74, 0x73, 0x18, 0x07, 0x20, 0x01, 0x28, 0x0d, 0x52, 0x10, 0x6e, 0x75, 0x6d, 0x50, 0x61, 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index 1fbe7db67..2d33bf185 100644 --- a/taprpc/taprootassets.proto +++ b/taprpc/taprootassets.proto @@ -824,6 +824,8 @@ message TransferOutput { // The delivery status of the proof associated with this output. ProofDeliveryStatus proof_delivery_status = 11; + + bytes asset_id = 12; } message StopRequest { diff --git a/taprpc/taprootassets.swagger.json b/taprpc/taprootassets.swagger.json index b9333bd14..0f01c129f 100644 --- a/taprpc/taprootassets.swagger.json +++ b/taprpc/taprootassets.swagger.json @@ -2410,6 +2410,10 @@ "proof_delivery_status": { "$ref": "#/definitions/taprpcProofDeliveryStatus", "description": "The delivery status of the proof associated with this output." + }, + "asset_id": { + "type": "string", + "format": "byte" } } }, diff --git a/tapscript/script.go b/tapscript/script.go index 571949146..143dc4cc6 100644 --- a/tapscript/script.go +++ b/tapscript/script.go @@ -1,7 +1,11 @@ package tapscript import ( + "fmt" + "github.com/btcsuite/btcd/txscript" + "github.com/btcsuite/btcd/wire" + "github.com/lightninglabs/taproot-assets/asset" "github.com/lightningnetwork/lnd/input" ) @@ -48,3 +52,87 @@ func NewChannelFundingScriptTree() *FundingScriptTree { }, } } + +// NewChannelFundingScriptTreeUniqueID creates a new funding script tree for a +// custom channel asset-level script key. The script tree is constructed with a +// simple OP_TRUE script that allows anyone to spend the output and another +// OP_RETURN script that makes the resulting script key unique. This simplifies +// the funding process as no signatures for the asset-level witnesses need to be +// exchanged. This is still safe because the BTC level multi-sig output is still +// protected by a 2-of-2 MuSig2 output. +func NewChannelFundingScriptTreeUniqueID(id asset.ID) (*FundingScriptTree, + error) { + + // First, we'll generate our OP_TRUE script. + fundingScript := AnyoneCanSpendScript() + fundingTapLeaf := txscript.NewBaseTapLeaf(fundingScript) + + // Then we'll create the OP_RETURN leaf with the asset ID to make the + // resulting script key unique. + opReturnLeaf, err := asset.NewNonSpendableScriptLeaf( + asset.OpReturnVersion, id[:], + ) + if err != nil { + return nil, fmt.Errorf("error deriving op return leaf: %w", err) + } + + // With the both scripts derived, we'll now create the tapscript tree + // from them. + tapscriptTree := txscript.AssembleTaprootScriptTree( + fundingTapLeaf, opReturnLeaf, + ) + tapScriptRoot := tapscriptTree.RootNode.TapHash() + + // Finally, we'll make the funding output script which actually uses a + // NUMS key to force a script path only. + fundingOutputKey := txscript.ComputeTaprootOutputKey( + &input.TaprootNUMSKey, tapScriptRoot[:], + ) + + return &FundingScriptTree{ + ScriptTree: input.ScriptTree{ + InternalKey: &input.TaprootNUMSKey, + TaprootKey: fundingOutputKey, + TapscriptTree: tapscriptTree, + TapscriptRoot: tapScriptRoot[:], + }, + }, nil +} + +// ChannelFundingSpendWitness creates a complete witness to spend the OP_TRUE +// funding script of an asset funding output. +func ChannelFundingSpendWitness(uniqueScriptKeys bool, + assetID asset.ID) (wire.TxWitness, error) { + + fundingScriptTree := NewChannelFundingScriptTree() + + // If we're using unique script keys for multiple virtual packets with + // different asset IDs, we need to derive a specific script tree that + // includes the asset ID. Everything else should still work the same + // way (the OP_TRUE leaf we spend is still at index zero). + if uniqueScriptKeys { + var err error + fundingScriptTree, err = NewChannelFundingScriptTreeUniqueID( + assetID, + ) + if err != nil { + return nil, fmt.Errorf("unable to create unique "+ + "script key: %w", err) + } + } + + const opTrueIndex = 0 + tapscriptTree := fundingScriptTree.TapscriptTree + ctrlBlock := tapscriptTree.LeafMerkleProofs[opTrueIndex].ToControlBlock( + &input.TaprootNUMSKey, + ) + ctrlBlockBytes, err := ctrlBlock.ToBytes() + if err != nil { + return nil, fmt.Errorf("unable to serialize control "+ + "block: %w", err) + } + + return wire.TxWitness{ + AnyoneCanSpendScript(), ctrlBlockBytes, + }, nil +} diff --git a/tapsend/allocation.go b/tapsend/allocation.go index d28c3b6e3..31a48be73 100644 --- a/tapsend/allocation.go +++ b/tapsend/allocation.go @@ -58,6 +58,13 @@ var ( ErrScriptKeyGenMissing = errors.New( "script key generator function not set for asset allocation", ) + + // ErrNoSplitRoot is returned if a non-interactive send doesn't specify + // which output should house the split root asset. + ErrNoSplitRoot = errors.New( + "non-interactive transfers must specify which output should " + + "house the split root asset", + ) ) // AllocationType is an enum that defines the different types of asset @@ -446,13 +453,27 @@ func DistributeCoins(inputs []*proof.Proof, allocations []*Allocation, // Sum up the amounts that are to be allocated to the outputs. We also // validate that all the required fields are set and no conflicting // fields are set. - var outputSum uint64 + var ( + outputSum uint64 + haveSplitRoot bool + ) for _, allocation := range allocations { if err := allocation.Validate(); err != nil { return nil, fmt.Errorf("invalid allocation: %w", err) } outputSum += allocation.Amount + haveSplitRoot = haveSplitRoot || allocation.SplitRoot + } + + // Non-interactive transfers need to specify which output should house + // the split root asset. Because that will need to be the output that + // goes back to the sender (or to a zero-amount tombstone output the + // sender owns the internal key for). But in interactive transfers, + // it doesn't matter which output houses the split root asset, we'll + // just assign one later if needed. + if !interactive && !haveSplitRoot { + return nil, ErrNoSplitRoot } // Asset change must be allocated upfront as well. We expect the sum of @@ -544,6 +565,23 @@ func DistributeCoins(inputs []*proof.Proof, allocations []*Allocation, return nil, err } + // If we're doing a non-interactive transfer, we're done here. + if !interactive { + return packets, nil + } + + // For interactive packets we will now assign a split root output (if + // needed). + for _, vPkt := range packets { + // If we have more than 1 output (meaning we are going to split + // the assets), and we don't have a split root output yet, we + // select the first output to be the split root. In interactive + // transfers it doesn't really matter which output is selected. + if len(vPkt.Outputs) > 1 && !vPkt.HasSplitRootOutput() { + vPkt.Outputs[0].Type = tappsbt.TypeSplitRoot + } + } + return packets, nil } diff --git a/tapsend/allocation_test.go b/tapsend/allocation_test.go index 13d59b1b8..85d3f4dbf 100644 --- a/tapsend/allocation_test.go +++ b/tapsend/allocation_test.go @@ -116,6 +116,23 @@ func TestDistributeCoinsErrors(t *testing.T) { }}, testParams, true, tappsbt.V1, ) require.ErrorIs(t, err, ErrScriptKeyGenMissing) + + _, err = DistributeCoins( + []*proof.Proof{proofNormal}, []*Allocation{{ + Type: CommitAllocationToLocal, + Amount: assetNormal.Amount / 2, + GenScriptKey: StaticScriptKeyGen( + asset.RandScriptKey(t), + ), + }, { + Type: CommitAllocationToRemote, + Amount: assetNormal.Amount / 2, + GenScriptKey: StaticScriptKeyGen( + asset.RandScriptKey(t), + ), + }}, testParams, false, tappsbt.V1, + ) + require.ErrorIs(t, err, ErrNoSplitRoot) } func TestDistributeCoins(t *testing.T) { @@ -128,6 +145,8 @@ func TestDistributeCoins(t *testing.T) { assetID1 := grindAssetID(t, 0x01) assetID2 := grindAssetID(t, 0x02) assetID3 := grindAssetID(t, 0x03) + assetID4 := grindAssetID(t, 0x04) + assetID5 := grindAssetID(t, 0x05) assetID1Tranche1 := asset.NewAssetNoErr( t, assetID1, 100, 0, 0, asset.RandScriptKey(t), groupKey, @@ -159,6 +178,13 @@ func TestDistributeCoins(t *testing.T) { t, assetID3, 30000, 0, 0, asset.RandScriptKey(t), groupKey, ) + assetID4Tranche1 := asset.NewAssetNoErr( + t, assetID4, 25000, 0, 0, asset.RandScriptKey(t), groupKey, + ) + assetID5Tranche1 := asset.NewAssetNoErr( + t, assetID5, 25000, 0, 0, asset.RandScriptKey(t), groupKey, + ) + var ( simple = tappsbt.TypeSimple split = tappsbt.TypeSplitRoot @@ -717,6 +743,140 @@ func TestDistributeCoins(t *testing.T) { }, }, }, + { + name: "lots of assets, interactive, no split root", + inputs: []*proof.Proof{ + makeProof(t, assetID1Tranche1), + makeProof(t, assetID1Tranche2), + makeProof(t, assetID1Tranche3), + makeProof(t, assetID2Tranche1), + makeProof(t, assetID2Tranche2), + makeProof(t, assetID2Tranche3), + makeProof(t, assetID3Tranche1), + makeProof(t, assetID3Tranche2), + makeProof(t, assetID3Tranche3), + }, + interactive: true, + allocations: []*Allocation{ + { + Type: CommitAllocationToLocal, + Amount: 3600, + }, + { + Type: CommitAllocationToRemote, + Amount: 63000, + OutputIndex: 1, + }, + }, + expectedInputs: map[asset.ID][]asset.ScriptKey{ + assetID1.ID(): { + assetID1Tranche1.ScriptKey, + assetID1Tranche2.ScriptKey, + assetID1Tranche3.ScriptKey, + }, + assetID2.ID(): { + assetID2Tranche1.ScriptKey, + assetID2Tranche2.ScriptKey, + assetID2Tranche3.ScriptKey, + }, + assetID3.ID(): { + assetID3Tranche1.ScriptKey, + assetID3Tranche2.ScriptKey, + assetID3Tranche3.ScriptKey, + }, + }, + expectedOutputs: map[asset.ID][]*tappsbt.VOutput{ + assetID1.ID(): { + { + Amount: 600, + Type: simple, + Interactive: true, + AnchorOutputIndex: 0, + }, + }, + assetID2.ID(): { + { + Amount: 3000, + Type: split, + Interactive: true, + AnchorOutputIndex: 0, + }, + { + Amount: 3000, + Type: simple, + Interactive: true, + AnchorOutputIndex: 1, + }, + }, + assetID3.ID(): { + { + Amount: 60000, + Type: simple, + Interactive: true, + AnchorOutputIndex: 1, + }, + }, + }, + }, + { + name: "multiple allocations, no split root defined", + inputs: []*proof.Proof{ + makeProof(t, assetID4Tranche1), + makeProof(t, assetID5Tranche1), + }, + interactive: true, + //nolint:lll + allocations: []*Allocation{ + { + Type: CommitAllocationHtlcOutgoing, + Amount: 5000, + OutputIndex: 2, + }, + { + Type: CommitAllocationToLocal, + Amount: 20000, + OutputIndex: 3, + }, + { + Type: CommitAllocationToRemote, + Amount: 25000, + OutputIndex: 4, + }, + }, + vPktVersion: tappsbt.V1, + expectedInputs: map[asset.ID][]asset.ScriptKey{ + assetID4.ID(): { + assetID4Tranche1.ScriptKey, + }, + assetID5.ID(): { + assetID5Tranche1.ScriptKey, + }, + }, + expectedOutputs: map[asset.ID][]*tappsbt.VOutput{ + assetID4.ID(): { + { + Amount: 5000, + Type: split, + Interactive: true, + AnchorOutputIndex: 2, + }, + { + Amount: 20000, + Type: simple, + Interactive: true, + AnchorOutputIndex: 3, + }, + }, + assetID5.ID(): { + { + Amount: 25000, + Type: simple, + Interactive: true, + AnchorOutputIndex: 4, + }, + }, + }, + }, } for _, tc := range testCases { diff --git a/tapsend/send.go b/tapsend/send.go index fbf64aad3..4bcb46d7d 100644 --- a/tapsend/send.go +++ b/tapsend/send.go @@ -208,6 +208,12 @@ type FundingDescriptor struct { // CoinSelectType specifies the type of coins that should be selected. CoinSelectType CoinSelectType + + // DistinctSpecifier indicates whether we _only_ look at either the + // group key _or_ the asset ID but not both. That means, if the group + // key is set, we ignore the asset ID and allow multiple inputs of the + // same group to be selected. + DistinctSpecifier bool } // TapCommitmentKey is the key that maps to the root commitment for the asset @@ -348,9 +354,6 @@ func PrepareOutputAssets(ctx context.Context, vPkt *tappsbt.VPacket) error { totalInputAmount uint64 // Inspect first asset to determine all input asset IDs. - // - // TODO(ffranr): Add support for multiple different input asset - // IDs. assetID = inputs[0].Asset().ID() // Inspect first asset to determine all input asset types. @@ -387,10 +390,9 @@ func PrepareOutputAssets(ctx context.Context, vPkt *tappsbt.VPacket) error { OutPoint: vIn.PrevID.OutPoint, } - // TODO(ffranr): Right now, we only support a single input or - // multiple inputs with the same asset ID. We need to support - // multiple input assets from the same group but do not - // necessarily share the same asset ID. + // A single virtual packet can only contain assets with the same + // ID. For different fungible assets, distinct virtual packets + // need to be created. if idx > 0 && inputs[idx].Asset().ID() != assetID { return fmt.Errorf("multiple input assets " + "must have the same asset ID") diff --git a/universe/base.go b/universe/base.go index f0ad77a6e..d1c503505 100644 --- a/universe/base.go +++ b/universe/base.go @@ -292,9 +292,7 @@ func (a *Archive) UpsertProofLeaf(ctx context.Context, id Identifier, // Before we can validate a non-issuance proof we need to fetch the // previous asset snapshot (which is the proof verification result for // the previous/parent proof in the proof file). - prevAssetSnapshot, err := a.getPrevAssetSnapshot( - ctx, id, newAsset, nil, - ) + prevAssetSnapshot, err := a.getPrevAssetSnapshot(ctx, id, newAsset, nil) if err != nil { return nil, fmt.Errorf("unable to fetch previous asset "+ "snapshot: %w", err) @@ -577,9 +575,7 @@ func (a *Archive) getPrevAssetSnapshot(ctx context.Context, } // Parse script key for previous asset. - prevScriptKeyPubKey, err := btcec.ParsePubKey( - prevID.ScriptKey[:], - ) + prevScriptKeyPubKey, err := btcec.ParsePubKey(prevID.ScriptKey[:]) if err != nil { return nil, fmt.Errorf("unable to parse previous "+ "script key: %w", err)