321 lines
10 KiB
Go
321 lines
10 KiB
Go
package wallet
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import (
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"fmt"
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"math/big"
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"github.com/btcsuite/btcd/btcutil/base58"
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"github.com/phamminh0811/private-grpc/crypto"
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"github.com/phamminh0811/private-grpc/nockchain"
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)
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var LastName = [5]uint64{9541855607561054508, 12383849149342406623, 11220017934615522559, 678840671137489369, 8985908938884028381}
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func HashPubkey(pkPoint crypto.CheetahPoint) [5]uint64 {
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belts := []crypto.Belt{{Value: 13}}
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belts = append(belts, pkPoint.X[:]...)
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belts = append(belts, pkPoint.Y[:]...)
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belts = append(belts, crypto.BELT_ONE)
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for _, i := range crypto.MagicDyckForPoint {
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belts = append(belts, crypto.Belt{Value: i})
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}
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return crypto.Tip5HashBelts(belts)
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}
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func HashSignature(signature *nockchain.NockchainSignature) ([5]uint64, error) {
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belts := []crypto.Belt{{Value: 16}}
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for _, i := range signature.Chal {
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belts = append(belts, crypto.Belt{Value: i})
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}
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for _, i := range signature.Sig {
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belts = append(belts, crypto.Belt{Value: i})
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}
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for _, i := range crypto.MagicDyckForT8 {
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belts = append(belts, crypto.Belt{Value: i})
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}
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sigHash := crypto.Tip5HashBelts(belts)
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pkPoint, err := crypto.CheetaPointFromBytes(base58.Decode(signature.Pubkey))
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if err != nil {
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return [5]uint64{}, err
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}
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pkHash := HashPubkey(pkPoint)
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sigHash = crypto.Tip5RehashTenCell(pkHash, sigHash)
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sigHash = crypto.Tip5RehashTenCell(sigHash, crypto.Tip5ZeroZero)
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return crypto.Tip5RehashTenCell(crypto.Tip5Zero, sigHash), nil
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}
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func HashOwner(pkPoint crypto.CheetahPoint) [5]uint64 {
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pkHashedBelts := HashPubkey(pkPoint)
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pkHashedZeroZero := crypto.Tip5RehashTenCell(pkHashedBelts, crypto.Tip5ZeroZero)
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return crypto.Tip5RehashTenCell(crypto.Tip5One, pkHashedZeroZero)
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}
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func NockName(ownerHash [5]uint64) ([5]uint64, [5]uint64) {
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firstName := first(ownerHash)
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return firstName, LastName
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}
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func HashName(name *nockchain.NockchainName) [5]uint64 {
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firstNameHash := crypto.Base58ToTip5Hash(name.First)
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lastNameHash := crypto.Base58ToTip5Hash(name.Last)
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return crypto.Tip5RehashTenCell(firstNameHash, crypto.Tip5RehashTenCell(lastNameHash, crypto.Tip5Zero))
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}
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func HashNote(note *nockchain.NockchainNote) ([5]uint64, error) {
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versionHash := crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: uint64(note.Version)}})
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blockHash := crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: note.BlockHeight}})
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timelockHash := HashTimelockIntent(note.Timelock)
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hashBlockTimeLock := crypto.Tip5RehashTenCell(blockHash, timelockHash)
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p := crypto.Tip5RehashTenCell(versionHash, hashBlockTimeLock)
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nameHash := HashName(note.Name)
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lockHash, err := HashLock(note.Lock)
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if err != nil {
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return [5]uint64{}, err
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}
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sourceHash := HashSource(note.Source)
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assetHash := crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: uint64(note.Asset)}})
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hashSourceAsset := crypto.Tip5RehashTenCell(sourceHash, assetHash)
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q := crypto.Tip5RehashTenCell(nameHash, crypto.Tip5RehashTenCell(lockHash, hashSourceAsset))
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return crypto.Tip5RehashTenCell(p, q), nil
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}
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func HashTimelockIntent(timelock *nockchain.TimelockIntent) [5]uint64 {
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if timelock == nil {
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return crypto.Tip5Zero
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}
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if timelock.Absolute == nil && timelock.Relative == nil {
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return crypto.Tip5ZeroZero
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}
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absoluteHash := HashTimelockRange(timelock.Absolute)
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relativeHash := HashTimelockRange(timelock.Relative)
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return crypto.Tip5RehashTenCell(absoluteHash, relativeHash)
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}
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func HashTimelockRange(timelockRange *nockchain.TimelockRange) [5]uint64 {
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hash := crypto.Tip5Zero
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if timelockRange != nil {
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minHash := crypto.Tip5Zero
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if timelockRange.Min != nil {
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minHash = crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: timelockRange.Min.Value}})
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}
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maxHash := crypto.Tip5Zero
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if timelockRange.Max != nil {
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maxHash = crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: timelockRange.Max.Value}})
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}
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hash = crypto.Tip5RehashTenCell(minHash, maxHash)
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}
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return hash
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}
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func HashLock(lock *nockchain.NockchainLock) ([5]uint64, error) {
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keysRequiredHash := crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: lock.KeysRequired}})
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finalPk := base58.Decode(lock.Pubkeys[lock.KeysRequired-1])
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finalPkPoint, err := crypto.CheetaPointFromBytes(finalPk)
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if err != nil {
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return [5]uint64{}, err
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}
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finalPkHash := HashPubkey(finalPkPoint)
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finalHash := crypto.Tip5RehashTenCell(finalPkHash, crypto.Tip5ZeroZero)
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if lock.KeysRequired != 1 {
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for i := uint64(1); i < lock.KeysRequired; i++ {
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pk := base58.Decode(lock.Pubkeys[lock.KeysRequired-1-i])
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pkPoint, err := crypto.CheetaPointFromBytes(pk)
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if err != nil {
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return [5]uint64{}, err
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}
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pkHash := HashPubkey(pkPoint)
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finalHash = crypto.Tip5RehashTenCell(pkHash, finalHash)
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}
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}
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return crypto.Tip5RehashTenCell(keysRequiredHash, finalHash), nil
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}
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func HashSource(source *nockchain.NockchainSource) [5]uint64 {
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if source == nil {
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return crypto.Tip5Zero
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}
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sourceHash := crypto.Base58ToTip5Hash(source.Source)
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if source.IsCoinbase {
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return crypto.Tip5RehashTenCell(sourceHash, crypto.Tip5One)
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} else {
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return crypto.Tip5RehashTenCell(sourceHash, crypto.Tip5Zero)
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}
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}
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func HashSeedWithoutSource(seed *nockchain.NockchainSeed) ([5]uint64, error) {
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lockHash, err := HashLock(seed.Recipient)
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if err != nil {
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return [5]uint64{}, nil
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}
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timelockIntentHash := HashTimelockIntent(seed.TimelockIntent)
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assetHash := crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: seed.Gift}})
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parentHash := crypto.Base58ToTip5Hash(seed.ParentHash)
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assetHashparentHash := crypto.Tip5RehashTenCell(assetHash, parentHash)
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timelockHashAssetParentHash := crypto.Tip5RehashTenCell(timelockIntentHash, assetHashparentHash)
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seedHash := crypto.Tip5RehashTenCell(lockHash, timelockHashAssetParentHash)
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return seedHash, nil
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}
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func HashSeed(seed *nockchain.NockchainSeed) ([5]uint64, error) {
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seedHash, err := HashSeedWithoutSource(seed)
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if err != nil {
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return [5]uint64{}, nil
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}
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sourceHash := HashSource(seed.OutputSource)
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return crypto.Tip5RehashTenCell(sourceHash, seedHash), nil
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}
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func HashNonce(pkPoint crypto.CheetahPoint, message [5]uint64) ([]crypto.Belt, [5]uint64) {
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belts := []crypto.Belt{}
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for _, belt := range pkPoint.X {
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belts = append(belts, belt)
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}
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for _, belt := range pkPoint.Y {
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belts = append(belts, belt)
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}
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for _, belt := range message {
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belts = append(belts, crypto.Belt{Value: belt})
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}
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resBelts := make([]crypto.Belt, len(belts))
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copy(resBelts, belts)
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return resBelts, crypto.Tip5HashBelts(belts)
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}
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func HashSpend(spend *nockchain.NockchainSpend) ([5]uint64, error) {
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// TODO: handle multiple sig
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if len(spend.Signatures) == 0 {
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return [5]uint64{}, fmt.Errorf("signatures can not be empty")
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}
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sigHash, err := HashSignature(spend.Signatures[0])
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if err != nil {
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return [5]uint64{}, err
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}
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seedsCount := len(spend.Seeds)
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finalSeedHash, err := HashSeedWithoutSource(spend.Seeds[seedsCount-1])
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if err != nil {
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return [5]uint64{}, err
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}
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finalSeedHash = crypto.Tip5RehashTenCell(finalSeedHash, crypto.Tip5ZeroZero)
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finalSeedHash = crypto.Tip5RehashTenCell(finalSeedHash, crypto.Tip5Zero)
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if seedsCount != 1 {
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for i := 1; i < seedsCount; i++ {
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seedHash, err := HashSeedWithoutSource(spend.Seeds[seedsCount-1-i])
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if err != nil {
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return [5]uint64{}, err
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}
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finalSeedHash = crypto.Tip5RehashTenCell(seedHash, finalSeedHash)
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}
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}
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feeHash := crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: spend.Fee}})
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seedHashFee := crypto.Tip5RehashTenCell(finalSeedHash, feeHash)
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return crypto.Tip5RehashTenCell(sigHash, seedHashFee), nil
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}
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func HashMsg(spend *nockchain.NockchainSpend) ([5]uint64, error) {
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seedsCount := len(spend.Seeds)
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finalSeedHash, err := HashSeed(spend.Seeds[seedsCount-1])
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if err != nil {
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return [5]uint64{}, err
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}
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finalSeedHash = crypto.Tip5RehashTenCell(finalSeedHash, crypto.Tip5ZeroZero)
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finalSeedHash = crypto.Tip5RehashTenCell(finalSeedHash, crypto.Tip5Zero)
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if seedsCount != 1 {
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for i := 1; i < seedsCount; i++ {
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seedHash, err := HashSeed(spend.Seeds[seedsCount-1-i])
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if err != nil {
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return [5]uint64{}, err
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}
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finalSeedHash = crypto.Tip5RehashTenCell(seedHash, finalSeedHash)
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}
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}
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feeHash := crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: spend.Fee}})
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return crypto.Tip5RehashTenCell(finalSeedHash, feeHash), nil
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}
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func HashInput(input *nockchain.NockchainInput) ([5]uint64, error) {
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nameHash := HashName(input.Name)
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noteHash, err := HashNote(input.Note)
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if err != nil {
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return [5]uint64{}, err
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}
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spendHash, err := HashSpend(input.Spend)
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if err != nil {
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return [5]uint64{}, err
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}
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hashNoteSpend := crypto.Tip5RehashTenCell(noteHash, spendHash)
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inputHash := crypto.Tip5RehashTenCell(nameHash, hashNoteSpend)
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return crypto.Tip5RehashTenCell(inputHash, crypto.Tip5ZeroZero), nil
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}
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func ComputeTxId(inputs []*nockchain.NockchainInput, timelockRange *nockchain.TimelockRange, totalFees uint64) ([5]uint64, error) {
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// TODO: do it with multiple intputs
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input := inputs[0]
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inputHash, err := HashInput(input)
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if err != nil {
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return [5]uint64{}, err
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}
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timelockHash := HashTimelockRange(timelockRange)
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totalFeesHash := crypto.Tip5HashBelts([]crypto.Belt{{Value: 1}, {Value: totalFees}})
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q := crypto.Tip5RehashTenCell(timelockHash, totalFeesHash)
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return crypto.Tip5RehashTenCell(inputHash, q), nil
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}
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func ComputeSig(m crypto.MasterKey, msg [5]uint64) ([8]uint64, [8]uint64, error) {
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pkPoint, err := crypto.CheetaPointFromBytes(m.PublicKey)
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if err != nil {
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return [8]uint64{}, [8]uint64{}, err
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}
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belts, nonce := HashNonce(pkPoint, msg)
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nonceBigInt := crypto.TruncGOrder(nonce)
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scalar := crypto.CheetahScaleBig(crypto.A_GEN, *nonceBigInt)
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scalarBelts := []crypto.Belt{}
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scalarBelts = append(scalarBelts, scalar.X[:]...)
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scalarBelts = append(scalarBelts, scalar.Y[:]...)
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belts = append(scalarBelts, belts...)
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chal := crypto.Tip5HashBelts(belts)
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chalBigInt := crypto.TruncGOrder(chal)
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skBigInt := new(big.Int).SetBytes(m.PrivateKey)
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sig := new(big.Int).Mul(chalBigInt, skBigInt)
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sig.Add(sig, nonceBigInt)
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sig.Mod(sig, crypto.G_ORDER)
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chalT8 := crypto.BigIntToT8(*chalBigInt)
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sigT8 := crypto.BigIntToT8(*sig)
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return chalT8, sigT8, nil
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}
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func first(ownerHash [5]uint64) [5]uint64 {
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ownerHashZero := crypto.Tip5RehashTenCell(ownerHash, crypto.Tip5Zero)
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ownerHashZeroOne := crypto.Tip5RehashTenCell(crypto.Tip5One, ownerHashZero)
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return crypto.Tip5RehashTenCell(crypto.Tip5Zero, ownerHashZeroOne)
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}
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