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package common
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import (
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"math/big"
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ethCommon "github.com/ethereum/go-ethereum/common"
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"github.com/iden3/go-iden3-crypto/babyjub"
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)
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const (
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fromBJJCompressedB = 256
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fromEthAddrB = 160
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f16B = 16
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tokenIDB = 32
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cidXB = 32
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)
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// L1Tx is a struct that represents a L1 tx
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type L1Tx struct {
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// Stored in DB: mandatory fileds
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TxID TxID
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ToForgeL1TxsNum uint32 // toForgeL1TxsNum in which the tx was forged / will be forged
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Position int
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UserOrigin bool // true if the tx was originated by a user, false if it was aoriginated by a coordinator. Note that this differ from the spec for implementation simplification purpposes
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FromIdx Idx // FromIdx is used by L1Tx/Deposit to indicate the Idx receiver of the L1Tx.LoadAmount (deposit)
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FromEthAddr ethCommon.Address
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FromBJJ *babyjub.PublicKey
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ToIdx Idx // ToIdx is ignored in L1Tx/Deposit, but used in the L1Tx/DepositAndTransfer
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TokenID TokenID
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Amount *big.Int
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LoadAmount *big.Int
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EthBlockNum int64 // Ethereum Block Number in which this L1Tx was added to the queue
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Type TxType
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BatchNum BatchNum
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}
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// Tx returns a *Tx from the L1Tx
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func (tx *L1Tx) Tx() *Tx {
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f := new(big.Float).SetInt(tx.Amount)
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amountFloat, _ := f.Float64()
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genericTx := &Tx{
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IsL1: true,
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TxID: tx.TxID,
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Type: tx.Type,
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Position: tx.Position,
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FromIdx: tx.FromIdx,
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ToIdx: tx.ToIdx,
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Amount: tx.Amount,
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AmountFloat: amountFloat,
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TokenID: tx.TokenID,
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ToForgeL1TxsNum: tx.ToForgeL1TxsNum,
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UserOrigin: tx.UserOrigin,
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FromEthAddr: tx.FromEthAddr,
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FromBJJ: tx.FromBJJ,
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LoadAmount: tx.LoadAmount,
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EthBlockNum: tx.EthBlockNum,
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}
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if tx.LoadAmount != nil {
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lf := new(big.Float).SetInt(tx.LoadAmount)
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loadAmountFloat, _ := lf.Float64()
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genericTx.LoadAmountFloat = loadAmountFloat
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}
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return genericTx
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}
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// Bytes encodes a L1Tx into []byte
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func (tx *L1Tx) Bytes(nLevels int) []byte {
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res := big.NewInt(0)
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res = res.Add(res, big.NewInt(0).Or(big.NewInt(0), tx.ToIdx.BigInt()))
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res = res.Add(res, big.NewInt(0).Lsh(big.NewInt(0).Or(big.NewInt(0), big.NewInt(int64(tx.TokenID))), uint(nLevels)))
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res = res.Add(res, big.NewInt(0).Lsh(big.NewInt(0).Or(big.NewInt(0), tx.Amount), uint(nLevels+tokenIDB)))
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res = res.Add(res, big.NewInt(0).Lsh(big.NewInt(0).Or(big.NewInt(0), tx.LoadAmount), uint(nLevels+tokenIDB+f16B)))
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res = res.Add(res, big.NewInt(0).Lsh(big.NewInt(0).Or(big.NewInt(0), tx.FromIdx.BigInt()), uint(nLevels+tokenIDB+2*f16B)))
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fromBJJ := big.NewInt(0)
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fromBJJ.SetString(tx.FromBJJ.String(), 16)
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fromBJJCompressed := big.NewInt(0).Or(big.NewInt(0), fromBJJ)
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res = res.Add(res, big.NewInt(0).Lsh(fromBJJCompressed, uint(2*nLevels+tokenIDB+2*f16B)))
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fromEthAddr := big.NewInt(0).Or(big.NewInt(0), tx.FromEthAddr.Hash().Big())
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res = res.Add(res, big.NewInt(0).Lsh(fromEthAddr, uint(fromBJJCompressedB+2*nLevels+tokenIDB+2*f16B)))
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return res.Bytes()
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}
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// L1TxFromBytes decodes a L1Tx from []byte
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func L1TxFromBytes(l1TxEncoded []byte) (*L1Tx, error) {
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l1Tx := &L1Tx{}
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var idxB uint = cidXB
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l1TxEncodedBI := big.NewInt(0)
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l1TxEncodedBI.SetBytes(l1TxEncoded)
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toIdx, err := IdxFromBigInt(extract(l1TxEncodedBI, 0, idxB))
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if err != nil {
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return nil, err
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}
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l1Tx.ToIdx = toIdx
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l1Tx.TokenID = TokenID(extract(l1TxEncodedBI, idxB, tokenIDB).Uint64())
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l1Tx.Amount = extract(l1TxEncodedBI, idxB+tokenIDB, f16B)
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l1Tx.LoadAmount = extract(l1TxEncodedBI, idxB+tokenIDB+f16B, f16B)
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fromIdx, err := IdxFromBigInt(extract(l1TxEncodedBI, idxB+tokenIDB+2*f16B, f16B))
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if err != nil {
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return nil, err
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}
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l1Tx.FromIdx = fromIdx
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var pkComp babyjub.PublicKeyComp
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copy(pkComp[:], extract(l1TxEncodedBI, 2*idxB+tokenIDB+2*f16B, fromBJJCompressedB).Bytes())
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pk, err := pkComp.Decompress()
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if err != nil {
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return nil, err
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}
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l1Tx.FromBJJ = pk
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l1Tx.FromEthAddr = ethCommon.BigToAddress(extract(l1TxEncodedBI, fromBJJCompressedB+2*idxB+tokenIDB+2*f16B, fromEthAddrB))
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return l1Tx, nil
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}
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// extract masks and shifts a bigInt
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func extract(num *big.Int, origin uint, len uint) *big.Int {
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mask := big.NewInt(0).Sub(big.NewInt(0).Lsh(big.NewInt(1), len), big.NewInt(1))
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return big.NewInt(0).And(big.NewInt(0).Rsh(num, origin), mask)
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}
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