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package transakcio
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import (
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"crypto/ecdsa"
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"math/big"
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"strconv"
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"strings"
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"time"
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ethCommon "github.com/ethereum/go-ethereum/common"
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ethCrypto "github.com/ethereum/go-ethereum/crypto"
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"github.com/hermeznetwork/hermez-node/common"
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"github.com/hermeznetwork/hermez-node/log"
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"github.com/iden3/go-iden3-crypto/babyjub"
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)
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// TestContext contains the data of the test
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type TestContext struct {
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Instructions []instruction
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accountsNames []string
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Users map[string]*User
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TokenIDs []common.TokenID
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l1CreatedAccounts map[string]*Account
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}
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// NewTestContext returns a new TestContext
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func NewTestContext() *TestContext {
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return &TestContext{
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Users: make(map[string]*User),
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l1CreatedAccounts: make(map[string]*Account),
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}
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}
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// Account contains the data related to the account for a specific TokenID of a User
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type Account struct {
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Idx common.Idx
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Nonce common.Nonce
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}
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// User contains the data related to a testing user
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type User struct {
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BJJ *babyjub.PrivateKey
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Addr ethCommon.Address
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Accounts map[common.TokenID]*Account
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}
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// BlockData contains the information of a Block
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type BlockData struct {
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// block *common.Block // ethereum block
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// L1UserTxs that were submitted in the block
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L1UserTxs []common.L1Tx
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Batches []BatchData
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RegisteredTokens []common.Token
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}
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// BatchData contains the information of a Batch
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type BatchData struct {
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L1Batch bool // TODO: Remove once Batch.ForgeL1TxsNum is a pointer
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// L1UserTxs that were forged in the batch
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L1UserTxs []common.L1Tx
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L1CoordinatorTxs []common.L1Tx
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L2Txs []common.L2Tx
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CreatedAccounts []common.Account
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ExitTree []common.ExitInfo
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Batch *common.Batch
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}
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// GenerateBlocks returns an array of BlockData for a given set. It uses the
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// accounts (keys & nonces) of the TestContext.
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func (tc *TestContext) GenerateBlocks(set string) []BlockData {
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parser := newParser(strings.NewReader(set))
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parsedSet, err := parser.parse()
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if err != nil {
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log.Fatal(err)
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}
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tc.Instructions = parsedSet.instructions
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tc.accountsNames = parsedSet.accounts
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tc.TokenIDs = parsedSet.tokenIDs
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tc.generateKeys(tc.accountsNames)
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var blocks []BlockData
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currBatchNum := 0
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var currBlock BlockData
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var currBatch BatchData
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idx := 256
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for _, inst := range parsedSet.instructions {
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switch inst.typ {
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case common.TxTypeCreateAccountDeposit, common.TxTypeCreateAccountDepositTransfer, txTypeCreateAccountDepositCoordinator:
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tx := common.L1Tx{
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// TxID
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FromEthAddr: tc.Users[inst.from].Addr,
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FromBJJ: tc.Users[inst.from].BJJ.Public(),
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TokenID: inst.tokenID,
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LoadAmount: big.NewInt(int64(inst.loadAmount)),
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Type: inst.typ,
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}
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if tc.Users[inst.from].Accounts[inst.tokenID] == nil { // if account is not set yet, set it and increment idx
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tc.Users[inst.from].Accounts[inst.tokenID] = &Account{
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Idx: common.Idx(idx),
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Nonce: common.Nonce(0),
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}
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tc.l1CreatedAccounts[idxTokenIDToString(inst.from, inst.tokenID)] = tc.Users[inst.from].Accounts[inst.tokenID]
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idx++
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}
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if inst.typ == common.TxTypeCreateAccountDepositTransfer {
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tx.Amount = big.NewInt(int64(inst.amount))
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}
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if inst.typ == txTypeCreateAccountDepositCoordinator {
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tx.Type = common.TxTypeCreateAccountDeposit // as txTypeCreateAccountDepositCoordinator is not valid oustide Transakcio package
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currBatch.L1CoordinatorTxs = append(currBatch.L1CoordinatorTxs, tx)
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} else {
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currBatch.L1UserTxs = append(currBatch.L1UserTxs, tx)
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}
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case common.TxTypeDeposit, common.TxTypeDepositTransfer:
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if tc.Users[inst.from].Accounts[inst.tokenID] == nil {
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log.Fatalf("Deposit at User %s for TokenID %d while account not created yet", inst.from, inst.tokenID)
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}
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tx := common.L1Tx{
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// TxID
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FromIdx: tc.Users[inst.from].Accounts[inst.tokenID].Idx,
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FromEthAddr: tc.Users[inst.from].Addr,
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FromBJJ: tc.Users[inst.from].BJJ.Public(),
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TokenID: inst.tokenID,
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LoadAmount: big.NewInt(int64(inst.loadAmount)),
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Type: inst.typ,
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}
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if tc.Users[inst.from].Accounts[inst.tokenID].Idx == common.Idx(0) {
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// if account.Idx is not set yet, set it and increment idx
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tc.Users[inst.from].Accounts[inst.tokenID].Idx = common.Idx(idx)
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tc.l1CreatedAccounts[idxTokenIDToString(inst.from, inst.tokenID)] = tc.Users[inst.from].Accounts[inst.tokenID]
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idx++
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}
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if inst.typ == common.TxTypeDepositTransfer {
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tx.Amount = big.NewInt(int64(inst.amount))
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// if ToIdx is not set yet, set it and increment idx
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if tc.Users[inst.to].Accounts[inst.tokenID].Idx == common.Idx(0) {
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tc.Users[inst.to].Accounts[inst.tokenID].Idx = common.Idx(idx)
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tc.l1CreatedAccounts[idxTokenIDToString(inst.to, inst.tokenID)] = tc.Users[inst.to].Accounts[inst.tokenID]
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tx.ToIdx = common.Idx(idx)
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idx++
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} else {
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// if Idx account of To already exist, use it for ToIdx
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tx.ToIdx = tc.Users[inst.to].Accounts[inst.tokenID].Idx
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}
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}
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currBatch.L1UserTxs = append(currBatch.L1UserTxs, tx)
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case common.TxTypeTransfer:
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if tc.Users[inst.from].Accounts[inst.tokenID] == nil {
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log.Fatalf("Transfer from User %s for TokenID %d while account not created yet", inst.from, inst.tokenID)
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}
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// if account of receiver does not exist, create a new CoordinatorL1Tx creating the account
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if _, ok := tc.l1CreatedAccounts[idxTokenIDToString(inst.to, inst.tokenID)]; !ok {
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log.Fatalf("Can not create Transfer for a non existing account. Batch %d, Instruction: %s", currBatchNum, inst)
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}
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tc.Users[inst.from].Accounts[inst.tokenID].Nonce++
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tx := common.L2Tx{
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FromIdx: tc.Users[inst.from].Accounts[inst.tokenID].Idx,
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ToIdx: tc.Users[inst.to].Accounts[inst.tokenID].Idx,
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Amount: big.NewInt(int64(inst.amount)),
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Fee: common.FeeSelector(inst.fee),
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Nonce: tc.Users[inst.from].Accounts[inst.tokenID].Nonce,
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Type: common.TxTypeTransfer,
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}
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nTx, err := common.NewPoolL2Tx(tx.PoolL2Tx())
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if err != nil {
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log.Fatal(err)
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}
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tx = nTx.L2Tx()
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tx.BatchNum = common.BatchNum(currBatchNum) // when converted to PoolL2Tx BatchNum parameter is lost
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currBatch.L2Txs = append(currBatch.L2Txs, tx)
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case common.TxTypeExit:
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tc.Users[inst.from].Accounts[inst.tokenID].Nonce++
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tx := common.L2Tx{
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FromIdx: tc.Users[inst.from].Accounts[inst.tokenID].Idx,
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ToIdx: common.Idx(1), // as is an Exit
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Amount: big.NewInt(int64(inst.amount)),
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Nonce: tc.Users[inst.from].Accounts[inst.tokenID].Nonce,
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Type: common.TxTypeExit,
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}
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nTx, err := common.NewPoolL2Tx(tx.PoolL2Tx())
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if err != nil {
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log.Fatal(err)
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}
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tx = nTx.L2Tx()
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currBatch.L2Txs = append(currBatch.L2Txs, tx)
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case common.TxTypeForceExit:
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tx := common.L1Tx{
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FromIdx: tc.Users[inst.from].Accounts[inst.tokenID].Idx,
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ToIdx: common.Idx(1), // as is an Exit
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TokenID: inst.tokenID,
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Amount: big.NewInt(int64(inst.amount)),
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Type: common.TxTypeExit,
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}
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currBatch.L1UserTxs = append(currBatch.L1UserTxs, tx)
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case typeNewBatch:
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currBlock.Batches = append(currBlock.Batches, currBatch)
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currBatchNum++
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currBatch = BatchData{}
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case typeNewBlock:
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currBlock.Batches = append(currBlock.Batches, currBatch)
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currBatchNum++
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currBatch = BatchData{}
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blocks = append(blocks, currBlock)
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currBlock = BlockData{}
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default:
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log.Fatalf("Unexpected type: %s", inst.typ)
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}
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}
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currBlock.Batches = append(currBlock.Batches, currBatch)
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blocks = append(blocks, currBlock)
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return blocks
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}
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// GeneratePoolL2Txs returns an array of common.PoolL2Tx from a given set. It
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// uses the accounts (keys & nonces) of the TestContext.
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func (tc *TestContext) GeneratePoolL2Txs(set string) []common.PoolL2Tx {
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parser := newParser(strings.NewReader(set))
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parsedSet, err := parser.parse()
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if err != nil {
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log.Fatal(err)
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}
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tc.Instructions = parsedSet.instructions
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tc.accountsNames = parsedSet.accounts
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tc.TokenIDs = parsedSet.tokenIDs
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tc.generateKeys(tc.accountsNames)
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txs := []common.PoolL2Tx{}
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for _, inst := range tc.Instructions {
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switch inst.typ {
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case common.TxTypeTransfer:
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if tc.Users[inst.from].Accounts[inst.tokenID] == nil {
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log.Fatalf("Transfer from User %s for TokenID %d while account not created yet", inst.from, inst.tokenID)
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}
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if tc.Users[inst.to].Accounts[inst.tokenID] == nil {
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log.Fatalf("Transfer to User %s for TokenID %d while account not created yet", inst.to, inst.tokenID)
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}
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tc.Users[inst.from].Accounts[inst.tokenID].Nonce++
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// if account of receiver does not exist, don't use
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// ToIdx, and use only ToEthAddr & ToBJJ
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tx := common.PoolL2Tx{
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FromIdx: tc.Users[inst.from].Accounts[inst.tokenID].Idx,
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ToIdx: tc.Users[inst.to].Accounts[inst.tokenID].Idx,
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ToEthAddr: tc.Users[inst.to].Addr,
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ToBJJ: tc.Users[inst.to].BJJ.Public(),
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TokenID: inst.tokenID,
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Amount: big.NewInt(int64(inst.amount)),
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Fee: common.FeeSelector(inst.fee),
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Nonce: tc.Users[inst.from].Accounts[inst.tokenID].Nonce,
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State: common.PoolL2TxStatePending,
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Timestamp: time.Now(),
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RqToEthAddr: common.EmptyAddr,
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RqToBJJ: nil,
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Type: common.TxTypeTransfer,
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}
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nTx, err := common.NewPoolL2Tx(&tx)
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if err != nil {
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log.Fatal(err)
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}
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tx = *nTx
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// perform signature and set it to tx.Signature
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toSign, err := tx.HashToSign()
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if err != nil {
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log.Fatal(err)
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}
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sig := tc.Users[inst.to].BJJ.SignPoseidon(toSign)
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tx.Signature = sig
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txs = append(txs, tx)
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case common.TxTypeExit:
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tc.Users[inst.from].Accounts[inst.tokenID].Nonce++
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tx := common.PoolL2Tx{
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FromIdx: tc.Users[inst.from].Accounts[inst.tokenID].Idx,
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ToIdx: common.Idx(1), // as is an Exit
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TokenID: inst.tokenID,
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Amount: big.NewInt(int64(inst.amount)),
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Nonce: tc.Users[inst.from].Accounts[inst.tokenID].Nonce,
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Type: common.TxTypeExit,
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}
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txs = append(txs, tx)
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default:
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log.Fatalf("instruction type unrecognized: %s", inst.typ)
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}
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}
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return txs
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}
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// generateKeys generates BabyJubJub & Address keys for the given list of
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// account names in a deterministic way. This means, that for the same given
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// 'accNames' in a certain order, the keys will be always the same.
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func (tc *TestContext) generateKeys(accNames []string) {
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for i := 1; i < len(accNames)+1; i++ {
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if _, ok := tc.Users[accNames[i-1]]; ok {
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// account already created
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continue
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}
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// babyjubjub key
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var sk babyjub.PrivateKey
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copy(sk[:], []byte(strconv.Itoa(i))) // only for testing
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// eth address
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var key ecdsa.PrivateKey
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key.D = big.NewInt(int64(i)) // only for testing
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key.PublicKey.X, key.PublicKey.Y = ethCrypto.S256().ScalarBaseMult(key.D.Bytes())
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key.Curve = ethCrypto.S256()
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addr := ethCrypto.PubkeyToAddress(key.PublicKey)
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u := User{
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BJJ: &sk,
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Addr: addr,
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Accounts: make(map[common.TokenID]*Account),
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}
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tc.Users[accNames[i-1]] = &u
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}
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}
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