package test
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import (
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"errors"
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"fmt"
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"math/big"
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"time"
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ethCommon "github.com/ethereum/go-ethereum/common"
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"github.com/hermeznetwork/hermez-node/common"
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"github.com/iden3/go-iden3-crypto/babyjub"
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"github.com/iden3/go-merkletree"
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)
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// Block0 represents Ethereum's genesis block,
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// which is stored by default at HistoryDB
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var Block0 common.Block = common.Block{
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EthBlockNum: 0,
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Hash: ethCommon.Hash([32]byte{
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212, 229, 103, 64, 248, 118, 174, 248,
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192, 16, 184, 106, 64, 213, 245, 103,
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69, 161, 24, 208, 144, 106, 52, 230,
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154, 236, 140, 13, 177, 203, 143, 163,
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}), // 0xd4e56740f876aef8c010b86a40d5f56745a118d0906a34e69aec8c0db1cb8fa3
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Timestamp: time.Date(2015, time.July, 30, 3, 26, 13, 0, time.UTC), // 2015-07-30 03:26:13
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}
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// EthToken represents the Ether coin, which is stored by default in the DB
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// with TokenID = 0
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var EthToken common.Token = common.Token{
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TokenID: 0,
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Name: "Ether",
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Symbol: "ETH",
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Decimals: 18, //nolint:gomnd
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EthBlockNum: 0,
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EthAddr: ethCommon.BigToAddress(big.NewInt(0)),
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}
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// WARNING: the generators in this file doesn't necessary follow the protocol
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// they are intended to check that the parsers between struct <==> DB are correct
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// GenBlocks generates block from, to block numbers. WARNING: This is meant for DB/API testing, and may not be fully consistent with the protocol.
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func GenBlocks(from, to int64) []common.Block {
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var blocks []common.Block
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for i := from; i < to; i++ {
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blocks = append(blocks, common.Block{
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EthBlockNum: i,
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//nolint:gomnd
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Timestamp: time.Now().Add(time.Second * 13).UTC(),
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Hash: ethCommon.BigToHash(big.NewInt(int64(i))),
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})
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}
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return blocks
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}
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// GenTokens generates tokens. WARNING: This is meant for DB/API testing, and may not be fully consistent with the protocol.
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func GenTokens(nTokens int, blocks []common.Block) (tokensToAddInDB []common.Token, ethToken common.Token) {
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tokensToAddInDB = []common.Token{}
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for i := 1; i < nTokens; i++ {
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token := common.Token{
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TokenID: common.TokenID(i),
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Name: "NAME" + fmt.Sprint(i),
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Symbol: fmt.Sprint(i),
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Decimals: uint64(i + 1),
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EthBlockNum: blocks[i%len(blocks)].EthBlockNum,
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EthAddr: ethCommon.BigToAddress(big.NewInt(int64(i))),
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}
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tokensToAddInDB = append(tokensToAddInDB, token)
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}
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return tokensToAddInDB, common.Token{
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TokenID: 0,
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Name: "Ether",
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Symbol: "ETH",
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Decimals: 18, //nolint:gomnd
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EthBlockNum: 0,
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EthAddr: ethCommon.BigToAddress(big.NewInt(0)),
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}
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}
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// GenBatches generates batches. WARNING: This is meant for DB/API testing, and may not be fully consistent with the protocol.
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func GenBatches(nBatches int, blocks []common.Block) []common.Batch {
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batches := []common.Batch{}
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collectedFees := make(map[common.TokenID]*big.Int)
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for i := 0; i < 64; i++ {
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collectedFees[common.TokenID(i)] = big.NewInt(int64(i))
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}
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for i := 0; i < nBatches; i++ {
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batch := common.Batch{
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BatchNum: common.BatchNum(i + 1),
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EthBlockNum: blocks[i%len(blocks)].EthBlockNum,
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//nolint:gomnd
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ForgerAddr: ethCommon.BigToAddress(big.NewInt(6886723)),
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CollectedFees: collectedFees,
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StateRoot: big.NewInt(int64(i+1) * 5), //nolint:gomnd
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//nolint:gomnd
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NumAccounts: 30,
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ExitRoot: big.NewInt(int64(i+1) * 16), //nolint:gomnd
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SlotNum: int64(i),
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}
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if i%2 == 0 {
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toForge := new(int64)
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*toForge = int64(i + 1)
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batch.ForgeL1TxsNum = toForge
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}
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batches = append(batches, batch)
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}
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return batches
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}
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// GenAccounts generates accounts. WARNING: This is meant for DB/API testing, and may not be fully consistent with the protocol.
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func GenAccounts(totalAccounts, userAccounts int, tokens []common.Token, userAddr *ethCommon.Address, userBjj *babyjub.PublicKey, batches []common.Batch) []common.Account {
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if totalAccounts < userAccounts {
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panic("totalAccounts must be greater than userAccounts")
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}
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accs := []common.Account{}
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for i := 256; i < 256+totalAccounts; i++ {
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var addr ethCommon.Address
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var pubK *babyjub.PublicKey
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if i < 256+userAccounts {
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addr = *userAddr
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pubK = userBjj
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} else {
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addr = ethCommon.BigToAddress(big.NewInt(int64(i)))
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privK := babyjub.NewRandPrivKey()
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pubK = privK.Public()
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}
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accs = append(accs, common.Account{
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Idx: common.Idx(i),
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TokenID: tokens[i%len(tokens)].TokenID,
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EthAddr: addr,
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BatchNum: batches[i%len(batches)].BatchNum,
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PublicKey: pubK,
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Balance: big.NewInt(int64(i * 10000000)), //nolint:gomnd
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})
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}
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return accs
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}
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// GenL1Txs generates L1 txs. WARNING: This is meant for DB/API testing, and may not be fully consistent with the protocol.
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func GenL1Txs(
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fromIdx int,
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totalTxs, nUserTxs int,
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userAddr *ethCommon.Address,
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accounts []common.Account,
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tokens []common.Token,
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blocks []common.Block,
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batches []common.Batch,
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) ([]common.L1Tx, []common.L1Tx) {
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if totalTxs < nUserTxs {
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panic("totalTxs must be greater than userTxs")
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}
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userTxs := []common.L1Tx{}
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othersTxs := []common.L1Tx{}
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_, nextTxsNum := GetNextToForgeNumAndBatch(batches)
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for i := fromIdx; i < fromIdx+totalTxs; i++ {
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token := tokens[i%len(tokens)]
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amount := big.NewInt(int64(i + 1))
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tx := common.L1Tx{
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Position: i - fromIdx,
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UserOrigin: i%2 == 0,
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TokenID: token.TokenID,
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Amount: amount,
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LoadAmount: amount,
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EthBlockNum: blocks[i%len(blocks)].EthBlockNum,
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}
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if tx.UserOrigin {
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n := nextTxsNum
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tx.ToForgeL1TxsNum = &n
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} else {
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tx.BatchNum = &batches[i%len(batches)].BatchNum
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}
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nTx, err := common.NewL1Tx(&tx)
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if err != nil {
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panic(err)
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}
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tx = *nTx
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if !tx.UserOrigin {
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tx.BatchNum = &batches[i%len(batches)].BatchNum
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} else if batches[i%len(batches)].ForgeL1TxsNum != nil {
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// Add already forged txs
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tx.BatchNum = &batches[i%len(batches)].BatchNum
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setFromToAndAppend(fromIdx, tx, i, nUserTxs, userAddr, accounts, &userTxs, &othersTxs)
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} else {
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// Add unforged txs
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n := nextTxsNum
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tx.ToForgeL1TxsNum = &n
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tx.UserOrigin = true
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setFromToAndAppend(fromIdx, tx, i, nUserTxs, userAddr, accounts, &userTxs, &othersTxs)
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}
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}
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return userTxs, othersTxs
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}
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// GetNextToForgeNumAndBatch returns the next BatchNum and ForgeL1TxsNum to be added
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func GetNextToForgeNumAndBatch(batches []common.Batch) (common.BatchNum, int64) {
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batchNum := batches[len(batches)-1].BatchNum + 1
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var toForgeL1TxsNum int64
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found := false
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for i := len(batches) - 1; i >= 0; i-- {
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if batches[i].ForgeL1TxsNum != nil {
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toForgeL1TxsNum = *batches[i].ForgeL1TxsNum + 1
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found = true
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break
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}
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}
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if !found {
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panic("toForgeL1TxsNum not found")
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}
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return batchNum, toForgeL1TxsNum
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}
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func setFromToAndAppend(
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fromIdx int,
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tx common.L1Tx,
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i, nUserTxs int,
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userAddr *ethCommon.Address,
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accounts []common.Account,
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userTxs *[]common.L1Tx,
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othersTxs *[]common.L1Tx,
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) {
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if i < fromIdx+nUserTxs {
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var from, to *common.Account
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var err error
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if i%2 == 0 {
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from, err = randomAccount(i, true, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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to, err = randomAccount(i, false, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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} else {
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from, err = randomAccount(i, false, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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to, err = randomAccount(i, true, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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}
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tx.FromIdx = from.Idx
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tx.FromEthAddr = from.EthAddr
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tx.FromBJJ = from.PublicKey
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tx.ToIdx = to.Idx
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*userTxs = append(*userTxs, tx)
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} else {
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from, err := randomAccount(i, false, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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to, err := randomAccount(i, false, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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tx.FromIdx = from.Idx
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tx.FromEthAddr = from.EthAddr
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tx.FromBJJ = from.PublicKey
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tx.ToIdx = to.Idx
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*othersTxs = append(*othersTxs, tx)
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}
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}
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// GenL2Txs generates L2 txs. WARNING: This is meant for DB/API testing, and may not be fully consistent with the protocol.
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func GenL2Txs(
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fromIdx int,
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totalTxs, nUserTxs int,
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userAddr *ethCommon.Address,
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accounts []common.Account,
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tokens []common.Token,
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blocks []common.Block,
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batches []common.Batch,
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) ([]common.L2Tx, []common.L2Tx) {
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if totalTxs < nUserTxs {
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panic("totalTxs must be greater than userTxs")
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}
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userTxs := []common.L2Tx{}
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othersTxs := []common.L2Tx{}
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for i := fromIdx; i < fromIdx+totalTxs; i++ {
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amount := big.NewInt(int64(i + 1))
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fee := common.FeeSelector(i % 256) //nolint:gomnd
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tx := common.L2Tx{
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TxID: common.TxID([12]byte{2, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, byte(i)}), // only for testing purposes
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BatchNum: batches[i%len(batches)].BatchNum,
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Position: i - fromIdx,
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Amount: amount,
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Fee: fee,
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Nonce: common.Nonce(i + 1),
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EthBlockNum: blocks[i%len(blocks)].EthBlockNum,
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Type: randomTxType(i),
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}
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if i < nUserTxs {
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var from, to *common.Account
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var err error
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if i%2 == 0 {
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from, err = randomAccount(i, true, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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to, err = randomAccount(i, false, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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} else {
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from, err = randomAccount(i, false, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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to, err = randomAccount(i, true, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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}
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tx.FromIdx = from.Idx
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tx.ToIdx = to.Idx
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} else {
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from, err := randomAccount(i, false, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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to, err := randomAccount(i, false, userAddr, accounts)
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if err != nil {
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panic(err)
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}
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tx.FromIdx = from.Idx
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tx.ToIdx = to.Idx
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}
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if i < nUserTxs {
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userTxs = append(userTxs, tx)
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} else {
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othersTxs = append(othersTxs, tx)
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}
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}
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return userTxs, othersTxs
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}
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// GenCoordinators generates coordinators. WARNING: This is meant for DB/API testing, and may not be fully consistent with the protocol.
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func GenCoordinators(nCoords int, blocks []common.Block) []common.Coordinator {
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coords := []common.Coordinator{}
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for i := 0; i < nCoords; i++ {
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coords = append(coords, common.Coordinator{
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EthBlockNum: blocks[i%len(blocks)].EthBlockNum,
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Forger: ethCommon.BigToAddress(big.NewInt(int64(i))),
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Bidder: ethCommon.BigToAddress(big.NewInt(int64(i))),
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URL: "https://foo.bar",
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})
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}
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return coords
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}
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// GenBids generates bids. WARNING: This is meant for DB/API testing, and may not be fully consistent with the protocol.
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func GenBids(nBids int, blocks []common.Block, coords []common.Coordinator) []common.Bid {
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bids := []common.Bid{}
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for i := 0; i < nBids*2; i = i + 2 { //nolint:gomnd
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var slotNum int64
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if i < nBids {
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slotNum = int64(i)
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} else {
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slotNum = int64(i - nBids)
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}
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bids = append(bids, common.Bid{
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SlotNum: slotNum,
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BidValue: big.NewInt(int64(i)),
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EthBlockNum: blocks[i%len(blocks)].EthBlockNum,
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Bidder: coords[i%len(blocks)].Bidder,
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})
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}
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return bids
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}
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// GenExitTree generates an exitTree (as an array of Exits)
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//nolint:gomnd
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func GenExitTree(n int, batches []common.Batch, accounts []common.Account, blocks []common.Block) []common.ExitInfo {
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exitTree := make([]common.ExitInfo, n)
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for i := 0; i < n; i++ {
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exitTree[i] = common.ExitInfo{
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BatchNum: batches[i%len(batches)].BatchNum,
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InstantWithdrawn: nil,
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DelayedWithdrawRequest: nil,
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DelayedWithdrawn: nil,
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AccountIdx: accounts[i%len(accounts)].Idx,
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MerkleProof: &merkletree.CircomVerifierProof{
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Root: &merkletree.Hash{byte(i), byte(i + 1)},
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Siblings: []*merkletree.Hash{
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merkletree.NewHashFromBigInt(big.NewInt(int64(i) * 10)),
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merkletree.NewHashFromBigInt(big.NewInt(int64(i)*100 + 1)),
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merkletree.NewHashFromBigInt(big.NewInt(int64(i)*1000 + 2))},
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OldKey: &merkletree.Hash{byte(i * 1), byte(i*1 + 1)},
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OldValue: &merkletree.Hash{byte(i * 2), byte(i*2 + 1)},
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IsOld0: i%2 == 0,
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Key: &merkletree.Hash{byte(i * 3), byte(i*3 + 1)},
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Value: &merkletree.Hash{byte(i * 4), byte(i*4 + 1)},
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Fnc: i % 2,
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},
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Balance: big.NewInt(int64(i) * 1000),
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}
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if i%2 == 0 {
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instant := int64(blocks[i%len(blocks)].EthBlockNum)
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exitTree[i].InstantWithdrawn = &instant
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} else if i%3 == 0 {
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delayedReq := int64(blocks[i%len(blocks)].EthBlockNum)
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exitTree[i].DelayedWithdrawRequest = &delayedReq
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if i%9 == 0 {
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delayed := int64(blocks[i%len(blocks)].EthBlockNum)
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exitTree[i].DelayedWithdrawn = &delayed
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}
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}
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}
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return exitTree
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}
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func randomAccount(seed int, userAccount bool, userAddr *ethCommon.Address, accs []common.Account) (*common.Account, error) {
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i := seed % len(accs)
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firstI := i
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for {
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acc := accs[i]
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if userAccount && *userAddr == acc.EthAddr {
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return &acc, nil
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}
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if !userAccount && (userAddr == nil || *userAddr != acc.EthAddr) {
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return &acc, nil
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}
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i++
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i = i % len(accs)
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if i == firstI {
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return &acc, errors.New("Didnt found any account matchinng the criteria")
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}
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}
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}
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|
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func randomTxType(seed int) common.TxType {
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//nolint:gomnd
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switch seed % 11 {
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case 0:
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return common.TxTypeExit
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//nolint:gomnd
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case 2:
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return common.TxTypeTransfer
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//nolint:gomnd
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case 3:
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return common.TxTypeDeposit
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//nolint:gomnd
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case 4:
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return common.TxTypeCreateAccountDeposit
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//nolint:gomnd
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case 5:
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return common.TxTypeCreateAccountDepositTransfer
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//nolint:gomnd
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case 6:
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return common.TxTypeDepositTransfer
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//nolint:gomnd
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case 7:
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return common.TxTypeForceTransfer
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//nolint:gomnd
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case 8:
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return common.TxTypeForceExit
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//nolint:gomnd
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case 9:
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return common.TxTypeTransferToEthAddr
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//nolint:gomnd
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case 10:
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return common.TxTypeTransferToBJJ
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default:
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return common.TxTypeTransfer
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}
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}
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