package synchronizer
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import (
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"context"
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"crypto/ecdsa"
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"encoding/binary"
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"fmt"
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"io/ioutil"
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"math/big"
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"os"
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"testing"
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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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dbUtils "github.com/hermeznetwork/hermez-node/db"
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"github.com/hermeznetwork/hermez-node/db/historydb"
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"github.com/hermeznetwork/hermez-node/db/statedb"
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"github.com/hermeznetwork/hermez-node/eth"
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"github.com/hermeznetwork/hermez-node/test"
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"github.com/iden3/go-iden3-crypto/babyjub"
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"github.com/jinzhu/copier"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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)
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type timer struct {
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time int64
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}
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func (t *timer) Time() int64 {
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currentTime := t.time
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t.time++
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return currentTime
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}
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type tokenData struct {
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TokenID common.TokenID
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Addr ethCommon.Address
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Consts eth.ERC20Consts
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}
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func TestSync(t *testing.T) {
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ctx := context.Background()
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// Int State DB
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dir, err := ioutil.TempDir("", "tmpdb")
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require.Nil(t, err)
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defer assert.Nil(t, os.RemoveAll(dir))
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stateDB, err := statedb.NewStateDB(dir, statedb.TypeSynchronizer, 32)
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assert.Nil(t, err)
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// Init History DB
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pass := os.Getenv("POSTGRES_PASS")
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db, err := dbUtils.InitSQLDB(5432, "localhost", "hermez", pass, "hermez")
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require.Nil(t, err)
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historyDB := historydb.NewHistoryDB(db)
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// Clear DB
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err = historyDB.Reorg(-1)
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assert.Nil(t, err)
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// Init eth client
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var timer timer
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clientSetup := test.NewClientSetupExample()
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client := test.NewClient(true, &timer, ðCommon.Address{}, clientSetup)
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// Create Synchronizer
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s, err := NewSynchronizer(client, historyDB, stateDB)
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require.Nil(t, err)
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// Test Sync for rollup genesis block
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blockData, _, err := s.Sync2(ctx, nil)
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require.Nil(t, err)
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require.NotNil(t, blockData)
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assert.Equal(t, int64(1), blockData.Block.EthBlockNum)
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blocks, err := s.historyDB.GetBlocks(0, 9999)
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require.Nil(t, err)
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assert.Equal(t, 1, len(blocks))
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assert.Equal(t, int64(1), blocks[0].EthBlockNum)
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/*
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// Test Sync for a block with new Tokens and L1UserTxs
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// accounts := test.GenerateKeys(t, []string{"A", "B", "C", "D"})
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l1UserTxs, _, _, _ := test.GenerateTestTxsFromSet(t, `
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A (1): 10
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A (2): 20
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B (1): 5
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C (1): 8
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D (3): 15
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> advance batch
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`)
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require.Greater(t, len(l1UserTxs[0]), 0)
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// require.Greater(t, len(tokens), 0)
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for i := 1; i <= 3; i++ {
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_, err := client.RollupAddToken(ethCommon.BigToAddress(big.NewInt(int64(i*10000))),
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clientSetup.RollupVariables.FeeAddToken)
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require.Nil(t, err)
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}
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for i := range l1UserTxs[0] {
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client.CtlAddL1TxUser(&l1UserTxs[0][i])
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}
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client.CtlMineBlock()
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err = s.Sync(context.Background())
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require.Nil(t, err)
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getTokens, err := s.historyDB.GetTokens()
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require.Nil(t, err)
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assert.Equal(t, 3, len(getTokens))
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*/
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// Generate tokens vector
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numTokens := 3
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tokens := make([]tokenData, numTokens)
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for i := 1; i <= numTokens; i++ {
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addr := ethCommon.BigToAddress(big.NewInt(int64(i * 10000)))
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consts := eth.ERC20Consts{
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Name: fmt.Sprintf("Token %d", i),
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Symbol: fmt.Sprintf("TK%d", i),
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Decimals: uint64(i * 2),
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}
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tokens[i-1] = tokenData{common.TokenID(i), addr, consts}
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}
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numUsers := 4
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keys := make([]*userKeys, numUsers)
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for i := range keys {
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keys[i] = genKeys(i)
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}
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// Generate some L1UserTxs of type deposit
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l1UserTxs := make([]*common.L1Tx, 5)
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for i := range l1UserTxs {
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l1UserTxs[i] = &common.L1Tx{
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FromIdx: common.Idx(0),
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FromEthAddr: keys[i%numUsers].Addr,
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FromBJJ: keys[i%numUsers].BJJPK,
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Amount: big.NewInt(0),
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LoadAmount: big.NewInt((int64(i) + 1) * 1000),
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TokenID: common.TokenID(i%numTokens + 1),
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}
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}
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// Add tokens to ethereum, and to rollup
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for _, token := range tokens {
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client.CtlAddERC20(token.Addr, token.Consts)
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_, err := client.RollupAddToken(token.Addr, clientSetup.RollupVariables.FeeAddToken)
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require.Nil(t, err)
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}
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// Add L1Txs to rollup
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for i := range l1UserTxs {
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tx := l1UserTxs[i]
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_, err := client.RollupL1UserTxERC20ETH(tx.FromBJJ, int64(tx.FromIdx), tx.LoadAmount, tx.Amount,
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uint32(tx.TokenID), int64(tx.ToIdx))
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require.Nil(t, err)
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}
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// Mine block and sync
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client.CtlMineBlock()
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blockData, _, err = s.Sync2(ctx, nil)
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require.Nil(t, err)
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require.NotNil(t, blockData)
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assert.Equal(t, int64(2), blockData.Block.EthBlockNum)
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// Check tokens in DB
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dbTokens, err := s.historyDB.GetAllTokens()
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require.Nil(t, err)
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assert.Equal(t, len(tokens), len(dbTokens))
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assert.Equal(t, len(tokens), len(blockData.AddedTokens))
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for i := range tokens {
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token := tokens[i]
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addToken := blockData.AddedTokens[i]
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dbToken := dbTokens[i]
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assert.Equal(t, int64(2), addToken.EthBlockNum)
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assert.Equal(t, token.TokenID, addToken.TokenID)
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assert.Equal(t, token.Addr, addToken.EthAddr)
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assert.Equal(t, token.Consts.Name, addToken.Name)
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assert.Equal(t, token.Consts.Symbol, addToken.Symbol)
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assert.Equal(t, token.Consts.Decimals, addToken.Decimals)
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var addTokenCpy historydb.TokenRead
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require.Nil(t, copier.Copy(&addTokenCpy, &addToken)) // copy common.Token to historydb.TokenRead
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addTokenCpy.ItemID = dbToken.ItemID // we don't care about ItemID
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assert.Equal(t, addTokenCpy, dbToken)
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}
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// Check L1UserTxs in DB
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// TODO: Reorg will be properly tested once we have the mock ethClient implemented
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/*
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// Force a Reorg
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lastSavedBlock, err := historyDB.GetLastBlock()
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require.Nil(t, err)
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lastSavedBlock.EthBlockNum++
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err = historyDB.AddBlock(lastSavedBlock)
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require.Nil(t, err)
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lastSavedBlock.EthBlockNum++
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err = historyDB.AddBlock(lastSavedBlock)
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require.Nil(t, err)
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log.Debugf("Wait for the blockchain to generate some blocks...")
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time.Sleep(40 * time.Second)
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err = s.Sync()
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require.Nil(t, err)
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*/
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}
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type userKeys struct {
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BJJSK *babyjub.PrivateKey
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BJJPK *babyjub.PublicKey
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Addr ethCommon.Address
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}
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func genKeys(i int) *userKeys {
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i++ // i = 0 doesn't work for the ecdsa key generation
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var sk babyjub.PrivateKey
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binary.LittleEndian.PutUint64(sk[:], uint64(i))
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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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return &userKeys{
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BJJSK: &sk,
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BJJPK: sk.Public(),
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Addr: addr,
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}
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}
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