mirror of
https://github.com/0glabs/0g-chain.git
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178 lines
5.9 KiB
Go
178 lines
5.9 KiB
Go
package e2e_test
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import (
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"context"
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"math/big"
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"strings"
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"testing"
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"time"
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"github.com/stretchr/testify/suite"
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sdkmath "cosmossdk.io/math"
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"github.com/cosmos/cosmos-sdk/client/grpc/tmservice"
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sdk "github.com/cosmos/cosmos-sdk/types"
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banktypes "github.com/cosmos/cosmos-sdk/x/bank/types"
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ibctypes "github.com/cosmos/ibc-go/v6/modules/apps/transfer/types"
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ibcclienttypes "github.com/cosmos/ibc-go/v6/modules/core/02-client/types"
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ethtypes "github.com/ethereum/go-ethereum/core/types"
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emtypes "github.com/evmos/ethermint/types"
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"github.com/0glabs/0g-chain/app"
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"github.com/0glabs/0g-chain/chaincfg"
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"github.com/0glabs/0g-chain/tests/e2e/testutil"
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"github.com/0glabs/0g-chain/tests/util"
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)
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var (
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minEvmGasPrice = big.NewInt(1e10) // neuron
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)
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func a0gi(amt *big.Int) sdk.Coin {
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return sdk.NewCoin(chaincfg.DisplayDenom, sdkmath.NewIntFromBigInt(amt))
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}
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type IntegrationTestSuite struct {
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testutil.E2eTestSuite
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}
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func TestIntegrationTestSuite(t *testing.T) {
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suite.Run(t, new(IntegrationTestSuite))
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}
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// example test that queries 0gchain via SDK and EVM
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func (suite *IntegrationTestSuite) TestChainID() {
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expectedEvmNetworkId, err := emtypes.ParseChainID(suite.ZgChain.ChainID)
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suite.NoError(err)
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// EVM query
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evmNetworkId, err := suite.ZgChain.EvmClient.NetworkID(context.Background())
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suite.NoError(err)
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suite.Equal(expectedEvmNetworkId, evmNetworkId)
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// SDK query
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nodeInfo, err := suite.ZgChain.Tm.GetNodeInfo(context.Background(), &tmservice.GetNodeInfoRequest{})
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suite.NoError(err)
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suite.Equal(suite.ZgChain.ChainID, nodeInfo.DefaultNodeInfo.Network)
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}
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// example test that funds a new account & queries its balance
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func (suite *IntegrationTestSuite) TestFundedAccount() {
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funds := a0gi(big.NewInt(1e3))
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acc := suite.ZgChain.NewFundedAccount("example-acc", sdk.NewCoins(funds))
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// check that the sdk & evm signers are for the same account
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suite.Equal(acc.SdkAddress.String(), util.EvmToSdkAddress(acc.EvmAddress).String())
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suite.Equal(acc.EvmAddress.Hex(), util.SdkToEvmAddress(acc.SdkAddress).Hex())
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// check balance via SDK query
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res, err := suite.ZgChain.Bank.Balance(context.Background(), banktypes.NewQueryBalanceRequest(
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acc.SdkAddress, chaincfg.DisplayDenom,
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))
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suite.NoError(err)
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suite.Equal(funds, *res.Balance)
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// check balance via EVM query
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neuronBal, err := suite.ZgChain.EvmClient.BalanceAt(context.Background(), acc.EvmAddress, nil)
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suite.NoError(err)
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suite.Equal(funds.Amount.MulRaw(1e12).BigInt(), neuronBal)
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}
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// example test that signs & broadcasts an EVM tx
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func (suite *IntegrationTestSuite) TestTransferOverEVM() {
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// fund an account that can perform the transfer
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initialFunds := a0gi(big.NewInt(1e6)) // 1 A0GI
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acc := suite.ZgChain.NewFundedAccount("evm-test-transfer", sdk.NewCoins(initialFunds))
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// get a rando account to send 0gchain to
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randomAddr := app.RandomAddress()
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to := util.SdkToEvmAddress(randomAddr)
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// example fetching of nonce (account sequence)
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nonce, err := suite.ZgChain.EvmClient.PendingNonceAt(context.Background(), acc.EvmAddress)
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suite.NoError(err)
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suite.Equal(uint64(0), nonce) // sanity check. the account should have no prior txs
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// transfer a0gi over EVM
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a0giToTransfer := big.NewInt(1e17) // .1 A0GI; neuron has 18 decimals.
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req := util.EvmTxRequest{
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Tx: ethtypes.NewTransaction(nonce, to, a0giToTransfer, 1e5, minEvmGasPrice, nil),
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Data: "any ol' data to track this through the system",
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}
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res := acc.SignAndBroadcastEvmTx(req)
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suite.Require().NoError(res.Err)
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suite.Equal(ethtypes.ReceiptStatusSuccessful, res.Receipt.Status)
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// evm txs refund unused gas. so to know the expected balance we need to know how much gas was used.
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a0giUsedForGas := sdkmath.NewIntFromBigInt(minEvmGasPrice).
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Mul(sdkmath.NewIntFromUint64(res.Receipt.GasUsed)).
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QuoRaw(1e12) // convert neuron to a0gi
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// expect (9 - gas used) A0GI remaining in account.
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balance := suite.ZgChain.QuerySdkForBalances(acc.SdkAddress)
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suite.Equal(sdkmath.NewInt(9e5).Sub(a0giUsedForGas), balance.AmountOf(chaincfg.DisplayDenom))
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}
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// TestIbcTransfer transfers A0GI from the primary 0g-chain (suite.ZgChain) to the ibc chain (suite.Ibc).
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// Note that because the IBC chain also runs 0g-chain's binary, this tests both the sending & receiving.
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func (suite *IntegrationTestSuite) TestIbcTransfer() {
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suite.SkipIfIbcDisabled()
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// ARRANGE
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// setup 0g-chain account
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funds := a0gi(big.NewInt(1e5)) // .1 A0GI
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zgChainAcc := suite.ZgChain.NewFundedAccount("ibc-transfer-0g-side", sdk.NewCoins(funds))
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// setup ibc account
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ibcAcc := suite.Ibc.NewFundedAccount("ibc-transfer-ibc-side", sdk.NewCoins())
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gasLimit := int64(2e5)
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fee := a0gi(big.NewInt(200))
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fundsToSend := a0gi(big.NewInt(5e4)) // .005 A0GI
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transferMsg := ibctypes.NewMsgTransfer(
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testutil.IbcPort,
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testutil.IbcChannel,
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fundsToSend,
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zgChainAcc.SdkAddress.String(),
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ibcAcc.SdkAddress.String(),
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ibcclienttypes.NewHeight(0, 0), // timeout height disabled when 0
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uint64(time.Now().Add(30*time.Second).UnixNano()),
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"",
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)
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// initial - sent - fee
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expectedSrcBalance := funds.Sub(fundsToSend).Sub(fee)
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// ACT
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// IBC transfer from 0g-chain -> ibc
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transferTo := util.ZgChainMsgRequest{
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Msgs: []sdk.Msg{transferMsg},
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GasLimit: uint64(gasLimit),
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FeeAmount: sdk.NewCoins(fee),
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Memo: "sent from ZgChain!",
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}
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res := zgChainAcc.SignAndBroadcastZgChainTx(transferTo)
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// ASSERT
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suite.NoError(res.Err)
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// the balance should be deducted from 0g-chain account
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suite.Eventually(func() bool {
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balance := suite.ZgChain.QuerySdkForBalances(zgChainAcc.SdkAddress)
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return balance.AmountOf(chaincfg.DisplayDenom).Equal(expectedSrcBalance.Amount)
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}, 10*time.Second, 1*time.Second)
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// expect the balance to be transferred to the ibc chain!
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suite.Eventually(func() bool {
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balance := suite.Ibc.QuerySdkForBalances(ibcAcc.SdkAddress)
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found := false
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for _, c := range balance {
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// find the ibc denom coin
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if strings.HasPrefix(c.Denom, "ibc/") {
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suite.Equal(fundsToSend.Amount, c.Amount)
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found = true
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}
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}
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return found
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}, 15*time.Second, 1*time.Second)
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}
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