Commit 3de52fe9 authored by mergify[bot]'s avatar mergify[bot] Committed by GitHub

Merge branch 'develop' into reset-comment-fix

parents e896df95 791fd687
......@@ -535,6 +535,55 @@ jobs:
name: Upload coverage
command: codecov --verbose --clean --flags <<parameters.coverage_flag>>
sdk-next-tests:
docker:
- image: ethereumoptimism/ci-builder:latest
resource_class: large
steps:
- checkout
- attach_workspace: { at: "." }
- check-changed:
patterns: sdk,contracts-bedrock,contracts
- restore_cache:
name: Restore Yarn Package Cache
keys:
- yarn-packages-v2-{{ checksum "yarn.lock" }}
- run:
name: anvil-l1
background: true
# atm this is goerli but we should use mainnet after bedrock is live
command: anvil --fork-url $ANVIL_L1_FORK_URL --fork-block-number 8847426
- run:
name: anvil-l2
background: true
# atm this is goerli but we should use mainnet after bedrock is live
command: anvil --fork-url $ANVIL_L2_FORK_URL --port 9545 --fork-block-number 8172732
- run:
name: build
command: yarn build
working_directory: packages/atst
- run:
name: lint
command: yarn lint:check
working_directory: packages/atst
- run:
name: make sure anvil l1 is up
command: npx wait-on tcp:8545 && cast block-number --rpc-url http://localhost:8545
- run:
name: make sure anvil l2 is up
command: npx wait-on tcp:9545 && cast block-number --rpc-url http://localhost:9545
- run:
name: test:next
command: yarn test:next
no_output_timeout: 5m
working_directory: packages/sdk
environment:
# anvil[0] test private key
VITE_E2E_PRIVATE_KEY: "0xac0974bec39a17e36ba4a6b4d238ff944bacb478cbed5efcae784d7bf4f2ff80"
VITE_E2E_RPC_URL_L1: http://localhost:8545
VITE_E2E_RPC_URL_L2: http://localhost:9545
bedrock-markdown:
machine:
image: ubuntu-2204:2022.07.1
......@@ -1094,6 +1143,10 @@ workflows:
dependencies: "(common-ts|core-utils)"
requires:
- yarn-monorepo
- sdk-next-tests:
name: sdk-next-tests
requires:
- yarn-monorepo
- js-lint-test:
name: sdk-tests
coverage_flag: sdk-tests
......
......@@ -20,10 +20,7 @@ import (
// TestERC20BridgeDeposits tests the the L1StandardBridge bridge ERC20
// functionality.
func TestERC20BridgeDeposits(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
......
package op_e2e
import (
"flag"
"os"
"testing"
"github.com/ethereum/go-ethereum/log"
)
var enableParallelTesting bool = true
// Init testing to enable test flags
var _ = func() bool {
testing.Init()
return true
}()
var verboseGethNodes bool
func init() {
flag.BoolVar(&verboseGethNodes, "gethlogs", true, "Enable logs on geth nodes")
flag.Parse()
if os.Getenv("OP_E2E_DISABLE_PARALLEL") == "true" {
enableParallelTesting = false
}
}
func InitParallel(t *testing.T) {
t.Helper()
if enableParallelTesting {
t.Parallel()
}
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
}
......@@ -121,7 +121,7 @@ var hardcodedSlots = []storageSlot{
}
func TestMigration(t *testing.T) {
parallel(t)
InitParallel(t)
if !config.enabled {
t.Skipf("skipping migration tests")
return
......
......@@ -20,7 +20,7 @@ import (
// TestMissingGasLimit tests that op-geth cannot build a block without gas limit while optimism is active in the chain config.
func TestMissingGasLimit(t *testing.T) {
parallel(t)
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.DeployConfig.FundDevAccounts = false
ctx, cancel := context.WithTimeout(context.Background(), 60*time.Second)
......@@ -43,7 +43,7 @@ func TestMissingGasLimit(t *testing.T) {
// TestInvalidDepositInFCU runs an invalid deposit through a FCU/GetPayload/NewPayload/FCU set of calls.
// This tests that deposits must always allow the block to be built even if they are invalid.
func TestInvalidDepositInFCU(t *testing.T) {
parallel(t)
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.DeployConfig.FundDevAccounts = false
ctx, cancel := context.WithTimeout(context.Background(), 60*time.Second)
......@@ -78,7 +78,7 @@ func TestInvalidDepositInFCU(t *testing.T) {
}
func TestPreregolith(t *testing.T) {
parallel(t)
InitParallel(t)
futureTimestamp := hexutil.Uint64(4)
tests := []struct {
name string
......@@ -90,6 +90,7 @@ func TestPreregolith(t *testing.T) {
for _, test := range tests {
test := test
t.Run("GasUsed_"+test.name, func(t *testing.T) {
InitParallel(t)
// Setup an L2 EE and create a client connection to the engine.
// We also need to setup a L1 Genesis to create the rollup genesis.
cfg := DefaultSystemConfig(t)
......@@ -138,6 +139,7 @@ func TestPreregolith(t *testing.T) {
})
t.Run("DepositNonce_"+test.name, func(t *testing.T) {
InitParallel(t)
// Setup an L2 EE and create a client connection to the engine.
// We also need to setup a L1 Genesis to create the rollup genesis.
cfg := DefaultSystemConfig(t)
......@@ -196,6 +198,7 @@ func TestPreregolith(t *testing.T) {
})
t.Run("UnusedGasConsumed_"+test.name, func(t *testing.T) {
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.DeployConfig.L2GenesisRegolithTimeOffset = test.regolithTime
......@@ -237,6 +240,7 @@ func TestPreregolith(t *testing.T) {
})
t.Run("AllowSystemTx_"+test.name, func(t *testing.T) {
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.DeployConfig.L2GenesisRegolithTimeOffset = test.regolithTime
......@@ -258,7 +262,7 @@ func TestPreregolith(t *testing.T) {
}
func TestRegolith(t *testing.T) {
parallel(t)
InitParallel(t)
tests := []struct {
name string
regolithTime hexutil.Uint64
......@@ -273,6 +277,7 @@ func TestRegolith(t *testing.T) {
for _, test := range tests {
test := test
t.Run("GasUsedIsAccurate_"+test.name, func(t *testing.T) {
InitParallel(t)
// Setup an L2 EE and create a client connection to the engine.
// We also need to setup a L1 Genesis to create the rollup genesis.
cfg := DefaultSystemConfig(t)
......@@ -324,6 +329,7 @@ func TestRegolith(t *testing.T) {
})
t.Run("DepositNonceCorrect_"+test.name, func(t *testing.T) {
InitParallel(t)
// Setup an L2 EE and create a client connection to the engine.
// We also need to setup a L1 Genesis to create the rollup genesis.
cfg := DefaultSystemConfig(t)
......@@ -385,6 +391,7 @@ func TestRegolith(t *testing.T) {
})
t.Run("ReturnUnusedGasToPool_"+test.name, func(t *testing.T) {
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.DeployConfig.L2GenesisRegolithTimeOffset = &test.regolithTime
......@@ -427,6 +434,7 @@ func TestRegolith(t *testing.T) {
})
t.Run("RejectSystemTx_"+test.name, func(t *testing.T) {
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.DeployConfig.L2GenesisRegolithTimeOffset = &test.regolithTime
......@@ -448,6 +456,7 @@ func TestRegolith(t *testing.T) {
})
t.Run("IncludeGasRefunds_"+test.name, func(t *testing.T) {
InitParallel(t)
// Simple constructor that is prefixed to the actual contract code
// Results in the contract code being returned as the code for the new contract
deployPrefixSize := byte(16)
......
......@@ -18,7 +18,7 @@ import (
)
func TestVerifyL2OutputRoot(t *testing.T) {
parallel(t)
InitParallel(t)
ctx := context.Background()
cfg := DefaultSystemConfig(t)
......
......@@ -2,10 +2,8 @@ package op_e2e
import (
"context"
"flag"
"fmt"
"math/big"
"os"
"testing"
"time"
......@@ -17,7 +15,6 @@ import (
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/eth/ethconfig"
"github.com/ethereum/go-ethereum/ethclient"
"github.com/ethereum/go-ethereum/ethclient/gethclient"
"github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/node"
"github.com/ethereum/go-ethereum/rpc"
......@@ -36,41 +33,12 @@ import (
"github.com/ethereum-optimism/optimism/op-node/rollup/driver"
"github.com/ethereum-optimism/optimism/op-node/sources"
"github.com/ethereum-optimism/optimism/op-node/testlog"
"github.com/ethereum-optimism/optimism/op-node/withdrawals"
"github.com/ethereum-optimism/optimism/op-service/backoff"
oppprof "github.com/ethereum-optimism/optimism/op-service/pprof"
)
var enableParallelTesting bool = true
// Init testing to enable test flags
var _ = func() bool {
testing.Init()
return true
}()
var verboseGethNodes bool
func init() {
flag.BoolVar(&verboseGethNodes, "gethlogs", true, "Enable logs on geth nodes")
flag.Parse()
if os.Getenv("OP_E2E_DISABLE_PARALLEL") == "true" {
enableParallelTesting = false
}
}
func parallel(t *testing.T) {
t.Helper()
if enableParallelTesting {
t.Parallel()
}
}
func TestL2OutputSubmitter(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.NonFinalizedProposals = true // speed up the time till we see output proposals
......@@ -141,10 +109,7 @@ func TestL2OutputSubmitter(t *testing.T) {
// TestSystemE2E sets up a L1 Geth node, a rollup node, and a L2 geth node and then confirms that L1 deposits are reflected on L2.
// All nodes are run in process (but are the full nodes, not mocked or stubbed).
func TestSystemE2E(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
......@@ -165,37 +130,20 @@ func TestSystemE2E(t *testing.T) {
// Send Transaction & wait for success
fromAddr := sys.cfg.Secrets.Addresses().Alice
// Find deposit contract
depositContract, err := bindings.NewOptimismPortal(predeploys.DevOptimismPortalAddr, l1Client)
require.Nil(t, err)
// Create signer
opts, err := bind.NewKeyedTransactorWithChainID(ethPrivKey, cfg.L1ChainIDBig())
require.Nil(t, err)
ctx, cancel := context.WithTimeout(context.Background(), 1*time.Second)
ctx, cancel := context.WithTimeout(context.Background(), 15*time.Second)
defer cancel()
startBalance, err := l2Verif.BalanceAt(ctx, fromAddr, nil)
require.Nil(t, err)
// Finally send TX
// Send deposit transaction
opts, err := bind.NewKeyedTransactorWithChainID(ethPrivKey, cfg.L1ChainIDBig())
require.Nil(t, err)
mintAmount := big.NewInt(1_000_000_000_000)
opts.Value = mintAmount
tx, err := depositContract.DepositTransaction(opts, fromAddr, common.Big0, 1_000_000, false, nil)
require.Nil(t, err, "with deposit tx")
receipt, err := waitForTransaction(tx.Hash(), l1Client, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for deposit tx on L1")
reconstructedDep, err := derive.UnmarshalDepositLogEvent(receipt.Logs[0])
require.NoError(t, err, "Could not reconstruct L2 Deposit")
tx = types.NewTx(reconstructedDep)
receipt, err = waitForTransaction(tx.Hash(), l2Verif, 6*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.NoError(t, err)
require.Equal(t, receipt.Status, types.ReceiptStatusSuccessful)
SendDepositTx(t, cfg, l1Client, l2Verif, opts, func(l2Opts *DepositTxOpts) {})
// Confirm balance
ctx, cancel = context.WithTimeout(context.Background(), 1*time.Second)
ctx, cancel = context.WithTimeout(context.Background(), 15*time.Second)
defer cancel()
endBalance, err := l2Verif.BalanceAt(ctx, fromAddr, nil)
require.Nil(t, err)
......@@ -205,25 +153,12 @@ func TestSystemE2E(t *testing.T) {
require.Equal(t, mintAmount, diff, "Did not get expected balance change")
// Submit TX to L2 sequencer node
toAddr := common.Address{0xff, 0xff}
tx = types.MustSignNewTx(ethPrivKey, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: 1, // Already have deposit
To: &toAddr,
Value: big.NewInt(1_000_000_000),
GasTipCap: big.NewInt(10),
GasFeeCap: big.NewInt(200),
Gas: 21000,
receipt := SendL2Tx(t, cfg, l2Seq, ethPrivKey, func(opts *TxOpts) {
opts.Value = big.NewInt(1_000_000_000)
opts.Nonce = 1 // Already have deposit
opts.ToAddr = &common.Address{0xff, 0xff}
opts.VerifyOnClients(l2Verif)
})
err = l2Seq.SendTransaction(context.Background(), tx)
require.Nil(t, err, "Sending L2 tx to sequencer")
_, err = waitForTransaction(tx.Hash(), l2Seq, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on sequencer")
receipt, err = waitForTransaction(tx.Hash(), l2Verif, 10*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on verifier")
require.Equal(t, types.ReceiptStatusSuccessful, receipt.Status, "TX should have succeeded")
// Verify blocks match after batch submission on verifiers and sequencers
verifBlock, err := l2Verif.BlockByNumber(context.Background(), receipt.BlockNumber)
......@@ -249,10 +184,7 @@ func TestSystemE2E(t *testing.T) {
// TestConfirmationDepth runs the rollup with both sequencer and verifier not immediately processing the tip of the chain.
func TestConfirmationDepth(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.DeployConfig.SequencerWindowSize = 4
......@@ -300,10 +232,7 @@ func TestConfirmationDepth(t *testing.T) {
// TestPendingGasLimit tests the configuration of the gas limit of the pending block,
// and if it does not conflict with the regular gas limit on the verifier or sequencer.
func TestPendingGasLimit(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
......@@ -360,10 +289,7 @@ func TestPendingGasLimit(t *testing.T) {
// TestFinalize tests if L2 finalizes after sufficient time after L1 finalizes
func TestFinalize(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
......@@ -388,10 +314,7 @@ func TestFinalize(t *testing.T) {
}
func TestMintOnRevertedDeposit(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
sys, err := cfg.Start()
......@@ -401,9 +324,6 @@ func TestMintOnRevertedDeposit(t *testing.T) {
l1Client := sys.Clients["l1"]
l2Verif := sys.Clients["verifier"]
// Find deposit contract
depositContract, err := bindings.NewOptimismPortal(predeploys.DevOptimismPortalAddr, l1Client)
require.Nil(t, err)
l1Node := sys.Nodes["l1"]
// create signer
......@@ -425,19 +345,12 @@ func TestMintOnRevertedDeposit(t *testing.T) {
toAddr := common.Address{0xff, 0xff}
mintAmount := big.NewInt(9_000_000)
opts.Value = mintAmount
value := new(big.Int).Mul(common.Big2, startBalance) // trigger a revert by transferring more than we have available
tx, err := depositContract.DepositTransaction(opts, toAddr, value, 1_000_000, false, nil)
require.Nil(t, err, "with deposit tx")
receipt, err := waitForTransaction(tx.Hash(), l1Client, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for deposit tx on L1")
reconstructedDep, err := derive.UnmarshalDepositLogEvent(receipt.Logs[0])
require.NoError(t, err, "Could not reconstruct L2 Deposit")
tx = types.NewTx(reconstructedDep)
receipt, err = waitForTransaction(tx.Hash(), l2Verif, 10*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.NoError(t, err)
require.Equal(t, receipt.Status, types.ReceiptStatusFailed)
SendDepositTx(t, cfg, l1Client, l2Verif, opts, func(l2Opts *DepositTxOpts) {
l2Opts.ToAddr = toAddr
// trigger a revert by transferring more than we have available
l2Opts.Value = new(big.Int).Mul(common.Big2, startBalance)
l2Opts.ExpectedStatus = types.ReceiptStatusFailed
})
// Confirm balance
ctx, cancel = context.WithTimeout(context.Background(), 1*time.Second)
......@@ -462,10 +375,7 @@ func TestMintOnRevertedDeposit(t *testing.T) {
}
func TestMissingBatchE2E(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
// Note this test zeroes the balance of the batch-submitter to make the batches unable to go into L1.
// The test logs may look scary, but this is expected:
// 'batcher unable to publish transaction role=batcher err="insufficient funds for gas * price + value"'
......@@ -488,22 +398,10 @@ func TestMissingBatchE2E(t *testing.T) {
ethPrivKey := cfg.Secrets.Alice
// Submit TX to L2 sequencer node
toAddr := common.Address{0xff, 0xff}
tx := types.MustSignNewTx(ethPrivKey, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: 0,
To: &toAddr,
Value: big.NewInt(1_000_000_000),
GasTipCap: big.NewInt(10),
GasFeeCap: big.NewInt(200),
Gas: 21000,
receipt := SendL2Tx(t, cfg, l2Seq, ethPrivKey, func(opts *TxOpts) {
opts.ToAddr = &common.Address{0xff, 0xff}
opts.Value = big.NewInt(1_000_000_000)
})
err = l2Seq.SendTransaction(context.Background(), tx)
require.Nil(t, err, "Sending L2 tx to sequencer")
// Let it show up on the unsafe chain
receipt, err := waitForTransaction(tx.Hash(), l2Seq, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on sequencer")
// Wait until the block it was first included in shows up in the safe chain on the verifier
_, err = waitForBlock(receipt.BlockNumber, l2Verif, time.Duration((sys.RollupConfig.SeqWindowSize+4)*cfg.DeployConfig.L1BlockTime)*time.Second)
......@@ -512,7 +410,7 @@ func TestMissingBatchE2E(t *testing.T) {
// Assert that the transaction is not found on the verifier
ctx, cancel := context.WithTimeout(context.Background(), time.Second)
defer cancel()
_, err = l2Verif.TransactionReceipt(ctx, tx.Hash())
_, err = l2Verif.TransactionReceipt(ctx, receipt.TxHash)
require.Equal(t, ethereum.NotFound, err, "Found transaction in verifier when it should not have been included")
// Wait a short time for the L2 reorg to occur on the sequencer as well.
......@@ -585,10 +483,7 @@ func L1InfoFromState(ctx context.Context, contract *bindings.L1Block, l2Number *
// TestSystemMockP2P sets up a L1 Geth node, a rollup node, and a L2 geth node and then confirms that
// the nodes can sync L2 blocks before they are confirmed on L1.
func TestSystemMockP2P(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
// Disable batcher, so we don't sync from L1 & set a large sequence window so we only have unsafe blocks
......@@ -648,35 +543,20 @@ func TestSystemMockP2P(t *testing.T) {
ethPrivKey := cfg.Secrets.Alice
// Submit TX to L2 sequencer node
toAddr := common.Address{0xff, 0xff}
tx := types.MustSignNewTx(ethPrivKey, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: 0,
To: &toAddr,
Value: big.NewInt(1_000_000_000),
GasTipCap: big.NewInt(10),
GasFeeCap: big.NewInt(200),
Gas: 21000,
})
err = l2Seq.SendTransaction(context.Background(), tx)
require.Nil(t, err, "Sending L2 tx to sequencer")
// Wait for tx to be mined on the L2 sequencer chain
receiptSeq, err := waitForTransaction(tx.Hash(), l2Seq, 5*time.Minute)
require.Nil(t, err, "Waiting for L2 tx on sequencer")
receiptSeq := SendL2Tx(t, cfg, l2Seq, ethPrivKey, func(opts *TxOpts) {
opts.ToAddr = &common.Address{0xff, 0xff}
opts.Value = big.NewInt(1_000_000_000)
// Wait until the block it was first included in shows up in the safe chain on the verifier
receiptVerif, err := waitForTransaction(tx.Hash(), l2Verif, 5*time.Minute)
require.Nil(t, err, "Waiting for L2 tx on verifier")
require.Equal(t, receiptSeq, receiptVerif)
opts.VerifyOnClients(l2Verif)
})
// Verify that everything that was received was published
require.GreaterOrEqual(t, len(published), len(received))
require.ElementsMatch(t, received, published[:len(received)])
// Verify that the tx was received via p2p
require.Contains(t, received, receiptVerif.BlockHash)
require.Contains(t, received, receiptSeq.BlockHash)
}
// TestSystemRPCAltSync sets up a L1 Geth node, a rollup node, and a L2 geth node and then confirms that
......@@ -691,10 +571,7 @@ func TestSystemMockP2P(t *testing.T) {
// 7. Wait for the verifier to sync the unsafe chain into the safe chain.
// 8. Verify that the TX is included in the verifier's safe chain.
func TestSystemRPCAltSync(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
// the default is nil, but this may change in the future.
......@@ -736,31 +613,16 @@ func TestSystemRPCAltSync(t *testing.T) {
ethPrivKey := cfg.Secrets.Alice
// Submit a TX to L2 sequencer node
toAddr := common.Address{0xff, 0xff}
tx := types.MustSignNewTx(ethPrivKey, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: 0,
To: &toAddr,
Value: big.NewInt(1_000_000_000),
GasTipCap: big.NewInt(10),
GasFeeCap: big.NewInt(200),
Gas: 21000,
})
err = l2Seq.SendTransaction(context.Background(), tx)
require.Nil(t, err, "Sending L2 tx to sequencer")
// Wait for tx to be mined on the L2 sequencer chain
receiptSeq, err := waitForTransaction(tx.Hash(), l2Seq, 6*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on sequencer")
receiptSeq := SendL2Tx(t, cfg, l2Seq, ethPrivKey, func(opts *TxOpts) {
opts.ToAddr = &common.Address{0xff, 0xff}
opts.Value = big.NewInt(1_000_000_000)
// Wait for alt RPC sync to pick up the blocks on the sequencer chain
receiptVerif, err := waitForTransaction(tx.Hash(), l2Verif, 12*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on verifier")
require.Equal(t, receiptSeq, receiptVerif)
opts.VerifyOnClients(l2Verif)
})
// Verify that the tx was received via RPC sync (P2P is disabled)
require.Contains(t, received, eth.BlockID{Hash: receiptVerif.BlockHash, Number: receiptVerif.BlockNumber.Uint64()}.String())
require.Contains(t, received, eth.BlockID{Hash: receiptSeq.BlockHash, Number: receiptSeq.BlockNumber.Uint64()}.String())
// Verify that everything that was received was published
require.GreaterOrEqual(t, len(published), len(received))
......@@ -768,10 +630,7 @@ func TestSystemRPCAltSync(t *testing.T) {
}
func TestSystemP2PAltSync(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
......@@ -828,22 +687,10 @@ func TestSystemP2PAltSync(t *testing.T) {
ethPrivKey := cfg.Secrets.Alice
// Submit a TX to L2 sequencer node
toAddr := common.Address{0xff, 0xff}
tx := types.MustSignNewTx(ethPrivKey, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: 0,
To: &toAddr,
Value: big.NewInt(1_000_000_000),
GasTipCap: big.NewInt(10),
GasFeeCap: big.NewInt(200),
Gas: 21000,
receiptSeq := SendL2Tx(t, cfg, l2Seq, ethPrivKey, func(opts *TxOpts) {
opts.ToAddr = &common.Address{0xff, 0xff}
opts.Value = big.NewInt(1_000_000_000)
})
err = l2Seq.SendTransaction(context.Background(), tx)
require.Nil(t, err, "Sending L2 tx to sequencer")
// Wait for tx to be mined on the L2 sequencer chain
receiptSeq, err := waitForTransaction(tx.Hash(), l2Seq, 6*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on sequencer")
// Gossip is able to respond to IWANT messages for the duration of heartbeat_time * message_window = 0.5 * 12 = 6
// Wait till we pass that, and then we'll have missed some blocks that cannot be retrieved in any way from gossip
......@@ -907,7 +754,7 @@ func TestSystemP2PAltSync(t *testing.T) {
l2Verif := ethclient.NewClient(rpc)
// It may take a while to sync, but eventually we should see the sequenced data show up
receiptVerif, err := waitForTransaction(tx.Hash(), l2Verif, 100*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
receiptVerif, err := waitForTransaction(receiptSeq.TxHash, l2Verif, 100*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on verifier")
require.Equal(t, receiptSeq, receiptVerif)
......@@ -924,10 +771,7 @@ func TestSystemP2PAltSync(t *testing.T) {
func TestSystemDenseTopology(t *testing.T) {
t.Skip("Skipping dense topology test to avoid flakiness. @refcell address in p2p scoring pr.")
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
// slow down L1 blocks so we can see the L2 blocks arrive well before the L1 blocks do.
......@@ -1003,35 +847,13 @@ func TestSystemDenseTopology(t *testing.T) {
ethPrivKey := cfg.Secrets.Alice
// Submit TX to L2 sequencer node
toAddr := common.Address{0xff, 0xff}
tx := types.MustSignNewTx(ethPrivKey, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: 0,
To: &toAddr,
Value: big.NewInt(1_000_000_000),
GasTipCap: big.NewInt(10),
GasFeeCap: big.NewInt(200),
Gas: 21000,
})
err = l2Seq.SendTransaction(context.Background(), tx)
require.NoError(t, err, "Sending L2 tx to sequencer")
// Wait for tx to be mined on the L2 sequencer chain
receiptSeq, err := waitForTransaction(tx.Hash(), l2Seq, 10*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
require.NoError(t, err, "Waiting for L2 tx on sequencer")
receiptSeq := SendL2Tx(t, cfg, l2Seq, ethPrivKey, func(opts *TxOpts) {
opts.ToAddr = &common.Address{0xff, 0xff}
opts.Value = big.NewInt(1_000_000_000)
// Wait until the block it was first included in shows up in the safe chain on the verifier
receiptVerif, err := waitForTransaction(tx.Hash(), l2Verif, 10*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
require.NoError(t, err, "Waiting for L2 tx on verifier")
require.Equal(t, receiptSeq, receiptVerif)
receiptVerif, err = waitForTransaction(tx.Hash(), l2Verif2, 10*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
require.NoError(t, err, "Waiting for L2 tx on verifier2")
require.Equal(t, receiptSeq, receiptVerif)
receiptVerif, err = waitForTransaction(tx.Hash(), l2Verif3, 10*time.Duration(sys.RollupConfig.BlockTime)*time.Second)
require.NoError(t, err, "Waiting for L2 tx on verifier3")
require.Equal(t, receiptSeq, receiptVerif)
// Wait until the block it was first included in shows up in the safe chain on the verifiers
opts.VerifyOnClients(l2Verif, l2Verif2, l2Verif3)
})
// Verify that everything that was received was published
require.GreaterOrEqual(t, len(published), len(received1))
......@@ -1042,16 +864,13 @@ func TestSystemDenseTopology(t *testing.T) {
require.ElementsMatch(t, published, received3[:len(published)])
// Verify that the tx was received via p2p
require.Contains(t, received1, receiptVerif.BlockHash)
require.Contains(t, received2, receiptVerif.BlockHash)
require.Contains(t, received3, receiptVerif.BlockHash)
require.Contains(t, received1, receiptSeq.BlockHash)
require.Contains(t, received2, receiptSeq.BlockHash)
require.Contains(t, received3, receiptSeq.BlockHash)
}
func TestL1InfoContract(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
......@@ -1176,10 +995,7 @@ func calcL1GasUsed(data []byte, overhead *big.Int) *big.Int {
// balance changes on L1 and L2 and has to include gas fees in the balance checks.
// It does not check that the withdrawal can be executed prior to the end of the finality period.
func TestWithdrawals(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
cfg.DeployConfig.FinalizationPeriodSeconds = 2 // 2s finalization period
......@@ -1196,10 +1012,6 @@ func TestWithdrawals(t *testing.T) {
ethPrivKey := cfg.Secrets.Alice
fromAddr := crypto.PubkeyToAddress(ethPrivKey.PublicKey)
// Find deposit contract
depositContract, err := bindings.NewOptimismPortal(predeploys.DevOptimismPortalAddr, l1Client)
require.Nil(t, err)
// Create L1 signer
opts, err := bind.NewKeyedTransactorWithChainID(ethPrivKey, cfg.L1ChainIDBig())
require.Nil(t, err)
......@@ -1210,26 +1022,12 @@ func TestWithdrawals(t *testing.T) {
startBalance, err := l2Verif.BalanceAt(ctx, fromAddr, nil)
require.Nil(t, err)
// Finally send TX
// Send deposit tx
mintAmount := big.NewInt(1_000_000_000_000)
opts.Value = mintAmount
tx, err := depositContract.DepositTransaction(opts, fromAddr, common.Big0, 1_000_000, false, nil)
require.Nil(t, err, "with deposit tx")
receipt, err := waitForTransaction(tx.Hash(), l1Client, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for deposit tx on L1")
// Bind L2 Withdrawer Contract
l2withdrawer, err := bindings.NewL2ToL1MessagePasser(predeploys.L2ToL1MessagePasserAddr, l2Seq)
require.Nil(t, err, "binding withdrawer on L2")
// Wait for deposit to arrive
reconstructedDep, err := derive.UnmarshalDepositLogEvent(receipt.Logs[0])
require.NoError(t, err, "Could not reconstruct L2 Deposit")
tx = types.NewTx(reconstructedDep)
receipt, err = waitForTransaction(tx.Hash(), l2Verif, 10*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.NoError(t, err)
require.Equal(t, receipt.Status, types.ReceiptStatusSuccessful)
SendDepositTx(t, cfg, l1Client, l2Verif, opts, func(l2Opts *DepositTxOpts) {
l2Opts.Value = common.Big0
})
// Confirm L2 balance
ctx, cancel = context.WithTimeout(context.Background(), 1*time.Second)
......@@ -1247,17 +1045,11 @@ func TestWithdrawals(t *testing.T) {
startBalance, err = l2Seq.BalanceAt(ctx, fromAddr, nil)
require.Nil(t, err)
// Intiate Withdrawal
withdrawAmount := big.NewInt(500_000_000_000)
l2opts, err := bind.NewKeyedTransactorWithChainID(ethPrivKey, cfg.L2ChainIDBig())
require.Nil(t, err)
l2opts.Value = withdrawAmount
tx, err = l2withdrawer.InitiateWithdrawal(l2opts, fromAddr, big.NewInt(21000), nil)
require.Nil(t, err, "sending initiate withdraw tx")
receipt, err = waitForTransaction(tx.Hash(), l2Verif, 10*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "withdrawal initiated on L2 sequencer")
require.Equal(t, receipt.Status, types.ReceiptStatusSuccessful, "transaction failed")
tx, receipt := SendWithdrawal(t, cfg, l2Seq, ethPrivKey, func(opts *WithdrawalTxOpts) {
opts.Value = withdrawAmount
opts.VerifyOnClients(l2Verif)
})
// Verify L2 balance after withdrawal
ctx, cancel = context.WithTimeout(context.Background(), 1*time.Second)
......@@ -1283,80 +1075,7 @@ func TestWithdrawals(t *testing.T) {
startBalance, err = l1Client.BalanceAt(ctx, fromAddr, nil)
require.Nil(t, err)
// Get l2BlockNumber for proof generation
ctx, cancel = context.WithTimeout(context.Background(), 40*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
defer cancel()
blockNumber, err := withdrawals.WaitForFinalizationPeriod(ctx, l1Client, predeploys.DevOptimismPortalAddr, receipt.BlockNumber)
require.Nil(t, err)
ctx, cancel = context.WithTimeout(context.Background(), 1*time.Second)
defer cancel()
header, err = l2Verif.HeaderByNumber(ctx, new(big.Int).SetUint64(blockNumber))
require.Nil(t, err)
rpcClient, err := rpc.Dial(sys.Nodes["verifier"].WSEndpoint())
require.Nil(t, err)
proofCl := gethclient.New(rpcClient)
receiptCl := ethclient.NewClient(rpcClient)
// Now create withdrawal
oracle, err := bindings.NewL2OutputOracleCaller(predeploys.DevL2OutputOracleAddr, l1Client)
require.Nil(t, err)
params, err := withdrawals.ProveWithdrawalParameters(context.Background(), proofCl, receiptCl, tx.Hash(), header, oracle)
require.Nil(t, err)
portal, err := bindings.NewOptimismPortal(predeploys.DevOptimismPortalAddr, l1Client)
require.Nil(t, err)
opts.Value = nil
// Prove withdrawal
tx, err = portal.ProveWithdrawalTransaction(
opts,
bindings.TypesWithdrawalTransaction{
Nonce: params.Nonce,
Sender: params.Sender,
Target: params.Target,
Value: params.Value,
GasLimit: params.GasLimit,
Data: params.Data,
},
params.L2OutputIndex,
params.OutputRootProof,
params.WithdrawalProof,
)
require.Nil(t, err)
// Ensure that our withdrawal was proved successfully
proveReceipt, err := waitForTransaction(tx.Hash(), l1Client, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "prove withdrawal")
require.Equal(t, types.ReceiptStatusSuccessful, proveReceipt.Status)
// Wait for finalization and then create the Finalized Withdrawal Transaction
ctx, cancel = context.WithTimeout(context.Background(), 30*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
defer cancel()
_, err = withdrawals.WaitForFinalizationPeriod(ctx, l1Client, predeploys.DevOptimismPortalAddr, header.Number)
require.Nil(t, err)
// Finalize withdrawal
tx, err = portal.FinalizeWithdrawalTransaction(
opts,
bindings.TypesWithdrawalTransaction{
Nonce: params.Nonce,
Sender: params.Sender,
Target: params.Target,
Value: params.Value,
GasLimit: params.GasLimit,
Data: params.Data,
},
)
require.Nil(t, err)
// Ensure that our withdrawal was finalized successfully
finalizeReceipt, err := waitForTransaction(tx.Hash(), l1Client, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "finalize withdrawal")
require.Equal(t, types.ReceiptStatusSuccessful, finalizeReceipt.Status)
proveReceipt, finalizeReceipt := ProveAndFinalizeWithdrawal(t, cfg, l1Client, sys.Nodes["verifier"], ethPrivKey, receipt)
// Verify balance after withdrawal
ctx, cancel = context.WithTimeout(context.Background(), 1*time.Second)
......@@ -1380,10 +1099,7 @@ func TestWithdrawals(t *testing.T) {
// TestFees checks that L1/L2 fees are handled.
func TestFees(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
// TODO: after we have the system config contract and new op-geth L1 cost utils,
......@@ -1435,30 +1151,16 @@ func TestFees(t *testing.T) {
startBalance, err := l2Verif.BalanceAt(ctx, fromAddr, nil)
require.Nil(t, err)
toAddr := common.Address{0xff, 0xff}
transferAmount := big.NewInt(1_000_000_000)
gasTip := big.NewInt(10)
tx := types.MustSignNewTx(ethPrivKey, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: 0,
To: &toAddr,
Value: transferAmount,
GasTipCap: gasTip,
GasFeeCap: big.NewInt(200),
Gas: 21000,
receipt := SendL2Tx(t, cfg, l2Seq, ethPrivKey, func(opts *TxOpts) {
opts.ToAddr = &common.Address{0xff, 0xff}
opts.Value = transferAmount
opts.GasTipCap = gasTip
opts.Gas = 21000
opts.GasFeeCap = big.NewInt(200)
opts.VerifyOnClients(l2Verif)
})
sender, err := types.LatestSignerForChainID(cfg.L2ChainIDBig()).Sender(tx)
require.NoError(t, err)
t.Logf("waiting for tx %s from %s to %s", tx.Hash(), sender, tx.To())
err = l2Seq.SendTransaction(context.Background(), tx)
require.Nil(t, err, "Sending L2 tx to sequencer")
_, err = waitForTransaction(tx.Hash(), l2Seq, 4*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on sequencer")
receipt, err := waitForTransaction(tx.Hash(), l2Verif, 4*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on verifier")
require.Equal(t, types.ReceiptStatusSuccessful, receipt.Status, "TX should have succeeded")
ctx, cancel = context.WithTimeout(context.Background(), 1*time.Second)
defer cancel()
......@@ -1507,6 +1209,8 @@ func TestFees(t *testing.T) {
require.Equal(t, baseFee, baseFeeRecipientDiff, "base fee fee mismatch")
// Tally L1 Fee
tx, _, err := l2Seq.TransactionByHash(ctx, receipt.TxHash)
require.NoError(t, err, "Should be able to get transaction")
bytes, err := tx.MarshalBinary()
require.Nil(t, err)
l1GasUsed := calcL1GasUsed(bytes, overhead)
......@@ -1531,10 +1235,7 @@ func TestFees(t *testing.T) {
}
func TestStopStartSequencer(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
sys, err := cfg.Start()
......@@ -1575,10 +1276,7 @@ func TestStopStartSequencer(t *testing.T) {
}
func TestStopStartBatcher(t *testing.T) {
parallel(t)
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
cfg := DefaultSystemConfig(t)
sys, err := cfg.Start()
......@@ -1599,23 +1297,12 @@ func TestStopStartBatcher(t *testing.T) {
nonce := uint64(0)
sendTx := func() *types.Receipt {
// Submit TX to L2 sequencer node
tx := types.MustSignNewTx(cfg.Secrets.Alice, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: nonce,
To: &common.Address{0xff, 0xff},
Value: big.NewInt(1_000_000_000),
GasTipCap: big.NewInt(10),
GasFeeCap: big.NewInt(200),
Gas: 21000,
receipt := SendL2Tx(t, cfg, l2Seq, cfg.Secrets.Alice, func(opts *TxOpts) {
opts.ToAddr = &common.Address{0xff, 0xff}
opts.Value = big.NewInt(1_000_000_000)
opts.Nonce = nonce
})
nonce++
err = l2Seq.SendTransaction(context.Background(), tx)
require.Nil(t, err, "Sending L2 tx to sequencer")
// Let it show up on the unsafe chain
receipt, err := waitForTransaction(tx.Hash(), l2Seq, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx on sequencer")
return receipt
}
// send a transaction
......
......@@ -24,7 +24,6 @@ import (
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/ethclient"
"github.com/ethereum/go-ethereum/ethclient/gethclient"
"github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/rpc"
fuzz "github.com/google/gofuzz"
......@@ -33,18 +32,13 @@ import (
// TestGasPriceOracleFeeUpdates checks that the gas price oracle cannot be locked by mis-configuring parameters.
func TestGasPriceOracleFeeUpdates(t *testing.T) {
parallel(t)
InitParallel(t)
// Define our values to set in the GasPriceOracle (we set them high to see if it can lock L2 or stop bindings
// from updating the prices once again.
overheadValue := abi.MaxUint256
scalarValue := abi.MaxUint256
var cancel context.CancelFunc
// Setup our logger handler
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
// Create our system configuration for L1/L2 and start it
cfg := DefaultSystemConfig(t)
sys, err := cfg.Start()
......@@ -126,11 +120,7 @@ func TestGasPriceOracleFeeUpdates(t *testing.T) {
// TestL2SequencerRPCDepositTx checks that the L2 sequencer will not accept DepositTx type transactions.
// The acceptance of these transactions would allow for arbitrary minting of ETH in L2.
func TestL2SequencerRPCDepositTx(t *testing.T) {
parallel(t)
// Setup our logger handler
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
// Create our system configuration for L1/L2 and start it
cfg := DefaultSystemConfig(t)
......@@ -233,7 +223,7 @@ func startConfigWithTestAccounts(cfg *SystemConfig, accountsToGenerate int) (*Sy
// TestMixedDepositValidity makes a number of deposit transactions, some which will succeed in transferring value,
// while others do not. It ensures that the expected nonces/balances match after several interactions.
func TestMixedDepositValidity(t *testing.T) {
parallel(t)
InitParallel(t)
// Define how many deposit txs we'll make. Each deposit mints a fixed amount and transfers up to 1/3 of the user's
// balance. As such, this number cannot be too high or else the test will always fail due to lack of balance in L1.
const depositTxCount = 15
......@@ -241,11 +231,6 @@ func TestMixedDepositValidity(t *testing.T) {
// Define how many accounts we'll use to deposit funds
const accountUsedToDeposit = 5
// Setup our logger handler
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
// Create our system configuration, funding all accounts we created for L1/L2, and start it
cfg := DefaultSystemConfig(t)
sys, testAccounts, err := startConfigWithTestAccounts(&cfg, accountUsedToDeposit)
......@@ -415,17 +400,13 @@ func TestMixedDepositValidity(t *testing.T) {
// TestMixedWithdrawalValidity makes a number of withdrawal transactions and ensures ones with modified parameters are
// rejected while unmodified ones are accepted. This runs test cases in different systems.
func TestMixedWithdrawalValidity(t *testing.T) {
parallel(t)
// Setup our logger handler
if !verboseGethNodes {
log.Root().SetHandler(log.DiscardHandler())
}
InitParallel(t)
// There are 7 different fields we try modifying to cause a failure, plus one "good" test result we test.
for i := 0; i <= 8; i++ {
i := i // avoid loop var capture
t.Run(fmt.Sprintf("withdrawal test#%d", i+1), func(t *testing.T) {
parallel(t)
InitParallel(t)
// Create our system configuration, funding all accounts we created for L1/L2, and start it
cfg := DefaultSystemConfig(t)
......
package op_e2e
import (
"context"
"crypto/ecdsa"
"math/big"
"testing"
"time"
"github.com/ethereum-optimism/optimism/op-bindings/bindings"
"github.com/ethereum-optimism/optimism/op-bindings/predeploys"
"github.com/ethereum-optimism/optimism/op-node/rollup/derive"
"github.com/ethereum/go-ethereum/accounts/abi/bind"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/ethclient"
"github.com/stretchr/testify/require"
)
// SendDepositTx creates and sends a deposit transaction.
// The L1 transaction, including sender, is configured by the l1Opts param.
// The L2 transaction options can be configured by modifying the DepositTxOps value supplied to applyL2Opts
// Will verify that the transaction is included with the expected status on L1 and L2
func SendDepositTx(t *testing.T, cfg SystemConfig, l1Client *ethclient.Client, l2Client *ethclient.Client, l1Opts *bind.TransactOpts, applyL2Opts DepositTxOptsFn) {
l2Opts := defaultDepositTxOpts(l1Opts)
applyL2Opts(l2Opts)
// Find deposit contract
depositContract, err := bindings.NewOptimismPortal(predeploys.DevOptimismPortalAddr, l1Client)
require.Nil(t, err)
// Finally send TX
tx, err := depositContract.DepositTransaction(l1Opts, l2Opts.ToAddr, l2Opts.Value, l2Opts.GasLimit, l2Opts.IsCreation, l2Opts.Data)
require.Nil(t, err, "with deposit tx")
// Wait for transaction on L1
receipt, err := waitForTransaction(tx.Hash(), l1Client, 10*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "Waiting for deposit tx on L1")
// Wait for transaction to be included on L2
reconstructedDep, err := derive.UnmarshalDepositLogEvent(receipt.Logs[0])
require.NoError(t, err, "Could not reconstruct L2 Deposit")
tx = types.NewTx(reconstructedDep)
receipt, err = waitForTransaction(tx.Hash(), l2Client, 10*time.Duration(cfg.DeployConfig.L2BlockTime)*time.Second)
require.NoError(t, err)
require.Equal(t, l2Opts.ExpectedStatus, receipt.Status)
}
type DepositTxOptsFn func(l2Opts *DepositTxOpts)
type DepositTxOpts struct {
ToAddr common.Address
Value *big.Int
GasLimit uint64
IsCreation bool
Data []byte
ExpectedStatus uint64
}
func defaultDepositTxOpts(opts *bind.TransactOpts) *DepositTxOpts {
return &DepositTxOpts{
ToAddr: opts.From,
Value: opts.Value,
GasLimit: 1_000_000,
IsCreation: false,
Data: nil,
ExpectedStatus: types.ReceiptStatusSuccessful,
}
}
// SendL2Tx creates and sends a transaction.
// The supplied privKey is used to specify the account to send from and the transaction is sent to the supplied l2Client
// Transaction options and expected status can be configured in the applyTxOpts function by modifying the supplied TxOpts
// Will verify that the transaction is included with the expected status on l2Client and any clients added to TxOpts.VerifyClients
func SendL2Tx(t *testing.T, cfg SystemConfig, l2Client *ethclient.Client, privKey *ecdsa.PrivateKey, applyTxOpts TxOptsFn) *types.Receipt {
opts := defaultTxOpts()
applyTxOpts(opts)
tx := types.MustSignNewTx(privKey, types.LatestSignerForChainID(cfg.L2ChainIDBig()), &types.DynamicFeeTx{
ChainID: cfg.L2ChainIDBig(),
Nonce: opts.Nonce, // Already have deposit
To: opts.ToAddr,
Value: opts.Value,
GasTipCap: opts.GasTipCap,
GasFeeCap: opts.GasFeeCap,
Gas: opts.Gas,
})
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
err := l2Client.SendTransaction(ctx, tx)
require.Nil(t, err, "Sending L2 tx")
receipt, err := waitForTransaction(tx.Hash(), l2Client, 10*time.Duration(cfg.DeployConfig.L2BlockTime)*time.Second)
require.Nil(t, err, "Waiting for L2 tx")
require.Equal(t, opts.ExpectedStatus, receipt.Status, "TX should have expected status")
for i, client := range opts.VerifyClients {
t.Logf("Waiting for tx %v on verification client %d", tx.Hash(), i)
receiptVerif, err := waitForTransaction(tx.Hash(), client, 10*time.Duration(cfg.DeployConfig.L2BlockTime)*time.Second)
require.Nilf(t, err, "Waiting for L2 tx on verification client %d", i)
require.Equalf(t, receipt, receiptVerif, "Receipts should be the same on sequencer and verification client %d", i)
}
return receipt
}
type TxOptsFn func(opts *TxOpts)
type TxOpts struct {
ToAddr *common.Address
Nonce uint64
Value *big.Int
Gas uint64
GasTipCap *big.Int
GasFeeCap *big.Int
Data []byte
ExpectedStatus uint64
VerifyClients []*ethclient.Client
}
// VerifyOnClients adds additional l2 clients that should sync the block the tx is included in
// Checks that the receipt received from these clients is equal to the receipt received from the sequencer
func (o *TxOpts) VerifyOnClients(clients ...*ethclient.Client) {
o.VerifyClients = append(o.VerifyClients, clients...)
}
func defaultTxOpts() *TxOpts {
return &TxOpts{
ToAddr: nil,
Nonce: 0,
Value: common.Big0,
GasTipCap: big.NewInt(10),
GasFeeCap: big.NewInt(200),
Gas: 21_000,
Data: nil,
ExpectedStatus: types.ReceiptStatusSuccessful,
}
}
package op_e2e
import (
"context"
"crypto/ecdsa"
"math/big"
"testing"
"time"
"github.com/ethereum-optimism/optimism/op-bindings/bindings"
"github.com/ethereum-optimism/optimism/op-bindings/predeploys"
"github.com/ethereum-optimism/optimism/op-node/withdrawals"
"github.com/ethereum/go-ethereum/accounts/abi/bind"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/ethclient"
"github.com/ethereum/go-ethereum/ethclient/gethclient"
"github.com/ethereum/go-ethereum/node"
"github.com/ethereum/go-ethereum/rpc"
"github.com/stretchr/testify/require"
)
func SendWithdrawal(t *testing.T, cfg SystemConfig, l2Client *ethclient.Client, privKey *ecdsa.PrivateKey, applyOpts WithdrawalTxOptsFn) (*types.Transaction, *types.Receipt) {
opts := defaultWithdrawalTxOpts()
applyOpts(opts)
// Bind L2 Withdrawer Contract
l2withdrawer, err := bindings.NewL2ToL1MessagePasser(predeploys.L2ToL1MessagePasserAddr, l2Client)
require.Nil(t, err, "binding withdrawer on L2")
// Initiate Withdrawal
l2opts, err := bind.NewKeyedTransactorWithChainID(privKey, cfg.L2ChainIDBig())
require.Nil(t, err)
l2opts.Value = opts.Value
tx, err := l2withdrawer.InitiateWithdrawal(l2opts, l2opts.From, big.NewInt(int64(opts.Gas)), opts.Data)
require.Nil(t, err, "sending initiate withdraw tx")
receipt, err := waitForTransaction(tx.Hash(), l2Client, 10*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "withdrawal initiated on L2 sequencer")
require.Equal(t, opts.ExpectedStatus, receipt.Status, "transaction had incorrect status")
for i, client := range opts.VerifyClients {
t.Logf("Waiting for tx %v on verification client %d", tx.Hash(), i)
receiptVerif, err := waitForTransaction(tx.Hash(), client, 10*time.Duration(cfg.DeployConfig.L2BlockTime)*time.Second)
require.Nilf(t, err, "Waiting for L2 tx on verification client %d", i)
require.Equalf(t, receipt, receiptVerif, "Receipts should be the same on sequencer and verification client %d", i)
}
return tx, receipt
}
type WithdrawalTxOptsFn func(opts *WithdrawalTxOpts)
type WithdrawalTxOpts struct {
ToAddr *common.Address
Nonce uint64
Value *big.Int
Gas uint64
Data []byte
ExpectedStatus uint64
VerifyClients []*ethclient.Client
}
// VerifyOnClients adds additional l2 clients that should sync the block the tx is included in
// Checks that the receipt received from these clients is equal to the receipt received from the sequencer
func (o *WithdrawalTxOpts) VerifyOnClients(clients ...*ethclient.Client) {
o.VerifyClients = append(o.VerifyClients, clients...)
}
func defaultWithdrawalTxOpts() *WithdrawalTxOpts {
return &WithdrawalTxOpts{
ToAddr: nil,
Nonce: 0,
Value: common.Big0,
Gas: 21_000,
Data: nil,
ExpectedStatus: types.ReceiptStatusSuccessful,
}
}
func ProveAndFinalizeWithdrawal(t *testing.T, cfg SystemConfig, l1Client *ethclient.Client, l2Node *node.Node, ethPrivKey *ecdsa.PrivateKey, l2WithdrawalReceipt *types.Receipt) (*types.Receipt, *types.Receipt) {
params, proveReceipt := ProveWithdrawal(t, cfg, l1Client, l2Node, ethPrivKey, l2WithdrawalReceipt)
finalizeReceipt := FinalizeWithdrawal(t, cfg, l1Client, ethPrivKey, l2WithdrawalReceipt, params)
return proveReceipt, finalizeReceipt
}
func ProveWithdrawal(t *testing.T, cfg SystemConfig, l1Client *ethclient.Client, l2Node *node.Node, ethPrivKey *ecdsa.PrivateKey, l2WithdrawalReceipt *types.Receipt) (withdrawals.ProvenWithdrawalParameters, *types.Receipt) {
// Get l2BlockNumber for proof generation
ctx, cancel := context.WithTimeout(context.Background(), 40*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
defer cancel()
blockNumber, err := withdrawals.WaitForFinalizationPeriod(ctx, l1Client, predeploys.DevOptimismPortalAddr, l2WithdrawalReceipt.BlockNumber)
require.Nil(t, err)
rpcClient, err := rpc.Dial(l2Node.WSEndpoint())
require.Nil(t, err)
proofCl := gethclient.New(rpcClient)
receiptCl := ethclient.NewClient(rpcClient)
ctx, cancel = context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
// Get the latest header
header, err := receiptCl.HeaderByNumber(ctx, new(big.Int).SetUint64(blockNumber))
require.Nil(t, err)
// Now create withdrawal
oracle, err := bindings.NewL2OutputOracleCaller(predeploys.DevL2OutputOracleAddr, l1Client)
require.Nil(t, err)
params, err := withdrawals.ProveWithdrawalParameters(context.Background(), proofCl, receiptCl, l2WithdrawalReceipt.TxHash, header, oracle)
require.Nil(t, err)
portal, err := bindings.NewOptimismPortal(predeploys.DevOptimismPortalAddr, l1Client)
require.Nil(t, err)
opts, err := bind.NewKeyedTransactorWithChainID(ethPrivKey, cfg.L1ChainIDBig())
require.Nil(t, err)
// Prove withdrawal
tx, err := portal.ProveWithdrawalTransaction(
opts,
bindings.TypesWithdrawalTransaction{
Nonce: params.Nonce,
Sender: params.Sender,
Target: params.Target,
Value: params.Value,
GasLimit: params.GasLimit,
Data: params.Data,
},
params.L2OutputIndex,
params.OutputRootProof,
params.WithdrawalProof,
)
require.Nil(t, err)
// Ensure that our withdrawal was proved successfully
proveReceipt, err := waitForTransaction(tx.Hash(), l1Client, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "prove withdrawal")
require.Equal(t, types.ReceiptStatusSuccessful, proveReceipt.Status)
return params, proveReceipt
}
func FinalizeWithdrawal(t *testing.T, cfg SystemConfig, l1Client *ethclient.Client, privKey *ecdsa.PrivateKey, withdrawalReceipt *types.Receipt, params withdrawals.ProvenWithdrawalParameters) *types.Receipt {
// Wait for finalization and then create the Finalized Withdrawal Transaction
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
defer cancel()
_, err := withdrawals.WaitForFinalizationPeriod(ctx, l1Client, predeploys.DevOptimismPortalAddr, withdrawalReceipt.BlockNumber)
require.Nil(t, err)
opts, err := bind.NewKeyedTransactorWithChainID(privKey, cfg.L1ChainIDBig())
require.Nil(t, err)
portal, err := bindings.NewOptimismPortal(predeploys.DevOptimismPortalAddr, l1Client)
require.Nil(t, err)
// Finalize withdrawal
tx, err := portal.FinalizeWithdrawalTransaction(
opts,
bindings.TypesWithdrawalTransaction{
Nonce: params.Nonce,
Sender: params.Sender,
Target: params.Target,
Value: params.Value,
GasLimit: params.GasLimit,
Data: params.Data,
},
)
require.Nil(t, err)
// Ensure that our withdrawal was finalized successfully
finalizeReceipt, err := waitForTransaction(tx.Hash(), l1Client, 3*time.Duration(cfg.DeployConfig.L1BlockTime)*time.Second)
require.Nil(t, err, "finalize withdrawal")
require.Equal(t, types.ReceiptStatusSuccessful, finalizeReceipt.Status)
return finalizeReceipt
}
......@@ -2,9 +2,8 @@ package derive
import (
"bytes"
"encoding/binary"
"errors"
"fmt"
"io"
"math/big"
"github.com/ethereum/go-ethereum/common"
......@@ -13,6 +12,7 @@ import (
"github.com/ethereum-optimism/optimism/op-bindings/predeploys"
"github.com/ethereum-optimism/optimism/op-node/eth"
"github.com/ethereum-optimism/optimism/op-service/solabi"
)
const (
......@@ -46,52 +46,51 @@ type L1BlockInfo struct {
L1FeeScalar eth.Bytes32
}
//+---------+--------------------------+
//| Bytes | Field |
//+---------+--------------------------+
//| 4 | Function signature |
//| 24 | Padding for Number |
//| 8 | Number |
//| 24 | Padding for Time |
//| 8 | Time |
//| 32 | BaseFee |
//| 32 | BlockHash |
//| 24 | Padding for SequenceNumber|
//| 8 | SequenceNumber |
//| 12 | Padding for BatcherAddr |
//| 20 | BatcherAddr |
//| 32 | L1FeeOverhead |
//| 32 | L1FeeScalar |
//+---------+--------------------------+
// Binary Format
// +---------+--------------------------+
// | Bytes | Field |
// +---------+--------------------------+
// | 4 | Function signature |
// | 32 | Number |
// | 32 | Time |
// | 32 | BaseFee |
// | 32 | BlockHash |
// | 32 | SequenceNumber |
// | 32 | BatcherAddr |
// | 32 | L1FeeOverhead |
// | 32 | L1FeeScalar |
// +---------+--------------------------+
func (info *L1BlockInfo) MarshalBinary() ([]byte, error) {
writer := bytes.NewBuffer(make([]byte, 0, L1InfoLen))
writer.Write(L1InfoFuncBytes4)
if err := writeSolidityABIUint64(writer, info.Number); err != nil {
w := bytes.NewBuffer(make([]byte, 0, L1InfoLen))
if err := solabi.WriteSignature(w, L1InfoFuncBytes4); err != nil {
return nil, err
}
if err := writeSolidityABIUint64(writer, info.Time); err != nil {
if err := solabi.WriteUint64(w, info.Number); err != nil {
return nil, err
}
// Ensure that the baseFee is not too large.
if info.BaseFee.BitLen() > 256 {
return nil, fmt.Errorf("base fee exceeds 256 bits: %d", info.BaseFee)
if err := solabi.WriteUint64(w, info.Time); err != nil {
return nil, err
}
var baseFeeBuf [32]byte
info.BaseFee.FillBytes(baseFeeBuf[:])
writer.Write(baseFeeBuf[:])
writer.Write(info.BlockHash.Bytes())
if err := writeSolidityABIUint64(writer, info.SequenceNumber); err != nil {
if err := solabi.WriteUint256(w, info.BaseFee); err != nil {
return nil, err
}
var addrPadding [12]byte
writer.Write(addrPadding[:])
writer.Write(info.BatcherAddr.Bytes())
writer.Write(info.L1FeeOverhead[:])
writer.Write(info.L1FeeScalar[:])
return writer.Bytes(), nil
if err := solabi.WriteHash(w, info.BlockHash); err != nil {
return nil, err
}
if err := solabi.WriteUint64(w, info.SequenceNumber); err != nil {
return nil, err
}
if err := solabi.WriteAddress(w, info.BatcherAddr); err != nil {
return nil, err
}
if err := solabi.WriteEthBytes32(w, info.L1FeeOverhead); err != nil {
return nil, err
}
if err := solabi.WriteEthBytes32(w, info.L1FeeScalar); err != nil {
return nil, err
}
return w.Bytes(), nil
}
func (info *L1BlockInfo) UnmarshalBinary(data []byte) error {
......@@ -100,81 +99,40 @@ func (info *L1BlockInfo) UnmarshalBinary(data []byte) error {
}
reader := bytes.NewReader(data)
funcSignature := make([]byte, 4)
if _, err := io.ReadFull(reader, funcSignature); err != nil || !bytes.Equal(funcSignature, L1InfoFuncBytes4) {
return fmt.Errorf("data does not match L1 info function signature: 0x%x", funcSignature)
}
if blockNumber, err := readSolidityABIUint64(reader); err != nil {
var err error
if _, err := solabi.ReadAndValidateSignature(reader, L1InfoFuncBytes4); err != nil {
return err
} else {
info.Number = blockNumber
}
if blockTime, err := readSolidityABIUint64(reader); err != nil {
if info.Number, err = solabi.ReadUint64(reader); err != nil {
return err
} else {
info.Time = blockTime
}
var baseFeeBytes [32]byte
if _, err := io.ReadFull(reader, baseFeeBytes[:]); err != nil {
return fmt.Errorf("expected BaseFee length to be 32 bytes, but got %x", baseFeeBytes)
}
info.BaseFee = new(big.Int).SetBytes(baseFeeBytes[:])
var blockHashBytes [32]byte
if _, err := io.ReadFull(reader, blockHashBytes[:]); err != nil {
return fmt.Errorf("expected BlockHash length to be 32 bytes, but got %x", blockHashBytes)
}
info.BlockHash.SetBytes(blockHashBytes[:])
if sequenceNumber, err := readSolidityABIUint64(reader); err != nil {
if info.Time, err = solabi.ReadUint64(reader); err != nil {
return err
} else {
info.SequenceNumber = sequenceNumber
}
var addrPadding [12]byte
if _, err := io.ReadFull(reader, addrPadding[:]); err != nil {
return fmt.Errorf("expected addrPadding length to be 12 bytes, but got %x", addrPadding)
if info.BaseFee, err = solabi.ReadUint256(reader); err != nil {
return err
}
if _, err := io.ReadFull(reader, info.BatcherAddr[:]); err != nil {
return fmt.Errorf("expected BatcherAddr length to be 20 bytes, but got %x", info.BatcherAddr)
if info.BlockHash, err = solabi.ReadHash(reader); err != nil {
return err
}
if _, err := io.ReadFull(reader, info.L1FeeOverhead[:]); err != nil {
return fmt.Errorf("expected L1FeeOverhead length to be 32 bytes, but got %x", info.L1FeeOverhead)
if info.SequenceNumber, err = solabi.ReadUint64(reader); err != nil {
return err
}
if _, err := io.ReadFull(reader, info.L1FeeScalar[:]); err != nil {
return fmt.Errorf("expected L1FeeScalar length to be 32 bytes, but got %x", info.L1FeeScalar)
if info.BatcherAddr, err = solabi.ReadAddress(reader); err != nil {
return err
}
return nil
}
func writeSolidityABIUint64(w io.Writer, num uint64) error {
var padding [24]byte
if _, err := w.Write(padding[:]); err != nil {
if info.L1FeeOverhead, err = solabi.ReadEthBytes32(reader); err != nil {
return err
}
if err := binary.Write(w, binary.BigEndian, num); err != nil {
if info.L1FeeScalar, err = solabi.ReadEthBytes32(reader); err != nil {
return err
}
if !solabi.EmptyReader(reader) {
return errors.New("too many bytes")
}
return nil
}
func readSolidityABIUint64(r io.Reader) (uint64, error) {
var (
padding, readPadding [24]byte
num uint64
)
if _, err := io.ReadFull(r, readPadding[:]); err != nil || !bytes.Equal(readPadding[:], padding[:]) {
return 0, fmt.Errorf("L1BlockInfo number exceeds uint64 bounds: %x", readPadding[:])
}
if err := binary.Read(r, binary.BigEndian, &num); err != nil {
return 0, fmt.Errorf("L1BlockInfo expected number length to be 8 bytes")
}
return num, nil
}
// L1InfoDepositTxData is the inverse of L1InfoDeposit, to see where the L2 chain is derived from
func L1InfoDepositTxData(data []byte) (L1BlockInfo, error) {
var info L1BlockInfo
......
......@@ -2,7 +2,7 @@ package derive
import (
"bytes"
"encoding/binary"
"errors"
"fmt"
"github.com/ethereum/go-ethereum/common"
......@@ -12,6 +12,7 @@ import (
"github.com/ethereum-optimism/optimism/op-node/eth"
"github.com/ethereum-optimism/optimism/op-node/rollup"
"github.com/ethereum-optimism/optimism/op-service/solabi"
)
var (
......@@ -27,17 +28,6 @@ var (
ConfigUpdateEventVersion0 = common.Hash{}
)
var (
// A left-padded uint256 equal to 32.
oneWordUint = common.Hash{31: 32}
// A left-padded uint256 equal to 64.
twoWordUint = common.Hash{31: 64}
// 24 zero bytes (the padding for a uint64 in a 32 byte word)
uint64Padding = make([]byte, 24)
// 12 zero bytes (the padding for an Ethereum address in a 32 byte word)
addressPadding = make([]byte, 12)
)
// UpdateSystemConfigWithL1Receipts filters all L1 receipts to find config updates and applies the config updates to the given sysCfg
func UpdateSystemConfigWithL1Receipts(sysCfg *eth.SystemConfig, receipts []*types.Receipt, cfg *rollup.Config) error {
var result error
......@@ -84,90 +74,60 @@ func ProcessSystemConfigUpdateLogEvent(destSysCfg *eth.SystemConfig, ev *types.L
// Create a reader of the unindexed data
reader := bytes.NewReader(ev.Data)
// Counter for the number of bytes read from `reader` via `readWord`
countReadBytes := 0
// Helper function to read a word from the log data reader
readWord := func() (b [32]byte) {
if _, err := reader.Read(b[:]); err != nil {
// If there is an error reading the next 32 bytes from the reader, return an empty
// 32 byte array. We always check that the number of bytes read (`countReadBytes`)
// is equal to the expected amount at the end of each switch case.
return b
}
countReadBytes += 32
return b
}
// Attempt to read unindexed data
switch updateType {
case SystemConfigUpdateBatcher:
// Read the pointer, it should always equal 32.
if word := readWord(); word != oneWordUint {
return fmt.Errorf("expected offset to point to length location, but got %s", word)
if pointer, err := solabi.ReadUint64(reader); err != nil || pointer != 32 {
return NewCriticalError(errors.New("invalid pointer field"))
}
// Read the length, it should also always equal 32.
if word := readWord(); word != oneWordUint {
return fmt.Errorf("expected length to be 32 bytes, but got %s", word)
if length, err := solabi.ReadUint64(reader); err != nil || length != 32 {
return NewCriticalError(errors.New("invalid length field"))
}
// Indexing `word` directly is always safe here, it is guaranteed to be 32 bytes in length.
// Check that the batcher address is correctly zero-padded.
word := readWord()
if !bytes.Equal(word[:12], addressPadding) {
return fmt.Errorf("expected version 0 batcher hash with zero padding, but got %x", word)
address, err := solabi.ReadAddress(reader)
if err != nil {
return NewCriticalError(errors.New("could not read address"))
}
destSysCfg.BatcherAddr.SetBytes(word[12:])
if countReadBytes != 32*3 {
return NewCriticalError(fmt.Errorf("expected 32*3 bytes in batcher hash update, but got %d bytes", len(ev.Data)))
if !solabi.EmptyReader(reader) {
return NewCriticalError(errors.New("too many bytes"))
}
destSysCfg.BatcherAddr = address
return nil
case SystemConfigUpdateGasConfig:
// Read the pointer, it should always equal 32.
if word := readWord(); word != oneWordUint {
return fmt.Errorf("expected offset to point to length location, but got %s", word)
if pointer, err := solabi.ReadUint64(reader); err != nil || pointer != 32 {
return NewCriticalError(errors.New("invalid pointer field"))
}
// Read the length, it should always equal 64.
if word := readWord(); word != twoWordUint {
return fmt.Errorf("expected length to be 64 bytes, but got %s", word)
if length, err := solabi.ReadUint64(reader); err != nil || length != 64 {
return NewCriticalError(errors.New("invalid length field"))
}
// Set the system config's overhead and scalar values to the values read from the log
destSysCfg.Overhead = readWord()
destSysCfg.Scalar = readWord()
if countReadBytes != 32*4 {
return NewCriticalError(fmt.Errorf("expected 32*4 bytes in GPO params update data, but got %d", len(ev.Data)))
overhead, err := solabi.ReadEthBytes32(reader)
if err != nil {
return NewCriticalError(errors.New("could not read overhead"))
}
scalar, err := solabi.ReadEthBytes32(reader)
if err != nil {
return NewCriticalError(errors.New("could not read scalar"))
}
if !solabi.EmptyReader(reader) {
return NewCriticalError(errors.New("too many bytes"))
}
destSysCfg.Overhead = overhead
destSysCfg.Scalar = scalar
return nil
case SystemConfigUpdateGasLimit:
// Read the pointer, it should always equal 32.
if word := readWord(); word != oneWordUint {
return fmt.Errorf("expected offset to point to length location, but got %s", word)
if pointer, err := solabi.ReadUint64(reader); err != nil || pointer != 32 {
return NewCriticalError(errors.New("invalid pointer field"))
}
// Read the length, it should also always equal 32.
if word := readWord(); word != oneWordUint {
return fmt.Errorf("expected length to be 32 bytes, but got %s", word)
if length, err := solabi.ReadUint64(reader); err != nil || length != 32 {
return NewCriticalError(errors.New("invalid length field"))
}
// Indexing `word` directly is always safe here, it is guaranteed to be 32 bytes in length.
// Check that the gas limit is correctly zero-padded.
word := readWord()
if !bytes.Equal(word[:24], uint64Padding) {
return fmt.Errorf("expected zero padding for gaslimit, but got %x", word)
gasLimit, err := solabi.ReadUint64(reader)
if err != nil {
return NewCriticalError(errors.New("could not read gas limit"))
}
destSysCfg.GasLimit = binary.BigEndian.Uint64(word[24:])
if countReadBytes != 32*3 {
return NewCriticalError(fmt.Errorf("expected 32*3 bytes in gas limit update, but got %d bytes", len(ev.Data)))
if !solabi.EmptyReader(reader) {
return NewCriticalError(errors.New("too many bytes"))
}
destSysCfg.GasLimit = gasLimit
return nil
case SystemConfigUpdateUnsafeBlockSigner:
// Ignored in derivation. This configurable applies to runtime configuration outside of the derivation.
......
package solabi
import (
"bytes"
"encoding/binary"
"errors"
"fmt"
"io"
"math/big"
"github.com/ethereum-optimism/optimism/op-node/eth"
"github.com/ethereum/go-ethereum/common"
)
// These are empty padding values. They should be zero'd & not modified at all.
var (
addressEmptyPadding [12]byte = [12]byte{}
uint64EmptyPadding [24]byte = [24]byte{}
)
func ReadSignature(r io.Reader) ([]byte, error) {
sig := make([]byte, 4)
_, err := io.ReadFull(r, sig)
return sig, err
}
func ReadAndValidateSignature(r io.Reader, expectedSignature []byte) ([]byte, error) {
sig := make([]byte, 4)
if _, err := io.ReadFull(r, sig); err != nil {
return nil, err
}
if !bytes.Equal(sig, expectedSignature) {
return nil, errors.New("invalid function signature")
}
return sig, nil
}
func ReadHash(r io.Reader) (common.Hash, error) {
var h common.Hash
_, err := io.ReadFull(r, h[:])
return h, err
}
func ReadEthBytes32(r io.Reader) (eth.Bytes32, error) {
var b eth.Bytes32
_, err := io.ReadFull(r, b[:])
return b, err
}
func ReadAddress(r io.Reader) (common.Address, error) {
var readPadding [12]byte
var a common.Address
if _, err := io.ReadFull(r, readPadding[:]); err != nil {
return a, err
} else if !bytes.Equal(readPadding[:], addressEmptyPadding[:]) {
return a, fmt.Errorf("address padding was not empty: %x", readPadding[:])
}
_, err := io.ReadFull(r, a[:])
return a, err
}
// ReadUint64 reads a big endian uint64 from a 32 byte word
func ReadUint64(r io.Reader) (uint64, error) {
var readPadding [24]byte
var n uint64
if _, err := io.ReadFull(r, readPadding[:]); err != nil {
return n, err
} else if !bytes.Equal(readPadding[:], uint64EmptyPadding[:]) {
return n, fmt.Errorf("number padding was not empty: %x", readPadding[:])
}
if err := binary.Read(r, binary.BigEndian, &n); err != nil {
return 0, fmt.Errorf("expected number length to be 8 bytes")
}
return n, nil
}
func ReadUint256(r io.Reader) (*big.Int, error) {
var n [32]byte
if _, err := io.ReadFull(r, n[:]); err != nil {
return nil, err
}
return new(big.Int).SetBytes(n[:]), nil
}
func EmptyReader(r io.Reader) bool {
var t [1]byte
n, err := r.Read(t[:])
return n == 0 && err == io.EOF
}
func WriteSignature(w io.Writer, sig []byte) error {
_, err := w.Write(sig)
return err
}
func WriteHash(w io.Writer, h common.Hash) error {
_, err := w.Write(h[:])
return err
}
func WriteEthBytes32(w io.Writer, b eth.Bytes32) error {
_, err := w.Write(b[:])
return err
}
func WriteAddress(w io.Writer, a common.Address) error {
if _, err := w.Write(addressEmptyPadding[:]); err != nil {
return err
}
if _, err := w.Write(a[:]); err != nil {
return err
}
return nil
}
func WriteUint256(w io.Writer, n *big.Int) error {
if n.BitLen() > 256 {
return fmt.Errorf("big int exceeds 256 bits: %d", n)
}
arr := make([]byte, 32)
n.FillBytes(arr)
_, err := w.Write(arr)
return err
}
func WriteUint64(w io.Writer, n uint64) error {
if _, err := w.Write(uint64EmptyPadding[:]); err != nil {
return err
}
if err := binary.Write(w, binary.BigEndian, n); err != nil {
return err
}
return nil
}
package solabi_test
import (
"bytes"
"testing"
"github.com/ethereum-optimism/optimism/op-service/solabi"
"github.com/stretchr/testify/require"
)
func TestEmptyReader(t *testing.T) {
t.Run("empty", func(t *testing.T) {
r := new(bytes.Buffer)
require.True(t, solabi.EmptyReader(r))
})
t.Run("empty after read", func(t *testing.T) {
r := bytes.NewBufferString("not empty")
tmp := make([]byte, 9)
n, err := r.Read(tmp)
require.Equal(t, 9, n)
require.NoError(t, err)
require.True(t, solabi.EmptyReader(r))
})
t.Run("extra bytes", func(t *testing.T) {
r := bytes.NewBufferString("not empty")
require.False(t, solabi.EmptyReader(r))
})
}
......@@ -92,7 +92,7 @@ contract ExternalRelay is CommonTest {
/**
* @notice Helper function to get the callData for an `externalCallWithMinGas
*/
function getCallData() public returns (bytes memory) {
function getCallData() public pure returns (bytes memory) {
return abi.encodeWithSelector(ExternalRelay.externalCallWithMinGas.selector);
}
......
......@@ -17,6 +17,7 @@
"lint:fix": "yarn lint:check --fix",
"pre-commit": "lint-staged",
"test": "hardhat test",
"test:next": "vitest test-next/proveMessage.spec.ts",
"test:coverage": "nyc hardhat test && nyc merge .nyc_output coverage.json",
"autogen:docs": "typedoc --out docs src/index.ts"
},
......@@ -45,7 +46,9 @@
"hardhat-deploy": "^0.11.4",
"nyc": "^15.1.0",
"typedoc": "^0.22.13",
"mocha": "^10.0.0"
"mocha": "^10.0.0",
"vitest": "^0.28.3",
"zod": "^3.11.6"
},
"dependencies": {
"@eth-optimism/contracts": "0.5.40",
......
......@@ -68,6 +68,7 @@ import {
migratedWithdrawalGasLimit,
DEPOSIT_CONFIRMATION_BLOCKS,
CHAIN_BLOCK_TIMES,
hashMessageHash,
} from './utils'
export class CrossChainMessenger {
......@@ -351,14 +352,12 @@ export class CrossChainMessenger {
}
}
const minGasLimit = migratedWithdrawalGasLimit(resolved.message)
return {
...resolved,
value,
minGasLimit,
minGasLimit: BigNumber.from(0),
messageNonce: encodeVersionedNonce(
BigNumber.from(1),
BigNumber.from(0),
resolved.messageNonce
),
}
......@@ -388,13 +387,23 @@ export class CrossChainMessenger {
updated = resolved
}
// Encode the updated message, we need this for legacy messages.
const encoded = encodeCrossDomainMessageV1(
updated.messageNonce,
updated.sender,
updated.target,
updated.value,
updated.minGasLimit,
updated.message
)
// We need to figure out the final withdrawal data that was used to compute the withdrawal hash
// inside the L2ToL1Message passer contract. Exact mechanism here depends on whether or not
// this is a legacy message or a new Bedrock message.
let gasLimit: BigNumber
let messageNonce: BigNumber
if (version.eq(0)) {
gasLimit = BigNumber.from(0)
gasLimit = migratedWithdrawalGasLimit(encoded)
messageNonce = resolved.messageNonce
} else {
const receipt = await this.l2Provider.getTransactionReceipt(
......@@ -433,14 +442,7 @@ export class CrossChainMessenger {
target: this.contracts.l1.L1CrossDomainMessenger.address,
value: updated.value,
minGasLimit: gasLimit,
message: encodeCrossDomainMessageV1(
updated.messageNonce,
updated.sender,
updated.target,
updated.value,
updated.minGasLimit,
updated.message
),
message: encoded,
}
}
......@@ -572,6 +574,9 @@ export class CrossChainMessenger {
public async toCrossChainMessage(
message: MessageLike
): Promise<CrossChainMessage> {
if (!message) {
throw new Error('message is undefined')
}
// TODO: Convert these checks into proper type checks.
if ((message as CrossChainMessage).message) {
return message as CrossChainMessage
......@@ -1357,12 +1362,8 @@ export class CrossChainMessenger {
}
const withdrawal = await this.toLowLevelMessage(resolved)
const messageSlot = ethers.utils.keccak256(
ethers.utils.defaultAbiCoder.encode(
['bytes32', 'uint256'],
[hashLowLevelMessage(withdrawal), ethers.constants.HashZero]
)
)
const hash = hashLowLevelMessage(withdrawal)
const messageSlot = hashMessageHash(hash)
const stateTrieProof = await makeStateTrieProof(
this.l2Provider as ethers.providers.JsonRpcProvider,
......@@ -1462,9 +1463,8 @@ export class CrossChainMessenger {
overrides?: Overrides
}
): Promise<TransactionResponse> {
return (opts?.signer || this.l1Signer).sendTransaction(
await this.populateTransaction.proveMessage(message, opts)
)
const tx = await this.populateTransaction.proveMessage(message, opts)
return (opts?.signer || this.l1Signer).sendTransaction(tx)
}
/**
......@@ -1768,7 +1768,8 @@ export class CrossChainMessenger {
const withdrawal = await this.toLowLevelMessage(resolved)
const proof = await this.getBedrockMessageProof(resolved)
return this.contracts.l1.OptimismPortal.populateTransaction.proveWithdrawalTransaction(
const args = [
[
withdrawal.messageNonce,
withdrawal.sender,
......@@ -1785,7 +1786,11 @@ export class CrossChainMessenger {
proof.outputRootProof.latestBlockhash,
],
proof.withdrawalProof,
opts?.overrides || {}
opts?.overrides || {},
] as const
return this.contracts.l1.OptimismPortal.populateTransaction.proveWithdrawalTransaction(
...args
)
},
......
import { hashWithdrawal } from '@eth-optimism/core-utils'
import { BigNumber, utils } from 'ethers'
import { BigNumber, utils, ethers } from 'ethers'
import { LowLevelMessage } from '../interfaces'
......@@ -22,6 +22,22 @@ export const hashLowLevelMessage = (message: LowLevelMessage): string => {
)
}
/**
* Utility for hashing a message hash. This computes the storage slot
* where the message hash will be stored in state. HashZero is used
* because the first mapping in the contract is used.
*
* @param messageHash Message hash to hash.
* @returns Hash of the given message hash.
*/
export const hashMessageHash = (messageHash: string): string => {
const data = ethers.utils.defaultAbiCoder.encode(
['bytes32', 'uint256'],
[messageHash, ethers.constants.HashZero]
)
return ethers.utils.keccak256(data)
}
/**
* Compute the min gas limit for a migrated withdrawal.
*/
......
# test-next
- The new tests for the next version of sdk will use vitest
- The vitest tests are kept here seperated from mocha tests for now
import ethers from 'ethers'
import { describe, expect, it } from 'vitest'
import { z } from 'zod'
import { CrossChainMessenger } from '../src'
/**
* This test repros the bug where legacy withdrawals are not provable
*/
/*******
Cast results from runnning cast tx and cast receipt on the l2 tx hash
cast tx 0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81 --rpc-url https://goerli.optimism.io
blockHash 0x67956cee3de38d49206d34b77f560c4c371d77b36584047ade8bf7b67bf210c0
blockNumber 2337599
from 0x1d86C2F5cc7fBEc35FEDbd3293b5004A841EA3F0
gas 118190
gasPrice 1
hash 0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81
input 0x32b7006d000000000000000000000000deaddeaddeaddeaddeaddeaddeaddeaddead000000000000000000000000000000000000000000000000000000005af3107a4000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000800000000000000000000000000000000000000000000000000000000000000000
nonce 10
r 0x7e58c5dbb37f57303d936562d89a75a20be2a45f54c5d44dc73119453adf2e08
s 0x1bc952bd048dd38668a0c3b4bac202945c5a150465b551dd2a768e54a746e2c4
to 0x4200000000000000000000000000000000000010
transactionIndex 0
v 875
value 0
index 2337598
l1BlockNumber 7850866
l1Timestamp 1666982083
queueOrigin sequencer
rawTransaction 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
cast tx 0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81 --rpc-url https://goerli.optimism.io
blockHash 0x67956cee3de38d49206d34b77f560c4c371d77b36584047ade8bf7b67bf210c0
blockNumber 2337599
contractAddress
cumulativeGasUsed 115390
effectiveGasPrice
gasUsed 115390
logs [{"address":"0xdeaddeaddeaddeaddeaddeaddeaddeaddead0000","topics":["0xddf252ad1be2c89b69c2b068fc378daa952ba7f163c4a11628f55a4df523b3ef","0x0000000000000000000000001d86c2f5cc7fbec35fedbd3293b5004a841ea3f0","0x0000000000000000000000000000000000000000000000000000000000000000"],"data":"0x00000000000000000000000000000000000000000000000000005af3107a4000","blockHash":"0x67956cee3de38d49206d34b77f560c4c371d77b36584047ade8bf7b67bf210c0","blockNumber":"0x23ab3f","transactionHash":"0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81","transactionIndex":"0x0","logIndex":"0x0","removed":false},{"address":"0xdeaddeaddeaddeaddeaddeaddeaddeaddead0000","topics":["0xcc16f5dbb4873280815c1ee09dbd06736cffcc184412cf7a71a0fdb75d397ca5","0x0000000000000000000000001d86c2f5cc7fbec35fedbd3293b5004a841ea3f0"],"data":"0x00000000000000000000000000000000000000000000000000005af3107a4000","blockHash":"0x67956cee3de38d49206d34b77f560c4c371d77b36584047ade8bf7b67bf210c0","blockNumber":"0x23ab3f","transactionHash":"0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81","transactionIndex":"0x0","logIndex":"0x1","removed":false},{"address":"0x4200000000000000000000000000000000000007","topics":["0xcb0f7ffd78f9aee47a248fae8db181db6eee833039123e026dcbff529522e52a","0x000000000000000000000000636af16bf2f682dd3109e60102b8e1a089fedaa8"],"data":"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","blockHash":"0x67956cee3de38d49206d34b77f560c4c371d77b36584047ade8bf7b67bf210c0","blockNumber":"0x23ab3f","transactionHash":"0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81","transactionIndex":"0x0","logIndex":"0x2","removed":false},{"address":"0x4200000000000000000000000000000000000010","topics":["0x73d170910aba9e6d50b102db522b1dbcd796216f5128b445aa2135272886497e","0x0000000000000000000000000000000000000000000000000000000000000000","0x000000000000000000000000deaddeaddeaddeaddeaddeaddeaddeaddead0000","0x0000000000000000000000001d86c2f5cc7fbec35fedbd3293b5004a841ea3f0"],"data":"0x0000000000000000000000001d86c2f5cc7fbec35fedbd3293b5004a841ea3f000000000000000000000000000000000000000000000000000005af3107a400000000000000000000000000000000000000000000000000000000000000000600000000000000000000000000000000000000000000000000000000000000000","blockHash":"0x67956cee3de38d49206d34b77f560c4c371d77b36584047ade8bf7b67bf210c0","blockNumber":"0x23ab3f","transactionHash":"0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81","transactionIndex":"0x0","logIndex":"0x3","removed":false}]
logsBloom 0x00000000000000000010000000000000000000000000001000100000001000000000000000000080000000000000008000000800000000000000000000000240000000002000400040000008000000000000000000000000000000000000000100000000020000000000000000000800080000000040000000000010000000000000000000000000000000000000000000800000000000000020000000200000000000000000000001000000000000000000200000000000000000000000000000000002000000200000000400000000000002100000000000000000000020001000000000000000000000000000000000000000000000000000010000008000
root
status 1
transactionHash 0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81
transactionIndex 0
type
*/
const E2E_RPC_URL_L1 = z
.string()
.url()
.describe('L1 ethereum rpc Url')
.parse(import.meta.env.VITE_E2E_RPC_URL_L1)
const E2E_RPC_URL_L2 = z
.string()
.url()
.describe('L1 ethereum rpc Url')
.parse(import.meta.env.VITE_E2E_RPC_URL_L2)
const E2E_PRIVATE_KEY = z
.string()
.describe('Private key')
.parse(import.meta.env.VITE_E2E_PRIVATE_KEY)
const jsonRpcHeaders = { 'User-Agent': 'eth-optimism/@gateway/backend' }
/**
* Initialize the signer, prover, and cross chain messenger
*/
const l1Provider = new ethers.providers.JsonRpcProvider({
url: E2E_RPC_URL_L1,
headers: jsonRpcHeaders,
})
const l2Provider = new ethers.providers.JsonRpcProvider({
url: E2E_RPC_URL_L2,
headers: jsonRpcHeaders,
})
const l1Wallet = new ethers.Wallet(E2E_PRIVATE_KEY, l1Provider)
const crossChainMessenger = new CrossChainMessenger({
l1SignerOrProvider: l1Wallet,
l2SignerOrProvider: l2Provider,
l1ChainId: 5,
l2ChainId: 420,
bedrock: true,
})
describe('prove message', () => {
it(`should prove a legacy tx
`, async () => {
/**
* Tx hash of legacy withdrawal
*
* @see https://goerli-optimism.etherscan.io/tx/0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81
*/
const txWithdrawalHash =
'0xd66fda632b51a8b25a9d260d70da8be57b9930c4616370861526335c3e8eef81'
const txReceipt = await l2Provider.getTransactionReceipt(txWithdrawalHash)
expect(txReceipt).toBeDefined()
const tx = await crossChainMessenger.proveMessage(txWithdrawalHash)
const receipt = await tx.wait()
// A 1 means the transaction was successful
expect(receipt.status).toBe(1)
}, 20_000)
})
import { BigNumber } from 'ethers'
import { expect } from '../setup'
import { migratedWithdrawalGasLimit } from '../../src/utils/message-utils'
import {
migratedWithdrawalGasLimit,
hashLowLevelMessage,
hashMessageHash,
} from '../../src/utils/message-utils'
describe('Message Utils', () => {
describe('migratedWithdrawalGasLimit', () => {
......@@ -26,4 +30,47 @@ describe('Message Utils', () => {
}
})
})
/**
* Test that storage slot computation is correct. The test vectors are
* from actual migrated withdrawals on goerli.
*/
describe('Withdrawal Hashing', () => {
it('should work', () => {
const tests = [
{
input: {
messageNonce: BigNumber.from(100000),
sender: '0x4200000000000000000000000000000000000007',
target: '0x5086d1eEF304eb5284A0f6720f79403b4e9bE294',
value: BigNumber.from(0),
minGasLimit: BigNumber.from(207744),
message:
'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',
},
result:
'0x7c83d39edf60c0ab61bc7cfd2e5f741efdf02fd6e2da0f12318f0d1858d3773b',
},
{
input: {
messageNonce: BigNumber.from(100001),
sender: '0x4200000000000000000000000000000000000007',
target: '0x5086d1eEF304eb5284A0f6720f79403b4e9bE294',
value: BigNumber.from(0),
minGasLimit: BigNumber.from(207744),
message:
'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',
},
result:
'0x17c90d87508a23d806962f4c5f366ef505e8d80e5cc2a5c87242560c21d7c588',
},
]
for (const test of tests) {
const hash = hashLowLevelMessage(test.input)
const messageSlot = hashMessageHash(hash)
expect(messageSlot).to.eq(test.result)
}
})
})
})
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