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189 lines
6.4 KiB
189 lines
6.4 KiB
1 year ago
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// Copyright 2014 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package miner
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import (
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"crypto/ecdsa"
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"math/big"
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"math/rand"
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"testing"
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"time"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/txpool"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/crypto"
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)
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func TestTransactionPriceNonceSortLegacy(t *testing.T) {
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testTransactionPriceNonceSort(t, nil)
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}
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func TestTransactionPriceNonceSort1559(t *testing.T) {
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testTransactionPriceNonceSort(t, big.NewInt(0))
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testTransactionPriceNonceSort(t, big.NewInt(5))
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testTransactionPriceNonceSort(t, big.NewInt(50))
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}
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// Tests that transactions can be correctly sorted according to their price in
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// decreasing order, but at the same time with increasing nonces when issued by
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// the same account.
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func testTransactionPriceNonceSort(t *testing.T, baseFee *big.Int) {
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// Generate a batch of accounts to start with
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keys := make([]*ecdsa.PrivateKey, 25)
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for i := 0; i < len(keys); i++ {
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keys[i], _ = crypto.GenerateKey()
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}
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signer := types.LatestSignerForChainID(common.Big1)
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// Generate a batch of transactions with overlapping values, but shifted nonces
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groups := map[common.Address][]*txpool.LazyTransaction{}
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expectedCount := 0
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for start, key := range keys {
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addr := crypto.PubkeyToAddress(key.PublicKey)
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count := 25
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for i := 0; i < 25; i++ {
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var tx *types.Transaction
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gasFeeCap := rand.Intn(50)
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if baseFee == nil {
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tx = types.NewTx(&types.LegacyTx{
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Nonce: uint64(start + i),
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To: &common.Address{},
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Value: big.NewInt(100),
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Gas: 100,
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GasPrice: big.NewInt(int64(gasFeeCap)),
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Data: nil,
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})
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} else {
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tx = types.NewTx(&types.DynamicFeeTx{
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Nonce: uint64(start + i),
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To: &common.Address{},
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Value: big.NewInt(100),
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Gas: 100,
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GasFeeCap: big.NewInt(int64(gasFeeCap)),
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GasTipCap: big.NewInt(int64(rand.Intn(gasFeeCap + 1))),
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Data: nil,
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})
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if count == 25 && int64(gasFeeCap) < baseFee.Int64() {
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count = i
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}
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}
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tx, err := types.SignTx(tx, signer, key)
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if err != nil {
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t.Fatalf("failed to sign tx: %s", err)
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}
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groups[addr] = append(groups[addr], &txpool.LazyTransaction{
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Hash: tx.Hash(),
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Tx: &txpool.Transaction{Tx: tx},
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Time: tx.Time(),
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GasFeeCap: tx.GasFeeCap(),
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GasTipCap: tx.GasTipCap(),
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})
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}
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expectedCount += count
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}
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// Sort the transactions and cross check the nonce ordering
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txset := newTransactionsByPriceAndNonce(signer, groups, baseFee)
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txs := types.Transactions{}
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for tx := txset.Peek(); tx != nil; tx = txset.Peek() {
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txs = append(txs, tx.Tx.Tx)
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txset.Shift()
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}
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if len(txs) != expectedCount {
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t.Errorf("expected %d transactions, found %d", expectedCount, len(txs))
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}
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for i, txi := range txs {
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fromi, _ := types.Sender(signer, txi)
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// Make sure the nonce order is valid
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for j, txj := range txs[i+1:] {
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fromj, _ := types.Sender(signer, txj)
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if fromi == fromj && txi.Nonce() > txj.Nonce() {
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t.Errorf("invalid nonce ordering: tx #%d (A=%x N=%v) < tx #%d (A=%x N=%v)", i, fromi[:4], txi.Nonce(), i+j, fromj[:4], txj.Nonce())
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}
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}
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// If the next tx has different from account, the price must be lower than the current one
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if i+1 < len(txs) {
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next := txs[i+1]
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fromNext, _ := types.Sender(signer, next)
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tip, err := txi.EffectiveGasTip(baseFee)
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nextTip, nextErr := next.EffectiveGasTip(baseFee)
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if err != nil || nextErr != nil {
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t.Errorf("error calculating effective tip: %v, %v", err, nextErr)
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}
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if fromi != fromNext && tip.Cmp(nextTip) < 0 {
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t.Errorf("invalid gasprice ordering: tx #%d (A=%x P=%v) < tx #%d (A=%x P=%v)", i, fromi[:4], txi.GasPrice(), i+1, fromNext[:4], next.GasPrice())
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}
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}
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}
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}
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// Tests that if multiple transactions have the same price, the ones seen earlier
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// are prioritized to avoid network spam attacks aiming for a specific ordering.
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func TestTransactionTimeSort(t *testing.T) {
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// Generate a batch of accounts to start with
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keys := make([]*ecdsa.PrivateKey, 5)
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for i := 0; i < len(keys); i++ {
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keys[i], _ = crypto.GenerateKey()
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}
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signer := types.HomesteadSigner{}
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// Generate a batch of transactions with overlapping prices, but different creation times
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groups := map[common.Address][]*txpool.LazyTransaction{}
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for start, key := range keys {
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addr := crypto.PubkeyToAddress(key.PublicKey)
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tx, _ := types.SignTx(types.NewTransaction(0, common.Address{}, big.NewInt(100), 100, big.NewInt(1), nil), signer, key)
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tx.SetTime(time.Unix(0, int64(len(keys)-start)))
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groups[addr] = append(groups[addr], &txpool.LazyTransaction{
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Hash: tx.Hash(),
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Tx: &txpool.Transaction{Tx: tx},
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Time: tx.Time(),
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GasFeeCap: tx.GasFeeCap(),
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GasTipCap: tx.GasTipCap(),
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})
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}
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// Sort the transactions and cross check the nonce ordering
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txset := newTransactionsByPriceAndNonce(signer, groups, nil)
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txs := types.Transactions{}
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for tx := txset.Peek(); tx != nil; tx = txset.Peek() {
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txs = append(txs, tx.Tx.Tx)
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txset.Shift()
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}
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if len(txs) != len(keys) {
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t.Errorf("expected %d transactions, found %d", len(keys), len(txs))
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}
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for i, txi := range txs {
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fromi, _ := types.Sender(signer, txi)
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if i+1 < len(txs) {
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next := txs[i+1]
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fromNext, _ := types.Sender(signer, next)
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if txi.GasPrice().Cmp(next.GasPrice()) < 0 {
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t.Errorf("invalid gasprice ordering: tx #%d (A=%x P=%v) < tx #%d (A=%x P=%v)", i, fromi[:4], txi.GasPrice(), i+1, fromNext[:4], next.GasPrice())
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}
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// Make sure time order is ascending if the txs have the same gas price
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if txi.GasPrice().Cmp(next.GasPrice()) == 0 && txi.Time().After(next.Time()) {
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t.Errorf("invalid received time ordering: tx #%d (A=%x T=%v) > tx #%d (A=%x T=%v)", i, fromi[:4], txi.Time(), i+1, fromNext[:4], next.Time())
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}
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}
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}
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}
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