github.com/aidoskuneen/adk-node@v0.0.0-20220315131952-2e32567cb7f4/miner/stress/1559/main.go (about)

     1  // Copyright 2021 The adkgo Authors
     2  // This file is part of the adkgo library (adapted for adkgo from go--ethereum v1.10.8).
     3  //
     4  // the adkgo library is free software: you can redistribute it and/or modify
     5  // it under the terms of the GNU Lesser General Public License as published by
     6  // the Free Software Foundation, either version 3 of the License, or
     7  // (at your option) any later version.
     8  //
     9  // the adkgo library is distributed in the hope that it will be useful,
    10  // but WITHOUT ANY WARRANTY; without even the implied warranty of
    11  // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
    12  // GNU Lesser General Public License for more details.
    13  //
    14  // You should have received a copy of the GNU Lesser General Public License
    15  // along with the adkgo library. If not, see <http://www.gnu.org/licenses/>.
    16  
    17  // This file contains a miner stress test for eip 1559.
    18  package main
    19  
    20  import (
    21  	"crypto/ecdsa"
    22  	"io/ioutil"
    23  	"math/big"
    24  	"math/rand"
    25  	"os"
    26  	"path/filepath"
    27  	"time"
    28  
    29  	"github.com/aidoskuneen/adk-node/accounts/keystore"
    30  	"github.com/aidoskuneen/adk-node/common"
    31  	"github.com/aidoskuneen/adk-node/common/fdlimit"
    32  	"github.com/aidoskuneen/adk-node/consensus/ethash"
    33  	"github.com/aidoskuneen/adk-node/core"
    34  	"github.com/aidoskuneen/adk-node/core/types"
    35  	"github.com/aidoskuneen/adk-node/crypto"
    36  	"github.com/aidoskuneen/adk-node/eth"
    37  	"github.com/aidoskuneen/adk-node/eth/downloader"
    38  	"github.com/aidoskuneen/adk-node/eth/ethconfig"
    39  	"github.com/aidoskuneen/adk-node/log"
    40  	"github.com/aidoskuneen/adk-node/miner"
    41  	"github.com/aidoskuneen/adk-node/node"
    42  	"github.com/aidoskuneen/adk-node/p2p"
    43  	"github.com/aidoskuneen/adk-node/p2p/enode"
    44  	"github.com/aidoskuneen/adk-node/params"
    45  )
    46  
    47  var (
    48  	londonBlock = big.NewInt(30) // Predefined london fork block for activating eip 1559.
    49  )
    50  
    51  func main() {
    52  	log.Root().SetHandler(log.LvlFilterHandler(log.LvlInfo, log.StreamHandler(os.Stderr, log.TerminalFormat(true))))
    53  	fdlimit.Raise(2048)
    54  
    55  	// Generate a batch of accounts to seal and fund with
    56  	faucets := make([]*ecdsa.PrivateKey, 128)
    57  	for i := 0; i < len(faucets); i++ {
    58  		faucets[i], _ = crypto.GenerateKey()
    59  	}
    60  	// Pre-generate the ethash mining DAG so we don't race
    61  	ethash.MakeDataset(1, filepath.Join(os.Getenv("HOME"), ".ethash"))
    62  
    63  	// Create an Ethash network based off of the Ropsten config
    64  	genesis := makeGenesis(faucets)
    65  
    66  	var (
    67  		nodes  []*eth.Ethereum
    68  		enodes []*enode.Node
    69  	)
    70  	for i := 0; i < 4; i++ {
    71  		// Start the node and wait until it's up
    72  		stack, ethBackend, err := makeMiner(genesis)
    73  		if err != nil {
    74  			panic(err)
    75  		}
    76  		defer stack.Close()
    77  
    78  		for stack.Server().NodeInfo().Ports.Listener == 0 {
    79  			time.Sleep(250 * time.Millisecond)
    80  		}
    81  		// Connect the node to all the previous ones
    82  		for _, n := range enodes {
    83  			stack.Server().AddPeer(n)
    84  		}
    85  		// Start tracking the node and its enode
    86  		nodes = append(nodes, ethBackend)
    87  		enodes = append(enodes, stack.Server().Self())
    88  
    89  		// Inject the signer key and start sealing with it
    90  		store := stack.AccountManager().Backends(keystore.KeyStoreType)[0].(*keystore.KeyStore)
    91  		if _, err := store.NewAccount(""); err != nil {
    92  			panic(err)
    93  		}
    94  	}
    95  
    96  	// Iterate over all the nodes and start mining
    97  	time.Sleep(3 * time.Second)
    98  	for _, node := range nodes {
    99  		if err := node.StartMining(1); err != nil {
   100  			panic(err)
   101  		}
   102  	}
   103  	time.Sleep(3 * time.Second)
   104  
   105  	// Start injecting transactions from the faucets like crazy
   106  	var (
   107  		nonces = make([]uint64, len(faucets))
   108  
   109  		// The signer activates the 1559 features even before the fork,
   110  		// so the new 1559 txs can be created with this signer.
   111  		signer = types.LatestSignerForChainID(genesis.Config.ChainID)
   112  	)
   113  	for {
   114  		// Pick a random mining node
   115  		index := rand.Intn(len(faucets))
   116  		backend := nodes[index%len(nodes)]
   117  
   118  		headHeader := backend.BlockChain().CurrentHeader()
   119  		baseFee := headHeader.BaseFee
   120  
   121  		// Create a self transaction and inject into the pool. The legacy
   122  		// and 1559 transactions can all be created by random even if the
   123  		// fork is not happened.
   124  		tx := makeTransaction(nonces[index], faucets[index], signer, baseFee)
   125  		if err := backend.TxPool().AddLocal(tx); err != nil {
   126  			continue
   127  		}
   128  		nonces[index]++
   129  
   130  		// Wait if we're too saturated
   131  		if pend, _ := backend.TxPool().Stats(); pend > 4192 {
   132  			time.Sleep(100 * time.Millisecond)
   133  		}
   134  
   135  		// Wait if the basefee is raised too fast
   136  		if baseFee != nil && baseFee.Cmp(new(big.Int).Mul(big.NewInt(100), big.NewInt(params.GWei))) > 0 {
   137  			time.Sleep(500 * time.Millisecond)
   138  		}
   139  	}
   140  }
   141  
   142  func makeTransaction(nonce uint64, privKey *ecdsa.PrivateKey, signer types.Signer, baseFee *big.Int) *types.Transaction {
   143  	// Generate legacy transaction
   144  	if rand.Intn(2) == 0 {
   145  		tx, err := types.SignTx(types.NewTransaction(nonce, crypto.PubkeyToAddress(privKey.PublicKey), new(big.Int), 21000, big.NewInt(100000000000+rand.Int63n(65536)), nil), signer, privKey)
   146  		if err != nil {
   147  			panic(err)
   148  		}
   149  		return tx
   150  	}
   151  	// Generate eip 1559 transaction
   152  	recipient := crypto.PubkeyToAddress(privKey.PublicKey)
   153  
   154  	// Feecap and feetip are limited to 32 bytes. Offer a sightly
   155  	// larger buffer for creating both valid and invalid transactions.
   156  	var buf = make([]byte, 32+5)
   157  	rand.Read(buf)
   158  	gasTipCap := new(big.Int).SetBytes(buf)
   159  
   160  	// If the given base fee is nil(the 1559 is still not available),
   161  	// generate a fake base fee in order to create 1559 tx forcibly.
   162  	if baseFee == nil {
   163  		baseFee = new(big.Int).SetInt64(int64(rand.Int31()))
   164  	}
   165  	// Generate the feecap, 75% valid feecap and 25% unguaranted.
   166  	var gasFeeCap *big.Int
   167  	if rand.Intn(4) == 0 {
   168  		rand.Read(buf)
   169  		gasFeeCap = new(big.Int).SetBytes(buf)
   170  	} else {
   171  		gasFeeCap = new(big.Int).Add(baseFee, gasTipCap)
   172  	}
   173  	return types.MustSignNewTx(privKey, signer, &types.DynamicFeeTx{
   174  		ChainID:    signer.ChainID(),
   175  		Nonce:      nonce,
   176  		GasTipCap:  gasTipCap,
   177  		GasFeeCap:  gasFeeCap,
   178  		Gas:        21000,
   179  		To:         &recipient,
   180  		Value:      big.NewInt(100),
   181  		Data:       nil,
   182  		AccessList: nil,
   183  	})
   184  }
   185  
   186  // makeGenesis creates a custom Ethash genesis block based on some pre-defined
   187  // faucet accounts.
   188  func makeGenesis(faucets []*ecdsa.PrivateKey) *core.Genesis {
   189  	genesis := core.DefaultRopstenGenesisBlock()
   190  
   191  	genesis.Config = params.AllEthashProtocolChanges
   192  	genesis.Config.LondonBlock = londonBlock
   193  	genesis.Difficulty = params.MinimumDifficulty
   194  
   195  	// Small gaslimit for easier basefee moving testing.
   196  	genesis.GasLimit = 8_000_000
   197  
   198  	genesis.Config.ChainID = big.NewInt(18)
   199  	genesis.Config.EIP150Hash = common.Hash{}
   200  
   201  	genesis.Alloc = core.GenesisAlloc{}
   202  	for _, faucet := range faucets {
   203  		genesis.Alloc[crypto.PubkeyToAddress(faucet.PublicKey)] = core.GenesisAccount{
   204  			Balance: new(big.Int).Exp(big.NewInt(2), big.NewInt(128), nil),
   205  		}
   206  	}
   207  	if londonBlock.Sign() == 0 {
   208  		log.Info("Enabled the eip 1559 by default")
   209  	} else {
   210  		log.Info("Registered the london fork", "number", londonBlock)
   211  	}
   212  	return genesis
   213  }
   214  
   215  func makeMiner(genesis *core.Genesis) (*node.Node, *eth.Ethereum, error) {
   216  	// Define the basic configurations for the Ethereum node
   217  	datadir, _ := ioutil.TempDir("", "")
   218  
   219  	config := &node.Config{
   220  		Name:    "geth",
   221  		Version: params.Version,
   222  		DataDir: datadir,
   223  		P2P: p2p.Config{
   224  			ListenAddr:  "0.0.0.0:0",
   225  			NoDiscovery: true,
   226  			MaxPeers:    25,
   227  		},
   228  		UseLightweightKDF: true,
   229  	}
   230  	// Create the node and configure a full Ethereum node on it
   231  	stack, err := node.New(config)
   232  	if err != nil {
   233  		return nil, nil, err
   234  	}
   235  	ethBackend, err := eth.New(stack, &ethconfig.Config{
   236  		Genesis:         genesis,
   237  		NetworkId:       genesis.Config.ChainID.Uint64(),
   238  		SyncMode:        downloader.FullSync,
   239  		DatabaseCache:   256,
   240  		DatabaseHandles: 256,
   241  		TxPool:          core.DefaultTxPoolConfig,
   242  		GPO:             ethconfig.Defaults.GPO,
   243  		Ethash:          ethconfig.Defaults.Ethash,
   244  		Miner: miner.Config{
   245  			GasCeil:  genesis.GasLimit * 11 / 10,
   246  			GasPrice: big.NewInt(1),
   247  			Recommit: time.Second,
   248  		},
   249  	})
   250  	if err != nil {
   251  		return nil, nil, err
   252  	}
   253  	err = stack.Start()
   254  	return stack, ethBackend, err
   255  }