// Copyright 2018 The go-ethereum Authors // This file is part of the go-ethereum library. // // The go-ethereum library is free software: you can redistribute it and/or modify // it under the terms of the GNU Lesser General Public License as published by // the Free Software Foundation, either version 3 of the License, or // (at your option) any later version. // // The go-ethereum library is distributed in the hope that it will be useful, // but WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the // GNU Lesser General Public License for more details. // // You should have received a copy of the GNU Lesser General Public License // along with the go-ethereum library. If not, see . package miner import ( "math/big" "sync/atomic" "testing" "time" "github.com/ethereum/go-ethereum/accounts" "github.com/ethereum/go-ethereum/common" "github.com/ethereum/go-ethereum/consensus" "github.com/ethereum/go-ethereum/consensus/clique" "github.com/ethereum/go-ethereum/consensus/ethash" "github.com/ethereum/go-ethereum/core" "github.com/ethereum/go-ethereum/core/rawdb" "github.com/ethereum/go-ethereum/core/txpool" "github.com/ethereum/go-ethereum/core/txpool/legacypool" "github.com/ethereum/go-ethereum/core/types" "github.com/ethereum/go-ethereum/core/vm" "github.com/ethereum/go-ethereum/crypto" "github.com/ethereum/go-ethereum/ethdb" "github.com/ethereum/go-ethereum/event" "github.com/ethereum/go-ethereum/params" ) // TODO(raneet10): Duplicate initialization from miner/test_backend.go . Recheck whether we need both // func init() { // testTxPoolConfig = txpool.DefaultConfig // testTxPoolConfig.Journal = "" // ethashChainConfig = new(params.ChainConfig) // *ethashChainConfig = *params.TestChainConfig // cliqueChainConfig = new(params.ChainConfig) // *cliqueChainConfig = *params.TestChainConfig // cliqueChainConfig.Clique = ¶ms.CliqueConfig{ // Period: 10, // Epoch: 30000, // } // signer := types.LatestSigner(params.TestChainConfig) // tx1 := types.MustSignNewTx(testBankKey, signer, &types.AccessListTx{ // ChainID: params.TestChainConfig.ChainID, // Nonce: 0, // To: &testUserAddress, // Value: big.NewInt(1000), // Gas: params.TxGas, // GasPrice: big.NewInt(params.InitialBaseFee), // }) // pendingTxs = append(pendingTxs, tx1) // tx2 := types.MustSignNewTx(testBankKey, signer, &types.LegacyTx{ // Nonce: 1, // To: &testUserAddress, // Value: big.NewInt(1000), // Gas: params.TxGas, // GasPrice: big.NewInt(params.InitialBaseFee), // }) // newTxs = append(newTxs, tx2) // } // newTestWorker creates a new test worker with the given parameters. // nolint:unparam // func newTestWorker(t TensingObject, chainConfig *params.ChainConfig, engine consensus.Engine, db ethdb.Database, blocks int, noempty bool, delay uint, opcodeDelay uint) (*worker, *testWorkerBackend, func()) { // backend := newTestWorkerBackend(t, chainConfig, engine, db, blocks) // backend.txPool.addLocals(pendingTxs) // var w *worker // if delay != 0 || opcodeDelay != 0 { // //nolint:staticcheck // w = newWorkerWithDelay(testConfig, chainConfig, engine, backend, new(event.TypeMux), nil, false, delay, opcodeDelay) // } else { // //nolint:staticcheck // w = newWorker(testConfig, chainConfig, engine, backend, new(event.TypeMux), nil, false) // } // w.setEtherbase(TestBankAddress) // // enable empty blocks // w.noempty.Store(noempty) // return w, backend, w.close // } // TODO - Arpit // // nolint : paralleltest // func TestGenerateBlockAndImportEthash(t *testing.T) { // testGenerateBlockAndImport(t, false, false) // } // // nolint : paralleltest // func TestGenerateBlockAndImportClique(t *testing.T) { // testGenerateBlockAndImport(t, true, false) // } // // nolint : paralleltest // func TestGenerateBlockAndImportBor(t *testing.T) { // testGenerateBlockAndImport(t, false, true) // } // //nolint:thelper // func testGenerateBlockAndImport(t *testing.T, isClique bool, isBor bool) { // var ( // engine consensus.Engine // chainConfig params.ChainConfig // db = rawdb.NewMemoryDatabase() // ctrl *gomock.Controller // ) // if isBor { // chainConfig = *params.BorUnittestChainConfig // engine, ctrl = getFakeBorFromConfig(t, &chainConfig) // defer ctrl.Finish() // } else { // if isClique { // chainConfig = *params.AllCliqueProtocolChanges // chainConfig.Clique = ¶ms.CliqueConfig{Period: 1, Epoch: 30000} // engine = clique.New(chainConfig.Clique, db) // } else { // chainConfig = *params.AllEthashProtocolChanges // engine = ethash.NewFaker() // } // } // defer engine.Close() // w, b, _ := newTestWorker(t, &chainConfig, engine, db, 0, false, 0, 0) // defer w.close() // // This test chain imports the mined blocks. // chain, _ := core.NewBlockChain(rawdb.NewMemoryDatabase(), nil, b.Genesis, nil, engine, vm.Config{}, nil, nil, nil) // defer chain.Stop() // // Ignore empty commit here for less noise. // w.skipSealHook = func(task *task) bool { // return len(task.receipts) == 0 // } // // Wait for mined blocks. // sub := w.mux.Subscribe(core.NewMinedBlockEvent{}) // defer sub.Unsubscribe() // // Start mining! // w.start() // var ( // err error // uncle *types.Block // ) // for i := 0; i < 5; i++ { // err = b.txPool.AddLocal(b.newRandomTx(true)) // if err != nil { // t.Fatal("while adding a local transaction", err) // } // err = b.txPool.AddLocal(b.newRandomTx(false)) // if err != nil { // t.Fatal("while adding a remote transaction", err) // } // uncle, err = b.newRandomUncle() // if err != nil { // t.Fatal("while making an uncle block", err) // } // w.postSideBlock(core.ChainSideEvent{Block: uncle}) // uncle, err = b.newRandomUncle() // if err != nil { // t.Fatal("while making an uncle block", err) // } // w.postSideBlock(core.ChainSideEvent{Block: uncle}) // select { // case ev := <-sub.Chan(): // block := ev.Data.(core.NewMinedBlockEvent).Block // if _, err := chain.InsertChain([]*types.Block{block}); err != nil { // t.Fatalf("failed to insert new mined block %d: %v", block.NumberU64(), err) // } // case <-time.After(3 * time.Second): // Worker needs 1s to include new changes. // t.Fatalf("timeout") // } // } // } var ( // Test chain configurations testTxPoolConfig legacypool.Config ethashChainConfig *params.ChainConfig cliqueChainConfig *params.ChainConfig // Test accounts testBankKey, _ = crypto.GenerateKey() testBankAddress = crypto.PubkeyToAddress(testBankKey.PublicKey) testBankFunds = big.NewInt(1000000000000000000) TestBankAddress = crypto.PubkeyToAddress(testBankKey.PublicKey) testUserKey, _ = crypto.GenerateKey() testUserAddress = crypto.PubkeyToAddress(testUserKey.PublicKey) // Test transactions pendingTxs []*txpool.Transaction newTxs []*types.Transaction testConfig = &Config{ Recommit: time.Second, GasCeil: params.GenesisGasLimit, } ) func init() { testTxPoolConfig = legacypool.DefaultConfig testTxPoolConfig.Journal = "" ethashChainConfig = new(params.ChainConfig) *ethashChainConfig = *params.TestChainConfig cliqueChainConfig = new(params.ChainConfig) *cliqueChainConfig = *params.TestChainConfig cliqueChainConfig.Clique = ¶ms.CliqueConfig{ Period: 10, Epoch: 30000, } signer := types.LatestSigner(params.TestChainConfig) tx1 := types.MustSignNewTx(testBankKey, signer, &types.AccessListTx{ ChainID: params.TestChainConfig.ChainID, Nonce: 0, To: &testUserAddress, Value: big.NewInt(1000), Gas: params.TxGas, GasPrice: big.NewInt(params.InitialBaseFee), }) pendingTxs = append(pendingTxs, &txpool.Transaction{Tx: tx1}) tx2 := types.MustSignNewTx(testBankKey, signer, &types.LegacyTx{ Nonce: 1, To: &testUserAddress, Value: big.NewInt(1000), Gas: params.TxGas, GasPrice: big.NewInt(params.InitialBaseFee), }) newTxs = append(newTxs, tx2) } // testWorkerBackend implements worker.Backend interfaces and wraps all information needed during the testing. type testWorkerBackend struct { db ethdb.Database txPool *txpool.TxPool chain *core.BlockChain genesis *core.Genesis } func newTestWorkerBackend(t *testing.T, chainConfig *params.ChainConfig, engine consensus.Engine, db ethdb.Database, n int) *testWorkerBackend { var gspec = &core.Genesis{ Config: chainConfig, Alloc: core.GenesisAlloc{testBankAddress: {Balance: testBankFunds}}, } switch e := engine.(type) { case *clique.Clique: gspec.ExtraData = make([]byte, 32+common.AddressLength+crypto.SignatureLength) copy(gspec.ExtraData[32:32+common.AddressLength], testBankAddress.Bytes()) e.Authorize(testBankAddress, func(account accounts.Account, s string, data []byte) ([]byte, error) { return crypto.Sign(crypto.Keccak256(data), testBankKey) }) case *ethash.Ethash: default: t.Fatalf("unexpected consensus engine type: %T", engine) } chain, err := core.NewBlockChain(db, &core.CacheConfig{TrieDirtyDisabled: true}, gspec, nil, engine, vm.Config{}, nil, nil, nil) if err != nil { t.Fatalf("core.NewBlockChain failed: %v", err) } pool := legacypool.New(testTxPoolConfig, chain) txpool, _ := txpool.New(new(big.Int).SetUint64(testTxPoolConfig.PriceLimit), chain, []txpool.SubPool{pool}) return &testWorkerBackend{ db: db, chain: chain, txPool: txpool, genesis: gspec, } } func (b *testWorkerBackend) BlockChain() *core.BlockChain { return b.chain } func (b *testWorkerBackend) TxPool() *txpool.TxPool { return b.txPool } func (b *testWorkerBackend) PeerCount() int { panic("unimplemented") } func (b *testWorkerBackend) newRandomTx(creation bool) *types.Transaction { var tx *types.Transaction gasPrice := big.NewInt(10 * params.InitialBaseFee) if creation { tx, _ = types.SignTx(types.NewContractCreation(b.txPool.Nonce(testBankAddress), big.NewInt(0), testGas, gasPrice, common.FromHex(testCode)), types.HomesteadSigner{}, testBankKey) } else { tx, _ = types.SignTx(types.NewTransaction(b.txPool.Nonce(testBankAddress), testUserAddress, big.NewInt(1000), params.TxGas, gasPrice, nil), types.HomesteadSigner{}, testBankKey) } return tx } func newTestWorker(t *testing.T, chainConfig *params.ChainConfig, engine consensus.Engine, db ethdb.Database, blocks int) (*worker, *testWorkerBackend) { backend := newTestWorkerBackend(t, chainConfig, engine, db, blocks) backend.txPool.Add(pendingTxs, true, false) w := newWorker(testConfig, chainConfig, engine, backend, new(event.TypeMux), nil, false) w.setEtherbase(testBankAddress) return w, backend } func TestGenerateAndImportBlock(t *testing.T) { var ( db = rawdb.NewMemoryDatabase() config = *params.AllCliqueProtocolChanges ) config.Clique = ¶ms.CliqueConfig{Period: 1, Epoch: 30000} engine := clique.New(config.Clique, db) w, b := newTestWorker(t, &config, engine, db, 0) defer w.close() // This test chain imports the mined blocks. chain, _ := core.NewBlockChain(rawdb.NewMemoryDatabase(), nil, b.genesis, nil, engine, vm.Config{}, nil, nil, nil) defer chain.Stop() // Ignore empty commit here for less noise. w.skipSealHook = func(task *task) bool { return len(task.receipts) == 0 } // Wait for mined blocks. sub := w.mux.Subscribe(core.NewMinedBlockEvent{}) defer sub.Unsubscribe() // Start mining! w.start() for i := 0; i < 5; i++ { b.txPool.Add([]*txpool.Transaction{{Tx: b.newRandomTx(true)}}, true, false) b.txPool.Add([]*txpool.Transaction{{Tx: b.newRandomTx(false)}}, true, false) select { case ev := <-sub.Chan(): block := ev.Data.(core.NewMinedBlockEvent).Block if _, err := chain.InsertChain([]*types.Block{block}); err != nil { t.Fatalf("failed to insert new mined block %d: %v", block.NumberU64(), err) } case <-time.After(3 * time.Second): // Worker needs 1s to include new changes. t.Fatalf("timeout") } } } // TODO - Arpit // func getFakeBorFromConfig(t *testing.T, chainConfig *params.ChainConfig) (consensus.Engine, *gomock.Controller) { // t.Helper() // ctrl := gomock.NewController(t) // ethAPIMock := api.NewMockCaller(ctrl) // ethAPIMock.EXPECT().Call(gomock.Any(), gomock.Any(), gomock.Any(), gomock.Any()).AnyTimes() // spanner := bor.NewMockSpanner(ctrl) // spanner.EXPECT().GetCurrentValidatorsByHash(gomock.Any(), gomock.Any(), gomock.Any()).Return([]*valset.Validator{ // { // ID: 0, // Address: TestBankAddress, // VotingPower: 100, // ProposerPriority: 0, // }, // }, nil).AnyTimes() // heimdallClientMock := mocks.NewMockIHeimdallClient(ctrl) // heimdallClientMock.EXPECT().Close().Times(1) // contractMock := bor.NewMockGenesisContract(ctrl) // db, _, _ := NewDBForFakes(t) // engine := NewFakeBor(t, db, chainConfig, ethAPIMock, spanner, heimdallClientMock, contractMock) // return engine, ctrl // } func TestEmptyWorkEthash(t *testing.T) { t.Skip() testEmptyWork(t, ethashChainConfig, ethash.NewFaker()) } func TestEmptyWorkClique(t *testing.T) { t.Skip() testEmptyWork(t, cliqueChainConfig, clique.New(cliqueChainConfig.Clique, rawdb.NewMemoryDatabase())) } func testEmptyWork(t *testing.T, chainConfig *params.ChainConfig, engine consensus.Engine) { defer engine.Close() w, _ := newTestWorker(t, chainConfig, engine, rawdb.NewMemoryDatabase(), 0) defer w.close() taskCh := make(chan struct{}, 2) checkEqual := func(t *testing.T, task *task) { // The work should contain 1 tx receiptLen, balance := 1, big.NewInt(1000) if len(task.receipts) != receiptLen { t.Fatalf("receipt number mismatch: have %d, want %d", len(task.receipts), receiptLen) } if task.state.GetBalance(testUserAddress).Cmp(balance) != 0 { t.Fatalf("account balance mismatch: have %d, want %d", task.state.GetBalance(testUserAddress), balance) } } w.newTaskHook = func(task *task) { if task.block.NumberU64() == 1 { checkEqual(t, task) taskCh <- struct{}{} } } w.skipSealHook = func(task *task) bool { return true } w.fullTaskHook = func() { time.Sleep(100 * time.Millisecond) } w.start() // Start mining! select { case <-taskCh: case <-time.NewTimer(3 * time.Second).C: t.Error("new task timeout") } } func TestAdjustIntervalEthash(t *testing.T) { // Skipping this test as recommit interval would remain constant t.Skip() testAdjustInterval(t, ethashChainConfig, ethash.NewFaker()) } func TestAdjustIntervalClique(t *testing.T) { // Skipping this test as recommit interval would remain constant t.Skip() testAdjustInterval(t, cliqueChainConfig, clique.New(cliqueChainConfig.Clique, rawdb.NewMemoryDatabase())) } func testAdjustInterval(t *testing.T, chainConfig *params.ChainConfig, engine consensus.Engine) { defer engine.Close() w, _ := newTestWorker(t, chainConfig, engine, rawdb.NewMemoryDatabase(), 0) defer w.close() w.skipSealHook = func(task *task) bool { return true } w.fullTaskHook = func() { time.Sleep(100 * time.Millisecond) } var ( progress = make(chan struct{}, 10) result = make([]float64, 0, 10) index = 0 start atomic.Bool ) w.resubmitHook = func(minInterval time.Duration, recommitInterval time.Duration) { // Short circuit if interval checking hasn't started. if !start.Load() { return } var wantMinInterval, wantRecommitInterval time.Duration switch index { case 0: wantMinInterval, wantRecommitInterval = 3*time.Second, 3*time.Second case 1: origin := float64(3 * time.Second.Nanoseconds()) estimate := origin*(1-intervalAdjustRatio) + intervalAdjustRatio*(origin/0.8+intervalAdjustBias) wantMinInterval, wantRecommitInterval = 3*time.Second, time.Duration(estimate)*time.Nanosecond case 2: estimate := result[index-1] min := float64(3 * time.Second.Nanoseconds()) estimate = estimate*(1-intervalAdjustRatio) + intervalAdjustRatio*(min-intervalAdjustBias) wantMinInterval, wantRecommitInterval = 3*time.Second, time.Duration(estimate)*time.Nanosecond case 3: wantMinInterval, wantRecommitInterval = time.Second, time.Second } // Check interval if minInterval != wantMinInterval { t.Errorf("resubmit min interval mismatch: have %v, want %v ", minInterval, wantMinInterval) } if recommitInterval != wantRecommitInterval { t.Errorf("resubmit interval mismatch: have %v, want %v", recommitInterval, wantRecommitInterval) } result = append(result, float64(recommitInterval.Nanoseconds())) index += 1 progress <- struct{}{} } w.start() time.Sleep(time.Second) // Ensure two tasks have been submitted due to start opt start.Store(true) w.setRecommitInterval(3 * time.Second) select { case <-progress: case <-time.NewTimer(time.Second).C: t.Error("interval reset timeout") } w.resubmitAdjustCh <- &intervalAdjust{inc: true, ratio: 0.8} select { case <-progress: case <-time.NewTimer(time.Second).C: t.Error("interval reset timeout") } w.resubmitAdjustCh <- &intervalAdjust{inc: false} select { case <-progress: case <-time.NewTimer(time.Second).C: t.Error("interval reset timeout") } w.setRecommitInterval(500 * time.Millisecond) select { case <-progress: case <-time.NewTimer(time.Second).C: t.Error("interval reset timeout") } } func TestGetSealingWorkEthash(t *testing.T) { testGetSealingWork(t, ethashChainConfig, ethash.NewFaker()) } func TestGetSealingWorkClique(t *testing.T) { testGetSealingWork(t, cliqueChainConfig, clique.New(cliqueChainConfig.Clique, rawdb.NewMemoryDatabase())) } func TestGetSealingWorkPostMerge(t *testing.T) { local := new(params.ChainConfig) *local = *ethashChainConfig local.TerminalTotalDifficulty = big.NewInt(0) testGetSealingWork(t, local, ethash.NewFaker()) } // nolint:gocognit func testGetSealingWork(t *testing.T, chainConfig *params.ChainConfig, engine consensus.Engine) { defer engine.Close() w, b := newTestWorker(t, chainConfig, engine, rawdb.NewMemoryDatabase(), 0) defer w.close() w.setExtra([]byte{0x01, 0x02}) w.skipSealHook = func(task *task) bool { return true } w.fullTaskHook = func() { time.Sleep(100 * time.Millisecond) } timestamp := uint64(time.Now().Unix()) assertBlock := func(block *types.Block, number uint64, coinbase common.Address, random common.Hash) { if block.Time() != timestamp { // Sometime the timestamp will be mutated if the timestamp // is even smaller than parent block's. It's OK. t.Logf("Invalid timestamp, want %d, get %d", timestamp, block.Time()) } _, isClique := engine.(*clique.Clique) if !isClique { if len(block.Extra()) != 2 { t.Error("Unexpected extra field") } if block.Coinbase() != coinbase { t.Errorf("Unexpected coinbase got %x want %x", block.Coinbase(), coinbase) } } else { if block.Coinbase() != (common.Address{}) { t.Error("Unexpected coinbase") } } if !isClique { if block.MixDigest() != random { t.Error("Unexpected mix digest") } } if block.Nonce() != 0 { t.Error("Unexpected block nonce") } if block.NumberU64() != number { t.Errorf("Mismatched block number, want %d got %d", number, block.NumberU64()) } } var cases = []struct { parent common.Hash coinbase common.Address random common.Hash expectNumber uint64 expectErr bool }{ { b.chain.Genesis().Hash(), common.HexToAddress("0xdeadbeef"), common.HexToHash("0xcafebabe"), uint64(1), false, }, { b.chain.CurrentBlock().Hash(), common.HexToAddress("0xdeadbeef"), common.HexToHash("0xcafebabe"), b.chain.CurrentBlock().Number.Uint64() + 1, false, }, { b.chain.CurrentBlock().Hash(), common.Address{}, common.HexToHash("0xcafebabe"), b.chain.CurrentBlock().Number.Uint64() + 1, false, }, { b.chain.CurrentBlock().Hash(), common.Address{}, common.Hash{}, b.chain.CurrentBlock().Number.Uint64() + 1, false, }, { common.HexToHash("0xdeadbeef"), common.HexToAddress("0xdeadbeef"), common.HexToHash("0xcafebabe"), 0, true, }, } // This API should work even when the automatic sealing is not enabled for _, c := range cases { block, _, err := w.getSealingBlock(c.parent, timestamp, c.coinbase, c.random, nil, false) if c.expectErr { if err == nil { t.Error("Expect error but get nil") } } else { if err != nil { t.Errorf("Unexpected error %v", err) } assertBlock(block, c.expectNumber, c.coinbase, c.random) } } // This API should work even when the automatic sealing is enabled w.start() for _, c := range cases { block, _, err := w.getSealingBlock(c.parent, timestamp, c.coinbase, c.random, nil, false) if c.expectErr { if err == nil { t.Error("Expect error but get nil") } } else { if err != nil { t.Errorf("Unexpected error %v", err) } assertBlock(block, c.expectNumber, c.coinbase, c.random) } } } // // TODO - Arpit // // nolint : paralleltest // // TestCommitInterruptExperimentBor tests the commit interrupt experiment for bor consensus by inducing an artificial delay at transaction level. // func TestCommitInterruptExperimentBor(t *testing.T) { // // with 1 sec block time and 200 millisec tx delay we should get 5 txs per block // testCommitInterruptExperimentBor(t, 200, 5, 0) // time.Sleep(2 * time.Second) // // with 1 sec block time and 100 millisec tx delay we should get 10 txs per block // testCommitInterruptExperimentBor(t, 100, 10, 0) // } // // TODO - Arpit // // nolint : paralleltest // // TestCommitInterruptExperimentBorContract tests the commit interrupt experiment for bor consensus by inducing an artificial delay at OPCODE level. // func TestCommitInterruptExperimentBorContract(t *testing.T) { // // pre-calculated number of OPCODES = 123. 7*123=861 < 1000, 1 tx is possible but 2 tx per block will not be possible. // testCommitInterruptExperimentBorContract(t, 0, 1, 7) // time.Sleep(2 * time.Second) // // pre-calculated number of OPCODES = 123. 2*123=246 < 1000, 4 tx is possible but 5 tx per block will not be possible. But 3 happen due to other overheads. // testCommitInterruptExperimentBorContract(t, 0, 3, 2) // time.Sleep(2 * time.Second) // // pre-calculated number of OPCODES = 123. 3*123=369 < 1000, 2 tx is possible but 3 tx per block will not be possible. // testCommitInterruptExperimentBorContract(t, 0, 2, 3) // } // // TODO - Arpit // // nolint : thelper // // testCommitInterruptExperimentBorContract is a helper function for testing the commit interrupt experiment for bor consensus. // func testCommitInterruptExperimentBorContract(t *testing.T, delay uint, txCount int, opcodeDelay uint) { // var ( // engine consensus.Engine // chainConfig *params.ChainConfig // db = rawdb.NewMemoryDatabase() // ctrl *gomock.Controller // txInTxpool = 100 // txs = make([]*types.Transaction, 0, txInTxpool) // ) // chainConfig = params.BorUnittestChainConfig // log.Root().SetHandler(log.LvlFilterHandler(log.LvlInfo, log.StreamHandler(os.Stderr, log.TerminalFormat(true)))) // engine, ctrl = getFakeBorFromConfig(t, chainConfig) // w, b := newTestWorker(t, chainConfig, engine, rawdb.NewMemoryDatabase(), 0) // defer w.close() // // nonce 0 tx // tx, addr := b.newStorageCreateContractTx() // if err := b.TxPool().AddRemote(tx); err != nil { // t.Fatal(err) // } // time.Sleep(4 * time.Second) // // nonce starts from 1 because we already have one tx // initNonce := uint64(1) // for i := 0; i < txInTxpool; i++ { // tx := b.newStorageContractCallTx(addr, initNonce+uint64(i)) // txs = append(txs, tx) // } // b.TxPool().AddRemotes(txs) // // Start mining! // w.start() // time.Sleep(5 * time.Second) // w.stop() // currentBlockNumber := w.current.header.Number.Uint64() // assert.Check(t, txCount >= w.chain.GetBlockByNumber(currentBlockNumber-1).Transactions().Len()) // assert.Check(t, 0 < w.chain.GetBlockByNumber(currentBlockNumber-1).Transactions().Len()+1) // } // // TODO - Arpit // // nolint : thelper // // testCommitInterruptExperimentBor is a helper function for testing the commit interrupt experiment for bor consensus. // func testCommitInterruptExperimentBor(t *testing.T, delay uint, txCount int, opcodeDelay uint) { // var ( // engine consensus.Engine // chainConfig *params.ChainConfig // db = rawdb.NewMemoryDatabase() // ctrl *gomock.Controller // txInTxpool = 100 // txs = make([]*types.Transaction, 0, txInTxpool) // ) // chainConfig = params.BorUnittestChainConfig // log.Root().SetHandler(log.LvlFilterHandler(log.LvlInfo, log.StreamHandler(os.Stderr, log.TerminalFormat(true)))) // engine, ctrl = getFakeBorFromConfig(t, chainConfig) // w, b, _ := newTestWorker(t, chainConfig, engine, db, 0, true, delay, opcodeDelay) // defer func() { // w.close() // engine.Close() // db.Close() // ctrl.Finish() // }() // // nonce starts from 0 because have no txs yet // initNonce := uint64(0) // for i := 0; i < txInTxpool; i++ { // tx := b.newRandomTxWithNonce(false, initNonce+uint64(i)) // txs = append(txs, tx) // } // b.TxPool().AddRemotes(txs) // // Start mining! // w.start() // time.Sleep(5 * time.Second) // w.stop() // currentBlockNumber := w.current.header.Number.Uint64() // assert.Check(t, txCount >= w.chain.GetBlockByNumber(currentBlockNumber-1).Transactions().Len()) // assert.Check(t, 0 < w.chain.GetBlockByNumber(currentBlockNumber-1).Transactions().Len()) // } // TODO - Arpit // func BenchmarkBorMining(b *testing.B) { // chainConfig := params.BorUnittestChainConfig // ctrl := gomock.NewController(b) // defer ctrl.Finish() // ethAPIMock := api.NewMockCaller(ctrl) // ethAPIMock.EXPECT().Call(gomock.Any(), gomock.Any(), gomock.Any(), gomock.Any()).AnyTimes() // spanner := bor.NewMockSpanner(ctrl) // spanner.EXPECT().GetCurrentValidatorsByHash(gomock.Any(), gomock.Any(), gomock.Any()).Return([]*valset.Validator{ // { // ID: 0, // Address: TestBankAddress, // VotingPower: 100, // ProposerPriority: 0, // }, // }, nil).AnyTimes() // heimdallClientMock := mocks.NewMockIHeimdallClient(ctrl) // heimdallClientMock.EXPECT().Close().Times(1) // contractMock := bor.NewMockGenesisContract(ctrl) // db, _, _ := NewDBForFakes(b) // engine := NewFakeBor(b, db, chainConfig, ethAPIMock, spanner, heimdallClientMock, contractMock) // defer engine.Close() // chainConfig.LondonBlock = big.NewInt(0) // w, back, _ := newTestWorker(b, chainConfig, engine, db, 0, false, 0, 0) // defer w.close() // chain, _ := core.NewBlockChain(rawdb.NewMemoryDatabase(), nil, back.Genesis, nil, engine, vm.Config{}, nil, nil, nil) // defer chain.Stop() // // fulfill tx pool // const ( // totalGas = testGas + params.TxGas // totalBlocks = 10 // ) // var err error // txInBlock := int(back.Genesis.GasLimit/totalGas) + 1 // // a bit risky // for i := 0; i < 2*totalBlocks*txInBlock; i++ { // err = back.txPool.AddLocal(back.newRandomTx(true)) // if err != nil { // b.Fatal("while adding a local transaction", err) // } // err = back.txPool.AddLocal(back.newRandomTx(false)) // if err != nil { // b.Fatal("while adding a remote transaction", err) // } // } // // Wait for mined blocks. // sub := w.mux.Subscribe(core.NewMinedBlockEvent{}) // defer sub.Unsubscribe() // b.ResetTimer() // prev := uint64(time.Now().Unix()) // // Start mining! // w.start() // blockPeriod, ok := back.Genesis.Config.Bor.Period["0"] // if !ok { // blockPeriod = 1 // } // for i := 0; i < totalBlocks; i++ { // select { // case ev := <-sub.Chan(): // block := ev.Data.(core.NewMinedBlockEvent).Block // if _, err := chain.InsertChain([]*types.Block{block}); err != nil { // b.Fatalf("failed to insert new mined block %d: %v", block.NumberU64(), err) // } // b.Log("block", block.NumberU64(), "time", block.Time()-prev, "txs", block.Transactions().Len(), "gasUsed", block.GasUsed(), "gasLimit", block.GasLimit()) // prev = block.Time() // case <-time.After(time.Duration(blockPeriod) * time.Second): // b.Fatalf("timeout") // } // } // } // TODO - Arpit // uses core.NewParallelBlockChain to use the dependencies present in the block header // params.BorUnittestChainConfig contains the ParallelUniverseBlock ad big.NewInt(5), so the first 4 blocks will not have metadata. // nolint: gocognit // func BenchmarkBorMiningBlockSTMMetadata(b *testing.B) { // chainConfig := params.BorUnittestChainConfig // ctrl := gomock.NewController(b) // defer ctrl.Finish() // ethAPIMock := api.NewMockCaller(ctrl) // ethAPIMock.EXPECT().Call(gomock.Any(), gomock.Any(), gomock.Any(), gomock.Any()).AnyTimes() // spanner := bor.NewMockSpanner(ctrl) // spanner.EXPECT().GetCurrentValidatorsByHash(gomock.Any(), gomock.Any(), gomock.Any()).Return([]*valset.Validator{ // { // ID: 0, // Address: TestBankAddress, // VotingPower: 100, // ProposerPriority: 0, // }, // }, nil).AnyTimes() // heimdallClientMock := mocks.NewMockIHeimdallClient(ctrl) // heimdallClientMock.EXPECT().Close().Times(1) // contractMock := bor.NewMockGenesisContract(ctrl) // db, _, _ := NewDBForFakes(b) // engine := NewFakeBor(b, db, chainConfig, ethAPIMock, spanner, heimdallClientMock, contractMock) // defer engine.Close() // chainConfig.LondonBlock = big.NewInt(0) // w, back := newTestWorker(b, chainConfig, engine, db, 0) // // w, back, _ := NewTestWorker(b, chainConfig, engine, db, 0, false, 0, 0) // defer w.close() // // This test chain imports the mined blocks. // db2 := rawdb.NewMemoryDatabase() // back.Genesis.MustCommit(db2) // chain, _ := core.NewParallelBlockChain(db2, nil, back.Genesis, nil, engine, vm.Config{ParallelEnable: true, ParallelSpeculativeProcesses: 8}, nil, nil, nil) // defer chain.Stop() // // Ignore empty commit here for less noise. // w.skipSealHook = func(task *task) bool { // return len(task.receipts) == 0 // } // // fulfill tx pool // const ( // totalGas = testGas + params.TxGas // totalBlocks = 10 // ) // var err error // txInBlock := int(back.Genesis.GasLimit/totalGas) + 1 // // a bit risky // for i := 0; i < 2*totalBlocks*txInBlock; i++ { // err = back.txPool.AddLocal(back.newRandomTx(true)) // if err != nil { // b.Fatal("while adding a local transaction", err) // } // err = back.txPool.AddLocal(back.newRandomTx(false)) // if err != nil { // b.Fatal("while adding a remote transaction", err) // } // } // // Wait for mined blocks. // sub := w.mux.Subscribe(core.NewMinedBlockEvent{}) // defer sub.Unsubscribe() // b.ResetTimer() // prev := uint64(time.Now().Unix()) // // Start mining! // w.start() // blockPeriod, ok := back.Genesis.Config.Bor.Period["0"] // if !ok { // blockPeriod = 1 // } // for i := 0; i < totalBlocks; i++ { // select { // case ev := <-sub.Chan(): // block := ev.Data.(core.NewMinedBlockEvent).Block // if _, err := chain.InsertChain([]*types.Block{block}); err != nil { // b.Fatalf("failed to insert new mined block %d: %v", block.NumberU64(), err) // } // // check for dependencies for block number > 4 // if block.NumberU64() <= 4 { // if block.GetTxDependency() != nil { // b.Fatalf("dependency not nil") // } // } else { // deps := block.GetTxDependency() // if len(deps[0]) != 0 { // b.Fatalf("wrong dependency") // } // for i := 1; i < block.Transactions().Len(); i++ { // if deps[i][0] != uint64(i-1) || len(deps[i]) != 1 { // b.Fatalf("wrong dependency") // } // } // } // b.Log("block", block.NumberU64(), "time", block.Time()-prev, "txs", block.Transactions().Len(), "gasUsed", block.GasUsed(), "gasLimit", block.GasLimit()) // prev = block.Time() // case <-time.After(time.Duration(blockPeriod) * time.Second): // b.Fatalf("timeout") // } // } // }