blockchain_test.go 42.9 KB
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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
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
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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.
//
// 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 core
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import (
	"fmt"
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	"math/big"
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	"math/rand"
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	"sync"
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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/consensus/ethash"
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	"github.com/ethereum/go-ethereum/core/state"
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	"github.com/ethereum/go-ethereum/core/types"
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	"github.com/ethereum/go-ethereum/core/vm"
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	"github.com/ethereum/go-ethereum/crypto"
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	"github.com/ethereum/go-ethereum/ethdb"
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	"github.com/ethereum/go-ethereum/params"
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)

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// newTestBlockChain creates a blockchain without validation.
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func newTestBlockChain(fake bool) *BlockChain {
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	db, _ := ethdb.NewMemDatabase()
	gspec := &Genesis{
		Config:     params.TestChainConfig,
		Difficulty: big.NewInt(1),
	}
	gspec.MustCommit(db)
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	engine := ethash.NewFullFaker()
	if !fake {
		engine = ethash.NewTester()
	}
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	blockchain, err := NewBlockChain(db, gspec.Config, engine, vm.Config{})
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	if err != nil {
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		panic(err)
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	}
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	blockchain.SetValidator(bproc{})
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	return blockchain
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}

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// Test fork of length N starting from block i
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func testFork(t *testing.T, blockchain *BlockChain, i, n int, full bool, comparator func(td1, td2 *big.Int)) {
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	// Copy old chain up to #i into a new db
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	db, blockchain2, err := newCanonical(ethash.NewFaker(), i, full)
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	if err != nil {
		t.Fatal("could not make new canonical in testFork", err)
	}
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	defer blockchain2.Stop()

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	// Assert the chains have the same header/block at #i
	var hash1, hash2 common.Hash
	if full {
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		hash1 = blockchain.GetBlockByNumber(uint64(i)).Hash()
		hash2 = blockchain2.GetBlockByNumber(uint64(i)).Hash()
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	} else {
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		hash1 = blockchain.GetHeaderByNumber(uint64(i)).Hash()
		hash2 = blockchain2.GetHeaderByNumber(uint64(i)).Hash()
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	}
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	if hash1 != hash2 {
		t.Errorf("chain content mismatch at %d: have hash %v, want hash %v", i, hash2, hash1)
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	}
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	// Extend the newly created chain
	var (
		blockChainB  []*types.Block
		headerChainB []*types.Header
	)
	if full {
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		blockChainB = makeBlockChain(blockchain2.CurrentBlock(), n, ethash.NewFaker(), db, forkSeed)
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		if _, err := blockchain2.InsertChain(blockChainB); err != nil {
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			t.Fatalf("failed to insert forking chain: %v", err)
		}
	} else {
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		headerChainB = makeHeaderChain(blockchain2.CurrentHeader(), n, ethash.NewFaker(), db, forkSeed)
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		if _, err := blockchain2.InsertHeaderChain(headerChainB, 1); err != nil {
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			t.Fatalf("failed to insert forking chain: %v", err)
		}
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	}
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	// Sanity check that the forked chain can be imported into the original
	var tdPre, tdPost *big.Int
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	if full {
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		tdPre = blockchain.GetTdByHash(blockchain.CurrentBlock().Hash())
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		if err := testBlockChainImport(blockChainB, blockchain); err != nil {
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			t.Fatalf("failed to import forked block chain: %v", err)
		}
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		tdPost = blockchain.GetTdByHash(blockChainB[len(blockChainB)-1].Hash())
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	} else {
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		tdPre = blockchain.GetTdByHash(blockchain.CurrentHeader().Hash())
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		if err := testHeaderChainImport(headerChainB, blockchain); err != nil {
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			t.Fatalf("failed to import forked header chain: %v", err)
		}
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		tdPost = blockchain.GetTdByHash(headerChainB[len(headerChainB)-1].Hash())
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	}
	// Compare the total difficulties of the chains
	comparator(tdPre, tdPost)
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}

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func printChain(bc *BlockChain) {
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	for i := bc.CurrentBlock().Number().Uint64(); i > 0; i-- {
		b := bc.GetBlockByNumber(uint64(i))
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		fmt.Printf("\t%x %v\n", b.Hash(), b.Difficulty())
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	}
}

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// testBlockChainImport tries to process a chain of blocks, writing them into
// the database if successful.
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func testBlockChainImport(chain types.Blocks, blockchain *BlockChain) error {
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	for _, block := range chain {
		// Try and process the block
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		err := blockchain.engine.VerifyHeader(blockchain, block.Header(), true)
		if err == nil {
			err = blockchain.validator.ValidateBody(block)
		}
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		if err != nil {
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			if err == ErrKnownBlock {
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				continue
			}
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			return err
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		}
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		statedb, err := state.New(blockchain.GetBlockByHash(block.ParentHash()).Root(), blockchain.stateCache)
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		if err != nil {
			return err
		}
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		receipts, _, usedGas, err := blockchain.Processor().Process(block, statedb, vm.Config{})
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		if err != nil {
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			blockchain.reportBlock(block, receipts, err)
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			return err
		}
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		err = blockchain.validator.ValidateState(block, blockchain.GetBlockByHash(block.ParentHash()), statedb, receipts, usedGas)
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		if err != nil {
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			blockchain.reportBlock(block, receipts, err)
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			return err
		}
		blockchain.mu.Lock()
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		WriteTd(blockchain.chainDb, block.Hash(), block.NumberU64(), new(big.Int).Add(block.Difficulty(), blockchain.GetTdByHash(block.ParentHash())))
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		WriteBlock(blockchain.chainDb, block)
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		statedb.CommitTo(blockchain.chainDb, false)
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		blockchain.mu.Unlock()
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	}
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	return nil
}

// testHeaderChainImport tries to process a chain of header, writing them into
// the database if successful.
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func testHeaderChainImport(chain []*types.Header, blockchain *BlockChain) error {
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	for _, header := range chain {
		// Try and validate the header
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		if err := blockchain.engine.VerifyHeader(blockchain, header, false); err != nil {
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			return err
		}
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		// Manually insert the header into the database, but don't reorganise (allows subsequent testing)
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		blockchain.mu.Lock()
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		WriteTd(blockchain.chainDb, header.Hash(), header.Number.Uint64(), new(big.Int).Add(header.Difficulty, blockchain.GetTdByHash(header.ParentHash)))
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		WriteHeader(blockchain.chainDb, header)
		blockchain.mu.Unlock()
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	}
	return nil
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}

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func insertChain(done chan bool, blockchain *BlockChain, chain types.Blocks, t *testing.T) {
	_, err := blockchain.InsertChain(chain)
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	if err != nil {
		fmt.Println(err)
		t.FailNow()
	}
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	done <- true
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}

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func TestLastBlock(t *testing.T) {
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	bchain := newTestBlockChain(false)
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	defer bchain.Stop()

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	block := makeBlockChain(bchain.CurrentBlock(), 1, ethash.NewFaker(), bchain.chainDb, 0)[0]
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	bchain.insert(block)
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	if block.Hash() != GetHeadBlockHash(bchain.chainDb) {
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		t.Errorf("Write/Get HeadBlockHash failed")
	}
}

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// Tests that given a starting canonical chain of a given size, it can be extended
// with various length chains.
func TestExtendCanonicalHeaders(t *testing.T) { testExtendCanonical(t, false) }
func TestExtendCanonicalBlocks(t *testing.T)  { testExtendCanonical(t, true) }

func testExtendCanonical(t *testing.T, full bool) {
	length := 5

	// Make first chain starting from genesis
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	_, processor, err := newCanonical(ethash.NewFaker(), length, full)
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	if err != nil {
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		t.Fatalf("failed to make new canonical chain: %v", err)
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	}
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	defer processor.Stop()

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	// Define the difficulty comparator
	better := func(td1, td2 *big.Int) {
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		if td2.Cmp(td1) <= 0 {
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			t.Errorf("total difficulty mismatch: have %v, expected more than %v", td2, td1)
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		}
	}
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	// Start fork from current height
	testFork(t, processor, length, 1, full, better)
	testFork(t, processor, length, 2, full, better)
	testFork(t, processor, length, 5, full, better)
	testFork(t, processor, length, 10, full, better)
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}

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// Tests that given a starting canonical chain of a given size, creating shorter
// forks do not take canonical ownership.
func TestShorterForkHeaders(t *testing.T) { testShorterFork(t, false) }
func TestShorterForkBlocks(t *testing.T)  { testShorterFork(t, true) }

func testShorterFork(t *testing.T, full bool) {
	length := 10

	// Make first chain starting from genesis
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	_, processor, err := newCanonical(ethash.NewFaker(), length, full)
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	if err != nil {
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		t.Fatalf("failed to make new canonical chain: %v", err)
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	}
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	defer processor.Stop()

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	// Define the difficulty comparator
	worse := func(td1, td2 *big.Int) {
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		if td2.Cmp(td1) >= 0 {
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			t.Errorf("total difficulty mismatch: have %v, expected less than %v", td2, td1)
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		}
	}
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	// Sum of numbers must be less than `length` for this to be a shorter fork
	testFork(t, processor, 0, 3, full, worse)
	testFork(t, processor, 0, 7, full, worse)
	testFork(t, processor, 1, 1, full, worse)
	testFork(t, processor, 1, 7, full, worse)
	testFork(t, processor, 5, 3, full, worse)
	testFork(t, processor, 5, 4, full, worse)
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}

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// Tests that given a starting canonical chain of a given size, creating longer
// forks do take canonical ownership.
func TestLongerForkHeaders(t *testing.T) { testLongerFork(t, false) }
func TestLongerForkBlocks(t *testing.T)  { testLongerFork(t, true) }

func testLongerFork(t *testing.T, full bool) {
	length := 10

	// Make first chain starting from genesis
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	_, processor, err := newCanonical(ethash.NewFaker(), length, full)
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	if err != nil {
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		t.Fatalf("failed to make new canonical chain: %v", err)
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	}
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	defer processor.Stop()

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	// Define the difficulty comparator
	better := func(td1, td2 *big.Int) {
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		if td2.Cmp(td1) <= 0 {
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			t.Errorf("total difficulty mismatch: have %v, expected more than %v", td2, td1)
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		}
	}
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	// Sum of numbers must be greater than `length` for this to be a longer fork
	testFork(t, processor, 0, 11, full, better)
	testFork(t, processor, 0, 15, full, better)
	testFork(t, processor, 1, 10, full, better)
	testFork(t, processor, 1, 12, full, better)
	testFork(t, processor, 5, 6, full, better)
	testFork(t, processor, 5, 8, full, better)
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}

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// Tests that given a starting canonical chain of a given size, creating equal
// forks do take canonical ownership.
func TestEqualForkHeaders(t *testing.T) { testEqualFork(t, false) }
func TestEqualForkBlocks(t *testing.T)  { testEqualFork(t, true) }

func testEqualFork(t *testing.T, full bool) {
	length := 10

	// Make first chain starting from genesis
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	_, processor, err := newCanonical(ethash.NewFaker(), length, full)
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	if err != nil {
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		t.Fatalf("failed to make new canonical chain: %v", err)
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	}
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	defer processor.Stop()

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	// Define the difficulty comparator
	equal := func(td1, td2 *big.Int) {
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		if td2.Cmp(td1) != 0 {
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			t.Errorf("total difficulty mismatch: have %v, want %v", td2, td1)
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		}
	}
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	// Sum of numbers must be equal to `length` for this to be an equal fork
	testFork(t, processor, 0, 10, full, equal)
	testFork(t, processor, 1, 9, full, equal)
	testFork(t, processor, 2, 8, full, equal)
	testFork(t, processor, 5, 5, full, equal)
	testFork(t, processor, 6, 4, full, equal)
	testFork(t, processor, 9, 1, full, equal)
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}

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// Tests that chains missing links do not get accepted by the processor.
func TestBrokenHeaderChain(t *testing.T) { testBrokenChain(t, false) }
func TestBrokenBlockChain(t *testing.T)  { testBrokenChain(t, true) }

func testBrokenChain(t *testing.T, full bool) {
	// Make chain starting from genesis
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	db, blockchain, err := newCanonical(ethash.NewFaker(), 10, full)
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	if err != nil {
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		t.Fatalf("failed to make new canonical chain: %v", err)
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	}
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	defer blockchain.Stop()

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	// Create a forked chain, and try to insert with a missing link
	if full {
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		chain := makeBlockChain(blockchain.CurrentBlock(), 5, ethash.NewFaker(), db, forkSeed)[1:]
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		if err := testBlockChainImport(chain, blockchain); err == nil {
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			t.Errorf("broken block chain not reported")
		}
	} else {
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		chain := makeHeaderChain(blockchain.CurrentHeader(), 5, ethash.NewFaker(), db, forkSeed)[1:]
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		if err := testHeaderChainImport(chain, blockchain); err == nil {
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			t.Errorf("broken header chain not reported")
		}
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	}
}

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type bproc struct{}

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func (bproc) ValidateBody(*types.Block) error { return nil }
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func (bproc) ValidateState(block, parent *types.Block, state *state.StateDB, receipts types.Receipts, usedGas *big.Int) error {
	return nil
}
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func (bproc) Process(block *types.Block, statedb *state.StateDB, cfg vm.Config) (types.Receipts, []*types.Log, *big.Int, error) {
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	return nil, nil, new(big.Int), nil
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}
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func makeHeaderChainWithDiff(genesis *types.Block, d []int, seed byte) []*types.Header {
	blocks := makeBlockChainWithDiff(genesis, d, seed)
	headers := make([]*types.Header, len(blocks))
	for i, block := range blocks {
		headers[i] = block.Header()
	}
	return headers
}

func makeBlockChainWithDiff(genesis *types.Block, d []int, seed byte) []*types.Block {
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	var chain []*types.Block
	for i, difficulty := range d {
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		header := &types.Header{
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			Coinbase:    common.Address{seed},
			Number:      big.NewInt(int64(i + 1)),
			Difficulty:  big.NewInt(int64(difficulty)),
			UncleHash:   types.EmptyUncleHash,
			TxHash:      types.EmptyRootHash,
			ReceiptHash: types.EmptyRootHash,
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			Time:        big.NewInt(int64(i) + 1),
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		}
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		if i == 0 {
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			header.ParentHash = genesis.Hash()
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		} else {
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			header.ParentHash = chain[i-1].Hash()
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		}
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		block := types.NewBlockWithHeader(header)
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		chain = append(chain, block)
	}
	return chain
}

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// Tests that reorganising a long difficult chain after a short easy one
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// overwrites the canonical numbers and links in the database.
func TestReorgLongHeaders(t *testing.T) { testReorgLong(t, false) }
func TestReorgLongBlocks(t *testing.T)  { testReorgLong(t, true) }
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func testReorgLong(t *testing.T, full bool) {
	testReorg(t, []int{1, 2, 4}, []int{1, 2, 3, 4}, 10, full)
}
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// Tests that reorganising a short difficult chain after a long easy one
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// overwrites the canonical numbers and links in the database.
func TestReorgShortHeaders(t *testing.T) { testReorgShort(t, false) }
func TestReorgShortBlocks(t *testing.T)  { testReorgShort(t, true) }
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func testReorgShort(t *testing.T, full bool) {
	testReorg(t, []int{1, 2, 3, 4}, []int{1, 10}, 11, full)
}
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func testReorg(t *testing.T, first, second []int, td int64, full bool) {
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	bc := newTestBlockChain(true)
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	defer bc.Stop()
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	// Insert an easy and a difficult chain afterwards
	if full {
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		bc.InsertChain(makeBlockChainWithDiff(bc.genesisBlock, first, 11))
		bc.InsertChain(makeBlockChainWithDiff(bc.genesisBlock, second, 22))
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	} else {
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		bc.InsertHeaderChain(makeHeaderChainWithDiff(bc.genesisBlock, first, 11), 1)
		bc.InsertHeaderChain(makeHeaderChainWithDiff(bc.genesisBlock, second, 22), 1)
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	}
	// Check that the chain is valid number and link wise
	if full {
		prev := bc.CurrentBlock()
		for block := bc.GetBlockByNumber(bc.CurrentBlock().NumberU64() - 1); block.NumberU64() != 0; prev, block = block, bc.GetBlockByNumber(block.NumberU64()-1) {
			if prev.ParentHash() != block.Hash() {
				t.Errorf("parent block hash mismatch: have %x, want %x", prev.ParentHash(), block.Hash())
			}
		}
	} else {
		prev := bc.CurrentHeader()
		for header := bc.GetHeaderByNumber(bc.CurrentHeader().Number.Uint64() - 1); header.Number.Uint64() != 0; prev, header = header, bc.GetHeaderByNumber(header.Number.Uint64()-1) {
			if prev.ParentHash != header.Hash() {
				t.Errorf("parent header hash mismatch: have %x, want %x", prev.ParentHash, header.Hash())
			}
		}
	}
	// Make sure the chain total difficulty is the correct one
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	want := new(big.Int).Add(bc.genesisBlock.Difficulty(), big.NewInt(td))
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	if full {
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		if have := bc.GetTdByHash(bc.CurrentBlock().Hash()); have.Cmp(want) != 0 {
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			t.Errorf("total difficulty mismatch: have %v, want %v", have, want)
		}
	} else {
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		if have := bc.GetTdByHash(bc.CurrentHeader().Hash()); have.Cmp(want) != 0 {
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			t.Errorf("total difficulty mismatch: have %v, want %v", have, want)
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		}
	}
}
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// Tests that the insertion functions detect banned hashes.
func TestBadHeaderHashes(t *testing.T) { testBadHashes(t, false) }
func TestBadBlockHashes(t *testing.T)  { testBadHashes(t, true) }

func testBadHashes(t *testing.T, full bool) {
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	bc := newTestBlockChain(true)
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	defer bc.Stop()
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	// Create a chain, ban a hash and try to import
	var err error
	if full {
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		blocks := makeBlockChainWithDiff(bc.genesisBlock, []int{1, 2, 4}, 10)
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		BadHashes[blocks[2].Header().Hash()] = true
		_, err = bc.InsertChain(blocks)
	} else {
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		headers := makeHeaderChainWithDiff(bc.genesisBlock, []int{1, 2, 4}, 10)
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		BadHashes[headers[2].Hash()] = true
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		_, err = bc.InsertHeaderChain(headers, 1)
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	}
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	if err != ErrBlacklistedHash {
		t.Errorf("error mismatch: have: %v, want: %v", err, ErrBlacklistedHash)
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	}
}

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// Tests that bad hashes are detected on boot, and the chain rolled back to a
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// good state prior to the bad hash.
func TestReorgBadHeaderHashes(t *testing.T) { testReorgBadHashes(t, false) }
func TestReorgBadBlockHashes(t *testing.T)  { testReorgBadHashes(t, true) }

func testReorgBadHashes(t *testing.T, full bool) {
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	bc := newTestBlockChain(true)
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	defer bc.Stop()
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	// Create a chain, import and ban afterwards
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	headers := makeHeaderChainWithDiff(bc.genesisBlock, []int{1, 2, 3, 4}, 10)
	blocks := makeBlockChainWithDiff(bc.genesisBlock, []int{1, 2, 3, 4}, 10)
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	if full {
		if _, err := bc.InsertChain(blocks); err != nil {
			t.Fatalf("failed to import blocks: %v", err)
		}
		if bc.CurrentBlock().Hash() != blocks[3].Hash() {
			t.Errorf("last block hash mismatch: have: %x, want %x", bc.CurrentBlock().Hash(), blocks[3].Header().Hash())
		}
		BadHashes[blocks[3].Header().Hash()] = true
		defer func() { delete(BadHashes, blocks[3].Header().Hash()) }()
	} else {
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		if _, err := bc.InsertHeaderChain(headers, 1); err != nil {
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			t.Fatalf("failed to import headers: %v", err)
		}
		if bc.CurrentHeader().Hash() != headers[3].Hash() {
			t.Errorf("last header hash mismatch: have: %x, want %x", bc.CurrentHeader().Hash(), headers[3].Hash())
		}
		BadHashes[headers[3].Hash()] = true
		defer func() { delete(BadHashes, headers[3].Hash()) }()
496
	}
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	// Create a new BlockChain and check that it rolled back the state.
499
	ncm, err := NewBlockChain(bc.chainDb, bc.config, ethash.NewFaker(), vm.Config{})
500
	if err != nil {
501
		t.Fatalf("failed to create new chain manager: %v", err)
502
	}
503 504
	defer ncm.Stop()

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	if full {
		if ncm.CurrentBlock().Hash() != blocks[2].Header().Hash() {
			t.Errorf("last block hash mismatch: have: %x, want %x", ncm.CurrentBlock().Hash(), blocks[2].Header().Hash())
		}
		if blocks[2].Header().GasLimit.Cmp(ncm.GasLimit()) != 0 {
			t.Errorf("last  block gasLimit mismatch: have: %x, want %x", ncm.GasLimit(), blocks[2].Header().GasLimit)
		}
	} else {
513 514
		if ncm.CurrentHeader().Hash() != headers[2].Hash() {
			t.Errorf("last header hash mismatch: have: %x, want %x", ncm.CurrentHeader().Hash(), headers[2].Hash())
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		}
	}
}
518

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// Tests chain insertions in the face of one entity containing an invalid nonce.
func TestHeadersInsertNonceError(t *testing.T) { testInsertNonceError(t, false) }
func TestBlocksInsertNonceError(t *testing.T)  { testInsertNonceError(t, true) }

func testInsertNonceError(t *testing.T, full bool) {
524
	for i := 1; i < 25 && !t.Failed(); i++ {
525
		// Create a pristine chain and database
526
		db, blockchain, err := newCanonical(ethash.NewFaker(), 0, full)
527
		if err != nil {
528
			t.Fatalf("failed to create pristine chain: %v", err)
529
		}
530 531
		defer blockchain.Stop()

532 533
		// Create and insert a chain with a failing nonce
		var (
534 535 536
			failAt  int
			failRes int
			failNum uint64
537 538
		)
		if full {
539
			blocks := makeBlockChain(blockchain.CurrentBlock(), i, ethash.NewFaker(), db, 0)
540 541 542

			failAt = rand.Int() % len(blocks)
			failNum = blocks[failAt].NumberU64()
543

544
			blockchain.engine = ethash.NewFakeFailer(failNum)
545
			failRes, err = blockchain.InsertChain(blocks)
546
		} else {
547
			headers := makeHeaderChain(blockchain.CurrentHeader(), i, ethash.NewFaker(), db, 0)
548

549 550
			failAt = rand.Int() % len(headers)
			failNum = headers[failAt].Number.Uint64()
551

552 553
			blockchain.engine = ethash.NewFakeFailer(failNum)
			blockchain.hc.engine = blockchain.engine
554
			failRes, err = blockchain.InsertHeaderChain(headers, 1)
555
		}
556
		// Check that the returned error indicates the failure.
557 558
		if failRes != failAt {
			t.Errorf("test %d: failure index mismatch: have %d, want %d", i, failRes, failAt)
559 560
		}
		// Check that all no blocks after the failing block have been inserted.
561 562
		for j := 0; j < i-failAt; j++ {
			if full {
563
				if block := blockchain.GetBlockByNumber(failNum + uint64(j)); block != nil {
564 565 566
					t.Errorf("test %d: invalid block in chain: %v", i, block)
				}
			} else {
567
				if header := blockchain.GetHeaderByNumber(failNum + uint64(j)); header != nil {
568 569
					t.Errorf("test %d: invalid header in chain: %v", i, header)
				}
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			}
		}
	}
}

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// Tests that fast importing a block chain produces the same chain data as the
// classical full block processing.
func TestFastVsFullChains(t *testing.T) {
	// Configure and generate a sample block chain
	var (
		gendb, _ = ethdb.NewMemDatabase()
		key, _   = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
		address  = crypto.PubkeyToAddress(key.PublicKey)
		funds    = big.NewInt(1000000000)
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		gspec    = &Genesis{
			Config: params.TestChainConfig,
			Alloc:  GenesisAlloc{address: {Balance: funds}},
		}
		genesis = gspec.MustCommit(gendb)
		signer  = types.NewEIP155Signer(gspec.Config.ChainId)
590
	)
591
	blocks, receipts := GenerateChain(gspec.Config, genesis, ethash.NewFaker(), gendb, 1024, func(i int, block *BlockGen) {
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		block.SetCoinbase(common.Address{0x00})

		// If the block number is multiple of 3, send a few bonus transactions to the miner
		if i%3 == 2 {
			for j := 0; j < i%4+1; j++ {
597
				tx, err := types.SignTx(types.NewTransaction(block.TxNonce(address), common.Address{0x00}, big.NewInt(1000), bigTxGas, nil, nil), signer, key)
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				if err != nil {
					panic(err)
				}
				block.AddTx(tx)
			}
		}
		// If the block number is a multiple of 5, add a few bonus uncles to the block
		if i%5 == 5 {
			block.AddUncle(&types.Header{ParentHash: block.PrevBlock(i - 1).Hash(), Number: big.NewInt(int64(i - 1))})
		}
	})
	// Import the chain as an archive node for the comparison baseline
	archiveDb, _ := ethdb.NewMemDatabase()
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	gspec.MustCommit(archiveDb)
612
	archive, _ := NewBlockChain(archiveDb, gspec.Config, ethash.NewFaker(), vm.Config{})
613
	defer archive.Stop()
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	if n, err := archive.InsertChain(blocks); err != nil {
		t.Fatalf("failed to process block %d: %v", n, err)
	}
	// Fast import the chain as a non-archive node to test
	fastDb, _ := ethdb.NewMemDatabase()
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	gspec.MustCommit(fastDb)
621
	fast, _ := NewBlockChain(fastDb, gspec.Config, ethash.NewFaker(), vm.Config{})
622
	defer fast.Stop()
623 624 625 626 627

	headers := make([]*types.Header, len(blocks))
	for i, block := range blocks {
		headers[i] = block.Header()
	}
628
	if n, err := fast.InsertHeaderChain(headers, 1); err != nil {
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		t.Fatalf("failed to insert header %d: %v", n, err)
	}
	if n, err := fast.InsertReceiptChain(blocks, receipts); err != nil {
		t.Fatalf("failed to insert receipt %d: %v", n, err)
	}
	// Iterate over all chain data components, and cross reference
	for i := 0; i < len(blocks); i++ {
		num, hash := blocks[i].NumberU64(), blocks[i].Hash()

638
		if ftd, atd := fast.GetTdByHash(hash), archive.GetTdByHash(hash); ftd.Cmp(atd) != 0 {
639 640
			t.Errorf("block #%d [%x]: td mismatch: have %v, want %v", num, hash, ftd, atd)
		}
641
		if fheader, aheader := fast.GetHeaderByHash(hash), archive.GetHeaderByHash(hash); fheader.Hash() != aheader.Hash() {
642 643
			t.Errorf("block #%d [%x]: header mismatch: have %v, want %v", num, hash, fheader, aheader)
		}
644
		if fblock, ablock := fast.GetBlockByHash(hash), archive.GetBlockByHash(hash); fblock.Hash() != ablock.Hash() {
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			t.Errorf("block #%d [%x]: block mismatch: have %v, want %v", num, hash, fblock, ablock)
		} else if types.DeriveSha(fblock.Transactions()) != types.DeriveSha(ablock.Transactions()) {
			t.Errorf("block #%d [%x]: transactions mismatch: have %v, want %v", num, hash, fblock.Transactions(), ablock.Transactions())
		} else if types.CalcUncleHash(fblock.Uncles()) != types.CalcUncleHash(ablock.Uncles()) {
			t.Errorf("block #%d [%x]: uncles mismatch: have %v, want %v", num, hash, fblock.Uncles(), ablock.Uncles())
		}
651
		if freceipts, areceipts := GetBlockReceipts(fastDb, hash, GetBlockNumber(fastDb, hash)), GetBlockReceipts(archiveDb, hash, GetBlockNumber(archiveDb, hash)); types.DeriveSha(freceipts) != types.DeriveSha(areceipts) {
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			t.Errorf("block #%d [%x]: receipts mismatch: have %v, want %v", num, hash, freceipts, areceipts)
		}
	}
	// Check that the canonical chains are the same between the databases
	for i := 0; i < len(blocks)+1; i++ {
		if fhash, ahash := GetCanonicalHash(fastDb, uint64(i)), GetCanonicalHash(archiveDb, uint64(i)); fhash != ahash {
			t.Errorf("block #%d: canonical hash mismatch: have %v, want %v", i, fhash, ahash)
		}
	}
}

// Tests that various import methods move the chain head pointers to the correct
// positions.
func TestLightVsFastVsFullChainHeads(t *testing.T) {
	// Configure and generate a sample block chain
	var (
		gendb, _ = ethdb.NewMemDatabase()
		key, _   = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
		address  = crypto.PubkeyToAddress(key.PublicKey)
		funds    = big.NewInt(1000000000)
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		gspec    = &Genesis{Config: params.TestChainConfig, Alloc: GenesisAlloc{address: {Balance: funds}}}
		genesis  = gspec.MustCommit(gendb)
674 675
	)
	height := uint64(1024)
676
	blocks, receipts := GenerateChain(gspec.Config, genesis, ethash.NewFaker(), gendb, int(height), nil)
677

678 679 680 681 682
	// Configure a subchain to roll back
	remove := []common.Hash{}
	for _, block := range blocks[height/2:] {
		remove = append(remove, block.Hash())
	}
683 684 685 686 687 688 689 690 691 692 693 694 695 696
	// Create a small assertion method to check the three heads
	assert := func(t *testing.T, kind string, chain *BlockChain, header uint64, fast uint64, block uint64) {
		if num := chain.CurrentBlock().NumberU64(); num != block {
			t.Errorf("%s head block mismatch: have #%v, want #%v", kind, num, block)
		}
		if num := chain.CurrentFastBlock().NumberU64(); num != fast {
			t.Errorf("%s head fast-block mismatch: have #%v, want #%v", kind, num, fast)
		}
		if num := chain.CurrentHeader().Number.Uint64(); num != header {
			t.Errorf("%s head header mismatch: have #%v, want #%v", kind, num, header)
		}
	}
	// Import the chain as an archive node and ensure all pointers are updated
	archiveDb, _ := ethdb.NewMemDatabase()
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	gspec.MustCommit(archiveDb)
698

699
	archive, _ := NewBlockChain(archiveDb, gspec.Config, ethash.NewFaker(), vm.Config{})
700 701 702
	if n, err := archive.InsertChain(blocks); err != nil {
		t.Fatalf("failed to process block %d: %v", n, err)
	}
703 704
	defer archive.Stop()

705
	assert(t, "archive", archive, height, height, height)
706 707
	archive.Rollback(remove)
	assert(t, "archive", archive, height/2, height/2, height/2)
708 709 710

	// Import the chain as a non-archive node and ensure all pointers are updated
	fastDb, _ := ethdb.NewMemDatabase()
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	gspec.MustCommit(fastDb)
712
	fast, _ := NewBlockChain(fastDb, gspec.Config, ethash.NewFaker(), vm.Config{})
713
	defer fast.Stop()
714 715 716 717 718

	headers := make([]*types.Header, len(blocks))
	for i, block := range blocks {
		headers[i] = block.Header()
	}
719
	if n, err := fast.InsertHeaderChain(headers, 1); err != nil {
720 721 722 723 724 725
		t.Fatalf("failed to insert header %d: %v", n, err)
	}
	if n, err := fast.InsertReceiptChain(blocks, receipts); err != nil {
		t.Fatalf("failed to insert receipt %d: %v", n, err)
	}
	assert(t, "fast", fast, height, height, 0)
726 727
	fast.Rollback(remove)
	assert(t, "fast", fast, height/2, height/2, 0)
728 729 730

	// Import the chain as a light node and ensure all pointers are updated
	lightDb, _ := ethdb.NewMemDatabase()
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	gspec.MustCommit(lightDb)
732

733
	light, _ := NewBlockChain(lightDb, gspec.Config, ethash.NewFaker(), vm.Config{})
734
	if n, err := light.InsertHeaderChain(headers, 1); err != nil {
735 736
		t.Fatalf("failed to insert header %d: %v", n, err)
	}
737 738
	defer light.Stop()

739
	assert(t, "light", light, height, 0, 0)
740 741
	light.Rollback(remove)
	assert(t, "light", light, height/2, 0, 0)
742 743
}

744
// Tests that chain reorganisations handle transaction removals and reinsertions.
745 746 747 748 749 750 751 752 753
func TestChainTxReorgs(t *testing.T) {
	var (
		key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
		key2, _ = crypto.HexToECDSA("8a1f9a8f95be41cd7ccb6168179afb4504aefe388d1e14474d32c45c72ce7b7a")
		key3, _ = crypto.HexToECDSA("49a7b37aa6f6645917e7b807e9d1c00d4fa71f18343b0d4122a4d2df64dd6fee")
		addr1   = crypto.PubkeyToAddress(key1.PublicKey)
		addr2   = crypto.PubkeyToAddress(key2.PublicKey)
		addr3   = crypto.PubkeyToAddress(key3.PublicKey)
		db, _   = ethdb.NewMemDatabase()
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		gspec   = &Genesis{
			Config:   params.TestChainConfig,
			GasLimit: 3141592,
			Alloc: GenesisAlloc{
				addr1: {Balance: big.NewInt(1000000)},
				addr2: {Balance: big.NewInt(1000000)},
				addr3: {Balance: big.NewInt(1000000)},
			},
		}
		genesis = gspec.MustCommit(db)
		signer  = types.NewEIP155Signer(gspec.Config.ChainId)
765
	)
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767 768 769
	// Create two transactions shared between the chains:
	//  - postponed: transaction included at a later block in the forked chain
	//  - swapped: transaction included at the same block number in the forked chain
770 771
	postponed, _ := types.SignTx(types.NewTransaction(0, addr1, big.NewInt(1000), bigTxGas, nil, nil), signer, key1)
	swapped, _ := types.SignTx(types.NewTransaction(1, addr1, big.NewInt(1000), bigTxGas, nil, nil), signer, key1)
772 773 774 775 776 777 778

	// Create two transactions that will be dropped by the forked chain:
	//  - pastDrop: transaction dropped retroactively from a past block
	//  - freshDrop: transaction dropped exactly at the block where the reorg is detected
	var pastDrop, freshDrop *types.Transaction

	// Create three transactions that will be added in the forked chain:
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	//  - pastAdd:   transaction added before the reorganization is detected
780 781 782 783
	//  - freshAdd:  transaction added at the exact block the reorg is detected
	//  - futureAdd: transaction added after the reorg has already finished
	var pastAdd, freshAdd, futureAdd *types.Transaction

784
	chain, _ := GenerateChain(gspec.Config, genesis, ethash.NewFaker(), db, 3, func(i int, gen *BlockGen) {
785 786
		switch i {
		case 0:
787
			pastDrop, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr2), addr2, big.NewInt(1000), bigTxGas, nil, nil), signer, key2)
788 789 790 791 792

			gen.AddTx(pastDrop)  // This transaction will be dropped in the fork from below the split point
			gen.AddTx(postponed) // This transaction will be postponed till block #3 in the fork

		case 2:
793
			freshDrop, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr2), addr2, big.NewInt(1000), bigTxGas, nil, nil), signer, key2)
794 795 796 797 798 799 800 801

			gen.AddTx(freshDrop) // This transaction will be dropped in the fork from exactly at the split point
			gen.AddTx(swapped)   // This transaction will be swapped out at the exact height

			gen.OffsetTime(9) // Lower the block difficulty to simulate a weaker chain
		}
	})
	// Import the chain. This runs all block validation rules.
802
	blockchain, _ := NewBlockChain(db, gspec.Config, ethash.NewFaker(), vm.Config{})
803
	if i, err := blockchain.InsertChain(chain); err != nil {
804 805
		t.Fatalf("failed to insert original chain[%d]: %v", i, err)
	}
806
	defer blockchain.Stop()
807 808

	// overwrite the old chain
809
	chain, _ = GenerateChain(gspec.Config, genesis, ethash.NewFaker(), db, 5, func(i int, gen *BlockGen) {
810 811
		switch i {
		case 0:
812
			pastAdd, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr3), addr3, big.NewInt(1000), bigTxGas, nil, nil), signer, key3)
813 814 815 816 817 818
			gen.AddTx(pastAdd) // This transaction needs to be injected during reorg

		case 2:
			gen.AddTx(postponed) // This transaction was postponed from block #1 in the original chain
			gen.AddTx(swapped)   // This transaction was swapped from the exact current spot in the original chain

819
			freshAdd, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr3), addr3, big.NewInt(1000), bigTxGas, nil, nil), signer, key3)
820 821 822
			gen.AddTx(freshAdd) // This transaction will be added exactly at reorg time

		case 3:
823
			futureAdd, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr3), addr3, big.NewInt(1000), bigTxGas, nil, nil), signer, key3)
824 825 826
			gen.AddTx(futureAdd) // This transaction will be added after a full reorg
		}
	})
827
	if _, err := blockchain.InsertChain(chain); err != nil {
828
		t.Fatalf("failed to insert forked chain: %v", err)
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	}
830 831 832

	// removed tx
	for i, tx := range (types.Transactions{pastDrop, freshDrop}) {
833 834
		if txn, _, _, _ := GetTransaction(db, tx.Hash()); txn != nil {
			t.Errorf("drop %d: tx %v found while shouldn't have been", i, txn)
835
		}
836 837
		if rcpt, _, _, _ := GetReceipt(db, tx.Hash()); rcpt != nil {
			t.Errorf("drop %d: receipt %v found while shouldn't have been", i, rcpt)
838 839 840 841
		}
	}
	// added tx
	for i, tx := range (types.Transactions{pastAdd, freshAdd, futureAdd}) {
842
		if txn, _, _, _ := GetTransaction(db, tx.Hash()); txn == nil {
843 844
			t.Errorf("add %d: expected tx to be found", i)
		}
845
		if rcpt, _, _, _ := GetReceipt(db, tx.Hash()); rcpt == nil {
846 847 848 849 850
			t.Errorf("add %d: expected receipt to be found", i)
		}
	}
	// shared tx
	for i, tx := range (types.Transactions{postponed, swapped}) {
851
		if txn, _, _, _ := GetTransaction(db, tx.Hash()); txn == nil {
852 853
			t.Errorf("share %d: expected tx to be found", i)
		}
854
		if rcpt, _, _, _ := GetReceipt(db, tx.Hash()); rcpt == nil {
855 856
			t.Errorf("share %d: expected receipt to be found", i)
		}
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	}
}
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func TestLogReorgs(t *testing.T) {

	var (
		key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
		addr1   = crypto.PubkeyToAddress(key1.PublicKey)
		db, _   = ethdb.NewMemDatabase()
		// this code generates a log
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		code    = common.Hex2Bytes("60606040525b7f24ec1d3ff24c2f6ff210738839dbc339cd45a5294d85c79361016243157aae7b60405180905060405180910390a15b600a8060416000396000f360606040526008565b00")
		gspec   = &Genesis{Config: params.TestChainConfig, Alloc: GenesisAlloc{addr1: {Balance: big.NewInt(10000000000000)}}}
		genesis = gspec.MustCommit(db)
		signer  = types.NewEIP155Signer(gspec.Config.ChainId)
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	)

873
	blockchain, _ := NewBlockChain(db, gspec.Config, ethash.NewFaker(), vm.Config{})
874
	defer blockchain.Stop()
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876 877
	rmLogsCh := make(chan RemovedLogsEvent)
	blockchain.SubscribeRemovedLogsEvent(rmLogsCh)
878
	chain, _ := GenerateChain(params.TestChainConfig, genesis, ethash.NewFaker(), db, 2, func(i int, gen *BlockGen) {
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		if i == 1 {
880
			tx, err := types.SignTx(types.NewContractCreation(gen.TxNonce(addr1), new(big.Int), big.NewInt(1000000), new(big.Int), code), signer, key1)
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			if err != nil {
				t.Fatalf("failed to create tx: %v", err)
			}
			gen.AddTx(tx)
		}
	})
	if _, err := blockchain.InsertChain(chain); err != nil {
		t.Fatalf("failed to insert chain: %v", err)
	}

891
	chain, _ = GenerateChain(params.TestChainConfig, genesis, ethash.NewFaker(), db, 3, func(i int, gen *BlockGen) {})
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	if _, err := blockchain.InsertChain(chain); err != nil {
		t.Fatalf("failed to insert forked chain: %v", err)
	}

896 897 898 899 900 901 902 903
	timeout := time.NewTimer(1 * time.Second)
	select {
	case ev := <-rmLogsCh:
		if len(ev.Logs) == 0 {
			t.Error("expected logs")
		}
	case <-timeout.C:
		t.Fatal("Timeout. There is no RemovedLogsEvent has been sent.")
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	}
}
906 907 908 909 910 911

func TestReorgSideEvent(t *testing.T) {
	var (
		db, _   = ethdb.NewMemDatabase()
		key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
		addr1   = crypto.PubkeyToAddress(key1.PublicKey)
912 913 914 915
		gspec   = &Genesis{
			Config: params.TestChainConfig,
			Alloc:  GenesisAlloc{addr1: {Balance: big.NewInt(10000000000000)}},
		}
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		genesis = gspec.MustCommit(db)
		signer  = types.NewEIP155Signer(gspec.Config.ChainId)
918 919
	)

920
	blockchain, _ := NewBlockChain(db, gspec.Config, ethash.NewFaker(), vm.Config{})
921
	defer blockchain.Stop()
922

923
	chain, _ := GenerateChain(gspec.Config, genesis, ethash.NewFaker(), db, 3, func(i int, gen *BlockGen) {})
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	if _, err := blockchain.InsertChain(chain); err != nil {
		t.Fatalf("failed to insert chain: %v", err)
	}

928
	replacementBlocks, _ := GenerateChain(gspec.Config, genesis, ethash.NewFaker(), db, 4, func(i int, gen *BlockGen) {
929
		tx, err := types.SignTx(types.NewContractCreation(gen.TxNonce(addr1), new(big.Int), big.NewInt(1000000), new(big.Int), nil), signer, key1)
930
		if i == 2 {
931
			gen.OffsetTime(-9)
932
		}
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		if err != nil {
			t.Fatalf("failed to create tx: %v", err)
		}
		gen.AddTx(tx)
	})
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	chainSideCh := make(chan ChainSideEvent, 64)
939
	blockchain.SubscribeChainSideEvent(chainSideCh)
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	if _, err := blockchain.InsertChain(replacementBlocks); err != nil {
		t.Fatalf("failed to insert chain: %v", err)
	}

	// first two block of the secondary chain are for a brief moment considered
	// side chains because up to that point the first one is considered the
	// heavier chain.
	expectedSideHashes := map[common.Hash]bool{
		replacementBlocks[0].Hash(): true,
		replacementBlocks[1].Hash(): true,
		chain[0].Hash():             true,
		chain[1].Hash():             true,
		chain[2].Hash():             true,
	}

	i := 0

	const timeoutDura = 10 * time.Second
	timeout := time.NewTimer(timeoutDura)
done:
	for {
		select {
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		case ev := <-chainSideCh:
			block := ev.Block
964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982
			if _, ok := expectedSideHashes[block.Hash()]; !ok {
				t.Errorf("%d: didn't expect %x to be in side chain", i, block.Hash())
			}
			i++

			if i == len(expectedSideHashes) {
				timeout.Stop()

				break done
			}
			timeout.Reset(timeoutDura)

		case <-timeout.C:
			t.Fatal("Timeout. Possibly not all blocks were triggered for sideevent")
		}
	}

	// make sure no more events are fired
	select {
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	case e := <-chainSideCh:
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		t.Errorf("unexpected event fired: %v", e)
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	case <-time.After(250 * time.Millisecond):
	}

}
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// Tests if the canonical block can be fetched from the database during chain insertion.
func TestCanonicalBlockRetrieval(t *testing.T) {
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	bc := newTestBlockChain(true)
	defer bc.Stop()

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	chain, _ := GenerateChain(bc.config, bc.genesisBlock, ethash.NewFaker(), bc.chainDb, 10, func(i int, gen *BlockGen) {})
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997 998 999
	var pend sync.WaitGroup
	pend.Add(len(chain))

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	for i := range chain {
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		go func(block *types.Block) {
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			defer pend.Done()

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			// try to retrieve a block by its canonical hash and see if the block data can be retrieved.
			for {
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				ch := GetCanonicalHash(bc.chainDb, block.NumberU64())
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				if ch == (common.Hash{}) {
					continue // busy wait for canonical hash to be written
				}
				if ch != block.Hash() {
					t.Fatalf("unknown canonical hash, want %s, got %s", block.Hash().Hex(), ch.Hex())
				}
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				fb := GetBlock(bc.chainDb, ch, block.NumberU64())
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				if fb == nil {
					t.Fatalf("unable to retrieve block %d for canonical hash: %s", block.NumberU64(), ch.Hex())
				}
				if fb.Hash() != block.Hash() {
					t.Fatalf("invalid block hash for block %d, want %s, got %s", block.NumberU64(), block.Hash().Hex(), fb.Hash().Hex())
				}
				return
			}
		}(chain[i])

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		if _, err := bc.InsertChain(types.Blocks{chain[i]}); err != nil {
			t.Fatalf("failed to insert block %d: %v", i, err)
		}
1027
	}
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	pend.Wait()
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}
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func TestEIP155Transition(t *testing.T) {
	// Configure and generate a sample block chain
	var (
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		db, _      = ethdb.NewMemDatabase()
		key, _     = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
		address    = crypto.PubkeyToAddress(key.PublicKey)
		funds      = big.NewInt(1000000000)
		deleteAddr = common.Address{1}
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		gspec      = &Genesis{
			Config: &params.ChainConfig{ChainId: big.NewInt(1), EIP155Block: big.NewInt(2), HomesteadBlock: new(big.Int)},
			Alloc:  GenesisAlloc{address: {Balance: funds}, deleteAddr: {Balance: new(big.Int)}},
		}
		genesis = gspec.MustCommit(db)
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	)

1046
	blockchain, _ := NewBlockChain(db, gspec.Config, ethash.NewFaker(), vm.Config{})
1047 1048
	defer blockchain.Stop()

1049
	blocks, _ := GenerateChain(gspec.Config, genesis, ethash.NewFaker(), db, 4, func(i int, block *BlockGen) {
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		var (
			tx      *types.Transaction
			err     error
			basicTx = func(signer types.Signer) (*types.Transaction, error) {
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				return types.SignTx(types.NewTransaction(block.TxNonce(address), common.Address{}, new(big.Int), big.NewInt(21000), new(big.Int), nil), signer, key)
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			}
		)
		switch i {
		case 0:
			tx, err = basicTx(types.HomesteadSigner{})
			if err != nil {
				t.Fatal(err)
			}
			block.AddTx(tx)
		case 2:
			tx, err = basicTx(types.HomesteadSigner{})
			if err != nil {
				t.Fatal(err)
			}
			block.AddTx(tx)

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			tx, err = basicTx(types.NewEIP155Signer(gspec.Config.ChainId))
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			if err != nil {
				t.Fatal(err)
			}
			block.AddTx(tx)
		case 3:
			tx, err = basicTx(types.HomesteadSigner{})
			if err != nil {
				t.Fatal(err)
			}
			block.AddTx(tx)

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			tx, err = basicTx(types.NewEIP155Signer(gspec.Config.ChainId))
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			if err != nil {
				t.Fatal(err)
			}
			block.AddTx(tx)
		}
	})

	if _, err := blockchain.InsertChain(blocks); err != nil {
		t.Fatal(err)
	}
	block := blockchain.GetBlockByNumber(1)
	if block.Transactions()[0].Protected() {
		t.Error("Expected block[0].txs[0] to not be replay protected")
	}

	block = blockchain.GetBlockByNumber(3)
	if block.Transactions()[0].Protected() {
		t.Error("Expected block[3].txs[0] to not be replay protected")
	}
	if !block.Transactions()[1].Protected() {
		t.Error("Expected block[3].txs[1] to be replay protected")
	}
	if _, err := blockchain.InsertChain(blocks[4:]); err != nil {
		t.Fatal(err)
	}

	// generate an invalid chain id transaction
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	config := &params.ChainConfig{ChainId: big.NewInt(2), EIP155Block: big.NewInt(2), HomesteadBlock: new(big.Int)}
1112
	blocks, _ = GenerateChain(config, blocks[len(blocks)-1], ethash.NewFaker(), db, 4, func(i int, block *BlockGen) {
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		var (
			tx      *types.Transaction
			err     error
			basicTx = func(signer types.Signer) (*types.Transaction, error) {
1117
				return types.SignTx(types.NewTransaction(block.TxNonce(address), common.Address{}, new(big.Int), big.NewInt(21000), new(big.Int), nil), signer, key)
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			}
		)
		switch i {
		case 0:
			tx, err = basicTx(types.NewEIP155Signer(big.NewInt(2)))
			if err != nil {
				t.Fatal(err)
			}
			block.AddTx(tx)
		}
	})
	_, err := blockchain.InsertChain(blocks)
1130 1131
	if err != types.ErrInvalidChainId {
		t.Error("expected error:", types.ErrInvalidChainId)
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	}
}
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func TestEIP161AccountRemoval(t *testing.T) {
	// Configure and generate a sample block chain
	var (
		db, _   = ethdb.NewMemDatabase()
		key, _  = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
		address = crypto.PubkeyToAddress(key.PublicKey)
		funds   = big.NewInt(1000000000)
		theAddr = common.Address{1}
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		gspec   = &Genesis{
			Config: &params.ChainConfig{
				ChainId:        big.NewInt(1),
				HomesteadBlock: new(big.Int),
				EIP155Block:    new(big.Int),
				EIP158Block:    big.NewInt(2),
			},
			Alloc: GenesisAlloc{address: {Balance: funds}},
		}
1152
		genesis = gspec.MustCommit(db)
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	)
1154
	blockchain, _ := NewBlockChain(db, gspec.Config, ethash.NewFaker(), vm.Config{})
1155 1156
	defer blockchain.Stop()

1157
	blocks, _ := GenerateChain(gspec.Config, genesis, ethash.NewFaker(), db, 3, func(i int, block *BlockGen) {
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		var (
			tx     *types.Transaction
			err    error
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			signer = types.NewEIP155Signer(gspec.Config.ChainId)
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		)
		switch i {
		case 0:
1165
			tx, err = types.SignTx(types.NewTransaction(block.TxNonce(address), theAddr, new(big.Int), big.NewInt(21000), new(big.Int), nil), signer, key)
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		case 1:
1167
			tx, err = types.SignTx(types.NewTransaction(block.TxNonce(address), theAddr, new(big.Int), big.NewInt(21000), new(big.Int), nil), signer, key)
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		case 2:
1169
			tx, err = types.SignTx(types.NewTransaction(block.TxNonce(address), theAddr, new(big.Int), big.NewInt(21000), new(big.Int), nil), signer, key)
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		}
		if err != nil {
			t.Fatal(err)
		}
		block.AddTx(tx)
	})
	// account must exist pre eip 161
	if _, err := blockchain.InsertChain(types.Blocks{blocks[0]}); err != nil {
		t.Fatal(err)
	}
1180
	if st, _ := blockchain.State(); !st.Exist(theAddr) {
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		t.Error("expected account to exist")
	}

	// account needs to be deleted post eip 161
	if _, err := blockchain.InsertChain(types.Blocks{blocks[1]}); err != nil {
		t.Fatal(err)
	}
1188
	if st, _ := blockchain.State(); st.Exist(theAddr) {
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		t.Error("account should not exist")
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	}

	// account musn't be created post eip 161
	if _, err := blockchain.InsertChain(types.Blocks{blocks[2]}); err != nil {
		t.Fatal(err)
	}
1196
	if st, _ := blockchain.State(); st.Exist(theAddr) {
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		t.Error("account should not exist")
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	}
}