downloader_test.go 65.9 KB
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// Copyright 2015 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 downloader

import (
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	"errors"
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	"fmt"
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	"math/big"
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	"sync"
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	"sync/atomic"
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	"testing"
	"time"

	"github.com/ethereum/go-ethereum/common"
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	"github.com/ethereum/go-ethereum/core"
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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/crypto"
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	"github.com/ethereum/go-ethereum/ethdb"
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	"github.com/ethereum/go-ethereum/event"
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	"github.com/ethereum/go-ethereum/params"
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	"github.com/ethereum/go-ethereum/trie"
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)

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var (
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	testdb, _   = ethdb.NewMemDatabase()
	testKey, _  = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
	testAddress = crypto.PubkeyToAddress(testKey.PublicKey)
	genesis     = core.GenesisBlockForTesting(testdb, testAddress, big.NewInt(1000000000))
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)
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// makeChain creates a chain of n blocks starting at and including parent.
// the returned hash chain is ordered head->parent. In addition, every 3rd block
// contains a transaction and every 5th an uncle to allow testing correct block
// reassembly.
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func makeChain(n int, seed byte, parent *types.Block, parentReceipts types.Receipts) ([]common.Hash, map[common.Hash]*types.Header, map[common.Hash]*types.Block, map[common.Hash]types.Receipts) {
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	// Generate the block chain
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	blocks, receipts := core.GenerateChain(parent, testdb, n, func(i int, block *core.BlockGen) {
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		block.SetCoinbase(common.Address{seed})

		// If the block number is multiple of 3, send a bonus transaction to the miner
		if parent == genesis && i%3 == 0 {
			tx, err := types.NewTransaction(block.TxNonce(testAddress), common.Address{seed}, big.NewInt(1000), params.TxGas, nil, nil).SignECDSA(testKey)
			if err != nil {
				panic(err)
			}
			block.AddTx(tx)
		}
		// If the block number is a multiple of 5, add a bonus uncle to the block
		if i%5 == 0 {
			block.AddUncle(&types.Header{ParentHash: block.PrevBlock(i - 1).Hash(), Number: big.NewInt(int64(i - 1))})
		}
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	})
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	// Convert the block-chain into a hash-chain and header/block maps
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	hashes := make([]common.Hash, n+1)
	hashes[len(hashes)-1] = parent.Hash()
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	headerm := make(map[common.Hash]*types.Header, n+1)
	headerm[parent.Hash()] = parent.Header()

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	blockm := make(map[common.Hash]*types.Block, n+1)
	blockm[parent.Hash()] = parent
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	receiptm := make(map[common.Hash]types.Receipts, n+1)
	receiptm[parent.Hash()] = parentReceipts

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	for i, b := range blocks {
		hashes[len(hashes)-i-2] = b.Hash()
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		headerm[b.Hash()] = b.Header()
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		blockm[b.Hash()] = b
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		receiptm[b.Hash()] = receipts[i]
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	}
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	return hashes, headerm, blockm, receiptm
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}

// makeChainFork creates two chains of length n, such that h1[:f] and
// h2[:f] are different but have a common suffix of length n-f.
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func makeChainFork(n, f int, parent *types.Block, parentReceipts types.Receipts) ([]common.Hash, []common.Hash, map[common.Hash]*types.Header, map[common.Hash]*types.Header, map[common.Hash]*types.Block, map[common.Hash]*types.Block, map[common.Hash]types.Receipts, map[common.Hash]types.Receipts) {
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	// Create the common suffix
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	hashes, headers, blocks, receipts := makeChain(n-f, 0, parent, parentReceipts)
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	// Create the forks
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	hashes1, headers1, blocks1, receipts1 := makeChain(f, 1, blocks[hashes[0]], receipts[hashes[0]])
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	hashes1 = append(hashes1, hashes[1:]...)

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	hashes2, headers2, blocks2, receipts2 := makeChain(f, 2, blocks[hashes[0]], receipts[hashes[0]])
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	hashes2 = append(hashes2, hashes[1:]...)

	for hash, header := range headers {
		headers1[hash] = header
		headers2[hash] = header
	}
	for hash, block := range blocks {
		blocks1[hash] = block
		blocks2[hash] = block
	}
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	for hash, receipt := range receipts {
		receipts1[hash] = receipt
		receipts2[hash] = receipt
	}
	return hashes1, hashes2, headers1, headers2, blocks1, blocks2, receipts1, receipts2
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}

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// downloadTester is a test simulator for mocking out local block chain.
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type downloadTester struct {
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	stateDb    ethdb.Database
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	downloader *Downloader

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	ownHashes   []common.Hash                  // Hash chain belonging to the tester
	ownHeaders  map[common.Hash]*types.Header  // Headers belonging to the tester
	ownBlocks   map[common.Hash]*types.Block   // Blocks belonging to the tester
	ownReceipts map[common.Hash]types.Receipts // Receipts belonging to the tester
	ownChainTd  map[common.Hash]*big.Int       // Total difficulties of the blocks in the local chain

	peerHashes   map[string][]common.Hash                  // Hash chain belonging to different test peers
	peerHeaders  map[string]map[common.Hash]*types.Header  // Headers belonging to different test peers
	peerBlocks   map[string]map[common.Hash]*types.Block   // Blocks belonging to different test peers
	peerReceipts map[string]map[common.Hash]types.Receipts // Receipts belonging to different test peers
	peerChainTds map[string]map[common.Hash]*big.Int       // Total difficulties of the blocks in the peer chains
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	lock sync.RWMutex
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}

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// newTester creates a new downloader test mocker.
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func newTester() *downloadTester {
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	tester := &downloadTester{
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		ownHashes:    []common.Hash{genesis.Hash()},
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		ownHeaders:   map[common.Hash]*types.Header{genesis.Hash(): genesis.Header()},
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		ownBlocks:    map[common.Hash]*types.Block{genesis.Hash(): genesis},
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		ownReceipts:  map[common.Hash]types.Receipts{genesis.Hash(): nil},
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		ownChainTd:   map[common.Hash]*big.Int{genesis.Hash(): genesis.Difficulty()},
		peerHashes:   make(map[string][]common.Hash),
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		peerHeaders:  make(map[string]map[common.Hash]*types.Header),
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		peerBlocks:   make(map[string]map[common.Hash]*types.Block),
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		peerReceipts: make(map[string]map[common.Hash]types.Receipts),
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		peerChainTds: make(map[string]map[common.Hash]*big.Int),
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	}
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	tester.stateDb, _ = ethdb.NewMemDatabase()
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	tester.downloader = New(tester.stateDb, new(event.TypeMux), tester.hasHeader, tester.hasBlock, tester.getHeader,
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		tester.getBlock, tester.headHeader, tester.headBlock, tester.headFastBlock, tester.commitHeadBlock, tester.getTd,
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		tester.insertHeaders, tester.insertBlocks, tester.insertReceipts, tester.rollback, tester.dropPeer)
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	return tester
}

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// sync starts synchronizing with a remote peer, blocking until it completes.
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func (dl *downloadTester) sync(id string, td *big.Int, mode SyncMode) error {
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	dl.lock.RLock()
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	hash := dl.peerHashes[id][0]
	// If no particular TD was requested, load from the peer's blockchain
	if td == nil {
		td = big.NewInt(1)
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		if diff, ok := dl.peerChainTds[id][hash]; ok {
			td = diff
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		}
	}
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	dl.lock.RUnlock()
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	return dl.downloader.synchronise(id, hash, td, mode)
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}

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// hasHeader checks if a header is present in the testers canonical chain.
func (dl *downloadTester) hasHeader(hash common.Hash) bool {
	return dl.getHeader(hash) != nil
}

// hasBlock checks if a block is present in the testers canonical chain.
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func (dl *downloadTester) hasBlock(hash common.Hash) bool {
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	return dl.getBlock(hash) != nil
}

// getHeader retrieves a header from the testers canonical chain.
func (dl *downloadTester) getHeader(hash common.Hash) *types.Header {
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	dl.lock.RLock()
	defer dl.lock.RUnlock()

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	return dl.ownHeaders[hash]
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}

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// getBlock retrieves a block from the testers canonical chain.
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func (dl *downloadTester) getBlock(hash common.Hash) *types.Block {
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	dl.lock.RLock()
	defer dl.lock.RUnlock()

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	return dl.ownBlocks[hash]
}

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// headHeader retrieves the current head header from the canonical chain.
func (dl *downloadTester) headHeader() *types.Header {
	dl.lock.RLock()
	defer dl.lock.RUnlock()

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	for i := len(dl.ownHashes) - 1; i >= 0; i-- {
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		if header := dl.ownHeaders[dl.ownHashes[i]]; header != nil {
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			return header
		}
	}
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	return genesis.Header()
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}

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// headBlock retrieves the current head block from the canonical chain.
func (dl *downloadTester) headBlock() *types.Block {
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	dl.lock.RLock()
	defer dl.lock.RUnlock()

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	for i := len(dl.ownHashes) - 1; i >= 0; i-- {
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		if block := dl.ownBlocks[dl.ownHashes[i]]; block != nil {
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			if _, err := dl.stateDb.Get(block.Root().Bytes()); err == nil {
				return block
			}
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		}
	}
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	return genesis
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}

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// headFastBlock retrieves the current head fast-sync block from the canonical chain.
func (dl *downloadTester) headFastBlock() *types.Block {
	dl.lock.RLock()
	defer dl.lock.RUnlock()

	for i := len(dl.ownHashes) - 1; i >= 0; i-- {
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		if block := dl.ownBlocks[dl.ownHashes[i]]; block != nil {
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			return block
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		}
	}
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	return genesis
}

// commitHeadBlock manually sets the head block to a given hash.
func (dl *downloadTester) commitHeadBlock(hash common.Hash) error {
	// For now only check that the state trie is correct
	if block := dl.getBlock(hash); block != nil {
		_, err := trie.NewSecure(block.Root(), dl.stateDb)
		return err
	}
	return fmt.Errorf("non existent block: %x", hash[:4])
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}

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// getTd retrieves the block's total difficulty from the canonical chain.
func (dl *downloadTester) getTd(hash common.Hash) *big.Int {
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	dl.lock.RLock()
	defer dl.lock.RUnlock()

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	return dl.ownChainTd[hash]
}

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// insertHeaders injects a new batch of headers into the simulated chain.
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func (dl *downloadTester) insertHeaders(headers []*types.Header, checkFreq int) (int, error) {
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	dl.lock.Lock()
	defer dl.lock.Unlock()

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	// Do a quick check, as the blockchain.InsertHeaderChain doesn't insert anthing in case of errors
	if _, ok := dl.ownHeaders[headers[0].ParentHash]; !ok {
		return 0, errors.New("unknown parent")
	}
	for i := 1; i < len(headers); i++ {
		if headers[i].ParentHash != headers[i-1].Hash() {
			return i, errors.New("unknown parent")
		}
	}
	// Do a full insert if pre-checks passed
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	for i, header := range headers {
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		if _, ok := dl.ownHeaders[header.Hash()]; ok {
			continue
		}
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		if _, ok := dl.ownHeaders[header.ParentHash]; !ok {
			return i, errors.New("unknown parent")
		}
		dl.ownHashes = append(dl.ownHashes, header.Hash())
		dl.ownHeaders[header.Hash()] = header
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		dl.ownChainTd[header.Hash()] = new(big.Int).Add(dl.ownChainTd[header.ParentHash], header.Difficulty)
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	}
	return len(headers), nil
}

// insertBlocks injects a new batch of blocks into the simulated chain.
func (dl *downloadTester) insertBlocks(blocks types.Blocks) (int, error) {
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	dl.lock.Lock()
	defer dl.lock.Unlock()

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	for i, block := range blocks {
		if _, ok := dl.ownBlocks[block.ParentHash()]; !ok {
			return i, errors.New("unknown parent")
		}
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		if _, ok := dl.ownHeaders[block.Hash()]; !ok {
			dl.ownHashes = append(dl.ownHashes, block.Hash())
			dl.ownHeaders[block.Hash()] = block.Header()
		}
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		dl.ownBlocks[block.Hash()] = block
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		dl.stateDb.Put(block.Root().Bytes(), []byte{0x00})
		dl.ownChainTd[block.Hash()] = new(big.Int).Add(dl.ownChainTd[block.ParentHash()], block.Difficulty())
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	}
	return len(blocks), nil
}

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// insertReceipts injects a new batch of blocks into the simulated chain.
func (dl *downloadTester) insertReceipts(blocks types.Blocks, receipts []types.Receipts) (int, error) {
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	dl.lock.Lock()
	defer dl.lock.Unlock()

	for i := 0; i < len(blocks) && i < len(receipts); i++ {
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		if _, ok := dl.ownHeaders[blocks[i].Hash()]; !ok {
			return i, errors.New("unknown owner")
		}
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		if _, ok := dl.ownBlocks[blocks[i].ParentHash()]; !ok {
			return i, errors.New("unknown parent")
		}
		dl.ownBlocks[blocks[i].Hash()] = blocks[i]
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		dl.ownReceipts[blocks[i].Hash()] = receipts[i]
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	}
	return len(blocks), nil
}

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// rollback removes some recently added elements from the chain.
func (dl *downloadTester) rollback(hashes []common.Hash) {
	dl.lock.Lock()
	defer dl.lock.Unlock()

	for i := len(hashes) - 1; i >= 0; i-- {
		if dl.ownHashes[len(dl.ownHashes)-1] == hashes[i] {
			dl.ownHashes = dl.ownHashes[:len(dl.ownHashes)-1]
		}
		delete(dl.ownChainTd, hashes[i])
		delete(dl.ownHeaders, hashes[i])
		delete(dl.ownReceipts, hashes[i])
		delete(dl.ownBlocks, hashes[i])
	}
}

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// newPeer registers a new block download source into the downloader.
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func (dl *downloadTester) newPeer(id string, version int, hashes []common.Hash, headers map[common.Hash]*types.Header, blocks map[common.Hash]*types.Block, receipts map[common.Hash]types.Receipts) error {
	return dl.newSlowPeer(id, version, hashes, headers, blocks, receipts, 0)
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}

// newSlowPeer registers a new block download source into the downloader, with a
// specific delay time on processing the network packets sent to it, simulating
// potentially slow network IO.
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func (dl *downloadTester) newSlowPeer(id string, version int, hashes []common.Hash, headers map[common.Hash]*types.Header, blocks map[common.Hash]*types.Block, receipts map[common.Hash]types.Receipts, delay time.Duration) error {
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	dl.lock.Lock()
	defer dl.lock.Unlock()

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	var err error
	switch version {
	case 61:
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		err = dl.downloader.RegisterPeer(id, version, hashes[0], dl.peerGetRelHashesFn(id, delay), dl.peerGetAbsHashesFn(id, delay), dl.peerGetBlocksFn(id, delay), nil, nil, nil, nil, nil)
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	case 62:
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		err = dl.downloader.RegisterPeer(id, version, hashes[0], nil, nil, nil, dl.peerGetRelHeadersFn(id, delay), dl.peerGetAbsHeadersFn(id, delay), dl.peerGetBodiesFn(id, delay), nil, nil)
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	case 63:
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		err = dl.downloader.RegisterPeer(id, version, hashes[0], nil, nil, nil, dl.peerGetRelHeadersFn(id, delay), dl.peerGetAbsHeadersFn(id, delay), dl.peerGetBodiesFn(id, delay), dl.peerGetReceiptsFn(id, delay), dl.peerGetNodeDataFn(id, delay))
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	case 64:
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		err = dl.downloader.RegisterPeer(id, version, hashes[0], nil, nil, nil, dl.peerGetRelHeadersFn(id, delay), dl.peerGetAbsHeadersFn(id, delay), dl.peerGetBodiesFn(id, delay), dl.peerGetReceiptsFn(id, delay), dl.peerGetNodeDataFn(id, delay))
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	}
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	if err == nil {
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		// Assign the owned hashes, headers and blocks to the peer (deep copy)
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		dl.peerHashes[id] = make([]common.Hash, len(hashes))
		copy(dl.peerHashes[id], hashes)
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		dl.peerHeaders[id] = make(map[common.Hash]*types.Header)
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		dl.peerBlocks[id] = make(map[common.Hash]*types.Block)
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		dl.peerReceipts[id] = make(map[common.Hash]types.Receipts)
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		dl.peerChainTds[id] = make(map[common.Hash]*big.Int)
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		genesis := hashes[len(hashes)-1]
		if header := headers[genesis]; header != nil {
			dl.peerHeaders[id][genesis] = header
			dl.peerChainTds[id][genesis] = header.Difficulty
		}
		if block := blocks[genesis]; block != nil {
			dl.peerBlocks[id][genesis] = block
			dl.peerChainTds[id][genesis] = block.Difficulty()
		}

		for i := len(hashes) - 2; i >= 0; i-- {
			hash := hashes[i]

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			if header, ok := headers[hash]; ok {
				dl.peerHeaders[id][hash] = header
				if _, ok := dl.peerHeaders[id][header.ParentHash]; ok {
					dl.peerChainTds[id][hash] = new(big.Int).Add(header.Difficulty, dl.peerChainTds[id][header.ParentHash])
				}
			}
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			if block, ok := blocks[hash]; ok {
				dl.peerBlocks[id][hash] = block
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				if _, ok := dl.peerBlocks[id][block.ParentHash()]; ok {
					dl.peerChainTds[id][hash] = new(big.Int).Add(block.Difficulty(), dl.peerChainTds[id][block.ParentHash()])
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				}
			}
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			if receipt, ok := receipts[hash]; ok {
				dl.peerReceipts[id][hash] = receipt
			}
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		}
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	}
	return err
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}

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// dropPeer simulates a hard peer removal from the connection pool.
func (dl *downloadTester) dropPeer(id string) {
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	dl.lock.Lock()
	defer dl.lock.Unlock()

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	delete(dl.peerHashes, id)
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	delete(dl.peerHeaders, id)
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	delete(dl.peerBlocks, id)
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	delete(dl.peerChainTds, id)
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	dl.downloader.UnregisterPeer(id)
}

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// peerGetRelHashesFn constructs a GetHashes function associated with a specific
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// peer in the download tester. The returned function can be used to retrieve
// batches of hashes from the particularly requested peer.
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func (dl *downloadTester) peerGetRelHashesFn(id string, delay time.Duration) func(head common.Hash) error {
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	return func(head common.Hash) error {
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		time.Sleep(delay)

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		dl.lock.RLock()
		defer dl.lock.RUnlock()

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		// Gather the next batch of hashes
		hashes := dl.peerHashes[id]
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		result := make([]common.Hash, 0, MaxHashFetch)
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		for i, hash := range hashes {
			if hash == head {
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				i++
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				for len(result) < cap(result) && i < len(hashes) {
					result = append(result, hashes[i])
					i++
				}
				break
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			}
		}
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		// Delay delivery a bit to allow attacks to unfold
		go func() {
			time.Sleep(time.Millisecond)
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			dl.downloader.DeliverHashes(id, result)
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		}()
		return nil
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	}
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}

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// peerGetAbsHashesFn constructs a GetHashesFromNumber function associated with
// a particular peer in the download tester. The returned function can be used to
// retrieve batches of hashes from the particularly requested peer.
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func (dl *downloadTester) peerGetAbsHashesFn(id string, delay time.Duration) func(uint64, int) error {
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	return func(head uint64, count int) error {
		time.Sleep(delay)

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		dl.lock.RLock()
		defer dl.lock.RUnlock()

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		// Gather the next batch of hashes
		hashes := dl.peerHashes[id]
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		result := make([]common.Hash, 0, count)
		for i := 0; i < count && len(hashes)-int(head)-1-i >= 0; i++ {
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			result = append(result, hashes[len(hashes)-int(head)-1-i])
		}
		// Delay delivery a bit to allow attacks to unfold
		go func() {
			time.Sleep(time.Millisecond)
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			dl.downloader.DeliverHashes(id, result)
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		}()
		return nil
	}
}

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// peerGetBlocksFn constructs a getBlocks function associated with a particular
// peer in the download tester. The returned function can be used to retrieve
// batches of blocks from the particularly requested peer.
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func (dl *downloadTester) peerGetBlocksFn(id string, delay time.Duration) func([]common.Hash) error {
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	return func(hashes []common.Hash) error {
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		time.Sleep(delay)
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		dl.lock.RLock()
		defer dl.lock.RUnlock()

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		blocks := dl.peerBlocks[id]
		result := make([]*types.Block, 0, len(hashes))
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		for _, hash := range hashes {
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			if block, ok := blocks[hash]; ok {
				result = append(result, block)
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			}
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		}
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		go dl.downloader.DeliverBlocks(id, result)
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		return nil
	}
}

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// peerGetRelHeadersFn constructs a GetBlockHeaders function based on a hashed
// origin; associated with a particular peer in the download tester. The returned
// function can be used to retrieve batches of headers from the particular peer.
func (dl *downloadTester) peerGetRelHeadersFn(id string, delay time.Duration) func(common.Hash, int, int, bool) error {
	return func(origin common.Hash, amount int, skip int, reverse bool) error {
		// Find the canonical number of the hash
		dl.lock.RLock()
		number := uint64(0)
		for num, hash := range dl.peerHashes[id] {
			if hash == origin {
				number = uint64(len(dl.peerHashes[id]) - num - 1)
				break
			}
		}
		dl.lock.RUnlock()

		// Use the absolute header fetcher to satisfy the query
		return dl.peerGetAbsHeadersFn(id, delay)(number, amount, skip, reverse)
	}
}

523 524 525 526 527 528 529
// peerGetAbsHeadersFn constructs a GetBlockHeaders function based on a numbered
// origin; associated with a particular peer in the download tester. The returned
// function can be used to retrieve batches of headers from the particular peer.
func (dl *downloadTester) peerGetAbsHeadersFn(id string, delay time.Duration) func(uint64, int, int, bool) error {
	return func(origin uint64, amount int, skip int, reverse bool) error {
		time.Sleep(delay)

530 531 532
		dl.lock.RLock()
		defer dl.lock.RUnlock()

533
		// Gather the next batch of headers
534
		hashes := dl.peerHashes[id]
535
		headers := dl.peerHeaders[id]
536 537
		result := make([]*types.Header, 0, amount)
		for i := 0; i < amount && len(hashes)-int(origin)-1-i >= 0; i++ {
538 539
			if header, ok := headers[hashes[len(hashes)-int(origin)-1-i]]; ok {
				result = append(result, header)
540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556
			}
		}
		// Delay delivery a bit to allow attacks to unfold
		go func() {
			time.Sleep(time.Millisecond)
			dl.downloader.DeliverHeaders(id, result)
		}()
		return nil
	}
}

// peerGetBodiesFn constructs a getBlockBodies method associated with a particular
// peer in the download tester. The returned function can be used to retrieve
// batches of block bodies from the particularly requested peer.
func (dl *downloadTester) peerGetBodiesFn(id string, delay time.Duration) func([]common.Hash) error {
	return func(hashes []common.Hash) error {
		time.Sleep(delay)
557 558 559 560

		dl.lock.RLock()
		defer dl.lock.RUnlock()

561 562 563 564 565 566 567 568 569 570 571 572
		blocks := dl.peerBlocks[id]

		transactions := make([][]*types.Transaction, 0, len(hashes))
		uncles := make([][]*types.Header, 0, len(hashes))

		for _, hash := range hashes {
			if block, ok := blocks[hash]; ok {
				transactions = append(transactions, block.Transactions())
				uncles = append(uncles, block.Uncles())
			}
		}
		go dl.downloader.DeliverBodies(id, transactions, uncles)
573 574 575 576 577

		return nil
	}
}

578 579 580 581 582 583 584 585 586 587
// peerGetReceiptsFn constructs a getReceipts method associated with a particular
// peer in the download tester. The returned function can be used to retrieve
// batches of block receipts from the particularly requested peer.
func (dl *downloadTester) peerGetReceiptsFn(id string, delay time.Duration) func([]common.Hash) error {
	return func(hashes []common.Hash) error {
		time.Sleep(delay)

		dl.lock.RLock()
		defer dl.lock.RUnlock()

588
		receipts := dl.peerReceipts[id]
589

590
		results := make([][]*types.Receipt, 0, len(hashes))
591
		for _, hash := range hashes {
592 593
			if receipt, ok := receipts[hash]; ok {
				results = append(results, receipt)
594 595
			}
		}
596
		go dl.downloader.DeliverReceipts(id, results)
597 598 599 600 601

		return nil
	}
}

602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623
// peerGetNodeDataFn constructs a getNodeData method associated with a particular
// peer in the download tester. The returned function can be used to retrieve
// batches of node state data from the particularly requested peer.
func (dl *downloadTester) peerGetNodeDataFn(id string, delay time.Duration) func([]common.Hash) error {
	return func(hashes []common.Hash) error {
		time.Sleep(delay)

		dl.lock.RLock()
		defer dl.lock.RUnlock()

		results := make([][]byte, 0, len(hashes))
		for _, hash := range hashes {
			if data, err := testdb.Get(hash.Bytes()); err == nil {
				results = append(results, data)
			}
		}
		go dl.downloader.DeliverNodeData(id, results)

		return nil
	}
}

624 625 626
// assertOwnChain checks if the local chain contains the correct number of items
// of the various chain components.
func assertOwnChain(t *testing.T, tester *downloadTester, length int) {
627 628 629 630 631 632 633
	assertOwnForkedChain(t, tester, 1, []int{length})
}

// assertOwnForkedChain checks if the local forked chain contains the correct
// number of items of the various chain components.
func assertOwnForkedChain(t *testing.T, tester *downloadTester, common int, lengths []int) {
	// Initialize the counters for the first fork
634 635 636 637 638 639 640 641
	headers, blocks := lengths[0], lengths[0]

	minReceipts, maxReceipts := lengths[0]-fsMinFullBlocks-fsPivotInterval, lengths[0]-fsMinFullBlocks
	if minReceipts < 0 {
		minReceipts = 1
	}
	if maxReceipts < 0 {
		maxReceipts = 1
642 643 644 645 646
	}
	// Update the counters for each subsequent fork
	for _, length := range lengths[1:] {
		headers += length - common
		blocks += length - common
647 648 649

		minReceipts += length - common - fsMinFullBlocks - fsPivotInterval
		maxReceipts += length - common - fsMinFullBlocks
650
	}
651 652
	switch tester.downloader.mode {
	case FullSync:
653
		minReceipts, maxReceipts = 1, 1
654
	case LightSync:
655
		blocks, minReceipts, maxReceipts = 1, 1, 1
656 657 658 659 660 661 662
	}
	if hs := len(tester.ownHeaders); hs != headers {
		t.Fatalf("synchronised headers mismatch: have %v, want %v", hs, headers)
	}
	if bs := len(tester.ownBlocks); bs != blocks {
		t.Fatalf("synchronised blocks mismatch: have %v, want %v", bs, blocks)
	}
663 664
	if rs := len(tester.ownReceipts); rs < minReceipts || rs > maxReceipts {
		t.Fatalf("synchronised receipts mismatch: have %v, want between [%v, %v]", rs, minReceipts, maxReceipts)
665
	}
666 667
	// Verify the state trie too for fast syncs
	if tester.downloader.mode == FastSync {
668 669 670 671 672 673 674 675 676
		index := 0
		if pivot := int(tester.downloader.queue.fastSyncPivot); pivot < common {
			index = pivot
		} else {
			index = len(tester.ownHashes) - lengths[len(lengths)-1] + int(tester.downloader.queue.fastSyncPivot)
		}
		if index > 0 {
			if statedb, err := state.New(tester.ownHeaders[tester.ownHashes[index]].Root, tester.stateDb); statedb == nil || err != nil {
				t.Fatalf("state reconstruction failed: %v", err)
677 678 679
			}
		}
	}
680 681
}

682 683 684
// Tests that simple synchronization against a canonical chain works correctly.
// In this test common ancestor lookup should be short circuited and not require
// binary searching.
685 686 687 688 689 690 691 692 693
func TestCanonicalSynchronisation61(t *testing.T)      { testCanonicalSynchronisation(t, 61, FullSync) }
func TestCanonicalSynchronisation62(t *testing.T)      { testCanonicalSynchronisation(t, 62, FullSync) }
func TestCanonicalSynchronisation63Full(t *testing.T)  { testCanonicalSynchronisation(t, 63, FullSync) }
func TestCanonicalSynchronisation63Fast(t *testing.T)  { testCanonicalSynchronisation(t, 63, FastSync) }
func TestCanonicalSynchronisation64Full(t *testing.T)  { testCanonicalSynchronisation(t, 64, FullSync) }
func TestCanonicalSynchronisation64Fast(t *testing.T)  { testCanonicalSynchronisation(t, 64, FastSync) }
func TestCanonicalSynchronisation64Light(t *testing.T) { testCanonicalSynchronisation(t, 64, LightSync) }

func testCanonicalSynchronisation(t *testing.T, protocol int, mode SyncMode) {
694 695
	// Create a small enough block chain to download
	targetBlocks := blockCacheLimit - 15
696
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
697

698
	tester := newTester()
699
	tester.newPeer("peer", protocol, hashes, headers, blocks, receipts)
700

701
	// Synchronise with the peer and make sure all relevant data was retrieved
702
	if err := tester.sync("peer", nil, mode); err != nil {
703
		t.Fatalf("failed to synchronise blocks: %v", err)
704
	}
705
	assertOwnChain(t, tester, targetBlocks+1)
706 707
}

708 709
// Tests that if a large batch of blocks are being downloaded, it is throttled
// until the cached blocks are retrieved.
710 711 712 713 714 715 716 717
func TestThrottling61(t *testing.T)     { testThrottling(t, 61, FullSync) }
func TestThrottling62(t *testing.T)     { testThrottling(t, 62, FullSync) }
func TestThrottling63Full(t *testing.T) { testThrottling(t, 63, FullSync) }
func TestThrottling63Fast(t *testing.T) { testThrottling(t, 63, FastSync) }
func TestThrottling64Full(t *testing.T) { testThrottling(t, 64, FullSync) }
func TestThrottling64Fast(t *testing.T) { testThrottling(t, 64, FastSync) }

func testThrottling(t *testing.T, protocol int, mode SyncMode) {
718 719
	// Create a long block chain to download and the tester
	targetBlocks := 8 * blockCacheLimit
720
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
721

722
	tester := newTester()
723
	tester.newPeer("peer", protocol, hashes, headers, blocks, receipts)
724

725
	// Wrap the importer to allow stepping
726
	blocked, proceed := uint32(0), make(chan struct{})
727 728
	tester.downloader.chainInsertHook = func(results []*fetchResult) {
		atomic.StoreUint32(&blocked, uint32(len(results)))
729
		<-proceed
730
	}
731 732 733
	// Start a synchronisation concurrently
	errc := make(chan error)
	go func() {
734
		errc <- tester.sync("peer", nil, mode)
735 736
	}()
	// Iteratively take some blocks, always checking the retrieval count
737 738 739 740 741 742 743 744
	for {
		// Check the retrieval count synchronously (! reason for this ugly block)
		tester.lock.RLock()
		retrieved := len(tester.ownBlocks)
		tester.lock.RUnlock()
		if retrieved >= targetBlocks+1 {
			break
		}
745
		// Wait a bit for sync to throttle itself
746
		var cached, frozen int
747
		for start := time.Now(); time.Since(start) < time.Second; {
748
			time.Sleep(25 * time.Millisecond)
749

750 751
			tester.lock.Lock()
			tester.downloader.queue.lock.Lock()
752 753 754
			cached = len(tester.downloader.queue.blockDonePool)
			if mode == FastSync {
				if receipts := len(tester.downloader.queue.receiptDonePool); receipts < cached {
755 756 757
					if tester.downloader.queue.resultCache[receipts].Header.Number.Uint64() < tester.downloader.queue.fastSyncPivot {
						cached = receipts
					}
758 759
				}
			}
760 761
			frozen = int(atomic.LoadUint32(&blocked))
			retrieved = len(tester.ownBlocks)
762 763
			tester.downloader.queue.lock.Unlock()
			tester.lock.Unlock()
764

765
			if cached == blockCacheLimit || retrieved+cached+frozen == targetBlocks+1 {
766 767 768
				break
			}
		}
769 770
		// Make sure we filled up the cache, then exhaust it
		time.Sleep(25 * time.Millisecond) // give it a chance to screw up
771 772 773 774 775 776

		tester.lock.RLock()
		retrieved = len(tester.ownBlocks)
		tester.lock.RUnlock()
		if cached != blockCacheLimit && retrieved+cached+frozen != targetBlocks+1 {
			t.Fatalf("block count mismatch: have %v, want %v (owned %v, blocked %v, target %v)", cached, blockCacheLimit, retrieved, frozen, targetBlocks+1)
777
		}
778 779 780 781
		// Permit the blocked blocks to import
		if atomic.LoadUint32(&blocked) > 0 {
			atomic.StoreUint32(&blocked, uint32(0))
			proceed <- struct{}{}
782
		}
783 784
	}
	// Check that we haven't pulled more blocks than available
785
	assertOwnChain(t, tester, targetBlocks+1)
786 787
	if err := <-errc; err != nil {
		t.Fatalf("block synchronization failed: %v", err)
788 789
	}
}
790

791 792 793
// Tests that simple synchronization against a forked chain works correctly. In
// this test common ancestor lookup should *not* be short circuited, and a full
// binary search should be executed.
794 795 796 797 798 799 800 801 802
func TestForkedSynchronisation61(t *testing.T)      { testForkedSynchronisation(t, 61, FullSync) }
func TestForkedSynchronisation62(t *testing.T)      { testForkedSynchronisation(t, 62, FullSync) }
func TestForkedSynchronisation63Full(t *testing.T)  { testForkedSynchronisation(t, 63, FullSync) }
func TestForkedSynchronisation63Fast(t *testing.T)  { testForkedSynchronisation(t, 63, FastSync) }
func TestForkedSynchronisation64Full(t *testing.T)  { testForkedSynchronisation(t, 64, FullSync) }
func TestForkedSynchronisation64Fast(t *testing.T)  { testForkedSynchronisation(t, 64, FastSync) }
func TestForkedSynchronisation64Light(t *testing.T) { testForkedSynchronisation(t, 64, LightSync) }

func testForkedSynchronisation(t *testing.T, protocol int, mode SyncMode) {
803 804
	// Create a long enough forked chain
	common, fork := MaxHashFetch, 2*MaxHashFetch
805
	hashesA, hashesB, headersA, headersB, blocksA, blocksB, receiptsA, receiptsB := makeChainFork(common+fork, fork, genesis, nil)
806

807
	tester := newTester()
808 809
	tester.newPeer("fork A", protocol, hashesA, headersA, blocksA, receiptsA)
	tester.newPeer("fork B", protocol, hashesB, headersB, blocksB, receiptsB)
810 811

	// Synchronise with the peer and make sure all blocks were retrieved
812
	if err := tester.sync("fork A", nil, mode); err != nil {
813 814
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
815 816
	assertOwnChain(t, tester, common+fork+1)

817
	// Synchronise with the second peer and make sure that fork is pulled too
818
	if err := tester.sync("fork B", nil, mode); err != nil {
819 820
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
821
	assertOwnForkedChain(t, tester, common+1, []int{common + fork + 1, common + fork + 1})
822 823 824
}

// Tests that an inactive downloader will not accept incoming hashes and blocks.
825
func TestInactiveDownloader61(t *testing.T) {
826
	tester := newTester()
827 828

	// Check that neither hashes nor blocks are accepted
829
	if err := tester.downloader.DeliverHashes("bad peer", []common.Hash{}); err != errNoSyncActive {
830 831
		t.Errorf("error mismatch: have %v, want %v", err, errNoSyncActive)
	}
832
	if err := tester.downloader.DeliverBlocks("bad peer", []*types.Block{}); err != errNoSyncActive {
833 834 835 836
		t.Errorf("error mismatch: have %v, want %v", err, errNoSyncActive)
	}
}

837 838
// Tests that an inactive downloader will not accept incoming block headers and
// bodies.
839
func TestInactiveDownloader62(t *testing.T) {
840
	tester := newTester()
841 842 843

	// Check that neither block headers nor bodies are accepted
	if err := tester.downloader.DeliverHeaders("bad peer", []*types.Header{}); err != errNoSyncActive {
844 845
		t.Errorf("error mismatch: have %v, want %v", err, errNoSyncActive)
	}
846
	if err := tester.downloader.DeliverBodies("bad peer", [][]*types.Transaction{}, [][]*types.Header{}); err != errNoSyncActive {
847 848 849 850
		t.Errorf("error mismatch: have %v, want %v", err, errNoSyncActive)
	}
}

851 852 853
// Tests that an inactive downloader will not accept incoming block headers,
// bodies and receipts.
func TestInactiveDownloader63(t *testing.T) {
854
	tester := newTester()
855 856 857 858 859 860 861 862 863 864 865 866

	// Check that neither block headers nor bodies are accepted
	if err := tester.downloader.DeliverHeaders("bad peer", []*types.Header{}); err != errNoSyncActive {
		t.Errorf("error mismatch: have %v, want %v", err, errNoSyncActive)
	}
	if err := tester.downloader.DeliverBodies("bad peer", [][]*types.Transaction{}, [][]*types.Header{}); err != errNoSyncActive {
		t.Errorf("error mismatch: have %v, want %v", err, errNoSyncActive)
	}
	if err := tester.downloader.DeliverReceipts("bad peer", [][]*types.Receipt{}); err != errNoSyncActive {
		t.Errorf("error mismatch: have %v, want %v", err, errNoSyncActive)
	}
}
867

868 869 870 871 872 873 874 875 876 877
// Tests that a canceled download wipes all previously accumulated state.
func TestCancel61(t *testing.T)      { testCancel(t, 61, FullSync) }
func TestCancel62(t *testing.T)      { testCancel(t, 62, FullSync) }
func TestCancel63Full(t *testing.T)  { testCancel(t, 63, FullSync) }
func TestCancel63Fast(t *testing.T)  { testCancel(t, 63, FastSync) }
func TestCancel64Full(t *testing.T)  { testCancel(t, 64, FullSync) }
func TestCancel64Fast(t *testing.T)  { testCancel(t, 64, FastSync) }
func TestCancel64Light(t *testing.T) { testCancel(t, 64, LightSync) }

func testCancel(t *testing.T, protocol int, mode SyncMode) {
878 879 880 881 882
	// Create a small enough block chain to download and the tester
	targetBlocks := blockCacheLimit - 15
	if targetBlocks >= MaxHashFetch {
		targetBlocks = MaxHashFetch - 15
	}
883 884 885
	if targetBlocks >= MaxHeaderFetch {
		targetBlocks = MaxHeaderFetch - 15
	}
886
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
887

888
	tester := newTester()
889
	tester.newPeer("peer", protocol, hashes, headers, blocks, receipts)
890 891 892

	// Make sure canceling works with a pristine downloader
	tester.downloader.cancel()
893 894
	if !tester.downloader.queue.Idle() {
		t.Errorf("download queue not idle")
895 896
	}
	// Synchronise with the peer, but cancel afterwards
897
	if err := tester.sync("peer", nil, mode); err != nil {
898 899 900
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
	tester.downloader.cancel()
901 902
	if !tester.downloader.queue.Idle() {
		t.Errorf("download queue not idle")
903 904 905
	}
}

906
// Tests that synchronisation from multiple peers works as intended (multi thread sanity test).
907 908 909 910 911 912 913 914 915
func TestMultiSynchronisation61(t *testing.T)      { testMultiSynchronisation(t, 61, FullSync) }
func TestMultiSynchronisation62(t *testing.T)      { testMultiSynchronisation(t, 62, FullSync) }
func TestMultiSynchronisation63Full(t *testing.T)  { testMultiSynchronisation(t, 63, FullSync) }
func TestMultiSynchronisation63Fast(t *testing.T)  { testMultiSynchronisation(t, 63, FastSync) }
func TestMultiSynchronisation64Full(t *testing.T)  { testMultiSynchronisation(t, 64, FullSync) }
func TestMultiSynchronisation64Fast(t *testing.T)  { testMultiSynchronisation(t, 64, FastSync) }
func TestMultiSynchronisation64Light(t *testing.T) { testMultiSynchronisation(t, 64, LightSync) }

func testMultiSynchronisation(t *testing.T, protocol int, mode SyncMode) {
916
	// Create various peers with various parts of the chain
917
	targetPeers := 8
918
	targetBlocks := targetPeers*blockCacheLimit - 15
919
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
920

921
	tester := newTester()
922 923
	for i := 0; i < targetPeers; i++ {
		id := fmt.Sprintf("peer #%d", i)
924
		tester.newPeer(id, protocol, hashes[i*blockCacheLimit:], headers, blocks, receipts)
925
	}
926
	if err := tester.sync("peer #0", nil, mode); err != nil {
927 928
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
929
	assertOwnChain(t, tester, targetBlocks+1)
930 931
}

932 933
// Tests that synchronisations behave well in multi-version protocol environments
// and not wreak havok on other nodes in the network.
934 935 936 937 938 939 940 941 942
func TestMultiProtoSynchronisation61(t *testing.T)      { testMultiProtoSync(t, 61, FullSync) }
func TestMultiProtoSynchronisation62(t *testing.T)      { testMultiProtoSync(t, 62, FullSync) }
func TestMultiProtoSynchronisation63Full(t *testing.T)  { testMultiProtoSync(t, 63, FullSync) }
func TestMultiProtoSynchronisation63Fast(t *testing.T)  { testMultiProtoSync(t, 63, FastSync) }
func TestMultiProtoSynchronisation64Full(t *testing.T)  { testMultiProtoSync(t, 64, FullSync) }
func TestMultiProtoSynchronisation64Fast(t *testing.T)  { testMultiProtoSync(t, 64, FastSync) }
func TestMultiProtoSynchronisation64Light(t *testing.T) { testMultiProtoSync(t, 64, LightSync) }

func testMultiProtoSync(t *testing.T, protocol int, mode SyncMode) {
943 944
	// Create a small enough block chain to download
	targetBlocks := blockCacheLimit - 15
945
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
946 947

	// Create peers of every type
948 949 950
	tester := newTester()
	tester.newPeer("peer 61", 61, hashes, nil, blocks, nil)
	tester.newPeer("peer 62", 62, hashes, headers, blocks, nil)
951 952
	tester.newPeer("peer 63", 63, hashes, headers, blocks, receipts)
	tester.newPeer("peer 64", 64, hashes, headers, blocks, receipts)
953

954 955
	// Synchronise with the requested peer and make sure all blocks were retrieved
	if err := tester.sync(fmt.Sprintf("peer %d", protocol), nil, mode); err != nil {
956 957
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
958 959
	assertOwnChain(t, tester, targetBlocks+1)

960 961 962 963 964 965 966 967 968
	// Check that no peers have been dropped off
	for _, version := range []int{61, 62, 63, 64} {
		peer := fmt.Sprintf("peer %d", version)
		if _, ok := tester.peerHashes[peer]; !ok {
			t.Errorf("%s dropped", peer)
		}
	}
}

969
// Tests that if a block is empty (e.g. header only), no body request should be
970
// made, and instead the header should be assembled into a whole block in itself.
971 972 973 974 975 976 977 978
func TestEmptyShortCircuit62(t *testing.T)      { testEmptyShortCircuit(t, 62, FullSync) }
func TestEmptyShortCircuit63Full(t *testing.T)  { testEmptyShortCircuit(t, 63, FullSync) }
func TestEmptyShortCircuit63Fast(t *testing.T)  { testEmptyShortCircuit(t, 63, FastSync) }
func TestEmptyShortCircuit64Full(t *testing.T)  { testEmptyShortCircuit(t, 64, FullSync) }
func TestEmptyShortCircuit64Fast(t *testing.T)  { testEmptyShortCircuit(t, 64, FastSync) }
func TestEmptyShortCircuit64Light(t *testing.T) { testEmptyShortCircuit(t, 64, LightSync) }

func testEmptyShortCircuit(t *testing.T, protocol int, mode SyncMode) {
979 980
	// Create a block chain to download
	targetBlocks := 2*blockCacheLimit - 15
981
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
982

983
	tester := newTester()
984
	tester.newPeer("peer", protocol, hashes, headers, blocks, receipts)
985 986

	// Instrument the downloader to signal body requests
987
	bodiesHave, receiptsHave := int32(0), int32(0)
988
	tester.downloader.bodyFetchHook = func(headers []*types.Header) {
989
		atomic.AddInt32(&bodiesHave, int32(len(headers)))
990 991
	}
	tester.downloader.receiptFetchHook = func(headers []*types.Header) {
992
		atomic.AddInt32(&receiptsHave, int32(len(headers)))
993 994
	}
	// Synchronise with the peer and make sure all blocks were retrieved
995
	if err := tester.sync("peer", nil, mode); err != nil {
996 997
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
998 999
	assertOwnChain(t, tester, targetBlocks+1)

1000
	// Validate the number of block bodies that should have been requested
1001
	bodiesNeeded, receiptsNeeded := 0, 0
1002
	for _, block := range blocks {
1003 1004
		if mode != LightSync && block != genesis && (len(block.Transactions()) > 0 || len(block.Uncles()) > 0) {
			bodiesNeeded++
1005
		}
1006
	}
1007
	for hash, receipt := range receipts {
1008
		if mode == FastSync && len(receipt) > 0 && headers[hash].Number.Uint64() <= tester.downloader.queue.fastSyncPivot {
1009 1010 1011
			receiptsNeeded++
		}
	}
1012 1013
	if int(bodiesHave) != bodiesNeeded {
		t.Errorf("body retrieval count mismatch: have %v, want %v", bodiesHave, bodiesNeeded)
1014
	}
1015 1016
	if int(receiptsHave) != receiptsNeeded {
		t.Errorf("receipt retrieval count mismatch: have %v, want %v", receiptsHave, receiptsNeeded)
1017 1018 1019
	}
}

1020 1021
// Tests that headers are enqueued continuously, preventing malicious nodes from
// stalling the downloader by feeding gapped header chains.
1022 1023 1024 1025 1026 1027 1028 1029
func TestMissingHeaderAttack62(t *testing.T)      { testMissingHeaderAttack(t, 62, FullSync) }
func TestMissingHeaderAttack63Full(t *testing.T)  { testMissingHeaderAttack(t, 63, FullSync) }
func TestMissingHeaderAttack63Fast(t *testing.T)  { testMissingHeaderAttack(t, 63, FastSync) }
func TestMissingHeaderAttack64Full(t *testing.T)  { testMissingHeaderAttack(t, 64, FullSync) }
func TestMissingHeaderAttack64Fast(t *testing.T)  { testMissingHeaderAttack(t, 64, FastSync) }
func TestMissingHeaderAttack64Light(t *testing.T) { testMissingHeaderAttack(t, 64, LightSync) }

func testMissingHeaderAttack(t *testing.T, protocol int, mode SyncMode) {
1030 1031
	// Create a small enough block chain to download
	targetBlocks := blockCacheLimit - 15
1032
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
1033

1034
	tester := newTester()
1035 1036

	// Attempt a full sync with an attacker feeding gapped headers
1037
	tester.newPeer("attack", protocol, hashes, headers, blocks, receipts)
1038
	missing := targetBlocks / 2
1039
	delete(tester.peerHeaders["attack"], hashes[missing])
1040

1041
	if err := tester.sync("attack", nil, mode); err == nil {
1042 1043 1044
		t.Fatalf("succeeded attacker synchronisation")
	}
	// Synchronise with the valid peer and make sure sync succeeds
1045
	tester.newPeer("valid", protocol, hashes, headers, blocks, receipts)
1046
	if err := tester.sync("valid", nil, mode); err != nil {
1047 1048
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
1049
	assertOwnChain(t, tester, targetBlocks+1)
1050 1051 1052 1053
}

// Tests that if requested headers are shifted (i.e. first is missing), the queue
// detects the invalid numbering.
1054 1055 1056 1057 1058 1059 1060 1061
func TestShiftedHeaderAttack62(t *testing.T)      { testShiftedHeaderAttack(t, 62, FullSync) }
func TestShiftedHeaderAttack63Full(t *testing.T)  { testShiftedHeaderAttack(t, 63, FullSync) }
func TestShiftedHeaderAttack63Fast(t *testing.T)  { testShiftedHeaderAttack(t, 63, FastSync) }
func TestShiftedHeaderAttack64Full(t *testing.T)  { testShiftedHeaderAttack(t, 64, FullSync) }
func TestShiftedHeaderAttack64Fast(t *testing.T)  { testShiftedHeaderAttack(t, 64, FastSync) }
func TestShiftedHeaderAttack64Light(t *testing.T) { testShiftedHeaderAttack(t, 64, LightSync) }

func testShiftedHeaderAttack(t *testing.T, protocol int, mode SyncMode) {
1062 1063
	// Create a small enough block chain to download
	targetBlocks := blockCacheLimit - 15
1064
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
1065

1066
	tester := newTester()
1067 1068

	// Attempt a full sync with an attacker feeding shifted headers
1069
	tester.newPeer("attack", protocol, hashes, headers, blocks, receipts)
1070
	delete(tester.peerHeaders["attack"], hashes[len(hashes)-2])
1071
	delete(tester.peerBlocks["attack"], hashes[len(hashes)-2])
1072
	delete(tester.peerReceipts["attack"], hashes[len(hashes)-2])
1073

1074
	if err := tester.sync("attack", nil, mode); err == nil {
1075 1076 1077
		t.Fatalf("succeeded attacker synchronisation")
	}
	// Synchronise with the valid peer and make sure sync succeeds
1078
	tester.newPeer("valid", protocol, hashes, headers, blocks, receipts)
1079
	if err := tester.sync("valid", nil, mode); err != nil {
1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
	assertOwnChain(t, tester, targetBlocks+1)
}

// Tests that upon detecting an invalid header, the recent ones are rolled back
func TestInvalidHeaderRollback63Fast(t *testing.T)  { testInvalidHeaderRollback(t, 63, FastSync) }
func TestInvalidHeaderRollback64Fast(t *testing.T)  { testInvalidHeaderRollback(t, 64, FastSync) }
func TestInvalidHeaderRollback64Light(t *testing.T) { testInvalidHeaderRollback(t, 64, LightSync) }

func testInvalidHeaderRollback(t *testing.T, protocol int, mode SyncMode) {
	// Create a small enough block chain to download
1092
	targetBlocks := 3*fsHeaderSafetyNet + fsMinFullBlocks
1093 1094
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)

1095
	tester := newTester()
1096

1097 1098
	// Attempt to sync with an attacker that feeds junk during the fast sync phase.
	// This should result in the last fsHeaderSafetyNet headers being rolled back.
1099
	tester.newPeer("fast-attack", protocol, hashes, headers, blocks, receipts)
1100
	missing := fsHeaderSafetyNet + MaxHeaderFetch + 1
1101 1102
	delete(tester.peerHeaders["fast-attack"], hashes[len(hashes)-missing])

1103
	if err := tester.sync("fast-attack", nil, mode); err == nil {
1104 1105 1106
		t.Fatalf("succeeded fast attacker synchronisation")
	}
	if head := tester.headHeader().Number.Int64(); int(head) > MaxHeaderFetch {
1107
		t.Errorf("rollback head mismatch: have %v, want at most %v", head, MaxHeaderFetch)
1108
	}
1109 1110 1111
	// Attempt to sync with an attacker that feeds junk during the block import phase.
	// This should result in both the last fsHeaderSafetyNet number of headers being
	// rolled back, and also the pivot point being reverted to a non-block status.
1112
	tester.newPeer("block-attack", protocol, hashes, headers, blocks, receipts)
1113
	missing = 3*fsHeaderSafetyNet + MaxHeaderFetch + 1
1114 1115
	delete(tester.peerHeaders["block-attack"], hashes[len(hashes)-missing])

1116
	if err := tester.sync("block-attack", nil, mode); err == nil {
1117 1118
		t.Fatalf("succeeded block attacker synchronisation")
	}
1119 1120 1121
	if head := tester.headHeader().Number.Int64(); int(head) > 2*fsHeaderSafetyNet+MaxHeaderFetch {
		t.Errorf("rollback head mismatch: have %v, want at most %v", head, 2*fsHeaderSafetyNet+MaxHeaderFetch)
	}
1122
	if mode == FastSync {
1123 1124
		if head := tester.headBlock().NumberU64(); head != 0 {
			t.Errorf("fast sync pivot block #%d not rolled back", head)
1125
		}
1126
	}
1127 1128 1129 1130 1131
	// Attempt to sync with an attacker that withholds promised blocks after the
	// fast sync pivot point. This could be a trial to leave the node with a bad
	// but already imported pivot block.
	tester.newPeer("withhold-attack", protocol, hashes, headers, blocks, receipts)
	missing = 3*fsHeaderSafetyNet + MaxHeaderFetch + 1
1132

1133 1134 1135 1136 1137 1138
	tester.downloader.noFast = false
	tester.downloader.syncInitHook = func(uint64, uint64) {
		for i := missing; i <= len(hashes); i++ {
			delete(tester.peerHeaders["withhold-attack"], hashes[len(hashes)-i])
		}
		tester.downloader.syncInitHook = nil
1139
	}
1140

1141 1142 1143 1144 1145
	if err := tester.sync("withhold-attack", nil, mode); err == nil {
		t.Fatalf("succeeded withholding attacker synchronisation")
	}
	if head := tester.headHeader().Number.Int64(); int(head) > 2*fsHeaderSafetyNet+MaxHeaderFetch {
		t.Errorf("rollback head mismatch: have %v, want at most %v", head, 2*fsHeaderSafetyNet+MaxHeaderFetch)
1146 1147
	}
	if mode == FastSync {
1148 1149 1150
		if head := tester.headBlock().NumberU64(); head != 0 {
			t.Errorf("fast sync pivot block #%d not rolled back", head)
		}
1151
	}
1152 1153 1154 1155 1156 1157
	// Synchronise with the valid peer and make sure sync succeeds. Since the last
	// rollback should also disable fast syncing for this process, verify that we
	// did a fresh full sync. Note, we can't assert anything about the receipts
	// since we won't purge the database of them, hence we can't use asserOwnChain.
	tester.newPeer("valid", protocol, hashes, headers, blocks, receipts)
	if err := tester.sync("valid", nil, mode); err != nil {
1158 1159
		t.Fatalf("failed to synchronise blocks: %v", err)
	}
1160 1161
	if hs := len(tester.ownHeaders); hs != len(headers) {
		t.Fatalf("synchronised headers mismatch: have %v, want %v", hs, len(headers))
1162
	}
1163 1164 1165 1166
	if mode != LightSync {
		if bs := len(tester.ownBlocks); bs != len(blocks) {
			t.Fatalf("synchronised blocks mismatch: have %v, want %v", bs, len(blocks))
		}
1167
	}
1168 1169
}

1170 1171
// Tests that a peer advertising an high TD doesn't get to stall the downloader
// afterwards by not sending any useful hashes.
1172 1173 1174 1175 1176 1177 1178 1179 1180
func TestHighTDStarvationAttack61(t *testing.T)      { testHighTDStarvationAttack(t, 61, FullSync) }
func TestHighTDStarvationAttack62(t *testing.T)      { testHighTDStarvationAttack(t, 62, FullSync) }
func TestHighTDStarvationAttack63Full(t *testing.T)  { testHighTDStarvationAttack(t, 63, FullSync) }
func TestHighTDStarvationAttack63Fast(t *testing.T)  { testHighTDStarvationAttack(t, 63, FastSync) }
func TestHighTDStarvationAttack64Full(t *testing.T)  { testHighTDStarvationAttack(t, 64, FullSync) }
func TestHighTDStarvationAttack64Fast(t *testing.T)  { testHighTDStarvationAttack(t, 64, FastSync) }
func TestHighTDStarvationAttack64Light(t *testing.T) { testHighTDStarvationAttack(t, 64, LightSync) }

func testHighTDStarvationAttack(t *testing.T, protocol int, mode SyncMode) {
1181
	tester := newTester()
1182
	hashes, headers, blocks, receipts := makeChain(0, 0, genesis, nil)
1183

1184
	tester.newPeer("attack", protocol, []common.Hash{hashes[0]}, headers, blocks, receipts)
1185
	if err := tester.sync("attack", big.NewInt(1000000), mode); err != errStallingPeer {
1186 1187 1188 1189
		t.Fatalf("synchronisation error mismatch: have %v, want %v", err, errStallingPeer)
	}
}

1190
// Tests that misbehaving peers are disconnected, whilst behaving ones are not.
1191 1192 1193 1194 1195 1196
func TestBlockHeaderAttackerDropping61(t *testing.T) { testBlockHeaderAttackerDropping(t, 61) }
func TestBlockHeaderAttackerDropping62(t *testing.T) { testBlockHeaderAttackerDropping(t, 62) }
func TestBlockHeaderAttackerDropping63(t *testing.T) { testBlockHeaderAttackerDropping(t, 63) }
func TestBlockHeaderAttackerDropping64(t *testing.T) { testBlockHeaderAttackerDropping(t, 64) }

func testBlockHeaderAttackerDropping(t *testing.T, protocol int) {
1197
	// Define the disconnection requirement for individual hash fetch errors
1198 1199 1200 1201
	tests := []struct {
		result error
		drop   bool
	}{
1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221
		{nil, false},                   // Sync succeeded, all is well
		{errBusy, false},               // Sync is already in progress, no problem
		{errUnknownPeer, false},        // Peer is unknown, was already dropped, don't double drop
		{errBadPeer, true},             // Peer was deemed bad for some reason, drop it
		{errStallingPeer, true},        // Peer was detected to be stalling, drop it
		{errNoPeers, false},            // No peers to download from, soft race, no issue
		{errTimeout, true},             // No hashes received in due time, drop the peer
		{errEmptyHashSet, true},        // No hashes were returned as a response, drop as it's a dead end
		{errEmptyHeaderSet, true},      // No headers were returned as a response, drop as it's a dead end
		{errPeersUnavailable, true},    // Nobody had the advertised blocks, drop the advertiser
		{errInvalidChain, true},        // Hash chain was detected as invalid, definitely drop
		{errInvalidBlock, false},       // A bad peer was detected, but not the sync origin
		{errInvalidBody, false},        // A bad peer was detected, but not the sync origin
		{errInvalidReceipt, false},     // A bad peer was detected, but not the sync origin
		{errCancelHashFetch, false},    // Synchronisation was canceled, origin may be innocent, don't drop
		{errCancelBlockFetch, false},   // Synchronisation was canceled, origin may be innocent, don't drop
		{errCancelHeaderFetch, false},  // Synchronisation was canceled, origin may be innocent, don't drop
		{errCancelBodyFetch, false},    // Synchronisation was canceled, origin may be innocent, don't drop
		{errCancelReceiptFetch, false}, // Synchronisation was canceled, origin may be innocent, don't drop
		{errCancelProcessing, false},   // Synchronisation was canceled, origin may be innocent, don't drop
1222 1223
	}
	// Run the tests and check disconnection status
1224
	tester := newTester()
1225 1226 1227
	for i, tt := range tests {
		// Register a new peer and ensure it's presence
		id := fmt.Sprintf("test %d", i)
1228
		if err := tester.newPeer(id, protocol, []common.Hash{genesis.Hash()}, nil, nil, nil); err != nil {
1229 1230 1231 1232 1233 1234 1235 1236
			t.Fatalf("test %d: failed to register new peer: %v", i, err)
		}
		if _, ok := tester.peerHashes[id]; !ok {
			t.Fatalf("test %d: registered peer not found", i)
		}
		// Simulate a synchronisation and check the required result
		tester.downloader.synchroniseMock = func(string, common.Hash) error { return tt.result }

1237
		tester.downloader.Synchronise(id, genesis.Hash(), big.NewInt(1000), FullSync)
1238 1239 1240 1241 1242
		if _, ok := tester.peerHashes[id]; !ok != tt.drop {
			t.Errorf("test %d: peer drop mismatch for %v: have %v, want %v", i, tt.result, !ok, tt.drop)
		}
	}
}
1243

1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254
// Tests that synchronisation progress (origin block number, current block number
// and highest block number) is tracked and updated correctly.
func TestSyncProgress61(t *testing.T)      { testSyncProgress(t, 61, FullSync) }
func TestSyncProgress62(t *testing.T)      { testSyncProgress(t, 62, FullSync) }
func TestSyncProgress63Full(t *testing.T)  { testSyncProgress(t, 63, FullSync) }
func TestSyncProgress63Fast(t *testing.T)  { testSyncProgress(t, 63, FastSync) }
func TestSyncProgress64Full(t *testing.T)  { testSyncProgress(t, 64, FullSync) }
func TestSyncProgress64Fast(t *testing.T)  { testSyncProgress(t, 64, FastSync) }
func TestSyncProgress64Light(t *testing.T) { testSyncProgress(t, 64, LightSync) }

func testSyncProgress(t *testing.T, protocol int, mode SyncMode) {
1255 1256
	// Create a small enough block chain to download
	targetBlocks := blockCacheLimit - 15
1257
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
1258

1259
	// Set a sync init hook to catch progress changes
1260 1261 1262
	starting := make(chan struct{})
	progress := make(chan struct{})

1263
	tester := newTester()
1264 1265 1266 1267
	tester.downloader.syncInitHook = func(origin, latest uint64) {
		starting <- struct{}{}
		<-progress
	}
1268 1269 1270
	// Retrieve the sync progress and ensure they are zero (pristine sync)
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current != 0 || latest != 0 {
		t.Fatalf("Pristine progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, 0, 0, 0)
1271
	}
1272
	// Synchronise half the blocks and check initial progress
1273
	tester.newPeer("peer-half", protocol, hashes[targetBlocks/2:], headers, blocks, receipts)
1274 1275 1276 1277 1278
	pending := new(sync.WaitGroup)
	pending.Add(1)

	go func() {
		defer pending.Done()
1279
		if err := tester.sync("peer-half", nil, mode); err != nil {
1280 1281 1282 1283
			t.Fatalf("failed to synchronise blocks: %v", err)
		}
	}()
	<-starting
1284 1285
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current != 0 || latest != uint64(targetBlocks/2+1) {
		t.Fatalf("Initial progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, 0, 0, targetBlocks/2+1)
1286 1287 1288 1289
	}
	progress <- struct{}{}
	pending.Wait()

1290
	// Synchronise all the blocks and check continuation progress
1291
	tester.newPeer("peer-full", protocol, hashes, headers, blocks, receipts)
1292 1293 1294 1295
	pending.Add(1)

	go func() {
		defer pending.Done()
1296
		if err := tester.sync("peer-full", nil, mode); err != nil {
1297 1298 1299 1300
			t.Fatalf("failed to synchronise blocks: %v", err)
		}
	}()
	<-starting
1301 1302
	if origin, current, latest := tester.downloader.Progress(); origin != uint64(targetBlocks/2+1) || current != uint64(targetBlocks/2+1) || latest != uint64(targetBlocks) {
		t.Fatalf("Completing progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, targetBlocks/2+1, targetBlocks/2+1, targetBlocks)
1303 1304 1305
	}
	progress <- struct{}{}
	pending.Wait()
1306 1307 1308 1309 1310

	// Check final progress after successful sync
	if origin, current, latest := tester.downloader.Progress(); origin != uint64(targetBlocks/2+1) || current != uint64(targetBlocks) || latest != uint64(targetBlocks) {
		t.Fatalf("Final progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, targetBlocks/2+1, targetBlocks, targetBlocks)
	}
1311 1312
}

1313
// Tests that synchronisation progress (origin block number and highest block
1314 1315
// number) is tracked and updated correctly in case of a fork (or manual head
// revertal).
1316 1317 1318 1319 1320 1321 1322 1323 1324
func TestForkedSyncProgress61(t *testing.T)      { testForkedSyncProgress(t, 61, FullSync) }
func TestForkedSyncProgress62(t *testing.T)      { testForkedSyncProgress(t, 62, FullSync) }
func TestForkedSyncProgress63Full(t *testing.T)  { testForkedSyncProgress(t, 63, FullSync) }
func TestForkedSyncProgress63Fast(t *testing.T)  { testForkedSyncProgress(t, 63, FastSync) }
func TestForkedSyncProgress64Full(t *testing.T)  { testForkedSyncProgress(t, 64, FullSync) }
func TestForkedSyncProgress64Fast(t *testing.T)  { testForkedSyncProgress(t, 64, FastSync) }
func TestForkedSyncProgress64Light(t *testing.T) { testForkedSyncProgress(t, 64, LightSync) }

func testForkedSyncProgress(t *testing.T, protocol int, mode SyncMode) {
1325 1326
	// Create a forked chain to simulate origin revertal
	common, fork := MaxHashFetch, 2*MaxHashFetch
1327
	hashesA, hashesB, headersA, headersB, blocksA, blocksB, receiptsA, receiptsB := makeChainFork(common+fork, fork, genesis, nil)
1328

1329
	// Set a sync init hook to catch progress changes
1330 1331 1332
	starting := make(chan struct{})
	progress := make(chan struct{})

1333
	tester := newTester()
1334 1335 1336 1337
	tester.downloader.syncInitHook = func(origin, latest uint64) {
		starting <- struct{}{}
		<-progress
	}
1338 1339 1340
	// Retrieve the sync progress and ensure they are zero (pristine sync)
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current != 0 || latest != 0 {
		t.Fatalf("Pristine progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, 0, 0, 0)
1341
	}
1342
	// Synchronise with one of the forks and check progress
1343
	tester.newPeer("fork A", protocol, hashesA, headersA, blocksA, receiptsA)
1344 1345 1346 1347 1348
	pending := new(sync.WaitGroup)
	pending.Add(1)

	go func() {
		defer pending.Done()
1349
		if err := tester.sync("fork A", nil, mode); err != nil {
1350 1351 1352 1353
			t.Fatalf("failed to synchronise blocks: %v", err)
		}
	}()
	<-starting
1354 1355
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current != 0 || latest != uint64(len(hashesA)-1) {
		t.Fatalf("Initial progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, 0, 0, len(hashesA)-1)
1356 1357 1358 1359 1360
	}
	progress <- struct{}{}
	pending.Wait()

	// Simulate a successful sync above the fork
1361
	tester.downloader.syncStatsChainOrigin = tester.downloader.syncStatsChainHeight
1362

1363
	// Synchronise with the second fork and check progress resets
1364
	tester.newPeer("fork B", protocol, hashesB, headersB, blocksB, receiptsB)
1365 1366 1367 1368
	pending.Add(1)

	go func() {
		defer pending.Done()
1369
		if err := tester.sync("fork B", nil, mode); err != nil {
1370 1371 1372 1373
			t.Fatalf("failed to synchronise blocks: %v", err)
		}
	}()
	<-starting
1374 1375
	if origin, current, latest := tester.downloader.Progress(); origin != uint64(common) || current != uint64(len(hashesA)-1) || latest != uint64(len(hashesB)-1) {
		t.Fatalf("Forking progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, common, len(hashesA)-1, len(hashesB)-1)
1376 1377 1378
	}
	progress <- struct{}{}
	pending.Wait()
1379 1380 1381 1382 1383

	// Check final progress after successful sync
	if origin, current, latest := tester.downloader.Progress(); origin != uint64(common) || current != uint64(len(hashesB)-1) || latest != uint64(len(hashesB)-1) {
		t.Fatalf("Final progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, common, len(hashesB)-1, len(hashesB)-1)
	}
1384 1385
}

1386
// Tests that if synchronisation is aborted due to some failure, then the progress
1387 1388
// origin is not updated in the next sync cycle, as it should be considered the
// continuation of the previous sync and not a new instance.
1389 1390 1391 1392 1393 1394 1395 1396 1397
func TestFailedSyncProgress61(t *testing.T)      { testFailedSyncProgress(t, 61, FullSync) }
func TestFailedSyncProgress62(t *testing.T)      { testFailedSyncProgress(t, 62, FullSync) }
func TestFailedSyncProgress63Full(t *testing.T)  { testFailedSyncProgress(t, 63, FullSync) }
func TestFailedSyncProgress63Fast(t *testing.T)  { testFailedSyncProgress(t, 63, FastSync) }
func TestFailedSyncProgress64Full(t *testing.T)  { testFailedSyncProgress(t, 64, FullSync) }
func TestFailedSyncProgress64Fast(t *testing.T)  { testFailedSyncProgress(t, 64, FastSync) }
func TestFailedSyncProgress64Light(t *testing.T) { testFailedSyncProgress(t, 64, LightSync) }

func testFailedSyncProgress(t *testing.T, protocol int, mode SyncMode) {
1398 1399
	// Create a small enough block chain to download
	targetBlocks := blockCacheLimit - 15
1400
	hashes, headers, blocks, receipts := makeChain(targetBlocks, 0, genesis, nil)
1401

1402
	// Set a sync init hook to catch progress changes
1403 1404 1405
	starting := make(chan struct{})
	progress := make(chan struct{})

1406
	tester := newTester()
1407 1408 1409 1410
	tester.downloader.syncInitHook = func(origin, latest uint64) {
		starting <- struct{}{}
		<-progress
	}
1411 1412 1413
	// Retrieve the sync progress and ensure they are zero (pristine sync)
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current != 0 || latest != 0 {
		t.Fatalf("Pristine progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, 0, 0, 0)
1414 1415
	}
	// Attempt a full sync with a faulty peer
1416
	tester.newPeer("faulty", protocol, hashes, headers, blocks, receipts)
1417
	missing := targetBlocks / 2
1418
	delete(tester.peerHeaders["faulty"], hashes[missing])
1419
	delete(tester.peerBlocks["faulty"], hashes[missing])
1420
	delete(tester.peerReceipts["faulty"], hashes[missing])
1421 1422 1423 1424 1425 1426

	pending := new(sync.WaitGroup)
	pending.Add(1)

	go func() {
		defer pending.Done()
1427
		if err := tester.sync("faulty", nil, mode); err == nil {
1428 1429 1430 1431
			t.Fatalf("succeeded faulty synchronisation")
		}
	}()
	<-starting
1432 1433
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current != 0 || latest != uint64(targetBlocks) {
		t.Fatalf("Initial progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, 0, 0, targetBlocks)
1434 1435 1436 1437
	}
	progress <- struct{}{}
	pending.Wait()

1438
	// Synchronise with a good peer and check that the progress origin remind the same after a failure
1439
	tester.newPeer("valid", protocol, hashes, headers, blocks, receipts)
1440 1441 1442 1443
	pending.Add(1)

	go func() {
		defer pending.Done()
1444
		if err := tester.sync("valid", nil, mode); err != nil {
1445 1446 1447 1448
			t.Fatalf("failed to synchronise blocks: %v", err)
		}
	}()
	<-starting
1449 1450
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current > uint64(targetBlocks/2) || latest != uint64(targetBlocks) {
		t.Fatalf("Completing progress mismatch: have %v/%v/%v, want %v/0-%v/%v", origin, current, latest, 0, targetBlocks/2, targetBlocks)
1451 1452 1453
	}
	progress <- struct{}{}
	pending.Wait()
1454 1455 1456 1457 1458

	// Check final progress after successful sync
	if origin, current, latest := tester.downloader.Progress(); origin > uint64(targetBlocks/2) || current != uint64(targetBlocks) || latest != uint64(targetBlocks) {
		t.Fatalf("Final progress mismatch: have %v/%v/%v, want 0-%v/%v/%v", origin, current, latest, targetBlocks/2, targetBlocks, targetBlocks)
	}
1459 1460 1461
}

// Tests that if an attacker fakes a chain height, after the attack is detected,
1462 1463 1464 1465 1466 1467 1468 1469 1470 1471
// the progress height is successfully reduced at the next sync invocation.
func TestFakedSyncProgress61(t *testing.T)      { testFakedSyncProgress(t, 61, FullSync) }
func TestFakedSyncProgress62(t *testing.T)      { testFakedSyncProgress(t, 62, FullSync) }
func TestFakedSyncProgress63Full(t *testing.T)  { testFakedSyncProgress(t, 63, FullSync) }
func TestFakedSyncProgress63Fast(t *testing.T)  { testFakedSyncProgress(t, 63, FastSync) }
func TestFakedSyncProgress64Full(t *testing.T)  { testFakedSyncProgress(t, 64, FullSync) }
func TestFakedSyncProgress64Fast(t *testing.T)  { testFakedSyncProgress(t, 64, FastSync) }
func TestFakedSyncProgress64Light(t *testing.T) { testFakedSyncProgress(t, 64, LightSync) }

func testFakedSyncProgress(t *testing.T, protocol int, mode SyncMode) {
1472 1473
	// Create a small block chain
	targetBlocks := blockCacheLimit - 15
1474
	hashes, headers, blocks, receipts := makeChain(targetBlocks+3, 0, genesis, nil)
1475

1476
	// Set a sync init hook to catch progress changes
1477 1478 1479
	starting := make(chan struct{})
	progress := make(chan struct{})

1480
	tester := newTester()
1481 1482 1483 1484
	tester.downloader.syncInitHook = func(origin, latest uint64) {
		starting <- struct{}{}
		<-progress
	}
1485 1486 1487
	// Retrieve the sync progress and ensure they are zero (pristine sync)
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current != 0 || latest != 0 {
		t.Fatalf("Pristine progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, 0, 0, 0)
1488 1489
	}
	//  Create and sync with an attacker that promises a higher chain than available
1490
	tester.newPeer("attack", protocol, hashes, headers, blocks, receipts)
1491
	for i := 1; i < 3; i++ {
1492
		delete(tester.peerHeaders["attack"], hashes[i])
1493
		delete(tester.peerBlocks["attack"], hashes[i])
1494
		delete(tester.peerReceipts["attack"], hashes[i])
1495 1496 1497 1498 1499 1500 1501
	}

	pending := new(sync.WaitGroup)
	pending.Add(1)

	go func() {
		defer pending.Done()
1502
		if err := tester.sync("attack", nil, mode); err == nil {
1503 1504 1505 1506
			t.Fatalf("succeeded attacker synchronisation")
		}
	}()
	<-starting
1507 1508
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current != 0 || latest != uint64(targetBlocks+3) {
		t.Fatalf("Initial progress mismatch: have %v/%v/%v, want %v/%v/%v", origin, current, latest, 0, 0, targetBlocks+3)
1509 1510 1511 1512
	}
	progress <- struct{}{}
	pending.Wait()

1513
	// Synchronise with a good peer and check that the progress height has been reduced to the true value
1514
	tester.newPeer("valid", protocol, hashes[3:], headers, blocks, receipts)
1515 1516 1517 1518
	pending.Add(1)

	go func() {
		defer pending.Done()
1519
		if err := tester.sync("valid", nil, mode); err != nil {
1520 1521 1522 1523
			t.Fatalf("failed to synchronise blocks: %v", err)
		}
	}()
	<-starting
1524 1525
	if origin, current, latest := tester.downloader.Progress(); origin != 0 || current > uint64(targetBlocks) || latest != uint64(targetBlocks) {
		t.Fatalf("Completing progress mismatch: have %v/%v/%v, want %v/0-%v/%v", origin, current, latest, 0, targetBlocks, targetBlocks)
1526 1527 1528
	}
	progress <- struct{}{}
	pending.Wait()
1529 1530 1531 1532 1533

	// Check final progress after successful sync
	if origin, current, latest := tester.downloader.Progress(); origin > uint64(targetBlocks) || current != uint64(targetBlocks) || latest != uint64(targetBlocks) {
		t.Fatalf("Final progress mismatch: have %v/%v/%v, want 0-%v/%v/%v", origin, current, latest, targetBlocks, targetBlocks, targetBlocks)
	}
1534
}
1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581

// This test reproduces an issue where unexpected deliveries would
// block indefinitely if they arrived at the right time.
func TestDeliverHeadersHang62(t *testing.T)      { testDeliverHeadersHang(t, 62, FullSync) }
func TestDeliverHeadersHang63Full(t *testing.T)  { testDeliverHeadersHang(t, 63, FullSync) }
func TestDeliverHeadersHang63Fast(t *testing.T)  { testDeliverHeadersHang(t, 63, FastSync) }
func TestDeliverHeadersHang64Full(t *testing.T)  { testDeliverHeadersHang(t, 64, FullSync) }
func TestDeliverHeadersHang64Fast(t *testing.T)  { testDeliverHeadersHang(t, 64, FastSync) }
func TestDeliverHeadersHang64Light(t *testing.T) { testDeliverHeadersHang(t, 64, LightSync) }

func testDeliverHeadersHang(t *testing.T, protocol int, mode SyncMode) {
	t.Parallel()
	hashes, headers, blocks, receipts := makeChain(5, 0, genesis, nil)
	fakeHeads := []*types.Header{{}, {}, {}, {}}
	for i := 0; i < 200; i++ {
		tester := newTester()
		tester.newPeer("peer", protocol, hashes, headers, blocks, receipts)
		// Whenever the downloader requests headers, flood it with
		// a lot of unrequested header deliveries.
		tester.downloader.peers.peers["peer"].getAbsHeaders = func(from uint64, count, skip int, reverse bool) error {
			deliveriesDone := make(chan struct{}, 500)
			for i := 0; i < cap(deliveriesDone); i++ {
				peer := fmt.Sprintf("fake-peer%d", i)
				go func() {
					tester.downloader.DeliverHeaders(peer, fakeHeads)
					deliveriesDone <- struct{}{}
				}()
			}
			// Deliver the actual requested headers.
			impl := tester.peerGetAbsHeadersFn("peer", 0)
			go impl(from, count, skip, reverse)
			// None of the extra deliveries should block.
			timeout := time.After(5 * time.Second)
			for i := 0; i < cap(deliveriesDone); i++ {
				select {
				case <-deliveriesDone:
				case <-timeout:
					panic("blocked")
				}
			}
			return nil
		}
		if err := tester.sync("peer", nil, mode); err != nil {
			t.Errorf("sync failed: %v", err)
		}
	}
}