5a652190d9
* Upgrade go-ethereum to v1.8 * Add Node Info for parity nodes * Upgrade start_private_blockchain to use v1.8
581 lines
22 KiB
Go
581 lines
22 KiB
Go
// Copyright 2016 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package les
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import (
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"encoding/binary"
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"math/big"
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"math/rand"
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"testing"
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"time"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/consensus/ethash"
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"github.com/ethereum/go-ethereum/core"
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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/eth/downloader"
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"github.com/ethereum/go-ethereum/ethdb"
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"github.com/ethereum/go-ethereum/light"
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"github.com/ethereum/go-ethereum/p2p"
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"github.com/ethereum/go-ethereum/params"
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"github.com/ethereum/go-ethereum/rlp"
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"github.com/ethereum/go-ethereum/trie"
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)
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func expectResponse(r p2p.MsgReader, msgcode, reqID, bv uint64, data interface{}) error {
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type resp struct {
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ReqID, BV uint64
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Data interface{}
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}
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return p2p.ExpectMsg(r, msgcode, resp{reqID, bv, data})
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}
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// Tests that block headers can be retrieved from a remote chain based on user queries.
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func TestGetBlockHeadersLes1(t *testing.T) { testGetBlockHeaders(t, 1) }
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func TestGetBlockHeadersLes2(t *testing.T) { testGetBlockHeaders(t, 2) }
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func testGetBlockHeaders(t *testing.T, protocol int) {
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db, _ := ethdb.NewMemDatabase()
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pm := newTestProtocolManagerMust(t, false, downloader.MaxHashFetch+15, nil, nil, nil, db)
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bc := pm.blockchain.(*core.BlockChain)
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peer, _ := newTestPeer(t, "peer", protocol, pm, true)
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defer peer.close()
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// Create a "random" unknown hash for testing
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var unknown common.Hash
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for i := range unknown {
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unknown[i] = byte(i)
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}
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// Create a batch of tests for various scenarios
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limit := uint64(MaxHeaderFetch)
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tests := []struct {
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query *getBlockHeadersData // The query to execute for header retrieval
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expect []common.Hash // The hashes of the block whose headers are expected
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}{
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// A single random block should be retrievable by hash and number too
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{
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&getBlockHeadersData{Origin: hashOrNumber{Hash: bc.GetBlockByNumber(limit / 2).Hash()}, Amount: 1},
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[]common.Hash{bc.GetBlockByNumber(limit / 2).Hash()},
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}, {
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&getBlockHeadersData{Origin: hashOrNumber{Number: limit / 2}, Amount: 1},
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[]common.Hash{bc.GetBlockByNumber(limit / 2).Hash()},
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},
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// Multiple headers should be retrievable in both directions
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{
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&getBlockHeadersData{Origin: hashOrNumber{Number: limit / 2}, Amount: 3},
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[]common.Hash{
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bc.GetBlockByNumber(limit / 2).Hash(),
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bc.GetBlockByNumber(limit/2 + 1).Hash(),
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bc.GetBlockByNumber(limit/2 + 2).Hash(),
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},
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}, {
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&getBlockHeadersData{Origin: hashOrNumber{Number: limit / 2}, Amount: 3, Reverse: true},
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[]common.Hash{
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bc.GetBlockByNumber(limit / 2).Hash(),
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bc.GetBlockByNumber(limit/2 - 1).Hash(),
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bc.GetBlockByNumber(limit/2 - 2).Hash(),
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},
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},
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// Multiple headers with skip lists should be retrievable
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{
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&getBlockHeadersData{Origin: hashOrNumber{Number: limit / 2}, Skip: 3, Amount: 3},
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[]common.Hash{
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bc.GetBlockByNumber(limit / 2).Hash(),
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bc.GetBlockByNumber(limit/2 + 4).Hash(),
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bc.GetBlockByNumber(limit/2 + 8).Hash(),
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},
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}, {
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&getBlockHeadersData{Origin: hashOrNumber{Number: limit / 2}, Skip: 3, Amount: 3, Reverse: true},
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[]common.Hash{
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bc.GetBlockByNumber(limit / 2).Hash(),
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bc.GetBlockByNumber(limit/2 - 4).Hash(),
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bc.GetBlockByNumber(limit/2 - 8).Hash(),
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},
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},
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// The chain endpoints should be retrievable
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{
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&getBlockHeadersData{Origin: hashOrNumber{Number: 0}, Amount: 1},
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[]common.Hash{bc.GetBlockByNumber(0).Hash()},
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}, {
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&getBlockHeadersData{Origin: hashOrNumber{Number: bc.CurrentBlock().NumberU64()}, Amount: 1},
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[]common.Hash{bc.CurrentBlock().Hash()},
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},
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// Ensure protocol limits are honored
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/*{
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&getBlockHeadersData{Origin: hashOrNumber{Number: bc.CurrentBlock().NumberU64() - 1}, Amount: limit + 10, Reverse: true},
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bc.GetBlockHashesFromHash(bc.CurrentBlock().Hash(), limit),
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},*/
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// Check that requesting more than available is handled gracefully
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{
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&getBlockHeadersData{Origin: hashOrNumber{Number: bc.CurrentBlock().NumberU64() - 4}, Skip: 3, Amount: 3},
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[]common.Hash{
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bc.GetBlockByNumber(bc.CurrentBlock().NumberU64() - 4).Hash(),
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bc.GetBlockByNumber(bc.CurrentBlock().NumberU64()).Hash(),
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},
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}, {
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&getBlockHeadersData{Origin: hashOrNumber{Number: 4}, Skip: 3, Amount: 3, Reverse: true},
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[]common.Hash{
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bc.GetBlockByNumber(4).Hash(),
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bc.GetBlockByNumber(0).Hash(),
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},
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},
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// Check that requesting more than available is handled gracefully, even if mid skip
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{
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&getBlockHeadersData{Origin: hashOrNumber{Number: bc.CurrentBlock().NumberU64() - 4}, Skip: 2, Amount: 3},
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[]common.Hash{
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bc.GetBlockByNumber(bc.CurrentBlock().NumberU64() - 4).Hash(),
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bc.GetBlockByNumber(bc.CurrentBlock().NumberU64() - 1).Hash(),
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},
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}, {
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&getBlockHeadersData{Origin: hashOrNumber{Number: 4}, Skip: 2, Amount: 3, Reverse: true},
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[]common.Hash{
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bc.GetBlockByNumber(4).Hash(),
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bc.GetBlockByNumber(1).Hash(),
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},
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},
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// Check that non existing headers aren't returned
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{
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&getBlockHeadersData{Origin: hashOrNumber{Hash: unknown}, Amount: 1},
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[]common.Hash{},
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}, {
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&getBlockHeadersData{Origin: hashOrNumber{Number: bc.CurrentBlock().NumberU64() + 1}, Amount: 1},
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[]common.Hash{},
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},
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}
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// Run each of the tests and verify the results against the chain
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var reqID uint64
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for i, tt := range tests {
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// Collect the headers to expect in the response
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headers := []*types.Header{}
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for _, hash := range tt.expect {
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headers = append(headers, bc.GetHeaderByHash(hash))
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}
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// Send the hash request and verify the response
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reqID++
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cost := peer.GetRequestCost(GetBlockHeadersMsg, int(tt.query.Amount))
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sendRequest(peer.app, GetBlockHeadersMsg, reqID, cost, tt.query)
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if err := expectResponse(peer.app, BlockHeadersMsg, reqID, testBufLimit, headers); err != nil {
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t.Errorf("test %d: headers mismatch: %v", i, err)
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}
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}
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}
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// Tests that block contents can be retrieved from a remote chain based on their hashes.
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func TestGetBlockBodiesLes1(t *testing.T) { testGetBlockBodies(t, 1) }
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func TestGetBlockBodiesLes2(t *testing.T) { testGetBlockBodies(t, 2) }
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func testGetBlockBodies(t *testing.T, protocol int) {
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db, _ := ethdb.NewMemDatabase()
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pm := newTestProtocolManagerMust(t, false, downloader.MaxBlockFetch+15, nil, nil, nil, db)
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bc := pm.blockchain.(*core.BlockChain)
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peer, _ := newTestPeer(t, "peer", protocol, pm, true)
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defer peer.close()
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// Create a batch of tests for various scenarios
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limit := MaxBodyFetch
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tests := []struct {
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random int // Number of blocks to fetch randomly from the chain
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explicit []common.Hash // Explicitly requested blocks
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available []bool // Availability of explicitly requested blocks
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expected int // Total number of existing blocks to expect
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}{
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{1, nil, nil, 1}, // A single random block should be retrievable
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{10, nil, nil, 10}, // Multiple random blocks should be retrievable
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{limit, nil, nil, limit}, // The maximum possible blocks should be retrievable
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//{limit + 1, nil, nil, limit}, // No more than the possible block count should be returned
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{0, []common.Hash{bc.Genesis().Hash()}, []bool{true}, 1}, // The genesis block should be retrievable
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{0, []common.Hash{bc.CurrentBlock().Hash()}, []bool{true}, 1}, // The chains head block should be retrievable
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{0, []common.Hash{{}}, []bool{false}, 0}, // A non existent block should not be returned
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// Existing and non-existing blocks interleaved should not cause problems
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{0, []common.Hash{
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{},
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bc.GetBlockByNumber(1).Hash(),
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{},
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bc.GetBlockByNumber(10).Hash(),
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{},
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bc.GetBlockByNumber(100).Hash(),
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{},
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}, []bool{false, true, false, true, false, true, false}, 3},
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}
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// Run each of the tests and verify the results against the chain
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var reqID uint64
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for i, tt := range tests {
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// Collect the hashes to request, and the response to expect
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hashes, seen := []common.Hash{}, make(map[int64]bool)
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bodies := []*types.Body{}
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for j := 0; j < tt.random; j++ {
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for {
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num := rand.Int63n(int64(bc.CurrentBlock().NumberU64()))
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if !seen[num] {
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seen[num] = true
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block := bc.GetBlockByNumber(uint64(num))
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hashes = append(hashes, block.Hash())
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if len(bodies) < tt.expected {
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bodies = append(bodies, &types.Body{Transactions: block.Transactions(), Uncles: block.Uncles()})
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}
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break
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}
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}
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}
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for j, hash := range tt.explicit {
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hashes = append(hashes, hash)
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if tt.available[j] && len(bodies) < tt.expected {
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block := bc.GetBlockByHash(hash)
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bodies = append(bodies, &types.Body{Transactions: block.Transactions(), Uncles: block.Uncles()})
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}
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}
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reqID++
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// Send the hash request and verify the response
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cost := peer.GetRequestCost(GetBlockBodiesMsg, len(hashes))
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sendRequest(peer.app, GetBlockBodiesMsg, reqID, cost, hashes)
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if err := expectResponse(peer.app, BlockBodiesMsg, reqID, testBufLimit, bodies); err != nil {
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t.Errorf("test %d: bodies mismatch: %v", i, err)
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}
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}
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}
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// Tests that the contract codes can be retrieved based on account addresses.
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func TestGetCodeLes1(t *testing.T) { testGetCode(t, 1) }
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func TestGetCodeLes2(t *testing.T) { testGetCode(t, 2) }
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func testGetCode(t *testing.T, protocol int) {
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// Assemble the test environment
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db, _ := ethdb.NewMemDatabase()
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pm := newTestProtocolManagerMust(t, false, 4, testChainGen, nil, nil, db)
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bc := pm.blockchain.(*core.BlockChain)
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peer, _ := newTestPeer(t, "peer", protocol, pm, true)
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defer peer.close()
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var codereqs []*CodeReq
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var codes [][]byte
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for i := uint64(0); i <= bc.CurrentBlock().NumberU64(); i++ {
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header := bc.GetHeaderByNumber(i)
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req := &CodeReq{
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BHash: header.Hash(),
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AccKey: crypto.Keccak256(testContractAddr[:]),
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}
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codereqs = append(codereqs, req)
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if i >= testContractDeployed {
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codes = append(codes, testContractCodeDeployed)
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}
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}
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cost := peer.GetRequestCost(GetCodeMsg, len(codereqs))
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sendRequest(peer.app, GetCodeMsg, 42, cost, codereqs)
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if err := expectResponse(peer.app, CodeMsg, 42, testBufLimit, codes); err != nil {
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t.Errorf("codes mismatch: %v", err)
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}
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}
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// Tests that the transaction receipts can be retrieved based on hashes.
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func TestGetReceiptLes1(t *testing.T) { testGetReceipt(t, 1) }
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func TestGetReceiptLes2(t *testing.T) { testGetReceipt(t, 2) }
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func testGetReceipt(t *testing.T, protocol int) {
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// Assemble the test environment
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db, _ := ethdb.NewMemDatabase()
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pm := newTestProtocolManagerMust(t, false, 4, testChainGen, nil, nil, db)
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bc := pm.blockchain.(*core.BlockChain)
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peer, _ := newTestPeer(t, "peer", protocol, pm, true)
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defer peer.close()
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// Collect the hashes to request, and the response to expect
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hashes, receipts := []common.Hash{}, []types.Receipts{}
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for i := uint64(0); i <= bc.CurrentBlock().NumberU64(); i++ {
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block := bc.GetBlockByNumber(i)
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hashes = append(hashes, block.Hash())
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receipts = append(receipts, core.GetBlockReceipts(db, block.Hash(), block.NumberU64()))
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}
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// Send the hash request and verify the response
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cost := peer.GetRequestCost(GetReceiptsMsg, len(hashes))
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sendRequest(peer.app, GetReceiptsMsg, 42, cost, hashes)
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if err := expectResponse(peer.app, ReceiptsMsg, 42, testBufLimit, receipts); err != nil {
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t.Errorf("receipts mismatch: %v", err)
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}
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}
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// Tests that trie merkle proofs can be retrieved
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func TestGetProofsLes1(t *testing.T) { testGetProofs(t, 1) }
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func TestGetProofsLes2(t *testing.T) { testGetProofs(t, 2) }
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func testGetProofs(t *testing.T, protocol int) {
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// Assemble the test environment
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db, _ := ethdb.NewMemDatabase()
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pm := newTestProtocolManagerMust(t, false, 4, testChainGen, nil, nil, db)
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bc := pm.blockchain.(*core.BlockChain)
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peer, _ := newTestPeer(t, "peer", protocol, pm, true)
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defer peer.close()
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var (
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proofreqs []ProofReq
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proofsV1 [][]rlp.RawValue
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)
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proofsV2 := light.NewNodeSet()
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accounts := []common.Address{testBankAddress, acc1Addr, acc2Addr, {}}
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for i := uint64(0); i <= bc.CurrentBlock().NumberU64(); i++ {
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header := bc.GetHeaderByNumber(i)
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root := header.Root
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trie, _ := trie.New(root, trie.NewDatabase(db))
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for _, acc := range accounts {
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req := ProofReq{
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BHash: header.Hash(),
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Key: crypto.Keccak256(acc[:]),
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}
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proofreqs = append(proofreqs, req)
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switch protocol {
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case 1:
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var proof light.NodeList
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trie.Prove(crypto.Keccak256(acc[:]), 0, &proof)
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proofsV1 = append(proofsV1, proof)
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case 2:
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trie.Prove(crypto.Keccak256(acc[:]), 0, proofsV2)
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}
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}
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}
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// Send the proof request and verify the response
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switch protocol {
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case 1:
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cost := peer.GetRequestCost(GetProofsV1Msg, len(proofreqs))
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sendRequest(peer.app, GetProofsV1Msg, 42, cost, proofreqs)
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if err := expectResponse(peer.app, ProofsV1Msg, 42, testBufLimit, proofsV1); err != nil {
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t.Errorf("proofs mismatch: %v", err)
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}
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case 2:
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cost := peer.GetRequestCost(GetProofsV2Msg, len(proofreqs))
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sendRequest(peer.app, GetProofsV2Msg, 42, cost, proofreqs)
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if err := expectResponse(peer.app, ProofsV2Msg, 42, testBufLimit, proofsV2.NodeList()); err != nil {
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t.Errorf("proofs mismatch: %v", err)
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}
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}
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}
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// Tests that CHT proofs can be correctly retrieved.
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func TestGetCHTProofsLes1(t *testing.T) { testGetCHTProofs(t, 1) }
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func TestGetCHTProofsLes2(t *testing.T) { testGetCHTProofs(t, 2) }
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func testGetCHTProofs(t *testing.T, protocol int) {
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// Figure out the client's CHT frequency
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frequency := uint64(light.CHTFrequencyClient)
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if protocol == 1 {
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frequency = uint64(light.CHTFrequencyServer)
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}
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// Assemble the test environment
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db, _ := ethdb.NewMemDatabase()
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pm := newTestProtocolManagerMust(t, false, int(frequency)+light.HelperTrieProcessConfirmations, testChainGen, nil, nil, db)
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bc := pm.blockchain.(*core.BlockChain)
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peer, _ := newTestPeer(t, "peer", protocol, pm, true)
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defer peer.close()
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// Wait a while for the CHT indexer to process the new headers
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time.Sleep(100 * time.Millisecond * time.Duration(frequency/light.CHTFrequencyServer)) // Chain indexer throttling
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time.Sleep(250 * time.Millisecond) // CI tester slack
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// Assemble the proofs from the different protocols
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header := bc.GetHeaderByNumber(frequency)
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rlp, _ := rlp.EncodeToBytes(header)
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key := make([]byte, 8)
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binary.BigEndian.PutUint64(key, frequency)
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proofsV1 := []ChtResp{{
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Header: header,
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}}
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proofsV2 := HelperTrieResps{
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AuxData: [][]byte{rlp},
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}
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switch protocol {
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case 1:
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root := light.GetChtRoot(db, 0, bc.GetHeaderByNumber(frequency-1).Hash())
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trie, _ := trie.New(root, trie.NewDatabase(ethdb.NewTable(db, light.ChtTablePrefix)))
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var proof light.NodeList
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trie.Prove(key, 0, &proof)
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proofsV1[0].Proof = proof
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case 2:
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root := light.GetChtV2Root(db, 0, bc.GetHeaderByNumber(frequency-1).Hash())
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trie, _ := trie.New(root, trie.NewDatabase(ethdb.NewTable(db, light.ChtTablePrefix)))
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trie.Prove(key, 0, &proofsV2.Proofs)
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}
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// Assemble the requests for the different protocols
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requestsV1 := []ChtReq{{
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ChtNum: 1,
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BlockNum: frequency,
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}}
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requestsV2 := []HelperTrieReq{{
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Type: htCanonical,
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TrieIdx: 0,
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Key: key,
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AuxReq: auxHeader,
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}}
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// Send the proof request and verify the response
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switch protocol {
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case 1:
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cost := peer.GetRequestCost(GetHeaderProofsMsg, len(requestsV1))
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sendRequest(peer.app, GetHeaderProofsMsg, 42, cost, requestsV1)
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if err := expectResponse(peer.app, HeaderProofsMsg, 42, testBufLimit, proofsV1); err != nil {
|
|
t.Errorf("proofs mismatch: %v", err)
|
|
}
|
|
case 2:
|
|
cost := peer.GetRequestCost(GetHelperTrieProofsMsg, len(requestsV2))
|
|
sendRequest(peer.app, GetHelperTrieProofsMsg, 42, cost, requestsV2)
|
|
if err := expectResponse(peer.app, HelperTrieProofsMsg, 42, testBufLimit, proofsV2); err != nil {
|
|
t.Errorf("proofs mismatch: %v", err)
|
|
}
|
|
}
|
|
}
|
|
|
|
// Tests that bloombits proofs can be correctly retrieved.
|
|
func TestGetBloombitsProofs(t *testing.T) {
|
|
// Assemble the test environment
|
|
db, _ := ethdb.NewMemDatabase()
|
|
pm := newTestProtocolManagerMust(t, false, light.BloomTrieFrequency+256, testChainGen, nil, nil, db)
|
|
bc := pm.blockchain.(*core.BlockChain)
|
|
peer, _ := newTestPeer(t, "peer", 2, pm, true)
|
|
defer peer.close()
|
|
|
|
// Wait a while for the bloombits indexer to process the new headers
|
|
time.Sleep(100 * time.Millisecond * time.Duration(light.BloomTrieFrequency/4096)) // Chain indexer throttling
|
|
time.Sleep(250 * time.Millisecond) // CI tester slack
|
|
|
|
// Request and verify each bit of the bloom bits proofs
|
|
for bit := 0; bit < 2048; bit++ {
|
|
// Assemble therequest and proofs for the bloombits
|
|
key := make([]byte, 10)
|
|
|
|
binary.BigEndian.PutUint16(key[:2], uint16(bit))
|
|
binary.BigEndian.PutUint64(key[2:], uint64(light.BloomTrieFrequency))
|
|
|
|
requests := []HelperTrieReq{{
|
|
Type: htBloomBits,
|
|
TrieIdx: 0,
|
|
Key: key,
|
|
}}
|
|
var proofs HelperTrieResps
|
|
|
|
root := light.GetBloomTrieRoot(db, 0, bc.GetHeaderByNumber(light.BloomTrieFrequency-1).Hash())
|
|
trie, _ := trie.New(root, trie.NewDatabase(ethdb.NewTable(db, light.BloomTrieTablePrefix)))
|
|
trie.Prove(key, 0, &proofs.Proofs)
|
|
|
|
// Send the proof request and verify the response
|
|
cost := peer.GetRequestCost(GetHelperTrieProofsMsg, len(requests))
|
|
sendRequest(peer.app, GetHelperTrieProofsMsg, 42, cost, requests)
|
|
if err := expectResponse(peer.app, HelperTrieProofsMsg, 42, testBufLimit, proofs); err != nil {
|
|
t.Errorf("bit %d: proofs mismatch: %v", bit, err)
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestTransactionStatusLes2(t *testing.T) {
|
|
db, _ := ethdb.NewMemDatabase()
|
|
pm := newTestProtocolManagerMust(t, false, 0, nil, nil, nil, db)
|
|
chain := pm.blockchain.(*core.BlockChain)
|
|
config := core.DefaultTxPoolConfig
|
|
config.Journal = ""
|
|
txpool := core.NewTxPool(config, params.TestChainConfig, chain)
|
|
pm.txpool = txpool
|
|
peer, _ := newTestPeer(t, "peer", 2, pm, true)
|
|
defer peer.close()
|
|
|
|
var reqID uint64
|
|
|
|
test := func(tx *types.Transaction, send bool, expStatus txStatus) {
|
|
reqID++
|
|
if send {
|
|
cost := peer.GetRequestCost(SendTxV2Msg, 1)
|
|
sendRequest(peer.app, SendTxV2Msg, reqID, cost, types.Transactions{tx})
|
|
} else {
|
|
cost := peer.GetRequestCost(GetTxStatusMsg, 1)
|
|
sendRequest(peer.app, GetTxStatusMsg, reqID, cost, []common.Hash{tx.Hash()})
|
|
}
|
|
if err := expectResponse(peer.app, TxStatusMsg, reqID, testBufLimit, []txStatus{expStatus}); err != nil {
|
|
t.Errorf("transaction status mismatch")
|
|
}
|
|
}
|
|
|
|
signer := types.HomesteadSigner{}
|
|
|
|
// test error status by sending an underpriced transaction
|
|
tx0, _ := types.SignTx(types.NewTransaction(0, acc1Addr, big.NewInt(10000), params.TxGas, nil, nil), signer, testBankKey)
|
|
test(tx0, true, txStatus{Status: core.TxStatusUnknown, Error: core.ErrUnderpriced.Error()})
|
|
|
|
tx1, _ := types.SignTx(types.NewTransaction(0, acc1Addr, big.NewInt(10000), params.TxGas, big.NewInt(100000000000), nil), signer, testBankKey)
|
|
test(tx1, false, txStatus{Status: core.TxStatusUnknown}) // query before sending, should be unknown
|
|
test(tx1, true, txStatus{Status: core.TxStatusPending}) // send valid processable tx, should return pending
|
|
test(tx1, true, txStatus{Status: core.TxStatusPending}) // adding it again should not return an error
|
|
|
|
tx2, _ := types.SignTx(types.NewTransaction(1, acc1Addr, big.NewInt(10000), params.TxGas, big.NewInt(100000000000), nil), signer, testBankKey)
|
|
tx3, _ := types.SignTx(types.NewTransaction(2, acc1Addr, big.NewInt(10000), params.TxGas, big.NewInt(100000000000), nil), signer, testBankKey)
|
|
// send transactions in the wrong order, tx3 should be queued
|
|
test(tx3, true, txStatus{Status: core.TxStatusQueued})
|
|
test(tx2, true, txStatus{Status: core.TxStatusPending})
|
|
// query again, now tx3 should be pending too
|
|
test(tx3, false, txStatus{Status: core.TxStatusPending})
|
|
|
|
// generate and add a block with tx1 and tx2 included
|
|
gchain, _ := core.GenerateChain(params.TestChainConfig, chain.GetBlockByNumber(0), ethash.NewFaker(), db, 1, func(i int, block *core.BlockGen) {
|
|
block.AddTx(tx1)
|
|
block.AddTx(tx2)
|
|
})
|
|
if _, err := chain.InsertChain(gchain); err != nil {
|
|
panic(err)
|
|
}
|
|
// wait until TxPool processes the inserted block
|
|
for i := 0; i < 10; i++ {
|
|
if pending, _ := txpool.Stats(); pending == 1 {
|
|
break
|
|
}
|
|
time.Sleep(100 * time.Millisecond)
|
|
}
|
|
if pending, _ := txpool.Stats(); pending != 1 {
|
|
t.Fatalf("pending count mismatch: have %d, want 1", pending)
|
|
}
|
|
|
|
// check if their status is included now
|
|
block1hash := core.GetCanonicalHash(db, 1)
|
|
test(tx1, false, txStatus{Status: core.TxStatusIncluded, Lookup: &core.TxLookupEntry{BlockHash: block1hash, BlockIndex: 1, Index: 0}})
|
|
test(tx2, false, txStatus{Status: core.TxStatusIncluded, Lookup: &core.TxLookupEntry{BlockHash: block1hash, BlockIndex: 1, Index: 1}})
|
|
|
|
// create a reorg that rolls them back
|
|
gchain, _ = core.GenerateChain(params.TestChainConfig, chain.GetBlockByNumber(0), ethash.NewFaker(), db, 2, func(i int, block *core.BlockGen) {})
|
|
if _, err := chain.InsertChain(gchain); err != nil {
|
|
panic(err)
|
|
}
|
|
// wait until TxPool processes the reorg
|
|
for i := 0; i < 10; i++ {
|
|
if pending, _ := txpool.Stats(); pending == 3 {
|
|
break
|
|
}
|
|
time.Sleep(100 * time.Millisecond)
|
|
}
|
|
if pending, _ := txpool.Stats(); pending != 3 {
|
|
t.Fatalf("pending count mismatch: have %d, want 3", pending)
|
|
}
|
|
// check if their status is pending again
|
|
test(tx1, false, txStatus{Status: core.TxStatusPending})
|
|
test(tx2, false, txStatus{Status: core.TxStatusPending})
|
|
}
|