mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
203 lines
8.2 KiB
C++
203 lines
8.2 KiB
C++
/*
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This file is part of cpp-ethereum.
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cpp-ethereum is free software: you can redistribute it and/or modify
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it under the terms of the GNU 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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cpp-ethereum 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 General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with cpp-ethereum. If not, see <http://www.gnu.org/licenses/>.
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*/
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/** @file ClientBase.cpp
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* @author Marek Kotewicz <marek@ethdev.com>
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* @date 2015
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*/
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#include <boost/test/unit_test.hpp>
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#include <libdevcore/CommonJS.h>
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#include "TestUtils.h"
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using namespace std;
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using namespace dev;
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using namespace dev::eth;
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using namespace dev::test;
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BOOST_FIXTURE_TEST_SUITE(ClientBase, ParallelClientBaseFixture)
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BOOST_AUTO_TEST_CASE(blocks)
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{
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enumerateClients([](Json::Value const& _json, dev::eth::ClientBase& _client) -> void
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{
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for (string const& name: _json["postState"].getMemberNames())
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{
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Json::Value o = _json["postState"][name];
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Address address(name);
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// balanceAt
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u256 expectedBalance = u256(o["balance"].asString());
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u256 balance = _client.balanceAt(address);
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ETH_CHECK_EQUAL(expectedBalance, balance);
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// countAt
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u256 expectedCount = u256(o["nonce"].asString());
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u256 count = _client.countAt(address);
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ETH_CHECK_EQUAL(expectedCount, count);
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// stateAt
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for (string const& pos: o["storage"].getMemberNames())
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{
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u256 expectedState = u256(o["storage"][pos].asString());
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u256 state = _client.stateAt(address, u256(pos));
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ETH_CHECK_EQUAL(expectedState, state);
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}
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// codeAt
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bytes expectedCode = fromHex(o["code"].asString());
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bytes code = _client.codeAt(address);
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ETH_CHECK_EQUAL_COLLECTIONS(expectedCode.begin(), expectedCode.end(),
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code.begin(), code.end());
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}
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// number
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unsigned expectedNumber = _json["blocks"].size();
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unsigned number = _client.number();
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ETH_CHECK_EQUAL(expectedNumber, number);
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u256 totalDifficulty = u256(_json["genesisBlockHeader"]["difficulty"].asString());
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for (Json::Value const& block: _json["blocks"])
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{
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Json::Value blockHeader = block["blockHeader"];
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Json::Value uncles = block["uncleHeaders"];
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Json::Value transactions = block["transactions"];
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h256 blockHash = h256(fromHex(blockHeader["hash"].asString()));
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// just update the difficulty
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for (Json::Value const& uncle: uncles)
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{
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totalDifficulty += u256(uncle["difficulty"].asString());
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}
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// hashFromNumber
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h256 expectedHashFromNumber = h256(fromHex(blockHeader["hash"].asString()));
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h256 hashFromNumber = _client.hashFromNumber(jsToInt(blockHeader["number"].asString()));
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ETH_CHECK_EQUAL(expectedHashFromNumber, hashFromNumber);
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// blockInfo
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auto compareBlockInfos = [](Json::Value const& _b, BlockInfo _blockInfo) -> void
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{
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LogBloom expectedBlockInfoBloom = LogBloom(fromHex(_b["bloom"].asString()));
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Address expectedBlockInfoCoinbase = Address(fromHex(_b["coinbase"].asString()));
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u256 expectedBlockInfoDifficulty = u256(_b["difficulty"].asString());
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bytes expectedBlockInfoExtraData = fromHex(_b["extraData"].asString());
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u256 expectedBlockInfoGasLimit = u256(_b["gasLimit"].asString());
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u256 expectedBlockInfoGasUsed = u256(_b["gasUsed"].asString());
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h256 expectedBlockInfoHash = h256(fromHex(_b["hash"].asString()));
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h256 expectedBlockInfoMixHash = h256(fromHex(_b["mixHash"].asString()));
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Nonce expectedBlockInfoNonce = Nonce(fromHex(_b["nonce"].asString()));
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u256 expectedBlockInfoNumber = u256(_b["number"].asString());
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h256 expectedBlockInfoParentHash = h256(fromHex(_b["parentHash"].asString()));
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h256 expectedBlockInfoReceiptsRoot = h256(fromHex(_b["receiptTrie"].asString()));
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u256 expectedBlockInfoTimestamp = u256(_b["timestamp"].asString());
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h256 expectedBlockInfoTransactionsRoot = h256(fromHex(_b["transactionsTrie"].asString()));
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h256 expectedBlockInfoUncldeHash = h256(fromHex(_b["uncleHash"].asString()));
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ETH_CHECK_EQUAL(expectedBlockInfoBloom, _blockInfo.logBloom);
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ETH_CHECK_EQUAL(expectedBlockInfoCoinbase, _blockInfo.coinbaseAddress);
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ETH_CHECK_EQUAL(expectedBlockInfoDifficulty, _blockInfo.difficulty);
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ETH_CHECK_EQUAL_COLLECTIONS(expectedBlockInfoExtraData.begin(), expectedBlockInfoExtraData.end(),
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_blockInfo.extraData.begin(), _blockInfo.extraData.end());
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ETH_CHECK_EQUAL(expectedBlockInfoGasLimit, _blockInfo.gasLimit);
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ETH_CHECK_EQUAL(expectedBlockInfoGasUsed, _blockInfo.gasUsed);
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ETH_CHECK_EQUAL(expectedBlockInfoHash, _blockInfo.hash);
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ETH_CHECK_EQUAL(expectedBlockInfoMixHash, _blockInfo.mixHash);
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ETH_CHECK_EQUAL(expectedBlockInfoNonce, _blockInfo.nonce);
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ETH_CHECK_EQUAL(expectedBlockInfoNumber, _blockInfo.number);
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ETH_CHECK_EQUAL(expectedBlockInfoParentHash, _blockInfo.parentHash);
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ETH_CHECK_EQUAL(expectedBlockInfoReceiptsRoot, _blockInfo.receiptsRoot);
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ETH_CHECK_EQUAL(expectedBlockInfoTimestamp, _blockInfo.timestamp);
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ETH_CHECK_EQUAL(expectedBlockInfoTransactionsRoot, _blockInfo.transactionsRoot);
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ETH_CHECK_EQUAL(expectedBlockInfoUncldeHash, _blockInfo.sha3Uncles);
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};
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BlockInfo blockInfo = _client.blockInfo(blockHash);
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compareBlockInfos(blockHeader, blockInfo);
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// blockDetails
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unsigned expectedBlockDetailsNumber = jsToInt(blockHeader["number"].asString());
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totalDifficulty += u256(blockHeader["difficulty"].asString());
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BlockDetails blockDetails = _client.blockDetails(blockHash);
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ETH_CHECK_EQUAL(expectedBlockDetailsNumber, blockDetails.number);
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ETH_CHECK_EQUAL(totalDifficulty, blockDetails.totalDifficulty);
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auto compareTransactions = [](Json::Value const& _t, Transaction _transaction) -> void
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{
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bytes expectedTransactionData = fromHex(_t["data"].asString());
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u256 expectedTransactionGasLimit = u256(_t["gasLimit"].asString());
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u256 expectedTransactionGasPrice = u256(_t["gasPrice"].asString());
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u256 expectedTransactionNonce = u256(_t["nonce"].asString());
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u256 expectedTransactionSignatureR = h256(fromHex(_t["r"].asString()));
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u256 expectedTransactionSignatureS = h256(fromHex(_t["s"].asString()));
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// unsigned expectedTransactionSignatureV = jsToInt(t["v"].asString());
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ETH_CHECK_EQUAL_COLLECTIONS(expectedTransactionData.begin(), expectedTransactionData.end(),
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_transaction.data().begin(), _transaction.data().end());
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ETH_CHECK_EQUAL(expectedTransactionGasLimit, _transaction.gas());
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ETH_CHECK_EQUAL(expectedTransactionGasPrice, _transaction.gasPrice());
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ETH_CHECK_EQUAL(expectedTransactionNonce, _transaction.nonce());
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ETH_CHECK_EQUAL(expectedTransactionSignatureR, _transaction.signature().r);
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ETH_CHECK_EQUAL(expectedTransactionSignatureS, _transaction.signature().s);
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// ETH_CHECK_EQUAL(expectedTransactionSignatureV, _transaction.signature().v); // 27 === 0x0, 28 === 0x1, not sure why
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};
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Transactions ts = _client.transactions(blockHash);
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TransactionHashes tHashes = _client.transactionHashes(blockHash);
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unsigned tsCount = _client.transactionCount(blockHash);
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ETH_REQUIRE(transactions.size() == ts.size());
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ETH_REQUIRE(transactions.size() == tHashes.size());
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// transactionCount
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ETH_CHECK_EQUAL(transactions.size(), tsCount);
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for (unsigned i = 0; i < tsCount; i++)
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{
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Json::Value t = transactions[i];
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// transaction (by block hash and transaction index)
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Transaction transaction = _client.transaction(blockHash, i);
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compareTransactions(t, transaction);
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// transaction (by hash)
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Transaction transactionByHash = _client.transaction(transaction.sha3());
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compareTransactions(t, transactionByHash);
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// transactions
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compareTransactions(t, ts[i]);
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// transactionHashes
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ETH_CHECK_EQUAL(transaction.sha3(), tHashes[i]);
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}
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// uncleCount
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unsigned usCount = _client.uncleCount(blockHash);
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ETH_CHECK_EQUAL(uncles.size(), usCount);
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for (unsigned i = 0; i < usCount; i++)
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{
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Json::Value u = uncles[i];
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// uncle (by hash)
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BlockInfo uncle = _client.uncle(blockHash, i);
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compareBlockInfos(u, uncle);
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}
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}
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});
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}
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BOOST_AUTO_TEST_SUITE_END()
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