forked from lthn/blockchain
189 lines
8.9 KiB
C++
189 lines
8.9 KiB
C++
// Copyright (c) 2014-2018 Zano Project
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// Copyright (c) 2014-2018 The Louisdor Project
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// Copyright (c) 2012-2013 The Boolberry developers
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// Distributed under the MIT/X11 software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include "chaingen.h"
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#include "get_random_outs.h"
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using namespace currency;
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get_random_outs_test::get_random_outs_test()
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: m_amount(0)
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{
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REGISTER_CALLBACK_METHOD(get_random_outs_test, check_get_rand_outs);
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}
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bool get_random_outs_test::generate(std::vector<test_event_entry>& events) const
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{
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uint64_t ts_start = 1338224400;
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GENERATE_ACCOUNT(miner_account);
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// event index
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MAKE_GENESIS_BLOCK(events, blk_0, miner_account, ts_start); // 0
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events.push_back(event_core_time(ts_start)); // 1
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MAKE_ACCOUNT(events, bob_account); // 2
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MAKE_NEXT_BLOCK(events, blk_1, blk_0, miner_account); // 3
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MAKE_NEXT_BLOCK(events, blk_2, blk_1, miner_account); // 4
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MAKE_NEXT_BLOCK(events, blk_3, blk_2, miner_account); // 5
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REWIND_BLOCKS_N_WITH_TIME(events, blk_3r, blk_3, miner_account, CURRENCY_MINED_MONEY_UNLOCK_WINDOW); // 2N+5 (N == CURRENCY_MINED_MONEY_UNLOCK_WINDOW)
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uint64_t first_blocks_reward = get_outs_money_amount(blk_1.miner_tx), stub;
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bool r = calculate_amounts_many_outs_have_and_no_outs_have(first_blocks_reward, stub, m_amount);
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CHECK_AND_ASSERT_MES(r, false, "calculate_amounts_many_outs_have_and_no_outs_have failed");
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MAKE_TX_LIST_START(events, txs_blk_4, miner_account, miner_account, m_amount, blk_3r); // 2N+6
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MAKE_TX_LIST(events, txs_blk_4, miner_account, miner_account, m_amount, blk_3r); // 2N+7
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MAKE_TX_LIST(events, txs_blk_4, miner_account, miner_account, m_amount, blk_3r); // 2N+8
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MAKE_TX_LIST(events, txs_blk_4, miner_account, bob_account, m_amount, blk_3r); // 2N+9
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MAKE_NEXT_BLOCK_TX_LIST(events, blk_4, blk_3r, miner_account, txs_blk_4); // 2N+10
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MAKE_TX_LIST_START(events, txs_blk_5, bob_account, miner_account, m_amount - TESTS_DEFAULT_FEE, blk_4); // 2N+11
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MAKE_NEXT_BLOCK_TX_LIST(events, blk_5, blk_4, miner_account, txs_blk_5); // 2N+12
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REWIND_BLOCKS_N_WITH_TIME(events, blk_5r, blk_5, miner_account, CURRENCY_MINED_MONEY_UNLOCK_WINDOW); // 4N+12
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DO_CALLBACK(events, "check_get_rand_outs"); // 4N+13
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return true;
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}
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bool get_random_outs_test::check_get_rand_outs(currency::core& c, size_t ev_index, const std::vector<test_event_entry>& events)
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{
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currency::COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS::request req = AUTO_VAL_INIT(req);
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req.amounts.push_back(m_amount);
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req.decoys_count = 4;
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req.use_forced_mix_outs = false;
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currency::COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS::response res = AUTO_VAL_INIT(res);
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c.get_blockchain_storage().get_random_outs_for_amounts(req, res);
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CHECK_AND_ASSERT_MES(res.outs[0].outs.size() == 3, false, "Incorrect number of random outs returned.");
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return true;
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}
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//------------------------------------------------------------------------------
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random_outs_and_burnt_coins::random_outs_and_burnt_coins()
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{
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REGISTER_CALLBACK_METHOD(random_outs_and_burnt_coins, c1);
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}
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bool random_outs_and_burnt_coins::generate(std::vector<test_event_entry>& events) const
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{
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// Test idead: make sure burned coins (that are technically will NEVER EVER been spent)
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// cannot be used for mixing in, as it reduces anonimity.
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bool r = false;
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m_accounts.resize(TOTAL_ACCS_COUNT);
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account_base& miner_acc = m_accounts[MINER_ACC_IDX]; miner_acc.generate();
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account_base& alice_acc = m_accounts[ALICE_ACC_IDX]; alice_acc.generate();
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account_base& bob_acc = m_accounts[BOB_ACC_IDX]; bob_acc.generate();
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MAKE_GENESIS_BLOCK(events, blk_0, miner_acc, test_core_time::get_time());
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REWIND_BLOCKS_N(events, blk_0r, blk_0, miner_acc, CURRENCY_MINED_MONEY_UNLOCK_WINDOW + 4);
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// find unique amount and store it to m_amount
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uint64_t stub;
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r = calculate_amounts_many_outs_have_and_no_outs_have(get_outs_money_amount(blk_0r.miner_tx), stub, m_amount);
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CHECK_AND_ASSERT_MES(r, false, "calculate_amounts_many_outs_have_and_no_outs_have failed");
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// prepare fake outputs and burn it
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// make m_fake_amounts_count outputs each of amount amount_no_outs_have
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std::vector<tx_destination_entry> destinations;
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for(size_t i = 0; i < m_fake_amounts_count; ++i)
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destinations.push_back(tx_destination_entry(m_amount, null_pub_addr));
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std::vector<tx_source_entry> sources;
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r = fill_tx_sources(sources, events, blk_0r, miner_acc.get_keys(), m_amount * m_fake_amounts_count + TESTS_DEFAULT_FEE, 0);
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CHECK_AND_ASSERT_MES(r, false, "fill_tx_sources failed");
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transaction tx_0 = AUTO_VAL_INIT(tx_0);
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r = construct_tx(miner_acc.get_keys(), sources, destinations, empty_attachment, tx_0, get_tx_version_from_events(events), 0);
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CHECK_AND_ASSERT_MES(r, false, "construct_tx failed");
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uint64_t burned_tx_amount_total = get_burned_amount(tx_0);
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CHECK_AND_ASSERT_MES(burned_tx_amount_total == m_fake_amounts_count * m_amount, false, "incorrect value of burned amount: " << burned_tx_amount_total << ", expected: " << m_fake_amounts_count * m_amount);
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events.push_back(tx_0);
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// send to Alice amount_no_outs_have coins
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MAKE_TX(events, tx_1, miner_acc, alice_acc, m_amount, blk_0r);
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MAKE_NEXT_BLOCK_TX_LIST(events, blk_1, blk_0r, miner_acc, std::list<transaction>({tx_0, tx_1}));
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MAKE_NEXT_BLOCK(events, blk_2, blk_1, miner_acc);
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DO_CALLBACK(events, "c1");
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return true;
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}
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bool random_outs_and_burnt_coins::c1(currency::core& c, size_t ev_index, const std::vector<test_event_entry>& events)
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{
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CHECK_AND_ASSERT_MES(c.get_pool_transactions_count() == 0, false, "Incorrect txs count in the pool: " << c.get_pool_transactions_count());
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std::shared_ptr<tools::wallet2> miner_wlt = init_playtime_test_wallet(events, c, m_accounts[MINER_ACC_IDX]);
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std::shared_ptr<tools::wallet2> alice_wlt = init_playtime_test_wallet(events, c, m_accounts[ALICE_ACC_IDX]);
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std::shared_ptr<tools::wallet2> bob_wlt = init_playtime_test_wallet(events, c, m_accounts[BOB_ACC_IDX]);
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bool r = mine_next_pow_blocks_in_playtime(m_accounts[MINER_ACC_IDX].get_public_address(), c, WALLET_DEFAULT_TX_SPENDABLE_AGE);
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CHECK_AND_ASSERT_MES(r, false, "mine_next_pow_blocks_in_playtime failed");
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CHECK_AND_ASSERT_MES(refresh_wallet_and_check_balance("", "Alice", alice_wlt,
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m_amount, // expected total
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false,
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CURRENCY_MINED_MONEY_UNLOCK_WINDOW + 6 + WALLET_DEFAULT_TX_SPENDABLE_AGE,
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m_amount // expected unlocked
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), false, "");
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std::vector<tx_destination_entry> destinations({tx_destination_entry(m_amount - TESTS_DEFAULT_FEE, m_accounts[BOB_ACC_IDX].get_public_address())});
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// make sure it's impossible to mixin an output with m_amount amount (because each one is burned)
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for (uint64_t fake_outs = m_fake_amounts_count + 1; fake_outs > 0; --fake_outs)
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{
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LOG_PRINT_L0("trying transfer with fake_outs = " << fake_outs);
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r = false;
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try
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{
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alice_wlt->transfer(destinations, fake_outs, 0, TESTS_DEFAULT_FEE, empty_extra, empty_attachment);
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}
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catch (tools::error::not_enough_outs_to_mix&)
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{
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r = true;
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}
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CHECK_AND_ASSERT_MES(r, false, "exception was not cought as expected for fake_outs = " << fake_outs);
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}
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// make normal output with m_amount amount and try to use it as mixin
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miner_wlt->refresh();
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miner_wlt->transfer(m_amount, m_accounts[BOB_ACC_IDX].get_public_address());
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// miner few blocks to make it mixable
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r = mine_next_pow_blocks_in_playtime(m_accounts[MINER_ACC_IDX].get_public_address(), c, WALLET_DEFAULT_TX_SPENDABLE_AGE);
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CHECK_AND_ASSERT_MES(r, false, "mine_next_pow_blocks_in_playtime failed");
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alice_wlt->refresh();
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// try with 2 fake outputs -- should not work, as we've just added to the blockchain only one
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r = false;
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try
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{
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alice_wlt->transfer(destinations, 2 /* fake outs count */, 0, TESTS_DEFAULT_FEE, empty_extra, empty_attachment);
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}
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catch (tools::error::not_enough_outs_to_mix&)
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{
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r = true;
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}
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CHECK_AND_ASSERT_MES(r, false, "exception was not cought as expected");
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// one mixin should perfectly work
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alice_wlt->transfer(destinations, 1 /* fake outs count */, 0, TESTS_DEFAULT_FEE, empty_extra, empty_attachment);
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// check Bob's balance
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CHECK_AND_ASSERT_MES(refresh_wallet_and_check_balance("", "Bob", bob_wlt, m_amount * 2 - TESTS_DEFAULT_FEE, false, CURRENCY_MINED_MONEY_UNLOCK_WINDOW + 6 + WALLET_DEFAULT_TX_SPENDABLE_AGE * 2), false, "");
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return true;
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}
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