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blockchain/tests/core_tests/multiassets_test.cpp

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// Copyright (c) 2014-2018 Zano Project
// Copyright (c) 2014-2018 The Louisdor Project
// Distributed under the MIT/X11 software license, see the accompanying
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
#include "chaingen.h"
#include "multiassets_test.h"
#include "wallet_test_core_proxy.h"
#include "random_helper.h"
#define AMOUNT_TO_TRANSFER_MULTIASSETS_BASIC (TESTS_DEFAULT_FEE)
#define AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC 500000000000000000
using namespace currency;
uint64_t multiassets_basic_test::ts_starter = 0;
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//------------------------------------------------------------------------------
multiassets_basic_test::multiassets_basic_test()
{
// TODO: remove the following line
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LOG_PRINT_MAGENTA("STARTER TS: " << ts_starter, LOG_LEVEL_0);
random_state_test_restorer::reset_random(ts_starter);
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REGISTER_CALLBACK_METHOD(multiassets_basic_test, configure_core);
REGISTER_CALLBACK_METHOD(multiassets_basic_test, c1);
m_hardforks.set_hardfork_height(ZANO_HARDFORK_04_ZARCANUM, 1);
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}
bool multiassets_basic_test::generate(std::vector<test_event_entry>& events) const
{
m_accounts.resize(MINER_ACC_IDX+1);
account_base& miner_acc = m_accounts[MINER_ACC_IDX];
miner_acc.generate();
uint64_t ts = 145000000;
MAKE_GENESIS_BLOCK(events, blk_0, miner_acc, ts);
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DO_CALLBACK(events, "configure_core"); // default configure_core callback will initialize core runtime config with m_hardforks
set_hard_fork_heights_to_generator(generator);
//TODO: Need to make sure REWIND_BLOCKS_N and other coretests codebase are capable of following hardfork4 rules
//in this test hardfork4 moment moved to runtime section
REWIND_BLOCKS_N_WITH_TIME(events, blk_0r, blk_0, miner_acc, CURRENCY_MINED_MONEY_UNLOCK_WINDOW + 3);
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DO_CALLBACK(events, "c1");
return true;
}
bool multiassets_basic_test::c1(currency::core& c, size_t ev_index, const std::vector<test_event_entry>& events)
{
bool r = false;
std::shared_ptr<tools::wallet2> miner_wlt = init_playtime_test_wallet(events, c, MINER_ACC_IDX);
miner_wlt->get_account().set_createtime(0);
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account_base alice_acc;
alice_acc.generate();
std::shared_ptr<tools::wallet2> alice_wlt = init_playtime_test_wallet(events, c, alice_acc);
alice_wlt->get_account().set_createtime(0);
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miner_wlt->refresh();
asset_descriptor_base adb = AUTO_VAL_INIT(adb);
adb.total_max_supply = 1000000000000000000; //1M coins
adb.full_name = "Test coins";
adb.ticker = "TCT";
adb.decimal_point = 12;
std::vector<currency::tx_destination_entry> destinations(2);
destinations[0].addr.push_back(miner_wlt->get_account().get_public_address());
destinations[0].amount = AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC;
destinations[0].asset_id = currency::null_pkey;
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destinations[1].addr.push_back(alice_wlt->get_account().get_public_address());
destinations[1].amount = AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC;
destinations[1].asset_id = currency::null_pkey;
LOG_PRINT_MAGENTA("destinations[0].asset_id:" << destinations[0].asset_id, LOG_LEVEL_0);
LOG_PRINT_MAGENTA("destinations[1].asset_id:" << destinations[1].asset_id, LOG_LEVEL_0);
LOG_PRINT_MAGENTA("currency::null_pkey: " << currency::null_pkey, LOG_LEVEL_0);
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currency::transaction tx = AUTO_VAL_INIT(tx);
crypto::public_key asset_id = currency::null_pkey;
miner_wlt->deploy_new_asset(adb, destinations, tx, asset_id);
LOG_PRINT_L0("Deployed new asset: " << asset_id << ", tx_id: " << currency::get_transaction_hash(tx));
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//pass over hardfork
r = mine_next_pow_blocks_in_playtime(miner_wlt->get_account().get_public_address(), c, CURRENCY_MINED_MONEY_UNLOCK_WINDOW);
CHECK_AND_ASSERT_MES(r, false, "mine_next_pow_blocks_in_playtime failed");
miner_wlt->refresh();
alice_wlt->refresh();
uint64_t mined = 0;
std::unordered_map<crypto::public_key, tools::wallet_public::asset_balance_entry_base> balances;
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miner_wlt->balance(balances, mined);
auto it_asset = balances.find(asset_id);
auto it_native = balances.find(currency::native_coin_asset_id);
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CHECK_AND_ASSERT_MES(it_asset != balances.end() && it_native != balances.end(), false, "Failed to find needed asset in result balances");
CHECK_AND_ASSERT_MES(it_asset->second.total == AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC, false, "Failed to find needed asset in result balances");
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CHECK_AND_ASSERT_MES(it_native->second.total == uint64_t(17517226)*COIN, false, "Failed to find needed asset in result balances");
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balances.clear();
alice_wlt->balance(balances, mined);
it_asset = balances.find(asset_id);
it_native = balances.find(currency::native_coin_asset_id);
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CHECK_AND_ASSERT_MES(it_asset != balances.end(), false, "Failed to find needed asset in result balances");
CHECK_AND_ASSERT_MES(it_native == balances.end(), false, "Failed to find needed asset in result balances");
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CHECK_AND_ASSERT_MES(it_asset->second.total == AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC, false, "Failed to find needed asset in result balances");
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miner_wlt->transfer(AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC/2, alice_wlt->get_account().get_public_address(), asset_id);
//pass over hardfork
r = mine_next_pow_blocks_in_playtime(miner_wlt->get_account().get_public_address(), c, CURRENCY_MINED_MONEY_UNLOCK_WINDOW);
CHECK_AND_ASSERT_MES(r, false, "mine_next_pow_blocks_in_playtime failed");
alice_wlt->refresh();
balances.clear();
alice_wlt->balance(balances, mined);
it_asset = balances.find(asset_id);
CHECK_AND_ASSERT_MES(it_asset != balances.end(), false, "Failed to find needed asset in result balances");
CHECK_AND_ASSERT_MES(it_asset->second.total == AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC + AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC/2, false, "Failed to find needed asset in result balances");
try {
miner_wlt->transfer(AMOUNT_ASSETS_TO_TRANSFER_MULTIASSETS_BASIC / 2, alice_wlt->get_account().get_public_address(), asset_id);
//pass over hardfork
CHECK_AND_ASSERT_MES(false, false, "Transfer with 0 Zano worked(fail)");
}
catch (...)
{
return true;
}
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return true;
}