luigi1111 2018-06-27 15:33:01 -05:00
commit a844844cda
No known key found for this signature in database
GPG key ID: F4ACA0183641E010
32 changed files with 763 additions and 496 deletions

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@ -184,7 +184,7 @@ bool tests::proxy_core::handle_incoming_tx(const cryptonote::blobdata& tx_blob,
return true;
}
bool tests::proxy_core::handle_incoming_txs(const std::list<blobdata>& tx_blobs, std::vector<tx_verification_context>& tvc, bool keeped_by_block, bool relayed, bool do_not_relay)
bool tests::proxy_core::handle_incoming_txs(const std::vector<blobdata>& tx_blobs, std::vector<tx_verification_context>& tvc, bool keeped_by_block, bool relayed, bool do_not_relay)
{
tvc.resize(tx_blobs.size());
size_t i = 0;

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@ -76,7 +76,7 @@ namespace tests
bool have_block(const crypto::hash& id);
void get_blockchain_top(uint64_t& height, crypto::hash& top_id);
bool handle_incoming_tx(const cryptonote::blobdata& tx_blob, cryptonote::tx_verification_context& tvc, bool keeped_by_block, bool relayed, bool do_not_relay);
bool handle_incoming_txs(const std::list<cryptonote::blobdata>& tx_blobs, std::vector<cryptonote::tx_verification_context>& tvc, bool keeped_by_block, bool relayed, bool do_not_relay);
bool handle_incoming_txs(const std::vector<cryptonote::blobdata>& tx_blobs, std::vector<cryptonote::tx_verification_context>& tvc, bool keeped_by_block, bool relayed, bool do_not_relay);
bool handle_incoming_block(const cryptonote::blobdata& block_blob, cryptonote::block_verification_context& bvc, bool update_miner_blocktemplate = true);
void pause_mine(){}
void resume_mine(){}
@ -86,7 +86,7 @@ namespace tests
cryptonote::Blockchain &get_blockchain_storage() { throw std::runtime_error("Called invalid member function: please never call get_blockchain_storage on the TESTING class proxy_core."); }
bool get_test_drop_download() {return true;}
bool get_test_drop_download_height() {return true;}
bool prepare_handle_incoming_blocks(const std::list<cryptonote::block_complete_entry> &blocks) { return true; }
bool prepare_handle_incoming_blocks(const std::vector<cryptonote::block_complete_entry> &blocks) { return true; }
bool cleanup_handle_incoming_blocks(bool force_sync = false) { return true; }
uint64_t get_target_blockchain_height() const { return 1; }
size_t get_block_sync_size(uint64_t height) const { return BLOCKS_SYNCHRONIZING_DEFAULT_COUNT; }
@ -94,8 +94,8 @@ namespace tests
cryptonote::network_type get_nettype() const { return cryptonote::MAINNET; }
bool get_pool_transaction(const crypto::hash& id, cryptonote::blobdata& tx_blob) const { return false; }
bool pool_has_tx(const crypto::hash &txid) const { return false; }
bool get_blocks(uint64_t start_offset, size_t count, std::list<std::pair<cryptonote::blobdata, cryptonote::block>>& blocks, std::list<cryptonote::blobdata>& txs) const { return false; }
bool get_transactions(const std::vector<crypto::hash>& txs_ids, std::list<cryptonote::transaction>& txs, std::list<crypto::hash>& missed_txs) const { return false; }
bool get_blocks(uint64_t start_offset, size_t count, std::vector<std::pair<cryptonote::blobdata, cryptonote::block>>& blocks, std::vector<cryptonote::blobdata>& txs) const { return false; }
bool get_transactions(const std::vector<crypto::hash>& txs_ids, std::vector<cryptonote::transaction>& txs, std::vector<crypto::hash>& missed_txs) const { return false; }
bool get_block_by_hash(const crypto::hash &h, cryptonote::block &blk, bool *orphan = NULL) const { return false; }
uint8_t get_ideal_hard_fork_version() const { return 0; }
uint8_t get_ideal_hard_fork_version(uint64_t height) const { return 0; }
@ -103,6 +103,6 @@ namespace tests
uint64_t get_earliest_ideal_height_for_version(uint8_t version) const { return 0; }
cryptonote::difficulty_type get_block_cumulative_difficulty(uint64_t height) const { return 0; }
bool fluffy_blocks_enabled() const { return false; }
uint64_t prevalidate_block_hashes(uint64_t height, const std::list<crypto::hash> &hashes) { return 0; }
uint64_t prevalidate_block_hashes(uint64_t height, const std::vector<crypto::hash> &hashes) { return 0; }
};
}

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@ -128,7 +128,7 @@ bool gen_chain_switch_1::check_split_not_switched(cryptonote::core& c, size_t ev
m_recipient_account_3 = boost::get<account_base>(events[3]);
m_recipient_account_4 = boost::get<account_base>(events[4]);
std::list<block> blocks;
std::vector<block> blocks;
bool r = c.get_blocks(0, 10000, blocks);
CHECK_TEST_CONDITION(r);
CHECK_EQ(5 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, blocks.size());
@ -145,7 +145,7 @@ bool gen_chain_switch_1::check_split_not_switched(cryptonote::core& c, size_t ev
CHECK_EQ(MK_COINS(14), get_balance(m_recipient_account_3, chain, mtx));
CHECK_EQ(MK_COINS(3), get_balance(m_recipient_account_4, chain, mtx));
std::list<transaction> tx_pool;
std::vector<transaction> tx_pool;
r = c.get_pool_transactions(tx_pool);
CHECK_TEST_CONDITION(r);
CHECK_EQ(1, tx_pool.size());
@ -166,7 +166,7 @@ bool gen_chain_switch_1::check_split_switched(cryptonote::core& c, size_t ev_ind
{
DEFINE_TESTS_ERROR_CONTEXT("gen_chain_switch_1::check_split_switched");
std::list<block> blocks;
std::vector<block> blocks;
bool r = c.get_blocks(0, 10000, blocks);
CHECK_TEST_CONDITION(r);
CHECK_EQ(6 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, blocks.size());
@ -175,7 +175,7 @@ bool gen_chain_switch_1::check_split_switched(cryptonote::core& c, size_t ev_ind
CHECK_TEST_CONDITION(std::equal(blocks.begin(), it, m_chain_1.begin()));
CHECK_TEST_CONDITION(blocks.back() == boost::get<block>(events[24 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW])); // blk_7
std::list<block> alt_blocks;
std::vector<block> alt_blocks;
r = c.get_alternative_blocks(alt_blocks);
CHECK_TEST_CONDITION(r);
CHECK_EQ(2, c.get_alternative_blocks_count());
@ -195,7 +195,7 @@ bool gen_chain_switch_1::check_split_switched(cryptonote::core& c, size_t ev_ind
CHECK_EQ(MK_COINS(14), get_balance(m_recipient_account_3, chain, mtx));
CHECK_EQ(MK_COINS(16), get_balance(m_recipient_account_4, chain, mtx));
std::list<transaction> tx_pool;
std::vector<transaction> tx_pool;
r = c.get_pool_transactions(tx_pool);
CHECK_TEST_CONDITION(r);
CHECK_EQ(1, tx_pool.size());

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@ -45,12 +45,12 @@ public:
bool check_split_switched(cryptonote::core& c, size_t ev_index, const std::vector<test_event_entry>& events);
private:
std::list<cryptonote::block> m_chain_1;
std::vector<cryptonote::block> m_chain_1;
cryptonote::account_base m_recipient_account_1;
cryptonote::account_base m_recipient_account_2;
cryptonote::account_base m_recipient_account_3;
cryptonote::account_base m_recipient_account_4;
std::list<cryptonote::transaction> m_tx_pool;
std::vector<cryptonote::transaction> m_tx_pool;
};

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@ -481,7 +481,7 @@ inline bool do_replay_events(std::vector<test_event_entry>& events)
MERROR("Failed to flush txpool");
return false;
}
c.get_blockchain_storage().flush_txes_from_pool(std::list<crypto::hash>(pool_txs.begin(), pool_txs.end()));
c.get_blockchain_storage().flush_txes_from_pool(pool_txs);
t_test_class validator;
bool ret = replay_events_through_core<t_test_class>(c, events, validator);

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@ -78,7 +78,7 @@ bool one_block::verify_1(cryptonote::core& c, size_t ev_index, const std::vector
//CHECK_TEST_CONDITION(get_block_reward(0) == get_balance(alice, events, chain, mtx));
// check height
std::list<cryptonote::block> blocks;
std::vector<cryptonote::block> blocks;
std::list<crypto::public_key> outs;
bool r = c.get_blocks(0, 100, blocks);
//c.get_outs(100, outs);

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@ -73,7 +73,7 @@ bool gen_double_spend_in_different_chains::check_double_spend(cryptonote::core&
{
DEFINE_TESTS_ERROR_CONTEXT("gen_double_spend_in_different_chains::check_double_spend");
std::list<block> block_list;
std::vector<block> block_list;
bool r = c.get_blocks(0, 100 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, block_list);
CHECK_TEST_CONDITION(r);

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@ -64,7 +64,7 @@ bool gen_double_spend_base<concrete_test>::check_block_verification_context(cons
template<class concrete_test>
bool gen_double_spend_base<concrete_test>::mark_last_valid_block(cryptonote::core& c, size_t /*ev_index*/, const std::vector<test_event_entry>& /*events*/)
{
std::list<cryptonote::block> block_list;
std::vector<cryptonote::block> block_list;
bool r = c.get_blocks(c.get_current_blockchain_height() - 1, 1, block_list);
CHECK_AND_ASSERT_MES(r, false, "core::get_blocks failed");
m_last_valid_block = block_list.back();
@ -96,7 +96,7 @@ bool gen_double_spend_base<concrete_test>::check_double_spend(cryptonote::core&
}
CHECK_NOT_EQ(invalid_index_value, m_invalid_block_index);
std::list<cryptonote::block> block_list;
std::vector<cryptonote::block> block_list;
bool r = c.get_blocks(0, 100 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, block_list);
CHECK_TEST_CONDITION(r);
CHECK_TEST_CONDITION(m_last_valid_block == block_list.back());

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@ -101,7 +101,7 @@ bool gen_ring_signature_1::check_balances_1(cryptonote::core& c, size_t ev_index
m_bob_account = boost::get<account_base>(events[3]);
m_alice_account = boost::get<account_base>(events[4]);
std::list<block> blocks;
std::vector<block> blocks;
bool r = c.get_blocks(0, 100 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, blocks);
CHECK_TEST_CONDITION(r);
@ -119,7 +119,7 @@ bool gen_ring_signature_1::check_balances_2(cryptonote::core& c, size_t ev_index
{
DEFINE_TESTS_ERROR_CONTEXT("gen_ring_signature_1::check_balances_2");
std::list<block> blocks;
std::vector<block> blocks;
bool r = c.get_blocks(0, 100 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, blocks);
CHECK_TEST_CONDITION(r);
@ -182,7 +182,7 @@ bool gen_ring_signature_2::check_balances_1(cryptonote::core& c, size_t ev_index
m_bob_account = boost::get<account_base>(events[1]);
m_alice_account = boost::get<account_base>(events[2]);
std::list<block> blocks;
std::vector<block> blocks;
bool r = c.get_blocks(0, 100 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, blocks);
CHECK_TEST_CONDITION(r);
@ -200,7 +200,7 @@ bool gen_ring_signature_2::check_balances_2(cryptonote::core& c, size_t ev_index
{
DEFINE_TESTS_ERROR_CONTEXT("gen_ring_signature_2::check_balances_2");
std::list<block> blocks;
std::vector<block> blocks;
bool r = c.get_blocks(0, 100 + 2 * CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, blocks);
CHECK_TEST_CONDITION(r);
@ -292,7 +292,7 @@ bool gen_ring_signature_big::check_balances_1(cryptonote::core& c, size_t ev_ind
m_bob_account = boost::get<account_base>(events[1]);
m_alice_account = boost::get<account_base>(events[1 + m_test_size]);
std::list<block> blocks;
std::vector<block> blocks;
bool r = c.get_blocks(0, 2 * m_test_size + CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, blocks);
CHECK_TEST_CONDITION(r);
@ -317,7 +317,7 @@ bool gen_ring_signature_big::check_balances_2(cryptonote::core& c, size_t ev_ind
{
DEFINE_TESTS_ERROR_CONTEXT("gen_ring_signature_big::check_balances_2");
std::list<block> blocks;
std::vector<block> blocks;
bool r = c.get_blocks(0, 2 * m_test_size + CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, blocks);
CHECK_TEST_CONDITION(r);

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@ -55,7 +55,7 @@ public:
bool have_block(const crypto::hash& id) const {return true;}
void get_blockchain_top(uint64_t& height, crypto::hash& top_id)const{height=0;top_id=crypto::null_hash;}
bool handle_incoming_tx(const cryptonote::blobdata& tx_blob, cryptonote::tx_verification_context& tvc, bool keeped_by_block, bool relayed, bool do_not_relay) { return true; }
bool handle_incoming_txs(const std::list<cryptonote::blobdata>& tx_blob, std::vector<cryptonote::tx_verification_context>& tvc, bool keeped_by_block, bool relayed, bool do_not_relay) { return true; }
bool handle_incoming_txs(const std::vector<cryptonote::blobdata>& tx_blob, std::vector<cryptonote::tx_verification_context>& tvc, bool keeped_by_block, bool relayed, bool do_not_relay) { return true; }
bool handle_incoming_block(const cryptonote::blobdata& block_blob, cryptonote::block_verification_context& bvc, bool update_miner_blocktemplate = true) { return true; }
void pause_mine(){}
void resume_mine(){}
@ -65,7 +65,7 @@ public:
cryptonote::blockchain_storage &get_blockchain_storage() { throw std::runtime_error("Called invalid member function: please never call get_blockchain_storage on the TESTING class test_core."); }
bool get_test_drop_download() const {return true;}
bool get_test_drop_download_height() const {return true;}
bool prepare_handle_incoming_blocks(const std::list<cryptonote::block_complete_entry> &blocks) { return true; }
bool prepare_handle_incoming_blocks(const std::vector<cryptonote::block_complete_entry> &blocks) { return true; }
bool cleanup_handle_incoming_blocks(bool force_sync = false) { return true; }
uint64_t get_target_blockchain_height() const { return 1; }
size_t get_block_sync_size(uint64_t height) const { return BLOCKS_SYNCHRONIZING_DEFAULT_COUNT; }
@ -73,8 +73,8 @@ public:
cryptonote::network_type get_nettype() const { return cryptonote::MAINNET; }
bool get_pool_transaction(const crypto::hash& id, cryptonote::blobdata& tx_blob) const { return false; }
bool pool_has_tx(const crypto::hash &txid) const { return false; }
bool get_blocks(uint64_t start_offset, size_t count, std::list<std::pair<cryptonote::blobdata, cryptonote::block>>& blocks, std::list<cryptonote::blobdata>& txs) const { return false; }
bool get_transactions(const std::vector<crypto::hash>& txs_ids, std::list<cryptonote::transaction>& txs, std::list<crypto::hash>& missed_txs) const { return false; }
bool get_blocks(uint64_t start_offset, size_t count, std::vector<std::pair<cryptonote::blobdata, cryptonote::block>>& blocks, std::vector<cryptonote::blobdata>& txs) const { return false; }
bool get_transactions(const std::vector<crypto::hash>& txs_ids, std::vector<cryptonote::transaction>& txs, std::vector<crypto::hash>& missed_txs) const { return false; }
bool get_block_by_hash(const crypto::hash &h, cryptonote::block &blk, bool *orphan = NULL) const { return false; }
uint8_t get_ideal_hard_fork_version() const { return 0; }
uint8_t get_ideal_hard_fork_version(uint64_t height) const { return 0; }
@ -82,7 +82,7 @@ public:
uint64_t get_earliest_ideal_height_for_version(uint8_t version) const { return 0; }
cryptonote::difficulty_type get_block_cumulative_difficulty(uint64_t height) const { return 0; }
bool fluffy_blocks_enabled() const { return false; }
uint64_t prevalidate_block_hashes(uint64_t height, const std::list<crypto::hash> &hashes) { return 0; }
uint64_t prevalidate_block_hashes(uint64_t height, const std::vector<crypto::hash> &hashes) { return 0; }
void stop() {}
};

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@ -35,7 +35,7 @@ TEST(threadpool, wait_nothing)
{
std::shared_ptr<tools::threadpool> tpool(tools::threadpool::getNewForUnitTests());
tools::threadpool::waiter waiter;
waiter.wait();
waiter.wait(tpool.get());
}
TEST(threadpool, wait_waits)
@ -45,7 +45,7 @@ TEST(threadpool, wait_waits)
std::atomic<bool> b(false);
tpool->submit(&waiter, [&b](){ epee::misc_utils::sleep_no_w(1000); b = true; });
ASSERT_FALSE(b);
waiter.wait();
waiter.wait(tpool.get());
ASSERT_TRUE(b);
}
@ -59,7 +59,7 @@ TEST(threadpool, one_thread)
{
tpool->submit(&waiter, [&counter](){++counter;});
}
waiter.wait();
waiter.wait(tpool.get());
ASSERT_EQ(counter, 4096);
}
@ -73,7 +73,7 @@ TEST(threadpool, many_threads)
{
tpool->submit(&waiter, [&counter](){++counter;});
}
waiter.wait();
waiter.wait(tpool.get());
ASSERT_EQ(counter, 4096);
}
@ -85,7 +85,7 @@ static uint64_t fibonacci(std::shared_ptr<tools::threadpool> tpool, uint64_t n)
tools::threadpool::waiter waiter;
tpool->submit(&waiter, [&tpool, &f1, n](){ f1 = fibonacci(tpool, n-1); });
tpool->submit(&waiter, [&tpool, &f2, n](){ f2 = fibonacci(tpool, n-2); });
waiter.wait();
waiter.wait(tpool.get());
return f1 + f2;
}
@ -95,7 +95,52 @@ TEST(threadpool, reentrency)
tools::threadpool::waiter waiter;
uint64_t f = fibonacci(tpool, 13);
waiter.wait();
waiter.wait(tpool.get());
ASSERT_EQ(f, 233);
}
TEST(threadpool, reentrancy)
{
std::shared_ptr<tools::threadpool> tpool(tools::threadpool::getNewForUnitTests(4));
tools::threadpool::waiter waiter;
uint64_t f = fibonacci(tpool, 13);
waiter.wait(tpool.get());
ASSERT_EQ(f, 233);
}
TEST(threadpool, leaf_throws)
{
std::shared_ptr<tools::threadpool> tpool(tools::threadpool::getNewForUnitTests());
tools::threadpool::waiter waiter;
bool thrown = false, executed = false;
tpool->submit(&waiter, [&](){
try { tpool->submit(&waiter, [&](){ executed = true; }); }
catch(const std::exception &e) { thrown = true; }
}, true);
waiter.wait(tpool.get());
ASSERT_TRUE(thrown);
ASSERT_FALSE(executed);
}
TEST(threadpool, leaf_reentrancy)
{
std::shared_ptr<tools::threadpool> tpool(tools::threadpool::getNewForUnitTests(4));
tools::threadpool::waiter waiter;
std::atomic<int> counter(0);
for (int i = 0; i < 1000; ++i)
{
tpool->submit(&waiter, [&](){
tools::threadpool::waiter waiter;
for (int j = 0; j < 500; ++j)
{
tpool->submit(&waiter, [&](){ ++counter; }, true);
}
waiter.wait(tpool.get());
});
}
waiter.wait(tpool.get());
ASSERT_EQ(counter, 500000);
}